blob: a54b701f867c6732232a25fc2e0352db57a73dde [file] [log] [blame]
Jesse Barnes79e53942008-11-07 14:24:08 -08001/*
2 * Copyright © 2006-2007 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
21 * DEALINGS IN THE SOFTWARE.
22 *
23 * Authors:
24 * Eric Anholt <eric@anholt.net>
25 */
26
Jesse Barnesc1c7af62009-09-10 15:28:03 -070027#include <linux/module.h>
28#include <linux/input.h>
Jesse Barnes79e53942008-11-07 14:24:08 -080029#include <linux/i2c.h>
Shaohua Li7662c8b2009-06-26 11:23:55 +080030#include <linux/kernel.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090031#include <linux/slab.h>
Jesse Barnes9cce37f2010-08-13 15:11:26 -070032#include <linux/vgaarb.h>
Jesse Barnes79e53942008-11-07 14:24:08 -080033#include "drmP.h"
34#include "intel_drv.h"
35#include "i915_drm.h"
36#include "i915_drv.h"
Jesse Barnese5510fa2010-07-01 16:48:37 -070037#include "i915_trace.h"
Dave Airlieab2c0672009-12-04 10:55:24 +100038#include "drm_dp_helper.h"
Jesse Barnes79e53942008-11-07 14:24:08 -080039
40#include "drm_crtc_helper.h"
41
Zhenyu Wang32f9d652009-07-24 01:00:32 +080042#define HAS_eDP (intel_pipe_has_type(crtc, INTEL_OUTPUT_EDP))
43
Jesse Barnes79e53942008-11-07 14:24:08 -080044bool intel_pipe_has_type (struct drm_crtc *crtc, int type);
Shaohua Li7662c8b2009-06-26 11:23:55 +080045static void intel_update_watermarks(struct drm_device *dev);
Daniel Vetter3dec0092010-08-20 21:40:52 +020046static void intel_increase_pllclock(struct drm_crtc *crtc);
Chris Wilson6b383a72010-09-13 13:54:26 +010047static void intel_crtc_update_cursor(struct drm_crtc *crtc, bool on);
Jesse Barnes79e53942008-11-07 14:24:08 -080048
49typedef struct {
50 /* given values */
51 int n;
52 int m1, m2;
53 int p1, p2;
54 /* derived values */
55 int dot;
56 int vco;
57 int m;
58 int p;
59} intel_clock_t;
60
61typedef struct {
62 int min, max;
63} intel_range_t;
64
65typedef struct {
66 int dot_limit;
67 int p2_slow, p2_fast;
68} intel_p2_t;
69
70#define INTEL_P2_NUM 2
Ma Lingd4906092009-03-18 20:13:27 +080071typedef struct intel_limit intel_limit_t;
72struct intel_limit {
Jesse Barnes79e53942008-11-07 14:24:08 -080073 intel_range_t dot, vco, n, m, m1, m2, p, p1;
74 intel_p2_t p2;
Ma Lingd4906092009-03-18 20:13:27 +080075 bool (* find_pll)(const intel_limit_t *, struct drm_crtc *,
76 int, int, intel_clock_t *);
77};
Jesse Barnes79e53942008-11-07 14:24:08 -080078
79#define I8XX_DOT_MIN 25000
80#define I8XX_DOT_MAX 350000
81#define I8XX_VCO_MIN 930000
82#define I8XX_VCO_MAX 1400000
83#define I8XX_N_MIN 3
84#define I8XX_N_MAX 16
85#define I8XX_M_MIN 96
86#define I8XX_M_MAX 140
87#define I8XX_M1_MIN 18
88#define I8XX_M1_MAX 26
89#define I8XX_M2_MIN 6
90#define I8XX_M2_MAX 16
91#define I8XX_P_MIN 4
92#define I8XX_P_MAX 128
93#define I8XX_P1_MIN 2
94#define I8XX_P1_MAX 33
95#define I8XX_P1_LVDS_MIN 1
96#define I8XX_P1_LVDS_MAX 6
97#define I8XX_P2_SLOW 4
98#define I8XX_P2_FAST 2
99#define I8XX_P2_LVDS_SLOW 14
ling.ma@intel.com0c2e39522009-07-17 11:44:30 +0800100#define I8XX_P2_LVDS_FAST 7
Jesse Barnes79e53942008-11-07 14:24:08 -0800101#define I8XX_P2_SLOW_LIMIT 165000
102
103#define I9XX_DOT_MIN 20000
104#define I9XX_DOT_MAX 400000
105#define I9XX_VCO_MIN 1400000
106#define I9XX_VCO_MAX 2800000
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500107#define PINEVIEW_VCO_MIN 1700000
108#define PINEVIEW_VCO_MAX 3500000
Kristian Høgsbergf3cade52009-02-13 20:56:50 -0500109#define I9XX_N_MIN 1
110#define I9XX_N_MAX 6
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500111/* Pineview's Ncounter is a ring counter */
112#define PINEVIEW_N_MIN 3
113#define PINEVIEW_N_MAX 6
Jesse Barnes79e53942008-11-07 14:24:08 -0800114#define I9XX_M_MIN 70
115#define I9XX_M_MAX 120
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500116#define PINEVIEW_M_MIN 2
117#define PINEVIEW_M_MAX 256
Jesse Barnes79e53942008-11-07 14:24:08 -0800118#define I9XX_M1_MIN 10
Kristian Høgsbergf3cade52009-02-13 20:56:50 -0500119#define I9XX_M1_MAX 22
Jesse Barnes79e53942008-11-07 14:24:08 -0800120#define I9XX_M2_MIN 5
121#define I9XX_M2_MAX 9
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500122/* Pineview M1 is reserved, and must be 0 */
123#define PINEVIEW_M1_MIN 0
124#define PINEVIEW_M1_MAX 0
125#define PINEVIEW_M2_MIN 0
126#define PINEVIEW_M2_MAX 254
Jesse Barnes79e53942008-11-07 14:24:08 -0800127#define I9XX_P_SDVO_DAC_MIN 5
128#define I9XX_P_SDVO_DAC_MAX 80
129#define I9XX_P_LVDS_MIN 7
130#define I9XX_P_LVDS_MAX 98
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500131#define PINEVIEW_P_LVDS_MIN 7
132#define PINEVIEW_P_LVDS_MAX 112
Jesse Barnes79e53942008-11-07 14:24:08 -0800133#define I9XX_P1_MIN 1
134#define I9XX_P1_MAX 8
135#define I9XX_P2_SDVO_DAC_SLOW 10
136#define I9XX_P2_SDVO_DAC_FAST 5
137#define I9XX_P2_SDVO_DAC_SLOW_LIMIT 200000
138#define I9XX_P2_LVDS_SLOW 14
139#define I9XX_P2_LVDS_FAST 7
140#define I9XX_P2_LVDS_SLOW_LIMIT 112000
141
Ma Ling044c7c42009-03-18 20:13:23 +0800142/*The parameter is for SDVO on G4x platform*/
143#define G4X_DOT_SDVO_MIN 25000
144#define G4X_DOT_SDVO_MAX 270000
145#define G4X_VCO_MIN 1750000
146#define G4X_VCO_MAX 3500000
147#define G4X_N_SDVO_MIN 1
148#define G4X_N_SDVO_MAX 4
149#define G4X_M_SDVO_MIN 104
150#define G4X_M_SDVO_MAX 138
151#define G4X_M1_SDVO_MIN 17
152#define G4X_M1_SDVO_MAX 23
153#define G4X_M2_SDVO_MIN 5
154#define G4X_M2_SDVO_MAX 11
155#define G4X_P_SDVO_MIN 10
156#define G4X_P_SDVO_MAX 30
157#define G4X_P1_SDVO_MIN 1
158#define G4X_P1_SDVO_MAX 3
159#define G4X_P2_SDVO_SLOW 10
160#define G4X_P2_SDVO_FAST 10
161#define G4X_P2_SDVO_LIMIT 270000
162
163/*The parameter is for HDMI_DAC on G4x platform*/
164#define G4X_DOT_HDMI_DAC_MIN 22000
165#define G4X_DOT_HDMI_DAC_MAX 400000
166#define G4X_N_HDMI_DAC_MIN 1
167#define G4X_N_HDMI_DAC_MAX 4
168#define G4X_M_HDMI_DAC_MIN 104
169#define G4X_M_HDMI_DAC_MAX 138
170#define G4X_M1_HDMI_DAC_MIN 16
171#define G4X_M1_HDMI_DAC_MAX 23
172#define G4X_M2_HDMI_DAC_MIN 5
173#define G4X_M2_HDMI_DAC_MAX 11
174#define G4X_P_HDMI_DAC_MIN 5
175#define G4X_P_HDMI_DAC_MAX 80
176#define G4X_P1_HDMI_DAC_MIN 1
177#define G4X_P1_HDMI_DAC_MAX 8
178#define G4X_P2_HDMI_DAC_SLOW 10
179#define G4X_P2_HDMI_DAC_FAST 5
180#define G4X_P2_HDMI_DAC_LIMIT 165000
181
182/*The parameter is for SINGLE_CHANNEL_LVDS on G4x platform*/
183#define G4X_DOT_SINGLE_CHANNEL_LVDS_MIN 20000
184#define G4X_DOT_SINGLE_CHANNEL_LVDS_MAX 115000
185#define G4X_N_SINGLE_CHANNEL_LVDS_MIN 1
186#define G4X_N_SINGLE_CHANNEL_LVDS_MAX 3
187#define G4X_M_SINGLE_CHANNEL_LVDS_MIN 104
188#define G4X_M_SINGLE_CHANNEL_LVDS_MAX 138
189#define G4X_M1_SINGLE_CHANNEL_LVDS_MIN 17
190#define G4X_M1_SINGLE_CHANNEL_LVDS_MAX 23
191#define G4X_M2_SINGLE_CHANNEL_LVDS_MIN 5
192#define G4X_M2_SINGLE_CHANNEL_LVDS_MAX 11
193#define G4X_P_SINGLE_CHANNEL_LVDS_MIN 28
194#define G4X_P_SINGLE_CHANNEL_LVDS_MAX 112
195#define G4X_P1_SINGLE_CHANNEL_LVDS_MIN 2
196#define G4X_P1_SINGLE_CHANNEL_LVDS_MAX 8
197#define G4X_P2_SINGLE_CHANNEL_LVDS_SLOW 14
198#define G4X_P2_SINGLE_CHANNEL_LVDS_FAST 14
199#define G4X_P2_SINGLE_CHANNEL_LVDS_LIMIT 0
200
201/*The parameter is for DUAL_CHANNEL_LVDS on G4x platform*/
202#define G4X_DOT_DUAL_CHANNEL_LVDS_MIN 80000
203#define G4X_DOT_DUAL_CHANNEL_LVDS_MAX 224000
204#define G4X_N_DUAL_CHANNEL_LVDS_MIN 1
205#define G4X_N_DUAL_CHANNEL_LVDS_MAX 3
206#define G4X_M_DUAL_CHANNEL_LVDS_MIN 104
207#define G4X_M_DUAL_CHANNEL_LVDS_MAX 138
208#define G4X_M1_DUAL_CHANNEL_LVDS_MIN 17
209#define G4X_M1_DUAL_CHANNEL_LVDS_MAX 23
210#define G4X_M2_DUAL_CHANNEL_LVDS_MIN 5
211#define G4X_M2_DUAL_CHANNEL_LVDS_MAX 11
212#define G4X_P_DUAL_CHANNEL_LVDS_MIN 14
213#define G4X_P_DUAL_CHANNEL_LVDS_MAX 42
214#define G4X_P1_DUAL_CHANNEL_LVDS_MIN 2
215#define G4X_P1_DUAL_CHANNEL_LVDS_MAX 6
216#define G4X_P2_DUAL_CHANNEL_LVDS_SLOW 7
217#define G4X_P2_DUAL_CHANNEL_LVDS_FAST 7
218#define G4X_P2_DUAL_CHANNEL_LVDS_LIMIT 0
219
Keith Packarda4fc5ed2009-04-07 16:16:42 -0700220/*The parameter is for DISPLAY PORT on G4x platform*/
221#define G4X_DOT_DISPLAY_PORT_MIN 161670
222#define G4X_DOT_DISPLAY_PORT_MAX 227000
223#define G4X_N_DISPLAY_PORT_MIN 1
224#define G4X_N_DISPLAY_PORT_MAX 2
225#define G4X_M_DISPLAY_PORT_MIN 97
226#define G4X_M_DISPLAY_PORT_MAX 108
227#define G4X_M1_DISPLAY_PORT_MIN 0x10
228#define G4X_M1_DISPLAY_PORT_MAX 0x12
229#define G4X_M2_DISPLAY_PORT_MIN 0x05
230#define G4X_M2_DISPLAY_PORT_MAX 0x06
231#define G4X_P_DISPLAY_PORT_MIN 10
232#define G4X_P_DISPLAY_PORT_MAX 20
233#define G4X_P1_DISPLAY_PORT_MIN 1
234#define G4X_P1_DISPLAY_PORT_MAX 2
235#define G4X_P2_DISPLAY_PORT_SLOW 10
236#define G4X_P2_DISPLAY_PORT_FAST 10
237#define G4X_P2_DISPLAY_PORT_LIMIT 0
238
Eric Anholtbad720f2009-10-22 16:11:14 -0700239/* Ironlake / Sandybridge */
Zhenyu Wang2c072452009-06-05 15:38:42 +0800240/* as we calculate clock using (register_value + 2) for
241 N/M1/M2, so here the range value for them is (actual_value-2).
242 */
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500243#define IRONLAKE_DOT_MIN 25000
244#define IRONLAKE_DOT_MAX 350000
245#define IRONLAKE_VCO_MIN 1760000
246#define IRONLAKE_VCO_MAX 3510000
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500247#define IRONLAKE_M1_MIN 12
Zhao Yakuia59e3852010-01-06 22:05:57 +0800248#define IRONLAKE_M1_MAX 22
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500249#define IRONLAKE_M2_MIN 5
250#define IRONLAKE_M2_MAX 9
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500251#define IRONLAKE_P2_DOT_LIMIT 225000 /* 225Mhz */
Zhenyu Wang2c072452009-06-05 15:38:42 +0800252
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800253/* We have parameter ranges for different type of outputs. */
254
255/* DAC & HDMI Refclk 120Mhz */
256#define IRONLAKE_DAC_N_MIN 1
257#define IRONLAKE_DAC_N_MAX 5
258#define IRONLAKE_DAC_M_MIN 79
259#define IRONLAKE_DAC_M_MAX 127
260#define IRONLAKE_DAC_P_MIN 5
261#define IRONLAKE_DAC_P_MAX 80
262#define IRONLAKE_DAC_P1_MIN 1
263#define IRONLAKE_DAC_P1_MAX 8
264#define IRONLAKE_DAC_P2_SLOW 10
265#define IRONLAKE_DAC_P2_FAST 5
266
267/* LVDS single-channel 120Mhz refclk */
268#define IRONLAKE_LVDS_S_N_MIN 1
269#define IRONLAKE_LVDS_S_N_MAX 3
270#define IRONLAKE_LVDS_S_M_MIN 79
271#define IRONLAKE_LVDS_S_M_MAX 118
272#define IRONLAKE_LVDS_S_P_MIN 28
273#define IRONLAKE_LVDS_S_P_MAX 112
274#define IRONLAKE_LVDS_S_P1_MIN 2
275#define IRONLAKE_LVDS_S_P1_MAX 8
276#define IRONLAKE_LVDS_S_P2_SLOW 14
277#define IRONLAKE_LVDS_S_P2_FAST 14
278
279/* LVDS dual-channel 120Mhz refclk */
280#define IRONLAKE_LVDS_D_N_MIN 1
281#define IRONLAKE_LVDS_D_N_MAX 3
282#define IRONLAKE_LVDS_D_M_MIN 79
283#define IRONLAKE_LVDS_D_M_MAX 127
284#define IRONLAKE_LVDS_D_P_MIN 14
285#define IRONLAKE_LVDS_D_P_MAX 56
286#define IRONLAKE_LVDS_D_P1_MIN 2
287#define IRONLAKE_LVDS_D_P1_MAX 8
288#define IRONLAKE_LVDS_D_P2_SLOW 7
289#define IRONLAKE_LVDS_D_P2_FAST 7
290
291/* LVDS single-channel 100Mhz refclk */
292#define IRONLAKE_LVDS_S_SSC_N_MIN 1
293#define IRONLAKE_LVDS_S_SSC_N_MAX 2
294#define IRONLAKE_LVDS_S_SSC_M_MIN 79
295#define IRONLAKE_LVDS_S_SSC_M_MAX 126
296#define IRONLAKE_LVDS_S_SSC_P_MIN 28
297#define IRONLAKE_LVDS_S_SSC_P_MAX 112
298#define IRONLAKE_LVDS_S_SSC_P1_MIN 2
299#define IRONLAKE_LVDS_S_SSC_P1_MAX 8
300#define IRONLAKE_LVDS_S_SSC_P2_SLOW 14
301#define IRONLAKE_LVDS_S_SSC_P2_FAST 14
302
303/* LVDS dual-channel 100Mhz refclk */
304#define IRONLAKE_LVDS_D_SSC_N_MIN 1
305#define IRONLAKE_LVDS_D_SSC_N_MAX 3
306#define IRONLAKE_LVDS_D_SSC_M_MIN 79
307#define IRONLAKE_LVDS_D_SSC_M_MAX 126
308#define IRONLAKE_LVDS_D_SSC_P_MIN 14
309#define IRONLAKE_LVDS_D_SSC_P_MAX 42
310#define IRONLAKE_LVDS_D_SSC_P1_MIN 2
311#define IRONLAKE_LVDS_D_SSC_P1_MAX 6
312#define IRONLAKE_LVDS_D_SSC_P2_SLOW 7
313#define IRONLAKE_LVDS_D_SSC_P2_FAST 7
314
315/* DisplayPort */
316#define IRONLAKE_DP_N_MIN 1
317#define IRONLAKE_DP_N_MAX 2
318#define IRONLAKE_DP_M_MIN 81
319#define IRONLAKE_DP_M_MAX 90
320#define IRONLAKE_DP_P_MIN 10
321#define IRONLAKE_DP_P_MAX 20
322#define IRONLAKE_DP_P2_FAST 10
323#define IRONLAKE_DP_P2_SLOW 10
324#define IRONLAKE_DP_P2_LIMIT 0
325#define IRONLAKE_DP_P1_MIN 1
326#define IRONLAKE_DP_P1_MAX 2
Zhao Yakui45476682009-12-31 16:06:04 +0800327
Jesse Barnes2377b742010-07-07 14:06:43 -0700328/* FDI */
329#define IRONLAKE_FDI_FREQ 2700000 /* in kHz for mode->clock */
330
Ma Lingd4906092009-03-18 20:13:27 +0800331static bool
332intel_find_best_PLL(const intel_limit_t *limit, struct drm_crtc *crtc,
333 int target, int refclk, intel_clock_t *best_clock);
334static bool
335intel_g4x_find_best_PLL(const intel_limit_t *limit, struct drm_crtc *crtc,
336 int target, int refclk, intel_clock_t *best_clock);
Jesse Barnes79e53942008-11-07 14:24:08 -0800337
Keith Packarda4fc5ed2009-04-07 16:16:42 -0700338static bool
339intel_find_pll_g4x_dp(const intel_limit_t *, struct drm_crtc *crtc,
340 int target, int refclk, intel_clock_t *best_clock);
Zhenyu Wang5eb08b62009-07-24 01:00:31 +0800341static bool
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500342intel_find_pll_ironlake_dp(const intel_limit_t *, struct drm_crtc *crtc,
343 int target, int refclk, intel_clock_t *best_clock);
Keith Packarda4fc5ed2009-04-07 16:16:42 -0700344
Chris Wilson021357a2010-09-07 20:54:59 +0100345static inline u32 /* units of 100MHz */
346intel_fdi_link_freq(struct drm_device *dev)
347{
348 struct drm_i915_private *dev_priv = dev->dev_private;
349 return (I915_READ(FDI_PLL_BIOS_0) & FDI_PLL_FB_CLOCK_MASK) + 2;
350}
351
Keith Packarde4b36692009-06-05 19:22:17 -0700352static const intel_limit_t intel_limits_i8xx_dvo = {
Jesse Barnes79e53942008-11-07 14:24:08 -0800353 .dot = { .min = I8XX_DOT_MIN, .max = I8XX_DOT_MAX },
354 .vco = { .min = I8XX_VCO_MIN, .max = I8XX_VCO_MAX },
355 .n = { .min = I8XX_N_MIN, .max = I8XX_N_MAX },
356 .m = { .min = I8XX_M_MIN, .max = I8XX_M_MAX },
357 .m1 = { .min = I8XX_M1_MIN, .max = I8XX_M1_MAX },
358 .m2 = { .min = I8XX_M2_MIN, .max = I8XX_M2_MAX },
359 .p = { .min = I8XX_P_MIN, .max = I8XX_P_MAX },
360 .p1 = { .min = I8XX_P1_MIN, .max = I8XX_P1_MAX },
361 .p2 = { .dot_limit = I8XX_P2_SLOW_LIMIT,
362 .p2_slow = I8XX_P2_SLOW, .p2_fast = I8XX_P2_FAST },
Ma Lingd4906092009-03-18 20:13:27 +0800363 .find_pll = intel_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700364};
365
366static const intel_limit_t intel_limits_i8xx_lvds = {
Jesse Barnes79e53942008-11-07 14:24:08 -0800367 .dot = { .min = I8XX_DOT_MIN, .max = I8XX_DOT_MAX },
368 .vco = { .min = I8XX_VCO_MIN, .max = I8XX_VCO_MAX },
369 .n = { .min = I8XX_N_MIN, .max = I8XX_N_MAX },
370 .m = { .min = I8XX_M_MIN, .max = I8XX_M_MAX },
371 .m1 = { .min = I8XX_M1_MIN, .max = I8XX_M1_MAX },
372 .m2 = { .min = I8XX_M2_MIN, .max = I8XX_M2_MAX },
373 .p = { .min = I8XX_P_MIN, .max = I8XX_P_MAX },
374 .p1 = { .min = I8XX_P1_LVDS_MIN, .max = I8XX_P1_LVDS_MAX },
375 .p2 = { .dot_limit = I8XX_P2_SLOW_LIMIT,
376 .p2_slow = I8XX_P2_LVDS_SLOW, .p2_fast = I8XX_P2_LVDS_FAST },
Ma Lingd4906092009-03-18 20:13:27 +0800377 .find_pll = intel_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700378};
379
380static const intel_limit_t intel_limits_i9xx_sdvo = {
Jesse Barnes79e53942008-11-07 14:24:08 -0800381 .dot = { .min = I9XX_DOT_MIN, .max = I9XX_DOT_MAX },
382 .vco = { .min = I9XX_VCO_MIN, .max = I9XX_VCO_MAX },
383 .n = { .min = I9XX_N_MIN, .max = I9XX_N_MAX },
384 .m = { .min = I9XX_M_MIN, .max = I9XX_M_MAX },
385 .m1 = { .min = I9XX_M1_MIN, .max = I9XX_M1_MAX },
386 .m2 = { .min = I9XX_M2_MIN, .max = I9XX_M2_MAX },
387 .p = { .min = I9XX_P_SDVO_DAC_MIN, .max = I9XX_P_SDVO_DAC_MAX },
388 .p1 = { .min = I9XX_P1_MIN, .max = I9XX_P1_MAX },
389 .p2 = { .dot_limit = I9XX_P2_SDVO_DAC_SLOW_LIMIT,
390 .p2_slow = I9XX_P2_SDVO_DAC_SLOW, .p2_fast = I9XX_P2_SDVO_DAC_FAST },
Ma Lingd4906092009-03-18 20:13:27 +0800391 .find_pll = intel_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700392};
393
394static const intel_limit_t intel_limits_i9xx_lvds = {
Jesse Barnes79e53942008-11-07 14:24:08 -0800395 .dot = { .min = I9XX_DOT_MIN, .max = I9XX_DOT_MAX },
396 .vco = { .min = I9XX_VCO_MIN, .max = I9XX_VCO_MAX },
397 .n = { .min = I9XX_N_MIN, .max = I9XX_N_MAX },
398 .m = { .min = I9XX_M_MIN, .max = I9XX_M_MAX },
399 .m1 = { .min = I9XX_M1_MIN, .max = I9XX_M1_MAX },
400 .m2 = { .min = I9XX_M2_MIN, .max = I9XX_M2_MAX },
401 .p = { .min = I9XX_P_LVDS_MIN, .max = I9XX_P_LVDS_MAX },
402 .p1 = { .min = I9XX_P1_MIN, .max = I9XX_P1_MAX },
403 /* The single-channel range is 25-112Mhz, and dual-channel
404 * is 80-224Mhz. Prefer single channel as much as possible.
405 */
406 .p2 = { .dot_limit = I9XX_P2_LVDS_SLOW_LIMIT,
407 .p2_slow = I9XX_P2_LVDS_SLOW, .p2_fast = I9XX_P2_LVDS_FAST },
Ma Lingd4906092009-03-18 20:13:27 +0800408 .find_pll = intel_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700409};
410
Ma Ling044c7c42009-03-18 20:13:23 +0800411 /* below parameter and function is for G4X Chipset Family*/
Keith Packarde4b36692009-06-05 19:22:17 -0700412static const intel_limit_t intel_limits_g4x_sdvo = {
Ma Ling044c7c42009-03-18 20:13:23 +0800413 .dot = { .min = G4X_DOT_SDVO_MIN, .max = G4X_DOT_SDVO_MAX },
414 .vco = { .min = G4X_VCO_MIN, .max = G4X_VCO_MAX},
415 .n = { .min = G4X_N_SDVO_MIN, .max = G4X_N_SDVO_MAX },
416 .m = { .min = G4X_M_SDVO_MIN, .max = G4X_M_SDVO_MAX },
417 .m1 = { .min = G4X_M1_SDVO_MIN, .max = G4X_M1_SDVO_MAX },
418 .m2 = { .min = G4X_M2_SDVO_MIN, .max = G4X_M2_SDVO_MAX },
419 .p = { .min = G4X_P_SDVO_MIN, .max = G4X_P_SDVO_MAX },
420 .p1 = { .min = G4X_P1_SDVO_MIN, .max = G4X_P1_SDVO_MAX},
421 .p2 = { .dot_limit = G4X_P2_SDVO_LIMIT,
422 .p2_slow = G4X_P2_SDVO_SLOW,
423 .p2_fast = G4X_P2_SDVO_FAST
424 },
Ma Lingd4906092009-03-18 20:13:27 +0800425 .find_pll = intel_g4x_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700426};
427
428static const intel_limit_t intel_limits_g4x_hdmi = {
Ma Ling044c7c42009-03-18 20:13:23 +0800429 .dot = { .min = G4X_DOT_HDMI_DAC_MIN, .max = G4X_DOT_HDMI_DAC_MAX },
430 .vco = { .min = G4X_VCO_MIN, .max = G4X_VCO_MAX},
431 .n = { .min = G4X_N_HDMI_DAC_MIN, .max = G4X_N_HDMI_DAC_MAX },
432 .m = { .min = G4X_M_HDMI_DAC_MIN, .max = G4X_M_HDMI_DAC_MAX },
433 .m1 = { .min = G4X_M1_HDMI_DAC_MIN, .max = G4X_M1_HDMI_DAC_MAX },
434 .m2 = { .min = G4X_M2_HDMI_DAC_MIN, .max = G4X_M2_HDMI_DAC_MAX },
435 .p = { .min = G4X_P_HDMI_DAC_MIN, .max = G4X_P_HDMI_DAC_MAX },
436 .p1 = { .min = G4X_P1_HDMI_DAC_MIN, .max = G4X_P1_HDMI_DAC_MAX},
437 .p2 = { .dot_limit = G4X_P2_HDMI_DAC_LIMIT,
438 .p2_slow = G4X_P2_HDMI_DAC_SLOW,
439 .p2_fast = G4X_P2_HDMI_DAC_FAST
440 },
Ma Lingd4906092009-03-18 20:13:27 +0800441 .find_pll = intel_g4x_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700442};
443
444static const intel_limit_t intel_limits_g4x_single_channel_lvds = {
Ma Ling044c7c42009-03-18 20:13:23 +0800445 .dot = { .min = G4X_DOT_SINGLE_CHANNEL_LVDS_MIN,
446 .max = G4X_DOT_SINGLE_CHANNEL_LVDS_MAX },
447 .vco = { .min = G4X_VCO_MIN,
448 .max = G4X_VCO_MAX },
449 .n = { .min = G4X_N_SINGLE_CHANNEL_LVDS_MIN,
450 .max = G4X_N_SINGLE_CHANNEL_LVDS_MAX },
451 .m = { .min = G4X_M_SINGLE_CHANNEL_LVDS_MIN,
452 .max = G4X_M_SINGLE_CHANNEL_LVDS_MAX },
453 .m1 = { .min = G4X_M1_SINGLE_CHANNEL_LVDS_MIN,
454 .max = G4X_M1_SINGLE_CHANNEL_LVDS_MAX },
455 .m2 = { .min = G4X_M2_SINGLE_CHANNEL_LVDS_MIN,
456 .max = G4X_M2_SINGLE_CHANNEL_LVDS_MAX },
457 .p = { .min = G4X_P_SINGLE_CHANNEL_LVDS_MIN,
458 .max = G4X_P_SINGLE_CHANNEL_LVDS_MAX },
459 .p1 = { .min = G4X_P1_SINGLE_CHANNEL_LVDS_MIN,
460 .max = G4X_P1_SINGLE_CHANNEL_LVDS_MAX },
461 .p2 = { .dot_limit = G4X_P2_SINGLE_CHANNEL_LVDS_LIMIT,
462 .p2_slow = G4X_P2_SINGLE_CHANNEL_LVDS_SLOW,
463 .p2_fast = G4X_P2_SINGLE_CHANNEL_LVDS_FAST
464 },
Ma Lingd4906092009-03-18 20:13:27 +0800465 .find_pll = intel_g4x_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700466};
467
468static const intel_limit_t intel_limits_g4x_dual_channel_lvds = {
Ma Ling044c7c42009-03-18 20:13:23 +0800469 .dot = { .min = G4X_DOT_DUAL_CHANNEL_LVDS_MIN,
470 .max = G4X_DOT_DUAL_CHANNEL_LVDS_MAX },
471 .vco = { .min = G4X_VCO_MIN,
472 .max = G4X_VCO_MAX },
473 .n = { .min = G4X_N_DUAL_CHANNEL_LVDS_MIN,
474 .max = G4X_N_DUAL_CHANNEL_LVDS_MAX },
475 .m = { .min = G4X_M_DUAL_CHANNEL_LVDS_MIN,
476 .max = G4X_M_DUAL_CHANNEL_LVDS_MAX },
477 .m1 = { .min = G4X_M1_DUAL_CHANNEL_LVDS_MIN,
478 .max = G4X_M1_DUAL_CHANNEL_LVDS_MAX },
479 .m2 = { .min = G4X_M2_DUAL_CHANNEL_LVDS_MIN,
480 .max = G4X_M2_DUAL_CHANNEL_LVDS_MAX },
481 .p = { .min = G4X_P_DUAL_CHANNEL_LVDS_MIN,
482 .max = G4X_P_DUAL_CHANNEL_LVDS_MAX },
483 .p1 = { .min = G4X_P1_DUAL_CHANNEL_LVDS_MIN,
484 .max = G4X_P1_DUAL_CHANNEL_LVDS_MAX },
485 .p2 = { .dot_limit = G4X_P2_DUAL_CHANNEL_LVDS_LIMIT,
486 .p2_slow = G4X_P2_DUAL_CHANNEL_LVDS_SLOW,
487 .p2_fast = G4X_P2_DUAL_CHANNEL_LVDS_FAST
488 },
Ma Lingd4906092009-03-18 20:13:27 +0800489 .find_pll = intel_g4x_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700490};
491
492static const intel_limit_t intel_limits_g4x_display_port = {
Keith Packarda4fc5ed2009-04-07 16:16:42 -0700493 .dot = { .min = G4X_DOT_DISPLAY_PORT_MIN,
494 .max = G4X_DOT_DISPLAY_PORT_MAX },
495 .vco = { .min = G4X_VCO_MIN,
496 .max = G4X_VCO_MAX},
497 .n = { .min = G4X_N_DISPLAY_PORT_MIN,
498 .max = G4X_N_DISPLAY_PORT_MAX },
499 .m = { .min = G4X_M_DISPLAY_PORT_MIN,
500 .max = G4X_M_DISPLAY_PORT_MAX },
501 .m1 = { .min = G4X_M1_DISPLAY_PORT_MIN,
502 .max = G4X_M1_DISPLAY_PORT_MAX },
503 .m2 = { .min = G4X_M2_DISPLAY_PORT_MIN,
504 .max = G4X_M2_DISPLAY_PORT_MAX },
505 .p = { .min = G4X_P_DISPLAY_PORT_MIN,
506 .max = G4X_P_DISPLAY_PORT_MAX },
507 .p1 = { .min = G4X_P1_DISPLAY_PORT_MIN,
508 .max = G4X_P1_DISPLAY_PORT_MAX},
509 .p2 = { .dot_limit = G4X_P2_DISPLAY_PORT_LIMIT,
510 .p2_slow = G4X_P2_DISPLAY_PORT_SLOW,
511 .p2_fast = G4X_P2_DISPLAY_PORT_FAST },
512 .find_pll = intel_find_pll_g4x_dp,
Keith Packarde4b36692009-06-05 19:22:17 -0700513};
514
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500515static const intel_limit_t intel_limits_pineview_sdvo = {
Shaohua Li21778322009-02-23 15:19:16 +0800516 .dot = { .min = I9XX_DOT_MIN, .max = I9XX_DOT_MAX},
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500517 .vco = { .min = PINEVIEW_VCO_MIN, .max = PINEVIEW_VCO_MAX },
518 .n = { .min = PINEVIEW_N_MIN, .max = PINEVIEW_N_MAX },
519 .m = { .min = PINEVIEW_M_MIN, .max = PINEVIEW_M_MAX },
520 .m1 = { .min = PINEVIEW_M1_MIN, .max = PINEVIEW_M1_MAX },
521 .m2 = { .min = PINEVIEW_M2_MIN, .max = PINEVIEW_M2_MAX },
Shaohua Li21778322009-02-23 15:19:16 +0800522 .p = { .min = I9XX_P_SDVO_DAC_MIN, .max = I9XX_P_SDVO_DAC_MAX },
523 .p1 = { .min = I9XX_P1_MIN, .max = I9XX_P1_MAX },
524 .p2 = { .dot_limit = I9XX_P2_SDVO_DAC_SLOW_LIMIT,
525 .p2_slow = I9XX_P2_SDVO_DAC_SLOW, .p2_fast = I9XX_P2_SDVO_DAC_FAST },
Shaohua Li61157072009-04-03 15:24:43 +0800526 .find_pll = intel_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700527};
528
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500529static const intel_limit_t intel_limits_pineview_lvds = {
Shaohua Li21778322009-02-23 15:19:16 +0800530 .dot = { .min = I9XX_DOT_MIN, .max = I9XX_DOT_MAX },
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500531 .vco = { .min = PINEVIEW_VCO_MIN, .max = PINEVIEW_VCO_MAX },
532 .n = { .min = PINEVIEW_N_MIN, .max = PINEVIEW_N_MAX },
533 .m = { .min = PINEVIEW_M_MIN, .max = PINEVIEW_M_MAX },
534 .m1 = { .min = PINEVIEW_M1_MIN, .max = PINEVIEW_M1_MAX },
535 .m2 = { .min = PINEVIEW_M2_MIN, .max = PINEVIEW_M2_MAX },
536 .p = { .min = PINEVIEW_P_LVDS_MIN, .max = PINEVIEW_P_LVDS_MAX },
Shaohua Li21778322009-02-23 15:19:16 +0800537 .p1 = { .min = I9XX_P1_MIN, .max = I9XX_P1_MAX },
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500538 /* Pineview only supports single-channel mode. */
Shaohua Li21778322009-02-23 15:19:16 +0800539 .p2 = { .dot_limit = I9XX_P2_LVDS_SLOW_LIMIT,
540 .p2_slow = I9XX_P2_LVDS_SLOW, .p2_fast = I9XX_P2_LVDS_SLOW },
Shaohua Li61157072009-04-03 15:24:43 +0800541 .find_pll = intel_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700542};
543
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800544static const intel_limit_t intel_limits_ironlake_dac = {
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500545 .dot = { .min = IRONLAKE_DOT_MIN, .max = IRONLAKE_DOT_MAX },
546 .vco = { .min = IRONLAKE_VCO_MIN, .max = IRONLAKE_VCO_MAX },
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800547 .n = { .min = IRONLAKE_DAC_N_MIN, .max = IRONLAKE_DAC_N_MAX },
548 .m = { .min = IRONLAKE_DAC_M_MIN, .max = IRONLAKE_DAC_M_MAX },
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500549 .m1 = { .min = IRONLAKE_M1_MIN, .max = IRONLAKE_M1_MAX },
550 .m2 = { .min = IRONLAKE_M2_MIN, .max = IRONLAKE_M2_MAX },
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800551 .p = { .min = IRONLAKE_DAC_P_MIN, .max = IRONLAKE_DAC_P_MAX },
552 .p1 = { .min = IRONLAKE_DAC_P1_MIN, .max = IRONLAKE_DAC_P1_MAX },
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500553 .p2 = { .dot_limit = IRONLAKE_P2_DOT_LIMIT,
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800554 .p2_slow = IRONLAKE_DAC_P2_SLOW,
555 .p2_fast = IRONLAKE_DAC_P2_FAST },
Zhao Yakui45476682009-12-31 16:06:04 +0800556 .find_pll = intel_g4x_find_best_PLL,
Keith Packarde4b36692009-06-05 19:22:17 -0700557};
558
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800559static const intel_limit_t intel_limits_ironlake_single_lvds = {
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500560 .dot = { .min = IRONLAKE_DOT_MIN, .max = IRONLAKE_DOT_MAX },
561 .vco = { .min = IRONLAKE_VCO_MIN, .max = IRONLAKE_VCO_MAX },
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800562 .n = { .min = IRONLAKE_LVDS_S_N_MIN, .max = IRONLAKE_LVDS_S_N_MAX },
563 .m = { .min = IRONLAKE_LVDS_S_M_MIN, .max = IRONLAKE_LVDS_S_M_MAX },
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500564 .m1 = { .min = IRONLAKE_M1_MIN, .max = IRONLAKE_M1_MAX },
565 .m2 = { .min = IRONLAKE_M2_MIN, .max = IRONLAKE_M2_MAX },
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800566 .p = { .min = IRONLAKE_LVDS_S_P_MIN, .max = IRONLAKE_LVDS_S_P_MAX },
567 .p1 = { .min = IRONLAKE_LVDS_S_P1_MIN, .max = IRONLAKE_LVDS_S_P1_MAX },
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500568 .p2 = { .dot_limit = IRONLAKE_P2_DOT_LIMIT,
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800569 .p2_slow = IRONLAKE_LVDS_S_P2_SLOW,
570 .p2_fast = IRONLAKE_LVDS_S_P2_FAST },
571 .find_pll = intel_g4x_find_best_PLL,
572};
573
574static const intel_limit_t intel_limits_ironlake_dual_lvds = {
575 .dot = { .min = IRONLAKE_DOT_MIN, .max = IRONLAKE_DOT_MAX },
576 .vco = { .min = IRONLAKE_VCO_MIN, .max = IRONLAKE_VCO_MAX },
577 .n = { .min = IRONLAKE_LVDS_D_N_MIN, .max = IRONLAKE_LVDS_D_N_MAX },
578 .m = { .min = IRONLAKE_LVDS_D_M_MIN, .max = IRONLAKE_LVDS_D_M_MAX },
579 .m1 = { .min = IRONLAKE_M1_MIN, .max = IRONLAKE_M1_MAX },
580 .m2 = { .min = IRONLAKE_M2_MIN, .max = IRONLAKE_M2_MAX },
581 .p = { .min = IRONLAKE_LVDS_D_P_MIN, .max = IRONLAKE_LVDS_D_P_MAX },
582 .p1 = { .min = IRONLAKE_LVDS_D_P1_MIN, .max = IRONLAKE_LVDS_D_P1_MAX },
583 .p2 = { .dot_limit = IRONLAKE_P2_DOT_LIMIT,
584 .p2_slow = IRONLAKE_LVDS_D_P2_SLOW,
585 .p2_fast = IRONLAKE_LVDS_D_P2_FAST },
586 .find_pll = intel_g4x_find_best_PLL,
587};
588
589static const intel_limit_t intel_limits_ironlake_single_lvds_100m = {
590 .dot = { .min = IRONLAKE_DOT_MIN, .max = IRONLAKE_DOT_MAX },
591 .vco = { .min = IRONLAKE_VCO_MIN, .max = IRONLAKE_VCO_MAX },
592 .n = { .min = IRONLAKE_LVDS_S_SSC_N_MIN, .max = IRONLAKE_LVDS_S_SSC_N_MAX },
593 .m = { .min = IRONLAKE_LVDS_S_SSC_M_MIN, .max = IRONLAKE_LVDS_S_SSC_M_MAX },
594 .m1 = { .min = IRONLAKE_M1_MIN, .max = IRONLAKE_M1_MAX },
595 .m2 = { .min = IRONLAKE_M2_MIN, .max = IRONLAKE_M2_MAX },
596 .p = { .min = IRONLAKE_LVDS_S_SSC_P_MIN, .max = IRONLAKE_LVDS_S_SSC_P_MAX },
597 .p1 = { .min = IRONLAKE_LVDS_S_SSC_P1_MIN,.max = IRONLAKE_LVDS_S_SSC_P1_MAX },
598 .p2 = { .dot_limit = IRONLAKE_P2_DOT_LIMIT,
599 .p2_slow = IRONLAKE_LVDS_S_SSC_P2_SLOW,
600 .p2_fast = IRONLAKE_LVDS_S_SSC_P2_FAST },
601 .find_pll = intel_g4x_find_best_PLL,
602};
603
604static const intel_limit_t intel_limits_ironlake_dual_lvds_100m = {
605 .dot = { .min = IRONLAKE_DOT_MIN, .max = IRONLAKE_DOT_MAX },
606 .vco = { .min = IRONLAKE_VCO_MIN, .max = IRONLAKE_VCO_MAX },
607 .n = { .min = IRONLAKE_LVDS_D_SSC_N_MIN, .max = IRONLAKE_LVDS_D_SSC_N_MAX },
608 .m = { .min = IRONLAKE_LVDS_D_SSC_M_MIN, .max = IRONLAKE_LVDS_D_SSC_M_MAX },
609 .m1 = { .min = IRONLAKE_M1_MIN, .max = IRONLAKE_M1_MAX },
610 .m2 = { .min = IRONLAKE_M2_MIN, .max = IRONLAKE_M2_MAX },
611 .p = { .min = IRONLAKE_LVDS_D_SSC_P_MIN, .max = IRONLAKE_LVDS_D_SSC_P_MAX },
612 .p1 = { .min = IRONLAKE_LVDS_D_SSC_P1_MIN,.max = IRONLAKE_LVDS_D_SSC_P1_MAX },
613 .p2 = { .dot_limit = IRONLAKE_P2_DOT_LIMIT,
614 .p2_slow = IRONLAKE_LVDS_D_SSC_P2_SLOW,
615 .p2_fast = IRONLAKE_LVDS_D_SSC_P2_FAST },
Zhao Yakui45476682009-12-31 16:06:04 +0800616 .find_pll = intel_g4x_find_best_PLL,
617};
618
619static const intel_limit_t intel_limits_ironlake_display_port = {
620 .dot = { .min = IRONLAKE_DOT_MIN,
621 .max = IRONLAKE_DOT_MAX },
622 .vco = { .min = IRONLAKE_VCO_MIN,
623 .max = IRONLAKE_VCO_MAX},
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800624 .n = { .min = IRONLAKE_DP_N_MIN,
625 .max = IRONLAKE_DP_N_MAX },
626 .m = { .min = IRONLAKE_DP_M_MIN,
627 .max = IRONLAKE_DP_M_MAX },
Zhao Yakui45476682009-12-31 16:06:04 +0800628 .m1 = { .min = IRONLAKE_M1_MIN,
629 .max = IRONLAKE_M1_MAX },
630 .m2 = { .min = IRONLAKE_M2_MIN,
631 .max = IRONLAKE_M2_MAX },
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800632 .p = { .min = IRONLAKE_DP_P_MIN,
633 .max = IRONLAKE_DP_P_MAX },
634 .p1 = { .min = IRONLAKE_DP_P1_MIN,
635 .max = IRONLAKE_DP_P1_MAX},
636 .p2 = { .dot_limit = IRONLAKE_DP_P2_LIMIT,
637 .p2_slow = IRONLAKE_DP_P2_SLOW,
638 .p2_fast = IRONLAKE_DP_P2_FAST },
Zhao Yakui45476682009-12-31 16:06:04 +0800639 .find_pll = intel_find_pll_ironlake_dp,
Jesse Barnes79e53942008-11-07 14:24:08 -0800640};
641
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500642static const intel_limit_t *intel_ironlake_limit(struct drm_crtc *crtc)
Zhenyu Wang2c072452009-06-05 15:38:42 +0800643{
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800644 struct drm_device *dev = crtc->dev;
645 struct drm_i915_private *dev_priv = dev->dev_private;
Zhenyu Wang2c072452009-06-05 15:38:42 +0800646 const intel_limit_t *limit;
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800647 int refclk = 120;
648
649 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS)) {
650 if (dev_priv->lvds_use_ssc && dev_priv->lvds_ssc_freq == 100)
651 refclk = 100;
652
653 if ((I915_READ(PCH_LVDS) & LVDS_CLKB_POWER_MASK) ==
654 LVDS_CLKB_POWER_UP) {
655 /* LVDS dual channel */
656 if (refclk == 100)
657 limit = &intel_limits_ironlake_dual_lvds_100m;
658 else
659 limit = &intel_limits_ironlake_dual_lvds;
660 } else {
661 if (refclk == 100)
662 limit = &intel_limits_ironlake_single_lvds_100m;
663 else
664 limit = &intel_limits_ironlake_single_lvds;
665 }
666 } else if (intel_pipe_has_type(crtc, INTEL_OUTPUT_DISPLAYPORT) ||
Zhao Yakui45476682009-12-31 16:06:04 +0800667 HAS_eDP)
668 limit = &intel_limits_ironlake_display_port;
Zhenyu Wang2c072452009-06-05 15:38:42 +0800669 else
Zhenyu Wangb91ad0e2010-02-05 09:14:17 +0800670 limit = &intel_limits_ironlake_dac;
Zhenyu Wang2c072452009-06-05 15:38:42 +0800671
672 return limit;
673}
674
Ma Ling044c7c42009-03-18 20:13:23 +0800675static const intel_limit_t *intel_g4x_limit(struct drm_crtc *crtc)
676{
677 struct drm_device *dev = crtc->dev;
678 struct drm_i915_private *dev_priv = dev->dev_private;
679 const intel_limit_t *limit;
680
681 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS)) {
682 if ((I915_READ(LVDS) & LVDS_CLKB_POWER_MASK) ==
683 LVDS_CLKB_POWER_UP)
684 /* LVDS with dual channel */
Keith Packarde4b36692009-06-05 19:22:17 -0700685 limit = &intel_limits_g4x_dual_channel_lvds;
Ma Ling044c7c42009-03-18 20:13:23 +0800686 else
687 /* LVDS with dual channel */
Keith Packarde4b36692009-06-05 19:22:17 -0700688 limit = &intel_limits_g4x_single_channel_lvds;
Ma Ling044c7c42009-03-18 20:13:23 +0800689 } else if (intel_pipe_has_type(crtc, INTEL_OUTPUT_HDMI) ||
690 intel_pipe_has_type(crtc, INTEL_OUTPUT_ANALOG)) {
Keith Packarde4b36692009-06-05 19:22:17 -0700691 limit = &intel_limits_g4x_hdmi;
Ma Ling044c7c42009-03-18 20:13:23 +0800692 } else if (intel_pipe_has_type(crtc, INTEL_OUTPUT_SDVO)) {
Keith Packarde4b36692009-06-05 19:22:17 -0700693 limit = &intel_limits_g4x_sdvo;
Keith Packarda4fc5ed2009-04-07 16:16:42 -0700694 } else if (intel_pipe_has_type (crtc, INTEL_OUTPUT_DISPLAYPORT)) {
Keith Packarde4b36692009-06-05 19:22:17 -0700695 limit = &intel_limits_g4x_display_port;
Ma Ling044c7c42009-03-18 20:13:23 +0800696 } else /* The option is for other outputs */
Keith Packarde4b36692009-06-05 19:22:17 -0700697 limit = &intel_limits_i9xx_sdvo;
Ma Ling044c7c42009-03-18 20:13:23 +0800698
699 return limit;
700}
701
Jesse Barnes79e53942008-11-07 14:24:08 -0800702static const intel_limit_t *intel_limit(struct drm_crtc *crtc)
703{
704 struct drm_device *dev = crtc->dev;
705 const intel_limit_t *limit;
706
Eric Anholtbad720f2009-10-22 16:11:14 -0700707 if (HAS_PCH_SPLIT(dev))
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500708 limit = intel_ironlake_limit(crtc);
Zhenyu Wang2c072452009-06-05 15:38:42 +0800709 else if (IS_G4X(dev)) {
Ma Ling044c7c42009-03-18 20:13:23 +0800710 limit = intel_g4x_limit(crtc);
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500711 } else if (IS_I9XX(dev) && !IS_PINEVIEW(dev)) {
Jesse Barnes79e53942008-11-07 14:24:08 -0800712 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS))
Keith Packarde4b36692009-06-05 19:22:17 -0700713 limit = &intel_limits_i9xx_lvds;
Jesse Barnes79e53942008-11-07 14:24:08 -0800714 else
Keith Packarde4b36692009-06-05 19:22:17 -0700715 limit = &intel_limits_i9xx_sdvo;
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500716 } else if (IS_PINEVIEW(dev)) {
Shaohua Li21778322009-02-23 15:19:16 +0800717 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS))
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500718 limit = &intel_limits_pineview_lvds;
Shaohua Li21778322009-02-23 15:19:16 +0800719 else
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500720 limit = &intel_limits_pineview_sdvo;
Jesse Barnes79e53942008-11-07 14:24:08 -0800721 } else {
722 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS))
Keith Packarde4b36692009-06-05 19:22:17 -0700723 limit = &intel_limits_i8xx_lvds;
Jesse Barnes79e53942008-11-07 14:24:08 -0800724 else
Keith Packarde4b36692009-06-05 19:22:17 -0700725 limit = &intel_limits_i8xx_dvo;
Jesse Barnes79e53942008-11-07 14:24:08 -0800726 }
727 return limit;
728}
729
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500730/* m1 is reserved as 0 in Pineview, n is a ring counter */
731static void pineview_clock(int refclk, intel_clock_t *clock)
Jesse Barnes79e53942008-11-07 14:24:08 -0800732{
Shaohua Li21778322009-02-23 15:19:16 +0800733 clock->m = clock->m2 + 2;
734 clock->p = clock->p1 * clock->p2;
735 clock->vco = refclk * clock->m / clock->n;
736 clock->dot = clock->vco / clock->p;
737}
738
739static void intel_clock(struct drm_device *dev, int refclk, intel_clock_t *clock)
740{
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500741 if (IS_PINEVIEW(dev)) {
742 pineview_clock(refclk, clock);
Shaohua Li21778322009-02-23 15:19:16 +0800743 return;
744 }
Jesse Barnes79e53942008-11-07 14:24:08 -0800745 clock->m = 5 * (clock->m1 + 2) + (clock->m2 + 2);
746 clock->p = clock->p1 * clock->p2;
747 clock->vco = refclk * clock->m / (clock->n + 2);
748 clock->dot = clock->vco / clock->p;
749}
750
Jesse Barnes79e53942008-11-07 14:24:08 -0800751/**
752 * Returns whether any output on the specified pipe is of the specified type
753 */
Chris Wilson4ef69c72010-09-09 15:14:28 +0100754bool intel_pipe_has_type(struct drm_crtc *crtc, int type)
Jesse Barnes79e53942008-11-07 14:24:08 -0800755{
Chris Wilson4ef69c72010-09-09 15:14:28 +0100756 struct drm_device *dev = crtc->dev;
757 struct drm_mode_config *mode_config = &dev->mode_config;
758 struct intel_encoder *encoder;
Jesse Barnes79e53942008-11-07 14:24:08 -0800759
Chris Wilson4ef69c72010-09-09 15:14:28 +0100760 list_for_each_entry(encoder, &mode_config->encoder_list, base.head)
761 if (encoder->base.crtc == crtc && encoder->type == type)
762 return true;
763
764 return false;
Jesse Barnes79e53942008-11-07 14:24:08 -0800765}
766
Jesse Barnes7c04d1d2009-02-23 15:36:40 -0800767#define INTELPllInvalid(s) do { /* DRM_DEBUG(s); */ return false; } while (0)
Jesse Barnes79e53942008-11-07 14:24:08 -0800768/**
769 * Returns whether the given set of divisors are valid for a given refclk with
770 * the given connectors.
