blob: 936eef1634c73fe201300830719c3896dc10291e [file] [log] [blame]
Eugeni Dodonov85208be2012-04-16 22:20:34 -03001/*
2 * Copyright © 2012 Intel Corporation
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
21 * IN THE SOFTWARE.
22 *
23 * Authors:
24 * Eugeni Dodonov <eugeni.dodonov@intel.com>
25 *
26 */
27
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -030028#include <linux/cpufreq.h>
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -070029#include <drm/drm_plane_helper.h>
Eugeni Dodonov85208be2012-04-16 22:20:34 -030030#include "i915_drv.h"
31#include "intel_drv.h"
Daniel Vettereb48eb02012-04-26 23:28:12 +020032#include "../../../platform/x86/intel_ips.h"
33#include <linux/module.h>
Maarten Lankhorstc8fe32c2016-10-26 15:41:29 +020034#include <drm/drm_atomic_helper.h>
Eugeni Dodonov85208be2012-04-16 22:20:34 -030035
Ben Widawskydc39fff2013-10-18 12:32:07 -070036/**
Jani Nikula18afd442016-01-18 09:19:48 +020037 * DOC: RC6
38 *
Ben Widawskydc39fff2013-10-18 12:32:07 -070039 * RC6 is a special power stage which allows the GPU to enter an very
40 * low-voltage mode when idle, using down to 0V while at this stage. This
41 * stage is entered automatically when the GPU is idle when RC6 support is
42 * enabled, and as soon as new workload arises GPU wakes up automatically as well.
43 *
44 * There are different RC6 modes available in Intel GPU, which differentiate
45 * among each other with the latency required to enter and leave RC6 and
46 * voltage consumed by the GPU in different states.
47 *
48 * The combination of the following flags define which states GPU is allowed
49 * to enter, while RC6 is the normal RC6 state, RC6p is the deep RC6, and
50 * RC6pp is deepest RC6. Their support by hardware varies according to the
51 * GPU, BIOS, chipset and platform. RC6 is usually the safest one and the one
52 * which brings the most power savings; deeper states save more power, but
53 * require higher latency to switch to and wake up.
54 */
55#define INTEL_RC6_ENABLE (1<<0)
56#define INTEL_RC6p_ENABLE (1<<1)
57#define INTEL_RC6pp_ENABLE (1<<2)
58
Ville Syrjälä46f16e62016-10-31 22:37:22 +020059static void gen9_init_clock_gating(struct drm_i915_private *dev_priv)
Mika Kuoppalab033bb62016-06-07 17:19:04 +030060{
Mika Kuoppalab033bb62016-06-07 17:19:04 +030061 /* See Bspec note for PSR2_CTL bit 31, Wa#828:skl,bxt,kbl */
62 I915_WRITE(CHICKEN_PAR1_1,
63 I915_READ(CHICKEN_PAR1_1) | SKL_EDP_PSR_FIX_RDWRAP);
64
65 I915_WRITE(GEN8_CONFIG0,
66 I915_READ(GEN8_CONFIG0) | GEN9_DEFAULT_FIXES);
Mika Kuoppala590e8ff2016-06-07 17:19:13 +030067
Ander Conselvan de Oliveira9fb50262017-01-26 11:16:58 +020068 /* WaEnableChickenDCPR:skl,bxt,kbl,glk */
Mika Kuoppala590e8ff2016-06-07 17:19:13 +030069 I915_WRITE(GEN8_CHICKEN_DCPR_1,
70 I915_READ(GEN8_CHICKEN_DCPR_1) | MASK_WAKEMEM);
Mika Kuoppala0f78dee2016-06-07 17:19:16 +030071
72 /* WaFbcTurnOffFbcWatermark:skl,bxt,kbl */
Ander Conselvan de Oliveira9fb50262017-01-26 11:16:58 +020073 /* WaFbcWakeMemOn:skl,bxt,kbl,glk */
Mika Kuoppala303d4ea2016-06-07 17:19:17 +030074 I915_WRITE(DISP_ARB_CTL, I915_READ(DISP_ARB_CTL) |
75 DISP_FBC_WM_DIS |
76 DISP_FBC_MEMORY_WAKE);
Mika Kuoppalad1b4eef2016-06-07 17:19:19 +030077
78 /* WaFbcHighMemBwCorruptionAvoidance:skl,bxt,kbl */
79 I915_WRITE(ILK_DPFC_CHICKEN, I915_READ(ILK_DPFC_CHICKEN) |
80 ILK_DPFC_DISABLE_DUMMY0);
Mika Kuoppalab033bb62016-06-07 17:19:04 +030081}
82
Ville Syrjälä46f16e62016-10-31 22:37:22 +020083static void bxt_init_clock_gating(struct drm_i915_private *dev_priv)
Imre Deaka82abe42015-03-27 14:00:04 +020084{
Ville Syrjälä46f16e62016-10-31 22:37:22 +020085 gen9_init_clock_gating(dev_priv);
Daniel Vetterdc00b6a2016-05-19 09:14:20 +020086
Nick Hoatha7546152015-06-29 14:07:32 +010087 /* WaDisableSDEUnitClockGating:bxt */
88 I915_WRITE(GEN8_UCGCTL6, I915_READ(GEN8_UCGCTL6) |
89 GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
90
Imre Deak32608ca2015-03-11 11:10:27 +020091 /*
92 * FIXME:
Ben Widawsky868434c2015-03-11 10:49:32 +020093 * GEN8_HDCUNIT_CLOCK_GATE_DISABLE_HDCREQ applies on 3x6 GT SKUs only.
Imre Deak32608ca2015-03-11 11:10:27 +020094 */
Imre Deak32608ca2015-03-11 11:10:27 +020095 I915_WRITE(GEN8_UCGCTL6, I915_READ(GEN8_UCGCTL6) |
Ben Widawsky868434c2015-03-11 10:49:32 +020096 GEN8_HDCUNIT_CLOCK_GATE_DISABLE_HDCREQ);
Imre Deakd965e7a2015-12-01 10:23:52 +020097
98 /*
99 * Wa: Backlight PWM may stop in the asserted state, causing backlight
100 * to stay fully on.
101 */
Jani Nikula8aeaf642017-02-15 17:21:37 +0200102 I915_WRITE(GEN9_CLKGATE_DIS_0, I915_READ(GEN9_CLKGATE_DIS_0) |
103 PWM1_GATING_DIS | PWM2_GATING_DIS);
Imre Deaka82abe42015-03-27 14:00:04 +0200104}
105
Ander Conselvan de Oliveira9fb50262017-01-26 11:16:58 +0200106static void glk_init_clock_gating(struct drm_i915_private *dev_priv)
107{
108 gen9_init_clock_gating(dev_priv);
109
110 /*
111 * WaDisablePWMClockGating:glk
112 * Backlight PWM may stop in the asserted state, causing backlight
113 * to stay fully on.
114 */
115 I915_WRITE(GEN9_CLKGATE_DIS_0, I915_READ(GEN9_CLKGATE_DIS_0) |
116 PWM1_GATING_DIS | PWM2_GATING_DIS);
Ander Conselvan de Oliveiraf4f4b592017-02-22 08:34:29 +0200117
118 /* WaDDIIOTimeout:glk */
119 if (IS_GLK_REVID(dev_priv, 0, GLK_REVID_A1)) {
120 u32 val = I915_READ(CHICKEN_MISC_2);
121 val &= ~(GLK_CL0_PWR_DOWN |
122 GLK_CL1_PWR_DOWN |
123 GLK_CL2_PWR_DOWN);
124 I915_WRITE(CHICKEN_MISC_2, val);
125 }
126
Ander Conselvan de Oliveira9fb50262017-01-26 11:16:58 +0200127}
128
Ville Syrjälä148ac1f2016-10-31 22:37:16 +0200129static void i915_pineview_get_mem_freq(struct drm_i915_private *dev_priv)
Daniel Vetterc921aba2012-04-26 23:28:17 +0200130{
Daniel Vetterc921aba2012-04-26 23:28:17 +0200131 u32 tmp;
132
133 tmp = I915_READ(CLKCFG);
134
135 switch (tmp & CLKCFG_FSB_MASK) {
136 case CLKCFG_FSB_533:
137 dev_priv->fsb_freq = 533; /* 133*4 */
138 break;
139 case CLKCFG_FSB_800:
140 dev_priv->fsb_freq = 800; /* 200*4 */
141 break;
142 case CLKCFG_FSB_667:
143 dev_priv->fsb_freq = 667; /* 167*4 */
144 break;
145 case CLKCFG_FSB_400:
146 dev_priv->fsb_freq = 400; /* 100*4 */
147 break;
148 }
149
150 switch (tmp & CLKCFG_MEM_MASK) {
151 case CLKCFG_MEM_533:
152 dev_priv->mem_freq = 533;
153 break;
154 case CLKCFG_MEM_667:
155 dev_priv->mem_freq = 667;
156 break;
157 case CLKCFG_MEM_800:
158 dev_priv->mem_freq = 800;
159 break;
160 }
161
162 /* detect pineview DDR3 setting */
163 tmp = I915_READ(CSHRDDR3CTL);
164 dev_priv->is_ddr3 = (tmp & CSHRDDR3CTL_DDR3) ? 1 : 0;
165}
166
Ville Syrjälä148ac1f2016-10-31 22:37:16 +0200167static void i915_ironlake_get_mem_freq(struct drm_i915_private *dev_priv)
Daniel Vetterc921aba2012-04-26 23:28:17 +0200168{
Daniel Vetterc921aba2012-04-26 23:28:17 +0200169 u16 ddrpll, csipll;
170
171 ddrpll = I915_READ16(DDRMPLL1);
172 csipll = I915_READ16(CSIPLL0);
173
174 switch (ddrpll & 0xff) {
175 case 0xc:
176 dev_priv->mem_freq = 800;
177 break;
178 case 0x10:
179 dev_priv->mem_freq = 1066;
180 break;
181 case 0x14:
182 dev_priv->mem_freq = 1333;
183 break;
184 case 0x18:
185 dev_priv->mem_freq = 1600;
186 break;
187 default:
188 DRM_DEBUG_DRIVER("unknown memory frequency 0x%02x\n",
189 ddrpll & 0xff);
190 dev_priv->mem_freq = 0;
191 break;
192 }
193
Daniel Vetter20e4d402012-08-08 23:35:39 +0200194 dev_priv->ips.r_t = dev_priv->mem_freq;
Daniel Vetterc921aba2012-04-26 23:28:17 +0200195
196 switch (csipll & 0x3ff) {
197 case 0x00c:
198 dev_priv->fsb_freq = 3200;
199 break;
200 case 0x00e:
201 dev_priv->fsb_freq = 3733;
202 break;
203 case 0x010:
204 dev_priv->fsb_freq = 4266;
205 break;
206 case 0x012:
207 dev_priv->fsb_freq = 4800;
208 break;
209 case 0x014:
210 dev_priv->fsb_freq = 5333;
211 break;
212 case 0x016:
213 dev_priv->fsb_freq = 5866;
214 break;
215 case 0x018:
216 dev_priv->fsb_freq = 6400;
217 break;
218 default:
219 DRM_DEBUG_DRIVER("unknown fsb frequency 0x%04x\n",
220 csipll & 0x3ff);
221 dev_priv->fsb_freq = 0;
222 break;
223 }
224
225 if (dev_priv->fsb_freq == 3200) {
Daniel Vetter20e4d402012-08-08 23:35:39 +0200226 dev_priv->ips.c_m = 0;
Daniel Vetterc921aba2012-04-26 23:28:17 +0200227 } else if (dev_priv->fsb_freq > 3200 && dev_priv->fsb_freq <= 4800) {
Daniel Vetter20e4d402012-08-08 23:35:39 +0200228 dev_priv->ips.c_m = 1;
Daniel Vetterc921aba2012-04-26 23:28:17 +0200229 } else {
Daniel Vetter20e4d402012-08-08 23:35:39 +0200230 dev_priv->ips.c_m = 2;
Daniel Vetterc921aba2012-04-26 23:28:17 +0200231 }
232}
233
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300234static const struct cxsr_latency cxsr_latency_table[] = {
235 {1, 0, 800, 400, 3382, 33382, 3983, 33983}, /* DDR2-400 SC */
236 {1, 0, 800, 667, 3354, 33354, 3807, 33807}, /* DDR2-667 SC */
237 {1, 0, 800, 800, 3347, 33347, 3763, 33763}, /* DDR2-800 SC */
238 {1, 1, 800, 667, 6420, 36420, 6873, 36873}, /* DDR3-667 SC */
239 {1, 1, 800, 800, 5902, 35902, 6318, 36318}, /* DDR3-800 SC */
240
241 {1, 0, 667, 400, 3400, 33400, 4021, 34021}, /* DDR2-400 SC */
242 {1, 0, 667, 667, 3372, 33372, 3845, 33845}, /* DDR2-667 SC */
243 {1, 0, 667, 800, 3386, 33386, 3822, 33822}, /* DDR2-800 SC */
244 {1, 1, 667, 667, 6438, 36438, 6911, 36911}, /* DDR3-667 SC */
245 {1, 1, 667, 800, 5941, 35941, 6377, 36377}, /* DDR3-800 SC */
246
247 {1, 0, 400, 400, 3472, 33472, 4173, 34173}, /* DDR2-400 SC */
248 {1, 0, 400, 667, 3443, 33443, 3996, 33996}, /* DDR2-667 SC */
249 {1, 0, 400, 800, 3430, 33430, 3946, 33946}, /* DDR2-800 SC */
250 {1, 1, 400, 667, 6509, 36509, 7062, 37062}, /* DDR3-667 SC */
251 {1, 1, 400, 800, 5985, 35985, 6501, 36501}, /* DDR3-800 SC */
252
253 {0, 0, 800, 400, 3438, 33438, 4065, 34065}, /* DDR2-400 SC */
254 {0, 0, 800, 667, 3410, 33410, 3889, 33889}, /* DDR2-667 SC */
255 {0, 0, 800, 800, 3403, 33403, 3845, 33845}, /* DDR2-800 SC */
256 {0, 1, 800, 667, 6476, 36476, 6955, 36955}, /* DDR3-667 SC */
257 {0, 1, 800, 800, 5958, 35958, 6400, 36400}, /* DDR3-800 SC */
258
259 {0, 0, 667, 400, 3456, 33456, 4103, 34106}, /* DDR2-400 SC */
260 {0, 0, 667, 667, 3428, 33428, 3927, 33927}, /* DDR2-667 SC */
261 {0, 0, 667, 800, 3443, 33443, 3905, 33905}, /* DDR2-800 SC */
262 {0, 1, 667, 667, 6494, 36494, 6993, 36993}, /* DDR3-667 SC */
263 {0, 1, 667, 800, 5998, 35998, 6460, 36460}, /* DDR3-800 SC */
264
265 {0, 0, 400, 400, 3528, 33528, 4255, 34255}, /* DDR2-400 SC */
266 {0, 0, 400, 667, 3500, 33500, 4079, 34079}, /* DDR2-667 SC */
267 {0, 0, 400, 800, 3487, 33487, 4029, 34029}, /* DDR2-800 SC */
268 {0, 1, 400, 667, 6566, 36566, 7145, 37145}, /* DDR3-667 SC */
269 {0, 1, 400, 800, 6042, 36042, 6584, 36584}, /* DDR3-800 SC */
270};
271
Tvrtko Ursulin44a655c2016-10-13 11:09:23 +0100272static const struct cxsr_latency *intel_get_cxsr_latency(bool is_desktop,
273 bool is_ddr3,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300274 int fsb,
275 int mem)
276{
277 const struct cxsr_latency *latency;
278 int i;
279
280 if (fsb == 0 || mem == 0)
281 return NULL;
282
283 for (i = 0; i < ARRAY_SIZE(cxsr_latency_table); i++) {
284 latency = &cxsr_latency_table[i];
285 if (is_desktop == latency->is_desktop &&
286 is_ddr3 == latency->is_ddr3 &&
287 fsb == latency->fsb_freq && mem == latency->mem_freq)
288 return latency;
289 }
290
291 DRM_DEBUG_KMS("Unknown FSB/MEM found, disable CxSR\n");
292
293 return NULL;
294}
295
Ville Syrjäläfc1ac8d2015-03-05 21:19:52 +0200296static void chv_set_memory_dvfs(struct drm_i915_private *dev_priv, bool enable)
297{
298 u32 val;
299
300 mutex_lock(&dev_priv->rps.hw_lock);
301
302 val = vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2);
303 if (enable)
304 val &= ~FORCE_DDR_HIGH_FREQ;
305 else
306 val |= FORCE_DDR_HIGH_FREQ;
307 val &= ~FORCE_DDR_LOW_FREQ;
308 val |= FORCE_DDR_FREQ_REQ_ACK;
309 vlv_punit_write(dev_priv, PUNIT_REG_DDR_SETUP2, val);
310
311 if (wait_for((vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2) &
312 FORCE_DDR_FREQ_REQ_ACK) == 0, 3))
313 DRM_ERROR("timed out waiting for Punit DDR DVFS request\n");
314
315 mutex_unlock(&dev_priv->rps.hw_lock);
316}
317
Ville Syrjäläcfb41412015-03-05 21:19:51 +0200318static void chv_set_memory_pm5(struct drm_i915_private *dev_priv, bool enable)
319{
320 u32 val;
321
322 mutex_lock(&dev_priv->rps.hw_lock);
323
324 val = vlv_punit_read(dev_priv, PUNIT_REG_DSPFREQ);
325 if (enable)
326 val |= DSP_MAXFIFO_PM5_ENABLE;
327 else
328 val &= ~DSP_MAXFIFO_PM5_ENABLE;
329 vlv_punit_write(dev_priv, PUNIT_REG_DSPFREQ, val);
330
331 mutex_unlock(&dev_priv->rps.hw_lock);
332}
333
Ville Syrjäläf4998962015-03-10 17:02:21 +0200334#define FW_WM(value, plane) \
335 (((value) << DSPFW_ ## plane ## _SHIFT) & DSPFW_ ## plane ## _MASK)
336
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200337static bool _intel_set_memory_cxsr(struct drm_i915_private *dev_priv, bool enable)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300338{
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200339 bool was_enabled;
Imre Deak5209b1f2014-07-01 12:36:17 +0300340 u32 val;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300341
Tvrtko Ursulin920a14b2016-10-14 10:13:44 +0100342 if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200343 was_enabled = I915_READ(FW_BLC_SELF_VLV) & FW_CSPWRDWNEN;
Imre Deak5209b1f2014-07-01 12:36:17 +0300344 I915_WRITE(FW_BLC_SELF_VLV, enable ? FW_CSPWRDWNEN : 0);
Ville Syrjäläa7a6c492015-06-24 22:00:01 +0300345 POSTING_READ(FW_BLC_SELF_VLV);
Jani Nikulac0f86832016-12-07 12:13:04 +0200346 } else if (IS_G4X(dev_priv) || IS_I965GM(dev_priv)) {
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200347 was_enabled = I915_READ(FW_BLC_SELF) & FW_BLC_SELF_EN;
Imre Deak5209b1f2014-07-01 12:36:17 +0300348 I915_WRITE(FW_BLC_SELF, enable ? FW_BLC_SELF_EN : 0);
Ville Syrjäläa7a6c492015-06-24 22:00:01 +0300349 POSTING_READ(FW_BLC_SELF);
Ville Syrjälä9b1e14f2016-10-31 22:37:15 +0200350 } else if (IS_PINEVIEW(dev_priv)) {
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200351 val = I915_READ(DSPFW3);
352 was_enabled = val & PINEVIEW_SELF_REFRESH_EN;
353 if (enable)
354 val |= PINEVIEW_SELF_REFRESH_EN;
355 else
356 val &= ~PINEVIEW_SELF_REFRESH_EN;
Imre Deak5209b1f2014-07-01 12:36:17 +0300357 I915_WRITE(DSPFW3, val);
Ville Syrjäläa7a6c492015-06-24 22:00:01 +0300358 POSTING_READ(DSPFW3);
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +0100359 } else if (IS_I945G(dev_priv) || IS_I945GM(dev_priv)) {
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200360 was_enabled = I915_READ(FW_BLC_SELF) & FW_BLC_SELF_EN;
Imre Deak5209b1f2014-07-01 12:36:17 +0300361 val = enable ? _MASKED_BIT_ENABLE(FW_BLC_SELF_EN) :
362 _MASKED_BIT_DISABLE(FW_BLC_SELF_EN);
363 I915_WRITE(FW_BLC_SELF, val);
Ville Syrjäläa7a6c492015-06-24 22:00:01 +0300364 POSTING_READ(FW_BLC_SELF);
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +0100365 } else if (IS_I915GM(dev_priv)) {
Ville Syrjäläacb91352016-07-29 17:57:02 +0300366 /*
367 * FIXME can't find a bit like this for 915G, and
368 * and yet it does have the related watermark in
369 * FW_BLC_SELF. What's going on?
370 */
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200371 was_enabled = I915_READ(INSTPM) & INSTPM_SELF_EN;
Imre Deak5209b1f2014-07-01 12:36:17 +0300372 val = enable ? _MASKED_BIT_ENABLE(INSTPM_SELF_EN) :
373 _MASKED_BIT_DISABLE(INSTPM_SELF_EN);
374 I915_WRITE(INSTPM, val);
Ville Syrjäläa7a6c492015-06-24 22:00:01 +0300375 POSTING_READ(INSTPM);
Imre Deak5209b1f2014-07-01 12:36:17 +0300376 } else {
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200377 return false;
Imre Deak5209b1f2014-07-01 12:36:17 +0300378 }
379
Ville Syrjälä1489bba2017-03-02 19:15:07 +0200380 trace_intel_memory_cxsr(dev_priv, was_enabled, enable);
381
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200382 DRM_DEBUG_KMS("memory self-refresh is %s (was %s)\n",
383 enableddisabled(enable),
384 enableddisabled(was_enabled));
385
386 return was_enabled;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300387}
388
Ville Syrjälä62571fc2017-04-21 21:14:23 +0300389/**
390 * intel_set_memory_cxsr - Configure CxSR state
391 * @dev_priv: i915 device
392 * @enable: Allow vs. disallow CxSR
393 *
394 * Allow or disallow the system to enter a special CxSR
395 * (C-state self refresh) state. What typically happens in CxSR mode
396 * is that several display FIFOs may get combined into a single larger
397 * FIFO for a particular plane (so called max FIFO mode) to allow the
398 * system to defer memory fetches longer, and the memory will enter
399 * self refresh.
400 *
401 * Note that enabling CxSR does not guarantee that the system enter
402 * this special mode, nor does it guarantee that the system stays
403 * in that mode once entered. So this just allows/disallows the system
404 * to autonomously utilize the CxSR mode. Other factors such as core
405 * C-states will affect when/if the system actually enters/exits the
406 * CxSR mode.
407 *
408 * Note that on VLV/CHV this actually only controls the max FIFO mode,
409 * and the system is free to enter/exit memory self refresh at any time
410 * even when the use of CxSR has been disallowed.
411 *
412 * While the system is actually in the CxSR/max FIFO mode, some plane
413 * control registers will not get latched on vblank. Thus in order to
414 * guarantee the system will respond to changes in the plane registers
415 * we must always disallow CxSR prior to making changes to those registers.
416 * Unfortunately the system will re-evaluate the CxSR conditions at
417 * frame start which happens after vblank start (which is when the plane
418 * registers would get latched), so we can't proceed with the plane update
419 * during the same frame where we disallowed CxSR.
420 *
421 * Certain platforms also have a deeper HPLL SR mode. Fortunately the
422 * HPLL SR mode depends on CxSR itself, so we don't have to hand hold
423 * the hardware w.r.t. HPLL SR when writing to plane registers.
424 * Disallowing just CxSR is sufficient.
425 */
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200426bool intel_set_memory_cxsr(struct drm_i915_private *dev_priv, bool enable)
Ville Syrjälä3d90e642016-11-28 19:37:11 +0200427{
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200428 bool ret;
429
Ville Syrjälä3d90e642016-11-28 19:37:11 +0200430 mutex_lock(&dev_priv->wm.wm_mutex);
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200431 ret = _intel_set_memory_cxsr(dev_priv, enable);
Ville Syrjälä04548cb2017-04-21 21:14:29 +0300432 if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
433 dev_priv->wm.vlv.cxsr = enable;
434 else if (IS_G4X(dev_priv))
435 dev_priv->wm.g4x.cxsr = enable;
Ville Syrjälä3d90e642016-11-28 19:37:11 +0200436 mutex_unlock(&dev_priv->wm.wm_mutex);
Ville Syrjälä11a85d62016-11-28 19:37:12 +0200437
438 return ret;
Ville Syrjälä3d90e642016-11-28 19:37:11 +0200439}
Ville Syrjäläfc1ac8d2015-03-05 21:19:52 +0200440
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300441/*
442 * Latency for FIFO fetches is dependent on several factors:
443 * - memory configuration (speed, channels)
444 * - chipset
445 * - current MCH state
446 * It can be fairly high in some situations, so here we assume a fairly
447 * pessimal value. It's a tradeoff between extra memory fetches (if we
448 * set this value too high, the FIFO will fetch frequently to stay full)
449 * and power consumption (set it too low to save power and we might see
450 * FIFO underruns and display "flicker").
451 *
452 * A value of 5us seems to be a good balance; safe for very low end
453 * platforms but not overly aggressive on lower latency configs.
454 */
Chris Wilson5aef6002014-09-03 11:56:07 +0100455static const int pessimal_latency_ns = 5000;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300456
Ville Syrjäläb5004722015-03-05 21:19:47 +0200457#define VLV_FIFO_START(dsparb, dsparb2, lo_shift, hi_shift) \
458 ((((dsparb) >> (lo_shift)) & 0xff) | ((((dsparb2) >> (hi_shift)) & 0x1) << 8))
459
Ville Syrjälä814e7f02017-03-02 19:14:55 +0200460static void vlv_get_fifo_size(struct intel_crtc_state *crtc_state)
Ville Syrjäläb5004722015-03-05 21:19:47 +0200461{
Ville Syrjälä814e7f02017-03-02 19:14:55 +0200462 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
Ville Syrjäläf07d43d2017-03-02 19:14:52 +0200463 struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
Ville Syrjälä814e7f02017-03-02 19:14:55 +0200464 struct vlv_fifo_state *fifo_state = &crtc_state->wm.vlv.fifo_state;
Ville Syrjäläf07d43d2017-03-02 19:14:52 +0200465 enum pipe pipe = crtc->pipe;
466 int sprite0_start, sprite1_start;
Ville Syrjäläb5004722015-03-05 21:19:47 +0200467
Ville Syrjäläf07d43d2017-03-02 19:14:52 +0200468 switch (pipe) {
Ville Syrjäläb5004722015-03-05 21:19:47 +0200469 uint32_t dsparb, dsparb2, dsparb3;
470 case PIPE_A:
471 dsparb = I915_READ(DSPARB);
472 dsparb2 = I915_READ(DSPARB2);
473 sprite0_start = VLV_FIFO_START(dsparb, dsparb2, 0, 0);
474 sprite1_start = VLV_FIFO_START(dsparb, dsparb2, 8, 4);
475 break;
476 case PIPE_B:
477 dsparb = I915_READ(DSPARB);
478 dsparb2 = I915_READ(DSPARB2);
479 sprite0_start = VLV_FIFO_START(dsparb, dsparb2, 16, 8);
480 sprite1_start = VLV_FIFO_START(dsparb, dsparb2, 24, 12);
481 break;
482 case PIPE_C:
483 dsparb2 = I915_READ(DSPARB2);
484 dsparb3 = I915_READ(DSPARB3);
485 sprite0_start = VLV_FIFO_START(dsparb3, dsparb2, 0, 16);
486 sprite1_start = VLV_FIFO_START(dsparb3, dsparb2, 8, 20);
487 break;
488 default:
Ville Syrjäläf07d43d2017-03-02 19:14:52 +0200489 MISSING_CASE(pipe);
490 return;
Ville Syrjäläb5004722015-03-05 21:19:47 +0200491 }
492
Ville Syrjäläf07d43d2017-03-02 19:14:52 +0200493 fifo_state->plane[PLANE_PRIMARY] = sprite0_start;
494 fifo_state->plane[PLANE_SPRITE0] = sprite1_start - sprite0_start;
495 fifo_state->plane[PLANE_SPRITE1] = 511 - sprite1_start;
496 fifo_state->plane[PLANE_CURSOR] = 63;
Ville Syrjäläb5004722015-03-05 21:19:47 +0200497}
498
Ville Syrjäläef0f5e92016-10-31 22:37:17 +0200499static int i9xx_get_fifo_size(struct drm_i915_private *dev_priv, int plane)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300500{
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300501 uint32_t dsparb = I915_READ(DSPARB);
502 int size;
503
504 size = dsparb & 0x7f;
505 if (plane)
506 size = ((dsparb >> DSPARB_CSTART_SHIFT) & 0x7f) - size;
507
508 DRM_DEBUG_KMS("FIFO size - (0x%08x) %s: %d\n", dsparb,
509 plane ? "B" : "A", size);
510
511 return size;
512}
513
Ville Syrjäläef0f5e92016-10-31 22:37:17 +0200514static int i830_get_fifo_size(struct drm_i915_private *dev_priv, int plane)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300515{
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300516 uint32_t dsparb = I915_READ(DSPARB);
517 int size;
518
519 size = dsparb & 0x1ff;
520 if (plane)
521 size = ((dsparb >> DSPARB_BEND_SHIFT) & 0x1ff) - size;
522 size >>= 1; /* Convert to cachelines */
523
524 DRM_DEBUG_KMS("FIFO size - (0x%08x) %s: %d\n", dsparb,
525 plane ? "B" : "A", size);
526
527 return size;
528}
529
Ville Syrjäläef0f5e92016-10-31 22:37:17 +0200530static int i845_get_fifo_size(struct drm_i915_private *dev_priv, int plane)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300531{
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300532 uint32_t dsparb = I915_READ(DSPARB);
533 int size;
534
535 size = dsparb & 0x7f;
536 size >>= 2; /* Convert to cachelines */
537
538 DRM_DEBUG_KMS("FIFO size - (0x%08x) %s: %d\n", dsparb,
539 plane ? "B" : "A",
540 size);
541
542 return size;
543}
544
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300545/* Pineview has different values for various configs */
546static const struct intel_watermark_params pineview_display_wm = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300547 .fifo_size = PINEVIEW_DISPLAY_FIFO,
548 .max_wm = PINEVIEW_MAX_WM,
549 .default_wm = PINEVIEW_DFT_WM,
550 .guard_size = PINEVIEW_GUARD_WM,
551 .cacheline_size = PINEVIEW_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300552};
553static const struct intel_watermark_params pineview_display_hplloff_wm = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300554 .fifo_size = PINEVIEW_DISPLAY_FIFO,
555 .max_wm = PINEVIEW_MAX_WM,
556 .default_wm = PINEVIEW_DFT_HPLLOFF_WM,
557 .guard_size = PINEVIEW_GUARD_WM,
558 .cacheline_size = PINEVIEW_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300559};
560static const struct intel_watermark_params pineview_cursor_wm = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300561 .fifo_size = PINEVIEW_CURSOR_FIFO,
562 .max_wm = PINEVIEW_CURSOR_MAX_WM,
563 .default_wm = PINEVIEW_CURSOR_DFT_WM,
564 .guard_size = PINEVIEW_CURSOR_GUARD_WM,
565 .cacheline_size = PINEVIEW_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300566};
567static const struct intel_watermark_params pineview_cursor_hplloff_wm = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300568 .fifo_size = PINEVIEW_CURSOR_FIFO,
569 .max_wm = PINEVIEW_CURSOR_MAX_WM,
570 .default_wm = PINEVIEW_CURSOR_DFT_WM,
571 .guard_size = PINEVIEW_CURSOR_GUARD_WM,
572 .cacheline_size = PINEVIEW_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300573};
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300574static const struct intel_watermark_params i965_cursor_wm_info = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300575 .fifo_size = I965_CURSOR_FIFO,
576 .max_wm = I965_CURSOR_MAX_WM,
577 .default_wm = I965_CURSOR_DFT_WM,
578 .guard_size = 2,
579 .cacheline_size = I915_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300580};
581static const struct intel_watermark_params i945_wm_info = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300582 .fifo_size = I945_FIFO_SIZE,
583 .max_wm = I915_MAX_WM,
584 .default_wm = 1,
585 .guard_size = 2,
586 .cacheline_size = I915_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300587};
588static const struct intel_watermark_params i915_wm_info = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300589 .fifo_size = I915_FIFO_SIZE,
590 .max_wm = I915_MAX_WM,
591 .default_wm = 1,
592 .guard_size = 2,
593 .cacheline_size = I915_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300594};
Ville Syrjälä9d539102014-08-15 01:21:53 +0300595static const struct intel_watermark_params i830_a_wm_info = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300596 .fifo_size = I855GM_FIFO_SIZE,
597 .max_wm = I915_MAX_WM,
598 .default_wm = 1,
599 .guard_size = 2,
600 .cacheline_size = I830_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300601};
Ville Syrjälä9d539102014-08-15 01:21:53 +0300602static const struct intel_watermark_params i830_bc_wm_info = {
603 .fifo_size = I855GM_FIFO_SIZE,
604 .max_wm = I915_MAX_WM/2,
605 .default_wm = 1,
606 .guard_size = 2,
607 .cacheline_size = I830_FIFO_LINE_SIZE,
608};
Daniel Vetterfeb56b92013-12-14 20:38:30 -0200609static const struct intel_watermark_params i845_wm_info = {
Ville Syrjäläe0f02732014-06-05 19:15:50 +0300610 .fifo_size = I830_FIFO_SIZE,
611 .max_wm = I915_MAX_WM,
612 .default_wm = 1,
613 .guard_size = 2,
614 .cacheline_size = I830_FIFO_LINE_SIZE,
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300615};
616
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300617/**
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +0300618 * intel_wm_method1 - Method 1 / "small buffer" watermark formula
619 * @pixel_rate: Pipe pixel rate in kHz
620 * @cpp: Plane bytes per pixel
621 * @latency: Memory wakeup latency in 0.1us units
622 *
623 * Compute the watermark using the method 1 or "small buffer"
624 * formula. The caller may additonally add extra cachelines
625 * to account for TLB misses and clock crossings.
626 *
627 * This method is concerned with the short term drain rate
628 * of the FIFO, ie. it does not account for blanking periods
629 * which would effectively reduce the average drain rate across
630 * a longer period. The name "small" refers to the fact the
631 * FIFO is relatively small compared to the amount of data
632 * fetched.
633 *
634 * The FIFO level vs. time graph might look something like:
635 *
636 * |\ |\
637 * | \ | \
638 * __---__---__ (- plane active, _ blanking)
639 * -> time
640 *
641 * or perhaps like this:
642 *
643 * |\|\ |\|\
644 * __----__----__ (- plane active, _ blanking)
645 * -> time
646 *
647 * Returns:
648 * The watermark in bytes
649 */
650static unsigned int intel_wm_method1(unsigned int pixel_rate,
651 unsigned int cpp,
652 unsigned int latency)
653{
654 uint64_t ret;
655
656 ret = (uint64_t) pixel_rate * cpp * latency;
657 ret = DIV_ROUND_UP_ULL(ret, 10000);
658
659 return ret;
660}
661
662/**
663 * intel_wm_method2 - Method 2 / "large buffer" watermark formula
664 * @pixel_rate: Pipe pixel rate in kHz
665 * @htotal: Pipe horizontal total
666 * @width: Plane width in pixels
667 * @cpp: Plane bytes per pixel
668 * @latency: Memory wakeup latency in 0.1us units
669 *
670 * Compute the watermark using the method 2 or "large buffer"
671 * formula. The caller may additonally add extra cachelines
672 * to account for TLB misses and clock crossings.
673 *
674 * This method is concerned with the long term drain rate
675 * of the FIFO, ie. it does account for blanking periods
676 * which effectively reduce the average drain rate across
677 * a longer period. The name "large" refers to the fact the
678 * FIFO is relatively large compared to the amount of data
679 * fetched.
680 *
681 * The FIFO level vs. time graph might look something like:
682 *
683 * |\___ |\___
684 * | \___ | \___
685 * | \ | \
686 * __ --__--__--__--__--__--__ (- plane active, _ blanking)
687 * -> time
688 *
689 * Returns:
690 * The watermark in bytes
691 */
692static unsigned int intel_wm_method2(unsigned int pixel_rate,
693 unsigned int htotal,
694 unsigned int width,
695 unsigned int cpp,
696 unsigned int latency)
697{
698 unsigned int ret;
699
700 /*
701 * FIXME remove once all users are computing
702 * watermarks in the correct place.
703 */
704 if (WARN_ON_ONCE(htotal == 0))
705 htotal = 1;
706
707 ret = (latency * pixel_rate) / (htotal * 10000);
708 ret = (ret + 1) * width * cpp;
709
710 return ret;
711}
712
713/**
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300714 * intel_calculate_wm - calculate watermark level
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +0300715 * @pixel_rate: pixel clock
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300716 * @wm: chip FIFO params
Ville Syrjäläac484962016-01-20 21:05:26 +0200717 * @cpp: bytes per pixel
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300718 * @latency_ns: memory latency for the platform
719 *
720 * Calculate the watermark level (the level at which the display plane will
721 * start fetching from memory again). Each chip has a different display
722 * FIFO size and allocation, so the caller needs to figure that out and pass
723 * in the correct intel_watermark_params structure.
724 *
725 * As the pixel clock runs, the FIFO will be drained at a rate that depends
726 * on the pixel size. When it reaches the watermark level, it'll start
727 * fetching FIFO line sized based chunks from memory until the FIFO fills
728 * past the watermark point. If the FIFO drains completely, a FIFO underrun
729 * will occur, and a display engine hang could result.
730 */
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +0300731static unsigned int intel_calculate_wm(int pixel_rate,
732 const struct intel_watermark_params *wm,
733 int fifo_size, int cpp,
734 unsigned int latency_ns)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300735{
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +0300736 int entries, wm_size;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300737
738 /*
739 * Note: we need to make sure we don't overflow for various clock &
740 * latency values.
741 * clocks go from a few thousand to several hundred thousand.
742 * latency is usually a few thousand
743 */
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +0300744 entries = intel_wm_method1(pixel_rate, cpp,
745 latency_ns / 100);
746 entries = DIV_ROUND_UP(entries, wm->cacheline_size) +
747 wm->guard_size;
748 DRM_DEBUG_KMS("FIFO entries required for mode: %d\n", entries);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300749
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +0300750 wm_size = fifo_size - entries;
751 DRM_DEBUG_KMS("FIFO watermark level: %d\n", wm_size);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300752
753 /* Don't promote wm_size to unsigned... */
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +0300754 if (wm_size > wm->max_wm)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300755 wm_size = wm->max_wm;
756 if (wm_size <= 0)
757 wm_size = wm->default_wm;
Ville Syrjäläd6feb192014-09-05 21:54:13 +0300758
759 /*
760 * Bspec seems to indicate that the value shouldn't be lower than
761 * 'burst size + 1'. Certainly 830 is quite unhappy with low values.
762 * Lets go for 8 which is the burst size since certain platforms
763 * already use a hardcoded 8 (which is what the spec says should be
764 * done).
765 */
766 if (wm_size <= 8)
767 wm_size = 8;
768
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300769 return wm_size;
770}
771
Ville Syrjälä04548cb2017-04-21 21:14:29 +0300772static bool is_disabling(int old, int new, int threshold)
773{
774 return old >= threshold && new < threshold;
775}
776
777static bool is_enabling(int old, int new, int threshold)
778{
779 return old < threshold && new >= threshold;
780}
781
Ville Syrjälä6d5019b2017-04-21 21:14:20 +0300782static int intel_wm_num_levels(struct drm_i915_private *dev_priv)
783{
784 return dev_priv->wm.max_level + 1;
785}
786
Ville Syrjälä24304d82017-03-14 17:10:49 +0200787static bool intel_wm_plane_visible(const struct intel_crtc_state *crtc_state,
788 const struct intel_plane_state *plane_state)
789{
790 struct intel_plane *plane = to_intel_plane(plane_state->base.plane);
791
792 /* FIXME check the 'enable' instead */
793 if (!crtc_state->base.active)
794 return false;
795
796 /*
797 * Treat cursor with fb as always visible since cursor updates
798 * can happen faster than the vrefresh rate, and the current
799 * watermark code doesn't handle that correctly. Cursor updates
800 * which set/clear the fb or change the cursor size are going
801 * to get throttled by intel_legacy_cursor_update() to work
802 * around this problem with the watermark code.
803 */
804 if (plane->id == PLANE_CURSOR)
805 return plane_state->base.fb != NULL;
806 else
807 return plane_state->base.visible;
808}
809
Ville Syrjäläffc7a762016-10-31 22:37:21 +0200810static struct intel_crtc *single_enabled_crtc(struct drm_i915_private *dev_priv)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300811{
Ville Syrjäläefc26112016-10-31 22:37:04 +0200812 struct intel_crtc *crtc, *enabled = NULL;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300813
Ville Syrjäläffc7a762016-10-31 22:37:21 +0200814 for_each_intel_crtc(&dev_priv->drm, crtc) {
Ville Syrjäläefc26112016-10-31 22:37:04 +0200815 if (intel_crtc_active(crtc)) {
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300816 if (enabled)
817 return NULL;
818 enabled = crtc;
819 }
820 }
821
822 return enabled;
823}
824
Ville Syrjälä432081b2016-10-31 22:37:03 +0200825static void pineview_update_wm(struct intel_crtc *unused_crtc)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300826{
Ville Syrjäläffc7a762016-10-31 22:37:21 +0200827 struct drm_i915_private *dev_priv = to_i915(unused_crtc->base.dev);
Ville Syrjäläefc26112016-10-31 22:37:04 +0200828 struct intel_crtc *crtc;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300829 const struct cxsr_latency *latency;
830 u32 reg;
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +0300831 unsigned int wm;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300832
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +0100833 latency = intel_get_cxsr_latency(IS_PINEVIEW_G(dev_priv),
834 dev_priv->is_ddr3,
835 dev_priv->fsb_freq,
836 dev_priv->mem_freq);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300837 if (!latency) {
838 DRM_DEBUG_KMS("Unknown FSB/MEM found, disable CxSR\n");
Imre Deak5209b1f2014-07-01 12:36:17 +0300839 intel_set_memory_cxsr(dev_priv, false);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300840 return;
841 }
842
Ville Syrjäläffc7a762016-10-31 22:37:21 +0200843 crtc = single_enabled_crtc(dev_priv);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300844 if (crtc) {
Ville Syrjäläefc26112016-10-31 22:37:04 +0200845 const struct drm_display_mode *adjusted_mode =
846 &crtc->config->base.adjusted_mode;
847 const struct drm_framebuffer *fb =
848 crtc->base.primary->state->fb;
Ville Syrjälä353c8592016-12-14 23:30:57 +0200849 int cpp = fb->format->cpp[0];
Ville Syrjälä7c5f93b2015-09-08 13:40:49 +0300850 int clock = adjusted_mode->crtc_clock;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300851
852 /* Display SR */
853 wm = intel_calculate_wm(clock, &pineview_display_wm,
854 pineview_display_wm.fifo_size,
Ville Syrjäläac484962016-01-20 21:05:26 +0200855 cpp, latency->display_sr);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300856 reg = I915_READ(DSPFW1);
857 reg &= ~DSPFW_SR_MASK;
Ville Syrjäläf4998962015-03-10 17:02:21 +0200858 reg |= FW_WM(wm, SR);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300859 I915_WRITE(DSPFW1, reg);
860 DRM_DEBUG_KMS("DSPFW1 register is %x\n", reg);
861
862 /* cursor SR */
863 wm = intel_calculate_wm(clock, &pineview_cursor_wm,
864 pineview_display_wm.fifo_size,
Ville Syrjälä99834b12017-04-21 21:14:24 +0300865 4, latency->cursor_sr);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300866 reg = I915_READ(DSPFW3);
867 reg &= ~DSPFW_CURSOR_SR_MASK;
Ville Syrjäläf4998962015-03-10 17:02:21 +0200868 reg |= FW_WM(wm, CURSOR_SR);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300869 I915_WRITE(DSPFW3, reg);
870
871 /* Display HPLL off SR */
872 wm = intel_calculate_wm(clock, &pineview_display_hplloff_wm,
873 pineview_display_hplloff_wm.fifo_size,
Ville Syrjäläac484962016-01-20 21:05:26 +0200874 cpp, latency->display_hpll_disable);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300875 reg = I915_READ(DSPFW3);
876 reg &= ~DSPFW_HPLL_SR_MASK;
Ville Syrjäläf4998962015-03-10 17:02:21 +0200877 reg |= FW_WM(wm, HPLL_SR);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300878 I915_WRITE(DSPFW3, reg);
879
880 /* cursor HPLL off SR */
881 wm = intel_calculate_wm(clock, &pineview_cursor_hplloff_wm,
882 pineview_display_hplloff_wm.fifo_size,
Ville Syrjälä99834b12017-04-21 21:14:24 +0300883 4, latency->cursor_hpll_disable);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300884 reg = I915_READ(DSPFW3);
885 reg &= ~DSPFW_HPLL_CURSOR_MASK;
Ville Syrjäläf4998962015-03-10 17:02:21 +0200886 reg |= FW_WM(wm, HPLL_CURSOR);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300887 I915_WRITE(DSPFW3, reg);
888 DRM_DEBUG_KMS("DSPFW3 register is %x\n", reg);
889
Imre Deak5209b1f2014-07-01 12:36:17 +0300890 intel_set_memory_cxsr(dev_priv, true);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300891 } else {
Imre Deak5209b1f2014-07-01 12:36:17 +0300892 intel_set_memory_cxsr(dev_priv, false);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300893 }
894}
895
Ville Syrjälä0f95ff82017-04-21 21:14:26 +0300896/*
897 * Documentation says:
898 * "If the line size is small, the TLB fetches can get in the way of the
899 * data fetches, causing some lag in the pixel data return which is not
900 * accounted for in the above formulas. The following adjustment only
901 * needs to be applied if eight whole lines fit in the buffer at once.
902 * The WM is adjusted upwards by the difference between the FIFO size
903 * and the size of 8 whole lines. This adjustment is always performed
904 * in the actual pixel depth regardless of whether FBC is enabled or not."
905 */
906static int g4x_tlb_miss_wa(int fifo_size, int width, int cpp)
907{
908 int tlb_miss = fifo_size * 64 - width * cpp * 8;
909
910 return max(0, tlb_miss);
911}
912
Ville Syrjälä04548cb2017-04-21 21:14:29 +0300913static void g4x_write_wm_values(struct drm_i915_private *dev_priv,
914 const struct g4x_wm_values *wm)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300915{
Ville Syrjäläe93329a2017-04-21 21:14:31 +0300916 enum pipe pipe;
917
918 for_each_pipe(dev_priv, pipe)
919 trace_g4x_wm(intel_get_crtc_for_pipe(dev_priv, pipe), wm);
920
Ville Syrjälä04548cb2017-04-21 21:14:29 +0300921 I915_WRITE(DSPFW1,
922 FW_WM(wm->sr.plane, SR) |
923 FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) |
924 FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) |
925 FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA));
926 I915_WRITE(DSPFW2,
927 (wm->fbc_en ? DSPFW_FBC_SR_EN : 0) |
928 FW_WM(wm->sr.fbc, FBC_SR) |
929 FW_WM(wm->hpll.fbc, FBC_HPLL_SR) |
930 FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEB) |
931 FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) |
932 FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA));
933 I915_WRITE(DSPFW3,
934 (wm->hpll_en ? DSPFW_HPLL_SR_EN : 0) |
935 FW_WM(wm->sr.cursor, CURSOR_SR) |
936 FW_WM(wm->hpll.cursor, HPLL_CURSOR) |
937 FW_WM(wm->hpll.plane, HPLL_SR));
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300938
Ville Syrjälä04548cb2017-04-21 21:14:29 +0300939 POSTING_READ(DSPFW1);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -0300940}
941
Ville Syrjälä15665972015-03-10 16:16:28 +0200942#define FW_WM_VLV(value, plane) \
943 (((value) << DSPFW_ ## plane ## _SHIFT) & DSPFW_ ## plane ## _MASK_VLV)
944
Ville Syrjälä50f4cae2016-11-28 19:37:15 +0200945static void vlv_write_wm_values(struct drm_i915_private *dev_priv,
Ville Syrjälä0018fda2015-03-05 21:19:45 +0200946 const struct vlv_wm_values *wm)
947{
Ville Syrjälä50f4cae2016-11-28 19:37:15 +0200948 enum pipe pipe;
Ville Syrjälä0018fda2015-03-05 21:19:45 +0200949
Ville Syrjälä50f4cae2016-11-28 19:37:15 +0200950 for_each_pipe(dev_priv, pipe) {
Ville Syrjäläc137d662017-03-02 19:15:06 +0200951 trace_vlv_wm(intel_get_crtc_for_pipe(dev_priv, pipe), wm);
952
Ville Syrjälä50f4cae2016-11-28 19:37:15 +0200953 I915_WRITE(VLV_DDL(pipe),
954 (wm->ddl[pipe].plane[PLANE_CURSOR] << DDL_CURSOR_SHIFT) |
955 (wm->ddl[pipe].plane[PLANE_SPRITE1] << DDL_SPRITE_SHIFT(1)) |
956 (wm->ddl[pipe].plane[PLANE_SPRITE0] << DDL_SPRITE_SHIFT(0)) |
957 (wm->ddl[pipe].plane[PLANE_PRIMARY] << DDL_PLANE_SHIFT));
958 }
Ville Syrjälä0018fda2015-03-05 21:19:45 +0200959
Ville Syrjälä6fe6a7f2016-11-28 19:37:14 +0200960 /*
961 * Zero the (unused) WM1 watermarks, and also clear all the
962 * high order bits so that there are no out of bounds values
963 * present in the registers during the reprogramming.
964 */
965 I915_WRITE(DSPHOWM, 0);
966 I915_WRITE(DSPHOWM1, 0);
967 I915_WRITE(DSPFW4, 0);
968 I915_WRITE(DSPFW5, 0);
969 I915_WRITE(DSPFW6, 0);
970
Ville Syrjäläae801522015-03-05 21:19:49 +0200971 I915_WRITE(DSPFW1,
Ville Syrjälä15665972015-03-10 16:16:28 +0200972 FW_WM(wm->sr.plane, SR) |
Ville Syrjälä1b313892016-11-28 19:37:08 +0200973 FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) |
974 FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) |
975 FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA));
Ville Syrjäläae801522015-03-05 21:19:49 +0200976 I915_WRITE(DSPFW2,
Ville Syrjälä1b313892016-11-28 19:37:08 +0200977 FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE1], SPRITEB) |
978 FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) |
979 FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA));
Ville Syrjäläae801522015-03-05 21:19:49 +0200980 I915_WRITE(DSPFW3,
Ville Syrjälä15665972015-03-10 16:16:28 +0200981 FW_WM(wm->sr.cursor, CURSOR_SR));
Ville Syrjäläae801522015-03-05 21:19:49 +0200982
983 if (IS_CHERRYVIEW(dev_priv)) {
984 I915_WRITE(DSPFW7_CHV,
Ville Syrjälä1b313892016-11-28 19:37:08 +0200985 FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) |
986 FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC));
Ville Syrjäläae801522015-03-05 21:19:49 +0200987 I915_WRITE(DSPFW8_CHV,
Ville Syrjälä1b313892016-11-28 19:37:08 +0200988 FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE1], SPRITEF) |
989 FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE0], SPRITEE));
Ville Syrjäläae801522015-03-05 21:19:49 +0200990 I915_WRITE(DSPFW9_CHV,
Ville Syrjälä1b313892016-11-28 19:37:08 +0200991 FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_PRIMARY], PLANEC) |
992 FW_WM(wm->pipe[PIPE_C].plane[PLANE_CURSOR], CURSORC));
Ville Syrjäläae801522015-03-05 21:19:49 +0200993 I915_WRITE(DSPHOWM,
Ville Syrjälä15665972015-03-10 16:16:28 +0200994 FW_WM(wm->sr.plane >> 9, SR_HI) |
Ville Syrjälä1b313892016-11-28 19:37:08 +0200995 FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE1] >> 8, SPRITEF_HI) |
996 FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE0] >> 8, SPRITEE_HI) |
997 FW_WM(wm->pipe[PIPE_C].plane[PLANE_PRIMARY] >> 8, PLANEC_HI) |
998 FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) |
999 FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) |
1000 FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) |
1001 FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) |
1002 FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) |
1003 FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI));
Ville Syrjäläae801522015-03-05 21:19:49 +02001004 } else {
1005 I915_WRITE(DSPFW7,
Ville Syrjälä1b313892016-11-28 19:37:08 +02001006 FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) |
1007 FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC));
Ville Syrjäläae801522015-03-05 21:19:49 +02001008 I915_WRITE(DSPHOWM,
Ville Syrjälä15665972015-03-10 16:16:28 +02001009 FW_WM(wm->sr.plane >> 9, SR_HI) |
Ville Syrjälä1b313892016-11-28 19:37:08 +02001010 FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) |
1011 FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) |
1012 FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) |
1013 FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) |
1014 FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) |
1015 FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI));
Ville Syrjäläae801522015-03-05 21:19:49 +02001016 }
1017
1018 POSTING_READ(DSPFW1);
Ville Syrjälä0018fda2015-03-05 21:19:45 +02001019}
1020
Ville Syrjälä15665972015-03-10 16:16:28 +02001021#undef FW_WM_VLV
1022
Ville Syrjälä04548cb2017-04-21 21:14:29 +03001023static void g4x_setup_wm_latency(struct drm_i915_private *dev_priv)
1024{
1025 /* all latencies in usec */
1026 dev_priv->wm.pri_latency[G4X_WM_LEVEL_NORMAL] = 5;
1027 dev_priv->wm.pri_latency[G4X_WM_LEVEL_SR] = 12;
Ville Syrjälä79d94302017-04-21 21:14:30 +03001028 dev_priv->wm.pri_latency[G4X_WM_LEVEL_HPLL] = 35;
Ville Syrjälä04548cb2017-04-21 21:14:29 +03001029
Ville Syrjälä79d94302017-04-21 21:14:30 +03001030 dev_priv->wm.max_level = G4X_WM_LEVEL_HPLL;
Ville Syrjälä04548cb2017-04-21 21:14:29 +03001031}
1032
1033static int g4x_plane_fifo_size(enum plane_id plane_id, int level)
1034{
1035 /*
1036 * DSPCNTR[13] supposedly controls whether the
1037 * primary plane can use the FIFO space otherwise
1038 * reserved for the sprite plane. It's not 100% clear
1039 * what the actual FIFO size is, but it looks like we
1040 * can happily set both primary and sprite watermarks
1041 * up to 127 cachelines. So that would seem to mean
1042 * that either DSPCNTR[13] doesn't do anything, or that
1043 * the total FIFO is >= 256 cachelines in size. Either
1044 * way, we don't seem to have to worry about this
1045 * repartitioning as the maximum watermark value the
1046 * register can hold for each plane is lower than the
1047 * minimum FIFO size.
1048 */
1049 switch (plane_id) {
1050 case PLANE_CURSOR:
1051 return 63;
1052 case PLANE_PRIMARY:
1053 return level == G4X_WM_LEVEL_NORMAL ? 127 : 511;
1054 case PLANE_SPRITE0:
1055 return level == G4X_WM_LEVEL_NORMAL ? 127 : 0;
1056 default:
1057 MISSING_CASE(plane_id);
1058 return 0;
1059 }
1060}
1061
1062static int g4x_fbc_fifo_size(int level)
1063{
1064 switch (level) {
1065 case G4X_WM_LEVEL_SR:
1066 return 7;
1067 case G4X_WM_LEVEL_HPLL:
1068 return 15;
1069 default:
1070 MISSING_CASE(level);
1071 return 0;
1072 }
1073}
1074
1075static uint16_t g4x_compute_wm(const struct intel_crtc_state *crtc_state,
1076 const struct intel_plane_state *plane_state,
1077 int level)
1078{
1079 struct intel_plane *plane = to_intel_plane(plane_state->base.plane);
1080 struct drm_i915_private *dev_priv = to_i915(plane->base.dev);
1081 const struct drm_display_mode *adjusted_mode =
1082 &crtc_state->base.adjusted_mode;
1083 int clock, htotal, cpp, width, wm;
1084 int latency = dev_priv->wm.pri_latency[level] * 10;
1085
1086 if (latency == 0)
1087 return USHRT_MAX;
1088
1089 if (!intel_wm_plane_visible(crtc_state, plane_state))
1090 return 0;
1091
1092 /*
1093 * Not 100% sure which way ELK should go here as the
1094 * spec only says CL/CTG should assume 32bpp and BW
1095 * doesn't need to. But as these things followed the
1096 * mobile vs. desktop lines on gen3 as well, let's
1097 * assume ELK doesn't need this.
1098 *
1099 * The spec also fails to list such a restriction for
1100 * the HPLL watermark, which seems a little strange.
1101 * Let's use 32bpp for the HPLL watermark as well.
1102 */
1103 if (IS_GM45(dev_priv) && plane->id == PLANE_PRIMARY &&
1104 level != G4X_WM_LEVEL_NORMAL)
1105 cpp = 4;
1106 else
1107 cpp = plane_state->base.fb->format->cpp[0];
1108
1109 clock = adjusted_mode->crtc_clock;
1110 htotal = adjusted_mode->crtc_htotal;
1111
1112 if (plane->id == PLANE_CURSOR)
1113 width = plane_state->base.crtc_w;
1114 else
1115 width = drm_rect_width(&plane_state->base.dst);
1116
1117 if (plane->id == PLANE_CURSOR) {
1118 wm = intel_wm_method2(clock, htotal, width, cpp, latency);
1119 } else if (plane->id == PLANE_PRIMARY &&
1120 level == G4X_WM_LEVEL_NORMAL) {
1121 wm = intel_wm_method1(clock, cpp, latency);
1122 } else {
1123 int small, large;
1124
1125 small = intel_wm_method1(clock, cpp, latency);
1126 large = intel_wm_method2(clock, htotal, width, cpp, latency);
1127
1128 wm = min(small, large);
1129 }
1130
1131 wm += g4x_tlb_miss_wa(g4x_plane_fifo_size(plane->id, level),
1132 width, cpp);
1133
1134 wm = DIV_ROUND_UP(wm, 64) + 2;
1135
1136 return min_t(int, wm, USHRT_MAX);
1137}
1138
1139static bool g4x_raw_plane_wm_set(struct intel_crtc_state *crtc_state,
1140 int level, enum plane_id plane_id, u16 value)
1141{
1142 struct drm_i915_private *dev_priv = to_i915(crtc_state->base.crtc->dev);
1143 bool dirty = false;
1144
1145 for (; level < intel_wm_num_levels(dev_priv); level++) {
1146 struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level];
1147
1148 dirty |= raw->plane[plane_id] != value;
1149 raw->plane[plane_id] = value;
1150 }
1151
1152 return dirty;
1153}
1154
1155static bool g4x_raw_fbc_wm_set(struct intel_crtc_state *crtc_state,
1156 int level, u16 value)
1157{
1158 struct drm_i915_private *dev_priv = to_i915(crtc_state->base.crtc->dev);
1159 bool dirty = false;
1160
1161 /* NORMAL level doesn't have an FBC watermark */
1162 level = max(level, G4X_WM_LEVEL_SR);
1163
1164 for (; level < intel_wm_num_levels(dev_priv); level++) {
1165 struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level];
1166
1167 dirty |= raw->fbc != value;
1168 raw->fbc = value;
1169 }
1170
1171 return dirty;
1172}
1173
1174static uint32_t ilk_compute_fbc_wm(const struct intel_crtc_state *cstate,
1175 const struct intel_plane_state *pstate,
1176 uint32_t pri_val);
1177
1178static bool g4x_raw_plane_wm_compute(struct intel_crtc_state *crtc_state,
1179 const struct intel_plane_state *plane_state)
1180{
1181 struct intel_plane *plane = to_intel_plane(plane_state->base.plane);
1182 int num_levels = intel_wm_num_levels(to_i915(plane->base.dev));
1183 enum plane_id plane_id = plane->id;
1184 bool dirty = false;
1185 int level;
1186
1187 if (!intel_wm_plane_visible(crtc_state, plane_state)) {
1188 dirty |= g4x_raw_plane_wm_set(crtc_state, 0, plane_id, 0);
1189 if (plane_id == PLANE_PRIMARY)
1190 dirty |= g4x_raw_fbc_wm_set(crtc_state, 0, 0);
1191 goto out;
1192 }
1193
1194 for (level = 0; level < num_levels; level++) {
1195 struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level];
1196 int wm, max_wm;
1197
1198 wm = g4x_compute_wm(crtc_state, plane_state, level);
1199 max_wm = g4x_plane_fifo_size(plane_id, level);
1200
1201 if (wm > max_wm)
1202 break;
1203
1204 dirty |= raw->plane[plane_id] != wm;
1205 raw->plane[plane_id] = wm;
1206
1207 if (plane_id != PLANE_PRIMARY ||
1208 level == G4X_WM_LEVEL_NORMAL)
1209 continue;
1210
1211 wm = ilk_compute_fbc_wm(crtc_state, plane_state,
1212 raw->plane[plane_id]);
1213 max_wm = g4x_fbc_fifo_size(level);
1214
1215 /*
1216 * FBC wm is not mandatory as we
1217 * can always just disable its use.
1218 */
1219 if (wm > max_wm)
1220 wm = USHRT_MAX;
1221
1222 dirty |= raw->fbc != wm;
1223 raw->fbc = wm;
1224 }
1225
1226 /* mark watermarks as invalid */
1227 dirty |= g4x_raw_plane_wm_set(crtc_state, level, plane_id, USHRT_MAX);
1228
1229 if (plane_id == PLANE_PRIMARY)
1230 dirty |= g4x_raw_fbc_wm_set(crtc_state, level, USHRT_MAX);
1231
1232 out:
1233 if (dirty) {
1234 DRM_DEBUG_KMS("%s watermarks: normal=%d, SR=%d, HPLL=%d\n",
1235 plane->base.name,
1236 crtc_state->wm.g4x.raw[G4X_WM_LEVEL_NORMAL].plane[plane_id],
1237 crtc_state->wm.g4x.raw[G4X_WM_LEVEL_SR].plane[plane_id],
1238 crtc_state->wm.g4x.raw[G4X_WM_LEVEL_HPLL].plane[plane_id]);
1239
1240 if (plane_id == PLANE_PRIMARY)
1241 DRM_DEBUG_KMS("FBC watermarks: SR=%d, HPLL=%d\n",
1242 crtc_state->wm.g4x.raw[G4X_WM_LEVEL_SR].fbc,
1243 crtc_state->wm.g4x.raw[G4X_WM_LEVEL_HPLL].fbc);
1244 }
1245
1246 return dirty;
1247}
1248
1249static bool g4x_raw_plane_wm_is_valid(const struct intel_crtc_state *crtc_state,
1250 enum plane_id plane_id, int level)
1251{
1252 const struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level];
1253
1254 return raw->plane[plane_id] <= g4x_plane_fifo_size(plane_id, level);
1255}
1256
1257static bool g4x_raw_crtc_wm_is_valid(const struct intel_crtc_state *crtc_state,
1258 int level)
1259{
1260 struct drm_i915_private *dev_priv = to_i915(crtc_state->base.crtc->dev);
1261
1262 if (level > dev_priv->wm.max_level)
1263 return false;
1264
1265 return g4x_raw_plane_wm_is_valid(crtc_state, PLANE_PRIMARY, level) &&
1266 g4x_raw_plane_wm_is_valid(crtc_state, PLANE_SPRITE0, level) &&
1267 g4x_raw_plane_wm_is_valid(crtc_state, PLANE_CURSOR, level);
1268}
1269
1270/* mark all levels starting from 'level' as invalid */
1271static void g4x_invalidate_wms(struct intel_crtc *crtc,
1272 struct g4x_wm_state *wm_state, int level)
1273{
1274 if (level <= G4X_WM_LEVEL_NORMAL) {
1275 enum plane_id plane_id;
1276
1277 for_each_plane_id_on_crtc(crtc, plane_id)
1278 wm_state->wm.plane[plane_id] = USHRT_MAX;
1279 }
1280
1281 if (level <= G4X_WM_LEVEL_SR) {
1282 wm_state->cxsr = false;
1283 wm_state->sr.cursor = USHRT_MAX;
1284 wm_state->sr.plane = USHRT_MAX;
1285 wm_state->sr.fbc = USHRT_MAX;
1286 }
1287
1288 if (level <= G4X_WM_LEVEL_HPLL) {
1289 wm_state->hpll_en = false;
1290 wm_state->hpll.cursor = USHRT_MAX;
1291 wm_state->hpll.plane = USHRT_MAX;
1292 wm_state->hpll.fbc = USHRT_MAX;
1293 }
1294}
1295
1296static int g4x_compute_pipe_wm(struct intel_crtc_state *crtc_state)
1297{
1298 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
1299 struct intel_atomic_state *state =
1300 to_intel_atomic_state(crtc_state->base.state);
1301 struct g4x_wm_state *wm_state = &crtc_state->wm.g4x.optimal;
1302 int num_active_planes = hweight32(crtc_state->active_planes &
1303 ~BIT(PLANE_CURSOR));
1304 const struct g4x_pipe_wm *raw;
1305 struct intel_plane_state *plane_state;
1306 struct intel_plane *plane;
1307 enum plane_id plane_id;
1308 int i, level;
1309 unsigned int dirty = 0;
1310
1311 for_each_intel_plane_in_state(state, plane, plane_state, i) {
1312 const struct intel_plane_state *old_plane_state =
1313 to_intel_plane_state(plane->base.state);
1314
1315 if (plane_state->base.crtc != &crtc->base &&
1316 old_plane_state->base.crtc != &crtc->base)
1317 continue;
1318
1319 if (g4x_raw_plane_wm_compute(crtc_state, plane_state))
1320 dirty |= BIT(plane->id);
1321 }
1322
1323 if (!dirty)
1324 return 0;
1325
1326 level = G4X_WM_LEVEL_NORMAL;
1327 if (!g4x_raw_crtc_wm_is_valid(crtc_state, level))
1328 goto out;
1329
1330 raw = &crtc_state->wm.g4x.raw[level];
1331 for_each_plane_id_on_crtc(crtc, plane_id)
1332 wm_state->wm.plane[plane_id] = raw->plane[plane_id];
1333
1334 level = G4X_WM_LEVEL_SR;
1335
1336 if (!g4x_raw_crtc_wm_is_valid(crtc_state, level))
1337 goto out;
1338
1339 raw = &crtc_state->wm.g4x.raw[level];
1340 wm_state->sr.plane = raw->plane[PLANE_PRIMARY];
1341 wm_state->sr.cursor = raw->plane[PLANE_CURSOR];
1342 wm_state->sr.fbc = raw->fbc;
1343
1344 wm_state->cxsr = num_active_planes == BIT(PLANE_PRIMARY);
1345
1346 level = G4X_WM_LEVEL_HPLL;
1347
1348 if (!g4x_raw_crtc_wm_is_valid(crtc_state, level))
1349 goto out;
1350
1351 raw = &crtc_state->wm.g4x.raw[level];
1352 wm_state->hpll.plane = raw->plane[PLANE_PRIMARY];
1353 wm_state->hpll.cursor = raw->plane[PLANE_CURSOR];
1354 wm_state->hpll.fbc = raw->fbc;
1355
1356 wm_state->hpll_en = wm_state->cxsr;
1357
1358 level++;
1359
1360 out:
1361 if (level == G4X_WM_LEVEL_NORMAL)
1362 return -EINVAL;
1363
1364 /* invalidate the higher levels */
1365 g4x_invalidate_wms(crtc, wm_state, level);
1366
1367 /*
1368 * Determine if the FBC watermark(s) can be used. IF
1369 * this isn't the case we prefer to disable the FBC
1370 ( watermark(s) rather than disable the SR/HPLL
1371 * level(s) entirely.
1372 */
1373 wm_state->fbc_en = level > G4X_WM_LEVEL_NORMAL;
1374
1375 if (level >= G4X_WM_LEVEL_SR &&
1376 wm_state->sr.fbc > g4x_fbc_fifo_size(G4X_WM_LEVEL_SR))
1377 wm_state->fbc_en = false;
1378 else if (level >= G4X_WM_LEVEL_HPLL &&
1379 wm_state->hpll.fbc > g4x_fbc_fifo_size(G4X_WM_LEVEL_HPLL))
1380 wm_state->fbc_en = false;
1381
1382 return 0;
1383}
1384
1385static int g4x_compute_intermediate_wm(struct drm_device *dev,
1386 struct intel_crtc *crtc,
1387 struct intel_crtc_state *crtc_state)
1388{
1389 struct g4x_wm_state *intermediate = &crtc_state->wm.g4x.intermediate;
1390 const struct g4x_wm_state *optimal = &crtc_state->wm.g4x.optimal;
1391 const struct g4x_wm_state *active = &crtc->wm.active.g4x;
1392 enum plane_id plane_id;
1393
1394 intermediate->cxsr = optimal->cxsr && active->cxsr &&
1395 !crtc_state->disable_cxsr;
1396 intermediate->hpll_en = optimal->hpll_en && active->hpll_en &&
1397 !crtc_state->disable_cxsr;
1398 intermediate->fbc_en = optimal->fbc_en && active->fbc_en;
1399
1400 for_each_plane_id_on_crtc(crtc, plane_id) {
1401 intermediate->wm.plane[plane_id] =
1402 max(optimal->wm.plane[plane_id],
1403 active->wm.plane[plane_id]);
1404
1405 WARN_ON(intermediate->wm.plane[plane_id] >
1406 g4x_plane_fifo_size(plane_id, G4X_WM_LEVEL_NORMAL));
1407 }
1408
1409 intermediate->sr.plane = max(optimal->sr.plane,
1410 active->sr.plane);
1411 intermediate->sr.cursor = max(optimal->sr.cursor,
1412 active->sr.cursor);
1413 intermediate->sr.fbc = max(optimal->sr.fbc,
1414 active->sr.fbc);
1415
1416 intermediate->hpll.plane = max(optimal->hpll.plane,
1417 active->hpll.plane);
1418 intermediate->hpll.cursor = max(optimal->hpll.cursor,
1419 active->hpll.cursor);
1420 intermediate->hpll.fbc = max(optimal->hpll.fbc,
1421 active->hpll.fbc);
1422
1423 WARN_ON((intermediate->sr.plane >
1424 g4x_plane_fifo_size(PLANE_PRIMARY, G4X_WM_LEVEL_SR) ||
1425 intermediate->sr.cursor >
1426 g4x_plane_fifo_size(PLANE_CURSOR, G4X_WM_LEVEL_SR)) &&
1427 intermediate->cxsr);
1428 WARN_ON((intermediate->sr.plane >
1429 g4x_plane_fifo_size(PLANE_PRIMARY, G4X_WM_LEVEL_HPLL) ||
1430 intermediate->sr.cursor >
1431 g4x_plane_fifo_size(PLANE_CURSOR, G4X_WM_LEVEL_HPLL)) &&
1432 intermediate->hpll_en);
1433
1434 WARN_ON(intermediate->sr.fbc > g4x_fbc_fifo_size(1) &&
1435 intermediate->fbc_en && intermediate->cxsr);
1436 WARN_ON(intermediate->hpll.fbc > g4x_fbc_fifo_size(2) &&
1437 intermediate->fbc_en && intermediate->hpll_en);
1438
1439 /*
1440 * If our intermediate WM are identical to the final WM, then we can
1441 * omit the post-vblank programming; only update if it's different.
1442 */
1443 if (memcmp(intermediate, optimal, sizeof(*intermediate)) != 0)
1444 crtc_state->wm.need_postvbl_update = true;
1445
1446 return 0;
1447}
1448
1449static void g4x_merge_wm(struct drm_i915_private *dev_priv,
1450 struct g4x_wm_values *wm)
1451{
1452 struct intel_crtc *crtc;
1453 int num_active_crtcs = 0;
1454
1455 wm->cxsr = true;
1456 wm->hpll_en = true;
1457 wm->fbc_en = true;
1458
1459 for_each_intel_crtc(&dev_priv->drm, crtc) {
1460 const struct g4x_wm_state *wm_state = &crtc->wm.active.g4x;
1461
1462 if (!crtc->active)
1463 continue;
1464
1465 if (!wm_state->cxsr)
1466 wm->cxsr = false;
1467 if (!wm_state->hpll_en)
1468 wm->hpll_en = false;
1469 if (!wm_state->fbc_en)
1470 wm->fbc_en = false;
1471
1472 num_active_crtcs++;
1473 }
1474
1475 if (num_active_crtcs != 1) {
1476 wm->cxsr = false;
1477 wm->hpll_en = false;
1478 wm->fbc_en = false;
1479 }
1480
1481 for_each_intel_crtc(&dev_priv->drm, crtc) {
1482 const struct g4x_wm_state *wm_state = &crtc->wm.active.g4x;
1483 enum pipe pipe = crtc->pipe;
1484
1485 wm->pipe[pipe] = wm_state->wm;
1486 if (crtc->active && wm->cxsr)
1487 wm->sr = wm_state->sr;
1488 if (crtc->active && wm->hpll_en)
1489 wm->hpll = wm_state->hpll;
1490 }
1491}
1492
1493static void g4x_program_watermarks(struct drm_i915_private *dev_priv)
1494{
1495 struct g4x_wm_values *old_wm = &dev_priv->wm.g4x;
1496 struct g4x_wm_values new_wm = {};
1497
1498 g4x_merge_wm(dev_priv, &new_wm);
1499
1500 if (memcmp(old_wm, &new_wm, sizeof(new_wm)) == 0)
1501 return;
1502
1503 if (is_disabling(old_wm->cxsr, new_wm.cxsr, true))
1504 _intel_set_memory_cxsr(dev_priv, false);
1505
1506 g4x_write_wm_values(dev_priv, &new_wm);
1507
1508 if (is_enabling(old_wm->cxsr, new_wm.cxsr, true))
1509 _intel_set_memory_cxsr(dev_priv, true);
1510
1511 *old_wm = new_wm;
1512}
1513
1514static void g4x_initial_watermarks(struct intel_atomic_state *state,
1515 struct intel_crtc_state *crtc_state)
1516{
1517 struct drm_i915_private *dev_priv = to_i915(crtc_state->base.crtc->dev);
1518 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
1519
1520 mutex_lock(&dev_priv->wm.wm_mutex);
1521 crtc->wm.active.g4x = crtc_state->wm.g4x.intermediate;
1522 g4x_program_watermarks(dev_priv);
1523 mutex_unlock(&dev_priv->wm.wm_mutex);
1524}
1525
1526static void g4x_optimize_watermarks(struct intel_atomic_state *state,
1527 struct intel_crtc_state *crtc_state)
1528{
1529 struct drm_i915_private *dev_priv = to_i915(crtc_state->base.crtc->dev);
1530 struct intel_crtc *intel_crtc = to_intel_crtc(crtc_state->base.crtc);
1531
1532 if (!crtc_state->wm.need_postvbl_update)
1533 return;
1534
1535 mutex_lock(&dev_priv->wm.wm_mutex);
1536 intel_crtc->wm.active.g4x = crtc_state->wm.g4x.optimal;
1537 g4x_program_watermarks(dev_priv);
1538 mutex_unlock(&dev_priv->wm.wm_mutex);
1539}
1540
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001541/* latency must be in 0.1us units. */
1542static unsigned int vlv_wm_method2(unsigned int pixel_rate,
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03001543 unsigned int htotal,
1544 unsigned int width,
Ville Syrjäläac484962016-01-20 21:05:26 +02001545 unsigned int cpp,
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001546 unsigned int latency)
1547{
1548 unsigned int ret;
1549
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03001550 ret = intel_wm_method2(pixel_rate, htotal,
1551 width, cpp, latency);
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001552 ret = DIV_ROUND_UP(ret, 64);
1553
1554 return ret;
1555}
1556
Ville Syrjäläbb726512016-10-31 22:37:24 +02001557static void vlv_setup_wm_latency(struct drm_i915_private *dev_priv)
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001558{
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001559 /* all latencies in usec */
1560 dev_priv->wm.pri_latency[VLV_WM_LEVEL_PM2] = 3;
1561
Ville Syrjälä58590c12015-09-08 21:05:12 +03001562 dev_priv->wm.max_level = VLV_WM_LEVEL_PM2;
1563
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001564 if (IS_CHERRYVIEW(dev_priv)) {
1565 dev_priv->wm.pri_latency[VLV_WM_LEVEL_PM5] = 12;
1566 dev_priv->wm.pri_latency[VLV_WM_LEVEL_DDR_DVFS] = 33;
Ville Syrjälä58590c12015-09-08 21:05:12 +03001567
1568 dev_priv->wm.max_level = VLV_WM_LEVEL_DDR_DVFS;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001569 }
1570}
1571
Ville Syrjäläe339d672016-11-28 19:37:17 +02001572static uint16_t vlv_compute_wm_level(const struct intel_crtc_state *crtc_state,
1573 const struct intel_plane_state *plane_state,
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001574 int level)
1575{
Ville Syrjäläe339d672016-11-28 19:37:17 +02001576 struct intel_plane *plane = to_intel_plane(plane_state->base.plane);
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001577 struct drm_i915_private *dev_priv = to_i915(plane->base.dev);
Ville Syrjäläe339d672016-11-28 19:37:17 +02001578 const struct drm_display_mode *adjusted_mode =
1579 &crtc_state->base.adjusted_mode;
Ville Syrjäläac484962016-01-20 21:05:26 +02001580 int clock, htotal, cpp, width, wm;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001581
1582 if (dev_priv->wm.pri_latency[level] == 0)
1583 return USHRT_MAX;
1584
Ville Syrjäläa07102f2017-03-03 17:19:27 +02001585 if (!intel_wm_plane_visible(crtc_state, plane_state))
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001586 return 0;
1587
Daniel Vetteref426c12017-01-04 11:41:10 +01001588 cpp = plane_state->base.fb->format->cpp[0];
Ville Syrjäläe339d672016-11-28 19:37:17 +02001589 clock = adjusted_mode->crtc_clock;
1590 htotal = adjusted_mode->crtc_htotal;
1591 width = crtc_state->pipe_src_w;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001592
Ville Syrjälä709f3fc2017-03-03 17:19:26 +02001593 if (plane->id == PLANE_CURSOR) {
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001594 /*
1595 * FIXME the formula gives values that are
1596 * too big for the cursor FIFO, and hence we
1597 * would never be able to use cursors. For
1598 * now just hardcode the watermark.
1599 */
1600 wm = 63;
1601 } else {
Ville Syrjäläac484962016-01-20 21:05:26 +02001602 wm = vlv_wm_method2(clock, htotal, width, cpp,
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001603 dev_priv->wm.pri_latency[level] * 10);
1604 }
1605
1606 return min_t(int, wm, USHRT_MAX);
1607}
1608
Ville Syrjälä1a10ae62017-03-02 19:15:03 +02001609static bool vlv_need_sprite0_fifo_workaround(unsigned int active_planes)
1610{
1611 return (active_planes & (BIT(PLANE_SPRITE0) |
1612 BIT(PLANE_SPRITE1))) == BIT(PLANE_SPRITE1);
1613}
1614
Ville Syrjälä5012e602017-03-02 19:14:56 +02001615static int vlv_compute_fifo(struct intel_crtc_state *crtc_state)
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001616{
Ville Syrjälä855c79f2017-03-02 19:14:54 +02001617 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
Ville Syrjälä114d7dc2017-04-21 21:14:21 +03001618 const struct g4x_pipe_wm *raw =
Ville Syrjälä5012e602017-03-02 19:14:56 +02001619 &crtc_state->wm.vlv.raw[VLV_WM_LEVEL_PM2];
Ville Syrjälä814e7f02017-03-02 19:14:55 +02001620 struct vlv_fifo_state *fifo_state = &crtc_state->wm.vlv.fifo_state;
Ville Syrjälä5012e602017-03-02 19:14:56 +02001621 unsigned int active_planes = crtc_state->active_planes & ~BIT(PLANE_CURSOR);
1622 int num_active_planes = hweight32(active_planes);
1623 const int fifo_size = 511;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001624 int fifo_extra, fifo_left = fifo_size;
Ville Syrjälä1a10ae62017-03-02 19:15:03 +02001625 int sprite0_fifo_extra = 0;
Ville Syrjälä5012e602017-03-02 19:14:56 +02001626 unsigned int total_rate;
1627 enum plane_id plane_id;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001628
Ville Syrjälä1a10ae62017-03-02 19:15:03 +02001629 /*
1630 * When enabling sprite0 after sprite1 has already been enabled
1631 * we tend to get an underrun unless sprite0 already has some
1632 * FIFO space allcoated. Hence we always allocate at least one
1633 * cacheline for sprite0 whenever sprite1 is enabled.
1634 *
1635 * All other plane enable sequences appear immune to this problem.
1636 */
1637 if (vlv_need_sprite0_fifo_workaround(active_planes))
1638 sprite0_fifo_extra = 1;
1639
Ville Syrjälä5012e602017-03-02 19:14:56 +02001640 total_rate = raw->plane[PLANE_PRIMARY] +
1641 raw->plane[PLANE_SPRITE0] +
Ville Syrjälä1a10ae62017-03-02 19:15:03 +02001642 raw->plane[PLANE_SPRITE1] +
1643 sprite0_fifo_extra;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001644
Ville Syrjälä5012e602017-03-02 19:14:56 +02001645 if (total_rate > fifo_size)
1646 return -EINVAL;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001647
Ville Syrjälä5012e602017-03-02 19:14:56 +02001648 if (total_rate == 0)
1649 total_rate = 1;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001650
Ville Syrjälä5012e602017-03-02 19:14:56 +02001651 for_each_plane_id_on_crtc(crtc, plane_id) {
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001652 unsigned int rate;
1653
Ville Syrjälä5012e602017-03-02 19:14:56 +02001654 if ((active_planes & BIT(plane_id)) == 0) {
1655 fifo_state->plane[plane_id] = 0;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001656 continue;
1657 }
1658
Ville Syrjälä5012e602017-03-02 19:14:56 +02001659 rate = raw->plane[plane_id];
1660 fifo_state->plane[plane_id] = fifo_size * rate / total_rate;
1661 fifo_left -= fifo_state->plane[plane_id];
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001662 }
1663
Ville Syrjälä1a10ae62017-03-02 19:15:03 +02001664 fifo_state->plane[PLANE_SPRITE0] += sprite0_fifo_extra;
1665 fifo_left -= sprite0_fifo_extra;
1666
Ville Syrjälä5012e602017-03-02 19:14:56 +02001667 fifo_state->plane[PLANE_CURSOR] = 63;
1668
1669 fifo_extra = DIV_ROUND_UP(fifo_left, num_active_planes ?: 1);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001670
1671 /* spread the remainder evenly */
Ville Syrjälä5012e602017-03-02 19:14:56 +02001672 for_each_plane_id_on_crtc(crtc, plane_id) {
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001673 int plane_extra;
1674
1675 if (fifo_left == 0)
1676 break;
1677
Ville Syrjälä5012e602017-03-02 19:14:56 +02001678 if ((active_planes & BIT(plane_id)) == 0)
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001679 continue;
1680
1681 plane_extra = min(fifo_extra, fifo_left);
Ville Syrjälä5012e602017-03-02 19:14:56 +02001682 fifo_state->plane[plane_id] += plane_extra;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001683 fifo_left -= plane_extra;
1684 }
1685
Ville Syrjälä5012e602017-03-02 19:14:56 +02001686 WARN_ON(active_planes != 0 && fifo_left != 0);
1687
1688 /* give it all to the first plane if none are active */
1689 if (active_planes == 0) {
1690 WARN_ON(fifo_left != fifo_size);
1691 fifo_state->plane[PLANE_PRIMARY] = fifo_left;
1692 }
1693
1694 return 0;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001695}
1696
Ville Syrjäläff32c542017-03-02 19:14:57 +02001697/* mark all levels starting from 'level' as invalid */
1698static void vlv_invalidate_wms(struct intel_crtc *crtc,
1699 struct vlv_wm_state *wm_state, int level)
1700{
1701 struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
1702
Ville Syrjälä6d5019b2017-04-21 21:14:20 +03001703 for (; level < intel_wm_num_levels(dev_priv); level++) {
Ville Syrjäläff32c542017-03-02 19:14:57 +02001704 enum plane_id plane_id;
1705
1706 for_each_plane_id_on_crtc(crtc, plane_id)
1707 wm_state->wm[level].plane[plane_id] = USHRT_MAX;
1708
1709 wm_state->sr[level].cursor = USHRT_MAX;
1710 wm_state->sr[level].plane = USHRT_MAX;
1711 }
1712}
1713
Ville Syrjälä26cca0e2016-11-28 19:37:09 +02001714static u16 vlv_invert_wm_value(u16 wm, u16 fifo_size)
1715{
1716 if (wm > fifo_size)
1717 return USHRT_MAX;
1718 else
1719 return fifo_size - wm;
1720}
1721
Ville Syrjäläff32c542017-03-02 19:14:57 +02001722/*
1723 * Starting from 'level' set all higher
1724 * levels to 'value' in the "raw" watermarks.
1725 */
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001726static bool vlv_raw_plane_wm_set(struct intel_crtc_state *crtc_state,
Ville Syrjäläff32c542017-03-02 19:14:57 +02001727 int level, enum plane_id plane_id, u16 value)
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001728{
Ville Syrjäläff32c542017-03-02 19:14:57 +02001729 struct drm_i915_private *dev_priv = to_i915(crtc_state->base.crtc->dev);
Ville Syrjälä6d5019b2017-04-21 21:14:20 +03001730 int num_levels = intel_wm_num_levels(dev_priv);
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001731 bool dirty = false;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001732
Ville Syrjäläff32c542017-03-02 19:14:57 +02001733 for (; level < num_levels; level++) {
Ville Syrjälä114d7dc2017-04-21 21:14:21 +03001734 struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level];
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001735
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001736 dirty |= raw->plane[plane_id] != value;
Ville Syrjäläff32c542017-03-02 19:14:57 +02001737 raw->plane[plane_id] = value;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001738 }
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001739
1740 return dirty;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001741}
1742
Ville Syrjälä77d14ee2017-04-21 21:14:18 +03001743static bool vlv_raw_plane_wm_compute(struct intel_crtc_state *crtc_state,
1744 const struct intel_plane_state *plane_state)
Ville Syrjäläff32c542017-03-02 19:14:57 +02001745{
1746 struct intel_plane *plane = to_intel_plane(plane_state->base.plane);
1747 enum plane_id plane_id = plane->id;
Ville Syrjälä6d5019b2017-04-21 21:14:20 +03001748 int num_levels = intel_wm_num_levels(to_i915(plane->base.dev));
Ville Syrjäläff32c542017-03-02 19:14:57 +02001749 int level;
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001750 bool dirty = false;
Ville Syrjäläff32c542017-03-02 19:14:57 +02001751
Ville Syrjäläa07102f2017-03-03 17:19:27 +02001752 if (!intel_wm_plane_visible(crtc_state, plane_state)) {
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001753 dirty |= vlv_raw_plane_wm_set(crtc_state, 0, plane_id, 0);
1754 goto out;
Ville Syrjäläff32c542017-03-02 19:14:57 +02001755 }
1756
1757 for (level = 0; level < num_levels; level++) {
Ville Syrjälä114d7dc2017-04-21 21:14:21 +03001758 struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level];
Ville Syrjäläff32c542017-03-02 19:14:57 +02001759 int wm = vlv_compute_wm_level(crtc_state, plane_state, level);
1760 int max_wm = plane_id == PLANE_CURSOR ? 63 : 511;
1761
Ville Syrjäläff32c542017-03-02 19:14:57 +02001762 if (wm > max_wm)
1763 break;
1764
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001765 dirty |= raw->plane[plane_id] != wm;
Ville Syrjäläff32c542017-03-02 19:14:57 +02001766 raw->plane[plane_id] = wm;
1767 }
1768
1769 /* mark all higher levels as invalid */
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001770 dirty |= vlv_raw_plane_wm_set(crtc_state, level, plane_id, USHRT_MAX);
Ville Syrjäläff32c542017-03-02 19:14:57 +02001771
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001772out:
1773 if (dirty)
Ville Syrjälä57a65282017-04-21 21:14:22 +03001774 DRM_DEBUG_KMS("%s watermarks: PM2=%d, PM5=%d, DDR DVFS=%d\n",
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001775 plane->base.name,
1776 crtc_state->wm.vlv.raw[VLV_WM_LEVEL_PM2].plane[plane_id],
1777 crtc_state->wm.vlv.raw[VLV_WM_LEVEL_PM5].plane[plane_id],
1778 crtc_state->wm.vlv.raw[VLV_WM_LEVEL_DDR_DVFS].plane[plane_id]);
1779
1780 return dirty;
Ville Syrjäläff32c542017-03-02 19:14:57 +02001781}
1782
Ville Syrjälä77d14ee2017-04-21 21:14:18 +03001783static bool vlv_raw_plane_wm_is_valid(const struct intel_crtc_state *crtc_state,
1784 enum plane_id plane_id, int level)
Ville Syrjäläff32c542017-03-02 19:14:57 +02001785{
Ville Syrjälä114d7dc2017-04-21 21:14:21 +03001786 const struct g4x_pipe_wm *raw =
Ville Syrjäläff32c542017-03-02 19:14:57 +02001787 &crtc_state->wm.vlv.raw[level];
1788 const struct vlv_fifo_state *fifo_state =
1789 &crtc_state->wm.vlv.fifo_state;
1790
1791 return raw->plane[plane_id] <= fifo_state->plane[plane_id];
1792}
1793
Ville Syrjälä77d14ee2017-04-21 21:14:18 +03001794static bool vlv_raw_crtc_wm_is_valid(const struct intel_crtc_state *crtc_state, int level)
Ville Syrjäläff32c542017-03-02 19:14:57 +02001795{
Ville Syrjälä77d14ee2017-04-21 21:14:18 +03001796 return vlv_raw_plane_wm_is_valid(crtc_state, PLANE_PRIMARY, level) &&
1797 vlv_raw_plane_wm_is_valid(crtc_state, PLANE_SPRITE0, level) &&
1798 vlv_raw_plane_wm_is_valid(crtc_state, PLANE_SPRITE1, level) &&
1799 vlv_raw_plane_wm_is_valid(crtc_state, PLANE_CURSOR, level);
Ville Syrjäläff32c542017-03-02 19:14:57 +02001800}
1801
1802static int vlv_compute_pipe_wm(struct intel_crtc_state *crtc_state)
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001803{
Ville Syrjälä855c79f2017-03-02 19:14:54 +02001804 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
Ville Syrjälä7c951c02016-11-28 19:37:10 +02001805 struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
Ville Syrjäläff32c542017-03-02 19:14:57 +02001806 struct intel_atomic_state *state =
1807 to_intel_atomic_state(crtc_state->base.state);
Ville Syrjälä855c79f2017-03-02 19:14:54 +02001808 struct vlv_wm_state *wm_state = &crtc_state->wm.vlv.optimal;
Ville Syrjäläff32c542017-03-02 19:14:57 +02001809 const struct vlv_fifo_state *fifo_state =
1810 &crtc_state->wm.vlv.fifo_state;
1811 int num_active_planes = hweight32(crtc_state->active_planes &
1812 ~BIT(PLANE_CURSOR));
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001813 bool needs_modeset = drm_atomic_crtc_needs_modeset(&crtc_state->base);
Ville Syrjäläff32c542017-03-02 19:14:57 +02001814 struct intel_plane_state *plane_state;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001815 struct intel_plane *plane;
Ville Syrjäläff32c542017-03-02 19:14:57 +02001816 enum plane_id plane_id;
1817 int level, ret, i;
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001818 unsigned int dirty = 0;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001819
Ville Syrjäläff32c542017-03-02 19:14:57 +02001820 for_each_intel_plane_in_state(state, plane, plane_state, i) {
1821 const struct intel_plane_state *old_plane_state =
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001822 to_intel_plane_state(plane->base.state);
1823
Ville Syrjäläff32c542017-03-02 19:14:57 +02001824 if (plane_state->base.crtc != &crtc->base &&
1825 old_plane_state->base.crtc != &crtc->base)
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001826 continue;
1827
Ville Syrjälä77d14ee2017-04-21 21:14:18 +03001828 if (vlv_raw_plane_wm_compute(crtc_state, plane_state))
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001829 dirty |= BIT(plane->id);
1830 }
1831
1832 /*
1833 * DSPARB registers may have been reset due to the
1834 * power well being turned off. Make sure we restore
1835 * them to a consistent state even if no primary/sprite
1836 * planes are initially active.
1837 */
1838 if (needs_modeset)
1839 crtc_state->fifo_changed = true;
1840
1841 if (!dirty)
1842 return 0;
1843
1844 /* cursor changes don't warrant a FIFO recompute */
1845 if (dirty & ~BIT(PLANE_CURSOR)) {
1846 const struct intel_crtc_state *old_crtc_state =
1847 to_intel_crtc_state(crtc->base.state);
1848 const struct vlv_fifo_state *old_fifo_state =
1849 &old_crtc_state->wm.vlv.fifo_state;
1850
1851 ret = vlv_compute_fifo(crtc_state);
1852 if (ret)
1853 return ret;
1854
1855 if (needs_modeset ||
1856 memcmp(old_fifo_state, fifo_state,
1857 sizeof(*fifo_state)) != 0)
1858 crtc_state->fifo_changed = true;
Ville Syrjälä5012e602017-03-02 19:14:56 +02001859 }
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001860
Ville Syrjäläff32c542017-03-02 19:14:57 +02001861 /* initially allow all levels */
Ville Syrjälä6d5019b2017-04-21 21:14:20 +03001862 wm_state->num_levels = intel_wm_num_levels(dev_priv);
Ville Syrjäläff32c542017-03-02 19:14:57 +02001863 /*
1864 * Note that enabling cxsr with no primary/sprite planes
1865 * enabled can wedge the pipe. Hence we only allow cxsr
1866 * with exactly one enabled primary/sprite plane.
1867 */
Ville Syrjälä5eeb7982017-03-02 19:15:00 +02001868 wm_state->cxsr = crtc->pipe != PIPE_C && num_active_planes == 1;
Ville Syrjäläff32c542017-03-02 19:14:57 +02001869
Ville Syrjälä5012e602017-03-02 19:14:56 +02001870 for (level = 0; level < wm_state->num_levels; level++) {
Ville Syrjälä114d7dc2017-04-21 21:14:21 +03001871 const struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level];
Ville Syrjäläff32c542017-03-02 19:14:57 +02001872 const int sr_fifo_size = INTEL_INFO(dev_priv)->num_pipes * 512 - 1;
Ville Syrjälä5012e602017-03-02 19:14:56 +02001873
Ville Syrjälä77d14ee2017-04-21 21:14:18 +03001874 if (!vlv_raw_crtc_wm_is_valid(crtc_state, level))
Ville Syrjäläff32c542017-03-02 19:14:57 +02001875 break;
Ville Syrjälä5012e602017-03-02 19:14:56 +02001876
Ville Syrjäläff32c542017-03-02 19:14:57 +02001877 for_each_plane_id_on_crtc(crtc, plane_id) {
1878 wm_state->wm[level].plane[plane_id] =
1879 vlv_invert_wm_value(raw->plane[plane_id],
1880 fifo_state->plane[plane_id]);
1881 }
1882
1883 wm_state->sr[level].plane =
1884 vlv_invert_wm_value(max3(raw->plane[PLANE_PRIMARY],
Ville Syrjälä5012e602017-03-02 19:14:56 +02001885 raw->plane[PLANE_SPRITE0],
Ville Syrjäläff32c542017-03-02 19:14:57 +02001886 raw->plane[PLANE_SPRITE1]),
1887 sr_fifo_size);
1888
1889 wm_state->sr[level].cursor =
1890 vlv_invert_wm_value(raw->plane[PLANE_CURSOR],
1891 63);
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001892 }
1893
Ville Syrjäläff32c542017-03-02 19:14:57 +02001894 if (level == 0)
1895 return -EINVAL;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001896
Ville Syrjäläff32c542017-03-02 19:14:57 +02001897 /* limit to only levels we can actually handle */
1898 wm_state->num_levels = level;
1899
1900 /* invalidate the higher levels */
1901 vlv_invalidate_wms(crtc, wm_state, level);
1902
1903 return 0;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03001904}
1905
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001906#define VLV_FIFO(plane, value) \
1907 (((value) << DSPARB_ ## plane ## _SHIFT_VLV) & DSPARB_ ## plane ## _MASK_VLV)
1908
Ville Syrjäläff32c542017-03-02 19:14:57 +02001909static void vlv_atomic_update_fifo(struct intel_atomic_state *state,
1910 struct intel_crtc_state *crtc_state)
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001911{
Ville Syrjälä814e7f02017-03-02 19:14:55 +02001912 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
Ville Syrjäläf07d43d2017-03-02 19:14:52 +02001913 struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
Ville Syrjälä814e7f02017-03-02 19:14:55 +02001914 const struct vlv_fifo_state *fifo_state =
1915 &crtc_state->wm.vlv.fifo_state;
Ville Syrjäläf07d43d2017-03-02 19:14:52 +02001916 int sprite0_start, sprite1_start, fifo_size;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001917
Ville Syrjälä236c48e2017-03-02 19:14:58 +02001918 if (!crtc_state->fifo_changed)
1919 return;
1920
Ville Syrjäläf07d43d2017-03-02 19:14:52 +02001921 sprite0_start = fifo_state->plane[PLANE_PRIMARY];
1922 sprite1_start = fifo_state->plane[PLANE_SPRITE0] + sprite0_start;
1923 fifo_size = fifo_state->plane[PLANE_SPRITE1] + sprite1_start;
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001924
Ville Syrjäläf07d43d2017-03-02 19:14:52 +02001925 WARN_ON(fifo_state->plane[PLANE_CURSOR] != 63);
1926 WARN_ON(fifo_size != 511);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001927
Ville Syrjäläc137d662017-03-02 19:15:06 +02001928 trace_vlv_fifo_size(crtc, sprite0_start, sprite1_start, fifo_size);
1929
Ville Syrjälä44e921d2017-03-09 17:44:34 +02001930 /*
1931 * uncore.lock serves a double purpose here. It allows us to
1932 * use the less expensive I915_{READ,WRITE}_FW() functions, and
1933 * it protects the DSPARB registers from getting clobbered by
1934 * parallel updates from multiple pipes.
1935 *
1936 * intel_pipe_update_start() has already disabled interrupts
1937 * for us, so a plain spin_lock() is sufficient here.
1938 */
1939 spin_lock(&dev_priv->uncore.lock);
Ville Syrjälä467a14d2016-12-05 16:13:28 +02001940
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001941 switch (crtc->pipe) {
1942 uint32_t dsparb, dsparb2, dsparb3;
1943 case PIPE_A:
Ville Syrjälä44e921d2017-03-09 17:44:34 +02001944 dsparb = I915_READ_FW(DSPARB);
1945 dsparb2 = I915_READ_FW(DSPARB2);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001946
1947 dsparb &= ~(VLV_FIFO(SPRITEA, 0xff) |
1948 VLV_FIFO(SPRITEB, 0xff));
1949 dsparb |= (VLV_FIFO(SPRITEA, sprite0_start) |
1950 VLV_FIFO(SPRITEB, sprite1_start));
1951
1952 dsparb2 &= ~(VLV_FIFO(SPRITEA_HI, 0x1) |
1953 VLV_FIFO(SPRITEB_HI, 0x1));
1954 dsparb2 |= (VLV_FIFO(SPRITEA_HI, sprite0_start >> 8) |
1955 VLV_FIFO(SPRITEB_HI, sprite1_start >> 8));
1956
Ville Syrjälä44e921d2017-03-09 17:44:34 +02001957 I915_WRITE_FW(DSPARB, dsparb);
1958 I915_WRITE_FW(DSPARB2, dsparb2);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001959 break;
1960 case PIPE_B:
Ville Syrjälä44e921d2017-03-09 17:44:34 +02001961 dsparb = I915_READ_FW(DSPARB);
1962 dsparb2 = I915_READ_FW(DSPARB2);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001963
1964 dsparb &= ~(VLV_FIFO(SPRITEC, 0xff) |
1965 VLV_FIFO(SPRITED, 0xff));
1966 dsparb |= (VLV_FIFO(SPRITEC, sprite0_start) |
1967 VLV_FIFO(SPRITED, sprite1_start));
1968
1969 dsparb2 &= ~(VLV_FIFO(SPRITEC_HI, 0xff) |
1970 VLV_FIFO(SPRITED_HI, 0xff));
1971 dsparb2 |= (VLV_FIFO(SPRITEC_HI, sprite0_start >> 8) |
1972 VLV_FIFO(SPRITED_HI, sprite1_start >> 8));
1973
Ville Syrjälä44e921d2017-03-09 17:44:34 +02001974 I915_WRITE_FW(DSPARB, dsparb);
1975 I915_WRITE_FW(DSPARB2, dsparb2);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001976 break;
1977 case PIPE_C:
Ville Syrjälä44e921d2017-03-09 17:44:34 +02001978 dsparb3 = I915_READ_FW(DSPARB3);
1979 dsparb2 = I915_READ_FW(DSPARB2);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001980
1981 dsparb3 &= ~(VLV_FIFO(SPRITEE, 0xff) |
1982 VLV_FIFO(SPRITEF, 0xff));
1983 dsparb3 |= (VLV_FIFO(SPRITEE, sprite0_start) |
1984 VLV_FIFO(SPRITEF, sprite1_start));
1985
1986 dsparb2 &= ~(VLV_FIFO(SPRITEE_HI, 0xff) |
1987 VLV_FIFO(SPRITEF_HI, 0xff));
1988 dsparb2 |= (VLV_FIFO(SPRITEE_HI, sprite0_start >> 8) |
1989 VLV_FIFO(SPRITEF_HI, sprite1_start >> 8));
1990
Ville Syrjälä44e921d2017-03-09 17:44:34 +02001991 I915_WRITE_FW(DSPARB3, dsparb3);
1992 I915_WRITE_FW(DSPARB2, dsparb2);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03001993 break;
1994 default:
1995 break;
1996 }
Ville Syrjälä467a14d2016-12-05 16:13:28 +02001997
Ville Syrjälä44e921d2017-03-09 17:44:34 +02001998 POSTING_READ_FW(DSPARB);
Ville Syrjälä467a14d2016-12-05 16:13:28 +02001999
Ville Syrjälä44e921d2017-03-09 17:44:34 +02002000 spin_unlock(&dev_priv->uncore.lock);
Ville Syrjälä54f1b6e2015-06-24 22:00:05 +03002001}
2002
2003#undef VLV_FIFO
2004
Ville Syrjälä4841da52017-03-02 19:14:59 +02002005static int vlv_compute_intermediate_wm(struct drm_device *dev,
2006 struct intel_crtc *crtc,
2007 struct intel_crtc_state *crtc_state)
2008{
2009 struct vlv_wm_state *intermediate = &crtc_state->wm.vlv.intermediate;
2010 const struct vlv_wm_state *optimal = &crtc_state->wm.vlv.optimal;
2011 const struct vlv_wm_state *active = &crtc->wm.active.vlv;
2012 int level;
2013
2014 intermediate->num_levels = min(optimal->num_levels, active->num_levels);
Ville Syrjälä5eeb7982017-03-02 19:15:00 +02002015 intermediate->cxsr = optimal->cxsr && active->cxsr &&
2016 !crtc_state->disable_cxsr;
Ville Syrjälä4841da52017-03-02 19:14:59 +02002017
2018 for (level = 0; level < intermediate->num_levels; level++) {
2019 enum plane_id plane_id;
2020
2021 for_each_plane_id_on_crtc(crtc, plane_id) {
2022 intermediate->wm[level].plane[plane_id] =
2023 min(optimal->wm[level].plane[plane_id],
2024 active->wm[level].plane[plane_id]);
2025 }
2026
2027 intermediate->sr[level].plane = min(optimal->sr[level].plane,
2028 active->sr[level].plane);
2029 intermediate->sr[level].cursor = min(optimal->sr[level].cursor,
2030 active->sr[level].cursor);
2031 }
2032
2033 vlv_invalidate_wms(crtc, intermediate, level);
2034
2035 /*
2036 * If our intermediate WM are identical to the final WM, then we can
2037 * omit the post-vblank programming; only update if it's different.
2038 */
Ville Syrjälä5eeb7982017-03-02 19:15:00 +02002039 if (memcmp(intermediate, optimal, sizeof(*intermediate)) != 0)
2040 crtc_state->wm.need_postvbl_update = true;
Ville Syrjälä4841da52017-03-02 19:14:59 +02002041
2042 return 0;
2043}
2044
Ville Syrjälä7c951c02016-11-28 19:37:10 +02002045static void vlv_merge_wm(struct drm_i915_private *dev_priv,
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002046 struct vlv_wm_values *wm)
2047{
2048 struct intel_crtc *crtc;
2049 int num_active_crtcs = 0;
2050
Ville Syrjälä7c951c02016-11-28 19:37:10 +02002051 wm->level = dev_priv->wm.max_level;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002052 wm->cxsr = true;
2053
Ville Syrjälä7c951c02016-11-28 19:37:10 +02002054 for_each_intel_crtc(&dev_priv->drm, crtc) {
Ville Syrjälä7eb49412017-03-02 19:14:53 +02002055 const struct vlv_wm_state *wm_state = &crtc->wm.active.vlv;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002056
2057 if (!crtc->active)
2058 continue;
2059
2060 if (!wm_state->cxsr)
2061 wm->cxsr = false;
2062
2063 num_active_crtcs++;
2064 wm->level = min_t(int, wm->level, wm_state->num_levels - 1);
2065 }
2066
2067 if (num_active_crtcs != 1)
2068 wm->cxsr = false;
2069
Ville Syrjälä6f9c7842015-06-24 22:00:08 +03002070 if (num_active_crtcs > 1)
2071 wm->level = VLV_WM_LEVEL_PM2;
2072
Ville Syrjälä7c951c02016-11-28 19:37:10 +02002073 for_each_intel_crtc(&dev_priv->drm, crtc) {
Ville Syrjälä7eb49412017-03-02 19:14:53 +02002074 const struct vlv_wm_state *wm_state = &crtc->wm.active.vlv;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002075 enum pipe pipe = crtc->pipe;
2076
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002077 wm->pipe[pipe] = wm_state->wm[wm->level];
Ville Syrjäläff32c542017-03-02 19:14:57 +02002078 if (crtc->active && wm->cxsr)
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002079 wm->sr = wm_state->sr[wm->level];
2080
Ville Syrjälä1b313892016-11-28 19:37:08 +02002081 wm->ddl[pipe].plane[PLANE_PRIMARY] = DDL_PRECISION_HIGH | 2;
2082 wm->ddl[pipe].plane[PLANE_SPRITE0] = DDL_PRECISION_HIGH | 2;
2083 wm->ddl[pipe].plane[PLANE_SPRITE1] = DDL_PRECISION_HIGH | 2;
2084 wm->ddl[pipe].plane[PLANE_CURSOR] = DDL_PRECISION_HIGH | 2;
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002085 }
2086}
2087
Ville Syrjäläff32c542017-03-02 19:14:57 +02002088static void vlv_program_watermarks(struct drm_i915_private *dev_priv)
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002089{
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002090 struct vlv_wm_values *old_wm = &dev_priv->wm.vlv;
2091 struct vlv_wm_values new_wm = {};
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002092
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002093 vlv_merge_wm(dev_priv, &new_wm);
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002094
Ville Syrjäläff32c542017-03-02 19:14:57 +02002095 if (memcmp(old_wm, &new_wm, sizeof(new_wm)) == 0)
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002096 return;
2097
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002098 if (is_disabling(old_wm->level, new_wm.level, VLV_WM_LEVEL_DDR_DVFS))
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002099 chv_set_memory_dvfs(dev_priv, false);
2100
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002101 if (is_disabling(old_wm->level, new_wm.level, VLV_WM_LEVEL_PM5))
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002102 chv_set_memory_pm5(dev_priv, false);
2103
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002104 if (is_disabling(old_wm->cxsr, new_wm.cxsr, true))
Ville Syrjälä3d90e642016-11-28 19:37:11 +02002105 _intel_set_memory_cxsr(dev_priv, false);
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002106
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002107 vlv_write_wm_values(dev_priv, &new_wm);
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002108
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002109 if (is_enabling(old_wm->cxsr, new_wm.cxsr, true))
Ville Syrjälä3d90e642016-11-28 19:37:11 +02002110 _intel_set_memory_cxsr(dev_priv, true);
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002111
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002112 if (is_enabling(old_wm->level, new_wm.level, VLV_WM_LEVEL_PM5))
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002113 chv_set_memory_pm5(dev_priv, true);
2114
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002115 if (is_enabling(old_wm->level, new_wm.level, VLV_WM_LEVEL_DDR_DVFS))
Ville Syrjälä262cd2e2015-06-24 22:00:04 +03002116 chv_set_memory_dvfs(dev_priv, true);
2117
Ville Syrjäläfa292a42016-11-28 19:37:16 +02002118 *old_wm = new_wm;
Ville Syrjälä3c2777f2014-06-26 17:03:06 +03002119}
2120
Ville Syrjäläff32c542017-03-02 19:14:57 +02002121static void vlv_initial_watermarks(struct intel_atomic_state *state,
2122 struct intel_crtc_state *crtc_state)
2123{
2124 struct drm_i915_private *dev_priv = to_i915(crtc_state->base.crtc->dev);
2125 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
2126
2127 mutex_lock(&dev_priv->wm.wm_mutex);
Ville Syrjälä4841da52017-03-02 19:14:59 +02002128 crtc->wm.active.vlv = crtc_state->wm.vlv.intermediate;
2129 vlv_program_watermarks(dev_priv);
2130 mutex_unlock(&dev_priv->wm.wm_mutex);
2131}
2132
2133static void vlv_optimize_watermarks(struct intel_atomic_state *state,
2134 struct intel_crtc_state *crtc_state)
2135{
2136 struct drm_i915_private *dev_priv = to_i915(crtc_state->base.crtc->dev);
2137 struct intel_crtc *intel_crtc = to_intel_crtc(crtc_state->base.crtc);
2138
2139 if (!crtc_state->wm.need_postvbl_update)
2140 return;
2141
2142 mutex_lock(&dev_priv->wm.wm_mutex);
2143 intel_crtc->wm.active.vlv = crtc_state->wm.vlv.optimal;
Ville Syrjäläff32c542017-03-02 19:14:57 +02002144 vlv_program_watermarks(dev_priv);
2145 mutex_unlock(&dev_priv->wm.wm_mutex);
2146}
2147
Ville Syrjälä432081b2016-10-31 22:37:03 +02002148static void i965_update_wm(struct intel_crtc *unused_crtc)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002149{
Ville Syrjäläffc7a762016-10-31 22:37:21 +02002150 struct drm_i915_private *dev_priv = to_i915(unused_crtc->base.dev);
Ville Syrjäläefc26112016-10-31 22:37:04 +02002151 struct intel_crtc *crtc;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002152 int srwm = 1;
2153 int cursor_sr = 16;
Imre Deak98584252014-06-13 14:54:20 +03002154 bool cxsr_enabled;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002155
2156 /* Calc sr entries for one plane configs */
Ville Syrjäläffc7a762016-10-31 22:37:21 +02002157 crtc = single_enabled_crtc(dev_priv);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002158 if (crtc) {
2159 /* self-refresh has much higher latency */
2160 static const int sr_latency_ns = 12000;
Ville Syrjäläefc26112016-10-31 22:37:04 +02002161 const struct drm_display_mode *adjusted_mode =
2162 &crtc->config->base.adjusted_mode;
2163 const struct drm_framebuffer *fb =
2164 crtc->base.primary->state->fb;
Damien Lespiau241bfc32013-09-25 16:45:37 +01002165 int clock = adjusted_mode->crtc_clock;
Jesse Barnesfec8cba2013-11-27 11:10:26 -08002166 int htotal = adjusted_mode->crtc_htotal;
Ville Syrjäläefc26112016-10-31 22:37:04 +02002167 int hdisplay = crtc->config->pipe_src_w;
Ville Syrjälä353c8592016-12-14 23:30:57 +02002168 int cpp = fb->format->cpp[0];
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002169 int entries;
2170
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002171 entries = intel_wm_method2(clock, htotal,
2172 hdisplay, cpp, sr_latency_ns / 100);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002173 entries = DIV_ROUND_UP(entries, I915_FIFO_LINE_SIZE);
2174 srwm = I965_FIFO_SIZE - entries;
2175 if (srwm < 0)
2176 srwm = 1;
2177 srwm &= 0x1ff;
2178 DRM_DEBUG_KMS("self-refresh entries: %d, wm: %d\n",
2179 entries, srwm);
2180
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002181 entries = intel_wm_method2(clock, htotal,
2182 crtc->base.cursor->state->crtc_w, 4,
2183 sr_latency_ns / 100);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002184 entries = DIV_ROUND_UP(entries,
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002185 i965_cursor_wm_info.cacheline_size) +
2186 i965_cursor_wm_info.guard_size;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002187
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002188 cursor_sr = i965_cursor_wm_info.fifo_size - entries;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002189 if (cursor_sr > i965_cursor_wm_info.max_wm)
2190 cursor_sr = i965_cursor_wm_info.max_wm;
2191
2192 DRM_DEBUG_KMS("self-refresh watermark: display plane %d "
2193 "cursor %d\n", srwm, cursor_sr);
2194
Imre Deak98584252014-06-13 14:54:20 +03002195 cxsr_enabled = true;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002196 } else {
Imre Deak98584252014-06-13 14:54:20 +03002197 cxsr_enabled = false;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002198 /* Turn off self refresh if both pipes are enabled */
Imre Deak5209b1f2014-07-01 12:36:17 +03002199 intel_set_memory_cxsr(dev_priv, false);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002200 }
2201
2202 DRM_DEBUG_KMS("Setting FIFO watermarks - A: 8, B: 8, C: 8, SR %d\n",
2203 srwm);
2204
2205 /* 965 has limitations... */
Ville Syrjäläf4998962015-03-10 17:02:21 +02002206 I915_WRITE(DSPFW1, FW_WM(srwm, SR) |
2207 FW_WM(8, CURSORB) |
2208 FW_WM(8, PLANEB) |
2209 FW_WM(8, PLANEA));
2210 I915_WRITE(DSPFW2, FW_WM(8, CURSORA) |
2211 FW_WM(8, PLANEC_OLD));
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002212 /* update cursor SR watermark */
Ville Syrjäläf4998962015-03-10 17:02:21 +02002213 I915_WRITE(DSPFW3, FW_WM(cursor_sr, CURSOR_SR));
Imre Deak98584252014-06-13 14:54:20 +03002214
2215 if (cxsr_enabled)
2216 intel_set_memory_cxsr(dev_priv, true);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002217}
2218
Ville Syrjäläf4998962015-03-10 17:02:21 +02002219#undef FW_WM
2220
Ville Syrjälä432081b2016-10-31 22:37:03 +02002221static void i9xx_update_wm(struct intel_crtc *unused_crtc)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002222{
Ville Syrjäläffc7a762016-10-31 22:37:21 +02002223 struct drm_i915_private *dev_priv = to_i915(unused_crtc->base.dev);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002224 const struct intel_watermark_params *wm_info;
2225 uint32_t fwater_lo;
2226 uint32_t fwater_hi;
2227 int cwm, srwm = 1;
2228 int fifo_size;
2229 int planea_wm, planeb_wm;
Ville Syrjäläefc26112016-10-31 22:37:04 +02002230 struct intel_crtc *crtc, *enabled = NULL;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002231
Ville Syrjäläa9097be2016-10-31 22:37:20 +02002232 if (IS_I945GM(dev_priv))
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002233 wm_info = &i945_wm_info;
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002234 else if (!IS_GEN2(dev_priv))
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002235 wm_info = &i915_wm_info;
2236 else
Ville Syrjälä9d539102014-08-15 01:21:53 +03002237 wm_info = &i830_a_wm_info;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002238
Ville Syrjäläef0f5e92016-10-31 22:37:17 +02002239 fifo_size = dev_priv->display.get_fifo_size(dev_priv, 0);
Ville Syrjäläb91eb5c2016-10-31 22:37:09 +02002240 crtc = intel_get_crtc_for_plane(dev_priv, 0);
Ville Syrjäläefc26112016-10-31 22:37:04 +02002241 if (intel_crtc_active(crtc)) {
2242 const struct drm_display_mode *adjusted_mode =
2243 &crtc->config->base.adjusted_mode;
2244 const struct drm_framebuffer *fb =
2245 crtc->base.primary->state->fb;
2246 int cpp;
2247
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002248 if (IS_GEN2(dev_priv))
Chris Wilsonb9e0bda2012-10-22 12:32:15 +01002249 cpp = 4;
Ville Syrjäläefc26112016-10-31 22:37:04 +02002250 else
Ville Syrjälä353c8592016-12-14 23:30:57 +02002251 cpp = fb->format->cpp[0];
Chris Wilsonb9e0bda2012-10-22 12:32:15 +01002252
Damien Lespiau241bfc32013-09-25 16:45:37 +01002253 planea_wm = intel_calculate_wm(adjusted_mode->crtc_clock,
Chris Wilsonb9e0bda2012-10-22 12:32:15 +01002254 wm_info, fifo_size, cpp,
Chris Wilson5aef6002014-09-03 11:56:07 +01002255 pessimal_latency_ns);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002256 enabled = crtc;
Ville Syrjälä9d539102014-08-15 01:21:53 +03002257 } else {
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002258 planea_wm = fifo_size - wm_info->guard_size;
Ville Syrjälä9d539102014-08-15 01:21:53 +03002259 if (planea_wm > (long)wm_info->max_wm)
2260 planea_wm = wm_info->max_wm;
2261 }
2262
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002263 if (IS_GEN2(dev_priv))
Ville Syrjälä9d539102014-08-15 01:21:53 +03002264 wm_info = &i830_bc_wm_info;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002265
Ville Syrjäläef0f5e92016-10-31 22:37:17 +02002266 fifo_size = dev_priv->display.get_fifo_size(dev_priv, 1);
Ville Syrjäläb91eb5c2016-10-31 22:37:09 +02002267 crtc = intel_get_crtc_for_plane(dev_priv, 1);
Ville Syrjäläefc26112016-10-31 22:37:04 +02002268 if (intel_crtc_active(crtc)) {
2269 const struct drm_display_mode *adjusted_mode =
2270 &crtc->config->base.adjusted_mode;
2271 const struct drm_framebuffer *fb =
2272 crtc->base.primary->state->fb;
2273 int cpp;
2274
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002275 if (IS_GEN2(dev_priv))
Chris Wilsonb9e0bda2012-10-22 12:32:15 +01002276 cpp = 4;
Ville Syrjäläefc26112016-10-31 22:37:04 +02002277 else
Ville Syrjälä353c8592016-12-14 23:30:57 +02002278 cpp = fb->format->cpp[0];
Chris Wilsonb9e0bda2012-10-22 12:32:15 +01002279
Damien Lespiau241bfc32013-09-25 16:45:37 +01002280 planeb_wm = intel_calculate_wm(adjusted_mode->crtc_clock,
Chris Wilsonb9e0bda2012-10-22 12:32:15 +01002281 wm_info, fifo_size, cpp,
Chris Wilson5aef6002014-09-03 11:56:07 +01002282 pessimal_latency_ns);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002283 if (enabled == NULL)
2284 enabled = crtc;
2285 else
2286 enabled = NULL;
Ville Syrjälä9d539102014-08-15 01:21:53 +03002287 } else {
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002288 planeb_wm = fifo_size - wm_info->guard_size;
Ville Syrjälä9d539102014-08-15 01:21:53 +03002289 if (planeb_wm > (long)wm_info->max_wm)
2290 planeb_wm = wm_info->max_wm;
2291 }
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002292
2293 DRM_DEBUG_KMS("FIFO watermarks - A: %d, B: %d\n", planea_wm, planeb_wm);
2294
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +01002295 if (IS_I915GM(dev_priv) && enabled) {
Matt Roper2ff8fde2014-07-08 07:50:07 -07002296 struct drm_i915_gem_object *obj;
Daniel Vetter2ab1bc92014-04-07 08:54:21 +02002297
Ville Syrjäläefc26112016-10-31 22:37:04 +02002298 obj = intel_fb_obj(enabled->base.primary->state->fb);
Daniel Vetter2ab1bc92014-04-07 08:54:21 +02002299
2300 /* self-refresh seems busted with untiled */
Chris Wilson3e510a82016-08-05 10:14:23 +01002301 if (!i915_gem_object_is_tiled(obj))
Daniel Vetter2ab1bc92014-04-07 08:54:21 +02002302 enabled = NULL;
2303 }
2304
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002305 /*
2306 * Overlay gets an aggressive default since video jitter is bad.
2307 */
2308 cwm = 2;
2309
2310 /* Play safe and disable self-refresh before adjusting watermarks. */
Imre Deak5209b1f2014-07-01 12:36:17 +03002311 intel_set_memory_cxsr(dev_priv, false);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002312
2313 /* Calc sr entries for one plane configs */
Ville Syrjälä03427fc2016-10-31 22:37:18 +02002314 if (HAS_FW_BLC(dev_priv) && enabled) {
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002315 /* self-refresh has much higher latency */
2316 static const int sr_latency_ns = 6000;
Ville Syrjäläefc26112016-10-31 22:37:04 +02002317 const struct drm_display_mode *adjusted_mode =
2318 &enabled->config->base.adjusted_mode;
2319 const struct drm_framebuffer *fb =
2320 enabled->base.primary->state->fb;
Damien Lespiau241bfc32013-09-25 16:45:37 +01002321 int clock = adjusted_mode->crtc_clock;
Jesse Barnesfec8cba2013-11-27 11:10:26 -08002322 int htotal = adjusted_mode->crtc_htotal;
Ville Syrjäläefc26112016-10-31 22:37:04 +02002323 int hdisplay = enabled->config->pipe_src_w;
2324 int cpp;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002325 int entries;
2326
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +01002327 if (IS_I915GM(dev_priv) || IS_I945GM(dev_priv))
Ville Syrjälä2d1b5052016-07-29 17:57:01 +03002328 cpp = 4;
Ville Syrjäläefc26112016-10-31 22:37:04 +02002329 else
Ville Syrjälä353c8592016-12-14 23:30:57 +02002330 cpp = fb->format->cpp[0];
Ville Syrjälä2d1b5052016-07-29 17:57:01 +03002331
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002332 entries = intel_wm_method2(clock, htotal, hdisplay, cpp,
2333 sr_latency_ns / 100);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002334 entries = DIV_ROUND_UP(entries, wm_info->cacheline_size);
2335 DRM_DEBUG_KMS("self-refresh entries: %d\n", entries);
2336 srwm = wm_info->fifo_size - entries;
2337 if (srwm < 0)
2338 srwm = 1;
2339
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +01002340 if (IS_I945G(dev_priv) || IS_I945GM(dev_priv))
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002341 I915_WRITE(FW_BLC_SELF,
2342 FW_BLC_SELF_FIFO_MASK | (srwm & 0xff));
Ville Syrjäläacb91352016-07-29 17:57:02 +03002343 else
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002344 I915_WRITE(FW_BLC_SELF, srwm & 0x3f);
2345 }
2346
2347 DRM_DEBUG_KMS("Setting FIFO watermarks - A: %d, B: %d, C: %d, SR %d\n",
2348 planea_wm, planeb_wm, cwm, srwm);
2349
2350 fwater_lo = ((planeb_wm & 0x3f) << 16) | (planea_wm & 0x3f);
2351 fwater_hi = (cwm & 0x1f);
2352
2353 /* Set request length to 8 cachelines per fetch */
2354 fwater_lo = fwater_lo | (1 << 24) | (1 << 8);
2355 fwater_hi = fwater_hi | (1 << 8);
2356
2357 I915_WRITE(FW_BLC, fwater_lo);
2358 I915_WRITE(FW_BLC2, fwater_hi);
2359
Imre Deak5209b1f2014-07-01 12:36:17 +03002360 if (enabled)
2361 intel_set_memory_cxsr(dev_priv, true);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002362}
2363
Ville Syrjälä432081b2016-10-31 22:37:03 +02002364static void i845_update_wm(struct intel_crtc *unused_crtc)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002365{
Ville Syrjäläffc7a762016-10-31 22:37:21 +02002366 struct drm_i915_private *dev_priv = to_i915(unused_crtc->base.dev);
Ville Syrjäläefc26112016-10-31 22:37:04 +02002367 struct intel_crtc *crtc;
Damien Lespiau241bfc32013-09-25 16:45:37 +01002368 const struct drm_display_mode *adjusted_mode;
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002369 uint32_t fwater_lo;
2370 int planea_wm;
2371
Ville Syrjäläffc7a762016-10-31 22:37:21 +02002372 crtc = single_enabled_crtc(dev_priv);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002373 if (crtc == NULL)
2374 return;
2375
Ville Syrjäläefc26112016-10-31 22:37:04 +02002376 adjusted_mode = &crtc->config->base.adjusted_mode;
Damien Lespiau241bfc32013-09-25 16:45:37 +01002377 planea_wm = intel_calculate_wm(adjusted_mode->crtc_clock,
Daniel Vetterfeb56b92013-12-14 20:38:30 -02002378 &i845_wm_info,
Ville Syrjäläef0f5e92016-10-31 22:37:17 +02002379 dev_priv->display.get_fifo_size(dev_priv, 0),
Chris Wilson5aef6002014-09-03 11:56:07 +01002380 4, pessimal_latency_ns);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03002381 fwater_lo = I915_READ(FW_BLC) & ~0xfff;
2382 fwater_lo |= (3<<8) | planea_wm;
2383
2384 DRM_DEBUG_KMS("Setting FIFO watermarks - A: %d\n", planea_wm);
2385
2386 I915_WRITE(FW_BLC, fwater_lo);
2387}
2388
Ville Syrjälä37126462013-08-01 16:18:55 +03002389/* latency must be in 0.1us units. */
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002390static unsigned int ilk_wm_method1(unsigned int pixel_rate,
2391 unsigned int cpp,
2392 unsigned int latency)
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002393{
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002394 unsigned int ret;
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002395
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002396 ret = intel_wm_method1(pixel_rate, cpp, latency);
2397 ret = DIV_ROUND_UP(ret, 64) + 2;
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002398
2399 return ret;
2400}
2401
Ville Syrjälä37126462013-08-01 16:18:55 +03002402/* latency must be in 0.1us units. */
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002403static unsigned int ilk_wm_method2(unsigned int pixel_rate,
2404 unsigned int htotal,
2405 unsigned int width,
2406 unsigned int cpp,
2407 unsigned int latency)
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002408{
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002409 unsigned int ret;
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002410
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002411 ret = intel_wm_method2(pixel_rate, htotal,
2412 width, cpp, latency);
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002413 ret = DIV_ROUND_UP(ret, 64) + 2;
Ville Syrjäläbaf69ca2017-04-21 21:14:27 +03002414
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002415 return ret;
2416}
2417
Ville Syrjälä23297042013-07-05 11:57:17 +03002418static uint32_t ilk_wm_fbc(uint32_t pri_val, uint32_t horiz_pixels,
Ville Syrjäläac484962016-01-20 21:05:26 +02002419 uint8_t cpp)
Paulo Zanonicca32e92013-05-31 11:45:06 -03002420{
Matt Roper15126882015-12-03 11:37:40 -08002421 /*
2422 * Neither of these should be possible since this function shouldn't be
2423 * called if the CRTC is off or the plane is invisible. But let's be
2424 * extra paranoid to avoid a potential divide-by-zero if we screw up
2425 * elsewhere in the driver.
2426 */
Ville Syrjäläac484962016-01-20 21:05:26 +02002427 if (WARN_ON(!cpp))
Matt Roper15126882015-12-03 11:37:40 -08002428 return 0;
2429 if (WARN_ON(!horiz_pixels))
2430 return 0;
2431
Ville Syrjäläac484962016-01-20 21:05:26 +02002432 return DIV_ROUND_UP(pri_val * 64, horiz_pixels * cpp) + 2;
Paulo Zanonicca32e92013-05-31 11:45:06 -03002433}
2434
Imre Deak820c1982013-12-17 14:46:36 +02002435struct ilk_wm_maximums {
Paulo Zanonicca32e92013-05-31 11:45:06 -03002436 uint16_t pri;
2437 uint16_t spr;
2438 uint16_t cur;
2439 uint16_t fbc;
2440};
2441
Ville Syrjälä37126462013-08-01 16:18:55 +03002442/*
2443 * For both WM_PIPE and WM_LP.
2444 * mem_value must be in 0.1us units.
2445 */
Matt Roper7221fc32015-09-24 15:53:08 -07002446static uint32_t ilk_compute_pri_wm(const struct intel_crtc_state *cstate,
Matt Roper43d59ed2015-09-24 15:53:07 -07002447 const struct intel_plane_state *pstate,
Paulo Zanonicca32e92013-05-31 11:45:06 -03002448 uint32_t mem_value,
2449 bool is_lp)
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002450{
Paulo Zanonicca32e92013-05-31 11:45:06 -03002451 uint32_t method1, method2;
Ville Syrjälä83054942016-11-18 21:53:00 +02002452 int cpp;
Paulo Zanonicca32e92013-05-31 11:45:06 -03002453
Ville Syrjälä24304d82017-03-14 17:10:49 +02002454 if (!intel_wm_plane_visible(cstate, pstate))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002455 return 0;
2456
Ville Syrjälä353c8592016-12-14 23:30:57 +02002457 cpp = pstate->base.fb->format->cpp[0];
Ville Syrjälä83054942016-11-18 21:53:00 +02002458
Ville Syrjäläa7d1b3f2017-01-26 21:50:31 +02002459 method1 = ilk_wm_method1(cstate->pixel_rate, cpp, mem_value);
Paulo Zanonicca32e92013-05-31 11:45:06 -03002460
2461 if (!is_lp)
2462 return method1;
2463
Ville Syrjäläa7d1b3f2017-01-26 21:50:31 +02002464 method2 = ilk_wm_method2(cstate->pixel_rate,
Matt Roper7221fc32015-09-24 15:53:08 -07002465 cstate->base.adjusted_mode.crtc_htotal,
Ville Syrjälä936e71e2016-07-26 19:06:59 +03002466 drm_rect_width(&pstate->base.dst),
Ville Syrjäläac484962016-01-20 21:05:26 +02002467 cpp, mem_value);
Paulo Zanonicca32e92013-05-31 11:45:06 -03002468
2469 return min(method1, method2);
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002470}
2471
Ville Syrjälä37126462013-08-01 16:18:55 +03002472/*
2473 * For both WM_PIPE and WM_LP.
2474 * mem_value must be in 0.1us units.
2475 */
Matt Roper7221fc32015-09-24 15:53:08 -07002476static uint32_t ilk_compute_spr_wm(const struct intel_crtc_state *cstate,
Matt Roper43d59ed2015-09-24 15:53:07 -07002477 const struct intel_plane_state *pstate,
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002478 uint32_t mem_value)
2479{
2480 uint32_t method1, method2;
Ville Syrjälä83054942016-11-18 21:53:00 +02002481 int cpp;
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002482
Ville Syrjälä24304d82017-03-14 17:10:49 +02002483 if (!intel_wm_plane_visible(cstate, pstate))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002484 return 0;
2485
Ville Syrjälä353c8592016-12-14 23:30:57 +02002486 cpp = pstate->base.fb->format->cpp[0];
Ville Syrjälä83054942016-11-18 21:53:00 +02002487
Ville Syrjäläa7d1b3f2017-01-26 21:50:31 +02002488 method1 = ilk_wm_method1(cstate->pixel_rate, cpp, mem_value);
2489 method2 = ilk_wm_method2(cstate->pixel_rate,
Matt Roper7221fc32015-09-24 15:53:08 -07002490 cstate->base.adjusted_mode.crtc_htotal,
Ville Syrjälä936e71e2016-07-26 19:06:59 +03002491 drm_rect_width(&pstate->base.dst),
Ville Syrjäläac484962016-01-20 21:05:26 +02002492 cpp, mem_value);
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002493 return min(method1, method2);
2494}
2495
Ville Syrjälä37126462013-08-01 16:18:55 +03002496/*
2497 * For both WM_PIPE and WM_LP.
2498 * mem_value must be in 0.1us units.
2499 */
Matt Roper7221fc32015-09-24 15:53:08 -07002500static uint32_t ilk_compute_cur_wm(const struct intel_crtc_state *cstate,
Matt Roper43d59ed2015-09-24 15:53:07 -07002501 const struct intel_plane_state *pstate,
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002502 uint32_t mem_value)
2503{
Ville Syrjäläa5509ab2017-02-17 17:01:59 +02002504 int cpp;
Matt Roper43d59ed2015-09-24 15:53:07 -07002505
Ville Syrjälä24304d82017-03-14 17:10:49 +02002506 if (!intel_wm_plane_visible(cstate, pstate))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002507 return 0;
2508
Ville Syrjäläa5509ab2017-02-17 17:01:59 +02002509 cpp = pstate->base.fb->format->cpp[0];
2510
Ville Syrjäläa7d1b3f2017-01-26 21:50:31 +02002511 return ilk_wm_method2(cstate->pixel_rate,
Matt Roper7221fc32015-09-24 15:53:08 -07002512 cstate->base.adjusted_mode.crtc_htotal,
Ville Syrjäläa5509ab2017-02-17 17:01:59 +02002513 pstate->base.crtc_w, cpp, mem_value);
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002514}
2515
Paulo Zanonicca32e92013-05-31 11:45:06 -03002516/* Only for WM_LP. */
Matt Roper7221fc32015-09-24 15:53:08 -07002517static uint32_t ilk_compute_fbc_wm(const struct intel_crtc_state *cstate,
Matt Roper43d59ed2015-09-24 15:53:07 -07002518 const struct intel_plane_state *pstate,
Ville Syrjälä1fda9882013-07-05 11:57:19 +03002519 uint32_t pri_val)
Paulo Zanonicca32e92013-05-31 11:45:06 -03002520{
Ville Syrjälä83054942016-11-18 21:53:00 +02002521 int cpp;
Matt Roper43d59ed2015-09-24 15:53:07 -07002522
Ville Syrjälä24304d82017-03-14 17:10:49 +02002523 if (!intel_wm_plane_visible(cstate, pstate))
Paulo Zanonicca32e92013-05-31 11:45:06 -03002524 return 0;
2525
Ville Syrjälä353c8592016-12-14 23:30:57 +02002526 cpp = pstate->base.fb->format->cpp[0];
Ville Syrjälä83054942016-11-18 21:53:00 +02002527
Ville Syrjälä936e71e2016-07-26 19:06:59 +03002528 return ilk_wm_fbc(pri_val, drm_rect_width(&pstate->base.dst), cpp);
Paulo Zanonicca32e92013-05-31 11:45:06 -03002529}
2530
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002531static unsigned int
2532ilk_display_fifo_size(const struct drm_i915_private *dev_priv)
Ville Syrjälä158ae642013-08-07 13:28:19 +03002533{
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002534 if (INTEL_GEN(dev_priv) >= 8)
Ville Syrjälä416f4722013-11-02 21:07:46 -07002535 return 3072;
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002536 else if (INTEL_GEN(dev_priv) >= 7)
Ville Syrjälä158ae642013-08-07 13:28:19 +03002537 return 768;
2538 else
2539 return 512;
2540}
2541
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002542static unsigned int
2543ilk_plane_wm_reg_max(const struct drm_i915_private *dev_priv,
2544 int level, bool is_sprite)
Ville Syrjälä4e975082014-03-07 18:32:11 +02002545{
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002546 if (INTEL_GEN(dev_priv) >= 8)
Ville Syrjälä4e975082014-03-07 18:32:11 +02002547 /* BDW primary/sprite plane watermarks */
2548 return level == 0 ? 255 : 2047;
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002549 else if (INTEL_GEN(dev_priv) >= 7)
Ville Syrjälä4e975082014-03-07 18:32:11 +02002550 /* IVB/HSW primary/sprite plane watermarks */
2551 return level == 0 ? 127 : 1023;
2552 else if (!is_sprite)
2553 /* ILK/SNB primary plane watermarks */
2554 return level == 0 ? 127 : 511;
2555 else
2556 /* ILK/SNB sprite plane watermarks */
2557 return level == 0 ? 63 : 255;
2558}
2559
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002560static unsigned int
2561ilk_cursor_wm_reg_max(const struct drm_i915_private *dev_priv, int level)
Ville Syrjälä4e975082014-03-07 18:32:11 +02002562{
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002563 if (INTEL_GEN(dev_priv) >= 7)
Ville Syrjälä4e975082014-03-07 18:32:11 +02002564 return level == 0 ? 63 : 255;
2565 else
2566 return level == 0 ? 31 : 63;
2567}
2568
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002569static unsigned int ilk_fbc_wm_reg_max(const struct drm_i915_private *dev_priv)
Ville Syrjälä4e975082014-03-07 18:32:11 +02002570{
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002571 if (INTEL_GEN(dev_priv) >= 8)
Ville Syrjälä4e975082014-03-07 18:32:11 +02002572 return 31;
2573 else
2574 return 15;
2575}
2576
Ville Syrjälä158ae642013-08-07 13:28:19 +03002577/* Calculate the maximum primary/sprite plane watermark */
2578static unsigned int ilk_plane_wm_max(const struct drm_device *dev,
2579 int level,
Ville Syrjälä240264f2013-08-07 13:29:12 +03002580 const struct intel_wm_config *config,
Ville Syrjälä158ae642013-08-07 13:28:19 +03002581 enum intel_ddb_partitioning ddb_partitioning,
2582 bool is_sprite)
2583{
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002584 struct drm_i915_private *dev_priv = to_i915(dev);
2585 unsigned int fifo_size = ilk_display_fifo_size(dev_priv);
Ville Syrjälä158ae642013-08-07 13:28:19 +03002586
2587 /* if sprites aren't enabled, sprites get nothing */
Ville Syrjälä240264f2013-08-07 13:29:12 +03002588 if (is_sprite && !config->sprites_enabled)
Ville Syrjälä158ae642013-08-07 13:28:19 +03002589 return 0;
2590
2591 /* HSW allows LP1+ watermarks even with multiple pipes */
Ville Syrjälä240264f2013-08-07 13:29:12 +03002592 if (level == 0 || config->num_pipes_active > 1) {
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002593 fifo_size /= INTEL_INFO(dev_priv)->num_pipes;
Ville Syrjälä158ae642013-08-07 13:28:19 +03002594
2595 /*
2596 * For some reason the non self refresh
2597 * FIFO size is only half of the self
2598 * refresh FIFO size on ILK/SNB.