771 */
772
773static bool intel_PLL_is_valid(struct drm_crtc *crtc, intel_clock_t *clock)
774{
775 const intel_limit_t *limit = intel_limit (crtc);
Shaohua Li21778322009-02-23 15:19:16 +0800776 struct drm_device *dev = crtc->dev;
Jesse Barnes79e53942008-11-07 14:24:08 -0800777
778 if (clock->p1 < limit->p1.min || limit->p1.max < clock->p1)
779 INTELPllInvalid ("p1 out of range\n");
780 if (clock->p < limit->p.min || limit->p.max < clock->p)
781 INTELPllInvalid ("p out of range\n");
782 if (clock->m2 < limit->m2.min || limit->m2.max < clock->m2)
783 INTELPllInvalid ("m2 out of range\n");
784 if (clock->m1 < limit->m1.min || limit->m1.max < clock->m1)
785 INTELPllInvalid ("m1 out of range\n");
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500786 if (clock->m1 <= clock->m2 && !IS_PINEVIEW(dev))
Jesse Barnes79e53942008-11-07 14:24:08 -0800787 INTELPllInvalid ("m1 <= m2\n");
788 if (clock->m < limit->m.min || limit->m.max < clock->m)
789 INTELPllInvalid ("m out of range\n");
790 if (clock->n < limit->n.min || limit->n.max < clock->n)
791 INTELPllInvalid ("n out of range\n");
792 if (clock->vco < limit->vco.min || limit->vco.max < clock->vco)
793 INTELPllInvalid ("vco out of range\n");
794 /* XXX: We may need to be checking "Dot clock" depending on the multiplier,
795 * connector, etc., rather than just a single range.
796 */
797 if (clock->dot < limit->dot.min || limit->dot.max < clock->dot)
798 INTELPllInvalid ("dot out of range\n");
799
800 return true;
801}
802
Ma Lingd4906092009-03-18 20:13:27 +0800803static bool
804intel_find_best_PLL(const intel_limit_t *limit, struct drm_crtc *crtc,
805 int target, int refclk, intel_clock_t *best_clock)
806
Jesse Barnes79e53942008-11-07 14:24:08 -0800807{
808 struct drm_device *dev = crtc->dev;
809 struct drm_i915_private *dev_priv = dev->dev_private;
810 intel_clock_t clock;
Jesse Barnes79e53942008-11-07 14:24:08 -0800811 int err = target;
812
Bruno Prémontbc5e5712009-08-08 13:01:17 +0200813 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS) &&
Florian Mickler832cc282009-07-13 18:40:32 +0800814 (I915_READ(LVDS)) != 0) {
Jesse Barnes79e53942008-11-07 14:24:08 -0800815 /*
816 * For LVDS, if the panel is on, just rely on its current
817 * settings for dual-channel. We haven't figured out how to
818 * reliably set up different single/dual channel state, if we
819 * even can.
820 */
821 if ((I915_READ(LVDS) & LVDS_CLKB_POWER_MASK) ==
822 LVDS_CLKB_POWER_UP)
823 clock.p2 = limit->p2.p2_fast;
824 else
825 clock.p2 = limit->p2.p2_slow;
826 } else {
827 if (target < limit->p2.dot_limit)
828 clock.p2 = limit->p2.p2_slow;
829 else
830 clock.p2 = limit->p2.p2_fast;
831 }
832
833 memset (best_clock, 0, sizeof (*best_clock));
834
Zhao Yakui42158662009-11-20 11:24:18 +0800835 for (clock.m1 = limit->m1.min; clock.m1 <= limit->m1.max;
836 clock.m1++) {
837 for (clock.m2 = limit->m2.min;
838 clock.m2 <= limit->m2.max; clock.m2++) {
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500839 /* m1 is always 0 in Pineview */
840 if (clock.m2 >= clock.m1 && !IS_PINEVIEW(dev))
Zhao Yakui42158662009-11-20 11:24:18 +0800841 break;
842 for (clock.n = limit->n.min;
843 clock.n <= limit->n.max; clock.n++) {
844 for (clock.p1 = limit->p1.min;
845 clock.p1 <= limit->p1.max; clock.p1++) {
Jesse Barnes79e53942008-11-07 14:24:08 -0800846 int this_err;
847
Shaohua Li21778322009-02-23 15:19:16 +0800848 intel_clock(dev, refclk, &clock);
Jesse Barnes79e53942008-11-07 14:24:08 -0800849
850 if (!intel_PLL_is_valid(crtc, &clock))
851 continue;
852
853 this_err = abs(clock.dot - target);
854 if (this_err < err) {
855 *best_clock = clock;
856 err = this_err;
857 }
858 }
859 }
860 }
861 }
862
863 return (err != target);
864}
865
Ma Lingd4906092009-03-18 20:13:27 +0800866static bool
867intel_g4x_find_best_PLL(const intel_limit_t *limit, struct drm_crtc *crtc,
868 int target, int refclk, intel_clock_t *best_clock)
869{
870 struct drm_device *dev = crtc->dev;
871 struct drm_i915_private *dev_priv = dev->dev_private;
872 intel_clock_t clock;
873 int max_n;
874 bool found;
Adam Jackson6ba770d2010-07-02 16:43:30 -0400875 /* approximately equals target * 0.00585 */
876 int err_most = (target >> 8) + (target >> 9);
Ma Lingd4906092009-03-18 20:13:27 +0800877 found = false;
878
879 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS)) {
Zhao Yakui45476682009-12-31 16:06:04 +0800880 int lvds_reg;
881
Eric Anholtc619eed2010-01-28 16:45:52 -0800882 if (HAS_PCH_SPLIT(dev))
Zhao Yakui45476682009-12-31 16:06:04 +0800883 lvds_reg = PCH_LVDS;
884 else
885 lvds_reg = LVDS;
886 if ((I915_READ(lvds_reg) & LVDS_CLKB_POWER_MASK) ==
Ma Lingd4906092009-03-18 20:13:27 +0800887 LVDS_CLKB_POWER_UP)
888 clock.p2 = limit->p2.p2_fast;
889 else
890 clock.p2 = limit->p2.p2_slow;
891 } else {
892 if (target < limit->p2.dot_limit)
893 clock.p2 = limit->p2.p2_slow;
894 else
895 clock.p2 = limit->p2.p2_fast;
896 }
897
898 memset(best_clock, 0, sizeof(*best_clock));
899 max_n = limit->n.max;
Gilles Espinassef77f13e2010-03-29 15:41:47 +0200900 /* based on hardware requirement, prefer smaller n to precision */
Ma Lingd4906092009-03-18 20:13:27 +0800901 for (clock.n = limit->n.min; clock.n <= max_n; clock.n++) {
Gilles Espinassef77f13e2010-03-29 15:41:47 +0200902 /* based on hardware requirement, prefere larger m1,m2 */
Ma Lingd4906092009-03-18 20:13:27 +0800903 for (clock.m1 = limit->m1.max;
904 clock.m1 >= limit->m1.min; clock.m1--) {
905 for (clock.m2 = limit->m2.max;
906 clock.m2 >= limit->m2.min; clock.m2--) {
907 for (clock.p1 = limit->p1.max;
908 clock.p1 >= limit->p1.min; clock.p1--) {
909 int this_err;
910
Shaohua Li21778322009-02-23 15:19:16 +0800911 intel_clock(dev, refclk, &clock);
Ma Lingd4906092009-03-18 20:13:27 +0800912 if (!intel_PLL_is_valid(crtc, &clock))
913 continue;
914 this_err = abs(clock.dot - target) ;
915 if (this_err < err_most) {
916 *best_clock = clock;
917 err_most = this_err;
918 max_n = clock.n;
919 found = true;
920 }
921 }
922 }
923 }
924 }
Zhenyu Wang2c072452009-06-05 15:38:42 +0800925 return found;
926}
Ma Lingd4906092009-03-18 20:13:27 +0800927
Zhenyu Wang2c072452009-06-05 15:38:42 +0800928static bool
Adam Jacksonf2b115e2009-12-03 17:14:42 -0500929intel_find_pll_ironlake_dp(const intel_limit_t *limit, struct drm_crtc *crtc,
930 int target, int refclk, intel_clock_t *best_clock)
Zhenyu Wang5eb08b62009-07-24 01:00:31 +0800931{
932 struct drm_device *dev = crtc->dev;
933 intel_clock_t clock;
Zhao Yakui45476682009-12-31 16:06:04 +0800934
935 /* return directly when it is eDP */
936 if (HAS_eDP)
937 return true;
938
Zhenyu Wang5eb08b62009-07-24 01:00:31 +0800939 if (target < 200000) {
940 clock.n = 1;
941 clock.p1 = 2;
942 clock.p2 = 10;
943 clock.m1 = 12;
944 clock.m2 = 9;
945 } else {
946 clock.n = 2;
947 clock.p1 = 1;
948 clock.p2 = 10;
949 clock.m1 = 14;
950 clock.m2 = 8;
951 }
952 intel_clock(dev, refclk, &clock);
953 memcpy(best_clock, &clock, sizeof(intel_clock_t));
954 return true;
955}
956
Keith Packarda4fc5ed2009-04-07 16:16:42 -0700957/* DisplayPort has only two frequencies, 162MHz and 270MHz */
958static bool
959intel_find_pll_g4x_dp(const intel_limit_t *limit, struct drm_crtc *crtc,
960 int target, int refclk, intel_clock_t *best_clock)
961{
Chris Wilson5eddb702010-09-11 13:48:45 +0100962 intel_clock_t clock;
963 if (target < 200000) {
964 clock.p1 = 2;
965 clock.p2 = 10;
966 clock.n = 2;
967 clock.m1 = 23;
968 clock.m2 = 8;
969 } else {
970 clock.p1 = 1;
971 clock.p2 = 10;
972 clock.n = 1;
973 clock.m1 = 14;
974 clock.m2 = 2;
975 }
976 clock.m = 5 * (clock.m1 + 2) + (clock.m2 + 2);
977 clock.p = (clock.p1 * clock.p2);
978 clock.dot = 96000 * clock.m / (clock.n + 2) / clock.p;
979 clock.vco = 0;
980 memcpy(best_clock, &clock, sizeof(intel_clock_t));
981 return true;
Keith Packarda4fc5ed2009-04-07 16:16:42 -0700982}
983
Jesse Barnes9d0498a2010-08-18 13:20:54 -0700984/**
985 * intel_wait_for_vblank - wait for vblank on a given pipe
986 * @dev: drm device
987 * @pipe: pipe to wait for
988 *
989 * Wait for vblank to occur on a given pipe. Needed for various bits of
990 * mode setting code.
991 */
992void intel_wait_for_vblank(struct drm_device *dev, int pipe)
Jesse Barnes79e53942008-11-07 14:24:08 -0800993{
Jesse Barnes9d0498a2010-08-18 13:20:54 -0700994 struct drm_i915_private *dev_priv = dev->dev_private;
995 int pipestat_reg = (pipe == 0 ? PIPEASTAT : PIPEBSTAT);
996
Chris Wilson300387c2010-09-05 20:25:43 +0100997 /* Clear existing vblank status. Note this will clear any other
998 * sticky status fields as well.
999 *
1000 * This races with i915_driver_irq_handler() with the result
1001 * that either function could miss a vblank event. Here it is not
1002 * fatal, as we will either wait upon the next vblank interrupt or
1003 * timeout. Generally speaking intel_wait_for_vblank() is only
1004 * called during modeset at which time the GPU should be idle and
1005 * should *not* be performing page flips and thus not waiting on
1006 * vblanks...
1007 * Currently, the result of us stealing a vblank from the irq
1008 * handler is that a single frame will be skipped during swapbuffers.
1009 */
1010 I915_WRITE(pipestat_reg,
1011 I915_READ(pipestat_reg) | PIPE_VBLANK_INTERRUPT_STATUS);
1012
Jesse Barnes9d0498a2010-08-18 13:20:54 -07001013 /* Wait for vblank interrupt bit to set */
Chris Wilson481b6af2010-08-23 17:43:35 +01001014 if (wait_for(I915_READ(pipestat_reg) &
1015 PIPE_VBLANK_INTERRUPT_STATUS,
1016 50))
Jesse Barnes9d0498a2010-08-18 13:20:54 -07001017 DRM_DEBUG_KMS("vblank wait timed out\n");
1018}
1019
1020/**
1021 * intel_wait_for_vblank_off - wait for vblank after disabling a pipe
1022 * @dev: drm device
1023 * @pipe: pipe to wait for
1024 *
1025 * After disabling a pipe, we can't wait for vblank in the usual way,
1026 * spinning on the vblank interrupt status bit, since we won't actually
1027 * see an interrupt when the pipe is disabled.
1028 *
1029 * So this function waits for the display line value to settle (it
1030 * usually ends up stopping at the start of the next frame).
1031 */
1032void intel_wait_for_vblank_off(struct drm_device *dev, int pipe)
1033{
1034 struct drm_i915_private *dev_priv = dev->dev_private;
1035 int pipedsl_reg = (pipe == 0 ? PIPEADSL : PIPEBDSL);
1036 unsigned long timeout = jiffies + msecs_to_jiffies(100);
Chris Wilsonec5da012010-09-12 13:34:08 +01001037 u32 last_line, line;
Jesse Barnes9d0498a2010-08-18 13:20:54 -07001038
1039 /* Wait for the display line to settle */
Chris Wilsonec5da012010-09-12 13:34:08 +01001040 line = I915_READ(pipedsl_reg) & DSL_LINEMASK;
Jesse Barnes9d0498a2010-08-18 13:20:54 -07001041 do {
Chris Wilsonec5da012010-09-12 13:34:08 +01001042 last_line = line;
1043 MSLEEP(5);
1044 line = I915_READ(pipedsl_reg) & DSL_LINEMASK;
1045 } while (line != last_line && time_after(timeout, jiffies));
Jesse Barnes9d0498a2010-08-18 13:20:54 -07001046
Chris Wilsonec5da012010-09-12 13:34:08 +01001047 if (line != last_line)
Jesse Barnes9d0498a2010-08-18 13:20:54 -07001048 DRM_DEBUG_KMS("vblank wait timed out\n");
Jesse Barnes79e53942008-11-07 14:24:08 -08001049}
1050
Jesse Barnes80824002009-09-10 15:28:06 -07001051static void i8xx_enable_fbc(struct drm_crtc *crtc, unsigned long interval)
1052{
1053 struct drm_device *dev = crtc->dev;
1054 struct drm_i915_private *dev_priv = dev->dev_private;
1055 struct drm_framebuffer *fb = crtc->fb;
1056 struct intel_framebuffer *intel_fb = to_intel_framebuffer(fb);
Daniel Vetter23010e42010-03-08 13:35:02 +01001057 struct drm_i915_gem_object *obj_priv = to_intel_bo(intel_fb->obj);
Jesse Barnes80824002009-09-10 15:28:06 -07001058 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
1059 int plane, i;
1060 u32 fbc_ctl, fbc_ctl2;
1061
Chris Wilsonbed4a672010-09-11 10:47:47 +01001062 if (fb->pitch == dev_priv->cfb_pitch &&
1063 obj_priv->fence_reg == dev_priv->cfb_fence &&
1064 intel_crtc->plane == dev_priv->cfb_plane &&
1065 I915_READ(FBC_CONTROL) & FBC_CTL_EN)
1066 return;
1067
1068 i8xx_disable_fbc(dev);
1069
Jesse Barnes80824002009-09-10 15:28:06 -07001070 dev_priv->cfb_pitch = dev_priv->cfb_size / FBC_LL_SIZE;
1071
1072 if (fb->pitch < dev_priv->cfb_pitch)
1073 dev_priv->cfb_pitch = fb->pitch;
1074
1075 /* FBC_CTL wants 64B units */
1076 dev_priv->cfb_pitch = (dev_priv->cfb_pitch / 64) - 1;
1077 dev_priv->cfb_fence = obj_priv->fence_reg;
1078 dev_priv->cfb_plane = intel_crtc->plane;
1079 plane = dev_priv->cfb_plane == 0 ? FBC_CTL_PLANEA : FBC_CTL_PLANEB;
1080
1081 /* Clear old tags */
1082 for (i = 0; i < (FBC_LL_SIZE / 32) + 1; i++)
1083 I915_WRITE(FBC_TAG + (i * 4), 0);
1084
1085 /* Set it up... */
1086 fbc_ctl2 = FBC_CTL_FENCE_DBL | FBC_CTL_IDLE_IMM | plane;
1087 if (obj_priv->tiling_mode != I915_TILING_NONE)
1088 fbc_ctl2 |= FBC_CTL_CPU_FENCE;
1089 I915_WRITE(FBC_CONTROL2, fbc_ctl2);
1090 I915_WRITE(FBC_FENCE_OFF, crtc->y);
1091
1092 /* enable it... */
1093 fbc_ctl = FBC_CTL_EN | FBC_CTL_PERIODIC;
Jesse Barnesee25df22010-02-06 10:41:53 -08001094 if (IS_I945GM(dev))
Priit Laes49677902010-03-02 11:37:00 +02001095 fbc_ctl |= FBC_CTL_C3_IDLE; /* 945 needs special SR handling */
Jesse Barnes80824002009-09-10 15:28:06 -07001096 fbc_ctl |= (dev_priv->cfb_pitch & 0xff) << FBC_CTL_STRIDE_SHIFT;
1097 fbc_ctl |= (interval & 0x2fff) << FBC_CTL_INTERVAL_SHIFT;
1098 if (obj_priv->tiling_mode != I915_TILING_NONE)
1099 fbc_ctl |= dev_priv->cfb_fence;
1100 I915_WRITE(FBC_CONTROL, fbc_ctl);
1101
Zhao Yakui28c97732009-10-09 11:39:41 +08001102 DRM_DEBUG_KMS("enabled FBC, pitch %ld, yoff %d, plane %d, ",
Chris Wilson5eddb702010-09-11 13:48:45 +01001103 dev_priv->cfb_pitch, crtc->y, dev_priv->cfb_plane);
Jesse Barnes80824002009-09-10 15:28:06 -07001104}
1105
1106void i8xx_disable_fbc(struct drm_device *dev)
1107{
1108 struct drm_i915_private *dev_priv = dev->dev_private;
1109 u32 fbc_ctl;
1110
1111 /* Disable compression */
1112 fbc_ctl = I915_READ(FBC_CONTROL);
1113 fbc_ctl &= ~FBC_CTL_EN;
1114 I915_WRITE(FBC_CONTROL, fbc_ctl);
1115
1116 /* Wait for compressing bit to clear */
Chris Wilson481b6af2010-08-23 17:43:35 +01001117 if (wait_for((I915_READ(FBC_STATUS) & FBC_STAT_COMPRESSING) == 0, 10)) {
Chris Wilson913d8d12010-08-07 11:01:35 +01001118 DRM_DEBUG_KMS("FBC idle timed out\n");
1119 return;
Jesse Barnes9517a922010-05-21 09:40:45 -07001120 }
Jesse Barnes80824002009-09-10 15:28:06 -07001121
Zhao Yakui28c97732009-10-09 11:39:41 +08001122 DRM_DEBUG_KMS("disabled FBC\n");
Jesse Barnes80824002009-09-10 15:28:06 -07001123}
1124
Adam Jacksonee5382a2010-04-23 11:17:39 -04001125static bool i8xx_fbc_enabled(struct drm_device *dev)
Jesse Barnes80824002009-09-10 15:28:06 -07001126{
Jesse Barnes80824002009-09-10 15:28:06 -07001127 struct drm_i915_private *dev_priv = dev->dev_private;
1128
1129 return I915_READ(FBC_CONTROL) & FBC_CTL_EN;
1130}
1131
Jesse Barnes74dff282009-09-14 15:39:40 -07001132static void g4x_enable_fbc(struct drm_crtc *crtc, unsigned long interval)
1133{
1134 struct drm_device *dev = crtc->dev;
1135 struct drm_i915_private *dev_priv = dev->dev_private;
1136 struct drm_framebuffer *fb = crtc->fb;
1137 struct intel_framebuffer *intel_fb = to_intel_framebuffer(fb);
Daniel Vetter23010e42010-03-08 13:35:02 +01001138 struct drm_i915_gem_object *obj_priv = to_intel_bo(intel_fb->obj);
Jesse Barnes74dff282009-09-14 15:39:40 -07001139 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Chris Wilson5eddb702010-09-11 13:48:45 +01001140 int plane = intel_crtc->plane == 0 ? DPFC_CTL_PLANEA : DPFC_CTL_PLANEB;
Jesse Barnes74dff282009-09-14 15:39:40 -07001141 unsigned long stall_watermark = 200;
1142 u32 dpfc_ctl;
1143
Chris Wilsonbed4a672010-09-11 10:47:47 +01001144 dpfc_ctl = I915_READ(DPFC_CONTROL);
1145 if (dpfc_ctl & DPFC_CTL_EN) {
1146 if (dev_priv->cfb_pitch == dev_priv->cfb_pitch / 64 - 1 &&
1147 dev_priv->cfb_fence == obj_priv->fence_reg &&
1148 dev_priv->cfb_plane == intel_crtc->plane &&
1149 dev_priv->cfb_y == crtc->y)
1150 return;
1151
1152 I915_WRITE(DPFC_CONTROL, dpfc_ctl & ~DPFC_CTL_EN);
1153 POSTING_READ(DPFC_CONTROL);
1154 intel_wait_for_vblank(dev, intel_crtc->pipe);
1155 }
1156
Jesse Barnes74dff282009-09-14 15:39:40 -07001157 dev_priv->cfb_pitch = (dev_priv->cfb_pitch / 64) - 1;
1158 dev_priv->cfb_fence = obj_priv->fence_reg;
1159 dev_priv->cfb_plane = intel_crtc->plane;
Chris Wilsonbed4a672010-09-11 10:47:47 +01001160 dev_priv->cfb_y = crtc->y;
Jesse Barnes74dff282009-09-14 15:39:40 -07001161
1162 dpfc_ctl = plane | DPFC_SR_EN | DPFC_CTL_LIMIT_1X;
1163 if (obj_priv->tiling_mode != I915_TILING_NONE) {
1164 dpfc_ctl |= DPFC_CTL_FENCE_EN | dev_priv->cfb_fence;
1165 I915_WRITE(DPFC_CHICKEN, DPFC_HT_MODIFY);
1166 } else {
1167 I915_WRITE(DPFC_CHICKEN, ~DPFC_HT_MODIFY);
1168 }
1169
Jesse Barnes74dff282009-09-14 15:39:40 -07001170 I915_WRITE(DPFC_RECOMP_CTL, DPFC_RECOMP_STALL_EN |
1171 (stall_watermark << DPFC_RECOMP_STALL_WM_SHIFT) |
1172 (interval << DPFC_RECOMP_TIMER_COUNT_SHIFT));
1173 I915_WRITE(DPFC_FENCE_YOFF, crtc->y);
1174
1175 /* enable it... */
1176 I915_WRITE(DPFC_CONTROL, I915_READ(DPFC_CONTROL) | DPFC_CTL_EN);
1177
Zhao Yakui28c97732009-10-09 11:39:41 +08001178 DRM_DEBUG_KMS("enabled fbc on plane %d\n", intel_crtc->plane);
Jesse Barnes74dff282009-09-14 15:39:40 -07001179}
1180
1181void g4x_disable_fbc(struct drm_device *dev)
1182{
1183 struct drm_i915_private *dev_priv = dev->dev_private;
1184 u32 dpfc_ctl;
1185
1186 /* Disable compression */
1187 dpfc_ctl = I915_READ(DPFC_CONTROL);
Chris Wilsonbed4a672010-09-11 10:47:47 +01001188 if (dpfc_ctl & DPFC_CTL_EN) {
1189 dpfc_ctl &= ~DPFC_CTL_EN;
1190 I915_WRITE(DPFC_CONTROL, dpfc_ctl);
Jesse Barnes74dff282009-09-14 15:39:40 -07001191
Chris Wilsonbed4a672010-09-11 10:47:47 +01001192 DRM_DEBUG_KMS("disabled FBC\n");
1193 }
Jesse Barnes74dff282009-09-14 15:39:40 -07001194}
1195
Adam Jacksonee5382a2010-04-23 11:17:39 -04001196static bool g4x_fbc_enabled(struct drm_device *dev)
Jesse Barnes74dff282009-09-14 15:39:40 -07001197{
Jesse Barnes74dff282009-09-14 15:39:40 -07001198 struct drm_i915_private *dev_priv = dev->dev_private;
1199
1200 return I915_READ(DPFC_CONTROL) & DPFC_CTL_EN;
1201}
1202
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001203static void ironlake_enable_fbc(struct drm_crtc *crtc, unsigned long interval)
1204{
1205 struct drm_device *dev = crtc->dev;
1206 struct drm_i915_private *dev_priv = dev->dev_private;
1207 struct drm_framebuffer *fb = crtc->fb;
1208 struct intel_framebuffer *intel_fb = to_intel_framebuffer(fb);
1209 struct drm_i915_gem_object *obj_priv = to_intel_bo(intel_fb->obj);
1210 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Chris Wilson5eddb702010-09-11 13:48:45 +01001211 int plane = intel_crtc->plane == 0 ? DPFC_CTL_PLANEA : DPFC_CTL_PLANEB;
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001212 unsigned long stall_watermark = 200;
1213 u32 dpfc_ctl;
1214
Chris Wilsonbed4a672010-09-11 10:47:47 +01001215 dpfc_ctl = I915_READ(ILK_DPFC_CONTROL);
1216 if (dpfc_ctl & DPFC_CTL_EN) {
1217 if (dev_priv->cfb_pitch == dev_priv->cfb_pitch / 64 - 1 &&
1218 dev_priv->cfb_fence == obj_priv->fence_reg &&
1219 dev_priv->cfb_plane == intel_crtc->plane &&
1220 dev_priv->cfb_offset == obj_priv->gtt_offset &&
1221 dev_priv->cfb_y == crtc->y)
1222 return;
1223
1224 I915_WRITE(ILK_DPFC_CONTROL, dpfc_ctl & ~DPFC_CTL_EN);
1225 POSTING_READ(ILK_DPFC_CONTROL);
1226 intel_wait_for_vblank(dev, intel_crtc->pipe);
1227 }
1228
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001229 dev_priv->cfb_pitch = (dev_priv->cfb_pitch / 64) - 1;
1230 dev_priv->cfb_fence = obj_priv->fence_reg;
1231 dev_priv->cfb_plane = intel_crtc->plane;
Chris Wilsonbed4a672010-09-11 10:47:47 +01001232 dev_priv->cfb_offset = obj_priv->gtt_offset;
1233 dev_priv->cfb_y = crtc->y;
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001234
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001235 dpfc_ctl &= DPFC_RESERVED;
1236 dpfc_ctl |= (plane | DPFC_CTL_LIMIT_1X);
1237 if (obj_priv->tiling_mode != I915_TILING_NONE) {
1238 dpfc_ctl |= (DPFC_CTL_FENCE_EN | dev_priv->cfb_fence);
1239 I915_WRITE(ILK_DPFC_CHICKEN, DPFC_HT_MODIFY);
1240 } else {
1241 I915_WRITE(ILK_DPFC_CHICKEN, ~DPFC_HT_MODIFY);
1242 }
1243
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001244 I915_WRITE(ILK_DPFC_RECOMP_CTL, DPFC_RECOMP_STALL_EN |
1245 (stall_watermark << DPFC_RECOMP_STALL_WM_SHIFT) |
1246 (interval << DPFC_RECOMP_TIMER_COUNT_SHIFT));
1247 I915_WRITE(ILK_DPFC_FENCE_YOFF, crtc->y);
1248 I915_WRITE(ILK_FBC_RT_BASE, obj_priv->gtt_offset | ILK_FBC_RT_VALID);
1249 /* enable it... */
Chris Wilsonbed4a672010-09-11 10:47:47 +01001250 I915_WRITE(ILK_DPFC_CONTROL, dpfc_ctl | DPFC_CTL_EN);
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001251
1252 DRM_DEBUG_KMS("enabled fbc on plane %d\n", intel_crtc->plane);
1253}
1254
1255void ironlake_disable_fbc(struct drm_device *dev)
1256{
1257 struct drm_i915_private *dev_priv = dev->dev_private;
1258 u32 dpfc_ctl;
1259
1260 /* Disable compression */
1261 dpfc_ctl = I915_READ(ILK_DPFC_CONTROL);
Chris Wilsonbed4a672010-09-11 10:47:47 +01001262 if (dpfc_ctl & DPFC_CTL_EN) {
1263 dpfc_ctl &= ~DPFC_CTL_EN;
1264 I915_WRITE(ILK_DPFC_CONTROL, dpfc_ctl);
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001265
Chris Wilsonbed4a672010-09-11 10:47:47 +01001266 DRM_DEBUG_KMS("disabled FBC\n");
1267 }
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08001268}
1269
1270static bool ironlake_fbc_enabled(struct drm_device *dev)
1271{
1272 struct drm_i915_private *dev_priv = dev->dev_private;
1273
1274 return I915_READ(ILK_DPFC_CONTROL) & DPFC_CTL_EN;
1275}
1276
Adam Jacksonee5382a2010-04-23 11:17:39 -04001277bool intel_fbc_enabled(struct drm_device *dev)
1278{
1279 struct drm_i915_private *dev_priv = dev->dev_private;
1280
1281 if (!dev_priv->display.fbc_enabled)
1282 return false;
1283
1284 return dev_priv->display.fbc_enabled(dev);
1285}
1286
1287void intel_enable_fbc(struct drm_crtc *crtc, unsigned long interval)
1288{
1289 struct drm_i915_private *dev_priv = crtc->dev->dev_private;
1290
1291 if (!dev_priv->display.enable_fbc)
1292 return;
1293
1294 dev_priv->display.enable_fbc(crtc, interval);
1295}
1296
1297void intel_disable_fbc(struct drm_device *dev)
1298{
1299 struct drm_i915_private *dev_priv = dev->dev_private;
1300
1301 if (!dev_priv->display.disable_fbc)
1302 return;
1303
1304 dev_priv->display.disable_fbc(dev);
1305}
1306
Jesse Barnes80824002009-09-10 15:28:06 -07001307/**
1308 * intel_update_fbc - enable/disable FBC as needed
Chris Wilsonbed4a672010-09-11 10:47:47 +01001309 * @dev: the drm_device
Jesse Barnes80824002009-09-10 15:28:06 -07001310 *
1311 * Set up the framebuffer compression hardware at mode set time. We
1312 * enable it if possible:
1313 * - plane A only (on pre-965)
1314 * - no pixel mulitply/line duplication
1315 * - no alpha buffer discard
1316 * - no dual wide
1317 * - framebuffer <= 2048 in width, 1536 in height
1318 *
1319 * We can't assume that any compression will take place (worst case),
1320 * so the compressed buffer has to be the same size as the uncompressed
1321 * one. It also must reside (along with the line length buffer) in
1322 * stolen memory.
1323 *
1324 * We need to enable/disable FBC on a global basis.
1325 */
Chris Wilsonbed4a672010-09-11 10:47:47 +01001326static void intel_update_fbc(struct drm_device *dev)
Jesse Barnes80824002009-09-10 15:28:06 -07001327{
Jesse Barnes80824002009-09-10 15:28:06 -07001328 struct drm_i915_private *dev_priv = dev->dev_private;
Chris Wilsonbed4a672010-09-11 10:47:47 +01001329 struct drm_crtc *crtc = NULL, *tmp_crtc;
1330 struct intel_crtc *intel_crtc;
1331 struct drm_framebuffer *fb;
Jesse Barnes80824002009-09-10 15:28:06 -07001332 struct intel_framebuffer *intel_fb;
1333 struct drm_i915_gem_object *obj_priv;
Jesse Barnes9c928d12010-07-23 15:20:00 -07001334
1335 DRM_DEBUG_KMS("\n");
Jesse Barnes80824002009-09-10 15:28:06 -07001336
1337 if (!i915_powersave)
1338 return;
1339
Adam Jacksonee5382a2010-04-23 11:17:39 -04001340 if (!I915_HAS_FBC(dev))
Jesse Barnese70236a2009-09-21 10:42:27 -07001341 return;
1342
Jesse Barnes80824002009-09-10 15:28:06 -07001343 /*
1344 * If FBC is already on, we just have to verify that we can
1345 * keep it that way...
1346 * Need to disable if:
Jesse Barnes9c928d12010-07-23 15:20:00 -07001347 * - more than one pipe is active
Jesse Barnes80824002009-09-10 15:28:06 -07001348 * - changing FBC params (stride, fence, mode)
1349 * - new fb is too large to fit in compressed buffer
1350 * - going to an unsupported config (interlace, pixel multiply, etc.)