2599 */
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002600 if (INTEL_GEN(dev_priv) <= 6)
Ville Syrjälä158ae642013-08-07 13:28:19 +03002601 fifo_size /= 2;
2602 }
2603
Ville Syrjälä240264f2013-08-07 13:29:12 +03002604 if (config->sprites_enabled) {
Ville Syrjälä158ae642013-08-07 13:28:19 +03002605 /* level 0 is always calculated with 1:1 split */
2606 if (level > 0 && ddb_partitioning == INTEL_DDB_PART_5_6) {
2607 if (is_sprite)
2608 fifo_size *= 5;
2609 fifo_size /= 6;
2610 } else {
2611 fifo_size /= 2;
2612 }
2613 }
2614
2615 /* clamp to max that the registers can hold */
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002616 return min(fifo_size, ilk_plane_wm_reg_max(dev_priv, level, is_sprite));
Ville Syrjälä158ae642013-08-07 13:28:19 +03002617}
2618
2619/* Calculate the maximum cursor plane watermark */
2620static unsigned int ilk_cursor_wm_max(const struct drm_device *dev,
Ville Syrjälä240264f2013-08-07 13:29:12 +03002621 int level,
2622 const struct intel_wm_config *config)
Ville Syrjälä158ae642013-08-07 13:28:19 +03002623{
2624 /* HSW LP1+ watermarks w/ multiple pipes */
Ville Syrjälä240264f2013-08-07 13:29:12 +03002625 if (level > 0 && config->num_pipes_active > 1)
Ville Syrjälä158ae642013-08-07 13:28:19 +03002626 return 64;
2627
2628 /* otherwise just report max that registers can hold */
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002629 return ilk_cursor_wm_reg_max(to_i915(dev), level);
Ville Syrjälä158ae642013-08-07 13:28:19 +03002630}
2631
Damien Lespiaud34ff9c2014-01-06 19:17:23 +00002632static void ilk_compute_wm_maximums(const struct drm_device *dev,
Ville Syrjälä34982fe2013-10-09 19:18:09 +03002633 int level,
2634 const struct intel_wm_config *config,
2635 enum intel_ddb_partitioning ddb_partitioning,
Imre Deak820c1982013-12-17 14:46:36 +02002636 struct ilk_wm_maximums *max)
Ville Syrjälä158ae642013-08-07 13:28:19 +03002637{
Ville Syrjälä240264f2013-08-07 13:29:12 +03002638 max->pri = ilk_plane_wm_max(dev, level, config, ddb_partitioning, false);
2639 max->spr = ilk_plane_wm_max(dev, level, config, ddb_partitioning, true);
2640 max->cur = ilk_cursor_wm_max(dev, level, config);
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002641 max->fbc = ilk_fbc_wm_reg_max(to_i915(dev));
Ville Syrjälä158ae642013-08-07 13:28:19 +03002642}
2643
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002644static void ilk_compute_wm_reg_maximums(const struct drm_i915_private *dev_priv,
Ville Syrjäläa3cb4042014-04-28 15:44:56 +03002645 int level,
2646 struct ilk_wm_maximums *max)
2647{
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00002648 max->pri = ilk_plane_wm_reg_max(dev_priv, level, false);
2649 max->spr = ilk_plane_wm_reg_max(dev_priv, level, true);
2650 max->cur = ilk_cursor_wm_reg_max(dev_priv, level);
2651 max->fbc = ilk_fbc_wm_reg_max(dev_priv);
Ville Syrjäläa3cb4042014-04-28 15:44:56 +03002652}
2653
Ville Syrjäläd9395652013-10-09 19:18:10 +03002654static bool ilk_validate_wm_level(int level,
Imre Deak820c1982013-12-17 14:46:36 +02002655 const struct ilk_wm_maximums *max,
Ville Syrjäläd9395652013-10-09 19:18:10 +03002656 struct intel_wm_level *result)
Ville Syrjäläa9786a12013-08-07 13:24:47 +03002657{
2658 bool ret;
2659
2660 /* already determined to be invalid? */
2661 if (!result->enable)
2662 return false;
2663
2664 result->enable = result->pri_val <= max->pri &&
2665 result->spr_val <= max->spr &&
2666 result->cur_val <= max->cur;
2667
2668 ret = result->enable;
2669
2670 /*
2671 * HACK until we can pre-compute everything,
2672 * and thus fail gracefully if LP0 watermarks
2673 * are exceeded...
2674 */
2675 if (level == 0 && !result->enable) {
2676 if (result->pri_val > max->pri)
2677 DRM_DEBUG_KMS("Primary WM%d too large %u (max %u)\n",
2678 level, result->pri_val, max->pri);
2679 if (result->spr_val > max->spr)
2680 DRM_DEBUG_KMS("Sprite WM%d too large %u (max %u)\n",
2681 level, result->spr_val, max->spr);
2682 if (result->cur_val > max->cur)
2683 DRM_DEBUG_KMS("Cursor WM%d too large %u (max %u)\n",
2684 level, result->cur_val, max->cur);
2685
2686 result->pri_val = min_t(uint32_t, result->pri_val, max->pri);
2687 result->spr_val = min_t(uint32_t, result->spr_val, max->spr);
2688 result->cur_val = min_t(uint32_t, result->cur_val, max->cur);
2689 result->enable = true;
2690 }
2691
Ville Syrjäläa9786a12013-08-07 13:24:47 +03002692 return ret;
2693}
2694
Damien Lespiaud34ff9c2014-01-06 19:17:23 +00002695static void ilk_compute_wm_level(const struct drm_i915_private *dev_priv,
Matt Roper43d59ed2015-09-24 15:53:07 -07002696 const struct intel_crtc *intel_crtc,
Ville Syrjälä6f5ddd12013-08-06 22:24:02 +03002697 int level,
Matt Roper7221fc32015-09-24 15:53:08 -07002698 struct intel_crtc_state *cstate,
Matt Roper86c8bbb2015-09-24 15:53:16 -07002699 struct intel_plane_state *pristate,
2700 struct intel_plane_state *sprstate,
2701 struct intel_plane_state *curstate,
Ville Syrjälä1fd527c2013-08-06 22:24:05 +03002702 struct intel_wm_level *result)
Ville Syrjälä6f5ddd12013-08-06 22:24:02 +03002703{
2704 uint16_t pri_latency = dev_priv->wm.pri_latency[level];
2705 uint16_t spr_latency = dev_priv->wm.spr_latency[level];
2706 uint16_t cur_latency = dev_priv->wm.cur_latency[level];
2707
2708 /* WM1+ latency values stored in 0.5us units */
2709 if (level > 0) {
2710 pri_latency *= 5;
2711 spr_latency *= 5;
2712 cur_latency *= 5;
2713 }
2714
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01002715 if (pristate) {
2716 result->pri_val = ilk_compute_pri_wm(cstate, pristate,
2717 pri_latency, level);
2718 result->fbc_val = ilk_compute_fbc_wm(cstate, pristate, result->pri_val);
2719 }
2720
2721 if (sprstate)
2722 result->spr_val = ilk_compute_spr_wm(cstate, sprstate, spr_latency);
2723
2724 if (curstate)
2725 result->cur_val = ilk_compute_cur_wm(cstate, curstate, cur_latency);
2726
Ville Syrjälä6f5ddd12013-08-06 22:24:02 +03002727 result->enable = true;
2728}
2729
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002730static uint32_t
Ville Syrjälä532f7a72016-04-29 17:31:17 +03002731hsw_compute_linetime_wm(const struct intel_crtc_state *cstate)
Eugeni Dodonov1f8eeab2012-05-09 15:37:24 -03002732{
Ville Syrjälä532f7a72016-04-29 17:31:17 +03002733 const struct intel_atomic_state *intel_state =
2734 to_intel_atomic_state(cstate->base.state);
Matt Roperee91a152015-12-03 11:37:39 -08002735 const struct drm_display_mode *adjusted_mode =
2736 &cstate->base.adjusted_mode;
Paulo Zanoni85a02de2013-05-03 17:23:43 -03002737 u32 linetime, ips_linetime;
Eugeni Dodonov1f8eeab2012-05-09 15:37:24 -03002738
Matt Roperee91a152015-12-03 11:37:39 -08002739 if (!cstate->base.active)
2740 return 0;
2741 if (WARN_ON(adjusted_mode->crtc_clock == 0))
2742 return 0;
Ville Syrjäläbb0f4aa2017-01-20 20:21:59 +02002743 if (WARN_ON(intel_state->cdclk.logical.cdclk == 0))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002744 return 0;
Paulo Zanoni1011d8c2013-05-09 16:55:50 -03002745
Eugeni Dodonov1f8eeab2012-05-09 15:37:24 -03002746 /* The WM are computed with base on how long it takes to fill a single
2747 * row at the given clock rate, multiplied by 8.
2748 * */
Ville Syrjälä124abe02015-09-08 13:40:45 +03002749 linetime = DIV_ROUND_CLOSEST(adjusted_mode->crtc_htotal * 1000 * 8,
2750 adjusted_mode->crtc_clock);
2751 ips_linetime = DIV_ROUND_CLOSEST(adjusted_mode->crtc_htotal * 1000 * 8,
Ville Syrjäläbb0f4aa2017-01-20 20:21:59 +02002752 intel_state->cdclk.logical.cdclk);
Eugeni Dodonov1f8eeab2012-05-09 15:37:24 -03002753
Paulo Zanoni801bcff2013-05-31 10:08:35 -03002754 return PIPE_WM_LINETIME_IPS_LINETIME(ips_linetime) |
2755 PIPE_WM_LINETIME_TIME(linetime);
Eugeni Dodonov1f8eeab2012-05-09 15:37:24 -03002756}
2757
Ville Syrjäläbb726512016-10-31 22:37:24 +02002758static void intel_read_wm_latency(struct drm_i915_private *dev_priv,
2759 uint16_t wm[8])
Ville Syrjälä12b134d2013-07-05 11:57:21 +03002760{
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002761 if (IS_GEN9(dev_priv)) {
Pradeep Bhat2af30a52014-11-04 17:06:38 +00002762 uint32_t val;
Vandana Kannan4f947382014-11-04 17:06:47 +00002763 int ret, i;
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002764 int level, max_level = ilk_wm_max_level(dev_priv);
Pradeep Bhat2af30a52014-11-04 17:06:38 +00002765
2766 /* read the first set of memory latencies[0:3] */
2767 val = 0; /* data0 to be programmed to 0 for first set */
2768 mutex_lock(&dev_priv->rps.hw_lock);
2769 ret = sandybridge_pcode_read(dev_priv,
2770 GEN9_PCODE_READ_MEM_LATENCY,
2771 &val);
2772 mutex_unlock(&dev_priv->rps.hw_lock);
2773
2774 if (ret) {
2775 DRM_ERROR("SKL Mailbox read error = %d\n", ret);
2776 return;
2777 }
2778
2779 wm[0] = val & GEN9_MEM_LATENCY_LEVEL_MASK;
2780 wm[1] = (val >> GEN9_MEM_LATENCY_LEVEL_1_5_SHIFT) &
2781 GEN9_MEM_LATENCY_LEVEL_MASK;
2782 wm[2] = (val >> GEN9_MEM_LATENCY_LEVEL_2_6_SHIFT) &
2783 GEN9_MEM_LATENCY_LEVEL_MASK;
2784 wm[3] = (val >> GEN9_MEM_LATENCY_LEVEL_3_7_SHIFT) &
2785 GEN9_MEM_LATENCY_LEVEL_MASK;
2786
2787 /* read the second set of memory latencies[4:7] */
2788 val = 1; /* data0 to be programmed to 1 for second set */
2789 mutex_lock(&dev_priv->rps.hw_lock);
2790 ret = sandybridge_pcode_read(dev_priv,
2791 GEN9_PCODE_READ_MEM_LATENCY,
2792 &val);
2793 mutex_unlock(&dev_priv->rps.hw_lock);
2794 if (ret) {
2795 DRM_ERROR("SKL Mailbox read error = %d\n", ret);
2796 return;
2797 }
2798
2799 wm[4] = val & GEN9_MEM_LATENCY_LEVEL_MASK;
2800 wm[5] = (val >> GEN9_MEM_LATENCY_LEVEL_1_5_SHIFT) &
2801 GEN9_MEM_LATENCY_LEVEL_MASK;
2802 wm[6] = (val >> GEN9_MEM_LATENCY_LEVEL_2_6_SHIFT) &
2803 GEN9_MEM_LATENCY_LEVEL_MASK;
2804 wm[7] = (val >> GEN9_MEM_LATENCY_LEVEL_3_7_SHIFT) &
2805 GEN9_MEM_LATENCY_LEVEL_MASK;
2806
Vandana Kannan367294b2014-11-04 17:06:46 +00002807 /*
Paulo Zanoni0727e402016-09-22 18:00:30 -03002808 * If a level n (n > 1) has a 0us latency, all levels m (m >= n)
2809 * need to be disabled. We make sure to sanitize the values out
2810 * of the punit to satisfy this requirement.
2811 */
2812 for (level = 1; level <= max_level; level++) {
2813 if (wm[level] == 0) {
2814 for (i = level + 1; i <= max_level; i++)
2815 wm[i] = 0;
2816 break;
2817 }
2818 }
2819
2820 /*
Ander Conselvan de Oliveira9fb50262017-01-26 11:16:58 +02002821 * WaWmMemoryReadLatency:skl,glk
Damien Lespiau6f972352015-02-09 19:33:07 +00002822 *
Vandana Kannan367294b2014-11-04 17:06:46 +00002823 * punit doesn't take into account the read latency so we need
Paulo Zanoni0727e402016-09-22 18:00:30 -03002824 * to add 2us to the various latency levels we retrieve from the
2825 * punit when level 0 response data us 0us.
Vandana Kannan367294b2014-11-04 17:06:46 +00002826 */
Paulo Zanoni0727e402016-09-22 18:00:30 -03002827 if (wm[0] == 0) {
2828 wm[0] += 2;
2829 for (level = 1; level <= max_level; level++) {
2830 if (wm[level] == 0)
2831 break;
Vandana Kannan367294b2014-11-04 17:06:46 +00002832 wm[level] += 2;
Vandana Kannan4f947382014-11-04 17:06:47 +00002833 }
Paulo Zanoni0727e402016-09-22 18:00:30 -03002834 }
2835
Tvrtko Ursulin86527442016-10-13 11:03:00 +01002836 } else if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv)) {
Ville Syrjälä12b134d2013-07-05 11:57:21 +03002837 uint64_t sskpd = I915_READ64(MCH_SSKPD);
2838
2839 wm[0] = (sskpd >> 56) & 0xFF;
2840 if (wm[0] == 0)
2841 wm[0] = sskpd & 0xF;
Ville Syrjäläe5d50192013-07-05 11:57:22 +03002842 wm[1] = (sskpd >> 4) & 0xFF;
2843 wm[2] = (sskpd >> 12) & 0xFF;
2844 wm[3] = (sskpd >> 20) & 0x1FF;
2845 wm[4] = (sskpd >> 32) & 0x1FF;
Ville Syrjäläbb726512016-10-31 22:37:24 +02002846 } else if (INTEL_GEN(dev_priv) >= 6) {
Ville Syrjälä63cf9a12013-07-05 11:57:23 +03002847 uint32_t sskpd = I915_READ(MCH_SSKPD);
2848
2849 wm[0] = (sskpd >> SSKPD_WM0_SHIFT) & SSKPD_WM_MASK;
2850 wm[1] = (sskpd >> SSKPD_WM1_SHIFT) & SSKPD_WM_MASK;
2851 wm[2] = (sskpd >> SSKPD_WM2_SHIFT) & SSKPD_WM_MASK;
2852 wm[3] = (sskpd >> SSKPD_WM3_SHIFT) & SSKPD_WM_MASK;
Ville Syrjäläbb726512016-10-31 22:37:24 +02002853 } else if (INTEL_GEN(dev_priv) >= 5) {
Ville Syrjälä3a88d0a2013-08-01 16:18:49 +03002854 uint32_t mltr = I915_READ(MLTR_ILK);
2855
2856 /* ILK primary LP0 latency is 700 ns */
2857 wm[0] = 7;
2858 wm[1] = (mltr >> MLTR_WM1_SHIFT) & ILK_SRLT_MASK;
2859 wm[2] = (mltr >> MLTR_WM2_SHIFT) & ILK_SRLT_MASK;
Ville Syrjälä12b134d2013-07-05 11:57:21 +03002860 }
2861}
2862
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002863static void intel_fixup_spr_wm_latency(struct drm_i915_private *dev_priv,
2864 uint16_t wm[5])
Ville Syrjälä53615a52013-08-01 16:18:50 +03002865{
2866 /* ILK sprite LP0 latency is 1300 ns */
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002867 if (IS_GEN5(dev_priv))
Ville Syrjälä53615a52013-08-01 16:18:50 +03002868 wm[0] = 13;
2869}
2870
Tvrtko Ursulinfd6b8f42016-10-14 10:13:06 +01002871static void intel_fixup_cur_wm_latency(struct drm_i915_private *dev_priv,
2872 uint16_t wm[5])
Ville Syrjälä53615a52013-08-01 16:18:50 +03002873{
2874 /* ILK cursor LP0 latency is 1300 ns */
Tvrtko Ursulinfd6b8f42016-10-14 10:13:06 +01002875 if (IS_GEN5(dev_priv))
Ville Syrjälä53615a52013-08-01 16:18:50 +03002876 wm[0] = 13;
2877
2878 /* WaDoubleCursorLP3Latency:ivb */
Tvrtko Ursulinfd6b8f42016-10-14 10:13:06 +01002879 if (IS_IVYBRIDGE(dev_priv))
Ville Syrjälä53615a52013-08-01 16:18:50 +03002880 wm[3] *= 2;
2881}
2882
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002883int ilk_wm_max_level(const struct drm_i915_private *dev_priv)
Ville Syrjäläad0d6dc2013-08-30 14:30:25 +03002884{
2885 /* how many WM levels are we expecting */
Tvrtko Ursulin86527442016-10-13 11:03:00 +01002886 if (INTEL_GEN(dev_priv) >= 9)
Pradeep Bhat2af30a52014-11-04 17:06:38 +00002887 return 7;
Tvrtko Ursulin86527442016-10-13 11:03:00 +01002888 else if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
Ville Syrjäläad0d6dc2013-08-30 14:30:25 +03002889 return 4;
Tvrtko Ursulin86527442016-10-13 11:03:00 +01002890 else if (INTEL_GEN(dev_priv) >= 6)
Ville Syrjäläad0d6dc2013-08-30 14:30:25 +03002891 return 3;
2892 else
2893 return 2;
2894}
Daniel Vetter7526ed72014-09-29 15:07:19 +02002895
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002896static void intel_print_wm_latency(struct drm_i915_private *dev_priv,
Ville Syrjälä26ec9712013-08-01 16:18:52 +03002897 const char *name,
Pradeep Bhat2af30a52014-11-04 17:06:38 +00002898 const uint16_t wm[8])
Ville Syrjälä26ec9712013-08-01 16:18:52 +03002899{
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002900 int level, max_level = ilk_wm_max_level(dev_priv);
Ville Syrjälä26ec9712013-08-01 16:18:52 +03002901
2902 for (level = 0; level <= max_level; level++) {
2903 unsigned int latency = wm[level];
2904
2905 if (latency == 0) {
2906 DRM_ERROR("%s WM%d latency not provided\n",
2907 name, level);
2908 continue;
2909 }
2910
Pradeep Bhat2af30a52014-11-04 17:06:38 +00002911 /*
2912 * - latencies are in us on gen9.
2913 * - before then, WM1+ latency values are in 0.5us units
2914 */
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002915 if (IS_GEN9(dev_priv))
Pradeep Bhat2af30a52014-11-04 17:06:38 +00002916 latency *= 10;
2917 else if (level > 0)
Ville Syrjälä26ec9712013-08-01 16:18:52 +03002918 latency *= 5;
2919
2920 DRM_DEBUG_KMS("%s WM%d latency %u (%u.%u usec)\n",
2921 name, level, wm[level],
2922 latency / 10, latency % 10);
2923 }
2924}
2925
Ville Syrjäläe95a2f72014-05-08 15:09:19 +03002926static bool ilk_increase_wm_latency(struct drm_i915_private *dev_priv,
2927 uint16_t wm[5], uint16_t min)
2928{
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002929 int level, max_level = ilk_wm_max_level(dev_priv);
Ville Syrjäläe95a2f72014-05-08 15:09:19 +03002930
2931 if (wm[0] >= min)
2932 return false;
2933
2934 wm[0] = max(wm[0], min);
2935 for (level = 1; level <= max_level; level++)
2936 wm[level] = max_t(uint16_t, wm[level], DIV_ROUND_UP(min, 5));
2937
2938 return true;
2939}
2940
Ville Syrjäläbb726512016-10-31 22:37:24 +02002941static void snb_wm_latency_quirk(struct drm_i915_private *dev_priv)
Ville Syrjäläe95a2f72014-05-08 15:09:19 +03002942{
Ville Syrjäläe95a2f72014-05-08 15:09:19 +03002943 bool changed;
2944
2945 /*
2946 * The BIOS provided WM memory latency values are often
2947 * inadequate for high resolution displays. Adjust them.
2948 */
2949 changed = ilk_increase_wm_latency(dev_priv, dev_priv->wm.pri_latency, 12) |
2950 ilk_increase_wm_latency(dev_priv, dev_priv->wm.spr_latency, 12) |
2951 ilk_increase_wm_latency(dev_priv, dev_priv->wm.cur_latency, 12);
2952
2953 if (!changed)
2954 return;
2955
2956 DRM_DEBUG_KMS("WM latency values increased to avoid potential underruns\n");
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002957 intel_print_wm_latency(dev_priv, "Primary", dev_priv->wm.pri_latency);
2958 intel_print_wm_latency(dev_priv, "Sprite", dev_priv->wm.spr_latency);
2959 intel_print_wm_latency(dev_priv, "Cursor", dev_priv->wm.cur_latency);
Ville Syrjäläe95a2f72014-05-08 15:09:19 +03002960}
2961
Ville Syrjäläbb726512016-10-31 22:37:24 +02002962static void ilk_setup_wm_latency(struct drm_i915_private *dev_priv)
Ville Syrjälä53615a52013-08-01 16:18:50 +03002963{
Ville Syrjäläbb726512016-10-31 22:37:24 +02002964 intel_read_wm_latency(dev_priv, dev_priv->wm.pri_latency);
Ville Syrjälä53615a52013-08-01 16:18:50 +03002965
2966 memcpy(dev_priv->wm.spr_latency, dev_priv->wm.pri_latency,
2967 sizeof(dev_priv->wm.pri_latency));
2968 memcpy(dev_priv->wm.cur_latency, dev_priv->wm.pri_latency,
2969 sizeof(dev_priv->wm.pri_latency));
2970
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002971 intel_fixup_spr_wm_latency(dev_priv, dev_priv->wm.spr_latency);
Tvrtko Ursulinfd6b8f42016-10-14 10:13:06 +01002972 intel_fixup_cur_wm_latency(dev_priv, dev_priv->wm.cur_latency);
Ville Syrjälä26ec9712013-08-01 16:18:52 +03002973
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002974 intel_print_wm_latency(dev_priv, "Primary", dev_priv->wm.pri_latency);
2975 intel_print_wm_latency(dev_priv, "Sprite", dev_priv->wm.spr_latency);
2976 intel_print_wm_latency(dev_priv, "Cursor", dev_priv->wm.cur_latency);
Ville Syrjäläe95a2f72014-05-08 15:09:19 +03002977
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002978 if (IS_GEN6(dev_priv))
Ville Syrjäläbb726512016-10-31 22:37:24 +02002979 snb_wm_latency_quirk(dev_priv);
Ville Syrjälä53615a52013-08-01 16:18:50 +03002980}
2981
Ville Syrjäläbb726512016-10-31 22:37:24 +02002982static void skl_setup_wm_latency(struct drm_i915_private *dev_priv)
Pradeep Bhat2af30a52014-11-04 17:06:38 +00002983{
Ville Syrjäläbb726512016-10-31 22:37:24 +02002984 intel_read_wm_latency(dev_priv, dev_priv->wm.skl_latency);
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01002985 intel_print_wm_latency(dev_priv, "Gen9 Plane", dev_priv->wm.skl_latency);
Pradeep Bhat2af30a52014-11-04 17:06:38 +00002986}
2987
Matt Ropered4a6a72016-02-23 17:20:13 -08002988static bool ilk_validate_pipe_wm(struct drm_device *dev,
2989 struct intel_pipe_wm *pipe_wm)
2990{
2991 /* LP0 watermark maximums depend on this pipe alone */
2992 const struct intel_wm_config config = {
2993 .num_pipes_active = 1,
2994 .sprites_enabled = pipe_wm->sprites_enabled,
2995 .sprites_scaled = pipe_wm->sprites_scaled,
2996 };
2997 struct ilk_wm_maximums max;
2998
2999 /* LP0 watermarks always use 1/2 DDB partitioning */
3000 ilk_compute_wm_maximums(dev, 0, &config, INTEL_DDB_PART_1_2, &max);
3001
3002 /* At least LP0 must be valid */
3003 if (!ilk_validate_wm_level(0, &max, &pipe_wm->wm[0])) {
3004 DRM_DEBUG_KMS("LP0 watermark invalid\n");
3005 return false;
3006 }
3007
3008 return true;
3009}
3010
Matt Roper261a27d2015-10-08 15:28:25 -07003011/* Compute new watermarks for the pipe */
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003012static int ilk_compute_pipe_wm(struct intel_crtc_state *cstate)
Matt Roper261a27d2015-10-08 15:28:25 -07003013{
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003014 struct drm_atomic_state *state = cstate->base.state;
3015 struct intel_crtc *intel_crtc = to_intel_crtc(cstate->base.crtc);
Matt Roper86c8bbb2015-09-24 15:53:16 -07003016 struct intel_pipe_wm *pipe_wm;
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003017 struct drm_device *dev = state->dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +01003018 const struct drm_i915_private *dev_priv = to_i915(dev);
Matt Roper43d59ed2015-09-24 15:53:07 -07003019 struct intel_plane *intel_plane;
Matt Roper86c8bbb2015-09-24 15:53:16 -07003020 struct intel_plane_state *pristate = NULL;
Matt Roper43d59ed2015-09-24 15:53:07 -07003021 struct intel_plane_state *sprstate = NULL;
Matt Roper86c8bbb2015-09-24 15:53:16 -07003022 struct intel_plane_state *curstate = NULL;
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01003023 int level, max_level = ilk_wm_max_level(dev_priv), usable_level;
Imre Deak820c1982013-12-17 14:46:36 +02003024 struct ilk_wm_maximums max;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003025
Matt Ropere8f1f022016-05-12 07:05:55 -07003026 pipe_wm = &cstate->wm.ilk.optimal;
Matt Roper86c8bbb2015-09-24 15:53:16 -07003027
Matt Roper43d59ed2015-09-24 15:53:07 -07003028 for_each_intel_plane_on_crtc(dev, intel_crtc, intel_plane) {
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003029 struct intel_plane_state *ps;
3030
3031 ps = intel_atomic_get_existing_plane_state(state,
3032 intel_plane);
3033 if (!ps)
3034 continue;
Matt Roper86c8bbb2015-09-24 15:53:16 -07003035
3036 if (intel_plane->base.type == DRM_PLANE_TYPE_PRIMARY)
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003037 pristate = ps;
Matt Roper86c8bbb2015-09-24 15:53:16 -07003038 else if (intel_plane->base.type == DRM_PLANE_TYPE_OVERLAY)
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003039 sprstate = ps;
Matt Roper86c8bbb2015-09-24 15:53:16 -07003040 else if (intel_plane->base.type == DRM_PLANE_TYPE_CURSOR)
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003041 curstate = ps;
Matt Roper43d59ed2015-09-24 15:53:07 -07003042 }
3043
Matt Ropered4a6a72016-02-23 17:20:13 -08003044 pipe_wm->pipe_enabled = cstate->base.active;
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003045 if (sprstate) {
Ville Syrjälä936e71e2016-07-26 19:06:59 +03003046 pipe_wm->sprites_enabled = sprstate->base.visible;
3047 pipe_wm->sprites_scaled = sprstate->base.visible &&
3048 (drm_rect_width(&sprstate->base.dst) != drm_rect_width(&sprstate->base.src) >> 16 ||
3049 drm_rect_height(&sprstate->base.dst) != drm_rect_height(&sprstate->base.src) >> 16);
Maarten Lankhorste3bddde2016-03-01 11:07:22 +01003050 }
3051
Maarten Lankhorstd81f04c2016-03-02 12:38:06 +01003052 usable_level = max_level;
3053
Ville Syrjälä7b39a0b2013-12-05 15:51:30 +02003054 /* ILK/SNB: LP2+ watermarks only w/o sprites */
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00003055 if (INTEL_GEN(dev_priv) <= 6 && pipe_wm->sprites_enabled)
Maarten Lankhorstd81f04c2016-03-02 12:38:06 +01003056 usable_level = 1;
Ville Syrjälä7b39a0b2013-12-05 15:51:30 +02003057
3058 /* ILK/SNB/IVB: LP1+ watermarks only w/o scaling */
Matt Ropered4a6a72016-02-23 17:20:13 -08003059 if (pipe_wm->sprites_scaled)
Maarten Lankhorstd81f04c2016-03-02 12:38:06 +01003060 usable_level = 0;
Ville Syrjälä7b39a0b2013-12-05 15:51:30 +02003061
Matt Roper86c8bbb2015-09-24 15:53:16 -07003062 ilk_compute_wm_level(dev_priv, intel_crtc, 0, cstate,
Maarten Lankhorst71f0a622016-03-08 10:57:16 +01003063 pristate, sprstate, curstate, &pipe_wm->raw_wm[0]);
3064
3065 memset(&pipe_wm->wm, 0, sizeof(pipe_wm->wm));
3066 pipe_wm->wm[0] = pipe_wm->raw_wm[0];
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003067
Tvrtko Ursulin86527442016-10-13 11:03:00 +01003068 if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
Ville Syrjälä532f7a72016-04-29 17:31:17 +03003069 pipe_wm->linetime = hsw_compute_linetime_wm(cstate);
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003070
Matt Ropered4a6a72016-02-23 17:20:13 -08003071 if (!ilk_validate_pipe_wm(dev, pipe_wm))
Maarten Lankhorst1a426d62016-03-02 12:36:03 +01003072 return -EINVAL;
Ville Syrjäläa3cb4042014-04-28 15:44:56 +03003073
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00003074 ilk_compute_wm_reg_maximums(dev_priv, 1, &max);
Ville Syrjäläa3cb4042014-04-28 15:44:56 +03003075
3076 for (level = 1; level <= max_level; level++) {
Maarten Lankhorst71f0a622016-03-08 10:57:16 +01003077 struct intel_wm_level *wm = &pipe_wm->raw_wm[level];
Ville Syrjäläa3cb4042014-04-28 15:44:56 +03003078
Matt Roper86c8bbb2015-09-24 15:53:16 -07003079 ilk_compute_wm_level(dev_priv, intel_crtc, level, cstate,
Maarten Lankhorstd81f04c2016-03-02 12:38:06 +01003080 pristate, sprstate, curstate, wm);
Ville Syrjäläa3cb4042014-04-28 15:44:56 +03003081
3082 /*
3083 * Disable any watermark level that exceeds the
3084 * register maximums since such watermarks are
3085 * always invalid.
3086 */
Maarten Lankhorst71f0a622016-03-08 10:57:16 +01003087 if (level > usable_level)
3088 continue;
3089
3090 if (ilk_validate_wm_level(level, &max, wm))
3091 pipe_wm->wm[level] = *wm;
3092 else
Maarten Lankhorstd81f04c2016-03-02 12:38:06 +01003093 usable_level = level;
Ville Syrjäläa3cb4042014-04-28 15:44:56 +03003094 }
3095
Matt Roper86c8bbb2015-09-24 15:53:16 -07003096 return 0;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003097}
3098
3099/*
Matt Ropered4a6a72016-02-23 17:20:13 -08003100 * Build a set of 'intermediate' watermark values that satisfy both the old
3101 * state and the new state. These can be programmed to the hardware
3102 * immediately.
3103 */
3104static int ilk_compute_intermediate_wm(struct drm_device *dev,
3105 struct intel_crtc *intel_crtc,
3106 struct intel_crtc_state *newstate)
3107{
Matt Ropere8f1f022016-05-12 07:05:55 -07003108 struct intel_pipe_wm *a = &newstate->wm.ilk.intermediate;
Matt Ropered4a6a72016-02-23 17:20:13 -08003109 struct intel_pipe_wm *b = &intel_crtc->wm.active.ilk;
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01003110 int level, max_level = ilk_wm_max_level(to_i915(dev));
Matt Ropered4a6a72016-02-23 17:20:13 -08003111
3112 /*
3113 * Start with the final, target watermarks, then combine with the
3114 * currently active watermarks to get values that are safe both before
3115 * and after the vblank.
3116 */
Matt Ropere8f1f022016-05-12 07:05:55 -07003117 *a = newstate->wm.ilk.optimal;
Matt Ropered4a6a72016-02-23 17:20:13 -08003118 a->pipe_enabled |= b->pipe_enabled;
3119 a->sprites_enabled |= b->sprites_enabled;
3120 a->sprites_scaled |= b->sprites_scaled;
3121
3122 for (level = 0; level <= max_level; level++) {
3123 struct intel_wm_level *a_wm = &a->wm[level];
3124 const struct intel_wm_level *b_wm = &b->wm[level];
3125
3126 a_wm->enable &= b_wm->enable;
3127 a_wm->pri_val = max(a_wm->pri_val, b_wm->pri_val);
3128 a_wm->spr_val = max(a_wm->spr_val, b_wm->spr_val);
3129 a_wm->cur_val = max(a_wm->cur_val, b_wm->cur_val);
3130 a_wm->fbc_val = max(a_wm->fbc_val, b_wm->fbc_val);
3131 }
3132
3133 /*
3134 * We need to make sure that these merged watermark values are
3135 * actually a valid configuration themselves. If they're not,
3136 * there's no safe way to transition from the old state to
3137 * the new state, so we need to fail the atomic transaction.
3138 */
3139 if (!ilk_validate_pipe_wm(dev, a))
3140 return -EINVAL;
3141
3142 /*
3143 * If our intermediate WM are identical to the final WM, then we can
3144 * omit the post-vblank programming; only update if it's different.
3145 */
Ville Syrjälä5eeb7982017-03-02 19:15:00 +02003146 if (memcmp(a, &newstate->wm.ilk.optimal, sizeof(*a)) != 0)
3147 newstate->wm.need_postvbl_update = true;
Matt Ropered4a6a72016-02-23 17:20:13 -08003148
3149 return 0;
3150}
3151
3152/*
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003153 * Merge the watermarks from all active pipes for a specific level.
3154 */
3155static void ilk_merge_wm_level(struct drm_device *dev,
3156 int level,
3157 struct intel_wm_level *ret_wm)
3158{
3159 const struct intel_crtc *intel_crtc;
3160
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003161 ret_wm->enable = true;
3162
Damien Lespiaud3fcc802014-05-13 23:32:22 +01003163 for_each_intel_crtc(dev, intel_crtc) {
Matt Ropered4a6a72016-02-23 17:20:13 -08003164 const struct intel_pipe_wm *active = &intel_crtc->wm.active.ilk;
Ville Syrjäläfe392ef2014-03-07 18:32:10 +02003165 const struct intel_wm_level *wm = &active->wm[level];
3166
3167 if (!active->pipe_enabled)
3168 continue;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003169
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003170 /*
3171 * The watermark values may have been used in the past,
3172 * so we must maintain them in the registers for some
3173 * time even if the level is now disabled.
3174 */
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003175 if (!wm->enable)
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003176 ret_wm->enable = false;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003177
3178 ret_wm->pri_val = max(ret_wm->pri_val, wm->pri_val);
3179 ret_wm->spr_val = max(ret_wm->spr_val, wm->spr_val);
3180 ret_wm->cur_val = max(ret_wm->cur_val, wm->cur_val);
3181 ret_wm->fbc_val = max(ret_wm->fbc_val, wm->fbc_val);
3182 }
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003183}
3184
3185/*
3186 * Merge all low power watermarks for all active pipes.
3187 */
3188static void ilk_wm_merge(struct drm_device *dev,
Ville Syrjälä0ba22e22013-12-05 15:51:34 +02003189 const struct intel_wm_config *config,
Imre Deak820c1982013-12-17 14:46:36 +02003190 const struct ilk_wm_maximums *max,
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003191 struct intel_pipe_wm *merged)
3192{
Chris Wilsonfac5e232016-07-04 11:34:36 +01003193 struct drm_i915_private *dev_priv = to_i915(dev);
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01003194 int level, max_level = ilk_wm_max_level(dev_priv);
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003195 int last_enabled_level = max_level;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003196
Ville Syrjälä0ba22e22013-12-05 15:51:34 +02003197 /* ILK/SNB/IVB: LP1+ watermarks only w/ single pipe */
Tvrtko Ursulinfd6b8f42016-10-14 10:13:06 +01003198 if ((INTEL_GEN(dev_priv) <= 6 || IS_IVYBRIDGE(dev_priv)) &&
Ville Syrjälä0ba22e22013-12-05 15:51:34 +02003199 config->num_pipes_active > 1)
Ville Syrjälä1204d5b2016-04-01 21:53:18 +03003200 last_enabled_level = 0;
Ville Syrjälä0ba22e22013-12-05 15:51:34 +02003201
Ville Syrjälä6c8b6c22013-12-05 15:51:35 +02003202 /* ILK: FBC WM must be disabled always */
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00003203 merged->fbc_wm_enabled = INTEL_GEN(dev_priv) >= 6;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003204
3205 /* merge each WM1+ level */
3206 for (level = 1; level <= max_level; level++) {
3207 struct intel_wm_level *wm = &merged->wm[level];
3208
3209 ilk_merge_wm_level(dev, level, wm);
3210
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003211 if (level > last_enabled_level)
3212 wm->enable = false;
3213 else if (!ilk_validate_wm_level(level, max, wm))
3214 /* make sure all following levels get disabled */
3215 last_enabled_level = level - 1;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003216
3217 /*
3218 * The spec says it is preferred to disable
3219 * FBC WMs instead of disabling a WM level.
3220 */
3221 if (wm->fbc_val > max->fbc) {
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003222 if (wm->enable)
3223 merged->fbc_wm_enabled = false;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003224 wm->fbc_val = 0;
3225 }
3226 }
Ville Syrjälä6c8b6c22013-12-05 15:51:35 +02003227
3228 /* ILK: LP2+ must be disabled when FBC WM is disabled but FBC enabled */
3229 /*
3230 * FIXME this is racy. FBC might get enabled later.
3231 * What we should check here is whether FBC can be
3232 * enabled sometime later.
3233 */
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01003234 if (IS_GEN5(dev_priv) && !merged->fbc_wm_enabled &&
Paulo Zanoni0e631ad2015-10-14 17:45:36 -03003235 intel_fbc_is_active(dev_priv)) {
Ville Syrjälä6c8b6c22013-12-05 15:51:35 +02003236 for (level = 2; level <= max_level; level++) {
3237 struct intel_wm_level *wm = &merged->wm[level];
3238
3239 wm->enable = false;
3240 }
3241 }
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003242}
3243
Ville Syrjäläb380ca32013-10-09 19:18:01 +03003244static int ilk_wm_lp_to_level(int wm_lp, const struct intel_pipe_wm *pipe_wm)
3245{
3246 /* LP1,LP2,LP3 levels are either 1,2,3 or 1,3,4 */
3247 return wm_lp + (wm_lp >= 2 && pipe_wm->wm[4].enable);
3248}
3249
Ville Syrjäläa68d68e2013-12-05 15:51:29 +02003250/* The value we need to program into the WM_LPx latency field */
3251static unsigned int ilk_wm_lp_latency(struct drm_device *dev, int level)
3252{
Chris Wilsonfac5e232016-07-04 11:34:36 +01003253 struct drm_i915_private *dev_priv = to_i915(dev);
Ville Syrjäläa68d68e2013-12-05 15:51:29 +02003254
Tvrtko Ursulin86527442016-10-13 11:03:00 +01003255 if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
Ville Syrjäläa68d68e2013-12-05 15:51:29 +02003256 return 2 * level;
3257 else
3258 return dev_priv->wm.pri_latency[level];
3259}
3260
Imre Deak820c1982013-12-17 14:46:36 +02003261static void ilk_compute_wm_results(struct drm_device *dev,
Ville Syrjälä0362c782013-10-09 19:17:57 +03003262 const struct intel_pipe_wm *merged,
Ville Syrjälä609cede2013-10-09 19:18:03 +03003263 enum intel_ddb_partitioning partitioning,
Imre Deak820c1982013-12-17 14:46:36 +02003264 struct ilk_wm_values *results)
Paulo Zanoni1011d8c2013-05-09 16:55:50 -03003265{
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00003266 struct drm_i915_private *dev_priv = to_i915(dev);
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003267 struct intel_crtc *intel_crtc;
3268 int level, wm_lp;
Paulo Zanonicca32e92013-05-31 11:45:06 -03003269
Ville Syrjälä0362c782013-10-09 19:17:57 +03003270 results->enable_fbc_wm = merged->fbc_wm_enabled;
Ville Syrjälä609cede2013-10-09 19:18:03 +03003271 results->partitioning = partitioning;
Paulo Zanonicca32e92013-05-31 11:45:06 -03003272
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003273 /* LP1+ register values */
Paulo Zanonicca32e92013-05-31 11:45:06 -03003274 for (wm_lp = 1; wm_lp <= 3; wm_lp++) {
Ville Syrjälä1fd527c2013-08-06 22:24:05 +03003275 const struct intel_wm_level *r;
Paulo Zanonicca32e92013-05-31 11:45:06 -03003276
Ville Syrjäläb380ca32013-10-09 19:18:01 +03003277 level = ilk_wm_lp_to_level(wm_lp, merged);
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003278
Ville Syrjälä0362c782013-10-09 19:17:57 +03003279 r = &merged->wm[level];
Paulo Zanonicca32e92013-05-31 11:45:06 -03003280
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003281 /*
3282 * Maintain the watermark values even if the level is
3283 * disabled. Doing otherwise could cause underruns.
3284 */
3285 results->wm_lp[wm_lp - 1] =
Ville Syrjäläa68d68e2013-12-05 15:51:29 +02003286 (ilk_wm_lp_latency(dev, level) << WM1_LP_LATENCY_SHIFT) |
Ville Syrjälä416f4722013-11-02 21:07:46 -07003287 (r->pri_val << WM1_LP_SR_SHIFT) |
3288 r->cur_val;
3289
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003290 if (r->enable)
3291 results->wm_lp[wm_lp - 1] |= WM1_LP_SR_EN;
3292
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00003293 if (INTEL_GEN(dev_priv) >= 8)
Ville Syrjälä416f4722013-11-02 21:07:46 -07003294 results->wm_lp[wm_lp - 1] |=
3295 r->fbc_val << WM1_LP_FBC_SHIFT_BDW;
3296 else
3297 results->wm_lp[wm_lp - 1] |=
3298 r->fbc_val << WM1_LP_FBC_SHIFT;
3299
Ville Syrjäläd52fea52014-04-28 15:44:57 +03003300 /*
3301 * Always set WM1S_LP_EN when spr_val != 0, even if the
3302 * level is disabled. Doing otherwise could cause underruns.
3303 */
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00003304 if (INTEL_GEN(dev_priv) <= 6 && r->spr_val) {
Ville Syrjälä6cef2b8a2013-12-05 15:51:32 +02003305 WARN_ON(wm_lp != 1);
3306 results->wm_lp_spr[wm_lp - 1] = WM1S_LP_EN | r->spr_val;
3307 } else
3308 results->wm_lp_spr[wm_lp - 1] = r->spr_val;
Paulo Zanonicca32e92013-05-31 11:45:06 -03003309 }
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003310
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003311 /* LP0 register values */
Damien Lespiaud3fcc802014-05-13 23:32:22 +01003312 for_each_intel_crtc(dev, intel_crtc) {
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003313 enum pipe pipe = intel_crtc->pipe;
Matt Ropered4a6a72016-02-23 17:20:13 -08003314 const struct intel_wm_level *r =
3315 &intel_crtc->wm.active.ilk.wm[0];
Paulo Zanoni1011d8c2013-05-09 16:55:50 -03003316
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003317 if (WARN_ON(!r->enable))
3318 continue;
3319
Matt Ropered4a6a72016-02-23 17:20:13 -08003320 results->wm_linetime[pipe] = intel_crtc->wm.active.ilk.linetime;
Ville Syrjälä0b2ae6d2013-10-09 19:17:55 +03003321
3322 results->wm_pipe[pipe] =
3323 (r->pri_val << WM0_PIPE_PLANE_SHIFT) |
3324 (r->spr_val << WM0_PIPE_SPRITE_SHIFT) |
3325 r->cur_val;
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003326 }
3327}
3328
Paulo Zanoni861f3382013-05-31 10:19:21 -03003329/* Find the result with the highest level enabled. Check for enable_fbc_wm in
3330 * case both are at the same level. Prefer r1 in case they're the same. */
Imre Deak820c1982013-12-17 14:46:36 +02003331static struct intel_pipe_wm *ilk_find_best_result(struct drm_device *dev,
Ville Syrjälä198a1e92013-10-09 19:17:58 +03003332 struct intel_pipe_wm *r1,
3333 struct intel_pipe_wm *r2)
Paulo Zanoni861f3382013-05-31 10:19:21 -03003334{
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01003335 int level, max_level = ilk_wm_max_level(to_i915(dev));
Ville Syrjälä198a1e92013-10-09 19:17:58 +03003336 int level1 = 0, level2 = 0;
Paulo Zanoni861f3382013-05-31 10:19:21 -03003337
Ville Syrjälä198a1e92013-10-09 19:17:58 +03003338 for (level = 1; level <= max_level; level++) {
3339 if (r1->wm[level].enable)
3340 level1 = level;
3341 if (r2->wm[level].enable)
3342 level2 = level;
Paulo Zanoni861f3382013-05-31 10:19:21 -03003343 }
3344
Ville Syrjälä198a1e92013-10-09 19:17:58 +03003345 if (level1 == level2) {
3346 if (r2->fbc_wm_enabled && !r1->fbc_wm_enabled)
Paulo Zanoni861f3382013-05-31 10:19:21 -03003347 return r2;
3348 else
3349 return r1;
Ville Syrjälä198a1e92013-10-09 19:17:58 +03003350 } else if (level1 > level2) {
Paulo Zanoni861f3382013-05-31 10:19:21 -03003351 return r1;
3352 } else {
3353 return r2;
3354 }
3355}
3356
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003357/* dirty bits used to track which watermarks need changes */
3358#define WM_DIRTY_PIPE(pipe) (1 << (pipe))
3359#define WM_DIRTY_LINETIME(pipe) (1 << (8 + (pipe)))
3360#define WM_DIRTY_LP(wm_lp) (1 << (15 + (wm_lp)))
3361#define WM_DIRTY_LP_ALL (WM_DIRTY_LP(1) | WM_DIRTY_LP(2) | WM_DIRTY_LP(3))
3362#define WM_DIRTY_FBC (1 << 24)
3363#define WM_DIRTY_DDB (1 << 25)
3364
Damien Lespiau055e3932014-08-18 13:49:10 +01003365static unsigned int ilk_compute_wm_dirty(struct drm_i915_private *dev_priv,
Imre Deak820c1982013-12-17 14:46:36 +02003366 const struct ilk_wm_values *old,
3367 const struct ilk_wm_values *new)
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003368{
3369 unsigned int dirty = 0;
3370 enum pipe pipe;
3371 int wm_lp;
3372
Damien Lespiau055e3932014-08-18 13:49:10 +01003373 for_each_pipe(dev_priv, pipe) {
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003374 if (old->wm_linetime[pipe] != new->wm_linetime[pipe]) {
3375 dirty |= WM_DIRTY_LINETIME(pipe);
3376 /* Must disable LP1+ watermarks too */
3377 dirty |= WM_DIRTY_LP_ALL;
3378 }
3379
3380 if (old->wm_pipe[pipe] != new->wm_pipe[pipe]) {
3381 dirty |= WM_DIRTY_PIPE(pipe);
3382 /* Must disable LP1+ watermarks too */
3383 dirty |= WM_DIRTY_LP_ALL;
3384 }
3385 }
3386
3387 if (old->enable_fbc_wm != new->enable_fbc_wm) {
3388 dirty |= WM_DIRTY_FBC;
3389 /* Must disable LP1+ watermarks too */
3390 dirty |= WM_DIRTY_LP_ALL;
3391 }
3392
3393 if (old->partitioning != new->partitioning) {
3394 dirty |= WM_DIRTY_DDB;
3395 /* Must disable LP1+ watermarks too */
3396 dirty |= WM_DIRTY_LP_ALL;
3397 }
3398
3399 /* LP1+ watermarks already deemed dirty, no need to continue */
3400 if (dirty & WM_DIRTY_LP_ALL)
3401 return dirty;
3402
3403 /* Find the lowest numbered LP1+ watermark in need of an update... */
3404 for (wm_lp = 1; wm_lp <= 3; wm_lp++) {
3405 if (old->wm_lp[wm_lp - 1] != new->wm_lp[wm_lp - 1] ||
3406 old->wm_lp_spr[wm_lp - 1] != new->wm_lp_spr[wm_lp - 1])
3407 break;
3408 }
3409
3410 /* ...and mark it and all higher numbered LP1+ watermarks as dirty */
3411 for (; wm_lp <= 3; wm_lp++)
3412 dirty |= WM_DIRTY_LP(wm_lp);
3413
3414 return dirty;
3415}
3416
Ville Syrjälä8553c182013-12-05 15:51:39 +02003417static bool _ilk_disable_lp_wm(struct drm_i915_private *dev_priv,
3418 unsigned int dirty)
3419{
Imre Deak820c1982013-12-17 14:46:36 +02003420 struct ilk_wm_values *previous = &dev_priv->wm.hw;
Ville Syrjälä8553c182013-12-05 15:51:39 +02003421 bool changed = false;
3422
3423 if (dirty & WM_DIRTY_LP(3) && previous->wm_lp[2] & WM1_LP_SR_EN) {
3424 previous->wm_lp[2] &= ~WM1_LP_SR_EN;
3425 I915_WRITE(WM3_LP_ILK, previous->wm_lp[2]);
3426 changed = true;
3427 }
3428 if (dirty & WM_DIRTY_LP(2) && previous->wm_lp[1] & WM1_LP_SR_EN) {
3429 previous->wm_lp[1] &= ~WM1_LP_SR_EN;
3430 I915_WRITE(WM2_LP_ILK, previous->wm_lp[1]);
3431 changed = true;
3432 }
3433 if (dirty & WM_DIRTY_LP(1) && previous->wm_lp[0] & WM1_LP_SR_EN) {
3434 previous->wm_lp[0] &= ~WM1_LP_SR_EN;
3435 I915_WRITE(WM1_LP_ILK, previous->wm_lp[0]);
3436 changed = true;
3437 }
3438
3439 /*
3440 * Don't touch WM1S_LP_EN here.
3441 * Doing so could cause underruns.
3442 */
3443
3444 return changed;
3445}
3446
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003447/*
3448 * The spec says we shouldn't write when we don't need, because every write
3449 * causes WMs to be re-evaluated, expending some power.
3450 */
Imre Deak820c1982013-12-17 14:46:36 +02003451static void ilk_write_wm_values(struct drm_i915_private *dev_priv,
3452 struct ilk_wm_values *results)
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003453{
Imre Deak820c1982013-12-17 14:46:36 +02003454 struct ilk_wm_values *previous = &dev_priv->wm.hw;
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003455 unsigned int dirty;
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003456 uint32_t val;
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003457
Damien Lespiau055e3932014-08-18 13:49:10 +01003458 dirty = ilk_compute_wm_dirty(dev_priv, previous, results);
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003459 if (!dirty)
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003460 return;
3461
Ville Syrjälä8553c182013-12-05 15:51:39 +02003462 _ilk_disable_lp_wm(dev_priv, dirty);
Ville Syrjälä6cef2b8a2013-12-05 15:51:32 +02003463
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003464 if (dirty & WM_DIRTY_PIPE(PIPE_A))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003465 I915_WRITE(WM0_PIPEA_ILK, results->wm_pipe[0]);
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003466 if (dirty & WM_DIRTY_PIPE(PIPE_B))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003467 I915_WRITE(WM0_PIPEB_ILK, results->wm_pipe[1]);
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003468 if (dirty & WM_DIRTY_PIPE(PIPE_C))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003469 I915_WRITE(WM0_PIPEC_IVB, results->wm_pipe[2]);
3470
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003471 if (dirty & WM_DIRTY_LINETIME(PIPE_A))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003472 I915_WRITE(PIPE_WM_LINETIME(PIPE_A), results->wm_linetime[0]);
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003473 if (dirty & WM_DIRTY_LINETIME(PIPE_B))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003474 I915_WRITE(PIPE_WM_LINETIME(PIPE_B), results->wm_linetime[1]);
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003475 if (dirty & WM_DIRTY_LINETIME(PIPE_C))
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003476 I915_WRITE(PIPE_WM_LINETIME(PIPE_C), results->wm_linetime[2]);
3477
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003478 if (dirty & WM_DIRTY_DDB) {
Tvrtko Ursulin86527442016-10-13 11:03:00 +01003479 if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv)) {
Ville Syrjäläac9545f2013-12-05 15:51:28 +02003480 val = I915_READ(WM_MISC);
3481 if (results->partitioning == INTEL_DDB_PART_1_2)
3482 val &= ~WM_MISC_DATA_PARTITION_5_6;
3483 else
3484 val |= WM_MISC_DATA_PARTITION_5_6;
3485 I915_WRITE(WM_MISC, val);
3486 } else {
3487 val = I915_READ(DISP_ARB_CTL2);
3488 if (results->partitioning == INTEL_DDB_PART_1_2)
3489 val &= ~DISP_DATA_PARTITION_5_6;
3490 else
3491 val |= DISP_DATA_PARTITION_5_6;
3492 I915_WRITE(DISP_ARB_CTL2, val);
3493 }
Paulo Zanoni1011d8c2013-05-09 16:55:50 -03003494 }
3495
Ville Syrjälä49a687c2013-10-11 19:39:52 +03003496 if (dirty & WM_DIRTY_FBC) {
Paulo Zanonicca32e92013-05-31 11:45:06 -03003497 val = I915_READ(DISP_ARB_CTL);
3498 if (results->enable_fbc_wm)
3499 val &= ~DISP_FBC_WM_DIS;
3500 else
3501 val |= DISP_FBC_WM_DIS;
3502 I915_WRITE(DISP_ARB_CTL, val);
3503 }
3504
Imre Deak954911e2013-12-17 14:46:34 +02003505 if (dirty & WM_DIRTY_LP(1) &&
3506 previous->wm_lp_spr[0] != results->wm_lp_spr[0])
3507 I915_WRITE(WM1S_LP_ILK, results->wm_lp_spr[0]);
3508
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00003509 if (INTEL_GEN(dev_priv) >= 7) {
Ville Syrjälä6cef2b8a2013-12-05 15:51:32 +02003510 if (dirty & WM_DIRTY_LP(2) && previous->wm_lp_spr[1] != results->wm_lp_spr[1])
3511 I915_WRITE(WM2S_LP_IVB, results->wm_lp_spr[1]);
3512 if (dirty & WM_DIRTY_LP(3) && previous->wm_lp_spr[2] != results->wm_lp_spr[2])
3513 I915_WRITE(WM3S_LP_IVB, results->wm_lp_spr[2]);
3514 }
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003515
Ville Syrjäläfacd6192013-12-05 15:51:33 +02003516 if (dirty & WM_DIRTY_LP(1) && previous->wm_lp[0] != results->wm_lp[0])
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003517 I915_WRITE(WM1_LP_ILK, results->wm_lp[0]);
Ville Syrjäläfacd6192013-12-05 15:51:33 +02003518 if (dirty & WM_DIRTY_LP(2) && previous->wm_lp[1] != results->wm_lp[1])
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003519 I915_WRITE(WM2_LP_ILK, results->wm_lp[1]);
Ville Syrjäläfacd6192013-12-05 15:51:33 +02003520 if (dirty & WM_DIRTY_LP(3) && previous->wm_lp[2] != results->wm_lp[2])
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003521 I915_WRITE(WM3_LP_ILK, results->wm_lp[2]);
Ville Syrjälä609cede2013-10-09 19:18:03 +03003522
3523 dev_priv->wm.hw = *results;
Paulo Zanoni801bcff2013-05-31 10:08:35 -03003524}
3525
Matt Ropered4a6a72016-02-23 17:20:13 -08003526bool ilk_disable_lp_wm(struct drm_device *dev)
Ville Syrjälä8553c182013-12-05 15:51:39 +02003527{
Chris Wilsonfac5e232016-07-04 11:34:36 +01003528 struct drm_i915_private *dev_priv = to_i915(dev);
Ville Syrjälä8553c182013-12-05 15:51:39 +02003529
3530 return _ilk_disable_lp_wm(dev_priv, WM_DIRTY_LP_ALL);
3531}
3532
Lyude656d1b82016-08-17 15:55:54 -04003533#define SKL_SAGV_BLOCK_TIME 30 /* µs */
Damien Lespiaub9cec072014-11-04 17:06:43 +00003534
Matt Roper024c9042015-09-24 15:53:11 -07003535/*
Paulo Zanoniee3d5322016-10-11 15:25:38 -03003536 * FIXME: We still don't have the proper code detect if we need to apply the WA,
3537 * so assume we'll always need it in order to avoid underruns.
3538 */
3539static bool skl_needs_memory_bw_wa(struct intel_atomic_state *state)
3540{
3541 struct drm_i915_private *dev_priv = to_i915(state->base.dev);
3542
Rodrigo Vivib976dc52017-01-23 10:32:37 -08003543 if (IS_GEN9_BC(dev_priv) || IS_BROXTON(dev_priv))
Paulo Zanoniee3d5322016-10-11 15:25:38 -03003544 return true;
3545
3546 return false;
3547}
3548
Paulo Zanoni56feca92016-09-22 18:00:28 -03003549static bool
3550intel_has_sagv(struct drm_i915_private *dev_priv)
3551{
Paulo Zanoni6e3100e2016-09-22 18:00:29 -03003552 if (IS_KABYLAKE(dev_priv))
3553 return true;
3554
3555 if (IS_SKYLAKE(dev_priv) &&
3556 dev_priv->sagv_status != I915_SAGV_NOT_CONTROLLED)
3557 return true;
3558
3559 return false;
Paulo Zanoni56feca92016-09-22 18:00:28 -03003560}
3561
Lyude656d1b82016-08-17 15:55:54 -04003562/*
3563 * SAGV dynamically adjusts the system agent voltage and clock frequencies
3564 * depending on power and performance requirements. The display engine access
3565 * to system memory is blocked during the adjustment time. Because of the
3566 * blocking time, having this enabled can cause full system hangs and/or pipe
3567 * underruns if we don't meet all of the following requirements:
3568 *
3569 * - <= 1 pipe enabled
3570 * - All planes can enable watermarks for latencies >= SAGV engine block time
3571 * - We're not using an interlaced display configuration
3572 */
3573int
Paulo Zanoni16dcdc42016-09-22 18:00:27 -03003574intel_enable_sagv(struct drm_i915_private *dev_priv)
Lyude656d1b82016-08-17 15:55:54 -04003575{
3576 int ret;
3577
Paulo Zanoni56feca92016-09-22 18:00:28 -03003578 if (!intel_has_sagv(dev_priv))
3579 return 0;
3580
3581 if (dev_priv->sagv_status == I915_SAGV_ENABLED)
Lyude656d1b82016-08-17 15:55:54 -04003582 return 0;
3583
3584 DRM_DEBUG_KMS("Enabling the SAGV\n");
3585 mutex_lock(&dev_priv->rps.hw_lock);
3586
3587 ret = sandybridge_pcode_write(dev_priv, GEN9_PCODE_SAGV_CONTROL,
3588 GEN9_SAGV_ENABLE);
3589
3590 /* We don't need to wait for the SAGV when enabling */
3591 mutex_unlock(&dev_priv->rps.hw_lock);
3592
3593 /*
3594 * Some skl systems, pre-release machines in particular,
3595 * don't actually have an SAGV.
3596 */
Paulo Zanoni6e3100e2016-09-22 18:00:29 -03003597 if (IS_SKYLAKE(dev_priv) && ret == -ENXIO) {
Lyude656d1b82016-08-17 15:55:54 -04003598 DRM_DEBUG_DRIVER("No SAGV found on system, ignoring\n");
Paulo Zanoni16dcdc42016-09-22 18:00:27 -03003599 dev_priv->sagv_status = I915_SAGV_NOT_CONTROLLED;
Lyude656d1b82016-08-17 15:55:54 -04003600 return 0;
3601 } else if (ret < 0) {
3602 DRM_ERROR("Failed to enable the SAGV\n");
3603 return ret;
3604 }
3605
Paulo Zanoni16dcdc42016-09-22 18:00:27 -03003606 dev_priv->sagv_status = I915_SAGV_ENABLED;
Lyude656d1b82016-08-17 15:55:54 -04003607 return 0;
3608}
3609
Lyude656d1b82016-08-17 15:55:54 -04003610int
Paulo Zanoni16dcdc42016-09-22 18:00:27 -03003611intel_disable_sagv(struct drm_i915_private *dev_priv)
Lyude656d1b82016-08-17 15:55:54 -04003612{
Imre Deakb3b8e992016-12-05 18:27:38 +02003613 int ret;
Lyude656d1b82016-08-17 15:55:54 -04003614
Paulo Zanoni56feca92016-09-22 18:00:28 -03003615 if (!intel_has_sagv(dev_priv))
3616 return 0;
3617
3618 if (dev_priv->sagv_status == I915_SAGV_DISABLED)
Lyude656d1b82016-08-17 15:55:54 -04003619 return 0;
3620
3621 DRM_DEBUG_KMS("Disabling the SAGV\n");
3622 mutex_lock(&dev_priv->rps.hw_lock);
3623
3624 /* bspec says to keep retrying for at least 1 ms */
Imre Deakb3b8e992016-12-05 18:27:38 +02003625 ret = skl_pcode_request(dev_priv, GEN9_PCODE_SAGV_CONTROL,
3626 GEN9_SAGV_DISABLE,
3627 GEN9_SAGV_IS_DISABLED, GEN9_SAGV_IS_DISABLED,
3628 1);
Lyude656d1b82016-08-17 15:55:54 -04003629 mutex_unlock(&dev_priv->rps.hw_lock);
3630
Lyude656d1b82016-08-17 15:55:54 -04003631 /*
3632 * Some skl systems, pre-release machines in particular,
3633 * don't actually have an SAGV.
3634 */
Imre Deakb3b8e992016-12-05 18:27:38 +02003635 if (IS_SKYLAKE(dev_priv) && ret == -ENXIO) {
Lyude656d1b82016-08-17 15:55:54 -04003636 DRM_DEBUG_DRIVER("No SAGV found on system, ignoring\n");
Paulo Zanoni16dcdc42016-09-22 18:00:27 -03003637 dev_priv->sagv_status = I915_SAGV_NOT_CONTROLLED;
Lyude656d1b82016-08-17 15:55:54 -04003638 return 0;
Imre Deakb3b8e992016-12-05 18:27:38 +02003639 } else if (ret < 0) {
3640 DRM_ERROR("Failed to disable the SAGV (%d)\n", ret);
3641 return ret;
Lyude656d1b82016-08-17 15:55:54 -04003642 }
3643
Paulo Zanoni16dcdc42016-09-22 18:00:27 -03003644 dev_priv->sagv_status = I915_SAGV_DISABLED;
Lyude656d1b82016-08-17 15:55:54 -04003645 return 0;
3646}
3647
Paulo Zanoni16dcdc42016-09-22 18:00:27 -03003648bool intel_can_enable_sagv(struct drm_atomic_state *state)
Lyude656d1b82016-08-17 15:55:54 -04003649{
3650 struct drm_device *dev = state->dev;
3651 struct drm_i915_private *dev_priv = to_i915(dev);
3652 struct intel_atomic_state *intel_state = to_intel_atomic_state(state);
Paulo Zanoniee3d5322016-10-11 15:25:38 -03003653 struct intel_crtc *crtc;
3654 struct intel_plane *plane;
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02003655 struct intel_crtc_state *cstate;
Lyude656d1b82016-08-17 15:55:54 -04003656 enum pipe pipe;
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02003657 int level, latency;
Lyude656d1b82016-08-17 15:55:54 -04003658
Paulo Zanoni56feca92016-09-22 18:00:28 -03003659 if (!intel_has_sagv(dev_priv))
3660 return false;
3661
Lyude656d1b82016-08-17 15:55:54 -04003662 /*
3663 * SKL workaround: bspec recommends we disable the SAGV when we have
3664 * more then one pipe enabled
3665 *
3666 * If there are no active CRTCs, no additional checks need be performed
3667 */
3668 if (hweight32(intel_state->active_crtcs) == 0)
3669 return true;
3670 else if (hweight32(intel_state->active_crtcs) > 1)
3671 return false;
3672
3673 /* Since we're now guaranteed to only have one active CRTC... */
3674 pipe = ffs(intel_state->active_crtcs) - 1;
Ville Syrjälä98187832016-10-31 22:37:10 +02003675 crtc = intel_get_crtc_for_pipe(dev_priv, pipe);
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02003676 cstate = to_intel_crtc_state(crtc->base.state);
Lyude656d1b82016-08-17 15:55:54 -04003677
Paulo Zanonic89cadd2016-10-10 17:30:59 -03003678 if (crtc->base.state->adjusted_mode.flags & DRM_MODE_FLAG_INTERLACE)
Lyude656d1b82016-08-17 15:55:54 -04003679 return false;
3680
Paulo Zanoniee3d5322016-10-11 15:25:38 -03003681 for_each_intel_plane_on_crtc(dev, crtc, plane) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003682 struct skl_plane_wm *wm =
3683 &cstate->wm.skl.optimal.planes[plane->id];
Paulo Zanoniee3d5322016-10-11 15:25:38 -03003684
Lyude656d1b82016-08-17 15:55:54 -04003685 /* Skip this plane if it's not enabled */
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02003686 if (!wm->wm[0].plane_en)
Lyude656d1b82016-08-17 15:55:54 -04003687 continue;
3688
3689 /* Find the highest enabled wm level for this plane */
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01003690 for (level = ilk_wm_max_level(dev_priv);
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02003691 !wm->wm[level].plane_en; --level)
Lyude656d1b82016-08-17 15:55:54 -04003692 { }
3693
Paulo Zanoniee3d5322016-10-11 15:25:38 -03003694 latency = dev_priv->wm.skl_latency[level];
3695
3696 if (skl_needs_memory_bw_wa(intel_state) &&
Ville Syrjäläbae781b2016-11-16 13:33:16 +02003697 plane->base.state->fb->modifier ==
Paulo Zanoniee3d5322016-10-11 15:25:38 -03003698 I915_FORMAT_MOD_X_TILED)
3699 latency += 15;
3700
Lyude656d1b82016-08-17 15:55:54 -04003701 /*
3702 * If any of the planes on this pipe don't enable wm levels
3703 * that incur memory latencies higher then 30µs we can't enable
3704 * the SAGV
3705 */
Paulo Zanoniee3d5322016-10-11 15:25:38 -03003706 if (latency < SKL_SAGV_BLOCK_TIME)
Lyude656d1b82016-08-17 15:55:54 -04003707 return false;
3708 }
3709
3710 return true;
3711}
3712
Damien Lespiaub9cec072014-11-04 17:06:43 +00003713static void
3714skl_ddb_get_pipe_allocation_limits(struct drm_device *dev,
Matt Roper024c9042015-09-24 15:53:11 -07003715 const struct intel_crtc_state *cstate,
Matt Roperc107acf2016-05-12 07:06:01 -07003716 struct skl_ddb_entry *alloc, /* out */
3717 int *num_active /* out */)
Damien Lespiaub9cec072014-11-04 17:06:43 +00003718{
Matt Roperc107acf2016-05-12 07:06:01 -07003719 struct drm_atomic_state *state = cstate->base.state;
3720 struct intel_atomic_state *intel_state = to_intel_atomic_state(state);
3721 struct drm_i915_private *dev_priv = to_i915(dev);
Matt Roper024c9042015-09-24 15:53:11 -07003722 struct drm_crtc *for_crtc = cstate->base.crtc;
Damien Lespiaub9cec072014-11-04 17:06:43 +00003723 unsigned int pipe_size, ddb_size;
3724 int nth_active_pipe;
Matt Roperc107acf2016-05-12 07:06:01 -07003725
Matt Ropera6d3460e2016-05-12 07:06:04 -07003726 if (WARN_ON(!state) || !cstate->base.active) {
Damien Lespiaub9cec072014-11-04 17:06:43 +00003727 alloc->start = 0;
3728 alloc->end = 0;
Matt Ropera6d3460e2016-05-12 07:06:04 -07003729 *num_active = hweight32(dev_priv->active_crtcs);
Damien Lespiaub9cec072014-11-04 17:06:43 +00003730 return;
3731 }
3732
Matt Ropera6d3460e2016-05-12 07:06:04 -07003733 if (intel_state->active_pipe_changes)
3734 *num_active = hweight32(intel_state->active_crtcs);
3735 else
3736 *num_active = hweight32(dev_priv->active_crtcs);
3737
Deepak M6f3fff62016-09-15 15:01:10 +05303738 ddb_size = INTEL_INFO(dev_priv)->ddb_size;
3739 WARN_ON(ddb_size == 0);
Damien Lespiaub9cec072014-11-04 17:06:43 +00003740
3741 ddb_size -= 4; /* 4 blocks for bypass path allocation */
3742
Matt Roperc107acf2016-05-12 07:06:01 -07003743 /*
Matt Ropera6d3460e2016-05-12 07:06:04 -07003744 * If the state doesn't change the active CRTC's, then there's
3745 * no need to recalculate; the existing pipe allocation limits
3746 * should remain unchanged. Note that we're safe from racing
3747 * commits since any racing commit that changes the active CRTC
3748 * list would need to grab _all_ crtc locks, including the one
3749 * we currently hold.
Matt Roperc107acf2016-05-12 07:06:01 -07003750 */
Matt Ropera6d3460e2016-05-12 07:06:04 -07003751 if (!intel_state->active_pipe_changes) {
Maarten Lankhorst512b5522016-11-08 13:55:34 +01003752 /*
3753 * alloc may be cleared by clear_intel_crtc_state,
3754 * copy from old state to be sure
3755 */
3756 *alloc = to_intel_crtc_state(for_crtc->state)->wm.skl.ddb;
Matt Ropera6d3460e2016-05-12 07:06:04 -07003757 return;
Damien Lespiaub9cec072014-11-04 17:06:43 +00003758 }
Matt Ropera6d3460e2016-05-12 07:06:04 -07003759
3760 nth_active_pipe = hweight32(intel_state->active_crtcs &
3761 (drm_crtc_mask(for_crtc) - 1));
3762 pipe_size = ddb_size / hweight32(intel_state->active_crtcs);
3763 alloc->start = nth_active_pipe * ddb_size / *num_active;
3764 alloc->end = alloc->start + pipe_size;
Damien Lespiaub9cec072014-11-04 17:06:43 +00003765}
3766
Matt Roperc107acf2016-05-12 07:06:01 -07003767static unsigned int skl_cursor_allocation(int num_active)
Damien Lespiaub9cec072014-11-04 17:06:43 +00003768{
Matt Roperc107acf2016-05-12 07:06:01 -07003769 if (num_active == 1)
Damien Lespiaub9cec072014-11-04 17:06:43 +00003770 return 32;
3771
3772 return 8;
3773}
3774
Damien Lespiaua269c582014-11-04 17:06:49 +00003775static void skl_ddb_entry_init_from_hw(struct skl_ddb_entry *entry, u32 reg)
3776{
3777 entry->start = reg & 0x3ff;
3778 entry->end = (reg >> 16) & 0x3ff;
Damien Lespiau16160e32014-11-04 17:06:53 +00003779 if (entry->end)
3780 entry->end += 1;
Damien Lespiaua269c582014-11-04 17:06:49 +00003781}
3782
Damien Lespiau08db6652014-11-04 17:06:52 +00003783void skl_ddb_get_hw_state(struct drm_i915_private *dev_priv,
3784 struct skl_ddb_allocation *ddb /* out */)
Damien Lespiaua269c582014-11-04 17:06:49 +00003785{
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003786 struct intel_crtc *crtc;
Damien Lespiaua269c582014-11-04 17:06:49 +00003787
Maarten Lankhorstb10f1b22015-10-22 13:56:34 +02003788 memset(ddb, 0, sizeof(*ddb));
3789
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003790 for_each_intel_crtc(&dev_priv->drm, crtc) {
Imre Deak4d800032016-02-17 16:31:29 +02003791 enum intel_display_power_domain power_domain;
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003792 enum plane_id plane_id;
3793 enum pipe pipe = crtc->pipe;
Imre Deak4d800032016-02-17 16:31:29 +02003794
3795 power_domain = POWER_DOMAIN_PIPE(pipe);
3796 if (!intel_display_power_get_if_enabled(dev_priv, power_domain))
Maarten Lankhorstb10f1b22015-10-22 13:56:34 +02003797 continue;
3798
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003799 for_each_plane_id_on_crtc(crtc, plane_id) {
3800 u32 val;
Damien Lespiaua269c582014-11-04 17:06:49 +00003801
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003802 if (plane_id != PLANE_CURSOR)
3803 val = I915_READ(PLANE_BUF_CFG(pipe, plane_id));
3804 else
3805 val = I915_READ(CUR_BUF_CFG(pipe));
3806
3807 skl_ddb_entry_init_from_hw(&ddb->plane[pipe][plane_id], val);
3808 }
Imre Deak4d800032016-02-17 16:31:29 +02003809
3810 intel_display_power_put(dev_priv, power_domain);
Damien Lespiaua269c582014-11-04 17:06:49 +00003811 }
3812}
3813
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07003814/*
3815 * Determines the downscale amount of a plane for the purposes of watermark calculations.
3816 * The bspec defines downscale amount as:
3817 *
3818 * """
3819 * Horizontal down scale amount = maximum[1, Horizontal source size /
3820 * Horizontal destination size]
3821 * Vertical down scale amount = maximum[1, Vertical source size /
3822 * Vertical destination size]
3823 * Total down scale amount = Horizontal down scale amount *
3824 * Vertical down scale amount
3825 * """
3826 *
3827 * Return value is provided in 16.16 fixed point form to retain fractional part.
3828 * Caller should take care of dividing & rounding off the value.
3829 */
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303830static uint_fixed_16_16_t
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003831skl_plane_downscale_amount(const struct intel_crtc_state *cstate,
3832 const struct intel_plane_state *pstate)
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07003833{
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003834 struct intel_plane *plane = to_intel_plane(pstate->base.plane);
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07003835 uint32_t src_w, src_h, dst_w, dst_h;
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303836 uint_fixed_16_16_t fp_w_ratio, fp_h_ratio;
3837 uint_fixed_16_16_t downscale_h, downscale_w;
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07003838
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003839 if (WARN_ON(!intel_wm_plane_visible(cstate, pstate)))
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303840 return u32_to_fixed_16_16(0);
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07003841
3842 /* n.b., src is 16.16 fixed point, dst is whole integer */
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003843 if (plane->id == PLANE_CURSOR) {
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303844 src_w = pstate->base.src_w >> 16;
3845 src_h = pstate->base.src_h >> 16;
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003846 dst_w = pstate->base.crtc_w;
3847 dst_h = pstate->base.crtc_h;
3848 } else {
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303849 src_w = drm_rect_width(&pstate->base.src) >> 16;
3850 src_h = drm_rect_height(&pstate->base.src) >> 16;
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003851 dst_w = drm_rect_width(&pstate->base.dst);
3852 dst_h = drm_rect_height(&pstate->base.dst);
3853 }
3854
Ville Syrjäläbd2ef252016-09-26 19:30:46 +03003855 if (drm_rotation_90_or_270(pstate->base.rotation))
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07003856 swap(dst_w, dst_h);
3857
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303858 fp_w_ratio = fixed_16_16_div(src_w, dst_w);
3859 fp_h_ratio = fixed_16_16_div(src_h, dst_h);
3860 downscale_w = max_fixed_16_16(fp_w_ratio, u32_to_fixed_16_16(1));
3861 downscale_h = max_fixed_16_16(fp_h_ratio, u32_to_fixed_16_16(1));
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07003862
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303863 return mul_fixed16(downscale_w, downscale_h);
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07003864}
3865
Damien Lespiaub9cec072014-11-04 17:06:43 +00003866static unsigned int
Matt Roper024c9042015-09-24 15:53:11 -07003867skl_plane_relative_data_rate(const struct intel_crtc_state *cstate,
3868 const struct drm_plane_state *pstate,
3869 int y)
Damien Lespiaub9cec072014-11-04 17:06:43 +00003870{
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003871 struct intel_plane *plane = to_intel_plane(pstate->plane);
Kumar, Mahesha280f7d2016-04-06 08:26:39 -07003872 struct intel_plane_state *intel_pstate = to_intel_plane_state(pstate);
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303873 uint32_t data_rate;
Kumar, Mahesha280f7d2016-04-06 08:26:39 -07003874 uint32_t width = 0, height = 0;
Ville Syrjälä83054942016-11-18 21:53:00 +02003875 struct drm_framebuffer *fb;
3876 u32 format;
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303877 uint_fixed_16_16_t down_scale_amount;
Matt Ropera1de91e2016-05-12 07:05:57 -07003878
Ville Syrjälä936e71e2016-07-26 19:06:59 +03003879 if (!intel_pstate->base.visible)
Matt Ropera1de91e2016-05-12 07:05:57 -07003880 return 0;
Ville Syrjälä83054942016-11-18 21:53:00 +02003881
3882 fb = pstate->fb;
Ville Syrjälä438b74a2016-12-14 23:32:55 +02003883 format = fb->format->format;
Ville Syrjälä83054942016-11-18 21:53:00 +02003884
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003885 if (plane->id == PLANE_CURSOR)
Matt Ropera1de91e2016-05-12 07:05:57 -07003886 return 0;
3887 if (y && format != DRM_FORMAT_NV12)
3888 return 0;
Kumar, Mahesha280f7d2016-04-06 08:26:39 -07003889
Ville Syrjälä936e71e2016-07-26 19:06:59 +03003890 width = drm_rect_width(&intel_pstate->base.src) >> 16;
3891 height = drm_rect_height(&intel_pstate->base.src) >> 16;
Kumar, Mahesha280f7d2016-04-06 08:26:39 -07003892
Ville Syrjäläbd2ef252016-09-26 19:30:46 +03003893 if (drm_rotation_90_or_270(pstate->rotation))
Kumar, Mahesha280f7d2016-04-06 08:26:39 -07003894 swap(width, height);
Chandra Konduru2cd601c2015-04-27 15:47:37 -07003895
3896 /* for planar format */
Matt Ropera1de91e2016-05-12 07:05:57 -07003897 if (format == DRM_FORMAT_NV12) {
Chandra Konduru2cd601c2015-04-27 15:47:37 -07003898 if (y) /* y-plane data rate */
Kumar, Mahesh8d19d7d2016-05-19 15:03:01 -07003899 data_rate = width * height *
Ville Syrjälä353c8592016-12-14 23:30:57 +02003900 fb->format->cpp[0];
Chandra Konduru2cd601c2015-04-27 15:47:37 -07003901 else /* uv-plane data rate */
Kumar, Mahesh8d19d7d2016-05-19 15:03:01 -07003902 data_rate = (width / 2) * (height / 2) *
Ville Syrjälä353c8592016-12-14 23:30:57 +02003903 fb->format->cpp[1];
Kumar, Mahesh8d19d7d2016-05-19 15:03:01 -07003904 } else {
3905 /* for packed formats */
Ville Syrjälä353c8592016-12-14 23:30:57 +02003906 data_rate = width * height * fb->format->cpp[0];
Chandra Konduru2cd601c2015-04-27 15:47:37 -07003907 }
3908
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02003909 down_scale_amount = skl_plane_downscale_amount(cstate, intel_pstate);
Kumar, Mahesh8d19d7d2016-05-19 15:03:01 -07003910
Kumar, Mahesh7084b502017-05-17 17:28:23 +05303911 return mul_round_up_u32_fixed16(data_rate, down_scale_amount);
Damien Lespiaub9cec072014-11-04 17:06:43 +00003912}
3913
3914/*
3915 * We don't overflow 32 bits. Worst case is 3 planes enabled, each fetching
3916 * a 8192x4096@32bpp framebuffer:
3917 * 3 * 4096 * 8192 * 4 < 2^32
3918 */
3919static unsigned int
Maarten Lankhorst1e6ee542016-10-26 15:41:32 +02003920skl_get_total_relative_data_rate(struct intel_crtc_state *intel_cstate,
3921 unsigned *plane_data_rate,
3922 unsigned *plane_y_data_rate)
Damien Lespiaub9cec072014-11-04 17:06:43 +00003923{
Matt Roper9c74d822016-05-12 07:05:58 -07003924 struct drm_crtc_state *cstate = &intel_cstate->base;
3925 struct drm_atomic_state *state = cstate->state;
Maarten Lankhorstc8fe32c2016-10-26 15:41:29 +02003926 struct drm_plane *plane;
Maarten Lankhorstc8fe32c2016-10-26 15:41:29 +02003927 const struct drm_plane_state *pstate;
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003928 unsigned int total_data_rate = 0;
Matt Ropera6d3460e2016-05-12 07:06:04 -07003929
3930 if (WARN_ON(!state))
3931 return 0;
Damien Lespiaub9cec072014-11-04 17:06:43 +00003932
Matt Ropera1de91e2016-05-12 07:05:57 -07003933 /* Calculate and cache data rate for each plane */
Maarten Lankhorstc8fe32c2016-10-26 15:41:29 +02003934 drm_atomic_crtc_state_for_each_plane_state(plane, pstate, cstate) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003935 enum plane_id plane_id = to_intel_plane(plane)->id;
3936 unsigned int rate;
Matt Roper024c9042015-09-24 15:53:11 -07003937
Matt Ropera6d3460e2016-05-12 07:06:04 -07003938 /* packed/uv */
3939 rate = skl_plane_relative_data_rate(intel_cstate,
3940 pstate, 0);
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003941 plane_data_rate[plane_id] = rate;
Maarten Lankhorst1e6ee542016-10-26 15:41:32 +02003942
3943 total_data_rate += rate;
Matt Roper9c74d822016-05-12 07:05:58 -07003944
Matt Ropera6d3460e2016-05-12 07:06:04 -07003945 /* y-plane */
3946 rate = skl_plane_relative_data_rate(intel_cstate,
3947 pstate, 1);
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02003948 plane_y_data_rate[plane_id] = rate;
Matt Ropera1de91e2016-05-12 07:05:57 -07003949
Maarten Lankhorst1e6ee542016-10-26 15:41:32 +02003950 total_data_rate += rate;
Damien Lespiaub9cec072014-11-04 17:06:43 +00003951 }
3952
3953 return total_data_rate;
3954}
3955
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003956static uint16_t
3957skl_ddb_min_alloc(const struct drm_plane_state *pstate,
3958 const int y)
3959{
3960 struct drm_framebuffer *fb = pstate->fb;
3961 struct intel_plane_state *intel_pstate = to_intel_plane_state(pstate);
3962 uint32_t src_w, src_h;
3963 uint32_t min_scanlines = 8;
3964 uint8_t plane_bpp;
3965
3966 if (WARN_ON(!fb))
3967 return 0;
3968
3969 /* For packed formats, no y-plane, return 0 */
Ville Syrjälä438b74a2016-12-14 23:32:55 +02003970 if (y && fb->format->format != DRM_FORMAT_NV12)
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003971 return 0;
3972
3973 /* For Non Y-tile return 8-blocks */
Ville Syrjäläbae781b2016-11-16 13:33:16 +02003974 if (fb->modifier != I915_FORMAT_MOD_Y_TILED &&
3975 fb->modifier != I915_FORMAT_MOD_Yf_TILED)
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003976 return 8;
3977
Ville Syrjälä936e71e2016-07-26 19:06:59 +03003978 src_w = drm_rect_width(&intel_pstate->base.src) >> 16;
3979 src_h = drm_rect_height(&intel_pstate->base.src) >> 16;
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003980
Ville Syrjäläbd2ef252016-09-26 19:30:46 +03003981 if (drm_rotation_90_or_270(pstate->rotation))
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003982 swap(src_w, src_h);
3983
3984 /* Halve UV plane width and height for NV12 */
Ville Syrjälä438b74a2016-12-14 23:32:55 +02003985 if (fb->format->format == DRM_FORMAT_NV12 && !y) {
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003986 src_w /= 2;
3987 src_h /= 2;
3988 }
3989
Ville Syrjälä438b74a2016-12-14 23:32:55 +02003990 if (fb->format->format == DRM_FORMAT_NV12 && !y)
Ville Syrjälä353c8592016-12-14 23:30:57 +02003991 plane_bpp = fb->format->cpp[1];
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003992 else
Ville Syrjälä353c8592016-12-14 23:30:57 +02003993 plane_bpp = fb->format->cpp[0];
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003994
Ville Syrjäläbd2ef252016-09-26 19:30:46 +03003995 if (drm_rotation_90_or_270(pstate->rotation)) {
Kumar, Maheshcbcfd142016-05-31 09:58:59 -07003996 switch (plane_bpp) {
3997 case 1:
3998 min_scanlines = 32;
3999 break;
4000 case 2:
4001 min_scanlines = 16;
4002 break;
4003 case 4:
4004 min_scanlines = 8;
4005 break;
4006 case 8:
4007 min_scanlines = 4;
4008 break;
4009 default:
4010 WARN(1, "Unsupported pixel depth %u for rotation",
4011 plane_bpp);
4012 min_scanlines = 32;
4013 }
4014 }
4015
4016 return DIV_ROUND_UP((4 * src_w * plane_bpp), 512) * min_scanlines/4 + 3;
4017}
4018
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004019static void
4020skl_ddb_calc_min(const struct intel_crtc_state *cstate, int num_active,
4021 uint16_t *minimum, uint16_t *y_minimum)
4022{
4023 const struct drm_plane_state *pstate;
4024 struct drm_plane *plane;
4025
4026 drm_atomic_crtc_state_for_each_plane_state(plane, pstate, &cstate->base) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004027 enum plane_id plane_id = to_intel_plane(plane)->id;
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004028
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004029 if (plane_id == PLANE_CURSOR)
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004030 continue;
4031
4032 if (!pstate->visible)
4033 continue;
4034
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004035 minimum[plane_id] = skl_ddb_min_alloc(pstate, 0);
4036 y_minimum[plane_id] = skl_ddb_min_alloc(pstate, 1);
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004037 }
4038
4039 minimum[PLANE_CURSOR] = skl_cursor_allocation(num_active);
4040}
4041
Matt Roperc107acf2016-05-12 07:06:01 -07004042static int
Matt Roper024c9042015-09-24 15:53:11 -07004043skl_allocate_pipe_ddb(struct intel_crtc_state *cstate,
Damien Lespiaub9cec072014-11-04 17:06:43 +00004044 struct skl_ddb_allocation *ddb /* out */)
4045{
Matt Roperc107acf2016-05-12 07:06:01 -07004046 struct drm_atomic_state *state = cstate->base.state;
Matt Roper024c9042015-09-24 15:53:11 -07004047 struct drm_crtc *crtc = cstate->base.crtc;
Damien Lespiaub9cec072014-11-04 17:06:43 +00004048 struct drm_device *dev = crtc->dev;
4049 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4050 enum pipe pipe = intel_crtc->pipe;
Lyudece0ba282016-09-15 10:46:35 -04004051 struct skl_ddb_entry *alloc = &cstate->wm.skl.ddb;
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004052 uint16_t alloc_size, start;
Maarten Lankhorstfefdd812016-10-26 15:41:33 +02004053 uint16_t minimum[I915_MAX_PLANES] = {};
4054 uint16_t y_minimum[I915_MAX_PLANES] = {};
Damien Lespiaub9cec072014-11-04 17:06:43 +00004055 unsigned int total_data_rate;
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004056 enum plane_id plane_id;
Matt Roperc107acf2016-05-12 07:06:01 -07004057 int num_active;
Maarten Lankhorst1e6ee542016-10-26 15:41:32 +02004058 unsigned plane_data_rate[I915_MAX_PLANES] = {};
4059 unsigned plane_y_data_rate[I915_MAX_PLANES] = {};
Kumar, Mahesh5ba6faa2017-05-17 17:28:26 +05304060 uint16_t total_min_blocks = 0;
Damien Lespiaub9cec072014-11-04 17:06:43 +00004061
Paulo Zanoni5a920b82016-10-04 14:37:32 -03004062 /* Clear the partitioning for disabled planes. */
4063 memset(ddb->plane[pipe], 0, sizeof(ddb->plane[pipe]));
4064 memset(ddb->y_plane[pipe], 0, sizeof(ddb->y_plane[pipe]));
4065
Matt Ropera6d3460e2016-05-12 07:06:04 -07004066 if (WARN_ON(!state))
4067 return 0;
4068
Matt Roperc107acf2016-05-12 07:06:01 -07004069 if (!cstate->base.active) {
Lyudece0ba282016-09-15 10:46:35 -04004070 alloc->start = alloc->end = 0;
Matt Roperc107acf2016-05-12 07:06:01 -07004071 return 0;
4072 }
4073
Matt Ropera6d3460e2016-05-12 07:06:04 -07004074 skl_ddb_get_pipe_allocation_limits(dev, cstate, alloc, &num_active);
Damien Lespiau34bb56a2014-11-04 17:07:01 +00004075 alloc_size = skl_ddb_entry_size(alloc);
Kumar, Mahesh336031e2017-05-17 17:28:25 +05304076 if (alloc_size == 0)
Matt Roperc107acf2016-05-12 07:06:01 -07004077 return 0;
Damien Lespiaub9cec072014-11-04 17:06:43 +00004078
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004079 skl_ddb_calc_min(cstate, num_active, minimum, y_minimum);
Damien Lespiaub9cec072014-11-04 17:06:43 +00004080
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004081 /*
4082 * 1. Allocate the mininum required blocks for each active plane
4083 * and allocate the cursor, it doesn't require extra allocation
4084 * proportional to the data rate.
4085 */
Damien Lespiaub9cec072014-11-04 17:06:43 +00004086
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004087 for_each_plane_id_on_crtc(intel_crtc, plane_id) {
Kumar, Mahesh5ba6faa2017-05-17 17:28:26 +05304088 total_min_blocks += minimum[plane_id];
4089 total_min_blocks += y_minimum[plane_id];
Damien Lespiau80958152015-02-09 13:35:10 +00004090 }
4091
Kumar, Mahesh5ba6faa2017-05-17 17:28:26 +05304092 if (total_min_blocks > alloc_size) {
4093 DRM_DEBUG_KMS("Requested display configuration exceeds system DDB limitations");
4094 DRM_DEBUG_KMS("minimum required %d/%d\n", total_min_blocks,
4095 alloc_size);
4096 return -EINVAL;
4097 }
4098
4099 alloc_size -= total_min_blocks;
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004100 ddb->plane[pipe][PLANE_CURSOR].start = alloc->end - minimum[PLANE_CURSOR];
4101 ddb->plane[pipe][PLANE_CURSOR].end = alloc->end;
4102
Damien Lespiaub9cec072014-11-04 17:06:43 +00004103 /*
Damien Lespiau80958152015-02-09 13:35:10 +00004104 * 2. Distribute the remaining space in proportion to the amount of
4105 * data each plane needs to fetch from memory.
Damien Lespiaub9cec072014-11-04 17:06:43 +00004106 *
4107 * FIXME: we may not allocate every single block here.
4108 */
Maarten Lankhorst1e6ee542016-10-26 15:41:32 +02004109 total_data_rate = skl_get_total_relative_data_rate(cstate,
4110 plane_data_rate,
4111 plane_y_data_rate);
Matt Ropera1de91e2016-05-12 07:05:57 -07004112 if (total_data_rate == 0)
Matt Roperc107acf2016-05-12 07:06:01 -07004113 return 0;
Damien Lespiaub9cec072014-11-04 17:06:43 +00004114
Damien Lespiau34bb56a2014-11-04 17:07:01 +00004115 start = alloc->start;
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004116 for_each_plane_id_on_crtc(intel_crtc, plane_id) {
Chandra Konduru2cd601c2015-04-27 15:47:37 -07004117 unsigned int data_rate, y_data_rate;
4118 uint16_t plane_blocks, y_plane_blocks = 0;
Damien Lespiaub9cec072014-11-04 17:06:43 +00004119
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004120 if (plane_id == PLANE_CURSOR)
Maarten Lankhorst49845a72016-10-26 15:41:34 +02004121 continue;
4122
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004123 data_rate = plane_data_rate[plane_id];
Damien Lespiaub9cec072014-11-04 17:06:43 +00004124
4125 /*
Chandra Konduru2cd601c2015-04-27 15:47:37 -07004126 * allocation for (packed formats) or (uv-plane part of planar format):
Damien Lespiaub9cec072014-11-04 17:06:43 +00004127 * promote the expression to 64 bits to avoid overflowing, the
4128 * result is < available as data_rate / total_data_rate < 1
4129 */
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004130 plane_blocks = minimum[plane_id];
Damien Lespiau80958152015-02-09 13:35:10 +00004131 plane_blocks += div_u64((uint64_t)alloc_size * data_rate,
4132 total_data_rate);
Damien Lespiaub9cec072014-11-04 17:06:43 +00004133
Matt Roperc107acf2016-05-12 07:06:01 -07004134 /* Leave disabled planes at (0,0) */
4135 if (data_rate) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004136 ddb->plane[pipe][plane_id].start = start;
4137 ddb->plane[pipe][plane_id].end = start + plane_blocks;
Matt Roperc107acf2016-05-12 07:06:01 -07004138 }
Damien Lespiaub9cec072014-11-04 17:06:43 +00004139
4140 start += plane_blocks;
Chandra Konduru2cd601c2015-04-27 15:47:37 -07004141
4142 /*
4143 * allocation for y_plane part of planar format:
4144 */
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004145 y_data_rate = plane_y_data_rate[plane_id];
Chandra Konduru2cd601c2015-04-27 15:47:37 -07004146
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004147 y_plane_blocks = y_minimum[plane_id];
Matt Ropera1de91e2016-05-12 07:05:57 -07004148 y_plane_blocks += div_u64((uint64_t)alloc_size * y_data_rate,
4149 total_data_rate);
Chandra Konduru2cd601c2015-04-27 15:47:37 -07004150
Matt Roperc107acf2016-05-12 07:06:01 -07004151 if (y_data_rate) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004152 ddb->y_plane[pipe][plane_id].start = start;
4153 ddb->y_plane[pipe][plane_id].end = start + y_plane_blocks;
Matt Roperc107acf2016-05-12 07:06:01 -07004154 }
Chandra Konduru2cd601c2015-04-27 15:47:37 -07004155
Matt Ropera1de91e2016-05-12 07:05:57 -07004156 start += y_plane_blocks;
Damien Lespiaub9cec072014-11-04 17:06:43 +00004157 }
4158
Matt Roperc107acf2016-05-12 07:06:01 -07004159 return 0;
Damien Lespiaub9cec072014-11-04 17:06:43 +00004160}
4161
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004162/*
4163 * The max latency should be 257 (max the punit can code is 255 and we add 2us
Ville Syrjäläac484962016-01-20 21:05:26 +02004164 * for the read latency) and cpp should always be <= 8, so that
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004165 * should allow pixel_rate up to ~2 GHz which seems sufficient since max
4166 * 2xcdclk is 1350 MHz and the pixel rate should never exceed that.
4167*/
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304168static uint_fixed_16_16_t skl_wm_method1(uint32_t pixel_rate, uint8_t cpp,
4169 uint32_t latency)
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004170{
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304171 uint32_t wm_intermediate_val;
4172 uint_fixed_16_16_t ret;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004173
4174 if (latency == 0)
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304175 return FP_16_16_MAX;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004176
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304177 wm_intermediate_val = latency * pixel_rate * cpp;
Kumar, Maheshafbc95c2017-05-17 17:28:20 +05304178 ret = fixed_16_16_div_u64(wm_intermediate_val, 1000 * 512);
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004179 return ret;
4180}
4181
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304182static uint_fixed_16_16_t skl_wm_method2(uint32_t pixel_rate,
4183 uint32_t pipe_htotal,
4184 uint32_t latency,
4185 uint_fixed_16_16_t plane_blocks_per_line)
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004186{
Tvrtko Ursulind4c2aa62015-02-27 11:15:22 +00004187 uint32_t wm_intermediate_val;
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304188 uint_fixed_16_16_t ret;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004189
4190 if (latency == 0)
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304191 return FP_16_16_MAX;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004192
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004193 wm_intermediate_val = latency * pixel_rate;
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304194 wm_intermediate_val = DIV_ROUND_UP(wm_intermediate_val,
4195 pipe_htotal * 1000);
4196 ret = mul_u32_fixed_16_16(wm_intermediate_val, plane_blocks_per_line);
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004197 return ret;
4198}
4199
Kumar, Maheshd555cb52017-05-17 17:28:29 +05304200static uint_fixed_16_16_t
4201intel_get_linetime_us(struct intel_crtc_state *cstate)
4202{
4203 uint32_t pixel_rate;
4204 uint32_t crtc_htotal;
4205 uint_fixed_16_16_t linetime_us;
4206
4207 if (!cstate->base.active)
4208 return u32_to_fixed_16_16(0);
4209
4210 pixel_rate = cstate->pixel_rate;
4211
4212 if (WARN_ON(pixel_rate == 0))
4213 return u32_to_fixed_16_16(0);
4214
4215 crtc_htotal = cstate->base.adjusted_mode.crtc_htotal;
4216 linetime_us = fixed_16_16_div_u64(crtc_htotal * 1000, pixel_rate);
4217
4218 return linetime_us;
4219}
4220
Kumar, Mahesheb2fdcd2017-05-17 17:28:27 +05304221static uint32_t
4222skl_adjusted_plane_pixel_rate(const struct intel_crtc_state *cstate,
4223 const struct intel_plane_state *pstate)
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07004224{
4225 uint64_t adjusted_pixel_rate;
Kumar, Mahesh7084b502017-05-17 17:28:23 +05304226 uint_fixed_16_16_t downscale_amount;
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07004227
4228 /* Shouldn't reach here on disabled planes... */
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02004229 if (WARN_ON(!intel_wm_plane_visible(cstate, pstate)))
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07004230 return 0;
4231
4232 /*
4233 * Adjusted plane pixel rate is just the pipe's adjusted pixel rate
4234 * with additional adjustments for plane-specific scaling.
4235 */
Ville Syrjäläa7d1b3f2017-01-26 21:50:31 +02004236 adjusted_pixel_rate = cstate->pixel_rate;
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02004237 downscale_amount = skl_plane_downscale_amount(cstate, pstate);
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07004238
Kumar, Mahesh7084b502017-05-17 17:28:23 +05304239 return mul_round_up_u32_fixed16(adjusted_pixel_rate,
4240 downscale_amount);
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07004241}
4242
Matt Roper55994c22016-05-12 07:06:08 -07004243static int skl_compute_plane_wm(const struct drm_i915_private *dev_priv,
4244 struct intel_crtc_state *cstate,
Kumar, Mahesheb2fdcd2017-05-17 17:28:27 +05304245 const struct intel_plane_state *intel_pstate,
Matt Roper55994c22016-05-12 07:06:08 -07004246 uint16_t ddb_allocation,
4247 int level,
4248 uint16_t *out_blocks, /* out */
4249 uint8_t *out_lines, /* out */
4250 bool *enabled /* out */)
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004251{
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02004252 struct intel_plane *plane = to_intel_plane(intel_pstate->base.plane);
Kumar, Mahesheb2fdcd2017-05-17 17:28:27 +05304253 const struct drm_plane_state *pstate = &intel_pstate->base;
4254 const struct drm_framebuffer *fb = pstate->fb;
Tvrtko Ursulind4c2aa62015-02-27 11:15:22 +00004255 uint32_t latency = dev_priv->wm.skl_latency[level];
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304256 uint_fixed_16_16_t method1, method2;
4257 uint_fixed_16_16_t plane_blocks_per_line;
4258 uint_fixed_16_16_t selected_result;
4259 uint32_t interm_pbpl;
4260 uint32_t plane_bytes_per_line;
Tvrtko Ursulind4c2aa62015-02-27 11:15:22 +00004261 uint32_t res_blocks, res_lines;
Ville Syrjäläac484962016-01-20 21:05:26 +02004262 uint8_t cpp;
Kumar, Mahesha280f7d2016-04-06 08:26:39 -07004263 uint32_t width = 0, height = 0;
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07004264 uint32_t plane_pixel_rate;
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304265 uint_fixed_16_16_t y_tile_minimum;
4266 uint32_t y_min_scanlines;
Paulo Zanoniee3d5322016-10-11 15:25:38 -03004267 struct intel_atomic_state *state =
4268 to_intel_atomic_state(cstate->base.state);
4269 bool apply_memory_bw_wa = skl_needs_memory_bw_wa(state);
Mahesh Kumaref8a4fb2016-12-01 21:19:33 +05304270 bool y_tiled, x_tiled;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004271
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02004272 if (latency == 0 ||
4273 !intel_wm_plane_visible(cstate, intel_pstate)) {
Matt Roper55994c22016-05-12 07:06:08 -07004274 *enabled = false;
4275 return 0;
4276 }
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004277
Mahesh Kumaref8a4fb2016-12-01 21:19:33 +05304278 y_tiled = fb->modifier == I915_FORMAT_MOD_Y_TILED ||
4279 fb->modifier == I915_FORMAT_MOD_Yf_TILED;
4280 x_tiled = fb->modifier == I915_FORMAT_MOD_X_TILED;
4281
Mahesh Kumar4b7b2332016-12-01 21:19:35 +05304282 /* Display WA #1141: kbl. */
4283 if (IS_KABYLAKE(dev_priv) && dev_priv->ipc_enabled)
4284 latency += 4;
4285
Mahesh Kumaref8a4fb2016-12-01 21:19:33 +05304286 if (apply_memory_bw_wa && x_tiled)
Paulo Zanoniee3d5322016-10-11 15:25:38 -03004287 latency += 15;
4288
Ville Syrjälä93aa2a12017-03-14 17:10:50 +02004289 if (plane->id == PLANE_CURSOR) {
4290 width = intel_pstate->base.crtc_w;
4291 height = intel_pstate->base.crtc_h;
4292 } else {
4293 width = drm_rect_width(&intel_pstate->base.src) >> 16;
4294 height = drm_rect_height(&intel_pstate->base.src) >> 16;
4295 }
Kumar, Mahesha280f7d2016-04-06 08:26:39 -07004296
Ville Syrjäläbd2ef252016-09-26 19:30:46 +03004297 if (drm_rotation_90_or_270(pstate->rotation))
Kumar, Mahesha280f7d2016-04-06 08:26:39 -07004298 swap(width, height);
4299
Ville Syrjälä353c8592016-12-14 23:30:57 +02004300 cpp = fb->format->cpp[0];
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07004301 plane_pixel_rate = skl_adjusted_plane_pixel_rate(cstate, intel_pstate);
4302
Dave Airlie61d0a042016-10-25 16:35:20 +10004303 if (drm_rotation_90_or_270(pstate->rotation)) {
Ville Syrjälä438b74a2016-12-14 23:32:55 +02004304 int cpp = (fb->format->format == DRM_FORMAT_NV12) ?
Ville Syrjälä353c8592016-12-14 23:30:57 +02004305 fb->format->cpp[1] :
4306 fb->format->cpp[0];
Paulo Zanoni1186fa82016-09-22 18:00:31 -03004307
4308 switch (cpp) {
4309 case 1:
4310 y_min_scanlines = 16;
4311 break;
4312 case 2:
4313 y_min_scanlines = 8;
4314 break;
Paulo Zanoni1186fa82016-09-22 18:00:31 -03004315 case 4:
4316 y_min_scanlines = 4;
4317 break;
Paulo Zanoni86a462b2016-09-22 18:00:35 -03004318 default:
4319 MISSING_CASE(cpp);
4320 return -EINVAL;
Paulo Zanoni1186fa82016-09-22 18:00:31 -03004321 }
4322 } else {
4323 y_min_scanlines = 4;
4324 }
4325
Paulo Zanoni2ef32de2016-11-08 18:22:11 -02004326 if (apply_memory_bw_wa)
4327 y_min_scanlines *= 2;
4328
Paulo Zanoni7a1a8ae2016-09-22 18:00:32 -03004329 plane_bytes_per_line = width * cpp;
Mahesh Kumaref8a4fb2016-12-01 21:19:33 +05304330 if (y_tiled) {
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304331 interm_pbpl = DIV_ROUND_UP(plane_bytes_per_line *
4332 y_min_scanlines, 512);
Kumar, Maheshafbc95c2017-05-17 17:28:20 +05304333 plane_blocks_per_line = fixed_16_16_div(interm_pbpl,
4334 y_min_scanlines);
Mahesh Kumaref8a4fb2016-12-01 21:19:33 +05304335 } else if (x_tiled) {
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304336 interm_pbpl = DIV_ROUND_UP(plane_bytes_per_line, 512);
4337 plane_blocks_per_line = u32_to_fixed_16_16(interm_pbpl);
Mahesh Kumaref8a4fb2016-12-01 21:19:33 +05304338 } else {
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304339 interm_pbpl = DIV_ROUND_UP(plane_bytes_per_line, 512) + 1;
4340 plane_blocks_per_line = u32_to_fixed_16_16(interm_pbpl);
Paulo Zanoni7a1a8ae2016-09-22 18:00:32 -03004341 }
4342
Kumar, Mahesh9c2f7a92016-05-16 15:52:00 -07004343 method1 = skl_wm_method1(plane_pixel_rate, cpp, latency);
4344 method2 = skl_wm_method2(plane_pixel_rate,
Matt Roper024c9042015-09-24 15:53:11 -07004345 cstate->base.adjusted_mode.crtc_htotal,
Paulo Zanoni1186fa82016-09-22 18:00:31 -03004346 latency,
Paulo Zanoni7a1a8ae2016-09-22 18:00:32 -03004347 plane_blocks_per_line);
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004348
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304349 y_tile_minimum = mul_u32_fixed_16_16(y_min_scanlines,
4350 plane_blocks_per_line);
Paulo Zanoni75676ed2016-09-22 18:00:33 -03004351
Mahesh Kumaref8a4fb2016-12-01 21:19:33 +05304352 if (y_tiled) {
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304353 selected_result = max_fixed_16_16(method2, y_tile_minimum);
Tvrtko Ursulin0fda6562015-02-27 15:12:35 +00004354 } else {
Kumar, Maheshd555cb52017-05-17 17:28:29 +05304355 uint32_t linetime_us;
4356
4357 linetime_us = fixed_16_16_to_u32_round_up(
4358 intel_get_linetime_us(cstate));
Paulo Zanonif1db3ea2016-09-22 18:00:34 -03004359 if ((cpp * cstate->base.adjusted_mode.crtc_htotal / 512 < 1) &&
4360 (plane_bytes_per_line / 512 < 1))
4361 selected_result = method2;
Kumar, Maheshd555cb52017-05-17 17:28:29 +05304362 else if ((ddb_allocation && ddb_allocation /
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304363 fixed_16_16_to_u32_round_up(plane_blocks_per_line)) >= 1)
4364 selected_result = min_fixed_16_16(method1, method2);
Kumar, Maheshd555cb52017-05-17 17:28:29 +05304365 else if (latency >= linetime_us)
4366 selected_result = min_fixed_16_16(method1, method2);
Tvrtko Ursulin0fda6562015-02-27 15:12:35 +00004367 else
4368 selected_result = method1;
4369 }
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004370
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304371 res_blocks = fixed_16_16_to_u32_round_up(selected_result) + 1;
Kumar, Maheshd273ecc2017-05-17 17:28:22 +05304372 res_lines = div_round_up_fixed16(selected_result,
4373 plane_blocks_per_line);
Damien Lespiaue6d66172014-11-04 17:06:55 +00004374
Tvrtko Ursulin0fda6562015-02-27 15:12:35 +00004375 if (level >= 1 && level <= 7) {
Mahesh Kumaref8a4fb2016-12-01 21:19:33 +05304376 if (y_tiled) {
Mahesh Kumarb95320b2016-12-01 21:19:37 +05304377 res_blocks += fixed_16_16_to_u32_round_up(y_tile_minimum);
Paulo Zanoni1186fa82016-09-22 18:00:31 -03004378 res_lines += y_min_scanlines;
Paulo Zanoni75676ed2016-09-22 18:00:33 -03004379 } else {
Tvrtko Ursulin0fda6562015-02-27 15:12:35 +00004380 res_blocks++;
Paulo Zanoni75676ed2016-09-22 18:00:33 -03004381 }
Tvrtko Ursulin0fda6562015-02-27 15:12:35 +00004382 }
Tvrtko Ursulind4c2aa62015-02-27 11:15:22 +00004383
Matt Roper55994c22016-05-12 07:06:08 -07004384 if (res_blocks >= ddb_allocation || res_lines > 31) {
4385 *enabled = false;
Matt Roper6b6bada2016-05-12 07:06:10 -07004386
4387 /*
4388 * If there are no valid level 0 watermarks, then we can't
4389 * support this display configuration.
4390 */
4391 if (level) {
4392 return 0;
4393 } else {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004394 struct drm_plane *plane = pstate->plane;
Matt Roper6b6bada2016-05-12 07:06:10 -07004395
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004396 DRM_DEBUG_KMS("Requested display configuration exceeds system watermark limitations\n");
4397 DRM_DEBUG_KMS("[PLANE:%d:%s] blocks required = %u/%u, lines required = %u/31\n",
4398 plane->base.id, plane->name,
4399 res_blocks, ddb_allocation, res_lines);
Matt Roper6b6bada2016-05-12 07:06:10 -07004400 return -EINVAL;
4401 }
Matt Roper55994c22016-05-12 07:06:08 -07004402 }
Damien Lespiaue6d66172014-11-04 17:06:55 +00004403
4404 *out_blocks = res_blocks;
4405 *out_lines = res_lines;
Matt Roper55994c22016-05-12 07:06:08 -07004406 *enabled = true;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004407
Matt Roper55994c22016-05-12 07:06:08 -07004408 return 0;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004409}
4410
Matt Roperf4a96752016-05-12 07:06:06 -07004411static int
Kumar, Maheshd2f5e362017-05-17 17:28:28 +05304412skl_compute_wm_levels(const struct drm_i915_private *dev_priv,
4413 struct skl_ddb_allocation *ddb,
4414 struct intel_crtc_state *cstate,
4415 const struct intel_plane_state *intel_pstate,
4416 struct skl_plane_wm *wm)
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004417{
Matt Roper024c9042015-09-24 15:53:11 -07004418 struct intel_crtc *intel_crtc = to_intel_crtc(cstate->base.crtc);
Kumar, Mahesheb2fdcd2017-05-17 17:28:27 +05304419 struct drm_plane *plane = intel_pstate->base.plane;
4420 struct intel_plane *intel_plane = to_intel_plane(plane);
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004421 uint16_t ddb_blocks;
Matt Roper024c9042015-09-24 15:53:11 -07004422 enum pipe pipe = intel_crtc->pipe;
Kumar, Maheshd2f5e362017-05-17 17:28:28 +05304423 int level, max_level = ilk_wm_max_level(dev_priv);
Matt Roper55994c22016-05-12 07:06:08 -07004424 int ret;
Lyudea62163e2016-10-04 14:28:20 -04004425
Kumar, Mahesh7b751192017-05-17 17:28:24 +05304426 if (WARN_ON(!intel_pstate->base.fb))
4427 return -EINVAL;
Matt Roper024c9042015-09-24 15:53:11 -07004428
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004429 ddb_blocks = skl_ddb_entry_size(&ddb->plane[pipe][intel_plane->id]);
Matt Roperf4a96752016-05-12 07:06:06 -07004430
Kumar, Maheshd2f5e362017-05-17 17:28:28 +05304431 for (level = 0; level <= max_level; level++) {
4432 struct skl_wm_level *result = &wm->wm[level];
4433
4434 ret = skl_compute_plane_wm(dev_priv,
4435 cstate,
4436 intel_pstate,
4437 ddb_blocks,
4438 level,
4439 &result->plane_res_b,
4440 &result->plane_res_l,
4441 &result->plane_en);
4442 if (ret)
4443 return ret;
4444 }
Matt Roperf4a96752016-05-12 07:06:06 -07004445
4446 return 0;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004447}
4448
Damien Lespiau407b50f2014-11-04 17:06:57 +00004449static uint32_t
Matt Roper024c9042015-09-24 15:53:11 -07004450skl_compute_linetime_wm(struct intel_crtc_state *cstate)
Damien Lespiau407b50f2014-11-04 17:06:57 +00004451{
Mahesh Kumara3a89862016-12-01 21:19:34 +05304452 struct drm_atomic_state *state = cstate->base.state;
4453 struct drm_i915_private *dev_priv = to_i915(state->dev);
Kumar, Maheshd555cb52017-05-17 17:28:29 +05304454 uint_fixed_16_16_t linetime_us;
Mahesh Kumara3a89862016-12-01 21:19:34 +05304455 uint32_t linetime_wm;
Paulo Zanoni30d1b5f2016-10-07 17:28:58 -03004456
Kumar, Maheshd555cb52017-05-17 17:28:29 +05304457 linetime_us = intel_get_linetime_us(cstate);
4458
4459 if (is_fixed16_zero(linetime_us))
Damien Lespiau407b50f2014-11-04 17:06:57 +00004460 return 0;
4461
Kumar, Maheshd555cb52017-05-17 17:28:29 +05304462 linetime_wm = fixed_16_16_to_u32_round_up(mul_u32_fixed_16_16(8,
4463 linetime_us));
Mahesh Kumara3a89862016-12-01 21:19:34 +05304464
4465 /* Display WA #1135: bxt. */
4466 if (IS_BROXTON(dev_priv) && dev_priv->ipc_enabled)
4467 linetime_wm = DIV_ROUND_UP(linetime_wm, 2);
4468
4469 return linetime_wm;
Damien Lespiau407b50f2014-11-04 17:06:57 +00004470}
4471
Matt Roper024c9042015-09-24 15:53:11 -07004472static void skl_compute_transition_wm(struct intel_crtc_state *cstate,
Damien Lespiau9414f562014-11-04 17:06:58 +00004473 struct skl_wm_level *trans_wm /* out */)
Damien Lespiau407b50f2014-11-04 17:06:57 +00004474{
Matt Roper024c9042015-09-24 15:53:11 -07004475 if (!cstate->base.active)
Damien Lespiau407b50f2014-11-04 17:06:57 +00004476 return;
Damien Lespiau9414f562014-11-04 17:06:58 +00004477
4478 /* Until we know more, just disable transition WMs */
Lyudea62163e2016-10-04 14:28:20 -04004479 trans_wm->plane_en = false;
Damien Lespiau407b50f2014-11-04 17:06:57 +00004480}
4481
Matt Roper55994c22016-05-12 07:06:08 -07004482static int skl_build_pipe_wm(struct intel_crtc_state *cstate,
4483 struct skl_ddb_allocation *ddb,
4484 struct skl_pipe_wm *pipe_wm)
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004485{
Matt Roper024c9042015-09-24 15:53:11 -07004486 struct drm_device *dev = cstate->base.crtc->dev;
Kumar, Mahesheb2fdcd2017-05-17 17:28:27 +05304487 struct drm_crtc_state *crtc_state = &cstate->base;
Chris Wilsonfac5e232016-07-04 11:34:36 +01004488 const struct drm_i915_private *dev_priv = to_i915(dev);
Kumar, Mahesheb2fdcd2017-05-17 17:28:27 +05304489 struct drm_plane *plane;
4490 const struct drm_plane_state *pstate;
Lyudea62163e2016-10-04 14:28:20 -04004491 struct skl_plane_wm *wm;
Matt Roper55994c22016-05-12 07:06:08 -07004492 int ret;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004493
Lyudea62163e2016-10-04 14:28:20 -04004494 /*
4495 * We'll only calculate watermarks for planes that are actually
4496 * enabled, so make sure all other planes are set as disabled.
4497 */
4498 memset(pipe_wm->planes, 0, sizeof(pipe_wm->planes));
4499
Kumar, Mahesheb2fdcd2017-05-17 17:28:27 +05304500 drm_atomic_crtc_state_for_each_plane_state(plane, pstate, crtc_state) {
4501 const struct intel_plane_state *intel_pstate =
4502 to_intel_plane_state(pstate);
4503 enum plane_id plane_id = to_intel_plane(plane)->id;
4504
4505 wm = &pipe_wm->planes[plane_id];
Lyudea62163e2016-10-04 14:28:20 -04004506
Kumar, Maheshd2f5e362017-05-17 17:28:28 +05304507 ret = skl_compute_wm_levels(dev_priv, ddb, cstate,
4508 intel_pstate, wm);
4509 if (ret)
4510 return ret;
Lyudea62163e2016-10-04 14:28:20 -04004511 skl_compute_transition_wm(cstate, &wm->trans_wm);
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004512 }
Matt Roper024c9042015-09-24 15:53:11 -07004513 pipe_wm->linetime = skl_compute_linetime_wm(cstate);
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004514
Matt Roper55994c22016-05-12 07:06:08 -07004515 return 0;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004516}
4517
Ville Syrjäläf0f59a02015-11-18 15:33:26 +02004518static void skl_ddb_entry_write(struct drm_i915_private *dev_priv,
4519 i915_reg_t reg,
Damien Lespiau16160e32014-11-04 17:06:53 +00004520 const struct skl_ddb_entry *entry)
4521{
4522 if (entry->end)
4523 I915_WRITE(reg, (entry->end - 1) << 16 | entry->start);
4524 else
4525 I915_WRITE(reg, 0);
4526}
4527
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02004528static void skl_write_wm_level(struct drm_i915_private *dev_priv,
4529 i915_reg_t reg,
4530 const struct skl_wm_level *level)
4531{
4532 uint32_t val = 0;
4533
4534 if (level->plane_en) {
4535 val |= PLANE_WM_EN;
4536 val |= level->plane_res_b;
4537 val |= level->plane_res_l << PLANE_WM_LINES_SHIFT;
4538 }
4539
4540 I915_WRITE(reg, val);
4541}
4542
Ville Syrjäläd9348de2016-11-22 22:21:53 +02004543static void skl_write_plane_wm(struct intel_crtc *intel_crtc,
4544 const struct skl_plane_wm *wm,
4545 const struct skl_ddb_allocation *ddb,
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004546 enum plane_id plane_id)
Lyude62e0fb82016-08-22 12:50:08 -04004547{
4548 struct drm_crtc *crtc = &intel_crtc->base;
4549 struct drm_device *dev = crtc->dev;
4550 struct drm_i915_private *dev_priv = to_i915(dev);
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01004551 int level, max_level = ilk_wm_max_level(dev_priv);
Lyude62e0fb82016-08-22 12:50:08 -04004552 enum pipe pipe = intel_crtc->pipe;
4553
4554 for (level = 0; level <= max_level; level++) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004555 skl_write_wm_level(dev_priv, PLANE_WM(pipe, plane_id, level),
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02004556 &wm->wm[level]);
Lyude62e0fb82016-08-22 12:50:08 -04004557 }
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004558 skl_write_wm_level(dev_priv, PLANE_WM_TRANS(pipe, plane_id),
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02004559 &wm->trans_wm);
Lyude27082492016-08-24 07:48:10 +02004560
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004561 skl_ddb_entry_write(dev_priv, PLANE_BUF_CFG(pipe, plane_id),
4562 &ddb->plane[pipe][plane_id]);
4563 skl_ddb_entry_write(dev_priv, PLANE_NV12_BUF_CFG(pipe, plane_id),
4564 &ddb->y_plane[pipe][plane_id]);
Lyude62e0fb82016-08-22 12:50:08 -04004565}
4566
Ville Syrjäläd9348de2016-11-22 22:21:53 +02004567static void skl_write_cursor_wm(struct intel_crtc *intel_crtc,
4568 const struct skl_plane_wm *wm,
4569 const struct skl_ddb_allocation *ddb)
Lyude62e0fb82016-08-22 12:50:08 -04004570{
4571 struct drm_crtc *crtc = &intel_crtc->base;
4572 struct drm_device *dev = crtc->dev;
4573 struct drm_i915_private *dev_priv = to_i915(dev);
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01004574 int level, max_level = ilk_wm_max_level(dev_priv);
Lyude62e0fb82016-08-22 12:50:08 -04004575 enum pipe pipe = intel_crtc->pipe;
4576
4577 for (level = 0; level <= max_level; level++) {
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02004578 skl_write_wm_level(dev_priv, CUR_WM(pipe, level),
4579 &wm->wm[level]);
Lyude62e0fb82016-08-22 12:50:08 -04004580 }
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02004581 skl_write_wm_level(dev_priv, CUR_WM_TRANS(pipe), &wm->trans_wm);
Lyude27082492016-08-24 07:48:10 +02004582
4583 skl_ddb_entry_write(dev_priv, CUR_BUF_CFG(pipe),
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02004584 &ddb->plane[pipe][PLANE_CURSOR]);
Lyude62e0fb82016-08-22 12:50:08 -04004585}
4586
cpaul@redhat.com45ece232016-10-14 17:31:56 -04004587bool skl_wm_level_equals(const struct skl_wm_level *l1,
4588 const struct skl_wm_level *l2)
4589{
4590 if (l1->plane_en != l2->plane_en)
4591 return false;
4592
4593 /* If both planes aren't enabled, the rest shouldn't matter */
4594 if (!l1->plane_en)
4595 return true;
4596
4597 return (l1->plane_res_l == l2->plane_res_l &&
4598 l1->plane_res_b == l2->plane_res_b);
4599}
4600
Lyude27082492016-08-24 07:48:10 +02004601static inline bool skl_ddb_entries_overlap(const struct skl_ddb_entry *a,
4602 const struct skl_ddb_entry *b)
Damien Lespiau0e8fb7b2014-11-04 17:07:02 +00004603{
Lyude27082492016-08-24 07:48:10 +02004604 return a->start < b->end && b->start < a->end;
Damien Lespiau0e8fb7b2014-11-04 17:07:02 +00004605}
4606
Maarten Lankhorst5eff5032016-11-08 13:55:35 +01004607bool skl_ddb_allocation_overlaps(const struct skl_ddb_entry **entries,
4608 const struct skl_ddb_entry *ddb,
4609 int ignore)
Damien Lespiau0e8fb7b2014-11-04 17:07:02 +00004610{
Lyudece0ba282016-09-15 10:46:35 -04004611 int i;
Damien Lespiau0e8fb7b2014-11-04 17:07:02 +00004612
Maarten Lankhorst5eff5032016-11-08 13:55:35 +01004613 for (i = 0; i < I915_MAX_PIPES; i++)
4614 if (i != ignore && entries[i] &&
4615 skl_ddb_entries_overlap(ddb, entries[i]))
Lyude27082492016-08-24 07:48:10 +02004616 return true;
Damien Lespiau0e8fb7b2014-11-04 17:07:02 +00004617
Lyude27082492016-08-24 07:48:10 +02004618 return false;
Damien Lespiau0e8fb7b2014-11-04 17:07:02 +00004619}
4620
Matt Roper55994c22016-05-12 07:06:08 -07004621static int skl_update_pipe_wm(struct drm_crtc_state *cstate,
Maarten Lankhorst03af79e2016-10-26 15:41:36 +02004622 const struct skl_pipe_wm *old_pipe_wm,
Matt Roper55994c22016-05-12 07:06:08 -07004623 struct skl_pipe_wm *pipe_wm, /* out */
Maarten Lankhorst03af79e2016-10-26 15:41:36 +02004624 struct skl_ddb_allocation *ddb, /* out */
Matt Roper55994c22016-05-12 07:06:08 -07004625 bool *changed /* out */)
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004626{
Matt Roperf4a96752016-05-12 07:06:06 -07004627 struct intel_crtc_state *intel_cstate = to_intel_crtc_state(cstate);
Matt Roper55994c22016-05-12 07:06:08 -07004628 int ret;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004629
Matt Roper55994c22016-05-12 07:06:08 -07004630 ret = skl_build_pipe_wm(intel_cstate, ddb, pipe_wm);
4631 if (ret)
4632 return ret;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004633
Maarten Lankhorst03af79e2016-10-26 15:41:36 +02004634 if (!memcmp(old_pipe_wm, pipe_wm, sizeof(*pipe_wm)))
Matt Roper55994c22016-05-12 07:06:08 -07004635 *changed = false;
4636 else
4637 *changed = true;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004638
Matt Roper55994c22016-05-12 07:06:08 -07004639 return 0;
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004640}
4641
Matt Roper9b613022016-06-27 16:42:44 -07004642static uint32_t
4643pipes_modified(struct drm_atomic_state *state)
4644{
4645 struct drm_crtc *crtc;
4646 struct drm_crtc_state *cstate;
4647 uint32_t i, ret = 0;
4648
Maarten Lankhorst6ebdb5a2017-03-09 15:52:03 +01004649 for_each_new_crtc_in_state(state, crtc, cstate, i)
Matt Roper9b613022016-06-27 16:42:44 -07004650 ret |= drm_crtc_mask(crtc);
4651
4652 return ret;
4653}
4654
Jani Nikulabb7791b2016-10-04 12:29:17 +03004655static int
Paulo Zanoni7f60e202016-09-29 16:36:48 -03004656skl_ddb_add_affected_planes(struct intel_crtc_state *cstate)
4657{
4658 struct drm_atomic_state *state = cstate->base.state;
4659 struct drm_device *dev = state->dev;
4660 struct drm_crtc *crtc = cstate->base.crtc;
4661 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4662 struct drm_i915_private *dev_priv = to_i915(dev);
4663 struct intel_atomic_state *intel_state = to_intel_atomic_state(state);
4664 struct skl_ddb_allocation *new_ddb = &intel_state->wm_results.ddb;
4665 struct skl_ddb_allocation *cur_ddb = &dev_priv->wm.skl_hw.ddb;
4666 struct drm_plane_state *plane_state;
4667 struct drm_plane *plane;
4668 enum pipe pipe = intel_crtc->pipe;
Paulo Zanoni7f60e202016-09-29 16:36:48 -03004669
4670 WARN_ON(!drm_atomic_get_existing_crtc_state(state, crtc));
4671
Maarten Lankhorst220b0962016-10-26 15:41:30 +02004672 drm_for_each_plane_mask(plane, dev, cstate->base.plane_mask) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004673 enum plane_id plane_id = to_intel_plane(plane)->id;
Paulo Zanoni7f60e202016-09-29 16:36:48 -03004674
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004675 if (skl_ddb_entry_equal(&cur_ddb->plane[pipe][plane_id],
4676 &new_ddb->plane[pipe][plane_id]) &&
4677 skl_ddb_entry_equal(&cur_ddb->y_plane[pipe][plane_id],
4678 &new_ddb->y_plane[pipe][plane_id]))
Paulo Zanoni7f60e202016-09-29 16:36:48 -03004679 continue;
4680
4681 plane_state = drm_atomic_get_plane_state(state, plane);
4682 if (IS_ERR(plane_state))
4683 return PTR_ERR(plane_state);
4684 }
4685
4686 return 0;
4687}
4688
Matt Roper98d39492016-05-12 07:06:03 -07004689static int
4690skl_compute_ddb(struct drm_atomic_state *state)
4691{
4692 struct drm_device *dev = state->dev;
4693 struct drm_i915_private *dev_priv = to_i915(dev);
4694 struct intel_atomic_state *intel_state = to_intel_atomic_state(state);
4695 struct intel_crtc *intel_crtc;
Matt Roper734fa012016-05-12 15:11:40 -07004696 struct skl_ddb_allocation *ddb = &intel_state->wm_results.ddb;
Matt Roper9b613022016-06-27 16:42:44 -07004697 uint32_t realloc_pipes = pipes_modified(state);
Matt Roper98d39492016-05-12 07:06:03 -07004698 int ret;
4699
4700 /*
4701 * If this is our first atomic update following hardware readout,
4702 * we can't trust the DDB that the BIOS programmed for us. Let's
4703 * pretend that all pipes switched active status so that we'll
4704 * ensure a full DDB recompute.
4705 */
Matt Roper1b54a882016-06-17 13:42:18 -07004706 if (dev_priv->wm.distrust_bios_wm) {
4707 ret = drm_modeset_lock(&dev->mode_config.connection_mutex,
4708 state->acquire_ctx);
4709 if (ret)
4710 return ret;
4711
Matt Roper98d39492016-05-12 07:06:03 -07004712 intel_state->active_pipe_changes = ~0;
4713
Matt Roper1b54a882016-06-17 13:42:18 -07004714 /*
4715 * We usually only initialize intel_state->active_crtcs if we
4716 * we're doing a modeset; make sure this field is always
4717 * initialized during the sanitization process that happens
4718 * on the first commit too.
4719 */
4720 if (!intel_state->modeset)
4721 intel_state->active_crtcs = dev_priv->active_crtcs;
4722 }
4723
Matt Roper98d39492016-05-12 07:06:03 -07004724 /*
4725 * If the modeset changes which CRTC's are active, we need to
4726 * recompute the DDB allocation for *all* active pipes, even
4727 * those that weren't otherwise being modified in any way by this
4728 * atomic commit. Due to the shrinking of the per-pipe allocations
4729 * when new active CRTC's are added, it's possible for a pipe that
4730 * we were already using and aren't changing at all here to suddenly
4731 * become invalid if its DDB needs exceeds its new allocation.
4732 *
4733 * Note that if we wind up doing a full DDB recompute, we can't let
4734 * any other display updates race with this transaction, so we need
4735 * to grab the lock on *all* CRTC's.
4736 */
Matt Roper734fa012016-05-12 15:11:40 -07004737 if (intel_state->active_pipe_changes) {
Matt Roper98d39492016-05-12 07:06:03 -07004738 realloc_pipes = ~0;
Matt Roper734fa012016-05-12 15:11:40 -07004739 intel_state->wm_results.dirty_pipes = ~0;
4740 }
Matt Roper98d39492016-05-12 07:06:03 -07004741
Paulo Zanoni5a920b82016-10-04 14:37:32 -03004742 /*
4743 * We're not recomputing for the pipes not included in the commit, so
4744 * make sure we start with the current state.
4745 */
4746 memcpy(ddb, &dev_priv->wm.skl_hw.ddb, sizeof(*ddb));
4747
Matt Roper98d39492016-05-12 07:06:03 -07004748 for_each_intel_crtc_mask(dev, intel_crtc, realloc_pipes) {
4749 struct intel_crtc_state *cstate;
4750
4751 cstate = intel_atomic_get_crtc_state(state, intel_crtc);
4752 if (IS_ERR(cstate))
4753 return PTR_ERR(cstate);
4754
Matt Roper734fa012016-05-12 15:11:40 -07004755 ret = skl_allocate_pipe_ddb(cstate, ddb);
Matt Roper98d39492016-05-12 07:06:03 -07004756 if (ret)
4757 return ret;
Lyude05a76d32016-08-17 15:55:57 -04004758
Paulo Zanoni7f60e202016-09-29 16:36:48 -03004759 ret = skl_ddb_add_affected_planes(cstate);
Lyude05a76d32016-08-17 15:55:57 -04004760 if (ret)
4761 return ret;
Matt Roper98d39492016-05-12 07:06:03 -07004762 }
4763
4764 return 0;
4765}
4766
Matt Roper2722efb2016-08-17 15:55:55 -04004767static void
4768skl_copy_wm_for_pipe(struct skl_wm_values *dst,
4769 struct skl_wm_values *src,
4770 enum pipe pipe)
4771{
Matt Roper2722efb2016-08-17 15:55:55 -04004772 memcpy(dst->ddb.y_plane[pipe], src->ddb.y_plane[pipe],
4773 sizeof(dst->ddb.y_plane[pipe]));
4774 memcpy(dst->ddb.plane[pipe], src->ddb.plane[pipe],
4775 sizeof(dst->ddb.plane[pipe]));
4776}
4777
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004778static void
4779skl_print_wm_changes(const struct drm_atomic_state *state)
4780{
4781 const struct drm_device *dev = state->dev;
4782 const struct drm_i915_private *dev_priv = to_i915(dev);
4783 const struct intel_atomic_state *intel_state =
4784 to_intel_atomic_state(state);
4785 const struct drm_crtc *crtc;
4786 const struct drm_crtc_state *cstate;
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004787 const struct intel_plane *intel_plane;
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004788 const struct skl_ddb_allocation *old_ddb = &dev_priv->wm.skl_hw.ddb;
4789 const struct skl_ddb_allocation *new_ddb = &intel_state->wm_results.ddb;
Maarten Lankhorst75704982016-11-01 12:04:10 +01004790 int i;
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004791
Maarten Lankhorst6ebdb5a2017-03-09 15:52:03 +01004792 for_each_new_crtc_in_state(state, crtc, cstate, i) {
Maarten Lankhorst75704982016-11-01 12:04:10 +01004793 const struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4794 enum pipe pipe = intel_crtc->pipe;
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004795
Maarten Lankhorst75704982016-11-01 12:04:10 +01004796 for_each_intel_plane_on_crtc(dev, intel_crtc, intel_plane) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004797 enum plane_id plane_id = intel_plane->id;
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004798 const struct skl_ddb_entry *old, *new;
4799
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004800 old = &old_ddb->plane[pipe][plane_id];
4801 new = &new_ddb->plane[pipe][plane_id];
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004802
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004803 if (skl_ddb_entry_equal(old, new))
4804 continue;
4805
Maarten Lankhorst75704982016-11-01 12:04:10 +01004806 DRM_DEBUG_ATOMIC("[PLANE:%d:%s] ddb (%d - %d) -> (%d - %d)\n",
4807 intel_plane->base.base.id,
4808 intel_plane->base.name,
4809 old->start, old->end,
4810 new->start, new->end);
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004811 }
4812 }
4813}
4814
Matt Roper98d39492016-05-12 07:06:03 -07004815static int
4816skl_compute_wm(struct drm_atomic_state *state)
4817{
4818 struct drm_crtc *crtc;
4819 struct drm_crtc_state *cstate;
Matt Roper734fa012016-05-12 15:11:40 -07004820 struct intel_atomic_state *intel_state = to_intel_atomic_state(state);
4821 struct skl_wm_values *results = &intel_state->wm_results;
4822 struct skl_pipe_wm *pipe_wm;
Matt Roper98d39492016-05-12 07:06:03 -07004823 bool changed = false;
Matt Roper734fa012016-05-12 15:11:40 -07004824 int ret, i;
Matt Roper98d39492016-05-12 07:06:03 -07004825
4826 /*
4827 * If this transaction isn't actually touching any CRTC's, don't
4828 * bother with watermark calculation. Note that if we pass this
4829 * test, we're guaranteed to hold at least one CRTC state mutex,
4830 * which means we can safely use values like dev_priv->active_crtcs
4831 * since any racing commits that want to update them would need to
4832 * hold _all_ CRTC state mutexes.
4833 */
Maarten Lankhorst6ebdb5a2017-03-09 15:52:03 +01004834 for_each_new_crtc_in_state(state, crtc, cstate, i)
Matt Roper98d39492016-05-12 07:06:03 -07004835 changed = true;
4836 if (!changed)
4837 return 0;
4838
Matt Roper734fa012016-05-12 15:11:40 -07004839 /* Clear all dirty flags */
4840 results->dirty_pipes = 0;
4841
Matt Roper98d39492016-05-12 07:06:03 -07004842 ret = skl_compute_ddb(state);
4843 if (ret)
4844 return ret;
4845
Matt Roper734fa012016-05-12 15:11:40 -07004846 /*
4847 * Calculate WM's for all pipes that are part of this transaction.
4848 * Note that the DDB allocation above may have added more CRTC's that
4849 * weren't otherwise being modified (and set bits in dirty_pipes) if
4850 * pipe allocations had to change.
4851 *
4852 * FIXME: Now that we're doing this in the atomic check phase, we
4853 * should allow skl_update_pipe_wm() to return failure in cases where
4854 * no suitable watermark values can be found.