1351 */
Jesse Barnes9c928d12010-07-23 15:20:00 -07001352 list_for_each_entry(tmp_crtc, &dev->mode_config.crtc_list, head) {
Chris Wilsonbed4a672010-09-11 10:47:47 +01001353 if (tmp_crtc->enabled) {
1354 if (crtc) {
1355 DRM_DEBUG_KMS("more than one pipe active, disabling compression\n");
1356 dev_priv->no_fbc_reason = FBC_MULTIPLE_PIPES;
1357 goto out_disable;
1358 }
1359 crtc = tmp_crtc;
1360 }
Jesse Barnes9c928d12010-07-23 15:20:00 -07001361 }
Chris Wilsonbed4a672010-09-11 10:47:47 +01001362
1363 if (!crtc || crtc->fb == NULL) {
1364 DRM_DEBUG_KMS("no output, disabling\n");
1365 dev_priv->no_fbc_reason = FBC_NO_OUTPUT;
Jesse Barnes9c928d12010-07-23 15:20:00 -07001366 goto out_disable;
1367 }
Chris Wilsonbed4a672010-09-11 10:47:47 +01001368
1369 intel_crtc = to_intel_crtc(crtc);
1370 fb = crtc->fb;
1371 intel_fb = to_intel_framebuffer(fb);
1372 obj_priv = to_intel_bo(intel_fb->obj);
1373
Jesse Barnes80824002009-09-10 15:28:06 -07001374 if (intel_fb->obj->size > dev_priv->cfb_size) {
Zhao Yakui28c97732009-10-09 11:39:41 +08001375 DRM_DEBUG_KMS("framebuffer too large, disabling "
Chris Wilson5eddb702010-09-11 13:48:45 +01001376 "compression\n");
Jesse Barnesb5e50c32010-02-05 12:42:41 -08001377 dev_priv->no_fbc_reason = FBC_STOLEN_TOO_SMALL;
Jesse Barnes80824002009-09-10 15:28:06 -07001378 goto out_disable;
1379 }
Chris Wilsonbed4a672010-09-11 10:47:47 +01001380 if ((crtc->mode.flags & DRM_MODE_FLAG_INTERLACE) ||
1381 (crtc->mode.flags & DRM_MODE_FLAG_DBLSCAN)) {
Zhao Yakui28c97732009-10-09 11:39:41 +08001382 DRM_DEBUG_KMS("mode incompatible with compression, "
Chris Wilson5eddb702010-09-11 13:48:45 +01001383 "disabling\n");
Jesse Barnesb5e50c32010-02-05 12:42:41 -08001384 dev_priv->no_fbc_reason = FBC_UNSUPPORTED_MODE;
Jesse Barnes80824002009-09-10 15:28:06 -07001385 goto out_disable;
1386 }
Chris Wilsonbed4a672010-09-11 10:47:47 +01001387 if ((crtc->mode.hdisplay > 2048) ||
1388 (crtc->mode.vdisplay > 1536)) {
Zhao Yakui28c97732009-10-09 11:39:41 +08001389 DRM_DEBUG_KMS("mode too large for compression, disabling\n");
Jesse Barnesb5e50c32010-02-05 12:42:41 -08001390 dev_priv->no_fbc_reason = FBC_MODE_TOO_LARGE;
Jesse Barnes80824002009-09-10 15:28:06 -07001391 goto out_disable;
1392 }
Chris Wilsonbed4a672010-09-11 10:47:47 +01001393 if ((IS_I915GM(dev) || IS_I945GM(dev)) && intel_crtc->plane != 0) {
Zhao Yakui28c97732009-10-09 11:39:41 +08001394 DRM_DEBUG_KMS("plane not 0, disabling compression\n");
Jesse Barnesb5e50c32010-02-05 12:42:41 -08001395 dev_priv->no_fbc_reason = FBC_BAD_PLANE;
Jesse Barnes80824002009-09-10 15:28:06 -07001396 goto out_disable;
1397 }
1398 if (obj_priv->tiling_mode != I915_TILING_X) {
Zhao Yakui28c97732009-10-09 11:39:41 +08001399 DRM_DEBUG_KMS("framebuffer not tiled, disabling compression\n");
Jesse Barnesb5e50c32010-02-05 12:42:41 -08001400 dev_priv->no_fbc_reason = FBC_NOT_TILED;
Jesse Barnes80824002009-09-10 15:28:06 -07001401 goto out_disable;
1402 }
1403
Jason Wesselc924b932010-08-05 09:22:32 -05001404 /* If the kernel debugger is active, always disable compression */
1405 if (in_dbg_master())
1406 goto out_disable;
1407
Chris Wilsonbed4a672010-09-11 10:47:47 +01001408 intel_enable_fbc(crtc, 500);
Jesse Barnes80824002009-09-10 15:28:06 -07001409 return;
1410
1411out_disable:
Jesse Barnes80824002009-09-10 15:28:06 -07001412 /* Multiple disables should be harmless */
Chris Wilsona9394062010-05-27 13:18:16 +01001413 if (intel_fbc_enabled(dev)) {
1414 DRM_DEBUG_KMS("unsupported config, disabling FBC\n");
Adam Jacksonee5382a2010-04-23 11:17:39 -04001415 intel_disable_fbc(dev);
Chris Wilsona9394062010-05-27 13:18:16 +01001416 }
Jesse Barnes80824002009-09-10 15:28:06 -07001417}
1418
Chris Wilson127bd2a2010-07-23 23:32:05 +01001419int
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05001420intel_pin_and_fence_fb_obj(struct drm_device *dev, struct drm_gem_object *obj)
1421{
Daniel Vetter23010e42010-03-08 13:35:02 +01001422 struct drm_i915_gem_object *obj_priv = to_intel_bo(obj);
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05001423 u32 alignment;
1424 int ret;
1425
1426 switch (obj_priv->tiling_mode) {
1427 case I915_TILING_NONE:
Chris Wilson534843d2010-07-05 18:01:46 +01001428 if (IS_BROADWATER(dev) || IS_CRESTLINE(dev))
1429 alignment = 128 * 1024;
1430 else if (IS_I965G(dev))
1431 alignment = 4 * 1024;
1432 else
1433 alignment = 64 * 1024;
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05001434 break;
1435 case I915_TILING_X:
1436 /* pin() will align the object as required by fence */
1437 alignment = 0;
1438 break;
1439 case I915_TILING_Y:
1440 /* FIXME: Is this true? */
1441 DRM_ERROR("Y tiled not allowed for scan out buffers\n");
1442 return -EINVAL;
1443 default:
1444 BUG();
1445 }
1446
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05001447 ret = i915_gem_object_pin(obj, alignment);
1448 if (ret != 0)
1449 return ret;
1450
1451 /* Install a fence for tiled scan-out. Pre-i965 always needs a
1452 * fence, whereas 965+ only requires a fence if using
1453 * framebuffer compression. For simplicity, we always install
1454 * a fence as the cost is not that onerous.
1455 */
1456 if (obj_priv->fence_reg == I915_FENCE_REG_NONE &&
1457 obj_priv->tiling_mode != I915_TILING_NONE) {
1458 ret = i915_gem_object_get_fence_reg(obj);
1459 if (ret != 0) {
1460 i915_gem_object_unpin(obj);
1461 return ret;
1462 }
1463 }
1464
1465 return 0;
1466}
1467
Jesse Barnes81255562010-08-02 12:07:50 -07001468/* Assume fb object is pinned & idle & fenced and just update base pointers */
1469static int
1470intel_pipe_set_base_atomic(struct drm_crtc *crtc, struct drm_framebuffer *fb,
1471 int x, int y)
1472{
1473 struct drm_device *dev = crtc->dev;
1474 struct drm_i915_private *dev_priv = dev->dev_private;
1475 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
1476 struct intel_framebuffer *intel_fb;
1477 struct drm_i915_gem_object *obj_priv;
1478 struct drm_gem_object *obj;
1479 int plane = intel_crtc->plane;
1480 unsigned long Start, Offset;
Jesse Barnes81255562010-08-02 12:07:50 -07001481 u32 dspcntr;
Chris Wilson5eddb702010-09-11 13:48:45 +01001482 u32 reg;
Jesse Barnes81255562010-08-02 12:07:50 -07001483
1484 switch (plane) {
1485 case 0:
1486 case 1:
1487 break;
1488 default:
1489 DRM_ERROR("Can't update plane %d in SAREA\n", plane);
1490 return -EINVAL;
1491 }
1492
1493 intel_fb = to_intel_framebuffer(fb);
1494 obj = intel_fb->obj;
1495 obj_priv = to_intel_bo(obj);
1496
Chris Wilson5eddb702010-09-11 13:48:45 +01001497 reg = DSPCNTR(plane);
1498 dspcntr = I915_READ(reg);
Jesse Barnes81255562010-08-02 12:07:50 -07001499 /* Mask out pixel format bits in case we change it */
1500 dspcntr &= ~DISPPLANE_PIXFORMAT_MASK;
1501 switch (fb->bits_per_pixel) {
1502 case 8:
1503 dspcntr |= DISPPLANE_8BPP;
1504 break;
1505 case 16:
1506 if (fb->depth == 15)
1507 dspcntr |= DISPPLANE_15_16BPP;
1508 else
1509 dspcntr |= DISPPLANE_16BPP;
1510 break;
1511 case 24:
1512 case 32:
1513 dspcntr |= DISPPLANE_32BPP_NO_ALPHA;
1514 break;
1515 default:
1516 DRM_ERROR("Unknown color depth\n");
1517 return -EINVAL;
1518 }
1519 if (IS_I965G(dev)) {
1520 if (obj_priv->tiling_mode != I915_TILING_NONE)
1521 dspcntr |= DISPPLANE_TILED;
1522 else
1523 dspcntr &= ~DISPPLANE_TILED;
1524 }
1525
Chris Wilson4e6cfef2010-08-08 13:20:19 +01001526 if (HAS_PCH_SPLIT(dev))
Jesse Barnes81255562010-08-02 12:07:50 -07001527 /* must disable */
1528 dspcntr |= DISPPLANE_TRICKLE_FEED_DISABLE;
1529
Chris Wilson5eddb702010-09-11 13:48:45 +01001530 I915_WRITE(reg, dspcntr);
Jesse Barnes81255562010-08-02 12:07:50 -07001531
1532 Start = obj_priv->gtt_offset;
1533 Offset = y * fb->pitch + x * (fb->bits_per_pixel / 8);
1534
Chris Wilson4e6cfef2010-08-08 13:20:19 +01001535 DRM_DEBUG_KMS("Writing base %08lX %08lX %d %d %d\n",
1536 Start, Offset, x, y, fb->pitch);
Chris Wilson5eddb702010-09-11 13:48:45 +01001537 I915_WRITE(DSPSTRIDE(plane), fb->pitch);
Jesse Barnes81255562010-08-02 12:07:50 -07001538 if (IS_I965G(dev)) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001539 I915_WRITE(DSPSURF(plane), Start);
1540 I915_WRITE(DSPTILEOFF(plane), (y << 16) | x);
1541 I915_WRITE(DSPADDR(plane), Offset);
1542 } else
1543 I915_WRITE(DSPADDR(plane), Start + Offset);
1544 POSTING_READ(reg);
Jesse Barnes81255562010-08-02 12:07:50 -07001545
Chris Wilsonbed4a672010-09-11 10:47:47 +01001546 intel_update_fbc(dev);
Daniel Vetter3dec0092010-08-20 21:40:52 +02001547 intel_increase_pllclock(crtc);
Jesse Barnes81255562010-08-02 12:07:50 -07001548
1549 return 0;
1550}
1551
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05001552static int
Kristian Høgsberg3c4fdcf2008-12-17 22:14:46 -05001553intel_pipe_set_base(struct drm_crtc *crtc, int x, int y,
1554 struct drm_framebuffer *old_fb)
Jesse Barnes79e53942008-11-07 14:24:08 -08001555{
1556 struct drm_device *dev = crtc->dev;
Jesse Barnes79e53942008-11-07 14:24:08 -08001557 struct drm_i915_master_private *master_priv;
1558 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
1559 struct intel_framebuffer *intel_fb;
1560 struct drm_i915_gem_object *obj_priv;
1561 struct drm_gem_object *obj;
1562 int pipe = intel_crtc->pipe;
Jesse Barnes80824002009-09-10 15:28:06 -07001563 int plane = intel_crtc->plane;
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001564 int ret;
Jesse Barnes79e53942008-11-07 14:24:08 -08001565
1566 /* no fb bound */
1567 if (!crtc->fb) {
Zhao Yakui28c97732009-10-09 11:39:41 +08001568 DRM_DEBUG_KMS("No FB bound\n");
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001569 return 0;
1570 }
1571
Jesse Barnes80824002009-09-10 15:28:06 -07001572 switch (plane) {
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001573 case 0:
1574 case 1:
1575 break;
1576 default:
Jesse Barnes80824002009-09-10 15:28:06 -07001577 DRM_ERROR("Can't update plane %d in SAREA\n", plane);
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001578 return -EINVAL;
Jesse Barnes79e53942008-11-07 14:24:08 -08001579 }
1580
1581 intel_fb = to_intel_framebuffer(crtc->fb);
Jesse Barnes79e53942008-11-07 14:24:08 -08001582 obj = intel_fb->obj;
Daniel Vetter23010e42010-03-08 13:35:02 +01001583 obj_priv = to_intel_bo(obj);
Jesse Barnes79e53942008-11-07 14:24:08 -08001584
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001585 mutex_lock(&dev->struct_mutex);
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05001586 ret = intel_pin_and_fence_fb_obj(dev, obj);
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001587 if (ret != 0) {
1588 mutex_unlock(&dev->struct_mutex);
1589 return ret;
1590 }
Kristian Høgsberg3c4fdcf2008-12-17 22:14:46 -05001591
Zhenyu Wangb9241ea2009-11-25 13:09:39 +08001592 ret = i915_gem_object_set_to_display_plane(obj);
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001593 if (ret != 0) {
Chris Wilson8c4b8c32009-06-17 22:08:52 +01001594 i915_gem_object_unpin(obj);
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001595 mutex_unlock(&dev->struct_mutex);
1596 return ret;
1597 }
Jesse Barnes79e53942008-11-07 14:24:08 -08001598
Chris Wilson4e6cfef2010-08-08 13:20:19 +01001599 ret = intel_pipe_set_base_atomic(crtc, crtc->fb, x, y);
1600 if (ret) {
Chris Wilson8c4b8c32009-06-17 22:08:52 +01001601 i915_gem_object_unpin(obj);
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001602 mutex_unlock(&dev->struct_mutex);
Chris Wilson4e6cfef2010-08-08 13:20:19 +01001603 return ret;
Jesse Barnes79e53942008-11-07 14:24:08 -08001604 }
Kristian Høgsberg3c4fdcf2008-12-17 22:14:46 -05001605
1606 if (old_fb) {
1607 intel_fb = to_intel_framebuffer(old_fb);
Daniel Vetter23010e42010-03-08 13:35:02 +01001608 obj_priv = to_intel_bo(intel_fb->obj);
Kristian Høgsberg3c4fdcf2008-12-17 22:14:46 -05001609 i915_gem_object_unpin(intel_fb->obj);
1610 }
Jesse Barnes652c3932009-08-17 13:31:43 -07001611
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001612 mutex_unlock(&dev->struct_mutex);
Jesse Barnes79e53942008-11-07 14:24:08 -08001613
1614 if (!dev->primary->master)
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001615 return 0;
Jesse Barnes79e53942008-11-07 14:24:08 -08001616
1617 master_priv = dev->primary->master->driver_priv;
1618 if (!master_priv->sarea_priv)
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001619 return 0;
Jesse Barnes79e53942008-11-07 14:24:08 -08001620
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001621 if (pipe) {
Jesse Barnes79e53942008-11-07 14:24:08 -08001622 master_priv->sarea_priv->pipeB_x = x;
1623 master_priv->sarea_priv->pipeB_y = y;
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001624 } else {
1625 master_priv->sarea_priv->pipeA_x = x;
1626 master_priv->sarea_priv->pipeA_y = y;
Jesse Barnes79e53942008-11-07 14:24:08 -08001627 }
Chris Wilson5c3b82e2009-02-11 13:25:09 +00001628
1629 return 0;
Jesse Barnes79e53942008-11-07 14:24:08 -08001630}
1631
Chris Wilson5eddb702010-09-11 13:48:45 +01001632static void ironlake_set_pll_edp(struct drm_crtc *crtc, int clock)
Zhenyu Wang32f9d652009-07-24 01:00:32 +08001633{
1634 struct drm_device *dev = crtc->dev;
1635 struct drm_i915_private *dev_priv = dev->dev_private;
1636 u32 dpa_ctl;
1637
Zhao Yakui28c97732009-10-09 11:39:41 +08001638 DRM_DEBUG_KMS("eDP PLL enable for clock %d\n", clock);
Zhenyu Wang32f9d652009-07-24 01:00:32 +08001639 dpa_ctl = I915_READ(DP_A);
1640 dpa_ctl &= ~DP_PLL_FREQ_MASK;
1641
1642 if (clock < 200000) {
1643 u32 temp;
1644 dpa_ctl |= DP_PLL_FREQ_160MHZ;
1645 /* workaround for 160Mhz:
1646 1) program 0x4600c bits 15:0 = 0x8124
1647 2) program 0x46010 bit 0 = 1
1648 3) program 0x46034 bit 24 = 1
1649 4) program 0x64000 bit 14 = 1
1650 */
1651 temp = I915_READ(0x4600c);
1652 temp &= 0xffff0000;
1653 I915_WRITE(0x4600c, temp | 0x8124);
1654
1655 temp = I915_READ(0x46010);
1656 I915_WRITE(0x46010, temp | 1);
1657
1658 temp = I915_READ(0x46034);
1659 I915_WRITE(0x46034, temp | (1 << 24));
1660 } else {
1661 dpa_ctl |= DP_PLL_FREQ_270MHZ;
1662 }
1663 I915_WRITE(DP_A, dpa_ctl);
1664
Chris Wilson5eddb702010-09-11 13:48:45 +01001665 POSTING_READ(DP_A);
Zhenyu Wang32f9d652009-07-24 01:00:32 +08001666 udelay(500);
1667}
1668
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001669/* The FDI link training functions for ILK/Ibexpeak. */
1670static void ironlake_fdi_link_train(struct drm_crtc *crtc)
1671{
1672 struct drm_device *dev = crtc->dev;
1673 struct drm_i915_private *dev_priv = dev->dev_private;
1674 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
1675 int pipe = intel_crtc->pipe;
Chris Wilson5eddb702010-09-11 13:48:45 +01001676 u32 reg, temp, tries;
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001677
Adam Jacksone1a44742010-06-25 15:32:14 -04001678 /* Train 1: umask FDI RX Interrupt symbol_lock and bit_lock bit
1679 for train result */
Chris Wilson5eddb702010-09-11 13:48:45 +01001680 reg = FDI_RX_IMR(pipe);
1681 temp = I915_READ(reg);
Adam Jacksone1a44742010-06-25 15:32:14 -04001682 temp &= ~FDI_RX_SYMBOL_LOCK;
1683 temp &= ~FDI_RX_BIT_LOCK;
Chris Wilson5eddb702010-09-11 13:48:45 +01001684 I915_WRITE(reg, temp);
1685 I915_READ(reg);
Adam Jacksone1a44742010-06-25 15:32:14 -04001686 udelay(150);
1687
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001688 /* enable CPU FDI TX and PCH FDI RX */
Chris Wilson5eddb702010-09-11 13:48:45 +01001689 reg = FDI_TX_CTL(pipe);
1690 temp = I915_READ(reg);
Adam Jackson77ffb592010-04-12 11:38:44 -04001691 temp &= ~(7 << 19);
1692 temp |= (intel_crtc->fdi_lanes - 1) << 19;
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001693 temp &= ~FDI_LINK_TRAIN_NONE;
1694 temp |= FDI_LINK_TRAIN_PATTERN_1;
Chris Wilson5eddb702010-09-11 13:48:45 +01001695 I915_WRITE(reg, temp | FDI_TX_ENABLE);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001696
Chris Wilson5eddb702010-09-11 13:48:45 +01001697 reg = FDI_RX_CTL(pipe);
1698 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001699 temp &= ~FDI_LINK_TRAIN_NONE;
1700 temp |= FDI_LINK_TRAIN_PATTERN_1;
Chris Wilson5eddb702010-09-11 13:48:45 +01001701 I915_WRITE(reg, temp | FDI_RX_ENABLE);
1702
1703 POSTING_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001704 udelay(150);
1705
Chris Wilson5eddb702010-09-11 13:48:45 +01001706 reg = FDI_RX_IIR(pipe);
Adam Jacksone1a44742010-06-25 15:32:14 -04001707 for (tries = 0; tries < 5; tries++) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001708 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001709 DRM_DEBUG_KMS("FDI_RX_IIR 0x%x\n", temp);
1710
1711 if ((temp & FDI_RX_BIT_LOCK)) {
1712 DRM_DEBUG_KMS("FDI train 1 done.\n");
Chris Wilson5eddb702010-09-11 13:48:45 +01001713 I915_WRITE(reg, temp | FDI_RX_BIT_LOCK);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001714 break;
1715 }
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001716 }
Adam Jacksone1a44742010-06-25 15:32:14 -04001717 if (tries == 5)
Chris Wilson5eddb702010-09-11 13:48:45 +01001718 DRM_ERROR("FDI train 1 fail!\n");
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001719
1720 /* Train 2 */
Chris Wilson5eddb702010-09-11 13:48:45 +01001721 reg = FDI_TX_CTL(pipe);
1722 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001723 temp &= ~FDI_LINK_TRAIN_NONE;
1724 temp |= FDI_LINK_TRAIN_PATTERN_2;
Chris Wilson5eddb702010-09-11 13:48:45 +01001725 I915_WRITE(reg, temp);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001726
Chris Wilson5eddb702010-09-11 13:48:45 +01001727 reg = FDI_RX_CTL(pipe);
1728 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001729 temp &= ~FDI_LINK_TRAIN_NONE;
1730 temp |= FDI_LINK_TRAIN_PATTERN_2;
Chris Wilson5eddb702010-09-11 13:48:45 +01001731 I915_WRITE(reg, temp);
1732
1733 POSTING_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001734 udelay(150);
1735
Chris Wilson5eddb702010-09-11 13:48:45 +01001736 reg = FDI_RX_IIR(pipe);
Adam Jacksone1a44742010-06-25 15:32:14 -04001737 for (tries = 0; tries < 5; tries++) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001738 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001739 DRM_DEBUG_KMS("FDI_RX_IIR 0x%x\n", temp);
1740
1741 if (temp & FDI_RX_SYMBOL_LOCK) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001742 I915_WRITE(reg, temp | FDI_RX_SYMBOL_LOCK);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001743 DRM_DEBUG_KMS("FDI train 2 done.\n");
1744 break;
1745 }
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001746 }
Adam Jacksone1a44742010-06-25 15:32:14 -04001747 if (tries == 5)
Chris Wilson5eddb702010-09-11 13:48:45 +01001748 DRM_ERROR("FDI train 2 fail!\n");
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001749
1750 DRM_DEBUG_KMS("FDI train done\n");
1751}
1752
Chris Wilson5eddb702010-09-11 13:48:45 +01001753static const int const snb_b_fdi_train_param [] = {
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001754 FDI_LINK_TRAIN_400MV_0DB_SNB_B,
1755 FDI_LINK_TRAIN_400MV_6DB_SNB_B,
1756 FDI_LINK_TRAIN_600MV_3_5DB_SNB_B,
1757 FDI_LINK_TRAIN_800MV_0DB_SNB_B,
1758};
1759
1760/* The FDI link training functions for SNB/Cougarpoint. */
1761static void gen6_fdi_link_train(struct drm_crtc *crtc)
1762{
1763 struct drm_device *dev = crtc->dev;
1764 struct drm_i915_private *dev_priv = dev->dev_private;
1765 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
1766 int pipe = intel_crtc->pipe;
Chris Wilson5eddb702010-09-11 13:48:45 +01001767 u32 reg, temp, i;
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001768
Adam Jacksone1a44742010-06-25 15:32:14 -04001769 /* Train 1: umask FDI RX Interrupt symbol_lock and bit_lock bit
1770 for train result */
Chris Wilson5eddb702010-09-11 13:48:45 +01001771 reg = FDI_RX_IMR(pipe);
1772 temp = I915_READ(reg);
Adam Jacksone1a44742010-06-25 15:32:14 -04001773 temp &= ~FDI_RX_SYMBOL_LOCK;
1774 temp &= ~FDI_RX_BIT_LOCK;
Chris Wilson5eddb702010-09-11 13:48:45 +01001775 I915_WRITE(reg, temp);
1776
1777 POSTING_READ(reg);
Adam Jacksone1a44742010-06-25 15:32:14 -04001778 udelay(150);
1779
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001780 /* enable CPU FDI TX and PCH FDI RX */
Chris Wilson5eddb702010-09-11 13:48:45 +01001781 reg = FDI_TX_CTL(pipe);
1782 temp = I915_READ(reg);
Adam Jackson77ffb592010-04-12 11:38:44 -04001783 temp &= ~(7 << 19);
1784 temp |= (intel_crtc->fdi_lanes - 1) << 19;
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001785 temp &= ~FDI_LINK_TRAIN_NONE;
1786 temp |= FDI_LINK_TRAIN_PATTERN_1;
1787 temp &= ~FDI_LINK_TRAIN_VOL_EMP_MASK;
1788 /* SNB-B */
1789 temp |= FDI_LINK_TRAIN_400MV_0DB_SNB_B;
Chris Wilson5eddb702010-09-11 13:48:45 +01001790 I915_WRITE(reg, temp | FDI_TX_ENABLE);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001791
Chris Wilson5eddb702010-09-11 13:48:45 +01001792 reg = FDI_RX_CTL(pipe);
1793 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001794 if (HAS_PCH_CPT(dev)) {
1795 temp &= ~FDI_LINK_TRAIN_PATTERN_MASK_CPT;
1796 temp |= FDI_LINK_TRAIN_PATTERN_1_CPT;
1797 } else {
1798 temp &= ~FDI_LINK_TRAIN_NONE;
1799 temp |= FDI_LINK_TRAIN_PATTERN_1;
1800 }
Chris Wilson5eddb702010-09-11 13:48:45 +01001801 I915_WRITE(reg, temp | FDI_RX_ENABLE);
1802
1803 POSTING_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001804 udelay(150);
1805
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001806 for (i = 0; i < 4; i++ ) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001807 reg = FDI_TX_CTL(pipe);
1808 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001809 temp &= ~FDI_LINK_TRAIN_VOL_EMP_MASK;
1810 temp |= snb_b_fdi_train_param[i];
Chris Wilson5eddb702010-09-11 13:48:45 +01001811 I915_WRITE(reg, temp);
1812
1813 POSTING_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001814 udelay(500);
1815
Chris Wilson5eddb702010-09-11 13:48:45 +01001816 reg = FDI_RX_IIR(pipe);
1817 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001818 DRM_DEBUG_KMS("FDI_RX_IIR 0x%x\n", temp);
1819
1820 if (temp & FDI_RX_BIT_LOCK) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001821 I915_WRITE(reg, temp | FDI_RX_BIT_LOCK);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001822 DRM_DEBUG_KMS("FDI train 1 done.\n");
1823 break;
1824 }
1825 }
1826 if (i == 4)
Chris Wilson5eddb702010-09-11 13:48:45 +01001827 DRM_ERROR("FDI train 1 fail!\n");
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001828
1829 /* Train 2 */
Chris Wilson5eddb702010-09-11 13:48:45 +01001830 reg = FDI_TX_CTL(pipe);
1831 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001832 temp &= ~FDI_LINK_TRAIN_NONE;
1833 temp |= FDI_LINK_TRAIN_PATTERN_2;
1834 if (IS_GEN6(dev)) {
1835 temp &= ~FDI_LINK_TRAIN_VOL_EMP_MASK;
1836 /* SNB-B */
1837 temp |= FDI_LINK_TRAIN_400MV_0DB_SNB_B;
1838 }
Chris Wilson5eddb702010-09-11 13:48:45 +01001839 I915_WRITE(reg, temp);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001840
Chris Wilson5eddb702010-09-11 13:48:45 +01001841 reg = FDI_RX_CTL(pipe);
1842 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001843 if (HAS_PCH_CPT(dev)) {
1844 temp &= ~FDI_LINK_TRAIN_PATTERN_MASK_CPT;
1845 temp |= FDI_LINK_TRAIN_PATTERN_2_CPT;
1846 } else {
1847 temp &= ~FDI_LINK_TRAIN_NONE;
1848 temp |= FDI_LINK_TRAIN_PATTERN_2;
1849 }
Chris Wilson5eddb702010-09-11 13:48:45 +01001850 I915_WRITE(reg, temp);
1851
1852 POSTING_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001853 udelay(150);
1854
1855 for (i = 0; i < 4; i++ ) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001856 reg = FDI_TX_CTL(pipe);
1857 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001858 temp &= ~FDI_LINK_TRAIN_VOL_EMP_MASK;
1859 temp |= snb_b_fdi_train_param[i];
Chris Wilson5eddb702010-09-11 13:48:45 +01001860 I915_WRITE(reg, temp);
1861
1862 POSTING_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001863 udelay(500);
1864
Chris Wilson5eddb702010-09-11 13:48:45 +01001865 reg = FDI_RX_IIR(pipe);
1866 temp = I915_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001867 DRM_DEBUG_KMS("FDI_RX_IIR 0x%x\n", temp);
1868
1869 if (temp & FDI_RX_SYMBOL_LOCK) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001870 I915_WRITE(reg, temp | FDI_RX_SYMBOL_LOCK);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001871 DRM_DEBUG_KMS("FDI train 2 done.\n");
1872 break;
1873 }
1874 }
1875 if (i == 4)
Chris Wilson5eddb702010-09-11 13:48:45 +01001876 DRM_ERROR("FDI train 2 fail!\n");
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08001877
1878 DRM_DEBUG_KMS("FDI train done.\n");
1879}
1880
Jesse Barnes0e23b992010-09-10 11:10:00 -07001881static void ironlake_fdi_enable(struct drm_crtc *crtc)
1882{
1883 struct drm_device *dev = crtc->dev;
1884 struct drm_i915_private *dev_priv = dev->dev_private;
1885 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
1886 int pipe = intel_crtc->pipe;
Chris Wilson5eddb702010-09-11 13:48:45 +01001887 u32 reg, temp;
Jesse Barnes0e23b992010-09-10 11:10:00 -07001888
Jesse Barnesc64e3112010-09-10 11:27:03 -07001889 /* Write the TU size bits so error detection works */
Chris Wilson5eddb702010-09-11 13:48:45 +01001890 I915_WRITE(FDI_RX_TUSIZE1(pipe),
1891 I915_READ(PIPE_DATA_M1(pipe)) & TU_SIZE_MASK);
Jesse Barnesc64e3112010-09-10 11:27:03 -07001892
Jesse Barnes0e23b992010-09-10 11:10:00 -07001893 /* enable PCH FDI RX PLL, wait warmup plus DMI latency */
Chris Wilson5eddb702010-09-11 13:48:45 +01001894 reg = FDI_RX_CTL(pipe);
1895 temp = I915_READ(reg);
1896 temp &= ~((0x7 << 19) | (0x7 << 16));
Jesse Barnes0e23b992010-09-10 11:10:00 -07001897 temp |= (intel_crtc->fdi_lanes - 1) << 19;
Chris Wilson5eddb702010-09-11 13:48:45 +01001898 temp |= (I915_READ(PIPECONF(pipe)) & PIPE_BPC_MASK) << 11;
1899 I915_WRITE(reg, temp | FDI_RX_PLL_ENABLE);
1900
1901 POSTING_READ(reg);
Jesse Barnes0e23b992010-09-10 11:10:00 -07001902 udelay(200);
1903
1904 /* Switch from Rawclk to PCDclk */
Chris Wilson5eddb702010-09-11 13:48:45 +01001905 temp = I915_READ(reg);
1906 I915_WRITE(reg, temp | FDI_PCDCLK);
1907
1908 POSTING_READ(reg);
Jesse Barnes0e23b992010-09-10 11:10:00 -07001909 udelay(200);
1910
1911 /* Enable CPU FDI TX PLL, always on for Ironlake */
Chris Wilson5eddb702010-09-11 13:48:45 +01001912 reg = FDI_TX_CTL(pipe);
1913 temp = I915_READ(reg);
Jesse Barnes0e23b992010-09-10 11:10:00 -07001914 if ((temp & FDI_TX_PLL_ENABLE) == 0) {
Chris Wilson5eddb702010-09-11 13:48:45 +01001915 I915_WRITE(reg, temp | FDI_TX_PLL_ENABLE);
1916
1917 POSTING_READ(reg);
Jesse Barnes0e23b992010-09-10 11:10:00 -07001918 udelay(100);
1919 }
1920}
1921
Chris Wilson5eddb702010-09-11 13:48:45 +01001922static void intel_flush_display_plane(struct drm_device *dev,
1923 int plane)
1924{
1925 struct drm_i915_private *dev_priv = dev->dev_private;
1926 u32 reg = DSPADDR(plane);
1927 I915_WRITE(reg, I915_READ(reg));
1928}
1929
Chris Wilson6b383a72010-09-13 13:54:26 +01001930/*
1931 * When we disable a pipe, we need to clear any pending scanline wait events
1932 * to avoid hanging the ring, which we assume we are waiting on.
1933 */
1934static void intel_clear_scanline_wait(struct drm_device *dev)
1935{
1936 struct drm_i915_private *dev_priv = dev->dev_private;
1937 u32 tmp;
1938
1939 if (IS_GEN2(dev))
1940 /* Can't break the hang on i8xx */
1941 return;
1942
1943 tmp = I915_READ(PRB0_CTL);
1944 if (tmp & RING_WAIT) {
1945 I915_WRITE(PRB0_CTL, tmp);
1946 POSTING_READ(PRB0_CTL);
1947 }
1948}
1949
Jesse Barnes6be4a602010-09-10 10:26:01 -07001950static void ironlake_crtc_enable(struct drm_crtc *crtc)
Jesse Barnes79e53942008-11-07 14:24:08 -08001951{
1952 struct drm_device *dev = crtc->dev;
Zhenyu Wang2c072452009-06-05 15:38:42 +08001953 struct drm_i915_private *dev_priv = dev->dev_private;
1954 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
1955 int pipe = intel_crtc->pipe;
Shaohua Li7662c8b2009-06-26 11:23:55 +08001956 int plane = intel_crtc->plane;
Chris Wilson5eddb702010-09-11 13:48:45 +01001957 u32 reg, temp;
Zhenyu Wang2c072452009-06-05 15:38:42 +08001958
Chris Wilsonf7abfe82010-09-13 14:19:16 +01001959 if (intel_crtc->active)
1960 return;
1961
1962 intel_crtc->active = true;
Chris Wilson6b383a72010-09-13 13:54:26 +01001963 intel_update_watermarks(dev);
1964
Jesse Barnes6be4a602010-09-10 10:26:01 -07001965 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS)) {
1966 temp = I915_READ(PCH_LVDS);
Chris Wilson5eddb702010-09-11 13:48:45 +01001967 if ((temp & LVDS_PORT_EN) == 0)
Jesse Barnes6be4a602010-09-10 10:26:01 -07001968 I915_WRITE(PCH_LVDS, temp | LVDS_PORT_EN);
Jesse Barnes6be4a602010-09-10 10:26:01 -07001969 }
1970
Jesse Barnes0e23b992010-09-10 11:10:00 -07001971 ironlake_fdi_enable(crtc);
Jesse Barnes6be4a602010-09-10 10:26:01 -07001972
1973 /* Enable panel fitting for LVDS */
1974 if (dev_priv->pch_pf_size &&
1975 (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS)
1976 || HAS_eDP || intel_pch_has_edp(crtc))) {
1977 /* Force use of hard-coded filter coefficients
1978 * as some pre-programmed values are broken,
1979 * e.g. x201.
1980 */
1981 I915_WRITE(pipe ? PFB_CTL_1 : PFA_CTL_1,
1982 PF_ENABLE | PF_FILTER_MED_3x3);
1983 I915_WRITE(pipe ? PFB_WIN_POS : PFA_WIN_POS,
1984 dev_priv->pch_pf_pos);
1985 I915_WRITE(pipe ? PFB_WIN_SZ : PFA_WIN_SZ,
1986 dev_priv->pch_pf_size);
1987 }
1988
1989 /* Enable CPU pipe */
Chris Wilson5eddb702010-09-11 13:48:45 +01001990 reg = PIPECONF(pipe);
1991 temp = I915_READ(reg);
1992 if ((temp & PIPECONF_ENABLE) == 0) {
1993 I915_WRITE(reg, temp | PIPECONF_ENABLE);
1994 POSTING_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07001995 udelay(100);
1996 }
1997
1998 /* configure and enable CPU plane */
Chris Wilson5eddb702010-09-11 13:48:45 +01001999 reg = DSPCNTR(plane);
2000 temp = I915_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002001 if ((temp & DISPLAY_PLANE_ENABLE) == 0) {
Chris Wilson5eddb702010-09-11 13:48:45 +01002002 I915_WRITE(reg, temp | DISPLAY_PLANE_ENABLE);
2003 intel_flush_display_plane(dev, plane);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002004 }
2005
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002006 /* For PCH output, training FDI link */
2007 if (IS_GEN6(dev))
2008 gen6_fdi_link_train(crtc);
2009 else
2010 ironlake_fdi_link_train(crtc);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002011
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002012 /* enable PCH DPLL */
Chris Wilson5eddb702010-09-11 13:48:45 +01002013 reg = PCH_DPLL(pipe);
2014 temp = I915_READ(reg);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002015 if ((temp & DPLL_VCO_ENABLE) == 0) {
Chris Wilson5eddb702010-09-11 13:48:45 +01002016 I915_WRITE(reg, temp | DPLL_VCO_ENABLE);
2017 POSTING_READ(reg);
Chris Wilson8c4223b2010-09-10 22:33:42 +01002018 udelay(200);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002019 }
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002020
2021 if (HAS_PCH_CPT(dev)) {
2022 /* Be sure PCH DPLL SEL is set */
2023 temp = I915_READ(PCH_DPLL_SEL);
Chris Wilson5eddb702010-09-11 13:48:45 +01002024 if (pipe == 0 && (temp & TRANSA_DPLL_ENABLE) == 0)
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002025 temp |= (TRANSA_DPLL_ENABLE | TRANSA_DPLLA_SEL);
Chris Wilson5eddb702010-09-11 13:48:45 +01002026 else if (pipe == 1 && (temp & TRANSB_DPLL_ENABLE) == 0)
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002027 temp |= (TRANSB_DPLL_ENABLE | TRANSB_DPLLB_SEL);
2028 I915_WRITE(PCH_DPLL_SEL, temp);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002029 }
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002030
Chris Wilson5eddb702010-09-11 13:48:45 +01002031 /* set transcoder timing */
2032 I915_WRITE(TRANS_HTOTAL(pipe), I915_READ(HTOTAL(pipe)));
2033 I915_WRITE(TRANS_HBLANK(pipe), I915_READ(HBLANK(pipe)));
2034 I915_WRITE(TRANS_HSYNC(pipe), I915_READ(HSYNC(pipe)));
2035
2036 I915_WRITE(TRANS_VTOTAL(pipe), I915_READ(VTOTAL(pipe)));
2037 I915_WRITE(TRANS_VBLANK(pipe), I915_READ(VBLANK(pipe)));
2038 I915_WRITE(TRANS_VSYNC(pipe), I915_READ(VSYNC(pipe)));
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002039
2040 /* enable normal train */
Chris Wilson5eddb702010-09-11 13:48:45 +01002041 reg = FDI_TX_CTL(pipe);
2042 temp = I915_READ(reg);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002043 temp &= ~FDI_LINK_TRAIN_NONE;
Chris Wilson5eddb702010-09-11 13:48:45 +01002044 temp |= FDI_LINK_TRAIN_NONE | FDI_TX_ENHANCE_FRAME_ENABLE;
2045 I915_WRITE(reg, temp);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002046
Chris Wilson5eddb702010-09-11 13:48:45 +01002047 reg = FDI_RX_CTL(pipe);
2048 temp = I915_READ(reg);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002049 if (HAS_PCH_CPT(dev)) {
2050 temp &= ~FDI_LINK_TRAIN_PATTERN_MASK_CPT;
2051 temp |= FDI_LINK_TRAIN_NORMAL_CPT;
2052 } else {
2053 temp &= ~FDI_LINK_TRAIN_NONE;
2054 temp |= FDI_LINK_TRAIN_NONE;
2055 }
Chris Wilson5eddb702010-09-11 13:48:45 +01002056 I915_WRITE(reg, temp | FDI_RX_ENHANCE_FRAME_ENABLE);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002057
2058 /* wait one idle pattern time */
Chris Wilson5eddb702010-09-11 13:48:45 +01002059 POSTING_READ(reg);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002060 udelay(100);
2061
2062 /* For PCH DP, enable TRANS_DP_CTL */
2063 if (HAS_PCH_CPT(dev) &&
2064 intel_pipe_has_type(crtc, INTEL_OUTPUT_DISPLAYPORT)) {
Chris Wilson5eddb702010-09-11 13:48:45 +01002065 reg = TRANS_DP_CTL(pipe);
2066 temp = I915_READ(reg);
2067 temp &= ~(TRANS_DP_PORT_SEL_MASK |
2068 TRANS_DP_SYNC_MASK);
2069 temp |= (TRANS_DP_OUTPUT_ENABLE |
2070 TRANS_DP_ENH_FRAMING);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002071
2072 if (crtc->mode.flags & DRM_MODE_FLAG_PHSYNC)
Chris Wilson5eddb702010-09-11 13:48:45 +01002073 temp |= TRANS_DP_HSYNC_ACTIVE_HIGH;
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002074 if (crtc->mode.flags & DRM_MODE_FLAG_PVSYNC)
Chris Wilson5eddb702010-09-11 13:48:45 +01002075 temp |= TRANS_DP_VSYNC_ACTIVE_HIGH;
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002076
2077 switch (intel_trans_dp_port_sel(crtc)) {
2078 case PCH_DP_B:
Chris Wilson5eddb702010-09-11 13:48:45 +01002079 temp |= TRANS_DP_PORT_SEL_B;
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002080 break;
2081 case PCH_DP_C:
Chris Wilson5eddb702010-09-11 13:48:45 +01002082 temp |= TRANS_DP_PORT_SEL_C;
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002083 break;
2084 case PCH_DP_D:
Chris Wilson5eddb702010-09-11 13:48:45 +01002085 temp |= TRANS_DP_PORT_SEL_D;
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002086 break;
2087 default:
2088 DRM_DEBUG_KMS("Wrong PCH DP port return. Guess port B\n");
Chris Wilson5eddb702010-09-11 13:48:45 +01002089 temp |= TRANS_DP_PORT_SEL_B;
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002090 break;
2091 }
2092
Chris Wilson5eddb702010-09-11 13:48:45 +01002093 I915_WRITE(reg, temp);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002094 }
2095
2096 /* enable PCH transcoder */
Chris Wilson5eddb702010-09-11 13:48:45 +01002097 reg = TRANSCONF(pipe);
2098 temp = I915_READ(reg);
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002099 /*
2100 * make the BPC in transcoder be consistent with
2101 * that in pipeconf reg.