4855 */
Maarten Lankhorst6ebdb5a2017-03-09 15:52:03 +01004856 for_each_new_crtc_in_state(state, crtc, cstate, i) {
Matt Roper734fa012016-05-12 15:11:40 -07004857 struct intel_crtc_state *intel_cstate =
4858 to_intel_crtc_state(cstate);
Maarten Lankhorst03af79e2016-10-26 15:41:36 +02004859 const struct skl_pipe_wm *old_pipe_wm =
4860 &to_intel_crtc_state(crtc->state)->wm.skl.optimal;
Matt Roper734fa012016-05-12 15:11:40 -07004861
4862 pipe_wm = &intel_cstate->wm.skl.optimal;
Maarten Lankhorst03af79e2016-10-26 15:41:36 +02004863 ret = skl_update_pipe_wm(cstate, old_pipe_wm, pipe_wm,
4864 &results->ddb, &changed);
Matt Roper734fa012016-05-12 15:11:40 -07004865 if (ret)
4866 return ret;
4867
4868 if (changed)
4869 results->dirty_pipes |= drm_crtc_mask(crtc);
4870
4871 if ((results->dirty_pipes & drm_crtc_mask(crtc)) == 0)
4872 /* This pipe's WM's did not change */
4873 continue;
4874
4875 intel_cstate->update_wm_pre = true;
Matt Roper734fa012016-05-12 15:11:40 -07004876 }
4877
cpaul@redhat.com413fc532016-10-14 17:31:54 -04004878 skl_print_wm_changes(state);
4879
Matt Roper98d39492016-05-12 07:06:03 -07004880 return 0;
4881}
4882
Maarten Lankhorstccf010f2016-11-08 13:55:32 +01004883static void skl_atomic_update_crtc_wm(struct intel_atomic_state *state,
4884 struct intel_crtc_state *cstate)
4885{
4886 struct intel_crtc *crtc = to_intel_crtc(cstate->base.crtc);
4887 struct drm_i915_private *dev_priv = to_i915(state->base.dev);
4888 struct skl_pipe_wm *pipe_wm = &cstate->wm.skl.optimal;
Maarten Lankhorste62929b2016-11-08 13:55:33 +01004889 const struct skl_ddb_allocation *ddb = &state->wm_results.ddb;
Maarten Lankhorstccf010f2016-11-08 13:55:32 +01004890 enum pipe pipe = crtc->pipe;
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004891 enum plane_id plane_id;
Maarten Lankhorste62929b2016-11-08 13:55:33 +01004892
4893 if (!(state->wm_results.dirty_pipes & drm_crtc_mask(&crtc->base)))
4894 return;
Maarten Lankhorstccf010f2016-11-08 13:55:32 +01004895
4896 I915_WRITE(PIPE_WM_LINETIME(pipe), pipe_wm->linetime);
Maarten Lankhorste62929b2016-11-08 13:55:33 +01004897
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02004898 for_each_plane_id_on_crtc(crtc, plane_id) {
4899 if (plane_id != PLANE_CURSOR)
4900 skl_write_plane_wm(crtc, &pipe_wm->planes[plane_id],
4901 ddb, plane_id);
4902 else
4903 skl_write_cursor_wm(crtc, &pipe_wm->planes[plane_id],
4904 ddb);
4905 }
Maarten Lankhorstccf010f2016-11-08 13:55:32 +01004906}
4907
Maarten Lankhorste62929b2016-11-08 13:55:33 +01004908static void skl_initial_wm(struct intel_atomic_state *state,
4909 struct intel_crtc_state *cstate)
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004910{
Maarten Lankhorste62929b2016-11-08 13:55:33 +01004911 struct intel_crtc *intel_crtc = to_intel_crtc(cstate->base.crtc);
Ville Syrjälä432081b2016-10-31 22:37:03 +02004912 struct drm_device *dev = intel_crtc->base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +01004913 struct drm_i915_private *dev_priv = to_i915(dev);
Maarten Lankhorste62929b2016-11-08 13:55:33 +01004914 struct skl_wm_values *results = &state->wm_results;
Matt Roper2722efb2016-08-17 15:55:55 -04004915 struct skl_wm_values *hw_vals = &dev_priv->wm.skl_hw;
Lyude27082492016-08-24 07:48:10 +02004916 enum pipe pipe = intel_crtc->pipe;
Bob Paauweadda50b2015-07-21 10:42:53 -07004917
Ville Syrjälä432081b2016-10-31 22:37:03 +02004918 if ((results->dirty_pipes & drm_crtc_mask(&intel_crtc->base)) == 0)
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004919 return;
4920
Matt Roper734fa012016-05-12 15:11:40 -07004921 mutex_lock(&dev_priv->wm.wm_mutex);
4922
Maarten Lankhorste62929b2016-11-08 13:55:33 +01004923 if (cstate->base.active_changed)
4924 skl_atomic_update_crtc_wm(state, cstate);
Lyude27082492016-08-24 07:48:10 +02004925
4926 skl_copy_wm_for_pipe(hw_vals, results, pipe);
Matt Roper734fa012016-05-12 15:11:40 -07004927
4928 mutex_unlock(&dev_priv->wm.wm_mutex);
Pradeep Bhat2d41c0b2014-11-04 17:06:42 +00004929}
4930
Ville Syrjäläd8905652016-01-14 14:53:35 +02004931static void ilk_compute_wm_config(struct drm_device *dev,
4932 struct intel_wm_config *config)
4933{
4934 struct intel_crtc *crtc;
4935
4936 /* Compute the currently _active_ config */
4937 for_each_intel_crtc(dev, crtc) {
4938 const struct intel_pipe_wm *wm = &crtc->wm.active.ilk;
4939
4940 if (!wm->pipe_enabled)
4941 continue;
4942
4943 config->sprites_enabled |= wm->sprites_enabled;
4944 config->sprites_scaled |= wm->sprites_scaled;
4945 config->num_pipes_active++;
4946 }
4947}
4948
Matt Ropered4a6a72016-02-23 17:20:13 -08004949static void ilk_program_watermarks(struct drm_i915_private *dev_priv)
Paulo Zanoni801bcff2013-05-31 10:08:35 -03004950{
Chris Wilson91c8a322016-07-05 10:40:23 +01004951 struct drm_device *dev = &dev_priv->drm;
Ville Syrjäläb9d5c832015-09-24 15:53:14 -07004952 struct intel_pipe_wm lp_wm_1_2 = {}, lp_wm_5_6 = {}, *best_lp_wm;
Imre Deak820c1982013-12-17 14:46:36 +02004953 struct ilk_wm_maximums max;
Ville Syrjäläd8905652016-01-14 14:53:35 +02004954 struct intel_wm_config config = {};
Imre Deak820c1982013-12-17 14:46:36 +02004955 struct ilk_wm_values results = {};
Ville Syrjälä77c122b2013-08-06 22:24:04 +03004956 enum intel_ddb_partitioning partitioning;
Matt Roper261a27d2015-10-08 15:28:25 -07004957
Ville Syrjäläd8905652016-01-14 14:53:35 +02004958 ilk_compute_wm_config(dev, &config);
4959
4960 ilk_compute_wm_maximums(dev, 1, &config, INTEL_DDB_PART_1_2, &max);
4961 ilk_wm_merge(dev, &config, &max, &lp_wm_1_2);
Ville Syrjälä0362c782013-10-09 19:17:57 +03004962
Ville Syrjäläa485bfb2013-10-09 19:17:59 +03004963 /* 5/6 split only in single pipe config on IVB+ */
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00004964 if (INTEL_GEN(dev_priv) >= 7 &&
Ville Syrjäläd8905652016-01-14 14:53:35 +02004965 config.num_pipes_active == 1 && config.sprites_enabled) {
4966 ilk_compute_wm_maximums(dev, 1, &config, INTEL_DDB_PART_5_6, &max);
4967 ilk_wm_merge(dev, &config, &max, &lp_wm_5_6);
Ville Syrjäläa485bfb2013-10-09 19:17:59 +03004968
Imre Deak820c1982013-12-17 14:46:36 +02004969 best_lp_wm = ilk_find_best_result(dev, &lp_wm_1_2, &lp_wm_5_6);
Paulo Zanoni861f3382013-05-31 10:19:21 -03004970 } else {
Ville Syrjälä198a1e92013-10-09 19:17:58 +03004971 best_lp_wm = &lp_wm_1_2;
Paulo Zanoni861f3382013-05-31 10:19:21 -03004972 }
4973
Ville Syrjälä198a1e92013-10-09 19:17:58 +03004974 partitioning = (best_lp_wm == &lp_wm_1_2) ?
Ville Syrjälä77c122b2013-08-06 22:24:04 +03004975 INTEL_DDB_PART_1_2 : INTEL_DDB_PART_5_6;
Paulo Zanoni861f3382013-05-31 10:19:21 -03004976
Imre Deak820c1982013-12-17 14:46:36 +02004977 ilk_compute_wm_results(dev, best_lp_wm, partitioning, &results);
Ville Syrjälä609cede2013-10-09 19:18:03 +03004978
Imre Deak820c1982013-12-17 14:46:36 +02004979 ilk_write_wm_values(dev_priv, &results);
Paulo Zanoni1011d8c2013-05-09 16:55:50 -03004980}
4981
Maarten Lankhorstccf010f2016-11-08 13:55:32 +01004982static void ilk_initial_watermarks(struct intel_atomic_state *state,
4983 struct intel_crtc_state *cstate)
Ville Syrjäläb9d5c832015-09-24 15:53:14 -07004984{
Matt Ropered4a6a72016-02-23 17:20:13 -08004985 struct drm_i915_private *dev_priv = to_i915(cstate->base.crtc->dev);
4986 struct intel_crtc *intel_crtc = to_intel_crtc(cstate->base.crtc);
Ville Syrjäläb9d5c832015-09-24 15:53:14 -07004987
Matt Ropered4a6a72016-02-23 17:20:13 -08004988 mutex_lock(&dev_priv->wm.wm_mutex);
Matt Ropere8f1f022016-05-12 07:05:55 -07004989 intel_crtc->wm.active.ilk = cstate->wm.ilk.intermediate;
Matt Ropered4a6a72016-02-23 17:20:13 -08004990 ilk_program_watermarks(dev_priv);
4991 mutex_unlock(&dev_priv->wm.wm_mutex);
4992}
Ville Syrjäläb9d5c832015-09-24 15:53:14 -07004993
Maarten Lankhorstccf010f2016-11-08 13:55:32 +01004994static void ilk_optimize_watermarks(struct intel_atomic_state *state,
4995 struct intel_crtc_state *cstate)
Matt Ropered4a6a72016-02-23 17:20:13 -08004996{
4997 struct drm_i915_private *dev_priv = to_i915(cstate->base.crtc->dev);
4998 struct intel_crtc *intel_crtc = to_intel_crtc(cstate->base.crtc);
4999
5000 mutex_lock(&dev_priv->wm.wm_mutex);
5001 if (cstate->wm.need_postvbl_update) {
Matt Ropere8f1f022016-05-12 07:05:55 -07005002 intel_crtc->wm.active.ilk = cstate->wm.ilk.optimal;
Matt Ropered4a6a72016-02-23 17:20:13 -08005003 ilk_program_watermarks(dev_priv);
Ville Syrjäläb9d5c832015-09-24 15:53:14 -07005004 }
Matt Ropered4a6a72016-02-23 17:20:13 -08005005 mutex_unlock(&dev_priv->wm.wm_mutex);
Ville Syrjäläb9d5c832015-09-24 15:53:14 -07005006}
5007
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02005008static inline void skl_wm_level_from_reg_val(uint32_t val,
5009 struct skl_wm_level *level)
Pradeep Bhat30789992014-11-04 17:06:45 +00005010{
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02005011 level->plane_en = val & PLANE_WM_EN;
5012 level->plane_res_b = val & PLANE_WM_BLOCKS_MASK;
5013 level->plane_res_l = (val >> PLANE_WM_LINES_SHIFT) &
5014 PLANE_WM_LINES_MASK;
Pradeep Bhat30789992014-11-04 17:06:45 +00005015}
5016
cpaul@redhat.combf9d99a2016-10-14 17:31:55 -04005017void skl_pipe_wm_get_hw_state(struct drm_crtc *crtc,
5018 struct skl_pipe_wm *out)
Pradeep Bhat30789992014-11-04 17:06:45 +00005019{
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02005020 struct drm_i915_private *dev_priv = to_i915(crtc->dev);
Pradeep Bhat30789992014-11-04 17:06:45 +00005021 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Pradeep Bhat30789992014-11-04 17:06:45 +00005022 enum pipe pipe = intel_crtc->pipe;
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02005023 int level, max_level;
5024 enum plane_id plane_id;
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02005025 uint32_t val;
Pradeep Bhat30789992014-11-04 17:06:45 +00005026
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01005027 max_level = ilk_wm_max_level(dev_priv);
Pradeep Bhat30789992014-11-04 17:06:45 +00005028
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02005029 for_each_plane_id_on_crtc(intel_crtc, plane_id) {
5030 struct skl_plane_wm *wm = &out->planes[plane_id];
Pradeep Bhat30789992014-11-04 17:06:45 +00005031
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02005032 for (level = 0; level <= max_level; level++) {
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02005033 if (plane_id != PLANE_CURSOR)
5034 val = I915_READ(PLANE_WM(pipe, plane_id, level));
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02005035 else
5036 val = I915_READ(CUR_WM(pipe, level));
5037
5038 skl_wm_level_from_reg_val(val, &wm->wm[level]);
5039 }
5040
Ville Syrjäläd5cdfdf52016-11-22 18:01:58 +02005041 if (plane_id != PLANE_CURSOR)
5042 val = I915_READ(PLANE_WM_TRANS(pipe, plane_id));
cpaul@redhat.comd8c0faf2016-10-18 16:09:49 -02005043 else
5044 val = I915_READ(CUR_WM_TRANS(pipe));
5045
5046 skl_wm_level_from_reg_val(val, &wm->trans_wm);
5047 }
Pradeep Bhat30789992014-11-04 17:06:45 +00005048
Matt Roper3ef00282015-03-09 10:19:24 -07005049 if (!intel_crtc->active)
Pradeep Bhat30789992014-11-04 17:06:45 +00005050 return;
5051
cpaul@redhat.combf9d99a2016-10-14 17:31:55 -04005052 out->linetime = I915_READ(PIPE_WM_LINETIME(pipe));
Pradeep Bhat30789992014-11-04 17:06:45 +00005053}
5054
5055void skl_wm_get_hw_state(struct drm_device *dev)
5056{
Chris Wilsonfac5e232016-07-04 11:34:36 +01005057 struct drm_i915_private *dev_priv = to_i915(dev);
cpaul@redhat.combf9d99a2016-10-14 17:31:55 -04005058 struct skl_wm_values *hw = &dev_priv->wm.skl_hw;
Damien Lespiaua269c582014-11-04 17:06:49 +00005059 struct skl_ddb_allocation *ddb = &dev_priv->wm.skl_hw.ddb;
Pradeep Bhat30789992014-11-04 17:06:45 +00005060 struct drm_crtc *crtc;
cpaul@redhat.combf9d99a2016-10-14 17:31:55 -04005061 struct intel_crtc *intel_crtc;
5062 struct intel_crtc_state *cstate;
Pradeep Bhat30789992014-11-04 17:06:45 +00005063
Damien Lespiaua269c582014-11-04 17:06:49 +00005064 skl_ddb_get_hw_state(dev_priv, ddb);
cpaul@redhat.combf9d99a2016-10-14 17:31:55 -04005065 list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
5066 intel_crtc = to_intel_crtc(crtc);
5067 cstate = to_intel_crtc_state(crtc->state);
5068
5069 skl_pipe_wm_get_hw_state(crtc, &cstate->wm.skl.optimal);
5070
Maarten Lankhorst03af79e2016-10-26 15:41:36 +02005071 if (intel_crtc->active)
cpaul@redhat.combf9d99a2016-10-14 17:31:55 -04005072 hw->dirty_pipes |= drm_crtc_mask(crtc);
cpaul@redhat.combf9d99a2016-10-14 17:31:55 -04005073 }
Matt Ropera1de91e2016-05-12 07:05:57 -07005074
Matt Roper279e99d2016-05-12 07:06:02 -07005075 if (dev_priv->active_crtcs) {
5076 /* Fully recompute DDB on first atomic commit */
5077 dev_priv->wm.distrust_bios_wm = true;
5078 } else {
5079 /* Easy/common case; just sanitize DDB now if everything off */
5080 memset(ddb, 0, sizeof(*ddb));
5081 }
Pradeep Bhat30789992014-11-04 17:06:45 +00005082}
5083
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005084static void ilk_pipe_wm_get_hw_state(struct drm_crtc *crtc)
5085{
5086 struct drm_device *dev = crtc->dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +01005087 struct drm_i915_private *dev_priv = to_i915(dev);
Imre Deak820c1982013-12-17 14:46:36 +02005088 struct ilk_wm_values *hw = &dev_priv->wm.hw;
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005089 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Matt Roper4e0963c2015-09-24 15:53:15 -07005090 struct intel_crtc_state *cstate = to_intel_crtc_state(crtc->state);
Matt Ropere8f1f022016-05-12 07:05:55 -07005091 struct intel_pipe_wm *active = &cstate->wm.ilk.optimal;
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005092 enum pipe pipe = intel_crtc->pipe;
Ville Syrjäläf0f59a02015-11-18 15:33:26 +02005093 static const i915_reg_t wm0_pipe_reg[] = {
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005094 [PIPE_A] = WM0_PIPEA_ILK,
5095 [PIPE_B] = WM0_PIPEB_ILK,
5096 [PIPE_C] = WM0_PIPEC_IVB,
5097 };
5098
5099 hw->wm_pipe[pipe] = I915_READ(wm0_pipe_reg[pipe]);
Tvrtko Ursulin86527442016-10-13 11:03:00 +01005100 if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
Ville Syrjäläce0e0712013-12-05 15:51:36 +02005101 hw->wm_linetime[pipe] = I915_READ(PIPE_WM_LINETIME(pipe));
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005102
Ville Syrjälä15606532016-05-13 17:55:17 +03005103 memset(active, 0, sizeof(*active));
5104
Matt Roper3ef00282015-03-09 10:19:24 -07005105 active->pipe_enabled = intel_crtc->active;
Ville Syrjälä2a44b762014-03-07 18:32:09 +02005106
5107 if (active->pipe_enabled) {
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005108 u32 tmp = hw->wm_pipe[pipe];
5109
5110 /*
5111 * For active pipes LP0 watermark is marked as
5112 * enabled, and LP1+ watermaks as disabled since
5113 * we can't really reverse compute them in case
5114 * multiple pipes are active.
5115 */
5116 active->wm[0].enable = true;
5117 active->wm[0].pri_val = (tmp & WM0_PIPE_PLANE_MASK) >> WM0_PIPE_PLANE_SHIFT;
5118 active->wm[0].spr_val = (tmp & WM0_PIPE_SPRITE_MASK) >> WM0_PIPE_SPRITE_SHIFT;
5119 active->wm[0].cur_val = tmp & WM0_PIPE_CURSOR_MASK;
5120 active->linetime = hw->wm_linetime[pipe];
5121 } else {
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01005122 int level, max_level = ilk_wm_max_level(dev_priv);
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005123
5124 /*
5125 * For inactive pipes, all watermark levels
5126 * should be marked as enabled but zeroed,
5127 * which is what we'd compute them to.
5128 */
5129 for (level = 0; level <= max_level; level++)
5130 active->wm[level].enable = true;
5131 }
Matt Roper4e0963c2015-09-24 15:53:15 -07005132
5133 intel_crtc->wm.active.ilk = *active;
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005134}
5135
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005136#define _FW_WM(value, plane) \
5137 (((value) & DSPFW_ ## plane ## _MASK) >> DSPFW_ ## plane ## _SHIFT)
5138#define _FW_WM_VLV(value, plane) \
5139 (((value) & DSPFW_ ## plane ## _MASK_VLV) >> DSPFW_ ## plane ## _SHIFT)
5140
Ville Syrjälä04548cb2017-04-21 21:14:29 +03005141static void g4x_read_wm_values(struct drm_i915_private *dev_priv,
5142 struct g4x_wm_values *wm)
5143{
5144 uint32_t tmp;
5145
5146 tmp = I915_READ(DSPFW1);
5147 wm->sr.plane = _FW_WM(tmp, SR);
5148 wm->pipe[PIPE_B].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORB);
5149 wm->pipe[PIPE_B].plane[PLANE_PRIMARY] = _FW_WM(tmp, PLANEB);
5150 wm->pipe[PIPE_A].plane[PLANE_PRIMARY] = _FW_WM(tmp, PLANEA);
5151
5152 tmp = I915_READ(DSPFW2);
5153 wm->fbc_en = tmp & DSPFW_FBC_SR_EN;
5154 wm->sr.fbc = _FW_WM(tmp, FBC_SR);
5155 wm->hpll.fbc = _FW_WM(tmp, FBC_HPLL_SR);
5156 wm->pipe[PIPE_B].plane[PLANE_SPRITE0] = _FW_WM(tmp, SPRITEB);
5157 wm->pipe[PIPE_A].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORA);
5158 wm->pipe[PIPE_A].plane[PLANE_SPRITE0] = _FW_WM(tmp, SPRITEA);
5159
5160 tmp = I915_READ(DSPFW3);
5161 wm->hpll_en = tmp & DSPFW_HPLL_SR_EN;
5162 wm->sr.cursor = _FW_WM(tmp, CURSOR_SR);
5163 wm->hpll.cursor = _FW_WM(tmp, HPLL_CURSOR);
5164 wm->hpll.plane = _FW_WM(tmp, HPLL_SR);
5165}
5166
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005167static void vlv_read_wm_values(struct drm_i915_private *dev_priv,
5168 struct vlv_wm_values *wm)
5169{
5170 enum pipe pipe;
5171 uint32_t tmp;
5172
5173 for_each_pipe(dev_priv, pipe) {
5174 tmp = I915_READ(VLV_DDL(pipe));
5175
Ville Syrjälä1b313892016-11-28 19:37:08 +02005176 wm->ddl[pipe].plane[PLANE_PRIMARY] =
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005177 (tmp >> DDL_PLANE_SHIFT) & (DDL_PRECISION_HIGH | DRAIN_LATENCY_MASK);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005178 wm->ddl[pipe].plane[PLANE_CURSOR] =
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005179 (tmp >> DDL_CURSOR_SHIFT) & (DDL_PRECISION_HIGH | DRAIN_LATENCY_MASK);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005180 wm->ddl[pipe].plane[PLANE_SPRITE0] =
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005181 (tmp >> DDL_SPRITE_SHIFT(0)) & (DDL_PRECISION_HIGH | DRAIN_LATENCY_MASK);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005182 wm->ddl[pipe].plane[PLANE_SPRITE1] =
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005183 (tmp >> DDL_SPRITE_SHIFT(1)) & (DDL_PRECISION_HIGH | DRAIN_LATENCY_MASK);
5184 }
5185
5186 tmp = I915_READ(DSPFW1);
5187 wm->sr.plane = _FW_WM(tmp, SR);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005188 wm->pipe[PIPE_B].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORB);
5189 wm->pipe[PIPE_B].plane[PLANE_PRIMARY] = _FW_WM_VLV(tmp, PLANEB);
5190 wm->pipe[PIPE_A].plane[PLANE_PRIMARY] = _FW_WM_VLV(tmp, PLANEA);
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005191
5192 tmp = I915_READ(DSPFW2);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005193 wm->pipe[PIPE_A].plane[PLANE_SPRITE1] = _FW_WM_VLV(tmp, SPRITEB);
5194 wm->pipe[PIPE_A].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORA);
5195 wm->pipe[PIPE_A].plane[PLANE_SPRITE0] = _FW_WM_VLV(tmp, SPRITEA);
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005196
5197 tmp = I915_READ(DSPFW3);
5198 wm->sr.cursor = _FW_WM(tmp, CURSOR_SR);
5199
5200 if (IS_CHERRYVIEW(dev_priv)) {
5201 tmp = I915_READ(DSPFW7_CHV);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005202 wm->pipe[PIPE_B].plane[PLANE_SPRITE1] = _FW_WM_VLV(tmp, SPRITED);
5203 wm->pipe[PIPE_B].plane[PLANE_SPRITE0] = _FW_WM_VLV(tmp, SPRITEC);
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005204
5205 tmp = I915_READ(DSPFW8_CHV);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005206 wm->pipe[PIPE_C].plane[PLANE_SPRITE1] = _FW_WM_VLV(tmp, SPRITEF);
5207 wm->pipe[PIPE_C].plane[PLANE_SPRITE0] = _FW_WM_VLV(tmp, SPRITEE);
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005208
5209 tmp = I915_READ(DSPFW9_CHV);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005210 wm->pipe[PIPE_C].plane[PLANE_PRIMARY] = _FW_WM_VLV(tmp, PLANEC);
5211 wm->pipe[PIPE_C].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORC);
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005212
5213 tmp = I915_READ(DSPHOWM);
5214 wm->sr.plane |= _FW_WM(tmp, SR_HI) << 9;
Ville Syrjälä1b313892016-11-28 19:37:08 +02005215 wm->pipe[PIPE_C].plane[PLANE_SPRITE1] |= _FW_WM(tmp, SPRITEF_HI) << 8;
5216 wm->pipe[PIPE_C].plane[PLANE_SPRITE0] |= _FW_WM(tmp, SPRITEE_HI) << 8;
5217 wm->pipe[PIPE_C].plane[PLANE_PRIMARY] |= _FW_WM(tmp, PLANEC_HI) << 8;
5218 wm->pipe[PIPE_B].plane[PLANE_SPRITE1] |= _FW_WM(tmp, SPRITED_HI) << 8;
5219 wm->pipe[PIPE_B].plane[PLANE_SPRITE0] |= _FW_WM(tmp, SPRITEC_HI) << 8;
5220 wm->pipe[PIPE_B].plane[PLANE_PRIMARY] |= _FW_WM(tmp, PLANEB_HI) << 8;
5221 wm->pipe[PIPE_A].plane[PLANE_SPRITE1] |= _FW_WM(tmp, SPRITEB_HI) << 8;
5222 wm->pipe[PIPE_A].plane[PLANE_SPRITE0] |= _FW_WM(tmp, SPRITEA_HI) << 8;
5223 wm->pipe[PIPE_A].plane[PLANE_PRIMARY] |= _FW_WM(tmp, PLANEA_HI) << 8;
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005224 } else {
5225 tmp = I915_READ(DSPFW7);
Ville Syrjälä1b313892016-11-28 19:37:08 +02005226 wm->pipe[PIPE_B].plane[PLANE_SPRITE1] = _FW_WM_VLV(tmp, SPRITED);
5227 wm->pipe[PIPE_B].plane[PLANE_SPRITE0] = _FW_WM_VLV(tmp, SPRITEC);
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005228
5229 tmp = I915_READ(DSPHOWM);
5230 wm->sr.plane |= _FW_WM(tmp, SR_HI) << 9;
Ville Syrjälä1b313892016-11-28 19:37:08 +02005231 wm->pipe[PIPE_B].plane[PLANE_SPRITE1] |= _FW_WM(tmp, SPRITED_HI) << 8;
5232 wm->pipe[PIPE_B].plane[PLANE_SPRITE0] |= _FW_WM(tmp, SPRITEC_HI) << 8;
5233 wm->pipe[PIPE_B].plane[PLANE_PRIMARY] |= _FW_WM(tmp, PLANEB_HI) << 8;
5234 wm->pipe[PIPE_A].plane[PLANE_SPRITE1] |= _FW_WM(tmp, SPRITEB_HI) << 8;
5235 wm->pipe[PIPE_A].plane[PLANE_SPRITE0] |= _FW_WM(tmp, SPRITEA_HI) << 8;
5236 wm->pipe[PIPE_A].plane[PLANE_PRIMARY] |= _FW_WM(tmp, PLANEA_HI) << 8;
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005237 }
5238}
5239
5240#undef _FW_WM
5241#undef _FW_WM_VLV
5242
Ville Syrjälä04548cb2017-04-21 21:14:29 +03005243void g4x_wm_get_hw_state(struct drm_device *dev)
5244{
5245 struct drm_i915_private *dev_priv = to_i915(dev);
5246 struct g4x_wm_values *wm = &dev_priv->wm.g4x;
5247 struct intel_crtc *crtc;
5248
5249 g4x_read_wm_values(dev_priv, wm);
5250
5251 wm->cxsr = I915_READ(FW_BLC_SELF) & FW_BLC_SELF_EN;
5252
5253 for_each_intel_crtc(dev, crtc) {
5254 struct intel_crtc_state *crtc_state =
5255 to_intel_crtc_state(crtc->base.state);
5256 struct g4x_wm_state *active = &crtc->wm.active.g4x;
5257 struct g4x_pipe_wm *raw;
5258 enum pipe pipe = crtc->pipe;
5259 enum plane_id plane_id;
5260 int level, max_level;
5261
5262 active->cxsr = wm->cxsr;
5263 active->hpll_en = wm->hpll_en;
5264 active->fbc_en = wm->fbc_en;
5265
5266 active->sr = wm->sr;
5267 active->hpll = wm->hpll;
5268
5269 for_each_plane_id_on_crtc(crtc, plane_id) {
5270 active->wm.plane[plane_id] =
5271 wm->pipe[pipe].plane[plane_id];
5272 }
5273
5274 if (wm->cxsr && wm->hpll_en)
5275 max_level = G4X_WM_LEVEL_HPLL;
5276 else if (wm->cxsr)
5277 max_level = G4X_WM_LEVEL_SR;
5278 else
5279 max_level = G4X_WM_LEVEL_NORMAL;
5280
5281 level = G4X_WM_LEVEL_NORMAL;
5282 raw = &crtc_state->wm.g4x.raw[level];
5283 for_each_plane_id_on_crtc(crtc, plane_id)
5284 raw->plane[plane_id] = active->wm.plane[plane_id];
5285
5286 if (++level > max_level)
5287 goto out;
5288
5289 raw = &crtc_state->wm.g4x.raw[level];
5290 raw->plane[PLANE_PRIMARY] = active->sr.plane;
5291 raw->plane[PLANE_CURSOR] = active->sr.cursor;
5292 raw->plane[PLANE_SPRITE0] = 0;
5293 raw->fbc = active->sr.fbc;
5294
5295 if (++level > max_level)
5296 goto out;
5297
5298 raw = &crtc_state->wm.g4x.raw[level];
5299 raw->plane[PLANE_PRIMARY] = active->hpll.plane;
5300 raw->plane[PLANE_CURSOR] = active->hpll.cursor;
5301 raw->plane[PLANE_SPRITE0] = 0;
5302 raw->fbc = active->hpll.fbc;
5303
5304 out:
5305 for_each_plane_id_on_crtc(crtc, plane_id)
5306 g4x_raw_plane_wm_set(crtc_state, level,
5307 plane_id, USHRT_MAX);
5308 g4x_raw_fbc_wm_set(crtc_state, level, USHRT_MAX);
5309
5310 crtc_state->wm.g4x.optimal = *active;
5311 crtc_state->wm.g4x.intermediate = *active;
5312
5313 DRM_DEBUG_KMS("Initial watermarks: pipe %c, plane=%d, cursor=%d, sprite=%d\n",
5314 pipe_name(pipe),
5315 wm->pipe[pipe].plane[PLANE_PRIMARY],
5316 wm->pipe[pipe].plane[PLANE_CURSOR],
5317 wm->pipe[pipe].plane[PLANE_SPRITE0]);
5318 }
5319
5320 DRM_DEBUG_KMS("Initial SR watermarks: plane=%d, cursor=%d fbc=%d\n",
5321 wm->sr.plane, wm->sr.cursor, wm->sr.fbc);
5322 DRM_DEBUG_KMS("Initial HPLL watermarks: plane=%d, SR cursor=%d fbc=%d\n",
5323 wm->hpll.plane, wm->hpll.cursor, wm->hpll.fbc);
5324 DRM_DEBUG_KMS("Initial SR=%s HPLL=%s FBC=%s\n",
5325 yesno(wm->cxsr), yesno(wm->hpll_en), yesno(wm->fbc_en));
5326}
5327
5328void g4x_wm_sanitize(struct drm_i915_private *dev_priv)
5329{
5330 struct intel_plane *plane;
5331 struct intel_crtc *crtc;
5332
5333 mutex_lock(&dev_priv->wm.wm_mutex);
5334
5335 for_each_intel_plane(&dev_priv->drm, plane) {
5336 struct intel_crtc *crtc =
5337 intel_get_crtc_for_pipe(dev_priv, plane->pipe);
5338 struct intel_crtc_state *crtc_state =
5339 to_intel_crtc_state(crtc->base.state);
5340 struct intel_plane_state *plane_state =
5341 to_intel_plane_state(plane->base.state);
5342 struct g4x_wm_state *wm_state = &crtc_state->wm.g4x.optimal;
5343 enum plane_id plane_id = plane->id;
5344 int level;
5345
5346 if (plane_state->base.visible)
5347 continue;
5348
5349 for (level = 0; level < 3; level++) {
5350 struct g4x_pipe_wm *raw =
5351 &crtc_state->wm.g4x.raw[level];
5352
5353 raw->plane[plane_id] = 0;
5354 wm_state->wm.plane[plane_id] = 0;
5355 }
5356
5357 if (plane_id == PLANE_PRIMARY) {
5358 for (level = 0; level < 3; level++) {
5359 struct g4x_pipe_wm *raw =
5360 &crtc_state->wm.g4x.raw[level];
5361 raw->fbc = 0;
5362 }
5363
5364 wm_state->sr.fbc = 0;
5365 wm_state->hpll.fbc = 0;
5366 wm_state->fbc_en = false;
5367 }
5368 }
5369
5370 for_each_intel_crtc(&dev_priv->drm, crtc) {
5371 struct intel_crtc_state *crtc_state =
5372 to_intel_crtc_state(crtc->base.state);
5373
5374 crtc_state->wm.g4x.intermediate =
5375 crtc_state->wm.g4x.optimal;
5376 crtc->wm.active.g4x = crtc_state->wm.g4x.optimal;
5377 }
5378
5379 g4x_program_watermarks(dev_priv);
5380
5381 mutex_unlock(&dev_priv->wm.wm_mutex);
5382}
5383
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005384void vlv_wm_get_hw_state(struct drm_device *dev)
5385{
5386 struct drm_i915_private *dev_priv = to_i915(dev);
5387 struct vlv_wm_values *wm = &dev_priv->wm.vlv;
Ville Syrjäläf07d43d2017-03-02 19:14:52 +02005388 struct intel_crtc *crtc;
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005389 u32 val;
5390
5391 vlv_read_wm_values(dev_priv, wm);
5392
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005393 wm->cxsr = I915_READ(FW_BLC_SELF_VLV) & FW_CSPWRDWNEN;
5394 wm->level = VLV_WM_LEVEL_PM2;
5395
5396 if (IS_CHERRYVIEW(dev_priv)) {
5397 mutex_lock(&dev_priv->rps.hw_lock);
5398
5399 val = vlv_punit_read(dev_priv, PUNIT_REG_DSPFREQ);
5400 if (val & DSP_MAXFIFO_PM5_ENABLE)
5401 wm->level = VLV_WM_LEVEL_PM5;
5402
Ville Syrjälä58590c12015-09-08 21:05:12 +03005403 /*
5404 * If DDR DVFS is disabled in the BIOS, Punit
5405 * will never ack the request. So if that happens
5406 * assume we don't have to enable/disable DDR DVFS
5407 * dynamically. To test that just set the REQ_ACK
5408 * bit to poke the Punit, but don't change the
5409 * HIGH/LOW bits so that we don't actually change
5410 * the current state.
5411 */
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005412 val = vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2);
Ville Syrjälä58590c12015-09-08 21:05:12 +03005413 val |= FORCE_DDR_FREQ_REQ_ACK;
5414 vlv_punit_write(dev_priv, PUNIT_REG_DDR_SETUP2, val);
5415
5416 if (wait_for((vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2) &
5417 FORCE_DDR_FREQ_REQ_ACK) == 0, 3)) {
5418 DRM_DEBUG_KMS("Punit not acking DDR DVFS request, "
5419 "assuming DDR DVFS is disabled\n");
5420 dev_priv->wm.max_level = VLV_WM_LEVEL_PM5;
5421 } else {
5422 val = vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2);
5423 if ((val & FORCE_DDR_HIGH_FREQ) == 0)
5424 wm->level = VLV_WM_LEVEL_DDR_DVFS;
5425 }
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005426
5427 mutex_unlock(&dev_priv->rps.hw_lock);
5428 }
5429
Ville Syrjäläff32c542017-03-02 19:14:57 +02005430 for_each_intel_crtc(dev, crtc) {
5431 struct intel_crtc_state *crtc_state =
5432 to_intel_crtc_state(crtc->base.state);
5433 struct vlv_wm_state *active = &crtc->wm.active.vlv;
5434 const struct vlv_fifo_state *fifo_state =
5435 &crtc_state->wm.vlv.fifo_state;
5436 enum pipe pipe = crtc->pipe;
5437 enum plane_id plane_id;
5438 int level;
5439
5440 vlv_get_fifo_size(crtc_state);
5441
5442 active->num_levels = wm->level + 1;
5443 active->cxsr = wm->cxsr;
5444
Ville Syrjäläff32c542017-03-02 19:14:57 +02005445 for (level = 0; level < active->num_levels; level++) {
Ville Syrjälä114d7dc2017-04-21 21:14:21 +03005446 struct g4x_pipe_wm *raw =
Ville Syrjäläff32c542017-03-02 19:14:57 +02005447 &crtc_state->wm.vlv.raw[level];
5448
5449 active->sr[level].plane = wm->sr.plane;
5450 active->sr[level].cursor = wm->sr.cursor;
5451
5452 for_each_plane_id_on_crtc(crtc, plane_id) {
5453 active->wm[level].plane[plane_id] =
5454 wm->pipe[pipe].plane[plane_id];
5455
5456 raw->plane[plane_id] =
5457 vlv_invert_wm_value(active->wm[level].plane[plane_id],
5458 fifo_state->plane[plane_id]);
5459 }
5460 }
5461
5462 for_each_plane_id_on_crtc(crtc, plane_id)
5463 vlv_raw_plane_wm_set(crtc_state, level,
5464 plane_id, USHRT_MAX);
5465 vlv_invalidate_wms(crtc, active, level);
5466
5467 crtc_state->wm.vlv.optimal = *active;
Ville Syrjälä4841da52017-03-02 19:14:59 +02005468 crtc_state->wm.vlv.intermediate = *active;
Ville Syrjäläff32c542017-03-02 19:14:57 +02005469
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005470 DRM_DEBUG_KMS("Initial watermarks: pipe %c, plane=%d, cursor=%d, sprite0=%d, sprite1=%d\n",
Ville Syrjälä1b313892016-11-28 19:37:08 +02005471 pipe_name(pipe),
5472 wm->pipe[pipe].plane[PLANE_PRIMARY],
5473 wm->pipe[pipe].plane[PLANE_CURSOR],
5474 wm->pipe[pipe].plane[PLANE_SPRITE0],
5475 wm->pipe[pipe].plane[PLANE_SPRITE1]);
Ville Syrjäläff32c542017-03-02 19:14:57 +02005476 }
Ville Syrjälä6eb1a682015-06-24 22:00:03 +03005477
5478 DRM_DEBUG_KMS("Initial watermarks: SR plane=%d, SR cursor=%d level=%d cxsr=%d\n",
5479 wm->sr.plane, wm->sr.cursor, wm->level, wm->cxsr);
5480}
5481
Ville Syrjälä602ae832017-03-02 19:15:02 +02005482void vlv_wm_sanitize(struct drm_i915_private *dev_priv)
5483{
5484 struct intel_plane *plane;
5485 struct intel_crtc *crtc;
5486
5487 mutex_lock(&dev_priv->wm.wm_mutex);
5488
5489 for_each_intel_plane(&dev_priv->drm, plane) {
5490 struct intel_crtc *crtc =
5491 intel_get_crtc_for_pipe(dev_priv, plane->pipe);
5492 struct intel_crtc_state *crtc_state =
5493 to_intel_crtc_state(crtc->base.state);
5494 struct intel_plane_state *plane_state =
5495 to_intel_plane_state(plane->base.state);
5496 struct vlv_wm_state *wm_state = &crtc_state->wm.vlv.optimal;
5497 const struct vlv_fifo_state *fifo_state =
5498 &crtc_state->wm.vlv.fifo_state;
5499 enum plane_id plane_id = plane->id;
5500 int level;
5501
5502 if (plane_state->base.visible)
5503 continue;
5504
5505 for (level = 0; level < wm_state->num_levels; level++) {
Ville Syrjälä114d7dc2017-04-21 21:14:21 +03005506 struct g4x_pipe_wm *raw =
Ville Syrjälä602ae832017-03-02 19:15:02 +02005507 &crtc_state->wm.vlv.raw[level];
5508
5509 raw->plane[plane_id] = 0;
5510
5511 wm_state->wm[level].plane[plane_id] =
5512 vlv_invert_wm_value(raw->plane[plane_id],
5513 fifo_state->plane[plane_id]);
5514 }
5515 }
5516
5517 for_each_intel_crtc(&dev_priv->drm, crtc) {
5518 struct intel_crtc_state *crtc_state =
5519 to_intel_crtc_state(crtc->base.state);
5520
5521 crtc_state->wm.vlv.intermediate =
5522 crtc_state->wm.vlv.optimal;
5523 crtc->wm.active.vlv = crtc_state->wm.vlv.optimal;
5524 }
5525
5526 vlv_program_watermarks(dev_priv);
5527
5528 mutex_unlock(&dev_priv->wm.wm_mutex);
5529}
5530
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005531void ilk_wm_get_hw_state(struct drm_device *dev)
5532{
Chris Wilsonfac5e232016-07-04 11:34:36 +01005533 struct drm_i915_private *dev_priv = to_i915(dev);
Imre Deak820c1982013-12-17 14:46:36 +02005534 struct ilk_wm_values *hw = &dev_priv->wm.hw;
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005535 struct drm_crtc *crtc;
5536
Damien Lespiau70e1e0e2014-05-13 23:32:24 +01005537 for_each_crtc(dev, crtc)
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005538 ilk_pipe_wm_get_hw_state(crtc);
5539
5540 hw->wm_lp[0] = I915_READ(WM1_LP_ILK);
5541 hw->wm_lp[1] = I915_READ(WM2_LP_ILK);
5542 hw->wm_lp[2] = I915_READ(WM3_LP_ILK);
5543
5544 hw->wm_lp_spr[0] = I915_READ(WM1S_LP_ILK);
Tvrtko Ursulin175fded2016-11-16 08:55:42 +00005545 if (INTEL_GEN(dev_priv) >= 7) {
Ville Syrjäläcfa76982014-03-07 18:32:08 +02005546 hw->wm_lp_spr[1] = I915_READ(WM2S_LP_IVB);
5547 hw->wm_lp_spr[2] = I915_READ(WM3S_LP_IVB);
5548 }
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005549
Tvrtko Ursulin86527442016-10-13 11:03:00 +01005550 if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
Ville Syrjäläac9545f2013-12-05 15:51:28 +02005551 hw->partitioning = (I915_READ(WM_MISC) & WM_MISC_DATA_PARTITION_5_6) ?
5552 INTEL_DDB_PART_5_6 : INTEL_DDB_PART_1_2;
Tvrtko Ursulinfd6b8f42016-10-14 10:13:06 +01005553 else if (IS_IVYBRIDGE(dev_priv))
Ville Syrjäläac9545f2013-12-05 15:51:28 +02005554 hw->partitioning = (I915_READ(DISP_ARB_CTL2) & DISP_DATA_PARTITION_5_6) ?
5555 INTEL_DDB_PART_5_6 : INTEL_DDB_PART_1_2;
Ville Syrjälä243e6a42013-10-14 14:55:24 +03005556
5557 hw->enable_fbc_wm =
5558 !(I915_READ(DISP_ARB_CTL) & DISP_FBC_WM_DIS);
5559}
5560
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03005561/**
5562 * intel_update_watermarks - update FIFO watermark values based on current modes
5563 *
5564 * Calculate watermark values for the various WM regs based on current mode
5565 * and plane configuration.
5566 *
5567 * There are several cases to deal with here:
5568 * - normal (i.e. non-self-refresh)
5569 * - self-refresh (SR) mode
5570 * - lines are large relative to FIFO size (buffer can hold up to 2)
5571 * - lines are small relative to FIFO size (buffer can hold more than 2
5572 * lines), so need to account for TLB latency
5573 *
5574 * The normal calculation is:
5575 * watermark = dotclock * bytes per pixel * latency
5576 * where latency is platform & configuration dependent (we assume pessimal
5577 * values here).
5578 *
5579 * The SR calculation is:
5580 * watermark = (trunc(latency/line time)+1) * surface width *
5581 * bytes per pixel
5582 * where
5583 * line time = htotal / dotclock
5584 * surface width = hdisplay for normal plane and 64 for cursor
5585 * and latency is assumed to be high, as above.
5586 *
5587 * The final value programmed to the register should always be rounded up,
5588 * and include an extra 2 entries to account for clock crossings.
5589 *
5590 * We don't use the sprite, so we can ignore that. And on Crestline we have
5591 * to set the non-SR watermarks to 8.
5592 */
Ville Syrjälä432081b2016-10-31 22:37:03 +02005593void intel_update_watermarks(struct intel_crtc *crtc)
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03005594{
Ville Syrjälä432081b2016-10-31 22:37:03 +02005595 struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03005596
5597 if (dev_priv->display.update_wm)
Ville Syrjälä46ba6142013-09-10 11:40:40 +03005598 dev_priv->display.update_wm(crtc);
Eugeni Dodonovb445e3b2012-04-16 22:20:35 -03005599}
5600
Jani Nikulae2828912016-01-18 09:19:47 +02005601/*
Daniel Vetter92703882012-08-09 16:46:01 +02005602 * Lock protecting IPS related data structures
Daniel Vetter92703882012-08-09 16:46:01 +02005603 */
5604DEFINE_SPINLOCK(mchdev_lock);
5605
5606/* Global for IPS driver to get at the current i915 device. Protected by
5607 * mchdev_lock. */
5608static struct drm_i915_private *i915_mch_dev;
5609
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01005610bool ironlake_set_drps(struct drm_i915_private *dev_priv, u8 val)
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005611{
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005612 u16 rgvswctl;
5613
Chris Wilson67520412017-03-02 13:28:01 +00005614 lockdep_assert_held(&mchdev_lock);
Daniel Vetter92703882012-08-09 16:46:01 +02005615
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005616 rgvswctl = I915_READ16(MEMSWCTL);
5617 if (rgvswctl & MEMCTL_CMD_STS) {
5618 DRM_DEBUG("gpu busy, RCS change rejected\n");
5619 return false; /* still busy with another command */
5620 }
5621
5622 rgvswctl = (MEMCTL_CMD_CHFREQ << MEMCTL_CMD_SHIFT) |
5623 (val << MEMCTL_FREQ_SHIFT) | MEMCTL_SFCAVM;
5624 I915_WRITE16(MEMSWCTL, rgvswctl);
5625 POSTING_READ16(MEMSWCTL);
5626
5627 rgvswctl |= MEMCTL_CMD_STS;
5628 I915_WRITE16(MEMSWCTL, rgvswctl);
5629
5630 return true;
5631}
5632
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01005633static void ironlake_enable_drps(struct drm_i915_private *dev_priv)
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005634{
Tvrtko Ursulin84f1b202016-02-11 10:27:32 +00005635 u32 rgvmodectl;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005636 u8 fmax, fmin, fstart, vstart;
5637
Daniel Vetter92703882012-08-09 16:46:01 +02005638 spin_lock_irq(&mchdev_lock);
5639
Tvrtko Ursulin84f1b202016-02-11 10:27:32 +00005640 rgvmodectl = I915_READ(MEMMODECTL);
5641
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005642 /* Enable temp reporting */
5643 I915_WRITE16(PMMISC, I915_READ(PMMISC) | MCPPCE_EN);
5644 I915_WRITE16(TSC1, I915_READ(TSC1) | TSE);
5645
5646 /* 100ms RC evaluation intervals */
5647 I915_WRITE(RCUPEI, 100000);
5648 I915_WRITE(RCDNEI, 100000);
5649
5650 /* Set max/min thresholds to 90ms and 80ms respectively */
5651 I915_WRITE(RCBMAXAVG, 90000);
5652 I915_WRITE(RCBMINAVG, 80000);
5653
5654 I915_WRITE(MEMIHYST, 1);
5655
5656 /* Set up min, max, and cur for interrupt handling */
5657 fmax = (rgvmodectl & MEMMODE_FMAX_MASK) >> MEMMODE_FMAX_SHIFT;
5658 fmin = (rgvmodectl & MEMMODE_FMIN_MASK);
5659 fstart = (rgvmodectl & MEMMODE_FSTART_MASK) >>
5660 MEMMODE_FSTART_SHIFT;
5661
Ville Syrjälä616847e2015-09-18 20:03:19 +03005662 vstart = (I915_READ(PXVFREQ(fstart)) & PXVFREQ_PX_MASK) >>
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005663 PXVFREQ_PX_SHIFT;
5664
Daniel Vetter20e4d402012-08-08 23:35:39 +02005665 dev_priv->ips.fmax = fmax; /* IPS callback will increase this */
5666 dev_priv->ips.fstart = fstart;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005667
Daniel Vetter20e4d402012-08-08 23:35:39 +02005668 dev_priv->ips.max_delay = fstart;
5669 dev_priv->ips.min_delay = fmin;
5670 dev_priv->ips.cur_delay = fstart;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005671
5672 DRM_DEBUG_DRIVER("fmax: %d, fmin: %d, fstart: %d\n",
5673 fmax, fmin, fstart);
5674
5675 I915_WRITE(MEMINTREN, MEMINT_CX_SUPR_EN | MEMINT_EVAL_CHG_EN);
5676
5677 /*
5678 * Interrupts will be enabled in ironlake_irq_postinstall
5679 */
5680
5681 I915_WRITE(VIDSTART, vstart);
5682 POSTING_READ(VIDSTART);
5683
5684 rgvmodectl |= MEMMODE_SWMODE_EN;
5685 I915_WRITE(MEMMODECTL, rgvmodectl);
5686
Daniel Vetter92703882012-08-09 16:46:01 +02005687 if (wait_for_atomic((I915_READ(MEMSWCTL) & MEMCTL_CMD_STS) == 0, 10))
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005688 DRM_ERROR("stuck trying to change perf mode\n");
Daniel Vetterdd92d8d2015-07-20 10:58:21 +02005689 mdelay(1);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005690
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01005691 ironlake_set_drps(dev_priv, fstart);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005692
Ville Syrjälä7d81c3e2015-09-18 20:03:20 +03005693 dev_priv->ips.last_count1 = I915_READ(DMIEC) +
5694 I915_READ(DDREC) + I915_READ(CSIEC);
Daniel Vetter20e4d402012-08-08 23:35:39 +02005695 dev_priv->ips.last_time1 = jiffies_to_msecs(jiffies);
Ville Syrjälä7d81c3e2015-09-18 20:03:20 +03005696 dev_priv->ips.last_count2 = I915_READ(GFXEC);
Thomas Gleixner5ed0bdf2014-07-16 21:05:06 +00005697 dev_priv->ips.last_time2 = ktime_get_raw_ns();
Daniel Vetter92703882012-08-09 16:46:01 +02005698
5699 spin_unlock_irq(&mchdev_lock);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005700}
5701
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01005702static void ironlake_disable_drps(struct drm_i915_private *dev_priv)
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005703{
Daniel Vetter92703882012-08-09 16:46:01 +02005704 u16 rgvswctl;
5705
5706 spin_lock_irq(&mchdev_lock);
5707
5708 rgvswctl = I915_READ16(MEMSWCTL);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005709
5710 /* Ack interrupts, disable EFC interrupt */
5711 I915_WRITE(MEMINTREN, I915_READ(MEMINTREN) & ~MEMINT_EVAL_CHG_EN);
5712 I915_WRITE(MEMINTRSTS, MEMINT_EVAL_CHG);
5713 I915_WRITE(DEIER, I915_READ(DEIER) & ~DE_PCU_EVENT);
5714 I915_WRITE(DEIIR, DE_PCU_EVENT);
5715 I915_WRITE(DEIMR, I915_READ(DEIMR) | DE_PCU_EVENT);
5716
5717 /* Go back to the starting frequency */
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01005718 ironlake_set_drps(dev_priv, dev_priv->ips.fstart);
Daniel Vetterdd92d8d2015-07-20 10:58:21 +02005719 mdelay(1);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005720 rgvswctl |= MEMCTL_CMD_STS;
5721 I915_WRITE(MEMSWCTL, rgvswctl);
Daniel Vetterdd92d8d2015-07-20 10:58:21 +02005722 mdelay(1);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005723
Daniel Vetter92703882012-08-09 16:46:01 +02005724 spin_unlock_irq(&mchdev_lock);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005725}
5726
Daniel Vetteracbe9472012-07-26 11:50:05 +02005727/* There's a funny hw issue where the hw returns all 0 when reading from
5728 * GEN6_RP_INTERRUPT_LIMITS. Hence we always need to compute the desired value
5729 * ourselves, instead of doing a rmw cycle (which might result in us clearing
5730 * all limits and the gpu stuck at whatever frequency it is at atm).
5731 */
Akash Goel74ef1172015-03-06 11:07:19 +05305732static u32 intel_rps_limits(struct drm_i915_private *dev_priv, u8 val)
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005733{
Chris Wilson7b9e0ae2012-04-28 08:56:39 +01005734 u32 limits;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005735
Daniel Vetter20b46e52012-07-26 11:16:14 +02005736 /* Only set the down limit when we've reached the lowest level to avoid
5737 * getting more interrupts, otherwise leave this clear. This prevents a
5738 * race in the hw when coming out of rc6: There's a tiny window where
5739 * the hw runs at the minimal clock before selecting the desired
5740 * frequency, if the down threshold expires in that window we will not
5741 * receive a down interrupt. */
Joonas Lahtinen2d1fe072016-04-07 11:08:05 +03005742 if (IS_GEN9(dev_priv)) {
Akash Goel74ef1172015-03-06 11:07:19 +05305743 limits = (dev_priv->rps.max_freq_softlimit) << 23;
5744 if (val <= dev_priv->rps.min_freq_softlimit)
5745 limits |= (dev_priv->rps.min_freq_softlimit) << 14;
5746 } else {
5747 limits = dev_priv->rps.max_freq_softlimit << 24;
5748 if (val <= dev_priv->rps.min_freq_softlimit)
5749 limits |= dev_priv->rps.min_freq_softlimit << 16;
5750 }
Daniel Vetter20b46e52012-07-26 11:16:14 +02005751
5752 return limits;
5753}
5754
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005755static void gen6_set_rps_thresholds(struct drm_i915_private *dev_priv, u8 val)
5756{
5757 int new_power;
Akash Goel8a586432015-03-06 11:07:18 +05305758 u32 threshold_up = 0, threshold_down = 0; /* in % */
5759 u32 ei_up = 0, ei_down = 0;
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005760
5761 new_power = dev_priv->rps.power;
5762 switch (dev_priv->rps.power) {
5763 case LOW_POWER:
Chris Wilsona72b5622016-07-02 15:35:59 +01005764 if (val > dev_priv->rps.efficient_freq + 1 &&
5765 val > dev_priv->rps.cur_freq)
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005766 new_power = BETWEEN;
5767 break;
5768
5769 case BETWEEN:
Chris Wilsona72b5622016-07-02 15:35:59 +01005770 if (val <= dev_priv->rps.efficient_freq &&
5771 val < dev_priv->rps.cur_freq)
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005772 new_power = LOW_POWER;
Chris Wilsona72b5622016-07-02 15:35:59 +01005773 else if (val >= dev_priv->rps.rp0_freq &&
5774 val > dev_priv->rps.cur_freq)
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005775 new_power = HIGH_POWER;
5776 break;
5777
5778 case HIGH_POWER:
Chris Wilsona72b5622016-07-02 15:35:59 +01005779 if (val < (dev_priv->rps.rp1_freq + dev_priv->rps.rp0_freq) >> 1 &&
5780 val < dev_priv->rps.cur_freq)
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005781 new_power = BETWEEN;
5782 break;
5783 }
5784 /* Max/min bins are special */
Chris Wilsonaed242f2015-03-18 09:48:21 +00005785 if (val <= dev_priv->rps.min_freq_softlimit)
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005786 new_power = LOW_POWER;
Chris Wilsonaed242f2015-03-18 09:48:21 +00005787 if (val >= dev_priv->rps.max_freq_softlimit)
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005788 new_power = HIGH_POWER;
5789 if (new_power == dev_priv->rps.power)
5790 return;
5791
5792 /* Note the units here are not exactly 1us, but 1280ns. */
5793 switch (new_power) {
5794 case LOW_POWER:
5795 /* Upclock if more than 95% busy over 16ms */
Akash Goel8a586432015-03-06 11:07:18 +05305796 ei_up = 16000;
5797 threshold_up = 95;
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005798
5799 /* Downclock if less than 85% busy over 32ms */
Akash Goel8a586432015-03-06 11:07:18 +05305800 ei_down = 32000;
5801 threshold_down = 85;
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005802 break;
5803
5804 case BETWEEN:
5805 /* Upclock if more than 90% busy over 13ms */
Akash Goel8a586432015-03-06 11:07:18 +05305806 ei_up = 13000;
5807 threshold_up = 90;
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005808
5809 /* Downclock if less than 75% busy over 32ms */
Akash Goel8a586432015-03-06 11:07:18 +05305810 ei_down = 32000;
5811 threshold_down = 75;
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005812 break;
5813
5814 case HIGH_POWER:
5815 /* Upclock if more than 85% busy over 10ms */
Akash Goel8a586432015-03-06 11:07:18 +05305816 ei_up = 10000;
5817 threshold_up = 85;
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005818
5819 /* Downclock if less than 60% busy over 32ms */
Akash Goel8a586432015-03-06 11:07:18 +05305820 ei_down = 32000;
5821 threshold_down = 60;
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005822 break;
5823 }
5824
Mika Kuoppala6067a272017-02-15 15:52:59 +02005825 /* When byt can survive without system hang with dynamic
5826 * sw freq adjustments, this restriction can be lifted.
5827 */
5828 if (IS_VALLEYVIEW(dev_priv))
5829 goto skip_hw_write;
5830
Akash Goel8a586432015-03-06 11:07:18 +05305831 I915_WRITE(GEN6_RP_UP_EI,
Chris Wilsona72b5622016-07-02 15:35:59 +01005832 GT_INTERVAL_FROM_US(dev_priv, ei_up));
Akash Goel8a586432015-03-06 11:07:18 +05305833 I915_WRITE(GEN6_RP_UP_THRESHOLD,
Chris Wilsona72b5622016-07-02 15:35:59 +01005834 GT_INTERVAL_FROM_US(dev_priv,
5835 ei_up * threshold_up / 100));
Akash Goel8a586432015-03-06 11:07:18 +05305836
5837 I915_WRITE(GEN6_RP_DOWN_EI,
Chris Wilsona72b5622016-07-02 15:35:59 +01005838 GT_INTERVAL_FROM_US(dev_priv, ei_down));
Akash Goel8a586432015-03-06 11:07:18 +05305839 I915_WRITE(GEN6_RP_DOWN_THRESHOLD,
Chris Wilsona72b5622016-07-02 15:35:59 +01005840 GT_INTERVAL_FROM_US(dev_priv,
5841 ei_down * threshold_down / 100));
Akash Goel8a586432015-03-06 11:07:18 +05305842
Chris Wilsona72b5622016-07-02 15:35:59 +01005843 I915_WRITE(GEN6_RP_CONTROL,
5844 GEN6_RP_MEDIA_TURBO |
5845 GEN6_RP_MEDIA_HW_NORMAL_MODE |
5846 GEN6_RP_MEDIA_IS_GFX |
5847 GEN6_RP_ENABLE |
5848 GEN6_RP_UP_BUSY_AVG |
5849 GEN6_RP_DOWN_IDLE_AVG);
Akash Goel8a586432015-03-06 11:07:18 +05305850
Mika Kuoppala6067a272017-02-15 15:52:59 +02005851skip_hw_write:
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005852 dev_priv->rps.power = new_power;
Chris Wilson8fb55192015-04-07 16:20:28 +01005853 dev_priv->rps.up_threshold = threshold_up;
5854 dev_priv->rps.down_threshold = threshold_down;
Chris Wilsondd75fdc2013-09-25 17:34:57 +01005855 dev_priv->rps.last_adj = 0;
5856}
5857
Chris Wilson2876ce72014-03-28 08:03:34 +00005858static u32 gen6_rps_pm_mask(struct drm_i915_private *dev_priv, u8 val)
5859{
5860 u32 mask = 0;
5861
Chris Wilsone0e8c7c2017-03-09 21:12:30 +00005862 /* We use UP_EI_EXPIRED interupts for both up/down in manual mode */
Chris Wilson2876ce72014-03-28 08:03:34 +00005863 if (val > dev_priv->rps.min_freq_softlimit)
Chris Wilsone0e8c7c2017-03-09 21:12:30 +00005864 mask |= GEN6_PM_RP_UP_EI_EXPIRED | GEN6_PM_RP_DOWN_THRESHOLD | GEN6_PM_RP_DOWN_TIMEOUT;
Chris Wilson2876ce72014-03-28 08:03:34 +00005865 if (val < dev_priv->rps.max_freq_softlimit)
Chris Wilson6f4b12f82015-03-18 09:48:23 +00005866 mask |= GEN6_PM_RP_UP_EI_EXPIRED | GEN6_PM_RP_UP_THRESHOLD;
Chris Wilson2876ce72014-03-28 08:03:34 +00005867
Chris Wilson7b3c29f2014-07-10 20:31:19 +01005868 mask &= dev_priv->pm_rps_events;
5869
Imre Deak59d02a12014-12-19 19:33:26 +02005870 return gen6_sanitize_rps_pm_mask(dev_priv, ~mask);
Chris Wilson2876ce72014-03-28 08:03:34 +00005871}
5872
Jeff McGeeb8a5ff82014-02-04 11:37:01 -06005873/* gen6_set_rps is called to update the frequency request, but should also be
5874 * called when the range (min_delay and max_delay) is modified so that we can
5875 * update the GEN6_RP_INTERRUPT_LIMITS register accordingly. */
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005876static int gen6_set_rps(struct drm_i915_private *dev_priv, u8 val)
Daniel Vetter20b46e52012-07-26 11:16:14 +02005877{
Chris Wilsoneb64cad2014-03-27 08:24:20 +00005878 /* min/max delay may still have been modified so be sure to
5879 * write the limits value.
5880 */
5881 if (val != dev_priv->rps.cur_freq) {
5882 gen6_set_rps_thresholds(dev_priv, val);
Jeff McGeeb8a5ff82014-02-04 11:37:01 -06005883
Chris Wilsondc979972016-05-10 14:10:04 +01005884 if (IS_GEN9(dev_priv))
Akash Goel57041952015-03-06 11:07:17 +05305885 I915_WRITE(GEN6_RPNSWREQ,
5886 GEN9_FREQUENCY(val));
Chris Wilsondc979972016-05-10 14:10:04 +01005887 else if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
Chris Wilsoneb64cad2014-03-27 08:24:20 +00005888 I915_WRITE(GEN6_RPNSWREQ,
5889 HSW_FREQUENCY(val));
5890 else
5891 I915_WRITE(GEN6_RPNSWREQ,
5892 GEN6_FREQUENCY(val) |
5893 GEN6_OFFSET(0) |
5894 GEN6_AGGRESSIVE_TURBO);
Jeff McGeeb8a5ff82014-02-04 11:37:01 -06005895 }
Chris Wilson7b9e0ae2012-04-28 08:56:39 +01005896
Chris Wilson7b9e0ae2012-04-28 08:56:39 +01005897 /* Make sure we continue to get interrupts
5898 * until we hit the minimum or maximum frequencies.
5899 */
Akash Goel74ef1172015-03-06 11:07:19 +05305900 I915_WRITE(GEN6_RP_INTERRUPT_LIMITS, intel_rps_limits(dev_priv, val));
Chris Wilson2876ce72014-03-28 08:03:34 +00005901 I915_WRITE(GEN6_PMINTRMSK, gen6_rps_pm_mask(dev_priv, val));
Chris Wilson7b9e0ae2012-04-28 08:56:39 +01005902
Ben Widawskyb39fb292014-03-19 18:31:11 -07005903 dev_priv->rps.cur_freq = val;
Mika Kuoppala0f945922015-11-17 18:14:26 +02005904 trace_intel_gpu_freq_change(intel_gpu_freq(dev_priv, val));
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005905
5906 return 0;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03005907}
5908
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005909static int valleyview_set_rps(struct drm_i915_private *dev_priv, u8 val)
Ville Syrjäläffe02b42015-02-02 19:09:50 +02005910{
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005911 int err;
5912
Chris Wilsondc979972016-05-10 14:10:04 +01005913 if (WARN_ONCE(IS_CHERRYVIEW(dev_priv) && (val & 1),
Ville Syrjäläffe02b42015-02-02 19:09:50 +02005914 "Odd GPU freq value\n"))
5915 val &= ~1;
5916
Deepak Scd25dd52015-07-10 18:31:40 +05305917 I915_WRITE(GEN6_PMINTRMSK, gen6_rps_pm_mask(dev_priv, val));
5918
Chris Wilson8fb55192015-04-07 16:20:28 +01005919 if (val != dev_priv->rps.cur_freq) {
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005920 err = vlv_punit_write(dev_priv, PUNIT_REG_GPU_FREQ_REQ, val);
5921 if (err)
5922 return err;
5923
Chris Wilsondb4c5e02017-02-10 15:03:46 +00005924 gen6_set_rps_thresholds(dev_priv, val);
Chris Wilson8fb55192015-04-07 16:20:28 +01005925 }
Ville Syrjäläffe02b42015-02-02 19:09:50 +02005926
Ville Syrjäläffe02b42015-02-02 19:09:50 +02005927 dev_priv->rps.cur_freq = val;
5928 trace_intel_gpu_freq_change(intel_gpu_freq(dev_priv, val));
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005929
5930 return 0;
Ville Syrjäläffe02b42015-02-02 19:09:50 +02005931}
5932
Deepak Sa7f6e232015-05-09 18:04:44 +05305933/* vlv_set_rps_idle: Set the frequency to idle, if Gfx clocks are down
Deepak S76c3552f2014-01-30 23:08:16 +05305934 *
5935 * * If Gfx is Idle, then
Deepak Sa7f6e232015-05-09 18:04:44 +05305936 * 1. Forcewake Media well.
5937 * 2. Request idle freq.
5938 * 3. Release Forcewake of Media well.
Deepak S76c3552f2014-01-30 23:08:16 +05305939*/
5940static void vlv_set_rps_idle(struct drm_i915_private *dev_priv)
5941{
Chris Wilsonaed242f2015-03-18 09:48:21 +00005942 u32 val = dev_priv->rps.idle_freq;
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005943 int err;
Deepak S5549d252014-06-28 11:26:11 +05305944
Chris Wilsonaed242f2015-03-18 09:48:21 +00005945 if (dev_priv->rps.cur_freq <= val)
Deepak S76c3552f2014-01-30 23:08:16 +05305946 return;
5947
Chris Wilsonc9efef72017-01-02 15:28:45 +00005948 /* The punit delays the write of the frequency and voltage until it
5949 * determines the GPU is awake. During normal usage we don't want to
5950 * waste power changing the frequency if the GPU is sleeping (rc6).
5951 * However, the GPU and driver is now idle and we do not want to delay
5952 * switching to minimum voltage (reducing power whilst idle) as we do
5953 * not expect to be woken in the near future and so must flush the
5954 * change by waking the device.
5955 *
5956 * We choose to take the media powerwell (either would do to trick the
5957 * punit into committing the voltage change) as that takes a lot less
5958 * power than the render powerwell.
5959 */
Deepak Sa7f6e232015-05-09 18:04:44 +05305960 intel_uncore_forcewake_get(dev_priv, FORCEWAKE_MEDIA);
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005961 err = valleyview_set_rps(dev_priv, val);
Deepak Sa7f6e232015-05-09 18:04:44 +05305962 intel_uncore_forcewake_put(dev_priv, FORCEWAKE_MEDIA);
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005963
5964 if (err)
5965 DRM_ERROR("Failed to set RPS for idle\n");
Deepak S76c3552f2014-01-30 23:08:16 +05305966}
5967
Chris Wilson43cf3bf2015-03-18 09:48:22 +00005968void gen6_rps_busy(struct drm_i915_private *dev_priv)
5969{
5970 mutex_lock(&dev_priv->rps.hw_lock);
5971 if (dev_priv->rps.enabled) {
Chris Wilsonbd648182017-02-10 15:03:48 +00005972 u8 freq;
5973
Chris Wilsone0e8c7c2017-03-09 21:12:30 +00005974 if (dev_priv->pm_rps_events & GEN6_PM_RP_UP_EI_EXPIRED)
Chris Wilson43cf3bf2015-03-18 09:48:22 +00005975 gen6_rps_reset_ei(dev_priv);
5976 I915_WRITE(GEN6_PMINTRMSK,
5977 gen6_rps_pm_mask(dev_priv, dev_priv->rps.cur_freq));
Michał Winiarski2b83c4c2016-06-20 11:58:27 +02005978
Chris Wilsonc33d2472016-07-04 08:08:36 +01005979 gen6_enable_rps_interrupts(dev_priv);
5980
Chris Wilsonbd648182017-02-10 15:03:48 +00005981 /* Use the user's desired frequency as a guide, but for better
5982 * performance, jump directly to RPe as our starting frequency.
5983 */
5984 freq = max(dev_priv->rps.cur_freq,
5985 dev_priv->rps.efficient_freq);
5986
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005987 if (intel_set_rps(dev_priv,
Chris Wilsonbd648182017-02-10 15:03:48 +00005988 clamp(freq,
Chris Wilson9fcee2f2017-01-26 10:19:19 +00005989 dev_priv->rps.min_freq_softlimit,
5990 dev_priv->rps.max_freq_softlimit)))
5991 DRM_DEBUG_DRIVER("Failed to set idle frequency\n");
Chris Wilson43cf3bf2015-03-18 09:48:22 +00005992 }
5993 mutex_unlock(&dev_priv->rps.hw_lock);
5994}
5995
Chris Wilsonb29c19b2013-09-25 17:34:56 +01005996void gen6_rps_idle(struct drm_i915_private *dev_priv)
5997{
Chris Wilsonc33d2472016-07-04 08:08:36 +01005998 /* Flush our bottom-half so that it does not race with us
5999 * setting the idle frequency and so that it is bounded by
6000 * our rpm wakeref. And then disable the interrupts to stop any
6001 * futher RPS reclocking whilst we are asleep.
6002 */
6003 gen6_disable_rps_interrupts(dev_priv);
6004
Chris Wilsonb29c19b2013-09-25 17:34:56 +01006005 mutex_lock(&dev_priv->rps.hw_lock);
Chris Wilsonc0951f02013-10-10 21:58:50 +01006006 if (dev_priv->rps.enabled) {
Chris Wilsondc979972016-05-10 14:10:04 +01006007 if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
Deepak S76c3552f2014-01-30 23:08:16 +05306008 vlv_set_rps_idle(dev_priv);
Daniel Vetter7526ed72014-09-29 15:07:19 +02006009 else
Chris Wilsondc979972016-05-10 14:10:04 +01006010 gen6_set_rps(dev_priv, dev_priv->rps.idle_freq);
Chris Wilsonc0951f02013-10-10 21:58:50 +01006011 dev_priv->rps.last_adj = 0;
Ville Syrjälä12c100b2016-05-23 17:42:48 +03006012 I915_WRITE(GEN6_PMINTRMSK,
6013 gen6_sanitize_rps_pm_mask(dev_priv, ~0));
Chris Wilsonc0951f02013-10-10 21:58:50 +01006014 }
Chris Wilson8d3afd72015-05-21 21:01:47 +01006015 mutex_unlock(&dev_priv->rps.hw_lock);
Chris Wilson1854d5c2015-04-07 16:20:32 +01006016
Chris Wilson8d3afd72015-05-21 21:01:47 +01006017 spin_lock(&dev_priv->rps.client_lock);
Chris Wilson1854d5c2015-04-07 16:20:32 +01006018 while (!list_empty(&dev_priv->rps.clients))
6019 list_del_init(dev_priv->rps.clients.next);
Chris Wilson8d3afd72015-05-21 21:01:47 +01006020 spin_unlock(&dev_priv->rps.client_lock);
Chris Wilsonb29c19b2013-09-25 17:34:56 +01006021}
6022
Chris Wilson1854d5c2015-04-07 16:20:32 +01006023void gen6_rps_boost(struct drm_i915_private *dev_priv,
Chris Wilsone61b9952015-04-27 13:41:24 +01006024 struct intel_rps_client *rps,
6025 unsigned long submitted)
Chris Wilsonb29c19b2013-09-25 17:34:56 +01006026{
Chris Wilson8d3afd72015-05-21 21:01:47 +01006027 /* This is intentionally racy! We peek at the state here, then
6028 * validate inside the RPS worker.
6029 */
Chris Wilson67d97da2016-07-04 08:08:31 +01006030 if (!(dev_priv->gt.awake &&
Chris Wilson8d3afd72015-05-21 21:01:47 +01006031 dev_priv->rps.enabled &&
Chris Wilson29ecd78d2016-07-13 09:10:35 +01006032 dev_priv->rps.cur_freq < dev_priv->rps.boost_freq))
Chris Wilson8d3afd72015-05-21 21:01:47 +01006033 return;
Chris Wilson43cf3bf2015-03-18 09:48:22 +00006034
Chris Wilsone61b9952015-04-27 13:41:24 +01006035 /* Force a RPS boost (and don't count it against the client) if
6036 * the GPU is severely congested.
6037 */
Chris Wilsond0bc54f2015-05-21 21:01:48 +01006038 if (rps && time_after(jiffies, submitted + DRM_I915_THROTTLE_JIFFIES))
Chris Wilsone61b9952015-04-27 13:41:24 +01006039 rps = NULL;
6040
Chris Wilson8d3afd72015-05-21 21:01:47 +01006041 spin_lock(&dev_priv->rps.client_lock);
6042 if (rps == NULL || list_empty(&rps->link)) {
6043 spin_lock_irq(&dev_priv->irq_lock);
6044 if (dev_priv->rps.interrupts_enabled) {
6045 dev_priv->rps.client_boost = true;
Chris Wilsonc33d2472016-07-04 08:08:36 +01006046 schedule_work(&dev_priv->rps.work);
Chris Wilson8d3afd72015-05-21 21:01:47 +01006047 }
6048 spin_unlock_irq(&dev_priv->irq_lock);
Chris Wilson1854d5c2015-04-07 16:20:32 +01006049
Chris Wilson2e1b8732015-04-27 13:41:22 +01006050 if (rps != NULL) {
6051 list_add(&rps->link, &dev_priv->rps.clients);
6052 rps->boosts++;
Chris Wilson1854d5c2015-04-07 16:20:32 +01006053 } else
6054 dev_priv->rps.boosts++;
Chris Wilsonc0951f02013-10-10 21:58:50 +01006055 }
Chris Wilson8d3afd72015-05-21 21:01:47 +01006056 spin_unlock(&dev_priv->rps.client_lock);
Chris Wilsonb29c19b2013-09-25 17:34:56 +01006057}
6058
Chris Wilson9fcee2f2017-01-26 10:19:19 +00006059int intel_set_rps(struct drm_i915_private *dev_priv, u8 val)
Jesse Barnes0a073b82013-04-17 15:54:58 -07006060{
Chris Wilson9fcee2f2017-01-26 10:19:19 +00006061 int err;
6062
Chris Wilsoncfd1c482017-02-20 09:47:07 +00006063 lockdep_assert_held(&dev_priv->rps.hw_lock);
6064 GEM_BUG_ON(val > dev_priv->rps.max_freq);
6065 GEM_BUG_ON(val < dev_priv->rps.min_freq);
6066
Chris Wilson76e4e4b2017-02-20 09:47:08 +00006067 if (!dev_priv->rps.enabled) {
6068 dev_priv->rps.cur_freq = val;
6069 return 0;
6070 }
6071
Chris Wilsondc979972016-05-10 14:10:04 +01006072 if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
Chris Wilson9fcee2f2017-01-26 10:19:19 +00006073 err = valleyview_set_rps(dev_priv, val);
Ville Syrjäläffe02b42015-02-02 19:09:50 +02006074 else
Chris Wilson9fcee2f2017-01-26 10:19:19 +00006075 err = gen6_set_rps(dev_priv, val);
6076
6077 return err;
Jesse Barnes0a073b82013-04-17 15:54:58 -07006078}
6079
Chris Wilsondc979972016-05-10 14:10:04 +01006080static void gen9_disable_rc6(struct drm_i915_private *dev_priv)
Zhe Wang20e49362014-11-04 17:07:05 +00006081{
Zhe Wang20e49362014-11-04 17:07:05 +00006082 I915_WRITE(GEN6_RC_CONTROL, 0);
Zhe Wang38c23522015-01-20 12:23:04 +00006083 I915_WRITE(GEN9_PG_ENABLE, 0);
Zhe Wang20e49362014-11-04 17:07:05 +00006084}
6085
Chris Wilsondc979972016-05-10 14:10:04 +01006086static void gen9_disable_rps(struct drm_i915_private *dev_priv)
Akash Goel2030d682016-04-23 00:05:45 +05306087{
Akash Goel2030d682016-04-23 00:05:45 +05306088 I915_WRITE(GEN6_RP_CONTROL, 0);
6089}
6090
Chris Wilsondc979972016-05-10 14:10:04 +01006091static void gen6_disable_rps(struct drm_i915_private *dev_priv)
Daniel Vetter44fc7d52013-07-12 22:43:27 +02006092{
Daniel Vetter44fc7d52013-07-12 22:43:27 +02006093 I915_WRITE(GEN6_RC_CONTROL, 0);
6094 I915_WRITE(GEN6_RPNSWREQ, 1 << 31);
Akash Goel2030d682016-04-23 00:05:45 +05306095 I915_WRITE(GEN6_RP_CONTROL, 0);
Daniel Vetter44fc7d52013-07-12 22:43:27 +02006096}
6097
Chris Wilsondc979972016-05-10 14:10:04 +01006098static void cherryview_disable_rps(struct drm_i915_private *dev_priv)
Deepak S38807742014-05-23 21:00:15 +05306099{
Deepak S38807742014-05-23 21:00:15 +05306100 I915_WRITE(GEN6_RC_CONTROL, 0);
6101}
6102
Chris Wilsondc979972016-05-10 14:10:04 +01006103static void valleyview_disable_rps(struct drm_i915_private *dev_priv)
Jesse Barnesd20d4f02013-04-23 10:09:28 -07006104{
Deepak S98a2e5f2014-08-18 10:35:27 -07006105 /* we're doing forcewake before Disabling RC6,
6106 * This what the BIOS expects when going into suspend */
Mika Kuoppala59bad942015-01-16 11:34:40 +02006107 intel_uncore_forcewake_get(dev_priv, FORCEWAKE_ALL);
Deepak S98a2e5f2014-08-18 10:35:27 -07006108
Jesse Barnesd20d4f02013-04-23 10:09:28 -07006109 I915_WRITE(GEN6_RC_CONTROL, 0);
Jesse Barnesd20d4f02013-04-23 10:09:28 -07006110
Mika Kuoppala59bad942015-01-16 11:34:40 +02006111 intel_uncore_forcewake_put(dev_priv, FORCEWAKE_ALL);
Jesse Barnesd20d4f02013-04-23 10:09:28 -07006112}
6113
Chris Wilsondc979972016-05-10 14:10:04 +01006114static void intel_print_rc6_info(struct drm_i915_private *dev_priv, u32 mode)
Ben Widawskydc39fff2013-10-18 12:32:07 -07006115{
Chris Wilsondc979972016-05-10 14:10:04 +01006116 if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
Imre Deak91ca6892014-04-14 20:24:25 +03006117 if (mode & (GEN7_RC_CTL_TO_MODE | GEN6_RC_CTL_EI_MODE(1)))
6118 mode = GEN6_RC_CTL_RC6_ENABLE;
6119 else
6120 mode = 0;
6121 }
Chris Wilsondc979972016-05-10 14:10:04 +01006122 if (HAS_RC6p(dev_priv))
Imre Deakb99d49c2016-06-29 19:13:54 +03006123 DRM_DEBUG_DRIVER("Enabling RC6 states: "
6124 "RC6 %s RC6p %s RC6pp %s\n",
6125 onoff(mode & GEN6_RC_CTL_RC6_ENABLE),
6126 onoff(mode & GEN6_RC_CTL_RC6p_ENABLE),
6127 onoff(mode & GEN6_RC_CTL_RC6pp_ENABLE));
Rodrigo Vivi58abf1d2014-10-07 07:06:50 -07006128
6129 else
Imre Deakb99d49c2016-06-29 19:13:54 +03006130 DRM_DEBUG_DRIVER("Enabling RC6 states: RC6 %s\n",
6131 onoff(mode & GEN6_RC_CTL_RC6_ENABLE));
Ben Widawskydc39fff2013-10-18 12:32:07 -07006132}
6133
Chris Wilsondc979972016-05-10 14:10:04 +01006134static bool bxt_check_bios_rc6_setup(struct drm_i915_private *dev_priv)
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306135{
Joonas Lahtinen72e96d62016-03-30 16:57:10 +03006136 struct i915_ggtt *ggtt = &dev_priv->ggtt;
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306137 bool enable_rc6 = true;
6138 unsigned long rc6_ctx_base;
Imre Deakfc619842016-06-29 19:13:55 +03006139 u32 rc_ctl;
6140 int rc_sw_target;
6141
6142 rc_ctl = I915_READ(GEN6_RC_CONTROL);
6143 rc_sw_target = (I915_READ(GEN6_RC_STATE) & RC_SW_TARGET_STATE_MASK) >>
6144 RC_SW_TARGET_STATE_SHIFT;
6145 DRM_DEBUG_DRIVER("BIOS enabled RC states: "
6146 "HW_CTRL %s HW_RC6 %s SW_TARGET_STATE %x\n",
6147 onoff(rc_ctl & GEN6_RC_CTL_HW_ENABLE),
6148 onoff(rc_ctl & GEN6_RC_CTL_RC6_ENABLE),
6149 rc_sw_target);
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306150
6151 if (!(I915_READ(RC6_LOCATION) & RC6_CTX_IN_DRAM)) {
Imre Deakb99d49c2016-06-29 19:13:54 +03006152 DRM_DEBUG_DRIVER("RC6 Base location not set properly.\n");
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306153 enable_rc6 = false;
6154 }
6155
6156 /*
6157 * The exact context size is not known for BXT, so assume a page size
6158 * for this check.
6159 */
6160 rc6_ctx_base = I915_READ(RC6_CTX_BASE) & RC6_CTX_BASE_MASK;
Joonas Lahtinen72e96d62016-03-30 16:57:10 +03006161 if (!((rc6_ctx_base >= ggtt->stolen_reserved_base) &&
6162 (rc6_ctx_base + PAGE_SIZE <= ggtt->stolen_reserved_base +
6163 ggtt->stolen_reserved_size))) {
Imre Deakb99d49c2016-06-29 19:13:54 +03006164 DRM_DEBUG_DRIVER("RC6 Base address not as expected.\n");
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306165 enable_rc6 = false;
6166 }
6167
6168 if (!(((I915_READ(PWRCTX_MAXCNT_RCSUNIT) & IDLE_TIME_MASK) > 1) &&
6169 ((I915_READ(PWRCTX_MAXCNT_VCSUNIT0) & IDLE_TIME_MASK) > 1) &&
6170 ((I915_READ(PWRCTX_MAXCNT_BCSUNIT) & IDLE_TIME_MASK) > 1) &&
6171 ((I915_READ(PWRCTX_MAXCNT_VECSUNIT) & IDLE_TIME_MASK) > 1))) {
Imre Deakb99d49c2016-06-29 19:13:54 +03006172 DRM_DEBUG_DRIVER("Engine Idle wait time not set properly.\n");
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306173 enable_rc6 = false;
6174 }
6175
Imre Deakfc619842016-06-29 19:13:55 +03006176 if (!I915_READ(GEN8_PUSHBUS_CONTROL) ||
6177 !I915_READ(GEN8_PUSHBUS_ENABLE) ||
6178 !I915_READ(GEN8_PUSHBUS_SHIFT)) {
6179 DRM_DEBUG_DRIVER("Pushbus not setup properly.\n");
6180 enable_rc6 = false;
6181 }
6182
6183 if (!I915_READ(GEN6_GFXPAUSE)) {
6184 DRM_DEBUG_DRIVER("GFX pause not setup properly.\n");
6185 enable_rc6 = false;
6186 }
6187
6188 if (!I915_READ(GEN8_MISC_CTRL0)) {
6189 DRM_DEBUG_DRIVER("GPM control not setup properly.\n");
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306190 enable_rc6 = false;
6191 }
6192
6193 return enable_rc6;
6194}
6195
Chris Wilsondc979972016-05-10 14:10:04 +01006196int sanitize_rc6_option(struct drm_i915_private *dev_priv, int enable_rc6)
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006197{
Daniel Vettere7d66d82015-06-15 23:23:54 +02006198 /* No RC6 before Ironlake and code is gone for ilk. */
Chris Wilsondc979972016-05-10 14:10:04 +01006199 if (INTEL_INFO(dev_priv)->gen < 6)
Imre Deake6069ca2014-04-18 16:01:02 +03006200 return 0;
6201
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306202 if (!enable_rc6)
6203 return 0;
6204
Ander Conselvan de Oliveiracc3f90f2016-12-02 10:23:49 +02006205 if (IS_GEN9_LP(dev_priv) && !bxt_check_bios_rc6_setup(dev_priv)) {
Sagar Arun Kamble274008e2016-02-06 00:13:29 +05306206 DRM_INFO("RC6 disabled by BIOS\n");
6207 return 0;
6208 }
6209
Daniel Vetter456470e2012-08-08 23:35:40 +02006210 /* Respect the kernel parameter if it is set */
Imre Deake6069ca2014-04-18 16:01:02 +03006211 if (enable_rc6 >= 0) {
6212 int mask;
6213
Chris Wilsondc979972016-05-10 14:10:04 +01006214 if (HAS_RC6p(dev_priv))
Imre Deake6069ca2014-04-18 16:01:02 +03006215 mask = INTEL_RC6_ENABLE | INTEL_RC6p_ENABLE |
6216 INTEL_RC6pp_ENABLE;
6217 else
6218 mask = INTEL_RC6_ENABLE;
6219
6220 if ((enable_rc6 & mask) != enable_rc6)
Imre Deakb99d49c2016-06-29 19:13:54 +03006221 DRM_DEBUG_DRIVER("Adjusting RC6 mask to %d "
6222 "(requested %d, valid %d)\n",
6223 enable_rc6 & mask, enable_rc6, mask);
Imre Deake6069ca2014-04-18 16:01:02 +03006224
6225 return enable_rc6 & mask;
6226 }
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006227
Chris Wilsondc979972016-05-10 14:10:04 +01006228 if (IS_IVYBRIDGE(dev_priv))
Ben Widawskycca84a12014-01-28 20:25:38 -08006229 return (INTEL_RC6_ENABLE | INTEL_RC6p_ENABLE);
Ben Widawsky8bade1a2014-01-28 20:25:39 -08006230
6231 return INTEL_RC6_ENABLE;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006232}
6233
Chris Wilsondc979972016-05-10 14:10:04 +01006234static void gen6_init_rps_frequencies(struct drm_i915_private *dev_priv)
Imre Deake6069ca2014-04-18 16:01:02 +03006235{
Ben Widawsky3280e8b2014-03-31 17:16:42 -07006236 /* All of these values are in units of 50MHz */
Chris Wilson773ea9a2016-07-13 09:10:33 +01006237
Tom O'Rourke93ee2922014-11-19 14:21:52 -08006238 /* static values from HW: RP0 > RP1 > RPn (min_freq) */
Ander Conselvan de Oliveiracc3f90f2016-12-02 10:23:49 +02006239 if (IS_GEN9_LP(dev_priv)) {
Chris Wilson773ea9a2016-07-13 09:10:33 +01006240 u32 rp_state_cap = I915_READ(BXT_RP_STATE_CAP);
Bob Paauwe35040562015-06-25 14:54:07 -07006241 dev_priv->rps.rp0_freq = (rp_state_cap >> 16) & 0xff;
6242 dev_priv->rps.rp1_freq = (rp_state_cap >> 8) & 0xff;
6243 dev_priv->rps.min_freq = (rp_state_cap >> 0) & 0xff;
6244 } else {
Chris Wilson773ea9a2016-07-13 09:10:33 +01006245 u32 rp_state_cap = I915_READ(GEN6_RP_STATE_CAP);
Bob Paauwe35040562015-06-25 14:54:07 -07006246 dev_priv->rps.rp0_freq = (rp_state_cap >> 0) & 0xff;
6247 dev_priv->rps.rp1_freq = (rp_state_cap >> 8) & 0xff;
6248 dev_priv->rps.min_freq = (rp_state_cap >> 16) & 0xff;
6249 }
Ben Widawsky3280e8b2014-03-31 17:16:42 -07006250 /* hw_max = RP0 until we check for overclocking */
Chris Wilson773ea9a2016-07-13 09:10:33 +01006251 dev_priv->rps.max_freq = dev_priv->rps.rp0_freq;
Ben Widawsky3280e8b2014-03-31 17:16:42 -07006252
Tom O'Rourke93ee2922014-11-19 14:21:52 -08006253 dev_priv->rps.efficient_freq = dev_priv->rps.rp1_freq;
Chris Wilsondc979972016-05-10 14:10:04 +01006254 if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv) ||
Rodrigo Vivib976dc52017-01-23 10:32:37 -08006255 IS_GEN9_BC(dev_priv)) {
Chris Wilson773ea9a2016-07-13 09:10:33 +01006256 u32 ddcc_status = 0;
6257
6258 if (sandybridge_pcode_read(dev_priv,
6259 HSW_PCODE_DYNAMIC_DUTY_CYCLE_CONTROL,
6260 &ddcc_status) == 0)
Tom O'Rourke93ee2922014-11-19 14:21:52 -08006261 dev_priv->rps.efficient_freq =
Tom O'Rourke46efa4a2015-02-10 23:06:46 -08006262 clamp_t(u8,
6263 ((ddcc_status >> 8) & 0xff),
6264 dev_priv->rps.min_freq,
6265 dev_priv->rps.max_freq);
Tom O'Rourke93ee2922014-11-19 14:21:52 -08006266 }
6267
Rodrigo Vivib976dc52017-01-23 10:32:37 -08006268 if (IS_GEN9_BC(dev_priv)) {
Akash Goelc5e06882015-06-29 14:50:19 +05306269 /* Store the frequency values in 16.66 MHZ units, which is
Chris Wilson773ea9a2016-07-13 09:10:33 +01006270 * the natural hardware unit for SKL
6271 */
Akash Goelc5e06882015-06-29 14:50:19 +05306272 dev_priv->rps.rp0_freq *= GEN9_FREQ_SCALER;
6273 dev_priv->rps.rp1_freq *= GEN9_FREQ_SCALER;
6274 dev_priv->rps.min_freq *= GEN9_FREQ_SCALER;
6275 dev_priv->rps.max_freq *= GEN9_FREQ_SCALER;
6276 dev_priv->rps.efficient_freq *= GEN9_FREQ_SCALER;
6277 }
Ben Widawsky3280e8b2014-03-31 17:16:42 -07006278}
6279
Chris Wilson3a45b052016-07-13 09:10:32 +01006280static void reset_rps(struct drm_i915_private *dev_priv,
Chris Wilson9fcee2f2017-01-26 10:19:19 +00006281 int (*set)(struct drm_i915_private *, u8))
Chris Wilson3a45b052016-07-13 09:10:32 +01006282{
6283 u8 freq = dev_priv->rps.cur_freq;
6284
6285 /* force a reset */
6286 dev_priv->rps.power = -1;
6287 dev_priv->rps.cur_freq = -1;
6288
Chris Wilson9fcee2f2017-01-26 10:19:19 +00006289 if (set(dev_priv, freq))
6290 DRM_ERROR("Failed to reset RPS to initial values\n");
Chris Wilson3a45b052016-07-13 09:10:32 +01006291}
6292
Jesse Barnesb6fef0e2015-01-16 18:07:25 +00006293/* See the Gen9_GT_PM_Programming_Guide doc for the below */
Chris Wilsondc979972016-05-10 14:10:04 +01006294static void gen9_enable_rps(struct drm_i915_private *dev_priv)
Zhe Wang20e49362014-11-04 17:07:05 +00006295{
Jesse Barnesb6fef0e2015-01-16 18:07:25 +00006296 intel_uncore_forcewake_get(dev_priv, FORCEWAKE_ALL);
6297
Akash Goel0beb0592015-03-06 11:07:20 +05306298 /* Program defaults and thresholds for RPS*/
6299 I915_WRITE(GEN6_RC_VIDEO_FREQ,
6300 GEN9_FREQUENCY(dev_priv->rps.rp1_freq));
Jesse Barnesb6fef0e2015-01-16 18:07:25 +00006301
Akash Goel0beb0592015-03-06 11:07:20 +05306302 /* 1 second timeout*/
6303 I915_WRITE(GEN6_RP_DOWN_TIMEOUT,
6304 GT_INTERVAL_FROM_US(dev_priv, 1000000));
6305
Jesse Barnesb6fef0e2015-01-16 18:07:25 +00006306 I915_WRITE(GEN6_RP_IDLE_HYSTERSIS, 0xa);
Jesse Barnesb6fef0e2015-01-16 18:07:25 +00006307
Akash Goel0beb0592015-03-06 11:07:20 +05306308 /* Leaning on the below call to gen6_set_rps to program/setup the
6309 * Up/Down EI & threshold registers, as well as the RP_CONTROL,
6310 * RP_INTERRUPT_LIMITS & RPNSWREQ registers */
Chris Wilson3a45b052016-07-13 09:10:32 +01006311 reset_rps(dev_priv, gen6_set_rps);
Jesse Barnesb6fef0e2015-01-16 18:07:25 +00006312
6313 intel_uncore_forcewake_put(dev_priv, FORCEWAKE_ALL);
6314}
6315
Chris Wilsondc979972016-05-10 14:10:04 +01006316static void gen9_enable_rc6(struct drm_i915_private *dev_priv)
Jesse Barnesb6fef0e2015-01-16 18:07:25 +00006317{
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00006318 struct intel_engine_cs *engine;
Akash Goel3b3f1652016-10-13 22:44:48 +05306319 enum intel_engine_id id;
Zhe Wang20e49362014-11-04 17:07:05 +00006320 uint32_t rc6_mask = 0;
Zhe Wang20e49362014-11-04 17:07:05 +00006321
6322 /* 1a: Software RC state - RC0 */
6323 I915_WRITE(GEN6_RC_STATE, 0);
6324
6325 /* 1b: Get forcewake during program sequence. Although the driver
6326 * hasn't enabled a state yet where we need forcewake, BIOS may have.*/
Mika Kuoppala59bad942015-01-16 11:34:40 +02006327 intel_uncore_forcewake_get(dev_priv, FORCEWAKE_ALL);
Zhe Wang20e49362014-11-04 17:07:05 +00006328
6329 /* 2a: Disable RC states. */
6330 I915_WRITE(GEN6_RC_CONTROL, 0);
6331
6332 /* 2b: Program RC6 thresholds.*/
Sagar Arun Kamble63a4dec2015-09-12 10:17:53 +05306333
6334 /* WaRsDoubleRc6WrlWithCoarsePowerGating: Doubling WRL only when CPG is enabled */
Chris Wilsondc979972016-05-10 14:10:04 +01006335 if (IS_SKYLAKE(dev_priv))
Sagar Arun Kamble63a4dec2015-09-12 10:17:53 +05306336 I915_WRITE(GEN6_RC6_WAKE_RATE_LIMIT, 108 << 16);
6337 else
6338 I915_WRITE(GEN6_RC6_WAKE_RATE_LIMIT, 54 << 16);
Zhe Wang20e49362014-11-04 17:07:05 +00006339 I915_WRITE(GEN6_RC_EVALUATION_INTERVAL, 125000); /* 12500 * 1280ns */
6340 I915_WRITE(GEN6_RC_IDLE_HYSTERSIS, 25); /* 25 * 1280ns */
Akash Goel3b3f1652016-10-13 22:44:48 +05306341 for_each_engine(engine, dev_priv, id)
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00006342 I915_WRITE(RING_MAX_IDLE(engine->mmio_base), 10);
Sagar Arun Kamble97c322e2015-09-12 10:17:54 +05306343
Dave Gordon1a3d1892016-05-13 15:36:30 +01006344 if (HAS_GUC(dev_priv))
Sagar Arun Kamble97c322e2015-09-12 10:17:54 +05306345 I915_WRITE(GUC_MAX_IDLE_COUNT, 0xA);
6346
Zhe Wang20e49362014-11-04 17:07:05 +00006347 I915_WRITE(GEN6_RC_SLEEP, 0);
Zhe Wang20e49362014-11-04 17:07:05 +00006348
Zhe Wang38c23522015-01-20 12:23:04 +00006349 /* 2c: Program Coarse Power Gating Policies. */
6350 I915_WRITE(GEN9_MEDIA_PG_IDLE_HYSTERESIS, 25);
6351 I915_WRITE(GEN9_RENDER_PG_IDLE_HYSTERESIS, 25);
6352
Zhe Wang20e49362014-11-04 17:07:05 +00006353 /* 3a: Enable RC6 */
Chris Wilsondc979972016-05-10 14:10:04 +01006354 if (intel_enable_rc6() & INTEL_RC6_ENABLE)
Zhe Wang20e49362014-11-04 17:07:05 +00006355 rc6_mask = GEN6_RC_CTL_RC6_ENABLE;
Jani Nikula87ad3212016-01-14 12:53:34 +02006356 DRM_INFO("RC6 %s\n", onoff(rc6_mask & GEN6_RC_CTL_RC6_ENABLE));
Chris Wilson1c044f92017-01-25 17:26:01 +00006357 I915_WRITE(GEN6_RC6_THRESHOLD, 37500); /* 37.5/125ms per EI */
6358 I915_WRITE(GEN6_RC_CONTROL,
6359 GEN6_RC_CTL_HW_ENABLE | GEN6_RC_CTL_EI_MODE(1) | rc6_mask);
Zhe Wang20e49362014-11-04 17:07:05 +00006360
Sagar Kamblecb07bae2015-04-12 11:28:14 +05306361 /*
6362 * 3b: Enable Coarse Power Gating only when RC6 is enabled.
Sagar Arun Kamblef2d2fe92015-09-12 10:17:51 +05306363 * WaRsDisableCoarsePowerGating:skl,bxt - Render/Media PG need to be disabled with RC6.
Sagar Kamblecb07bae2015-04-12 11:28:14 +05306364 */
Chris Wilsondc979972016-05-10 14:10:04 +01006365 if (NEEDS_WaRsDisableCoarsePowerGating(dev_priv))
Sagar Arun Kamblef2d2fe92015-09-12 10:17:51 +05306366 I915_WRITE(GEN9_PG_ENABLE, 0);
6367 else
6368 I915_WRITE(GEN9_PG_ENABLE, (rc6_mask & GEN6_RC_CTL_RC6_ENABLE) ?
6369 (GEN9_RENDER_PG_ENABLE | GEN9_MEDIA_PG_ENABLE) : 0);
Zhe Wang38c23522015-01-20 12:23:04 +00006370
Mika Kuoppala59bad942015-01-16 11:34:40 +02006371 intel_uncore_forcewake_put(dev_priv, FORCEWAKE_ALL);
Zhe Wang20e49362014-11-04 17:07:05 +00006372}
6373
Chris Wilsondc979972016-05-10 14:10:04 +01006374static void gen8_enable_rps(struct drm_i915_private *dev_priv)
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006375{
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00006376 struct intel_engine_cs *engine;
Akash Goel3b3f1652016-10-13 22:44:48 +05306377 enum intel_engine_id id;
Tom O'Rourke93ee2922014-11-19 14:21:52 -08006378 uint32_t rc6_mask = 0;
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006379
6380 /* 1a: Software RC state - RC0 */
6381 I915_WRITE(GEN6_RC_STATE, 0);
6382
6383 /* 1c & 1d: Get forcewake during program sequence. Although the driver
6384 * hasn't enabled a state yet where we need forcewake, BIOS may have.*/
Mika Kuoppala59bad942015-01-16 11:34:40 +02006385 intel_uncore_forcewake_get(dev_priv, FORCEWAKE_ALL);
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006386
6387 /* 2a: Disable RC states. */
6388 I915_WRITE(GEN6_RC_CONTROL, 0);
6389
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006390 /* 2b: Program RC6 thresholds.*/
6391 I915_WRITE(GEN6_RC6_WAKE_RATE_LIMIT, 40 << 16);
6392 I915_WRITE(GEN6_RC_EVALUATION_INTERVAL, 125000); /* 12500 * 1280ns */
6393 I915_WRITE(GEN6_RC_IDLE_HYSTERSIS, 25); /* 25 * 1280ns */
Akash Goel3b3f1652016-10-13 22:44:48 +05306394 for_each_engine(engine, dev_priv, id)
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00006395 I915_WRITE(RING_MAX_IDLE(engine->mmio_base), 10);
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006396 I915_WRITE(GEN6_RC_SLEEP, 0);
Chris Wilsondc979972016-05-10 14:10:04 +01006397 if (IS_BROADWELL(dev_priv))
Tom O'Rourke0d68b252014-04-09 11:44:06 -07006398 I915_WRITE(GEN6_RC6_THRESHOLD, 625); /* 800us/1.28 for TO */
6399 else
6400 I915_WRITE(GEN6_RC6_THRESHOLD, 50000); /* 50/125ms per EI */
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006401
6402 /* 3: Enable RC6 */
Chris Wilsondc979972016-05-10 14:10:04 +01006403 if (intel_enable_rc6() & INTEL_RC6_ENABLE)
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006404 rc6_mask = GEN6_RC_CTL_RC6_ENABLE;
Chris Wilsondc979972016-05-10 14:10:04 +01006405 intel_print_rc6_info(dev_priv, rc6_mask);
6406 if (IS_BROADWELL(dev_priv))
Tom O'Rourke0d68b252014-04-09 11:44:06 -07006407 I915_WRITE(GEN6_RC_CONTROL, GEN6_RC_CTL_HW_ENABLE |
6408 GEN7_RC_CTL_TO_MODE |
6409 rc6_mask);
6410 else
6411 I915_WRITE(GEN6_RC_CONTROL, GEN6_RC_CTL_HW_ENABLE |
6412 GEN6_RC_CTL_EI_MODE(1) |
6413 rc6_mask);
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006414
6415 /* 4 Program defaults and thresholds for RPS*/
Ben Widawskyf9bdc582014-03-31 17:16:41 -07006416 I915_WRITE(GEN6_RPNSWREQ,
6417 HSW_FREQUENCY(dev_priv->rps.rp1_freq));
6418 I915_WRITE(GEN6_RC_VIDEO_FREQ,
6419 HSW_FREQUENCY(dev_priv->rps.rp1_freq));
Daniel Vetter7526ed72014-09-29 15:07:19 +02006420 /* NB: Docs say 1s, and 1000000 - which aren't equivalent */
6421 I915_WRITE(GEN6_RP_DOWN_TIMEOUT, 100000000 / 128); /* 1 second timeout */
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006422
Daniel Vetter7526ed72014-09-29 15:07:19 +02006423 /* Docs recommend 900MHz, and 300 MHz respectively */
6424 I915_WRITE(GEN6_RP_INTERRUPT_LIMITS,
6425 dev_priv->rps.max_freq_softlimit << 24 |
6426 dev_priv->rps.min_freq_softlimit << 16);
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006427
Daniel Vetter7526ed72014-09-29 15:07:19 +02006428 I915_WRITE(GEN6_RP_UP_THRESHOLD, 7600000 / 128); /* 76ms busyness per EI, 90% */
6429 I915_WRITE(GEN6_RP_DOWN_THRESHOLD, 31300000 / 128); /* 313ms busyness per EI, 70%*/
6430 I915_WRITE(GEN6_RP_UP_EI, 66000); /* 84.48ms, XXX: random? */
6431 I915_WRITE(GEN6_RP_DOWN_EI, 350000); /* 448ms, XXX: random? */
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006432
Daniel Vetter7526ed72014-09-29 15:07:19 +02006433 I915_WRITE(GEN6_RP_IDLE_HYSTERSIS, 10);
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006434
6435 /* 5: Enable RPS */
Daniel Vetter7526ed72014-09-29 15:07:19 +02006436 I915_WRITE(GEN6_RP_CONTROL,
6437 GEN6_RP_MEDIA_TURBO |
6438 GEN6_RP_MEDIA_HW_NORMAL_MODE |
6439 GEN6_RP_MEDIA_IS_GFX |
6440 GEN6_RP_ENABLE |
6441 GEN6_RP_UP_BUSY_AVG |
6442 GEN6_RP_DOWN_IDLE_AVG);
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006443
Daniel Vetter7526ed72014-09-29 15:07:19 +02006444 /* 6: Ring frequency + overclocking (our driver does this later */
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006445
Chris Wilson3a45b052016-07-13 09:10:32 +01006446 reset_rps(dev_priv, gen6_set_rps);
Daniel Vetter7526ed72014-09-29 15:07:19 +02006447
Mika Kuoppala59bad942015-01-16 11:34:40 +02006448 intel_uncore_forcewake_put(dev_priv, FORCEWAKE_ALL);
Ben Widawsky6edee7f2013-11-02 21:07:52 -07006449}
6450
Chris Wilsondc979972016-05-10 14:10:04 +01006451static void gen6_enable_rps(struct drm_i915_private *dev_priv)
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006452{
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00006453 struct intel_engine_cs *engine;
Akash Goel3b3f1652016-10-13 22:44:48 +05306454 enum intel_engine_id id;
Chris Wilson99ac9612016-07-13 09:10:34 +01006455 u32 rc6vids, rc6_mask = 0;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006456 u32 gtfifodbg;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006457 int rc6_mode;
Dave Gordonb4ac5af2016-03-24 11:20:38 +00006458 int ret;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006459
Jesse Barnes4fc688c2012-11-02 11:14:01 -07006460 WARN_ON(!mutex_is_locked(&dev_priv->rps.hw_lock));
Daniel Vetter79f5b2c2012-06-24 16:42:33 +02006461
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006462 /* Here begins a magic sequence of register writes to enable
6463 * auto-downclocking.
6464 *
6465 * Perhaps there might be some value in exposing these to
6466 * userspace...
6467 */
6468 I915_WRITE(GEN6_RC_STATE, 0);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006469
6470 /* Clear the DBG now so we don't confuse earlier errors */
Ville Syrjälä297b32e2016-04-13 21:09:30 +03006471 gtfifodbg = I915_READ(GTFIFODBG);
6472 if (gtfifodbg) {
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006473 DRM_ERROR("GT fifo had a previous error %x\n", gtfifodbg);
6474 I915_WRITE(GTFIFODBG, gtfifodbg);
6475 }
6476
Mika Kuoppala59bad942015-01-16 11:34:40 +02006477 intel_uncore_forcewake_get(dev_priv, FORCEWAKE_ALL);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006478
6479 /* disable the counters and set deterministic thresholds */
6480 I915_WRITE(GEN6_RC_CONTROL, 0);
6481
6482 I915_WRITE(GEN6_RC1_WAKE_RATE_LIMIT, 1000 << 16);
6483 I915_WRITE(GEN6_RC6_WAKE_RATE_LIMIT, 40 << 16 | 30);
6484 I915_WRITE(GEN6_RC6pp_WAKE_RATE_LIMIT, 30);
6485 I915_WRITE(GEN6_RC_EVALUATION_INTERVAL, 125000);
6486 I915_WRITE(GEN6_RC_IDLE_HYSTERSIS, 25);
6487
Akash Goel3b3f1652016-10-13 22:44:48 +05306488 for_each_engine(engine, dev_priv, id)
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00006489 I915_WRITE(RING_MAX_IDLE(engine->mmio_base), 10);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006490
6491 I915_WRITE(GEN6_RC_SLEEP, 0);
6492 I915_WRITE(GEN6_RC1e_THRESHOLD, 1000);
Chris Wilsondc979972016-05-10 14:10:04 +01006493 if (IS_IVYBRIDGE(dev_priv))
Stéphane Marchesin351aa562013-08-13 11:55:17 -07006494 I915_WRITE(GEN6_RC6_THRESHOLD, 125000);
6495 else
6496 I915_WRITE(GEN6_RC6_THRESHOLD, 50000);
Stéphane Marchesin0920a482013-01-29 19:41:59 -08006497 I915_WRITE(GEN6_RC6p_THRESHOLD, 150000);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006498 I915_WRITE(GEN6_RC6pp_THRESHOLD, 64000); /* unused */
6499
Eugeni Dodonov5a7dc922012-07-02 11:51:05 -03006500 /* Check if we are enabling RC6 */
Chris Wilsondc979972016-05-10 14:10:04 +01006501 rc6_mode = intel_enable_rc6();
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006502 if (rc6_mode & INTEL_RC6_ENABLE)
6503 rc6_mask |= GEN6_RC_CTL_RC6_ENABLE;
6504
Eugeni Dodonov5a7dc922012-07-02 11:51:05 -03006505 /* We don't use those on Haswell */
Chris Wilsondc979972016-05-10 14:10:04 +01006506 if (!IS_HASWELL(dev_priv)) {
Eugeni Dodonov5a7dc922012-07-02 11:51:05 -03006507 if (rc6_mode & INTEL_RC6p_ENABLE)
6508 rc6_mask |= GEN6_RC_CTL_RC6p_ENABLE;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006509
Eugeni Dodonov5a7dc922012-07-02 11:51:05 -03006510 if (rc6_mode & INTEL_RC6pp_ENABLE)
6511 rc6_mask |= GEN6_RC_CTL_RC6pp_ENABLE;
6512 }
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006513
Chris Wilsondc979972016-05-10 14:10:04 +01006514 intel_print_rc6_info(dev_priv, rc6_mask);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006515
6516 I915_WRITE(GEN6_RC_CONTROL,
6517 rc6_mask |
6518 GEN6_RC_CTL_EI_MODE(1) |
6519 GEN6_RC_CTL_HW_ENABLE);
6520
Chris Wilsondd75fdc2013-09-25 17:34:57 +01006521 /* Power down if completely idle for over 50ms */
6522 I915_WRITE(GEN6_RP_DOWN_TIMEOUT, 50000);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006523 I915_WRITE(GEN6_RP_IDLE_HYSTERSIS, 10);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006524
Chris Wilson3a45b052016-07-13 09:10:32 +01006525 reset_rps(dev_priv, gen6_set_rps);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006526
Ben Widawsky31643d52012-09-26 10:34:01 -07006527 rc6vids = 0;
6528 ret = sandybridge_pcode_read(dev_priv, GEN6_PCODE_READ_RC6VIDS, &rc6vids);
Chris Wilsondc979972016-05-10 14:10:04 +01006529 if (IS_GEN6(dev_priv) && ret) {
Ben Widawsky31643d52012-09-26 10:34:01 -07006530 DRM_DEBUG_DRIVER("Couldn't check for BIOS workaround\n");
Chris Wilsondc979972016-05-10 14:10:04 +01006531 } else if (IS_GEN6(dev_priv) && (GEN6_DECODE_RC6_VID(rc6vids & 0xff) < 450)) {
Ben Widawsky31643d52012-09-26 10:34:01 -07006532 DRM_DEBUG_DRIVER("You should update your BIOS. Correcting minimum rc6 voltage (%dmV->%dmV)\n",
6533 GEN6_DECODE_RC6_VID(rc6vids & 0xff), 450);
6534 rc6vids &= 0xffff00;
6535 rc6vids |= GEN6_ENCODE_RC6_VID(450);
6536 ret = sandybridge_pcode_write(dev_priv, GEN6_PCODE_WRITE_RC6VIDS, rc6vids);
6537 if (ret)
6538 DRM_ERROR("Couldn't fix incorrect rc6 voltage\n");
6539 }
6540
Mika Kuoppala59bad942015-01-16 11:34:40 +02006541 intel_uncore_forcewake_put(dev_priv, FORCEWAKE_ALL);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006542}
6543
Chris Wilsonfb7404e2016-07-13 09:10:38 +01006544static void gen6_update_ring_freq(struct drm_i915_private *dev_priv)
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006545{
6546 int min_freq = 15;
Chris Wilson3ebecd02013-04-12 19:10:13 +01006547 unsigned int gpu_freq;
6548 unsigned int max_ia_freq, min_ring_freq;
Akash Goel4c8c7742015-06-29 14:50:20 +05306549 unsigned int max_gpu_freq, min_gpu_freq;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006550 int scaling_factor = 180;
Ben Widawskyeda79642013-10-07 17:15:48 -03006551 struct cpufreq_policy *policy;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006552
Jesse Barnes4fc688c2012-11-02 11:14:01 -07006553 WARN_ON(!mutex_is_locked(&dev_priv->rps.hw_lock));
Daniel Vetter79f5b2c2012-06-24 16:42:33 +02006554
Ben Widawskyeda79642013-10-07 17:15:48 -03006555 policy = cpufreq_cpu_get(0);
6556 if (policy) {
6557 max_ia_freq = policy->cpuinfo.max_freq;
6558 cpufreq_cpu_put(policy);
6559 } else {
6560 /*
6561 * Default to measured freq if none found, PCU will ensure we
6562 * don't go over
6563 */
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006564 max_ia_freq = tsc_khz;
Ben Widawskyeda79642013-10-07 17:15:48 -03006565 }
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006566
6567 /* Convert from kHz to MHz */
6568 max_ia_freq /= 1000;
6569
Ben Widawsky153b4b952013-10-22 22:05:09 -07006570 min_ring_freq = I915_READ(DCLK) & 0xf;
Ben Widawskyf6aca452013-10-02 09:25:02 -07006571 /* convert DDR frequency from units of 266.6MHz to bandwidth */
6572 min_ring_freq = mult_frac(min_ring_freq, 8, 3);
Chris Wilson3ebecd02013-04-12 19:10:13 +01006573
Rodrigo Vivib976dc52017-01-23 10:32:37 -08006574 if (IS_GEN9_BC(dev_priv)) {
Akash Goel4c8c7742015-06-29 14:50:20 +05306575 /* Convert GT frequency to 50 HZ units */
6576 min_gpu_freq = dev_priv->rps.min_freq / GEN9_FREQ_SCALER;
6577 max_gpu_freq = dev_priv->rps.max_freq / GEN9_FREQ_SCALER;
6578 } else {
6579 min_gpu_freq = dev_priv->rps.min_freq;
6580 max_gpu_freq = dev_priv->rps.max_freq;
6581 }
6582
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006583 /*
6584 * For each potential GPU frequency, load a ring frequency we'd like
6585 * to use for memory access. We do this by specifying the IA frequency
6586 * the PCU should use as a reference to determine the ring frequency.
6587 */
Akash Goel4c8c7742015-06-29 14:50:20 +05306588 for (gpu_freq = max_gpu_freq; gpu_freq >= min_gpu_freq; gpu_freq--) {
6589 int diff = max_gpu_freq - gpu_freq;
Chris Wilson3ebecd02013-04-12 19:10:13 +01006590 unsigned int ia_freq = 0, ring_freq = 0;
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006591
Rodrigo Vivib976dc52017-01-23 10:32:37 -08006592 if (IS_GEN9_BC(dev_priv)) {
Akash Goel4c8c7742015-06-29 14:50:20 +05306593 /*
6594 * ring_freq = 2 * GT. ring_freq is in 100MHz units
6595 * No floor required for ring frequency on SKL.
6596 */
6597 ring_freq = gpu_freq;
Chris Wilsondc979972016-05-10 14:10:04 +01006598 } else if (INTEL_INFO(dev_priv)->gen >= 8) {
Ben Widawsky46c764d2013-11-02 21:07:49 -07006599 /* max(2 * GT, DDR). NB: GT is 50MHz units */
6600 ring_freq = max(min_ring_freq, gpu_freq);
Chris Wilsondc979972016-05-10 14:10:04 +01006601 } else if (IS_HASWELL(dev_priv)) {
Ben Widawskyf6aca452013-10-02 09:25:02 -07006602 ring_freq = mult_frac(gpu_freq, 5, 4);
Chris Wilson3ebecd02013-04-12 19:10:13 +01006603 ring_freq = max(min_ring_freq, ring_freq);
6604 /* leave ia_freq as the default, chosen by cpufreq */
6605 } else {
6606 /* On older processors, there is no separate ring
6607 * clock domain, so in order to boost the bandwidth
6608 * of the ring, we need to upclock the CPU (ia_freq).
6609 *
6610 * For GPU frequencies less than 750MHz,
6611 * just use the lowest ring freq.
6612 */
6613 if (gpu_freq < min_freq)
6614 ia_freq = 800;
6615 else
6616 ia_freq = max_ia_freq - ((diff * scaling_factor) / 2);
6617 ia_freq = DIV_ROUND_CLOSEST(ia_freq, 100);
6618 }
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006619
Ben Widawsky42c05262012-09-26 10:34:00 -07006620 sandybridge_pcode_write(dev_priv,
6621 GEN6_PCODE_WRITE_MIN_FREQ_TABLE,
Chris Wilson3ebecd02013-04-12 19:10:13 +01006622 ia_freq << GEN6_PCODE_FREQ_IA_RATIO_SHIFT |
6623 ring_freq << GEN6_PCODE_FREQ_RING_RATIO_SHIFT |
6624 gpu_freq);
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006625 }
Eugeni Dodonov2b4e57b2012-04-18 15:29:23 -03006626}
6627
Ville Syrjälä03af2042014-06-28 02:03:53 +03006628static int cherryview_rps_max_freq(struct drm_i915_private *dev_priv)
Deepak S2b6b3a02014-05-27 15:59:30 +05306629{
6630 u32 val, rp0;
6631
Jani Nikula5b5929c2015-10-07 11:17:46 +03006632 val = vlv_punit_read(dev_priv, FB_GFX_FMAX_AT_VMAX_FUSE);
Deepak S2b6b3a02014-05-27 15:59:30 +05306633
Imre Deak43b67992016-08-31 19:13:02 +03006634 switch (INTEL_INFO(dev_priv)->sseu.eu_total) {
Jani Nikula5b5929c2015-10-07 11:17:46 +03006635 case 8:
6636 /* (2 * 4) config */
6637 rp0 = (val >> FB_GFX_FMAX_AT_VMAX_2SS4EU_FUSE_SHIFT);
6638 break;
6639 case 12:
6640 /* (2 * 6) config */
6641 rp0 = (val >> FB_GFX_FMAX_AT_VMAX_2SS6EU_FUSE_SHIFT);
6642 break;
6643 case 16:
6644 /* (2 * 8) config */
6645 default:
6646 /* Setting (2 * 8) Min RP0 for any other combination */
6647 rp0 = (val >> FB_GFX_FMAX_AT_VMAX_2SS8EU_FUSE_SHIFT);
6648 break;
Deepak S095acd52015-01-17 11:05:59 +05306649 }
Jani Nikula5b5929c2015-10-07 11:17:46 +03006650
6651 rp0 = (rp0 & FB_GFX_FREQ_FUSE_MASK);
6652
Deepak S2b6b3a02014-05-27 15:59:30 +05306653 return rp0;
6654}
6655
6656static int cherryview_rps_rpe_freq(struct drm_i915_private *dev_priv)
6657{
6658 u32 val, rpe;
6659
6660 val = vlv_punit_read(dev_priv, PUNIT_GPU_DUTYCYCLE_REG);
6661 rpe = (val >> PUNIT_GPU_DUTYCYCLE_RPE_FREQ_SHIFT) & PUNIT_GPU_DUTYCYCLE_RPE_FREQ_MASK;
6662
6663 return rpe;
6664}
6665
Deepak S7707df42014-07-12 18:46:14 +05306666static int cherryview_rps_guar_freq(struct drm_i915_private *dev_priv)
6667{
6668 u32 val, rp1;
6669
Jani Nikula5b5929c2015-10-07 11:17:46 +03006670 val = vlv_punit_read(dev_priv, FB_GFX_FMAX_AT_VMAX_FUSE);
6671 rp1 = (val & FB_GFX_FREQ_FUSE_MASK);
6672
Deepak S7707df42014-07-12 18:46:14 +05306673 return rp1;
6674}
6675
Deepak S96676fe2016-08-12 18:46:41 +05306676static u32 cherryview_rps_min_freq(struct drm_i915_private *dev_priv)
6677{
6678 u32 val, rpn;
6679
6680 val = vlv_punit_read(dev_priv, FB_GFX_FMIN_AT_VMIN_FUSE);
6681 rpn = ((val >> FB_GFX_FMIN_AT_VMIN_FUSE_SHIFT) &
6682 FB_GFX_FREQ_FUSE_MASK);
6683
6684 return rpn;
6685}
6686
Deepak Sf8f2b002014-07-10 13:16:21 +05306687static int valleyview_rps_guar_freq(struct drm_i915_private *dev_priv)
6688{
6689 u32 val, rp1;
6690
6691 val = vlv_nc_read(dev_priv, IOSF_NC_FB_GFX_FREQ_FUSE);
6692
6693 rp1 = (val & FB_GFX_FGUARANTEED_FREQ_FUSE_MASK) >> FB_GFX_FGUARANTEED_FREQ_FUSE_SHIFT;
6694
6695 return rp1;
6696}
6697
Ville Syrjälä03af2042014-06-28 02:03:53 +03006698static int valleyview_rps_max_freq(struct drm_i915_private *dev_priv)
Jesse Barnes0a073b82013-04-17 15:54:58 -07006699{
6700 u32 val, rp0;
6701
Jani Nikula64936252013-05-22 15:36:20 +03006702 val = vlv_nc_read(dev_priv, IOSF_NC_FB_GFX_FREQ_FUSE);
Jesse Barnes0a073b82013-04-17 15:54:58 -07006703
6704 rp0 = (val & FB_GFX_MAX_FREQ_FUSE_MASK) >> FB_GFX_MAX_FREQ_FUSE_SHIFT;
6705 /* Clamp to max */
6706 rp0 = min_t(u32, rp0, 0xea);
6707
6708 return rp0;
6709}
6710
6711static int valleyview_rps_rpe_freq(struct drm_i915_private *dev_priv)
6712{
6713 u32 val, rpe;
6714
Jani Nikula64936252013-05-22 15:36:20 +03006715 val = vlv_nc_read(dev_priv, IOSF_NC_FB_GFX_FMAX_FUSE_LO);
Jesse Barnes0a073b82013-04-17 15:54:58 -07006716 rpe = (val & FB_FMAX_VMIN_FREQ_LO_MASK) >> FB_FMAX_VMIN_FREQ_LO_SHIFT;
Jani Nikula64936252013-05-22 15:36:20 +03006717 val = vlv_nc_read(dev_priv, IOSF_NC_FB_GFX_FMAX_FUSE_HI);
Jesse Barnes0a073b82013-04-17 15:54:58 -07006718 rpe |= (val & FB_FMAX_VMIN_FREQ_HI_MASK) << 5;
6719
6720 return rpe;
6721}
6722
Ville Syrjälä03af2042014-06-28 02:03:53 +03006723static int valleyview_rps_min_freq(struct drm_i915_private *dev_priv)
Jesse Barnes0a073b82013-04-17 15:54:58 -07006724{
Imre Deak36146032014-12-04 18:39:35 +02006725 u32 val;
6726
6727 val = vlv_punit_read(dev_priv, PUNIT_REG_GPU_LFM) & 0xff;
6728 /*
6729 * According to the BYT Punit GPU turbo HAS 1.1.6.3 the minimum value
6730 * for the minimum frequency in GPLL mode is 0xc1. Contrary to this on
6731 * a BYT-M B0 the above register contains 0xbf. Moreover when setting
6732 * a frequency Punit will not allow values below 0xc0. Clamp it 0xc0
6733 * to make sure it matches what Punit accepts.
6734 */
6735 return max_t(u32, val, 0xc0);
Jesse Barnes0a073b82013-04-17 15:54:58 -07006736}
6737
Imre Deakae484342014-03-31 15:10:44 +03006738/* Check that the pctx buffer wasn't move under us. */
6739static void valleyview_check_pctx(struct drm_i915_private *dev_priv)
6740{
6741 unsigned long pctx_addr = I915_READ(VLV_PCBR) & ~4095;
6742
6743 WARN_ON(pctx_addr != dev_priv->mm.stolen_base +
6744 dev_priv->vlv_pctx->stolen->start);
6745}
6746
Deepak S38807742014-05-23 21:00:15 +05306747
6748/* Check that the pcbr address is not empty. */
6749static void cherryview_check_pctx(struct drm_i915_private *dev_priv)
6750{
6751 unsigned long pctx_addr = I915_READ(VLV_PCBR) & ~4095;
6752
6753 WARN_ON((pctx_addr >> VLV_PCBR_ADDR_SHIFT) == 0);
6754}
6755
Chris Wilsondc979972016-05-10 14:10:04 +01006756static void cherryview_setup_pctx(struct drm_i915_private *dev_priv)
Deepak S38807742014-05-23 21:00:15 +05306757{
Joonas Lahtinen62106b42016-03-18 10:42:57 +02006758 struct i915_ggtt *ggtt = &dev_priv->ggtt;
Joonas Lahtinen72e96d62016-03-30 16:57:10 +03006759 unsigned long pctx_paddr, paddr;
Deepak S38807742014-05-23 21:00:15 +05306760 u32 pcbr;
6761 int pctx_size = 32*1024;
6762
Deepak S38807742014-05-23 21:00:15 +05306763 pcbr = I915_READ(VLV_PCBR);
6764 if ((pcbr >> VLV_PCBR_ADDR_SHIFT) == 0) {
Ville Syrjäläce611ef2014-11-07 21:33:46 +02006765 DRM_DEBUG_DRIVER("BIOS didn't set up PCBR, fixing up\n");
Deepak S38807742014-05-23 21:00:15 +05306766 paddr = (dev_priv->mm.stolen_base +
Joonas Lahtinen62106b42016-03-18 10:42:57 +02006767 (ggtt->stolen_size - pctx_size));
Deepak S38807742014-05-23 21:00:15 +05306768
6769 pctx_paddr = (paddr & (~4095));
6770 I915_WRITE(VLV_PCBR, pctx_paddr);
6771 }
Ville Syrjäläce611ef2014-11-07 21:33:46 +02006772
6773 DRM_DEBUG_DRIVER("PCBR: 0x%08x\n", I915_READ(VLV_PCBR));
Deepak S38807742014-05-23 21:00:15 +05306774}
6775
Chris Wilsondc979972016-05-10 14:10:04 +01006776static void valleyview_setup_pctx(struct drm_i915_private *dev_priv)
Jesse Barnesc9cddff2013-05-08 10:45:13 -07006777{
Jesse Barnesc9cddff2013-05-08 10:45:13 -07006778 struct drm_i915_gem_object *pctx;
6779 unsigned long pctx_paddr;
6780 u32 pcbr;
6781 int pctx_size = 24*1024;
6782
6783 pcbr = I915_READ(VLV_PCBR);
6784 if (pcbr) {
6785 /* BIOS set it up already, grab the pre-alloc'd space */
6786 int pcbr_offset;
6787
6788 pcbr_offset = (pcbr & (~4095)) - dev_priv->mm.stolen_base;
Tvrtko Ursulin187685c2016-12-01 14:16:36 +00006789 pctx = i915_gem_object_create_stolen_for_preallocated(dev_priv,
Jesse Barnesc9cddff2013-05-08 10:45:13 -07006790 pcbr_offset,
Daniel Vetter190d6cd2013-07-04 13:06:28 +02006791 I915_GTT_OFFSET_NONE,
Jesse Barnesc9cddff2013-05-08 10:45:13 -07006792 pctx_size);
6793 goto out;
6794 }
6795
Ville Syrjäläce611ef2014-11-07 21:33:46 +02006796 DRM_DEBUG_DRIVER("BIOS didn't set up PCBR, fixing up\n");
6797
Jesse Barnesc9cddff2013-05-08 10:45:13 -07006798 /*
6799 * From the Gunit register HAS:
6800 * The Gfx driver is expected to program this register and ensure
6801 * proper allocation within Gfx stolen memory. For example, this
6802 * register should be programmed such than the PCBR range does not
6803 * overlap with other ranges, such as the frame buffer, protected
6804 * memory, or any other relevant ranges.