2102 */
2103 temp &= ~PIPE_BPC_MASK;
Chris Wilson5eddb702010-09-11 13:48:45 +01002104 temp |= I915_READ(PIPECONF(pipe)) & PIPE_BPC_MASK;
2105 I915_WRITE(reg, temp | TRANS_ENABLE);
2106 if (wait_for(I915_READ(reg) & TRANS_STATE_ENABLE, 100))
Jesse Barnesc98e9dc2010-09-10 10:57:18 -07002107 DRM_ERROR("failed to enable transcoder\n");
Jesse Barnes6be4a602010-09-10 10:26:01 -07002108
2109 intel_crtc_load_lut(crtc);
Chris Wilsonbed4a672010-09-11 10:47:47 +01002110 intel_update_fbc(dev);
Chris Wilson6b383a72010-09-13 13:54:26 +01002111 intel_crtc_update_cursor(crtc, true);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002112}
2113
2114static void ironlake_crtc_disable(struct drm_crtc *crtc)
2115{
2116 struct drm_device *dev = crtc->dev;
2117 struct drm_i915_private *dev_priv = dev->dev_private;
2118 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
2119 int pipe = intel_crtc->pipe;
2120 int plane = intel_crtc->plane;
Chris Wilson5eddb702010-09-11 13:48:45 +01002121 u32 reg, temp;
Jesse Barnes6be4a602010-09-10 10:26:01 -07002122
Chris Wilsonf7abfe82010-09-13 14:19:16 +01002123 if (!intel_crtc->active)
2124 return;
2125
Jesse Barnes6be4a602010-09-10 10:26:01 -07002126 drm_vblank_off(dev, pipe);
Chris Wilson6b383a72010-09-13 13:54:26 +01002127 intel_crtc_update_cursor(crtc, false);
Chris Wilson5eddb702010-09-11 13:48:45 +01002128
Jesse Barnes6be4a602010-09-10 10:26:01 -07002129 /* Disable display plane */
Chris Wilson5eddb702010-09-11 13:48:45 +01002130 reg = DSPCNTR(plane);
2131 temp = I915_READ(reg);
2132 if (temp & DISPLAY_PLANE_ENABLE) {
2133 I915_WRITE(reg, temp & ~DISPLAY_PLANE_ENABLE);
2134 intel_flush_display_plane(dev, plane);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002135 }
2136
2137 if (dev_priv->cfb_plane == plane &&
2138 dev_priv->display.disable_fbc)
2139 dev_priv->display.disable_fbc(dev);
2140
2141 /* disable cpu pipe, disable after all planes disabled */
Chris Wilson5eddb702010-09-11 13:48:45 +01002142 reg = PIPECONF(pipe);
2143 temp = I915_READ(reg);
2144 if (temp & PIPECONF_ENABLE) {
2145 I915_WRITE(reg, temp & ~PIPECONF_ENABLE);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002146 /* wait for cpu pipe off, pipe state */
Chris Wilson5eddb702010-09-11 13:48:45 +01002147 if (wait_for((I915_READ(reg) & I965_PIPECONF_ACTIVE) == 0, 50))
Jesse Barnes6be4a602010-09-10 10:26:01 -07002148 DRM_ERROR("failed to turn off cpu pipe\n");
Chris Wilson5eddb702010-09-11 13:48:45 +01002149 }
Jesse Barnes6be4a602010-09-10 10:26:01 -07002150
Jesse Barnes6be4a602010-09-10 10:26:01 -07002151 /* Disable PF */
2152 I915_WRITE(pipe ? PFB_CTL_1 : PFA_CTL_1, 0);
2153 I915_WRITE(pipe ? PFB_WIN_SZ : PFA_WIN_SZ, 0);
2154
2155 /* disable CPU FDI tx and PCH FDI rx */
Chris Wilson5eddb702010-09-11 13:48:45 +01002156 reg = FDI_TX_CTL(pipe);
2157 temp = I915_READ(reg);
2158 I915_WRITE(reg, temp & ~FDI_TX_ENABLE);
2159 POSTING_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002160
Chris Wilson5eddb702010-09-11 13:48:45 +01002161 reg = FDI_RX_CTL(pipe);
2162 temp = I915_READ(reg);
2163 temp &= ~(0x7 << 16);
2164 temp |= (I915_READ(PIPECONF(pipe)) & PIPE_BPC_MASK) << 11;
2165 I915_WRITE(reg, temp & ~FDI_RX_ENABLE);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002166
Chris Wilson5eddb702010-09-11 13:48:45 +01002167 POSTING_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002168 udelay(100);
2169
2170 /* still set train pattern 1 */
Chris Wilson5eddb702010-09-11 13:48:45 +01002171 reg = FDI_TX_CTL(pipe);
2172 temp = I915_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002173 temp &= ~FDI_LINK_TRAIN_NONE;
2174 temp |= FDI_LINK_TRAIN_PATTERN_1;
Chris Wilson5eddb702010-09-11 13:48:45 +01002175 I915_WRITE(reg, temp);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002176
Chris Wilson5eddb702010-09-11 13:48:45 +01002177 reg = FDI_RX_CTL(pipe);
2178 temp = I915_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002179 if (HAS_PCH_CPT(dev)) {
2180 temp &= ~FDI_LINK_TRAIN_PATTERN_MASK_CPT;
2181 temp |= FDI_LINK_TRAIN_PATTERN_1_CPT;
2182 } else {
2183 temp &= ~FDI_LINK_TRAIN_NONE;
2184 temp |= FDI_LINK_TRAIN_PATTERN_1;
2185 }
Chris Wilson5eddb702010-09-11 13:48:45 +01002186 /* BPC in FDI rx is consistent with that in PIPECONF */
2187 temp &= ~(0x07 << 16);
2188 temp |= (I915_READ(PIPECONF(pipe)) & PIPE_BPC_MASK) << 11;
2189 I915_WRITE(reg, temp);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002190
Chris Wilson5eddb702010-09-11 13:48:45 +01002191 POSTING_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002192 udelay(100);
2193
2194 if (intel_pipe_has_type(crtc, INTEL_OUTPUT_LVDS)) {
2195 temp = I915_READ(PCH_LVDS);
Chris Wilson5eddb702010-09-11 13:48:45 +01002196 if (temp & LVDS_PORT_EN) {
2197 I915_WRITE(PCH_LVDS, temp & ~LVDS_PORT_EN);
2198 POSTING_READ(PCH_LVDS);
2199 udelay(100);
2200 }
Jesse Barnes6be4a602010-09-10 10:26:01 -07002201 }
2202
2203 /* disable PCH transcoder */
Chris Wilson5eddb702010-09-11 13:48:45 +01002204 reg = TRANSCONF(plane);
2205 temp = I915_READ(reg);
2206 if (temp & TRANS_ENABLE) {
2207 I915_WRITE(reg, temp & ~TRANS_ENABLE);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002208 /* wait for PCH transcoder off, transcoder state */
Chris Wilson5eddb702010-09-11 13:48:45 +01002209 if (wait_for((I915_READ(reg) & TRANS_STATE_ENABLE) == 0, 50))
Jesse Barnes6be4a602010-09-10 10:26:01 -07002210 DRM_ERROR("failed to disable transcoder\n");
2211 }
2212
Jesse Barnes6be4a602010-09-10 10:26:01 -07002213 if (HAS_PCH_CPT(dev)) {
2214 /* disable TRANS_DP_CTL */
Chris Wilson5eddb702010-09-11 13:48:45 +01002215 reg = TRANS_DP_CTL(pipe);
2216 temp = I915_READ(reg);
2217 temp &= ~(TRANS_DP_OUTPUT_ENABLE | TRANS_DP_PORT_SEL_MASK);
2218 I915_WRITE(reg, temp);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002219
2220 /* disable DPLL_SEL */
2221 temp = I915_READ(PCH_DPLL_SEL);
Chris Wilson5eddb702010-09-11 13:48:45 +01002222 if (pipe == 0)
Jesse Barnes6be4a602010-09-10 10:26:01 -07002223 temp &= ~(TRANSA_DPLL_ENABLE | TRANSA_DPLLB_SEL);
2224 else
2225 temp &= ~(TRANSB_DPLL_ENABLE | TRANSB_DPLLB_SEL);
2226 I915_WRITE(PCH_DPLL_SEL, temp);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002227 }
2228
2229 /* disable PCH DPLL */
Chris Wilson5eddb702010-09-11 13:48:45 +01002230 reg = PCH_DPLL(pipe);
2231 temp = I915_READ(reg);
2232 I915_WRITE(reg, temp & ~DPLL_VCO_ENABLE);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002233
2234 /* Switch from PCDclk to Rawclk */
Chris Wilson5eddb702010-09-11 13:48:45 +01002235 reg = FDI_RX_CTL(pipe);
2236 temp = I915_READ(reg);
2237 I915_WRITE(reg, temp & ~FDI_PCDCLK);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002238
2239 /* Disable CPU FDI TX PLL */
Chris Wilson5eddb702010-09-11 13:48:45 +01002240 reg = FDI_TX_CTL(pipe);
2241 temp = I915_READ(reg);
2242 I915_WRITE(reg, temp & ~FDI_TX_PLL_ENABLE);
2243
2244 POSTING_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002245 udelay(100);
2246
Chris Wilson5eddb702010-09-11 13:48:45 +01002247 reg = FDI_RX_CTL(pipe);
2248 temp = I915_READ(reg);
2249 I915_WRITE(reg, temp & ~FDI_RX_PLL_ENABLE);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002250
2251 /* Wait for the clocks to turn off. */
Chris Wilson5eddb702010-09-11 13:48:45 +01002252 POSTING_READ(reg);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002253 udelay(100);
Chris Wilson6b383a72010-09-13 13:54:26 +01002254
Chris Wilsonf7abfe82010-09-13 14:19:16 +01002255 intel_crtc->active = false;
Chris Wilson6b383a72010-09-13 13:54:26 +01002256 intel_update_watermarks(dev);
2257 intel_update_fbc(dev);
2258 intel_clear_scanline_wait(dev);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002259}
2260
2261static void ironlake_crtc_dpms(struct drm_crtc *crtc, int mode)
2262{
2263 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
2264 int pipe = intel_crtc->pipe;
2265 int plane = intel_crtc->plane;
2266
Zhenyu Wang2c072452009-06-05 15:38:42 +08002267 /* XXX: When our outputs are all unaware of DPMS modes other than off
2268 * and on, we should map those modes to DRM_MODE_DPMS_OFF in the CRTC.
2269 */
2270 switch (mode) {
2271 case DRM_MODE_DPMS_ON:
2272 case DRM_MODE_DPMS_STANDBY:
2273 case DRM_MODE_DPMS_SUSPEND:
Chris Wilson868dc582010-08-07 11:01:31 +01002274 DRM_DEBUG_KMS("crtc %d/%d dpms on\n", pipe, plane);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002275 ironlake_crtc_enable(crtc);
Chris Wilson868dc582010-08-07 11:01:31 +01002276 break;
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08002277
Zhenyu Wang2c072452009-06-05 15:38:42 +08002278 case DRM_MODE_DPMS_OFF:
Chris Wilson868dc582010-08-07 11:01:31 +01002279 DRM_DEBUG_KMS("crtc %d/%d dpms off\n", pipe, plane);
Jesse Barnes6be4a602010-09-10 10:26:01 -07002280 ironlake_crtc_disable(crtc);
Zhenyu Wang2c072452009-06-05 15:38:42 +08002281 break;
2282 }
2283}
2284
Daniel Vetter02e792f2009-09-15 22:57:34 +02002285static void intel_crtc_dpms_overlay(struct intel_crtc *intel_crtc, bool enable)
2286{
Daniel Vetter02e792f2009-09-15 22:57:34 +02002287 if (!enable && intel_crtc->overlay) {
Chris Wilson23f09ce2010-08-12 13:53:37 +01002288 struct drm_device *dev = intel_crtc->base.dev;
Daniel Vetter03f77ea2009-09-15 22:57:37 +02002289
Chris Wilson23f09ce2010-08-12 13:53:37 +01002290 mutex_lock(&dev->struct_mutex);
2291 (void) intel_overlay_switch_off(intel_crtc->overlay, false);
2292 mutex_unlock(&dev->struct_mutex);
Daniel Vetter02e792f2009-09-15 22:57:34 +02002293 }
Daniel Vetter02e792f2009-09-15 22:57:34 +02002294
Chris Wilson5dcdbcb2010-08-12 13:50:28 +01002295 /* Let userspace switch the overlay on again. In most cases userspace
2296 * has to recompute where to put it anyway.
2297 */
Daniel Vetter02e792f2009-09-15 22:57:34 +02002298}
2299
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002300static void i9xx_crtc_enable(struct drm_crtc *crtc)
Zhenyu Wang2c072452009-06-05 15:38:42 +08002301{
2302 struct drm_device *dev = crtc->dev;
Jesse Barnes79e53942008-11-07 14:24:08 -08002303 struct drm_i915_private *dev_priv = dev->dev_private;
2304 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
2305 int pipe = intel_crtc->pipe;
Jesse Barnes80824002009-09-10 15:28:06 -07002306 int plane = intel_crtc->plane;
Chris Wilson5eddb702010-09-11 13:48:45 +01002307 u32 reg, temp;
Jesse Barnes79e53942008-11-07 14:24:08 -08002308
Chris Wilsonf7abfe82010-09-13 14:19:16 +01002309 if (intel_crtc->active)
2310 return;
2311
2312 intel_crtc->active = true;
Chris Wilson6b383a72010-09-13 13:54:26 +01002313 intel_update_watermarks(dev);
2314
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002315 /* Enable the DPLL */
Chris Wilson5eddb702010-09-11 13:48:45 +01002316 reg = DPLL(pipe);
2317 temp = I915_READ(reg);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002318 if ((temp & DPLL_VCO_ENABLE) == 0) {
Chris Wilson5eddb702010-09-11 13:48:45 +01002319 I915_WRITE(reg, temp);
2320
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002321 /* Wait for the clocks to stabilize. */
Chris Wilson5eddb702010-09-11 13:48:45 +01002322 POSTING_READ(reg);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002323 udelay(150);
Chris Wilson5eddb702010-09-11 13:48:45 +01002324
2325 I915_WRITE(reg, temp | DPLL_VCO_ENABLE);
2326
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002327 /* Wait for the clocks to stabilize. */
Chris Wilson5eddb702010-09-11 13:48:45 +01002328 POSTING_READ(reg);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002329 udelay(150);
Chris Wilson5eddb702010-09-11 13:48:45 +01002330
2331 I915_WRITE(reg, temp | DPLL_VCO_ENABLE);
2332
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002333 /* Wait for the clocks to stabilize. */
Chris Wilson5eddb702010-09-11 13:48:45 +01002334 POSTING_READ(reg);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002335 udelay(150);
2336 }
2337
2338 /* Enable the pipe */
Chris Wilson5eddb702010-09-11 13:48:45 +01002339 reg = PIPECONF(pipe);
2340 temp = I915_READ(reg);
2341 if ((temp & PIPECONF_ENABLE) == 0)
2342 I915_WRITE(reg, temp | PIPECONF_ENABLE);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002343
2344 /* Enable the plane */
Chris Wilson5eddb702010-09-11 13:48:45 +01002345 reg = DSPCNTR(plane);
2346 temp = I915_READ(reg);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002347 if ((temp & DISPLAY_PLANE_ENABLE) == 0) {
Chris Wilson5eddb702010-09-11 13:48:45 +01002348 I915_WRITE(reg, temp | DISPLAY_PLANE_ENABLE);
2349 intel_flush_display_plane(dev, plane);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002350 }
2351
2352 intel_crtc_load_lut(crtc);
Chris Wilsonbed4a672010-09-11 10:47:47 +01002353 intel_update_fbc(dev);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002354
2355 /* Give the overlay scaler a chance to enable if it's on this pipe */
2356 intel_crtc_dpms_overlay(intel_crtc, true);
Chris Wilson6b383a72010-09-13 13:54:26 +01002357 intel_crtc_update_cursor(crtc, true);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002358}
2359
2360static void i9xx_crtc_disable(struct drm_crtc *crtc)
2361{
2362 struct drm_device *dev = crtc->dev;
2363 struct drm_i915_private *dev_priv = dev->dev_private;
2364 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
2365 int pipe = intel_crtc->pipe;
2366 int plane = intel_crtc->plane;
Chris Wilson5eddb702010-09-11 13:48:45 +01002367 u32 reg, temp;
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002368
Chris Wilsonf7abfe82010-09-13 14:19:16 +01002369 if (!intel_crtc->active)
2370 return;
2371
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002372 /* Give the overlay scaler a chance to disable if it's on this pipe */
2373 intel_crtc_dpms_overlay(intel_crtc, false);
Chris Wilson6b383a72010-09-13 13:54:26 +01002374 intel_crtc_update_cursor(crtc, false);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002375 drm_vblank_off(dev, pipe);
2376
2377 if (dev_priv->cfb_plane == plane &&
2378 dev_priv->display.disable_fbc)
2379 dev_priv->display.disable_fbc(dev);
2380
2381 /* Disable display plane */
Chris Wilson5eddb702010-09-11 13:48:45 +01002382 reg = DSPCNTR(plane);
2383 temp = I915_READ(reg);
2384 if (temp & DISPLAY_PLANE_ENABLE) {
2385 I915_WRITE(reg, temp & ~DISPLAY_PLANE_ENABLE);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002386 /* Flush the plane changes */
Chris Wilson5eddb702010-09-11 13:48:45 +01002387 intel_flush_display_plane(dev, plane);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002388
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002389 /* Wait for vblank for the disable to take effect */
Chris Wilson5eddb702010-09-11 13:48:45 +01002390 if (!IS_I9XX(dev))
2391 intel_wait_for_vblank_off(dev, pipe);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002392 }
2393
2394 /* Don't disable pipe A or pipe A PLLs if needed */
Chris Wilson5eddb702010-09-11 13:48:45 +01002395 if (pipe == 0 && (dev_priv->quirks & QUIRK_PIPEA_FORCE))
Chris Wilson6b383a72010-09-13 13:54:26 +01002396 goto done;
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002397
2398 /* Next, disable display pipes */
Chris Wilson5eddb702010-09-11 13:48:45 +01002399 reg = PIPECONF(pipe);
2400 temp = I915_READ(reg);
2401 if (temp & PIPECONF_ENABLE) {
2402 I915_WRITE(reg, temp & ~PIPECONF_ENABLE);
2403
2404 /* Wait for vblank for the disable to take effect. */
2405 POSTING_READ(reg);
2406 intel_wait_for_vblank_off(dev, pipe);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002407 }
2408
Chris Wilson5eddb702010-09-11 13:48:45 +01002409 reg = DPLL(pipe);
2410 temp = I915_READ(reg);
2411 if (temp & DPLL_VCO_ENABLE) {
2412 I915_WRITE(reg, temp & ~DPLL_VCO_ENABLE);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002413
Chris Wilson5eddb702010-09-11 13:48:45 +01002414 /* Wait for the clocks to turn off. */
2415 POSTING_READ(reg);
2416 udelay(150);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002417 }
Chris Wilson6b383a72010-09-13 13:54:26 +01002418
2419done:
Chris Wilsonf7abfe82010-09-13 14:19:16 +01002420 intel_crtc->active = false;
Chris Wilson6b383a72010-09-13 13:54:26 +01002421 intel_update_fbc(dev);
2422 intel_update_watermarks(dev);
2423 intel_clear_scanline_wait(dev);
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002424}
2425
2426static void i9xx_crtc_dpms(struct drm_crtc *crtc, int mode)
2427{
Jesse Barnes79e53942008-11-07 14:24:08 -08002428 /* XXX: When our outputs are all unaware of DPMS modes other than off
2429 * and on, we should map those modes to DRM_MODE_DPMS_OFF in the CRTC.
2430 */
2431 switch (mode) {
2432 case DRM_MODE_DPMS_ON:
2433 case DRM_MODE_DPMS_STANDBY:
2434 case DRM_MODE_DPMS_SUSPEND:
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002435 i9xx_crtc_enable(crtc);
2436 break;
Jesse Barnes79e53942008-11-07 14:24:08 -08002437 case DRM_MODE_DPMS_OFF:
Jesse Barnes0b8765c62010-09-10 10:31:34 -07002438 i9xx_crtc_disable(crtc);
Jesse Barnes79e53942008-11-07 14:24:08 -08002439 break;
2440 }
Zhenyu Wang2c072452009-06-05 15:38:42 +08002441}
2442
2443/**
2444 * Sets the power management mode of the pipe and plane.
Zhenyu Wang2c072452009-06-05 15:38:42 +08002445 */
2446static void intel_crtc_dpms(struct drm_crtc *crtc, int mode)
2447{
2448 struct drm_device *dev = crtc->dev;
Jesse Barnese70236a2009-09-21 10:42:27 -07002449 struct drm_i915_private *dev_priv = dev->dev_private;
Zhenyu Wang2c072452009-06-05 15:38:42 +08002450 struct drm_i915_master_private *master_priv;
2451 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
2452 int pipe = intel_crtc->pipe;
2453 bool enabled;
2454
Chris Wilson032d2a02010-09-06 16:17:22 +01002455 if (intel_crtc->dpms_mode == mode)
2456 return;
2457
Chris Wilsondebcadd2010-08-07 11:01:33 +01002458 intel_crtc->dpms_mode = mode;
Chris Wilsondebcadd2010-08-07 11:01:33 +01002459
Jesse Barnese70236a2009-09-21 10:42:27 -07002460 dev_priv->display.dpms(crtc, mode);
Jesse Barnes79e53942008-11-07 14:24:08 -08002461
2462 if (!dev->primary->master)
2463 return;
2464
2465 master_priv = dev->primary->master->driver_priv;
2466 if (!master_priv->sarea_priv)
2467 return;
2468
2469 enabled = crtc->enabled && mode != DRM_MODE_DPMS_OFF;
2470
2471 switch (pipe) {
2472 case 0:
2473 master_priv->sarea_priv->pipeA_w = enabled ? crtc->mode.hdisplay : 0;
2474 master_priv->sarea_priv->pipeA_h = enabled ? crtc->mode.vdisplay : 0;
2475 break;
2476 case 1:
2477 master_priv->sarea_priv->pipeB_w = enabled ? crtc->mode.hdisplay : 0;
2478 master_priv->sarea_priv->pipeB_h = enabled ? crtc->mode.vdisplay : 0;
2479 break;
2480 default:
2481 DRM_ERROR("Can't update pipe %d in SAREA\n", pipe);
2482 break;
2483 }
Jesse Barnes79e53942008-11-07 14:24:08 -08002484}
2485
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07002486/* Prepare for a mode set.
2487 *
2488 * Note we could be a lot smarter here. We need to figure out which outputs
2489 * will be enabled, which disabled (in short, how the config will changes)
2490 * and perform the minimum necessary steps to accomplish that, e.g. updating
2491 * watermarks, FBC configuration, making sure PLLs are programmed correctly,
2492 * panel fitting is in the proper state, etc.
2493 */
2494static void i9xx_crtc_prepare(struct drm_crtc *crtc)
Jesse Barnes79e53942008-11-07 14:24:08 -08002495{
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07002496 i9xx_crtc_disable(crtc);
Jesse Barnes79e53942008-11-07 14:24:08 -08002497}
2498
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07002499static void i9xx_crtc_commit(struct drm_crtc *crtc)
Jesse Barnes79e53942008-11-07 14:24:08 -08002500{
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07002501 i9xx_crtc_enable(crtc);
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07002502}
2503
2504static void ironlake_crtc_prepare(struct drm_crtc *crtc)
2505{
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07002506 ironlake_crtc_disable(crtc);
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07002507}
2508
2509static void ironlake_crtc_commit(struct drm_crtc *crtc)
2510{
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07002511 ironlake_crtc_enable(crtc);
Jesse Barnes79e53942008-11-07 14:24:08 -08002512}
2513
2514void intel_encoder_prepare (struct drm_encoder *encoder)
2515{
2516 struct drm_encoder_helper_funcs *encoder_funcs = encoder->helper_private;
2517 /* lvds has its own version of prepare see intel_lvds_prepare */
2518 encoder_funcs->dpms(encoder, DRM_MODE_DPMS_OFF);
2519}
2520
2521void intel_encoder_commit (struct drm_encoder *encoder)
2522{
2523 struct drm_encoder_helper_funcs *encoder_funcs = encoder->helper_private;
2524 /* lvds has its own version of commit see intel_lvds_commit */
2525 encoder_funcs->dpms(encoder, DRM_MODE_DPMS_ON);
2526}
2527
Chris Wilsonea5b2132010-08-04 13:50:23 +01002528void intel_encoder_destroy(struct drm_encoder *encoder)
2529{
Chris Wilson4ef69c72010-09-09 15:14:28 +01002530 struct intel_encoder *intel_encoder = to_intel_encoder(encoder);
Chris Wilsonea5b2132010-08-04 13:50:23 +01002531
2532 if (intel_encoder->ddc_bus)
2533 intel_i2c_destroy(intel_encoder->ddc_bus);
2534
2535 if (intel_encoder->i2c_bus)
2536 intel_i2c_destroy(intel_encoder->i2c_bus);
2537
2538 drm_encoder_cleanup(encoder);
2539 kfree(intel_encoder);
2540}
2541
Jesse Barnes79e53942008-11-07 14:24:08 -08002542static bool intel_crtc_mode_fixup(struct drm_crtc *crtc,
2543 struct drm_display_mode *mode,
2544 struct drm_display_mode *adjusted_mode)
2545{
Zhenyu Wang2c072452009-06-05 15:38:42 +08002546 struct drm_device *dev = crtc->dev;
Eric Anholtbad720f2009-10-22 16:11:14 -07002547 if (HAS_PCH_SPLIT(dev)) {
Zhenyu Wang2c072452009-06-05 15:38:42 +08002548 /* FDI link clock is fixed at 2.7G */
Jesse Barnes2377b742010-07-07 14:06:43 -07002549 if (mode->clock * 3 > IRONLAKE_FDI_FREQ * 4)
2550 return false;
Zhenyu Wang2c072452009-06-05 15:38:42 +08002551 }
Jesse Barnes79e53942008-11-07 14:24:08 -08002552 return true;
2553}
2554
Jesse Barnese70236a2009-09-21 10:42:27 -07002555static int i945_get_display_clock_speed(struct drm_device *dev)
Jesse Barnes79e53942008-11-07 14:24:08 -08002556{
Jesse Barnese70236a2009-09-21 10:42:27 -07002557 return 400000;
2558}
Jesse Barnes79e53942008-11-07 14:24:08 -08002559
Jesse Barnese70236a2009-09-21 10:42:27 -07002560static int i915_get_display_clock_speed(struct drm_device *dev)
2561{
2562 return 333000;
2563}
Jesse Barnes79e53942008-11-07 14:24:08 -08002564
Jesse Barnese70236a2009-09-21 10:42:27 -07002565static int i9xx_misc_get_display_clock_speed(struct drm_device *dev)
2566{
2567 return 200000;
2568}
Jesse Barnes79e53942008-11-07 14:24:08 -08002569
Jesse Barnese70236a2009-09-21 10:42:27 -07002570static int i915gm_get_display_clock_speed(struct drm_device *dev)
2571{
2572 u16 gcfgc = 0;
2573
2574 pci_read_config_word(dev->pdev, GCFGC, &gcfgc);
2575
2576 if (gcfgc & GC_LOW_FREQUENCY_ENABLE)
Jesse Barnes79e53942008-11-07 14:24:08 -08002577 return 133000;
Jesse Barnese70236a2009-09-21 10:42:27 -07002578 else {
2579 switch (gcfgc & GC_DISPLAY_CLOCK_MASK) {
2580 case GC_DISPLAY_CLOCK_333_MHZ:
2581 return 333000;
2582 default:
2583 case GC_DISPLAY_CLOCK_190_200_MHZ:
2584 return 190000;
2585 }
2586 }
2587}
Jesse Barnes79e53942008-11-07 14:24:08 -08002588
Jesse Barnese70236a2009-09-21 10:42:27 -07002589static int i865_get_display_clock_speed(struct drm_device *dev)
2590{
2591 return 266000;
2592}
2593
2594static int i855_get_display_clock_speed(struct drm_device *dev)
2595{
2596 u16 hpllcc = 0;
2597 /* Assume that the hardware is in the high speed state. This
2598 * should be the default.
2599 */
2600 switch (hpllcc & GC_CLOCK_CONTROL_MASK) {
2601 case GC_CLOCK_133_200:
2602 case GC_CLOCK_100_200:
2603 return 200000;
2604 case GC_CLOCK_166_250:
2605 return 250000;
2606 case GC_CLOCK_100_133:
2607 return 133000;
2608 }
2609
2610 /* Shouldn't happen */
2611 return 0;
2612}
2613
2614static int i830_get_display_clock_speed(struct drm_device *dev)
2615{
2616 return 133000;
Jesse Barnes79e53942008-11-07 14:24:08 -08002617}
2618
Zhenyu Wang2c072452009-06-05 15:38:42 +08002619struct fdi_m_n {
2620 u32 tu;
2621 u32 gmch_m;
2622 u32 gmch_n;
2623 u32 link_m;
2624 u32 link_n;
2625};
2626
2627static void
2628fdi_reduce_ratio(u32 *num, u32 *den)
2629{
2630 while (*num > 0xffffff || *den > 0xffffff) {
2631 *num >>= 1;
2632 *den >>= 1;
2633 }
2634}
2635
2636#define DATA_N 0x800000
2637#define LINK_N 0x80000
2638
2639static void
Adam Jacksonf2b115e2009-12-03 17:14:42 -05002640ironlake_compute_m_n(int bits_per_pixel, int nlanes, int pixel_clock,
2641 int link_clock, struct fdi_m_n *m_n)
Zhenyu Wang2c072452009-06-05 15:38:42 +08002642{
2643 u64 temp;
2644
2645 m_n->tu = 64; /* default size */
2646
2647 temp = (u64) DATA_N * pixel_clock;
2648 temp = div_u64(temp, link_clock);
Zhenyu Wang58a27472009-09-25 08:01:28 +00002649 m_n->gmch_m = div_u64(temp * bits_per_pixel, nlanes);
2650 m_n->gmch_m >>= 3; /* convert to bytes_per_pixel */
Zhenyu Wang2c072452009-06-05 15:38:42 +08002651 m_n->gmch_n = DATA_N;
2652 fdi_reduce_ratio(&m_n->gmch_m, &m_n->gmch_n);
2653
2654 temp = (u64) LINK_N * pixel_clock;
2655 m_n->link_m = div_u64(temp, link_clock);
2656 m_n->link_n = LINK_N;
2657 fdi_reduce_ratio(&m_n->link_m, &m_n->link_n);
2658}
2659
2660
Shaohua Li7662c8b2009-06-26 11:23:55 +08002661struct intel_watermark_params {
2662 unsigned long fifo_size;
2663 unsigned long max_wm;
2664 unsigned long default_wm;
2665 unsigned long guard_size;
2666 unsigned long cacheline_size;
2667};
2668
Adam Jacksonf2b115e2009-12-03 17:14:42 -05002669/* Pineview has different values for various configs */
2670static struct intel_watermark_params pineview_display_wm = {
2671 PINEVIEW_DISPLAY_FIFO,
2672 PINEVIEW_MAX_WM,
2673 PINEVIEW_DFT_WM,
2674 PINEVIEW_GUARD_WM,
2675 PINEVIEW_FIFO_LINE_SIZE
Shaohua Li7662c8b2009-06-26 11:23:55 +08002676};
Adam Jacksonf2b115e2009-12-03 17:14:42 -05002677static struct intel_watermark_params pineview_display_hplloff_wm = {
2678 PINEVIEW_DISPLAY_FIFO,
2679 PINEVIEW_MAX_WM,
2680 PINEVIEW_DFT_HPLLOFF_WM,
2681 PINEVIEW_GUARD_WM,
2682 PINEVIEW_FIFO_LINE_SIZE
Shaohua Li7662c8b2009-06-26 11:23:55 +08002683};
Adam Jacksonf2b115e2009-12-03 17:14:42 -05002684static struct intel_watermark_params pineview_cursor_wm = {
2685 PINEVIEW_CURSOR_FIFO,
2686 PINEVIEW_CURSOR_MAX_WM,
2687 PINEVIEW_CURSOR_DFT_WM,
2688 PINEVIEW_CURSOR_GUARD_WM,
2689 PINEVIEW_FIFO_LINE_SIZE,
Shaohua Li7662c8b2009-06-26 11:23:55 +08002690};
Adam Jacksonf2b115e2009-12-03 17:14:42 -05002691static struct intel_watermark_params pineview_cursor_hplloff_wm = {
2692 PINEVIEW_CURSOR_FIFO,
2693 PINEVIEW_CURSOR_MAX_WM,
2694 PINEVIEW_CURSOR_DFT_WM,
2695 PINEVIEW_CURSOR_GUARD_WM,
2696 PINEVIEW_FIFO_LINE_SIZE
Shaohua Li7662c8b2009-06-26 11:23:55 +08002697};
Jesse Barnes0e442c62009-10-19 10:09:33 +09002698static struct intel_watermark_params g4x_wm_info = {
2699 G4X_FIFO_SIZE,
2700 G4X_MAX_WM,
2701 G4X_MAX_WM,
2702 2,
2703 G4X_FIFO_LINE_SIZE,
2704};
Zhao Yakui4fe5e612010-06-12 14:32:25 +08002705static struct intel_watermark_params g4x_cursor_wm_info = {
2706 I965_CURSOR_FIFO,
2707 I965_CURSOR_MAX_WM,
2708 I965_CURSOR_DFT_WM,
2709 2,
2710 G4X_FIFO_LINE_SIZE,
2711};
2712static struct intel_watermark_params i965_cursor_wm_info = {
2713 I965_CURSOR_FIFO,
2714 I965_CURSOR_MAX_WM,
2715 I965_CURSOR_DFT_WM,
2716 2,
2717 I915_FIFO_LINE_SIZE,
2718};
Shaohua Li7662c8b2009-06-26 11:23:55 +08002719static struct intel_watermark_params i945_wm_info = {
Shaohua Li7662c8b2009-06-26 11:23:55 +08002720 I945_FIFO_SIZE,
2721 I915_MAX_WM,
2722 1,
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002723 2,
2724 I915_FIFO_LINE_SIZE
2725};
2726static struct intel_watermark_params i915_wm_info = {
2727 I915_FIFO_SIZE,
2728 I915_MAX_WM,
2729 1,
2730 2,
Shaohua Li7662c8b2009-06-26 11:23:55 +08002731 I915_FIFO_LINE_SIZE
2732};
2733static struct intel_watermark_params i855_wm_info = {
2734 I855GM_FIFO_SIZE,
2735 I915_MAX_WM,
2736 1,
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002737 2,
Shaohua Li7662c8b2009-06-26 11:23:55 +08002738 I830_FIFO_LINE_SIZE
2739};
2740static struct intel_watermark_params i830_wm_info = {
2741 I830_FIFO_SIZE,
2742 I915_MAX_WM,
2743 1,
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002744 2,
Shaohua Li7662c8b2009-06-26 11:23:55 +08002745 I830_FIFO_LINE_SIZE
2746};
2747
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08002748static struct intel_watermark_params ironlake_display_wm_info = {
2749 ILK_DISPLAY_FIFO,
2750 ILK_DISPLAY_MAXWM,
2751 ILK_DISPLAY_DFTWM,
2752 2,
2753 ILK_FIFO_LINE_SIZE
2754};
2755
Zhao Yakuic936f442010-06-12 14:32:26 +08002756static struct intel_watermark_params ironlake_cursor_wm_info = {
2757 ILK_CURSOR_FIFO,
2758 ILK_CURSOR_MAXWM,
2759 ILK_CURSOR_DFTWM,
2760 2,
2761 ILK_FIFO_LINE_SIZE
2762};
2763
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08002764static struct intel_watermark_params ironlake_display_srwm_info = {
2765 ILK_DISPLAY_SR_FIFO,
2766 ILK_DISPLAY_MAX_SRWM,
2767 ILK_DISPLAY_DFT_SRWM,
2768 2,
2769 ILK_FIFO_LINE_SIZE
2770};
2771
2772static struct intel_watermark_params ironlake_cursor_srwm_info = {
2773 ILK_CURSOR_SR_FIFO,
2774 ILK_CURSOR_MAX_SRWM,
2775 ILK_CURSOR_DFT_SRWM,
2776 2,
2777 ILK_FIFO_LINE_SIZE
2778};
2779
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002780/**
2781 * intel_calculate_wm - calculate watermark level
2782 * @clock_in_khz: pixel clock
2783 * @wm: chip FIFO params
2784 * @pixel_size: display pixel size
2785 * @latency_ns: memory latency for the platform
2786 *
2787 * Calculate the watermark level (the level at which the display plane will
2788 * start fetching from memory again). Each chip has a different display
2789 * FIFO size and allocation, so the caller needs to figure that out and pass
2790 * in the correct intel_watermark_params structure.
2791 *
2792 * As the pixel clock runs, the FIFO will be drained at a rate that depends
2793 * on the pixel size. When it reaches the watermark level, it'll start
2794 * fetching FIFO line sized based chunks from memory until the FIFO fills
2795 * past the watermark point. If the FIFO drains completely, a FIFO underrun
2796 * will occur, and a display engine hang could result.
2797 */
Shaohua Li7662c8b2009-06-26 11:23:55 +08002798static unsigned long intel_calculate_wm(unsigned long clock_in_khz,
2799 struct intel_watermark_params *wm,
2800 int pixel_size,
2801 unsigned long latency_ns)
2802{
Jesse Barnes390c4dd2009-07-16 13:01:01 -07002803 long entries_required, wm_size;
Shaohua Li7662c8b2009-06-26 11:23:55 +08002804
Jesse Barnesd6604672009-09-11 12:25:56 -07002805 /*
2806 * Note: we need to make sure we don't overflow for various clock &
2807 * latency values.
2808 * clocks go from a few thousand to several hundred thousand.
2809 * latency is usually a few thousand
2810 */
2811 entries_required = ((clock_in_khz / 1000) * pixel_size * latency_ns) /
2812 1000;
Chris Wilson8de9b312010-07-19 19:59:52 +01002813 entries_required = DIV_ROUND_UP(entries_required, wm->cacheline_size);
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002814
Zhao Yakui28c97732009-10-09 11:39:41 +08002815 DRM_DEBUG_KMS("FIFO entries required for mode: %d\n", entries_required);
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002816
2817 wm_size = wm->fifo_size - (entries_required + wm->guard_size);
2818
Zhao Yakui28c97732009-10-09 11:39:41 +08002819 DRM_DEBUG_KMS("FIFO watermark level: %d\n", wm_size);
Shaohua Li7662c8b2009-06-26 11:23:55 +08002820
Jesse Barnes390c4dd2009-07-16 13:01:01 -07002821 /* Don't promote wm_size to unsigned... */
2822 if (wm_size > (long)wm->max_wm)
Shaohua Li7662c8b2009-06-26 11:23:55 +08002823 wm_size = wm->max_wm;
Chris Wilsonc3add4b2010-09-08 09:14:08 +01002824 if (wm_size <= 0)
Shaohua Li7662c8b2009-06-26 11:23:55 +08002825 wm_size = wm->default_wm;
2826 return wm_size;
2827}
2828
2829struct cxsr_latency {
2830 int is_desktop;
Li Peng95534262010-05-18 18:58:44 +08002831 int is_ddr3;
Shaohua Li7662c8b2009-06-26 11:23:55 +08002832 unsigned long fsb_freq;
2833 unsigned long mem_freq;
2834 unsigned long display_sr;
2835 unsigned long display_hpll_disable;
2836 unsigned long cursor_sr;
2837 unsigned long cursor_hpll_disable;
2838};
2839
Chris Wilson403c89f2010-08-04 15:25:31 +01002840static const struct cxsr_latency cxsr_latency_table[] = {
Li Peng95534262010-05-18 18:58:44 +08002841 {1, 0, 800, 400, 3382, 33382, 3983, 33983}, /* DDR2-400 SC */
2842 {1, 0, 800, 667, 3354, 33354, 3807, 33807}, /* DDR2-667 SC */
2843 {1, 0, 800, 800, 3347, 33347, 3763, 33763}, /* DDR2-800 SC */
2844 {1, 1, 800, 667, 6420, 36420, 6873, 36873}, /* DDR3-667 SC */
2845 {1, 1, 800, 800, 5902, 35902, 6318, 36318}, /* DDR3-800 SC */
Shaohua Li7662c8b2009-06-26 11:23:55 +08002846
Li Peng95534262010-05-18 18:58:44 +08002847 {1, 0, 667, 400, 3400, 33400, 4021, 34021}, /* DDR2-400 SC */
2848 {1, 0, 667, 667, 3372, 33372, 3845, 33845}, /* DDR2-667 SC */
2849 {1, 0, 667, 800, 3386, 33386, 3822, 33822}, /* DDR2-800 SC */
2850 {1, 1, 667, 667, 6438, 36438, 6911, 36911}, /* DDR3-667 SC */
2851 {1, 1, 667, 800, 5941, 35941, 6377, 36377}, /* DDR3-800 SC */
Shaohua Li7662c8b2009-06-26 11:23:55 +08002852
Li Peng95534262010-05-18 18:58:44 +08002853 {1, 0, 400, 400, 3472, 33472, 4173, 34173}, /* DDR2-400 SC */
2854 {1, 0, 400, 667, 3443, 33443, 3996, 33996}, /* DDR2-667 SC */
2855 {1, 0, 400, 800, 3430, 33430, 3946, 33946}, /* DDR2-800 SC */
2856 {1, 1, 400, 667, 6509, 36509, 7062, 37062}, /* DDR3-667 SC */
2857 {1, 1, 400, 800, 5985, 35985, 6501, 36501}, /* DDR3-800 SC */
Shaohua Li7662c8b2009-06-26 11:23:55 +08002858
Li Peng95534262010-05-18 18:58:44 +08002859 {0, 0, 800, 400, 3438, 33438, 4065, 34065}, /* DDR2-400 SC */
2860 {0, 0, 800, 667, 3410, 33410, 3889, 33889}, /* DDR2-667 SC */
2861 {0, 0, 800, 800, 3403, 33403, 3845, 33845}, /* DDR2-800 SC */
2862 {0, 1, 800, 667, 6476, 36476, 6955, 36955}, /* DDR3-667 SC */
2863 {0, 1, 800, 800, 5958, 35958, 6400, 36400}, /* DDR3-800 SC */
Shaohua Li7662c8b2009-06-26 11:23:55 +08002864
Li Peng95534262010-05-18 18:58:44 +08002865 {0, 0, 667, 400, 3456, 33456, 4103, 34106}, /* DDR2-400 SC */
2866 {0, 0, 667, 667, 3428, 33428, 3927, 33927}, /* DDR2-667 SC */
2867 {0, 0, 667, 800, 3443, 33443, 3905, 33905}, /* DDR2-800 SC */
2868 {0, 1, 667, 667, 6494, 36494, 6993, 36993}, /* DDR3-667 SC */
2869 {0, 1, 667, 800, 5998, 35998, 6460, 36460}, /* DDR3-800 SC */
Shaohua Li7662c8b2009-06-26 11:23:55 +08002870
Li Peng95534262010-05-18 18:58:44 +08002871 {0, 0, 400, 400, 3528, 33528, 4255, 34255}, /* DDR2-400 SC */
2872 {0, 0, 400, 667, 3500, 33500, 4079, 34079}, /* DDR2-667 SC */
2873 {0, 0, 400, 800, 3487, 33487, 4029, 34029}, /* DDR2-800 SC */
2874 {0, 1, 400, 667, 6566, 36566, 7145, 37145}, /* DDR3-667 SC */
2875 {0, 1, 400, 800, 6042, 36042, 6584, 36584}, /* DDR3-800 SC */
Shaohua Li7662c8b2009-06-26 11:23:55 +08002876};
2877
Chris Wilson403c89f2010-08-04 15:25:31 +01002878static const struct cxsr_latency *intel_get_cxsr_latency(int is_desktop,
2879 int is_ddr3,
2880 int fsb,
2881 int mem)
Shaohua Li7662c8b2009-06-26 11:23:55 +08002882{
Chris Wilson403c89f2010-08-04 15:25:31 +01002883 const struct cxsr_latency *latency;
Shaohua Li7662c8b2009-06-26 11:23:55 +08002884 int i;
Shaohua Li7662c8b2009-06-26 11:23:55 +08002885
2886 if (fsb == 0 || mem == 0)
2887 return NULL;
2888
2889 for (i = 0; i < ARRAY_SIZE(cxsr_latency_table); i++) {
2890 latency = &cxsr_latency_table[i];
2891 if (is_desktop == latency->is_desktop &&
Li Peng95534262010-05-18 18:58:44 +08002892 is_ddr3 == latency->is_ddr3 &&
Jaswinder Singh Rajputdecbbcd2009-09-12 23:15:07 +05302893 fsb == latency->fsb_freq && mem == latency->mem_freq)
2894 return latency;
Shaohua Li7662c8b2009-06-26 11:23:55 +08002895 }
Jaswinder Singh Rajputdecbbcd2009-09-12 23:15:07 +05302896
Zhao Yakui28c97732009-10-09 11:39:41 +08002897 DRM_DEBUG_KMS("Unknown FSB/MEM found, disable CxSR\n");
Jaswinder Singh Rajputdecbbcd2009-09-12 23:15:07 +05302898
2899 return NULL;
Shaohua Li7662c8b2009-06-26 11:23:55 +08002900}
2901
Adam Jacksonf2b115e2009-12-03 17:14:42 -05002902static void pineview_disable_cxsr(struct drm_device *dev)
Shaohua Li7662c8b2009-06-26 11:23:55 +08002903{
2904 struct drm_i915_private *dev_priv = dev->dev_private;
Shaohua Li7662c8b2009-06-26 11:23:55 +08002905
2906 /* deactivate cxsr */
Chris Wilson3e33d942010-08-04 11:17:25 +01002907 I915_WRITE(DSPFW3, I915_READ(DSPFW3) & ~PINEVIEW_SELF_REFRESH_EN);
Shaohua Li7662c8b2009-06-26 11:23:55 +08002908}
2909
Jesse Barnesbcc24fb2009-08-31 10:24:31 -07002910/*
2911 * Latency for FIFO fetches is dependent on several factors:
2912 * - memory configuration (speed, channels)
2913 * - chipset
2914 * - current MCH state
2915 * It can be fairly high in some situations, so here we assume a fairly
2916 * pessimal value. It's a tradeoff between extra memory fetches (if we
2917 * set this value too high, the FIFO will fetch frequently to stay full)
2918 * and power consumption (set it too low to save power and we might see
2919 * FIFO underruns and display "flicker").
2920 *
2921 * A value of 5us seems to be a good balance; safe for very low end
2922 * platforms but not overly aggressive on lower latency configs.
2923 */
Tobias Klauser69e302a2009-12-23 14:14:34 +01002924static const int latency_ns = 5000;
Shaohua Li7662c8b2009-06-26 11:23:55 +08002925
Jesse Barnese70236a2009-09-21 10:42:27 -07002926static int i9xx_get_fifo_size(struct drm_device *dev, int plane)
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002927{
2928 struct drm_i915_private *dev_priv = dev->dev_private;
2929 uint32_t dsparb = I915_READ(DSPARB);
2930 int size;
2931
Chris Wilson8de9b312010-07-19 19:59:52 +01002932 size = dsparb & 0x7f;
2933 if (plane)
2934 size = ((dsparb >> DSPARB_CSTART_SHIFT) & 0x7f) - size;
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002935
Zhao Yakui28c97732009-10-09 11:39:41 +08002936 DRM_DEBUG_KMS("FIFO size - (0x%08x) %s: %d\n", dsparb,
Chris Wilson5eddb702010-09-11 13:48:45 +01002937 plane ? "B" : "A", size);
Jesse Barnesdff33cf2009-07-14 10:15:56 -07002938
2939 return size;
2940}
Shaohua Li7662c8b2009-06-26 11:23:55 +08002941
Jesse Barnese70236a2009-09-21 10:42:27 -07002942static int i85x_get_fifo_size(struct drm_device *dev, int plane)
2943{
2944 struct drm_i915_private *dev_priv = dev->dev_private;
2945 uint32_t dsparb = I915_READ(DSPARB);
2946 int size;
2947
Chris Wilson8de9b312010-07-19 19:59:52 +01002948 size = dsparb & 0x1ff;
2949 if (plane)
2950 size = ((dsparb >> DSPARB_BEND_SHIFT) & 0x1ff) - size;
Jesse Barnese70236a2009-09-21 10:42:27 -07002951 size >>= 1; /* Convert to cachelines */
2952
Zhao Yakui28c97732009-10-09 11:39:41 +08002953 DRM_DEBUG_KMS("FIFO size - (0x%08x) %s: %d\n", dsparb,
Chris Wilson5eddb702010-09-11 13:48:45 +01002954 plane ? "B" : "A", size);
Jesse Barnese70236a2009-09-21 10:42:27 -07002955
2956 return size;
2957}
2958
2959static int i845_get_fifo_size(struct drm_device *dev, int plane)
2960{
2961 struct drm_i915_private *dev_priv = dev->dev_private;
2962 uint32_t dsparb = I915_READ(DSPARB);
2963 int size;
2964
2965 size = dsparb & 0x7f;
2966 size >>= 2; /* Convert to cachelines */
2967
Zhao Yakui28c97732009-10-09 11:39:41 +08002968 DRM_DEBUG_KMS("FIFO size - (0x%08x) %s: %d\n", dsparb,
Chris Wilson5eddb702010-09-11 13:48:45 +01002969 plane ? "B" : "A",
2970 size);
Jesse Barnese70236a2009-09-21 10:42:27 -07002971
2972 return size;
2973}
2974
2975static int i830_get_fifo_size(struct drm_device *dev, int plane)
2976{
2977 struct drm_i915_private *dev_priv = dev->dev_private;
2978 uint32_t dsparb = I915_READ(DSPARB);
2979 int size;
2980
2981 size = dsparb & 0x7f;
2982 size >>= 1; /* Convert to cachelines */
2983
Zhao Yakui28c97732009-10-09 11:39:41 +08002984 DRM_DEBUG_KMS("FIFO size - (0x%08x) %s: %d\n", dsparb,
Chris Wilson5eddb702010-09-11 13:48:45 +01002985 plane ? "B" : "A", size);
Jesse Barnese70236a2009-09-21 10:42:27 -07002986
2987 return size;
2988}
2989
Zhao Yakuid4294342010-03-22 22:45:36 +08002990static void pineview_update_wm(struct drm_device *dev, int planea_clock,
Chris Wilson5eddb702010-09-11 13:48:45 +01002991 int planeb_clock, int sr_hdisplay, int unused,
2992 int pixel_size)
Zhao Yakuid4294342010-03-22 22:45:36 +08002993{
2994 struct drm_i915_private *dev_priv = dev->dev_private;
Chris Wilson403c89f2010-08-04 15:25:31 +01002995 const struct cxsr_latency *latency;
Zhao Yakuid4294342010-03-22 22:45:36 +08002996 u32 reg;
2997 unsigned long wm;
Zhao Yakuid4294342010-03-22 22:45:36 +08002998 int sr_clock;
2999
Chris Wilson403c89f2010-08-04 15:25:31 +01003000 latency = intel_get_cxsr_latency(IS_PINEVIEW_G(dev), dev_priv->is_ddr3,
Li Peng95534262010-05-18 18:58:44 +08003001 dev_priv->fsb_freq, dev_priv->mem_freq);
Zhao Yakuid4294342010-03-22 22:45:36 +08003002 if (!latency) {
3003 DRM_DEBUG_KMS("Unknown FSB/MEM found, disable CxSR\n");
3004 pineview_disable_cxsr(dev);
3005 return;
3006 }
3007
3008 if (!planea_clock || !planeb_clock) {
3009 sr_clock = planea_clock ? planea_clock : planeb_clock;
3010
3011 /* Display SR */
3012 wm = intel_calculate_wm(sr_clock, &pineview_display_wm,
3013 pixel_size, latency->display_sr);
3014 reg = I915_READ(DSPFW1);
3015 reg &= ~DSPFW_SR_MASK;
3016 reg |= wm << DSPFW_SR_SHIFT;
3017 I915_WRITE(DSPFW1, reg);
3018 DRM_DEBUG_KMS("DSPFW1 register is %x\n", reg);
3019
3020 /* cursor SR */
3021 wm = intel_calculate_wm(sr_clock, &pineview_cursor_wm,
3022 pixel_size, latency->cursor_sr);
3023 reg = I915_READ(DSPFW3);
3024 reg &= ~DSPFW_CURSOR_SR_MASK;
3025 reg |= (wm & 0x3f) << DSPFW_CURSOR_SR_SHIFT;
3026 I915_WRITE(DSPFW3, reg);
3027
3028 /* Display HPLL off SR */
3029 wm = intel_calculate_wm(sr_clock, &pineview_display_hplloff_wm,
3030 pixel_size, latency->display_hpll_disable);
3031 reg = I915_READ(DSPFW3);
3032 reg &= ~DSPFW_HPLL_SR_MASK;
3033 reg |= wm & DSPFW_HPLL_SR_MASK;
3034 I915_WRITE(DSPFW3, reg);
3035
3036 /* cursor HPLL off SR */
3037 wm = intel_calculate_wm(sr_clock, &pineview_cursor_hplloff_wm,
3038 pixel_size, latency->cursor_hpll_disable);
3039 reg = I915_READ(DSPFW3);
3040 reg &= ~DSPFW_HPLL_CURSOR_MASK;
3041 reg |= (wm & 0x3f) << DSPFW_HPLL_CURSOR_SHIFT;
3042 I915_WRITE(DSPFW3, reg);
3043 DRM_DEBUG_KMS("DSPFW3 register is %x\n", reg);
3044
3045 /* activate cxsr */
Chris Wilson3e33d942010-08-04 11:17:25 +01003046 I915_WRITE(DSPFW3,
3047 I915_READ(DSPFW3) | PINEVIEW_SELF_REFRESH_EN);
Zhao Yakuid4294342010-03-22 22:45:36 +08003048 DRM_DEBUG_KMS("Self-refresh is enabled\n");
3049 } else {
3050 pineview_disable_cxsr(dev);
3051 DRM_DEBUG_KMS("Self-refresh is disabled\n");
3052 }
3053}
3054
Jesse Barnes0e442c62009-10-19 10:09:33 +09003055static void g4x_update_wm(struct drm_device *dev, int planea_clock,
Zhao Yakuifa143212010-06-12 14:32:23 +08003056 int planeb_clock, int sr_hdisplay, int sr_htotal,
3057 int pixel_size)
Jesse Barnes652c3932009-08-17 13:31:43 -07003058{
3059 struct drm_i915_private *dev_priv = dev->dev_private;
Jesse Barnes0e442c62009-10-19 10:09:33 +09003060 int total_size, cacheline_size;
3061 int planea_wm, planeb_wm, cursora_wm, cursorb_wm, cursor_sr;
3062 struct intel_watermark_params planea_params, planeb_params;
3063 unsigned long line_time_us;
3064 int sr_clock, sr_entries = 0, entries_required;
Jesse Barnes652c3932009-08-17 13:31:43 -07003065
Jesse Barnes0e442c62009-10-19 10:09:33 +09003066 /* Create copies of the base settings for each pipe */
3067 planea_params = planeb_params = g4x_wm_info;
3068
3069 /* Grab a couple of global values before we overwrite them */
3070 total_size = planea_params.fifo_size;
3071 cacheline_size = planea_params.cacheline_size;
3072
3073 /*
3074 * Note: we need to make sure we don't overflow for various clock &
3075 * latency values.
3076 * clocks go from a few thousand to several hundred thousand.
3077 * latency is usually a few thousand
3078 */
3079 entries_required = ((planea_clock / 1000) * pixel_size * latency_ns) /
3080 1000;
Chris Wilson8de9b312010-07-19 19:59:52 +01003081 entries_required = DIV_ROUND_UP(entries_required, G4X_FIFO_LINE_SIZE);
Jesse Barnes0e442c62009-10-19 10:09:33 +09003082 planea_wm = entries_required + planea_params.guard_size;
3083
3084 entries_required = ((planeb_clock / 1000) * pixel_size * latency_ns) /
3085 1000;
Chris Wilson8de9b312010-07-19 19:59:52 +01003086 entries_required = DIV_ROUND_UP(entries_required, G4X_FIFO_LINE_SIZE);
Jesse Barnes0e442c62009-10-19 10:09:33 +09003087 planeb_wm = entries_required + planeb_params.guard_size;
3088
3089 cursora_wm = cursorb_wm = 16;
3090 cursor_sr = 32;
3091
3092 DRM_DEBUG("FIFO watermarks - A: %d, B: %d\n", planea_wm, planeb_wm);
3093
3094 /* Calc sr entries for one plane configs */
3095 if (sr_hdisplay && (!planea_clock || !planeb_clock)) {
3096 /* self-refresh has much higher latency */
Tobias Klauser69e302a2009-12-23 14:14:34 +01003097 static const int sr_latency_ns = 12000;
Jesse Barnes0e442c62009-10-19 10:09:33 +09003098
3099 sr_clock = planea_clock ? planea_clock : planeb_clock;
Zhao Yakuifa143212010-06-12 14:32:23 +08003100 line_time_us = ((sr_htotal * 1000) / sr_clock);
Jesse Barnes0e442c62009-10-19 10:09:33 +09003101
3102 /* Use ns/us then divide to preserve precision */
Zhao Yakuifa143212010-06-12 14:32:23 +08003103 sr_entries = (((sr_latency_ns / line_time_us) + 1000) / 1000) *
Chris Wilson5eddb702010-09-11 13:48:45 +01003104 pixel_size * sr_hdisplay;
Chris Wilson8de9b312010-07-19 19:59:52 +01003105 sr_entries = DIV_ROUND_UP(sr_entries, cacheline_size);
Zhao Yakui4fe5e612010-06-12 14:32:25 +08003106
3107 entries_required = (((sr_latency_ns / line_time_us) +
3108 1000) / 1000) * pixel_size * 64;
Chris Wilson8de9b312010-07-19 19:59:52 +01003109 entries_required = DIV_ROUND_UP(entries_required,
Chris Wilson5eddb702010-09-11 13:48:45 +01003110 g4x_cursor_wm_info.cacheline_size);
Zhao Yakui4fe5e612010-06-12 14:32:25 +08003111 cursor_sr = entries_required + g4x_cursor_wm_info.guard_size;
3112
3113 if (cursor_sr > g4x_cursor_wm_info.max_wm)
3114 cursor_sr = g4x_cursor_wm_info.max_wm;
3115 DRM_DEBUG_KMS("self-refresh watermark: display plane %d "
3116 "cursor %d\n", sr_entries, cursor_sr);
3117
Jesse Barnes0e442c62009-10-19 10:09:33 +09003118 I915_WRITE(FW_BLC_SELF, FW_BLC_SELF_EN);
David John33c5fd12010-01-27 15:19:08 +05303119 } else {
3120 /* Turn off self refresh if both pipes are enabled */
3121 I915_WRITE(FW_BLC_SELF, I915_READ(FW_BLC_SELF)
Chris Wilson5eddb702010-09-11 13:48:45 +01003122 & ~FW_BLC_SELF_EN);
Jesse Barnes0e442c62009-10-19 10:09:33 +09003123 }
3124
3125 DRM_DEBUG("Setting FIFO watermarks - A: %d, B: %d, SR %d\n",
3126 planea_wm, planeb_wm, sr_entries);
3127
3128 planea_wm &= 0x3f;
3129 planeb_wm &= 0x3f;
3130
3131 I915_WRITE(DSPFW1, (sr_entries << DSPFW_SR_SHIFT) |
3132 (cursorb_wm << DSPFW_CURSORB_SHIFT) |
3133 (planeb_wm << DSPFW_PLANEB_SHIFT) | planea_wm);
3134 I915_WRITE(DSPFW2, (I915_READ(DSPFW2) & DSPFW_CURSORA_MASK) |
3135 (cursora_wm << DSPFW_CURSORA_SHIFT));
3136 /* HPLL off in SR has some issues on G4x... disable it */
3137 I915_WRITE(DSPFW3, (I915_READ(DSPFW3) & ~DSPFW_HPLL_SR_EN) |
3138 (cursor_sr << DSPFW_CURSOR_SR_SHIFT));
Jesse Barnes652c3932009-08-17 13:31:43 -07003139}
3140
Jesse Barnes1dc75462009-10-19 10:08:17 +09003141static void i965_update_wm(struct drm_device *dev, int planea_clock,
Zhao Yakuifa143212010-06-12 14:32:23 +08003142 int planeb_clock, int sr_hdisplay, int sr_htotal,
3143 int pixel_size)
Shaohua Li7662c8b2009-06-26 11:23:55 +08003144{
3145 struct drm_i915_private *dev_priv = dev->dev_private;
Jesse Barnes1dc75462009-10-19 10:08:17 +09003146 unsigned long line_time_us;
3147 int sr_clock, sr_entries, srwm = 1;
Zhao Yakui4fe5e612010-06-12 14:32:25 +08003148 int cursor_sr = 16;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003149
Jesse Barnes1dc75462009-10-19 10:08:17 +09003150 /* Calc sr entries for one plane configs */
3151 if (sr_hdisplay && (!planea_clock || !planeb_clock)) {
3152 /* self-refresh has much higher latency */
Tobias Klauser69e302a2009-12-23 14:14:34 +01003153 static const int sr_latency_ns = 12000;
Jesse Barnes1dc75462009-10-19 10:08:17 +09003154
3155 sr_clock = planea_clock ? planea_clock : planeb_clock;
Zhao Yakuifa143212010-06-12 14:32:23 +08003156 line_time_us = ((sr_htotal * 1000) / sr_clock);
Jesse Barnes1dc75462009-10-19 10:08:17 +09003157
3158 /* Use ns/us then divide to preserve precision */
Zhao Yakuifa143212010-06-12 14:32:23 +08003159 sr_entries = (((sr_latency_ns / line_time_us) + 1000) / 1000) *
Chris Wilson5eddb702010-09-11 13:48:45 +01003160 pixel_size * sr_hdisplay;
Chris Wilson8de9b312010-07-19 19:59:52 +01003161 sr_entries = DIV_ROUND_UP(sr_entries, I915_FIFO_LINE_SIZE);
Jesse Barnes1dc75462009-10-19 10:08:17 +09003162 DRM_DEBUG("self-refresh entries: %d\n", sr_entries);
Zhao Yakui1b07e042010-06-12 14:32:24 +08003163 srwm = I965_FIFO_SIZE - sr_entries;
Jesse Barnes1dc75462009-10-19 10:08:17 +09003164 if (srwm < 0)
3165 srwm = 1;
Zhao Yakui1b07e042010-06-12 14:32:24 +08003166 srwm &= 0x1ff;
Zhao Yakui4fe5e612010-06-12 14:32:25 +08003167
3168 sr_entries = (((sr_latency_ns / line_time_us) + 1000) / 1000) *
Chris Wilson5eddb702010-09-11 13:48:45 +01003169 pixel_size * 64;
Chris Wilson8de9b312010-07-19 19:59:52 +01003170 sr_entries = DIV_ROUND_UP(sr_entries,
3171 i965_cursor_wm_info.cacheline_size);
Zhao Yakui4fe5e612010-06-12 14:32:25 +08003172 cursor_sr = i965_cursor_wm_info.fifo_size -
Chris Wilson5eddb702010-09-11 13:48:45 +01003173 (sr_entries + i965_cursor_wm_info.guard_size);
Zhao Yakui4fe5e612010-06-12 14:32:25 +08003174
3175 if (cursor_sr > i965_cursor_wm_info.max_wm)
3176 cursor_sr = i965_cursor_wm_info.max_wm;
3177
3178 DRM_DEBUG_KMS("self-refresh watermark: display plane %d "
3179 "cursor %d\n", srwm, cursor_sr);
3180
Jesse Barnesadcdbc62010-06-30 13:49:37 -07003181 if (IS_I965GM(dev))
3182 I915_WRITE(FW_BLC_SELF, FW_BLC_SELF_EN);
David John33c5fd12010-01-27 15:19:08 +05303183 } else {
3184 /* Turn off self refresh if both pipes are enabled */
Jesse Barnesadcdbc62010-06-30 13:49:37 -07003185 if (IS_I965GM(dev))
3186 I915_WRITE(FW_BLC_SELF, I915_READ(FW_BLC_SELF)
3187 & ~FW_BLC_SELF_EN);
Jesse Barnes1dc75462009-10-19 10:08:17 +09003188 }
3189
3190 DRM_DEBUG_KMS("Setting FIFO watermarks - A: 8, B: 8, C: 8, SR %d\n",
3191 srwm);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003192
3193 /* 965 has limitations... */
Jesse Barnes1dc75462009-10-19 10:08:17 +09003194 I915_WRITE(DSPFW1, (srwm << DSPFW_SR_SHIFT) | (8 << 16) | (8 << 8) |
3195 (8 << 0));
Shaohua Li7662c8b2009-06-26 11:23:55 +08003196 I915_WRITE(DSPFW2, (8 << 8) | (8 << 0));
Zhao Yakui4fe5e612010-06-12 14:32:25 +08003197 /* update cursor SR watermark */
3198 I915_WRITE(DSPFW3, (cursor_sr << DSPFW_CURSOR_SR_SHIFT));
Shaohua Li7662c8b2009-06-26 11:23:55 +08003199}
3200
3201static void i9xx_update_wm(struct drm_device *dev, int planea_clock,
Zhao Yakuifa143212010-06-12 14:32:23 +08003202 int planeb_clock, int sr_hdisplay, int sr_htotal,
3203 int pixel_size)
Shaohua Li7662c8b2009-06-26 11:23:55 +08003204{
3205 struct drm_i915_private *dev_priv = dev->dev_private;
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003206 uint32_t fwater_lo;
3207 uint32_t fwater_hi;
3208 int total_size, cacheline_size, cwm, srwm = 1;
3209 int planea_wm, planeb_wm;
3210 struct intel_watermark_params planea_params, planeb_params;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003211 unsigned long line_time_us;
3212 int sr_clock, sr_entries = 0;
3213
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003214 /* Create copies of the base settings for each pipe */
Shaohua Li7662c8b2009-06-26 11:23:55 +08003215 if (IS_I965GM(dev) || IS_I945GM(dev))
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003216 planea_params = planeb_params = i945_wm_info;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003217 else if (IS_I9XX(dev))
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003218 planea_params = planeb_params = i915_wm_info;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003219 else
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003220 planea_params = planeb_params = i855_wm_info;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003221
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003222 /* Grab a couple of global values before we overwrite them */
3223 total_size = planea_params.fifo_size;
3224 cacheline_size = planea_params.cacheline_size;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003225
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003226 /* Update per-plane FIFO sizes */
Jesse Barnese70236a2009-09-21 10:42:27 -07003227 planea_params.fifo_size = dev_priv->display.get_fifo_size(dev, 0);
3228 planeb_params.fifo_size = dev_priv->display.get_fifo_size(dev, 1);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003229
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003230 planea_wm = intel_calculate_wm(planea_clock, &planea_params,
3231 pixel_size, latency_ns);
3232 planeb_wm = intel_calculate_wm(planeb_clock, &planeb_params,
3233 pixel_size, latency_ns);
Zhao Yakui28c97732009-10-09 11:39:41 +08003234 DRM_DEBUG_KMS("FIFO watermarks - A: %d, B: %d\n", planea_wm, planeb_wm);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003235
3236 /*
3237 * Overlay gets an aggressive default since video jitter is bad.
3238 */
3239 cwm = 2;
3240
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003241 /* Calc sr entries for one plane configs */
Jesse Barnes652c3932009-08-17 13:31:43 -07003242 if (HAS_FW_BLC(dev) && sr_hdisplay &&
3243 (!planea_clock || !planeb_clock)) {
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003244 /* self-refresh has much higher latency */
Tobias Klauser69e302a2009-12-23 14:14:34 +01003245 static const int sr_latency_ns = 6000;
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003246
Shaohua Li7662c8b2009-06-26 11:23:55 +08003247 sr_clock = planea_clock ? planea_clock : planeb_clock;
Zhao Yakuifa143212010-06-12 14:32:23 +08003248 line_time_us = ((sr_htotal * 1000) / sr_clock);
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003249
3250 /* Use ns/us then divide to preserve precision */
Zhao Yakuifa143212010-06-12 14:32:23 +08003251 sr_entries = (((sr_latency_ns / line_time_us) + 1000) / 1000) *
Chris Wilson5eddb702010-09-11 13:48:45 +01003252 pixel_size * sr_hdisplay;
Chris Wilson8de9b312010-07-19 19:59:52 +01003253 sr_entries = DIV_ROUND_UP(sr_entries, cacheline_size);
Zhao Yakui28c97732009-10-09 11:39:41 +08003254 DRM_DEBUG_KMS("self-refresh entries: %d\n", sr_entries);
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003255 srwm = total_size - sr_entries;
3256 if (srwm < 0)
3257 srwm = 1;
Li Pengee980b82010-01-27 19:01:11 +08003258
3259 if (IS_I945G(dev) || IS_I945GM(dev))
3260 I915_WRITE(FW_BLC_SELF, FW_BLC_SELF_FIFO_MASK | (srwm & 0xff));
3261 else if (IS_I915GM(dev)) {
3262 /* 915M has a smaller SRWM field */
3263 I915_WRITE(FW_BLC_SELF, srwm & 0x3f);
3264 I915_WRITE(INSTPM, I915_READ(INSTPM) | INSTPM_SELF_EN);
3265 }
David John33c5fd12010-01-27 15:19:08 +05303266 } else {
3267 /* Turn off self refresh if both pipes are enabled */
Li Pengee980b82010-01-27 19:01:11 +08003268 if (IS_I945G(dev) || IS_I945GM(dev)) {
3269 I915_WRITE(FW_BLC_SELF, I915_READ(FW_BLC_SELF)
3270 & ~FW_BLC_SELF_EN);
3271 } else if (IS_I915GM(dev)) {
3272 I915_WRITE(INSTPM, I915_READ(INSTPM) & ~INSTPM_SELF_EN);
3273 }
Shaohua Li7662c8b2009-06-26 11:23:55 +08003274 }
3275
Zhao Yakui28c97732009-10-09 11:39:41 +08003276 DRM_DEBUG_KMS("Setting FIFO watermarks - A: %d, B: %d, C: %d, SR %d\n",
Chris Wilson5eddb702010-09-11 13:48:45 +01003277 planea_wm, planeb_wm, cwm, srwm);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003278
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003279 fwater_lo = ((planeb_wm & 0x3f) << 16) | (planea_wm & 0x3f);
3280 fwater_hi = (cwm & 0x1f);
3281
3282 /* Set request length to 8 cachelines per fetch */
3283 fwater_lo = fwater_lo | (1 << 24) | (1 << 8);
3284 fwater_hi = fwater_hi | (1 << 8);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003285
3286 I915_WRITE(FW_BLC, fwater_lo);
3287 I915_WRITE(FW_BLC2, fwater_hi);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003288}
3289
Jesse Barnese70236a2009-09-21 10:42:27 -07003290static void i830_update_wm(struct drm_device *dev, int planea_clock, int unused,
Zhao Yakuifa143212010-06-12 14:32:23 +08003291 int unused2, int unused3, int pixel_size)
Shaohua Li7662c8b2009-06-26 11:23:55 +08003292{
3293 struct drm_i915_private *dev_priv = dev->dev_private;
Jesse Barnesf3601322009-07-22 12:54:59 -07003294 uint32_t fwater_lo = I915_READ(FW_BLC) & ~0xfff;
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003295 int planea_wm;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003296
Jesse Barnese70236a2009-09-21 10:42:27 -07003297 i830_wm_info.fifo_size = dev_priv->display.get_fifo_size(dev, 0);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003298
Jesse Barnesdff33cf2009-07-14 10:15:56 -07003299 planea_wm = intel_calculate_wm(planea_clock, &i830_wm_info,
3300 pixel_size, latency_ns);
Jesse Barnesf3601322009-07-22 12:54:59 -07003301 fwater_lo |= (3<<8) | planea_wm;
3302
Zhao Yakui28c97732009-10-09 11:39:41 +08003303 DRM_DEBUG_KMS("Setting FIFO watermarks - A: %d\n", planea_wm);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003304
3305 I915_WRITE(FW_BLC, fwater_lo);
3306}
3307
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003308#define ILK_LP0_PLANE_LATENCY 700
Zhao Yakuic936f442010-06-12 14:32:26 +08003309#define ILK_LP0_CURSOR_LATENCY 1300
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003310
Chris Wilson4ed765f2010-09-11 10:46:47 +01003311static bool ironlake_compute_wm0(struct drm_device *dev,
3312 int pipe,
3313 int *plane_wm,
3314 int *cursor_wm)
3315{
3316 struct drm_crtc *crtc;
3317 int htotal, hdisplay, clock, pixel_size = 0;
3318 int line_time_us, line_count, entries;
3319
3320 crtc = intel_get_crtc_for_pipe(dev, pipe);
3321 if (crtc->fb == NULL || !crtc->enabled)
3322 return false;
3323
3324 htotal = crtc->mode.htotal;
3325 hdisplay = crtc->mode.hdisplay;
3326 clock = crtc->mode.clock;
3327 pixel_size = crtc->fb->bits_per_pixel / 8;
3328
3329 /* Use the small buffer method to calculate plane watermark */
3330 entries = ((clock * pixel_size / 1000) * ILK_LP0_PLANE_LATENCY) / 1000;
3331 entries = DIV_ROUND_UP(entries,
3332 ironlake_display_wm_info.cacheline_size);
3333 *plane_wm = entries + ironlake_display_wm_info.guard_size;
3334 if (*plane_wm > (int)ironlake_display_wm_info.max_wm)
3335 *plane_wm = ironlake_display_wm_info.max_wm;
3336
3337 /* Use the large buffer method to calculate cursor watermark */
3338 line_time_us = ((htotal * 1000) / clock);
3339 line_count = (ILK_LP0_CURSOR_LATENCY / line_time_us + 1000) / 1000;
3340 entries = line_count * 64 * pixel_size;
3341 entries = DIV_ROUND_UP(entries,
3342 ironlake_cursor_wm_info.cacheline_size);
3343 *cursor_wm = entries + ironlake_cursor_wm_info.guard_size;
3344 if (*cursor_wm > ironlake_cursor_wm_info.max_wm)
3345 *cursor_wm = ironlake_cursor_wm_info.max_wm;
3346
3347 return true;
3348}
3349
3350static void ironlake_update_wm(struct drm_device *dev,
3351 int planea_clock, int planeb_clock,
3352 int sr_hdisplay, int sr_htotal,
3353 int pixel_size)
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003354{
3355 struct drm_i915_private *dev_priv = dev->dev_private;
Chris Wilson4ed765f2010-09-11 10:46:47 +01003356 int plane_wm, cursor_wm, enabled;
3357 int tmp;
Zhao Yakuic936f442010-06-12 14:32:26 +08003358
Chris Wilson4ed765f2010-09-11 10:46:47 +01003359 enabled = 0;
3360 if (ironlake_compute_wm0(dev, 0, &plane_wm, &cursor_wm)) {
3361 I915_WRITE(WM0_PIPEA_ILK,
3362 (plane_wm << WM0_PIPE_PLANE_SHIFT) | cursor_wm);
3363 DRM_DEBUG_KMS("FIFO watermarks For pipe A -"
3364 " plane %d, " "cursor: %d\n",
3365 plane_wm, cursor_wm);
3366 enabled++;
Zhao Yakuic936f442010-06-12 14:32:26 +08003367 }
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003368
Chris Wilson4ed765f2010-09-11 10:46:47 +01003369 if (ironlake_compute_wm0(dev, 1, &plane_wm, &cursor_wm)) {
3370 I915_WRITE(WM0_PIPEB_ILK,
3371 (plane_wm << WM0_PIPE_PLANE_SHIFT) | cursor_wm);
3372 DRM_DEBUG_KMS("FIFO watermarks For pipe B -"
3373 " plane %d, cursor: %d\n",
3374 plane_wm, cursor_wm);
3375 enabled++;
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003376 }
3377
3378 /*
3379 * Calculate and update the self-refresh watermark only when one
3380 * display plane is used.
3381 */
Chris Wilson4ed765f2010-09-11 10:46:47 +01003382 tmp = 0;
3383 if (enabled == 1 && /* XXX disabled due to buggy implmentation? */ 0) {
3384 unsigned long line_time_us;
3385 int small, large, plane_fbc;
3386 int sr_clock, entries;
3387 int line_count, line_size;
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003388 /* Read the self-refresh latency. The unit is 0.5us */
3389 int ilk_sr_latency = I915_READ(MLTR_ILK) & ILK_SRLT_MASK;
3390
3391 sr_clock = planea_clock ? planea_clock : planeb_clock;
Chris Wilson4ed765f2010-09-11 10:46:47 +01003392 line_time_us = (sr_htotal * 1000) / sr_clock;
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003393
3394 /* Use ns/us then divide to preserve precision */
3395 line_count = ((ilk_sr_latency * 500) / line_time_us + 1000)
Chris Wilson5eddb702010-09-11 13:48:45 +01003396 / 1000;
Chris Wilson4ed765f2010-09-11 10:46:47 +01003397 line_size = sr_hdisplay * pixel_size;
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003398
Chris Wilson4ed765f2010-09-11 10:46:47 +01003399 /* Use the minimum of the small and large buffer method for primary */
3400 small = ((sr_clock * pixel_size / 1000) * (ilk_sr_latency * 500)) / 1000;
3401 large = line_count * line_size;
3402
3403 entries = DIV_ROUND_UP(min(small, large),
3404 ironlake_display_srwm_info.cacheline_size);
3405
3406 plane_fbc = entries * 64;
3407 plane_fbc = DIV_ROUND_UP(plane_fbc, line_size);
3408
3409 plane_wm = entries + ironlake_display_srwm_info.guard_size;
3410 if (plane_wm > (int)ironlake_display_srwm_info.max_wm)
3411 plane_wm = ironlake_display_srwm_info.max_wm;
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003412
3413 /* calculate the self-refresh watermark for display cursor */
Chris Wilson4ed765f2010-09-11 10:46:47 +01003414 entries = line_count * pixel_size * 64;
3415 entries = DIV_ROUND_UP(entries,
3416 ironlake_cursor_srwm_info.cacheline_size);
3417
3418 cursor_wm = entries + ironlake_cursor_srwm_info.guard_size;
3419 if (cursor_wm > (int)ironlake_cursor_srwm_info.max_wm)
3420 cursor_wm = ironlake_cursor_srwm_info.max_wm;
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003421
3422 /* configure watermark and enable self-refresh */
Chris Wilson4ed765f2010-09-11 10:46:47 +01003423 tmp = (WM1_LP_SR_EN |
3424 (ilk_sr_latency << WM1_LP_LATENCY_SHIFT) |
3425 (plane_fbc << WM1_LP_FBC_SHIFT) |
3426 (plane_wm << WM1_LP_SR_SHIFT) |
3427 cursor_wm);
3428 DRM_DEBUG_KMS("self-refresh watermark: display plane %d, fbc lines %d,"
3429 " cursor %d\n", plane_wm, plane_fbc, cursor_wm);
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003430 }
Chris Wilson4ed765f2010-09-11 10:46:47 +01003431 I915_WRITE(WM1_LP_ILK, tmp);
3432 /* XXX setup WM2 and WM3 */
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08003433}
Chris Wilson4ed765f2010-09-11 10:46:47 +01003434
Shaohua Li7662c8b2009-06-26 11:23:55 +08003435/**
3436 * intel_update_watermarks - update FIFO watermark values based on current modes
3437 *
3438 * Calculate watermark values for the various WM regs based on current mode
3439 * and plane configuration.
3440 *
3441 * There are several cases to deal with here:
3442 * - normal (i.e. non-self-refresh)
3443 * - self-refresh (SR) mode
3444 * - lines are large relative to FIFO size (buffer can hold up to 2)
3445 * - lines are small relative to FIFO size (buffer can hold more than 2
3446 * lines), so need to account for TLB latency
3447 *
3448 * The normal calculation is:
3449 * watermark = dotclock * bytes per pixel * latency
3450 * where latency is platform & configuration dependent (we assume pessimal
3451 * values here).
3452 *
3453 * The SR calculation is:
3454 * watermark = (trunc(latency/line time)+1) * surface width *
3455 * bytes per pixel
3456 * where
3457 * line time = htotal / dotclock
Zhao Yakuifa143212010-06-12 14:32:23 +08003458 * surface width = hdisplay for normal plane and 64 for cursor
Shaohua Li7662c8b2009-06-26 11:23:55 +08003459 * and latency is assumed to be high, as above.
3460 *
3461 * The final value programmed to the register should always be rounded up,
3462 * and include an extra 2 entries to account for clock crossings.
3463 *
3464 * We don't use the sprite, so we can ignore that. And on Crestline we have
3465 * to set the non-SR watermarks to 8.
Chris Wilson5eddb702010-09-11 13:48:45 +01003466 */
Shaohua Li7662c8b2009-06-26 11:23:55 +08003467static void intel_update_watermarks(struct drm_device *dev)
3468{
Jesse Barnese70236a2009-09-21 10:42:27 -07003469 struct drm_i915_private *dev_priv = dev->dev_private;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003470 struct drm_crtc *crtc;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003471 int sr_hdisplay = 0;
3472 unsigned long planea_clock = 0, planeb_clock = 0, sr_clock = 0;
3473 int enabled = 0, pixel_size = 0;
Zhao Yakuifa143212010-06-12 14:32:23 +08003474 int sr_htotal = 0;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003475
Zhenyu Wangc03342f2009-09-29 11:01:23 +08003476 if (!dev_priv->display.update_wm)
3477 return;
3478
Shaohua Li7662c8b2009-06-26 11:23:55 +08003479 /* Get the clock config from both planes */
3480 list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
Chris Wilsondebcadd2010-08-07 11:01:33 +01003481 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Chris Wilsonf7abfe82010-09-13 14:19:16 +01003482 if (intel_crtc->active) {
Shaohua Li7662c8b2009-06-26 11:23:55 +08003483 enabled++;
3484 if (intel_crtc->plane == 0) {
Zhao Yakui28c97732009-10-09 11:39:41 +08003485 DRM_DEBUG_KMS("plane A (pipe %d) clock: %d\n",
Chris Wilson5eddb702010-09-11 13:48:45 +01003486 intel_crtc->pipe, crtc->mode.clock);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003487 planea_clock = crtc->mode.clock;
3488 } else {
Zhao Yakui28c97732009-10-09 11:39:41 +08003489 DRM_DEBUG_KMS("plane B (pipe %d) clock: %d\n",
Chris Wilson5eddb702010-09-11 13:48:45 +01003490 intel_crtc->pipe, crtc->mode.clock);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003491 planeb_clock = crtc->mode.clock;
3492 }
3493 sr_hdisplay = crtc->mode.hdisplay;
3494 sr_clock = crtc->mode.clock;
Zhao Yakuifa143212010-06-12 14:32:23 +08003495 sr_htotal = crtc->mode.htotal;
Shaohua Li7662c8b2009-06-26 11:23:55 +08003496 if (crtc->fb)
3497 pixel_size = crtc->fb->bits_per_pixel / 8;
3498 else
3499 pixel_size = 4; /* by default */
3500 }
3501 }
3502
3503 if (enabled <= 0)
3504 return;
3505
Jesse Barnese70236a2009-09-21 10:42:27 -07003506 dev_priv->display.update_wm(dev, planea_clock, planeb_clock,
Zhao Yakuifa143212010-06-12 14:32:23 +08003507 sr_hdisplay, sr_htotal, pixel_size);
Shaohua Li7662c8b2009-06-26 11:23:55 +08003508}
3509
Chris Wilson5c3b82e2009-02-11 13:25:09 +00003510static int intel_crtc_mode_set(struct drm_crtc *crtc,
3511 struct drm_display_mode *mode,
3512 struct drm_display_mode *adjusted_mode,
3513 int x, int y,
3514 struct drm_framebuffer *old_fb)
Jesse Barnes79e53942008-11-07 14:24:08 -08003515{
3516 struct drm_device *dev = crtc->dev;
3517 struct drm_i915_private *dev_priv = dev->dev_private;
3518 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
3519 int pipe = intel_crtc->pipe;
Jesse Barnes80824002009-09-10 15:28:06 -07003520 int plane = intel_crtc->plane;
Chris Wilson5eddb702010-09-11 13:48:45 +01003521 u32 fp_reg, dpll_reg;
Eric Anholtc751ce42010-03-25 11:48:48 -07003522 int refclk, num_connectors = 0;
Jesse Barnes652c3932009-08-17 13:31:43 -07003523 intel_clock_t clock, reduced_clock;
Chris Wilson5eddb702010-09-11 13:48:45 +01003524 u32 dpll, fp = 0, fp2 = 0, dspcntr, pipeconf;
Jesse Barnes652c3932009-08-17 13:31:43 -07003525 bool ok, has_reduced_clock = false, is_sdvo = false, is_dvo = false;
Keith Packarda4fc5ed2009-04-07 16:16:42 -07003526 bool is_crt = false, is_lvds = false, is_tv = false, is_dp = false;
Chris Wilson8e647a22010-08-22 10:54:23 +01003527 struct intel_encoder *has_edp_encoder = NULL;
Jesse Barnes79e53942008-11-07 14:24:08 -08003528 struct drm_mode_config *mode_config = &dev->mode_config;
Chris Wilson5eddb702010-09-11 13:48:45 +01003529 struct intel_encoder *encoder;
Ma Lingd4906092009-03-18 20:13:27 +08003530 const intel_limit_t *limit;
Chris Wilson5c3b82e2009-02-11 13:25:09 +00003531 int ret;
Zhenyu Wang2c072452009-06-05 15:38:42 +08003532 struct fdi_m_n m_n = {0};
Chris Wilson5eddb702010-09-11 13:48:45 +01003533 u32 reg, temp;
Zhenyu Wang5eb08b62009-07-24 01:00:31 +08003534 int target_clock;
Jesse Barnes79e53942008-11-07 14:24:08 -08003535
3536 drm_vblank_pre_modeset(dev, pipe);
3537
Chris Wilson5eddb702010-09-11 13:48:45 +01003538 list_for_each_entry(encoder, &mode_config->encoder_list, base.head) {
3539 if (encoder->base.crtc != crtc)
Jesse Barnes79e53942008-11-07 14:24:08 -08003540 continue;
3541
Chris Wilson5eddb702010-09-11 13:48:45 +01003542 switch (encoder->type) {
Jesse Barnes79e53942008-11-07 14:24:08 -08003543 case INTEL_OUTPUT_LVDS:
3544 is_lvds = true;
3545 break;
3546 case INTEL_OUTPUT_SDVO:
Eric Anholt7d573822009-01-02 13:33:00 -08003547 case INTEL_OUTPUT_HDMI:
Jesse Barnes79e53942008-11-07 14:24:08 -08003548 is_sdvo = true;
Chris Wilson5eddb702010-09-11 13:48:45 +01003549 if (encoder->needs_tv_clock)
Jesse Barnese2f0ba92009-02-02 15:11:52 -08003550 is_tv = true;
Jesse Barnes79e53942008-11-07 14:24:08 -08003551 break;
3552 case INTEL_OUTPUT_DVO:
3553 is_dvo = true;
3554 break;
3555 case INTEL_OUTPUT_TVOUT:
3556 is_tv = true;
3557 break;
3558 case INTEL_OUTPUT_ANALOG:
3559 is_crt = true;
3560 break;
Keith Packarda4fc5ed2009-04-07 16:16:42 -07003561 case INTEL_OUTPUT_DISPLAYPORT:
3562 is_dp = true;
3563 break;
Zhenyu Wang32f9d652009-07-24 01:00:32 +08003564 case INTEL_OUTPUT_EDP:
Chris Wilson5eddb702010-09-11 13:48:45 +01003565 has_edp_encoder = encoder;
Zhenyu Wang32f9d652009-07-24 01:00:32 +08003566 break;
Jesse Barnes79e53942008-11-07 14:24:08 -08003567 }
Kristian Høgsberg43565a02009-02-13 20:56:52 -05003568
Eric Anholtc751ce42010-03-25 11:48:48 -07003569 num_connectors++;
Jesse Barnes79e53942008-11-07 14:24:08 -08003570 }
3571
Eric Anholtc751ce42010-03-25 11:48:48 -07003572 if (is_lvds && dev_priv->lvds_use_ssc && num_connectors < 2) {
Kristian Høgsberg43565a02009-02-13 20:56:52 -05003573 refclk = dev_priv->lvds_ssc_freq * 1000;
Zhao Yakui28c97732009-10-09 11:39:41 +08003574 DRM_DEBUG_KMS("using SSC reference clock of %d MHz\n",
Chris Wilson5eddb702010-09-11 13:48:45 +01003575 refclk / 1000);
Kristian Høgsberg43565a02009-02-13 20:56:52 -05003576 } else if (IS_I9XX(dev)) {
Jesse Barnes79e53942008-11-07 14:24:08 -08003577 refclk = 96000;
Eric Anholtbad720f2009-10-22 16:11:14 -07003578 if (HAS_PCH_SPLIT(dev))
Zhenyu Wang2c072452009-06-05 15:38:42 +08003579 refclk = 120000; /* 120Mhz refclk */
Jesse Barnes79e53942008-11-07 14:24:08 -08003580 } else {
3581 refclk = 48000;
3582 }
3583
Ma Lingd4906092009-03-18 20:13:27 +08003584 /*
3585 * Returns a set of divisors for the desired target clock with the given
3586 * refclk, or FALSE. The returned values represent the clock equation:
3587 * reflck * (5 * (m1 + 2) + (m2 + 2)) / (n + 2) / p1 / p2.
3588 */
3589 limit = intel_limit(crtc);
3590 ok = limit->find_pll(limit, crtc, adjusted_mode->clock, refclk, &clock);
Jesse Barnes79e53942008-11-07 14:24:08 -08003591 if (!ok) {
3592 DRM_ERROR("Couldn't find PLL settings for mode!\n");
Chris Wilson1f803ee2009-06-06 09:45:59 +01003593 drm_vblank_post_modeset(dev, pipe);
Chris Wilson5c3b82e2009-02-11 13:25:09 +00003594 return -EINVAL;
Jesse Barnes79e53942008-11-07 14:24:08 -08003595 }
3596
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01003597 /* Ensure that the cursor is valid for the new mode before changing... */
Chris Wilson6b383a72010-09-13 13:54:26 +01003598 intel_crtc_update_cursor(crtc, true);
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01003599
Zhao Yakuiddc90032010-01-06 22:05:56 +08003600 if (is_lvds && dev_priv->lvds_downclock_avail) {
3601 has_reduced_clock = limit->find_pll(limit, crtc,
Chris Wilson5eddb702010-09-11 13:48:45 +01003602 dev_priv->lvds_downclock,
3603 refclk,
3604 &reduced_clock);
Zhao Yakui18f9ed12009-11-20 03:24:16 +00003605 if (has_reduced_clock && (clock.p != reduced_clock.p)) {
3606 /*
3607 * If the different P is found, it means that we can't
3608 * switch the display clock by using the FP0/FP1.
3609 * In such case we will disable the LVDS downclock
3610 * feature.