6805 */
Tvrtko Ursulin187685c2016-12-01 14:16:36 +00006806 pctx = i915_gem_object_create_stolen(dev_priv, pctx_size);
Jesse Barnesc9cddff2013-05-08 10:45:13 -07006807 if (!pctx) {
6808 DRM_DEBUG("not enough stolen space for PCTX, disabling\n");
Tvrtko Ursulinee504892016-02-11 10:27:30 +00006809 goto out;
Jesse Barnesc9cddff2013-05-08 10:45:13 -07006810 }
6811
6812 pctx_paddr = dev_priv->mm.stolen_base + pctx->stolen->start;
6813 I915_WRITE(VLV_PCBR, pctx_paddr);
6814
6815out:
Ville Syrjäläce611ef2014-11-07 21:33:46 +02006816 DRM_DEBUG_DRIVER("PCBR: 0x%08x\n", I915_READ(VLV_PCBR));
Jesse Barnesc9cddff2013-05-08 10:45:13 -07006817 dev_priv->vlv_pctx = pctx;
6818}
6819
Chris Wilsondc979972016-05-10 14:10:04 +01006820static void valleyview_cleanup_pctx(struct drm_i915_private *dev_priv)
Imre Deakae484342014-03-31 15:10:44 +03006821{
Imre Deakae484342014-03-31 15:10:44 +03006822 if (WARN_ON(!dev_priv->vlv_pctx))
6823 return;
6824
Chris Wilsonf0cd5182016-10-28 13:58:43 +01006825 i915_gem_object_put(dev_priv->vlv_pctx);
Imre Deakae484342014-03-31 15:10:44 +03006826 dev_priv->vlv_pctx = NULL;
6827}
6828
Ville Syrjäläc30fec62016-03-04 21:43:02 +02006829static void vlv_init_gpll_ref_freq(struct drm_i915_private *dev_priv)
6830{
6831 dev_priv->rps.gpll_ref_freq =
6832 vlv_get_cck_clock(dev_priv, "GPLL ref",
6833 CCK_GPLL_CLOCK_CONTROL,
6834 dev_priv->czclk_freq);
6835
6836 DRM_DEBUG_DRIVER("GPLL reference freq: %d kHz\n",
6837 dev_priv->rps.gpll_ref_freq);
6838}
6839
Chris Wilsondc979972016-05-10 14:10:04 +01006840static void valleyview_init_gt_powersave(struct drm_i915_private *dev_priv)
Imre Deak4e805192014-04-14 20:24:41 +03006841{
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006842 u32 val;
Imre Deak4e805192014-04-14 20:24:41 +03006843
Chris Wilsondc979972016-05-10 14:10:04 +01006844 valleyview_setup_pctx(dev_priv);
Imre Deak4e805192014-04-14 20:24:41 +03006845
Ville Syrjäläc30fec62016-03-04 21:43:02 +02006846 vlv_init_gpll_ref_freq(dev_priv);
6847
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006848 val = vlv_punit_read(dev_priv, PUNIT_REG_GPU_FREQ_STS);
6849 switch ((val >> 6) & 3) {
6850 case 0:
6851 case 1:
6852 dev_priv->mem_freq = 800;
6853 break;
6854 case 2:
6855 dev_priv->mem_freq = 1066;
6856 break;
6857 case 3:
6858 dev_priv->mem_freq = 1333;
6859 break;
6860 }
Ville Syrjälä80b83b62014-11-10 22:55:14 +02006861 DRM_DEBUG_DRIVER("DDR speed: %d MHz\n", dev_priv->mem_freq);
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006862
Imre Deak4e805192014-04-14 20:24:41 +03006863 dev_priv->rps.max_freq = valleyview_rps_max_freq(dev_priv);
6864 dev_priv->rps.rp0_freq = dev_priv->rps.max_freq;
6865 DRM_DEBUG_DRIVER("max GPU freq: %d MHz (%u)\n",
Ville Syrjälä7c59a9c12015-01-23 21:04:26 +02006866 intel_gpu_freq(dev_priv, dev_priv->rps.max_freq),
Imre Deak4e805192014-04-14 20:24:41 +03006867 dev_priv->rps.max_freq);
6868
6869 dev_priv->rps.efficient_freq = valleyview_rps_rpe_freq(dev_priv);
6870 DRM_DEBUG_DRIVER("RPe GPU freq: %d MHz (%u)\n",
Ville Syrjälä7c59a9c12015-01-23 21:04:26 +02006871 intel_gpu_freq(dev_priv, dev_priv->rps.efficient_freq),
Imre Deak4e805192014-04-14 20:24:41 +03006872 dev_priv->rps.efficient_freq);
6873
Deepak Sf8f2b002014-07-10 13:16:21 +05306874 dev_priv->rps.rp1_freq = valleyview_rps_guar_freq(dev_priv);
6875 DRM_DEBUG_DRIVER("RP1(Guar Freq) GPU freq: %d MHz (%u)\n",
Ville Syrjälä7c59a9c12015-01-23 21:04:26 +02006876 intel_gpu_freq(dev_priv, dev_priv->rps.rp1_freq),
Deepak Sf8f2b002014-07-10 13:16:21 +05306877 dev_priv->rps.rp1_freq);
6878
Imre Deak4e805192014-04-14 20:24:41 +03006879 dev_priv->rps.min_freq = valleyview_rps_min_freq(dev_priv);
6880 DRM_DEBUG_DRIVER("min GPU freq: %d MHz (%u)\n",
Ville Syrjälä7c59a9c12015-01-23 21:04:26 +02006881 intel_gpu_freq(dev_priv, dev_priv->rps.min_freq),
Imre Deak4e805192014-04-14 20:24:41 +03006882 dev_priv->rps.min_freq);
Imre Deak4e805192014-04-14 20:24:41 +03006883}
6884
Chris Wilsondc979972016-05-10 14:10:04 +01006885static void cherryview_init_gt_powersave(struct drm_i915_private *dev_priv)
Deepak S38807742014-05-23 21:00:15 +05306886{
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006887 u32 val;
Deepak S2b6b3a02014-05-27 15:59:30 +05306888
Chris Wilsondc979972016-05-10 14:10:04 +01006889 cherryview_setup_pctx(dev_priv);
Deepak S2b6b3a02014-05-27 15:59:30 +05306890
Ville Syrjäläc30fec62016-03-04 21:43:02 +02006891 vlv_init_gpll_ref_freq(dev_priv);
6892
Ville Syrjäläa5805162015-05-26 20:42:30 +03006893 mutex_lock(&dev_priv->sb_lock);
Ville Syrjäläc6e8f392014-11-07 21:33:43 +02006894 val = vlv_cck_read(dev_priv, CCK_FUSE_REG);
Ville Syrjäläa5805162015-05-26 20:42:30 +03006895 mutex_unlock(&dev_priv->sb_lock);
Ville Syrjäläc6e8f392014-11-07 21:33:43 +02006896
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006897 switch ((val >> 2) & 0x7) {
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006898 case 3:
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006899 dev_priv->mem_freq = 2000;
6900 break;
Ville Syrjäläbfa7df02015-09-24 23:29:18 +03006901 default:
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006902 dev_priv->mem_freq = 1600;
6903 break;
6904 }
Ville Syrjälä80b83b62014-11-10 22:55:14 +02006905 DRM_DEBUG_DRIVER("DDR speed: %d MHz\n", dev_priv->mem_freq);
Ville Syrjälä2bb25c12014-08-18 14:42:44 +03006906
Deepak S2b6b3a02014-05-27 15:59:30 +05306907 dev_priv->rps.max_freq = cherryview_rps_max_freq(dev_priv);
6908 dev_priv->rps.rp0_freq = dev_priv->rps.max_freq;
6909 DRM_DEBUG_DRIVER("max GPU freq: %d MHz (%u)\n",
Ville Syrjälä7c59a9c12015-01-23 21:04:26 +02006910 intel_gpu_freq(dev_priv, dev_priv->rps.max_freq),
Deepak S2b6b3a02014-05-27 15:59:30 +05306911 dev_priv->rps.max_freq);
6912
6913 dev_priv->rps.efficient_freq = cherryview_rps_rpe_freq(dev_priv);
6914 DRM_DEBUG_DRIVER("RPe GPU freq: %d MHz (%u)\n",
Ville Syrjälä7c59a9c12015-01-23 21:04:26 +02006915 intel_gpu_freq(dev_priv, dev_priv->rps.efficient_freq),
Deepak S2b6b3a02014-05-27 15:59:30 +05306916 dev_priv->rps.efficient_freq);
6917
Deepak S7707df42014-07-12 18:46:14 +05306918 dev_priv->rps.rp1_freq = cherryview_rps_guar_freq(dev_priv);
6919 DRM_DEBUG_DRIVER("RP1(Guar) GPU freq: %d MHz (%u)\n",
Ville Syrjälä7c59a9c12015-01-23 21:04:26 +02006920 intel_gpu_freq(dev_priv, dev_priv->rps.rp1_freq),
Deepak S7707df42014-07-12 18:46:14 +05306921 dev_priv->rps.rp1_freq);
6922
Deepak S96676fe2016-08-12 18:46:41 +05306923 dev_priv->rps.min_freq = cherryview_rps_min_freq(dev_priv);
Deepak S2b6b3a02014-05-27 15:59:30 +05306924 DRM_DEBUG_DRIVER("min GPU freq: %d MHz (%u)\n",
Ville Syrjälä7c59a9c12015-01-23 21:04:26 +02006925 intel_gpu_freq(dev_priv, dev_priv->rps.min_freq),
Deepak S2b6b3a02014-05-27 15:59:30 +05306926 dev_priv->rps.min_freq);
6927
Ville Syrjälä1c147622014-08-18 14:42:43 +03006928 WARN_ONCE((dev_priv->rps.max_freq |
6929 dev_priv->rps.efficient_freq |
6930 dev_priv->rps.rp1_freq |
6931 dev_priv->rps.min_freq) & 1,
6932 "Odd GPU freq values\n");
Deepak S38807742014-05-23 21:00:15 +05306933}
6934
Chris Wilsondc979972016-05-10 14:10:04 +01006935static void valleyview_cleanup_gt_powersave(struct drm_i915_private *dev_priv)
Imre Deak4e805192014-04-14 20:24:41 +03006936{
Chris Wilsondc979972016-05-10 14:10:04 +01006937 valleyview_cleanup_pctx(dev_priv);
Imre Deak4e805192014-04-14 20:24:41 +03006938}
6939
Chris Wilsondc979972016-05-10 14:10:04 +01006940static void cherryview_enable_rps(struct drm_i915_private *dev_priv)
Deepak S38807742014-05-23 21:00:15 +05306941{
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00006942 struct intel_engine_cs *engine;
Akash Goel3b3f1652016-10-13 22:44:48 +05306943 enum intel_engine_id id;
Deepak S2b6b3a02014-05-27 15:59:30 +05306944 u32 gtfifodbg, val, rc6_mode = 0, pcbr;
Deepak S38807742014-05-23 21:00:15 +05306945
6946 WARN_ON(!mutex_is_locked(&dev_priv->rps.hw_lock));
6947
Ville Syrjälä297b32e2016-04-13 21:09:30 +03006948 gtfifodbg = I915_READ(GTFIFODBG) & ~(GT_FIFO_SBDEDICATE_FREE_ENTRY_CHV |
6949 GT_FIFO_FREE_ENTRIES_CHV);
Deepak S38807742014-05-23 21:00:15 +05306950 if (gtfifodbg) {
6951 DRM_DEBUG_DRIVER("GT fifo had a previous error %x\n",
6952 gtfifodbg);
6953 I915_WRITE(GTFIFODBG, gtfifodbg);
6954 }
6955
6956 cherryview_check_pctx(dev_priv);
6957
6958 /* 1a & 1b: Get forcewake during program sequence. Although the driver
6959 * hasn't enabled a state yet where we need forcewake, BIOS may have.*/
Mika Kuoppala59bad942015-01-16 11:34:40 +02006960 intel_uncore_forcewake_get(dev_priv, FORCEWAKE_ALL);
Deepak S38807742014-05-23 21:00:15 +05306961
Ville Syrjälä160614a2015-01-19 13:50:47 +02006962 /* Disable RC states. */
6963 I915_WRITE(GEN6_RC_CONTROL, 0);
6964
Deepak S38807742014-05-23 21:00:15 +05306965 /* 2a: Program RC6 thresholds.*/
6966 I915_WRITE(GEN6_RC6_WAKE_RATE_LIMIT, 40 << 16);
6967 I915_WRITE(GEN6_RC_EVALUATION_INTERVAL, 125000); /* 12500 * 1280ns */
6968 I915_WRITE(GEN6_RC_IDLE_HYSTERSIS, 25); /* 25 * 1280ns */
6969
Akash Goel3b3f1652016-10-13 22:44:48 +05306970 for_each_engine(engine, dev_priv, id)
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00006971 I915_WRITE(RING_MAX_IDLE(engine->mmio_base), 10);
Deepak S38807742014-05-23 21:00:15 +05306972 I915_WRITE(GEN6_RC_SLEEP, 0);
6973
Deepak Sf4f71c72015-03-28 15:23:35 +05306974 /* TO threshold set to 500 us ( 0x186 * 1.28 us) */
6975 I915_WRITE(GEN6_RC6_THRESHOLD, 0x186);
Deepak S38807742014-05-23 21:00:15 +05306976
6977 /* allows RC6 residency counter to work */
6978 I915_WRITE(VLV_COUNTER_CONTROL,
6979 _MASKED_BIT_ENABLE(VLV_COUNT_RANGE_HIGH |
6980 VLV_MEDIA_RC6_COUNT_EN |
6981 VLV_RENDER_RC6_COUNT_EN));
6982
6983 /* For now we assume BIOS is allocating and populating the PCBR */
6984 pcbr = I915_READ(VLV_PCBR);
6985
Deepak S38807742014-05-23 21:00:15 +05306986 /* 3: Enable RC6 */
Chris Wilsondc979972016-05-10 14:10:04 +01006987 if ((intel_enable_rc6() & INTEL_RC6_ENABLE) &&
6988 (pcbr >> VLV_PCBR_ADDR_SHIFT))
Ville Syrjäläaf5a75a2015-01-19 13:50:50 +02006989 rc6_mode = GEN7_RC_CTL_TO_MODE;
Deepak S38807742014-05-23 21:00:15 +05306990
6991 I915_WRITE(GEN6_RC_CONTROL, rc6_mode);
6992
Deepak S2b6b3a02014-05-27 15:59:30 +05306993 /* 4 Program defaults and thresholds for RPS*/
Ville Syrjälä3cbdb482015-01-19 13:50:49 +02006994 I915_WRITE(GEN6_RP_DOWN_TIMEOUT, 1000000);
Deepak S2b6b3a02014-05-27 15:59:30 +05306995 I915_WRITE(GEN6_RP_UP_THRESHOLD, 59400);
6996 I915_WRITE(GEN6_RP_DOWN_THRESHOLD, 245000);
6997 I915_WRITE(GEN6_RP_UP_EI, 66000);
6998 I915_WRITE(GEN6_RP_DOWN_EI, 350000);
6999
7000 I915_WRITE(GEN6_RP_IDLE_HYSTERSIS, 10);
7001
7002 /* 5: Enable RPS */
7003 I915_WRITE(GEN6_RP_CONTROL,
7004 GEN6_RP_MEDIA_HW_NORMAL_MODE |
Ville Syrjäläeb973a52015-01-21 19:37:59 +02007005 GEN6_RP_MEDIA_IS_GFX |
Deepak S2b6b3a02014-05-27 15:59:30 +05307006 GEN6_RP_ENABLE |
7007 GEN6_RP_UP_BUSY_AVG |
7008 GEN6_RP_DOWN_IDLE_AVG);
7009
Deepak S3ef62342015-04-29 08:36:24 +05307010 /* Setting Fixed Bias */
7011 val = VLV_OVERRIDE_EN |
7012 VLV_SOC_TDP_EN |
7013 CHV_BIAS_CPU_50_SOC_50;
7014 vlv_punit_write(dev_priv, VLV_TURBO_SOC_OVERRIDE, val);
7015
Deepak S2b6b3a02014-05-27 15:59:30 +05307016 val = vlv_punit_read(dev_priv, PUNIT_REG_GPU_FREQ_STS);
7017
Ville Syrjälä8d40c3a2014-11-07 21:33:45 +02007018 /* RPS code assumes GPLL is used */
7019 WARN_ONCE((val & GPLLENABLE) == 0, "GPLL not enabled\n");
7020
Jani Nikula742f4912015-09-03 11:16:09 +03007021 DRM_DEBUG_DRIVER("GPLL enabled? %s\n", yesno(val & GPLLENABLE));
Deepak S2b6b3a02014-05-27 15:59:30 +05307022 DRM_DEBUG_DRIVER("GPU status: 0x%08x\n", val);
7023
Chris Wilson3a45b052016-07-13 09:10:32 +01007024 reset_rps(dev_priv, valleyview_set_rps);
Deepak S2b6b3a02014-05-27 15:59:30 +05307025
Mika Kuoppala59bad942015-01-16 11:34:40 +02007026 intel_uncore_forcewake_put(dev_priv, FORCEWAKE_ALL);
Deepak S38807742014-05-23 21:00:15 +05307027}
7028
Chris Wilsondc979972016-05-10 14:10:04 +01007029static void valleyview_enable_rps(struct drm_i915_private *dev_priv)
Jesse Barnes0a073b82013-04-17 15:54:58 -07007030{
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00007031 struct intel_engine_cs *engine;
Akash Goel3b3f1652016-10-13 22:44:48 +05307032 enum intel_engine_id id;
Ben Widawsky2a5913a2014-03-19 18:31:13 -07007033 u32 gtfifodbg, val, rc6_mode = 0;
Jesse Barnes0a073b82013-04-17 15:54:58 -07007034
7035 WARN_ON(!mutex_is_locked(&dev_priv->rps.hw_lock));
7036
Imre Deakae484342014-03-31 15:10:44 +03007037 valleyview_check_pctx(dev_priv);
7038
Ville Syrjälä297b32e2016-04-13 21:09:30 +03007039 gtfifodbg = I915_READ(GTFIFODBG);
7040 if (gtfifodbg) {
Jesse Barnesf7d85c12013-09-27 10:40:54 -07007041 DRM_DEBUG_DRIVER("GT fifo had a previous error %x\n",
7042 gtfifodbg);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007043 I915_WRITE(GTFIFODBG, gtfifodbg);
7044 }
7045
Deepak Sc8d9a592013-11-23 14:55:42 +05307046 /* If VLV, Forcewake all wells, else re-direct to regular path */
Mika Kuoppala59bad942015-01-16 11:34:40 +02007047 intel_uncore_forcewake_get(dev_priv, FORCEWAKE_ALL);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007048
Ville Syrjälä160614a2015-01-19 13:50:47 +02007049 /* Disable RC states. */
7050 I915_WRITE(GEN6_RC_CONTROL, 0);
7051
Ville Syrjäläcad725f2015-01-19 13:50:48 +02007052 I915_WRITE(GEN6_RP_DOWN_TIMEOUT, 1000000);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007053 I915_WRITE(GEN6_RP_UP_THRESHOLD, 59400);
7054 I915_WRITE(GEN6_RP_DOWN_THRESHOLD, 245000);
7055 I915_WRITE(GEN6_RP_UP_EI, 66000);
7056 I915_WRITE(GEN6_RP_DOWN_EI, 350000);
7057
7058 I915_WRITE(GEN6_RP_IDLE_HYSTERSIS, 10);
7059
7060 I915_WRITE(GEN6_RP_CONTROL,
7061 GEN6_RP_MEDIA_TURBO |
7062 GEN6_RP_MEDIA_HW_NORMAL_MODE |
7063 GEN6_RP_MEDIA_IS_GFX |
7064 GEN6_RP_ENABLE |
7065 GEN6_RP_UP_BUSY_AVG |
7066 GEN6_RP_DOWN_IDLE_CONT);
7067
7068 I915_WRITE(GEN6_RC6_WAKE_RATE_LIMIT, 0x00280000);
7069 I915_WRITE(GEN6_RC_EVALUATION_INTERVAL, 125000);
7070 I915_WRITE(GEN6_RC_IDLE_HYSTERSIS, 25);
7071
Akash Goel3b3f1652016-10-13 22:44:48 +05307072 for_each_engine(engine, dev_priv, id)
Tvrtko Ursuline2f80392016-03-16 11:00:36 +00007073 I915_WRITE(RING_MAX_IDLE(engine->mmio_base), 10);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007074
Jesse Barnes2f0aa302013-11-15 09:32:11 -08007075 I915_WRITE(GEN6_RC6_THRESHOLD, 0x557);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007076
7077 /* allows RC6 residency counter to work */
Jesse Barnes49798eb2013-09-26 17:55:57 -07007078 I915_WRITE(VLV_COUNTER_CONTROL,
Mika Kuoppala6b7f6aa2017-03-15 18:12:59 +02007079 _MASKED_BIT_ENABLE(VLV_COUNT_RANGE_HIGH |
7080 VLV_MEDIA_RC0_COUNT_EN |
Deepak S31685c22014-07-03 17:33:01 -04007081 VLV_RENDER_RC0_COUNT_EN |
Jesse Barnes49798eb2013-09-26 17:55:57 -07007082 VLV_MEDIA_RC6_COUNT_EN |
7083 VLV_RENDER_RC6_COUNT_EN));
Deepak S31685c22014-07-03 17:33:01 -04007084
Chris Wilsondc979972016-05-10 14:10:04 +01007085 if (intel_enable_rc6() & INTEL_RC6_ENABLE)
Jesse Barnes6b88f292013-11-15 09:32:12 -08007086 rc6_mode = GEN7_RC_CTL_TO_MODE | VLV_RC_CTL_CTX_RST_PARALLEL;
Ben Widawskydc39fff2013-10-18 12:32:07 -07007087
Chris Wilsondc979972016-05-10 14:10:04 +01007088 intel_print_rc6_info(dev_priv, rc6_mode);
Ben Widawskydc39fff2013-10-18 12:32:07 -07007089
Jesse Barnesa2b23fe2013-09-19 09:33:13 -07007090 I915_WRITE(GEN6_RC_CONTROL, rc6_mode);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007091
Deepak S3ef62342015-04-29 08:36:24 +05307092 /* Setting Fixed Bias */
7093 val = VLV_OVERRIDE_EN |
7094 VLV_SOC_TDP_EN |
7095 VLV_BIAS_CPU_125_SOC_875;
7096 vlv_punit_write(dev_priv, VLV_TURBO_SOC_OVERRIDE, val);
7097
Jani Nikula64936252013-05-22 15:36:20 +03007098 val = vlv_punit_read(dev_priv, PUNIT_REG_GPU_FREQ_STS);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007099
Ville Syrjälä8d40c3a2014-11-07 21:33:45 +02007100 /* RPS code assumes GPLL is used */
7101 WARN_ONCE((val & GPLLENABLE) == 0, "GPLL not enabled\n");
7102
Jani Nikula742f4912015-09-03 11:16:09 +03007103 DRM_DEBUG_DRIVER("GPLL enabled? %s\n", yesno(val & GPLLENABLE));
Jesse Barnes0a073b82013-04-17 15:54:58 -07007104 DRM_DEBUG_DRIVER("GPU status: 0x%08x\n", val);
7105
Chris Wilson3a45b052016-07-13 09:10:32 +01007106 reset_rps(dev_priv, valleyview_set_rps);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007107
Mika Kuoppala59bad942015-01-16 11:34:40 +02007108 intel_uncore_forcewake_put(dev_priv, FORCEWAKE_ALL);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007109}
7110
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007111static unsigned long intel_pxfreq(u32 vidfreq)
7112{
7113 unsigned long freq;
7114 int div = (vidfreq & 0x3f0000) >> 16;
7115 int post = (vidfreq & 0x3000) >> 12;
7116 int pre = (vidfreq & 0x7);
7117
7118 if (!pre)
7119 return 0;
7120
7121 freq = ((div * 133333) / ((1<<post) * pre));
7122
7123 return freq;
7124}
7125
Daniel Vettereb48eb02012-04-26 23:28:12 +02007126static const struct cparams {
7127 u16 i;
7128 u16 t;
7129 u16 m;
7130 u16 c;
7131} cparams[] = {
7132 { 1, 1333, 301, 28664 },
7133 { 1, 1066, 294, 24460 },
7134 { 1, 800, 294, 25192 },
7135 { 0, 1333, 276, 27605 },
7136 { 0, 1066, 276, 27605 },
7137 { 0, 800, 231, 23784 },
7138};
7139
Chris Wilsonf531dcb2012-09-25 10:16:12 +01007140static unsigned long __i915_chipset_val(struct drm_i915_private *dev_priv)
Daniel Vettereb48eb02012-04-26 23:28:12 +02007141{
7142 u64 total_count, diff, ret;
7143 u32 count1, count2, count3, m = 0, c = 0;
7144 unsigned long now = jiffies_to_msecs(jiffies), diff1;
7145 int i;
7146
Chris Wilson67520412017-03-02 13:28:01 +00007147 lockdep_assert_held(&mchdev_lock);
Daniel Vetter02d71952012-08-09 16:44:54 +02007148
Daniel Vetter20e4d402012-08-08 23:35:39 +02007149 diff1 = now - dev_priv->ips.last_time1;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007150
7151 /* Prevent division-by-zero if we are asking too fast.
7152 * Also, we don't get interesting results if we are polling
7153 * faster than once in 10ms, so just return the saved value
7154 * in such cases.
7155 */
7156 if (diff1 <= 10)
Daniel Vetter20e4d402012-08-08 23:35:39 +02007157 return dev_priv->ips.chipset_power;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007158
7159 count1 = I915_READ(DMIEC);
7160 count2 = I915_READ(DDREC);
7161 count3 = I915_READ(CSIEC);
7162
7163 total_count = count1 + count2 + count3;
7164
7165 /* FIXME: handle per-counter overflow */
Daniel Vetter20e4d402012-08-08 23:35:39 +02007166 if (total_count < dev_priv->ips.last_count1) {
7167 diff = ~0UL - dev_priv->ips.last_count1;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007168 diff += total_count;
7169 } else {
Daniel Vetter20e4d402012-08-08 23:35:39 +02007170 diff = total_count - dev_priv->ips.last_count1;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007171 }
7172
7173 for (i = 0; i < ARRAY_SIZE(cparams); i++) {
Daniel Vetter20e4d402012-08-08 23:35:39 +02007174 if (cparams[i].i == dev_priv->ips.c_m &&
7175 cparams[i].t == dev_priv->ips.r_t) {
Daniel Vettereb48eb02012-04-26 23:28:12 +02007176 m = cparams[i].m;
7177 c = cparams[i].c;
7178 break;
7179 }
7180 }
7181
7182 diff = div_u64(diff, diff1);
7183 ret = ((m * diff) + c);
7184 ret = div_u64(ret, 10);
7185
Daniel Vetter20e4d402012-08-08 23:35:39 +02007186 dev_priv->ips.last_count1 = total_count;
7187 dev_priv->ips.last_time1 = now;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007188
Daniel Vetter20e4d402012-08-08 23:35:39 +02007189 dev_priv->ips.chipset_power = ret;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007190
7191 return ret;
7192}
7193
Chris Wilsonf531dcb2012-09-25 10:16:12 +01007194unsigned long i915_chipset_val(struct drm_i915_private *dev_priv)
7195{
7196 unsigned long val;
7197
Chris Wilsondc979972016-05-10 14:10:04 +01007198 if (INTEL_INFO(dev_priv)->gen != 5)
Chris Wilsonf531dcb2012-09-25 10:16:12 +01007199 return 0;
7200
7201 spin_lock_irq(&mchdev_lock);
7202
7203 val = __i915_chipset_val(dev_priv);
7204
7205 spin_unlock_irq(&mchdev_lock);
7206
7207 return val;
7208}
7209
Daniel Vettereb48eb02012-04-26 23:28:12 +02007210unsigned long i915_mch_val(struct drm_i915_private *dev_priv)
7211{
7212 unsigned long m, x, b;
7213 u32 tsfs;
7214
7215 tsfs = I915_READ(TSFS);
7216
7217 m = ((tsfs & TSFS_SLOPE_MASK) >> TSFS_SLOPE_SHIFT);
7218 x = I915_READ8(TR1);
7219
7220 b = tsfs & TSFS_INTR_MASK;
7221
7222 return ((m * x) / 127) - b;
7223}
7224
Mika Kuoppalad972d6e2014-12-01 18:01:05 +02007225static int _pxvid_to_vd(u8 pxvid)
7226{
7227 if (pxvid == 0)
7228 return 0;
7229
7230 if (pxvid >= 8 && pxvid < 31)
7231 pxvid = 31;
7232
7233 return (pxvid + 2) * 125;
7234}
7235
7236static u32 pvid_to_extvid(struct drm_i915_private *dev_priv, u8 pxvid)
Daniel Vettereb48eb02012-04-26 23:28:12 +02007237{
Mika Kuoppalad972d6e2014-12-01 18:01:05 +02007238 const int vd = _pxvid_to_vd(pxvid);
7239 const int vm = vd - 1125;
7240
Chris Wilsondc979972016-05-10 14:10:04 +01007241 if (INTEL_INFO(dev_priv)->is_mobile)
Mika Kuoppalad972d6e2014-12-01 18:01:05 +02007242 return vm > 0 ? vm : 0;
7243
7244 return vd;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007245}
7246
Daniel Vetter02d71952012-08-09 16:44:54 +02007247static void __i915_update_gfx_val(struct drm_i915_private *dev_priv)
Daniel Vettereb48eb02012-04-26 23:28:12 +02007248{
Thomas Gleixner5ed0bdf2014-07-16 21:05:06 +00007249 u64 now, diff, diffms;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007250 u32 count;
7251
Chris Wilson67520412017-03-02 13:28:01 +00007252 lockdep_assert_held(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007253
Thomas Gleixner5ed0bdf2014-07-16 21:05:06 +00007254 now = ktime_get_raw_ns();
7255 diffms = now - dev_priv->ips.last_time2;
7256 do_div(diffms, NSEC_PER_MSEC);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007257
7258 /* Don't divide by 0 */
Daniel Vettereb48eb02012-04-26 23:28:12 +02007259 if (!diffms)
7260 return;
7261
7262 count = I915_READ(GFXEC);
7263
Daniel Vetter20e4d402012-08-08 23:35:39 +02007264 if (count < dev_priv->ips.last_count2) {
7265 diff = ~0UL - dev_priv->ips.last_count2;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007266 diff += count;
7267 } else {
Daniel Vetter20e4d402012-08-08 23:35:39 +02007268 diff = count - dev_priv->ips.last_count2;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007269 }
7270
Daniel Vetter20e4d402012-08-08 23:35:39 +02007271 dev_priv->ips.last_count2 = count;
7272 dev_priv->ips.last_time2 = now;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007273
7274 /* More magic constants... */
7275 diff = diff * 1181;
7276 diff = div_u64(diff, diffms * 10);
Daniel Vetter20e4d402012-08-08 23:35:39 +02007277 dev_priv->ips.gfx_power = diff;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007278}
7279
Daniel Vetter02d71952012-08-09 16:44:54 +02007280void i915_update_gfx_val(struct drm_i915_private *dev_priv)
7281{
Chris Wilsondc979972016-05-10 14:10:04 +01007282 if (INTEL_INFO(dev_priv)->gen != 5)
Daniel Vetter02d71952012-08-09 16:44:54 +02007283 return;
7284
Daniel Vetter92703882012-08-09 16:46:01 +02007285 spin_lock_irq(&mchdev_lock);
Daniel Vetter02d71952012-08-09 16:44:54 +02007286
7287 __i915_update_gfx_val(dev_priv);
7288
Daniel Vetter92703882012-08-09 16:46:01 +02007289 spin_unlock_irq(&mchdev_lock);
Daniel Vetter02d71952012-08-09 16:44:54 +02007290}
7291
Chris Wilsonf531dcb2012-09-25 10:16:12 +01007292static unsigned long __i915_gfx_val(struct drm_i915_private *dev_priv)
Daniel Vettereb48eb02012-04-26 23:28:12 +02007293{
7294 unsigned long t, corr, state1, corr2, state2;
7295 u32 pxvid, ext_v;
7296
Chris Wilson67520412017-03-02 13:28:01 +00007297 lockdep_assert_held(&mchdev_lock);
Daniel Vetter02d71952012-08-09 16:44:54 +02007298
Ville Syrjälä616847e2015-09-18 20:03:19 +03007299 pxvid = I915_READ(PXVFREQ(dev_priv->rps.cur_freq));
Daniel Vettereb48eb02012-04-26 23:28:12 +02007300 pxvid = (pxvid >> 24) & 0x7f;
7301 ext_v = pvid_to_extvid(dev_priv, pxvid);
7302
7303 state1 = ext_v;
7304
7305 t = i915_mch_val(dev_priv);
7306
7307 /* Revel in the empirically derived constants */
7308
7309 /* Correction factor in 1/100000 units */
7310 if (t > 80)
7311 corr = ((t * 2349) + 135940);
7312 else if (t >= 50)
7313 corr = ((t * 964) + 29317);
7314 else /* < 50 */
7315 corr = ((t * 301) + 1004);
7316
7317 corr = corr * ((150142 * state1) / 10000 - 78642);
7318 corr /= 100000;
Daniel Vetter20e4d402012-08-08 23:35:39 +02007319 corr2 = (corr * dev_priv->ips.corr);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007320
7321 state2 = (corr2 * state1) / 10000;
7322 state2 /= 100; /* convert to mW */
7323
Daniel Vetter02d71952012-08-09 16:44:54 +02007324 __i915_update_gfx_val(dev_priv);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007325
Daniel Vetter20e4d402012-08-08 23:35:39 +02007326 return dev_priv->ips.gfx_power + state2;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007327}
7328
Chris Wilsonf531dcb2012-09-25 10:16:12 +01007329unsigned long i915_gfx_val(struct drm_i915_private *dev_priv)
7330{
7331 unsigned long val;
7332
Chris Wilsondc979972016-05-10 14:10:04 +01007333 if (INTEL_INFO(dev_priv)->gen != 5)
Chris Wilsonf531dcb2012-09-25 10:16:12 +01007334 return 0;
7335
7336 spin_lock_irq(&mchdev_lock);
7337
7338 val = __i915_gfx_val(dev_priv);
7339
7340 spin_unlock_irq(&mchdev_lock);
7341
7342 return val;
7343}
7344
Daniel Vettereb48eb02012-04-26 23:28:12 +02007345/**
7346 * i915_read_mch_val - return value for IPS use
7347 *
7348 * Calculate and return a value for the IPS driver to use when deciding whether
7349 * we have thermal and power headroom to increase CPU or GPU power budget.
7350 */
7351unsigned long i915_read_mch_val(void)
7352{
7353 struct drm_i915_private *dev_priv;
7354 unsigned long chipset_val, graphics_val, ret = 0;
7355
Daniel Vetter92703882012-08-09 16:46:01 +02007356 spin_lock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007357 if (!i915_mch_dev)
7358 goto out_unlock;
7359 dev_priv = i915_mch_dev;
7360
Chris Wilsonf531dcb2012-09-25 10:16:12 +01007361 chipset_val = __i915_chipset_val(dev_priv);
7362 graphics_val = __i915_gfx_val(dev_priv);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007363
7364 ret = chipset_val + graphics_val;
7365
7366out_unlock:
Daniel Vetter92703882012-08-09 16:46:01 +02007367 spin_unlock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007368
7369 return ret;
7370}
7371EXPORT_SYMBOL_GPL(i915_read_mch_val);
7372
7373/**
7374 * i915_gpu_raise - raise GPU frequency limit
7375 *
7376 * Raise the limit; IPS indicates we have thermal headroom.
7377 */
7378bool i915_gpu_raise(void)
7379{
7380 struct drm_i915_private *dev_priv;
7381 bool ret = true;
7382
Daniel Vetter92703882012-08-09 16:46:01 +02007383 spin_lock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007384 if (!i915_mch_dev) {
7385 ret = false;
7386 goto out_unlock;
7387 }
7388 dev_priv = i915_mch_dev;
7389
Daniel Vetter20e4d402012-08-08 23:35:39 +02007390 if (dev_priv->ips.max_delay > dev_priv->ips.fmax)
7391 dev_priv->ips.max_delay--;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007392
7393out_unlock:
Daniel Vetter92703882012-08-09 16:46:01 +02007394 spin_unlock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007395
7396 return ret;
7397}
7398EXPORT_SYMBOL_GPL(i915_gpu_raise);
7399
7400/**
7401 * i915_gpu_lower - lower GPU frequency limit
7402 *
7403 * IPS indicates we're close to a thermal limit, so throttle back the GPU
7404 * frequency maximum.
7405 */
7406bool i915_gpu_lower(void)
7407{
7408 struct drm_i915_private *dev_priv;
7409 bool ret = true;
7410
Daniel Vetter92703882012-08-09 16:46:01 +02007411 spin_lock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007412 if (!i915_mch_dev) {
7413 ret = false;
7414 goto out_unlock;
7415 }
7416 dev_priv = i915_mch_dev;
7417
Daniel Vetter20e4d402012-08-08 23:35:39 +02007418 if (dev_priv->ips.max_delay < dev_priv->ips.min_delay)
7419 dev_priv->ips.max_delay++;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007420
7421out_unlock:
Daniel Vetter92703882012-08-09 16:46:01 +02007422 spin_unlock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007423
7424 return ret;
7425}
7426EXPORT_SYMBOL_GPL(i915_gpu_lower);
7427
7428/**
7429 * i915_gpu_busy - indicate GPU business to IPS
7430 *
7431 * Tell the IPS driver whether or not the GPU is busy.
7432 */
7433bool i915_gpu_busy(void)
7434{
Daniel Vettereb48eb02012-04-26 23:28:12 +02007435 bool ret = false;
7436
Daniel Vetter92703882012-08-09 16:46:01 +02007437 spin_lock_irq(&mchdev_lock);
Chris Wilsondcff85c2016-08-05 10:14:11 +01007438 if (i915_mch_dev)
7439 ret = i915_mch_dev->gt.awake;
Daniel Vetter92703882012-08-09 16:46:01 +02007440 spin_unlock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007441
7442 return ret;
7443}
7444EXPORT_SYMBOL_GPL(i915_gpu_busy);
7445
7446/**
7447 * i915_gpu_turbo_disable - disable graphics turbo
7448 *
7449 * Disable graphics turbo by resetting the max frequency and setting the
7450 * current frequency to the default.
7451 */
7452bool i915_gpu_turbo_disable(void)
7453{
7454 struct drm_i915_private *dev_priv;
7455 bool ret = true;
7456
Daniel Vetter92703882012-08-09 16:46:01 +02007457 spin_lock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007458 if (!i915_mch_dev) {
7459 ret = false;
7460 goto out_unlock;
7461 }
7462 dev_priv = i915_mch_dev;
7463
Daniel Vetter20e4d402012-08-08 23:35:39 +02007464 dev_priv->ips.max_delay = dev_priv->ips.fstart;
Daniel Vettereb48eb02012-04-26 23:28:12 +02007465
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01007466 if (!ironlake_set_drps(dev_priv, dev_priv->ips.fstart))
Daniel Vettereb48eb02012-04-26 23:28:12 +02007467 ret = false;
7468
7469out_unlock:
Daniel Vetter92703882012-08-09 16:46:01 +02007470 spin_unlock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007471
7472 return ret;
7473}
7474EXPORT_SYMBOL_GPL(i915_gpu_turbo_disable);
7475
7476/**
7477 * Tells the intel_ips driver that the i915 driver is now loaded, if
7478 * IPS got loaded first.
7479 *
7480 * This awkward dance is so that neither module has to depend on the
7481 * other in order for IPS to do the appropriate communication of
7482 * GPU turbo limits to i915.
7483 */
7484static void
7485ips_ping_for_i915_load(void)
7486{
7487 void (*link)(void);
7488
7489 link = symbol_get(ips_link_to_i915_driver);
7490 if (link) {
7491 link();
7492 symbol_put(ips_link_to_i915_driver);
7493 }
7494}
7495
7496void intel_gpu_ips_init(struct drm_i915_private *dev_priv)
7497{
Daniel Vetter02d71952012-08-09 16:44:54 +02007498 /* We only register the i915 ips part with intel-ips once everything is
7499 * set up, to avoid intel-ips sneaking in and reading bogus values. */
Daniel Vetter92703882012-08-09 16:46:01 +02007500 spin_lock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007501 i915_mch_dev = dev_priv;
Daniel Vetter92703882012-08-09 16:46:01 +02007502 spin_unlock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007503
7504 ips_ping_for_i915_load();
7505}
7506
7507void intel_gpu_ips_teardown(void)
7508{
Daniel Vetter92703882012-08-09 16:46:01 +02007509 spin_lock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007510 i915_mch_dev = NULL;
Daniel Vetter92703882012-08-09 16:46:01 +02007511 spin_unlock_irq(&mchdev_lock);
Daniel Vettereb48eb02012-04-26 23:28:12 +02007512}
Deepak S76c3552f2014-01-30 23:08:16 +05307513
Chris Wilsondc979972016-05-10 14:10:04 +01007514static void intel_init_emon(struct drm_i915_private *dev_priv)
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007515{
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007516 u32 lcfuse;
7517 u8 pxw[16];
7518 int i;
7519
7520 /* Disable to program */
7521 I915_WRITE(ECR, 0);
7522 POSTING_READ(ECR);
7523
7524 /* Program energy weights for various events */
7525 I915_WRITE(SDEW, 0x15040d00);
7526 I915_WRITE(CSIEW0, 0x007f0000);
7527 I915_WRITE(CSIEW1, 0x1e220004);
7528 I915_WRITE(CSIEW2, 0x04000004);
7529
7530 for (i = 0; i < 5; i++)
Ville Syrjälä616847e2015-09-18 20:03:19 +03007531 I915_WRITE(PEW(i), 0);
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007532 for (i = 0; i < 3; i++)
Ville Syrjälä616847e2015-09-18 20:03:19 +03007533 I915_WRITE(DEW(i), 0);
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007534
7535 /* Program P-state weights to account for frequency power adjustment */
7536 for (i = 0; i < 16; i++) {
Ville Syrjälä616847e2015-09-18 20:03:19 +03007537 u32 pxvidfreq = I915_READ(PXVFREQ(i));
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007538 unsigned long freq = intel_pxfreq(pxvidfreq);
7539 unsigned long vid = (pxvidfreq & PXVFREQ_PX_MASK) >>
7540 PXVFREQ_PX_SHIFT;
7541 unsigned long val;
7542
7543 val = vid * vid;
7544 val *= (freq / 1000);
7545 val *= 255;
7546 val /= (127*127*900);
7547 if (val > 0xff)
7548 DRM_ERROR("bad pxval: %ld\n", val);
7549 pxw[i] = val;
7550 }
7551 /* Render standby states get 0 weight */
7552 pxw[14] = 0;
7553 pxw[15] = 0;
7554
7555 for (i = 0; i < 4; i++) {
7556 u32 val = (pxw[i*4] << 24) | (pxw[(i*4)+1] << 16) |
7557 (pxw[(i*4)+2] << 8) | (pxw[(i*4)+3]);
Ville Syrjälä616847e2015-09-18 20:03:19 +03007558 I915_WRITE(PXW(i), val);
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007559 }
7560
7561 /* Adjust magic regs to magic values (more experimental results) */
7562 I915_WRITE(OGW0, 0);
7563 I915_WRITE(OGW1, 0);
7564 I915_WRITE(EG0, 0x00007f00);
7565 I915_WRITE(EG1, 0x0000000e);
7566 I915_WRITE(EG2, 0x000e0000);
7567 I915_WRITE(EG3, 0x68000300);
7568 I915_WRITE(EG4, 0x42000000);
7569 I915_WRITE(EG5, 0x00140031);
7570 I915_WRITE(EG6, 0);
7571 I915_WRITE(EG7, 0);
7572
7573 for (i = 0; i < 8; i++)
Ville Syrjälä616847e2015-09-18 20:03:19 +03007574 I915_WRITE(PXWL(i), 0);
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007575
7576 /* Enable PMON + select events */
7577 I915_WRITE(ECR, 0x80000019);
7578
7579 lcfuse = I915_READ(LCFUSE02);
7580
Daniel Vetter20e4d402012-08-08 23:35:39 +02007581 dev_priv->ips.corr = (lcfuse & LCFUSE_HIV_MASK);
Eugeni Dodonovdde18882012-04-18 15:29:24 -03007582}
7583
Chris Wilsondc979972016-05-10 14:10:04 +01007584void intel_init_gt_powersave(struct drm_i915_private *dev_priv)
Imre Deakae484342014-03-31 15:10:44 +03007585{
Imre Deakb268c692015-12-15 20:10:31 +02007586 /*
7587 * RPM depends on RC6 to save restore the GT HW context, so make RC6 a
7588 * requirement.
7589 */
7590 if (!i915.enable_rc6) {
7591 DRM_INFO("RC6 disabled, disabling runtime PM support\n");
7592 intel_runtime_pm_get(dev_priv);
7593 }
Imre Deake6069ca2014-04-18 16:01:02 +03007594
Chris Wilsonb5163db2016-08-10 13:58:24 +01007595 mutex_lock(&dev_priv->drm.struct_mutex);
Chris Wilson773ea9a2016-07-13 09:10:33 +01007596 mutex_lock(&dev_priv->rps.hw_lock);
7597
7598 /* Initialize RPS limits (for userspace) */
Chris Wilsondc979972016-05-10 14:10:04 +01007599 if (IS_CHERRYVIEW(dev_priv))
7600 cherryview_init_gt_powersave(dev_priv);
7601 else if (IS_VALLEYVIEW(dev_priv))
7602 valleyview_init_gt_powersave(dev_priv);
Chris Wilson2a13ae72016-08-02 11:15:27 +01007603 else if (INTEL_GEN(dev_priv) >= 6)
Chris Wilson773ea9a2016-07-13 09:10:33 +01007604 gen6_init_rps_frequencies(dev_priv);
7605
7606 /* Derive initial user preferences/limits from the hardware limits */
7607 dev_priv->rps.idle_freq = dev_priv->rps.min_freq;
7608 dev_priv->rps.cur_freq = dev_priv->rps.idle_freq;
7609
7610 dev_priv->rps.max_freq_softlimit = dev_priv->rps.max_freq;
7611 dev_priv->rps.min_freq_softlimit = dev_priv->rps.min_freq;
7612
7613 if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
7614 dev_priv->rps.min_freq_softlimit =
7615 max_t(int,
7616 dev_priv->rps.efficient_freq,
7617 intel_freq_opcode(dev_priv, 450));
7618
Chris Wilson99ac9612016-07-13 09:10:34 +01007619 /* After setting max-softlimit, find the overclock max freq */
7620 if (IS_GEN6(dev_priv) ||
7621 IS_IVYBRIDGE(dev_priv) || IS_HASWELL(dev_priv)) {
7622 u32 params = 0;
7623
7624 sandybridge_pcode_read(dev_priv, GEN6_READ_OC_PARAMS, &params);
7625 if (params & BIT(31)) { /* OC supported */
7626 DRM_DEBUG_DRIVER("Overclocking supported, max: %dMHz, overclock: %dMHz\n",
7627 (dev_priv->rps.max_freq & 0xff) * 50,
7628 (params & 0xff) * 50);
7629 dev_priv->rps.max_freq = params & 0xff;
7630 }
7631 }
7632
Chris Wilson29ecd78d2016-07-13 09:10:35 +01007633 /* Finally allow us to boost to max by default */
7634 dev_priv->rps.boost_freq = dev_priv->rps.max_freq;
7635
Chris Wilson773ea9a2016-07-13 09:10:33 +01007636 mutex_unlock(&dev_priv->rps.hw_lock);
Chris Wilsonb5163db2016-08-10 13:58:24 +01007637 mutex_unlock(&dev_priv->drm.struct_mutex);
Chris Wilson54b4f682016-07-21 21:16:19 +01007638
7639 intel_autoenable_gt_powersave(dev_priv);
Imre Deakae484342014-03-31 15:10:44 +03007640}
7641
Chris Wilsondc979972016-05-10 14:10:04 +01007642void intel_cleanup_gt_powersave(struct drm_i915_private *dev_priv)
Imre Deakae484342014-03-31 15:10:44 +03007643{
Ville Syrjälä8dac1e12016-08-02 14:07:33 +03007644 if (IS_VALLEYVIEW(dev_priv))
Chris Wilsondc979972016-05-10 14:10:04 +01007645 valleyview_cleanup_gt_powersave(dev_priv);
Imre Deakb268c692015-12-15 20:10:31 +02007646
7647 if (!i915.enable_rc6)
7648 intel_runtime_pm_put(dev_priv);
Imre Deakae484342014-03-31 15:10:44 +03007649}
7650
Chris Wilson54b4f682016-07-21 21:16:19 +01007651/**
7652 * intel_suspend_gt_powersave - suspend PM work and helper threads
7653 * @dev_priv: i915 device
7654 *
7655 * We don't want to disable RC6 or other features here, we just want
7656 * to make sure any work we've queued has finished and won't bother
7657 * us while we're suspended.
7658 */
7659void intel_suspend_gt_powersave(struct drm_i915_private *dev_priv)
7660{
7661 if (INTEL_GEN(dev_priv) < 6)
7662 return;
7663
7664 if (cancel_delayed_work_sync(&dev_priv->rps.autoenable_work))
7665 intel_runtime_pm_put(dev_priv);
7666
7667 /* gen6_rps_idle() will be called later to disable interrupts */
7668}
7669
Chris Wilsonb7137e02016-07-13 09:10:37 +01007670void intel_sanitize_gt_powersave(struct drm_i915_private *dev_priv)
7671{
7672 dev_priv->rps.enabled = true; /* force disabling */
7673 intel_disable_gt_powersave(dev_priv);
Chris Wilson54b4f682016-07-21 21:16:19 +01007674
7675 gen6_reset_rps_interrupts(dev_priv);
Jesse Barnes156c7ca2014-06-12 08:35:45 -07007676}
7677
Chris Wilsondc979972016-05-10 14:10:04 +01007678void intel_disable_gt_powersave(struct drm_i915_private *dev_priv)
Daniel Vetter8090c6b2012-06-24 16:42:32 +02007679{
Chris Wilsonb7137e02016-07-13 09:10:37 +01007680 if (!READ_ONCE(dev_priv->rps.enabled))
7681 return;
Jesse Barnes1a01ab32012-11-02 11:14:00 -07007682
Jesse Barnes4fc688c2012-11-02 11:14:01 -07007683 mutex_lock(&dev_priv->rps.hw_lock);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007684
Chris Wilsonb7137e02016-07-13 09:10:37 +01007685 if (INTEL_GEN(dev_priv) >= 9) {
7686 gen9_disable_rc6(dev_priv);
7687 gen9_disable_rps(dev_priv);
7688 } else if (IS_CHERRYVIEW(dev_priv)) {
7689 cherryview_disable_rps(dev_priv);
7690 } else if (IS_VALLEYVIEW(dev_priv)) {
7691 valleyview_disable_rps(dev_priv);
7692 } else if (INTEL_GEN(dev_priv) >= 6) {
7693 gen6_disable_rps(dev_priv);
7694 } else if (IS_IRONLAKE_M(dev_priv)) {
7695 ironlake_disable_drps(dev_priv);
7696 }
7697
7698 dev_priv->rps.enabled = false;
7699 mutex_unlock(&dev_priv->rps.hw_lock);
7700}
7701
7702void intel_enable_gt_powersave(struct drm_i915_private *dev_priv)
7703{
Chris Wilson54b4f682016-07-21 21:16:19 +01007704 /* We shouldn't be disabling as we submit, so this should be less
7705 * racy than it appears!
7706 */
Chris Wilsonb7137e02016-07-13 09:10:37 +01007707 if (READ_ONCE(dev_priv->rps.enabled))
7708 return;
7709
7710 /* Powersaving is controlled by the host when inside a VM */
7711 if (intel_vgpu_active(dev_priv))
7712 return;
7713
7714 mutex_lock(&dev_priv->rps.hw_lock);
Imre Deak3cc134e2014-11-19 15:30:03 +02007715
Chris Wilsondc979972016-05-10 14:10:04 +01007716 if (IS_CHERRYVIEW(dev_priv)) {
7717 cherryview_enable_rps(dev_priv);
7718 } else if (IS_VALLEYVIEW(dev_priv)) {
7719 valleyview_enable_rps(dev_priv);
Chris Wilsonb7137e02016-07-13 09:10:37 +01007720 } else if (INTEL_GEN(dev_priv) >= 9) {
Chris Wilsondc979972016-05-10 14:10:04 +01007721 gen9_enable_rc6(dev_priv);
7722 gen9_enable_rps(dev_priv);
Rodrigo Vivib976dc52017-01-23 10:32:37 -08007723 if (IS_GEN9_BC(dev_priv))
Chris Wilsonfb7404e2016-07-13 09:10:38 +01007724 gen6_update_ring_freq(dev_priv);
Chris Wilsondc979972016-05-10 14:10:04 +01007725 } else if (IS_BROADWELL(dev_priv)) {
7726 gen8_enable_rps(dev_priv);
Chris Wilsonfb7404e2016-07-13 09:10:38 +01007727 gen6_update_ring_freq(dev_priv);
Chris Wilsonb7137e02016-07-13 09:10:37 +01007728 } else if (INTEL_GEN(dev_priv) >= 6) {
Chris Wilsondc979972016-05-10 14:10:04 +01007729 gen6_enable_rps(dev_priv);
Chris Wilsonfb7404e2016-07-13 09:10:38 +01007730 gen6_update_ring_freq(dev_priv);
Chris Wilsonb7137e02016-07-13 09:10:37 +01007731 } else if (IS_IRONLAKE_M(dev_priv)) {
7732 ironlake_enable_drps(dev_priv);
7733 intel_init_emon(dev_priv);
Jesse Barnes0a073b82013-04-17 15:54:58 -07007734 }
Chris Wilsonaed242f2015-03-18 09:48:21 +00007735
7736 WARN_ON(dev_priv->rps.max_freq < dev_priv->rps.min_freq);
7737 WARN_ON(dev_priv->rps.idle_freq > dev_priv->rps.max_freq);
7738
7739 WARN_ON(dev_priv->rps.efficient_freq < dev_priv->rps.min_freq);
7740 WARN_ON(dev_priv->rps.efficient_freq > dev_priv->rps.max_freq);
7741
Chris Wilson54b4f682016-07-21 21:16:19 +01007742 dev_priv->rps.enabled = true;
Jesse Barnes4fc688c2012-11-02 11:14:01 -07007743 mutex_unlock(&dev_priv->rps.hw_lock);
Chris Wilsonb7137e02016-07-13 09:10:37 +01007744}
Imre Deakc6df39b2014-04-14 20:24:29 +03007745
Chris Wilson54b4f682016-07-21 21:16:19 +01007746static void __intel_autoenable_gt_powersave(struct work_struct *work)
7747{
7748 struct drm_i915_private *dev_priv =
7749 container_of(work, typeof(*dev_priv), rps.autoenable_work.work);
7750 struct intel_engine_cs *rcs;
7751 struct drm_i915_gem_request *req;
7752
7753 if (READ_ONCE(dev_priv->rps.enabled))
7754 goto out;
7755
Akash Goel3b3f1652016-10-13 22:44:48 +05307756 rcs = dev_priv->engine[RCS];
Chris Wilsone8a9c582016-12-18 15:37:20 +00007757 if (rcs->last_retired_context)
Chris Wilson54b4f682016-07-21 21:16:19 +01007758 goto out;
7759
7760 if (!rcs->init_context)
7761 goto out;
7762
7763 mutex_lock(&dev_priv->drm.struct_mutex);
7764
7765 req = i915_gem_request_alloc(rcs, dev_priv->kernel_context);
7766 if (IS_ERR(req))
7767 goto unlock;
7768
7769 if (!i915.enable_execlists && i915_switch_context(req) == 0)
7770 rcs->init_context(req);
7771
7772 /* Mark the device busy, calling intel_enable_gt_powersave() */
Chris Wilsone642c852017-03-17 11:47:09 +00007773 i915_add_request(req);
Chris Wilson54b4f682016-07-21 21:16:19 +01007774
7775unlock:
7776 mutex_unlock(&dev_priv->drm.struct_mutex);
7777out:
7778 intel_runtime_pm_put(dev_priv);
7779}
7780
7781void intel_autoenable_gt_powersave(struct drm_i915_private *dev_priv)
7782{
7783 if (READ_ONCE(dev_priv->rps.enabled))
7784 return;
7785
7786 if (IS_IRONLAKE_M(dev_priv)) {
7787 ironlake_enable_drps(dev_priv);
Chris Wilson54b4f682016-07-21 21:16:19 +01007788 intel_init_emon(dev_priv);
Chris Wilson54b4f682016-07-21 21:16:19 +01007789 } else if (INTEL_INFO(dev_priv)->gen >= 6) {
7790 /*
7791 * PCU communication is slow and this doesn't need to be
7792 * done at any specific time, so do this out of our fast path
7793 * to make resume and init faster.
7794 *
7795 * We depend on the HW RC6 power context save/restore
7796 * mechanism when entering D3 through runtime PM suspend. So
7797 * disable RPM until RPS/RC6 is properly setup. We can only
7798 * get here via the driver load/system resume/runtime resume
7799 * paths, so the _noresume version is enough (and in case of
7800 * runtime resume it's necessary).
7801 */
7802 if (queue_delayed_work(dev_priv->wq,
7803 &dev_priv->rps.autoenable_work,
7804 round_jiffies_up_relative(HZ)))
7805 intel_runtime_pm_get_noresume(dev_priv);
7806 }
7807}
7808
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007809static void ibx_init_clock_gating(struct drm_i915_private *dev_priv)
Daniel Vetter3107bd42012-10-31 22:52:31 +01007810{
Daniel Vetter3107bd42012-10-31 22:52:31 +01007811 /*
7812 * On Ibex Peak and Cougar Point, we need to disable clock
7813 * gating for the panel power sequencer or it will fail to
7814 * start up when no ports are active.
7815 */
7816 I915_WRITE(SOUTH_DSPCLK_GATE_D, PCH_DPLSUNIT_CLOCK_GATE_DISABLE);
7817}
7818
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007819static void g4x_disable_trickle_feed(struct drm_i915_private *dev_priv)
Ville Syrjälä0e088b82013-06-07 10:47:04 +03007820{
Ville Syrjäläb12ce1d2015-05-26 20:27:23 +03007821 enum pipe pipe;
Ville Syrjälä0e088b82013-06-07 10:47:04 +03007822
Damien Lespiau055e3932014-08-18 13:49:10 +01007823 for_each_pipe(dev_priv, pipe) {
Ville Syrjälä0e088b82013-06-07 10:47:04 +03007824 I915_WRITE(DSPCNTR(pipe),
7825 I915_READ(DSPCNTR(pipe)) |
7826 DISPPLANE_TRICKLE_FEED_DISABLE);
Ville Syrjäläb12ce1d2015-05-26 20:27:23 +03007827
7828 I915_WRITE(DSPSURF(pipe), I915_READ(DSPSURF(pipe)));
7829 POSTING_READ(DSPSURF(pipe));
Ville Syrjälä0e088b82013-06-07 10:47:04 +03007830 }
7831}
7832
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007833static void ilk_init_lp_watermarks(struct drm_i915_private *dev_priv)
Ville Syrjälä017636c2013-12-05 15:51:37 +02007834{
Ville Syrjälä017636c2013-12-05 15:51:37 +02007835 I915_WRITE(WM3_LP_ILK, I915_READ(WM3_LP_ILK) & ~WM1_LP_SR_EN);
7836 I915_WRITE(WM2_LP_ILK, I915_READ(WM2_LP_ILK) & ~WM1_LP_SR_EN);
7837 I915_WRITE(WM1_LP_ILK, I915_READ(WM1_LP_ILK) & ~WM1_LP_SR_EN);
7838
7839 /*
7840 * Don't touch WM1S_LP_EN here.
7841 * Doing so could cause underruns.
7842 */
7843}
7844
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007845static void ironlake_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007846{
Damien Lespiau231e54f2012-10-19 17:55:41 +01007847 uint32_t dspclk_gate = ILK_VRHUNIT_CLOCK_GATE_DISABLE;
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007848
Damien Lespiauf1e8fa52013-06-07 17:41:09 +01007849 /*
7850 * Required for FBC
7851 * WaFbcDisableDpfcClockGating:ilk
7852 */
Damien Lespiau4d47e4f2012-10-19 17:55:42 +01007853 dspclk_gate |= ILK_DPFCRUNIT_CLOCK_GATE_DISABLE |
7854 ILK_DPFCUNIT_CLOCK_GATE_DISABLE |
7855 ILK_DPFDUNIT_CLOCK_GATE_ENABLE;
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007856
7857 I915_WRITE(PCH_3DCGDIS0,
7858 MARIUNIT_CLOCK_GATE_DISABLE |
7859 SVSMUNIT_CLOCK_GATE_DISABLE);
7860 I915_WRITE(PCH_3DCGDIS1,
7861 VFMUNIT_CLOCK_GATE_DISABLE);
7862
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007863 /*
7864 * According to the spec the following bits should be set in
7865 * order to enable memory self-refresh
7866 * The bit 22/21 of 0x42004
7867 * The bit 5 of 0x42020
7868 * The bit 15 of 0x45000
7869 */
7870 I915_WRITE(ILK_DISPLAY_CHICKEN2,
7871 (I915_READ(ILK_DISPLAY_CHICKEN2) |
7872 ILK_DPARB_GATE | ILK_VSDPFD_FULL));
Damien Lespiau4d47e4f2012-10-19 17:55:42 +01007873 dspclk_gate |= ILK_DPARBUNIT_CLOCK_GATE_ENABLE;
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007874 I915_WRITE(DISP_ARB_CTL,
7875 (I915_READ(DISP_ARB_CTL) |
7876 DISP_FBC_WM_DIS));
Ville Syrjälä017636c2013-12-05 15:51:37 +02007877
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007878 ilk_init_lp_watermarks(dev_priv);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007879
7880 /*
7881 * Based on the document from hardware guys the following bits
7882 * should be set unconditionally in order to enable FBC.
7883 * The bit 22 of 0x42000
7884 * The bit 22 of 0x42004
7885 * The bit 7,8,9 of 0x42020.
7886 */
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +01007887 if (IS_IRONLAKE_M(dev_priv)) {
Damien Lespiau4bb35332013-06-14 15:23:24 +01007888 /* WaFbcAsynchFlipDisableFbcQueue:ilk */
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007889 I915_WRITE(ILK_DISPLAY_CHICKEN1,
7890 I915_READ(ILK_DISPLAY_CHICKEN1) |
7891 ILK_FBCQ_DIS);
7892 I915_WRITE(ILK_DISPLAY_CHICKEN2,
7893 I915_READ(ILK_DISPLAY_CHICKEN2) |
7894 ILK_DPARB_GATE);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007895 }
7896
Damien Lespiau4d47e4f2012-10-19 17:55:42 +01007897 I915_WRITE(ILK_DSPCLK_GATE_D, dspclk_gate);
7898
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007899 I915_WRITE(ILK_DISPLAY_CHICKEN2,
7900 I915_READ(ILK_DISPLAY_CHICKEN2) |
7901 ILK_ELPIN_409_SELECT);
7902 I915_WRITE(_3D_CHICKEN2,
7903 _3D_CHICKEN2_WM_READ_PIPELINED << 16 |
7904 _3D_CHICKEN2_WM_READ_PIPELINED);
Daniel Vetter4358a372012-10-18 11:49:51 +02007905
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01007906 /* WaDisableRenderCachePipelinedFlush:ilk */
Daniel Vetter4358a372012-10-18 11:49:51 +02007907 I915_WRITE(CACHE_MODE_0,
7908 _MASKED_BIT_ENABLE(CM0_PIPELINED_RENDER_FLUSH_DISABLE));
Daniel Vetter3107bd42012-10-31 22:52:31 +01007909
Akash Goel4e046322014-04-04 17:14:38 +05307910 /* WaDisable_RenderCache_OperationalFlush:ilk */
7911 I915_WRITE(CACHE_MODE_0, _MASKED_BIT_DISABLE(RC_OP_FLUSH_ENABLE));
7912
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007913 g4x_disable_trickle_feed(dev_priv);
Ville Syrjäläbdad2b22013-06-07 10:47:03 +03007914
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007915 ibx_init_clock_gating(dev_priv);
Daniel Vetter3107bd42012-10-31 22:52:31 +01007916}
7917
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007918static void cpt_init_clock_gating(struct drm_i915_private *dev_priv)
Daniel Vetter3107bd42012-10-31 22:52:31 +01007919{
Daniel Vetter3107bd42012-10-31 22:52:31 +01007920 int pipe;
Paulo Zanoni3f704fa2013-04-08 15:48:07 -03007921 uint32_t val;
Daniel Vetter3107bd42012-10-31 22:52:31 +01007922
7923 /*
7924 * On Ibex Peak and Cougar Point, we need to disable clock
7925 * gating for the panel power sequencer or it will fail to
7926 * start up when no ports are active.
7927 */
Jesse Barnescd664072013-10-02 10:34:19 -07007928 I915_WRITE(SOUTH_DSPCLK_GATE_D, PCH_DPLSUNIT_CLOCK_GATE_DISABLE |
7929 PCH_DPLUNIT_CLOCK_GATE_DISABLE |
7930 PCH_CPUNIT_CLOCK_GATE_DISABLE);
Daniel Vetter3107bd42012-10-31 22:52:31 +01007931 I915_WRITE(SOUTH_CHICKEN2, I915_READ(SOUTH_CHICKEN2) |
7932 DPLS_EDP_PPS_FIX_DIS);
Takashi Iwai335c07b2012-12-11 11:46:29 +01007933 /* The below fixes the weird display corruption, a few pixels shifted
7934 * downward, on (only) LVDS of some HP laptops with IVY.
7935 */
Damien Lespiau055e3932014-08-18 13:49:10 +01007936 for_each_pipe(dev_priv, pipe) {
Paulo Zanonidc4bd2d2013-04-08 15:48:08 -03007937 val = I915_READ(TRANS_CHICKEN2(pipe));
7938 val |= TRANS_CHICKEN2_TIMING_OVERRIDE;
7939 val &= ~TRANS_CHICKEN2_FDI_POLARITY_REVERSED;
Rodrigo Vivi41aa3442013-05-09 20:03:18 -03007940 if (dev_priv->vbt.fdi_rx_polarity_inverted)
Paulo Zanoni3f704fa2013-04-08 15:48:07 -03007941 val |= TRANS_CHICKEN2_FDI_POLARITY_REVERSED;
Paulo Zanonidc4bd2d2013-04-08 15:48:08 -03007942 val &= ~TRANS_CHICKEN2_FRAME_START_DELAY_MASK;
7943 val &= ~TRANS_CHICKEN2_DISABLE_DEEP_COLOR_COUNTER;
7944 val &= ~TRANS_CHICKEN2_DISABLE_DEEP_COLOR_MODESWITCH;
Paulo Zanoni3f704fa2013-04-08 15:48:07 -03007945 I915_WRITE(TRANS_CHICKEN2(pipe), val);
7946 }
Daniel Vetter3107bd42012-10-31 22:52:31 +01007947 /* WADP0ClockGatingDisable */
Damien Lespiau055e3932014-08-18 13:49:10 +01007948 for_each_pipe(dev_priv, pipe) {
Daniel Vetter3107bd42012-10-31 22:52:31 +01007949 I915_WRITE(TRANS_CHICKEN1(pipe),
7950 TRANS_CHICKEN1_DP0UNIT_GC_DISABLE);
7951 }
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007952}
7953
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007954static void gen6_check_mch_setup(struct drm_i915_private *dev_priv)
Daniel Vetter1d7aaa02013-02-09 21:03:42 +01007955{
Daniel Vetter1d7aaa02013-02-09 21:03:42 +01007956 uint32_t tmp;
7957
7958 tmp = I915_READ(MCH_SSKPD);
Daniel Vetterdf662a22014-08-04 11:17:25 +02007959 if ((tmp & MCH_SSKPD_WM0_MASK) != MCH_SSKPD_WM0_VAL)
7960 DRM_DEBUG_KMS("Wrong MCH_SSKPD value: 0x%08x This can cause underruns.\n",
7961 tmp);
Daniel Vetter1d7aaa02013-02-09 21:03:42 +01007962}
7963
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007964static void gen6_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007965{
Damien Lespiau231e54f2012-10-19 17:55:41 +01007966 uint32_t dspclk_gate = ILK_VRHUNIT_CLOCK_GATE_DISABLE;
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007967
Damien Lespiau231e54f2012-10-19 17:55:41 +01007968 I915_WRITE(ILK_DSPCLK_GATE_D, dspclk_gate);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007969
7970 I915_WRITE(ILK_DISPLAY_CHICKEN2,
7971 I915_READ(ILK_DISPLAY_CHICKEN2) |
7972 ILK_ELPIN_409_SELECT);
7973
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01007974 /* WaDisableHiZPlanesWhenMSAAEnabled:snb */
Daniel Vetter42839082012-12-14 23:38:28 +01007975 I915_WRITE(_3D_CHICKEN,
7976 _MASKED_BIT_ENABLE(_3D_CHICKEN_HIZ_PLANE_DISABLE_MSAA_4X_SNB));
7977
Akash Goel4e046322014-04-04 17:14:38 +05307978 /* WaDisable_RenderCache_OperationalFlush:snb */
7979 I915_WRITE(CACHE_MODE_0, _MASKED_BIT_DISABLE(RC_OP_FLUSH_ENABLE));
7980
Ville Syrjälä8d85d272014-02-04 21:59:15 +02007981 /*
7982 * BSpec recoomends 8x4 when MSAA is used,
7983 * however in practice 16x4 seems fastest.
Ville Syrjäläc5c98a52014-02-05 12:43:47 +02007984 *
7985 * Note that PS/WM thread counts depend on the WIZ hashing
7986 * disable bit, which we don't touch here, but it's good
7987 * to keep in mind (see 3DSTATE_PS and 3DSTATE_WM).
Ville Syrjälä8d85d272014-02-04 21:59:15 +02007988 */
7989 I915_WRITE(GEN6_GT_MODE,
Damien Lespiau98533252014-12-08 17:33:51 +00007990 _MASKED_FIELD(GEN6_WIZ_HASHING_MASK, GEN6_WIZ_HASHING_16x4));
Ville Syrjälä8d85d272014-02-04 21:59:15 +02007991
Ville Syrjälä46f16e62016-10-31 22:37:22 +02007992 ilk_init_lp_watermarks(dev_priv);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007993
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007994 I915_WRITE(CACHE_MODE_0,
Daniel Vetter50743292012-04-26 22:02:54 +02007995 _MASKED_BIT_DISABLE(CM0_STC_EVICT_DISABLE_LRA_SNB));
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03007996
7997 I915_WRITE(GEN6_UCGCTL1,
7998 I915_READ(GEN6_UCGCTL1) |
7999 GEN6_BLBUNIT_CLOCK_GATE_DISABLE |
8000 GEN6_CSUNIT_CLOCK_GATE_DISABLE);
8001
8002 /* According to the BSpec vol1g, bit 12 (RCPBUNIT) clock
8003 * gating disable must be set. Failure to set it results in
8004 * flickering pixels due to Z write ordering failures after
8005 * some amount of runtime in the Mesa "fire" demo, and Unigine
8006 * Sanctuary and Tropics, and apparently anything else with
8007 * alpha test or pixel discard.
8008 *
8009 * According to the spec, bit 11 (RCCUNIT) must also be set,
8010 * but we didn't debug actual testcases to find it out.
Jesse Barnes0f846f82012-06-14 11:04:47 -07008011 *
Ville Syrjäläef593182014-01-22 21:32:47 +02008012 * WaDisableRCCUnitClockGating:snb
8013 * WaDisableRCPBUnitClockGating:snb
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008014 */
8015 I915_WRITE(GEN6_UCGCTL2,
8016 GEN6_RCPBUNIT_CLOCK_GATE_DISABLE |
8017 GEN6_RCCUNIT_CLOCK_GATE_DISABLE);
8018
Ville Syrjälä5eb146d2014-02-04 21:59:16 +02008019 /* WaStripsFansDisableFastClipPerformanceFix:snb */
Ville Syrjälä743b57d2014-02-04 21:59:17 +02008020 I915_WRITE(_3D_CHICKEN3,
8021 _MASKED_BIT_ENABLE(_3D_CHICKEN3_SF_DISABLE_FASTCLIP_CULL));
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008022
8023 /*
Ville Syrjäläe927ecd2014-02-04 21:59:18 +02008024 * Bspec says:
8025 * "This bit must be set if 3DSTATE_CLIP clip mode is set to normal and
8026 * 3DSTATE_SF number of SF output attributes is more than 16."
8027 */
8028 I915_WRITE(_3D_CHICKEN3,
8029 _MASKED_BIT_ENABLE(_3D_CHICKEN3_SF_DISABLE_PIPELINED_ATTR_FETCH));
8030
8031 /*
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008032 * According to the spec the following bits should be
8033 * set in order to enable memory self-refresh and fbc:
8034 * The bit21 and bit22 of 0x42000
8035 * The bit21 and bit22 of 0x42004
8036 * The bit5 and bit7 of 0x42020
8037 * The bit14 of 0x70180
8038 * The bit14 of 0x71180
Damien Lespiau4bb35332013-06-14 15:23:24 +01008039 *
8040 * WaFbcAsynchFlipDisableFbcQueue:snb
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008041 */
8042 I915_WRITE(ILK_DISPLAY_CHICKEN1,
8043 I915_READ(ILK_DISPLAY_CHICKEN1) |
8044 ILK_FBCQ_DIS | ILK_PABSTRETCH_DIS);
8045 I915_WRITE(ILK_DISPLAY_CHICKEN2,
8046 I915_READ(ILK_DISPLAY_CHICKEN2) |
8047 ILK_DPARB_GATE | ILK_VSDPFD_FULL);
Damien Lespiau231e54f2012-10-19 17:55:41 +01008048 I915_WRITE(ILK_DSPCLK_GATE_D,
8049 I915_READ(ILK_DSPCLK_GATE_D) |
8050 ILK_DPARBUNIT_CLOCK_GATE_ENABLE |
8051 ILK_DPFDUNIT_CLOCK_GATE_ENABLE);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008052
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008053 g4x_disable_trickle_feed(dev_priv);
Ben Widawskyf8f2ac92012-10-03 19:34:24 -07008054
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008055 cpt_init_clock_gating(dev_priv);
Daniel Vetter1d7aaa02013-02-09 21:03:42 +01008056
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008057 gen6_check_mch_setup(dev_priv);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008058}
8059
8060static void gen7_setup_fixed_func_scheduler(struct drm_i915_private *dev_priv)
8061{
8062 uint32_t reg = I915_READ(GEN7_FF_THREAD_MODE);
8063
Ville Syrjälä3aad9052014-01-22 21:32:59 +02008064 /*
Ville Syrjälä46680e02014-01-22 21:33:01 +02008065 * WaVSThreadDispatchOverride:ivb,vlv
Ville Syrjälä3aad9052014-01-22 21:32:59 +02008066 *
8067 * This actually overrides the dispatch
8068 * mode for all thread types.
8069 */
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008070 reg &= ~GEN7_FF_SCHED_MASK;
8071 reg |= GEN7_FF_TS_SCHED_HW;
8072 reg |= GEN7_FF_VS_SCHED_HW;
8073 reg |= GEN7_FF_DS_SCHED_HW;
8074
8075 I915_WRITE(GEN7_FF_THREAD_MODE, reg);
8076}
8077
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008078static void lpt_init_clock_gating(struct drm_i915_private *dev_priv)
Paulo Zanoni17a303e2012-11-20 15:12:07 -02008079{
Paulo Zanoni17a303e2012-11-20 15:12:07 -02008080 /*
8081 * TODO: this bit should only be enabled when really needed, then
8082 * disabled when not needed anymore in order to save power.
8083 */
Tvrtko Ursulin4f8036a2016-10-13 11:02:52 +01008084 if (HAS_PCH_LPT_LP(dev_priv))
Paulo Zanoni17a303e2012-11-20 15:12:07 -02008085 I915_WRITE(SOUTH_DSPCLK_GATE_D,
8086 I915_READ(SOUTH_DSPCLK_GATE_D) |
8087 PCH_LP_PARTITION_LEVEL_DISABLE);
Paulo Zanoni0a790cd2013-04-17 18:15:49 -03008088
8089 /* WADPOClockGatingDisable:hsw */
Ville Syrjälä36c0d0c2015-09-18 20:03:31 +03008090 I915_WRITE(TRANS_CHICKEN1(PIPE_A),
8091 I915_READ(TRANS_CHICKEN1(PIPE_A)) |
Paulo Zanoni0a790cd2013-04-17 18:15:49 -03008092 TRANS_CHICKEN1_DP0UNIT_GC_DISABLE);
Paulo Zanoni17a303e2012-11-20 15:12:07 -02008093}
8094
Ville Syrjälä712bf362016-10-31 22:37:23 +02008095static void lpt_suspend_hw(struct drm_i915_private *dev_priv)
Imre Deak7d708ee2013-04-17 14:04:50 +03008096{
Tvrtko Ursulin4f8036a2016-10-13 11:02:52 +01008097 if (HAS_PCH_LPT_LP(dev_priv)) {
Imre Deak7d708ee2013-04-17 14:04:50 +03008098 uint32_t val = I915_READ(SOUTH_DSPCLK_GATE_D);
8099
8100 val &= ~PCH_LP_PARTITION_LEVEL_DISABLE;
8101 I915_WRITE(SOUTH_DSPCLK_GATE_D, val);
8102 }
8103}
8104
Imre Deak450174f2016-05-03 15:54:21 +03008105static void gen8_set_l3sqc_credits(struct drm_i915_private *dev_priv,
8106 int general_prio_credits,
8107 int high_prio_credits)
8108{
8109 u32 misccpctl;
8110
8111 /* WaTempDisableDOPClkGating:bdw */
8112 misccpctl = I915_READ(GEN7_MISCCPCTL);
8113 I915_WRITE(GEN7_MISCCPCTL, misccpctl & ~GEN7_DOP_CLOCK_GATE_ENABLE);
8114
8115 I915_WRITE(GEN8_L3SQCREG1,
8116 L3_GENERAL_PRIO_CREDITS(general_prio_credits) |
8117 L3_HIGH_PRIO_CREDITS(high_prio_credits));
8118
8119 /*
8120 * Wait at least 100 clocks before re-enabling clock gating.
8121 * See the definition of L3SQCREG1 in BSpec.
8122 */
8123 POSTING_READ(GEN8_L3SQCREG1);
8124 udelay(1);
8125 I915_WRITE(GEN7_MISCCPCTL, misccpctl);
8126}
8127
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008128static void kabylake_init_clock_gating(struct drm_i915_private *dev_priv)
Mika Kuoppala9498dba2016-06-07 17:19:01 +03008129{
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008130 gen9_init_clock_gating(dev_priv);
Mika Kuoppala9498dba2016-06-07 17:19:01 +03008131
8132 /* WaDisableSDEUnitClockGating:kbl */
8133 if (IS_KBL_REVID(dev_priv, 0, KBL_REVID_B0))
8134 I915_WRITE(GEN8_UCGCTL6, I915_READ(GEN8_UCGCTL6) |
8135 GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
Mika Kuoppala8aeb7f62016-06-07 17:19:05 +03008136
8137 /* WaDisableGamClockGating:kbl */
8138 if (IS_KBL_REVID(dev_priv, 0, KBL_REVID_B0))
8139 I915_WRITE(GEN6_UCGCTL1, I915_READ(GEN6_UCGCTL1) |
8140 GEN6_GAMUNIT_CLOCK_GATE_DISABLE);
Mika Kuoppala031cd8c2016-06-07 17:19:18 +03008141
8142 /* WaFbcNukeOnHostModify:kbl */
8143 I915_WRITE(ILK_DPFC_CHICKEN, I915_READ(ILK_DPFC_CHICKEN) |
8144 ILK_DPFC_NUKE_ON_ANY_MODIFICATION);
Mika Kuoppala9498dba2016-06-07 17:19:01 +03008145}
8146
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008147static void skylake_init_clock_gating(struct drm_i915_private *dev_priv)
Daniel Vetterdc00b6a2016-05-19 09:14:20 +02008148{
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008149 gen9_init_clock_gating(dev_priv);
Mika Kuoppala44fff992016-06-07 17:19:09 +03008150
8151 /* WAC6entrylatency:skl */
8152 I915_WRITE(FBC_LLC_READ_CTRL, I915_READ(FBC_LLC_READ_CTRL) |
8153 FBC_LLC_FULLY_OPEN);
Mika Kuoppala031cd8c2016-06-07 17:19:18 +03008154
8155 /* WaFbcNukeOnHostModify:skl */
8156 I915_WRITE(ILK_DPFC_CHICKEN, I915_READ(ILK_DPFC_CHICKEN) |
8157 ILK_DPFC_NUKE_ON_ANY_MODIFICATION);
Daniel Vetterdc00b6a2016-05-19 09:14:20 +02008158}
8159
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008160static void broadwell_init_clock_gating(struct drm_i915_private *dev_priv)
Ben Widawsky1020a5c2013-11-02 21:07:06 -07008161{
Damien Lespiau07d27e22014-03-03 17:31:46 +00008162 enum pipe pipe;
Ben Widawsky1020a5c2013-11-02 21:07:06 -07008163
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008164 ilk_init_lp_watermarks(dev_priv);
Ben Widawsky50ed5fb2013-11-02 21:07:40 -07008165
Ben Widawskyab57fff2013-12-12 15:28:04 -08008166 /* WaSwitchSolVfFArbitrationPriority:bdw */
Ben Widawsky50ed5fb2013-11-02 21:07:40 -07008167 I915_WRITE(GAM_ECOCHK, I915_READ(GAM_ECOCHK) | HSW_ECOCHK_ARB_PRIO_SOL);
Ben Widawskyfe4ab3c2013-11-02 21:07:54 -07008168
Ben Widawskyab57fff2013-12-12 15:28:04 -08008169 /* WaPsrDPAMaskVBlankInSRD:bdw */
Ben Widawskyfe4ab3c2013-11-02 21:07:54 -07008170 I915_WRITE(CHICKEN_PAR1_1,
8171 I915_READ(CHICKEN_PAR1_1) | DPA_MASK_VBLANK_SRD);
8172
Ben Widawskyab57fff2013-12-12 15:28:04 -08008173 /* WaPsrDPRSUnmaskVBlankInSRD:bdw */
Damien Lespiau055e3932014-08-18 13:49:10 +01008174 for_each_pipe(dev_priv, pipe) {
Damien Lespiau07d27e22014-03-03 17:31:46 +00008175 I915_WRITE(CHICKEN_PIPESL_1(pipe),
Ville Syrjäläc7c65622014-03-05 13:05:45 +02008176 I915_READ(CHICKEN_PIPESL_1(pipe)) |
Ville Syrjälä8f670bb2014-03-05 13:05:47 +02008177 BDW_DPRS_MASK_VBLANK_SRD);
Ben Widawskyfe4ab3c2013-11-02 21:07:54 -07008178 }
Ben Widawsky63801f22013-12-12 17:26:03 -08008179
Ben Widawskyab57fff2013-12-12 15:28:04 -08008180 /* WaVSRefCountFullforceMissDisable:bdw */
8181 /* WaDSRefCountFullforceMissDisable:bdw */
8182 I915_WRITE(GEN7_FF_THREAD_MODE,
8183 I915_READ(GEN7_FF_THREAD_MODE) &
8184 ~(GEN8_FF_DS_REF_CNT_FFME | GEN7_FF_VS_REF_CNT_FFME));
Ville Syrjälä36075a42014-02-04 21:59:21 +02008185
Ville Syrjälä295e8bb2014-02-27 21:59:01 +02008186 I915_WRITE(GEN6_RC_SLEEP_PSMI_CONTROL,
8187 _MASKED_BIT_ENABLE(GEN8_RC_SEMA_IDLE_MSG_DISABLE));
Ville Syrjälä4f1ca9e2014-02-27 21:59:02 +02008188
8189 /* WaDisableSDEUnitClockGating:bdw */
8190 I915_WRITE(GEN8_UCGCTL6, I915_READ(GEN8_UCGCTL6) |
8191 GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
Damien Lespiau5d708682014-03-26 18:41:51 +00008192
Imre Deak450174f2016-05-03 15:54:21 +03008193 /* WaProgramL3SqcReg1Default:bdw */
8194 gen8_set_l3sqc_credits(dev_priv, 30, 2);
Ville Syrjälä4d487cf2015-05-19 20:32:56 +03008195
Ville Syrjälä6d50b062015-05-19 20:32:57 +03008196 /*
8197 * WaGttCachingOffByDefault:bdw
8198 * GTT cache may not work with big pages, so if those
8199 * are ever enabled GTT cache may need to be disabled.
8200 */
8201 I915_WRITE(HSW_GTT_CACHE_EN, GTT_CACHE_EN_ALL);
8202
Mika Kuoppala17e0adf2016-06-07 17:19:02 +03008203 /* WaKVMNotificationOnConfigChange:bdw */
8204 I915_WRITE(CHICKEN_PAR2_1, I915_READ(CHICKEN_PAR2_1)
8205 | KVM_CONFIG_CHANGE_NOTIFICATION_SELECT);
8206
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008207 lpt_init_clock_gating(dev_priv);
Robert Bragg9cc19732017-02-12 13:32:52 +00008208
8209 /* WaDisableDopClockGating:bdw
8210 *
8211 * Also see the CHICKEN2 write in bdw_init_workarounds() to disable DOP
8212 * clock gating.
8213 */
8214 I915_WRITE(GEN6_UCGCTL1,
8215 I915_READ(GEN6_UCGCTL1) | GEN6_EU_TCUNIT_CLOCK_GATE_DISABLE);
Ben Widawsky1020a5c2013-11-02 21:07:06 -07008216}
8217
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008218static void haswell_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonovcad2a2d2012-07-02 11:51:09 -03008219{
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008220 ilk_init_lp_watermarks(dev_priv);
Eugeni Dodonovcad2a2d2012-07-02 11:51:09 -03008221
Francisco Jerezf3fc4882013-10-02 15:53:16 -07008222 /* L3 caching of data atomics doesn't work -- disable it. */
8223 I915_WRITE(HSW_SCRATCH1, HSW_SCRATCH1_L3_DATA_ATOMICS_DISABLE);
8224 I915_WRITE(HSW_ROW_CHICKEN3,
8225 _MASKED_BIT_ENABLE(HSW_ROW_CHICKEN3_L3_GLOBAL_ATOMICS_DISABLE));
8226
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008227 /* This is required by WaCatErrorRejectionIssue:hsw */
Eugeni Dodonovcad2a2d2012-07-02 11:51:09 -03008228 I915_WRITE(GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
8229 I915_READ(GEN7_SQ_CHICKEN_MBCUNIT_CONFIG) |
8230 GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
8231
Ville Syrjäläe36ea7f2014-01-22 21:33:00 +02008232 /* WaVSRefCountFullforceMissDisable:hsw */
8233 I915_WRITE(GEN7_FF_THREAD_MODE,
8234 I915_READ(GEN7_FF_THREAD_MODE) & ~GEN7_FF_VS_REF_CNT_FFME);
Eugeni Dodonovcad2a2d2012-07-02 11:51:09 -03008235
Akash Goel4e046322014-04-04 17:14:38 +05308236 /* WaDisable_RenderCache_OperationalFlush:hsw */
8237 I915_WRITE(CACHE_MODE_0_GEN7, _MASKED_BIT_DISABLE(RC_OP_FLUSH_ENABLE));
8238
Chia-I Wufe27c602014-01-28 13:29:33 +08008239 /* enable HiZ Raw Stall Optimization */
8240 I915_WRITE(CACHE_MODE_0_GEN7,
8241 _MASKED_BIT_DISABLE(HIZ_RAW_STALL_OPT_DISABLE));
8242
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008243 /* WaDisable4x2SubspanOptimization:hsw */
Eugeni Dodonovcad2a2d2012-07-02 11:51:09 -03008244 I915_WRITE(CACHE_MODE_1,
8245 _MASKED_BIT_ENABLE(PIXEL_SUBSPAN_COLLECT_OPT_DISABLE));
Eugeni Dodonov1544d9d2012-07-02 11:51:10 -03008246
Ville Syrjäläa12c4962014-02-04 21:59:20 +02008247 /*
8248 * BSpec recommends 8x4 when MSAA is used,
8249 * however in practice 16x4 seems fastest.
Ville Syrjäläc5c98a52014-02-05 12:43:47 +02008250 *
8251 * Note that PS/WM thread counts depend on the WIZ hashing
8252 * disable bit, which we don't touch here, but it's good
8253 * to keep in mind (see 3DSTATE_PS and 3DSTATE_WM).
Ville Syrjäläa12c4962014-02-04 21:59:20 +02008254 */
8255 I915_WRITE(GEN7_GT_MODE,
Damien Lespiau98533252014-12-08 17:33:51 +00008256 _MASKED_FIELD(GEN6_WIZ_HASHING_MASK, GEN6_WIZ_HASHING_16x4));
Ville Syrjäläa12c4962014-02-04 21:59:20 +02008257
Kenneth Graunke94411592014-12-31 16:23:00 -08008258 /* WaSampleCChickenBitEnable:hsw */
8259 I915_WRITE(HALF_SLICE_CHICKEN3,
8260 _MASKED_BIT_ENABLE(HSW_SAMPLE_C_PERFORMANCE));
8261
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008262 /* WaSwitchSolVfFArbitrationPriority:hsw */
Ben Widawskye3dff582013-03-20 14:49:14 -07008263 I915_WRITE(GAM_ECOCHK, I915_READ(GAM_ECOCHK) | HSW_ECOCHK_ARB_PRIO_SOL);
8264
Paulo Zanoni90a88642013-05-03 17:23:45 -03008265 /* WaRsPkgCStateDisplayPMReq:hsw */
8266 I915_WRITE(CHICKEN_PAR1_1,
8267 I915_READ(CHICKEN_PAR1_1) | FORCE_ARB_IDLE_PLANES);
Eugeni Dodonov1544d9d2012-07-02 11:51:10 -03008268
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008269 lpt_init_clock_gating(dev_priv);
Eugeni Dodonovcad2a2d2012-07-02 11:51:09 -03008270}
8271
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008272static void ivybridge_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008273{
Ben Widawsky20848222012-05-04 18:58:59 -07008274 uint32_t snpcr;
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008275
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008276 ilk_init_lp_watermarks(dev_priv);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008277
Damien Lespiau231e54f2012-10-19 17:55:41 +01008278 I915_WRITE(ILK_DSPCLK_GATE_D, ILK_VRHUNIT_CLOCK_GATE_DISABLE);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008279
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008280 /* WaDisableEarlyCull:ivb */
Jesse Barnes87f80202012-10-02 17:43:41 -05008281 I915_WRITE(_3D_CHICKEN3,
8282 _MASKED_BIT_ENABLE(_3D_CHICKEN_SF_DISABLE_OBJEND_CULL));
8283
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008284 /* WaDisableBackToBackFlipFix:ivb */
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008285 I915_WRITE(IVB_CHICKEN3,
8286 CHICKEN3_DGMG_REQ_OUT_FIX_DISABLE |
8287 CHICKEN3_DGMG_DONE_FIX_DISABLE);
8288
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008289 /* WaDisablePSDDualDispatchEnable:ivb */
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +01008290 if (IS_IVB_GT1(dev_priv))
Jesse Barnes12f33822012-10-25 12:15:45 -07008291 I915_WRITE(GEN7_HALF_SLICE_CHICKEN1,
8292 _MASKED_BIT_ENABLE(GEN7_PSD_SINGLE_PORT_DISPATCH_ENABLE));
Jesse Barnes12f33822012-10-25 12:15:45 -07008293
Akash Goel4e046322014-04-04 17:14:38 +05308294 /* WaDisable_RenderCache_OperationalFlush:ivb */
8295 I915_WRITE(CACHE_MODE_0_GEN7, _MASKED_BIT_DISABLE(RC_OP_FLUSH_ENABLE));
8296
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008297 /* Apply the WaDisableRHWOOptimizationForRenderHang:ivb workaround. */
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008298 I915_WRITE(GEN7_COMMON_SLICE_CHICKEN1,
8299 GEN7_CSC1_RHWO_OPT_DISABLE_IN_RCC);
8300
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008301 /* WaApplyL3ControlAndL3ChickenMode:ivb */
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008302 I915_WRITE(GEN7_L3CNTLREG1,
8303 GEN7_WA_FOR_GEN7_L3_CONTROL);
8304 I915_WRITE(GEN7_L3_CHICKEN_MODE_REGISTER,
Jesse Barnes8ab43972012-10-25 12:15:42 -07008305 GEN7_WA_L3_CHICKEN_MODE);
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +01008306 if (IS_IVB_GT1(dev_priv))
Jesse Barnes8ab43972012-10-25 12:15:42 -07008307 I915_WRITE(GEN7_ROW_CHICKEN2,
8308 _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
Ville Syrjälä412236c2014-01-22 21:32:44 +02008309 else {
8310 /* must write both registers */
8311 I915_WRITE(GEN7_ROW_CHICKEN2,
8312 _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
Jesse Barnes8ab43972012-10-25 12:15:42 -07008313 I915_WRITE(GEN7_ROW_CHICKEN2_GT2,
8314 _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
Ville Syrjälä412236c2014-01-22 21:32:44 +02008315 }
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008316
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008317 /* WaForceL3Serialization:ivb */
Jesse Barnes61939d92012-10-02 17:43:38 -05008318 I915_WRITE(GEN7_L3SQCREG4, I915_READ(GEN7_L3SQCREG4) &
8319 ~L3SQ_URB_READ_CAM_MATCH_DISABLE);
8320
Ville Syrjälä1b80a19a2014-01-22 21:32:53 +02008321 /*
Jesse Barnes0f846f82012-06-14 11:04:47 -07008322 * According to the spec, bit 13 (RCZUNIT) must be set on IVB.
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008323 * This implements the WaDisableRCZUnitClockGating:ivb workaround.
Jesse Barnes0f846f82012-06-14 11:04:47 -07008324 */
8325 I915_WRITE(GEN6_UCGCTL2,
Ville Syrjälä28acf3b2014-01-22 21:32:48 +02008326 GEN6_RCZUNIT_CLOCK_GATE_DISABLE);
Jesse Barnes0f846f82012-06-14 11:04:47 -07008327
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008328 /* This is required by WaCatErrorRejectionIssue:ivb */
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008329 I915_WRITE(GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
8330 I915_READ(GEN7_SQ_CHICKEN_MBCUNIT_CONFIG) |
8331 GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
8332
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008333 g4x_disable_trickle_feed(dev_priv);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008334
8335 gen7_setup_fixed_func_scheduler(dev_priv);
Daniel Vetter97e19302012-04-24 16:00:21 +02008336
Chris Wilson22721342014-03-04 09:41:43 +00008337 if (0) { /* causes HiZ corruption on ivb:gt1 */
8338 /* enable HiZ Raw Stall Optimization */
8339 I915_WRITE(CACHE_MODE_0_GEN7,
8340 _MASKED_BIT_DISABLE(HIZ_RAW_STALL_OPT_DISABLE));
8341 }
Chia-I Wu116f2b62014-01-28 13:29:34 +08008342
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008343 /* WaDisable4x2SubspanOptimization:ivb */
Daniel Vetter97e19302012-04-24 16:00:21 +02008344 I915_WRITE(CACHE_MODE_1,
8345 _MASKED_BIT_ENABLE(PIXEL_SUBSPAN_COLLECT_OPT_DISABLE));
Ben Widawsky20848222012-05-04 18:58:59 -07008346
Ville Syrjäläa607c1a2014-02-04 21:59:19 +02008347 /*
8348 * BSpec recommends 8x4 when MSAA is used,
8349 * however in practice 16x4 seems fastest.
Ville Syrjäläc5c98a52014-02-05 12:43:47 +02008350 *
8351 * Note that PS/WM thread counts depend on the WIZ hashing
8352 * disable bit, which we don't touch here, but it's good
8353 * to keep in mind (see 3DSTATE_PS and 3DSTATE_WM).
Ville Syrjäläa607c1a2014-02-04 21:59:19 +02008354 */
8355 I915_WRITE(GEN7_GT_MODE,
Damien Lespiau98533252014-12-08 17:33:51 +00008356 _MASKED_FIELD(GEN6_WIZ_HASHING_MASK, GEN6_WIZ_HASHING_16x4));
Ville Syrjäläa607c1a2014-02-04 21:59:19 +02008357
Ben Widawsky20848222012-05-04 18:58:59 -07008358 snpcr = I915_READ(GEN6_MBCUNIT_SNPCR);
8359 snpcr &= ~GEN6_MBC_SNPCR_MASK;
8360 snpcr |= GEN6_MBC_SNPCR_MED;
8361 I915_WRITE(GEN6_MBCUNIT_SNPCR, snpcr);
Daniel Vetter3107bd42012-10-31 22:52:31 +01008362
Tvrtko Ursulin6e266952016-10-13 11:02:53 +01008363 if (!HAS_PCH_NOP(dev_priv))
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008364 cpt_init_clock_gating(dev_priv);
Daniel Vetter1d7aaa02013-02-09 21:03:42 +01008365
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008366 gen6_check_mch_setup(dev_priv);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008367}
8368
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008369static void valleyview_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008370{
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008371 /* WaDisableEarlyCull:vlv */
Jesse Barnes87f80202012-10-02 17:43:41 -05008372 I915_WRITE(_3D_CHICKEN3,
8373 _MASKED_BIT_ENABLE(_3D_CHICKEN_SF_DISABLE_OBJEND_CULL));
8374
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008375 /* WaDisableBackToBackFlipFix:vlv */
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008376 I915_WRITE(IVB_CHICKEN3,
8377 CHICKEN3_DGMG_REQ_OUT_FIX_DISABLE |
8378 CHICKEN3_DGMG_DONE_FIX_DISABLE);
8379
Ville Syrjäläfad7d362014-01-22 21:32:39 +02008380 /* WaPsdDispatchEnable:vlv */
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008381 /* WaDisablePSDDualDispatchEnable:vlv */
Jesse Barnes12f33822012-10-25 12:15:45 -07008382 I915_WRITE(GEN7_HALF_SLICE_CHICKEN1,
Jesse Barnesd3bc0302013-03-08 10:45:51 -08008383 _MASKED_BIT_ENABLE(GEN7_MAX_PS_THREAD_DEP |
8384 GEN7_PSD_SINGLE_PORT_DISPATCH_ENABLE));
Jesse Barnes12f33822012-10-25 12:15:45 -07008385
Akash Goel4e046322014-04-04 17:14:38 +05308386 /* WaDisable_RenderCache_OperationalFlush:vlv */
8387 I915_WRITE(CACHE_MODE_0_GEN7, _MASKED_BIT_DISABLE(RC_OP_FLUSH_ENABLE));
8388
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008389 /* WaForceL3Serialization:vlv */
Jesse Barnes61939d92012-10-02 17:43:38 -05008390 I915_WRITE(GEN7_L3SQCREG4, I915_READ(GEN7_L3SQCREG4) &
8391 ~L3SQ_URB_READ_CAM_MATCH_DISABLE);
8392
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008393 /* WaDisableDopClockGating:vlv */
Jesse Barnes8ab43972012-10-25 12:15:42 -07008394 I915_WRITE(GEN7_ROW_CHICKEN2,
8395 _MASKED_BIT_ENABLE(DOP_CLOCK_GATING_DISABLE));
8396
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008397 /* This is required by WaCatErrorRejectionIssue:vlv */
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008398 I915_WRITE(GEN7_SQ_CHICKEN_MBCUNIT_CONFIG,
8399 I915_READ(GEN7_SQ_CHICKEN_MBCUNIT_CONFIG) |
8400 GEN7_SQ_CHICKEN_MBCUNIT_SQINTMOB);
8401
Ville Syrjälä46680e02014-01-22 21:33:01 +02008402 gen7_setup_fixed_func_scheduler(dev_priv);
8403
Ville Syrjälä3c0edae2014-01-22 21:32:56 +02008404 /*
Jesse Barnes0f846f82012-06-14 11:04:47 -07008405 * According to the spec, bit 13 (RCZUNIT) must be set on IVB.
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008406 * This implements the WaDisableRCZUnitClockGating:vlv workaround.
Jesse Barnes0f846f82012-06-14 11:04:47 -07008407 */
8408 I915_WRITE(GEN6_UCGCTL2,
Ville Syrjälä3c0edae2014-01-22 21:32:56 +02008409 GEN6_RCZUNIT_CLOCK_GATE_DISABLE);
Jesse Barnes0f846f82012-06-14 11:04:47 -07008410
Akash Goelc98f5062014-03-24 23:00:07 +05308411 /* WaDisableL3Bank2xClockGate:vlv
8412 * Disabling L3 clock gating- MMIO 940c[25] = 1
8413 * Set bit 25, to disable L3_BANK_2x_CLK_GATING */
8414 I915_WRITE(GEN7_UCGCTL4,
8415 I915_READ(GEN7_UCGCTL4) | GEN7_L3BANK2X_CLOCK_GATE_DISABLE);
Jesse Barnese3f33d42012-06-14 11:04:50 -07008416
Ville Syrjäläafd58e72014-01-22 21:33:03 +02008417 /*
8418 * BSpec says this must be set, even though
8419 * WaDisable4x2SubspanOptimization isn't listed for VLV.
8420 */
Daniel Vetter6b26c862012-04-24 14:04:12 +02008421 I915_WRITE(CACHE_MODE_1,
8422 _MASKED_BIT_ENABLE(PIXEL_SUBSPAN_COLLECT_OPT_DISABLE));
Jesse Barnes79831172012-06-20 10:53:12 -07008423
8424 /*
Ville Syrjäläda2518f2015-01-21 19:38:01 +02008425 * BSpec recommends 8x4 when MSAA is used,
8426 * however in practice 16x4 seems fastest.
8427 *
8428 * Note that PS/WM thread counts depend on the WIZ hashing
8429 * disable bit, which we don't touch here, but it's good
8430 * to keep in mind (see 3DSTATE_PS and 3DSTATE_WM).
8431 */
8432 I915_WRITE(GEN7_GT_MODE,
8433 _MASKED_FIELD(GEN6_WIZ_HASHING_MASK, GEN6_WIZ_HASHING_16x4));
8434
8435 /*
Ville Syrjälä031994e2014-01-22 21:32:46 +02008436 * WaIncreaseL3CreditsForVLVB0:vlv
8437 * This is the hardware default actually.
8438 */
8439 I915_WRITE(GEN7_L3SQCREG1, VLV_B0_WA_L3SQCREG1_VALUE);
8440
8441 /*
Damien Lespiauecdb4eb72013-05-03 18:48:10 +01008442 * WaDisableVLVClockGating_VBIIssue:vlv
Jesse Barnes2d809572012-10-25 12:15:44 -07008443 * Disable clock gating on th GCFG unit to prevent a delay
8444 * in the reporting of vblank events.
8445 */
Ville Syrjälä7a0d1ee2014-01-22 21:33:04 +02008446 I915_WRITE(VLV_GUNIT_CLOCK_GATE, GCFG_DIS);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008447}
8448
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008449static void cherryview_init_clock_gating(struct drm_i915_private *dev_priv)
Ville Syrjäläa4565da2014-04-09 13:28:10 +03008450{
Ville Syrjälä232ce332014-04-09 13:28:35 +03008451 /* WaVSRefCountFullforceMissDisable:chv */
8452 /* WaDSRefCountFullforceMissDisable:chv */
8453 I915_WRITE(GEN7_FF_THREAD_MODE,
8454 I915_READ(GEN7_FF_THREAD_MODE) &
8455 ~(GEN8_FF_DS_REF_CNT_FFME | GEN7_FF_VS_REF_CNT_FFME));
Ville Syrjäläacea6f92014-04-09 13:28:36 +03008456
8457 /* WaDisableSemaphoreAndSyncFlipWait:chv */
8458 I915_WRITE(GEN6_RC_SLEEP_PSMI_CONTROL,
8459 _MASKED_BIT_ENABLE(GEN8_RC_SEMA_IDLE_MSG_DISABLE));
Ville Syrjälä08466972014-04-09 13:28:37 +03008460
8461 /* WaDisableCSUnitClockGating:chv */
8462 I915_WRITE(GEN6_UCGCTL1, I915_READ(GEN6_UCGCTL1) |
8463 GEN6_CSUNIT_CLOCK_GATE_DISABLE);
Ville Syrjäläc6317802014-04-09 13:28:38 +03008464
8465 /* WaDisableSDEUnitClockGating:chv */
8466 I915_WRITE(GEN8_UCGCTL6, I915_READ(GEN8_UCGCTL6) |
8467 GEN8_SDEUNIT_CLOCK_GATE_DISABLE);
Ville Syrjälä6d50b062015-05-19 20:32:57 +03008468
8469 /*
Imre Deak450174f2016-05-03 15:54:21 +03008470 * WaProgramL3SqcReg1Default:chv
8471 * See gfxspecs/Related Documents/Performance Guide/
8472 * LSQC Setting Recommendations.
8473 */
8474 gen8_set_l3sqc_credits(dev_priv, 38, 2);
8475
8476 /*
Ville Syrjälä6d50b062015-05-19 20:32:57 +03008477 * GTT cache may not work with big pages, so if those
8478 * are ever enabled GTT cache may need to be disabled.
8479 */
8480 I915_WRITE(HSW_GTT_CACHE_EN, GTT_CACHE_EN_ALL);
Ville Syrjäläa4565da2014-04-09 13:28:10 +03008481}
8482
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008483static void g4x_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008484{
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008485 uint32_t dspclk_gate;
8486
8487 I915_WRITE(RENCLK_GATE_D1, 0);
8488 I915_WRITE(RENCLK_GATE_D2, VF_UNIT_CLOCK_GATE_DISABLE |
8489 GS_UNIT_CLOCK_GATE_DISABLE |
8490 CL_UNIT_CLOCK_GATE_DISABLE);
8491 I915_WRITE(RAMCLK_GATE_D, 0);
8492 dspclk_gate = VRHUNIT_CLOCK_GATE_DISABLE |
8493 OVRUNIT_CLOCK_GATE_DISABLE |
8494 OVCUNIT_CLOCK_GATE_DISABLE;
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +01008495 if (IS_GM45(dev_priv))
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008496 dspclk_gate |= DSSUNIT_CLOCK_GATE_DISABLE;
8497 I915_WRITE(DSPCLK_GATE_D, dspclk_gate);
Daniel Vetter4358a372012-10-18 11:49:51 +02008498
8499 /* WaDisableRenderCachePipelinedFlush */
8500 I915_WRITE(CACHE_MODE_0,
8501 _MASKED_BIT_ENABLE(CM0_PIPELINED_RENDER_FLUSH_DISABLE));
Ville Syrjäläde1aa622013-06-07 10:47:01 +03008502
Akash Goel4e046322014-04-04 17:14:38 +05308503 /* WaDisable_RenderCache_OperationalFlush:g4x */
8504 I915_WRITE(CACHE_MODE_0, _MASKED_BIT_DISABLE(RC_OP_FLUSH_ENABLE));
8505
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008506 g4x_disable_trickle_feed(dev_priv);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008507}
8508
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008509static void crestline_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008510{
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008511 I915_WRITE(RENCLK_GATE_D1, I965_RCC_CLOCK_GATE_DISABLE);
8512 I915_WRITE(RENCLK_GATE_D2, 0);
8513 I915_WRITE(DSPCLK_GATE_D, 0);
8514 I915_WRITE(RAMCLK_GATE_D, 0);
8515 I915_WRITE16(DEUC, 0);
Ville Syrjälä20f94962013-06-07 10:47:02 +03008516 I915_WRITE(MI_ARB_STATE,
8517 _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
Akash Goel4e046322014-04-04 17:14:38 +05308518
8519 /* WaDisable_RenderCache_OperationalFlush:gen4 */
8520 I915_WRITE(CACHE_MODE_0, _MASKED_BIT_DISABLE(RC_OP_FLUSH_ENABLE));
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008521}
8522
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008523static void broadwater_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008524{
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008525 I915_WRITE(RENCLK_GATE_D1, I965_RCZ_CLOCK_GATE_DISABLE |
8526 I965_RCC_CLOCK_GATE_DISABLE |
8527 I965_RCPB_CLOCK_GATE_DISABLE |
8528 I965_ISC_CLOCK_GATE_DISABLE |
8529 I965_FBC_CLOCK_GATE_DISABLE);
8530 I915_WRITE(RENCLK_GATE_D2, 0);
Ville Syrjälä20f94962013-06-07 10:47:02 +03008531 I915_WRITE(MI_ARB_STATE,
8532 _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
Akash Goel4e046322014-04-04 17:14:38 +05308533
8534 /* WaDisable_RenderCache_OperationalFlush:gen4 */
8535 I915_WRITE(CACHE_MODE_0, _MASKED_BIT_DISABLE(RC_OP_FLUSH_ENABLE));
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008536}
8537
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008538static void gen3_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008539{
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008540 u32 dstate = I915_READ(D_STATE);
8541
8542 dstate |= DSTATE_PLL_D3_OFF | DSTATE_GFX_CLOCK_GATING |
8543 DSTATE_DOT_CLOCK_GATING;
8544 I915_WRITE(D_STATE, dstate);
Chris Wilson13a86b82012-04-24 14:51:43 +01008545
Ville Syrjälä9b1e14f2016-10-31 22:37:15 +02008546 if (IS_PINEVIEW(dev_priv))
Chris Wilson13a86b82012-04-24 14:51:43 +01008547 I915_WRITE(ECOSKPD, _MASKED_BIT_ENABLE(ECO_GATING_CX_ONLY));
Daniel Vetter974a3b02012-09-09 11:54:16 +02008548
8549 /* IIR "flip pending" means done if this bit is set */
8550 I915_WRITE(ECOSKPD, _MASKED_BIT_DISABLE(ECO_FLIP_DONE));
Ville Syrjälä12fabbcb92014-02-25 15:13:38 +02008551
8552 /* interrupts should cause a wake up from C3 */
Ville Syrjälä32992542014-02-25 15:13:39 +02008553 I915_WRITE(INSTPM, _MASKED_BIT_ENABLE(INSTPM_AGPBUSY_INT_EN));
Ville Syrjälädbb42742014-02-25 15:13:41 +02008554
8555 /* On GEN3 we really need to make sure the ARB C3 LP bit is set */
8556 I915_WRITE(MI_ARB_STATE, _MASKED_BIT_ENABLE(MI_ARB_C3_LP_WRITE_ENABLE));
Ville Syrjälä10383922014-08-15 01:21:54 +03008557
8558 I915_WRITE(MI_ARB_STATE,
8559 _MASKED_BIT_ENABLE(MI_ARB_DISPLAY_TRICKLE_FEED_DISABLE));
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008560}
8561
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008562static void i85x_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008563{
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008564 I915_WRITE(RENCLK_GATE_D1, SV_CLOCK_GATE_DISABLE);
Ville Syrjälä54e472a2014-02-25 15:13:40 +02008565
8566 /* interrupts should cause a wake up from C3 */
8567 I915_WRITE(MI_STATE, _MASKED_BIT_ENABLE(MI_AGPBUSY_INT_EN) |
8568 _MASKED_BIT_DISABLE(MI_AGPBUSY_830_MODE));
Ville Syrjälä10383922014-08-15 01:21:54 +03008569
8570 I915_WRITE(MEM_MODE,
8571 _MASKED_BIT_ENABLE(MEM_DISPLAY_TRICKLE_FEED_DISABLE));
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008572}
8573
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008574static void i830_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008575{
Ville Syrjälä10383922014-08-15 01:21:54 +03008576 I915_WRITE(MEM_MODE,
8577 _MASKED_BIT_ENABLE(MEM_DISPLAY_A_TRICKLE_FEED_DISABLE) |
8578 _MASKED_BIT_ENABLE(MEM_DISPLAY_B_TRICKLE_FEED_DISABLE));
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008579}
8580
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008581void intel_init_clock_gating(struct drm_i915_private *dev_priv)
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008582{
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008583 dev_priv->display.init_clock_gating(dev_priv);
Eugeni Dodonov6f1d69b2012-04-18 15:29:25 -03008584}
8585
Ville Syrjälä712bf362016-10-31 22:37:23 +02008586void intel_suspend_hw(struct drm_i915_private *dev_priv)
Imre Deak7d708ee2013-04-17 14:04:50 +03008587{
Ville Syrjälä712bf362016-10-31 22:37:23 +02008588 if (HAS_PCH_LPT(dev_priv))
8589 lpt_suspend_hw(dev_priv);
Imre Deak7d708ee2013-04-17 14:04:50 +03008590}
8591
Ville Syrjälä46f16e62016-10-31 22:37:22 +02008592static void nop_init_clock_gating(struct drm_i915_private *dev_priv)
Imre Deakbb400da2016-03-16 13:38:54 +02008593{
8594 DRM_DEBUG_KMS("No clock gating settings or workarounds applied.\n");
8595}
8596
8597/**
8598 * intel_init_clock_gating_hooks - setup the clock gating hooks
8599 * @dev_priv: device private
8600 *
8601 * Setup the hooks that configure which clocks of a given platform can be
8602 * gated and also apply various GT and display specific workarounds for these
8603 * platforms. Note that some GT specific workarounds are applied separately
8604 * when GPU contexts or batchbuffers start their execution.
8605 */
8606void intel_init_clock_gating_hooks(struct drm_i915_private *dev_priv)
8607{
8608 if (IS_SKYLAKE(dev_priv))
Daniel Vetterdc00b6a2016-05-19 09:14:20 +02008609 dev_priv->display.init_clock_gating = skylake_init_clock_gating;
Imre Deakbb400da2016-03-16 13:38:54 +02008610 else if (IS_KABYLAKE(dev_priv))
Mika Kuoppala9498dba2016-06-07 17:19:01 +03008611 dev_priv->display.init_clock_gating = kabylake_init_clock_gating;
Ander Conselvan de Oliveira9fb50262017-01-26 11:16:58 +02008612 else if (IS_BROXTON(dev_priv))
Imre Deakbb400da2016-03-16 13:38:54 +02008613 dev_priv->display.init_clock_gating = bxt_init_clock_gating;
Ander Conselvan de Oliveira9fb50262017-01-26 11:16:58 +02008614 else if (IS_GEMINILAKE(dev_priv))
8615 dev_priv->display.init_clock_gating = glk_init_clock_gating;
Imre Deakbb400da2016-03-16 13:38:54 +02008616 else if (IS_BROADWELL(dev_priv))
8617 dev_priv->display.init_clock_gating = broadwell_init_clock_gating;
8618 else if (IS_CHERRYVIEW(dev_priv))
8619 dev_priv->display.init_clock_gating = cherryview_init_clock_gating;
8620 else if (IS_HASWELL(dev_priv))
8621 dev_priv->display.init_clock_gating = haswell_init_clock_gating;
8622 else if (IS_IVYBRIDGE(dev_priv))
8623 dev_priv->display.init_clock_gating = ivybridge_init_clock_gating;
8624 else if (IS_VALLEYVIEW(dev_priv))
8625 dev_priv->display.init_clock_gating = valleyview_init_clock_gating;
8626 else if (IS_GEN6(dev_priv))
8627 dev_priv->display.init_clock_gating = gen6_init_clock_gating;
8628 else if (IS_GEN5(dev_priv))
8629 dev_priv->display.init_clock_gating = ironlake_init_clock_gating;
8630 else if (IS_G4X(dev_priv))
8631 dev_priv->display.init_clock_gating = g4x_init_clock_gating;
Jani Nikulac0f86832016-12-07 12:13:04 +02008632 else if (IS_I965GM(dev_priv))
Imre Deakbb400da2016-03-16 13:38:54 +02008633 dev_priv->display.init_clock_gating = crestline_init_clock_gating;
Jani Nikulac0f86832016-12-07 12:13:04 +02008634 else if (IS_I965G(dev_priv))
Imre Deakbb400da2016-03-16 13:38:54 +02008635 dev_priv->display.init_clock_gating = broadwater_init_clock_gating;
8636 else if (IS_GEN3(dev_priv))
8637 dev_priv->display.init_clock_gating = gen3_init_clock_gating;
8638 else if (IS_I85X(dev_priv) || IS_I865G(dev_priv))
8639 dev_priv->display.init_clock_gating = i85x_init_clock_gating;
8640 else if (IS_GEN2(dev_priv))
8641 dev_priv->display.init_clock_gating = i830_init_clock_gating;
8642 else {
8643 MISSING_CASE(INTEL_DEVID(dev_priv));
8644 dev_priv->display.init_clock_gating = nop_init_clock_gating;
8645 }
8646}
8647
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008648/* Set up chip specific power management-related functions */
Ville Syrjälä62d75df2016-10-31 22:37:25 +02008649void intel_init_pm(struct drm_i915_private *dev_priv)
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008650{
Rodrigo Vivi7ff0ebc2014-12-08 14:09:10 -02008651 intel_fbc_init(dev_priv);
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008652
Daniel Vetterc921aba2012-04-26 23:28:17 +02008653 /* For cxsr */
Ville Syrjälä9b1e14f2016-10-31 22:37:15 +02008654 if (IS_PINEVIEW(dev_priv))
Ville Syrjälä148ac1f2016-10-31 22:37:16 +02008655 i915_pineview_get_mem_freq(dev_priv);
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01008656 else if (IS_GEN5(dev_priv))
Ville Syrjälä148ac1f2016-10-31 22:37:16 +02008657 i915_ironlake_get_mem_freq(dev_priv);
Daniel Vetterc921aba2012-04-26 23:28:17 +02008658
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008659 /* For FIFO watermark updates */
Ville Syrjälä62d75df2016-10-31 22:37:25 +02008660 if (INTEL_GEN(dev_priv) >= 9) {
Ville Syrjäläbb726512016-10-31 22:37:24 +02008661 skl_setup_wm_latency(dev_priv);
Maarten Lankhorste62929b2016-11-08 13:55:33 +01008662 dev_priv->display.initial_watermarks = skl_initial_wm;
Maarten Lankhorstccf010f2016-11-08 13:55:32 +01008663 dev_priv->display.atomic_update_watermarks = skl_atomic_update_crtc_wm;
Matt Roper98d39492016-05-12 07:06:03 -07008664 dev_priv->display.compute_global_watermarks = skl_compute_wm;
Tvrtko Ursulin6e266952016-10-13 11:02:53 +01008665 } else if (HAS_PCH_SPLIT(dev_priv)) {
Ville Syrjäläbb726512016-10-31 22:37:24 +02008666 ilk_setup_wm_latency(dev_priv);
Ville Syrjälä53615a52013-08-01 16:18:50 +03008667
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01008668 if ((IS_GEN5(dev_priv) && dev_priv->wm.pri_latency[1] &&
Ville Syrjäläbd602542014-01-07 16:14:10 +02008669 dev_priv->wm.spr_latency[1] && dev_priv->wm.cur_latency[1]) ||
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01008670 (!IS_GEN5(dev_priv) && dev_priv->wm.pri_latency[0] &&
Ville Syrjäläbd602542014-01-07 16:14:10 +02008671 dev_priv->wm.spr_latency[0] && dev_priv->wm.cur_latency[0])) {
Matt Roper86c8bbb2015-09-24 15:53:16 -07008672 dev_priv->display.compute_pipe_wm = ilk_compute_pipe_wm;
Matt Ropered4a6a72016-02-23 17:20:13 -08008673 dev_priv->display.compute_intermediate_wm =
8674 ilk_compute_intermediate_wm;
8675 dev_priv->display.initial_watermarks =
8676 ilk_initial_watermarks;
8677 dev_priv->display.optimize_watermarks =
8678 ilk_optimize_watermarks;
Ville Syrjäläbd602542014-01-07 16:14:10 +02008679 } else {
8680 DRM_DEBUG_KMS("Failed to read display plane latency. "
8681 "Disable CxSR\n");
8682 }
Ville Syrjälä6b6b3ee2016-11-28 19:37:07 +02008683 } else if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
Ville Syrjäläbb726512016-10-31 22:37:24 +02008684 vlv_setup_wm_latency(dev_priv);
Ville Syrjäläff32c542017-03-02 19:14:57 +02008685 dev_priv->display.compute_pipe_wm = vlv_compute_pipe_wm;
Ville Syrjälä4841da52017-03-02 19:14:59 +02008686 dev_priv->display.compute_intermediate_wm = vlv_compute_intermediate_wm;
Ville Syrjäläff32c542017-03-02 19:14:57 +02008687 dev_priv->display.initial_watermarks = vlv_initial_watermarks;
Ville Syrjälä4841da52017-03-02 19:14:59 +02008688 dev_priv->display.optimize_watermarks = vlv_optimize_watermarks;
Ville Syrjäläff32c542017-03-02 19:14:57 +02008689 dev_priv->display.atomic_update_watermarks = vlv_atomic_update_fifo;
Ville Syrjälä04548cb2017-04-21 21:14:29 +03008690 } else if (IS_G4X(dev_priv)) {
8691 g4x_setup_wm_latency(dev_priv);
8692 dev_priv->display.compute_pipe_wm = g4x_compute_pipe_wm;
8693 dev_priv->display.compute_intermediate_wm = g4x_compute_intermediate_wm;
8694 dev_priv->display.initial_watermarks = g4x_initial_watermarks;
8695 dev_priv->display.optimize_watermarks = g4x_optimize_watermarks;
Ville Syrjälä9b1e14f2016-10-31 22:37:15 +02008696 } else if (IS_PINEVIEW(dev_priv)) {
Tvrtko Ursulin50a0bc92016-10-13 11:02:58 +01008697 if (!intel_get_cxsr_latency(IS_PINEVIEW_G(dev_priv),
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008698 dev_priv->is_ddr3,
8699 dev_priv->fsb_freq,
8700 dev_priv->mem_freq)) {
8701 DRM_INFO("failed to find known CxSR latency "
8702 "(found ddr%s fsb freq %d, mem freq %d), "
8703 "disabling CxSR\n",
8704 (dev_priv->is_ddr3 == 1) ? "3" : "2",
8705 dev_priv->fsb_freq, dev_priv->mem_freq);
8706 /* Disable CxSR and never update its watermark again */
Imre Deak5209b1f2014-07-01 12:36:17 +03008707 intel_set_memory_cxsr(dev_priv, false);
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008708 dev_priv->display.update_wm = NULL;
8709 } else
8710 dev_priv->display.update_wm = pineview_update_wm;
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01008711 } else if (IS_GEN4(dev_priv)) {
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008712 dev_priv->display.update_wm = i965_update_wm;
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01008713 } else if (IS_GEN3(dev_priv)) {
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008714 dev_priv->display.update_wm = i9xx_update_wm;
8715 dev_priv->display.get_fifo_size = i9xx_get_fifo_size;
Tvrtko Ursulin5db94012016-10-13 11:03:10 +01008716 } else if (IS_GEN2(dev_priv)) {
Ville Syrjälä62d75df2016-10-31 22:37:25 +02008717 if (INTEL_INFO(dev_priv)->num_pipes == 1) {
Daniel Vetterfeb56b92013-12-14 20:38:30 -02008718 dev_priv->display.update_wm = i845_update_wm;
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008719 dev_priv->display.get_fifo_size = i845_get_fifo_size;
Daniel Vetterfeb56b92013-12-14 20:38:30 -02008720 } else {
8721 dev_priv->display.update_wm = i9xx_update_wm;
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008722 dev_priv->display.get_fifo_size = i830_get_fifo_size;
Daniel Vetterfeb56b92013-12-14 20:38:30 -02008723 }
Daniel Vetterfeb56b92013-12-14 20:38:30 -02008724 } else {
8725 DRM_ERROR("unexpected fall-through in intel_init_pm\n");
Eugeni Dodonov1fa61102012-04-18 15:29:26 -03008726 }
8727}
8728
Lyude87660502016-08-17 15:55:53 -04008729static inline int gen6_check_mailbox_status(struct drm_i915_private *dev_priv)
8730{
8731 uint32_t flags =
8732 I915_READ_FW(GEN6_PCODE_MAILBOX) & GEN6_PCODE_ERROR_MASK;
8733
8734 switch (flags) {
8735 case GEN6_PCODE_SUCCESS:
8736 return 0;
8737 case GEN6_PCODE_UNIMPLEMENTED_CMD:
8738 case GEN6_PCODE_ILLEGAL_CMD:
8739 return -ENXIO;
8740 case GEN6_PCODE_MIN_FREQ_TABLE_GT_RATIO_OUT_OF_RANGE:
Chris Wilson7850d1c2016-08-26 11:59:26 +01008741 case GEN7_PCODE_MIN_FREQ_TABLE_GT_RATIO_OUT_OF_RANGE:
Lyude87660502016-08-17 15:55:53 -04008742 return -EOVERFLOW;
8743 case GEN6_PCODE_TIMEOUT:
8744 return -ETIMEDOUT;
8745 default:
Michal Wajdeczkof0d66152017-03-28 08:45:12 +00008746 MISSING_CASE(flags);
Lyude87660502016-08-17 15:55:53 -04008747 return 0;
8748 }
8749}
8750
8751static inline int gen7_check_mailbox_status(struct drm_i915_private *dev_priv)
8752{
8753 uint32_t flags =
8754 I915_READ_FW(GEN6_PCODE_MAILBOX) & GEN6_PCODE_ERROR_MASK;
8755
8756 switch (flags) {
8757 case GEN6_PCODE_SUCCESS:
8758 return 0;
8759 case GEN6_PCODE_ILLEGAL_CMD:
8760 return -ENXIO;
8761 case GEN7_PCODE_TIMEOUT:
8762 return -ETIMEDOUT;
8763 case GEN7_PCODE_ILLEGAL_DATA:
8764 return -EINVAL;
8765 case GEN7_PCODE_MIN_FREQ_TABLE_GT_RATIO_OUT_OF_RANGE:
8766 return -EOVERFLOW;
8767 default:
8768 MISSING_CASE(flags);
8769 return 0;
8770 }
8771}
8772
Tom O'Rourke151a49d2014-11-13 18:50:10 -08008773int sandybridge_pcode_read(struct drm_i915_private *dev_priv, u32 mbox, u32 *val)
Ben Widawsky42c05262012-09-26 10:34:00 -07008774{
Lyude87660502016-08-17 15:55:53 -04008775 int status;
8776
Jesse Barnes4fc688c2012-11-02 11:14:01 -07008777 WARN_ON(!mutex_is_locked(&dev_priv->rps.hw_lock));
Ben Widawsky42c05262012-09-26 10:34:00 -07008778
Chris Wilson3f5582d2016-06-30 15:32:45 +01008779 /* GEN6_PCODE_* are outside of the forcewake domain, we can
8780 * use te fw I915_READ variants to reduce the amount of work
8781 * required when reading/writing.
8782 */
8783
8784 if (I915_READ_FW(GEN6_PCODE_MAILBOX) & GEN6_PCODE_READY) {
Ben Widawsky42c05262012-09-26 10:34:00 -07008785 DRM_DEBUG_DRIVER("warning: pcode (read) mailbox access failed\n");
8786 return -EAGAIN;
8787 }
8788
Chris Wilson3f5582d2016-06-30 15:32:45 +01008789 I915_WRITE_FW(GEN6_PCODE_DATA, *val);
8790 I915_WRITE_FW(GEN6_PCODE_DATA1, 0);
8791 I915_WRITE_FW(GEN6_PCODE_MAILBOX, GEN6_PCODE_READY | mbox);
Ben Widawsky42c05262012-09-26 10:34:00 -07008792
Chris Wilsone09a3032017-04-11 11:13:39 +01008793 if (__intel_wait_for_register_fw(dev_priv,
8794 GEN6_PCODE_MAILBOX, GEN6_PCODE_READY, 0,
8795 500, 0, NULL)) {
Ben Widawsky42c05262012-09-26 10:34:00 -07008796 DRM_ERROR("timeout waiting for pcode read (%d) to finish\n", mbox);
8797 return -ETIMEDOUT;
8798 }
8799
Chris Wilson3f5582d2016-06-30 15:32:45 +01008800 *val = I915_READ_FW(GEN6_PCODE_DATA);
8801 I915_WRITE_FW(GEN6_PCODE_DATA, 0);
Ben Widawsky42c05262012-09-26 10:34:00 -07008802
Lyude87660502016-08-17 15:55:53 -04008803 if (INTEL_GEN(dev_priv) > 6)
8804 status = gen7_check_mailbox_status(dev_priv);
8805 else
8806 status = gen6_check_mailbox_status(dev_priv);
8807
8808 if (status) {
8809 DRM_DEBUG_DRIVER("warning: pcode (read) mailbox access failed: %d\n",
8810 status);
8811 return status;
8812 }
8813
Ben Widawsky42c05262012-09-26 10:34:00 -07008814 return 0;
8815}
8816
Chris Wilson3f5582d2016-06-30 15:32:45 +01008817int sandybridge_pcode_write(struct drm_i915_private *dev_priv,
Lyude87660502016-08-17 15:55:53 -04008818 u32 mbox, u32 val)
Ben Widawsky42c05262012-09-26 10:34:00 -07008819{
Lyude87660502016-08-17 15:55:53 -04008820 int status;
8821
Jesse Barnes4fc688c2012-11-02 11:14:01 -07008822 WARN_ON(!mutex_is_locked(&dev_priv->rps.hw_lock));
Ben Widawsky42c05262012-09-26 10:34:00 -07008823
Chris Wilson3f5582d2016-06-30 15:32:45 +01008824 /* GEN6_PCODE_* are outside of the forcewake domain, we can
8825 * use te fw I915_READ variants to reduce the amount of work
8826 * required when reading/writing.
8827 */
8828
8829 if (I915_READ_FW(GEN6_PCODE_MAILBOX) & GEN6_PCODE_READY) {
Ben Widawsky42c05262012-09-26 10:34:00 -07008830 DRM_DEBUG_DRIVER("warning: pcode (write) mailbox access failed\n");
8831 return -EAGAIN;
8832 }
8833
Chris Wilson3f5582d2016-06-30 15:32:45 +01008834 I915_WRITE_FW(GEN6_PCODE_DATA, val);
Imre Deak8bf41b72016-11-28 17:29:27 +02008835 I915_WRITE_FW(GEN6_PCODE_DATA1, 0);
Chris Wilson3f5582d2016-06-30 15:32:45 +01008836 I915_WRITE_FW(GEN6_PCODE_MAILBOX, GEN6_PCODE_READY | mbox);
Ben Widawsky42c05262012-09-26 10:34:00 -07008837
Chris Wilsone09a3032017-04-11 11:13:39 +01008838 if (__intel_wait_for_register_fw(dev_priv,
8839 GEN6_PCODE_MAILBOX, GEN6_PCODE_READY, 0,
8840 500, 0, NULL)) {
Ben Widawsky42c05262012-09-26 10:34:00 -07008841 DRM_ERROR("timeout waiting for pcode write (%d) to finish\n", mbox);
8842 return -ETIMEDOUT;
8843 }
8844
Chris Wilson3f5582d2016-06-30 15:32:45 +01008845 I915_WRITE_FW(GEN6_PCODE_DATA, 0);
Ben Widawsky42c05262012-09-26 10:34:00 -07008846
Lyude87660502016-08-17 15:55:53 -04008847 if (INTEL_GEN(dev_priv) > 6)
8848 status = gen7_check_mailbox_status(dev_priv);
8849 else
8850 status = gen6_check_mailbox_status(dev_priv);
8851
8852 if (status) {
8853 DRM_DEBUG_DRIVER("warning: pcode (write) mailbox access failed: %d\n",
8854 status);
8855 return status;
8856 }
8857
Ben Widawsky42c05262012-09-26 10:34:00 -07008858 return 0;
8859}
Jesse Barnesa0e4e192013-04-02 11:23:05 -07008860
Imre Deaka0b8a1f2016-12-05 18:27:37 +02008861static bool skl_pcode_try_request(struct drm_i915_private *dev_priv, u32 mbox,
8862 u32 request, u32 reply_mask, u32 reply,
8863 u32 *status)
8864{
8865 u32 val = request;
8866
8867 *status = sandybridge_pcode_read(dev_priv, mbox, &val);
8868
8869 return *status || ((val & reply_mask) == reply);
8870}
8871
8872/**
8873 * skl_pcode_request - send PCODE request until acknowledgment
8874 * @dev_priv: device private
8875 * @mbox: PCODE mailbox ID the request is targeted for
8876 * @request: request ID
8877 * @reply_mask: mask used to check for request acknowledgment
8878 * @reply: value used to check for request acknowledgment
8879 * @timeout_base_ms: timeout for polling with preemption enabled
8880 *
8881 * Keep resending the @request to @mbox until PCODE acknowledges it, PCODE
Imre Deak01299362017-02-24 16:32:10 +02008882 * reports an error or an overall timeout of @timeout_base_ms+50 ms expires.
Imre Deaka0b8a1f2016-12-05 18:27:37 +02008883 * The request is acknowledged once the PCODE reply dword equals @reply after
8884 * applying @reply_mask. Polling is first attempted with preemption enabled
Imre Deak01299362017-02-24 16:32:10 +02008885 * for @timeout_base_ms and if this times out for another 50 ms with
Imre Deaka0b8a1f2016-12-05 18:27:37 +02008886 * preemption disabled.
8887 *
8888 * Returns 0 on success, %-ETIMEDOUT in case of a timeout, <0 in case of some
8889 * other error as reported by PCODE.
8890 */
8891int skl_pcode_request(struct drm_i915_private *dev_priv, u32 mbox, u32 request,
8892 u32 reply_mask, u32 reply, int timeout_base_ms)
8893{
8894 u32 status;
8895 int ret;
8896
8897 WARN_ON(!mutex_is_locked(&dev_priv->rps.hw_lock));
8898
8899#define COND skl_pcode_try_request(dev_priv, mbox, request, reply_mask, reply, \
8900 &status)
8901
8902 /*
8903 * Prime the PCODE by doing a request first. Normally it guarantees
8904 * that a subsequent request, at most @timeout_base_ms later, succeeds.
8905 * _wait_for() doesn't guarantee when its passed condition is evaluated
8906 * first, so send the first request explicitly.
8907 */
8908 if (COND) {
8909 ret = 0;
8910 goto out;
8911 }
8912 ret = _wait_for(COND, timeout_base_ms * 1000, 10);
8913 if (!ret)
8914 goto out;
8915
8916 /*
8917 * The above can time out if the number of requests was low (2 in the
8918 * worst case) _and_ PCODE was busy for some reason even after a
8919 * (queued) request and @timeout_base_ms delay. As a workaround retry
8920 * the poll with preemption disabled to maximize the number of
Imre Deak01299362017-02-24 16:32:10 +02008921 * requests. Increase the timeout from @timeout_base_ms to 50ms to
Imre Deaka0b8a1f2016-12-05 18:27:37 +02008922 * account for interrupts that could reduce the number of these
Imre Deak01299362017-02-24 16:32:10 +02008923 * requests, and for any quirks of the PCODE firmware that delays
8924 * the request completion.
Imre Deaka0b8a1f2016-12-05 18:27:37 +02008925 */
8926 DRM_DEBUG_KMS("PCODE timeout, retrying with preemption disabled\n");
8927 WARN_ON_ONCE(timeout_base_ms > 3);
8928 preempt_disable();
Imre Deak01299362017-02-24 16:32:10 +02008929 ret = wait_for_atomic(COND, 50);
Imre Deaka0b8a1f2016-12-05 18:27:37 +02008930 preempt_enable();
8931
8932out:
8933 return ret ? ret : status;
8934#undef COND
8935}
8936
Ville Syrjälädd06f882014-11-10 22:55:12 +02008937static int byt_gpu_freq(struct drm_i915_private *dev_priv, int val)
8938{
Ville Syrjäläc30fec62016-03-04 21:43:02 +02008939 /*
8940 * N = val - 0xb7
8941 * Slow = Fast = GPLL ref * N
8942 */
8943 return DIV_ROUND_CLOSEST(dev_priv->rps.gpll_ref_freq * (val - 0xb7), 1000);
Jesse Barnes855ba3b2013-04-17 15:54:57 -07008944}
8945
Fengguang Wub55dd642014-07-12 11:21:39 +02008946static int byt_freq_opcode(struct drm_i915_private *dev_priv, int val)
Jesse Barnes855ba3b2013-04-17 15:54:57 -07008947{
Ville Syrjäläc30fec62016-03-04 21:43:02 +02008948 return DIV_ROUND_CLOSEST(1000 * val, dev_priv->rps.gpll_ref_freq) + 0xb7;
Jesse Barnes855ba3b2013-04-17 15:54:57 -07008949}
8950
Fengguang Wub55dd642014-07-12 11:21:39 +02008951static int chv_gpu_freq(struct drm_i915_private *dev_priv, int val)
Deepak S22b1b2f2014-07-12 14:54:33 +05308952{
Ville Syrjäläc30fec62016-03-04 21:43:02 +02008953 /*
8954 * N = val / 2
8955 * CU (slow) = CU2x (fast) / 2 = GPLL ref * N / 2
8956 */
8957 return DIV_ROUND_CLOSEST(dev_priv->rps.gpll_ref_freq * val, 2 * 2 * 1000);
Deepak S22b1b2f2014-07-12 14:54:33 +05308958}
8959
Fengguang Wub55dd642014-07-12 11:21:39 +02008960static int chv_freq_opcode(struct drm_i915_private *dev_priv, int val)
Deepak S22b1b2f2014-07-12 14:54:33 +05308961{
Ville Syrjälä1c147622014-08-18 14:42:43 +03008962 /* CHV needs even values */
Ville Syrjäläc30fec62016-03-04 21:43:02 +02008963 return DIV_ROUND_CLOSEST(2 * 1000 * val, dev_priv->rps.gpll_ref_freq) * 2;
Deepak S22b1b2f2014-07-12 14:54:33 +05308964}
8965
Ville Syrjälä616bc822015-01-23 21:04:25 +02008966int intel_gpu_freq(struct drm_i915_private *dev_priv, int val)
8967{
Joonas Lahtinen2d1fe072016-04-07 11:08:05 +03008968 if (IS_GEN9(dev_priv))
Mika Kuoppala500a3d22015-11-13 19:29:41 +02008969 return DIV_ROUND_CLOSEST(val * GT_FREQUENCY_MULTIPLIER,
8970 GEN9_FREQ_SCALER);
Joonas Lahtinen2d1fe072016-04-07 11:08:05 +03008971 else if (IS_CHERRYVIEW(dev_priv))
Ville Syrjälä616bc822015-01-23 21:04:25 +02008972 return chv_gpu_freq(dev_priv, val);
Joonas Lahtinen2d1fe072016-04-07 11:08:05 +03008973 else if (IS_VALLEYVIEW(dev_priv))
Ville Syrjälä616bc822015-01-23 21:04:25 +02008974 return byt_gpu_freq(dev_priv, val);
8975 else
8976 return val * GT_FREQUENCY_MULTIPLIER;
8977}
8978
Ville Syrjälä616bc822015-01-23 21:04:25 +02008979int intel_freq_opcode(struct drm_i915_private *dev_priv, int val)
8980{
Joonas Lahtinen2d1fe072016-04-07 11:08:05 +03008981 if (IS_GEN9(dev_priv))
Mika Kuoppala500a3d22015-11-13 19:29:41 +02008982 return DIV_ROUND_CLOSEST(val * GEN9_FREQ_SCALER,
8983 GT_FREQUENCY_MULTIPLIER);
Joonas Lahtinen2d1fe072016-04-07 11:08:05 +03008984 else if (IS_CHERRYVIEW(dev_priv))
Ville Syrjälä616bc822015-01-23 21:04:25 +02008985 return chv_freq_opcode(dev_priv, val);
Joonas Lahtinen2d1fe072016-04-07 11:08:05 +03008986 else if (IS_VALLEYVIEW(dev_priv))
Ville Syrjälä616bc822015-01-23 21:04:25 +02008987 return byt_freq_opcode(dev_priv, val);
8988 else
Mika Kuoppala500a3d22015-11-13 19:29:41 +02008989 return DIV_ROUND_CLOSEST(val, GT_FREQUENCY_MULTIPLIER);
Deepak S22b1b2f2014-07-12 14:54:33 +05308990}
8991
Chris Wilson6ad790c2015-04-07 16:20:31 +01008992struct request_boost {
8993 struct work_struct work;
Daniel Vettereed29a52015-05-21 14:21:25 +02008994 struct drm_i915_gem_request *req;
Chris Wilson6ad790c2015-04-07 16:20:31 +01008995};
8996
8997static void __intel_rps_boost_work(struct work_struct *work)
8998{
8999 struct request_boost *boost = container_of(work, struct request_boost, work);
Chris Wilsone61b9952015-04-27 13:41:24 +01009000 struct drm_i915_gem_request *req = boost->req;
Chris Wilson6ad790c2015-04-07 16:20:31 +01009001
Chris Wilsonf69a02c2016-07-01 17:23:16 +01009002 if (!i915_gem_request_completed(req))
Chris Wilsonc0336662016-05-06 15:40:21 +01009003 gen6_rps_boost(req->i915, NULL, req->emitted_jiffies);
Chris Wilson6ad790c2015-04-07 16:20:31 +01009004
Chris Wilsone8a261e2016-07-20 13:31:49 +01009005 i915_gem_request_put(req);
Chris Wilson6ad790c2015-04-07 16:20:31 +01009006 kfree(boost);
9007}
9008
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01009009void intel_queue_rps_boost_for_request(struct drm_i915_gem_request *req)
Chris Wilson6ad790c2015-04-07 16:20:31 +01009010{
9011 struct request_boost *boost;
9012
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01009013 if (req == NULL || INTEL_GEN(req->i915) < 6)
Chris Wilson6ad790c2015-04-07 16:20:31 +01009014 return;
9015
Chris Wilsonf69a02c2016-07-01 17:23:16 +01009016 if (i915_gem_request_completed(req))
Chris Wilsone61b9952015-04-27 13:41:24 +01009017 return;
9018
Chris Wilson6ad790c2015-04-07 16:20:31 +01009019 boost = kmalloc(sizeof(*boost), GFP_ATOMIC);
9020 if (boost == NULL)
9021 return;
9022
Chris Wilsone8a261e2016-07-20 13:31:49 +01009023 boost->req = i915_gem_request_get(req);
Chris Wilson6ad790c2015-04-07 16:20:31 +01009024
9025 INIT_WORK(&boost->work, __intel_rps_boost_work);
Tvrtko Ursulin91d14252016-05-06 14:48:28 +01009026 queue_work(req->i915->wq, &boost->work);
Chris Wilson6ad790c2015-04-07 16:20:31 +01009027}
9028
Tvrtko Ursulin192aa182016-12-01 14:16:45 +00009029void intel_pm_setup(struct drm_i915_private *dev_priv)
Chris Wilson907b28c2013-07-19 20:36:52 +01009030{
Daniel Vetterf742a552013-12-06 10:17:53 +01009031 mutex_init(&dev_priv->rps.hw_lock);
Chris Wilson8d3afd72015-05-21 21:01:47 +01009032 spin_lock_init(&dev_priv->rps.client_lock);
Daniel Vetterf742a552013-12-06 10:17:53 +01009033
Chris Wilson54b4f682016-07-21 21:16:19 +01009034 INIT_DELAYED_WORK(&dev_priv->rps.autoenable_work,
9035 __intel_autoenable_gt_powersave);
Chris Wilson1854d5c2015-04-07 16:20:32 +01009036 INIT_LIST_HEAD(&dev_priv->rps.clients);
Paulo Zanoni5d584b22014-03-07 20:08:15 -03009037
Paulo Zanoni33688d92014-03-07 20:08:19 -03009038 dev_priv->pm.suspended = false;
Imre Deak1f814da2015-12-16 02:52:19 +02009039 atomic_set(&dev_priv->pm.wakeref_count, 0);
Chris Wilson907b28c2013-07-19 20:36:52 +01009040}
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009041
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009042static u64 vlv_residency_raw(struct drm_i915_private *dev_priv,
9043 const i915_reg_t reg)
9044{
Chris Wilsonfacbeca2017-03-17 12:59:18 +00009045 u32 lower, upper, tmp;
Chris Wilson71cc2b12017-03-24 16:54:18 +00009046 int loop = 2;
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009047
9048 /* The register accessed do not need forcewake. We borrow
9049 * uncore lock to prevent concurrent access to range reg.
9050 */
9051 spin_lock_irq(&dev_priv->uncore.lock);
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009052
9053 /* vlv and chv residency counters are 40 bits in width.
9054 * With a control bit, we can choose between upper or lower
9055 * 32bit window into this counter.
Chris Wilsonfacbeca2017-03-17 12:59:18 +00009056 *
9057 * Although we always use the counter in high-range mode elsewhere,
9058 * userspace may attempt to read the value before rc6 is initialised,
9059 * before we have set the default VLV_COUNTER_CONTROL value. So always
9060 * set the high bit to be safe.
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009061 */
Chris Wilsonfacbeca2017-03-17 12:59:18 +00009062 I915_WRITE_FW(VLV_COUNTER_CONTROL,
9063 _MASKED_BIT_ENABLE(VLV_COUNT_RANGE_HIGH));
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009064 upper = I915_READ_FW(reg);
9065 do {
9066 tmp = upper;
9067
9068 I915_WRITE_FW(VLV_COUNTER_CONTROL,
9069 _MASKED_BIT_DISABLE(VLV_COUNT_RANGE_HIGH));
9070 lower = I915_READ_FW(reg);
9071
9072 I915_WRITE_FW(VLV_COUNTER_CONTROL,
9073 _MASKED_BIT_ENABLE(VLV_COUNT_RANGE_HIGH));
9074 upper = I915_READ_FW(reg);
Chris Wilson71cc2b12017-03-24 16:54:18 +00009075 } while (upper != tmp && --loop);
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009076
Chris Wilsonfacbeca2017-03-17 12:59:18 +00009077 /* Everywhere else we always use VLV_COUNTER_CONTROL with the
9078 * VLV_COUNT_RANGE_HIGH bit set - so it is safe to leave it set
9079 * now.
9080 */
9081
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009082 spin_unlock_irq(&dev_priv->uncore.lock);
9083
9084 return lower | (u64)upper << 8;
9085}
9086
Mika Kuoppalac5a0ad12017-03-15 17:43:00 +02009087u64 intel_rc6_residency_us(struct drm_i915_private *dev_priv,
9088 const i915_reg_t reg)
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009089{
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009090 u64 time_hw, units, div;
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009091
9092 if (!intel_enable_rc6())
9093 return 0;
9094
9095 intel_runtime_pm_get(dev_priv);
9096
9097 /* On VLV and CHV, residency time is in CZ units rather than 1.28us */
9098 if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
Mika Kuoppalac5a0ad12017-03-15 17:43:00 +02009099 units = 1000;
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009100 div = dev_priv->czclk_freq;
9101
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009102 time_hw = vlv_residency_raw(dev_priv, reg);
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009103 } else if (IS_GEN9_LP(dev_priv)) {
Mika Kuoppalac5a0ad12017-03-15 17:43:00 +02009104 units = 1000;
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009105 div = 1200; /* 833.33ns */
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009106
9107 time_hw = I915_READ(reg);
9108 } else {
9109 units = 128000; /* 1.28us */
9110 div = 100000;
9111
9112 time_hw = I915_READ(reg);
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009113 }
9114
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009115 intel_runtime_pm_put(dev_priv);
Mika Kuoppala47c21d92017-03-15 18:07:13 +02009116 return DIV_ROUND_UP_ULL(time_hw * units, div);
Mika Kuoppala135bafa2017-03-15 17:42:59 +02009117}