3611 */
3612 DRM_DEBUG_KMS("Different P is found for "
Chris Wilson5eddb702010-09-11 13:48:45 +01003613 "LVDS clock/downclock\n");
Zhao Yakui18f9ed12009-11-20 03:24:16 +00003614 has_reduced_clock = 0;
3615 }
Jesse Barnes652c3932009-08-17 13:31:43 -07003616 }
Zhenyu Wang7026d4a2009-03-24 14:02:43 +08003617 /* SDVO TV has fixed PLL values depend on its clock range,
3618 this mirrors vbios setting. */
3619 if (is_sdvo && is_tv) {
3620 if (adjusted_mode->clock >= 100000
Chris Wilson5eddb702010-09-11 13:48:45 +01003621 && adjusted_mode->clock < 140500) {
Zhenyu Wang7026d4a2009-03-24 14:02:43 +08003622 clock.p1 = 2;
3623 clock.p2 = 10;
3624 clock.n = 3;
3625 clock.m1 = 16;
3626 clock.m2 = 8;
3627 } else if (adjusted_mode->clock >= 140500
Chris Wilson5eddb702010-09-11 13:48:45 +01003628 && adjusted_mode->clock <= 200000) {
Zhenyu Wang7026d4a2009-03-24 14:02:43 +08003629 clock.p1 = 1;
3630 clock.p2 = 10;
3631 clock.n = 6;
3632 clock.m1 = 12;
3633 clock.m2 = 8;
3634 }
3635 }
3636
Zhenyu Wang2c072452009-06-05 15:38:42 +08003637 /* FDI link */
Eric Anholtbad720f2009-10-22 16:11:14 -07003638 if (HAS_PCH_SPLIT(dev)) {
Adam Jackson77ffb592010-04-12 11:38:44 -04003639 int lane = 0, link_bw, bpp;
Zhenyu Wang32f9d652009-07-24 01:00:32 +08003640 /* eDP doesn't require FDI link, so just set DP M/N
3641 according to current link config */
Chris Wilson8e647a22010-08-22 10:54:23 +01003642 if (has_edp_encoder) {
Zhenyu Wang5eb08b62009-07-24 01:00:31 +08003643 target_clock = mode->clock;
Chris Wilson8e647a22010-08-22 10:54:23 +01003644 intel_edp_link_config(has_edp_encoder,
3645 &lane, &link_bw);
Zhenyu Wang32f9d652009-07-24 01:00:32 +08003646 } else {
3647 /* DP over FDI requires target mode clock
3648 instead of link clock */
3649 if (is_dp)
3650 target_clock = mode->clock;
3651 else
3652 target_clock = adjusted_mode->clock;
Chris Wilson021357a2010-09-07 20:54:59 +01003653
3654 /* FDI is a binary signal running at ~2.7GHz, encoding
3655 * each output octet as 10 bits. The actual frequency
3656 * is stored as a divider into a 100MHz clock, and the
3657 * mode pixel clock is stored in units of 1KHz.
3658 * Hence the bw of each lane in terms of the mode signal
3659 * is:
3660 */
3661 link_bw = intel_fdi_link_freq(dev) * MHz(100)/KHz(1)/10;
Zhenyu Wang32f9d652009-07-24 01:00:32 +08003662 }
Zhenyu Wang58a27472009-09-25 08:01:28 +00003663
3664 /* determine panel color depth */
Chris Wilson5eddb702010-09-11 13:48:45 +01003665 temp = I915_READ(PIPECONF(pipe));
Zhao Yakuie5a95eb2010-01-04 16:29:32 +08003666 temp &= ~PIPE_BPC_MASK;
3667 if (is_lvds) {
Zhao Yakuie5a95eb2010-01-04 16:29:32 +08003668 /* the BPC will be 6 if it is 18-bit LVDS panel */
Chris Wilson5eddb702010-09-11 13:48:45 +01003669 if ((I915_READ(PCH_LVDS) & LVDS_A3_POWER_MASK) == LVDS_A3_POWER_UP)
Zhao Yakuie5a95eb2010-01-04 16:29:32 +08003670 temp |= PIPE_8BPC;
3671 else
3672 temp |= PIPE_6BPC;
Chris Wilson8e647a22010-08-22 10:54:23 +01003673 } else if (has_edp_encoder || (is_dp && intel_pch_has_edp(crtc))) {
Zhenyu Wang885a5fb2010-01-12 05:38:31 +08003674 switch (dev_priv->edp_bpp/3) {
3675 case 8:
3676 temp |= PIPE_8BPC;
3677 break;
3678 case 10:
3679 temp |= PIPE_10BPC;
3680 break;
3681 case 6:
3682 temp |= PIPE_6BPC;
3683 break;
3684 case 12:
3685 temp |= PIPE_12BPC;
3686 break;
3687 }
Zhao Yakuie5a95eb2010-01-04 16:29:32 +08003688 } else
3689 temp |= PIPE_8BPC;
Chris Wilson5eddb702010-09-11 13:48:45 +01003690 I915_WRITE(PIPECONF(pipe), temp);
Zhenyu Wang58a27472009-09-25 08:01:28 +00003691
3692 switch (temp & PIPE_BPC_MASK) {
3693 case PIPE_8BPC:
3694 bpp = 24;
3695 break;
3696 case PIPE_10BPC:
3697 bpp = 30;
3698 break;
3699 case PIPE_6BPC:
3700 bpp = 18;
3701 break;
3702 case PIPE_12BPC:
3703 bpp = 36;
3704 break;
3705 default:
3706 DRM_ERROR("unknown pipe bpc value\n");
3707 bpp = 24;
3708 }
3709
Adam Jackson77ffb592010-04-12 11:38:44 -04003710 if (!lane) {
3711 /*
3712 * Account for spread spectrum to avoid
3713 * oversubscribing the link. Max center spread
3714 * is 2.5%; use 5% for safety's sake.
3715 */
3716 u32 bps = target_clock * bpp * 21 / 20;
3717 lane = bps / (link_bw * 8) + 1;
3718 }
3719
3720 intel_crtc->fdi_lanes = lane;
3721
Adam Jacksonf2b115e2009-12-03 17:14:42 -05003722 ironlake_compute_m_n(bpp, lane, target_clock, link_bw, &m_n);
Zhenyu Wang5eb08b62009-07-24 01:00:31 +08003723 }
Zhenyu Wang2c072452009-06-05 15:38:42 +08003724
Zhenyu Wangc038e512009-10-19 15:43:48 +08003725 /* Ironlake: try to setup display ref clock before DPLL
3726 * enabling. This is only under driver's control after
3727 * PCH B stepping, previous chipset stepping should be
3728 * ignoring this setting.
3729 */
Eric Anholtbad720f2009-10-22 16:11:14 -07003730 if (HAS_PCH_SPLIT(dev)) {
Zhenyu Wangc038e512009-10-19 15:43:48 +08003731 temp = I915_READ(PCH_DREF_CONTROL);
3732 /* Always enable nonspread source */
3733 temp &= ~DREF_NONSPREAD_SOURCE_MASK;
3734 temp |= DREF_NONSPREAD_SOURCE_ENABLE;
Zhenyu Wangc038e512009-10-19 15:43:48 +08003735 temp &= ~DREF_SSC_SOURCE_MASK;
3736 temp |= DREF_SSC_SOURCE_ENABLE;
3737 I915_WRITE(PCH_DREF_CONTROL, temp);
Zhenyu Wangc038e512009-10-19 15:43:48 +08003738
Chris Wilson5eddb702010-09-11 13:48:45 +01003739 POSTING_READ(PCH_DREF_CONTROL);
Zhenyu Wangc038e512009-10-19 15:43:48 +08003740 udelay(200);
3741
Chris Wilson8e647a22010-08-22 10:54:23 +01003742 if (has_edp_encoder) {
Zhenyu Wangc038e512009-10-19 15:43:48 +08003743 if (dev_priv->lvds_use_ssc) {
3744 temp |= DREF_SSC1_ENABLE;
3745 I915_WRITE(PCH_DREF_CONTROL, temp);
Zhenyu Wangc038e512009-10-19 15:43:48 +08003746
Chris Wilson5eddb702010-09-11 13:48:45 +01003747 POSTING_READ(PCH_DREF_CONTROL);
Zhenyu Wangc038e512009-10-19 15:43:48 +08003748 udelay(200);
3749
3750 temp &= ~DREF_CPU_SOURCE_OUTPUT_MASK;
3751 temp |= DREF_CPU_SOURCE_OUTPUT_DOWNSPREAD;
Zhenyu Wangc038e512009-10-19 15:43:48 +08003752 } else {
3753 temp |= DREF_CPU_SOURCE_OUTPUT_NONSPREAD;
Zhenyu Wangc038e512009-10-19 15:43:48 +08003754 }
Chris Wilson5eddb702010-09-11 13:48:45 +01003755 I915_WRITE(PCH_DREF_CONTROL, temp);
Zhenyu Wangc038e512009-10-19 15:43:48 +08003756 }
3757 }
3758
Adam Jacksonf2b115e2009-12-03 17:14:42 -05003759 if (IS_PINEVIEW(dev)) {
Shaohua Li21778322009-02-23 15:19:16 +08003760 fp = (1 << clock.n) << 16 | clock.m1 << 8 | clock.m2;
Jesse Barnes652c3932009-08-17 13:31:43 -07003761 if (has_reduced_clock)
3762 fp2 = (1 << reduced_clock.n) << 16 |
3763 reduced_clock.m1 << 8 | reduced_clock.m2;
3764 } else {
Shaohua Li21778322009-02-23 15:19:16 +08003765 fp = clock.n << 16 | clock.m1 << 8 | clock.m2;
Jesse Barnes652c3932009-08-17 13:31:43 -07003766 if (has_reduced_clock)
3767 fp2 = reduced_clock.n << 16 | reduced_clock.m1 << 8 |
3768 reduced_clock.m2;
3769 }
Jesse Barnes79e53942008-11-07 14:24:08 -08003770
Chris Wilson5eddb702010-09-11 13:48:45 +01003771 dpll = 0;
Eric Anholtbad720f2009-10-22 16:11:14 -07003772 if (!HAS_PCH_SPLIT(dev))
Zhenyu Wang2c072452009-06-05 15:38:42 +08003773 dpll = DPLL_VGA_MODE_DIS;
3774
Jesse Barnes79e53942008-11-07 14:24:08 -08003775 if (IS_I9XX(dev)) {
3776 if (is_lvds)
3777 dpll |= DPLLB_MODE_LVDS;
3778 else
3779 dpll |= DPLLB_MODE_DAC_SERIAL;
3780 if (is_sdvo) {
Chris Wilson6c9547f2010-08-25 10:05:17 +01003781 int pixel_multiplier = intel_mode_get_pixel_multiplier(adjusted_mode);
3782 if (pixel_multiplier > 1) {
3783 if (IS_I945G(dev) || IS_I945GM(dev) || IS_G33(dev))
3784 dpll |= (pixel_multiplier - 1) << SDVO_MULTIPLIER_SHIFT_HIRES;
3785 else if (HAS_PCH_SPLIT(dev))
3786 dpll |= (pixel_multiplier - 1) << PLL_REF_SDVO_HDMI_MULTIPLIER_SHIFT;
3787 }
Jesse Barnes79e53942008-11-07 14:24:08 -08003788 dpll |= DPLL_DVO_HIGH_SPEED;
Jesse Barnes79e53942008-11-07 14:24:08 -08003789 }
Keith Packarda4fc5ed2009-04-07 16:16:42 -07003790 if (is_dp)
3791 dpll |= DPLL_DVO_HIGH_SPEED;
Jesse Barnes79e53942008-11-07 14:24:08 -08003792
3793 /* compute bitmask from p1 value */
Adam Jacksonf2b115e2009-12-03 17:14:42 -05003794 if (IS_PINEVIEW(dev))
3795 dpll |= (1 << (clock.p1 - 1)) << DPLL_FPA01_P1_POST_DIV_SHIFT_PINEVIEW;
Zhenyu Wang2c072452009-06-05 15:38:42 +08003796 else {
Shaohua Li21778322009-02-23 15:19:16 +08003797 dpll |= (1 << (clock.p1 - 1)) << DPLL_FPA01_P1_POST_DIV_SHIFT;
Zhenyu Wang2c072452009-06-05 15:38:42 +08003798 /* also FPA1 */
Eric Anholtbad720f2009-10-22 16:11:14 -07003799 if (HAS_PCH_SPLIT(dev))
Zhenyu Wang2c072452009-06-05 15:38:42 +08003800 dpll |= (1 << (clock.p1 - 1)) << DPLL_FPA1_P1_POST_DIV_SHIFT;
Jesse Barnes652c3932009-08-17 13:31:43 -07003801 if (IS_G4X(dev) && has_reduced_clock)
3802 dpll |= (1 << (reduced_clock.p1 - 1)) << DPLL_FPA1_P1_POST_DIV_SHIFT;
Zhenyu Wang2c072452009-06-05 15:38:42 +08003803 }
Jesse Barnes79e53942008-11-07 14:24:08 -08003804 switch (clock.p2) {
3805 case 5:
3806 dpll |= DPLL_DAC_SERIAL_P2_CLOCK_DIV_5;
3807 break;
3808 case 7:
3809 dpll |= DPLLB_LVDS_P2_CLOCK_DIV_7;
3810 break;
3811 case 10:
3812 dpll |= DPLL_DAC_SERIAL_P2_CLOCK_DIV_10;
3813 break;
3814 case 14:
3815 dpll |= DPLLB_LVDS_P2_CLOCK_DIV_14;
3816 break;
3817 }
Eric Anholtbad720f2009-10-22 16:11:14 -07003818 if (IS_I965G(dev) && !HAS_PCH_SPLIT(dev))
Jesse Barnes79e53942008-11-07 14:24:08 -08003819 dpll |= (6 << PLL_LOAD_PULSE_PHASE_SHIFT);
3820 } else {
3821 if (is_lvds) {
3822 dpll |= (1 << (clock.p1 - 1)) << DPLL_FPA01_P1_POST_DIV_SHIFT;
3823 } else {
3824 if (clock.p1 == 2)
3825 dpll |= PLL_P1_DIVIDE_BY_TWO;
3826 else
3827 dpll |= (clock.p1 - 2) << DPLL_FPA01_P1_POST_DIV_SHIFT;
3828 if (clock.p2 == 4)
3829 dpll |= PLL_P2_DIVIDE_BY_4;
3830 }
3831 }
3832
Kristian Høgsberg43565a02009-02-13 20:56:52 -05003833 if (is_sdvo && is_tv)
3834 dpll |= PLL_REF_INPUT_TVCLKINBC;
3835 else if (is_tv)
Jesse Barnes79e53942008-11-07 14:24:08 -08003836 /* XXX: just matching BIOS for now */
Kristian Høgsberg43565a02009-02-13 20:56:52 -05003837 /* dpll |= PLL_REF_INPUT_TVCLKINBC; */
Jesse Barnes79e53942008-11-07 14:24:08 -08003838 dpll |= 3;
Eric Anholtc751ce42010-03-25 11:48:48 -07003839 else if (is_lvds && dev_priv->lvds_use_ssc && num_connectors < 2)
Kristian Høgsberg43565a02009-02-13 20:56:52 -05003840 dpll |= PLLB_REF_INPUT_SPREADSPECTRUMIN;
Jesse Barnes79e53942008-11-07 14:24:08 -08003841 else
3842 dpll |= PLL_REF_INPUT_DREFCLK;
3843
3844 /* setup pipeconf */
Chris Wilson5eddb702010-09-11 13:48:45 +01003845 pipeconf = I915_READ(PIPECONF(pipe));
Jesse Barnes79e53942008-11-07 14:24:08 -08003846
3847 /* Set up the display plane register */
3848 dspcntr = DISPPLANE_GAMMA_ENABLE;
3849
Adam Jacksonf2b115e2009-12-03 17:14:42 -05003850 /* Ironlake's plane is forced to pipe, bit 24 is to
Zhenyu Wang2c072452009-06-05 15:38:42 +08003851 enable color space conversion */
Eric Anholtbad720f2009-10-22 16:11:14 -07003852 if (!HAS_PCH_SPLIT(dev)) {
Zhenyu Wang2c072452009-06-05 15:38:42 +08003853 if (pipe == 0)
Jesse Barnes80824002009-09-10 15:28:06 -07003854 dspcntr &= ~DISPPLANE_SEL_PIPE_MASK;
Zhenyu Wang2c072452009-06-05 15:38:42 +08003855 else
3856 dspcntr |= DISPPLANE_SEL_PIPE_B;
3857 }
Jesse Barnes79e53942008-11-07 14:24:08 -08003858
3859 if (pipe == 0 && !IS_I965G(dev)) {
3860 /* Enable pixel doubling when the dot clock is > 90% of the (display)
3861 * core speed.
3862 *
3863 * XXX: No double-wide on 915GM pipe B. Is that the only reason for the
3864 * pipe == 0 check?
3865 */
Jesse Barnese70236a2009-09-21 10:42:27 -07003866 if (mode->clock >
3867 dev_priv->display.get_display_clock_speed(dev) * 9 / 10)
Chris Wilson5eddb702010-09-11 13:48:45 +01003868 pipeconf |= PIPECONF_DOUBLE_WIDE;
Jesse Barnes79e53942008-11-07 14:24:08 -08003869 else
Chris Wilson5eddb702010-09-11 13:48:45 +01003870 pipeconf &= ~PIPECONF_DOUBLE_WIDE;
Jesse Barnes79e53942008-11-07 14:24:08 -08003871 }
3872
Linus Torvalds8d86dc62010-06-08 20:16:28 -07003873 dspcntr |= DISPLAY_PLANE_ENABLE;
Chris Wilson5eddb702010-09-11 13:48:45 +01003874 pipeconf |= PIPECONF_ENABLE;
Linus Torvalds8d86dc62010-06-08 20:16:28 -07003875 dpll |= DPLL_VCO_ENABLE;
3876
Zhao Yakui28c97732009-10-09 11:39:41 +08003877 DRM_DEBUG_KMS("Mode for pipe %c:\n", pipe == 0 ? 'A' : 'B');
Jesse Barnes79e53942008-11-07 14:24:08 -08003878 drm_mode_debug_printmodeline(mode);
3879
Adam Jacksonf2b115e2009-12-03 17:14:42 -05003880 /* assign to Ironlake registers */
Eric Anholtbad720f2009-10-22 16:11:14 -07003881 if (HAS_PCH_SPLIT(dev)) {
Chris Wilson5eddb702010-09-11 13:48:45 +01003882 fp_reg = PCH_FP0(pipe);
3883 dpll_reg = PCH_DPLL(pipe);
3884 } else {
3885 fp_reg = FP0(pipe);
3886 dpll_reg = DPLL(pipe);
Zhenyu Wang2c072452009-06-05 15:38:42 +08003887 }
Jesse Barnes79e53942008-11-07 14:24:08 -08003888
Chris Wilson8e647a22010-08-22 10:54:23 +01003889 if (!has_edp_encoder) {
Jesse Barnes79e53942008-11-07 14:24:08 -08003890 I915_WRITE(fp_reg, fp);
3891 I915_WRITE(dpll_reg, dpll & ~DPLL_VCO_ENABLE);
Chris Wilson5eddb702010-09-11 13:48:45 +01003892
3893 POSTING_READ(dpll_reg);
Jesse Barnes79e53942008-11-07 14:24:08 -08003894 udelay(150);
3895 }
3896
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08003897 /* enable transcoder DPLL */
3898 if (HAS_PCH_CPT(dev)) {
3899 temp = I915_READ(PCH_DPLL_SEL);
Chris Wilson5eddb702010-09-11 13:48:45 +01003900 if (pipe == 0)
3901 temp |= TRANSA_DPLL_ENABLE | TRANSA_DPLLA_SEL;
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08003902 else
Chris Wilson5eddb702010-09-11 13:48:45 +01003903 temp |= TRANSB_DPLL_ENABLE | TRANSB_DPLLB_SEL;
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08003904 I915_WRITE(PCH_DPLL_SEL, temp);
Chris Wilson5eddb702010-09-11 13:48:45 +01003905
3906 POSTING_READ(PCH_DPLL_SEL);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08003907 udelay(150);
3908 }
3909
Jesse Barnes79e53942008-11-07 14:24:08 -08003910 /* The LVDS pin pair needs to be on before the DPLLs are enabled.
3911 * This is an exception to the general rule that mode_set doesn't turn
3912 * things on.
3913 */
3914 if (is_lvds) {
Chris Wilson5eddb702010-09-11 13:48:45 +01003915 reg = LVDS;
Eric Anholtbad720f2009-10-22 16:11:14 -07003916 if (HAS_PCH_SPLIT(dev))
Chris Wilson5eddb702010-09-11 13:48:45 +01003917 reg = PCH_LVDS;
Zhenyu Wang541998a2009-06-05 15:38:44 +08003918
Chris Wilson5eddb702010-09-11 13:48:45 +01003919 temp = I915_READ(reg);
3920 temp |= LVDS_PORT_EN | LVDS_A0A2_CLKA_POWER_UP;
Zhenyu Wangb3b095b2010-04-07 16:15:56 +08003921 if (pipe == 1) {
3922 if (HAS_PCH_CPT(dev))
Chris Wilson5eddb702010-09-11 13:48:45 +01003923 temp |= PORT_TRANS_B_SEL_CPT;
Zhenyu Wangb3b095b2010-04-07 16:15:56 +08003924 else
Chris Wilson5eddb702010-09-11 13:48:45 +01003925 temp |= LVDS_PIPEB_SELECT;
Zhenyu Wangb3b095b2010-04-07 16:15:56 +08003926 } else {
3927 if (HAS_PCH_CPT(dev))
Chris Wilson5eddb702010-09-11 13:48:45 +01003928 temp &= ~PORT_TRANS_SEL_MASK;
Zhenyu Wangb3b095b2010-04-07 16:15:56 +08003929 else
Chris Wilson5eddb702010-09-11 13:48:45 +01003930 temp &= ~LVDS_PIPEB_SELECT;
Zhenyu Wangb3b095b2010-04-07 16:15:56 +08003931 }
Zhao Yakuia3e17eb2009-10-10 10:42:37 +08003932 /* set the corresponsding LVDS_BORDER bit */
Chris Wilson5eddb702010-09-11 13:48:45 +01003933 temp |= dev_priv->lvds_border_bits;
Jesse Barnes79e53942008-11-07 14:24:08 -08003934 /* Set the B0-B3 data pairs corresponding to whether we're going to
3935 * set the DPLLs for dual-channel mode or not.
3936 */
3937 if (clock.p2 == 7)
Chris Wilson5eddb702010-09-11 13:48:45 +01003938 temp |= LVDS_B0B3_POWER_UP | LVDS_CLKB_POWER_UP;
Jesse Barnes79e53942008-11-07 14:24:08 -08003939 else
Chris Wilson5eddb702010-09-11 13:48:45 +01003940 temp &= ~(LVDS_B0B3_POWER_UP | LVDS_CLKB_POWER_UP);
Jesse Barnes79e53942008-11-07 14:24:08 -08003941
3942 /* It would be nice to set 24 vs 18-bit mode (LVDS_A3_POWER_UP)
3943 * appropriately here, but we need to look more thoroughly into how
3944 * panels behave in the two modes.
3945 */
Jesse Barnes434ed092010-09-07 14:48:06 -07003946 /* set the dithering flag on non-PCH LVDS as needed */
3947 if (IS_I965G(dev) && !HAS_PCH_SPLIT(dev)) {
3948 if (dev_priv->lvds_dither)
Chris Wilson5eddb702010-09-11 13:48:45 +01003949 temp |= LVDS_ENABLE_DITHER;
Jesse Barnes434ed092010-09-07 14:48:06 -07003950 else
Chris Wilson5eddb702010-09-11 13:48:45 +01003951 temp &= ~LVDS_ENABLE_DITHER;
Zhao Yakui898822c2010-01-04 16:29:30 +08003952 }
Chris Wilson5eddb702010-09-11 13:48:45 +01003953 I915_WRITE(reg, temp);
Jesse Barnes79e53942008-11-07 14:24:08 -08003954 }
Jesse Barnes434ed092010-09-07 14:48:06 -07003955
3956 /* set the dithering flag and clear for anything other than a panel. */
3957 if (HAS_PCH_SPLIT(dev)) {
3958 pipeconf &= ~PIPECONF_DITHER_EN;
3959 pipeconf &= ~PIPECONF_DITHER_TYPE_MASK;
3960 if (dev_priv->lvds_dither && (is_lvds || has_edp_encoder)) {
3961 pipeconf |= PIPECONF_DITHER_EN;
3962 pipeconf |= PIPECONF_DITHER_TYPE_ST1;
3963 }
3964 }
3965
Keith Packarda4fc5ed2009-04-07 16:16:42 -07003966 if (is_dp)
3967 intel_dp_set_m_n(crtc, mode, adjusted_mode);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08003968 else if (HAS_PCH_SPLIT(dev)) {
3969 /* For non-DP output, clear any trans DP clock recovery setting.*/
3970 if (pipe == 0) {
3971 I915_WRITE(TRANSA_DATA_M1, 0);
3972 I915_WRITE(TRANSA_DATA_N1, 0);
3973 I915_WRITE(TRANSA_DP_LINK_M1, 0);
3974 I915_WRITE(TRANSA_DP_LINK_N1, 0);
3975 } else {
3976 I915_WRITE(TRANSB_DATA_M1, 0);
3977 I915_WRITE(TRANSB_DATA_N1, 0);
3978 I915_WRITE(TRANSB_DP_LINK_M1, 0);
3979 I915_WRITE(TRANSB_DP_LINK_N1, 0);
3980 }
3981 }
Jesse Barnes79e53942008-11-07 14:24:08 -08003982
Chris Wilson8e647a22010-08-22 10:54:23 +01003983 if (!has_edp_encoder) {
Zhenyu Wang32f9d652009-07-24 01:00:32 +08003984 I915_WRITE(fp_reg, fp);
Jesse Barnes79e53942008-11-07 14:24:08 -08003985 I915_WRITE(dpll_reg, dpll);
Chris Wilson5eddb702010-09-11 13:48:45 +01003986
Zhenyu Wang32f9d652009-07-24 01:00:32 +08003987 /* Wait for the clocks to stabilize. */
Chris Wilson5eddb702010-09-11 13:48:45 +01003988 POSTING_READ(dpll_reg);
Zhenyu Wang32f9d652009-07-24 01:00:32 +08003989 udelay(150);
3990
Eric Anholtbad720f2009-10-22 16:11:14 -07003991 if (IS_I965G(dev) && !HAS_PCH_SPLIT(dev)) {
Chris Wilson5eddb702010-09-11 13:48:45 +01003992 temp = 0;
Zhao Yakuibb66c512009-09-10 15:45:49 +08003993 if (is_sdvo) {
Chris Wilson5eddb702010-09-11 13:48:45 +01003994 temp = intel_mode_get_pixel_multiplier(adjusted_mode);
3995 if (temp > 1)
3996 temp = (temp - 1) << DPLL_MD_UDI_MULTIPLIER_SHIFT;
Chris Wilson6c9547f2010-08-25 10:05:17 +01003997 else
Chris Wilson5eddb702010-09-11 13:48:45 +01003998 temp = 0;
3999 }
4000 I915_WRITE(DPLL_MD(pipe), temp);
Zhenyu Wang32f9d652009-07-24 01:00:32 +08004001 } else {
4002 /* write it again -- the BIOS does, after all */
4003 I915_WRITE(dpll_reg, dpll);
4004 }
Chris Wilson5eddb702010-09-11 13:48:45 +01004005
Zhenyu Wang32f9d652009-07-24 01:00:32 +08004006 /* Wait for the clocks to stabilize. */
Chris Wilson5eddb702010-09-11 13:48:45 +01004007 POSTING_READ(dpll_reg);
Zhenyu Wang32f9d652009-07-24 01:00:32 +08004008 udelay(150);
Jesse Barnes79e53942008-11-07 14:24:08 -08004009 }
Jesse Barnes79e53942008-11-07 14:24:08 -08004010
Chris Wilson5eddb702010-09-11 13:48:45 +01004011 intel_crtc->lowfreq_avail = false;
Jesse Barnes652c3932009-08-17 13:31:43 -07004012 if (is_lvds && has_reduced_clock && i915_powersave) {
4013 I915_WRITE(fp_reg + 4, fp2);
4014 intel_crtc->lowfreq_avail = true;
4015 if (HAS_PIPE_CXSR(dev)) {
Zhao Yakui28c97732009-10-09 11:39:41 +08004016 DRM_DEBUG_KMS("enabling CxSR downclocking\n");
Jesse Barnes652c3932009-08-17 13:31:43 -07004017 pipeconf |= PIPECONF_CXSR_DOWNCLOCK;
4018 }
4019 } else {
4020 I915_WRITE(fp_reg + 4, fp);
Jesse Barnes652c3932009-08-17 13:31:43 -07004021 if (HAS_PIPE_CXSR(dev)) {
Zhao Yakui28c97732009-10-09 11:39:41 +08004022 DRM_DEBUG_KMS("disabling CxSR downclocking\n");
Jesse Barnes652c3932009-08-17 13:31:43 -07004023 pipeconf &= ~PIPECONF_CXSR_DOWNCLOCK;
4024 }
4025 }
4026
Krzysztof Halasa734b4152010-05-25 18:41:46 +02004027 if (adjusted_mode->flags & DRM_MODE_FLAG_INTERLACE) {
4028 pipeconf |= PIPECONF_INTERLACE_W_FIELD_INDICATION;
4029 /* the chip adds 2 halflines automatically */
4030 adjusted_mode->crtc_vdisplay -= 1;
4031 adjusted_mode->crtc_vtotal -= 1;
4032 adjusted_mode->crtc_vblank_start -= 1;
4033 adjusted_mode->crtc_vblank_end -= 1;
4034 adjusted_mode->crtc_vsync_end -= 1;
4035 adjusted_mode->crtc_vsync_start -= 1;
4036 } else
4037 pipeconf &= ~PIPECONF_INTERLACE_W_FIELD_INDICATION; /* progressive */
4038
Chris Wilson5eddb702010-09-11 13:48:45 +01004039 I915_WRITE(HTOTAL(pipe),
4040 (adjusted_mode->crtc_hdisplay - 1) |
Jesse Barnes79e53942008-11-07 14:24:08 -08004041 ((adjusted_mode->crtc_htotal - 1) << 16));
Chris Wilson5eddb702010-09-11 13:48:45 +01004042 I915_WRITE(HBLANK(pipe),
4043 (adjusted_mode->crtc_hblank_start - 1) |
Jesse Barnes79e53942008-11-07 14:24:08 -08004044 ((adjusted_mode->crtc_hblank_end - 1) << 16));
Chris Wilson5eddb702010-09-11 13:48:45 +01004045 I915_WRITE(HSYNC(pipe),
4046 (adjusted_mode->crtc_hsync_start - 1) |
Jesse Barnes79e53942008-11-07 14:24:08 -08004047 ((adjusted_mode->crtc_hsync_end - 1) << 16));
Chris Wilson5eddb702010-09-11 13:48:45 +01004048
4049 I915_WRITE(VTOTAL(pipe),
4050 (adjusted_mode->crtc_vdisplay - 1) |
Jesse Barnes79e53942008-11-07 14:24:08 -08004051 ((adjusted_mode->crtc_vtotal - 1) << 16));
Chris Wilson5eddb702010-09-11 13:48:45 +01004052 I915_WRITE(VBLANK(pipe),
4053 (adjusted_mode->crtc_vblank_start - 1) |
Jesse Barnes79e53942008-11-07 14:24:08 -08004054 ((adjusted_mode->crtc_vblank_end - 1) << 16));
Chris Wilson5eddb702010-09-11 13:48:45 +01004055 I915_WRITE(VSYNC(pipe),
4056 (adjusted_mode->crtc_vsync_start - 1) |
Jesse Barnes79e53942008-11-07 14:24:08 -08004057 ((adjusted_mode->crtc_vsync_end - 1) << 16));
Chris Wilson5eddb702010-09-11 13:48:45 +01004058
4059 /* pipesrc and dspsize control the size that is scaled from,
4060 * which should always be the user's requested size.
Jesse Barnes79e53942008-11-07 14:24:08 -08004061 */
Eric Anholtbad720f2009-10-22 16:11:14 -07004062 if (!HAS_PCH_SPLIT(dev)) {
Chris Wilson5eddb702010-09-11 13:48:45 +01004063 I915_WRITE(DSPSIZE(plane),
4064 ((mode->vdisplay - 1) << 16) |
4065 (mode->hdisplay - 1));
4066 I915_WRITE(DSPPOS(plane), 0);
Zhenyu Wang2c072452009-06-05 15:38:42 +08004067 }
Chris Wilson5eddb702010-09-11 13:48:45 +01004068 I915_WRITE(PIPESRC(pipe),
4069 ((mode->hdisplay - 1) << 16) | (mode->vdisplay - 1));
Zhenyu Wang2c072452009-06-05 15:38:42 +08004070
Eric Anholtbad720f2009-10-22 16:11:14 -07004071 if (HAS_PCH_SPLIT(dev)) {
Chris Wilson5eddb702010-09-11 13:48:45 +01004072 I915_WRITE(PIPE_DATA_M1(pipe), TU_SIZE(m_n.tu) | m_n.gmch_m);
4073 I915_WRITE(PIPE_DATA_N1(pipe), m_n.gmch_n);
4074 I915_WRITE(PIPE_LINK_M1(pipe), m_n.link_m);
4075 I915_WRITE(PIPE_LINK_N1(pipe), m_n.link_n);
Zhenyu Wang2c072452009-06-05 15:38:42 +08004076
Chris Wilson8e647a22010-08-22 10:54:23 +01004077 if (has_edp_encoder) {
Adam Jacksonf2b115e2009-12-03 17:14:42 -05004078 ironlake_set_pll_edp(crtc, adjusted_mode->clock);
Zhenyu Wang32f9d652009-07-24 01:00:32 +08004079 } else {
4080 /* enable FDI RX PLL too */
Chris Wilson5eddb702010-09-11 13:48:45 +01004081 reg = FDI_RX_CTL(pipe);
4082 temp = I915_READ(reg);
4083 I915_WRITE(reg, temp | FDI_RX_PLL_ENABLE);
4084
4085 POSTING_READ(reg);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08004086 udelay(200);
4087
4088 /* enable FDI TX PLL too */
Chris Wilson5eddb702010-09-11 13:48:45 +01004089 reg = FDI_TX_CTL(pipe);
4090 temp = I915_READ(reg);
4091 I915_WRITE(reg, temp | FDI_TX_PLL_ENABLE);
Zhenyu Wang8db9d77b2010-04-07 16:15:54 +08004092
4093 /* enable FDI RX PCDCLK */
Chris Wilson5eddb702010-09-11 13:48:45 +01004094 reg = FDI_RX_CTL(pipe);
4095 temp = I915_READ(reg);
4096 I915_WRITE(reg, temp | FDI_PCDCLK);
4097
4098 POSTING_READ(reg);
Zhenyu Wang32f9d652009-07-24 01:00:32 +08004099 udelay(200);
4100 }
Zhenyu Wang2c072452009-06-05 15:38:42 +08004101 }
4102
Chris Wilson5eddb702010-09-11 13:48:45 +01004103 I915_WRITE(PIPECONF(pipe), pipeconf);
4104 POSTING_READ(PIPECONF(pipe));
Jesse Barnes79e53942008-11-07 14:24:08 -08004105
Jesse Barnes9d0498a2010-08-18 13:20:54 -07004106 intel_wait_for_vblank(dev, pipe);
Jesse Barnes79e53942008-11-07 14:24:08 -08004107
Eric Anholtc2416fc2009-11-05 15:30:35 -08004108 if (IS_IRONLAKE(dev)) {
Zhenyu Wang553bd142009-09-02 10:57:52 +08004109 /* enable address swizzle for tiling buffer */
4110 temp = I915_READ(DISP_ARB_CTL);
4111 I915_WRITE(DISP_ARB_CTL, temp | DISP_TILE_SURFACE_SWIZZLING);
4112 }
4113
Chris Wilson5eddb702010-09-11 13:48:45 +01004114 I915_WRITE(DSPCNTR(plane), dspcntr);
Jesse Barnes79e53942008-11-07 14:24:08 -08004115
Chris Wilson5c3b82e2009-02-11 13:25:09 +00004116 ret = intel_pipe_set_base(crtc, x, y, old_fb);
Shaohua Li7662c8b2009-06-26 11:23:55 +08004117
4118 intel_update_watermarks(dev);
4119
Jesse Barnes79e53942008-11-07 14:24:08 -08004120 drm_vblank_post_modeset(dev, pipe);
Chris Wilson5c3b82e2009-02-11 13:25:09 +00004121
Chris Wilson1f803ee2009-06-06 09:45:59 +01004122 return ret;
Jesse Barnes79e53942008-11-07 14:24:08 -08004123}
4124
4125/** Loads the palette/gamma unit for the CRTC with the prepared values */
4126void intel_crtc_load_lut(struct drm_crtc *crtc)
4127{
4128 struct drm_device *dev = crtc->dev;
4129 struct drm_i915_private *dev_priv = dev->dev_private;
4130 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4131 int palreg = (intel_crtc->pipe == 0) ? PALETTE_A : PALETTE_B;
4132 int i;
4133
4134 /* The clocks have to be on to load the palette. */
4135 if (!crtc->enabled)
4136 return;
4137
Adam Jacksonf2b115e2009-12-03 17:14:42 -05004138 /* use legacy palette for Ironlake */
Eric Anholtbad720f2009-10-22 16:11:14 -07004139 if (HAS_PCH_SPLIT(dev))
Zhenyu Wang2c072452009-06-05 15:38:42 +08004140 palreg = (intel_crtc->pipe == 0) ? LGC_PALETTE_A :
4141 LGC_PALETTE_B;
4142
Jesse Barnes79e53942008-11-07 14:24:08 -08004143 for (i = 0; i < 256; i++) {
4144 I915_WRITE(palreg + 4 * i,
4145 (intel_crtc->lut_r[i] << 16) |
4146 (intel_crtc->lut_g[i] << 8) |
4147 intel_crtc->lut_b[i]);
4148 }
4149}
4150
Chris Wilson560b85b2010-08-07 11:01:38 +01004151static void i845_update_cursor(struct drm_crtc *crtc, u32 base)
4152{
4153 struct drm_device *dev = crtc->dev;
4154 struct drm_i915_private *dev_priv = dev->dev_private;
4155 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4156 bool visible = base != 0;
4157 u32 cntl;
4158
4159 if (intel_crtc->cursor_visible == visible)
4160 return;
4161
4162 cntl = I915_READ(CURACNTR);
4163 if (visible) {
4164 /* On these chipsets we can only modify the base whilst
4165 * the cursor is disabled.
4166 */
4167 I915_WRITE(CURABASE, base);
4168
4169 cntl &= ~(CURSOR_FORMAT_MASK);
4170 /* XXX width must be 64, stride 256 => 0x00 << 28 */
4171 cntl |= CURSOR_ENABLE |
4172 CURSOR_GAMMA_ENABLE |
4173 CURSOR_FORMAT_ARGB;
4174 } else
4175 cntl &= ~(CURSOR_ENABLE | CURSOR_GAMMA_ENABLE);
4176 I915_WRITE(CURACNTR, cntl);
4177
4178 intel_crtc->cursor_visible = visible;
4179}
4180
4181static void i9xx_update_cursor(struct drm_crtc *crtc, u32 base)
4182{
4183 struct drm_device *dev = crtc->dev;
4184 struct drm_i915_private *dev_priv = dev->dev_private;
4185 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4186 int pipe = intel_crtc->pipe;
4187 bool visible = base != 0;
4188
4189 if (intel_crtc->cursor_visible != visible) {
4190 uint32_t cntl = I915_READ(pipe == 0 ? CURACNTR : CURBCNTR);
4191 if (base) {
4192 cntl &= ~(CURSOR_MODE | MCURSOR_PIPE_SELECT);
4193 cntl |= CURSOR_MODE_64_ARGB_AX | MCURSOR_GAMMA_ENABLE;
4194 cntl |= pipe << 28; /* Connect to correct pipe */
4195 } else {
4196 cntl &= ~(CURSOR_MODE | MCURSOR_GAMMA_ENABLE);
4197 cntl |= CURSOR_MODE_DISABLE;
4198 }
4199 I915_WRITE(pipe == 0 ? CURACNTR : CURBCNTR, cntl);
4200
4201 intel_crtc->cursor_visible = visible;
4202 }
4203 /* and commit changes on next vblank */
4204 I915_WRITE(pipe == 0 ? CURABASE : CURBBASE, base);
4205}
4206
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004207/* If no-part of the cursor is visible on the framebuffer, then the GPU may hang... */
Chris Wilson6b383a72010-09-13 13:54:26 +01004208static void intel_crtc_update_cursor(struct drm_crtc *crtc,
4209 bool on)
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004210{
4211 struct drm_device *dev = crtc->dev;
4212 struct drm_i915_private *dev_priv = dev->dev_private;
4213 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4214 int pipe = intel_crtc->pipe;
4215 int x = intel_crtc->cursor_x;
4216 int y = intel_crtc->cursor_y;
Chris Wilson560b85b2010-08-07 11:01:38 +01004217 u32 base, pos;
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004218 bool visible;
4219
4220 pos = 0;
4221
Chris Wilson6b383a72010-09-13 13:54:26 +01004222 if (on && crtc->enabled && crtc->fb) {
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004223 base = intel_crtc->cursor_addr;
4224 if (x > (int) crtc->fb->width)
4225 base = 0;
4226
4227 if (y > (int) crtc->fb->height)
4228 base = 0;
4229 } else
4230 base = 0;
4231
4232 if (x < 0) {
4233 if (x + intel_crtc->cursor_width < 0)
4234 base = 0;
4235
4236 pos |= CURSOR_POS_SIGN << CURSOR_X_SHIFT;
4237 x = -x;
4238 }
4239 pos |= x << CURSOR_X_SHIFT;
4240
4241 if (y < 0) {
4242 if (y + intel_crtc->cursor_height < 0)
4243 base = 0;
4244
4245 pos |= CURSOR_POS_SIGN << CURSOR_Y_SHIFT;
4246 y = -y;
4247 }
4248 pos |= y << CURSOR_Y_SHIFT;
4249
4250 visible = base != 0;
Chris Wilson560b85b2010-08-07 11:01:38 +01004251 if (!visible && !intel_crtc->cursor_visible)
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004252 return;
4253
4254 I915_WRITE(pipe == 0 ? CURAPOS : CURBPOS, pos);
Chris Wilson560b85b2010-08-07 11:01:38 +01004255 if (IS_845G(dev) || IS_I865G(dev))
4256 i845_update_cursor(crtc, base);
4257 else
4258 i9xx_update_cursor(crtc, base);
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004259
4260 if (visible)
4261 intel_mark_busy(dev, to_intel_framebuffer(crtc->fb)->obj);
4262}
4263
Jesse Barnes79e53942008-11-07 14:24:08 -08004264static int intel_crtc_cursor_set(struct drm_crtc *crtc,
4265 struct drm_file *file_priv,
4266 uint32_t handle,
4267 uint32_t width, uint32_t height)
4268{
4269 struct drm_device *dev = crtc->dev;
4270 struct drm_i915_private *dev_priv = dev->dev_private;
4271 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4272 struct drm_gem_object *bo;
4273 struct drm_i915_gem_object *obj_priv;
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004274 uint32_t addr;
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004275 int ret;
Jesse Barnes79e53942008-11-07 14:24:08 -08004276
Zhao Yakui28c97732009-10-09 11:39:41 +08004277 DRM_DEBUG_KMS("\n");
Jesse Barnes79e53942008-11-07 14:24:08 -08004278
4279 /* if we want to turn off the cursor ignore width and height */
4280 if (!handle) {
Zhao Yakui28c97732009-10-09 11:39:41 +08004281 DRM_DEBUG_KMS("cursor off\n");
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004282 addr = 0;
4283 bo = NULL;
Pierre Willenbrock50044172009-02-23 10:12:15 +10004284 mutex_lock(&dev->struct_mutex);
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004285 goto finish;
Jesse Barnes79e53942008-11-07 14:24:08 -08004286 }
4287
4288 /* Currently we only support 64x64 cursors */
4289 if (width != 64 || height != 64) {
4290 DRM_ERROR("we currently only support 64x64 cursors\n");
4291 return -EINVAL;
4292 }
4293
4294 bo = drm_gem_object_lookup(dev, file_priv, handle);
4295 if (!bo)
4296 return -ENOENT;
4297
Daniel Vetter23010e42010-03-08 13:35:02 +01004298 obj_priv = to_intel_bo(bo);
Jesse Barnes79e53942008-11-07 14:24:08 -08004299
4300 if (bo->size < width * height * 4) {
4301 DRM_ERROR("buffer is to small\n");
Dave Airlie34b8686e2009-01-15 14:03:07 +10004302 ret = -ENOMEM;
4303 goto fail;
Jesse Barnes79e53942008-11-07 14:24:08 -08004304 }
4305
Dave Airlie71acb5e2008-12-30 20:31:46 +10004306 /* we only need to pin inside GTT if cursor is non-phy */
Kristian Høgsberg7f9872e2009-02-13 20:56:49 -05004307 mutex_lock(&dev->struct_mutex);
Kristian Høgsbergb295d1b2009-12-16 15:16:17 -05004308 if (!dev_priv->info->cursor_needs_physical) {
Dave Airlie71acb5e2008-12-30 20:31:46 +10004309 ret = i915_gem_object_pin(bo, PAGE_SIZE);
4310 if (ret) {
4311 DRM_ERROR("failed to pin cursor bo\n");
Kristian Høgsberg7f9872e2009-02-13 20:56:49 -05004312 goto fail_locked;
Dave Airlie71acb5e2008-12-30 20:31:46 +10004313 }
Chris Wilsone7b526b2010-06-02 08:30:48 +01004314
4315 ret = i915_gem_object_set_to_gtt_domain(bo, 0);
4316 if (ret) {
4317 DRM_ERROR("failed to move cursor bo into the GTT\n");
4318 goto fail_unpin;
4319 }
4320
Jesse Barnes79e53942008-11-07 14:24:08 -08004321 addr = obj_priv->gtt_offset;
Dave Airlie71acb5e2008-12-30 20:31:46 +10004322 } else {
Chris Wilson6eeefaf2010-08-07 11:01:39 +01004323 int align = IS_I830(dev) ? 16 * 1024 : 256;
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004324 ret = i915_gem_attach_phys_object(dev, bo,
Chris Wilson6eeefaf2010-08-07 11:01:39 +01004325 (intel_crtc->pipe == 0) ? I915_GEM_PHYS_CURSOR_0 : I915_GEM_PHYS_CURSOR_1,
4326 align);
Dave Airlie71acb5e2008-12-30 20:31:46 +10004327 if (ret) {
4328 DRM_ERROR("failed to attach phys object\n");
Kristian Høgsberg7f9872e2009-02-13 20:56:49 -05004329 goto fail_locked;
Dave Airlie71acb5e2008-12-30 20:31:46 +10004330 }
4331 addr = obj_priv->phys_obj->handle->busaddr;
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004332 }
4333
Jesse Barnes14b60392009-05-20 16:47:08 -04004334 if (!IS_I9XX(dev))
4335 I915_WRITE(CURSIZE, (height << 12) | width);
4336
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004337 finish:
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004338 if (intel_crtc->cursor_bo) {
Kristian Høgsbergb295d1b2009-12-16 15:16:17 -05004339 if (dev_priv->info->cursor_needs_physical) {
Dave Airlie71acb5e2008-12-30 20:31:46 +10004340 if (intel_crtc->cursor_bo != bo)
4341 i915_gem_detach_phys_object(dev, intel_crtc->cursor_bo);
4342 } else
4343 i915_gem_object_unpin(intel_crtc->cursor_bo);
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004344 drm_gem_object_unreference(intel_crtc->cursor_bo);
4345 }
Jesse Barnes80824002009-09-10 15:28:06 -07004346
Kristian Høgsberg7f9872e2009-02-13 20:56:49 -05004347 mutex_unlock(&dev->struct_mutex);
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004348
4349 intel_crtc->cursor_addr = addr;
4350 intel_crtc->cursor_bo = bo;
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004351 intel_crtc->cursor_width = width;
4352 intel_crtc->cursor_height = height;
4353
Chris Wilson6b383a72010-09-13 13:54:26 +01004354 intel_crtc_update_cursor(crtc, true);
Kristian Høgsberg3f8bc372008-12-17 22:14:59 -05004355
Jesse Barnes79e53942008-11-07 14:24:08 -08004356 return 0;
Chris Wilsone7b526b2010-06-02 08:30:48 +01004357fail_unpin:
4358 i915_gem_object_unpin(bo);
Kristian Høgsberg7f9872e2009-02-13 20:56:49 -05004359fail_locked:
Dave Airlie34b8686e2009-01-15 14:03:07 +10004360 mutex_unlock(&dev->struct_mutex);
Luca Barbieribc9025b2010-02-09 05:49:12 +00004361fail:
4362 drm_gem_object_unreference_unlocked(bo);
Dave Airlie34b8686e2009-01-15 14:03:07 +10004363 return ret;
Jesse Barnes79e53942008-11-07 14:24:08 -08004364}
4365
4366static int intel_crtc_cursor_move(struct drm_crtc *crtc, int x, int y)
4367{
Jesse Barnes79e53942008-11-07 14:24:08 -08004368 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Jesse Barnes79e53942008-11-07 14:24:08 -08004369
Chris Wilsoncda4b7d2010-07-09 08:45:04 +01004370 intel_crtc->cursor_x = x;
4371 intel_crtc->cursor_y = y;
Jesse Barnes652c3932009-08-17 13:31:43 -07004372
Chris Wilson6b383a72010-09-13 13:54:26 +01004373 intel_crtc_update_cursor(crtc, true);
Jesse Barnes79e53942008-11-07 14:24:08 -08004374
4375 return 0;
4376}
4377
4378/** Sets the color ramps on behalf of RandR */
4379void intel_crtc_fb_gamma_set(struct drm_crtc *crtc, u16 red, u16 green,
4380 u16 blue, int regno)
4381{
4382 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4383
4384 intel_crtc->lut_r[regno] = red >> 8;
4385 intel_crtc->lut_g[regno] = green >> 8;
4386 intel_crtc->lut_b[regno] = blue >> 8;
4387}
4388
Dave Airlieb8c00ac2009-10-06 13:54:01 +10004389void intel_crtc_fb_gamma_get(struct drm_crtc *crtc, u16 *red, u16 *green,
4390 u16 *blue, int regno)
4391{
4392 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4393
4394 *red = intel_crtc->lut_r[regno] << 8;
4395 *green = intel_crtc->lut_g[regno] << 8;
4396 *blue = intel_crtc->lut_b[regno] << 8;
4397}
4398
Jesse Barnes79e53942008-11-07 14:24:08 -08004399static void intel_crtc_gamma_set(struct drm_crtc *crtc, u16 *red, u16 *green,
James Simmons72034252010-08-03 01:33:19 +01004400 u16 *blue, uint32_t start, uint32_t size)
Jesse Barnes79e53942008-11-07 14:24:08 -08004401{
James Simmons72034252010-08-03 01:33:19 +01004402 int end = (start + size > 256) ? 256 : start + size, i;
Jesse Barnes79e53942008-11-07 14:24:08 -08004403 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Jesse Barnes79e53942008-11-07 14:24:08 -08004404
James Simmons72034252010-08-03 01:33:19 +01004405 for (i = start; i < end; i++) {
Jesse Barnes79e53942008-11-07 14:24:08 -08004406 intel_crtc->lut_r[i] = red[i] >> 8;
4407 intel_crtc->lut_g[i] = green[i] >> 8;
4408 intel_crtc->lut_b[i] = blue[i] >> 8;
4409 }
4410
4411 intel_crtc_load_lut(crtc);
4412}
4413
4414/**
4415 * Get a pipe with a simple mode set on it for doing load-based monitor
4416 * detection.
4417 *
4418 * It will be up to the load-detect code to adjust the pipe as appropriate for
Eric Anholtc751ce42010-03-25 11:48:48 -07004419 * its requirements. The pipe will be connected to no other encoders.
Jesse Barnes79e53942008-11-07 14:24:08 -08004420 *
Eric Anholtc751ce42010-03-25 11:48:48 -07004421 * Currently this code will only succeed if there is a pipe with no encoders
Jesse Barnes79e53942008-11-07 14:24:08 -08004422 * configured for it. In the future, it could choose to temporarily disable
4423 * some outputs to free up a pipe for its use.
4424 *
4425 * \return crtc, or NULL if no pipes are available.
4426 */
4427
4428/* VESA 640x480x72Hz mode to set on the pipe */
4429static struct drm_display_mode load_detect_mode = {
4430 DRM_MODE("640x480", DRM_MODE_TYPE_DEFAULT, 31500, 640, 664,
4431 704, 832, 0, 480, 489, 491, 520, 0, DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_NVSYNC),
4432};
4433
Eric Anholt21d40d32010-03-25 11:11:14 -07004434struct drm_crtc *intel_get_load_detect_pipe(struct intel_encoder *intel_encoder,
Zhenyu Wangc1c43972010-03-30 14:39:30 +08004435 struct drm_connector *connector,
Jesse Barnes79e53942008-11-07 14:24:08 -08004436 struct drm_display_mode *mode,
4437 int *dpms_mode)
4438{
4439 struct intel_crtc *intel_crtc;
4440 struct drm_crtc *possible_crtc;
4441 struct drm_crtc *supported_crtc =NULL;
Chris Wilson4ef69c72010-09-09 15:14:28 +01004442 struct drm_encoder *encoder = &intel_encoder->base;
Jesse Barnes79e53942008-11-07 14:24:08 -08004443 struct drm_crtc *crtc = NULL;
4444 struct drm_device *dev = encoder->dev;
4445 struct drm_encoder_helper_funcs *encoder_funcs = encoder->helper_private;
4446 struct drm_crtc_helper_funcs *crtc_funcs;
4447 int i = -1;
4448
4449 /*
4450 * Algorithm gets a little messy:
4451 * - if the connector already has an assigned crtc, use it (but make
4452 * sure it's on first)
4453 * - try to find the first unused crtc that can drive this connector,
4454 * and use that if we find one
4455 * - if there are no unused crtcs available, try to use the first
4456 * one we found that supports the connector
4457 */
4458
4459 /* See if we already have a CRTC for this connector */
4460 if (encoder->crtc) {
4461 crtc = encoder->crtc;
4462 /* Make sure the crtc and connector are running */
4463 intel_crtc = to_intel_crtc(crtc);
4464 *dpms_mode = intel_crtc->dpms_mode;
4465 if (intel_crtc->dpms_mode != DRM_MODE_DPMS_ON) {
4466 crtc_funcs = crtc->helper_private;
4467 crtc_funcs->dpms(crtc, DRM_MODE_DPMS_ON);
4468 encoder_funcs->dpms(encoder, DRM_MODE_DPMS_ON);
4469 }
4470 return crtc;
4471 }
4472
4473 /* Find an unused one (if possible) */
4474 list_for_each_entry(possible_crtc, &dev->mode_config.crtc_list, head) {
4475 i++;
4476 if (!(encoder->possible_crtcs & (1 << i)))
4477 continue;
4478 if (!possible_crtc->enabled) {
4479 crtc = possible_crtc;
4480 break;
4481 }
4482 if (!supported_crtc)
4483 supported_crtc = possible_crtc;
4484 }
4485
4486 /*
4487 * If we didn't find an unused CRTC, don't use any.
4488 */
4489 if (!crtc) {
4490 return NULL;
4491 }
4492
4493 encoder->crtc = crtc;
Zhenyu Wangc1c43972010-03-30 14:39:30 +08004494 connector->encoder = encoder;
Eric Anholt21d40d32010-03-25 11:11:14 -07004495 intel_encoder->load_detect_temp = true;
Jesse Barnes79e53942008-11-07 14:24:08 -08004496
4497 intel_crtc = to_intel_crtc(crtc);
4498 *dpms_mode = intel_crtc->dpms_mode;
4499
4500 if (!crtc->enabled) {
4501 if (!mode)
4502 mode = &load_detect_mode;
Kristian Høgsberg3c4fdcf2008-12-17 22:14:46 -05004503 drm_crtc_helper_set_mode(crtc, mode, 0, 0, crtc->fb);
Jesse Barnes79e53942008-11-07 14:24:08 -08004504 } else {
4505 if (intel_crtc->dpms_mode != DRM_MODE_DPMS_ON) {
4506 crtc_funcs = crtc->helper_private;
4507 crtc_funcs->dpms(crtc, DRM_MODE_DPMS_ON);
4508 }
4509
4510 /* Add this connector to the crtc */
4511 encoder_funcs->mode_set(encoder, &crtc->mode, &crtc->mode);
4512 encoder_funcs->commit(encoder);
4513 }
4514 /* let the connector get through one full cycle before testing */
Jesse Barnes9d0498a2010-08-18 13:20:54 -07004515 intel_wait_for_vblank(dev, intel_crtc->pipe);
Jesse Barnes79e53942008-11-07 14:24:08 -08004516
4517 return crtc;
4518}
4519
Zhenyu Wangc1c43972010-03-30 14:39:30 +08004520void intel_release_load_detect_pipe(struct intel_encoder *intel_encoder,
4521 struct drm_connector *connector, int dpms_mode)
Jesse Barnes79e53942008-11-07 14:24:08 -08004522{
Chris Wilson4ef69c72010-09-09 15:14:28 +01004523 struct drm_encoder *encoder = &intel_encoder->base;
Jesse Barnes79e53942008-11-07 14:24:08 -08004524 struct drm_device *dev = encoder->dev;
4525 struct drm_crtc *crtc = encoder->crtc;
4526 struct drm_encoder_helper_funcs *encoder_funcs = encoder->helper_private;
4527 struct drm_crtc_helper_funcs *crtc_funcs = crtc->helper_private;
4528
Eric Anholt21d40d32010-03-25 11:11:14 -07004529 if (intel_encoder->load_detect_temp) {
Jesse Barnes79e53942008-11-07 14:24:08 -08004530 encoder->crtc = NULL;
Zhenyu Wangc1c43972010-03-30 14:39:30 +08004531 connector->encoder = NULL;
Eric Anholt21d40d32010-03-25 11:11:14 -07004532 intel_encoder->load_detect_temp = false;
Jesse Barnes79e53942008-11-07 14:24:08 -08004533 crtc->enabled = drm_helper_crtc_in_use(crtc);
4534 drm_helper_disable_unused_functions(dev);
4535 }
4536
Eric Anholtc751ce42010-03-25 11:48:48 -07004537 /* Switch crtc and encoder back off if necessary */
Jesse Barnes79e53942008-11-07 14:24:08 -08004538 if (crtc->enabled && dpms_mode != DRM_MODE_DPMS_ON) {
4539 if (encoder->crtc == crtc)
4540 encoder_funcs->dpms(encoder, dpms_mode);
4541 crtc_funcs->dpms(crtc, dpms_mode);
4542 }
4543}
4544
4545/* Returns the clock of the currently programmed mode of the given pipe. */
4546static int intel_crtc_clock_get(struct drm_device *dev, struct drm_crtc *crtc)
4547{
4548 struct drm_i915_private *dev_priv = dev->dev_private;
4549 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4550 int pipe = intel_crtc->pipe;
4551 u32 dpll = I915_READ((pipe == 0) ? DPLL_A : DPLL_B);
4552 u32 fp;
4553 intel_clock_t clock;
4554
4555 if ((dpll & DISPLAY_RATE_SELECT_FPA1) == 0)
4556 fp = I915_READ((pipe == 0) ? FPA0 : FPB0);
4557 else
4558 fp = I915_READ((pipe == 0) ? FPA1 : FPB1);
4559
4560 clock.m1 = (fp & FP_M1_DIV_MASK) >> FP_M1_DIV_SHIFT;
Adam Jacksonf2b115e2009-12-03 17:14:42 -05004561 if (IS_PINEVIEW(dev)) {
4562 clock.n = ffs((fp & FP_N_PINEVIEW_DIV_MASK) >> FP_N_DIV_SHIFT) - 1;
4563 clock.m2 = (fp & FP_M2_PINEVIEW_DIV_MASK) >> FP_M2_DIV_SHIFT;
Shaohua Li21778322009-02-23 15:19:16 +08004564 } else {
4565 clock.n = (fp & FP_N_DIV_MASK) >> FP_N_DIV_SHIFT;
4566 clock.m2 = (fp & FP_M2_DIV_MASK) >> FP_M2_DIV_SHIFT;
4567 }
4568
Jesse Barnes79e53942008-11-07 14:24:08 -08004569 if (IS_I9XX(dev)) {
Adam Jacksonf2b115e2009-12-03 17:14:42 -05004570 if (IS_PINEVIEW(dev))
4571 clock.p1 = ffs((dpll & DPLL_FPA01_P1_POST_DIV_MASK_PINEVIEW) >>
4572 DPLL_FPA01_P1_POST_DIV_SHIFT_PINEVIEW);
Shaohua Li21778322009-02-23 15:19:16 +08004573 else
4574 clock.p1 = ffs((dpll & DPLL_FPA01_P1_POST_DIV_MASK) >>
Jesse Barnes79e53942008-11-07 14:24:08 -08004575 DPLL_FPA01_P1_POST_DIV_SHIFT);
4576
4577 switch (dpll & DPLL_MODE_MASK) {
4578 case DPLLB_MODE_DAC_SERIAL:
4579 clock.p2 = dpll & DPLL_DAC_SERIAL_P2_CLOCK_DIV_5 ?
4580 5 : 10;
4581 break;
4582 case DPLLB_MODE_LVDS:
4583 clock.p2 = dpll & DPLLB_LVDS_P2_CLOCK_DIV_7 ?
4584 7 : 14;
4585 break;
4586 default:
Zhao Yakui28c97732009-10-09 11:39:41 +08004587 DRM_DEBUG_KMS("Unknown DPLL mode %08x in programmed "
Jesse Barnes79e53942008-11-07 14:24:08 -08004588 "mode\n", (int)(dpll & DPLL_MODE_MASK));
4589 return 0;
4590 }
4591
4592 /* XXX: Handle the 100Mhz refclk */
Shaohua Li21778322009-02-23 15:19:16 +08004593 intel_clock(dev, 96000, &clock);
Jesse Barnes79e53942008-11-07 14:24:08 -08004594 } else {
4595 bool is_lvds = (pipe == 1) && (I915_READ(LVDS) & LVDS_PORT_EN);
4596
4597 if (is_lvds) {
4598 clock.p1 = ffs((dpll & DPLL_FPA01_P1_POST_DIV_MASK_I830_LVDS) >>
4599 DPLL_FPA01_P1_POST_DIV_SHIFT);
4600 clock.p2 = 14;
4601
4602 if ((dpll & PLL_REF_INPUT_MASK) ==
4603 PLLB_REF_INPUT_SPREADSPECTRUMIN) {
4604 /* XXX: might not be 66MHz */
Shaohua Li21778322009-02-23 15:19:16 +08004605 intel_clock(dev, 66000, &clock);
Jesse Barnes79e53942008-11-07 14:24:08 -08004606 } else
Shaohua Li21778322009-02-23 15:19:16 +08004607 intel_clock(dev, 48000, &clock);
Jesse Barnes79e53942008-11-07 14:24:08 -08004608 } else {
4609 if (dpll & PLL_P1_DIVIDE_BY_TWO)
4610 clock.p1 = 2;
4611 else {
4612 clock.p1 = ((dpll & DPLL_FPA01_P1_POST_DIV_MASK_I830) >>
4613 DPLL_FPA01_P1_POST_DIV_SHIFT) + 2;
4614 }
4615 if (dpll & PLL_P2_DIVIDE_BY_4)
4616 clock.p2 = 4;
4617 else
4618 clock.p2 = 2;
4619
Shaohua Li21778322009-02-23 15:19:16 +08004620 intel_clock(dev, 48000, &clock);
Jesse Barnes79e53942008-11-07 14:24:08 -08004621 }
4622 }
4623
4624 /* XXX: It would be nice to validate the clocks, but we can't reuse
4625 * i830PllIsValid() because it relies on the xf86_config connector
4626 * configuration being accurate, which it isn't necessarily.
4627 */
4628
4629 return clock.dot;
4630}
4631
4632/** Returns the currently programmed mode of the given pipe. */
4633struct drm_display_mode *intel_crtc_mode_get(struct drm_device *dev,
4634 struct drm_crtc *crtc)
4635{
4636 struct drm_i915_private *dev_priv = dev->dev_private;
4637 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4638 int pipe = intel_crtc->pipe;
4639 struct drm_display_mode *mode;
4640 int htot = I915_READ((pipe == 0) ? HTOTAL_A : HTOTAL_B);
4641 int hsync = I915_READ((pipe == 0) ? HSYNC_A : HSYNC_B);
4642 int vtot = I915_READ((pipe == 0) ? VTOTAL_A : VTOTAL_B);
4643 int vsync = I915_READ((pipe == 0) ? VSYNC_A : VSYNC_B);
4644
4645 mode = kzalloc(sizeof(*mode), GFP_KERNEL);
4646 if (!mode)
4647 return NULL;
4648
4649 mode->clock = intel_crtc_clock_get(dev, crtc);
4650 mode->hdisplay = (htot & 0xffff) + 1;
4651 mode->htotal = ((htot & 0xffff0000) >> 16) + 1;
4652 mode->hsync_start = (hsync & 0xffff) + 1;
4653 mode->hsync_end = ((hsync & 0xffff0000) >> 16) + 1;
4654 mode->vdisplay = (vtot & 0xffff) + 1;
4655 mode->vtotal = ((vtot & 0xffff0000) >> 16) + 1;
4656 mode->vsync_start = (vsync & 0xffff) + 1;
4657 mode->vsync_end = ((vsync & 0xffff0000) >> 16) + 1;
4658
4659 drm_mode_set_name(mode);
4660 drm_mode_set_crtcinfo(mode, 0);
4661
4662 return mode;
4663}
4664
Jesse Barnes652c3932009-08-17 13:31:43 -07004665#define GPU_IDLE_TIMEOUT 500 /* ms */
4666
4667/* When this timer fires, we've been idle for awhile */
4668static void intel_gpu_idle_timer(unsigned long arg)
4669{
4670 struct drm_device *dev = (struct drm_device *)arg;
4671 drm_i915_private_t *dev_priv = dev->dev_private;
4672
Zhao Yakui44d98a62009-10-09 11:39:40 +08004673 DRM_DEBUG_DRIVER("idle timer fired, downclocking\n");
Jesse Barnes652c3932009-08-17 13:31:43 -07004674
4675 dev_priv->busy = false;
4676
Eric Anholt01dfba92009-09-06 15:18:53 -07004677 queue_work(dev_priv->wq, &dev_priv->idle_work);
Jesse Barnes652c3932009-08-17 13:31:43 -07004678}
4679
Jesse Barnes652c3932009-08-17 13:31:43 -07004680#define CRTC_IDLE_TIMEOUT 1000 /* ms */
4681
4682static void intel_crtc_idle_timer(unsigned long arg)
4683{
4684 struct intel_crtc *intel_crtc = (struct intel_crtc *)arg;
4685 struct drm_crtc *crtc = &intel_crtc->base;
4686 drm_i915_private_t *dev_priv = crtc->dev->dev_private;
4687
Zhao Yakui44d98a62009-10-09 11:39:40 +08004688 DRM_DEBUG_DRIVER("idle timer fired, downclocking\n");
Jesse Barnes652c3932009-08-17 13:31:43 -07004689
4690 intel_crtc->busy = false;
4691
Eric Anholt01dfba92009-09-06 15:18:53 -07004692 queue_work(dev_priv->wq, &dev_priv->idle_work);
Jesse Barnes652c3932009-08-17 13:31:43 -07004693}
4694
Daniel Vetter3dec0092010-08-20 21:40:52 +02004695static void intel_increase_pllclock(struct drm_crtc *crtc)
Jesse Barnes652c3932009-08-17 13:31:43 -07004696{
4697 struct drm_device *dev = crtc->dev;
4698 drm_i915_private_t *dev_priv = dev->dev_private;
4699 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4700 int pipe = intel_crtc->pipe;
4701 int dpll_reg = (pipe == 0) ? DPLL_A : DPLL_B;
4702 int dpll = I915_READ(dpll_reg);
4703
Eric Anholtbad720f2009-10-22 16:11:14 -07004704 if (HAS_PCH_SPLIT(dev))
Jesse Barnes652c3932009-08-17 13:31:43 -07004705 return;
4706
4707 if (!dev_priv->lvds_downclock_avail)
4708 return;
4709
4710 if (!HAS_PIPE_CXSR(dev) && (dpll & DISPLAY_RATE_SELECT_FPA1)) {
Zhao Yakui44d98a62009-10-09 11:39:40 +08004711 DRM_DEBUG_DRIVER("upclocking LVDS\n");
Jesse Barnes652c3932009-08-17 13:31:43 -07004712
4713 /* Unlock panel regs */
Jesse Barnes4a655f02010-07-22 13:18:18 -07004714 I915_WRITE(PP_CONTROL, I915_READ(PP_CONTROL) |
4715 PANEL_UNLOCK_REGS);
Jesse Barnes652c3932009-08-17 13:31:43 -07004716
4717 dpll &= ~DISPLAY_RATE_SELECT_FPA1;
4718 I915_WRITE(dpll_reg, dpll);
4719 dpll = I915_READ(dpll_reg);
Jesse Barnes9d0498a2010-08-18 13:20:54 -07004720 intel_wait_for_vblank(dev, pipe);
Jesse Barnes652c3932009-08-17 13:31:43 -07004721 dpll = I915_READ(dpll_reg);
4722 if (dpll & DISPLAY_RATE_SELECT_FPA1)
Zhao Yakui44d98a62009-10-09 11:39:40 +08004723 DRM_DEBUG_DRIVER("failed to upclock LVDS!\n");
Jesse Barnes652c3932009-08-17 13:31:43 -07004724
4725 /* ...and lock them again */
4726 I915_WRITE(PP_CONTROL, I915_READ(PP_CONTROL) & 0x3);
4727 }
4728
4729 /* Schedule downclock */
Daniel Vetter3dec0092010-08-20 21:40:52 +02004730 mod_timer(&intel_crtc->idle_timer, jiffies +
4731 msecs_to_jiffies(CRTC_IDLE_TIMEOUT));
Jesse Barnes652c3932009-08-17 13:31:43 -07004732}
4733
4734static void intel_decrease_pllclock(struct drm_crtc *crtc)
4735{
4736 struct drm_device *dev = crtc->dev;
4737 drm_i915_private_t *dev_priv = dev->dev_private;
4738 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4739 int pipe = intel_crtc->pipe;
4740 int dpll_reg = (pipe == 0) ? DPLL_A : DPLL_B;
4741 int dpll = I915_READ(dpll_reg);
4742
Eric Anholtbad720f2009-10-22 16:11:14 -07004743 if (HAS_PCH_SPLIT(dev))
Jesse Barnes652c3932009-08-17 13:31:43 -07004744 return;
4745
4746 if (!dev_priv->lvds_downclock_avail)
4747 return;
4748
4749 /*
4750 * Since this is called by a timer, we should never get here in
4751 * the manual case.
4752 */
4753 if (!HAS_PIPE_CXSR(dev) && intel_crtc->lowfreq_avail) {
Zhao Yakui44d98a62009-10-09 11:39:40 +08004754 DRM_DEBUG_DRIVER("downclocking LVDS\n");
Jesse Barnes652c3932009-08-17 13:31:43 -07004755
4756 /* Unlock panel regs */
Jesse Barnes4a655f02010-07-22 13:18:18 -07004757 I915_WRITE(PP_CONTROL, I915_READ(PP_CONTROL) |
4758 PANEL_UNLOCK_REGS);
Jesse Barnes652c3932009-08-17 13:31:43 -07004759
4760 dpll |= DISPLAY_RATE_SELECT_FPA1;
4761 I915_WRITE(dpll_reg, dpll);
4762 dpll = I915_READ(dpll_reg);
Jesse Barnes9d0498a2010-08-18 13:20:54 -07004763 intel_wait_for_vblank(dev, pipe);
Jesse Barnes652c3932009-08-17 13:31:43 -07004764 dpll = I915_READ(dpll_reg);
4765 if (!(dpll & DISPLAY_RATE_SELECT_FPA1))
Zhao Yakui44d98a62009-10-09 11:39:40 +08004766 DRM_DEBUG_DRIVER("failed to downclock LVDS!\n");
Jesse Barnes652c3932009-08-17 13:31:43 -07004767
4768 /* ...and lock them again */
4769 I915_WRITE(PP_CONTROL, I915_READ(PP_CONTROL) & 0x3);
4770 }
4771
4772}
4773
4774/**
4775 * intel_idle_update - adjust clocks for idleness
4776 * @work: work struct
4777 *
4778 * Either the GPU or display (or both) went idle. Check the busy status
4779 * here and adjust the CRTC and GPU clocks as necessary.
4780 */
4781static void intel_idle_update(struct work_struct *work)
4782{
4783 drm_i915_private_t *dev_priv = container_of(work, drm_i915_private_t,
4784 idle_work);
4785 struct drm_device *dev = dev_priv->dev;
4786 struct drm_crtc *crtc;
4787 struct intel_crtc *intel_crtc;
Li Peng45ac22c2010-06-12 23:38:35 +08004788 int enabled = 0;
Jesse Barnes652c3932009-08-17 13:31:43 -07004789
4790 if (!i915_powersave)
4791 return;
4792
4793 mutex_lock(&dev->struct_mutex);
4794
Jesse Barnes7648fa92010-05-20 14:28:11 -07004795 i915_update_gfx_val(dev_priv);
4796
Jesse Barnes652c3932009-08-17 13:31:43 -07004797 list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
4798 /* Skip inactive CRTCs */
4799 if (!crtc->fb)
4800 continue;
4801
Li Peng45ac22c2010-06-12 23:38:35 +08004802 enabled++;
Jesse Barnes652c3932009-08-17 13:31:43 -07004803 intel_crtc = to_intel_crtc(crtc);
4804 if (!intel_crtc->busy)
4805 intel_decrease_pllclock(crtc);
4806 }
4807
Li Peng45ac22c2010-06-12 23:38:35 +08004808 if ((enabled == 1) && (IS_I945G(dev) || IS_I945GM(dev))) {
4809 DRM_DEBUG_DRIVER("enable memory self refresh on 945\n");
4810 I915_WRITE(FW_BLC_SELF, FW_BLC_SELF_EN_MASK | FW_BLC_SELF_EN);
4811 }
4812
Jesse Barnes652c3932009-08-17 13:31:43 -07004813 mutex_unlock(&dev->struct_mutex);
4814}
4815
4816/**
4817 * intel_mark_busy - mark the GPU and possibly the display busy
4818 * @dev: drm device
4819 * @obj: object we're operating on
4820 *
4821 * Callers can use this function to indicate that the GPU is busy processing
4822 * commands. If @obj matches one of the CRTC objects (i.e. it's a scanout
4823 * buffer), we'll also mark the display as busy, so we know to increase its
4824 * clock frequency.
4825 */
4826void intel_mark_busy(struct drm_device *dev, struct drm_gem_object *obj)
4827{
4828 drm_i915_private_t *dev_priv = dev->dev_private;
4829 struct drm_crtc *crtc = NULL;
4830 struct intel_framebuffer *intel_fb;
4831 struct intel_crtc *intel_crtc;
4832
Zhenyu Wang5e17ee72009-09-03 09:30:06 +08004833 if (!drm_core_check_feature(dev, DRIVER_MODESET))
4834 return;
4835
Li Peng060e6452010-02-10 01:54:24 +08004836 if (!dev_priv->busy) {
4837 if (IS_I945G(dev) || IS_I945GM(dev)) {
4838 u32 fw_blc_self;
Li Pengee980b82010-01-27 19:01:11 +08004839
Li Peng060e6452010-02-10 01:54:24 +08004840 DRM_DEBUG_DRIVER("disable memory self refresh on 945\n");
4841 fw_blc_self = I915_READ(FW_BLC_SELF);
4842 fw_blc_self &= ~FW_BLC_SELF_EN;
4843 I915_WRITE(FW_BLC_SELF, fw_blc_self | FW_BLC_SELF_EN_MASK);
4844 }
Chris Wilson28cf7982009-11-30 01:08:56 +00004845 dev_priv->busy = true;
Li Peng060e6452010-02-10 01:54:24 +08004846 } else
Chris Wilson28cf7982009-11-30 01:08:56 +00004847 mod_timer(&dev_priv->idle_timer, jiffies +
4848 msecs_to_jiffies(GPU_IDLE_TIMEOUT));
Jesse Barnes652c3932009-08-17 13:31:43 -07004849
4850 list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
4851 if (!crtc->fb)
4852 continue;
4853
4854 intel_crtc = to_intel_crtc(crtc);
4855 intel_fb = to_intel_framebuffer(crtc->fb);
4856 if (intel_fb->obj == obj) {
4857 if (!intel_crtc->busy) {
Li Peng060e6452010-02-10 01:54:24 +08004858 if (IS_I945G(dev) || IS_I945GM(dev)) {
4859 u32 fw_blc_self;
4860
4861 DRM_DEBUG_DRIVER("disable memory self refresh on 945\n");
4862 fw_blc_self = I915_READ(FW_BLC_SELF);
4863 fw_blc_self &= ~FW_BLC_SELF_EN;
4864 I915_WRITE(FW_BLC_SELF, fw_blc_self | FW_BLC_SELF_EN_MASK);
4865 }
Jesse Barnes652c3932009-08-17 13:31:43 -07004866 /* Non-busy -> busy, upclock */
Daniel Vetter3dec0092010-08-20 21:40:52 +02004867 intel_increase_pllclock(crtc);
Jesse Barnes652c3932009-08-17 13:31:43 -07004868 intel_crtc->busy = true;
4869 } else {
4870 /* Busy -> busy, put off timer */
4871 mod_timer(&intel_crtc->idle_timer, jiffies +
4872 msecs_to_jiffies(CRTC_IDLE_TIMEOUT));
4873 }
4874 }
4875 }
4876}
4877
Jesse Barnes79e53942008-11-07 14:24:08 -08004878static void intel_crtc_destroy(struct drm_crtc *crtc)
4879{
4880 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Daniel Vetter67e77c52010-08-20 22:26:30 +02004881 struct drm_device *dev = crtc->dev;
4882 struct intel_unpin_work *work;
4883 unsigned long flags;
4884
4885 spin_lock_irqsave(&dev->event_lock, flags);
4886 work = intel_crtc->unpin_work;
4887 intel_crtc->unpin_work = NULL;
4888 spin_unlock_irqrestore(&dev->event_lock, flags);
4889
4890 if (work) {
4891 cancel_work_sync(&work->work);
4892 kfree(work);
4893 }
Jesse Barnes79e53942008-11-07 14:24:08 -08004894
4895 drm_crtc_cleanup(crtc);
Daniel Vetter67e77c52010-08-20 22:26:30 +02004896
Jesse Barnes79e53942008-11-07 14:24:08 -08004897 kfree(intel_crtc);
4898}
4899
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05004900static void intel_unpin_work_fn(struct work_struct *__work)
4901{
4902 struct intel_unpin_work *work =
4903 container_of(__work, struct intel_unpin_work, work);
4904
4905 mutex_lock(&work->dev->struct_mutex);
Jesse Barnesb1b87f62010-01-26 14:40:05 -08004906 i915_gem_object_unpin(work->old_fb_obj);
Jesse Barnes75dfca80a2010-02-10 15:09:44 -08004907 drm_gem_object_unreference(work->pending_flip_obj);
Jesse Barnesb1b87f62010-01-26 14:40:05 -08004908 drm_gem_object_unreference(work->old_fb_obj);
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05004909 mutex_unlock(&work->dev->struct_mutex);
4910 kfree(work);
4911}
4912
Jesse Barnes1afe3e92010-03-26 10:35:20 -07004913static void do_intel_finish_page_flip(struct drm_device *dev,
4914 struct drm_crtc *crtc)
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05004915{
4916 drm_i915_private_t *dev_priv = dev->dev_private;
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05004917 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
4918 struct intel_unpin_work *work;
4919 struct drm_i915_gem_object *obj_priv;
4920 struct drm_pending_vblank_event *e;
4921 struct timeval now;
4922 unsigned long flags;
4923
4924 /* Ignore early vblank irqs */
4925 if (intel_crtc == NULL)
4926 return;
4927
4928 spin_lock_irqsave(&dev->event_lock, flags);
4929 work = intel_crtc->unpin_work;
4930 if (work == NULL || !work->pending) {
4931 spin_unlock_irqrestore(&dev->event_lock, flags);
4932 return;
4933 }
4934
4935 intel_crtc->unpin_work = NULL;
4936 drm_vblank_put(dev, intel_crtc->pipe);
4937
4938 if (work->event) {
4939 e = work->event;
4940 do_gettimeofday(&now);
4941 e->event.sequence = drm_vblank_count(dev, intel_crtc->pipe);
4942 e->event.tv_sec = now.tv_sec;
4943 e->event.tv_usec = now.tv_usec;
4944 list_add_tail(&e->base.link,
4945 &e->base.file_priv->event_list);
4946 wake_up_interruptible(&e->base.file_priv->event_wait);
4947 }
4948
4949 spin_unlock_irqrestore(&dev->event_lock, flags);
4950
Daniel Vetter23010e42010-03-08 13:35:02 +01004951 obj_priv = to_intel_bo(work->pending_flip_obj);
Jesse Barnesde3f4402010-01-14 13:18:02 -08004952
4953 /* Initial scanout buffer will have a 0 pending flip count */
4954 if ((atomic_read(&obj_priv->pending_flip) == 0) ||
4955 atomic_dec_and_test(&obj_priv->pending_flip))
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05004956 DRM_WAKEUP(&dev_priv->pending_flip_queue);
4957 schedule_work(&work->work);
Jesse Barnese5510fa2010-07-01 16:48:37 -07004958
4959 trace_i915_flip_complete(intel_crtc->plane, work->pending_flip_obj);
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05004960}
4961
Jesse Barnes1afe3e92010-03-26 10:35:20 -07004962void intel_finish_page_flip(struct drm_device *dev, int pipe)
4963{
4964 drm_i915_private_t *dev_priv = dev->dev_private;
4965 struct drm_crtc *crtc = dev_priv->pipe_to_crtc_mapping[pipe];
4966
4967 do_intel_finish_page_flip(dev, crtc);
4968}
4969
4970void intel_finish_page_flip_plane(struct drm_device *dev, int plane)
4971{
4972 drm_i915_private_t *dev_priv = dev->dev_private;
4973 struct drm_crtc *crtc = dev_priv->plane_to_crtc_mapping[plane];
4974
4975 do_intel_finish_page_flip(dev, crtc);
4976}
4977
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05004978void intel_prepare_page_flip(struct drm_device *dev, int plane)
4979{
4980 drm_i915_private_t *dev_priv = dev->dev_private;
4981 struct intel_crtc *intel_crtc =
4982 to_intel_crtc(dev_priv->plane_to_crtc_mapping[plane]);
4983 unsigned long flags;
4984
4985 spin_lock_irqsave(&dev->event_lock, flags);
Jesse Barnesde3f4402010-01-14 13:18:02 -08004986 if (intel_crtc->unpin_work) {
Simon Farnsworth4e5359c2010-09-01 17:47:52 +01004987 if ((++intel_crtc->unpin_work->pending) > 1)
4988 DRM_ERROR("Prepared flip multiple times\n");
Jesse Barnesde3f4402010-01-14 13:18:02 -08004989 } else {
4990 DRM_DEBUG_DRIVER("preparing flip with no unpin work?\n");
4991 }
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05004992 spin_unlock_irqrestore(&dev->event_lock, flags);
4993}
4994
4995static int intel_crtc_page_flip(struct drm_crtc *crtc,
4996 struct drm_framebuffer *fb,
4997 struct drm_pending_vblank_event *event)
4998{
4999 struct drm_device *dev = crtc->dev;
5000 struct drm_i915_private *dev_priv = dev->dev_private;
5001 struct intel_framebuffer *intel_fb;
5002 struct drm_i915_gem_object *obj_priv;
5003 struct drm_gem_object *obj;
5004 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
5005 struct intel_unpin_work *work;
Jesse Barnesbe9a3db2010-07-23 12:03:37 -07005006 unsigned long flags, offset;
Chris Wilson52e68632010-08-08 10:15:59 +01005007 int pipe = intel_crtc->pipe;
5008 u32 pf, pipesrc;
5009 int ret;
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005010
5011 work = kzalloc(sizeof *work, GFP_KERNEL);
5012 if (work == NULL)
5013 return -ENOMEM;
5014
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005015 work->event = event;
5016 work->dev = crtc->dev;
5017 intel_fb = to_intel_framebuffer(crtc->fb);
Jesse Barnesb1b87f62010-01-26 14:40:05 -08005018 work->old_fb_obj = intel_fb->obj;
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005019 INIT_WORK(&work->work, intel_unpin_work_fn);
5020
5021 /* We borrow the event spin lock for protecting unpin_work */
5022 spin_lock_irqsave(&dev->event_lock, flags);
5023 if (intel_crtc->unpin_work) {
5024 spin_unlock_irqrestore(&dev->event_lock, flags);
5025 kfree(work);
Chris Wilson468f0b42010-05-27 13:18:13 +01005026
5027 DRM_DEBUG_DRIVER("flip queue: crtc already busy\n");
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005028 return -EBUSY;
5029 }
5030 intel_crtc->unpin_work = work;
5031 spin_unlock_irqrestore(&dev->event_lock, flags);
5032
5033 intel_fb = to_intel_framebuffer(fb);
5034 obj = intel_fb->obj;
5035
Chris Wilson468f0b42010-05-27 13:18:13 +01005036 mutex_lock(&dev->struct_mutex);
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005037 ret = intel_pin_and_fence_fb_obj(dev, obj);
Chris Wilson96b099f2010-06-07 14:03:04 +01005038 if (ret)
5039 goto cleanup_work;
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005040
Jesse Barnes75dfca80a2010-02-10 15:09:44 -08005041 /* Reference the objects for the scheduled work. */
Jesse Barnesb1b87f62010-01-26 14:40:05 -08005042 drm_gem_object_reference(work->old_fb_obj);
Jesse Barnes75dfca80a2010-02-10 15:09:44 -08005043 drm_gem_object_reference(obj);
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005044
5045 crtc->fb = fb;
Chris Wilson2dafb1e2010-06-07 14:03:05 +01005046 ret = i915_gem_object_flush_write_domain(obj);
5047 if (ret)
5048 goto cleanup_objs;
Chris Wilson96b099f2010-06-07 14:03:04 +01005049
5050 ret = drm_vblank_get(dev, intel_crtc->pipe);
5051 if (ret)
5052 goto cleanup_objs;
5053
Daniel Vetter23010e42010-03-08 13:35:02 +01005054 obj_priv = to_intel_bo(obj);
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005055 atomic_inc(&obj_priv->pending_flip);
Jesse Barnesb1b87f62010-01-26 14:40:05 -08005056 work->pending_flip_obj = obj;
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005057
Daniel Vetter6146b3d2010-08-04 21:22:10 +02005058 if (IS_GEN3(dev) || IS_GEN2(dev)) {
Chris Wilson52e68632010-08-08 10:15:59 +01005059 u32 flip_mask;
5060
5061 if (intel_crtc->plane)
5062 flip_mask = MI_WAIT_FOR_PLANE_B_FLIP;
5063 else
5064 flip_mask = MI_WAIT_FOR_PLANE_A_FLIP;
5065
Daniel Vetter6146b3d2010-08-04 21:22:10 +02005066 BEGIN_LP_RING(2);
5067 OUT_RING(MI_WAIT_FOR_EVENT | flip_mask);
5068 OUT_RING(0);
5069 ADVANCE_LP_RING();
5070 }
Jesse Barnes83f7fd02010-04-05 14:03:51 -07005071
Simon Farnsworth4e5359c2010-09-01 17:47:52 +01005072 work->enable_stall_check = true;
5073
Jesse Barnesbe9a3db2010-07-23 12:03:37 -07005074 /* Offset into the new buffer for cases of shared fbs between CRTCs */
Chris Wilson52e68632010-08-08 10:15:59 +01005075 offset = crtc->y * fb->pitch + crtc->x * fb->bits_per_pixel/8;
Jesse Barnesbe9a3db2010-07-23 12:03:37 -07005076
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005077 BEGIN_LP_RING(4);
Chris Wilson52e68632010-08-08 10:15:59 +01005078 switch(INTEL_INFO(dev)->gen) {
5079 case 2:
Jesse Barnes1afe3e92010-03-26 10:35:20 -07005080 OUT_RING(MI_DISPLAY_FLIP |
5081 MI_DISPLAY_FLIP_PLANE(intel_crtc->plane));
5082 OUT_RING(fb->pitch);
Chris Wilson52e68632010-08-08 10:15:59 +01005083 OUT_RING(obj_priv->gtt_offset + offset);
5084 OUT_RING(MI_NOOP);
5085 break;
5086
5087 case 3:
Jesse Barnes1afe3e92010-03-26 10:35:20 -07005088 OUT_RING(MI_DISPLAY_FLIP_I915 |
5089 MI_DISPLAY_FLIP_PLANE(intel_crtc->plane));
5090 OUT_RING(fb->pitch);
Chris Wilson52e68632010-08-08 10:15:59 +01005091 OUT_RING(obj_priv->gtt_offset + offset);
Jesse Barnes22fd0fa2009-12-02 13:42:53 -08005092 OUT_RING(MI_NOOP);
Chris Wilson52e68632010-08-08 10:15:59 +01005093 break;
5094
5095 case 4:
5096 case 5:
5097 /* i965+ uses the linear or tiled offsets from the
5098 * Display Registers (which do not change across a page-flip)
5099 * so we need only reprogram the base address.
5100 */
Daniel Vetter69d0b962010-08-04 21:22:09 +02005101 OUT_RING(MI_DISPLAY_FLIP |
5102 MI_DISPLAY_FLIP_PLANE(intel_crtc->plane));
5103 OUT_RING(fb->pitch);
Chris Wilson52e68632010-08-08 10:15:59 +01005104 OUT_RING(obj_priv->gtt_offset | obj_priv->tiling_mode);
5105
5106 /* XXX Enabling the panel-fitter across page-flip is so far
5107 * untested on non-native modes, so ignore it for now.
5108 * pf = I915_READ(pipe == 0 ? PFA_CTL_1 : PFB_CTL_1) & PF_ENABLE;
5109 */
5110 pf = 0;
5111 pipesrc = I915_READ(pipe == 0 ? PIPEASRC : PIPEBSRC) & 0x0fff0fff;
5112 OUT_RING(pf | pipesrc);
5113 break;
5114
5115 case 6:
5116 OUT_RING(MI_DISPLAY_FLIP |
5117 MI_DISPLAY_FLIP_PLANE(intel_crtc->plane));
5118 OUT_RING(fb->pitch | obj_priv->tiling_mode);
5119 OUT_RING(obj_priv->gtt_offset);
5120
5121 pf = I915_READ(pipe == 0 ? PFA_CTL_1 : PFB_CTL_1) & PF_ENABLE;
5122 pipesrc = I915_READ(pipe == 0 ? PIPEASRC : PIPEBSRC) & 0x0fff0fff;
5123 OUT_RING(pf | pipesrc);
5124 break;
Jesse Barnes22fd0fa2009-12-02 13:42:53 -08005125 }
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005126 ADVANCE_LP_RING();
5127
5128 mutex_unlock(&dev->struct_mutex);
5129
Jesse Barnese5510fa2010-07-01 16:48:37 -07005130 trace_i915_flip_request(intel_crtc->plane, obj);
5131
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005132 return 0;
Chris Wilson96b099f2010-06-07 14:03:04 +01005133
5134cleanup_objs:
5135 drm_gem_object_unreference(work->old_fb_obj);
5136 drm_gem_object_unreference(obj);
5137cleanup_work:
5138 mutex_unlock(&dev->struct_mutex);
5139
5140 spin_lock_irqsave(&dev->event_lock, flags);
5141 intel_crtc->unpin_work = NULL;
5142 spin_unlock_irqrestore(&dev->event_lock, flags);
5143
5144 kfree(work);
5145
5146 return ret;
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005147}
5148
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07005149static struct drm_crtc_helper_funcs intel_helper_funcs = {
Jesse Barnes79e53942008-11-07 14:24:08 -08005150 .dpms = intel_crtc_dpms,
5151 .mode_fixup = intel_crtc_mode_fixup,
5152 .mode_set = intel_crtc_mode_set,
5153 .mode_set_base = intel_pipe_set_base,
Jesse Barnes81255562010-08-02 12:07:50 -07005154 .mode_set_base_atomic = intel_pipe_set_base_atomic,
Dave Airlie068143d2009-10-05 09:58:02 +10005155 .load_lut = intel_crtc_load_lut,
Jesse Barnes79e53942008-11-07 14:24:08 -08005156};
5157
5158static const struct drm_crtc_funcs intel_crtc_funcs = {
5159 .cursor_set = intel_crtc_cursor_set,
5160 .cursor_move = intel_crtc_cursor_move,
5161 .gamma_set = intel_crtc_gamma_set,
5162 .set_config = drm_crtc_helper_set_config,
5163 .destroy = intel_crtc_destroy,
Kristian Høgsberg6b95a202009-11-18 11:25:18 -05005164 .page_flip = intel_crtc_page_flip,
Jesse Barnes79e53942008-11-07 14:24:08 -08005165};
5166
5167
Hannes Ederb358d0a2008-12-18 21:18:47 +01005168static void intel_crtc_init(struct drm_device *dev, int pipe)
Jesse Barnes79e53942008-11-07 14:24:08 -08005169{
Jesse Barnes22fd0fa2009-12-02 13:42:53 -08005170 drm_i915_private_t *dev_priv = dev->dev_private;
Jesse Barnes79e53942008-11-07 14:24:08 -08005171 struct intel_crtc *intel_crtc;
5172 int i;
5173
5174 intel_crtc = kzalloc(sizeof(struct intel_crtc) + (INTELFB_CONN_LIMIT * sizeof(struct drm_connector *)), GFP_KERNEL);
5175 if (intel_crtc == NULL)
5176 return;
5177
5178 drm_crtc_init(dev, &intel_crtc->base, &intel_crtc_funcs);
5179
5180 drm_mode_crtc_set_gamma_size(&intel_crtc->base, 256);
5181 intel_crtc->pipe = pipe;
Shaohua Li7662c8b2009-06-26 11:23:55 +08005182 intel_crtc->plane = pipe;
Jesse Barnes79e53942008-11-07 14:24:08 -08005183 for (i = 0; i < 256; i++) {
5184 intel_crtc->lut_r[i] = i;
5185 intel_crtc->lut_g[i] = i;
5186 intel_crtc->lut_b[i] = i;
5187 }
5188
Jesse Barnes80824002009-09-10 15:28:06 -07005189 /* Swap pipes & planes for FBC on pre-965 */
5190 intel_crtc->pipe = pipe;
5191 intel_crtc->plane = pipe;
5192 if (IS_MOBILE(dev) && (IS_I9XX(dev) && !IS_I965G(dev))) {
Zhao Yakui28c97732009-10-09 11:39:41 +08005193 DRM_DEBUG_KMS("swapping pipes & planes for FBC\n");
Jesse Barnes80824002009-09-10 15:28:06 -07005194 intel_crtc->plane = ((pipe == 0) ? 1 : 0);
5195 }
5196
Jesse Barnes22fd0fa2009-12-02 13:42:53 -08005197 BUG_ON(pipe >= ARRAY_SIZE(dev_priv->plane_to_crtc_mapping) ||
5198 dev_priv->plane_to_crtc_mapping[intel_crtc->plane] != NULL);
5199 dev_priv->plane_to_crtc_mapping[intel_crtc->plane] = &intel_crtc->base;
5200 dev_priv->pipe_to_crtc_mapping[intel_crtc->pipe] = &intel_crtc->base;
5201
Jesse Barnes79e53942008-11-07 14:24:08 -08005202 intel_crtc->cursor_addr = 0;
Chris Wilson032d2a02010-09-06 16:17:22 +01005203 intel_crtc->dpms_mode = -1;
Jesse Barnes7e7d76c2010-09-10 10:47:20 -07005204
5205 if (HAS_PCH_SPLIT(dev)) {
5206 intel_helper_funcs.prepare = ironlake_crtc_prepare;
5207 intel_helper_funcs.commit = ironlake_crtc_commit;
5208 } else {
5209 intel_helper_funcs.prepare = i9xx_crtc_prepare;
5210 intel_helper_funcs.commit = i9xx_crtc_commit;
5211 }
5212
Jesse Barnes79e53942008-11-07 14:24:08 -08005213 drm_crtc_helper_add(&intel_crtc->base, &intel_helper_funcs);
5214
Jesse Barnes652c3932009-08-17 13:31:43 -07005215 intel_crtc->busy = false;
5216
5217 setup_timer(&intel_crtc->idle_timer, intel_crtc_idle_timer,
5218 (unsigned long)intel_crtc);
Jesse Barnes79e53942008-11-07 14:24:08 -08005219}
5220
Carl Worth08d7b3d2009-04-29 14:43:54 -07005221int intel_get_pipe_from_crtc_id(struct drm_device *dev, void *data,
5222 struct drm_file *file_priv)
5223{
5224 drm_i915_private_t *dev_priv = dev->dev_private;
5225 struct drm_i915_get_pipe_from_crtc_id *pipe_from_crtc_id = data;
Daniel Vetterc05422d2009-08-11 16:05:30 +02005226 struct drm_mode_object *drmmode_obj;
5227 struct intel_crtc *crtc;
Carl Worth08d7b3d2009-04-29 14:43:54 -07005228
5229 if (!dev_priv) {
5230 DRM_ERROR("called with no initialization\n");
5231 return -EINVAL;
5232 }
5233
Daniel Vetterc05422d2009-08-11 16:05:30 +02005234 drmmode_obj = drm_mode_object_find(dev, pipe_from_crtc_id->crtc_id,
5235 DRM_MODE_OBJECT_CRTC);
Carl Worth08d7b3d2009-04-29 14:43:54 -07005236
Daniel Vetterc05422d2009-08-11 16:05:30 +02005237 if (!drmmode_obj) {
Carl Worth08d7b3d2009-04-29 14:43:54 -07005238 DRM_ERROR("no such CRTC id\n");
5239 return -EINVAL;
5240 }
5241
Daniel Vetterc05422d2009-08-11 16:05:30 +02005242 crtc = to_intel_crtc(obj_to_crtc(drmmode_obj));
5243 pipe_from_crtc_id->pipe = crtc->pipe;
Carl Worth08d7b3d2009-04-29 14:43:54 -07005244
Daniel Vetterc05422d2009-08-11 16:05:30 +02005245 return 0;
Carl Worth08d7b3d2009-04-29 14:43:54 -07005246}
5247
Zhenyu Wangc5e4df32010-03-30 14:39:27 +08005248static int intel_encoder_clones(struct drm_device *dev, int type_mask)
Jesse Barnes79e53942008-11-07 14:24:08 -08005249{
Chris Wilson4ef69c72010-09-09 15:14:28 +01005250 struct intel_encoder *encoder;
Jesse Barnes79e53942008-11-07 14:24:08 -08005251 int index_mask = 0;
Jesse Barnes79e53942008-11-07 14:24:08 -08005252 int entry = 0;
5253
Chris Wilson4ef69c72010-09-09 15:14:28 +01005254 list_for_each_entry(encoder, &dev->mode_config.encoder_list, base.head) {
5255 if (type_mask & encoder->clone_mask)
Jesse Barnes79e53942008-11-07 14:24:08 -08005256 index_mask |= (1 << entry);
5257 entry++;
5258 }
Chris Wilson4ef69c72010-09-09 15:14:28 +01005259
Jesse Barnes79e53942008-11-07 14:24:08 -08005260 return index_mask;
5261}
5262
Jesse Barnes79e53942008-11-07 14:24:08 -08005263static void intel_setup_outputs(struct drm_device *dev)
5264{
Eric Anholt725e30a2009-01-22 13:01:02 -08005265 struct drm_i915_private *dev_priv = dev->dev_private;
Chris Wilson4ef69c72010-09-09 15:14:28 +01005266 struct intel_encoder *encoder;
Adam Jacksoncb0953d2010-07-16 14:46:29 -04005267 bool dpd_is_edp = false;
Jesse Barnes79e53942008-11-07 14:24:08 -08005268
Zhenyu Wang541998a2009-06-05 15:38:44 +08005269 if (IS_MOBILE(dev) && !IS_I830(dev))
Jesse Barnes79e53942008-11-07 14:24:08 -08005270 intel_lvds_init(dev);
5271
Eric Anholtbad720f2009-10-22 16:11:14 -07005272 if (HAS_PCH_SPLIT(dev)) {
Adam Jacksoncb0953d2010-07-16 14:46:29 -04005273 dpd_is_edp = intel_dpd_is_edp(dev);
Zhenyu Wang30ad48b2009-06-05 15:38:43 +08005274
Zhenyu Wang32f9d652009-07-24 01:00:32 +08005275 if (IS_MOBILE(dev) && (I915_READ(DP_A) & DP_DETECTED))
5276 intel_dp_init(dev, DP_A);
5277
Adam Jacksoncb0953d2010-07-16 14:46:29 -04005278 if (dpd_is_edp && (I915_READ(PCH_DP_D) & DP_DETECTED))
5279 intel_dp_init(dev, PCH_DP_D);
5280 }
5281
5282 intel_crt_init(dev);
5283
5284 if (HAS_PCH_SPLIT(dev)) {
5285 int found;
5286
Zhenyu Wang30ad48b2009-06-05 15:38:43 +08005287 if (I915_READ(HDMIB) & PORT_DETECTED) {
Zhao Yakui461ed3c2010-03-30 15:11:33 +08005288 /* PCH SDVOB multiplex with HDMIB */
5289 found = intel_sdvo_init(dev, PCH_SDVOB);
Zhenyu Wang30ad48b2009-06-05 15:38:43 +08005290 if (!found)
5291 intel_hdmi_init(dev, HDMIB);
Zhenyu Wang5eb08b62009-07-24 01:00:31 +08005292 if (!found && (I915_READ(PCH_DP_B) & DP_DETECTED))
5293 intel_dp_init(dev, PCH_DP_B);
Zhenyu Wang30ad48b2009-06-05 15:38:43 +08005294 }
5295
5296 if (I915_READ(HDMIC) & PORT_DETECTED)
5297 intel_hdmi_init(dev, HDMIC);
5298
5299 if (I915_READ(HDMID) & PORT_DETECTED)
5300 intel_hdmi_init(dev, HDMID);
5301
Zhenyu Wang5eb08b62009-07-24 01:00:31 +08005302 if (I915_READ(PCH_DP_C) & DP_DETECTED)
5303 intel_dp_init(dev, PCH_DP_C);
5304
Adam Jacksoncb0953d2010-07-16 14:46:29 -04005305 if (!dpd_is_edp && (I915_READ(PCH_DP_D) & DP_DETECTED))
Zhenyu Wang5eb08b62009-07-24 01:00:31 +08005306 intel_dp_init(dev, PCH_DP_D);
5307
Zhenyu Wang103a1962009-11-27 11:44:36 +08005308 } else if (SUPPORTS_DIGITAL_OUTPUTS(dev)) {
Ma Ling27185ae2009-08-24 13:50:23 +08005309 bool found = false;
Eric Anholt7d573822009-01-02 13:33:00 -08005310
Eric Anholt725e30a2009-01-22 13:01:02 -08005311 if (I915_READ(SDVOB) & SDVO_DETECTED) {
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005312 DRM_DEBUG_KMS("probing SDVOB\n");
Eric Anholt725e30a2009-01-22 13:01:02 -08005313 found = intel_sdvo_init(dev, SDVOB);
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005314 if (!found && SUPPORTS_INTEGRATED_HDMI(dev)) {
5315 DRM_DEBUG_KMS("probing HDMI on SDVOB\n");
Eric Anholt725e30a2009-01-22 13:01:02 -08005316 intel_hdmi_init(dev, SDVOB);
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005317 }
Ma Ling27185ae2009-08-24 13:50:23 +08005318
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005319 if (!found && SUPPORTS_INTEGRATED_DP(dev)) {
5320 DRM_DEBUG_KMS("probing DP_B\n");
Keith Packarda4fc5ed2009-04-07 16:16:42 -07005321 intel_dp_init(dev, DP_B);
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005322 }
Eric Anholt725e30a2009-01-22 13:01:02 -08005323 }
Kristian Høgsberg13520b02009-03-13 15:42:14 -04005324
5325 /* Before G4X SDVOC doesn't have its own detect register */
Kristian Høgsberg13520b02009-03-13 15:42:14 -04005326
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005327 if (I915_READ(SDVOB) & SDVO_DETECTED) {
5328 DRM_DEBUG_KMS("probing SDVOC\n");
Eric Anholt725e30a2009-01-22 13:01:02 -08005329 found = intel_sdvo_init(dev, SDVOC);
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005330 }
Ma Ling27185ae2009-08-24 13:50:23 +08005331
5332 if (!found && (I915_READ(SDVOC) & SDVO_DETECTED)) {
5333
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005334 if (SUPPORTS_INTEGRATED_HDMI(dev)) {
5335 DRM_DEBUG_KMS("probing HDMI on SDVOC\n");
Eric Anholt725e30a2009-01-22 13:01:02 -08005336 intel_hdmi_init(dev, SDVOC);
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005337 }
5338 if (SUPPORTS_INTEGRATED_DP(dev)) {
5339 DRM_DEBUG_KMS("probing DP_C\n");
Keith Packarda4fc5ed2009-04-07 16:16:42 -07005340 intel_dp_init(dev, DP_C);
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005341 }
Eric Anholt725e30a2009-01-22 13:01:02 -08005342 }
Ma Ling27185ae2009-08-24 13:50:23 +08005343
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005344 if (SUPPORTS_INTEGRATED_DP(dev) &&
5345 (I915_READ(DP_D) & DP_DETECTED)) {
5346 DRM_DEBUG_KMS("probing DP_D\n");
Keith Packarda4fc5ed2009-04-07 16:16:42 -07005347 intel_dp_init(dev, DP_D);
Jesse Barnesb01f2c32009-12-11 11:07:17 -08005348 }
Eric Anholtbad720f2009-10-22 16:11:14 -07005349 } else if (IS_GEN2(dev))
Jesse Barnes79e53942008-11-07 14:24:08 -08005350 intel_dvo_init(dev);
5351
Zhenyu Wang103a1962009-11-27 11:44:36 +08005352 if (SUPPORTS_TV(dev))
Jesse Barnes79e53942008-11-07 14:24:08 -08005353 intel_tv_init(dev);
5354
Chris Wilson4ef69c72010-09-09 15:14:28 +01005355 list_for_each_entry(encoder, &dev->mode_config.encoder_list, base.head) {
5356 encoder->base.possible_crtcs = encoder->crtc_mask;
5357 encoder->base.possible_clones =
5358 intel_encoder_clones(dev, encoder->clone_mask);
Jesse Barnes79e53942008-11-07 14:24:08 -08005359 }
5360}
5361
5362static void intel_user_framebuffer_destroy(struct drm_framebuffer *fb)
5363{
5364 struct intel_framebuffer *intel_fb = to_intel_framebuffer(fb);
Jesse Barnes79e53942008-11-07 14:24:08 -08005365
5366 drm_framebuffer_cleanup(fb);
Luca Barbieribc9025b2010-02-09 05:49:12 +00005367 drm_gem_object_unreference_unlocked(intel_fb->obj);
Jesse Barnes79e53942008-11-07 14:24:08 -08005368
5369 kfree(intel_fb);
5370}
5371
5372static int intel_user_framebuffer_create_handle(struct drm_framebuffer *fb,
5373 struct drm_file *file_priv,
5374 unsigned int *handle)
5375{
5376 struct intel_framebuffer *intel_fb = to_intel_framebuffer(fb);
5377 struct drm_gem_object *object = intel_fb->obj;
5378
5379 return drm_gem_handle_create(file_priv, object, handle);
5380}
5381
5382static const struct drm_framebuffer_funcs intel_fb_funcs = {
5383 .destroy = intel_user_framebuffer_destroy,
5384 .create_handle = intel_user_framebuffer_create_handle,
5385};
5386
Dave Airlie38651672010-03-30 05:34:13 +00005387int intel_framebuffer_init(struct drm_device *dev,
5388 struct intel_framebuffer *intel_fb,
5389 struct drm_mode_fb_cmd *mode_cmd,
5390 struct drm_gem_object *obj)
Jesse Barnes79e53942008-11-07 14:24:08 -08005391{
Chris Wilson57cd6502010-08-08 12:34:44 +01005392 struct drm_i915_gem_object *obj_priv = to_intel_bo(obj);
Jesse Barnes79e53942008-11-07 14:24:08 -08005393 int ret;
5394
Chris Wilson57cd6502010-08-08 12:34:44 +01005395 if (obj_priv->tiling_mode == I915_TILING_Y)
5396 return -EINVAL;
5397
5398 if (mode_cmd->pitch & 63)
5399 return -EINVAL;
5400
5401 switch (mode_cmd->bpp) {
5402 case 8:
5403 case 16:
5404 case 24:
5405 case 32:
5406 break;
5407 default:
5408 return -EINVAL;
5409 }
5410
Jesse Barnes79e53942008-11-07 14:24:08 -08005411 ret = drm_framebuffer_init(dev, &intel_fb->base, &intel_fb_funcs);
5412 if (ret) {
5413 DRM_ERROR("framebuffer init failed %d\n", ret);
5414 return ret;
5415 }
5416
5417 drm_helper_mode_fill_fb_struct(&intel_fb->base, mode_cmd);
Jesse Barnes79e53942008-11-07 14:24:08 -08005418 intel_fb->obj = obj;
Jesse Barnes79e53942008-11-07 14:24:08 -08005419 return 0;
5420}
5421
Jesse Barnes79e53942008-11-07 14:24:08 -08005422static struct drm_framebuffer *
5423intel_user_framebuffer_create(struct drm_device *dev,
5424 struct drm_file *filp,
5425 struct drm_mode_fb_cmd *mode_cmd)
5426{
5427 struct drm_gem_object *obj;
Dave Airlie38651672010-03-30 05:34:13 +00005428 struct intel_framebuffer *intel_fb;
Jesse Barnes79e53942008-11-07 14:24:08 -08005429 int ret;
5430
5431 obj = drm_gem_object_lookup(dev, filp, mode_cmd->handle);
5432 if (!obj)
Chris Wilsoncce13ff2010-08-08 13:36:38 +01005433 return ERR_PTR(-ENOENT);
Jesse Barnes79e53942008-11-07 14:24:08 -08005434
Dave Airlie38651672010-03-30 05:34:13 +00005435 intel_fb = kzalloc(sizeof(*intel_fb), GFP_KERNEL);
5436 if (!intel_fb)
Chris Wilsoncce13ff2010-08-08 13:36:38 +01005437 return ERR_PTR(-ENOMEM);
Dave Airlie38651672010-03-30 05:34:13 +00005438
5439 ret = intel_framebuffer_init(dev, intel_fb,
5440 mode_cmd, obj);
Jesse Barnes79e53942008-11-07 14:24:08 -08005441 if (ret) {
Luca Barbieribc9025b2010-02-09 05:49:12 +00005442 drm_gem_object_unreference_unlocked(obj);
Dave Airlie38651672010-03-30 05:34:13 +00005443 kfree(intel_fb);
Chris Wilsoncce13ff2010-08-08 13:36:38 +01005444 return ERR_PTR(ret);
Jesse Barnes79e53942008-11-07 14:24:08 -08005445 }
5446
Dave Airlie38651672010-03-30 05:34:13 +00005447 return &intel_fb->base;
Jesse Barnes79e53942008-11-07 14:24:08 -08005448}
5449
Jesse Barnes79e53942008-11-07 14:24:08 -08005450static const struct drm_mode_config_funcs intel_mode_funcs = {
Jesse Barnes79e53942008-11-07 14:24:08 -08005451 .fb_create = intel_user_framebuffer_create,
Dave Airlieeb1f8e42010-05-07 06:42:51 +00005452 .output_poll_changed = intel_fb_output_poll_changed,
Jesse Barnes79e53942008-11-07 14:24:08 -08005453};
5454
Chris Wilson9ea8d052010-01-04 18:57:56 +00005455static struct drm_gem_object *
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005456intel_alloc_context_page(struct drm_device *dev)
Chris Wilson9ea8d052010-01-04 18:57:56 +00005457{
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005458 struct drm_gem_object *ctx;
Chris Wilson9ea8d052010-01-04 18:57:56 +00005459 int ret;
5460
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005461 ctx = i915_gem_alloc_object(dev, 4096);
5462 if (!ctx) {
Chris Wilson9ea8d052010-01-04 18:57:56 +00005463 DRM_DEBUG("failed to alloc power context, RC6 disabled\n");
5464 return NULL;
5465 }
5466
5467 mutex_lock(&dev->struct_mutex);
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005468 ret = i915_gem_object_pin(ctx, 4096);
Chris Wilson9ea8d052010-01-04 18:57:56 +00005469 if (ret) {
5470 DRM_ERROR("failed to pin power context: %d\n", ret);
5471 goto err_unref;
5472 }
5473
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005474 ret = i915_gem_object_set_to_gtt_domain(ctx, 1);
Chris Wilson9ea8d052010-01-04 18:57:56 +00005475 if (ret) {
5476 DRM_ERROR("failed to set-domain on power context: %d\n", ret);
5477 goto err_unpin;
5478 }
5479 mutex_unlock(&dev->struct_mutex);
5480
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005481 return ctx;
Chris Wilson9ea8d052010-01-04 18:57:56 +00005482
5483err_unpin:
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005484 i915_gem_object_unpin(ctx);
Chris Wilson9ea8d052010-01-04 18:57:56 +00005485err_unref:
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005486 drm_gem_object_unreference(ctx);
Chris Wilson9ea8d052010-01-04 18:57:56 +00005487 mutex_unlock(&dev->struct_mutex);
5488 return NULL;
5489}
5490
Jesse Barnes7648fa92010-05-20 14:28:11 -07005491bool ironlake_set_drps(struct drm_device *dev, u8 val)
5492{
5493 struct drm_i915_private *dev_priv = dev->dev_private;
5494 u16 rgvswctl;
5495
5496 rgvswctl = I915_READ16(MEMSWCTL);
5497 if (rgvswctl & MEMCTL_CMD_STS) {
5498 DRM_DEBUG("gpu busy, RCS change rejected\n");
5499 return false; /* still busy with another command */
5500 }
5501
5502 rgvswctl = (MEMCTL_CMD_CHFREQ << MEMCTL_CMD_SHIFT) |
5503 (val << MEMCTL_FREQ_SHIFT) | MEMCTL_SFCAVM;
5504 I915_WRITE16(MEMSWCTL, rgvswctl);
5505 POSTING_READ16(MEMSWCTL);
5506
5507 rgvswctl |= MEMCTL_CMD_STS;
5508 I915_WRITE16(MEMSWCTL, rgvswctl);
5509
5510 return true;
5511}
5512
Jesse Barnesf97108d2010-01-29 11:27:07 -08005513void ironlake_enable_drps(struct drm_device *dev)
5514{
5515 struct drm_i915_private *dev_priv = dev->dev_private;
Jesse Barnes7648fa92010-05-20 14:28:11 -07005516 u32 rgvmodectl = I915_READ(MEMMODECTL);
Jesse Barnesf97108d2010-01-29 11:27:07 -08005517 u8 fmax, fmin, fstart, vstart;
Jesse Barnesf97108d2010-01-29 11:27:07 -08005518
Jesse Barnesea056c12010-09-10 10:02:13 -07005519 /* Enable temp reporting */
5520 I915_WRITE16(PMMISC, I915_READ(PMMISC) | MCPPCE_EN);
5521 I915_WRITE16(TSC1, I915_READ(TSC1) | TSE);
5522
Jesse Barnesf97108d2010-01-29 11:27:07 -08005523 /* 100ms RC evaluation intervals */
5524 I915_WRITE(RCUPEI, 100000);
5525 I915_WRITE(RCDNEI, 100000);
5526
5527 /* Set max/min thresholds to 90ms and 80ms respectively */
5528 I915_WRITE(RCBMAXAVG, 90000);
5529 I915_WRITE(RCBMINAVG, 80000);
5530
5531 I915_WRITE(MEMIHYST, 1);
5532
5533 /* Set up min, max, and cur for interrupt handling */
5534 fmax = (rgvmodectl & MEMMODE_FMAX_MASK) >> MEMMODE_FMAX_SHIFT;
5535 fmin = (rgvmodectl & MEMMODE_FMIN_MASK);
5536 fstart = (rgvmodectl & MEMMODE_FSTART_MASK) >>
5537 MEMMODE_FSTART_SHIFT;
Jesse Barnes7648fa92010-05-20 14:28:11 -07005538 fstart = fmax;
5539
Jesse Barnesf97108d2010-01-29 11:27:07 -08005540 vstart = (I915_READ(PXVFREQ_BASE + (fstart * 4)) & PXVFREQ_PX_MASK) >>
5541 PXVFREQ_PX_SHIFT;
5542
Jesse Barnes7648fa92010-05-20 14:28:11 -07005543 dev_priv->fmax = fstart; /* IPS callback will increase this */
5544 dev_priv->fstart = fstart;
5545
5546 dev_priv->max_delay = fmax;
Jesse Barnesf97108d2010-01-29 11:27:07 -08005547 dev_priv->min_delay = fmin;
5548 dev_priv->cur_delay = fstart;
5549
Jesse Barnes7648fa92010-05-20 14:28:11 -07005550 DRM_DEBUG_DRIVER("fmax: %d, fmin: %d, fstart: %d\n", fmax, fmin,
5551 fstart);
5552
Jesse Barnesf97108d2010-01-29 11:27:07 -08005553 I915_WRITE(MEMINTREN, MEMINT_CX_SUPR_EN | MEMINT_EVAL_CHG_EN);
5554
5555 /*
5556 * Interrupts will be enabled in ironlake_irq_postinstall
5557 */
5558
5559 I915_WRITE(VIDSTART, vstart);
5560 POSTING_READ(VIDSTART);
5561
5562 rgvmodectl |= MEMMODE_SWMODE_EN;
5563 I915_WRITE(MEMMODECTL, rgvmodectl);
5564
Chris Wilson481b6af2010-08-23 17:43:35 +01005565 if (wait_for((I915_READ(MEMSWCTL) & MEMCTL_CMD_STS) == 0, 10))
Chris Wilson913d8d12010-08-07 11:01:35 +01005566 DRM_ERROR("stuck trying to change perf mode\n");
Jesse Barnesf97108d2010-01-29 11:27:07 -08005567 msleep(1);
5568
Jesse Barnes7648fa92010-05-20 14:28:11 -07005569 ironlake_set_drps(dev, fstart);
Jesse Barnesf97108d2010-01-29 11:27:07 -08005570
Jesse Barnes7648fa92010-05-20 14:28:11 -07005571 dev_priv->last_count1 = I915_READ(0x112e4) + I915_READ(0x112e8) +
5572 I915_READ(0x112e0);
5573 dev_priv->last_time1 = jiffies_to_msecs(jiffies);
5574 dev_priv->last_count2 = I915_READ(0x112f4);
5575 getrawmonotonic(&dev_priv->last_time2);
Jesse Barnesf97108d2010-01-29 11:27:07 -08005576}
5577
5578void ironlake_disable_drps(struct drm_device *dev)
5579{
5580 struct drm_i915_private *dev_priv = dev->dev_private;
Jesse Barnes7648fa92010-05-20 14:28:11 -07005581 u16 rgvswctl = I915_READ16(MEMSWCTL);
Jesse Barnesf97108d2010-01-29 11:27:07 -08005582
5583 /* Ack interrupts, disable EFC interrupt */
5584 I915_WRITE(MEMINTREN, I915_READ(MEMINTREN) & ~MEMINT_EVAL_CHG_EN);
5585 I915_WRITE(MEMINTRSTS, MEMINT_EVAL_CHG);
5586 I915_WRITE(DEIER, I915_READ(DEIER) & ~DE_PCU_EVENT);
5587 I915_WRITE(DEIIR, DE_PCU_EVENT);
5588 I915_WRITE(DEIMR, I915_READ(DEIMR) | DE_PCU_EVENT);
5589
5590 /* Go back to the starting frequency */
Jesse Barnes7648fa92010-05-20 14:28:11 -07005591 ironlake_set_drps(dev, dev_priv->fstart);
Jesse Barnesf97108d2010-01-29 11:27:07 -08005592 msleep(1);
5593 rgvswctl |= MEMCTL_CMD_STS;
5594 I915_WRITE(MEMSWCTL, rgvswctl);
5595 msleep(1);
5596
5597}
5598
Jesse Barnes7648fa92010-05-20 14:28:11 -07005599static unsigned long intel_pxfreq(u32 vidfreq)
5600{
5601 unsigned long freq;
5602 int div = (vidfreq & 0x3f0000) >> 16;
5603 int post = (vidfreq & 0x3000) >> 12;
5604 int pre = (vidfreq & 0x7);
5605
5606 if (!pre)
5607 return 0;
5608
5609 freq = ((div * 133333) / ((1<<post) * pre));
5610
5611 return freq;
5612}
5613
5614void intel_init_emon(struct drm_device *dev)
5615{
5616 struct drm_i915_private *dev_priv = dev->dev_private;
5617 u32 lcfuse;
5618 u8 pxw[16];
5619 int i;
5620
5621 /* Disable to program */
5622 I915_WRITE(ECR, 0);
5623 POSTING_READ(ECR);
5624
5625 /* Program energy weights for various events */
5626 I915_WRITE(SDEW, 0x15040d00);
5627 I915_WRITE(CSIEW0, 0x007f0000);
5628 I915_WRITE(CSIEW1, 0x1e220004);
5629 I915_WRITE(CSIEW2, 0x04000004);
5630
5631 for (i = 0; i < 5; i++)
5632 I915_WRITE(PEW + (i * 4), 0);
5633 for (i = 0; i < 3; i++)
5634 I915_WRITE(DEW + (i * 4), 0);
5635
5636 /* Program P-state weights to account for frequency power adjustment */
5637 for (i = 0; i < 16; i++) {
5638 u32 pxvidfreq = I915_READ(PXVFREQ_BASE + (i * 4));
5639 unsigned long freq = intel_pxfreq(pxvidfreq);
5640 unsigned long vid = (pxvidfreq & PXVFREQ_PX_MASK) >>
5641 PXVFREQ_PX_SHIFT;
5642 unsigned long val;
5643
5644 val = vid * vid;
5645 val *= (freq / 1000);
5646 val *= 255;
5647 val /= (127*127*900);
5648 if (val > 0xff)
5649 DRM_ERROR("bad pxval: %ld\n", val);
5650 pxw[i] = val;
5651 }
5652 /* Render standby states get 0 weight */
5653 pxw[14] = 0;
5654 pxw[15] = 0;
5655
5656 for (i = 0; i < 4; i++) {
5657 u32 val = (pxw[i*4] << 24) | (pxw[(i*4)+1] << 16) |
5658 (pxw[(i*4)+2] << 8) | (pxw[(i*4)+3]);
5659 I915_WRITE(PXW + (i * 4), val);
5660 }
5661
5662 /* Adjust magic regs to magic values (more experimental results) */
5663 I915_WRITE(OGW0, 0);
5664 I915_WRITE(OGW1, 0);
5665 I915_WRITE(EG0, 0x00007f00);
5666 I915_WRITE(EG1, 0x0000000e);
5667 I915_WRITE(EG2, 0x000e0000);
5668 I915_WRITE(EG3, 0x68000300);
5669 I915_WRITE(EG4, 0x42000000);
5670 I915_WRITE(EG5, 0x00140031);
5671 I915_WRITE(EG6, 0);
5672 I915_WRITE(EG7, 0);
5673
5674 for (i = 0; i < 8; i++)
5675 I915_WRITE(PXWL + (i * 4), 0);
5676
5677 /* Enable PMON + select events */
5678 I915_WRITE(ECR, 0x80000019);
5679
5680 lcfuse = I915_READ(LCFUSE02);
5681
5682 dev_priv->corr = (lcfuse & LCFUSE_HIV_MASK);
5683}
5684
Jesse Barnes652c3932009-08-17 13:31:43 -07005685void intel_init_clock_gating(struct drm_device *dev)
5686{
5687 struct drm_i915_private *dev_priv = dev->dev_private;
5688
5689 /*
5690 * Disable clock gating reported to work incorrectly according to the
5691 * specs, but enable as much else as we can.
5692 */
Eric Anholtbad720f2009-10-22 16:11:14 -07005693 if (HAS_PCH_SPLIT(dev)) {
Eric Anholt8956c8b2010-03-18 13:21:14 -07005694 uint32_t dspclk_gate = VRHUNIT_CLOCK_GATE_DISABLE;
5695
5696 if (IS_IRONLAKE(dev)) {
5697 /* Required for FBC */
5698 dspclk_gate |= DPFDUNIT_CLOCK_GATE_DISABLE;
5699 /* Required for CxSR */
5700 dspclk_gate |= DPARBUNIT_CLOCK_GATE_DISABLE;
5701
5702 I915_WRITE(PCH_3DCGDIS0,
5703 MARIUNIT_CLOCK_GATE_DISABLE |
5704 SVSMUNIT_CLOCK_GATE_DISABLE);
5705 }
5706
5707 I915_WRITE(PCH_DSPCLK_GATE_D, dspclk_gate);
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08005708
5709 /*
5710 * According to the spec the following bits should be set in
5711 * order to enable memory self-refresh
5712 * The bit 22/21 of 0x42004
5713 * The bit 5 of 0x42020
5714 * The bit 15 of 0x45000
5715 */
5716 if (IS_IRONLAKE(dev)) {
5717 I915_WRITE(ILK_DISPLAY_CHICKEN2,
5718 (I915_READ(ILK_DISPLAY_CHICKEN2) |
5719 ILK_DPARB_GATE | ILK_VSDPFD_FULL));
5720 I915_WRITE(ILK_DSPCLK_GATE,
5721 (I915_READ(ILK_DSPCLK_GATE) |
5722 ILK_DPARB_CLK_GATE));
5723 I915_WRITE(DISP_ARB_CTL,
5724 (I915_READ(DISP_ARB_CTL) |
5725 DISP_FBC_WM_DIS));
Jesse Barnesdd8849c2010-09-09 11:58:02 -07005726 I915_WRITE(WM3_LP_ILK, 0);
5727 I915_WRITE(WM2_LP_ILK, 0);
5728 I915_WRITE(WM1_LP_ILK, 0);
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08005729 }
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08005730 /*
5731 * Based on the document from hardware guys the following bits
5732 * should be set unconditionally in order to enable FBC.
5733 * The bit 22 of 0x42000
5734 * The bit 22 of 0x42004
5735 * The bit 7,8,9 of 0x42020.
5736 */
5737 if (IS_IRONLAKE_M(dev)) {
5738 I915_WRITE(ILK_DISPLAY_CHICKEN1,
5739 I915_READ(ILK_DISPLAY_CHICKEN1) |
5740 ILK_FBCQ_DIS);
5741 I915_WRITE(ILK_DISPLAY_CHICKEN2,
5742 I915_READ(ILK_DISPLAY_CHICKEN2) |
5743 ILK_DPARB_GATE);
5744 I915_WRITE(ILK_DSPCLK_GATE,
5745 I915_READ(ILK_DSPCLK_GATE) |
5746 ILK_DPFC_DIS1 |
5747 ILK_DPFC_DIS2 |
5748 ILK_CLK_FBC);
5749 }
Chris Wilsonbc416062010-09-07 21:51:02 +01005750 return;
Zhenyu Wangc03342f2009-09-29 11:01:23 +08005751 } else if (IS_G4X(dev)) {
Jesse Barnes652c3932009-08-17 13:31:43 -07005752 uint32_t dspclk_gate;
5753 I915_WRITE(RENCLK_GATE_D1, 0);
5754 I915_WRITE(RENCLK_GATE_D2, VF_UNIT_CLOCK_GATE_DISABLE |
5755 GS_UNIT_CLOCK_GATE_DISABLE |
5756 CL_UNIT_CLOCK_GATE_DISABLE);
5757 I915_WRITE(RAMCLK_GATE_D, 0);
5758 dspclk_gate = VRHUNIT_CLOCK_GATE_DISABLE |
5759 OVRUNIT_CLOCK_GATE_DISABLE |
5760 OVCUNIT_CLOCK_GATE_DISABLE;
5761 if (IS_GM45(dev))
5762 dspclk_gate |= DSSUNIT_CLOCK_GATE_DISABLE;
5763 I915_WRITE(DSPCLK_GATE_D, dspclk_gate);
5764 } else if (IS_I965GM(dev)) {
5765 I915_WRITE(RENCLK_GATE_D1, I965_RCC_CLOCK_GATE_DISABLE);
5766 I915_WRITE(RENCLK_GATE_D2, 0);
5767 I915_WRITE(DSPCLK_GATE_D, 0);
5768 I915_WRITE(RAMCLK_GATE_D, 0);
5769 I915_WRITE16(DEUC, 0);
5770 } else if (IS_I965G(dev)) {
5771 I915_WRITE(RENCLK_GATE_D1, I965_RCZ_CLOCK_GATE_DISABLE |
5772 I965_RCC_CLOCK_GATE_DISABLE |
5773 I965_RCPB_CLOCK_GATE_DISABLE |
5774 I965_ISC_CLOCK_GATE_DISABLE |
5775 I965_FBC_CLOCK_GATE_DISABLE);
5776 I915_WRITE(RENCLK_GATE_D2, 0);
5777 } else if (IS_I9XX(dev)) {
5778 u32 dstate = I915_READ(D_STATE);
5779
5780 dstate |= DSTATE_PLL_D3_OFF | DSTATE_GFX_CLOCK_GATING |
5781 DSTATE_DOT_CLOCK_GATING;
5782 I915_WRITE(D_STATE, dstate);
Daniel Vetterf0f8a9c2009-09-15 22:57:33 +02005783 } else if (IS_I85X(dev) || IS_I865G(dev)) {
Jesse Barnes652c3932009-08-17 13:31:43 -07005784 I915_WRITE(RENCLK_GATE_D1, SV_CLOCK_GATE_DISABLE);
5785 } else if (IS_I830(dev)) {
5786 I915_WRITE(DSPCLK_GATE_D, OVRUNIT_CLOCK_GATE_DISABLE);
5787 }
Jesse Barnes97f5ab62009-10-08 10:16:48 -07005788
5789 /*
5790 * GPU can automatically power down the render unit if given a page
5791 * to save state.
5792 */
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005793 if (IS_IRONLAKE_M(dev)) {
5794 if (dev_priv->renderctx == NULL)
5795 dev_priv->renderctx = intel_alloc_context_page(dev);
5796 if (dev_priv->renderctx) {
5797 struct drm_i915_gem_object *obj_priv;
5798 obj_priv = to_intel_bo(dev_priv->renderctx);
5799 if (obj_priv) {
5800 BEGIN_LP_RING(4);
5801 OUT_RING(MI_SET_CONTEXT);
5802 OUT_RING(obj_priv->gtt_offset |
5803 MI_MM_SPACE_GTT |
5804 MI_SAVE_EXT_STATE_EN |
5805 MI_RESTORE_EXT_STATE_EN |
5806 MI_RESTORE_INHIBIT);
5807 OUT_RING(MI_NOOP);
5808 OUT_RING(MI_FLUSH);
5809 ADVANCE_LP_RING();
5810 }
Chris Wilsonbc416062010-09-07 21:51:02 +01005811 } else
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005812 DRM_DEBUG_KMS("Failed to allocate render context."
Chris Wilsonbc416062010-09-07 21:51:02 +01005813 "Disable RC6\n");
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005814 }
5815
Andrew Lutomirski1d3c36ad2009-12-21 10:10:22 -05005816 if (I915_HAS_RC6(dev) && drm_core_check_feature(dev, DRIVER_MODESET)) {
Chris Wilson9ea8d052010-01-04 18:57:56 +00005817 struct drm_i915_gem_object *obj_priv = NULL;
Jesse Barnes97f5ab62009-10-08 10:16:48 -07005818
Andrew Lutomirski7e8b60f2009-11-08 13:49:51 -05005819 if (dev_priv->pwrctx) {
Daniel Vetter23010e42010-03-08 13:35:02 +01005820 obj_priv = to_intel_bo(dev_priv->pwrctx);
Andrew Lutomirski7e8b60f2009-11-08 13:49:51 -05005821 } else {
Chris Wilson9ea8d052010-01-04 18:57:56 +00005822 struct drm_gem_object *pwrctx;
5823
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08005824 pwrctx = intel_alloc_context_page(dev);
Chris Wilson9ea8d052010-01-04 18:57:56 +00005825 if (pwrctx) {
5826 dev_priv->pwrctx = pwrctx;
Daniel Vetter23010e42010-03-08 13:35:02 +01005827 obj_priv = to_intel_bo(pwrctx);
Andrew Lutomirski7e8b60f2009-11-08 13:49:51 -05005828 }
Jesse Barnes97f5ab62009-10-08 10:16:48 -07005829 }
5830
Chris Wilson9ea8d052010-01-04 18:57:56 +00005831 if (obj_priv) {
5832 I915_WRITE(PWRCTXA, obj_priv->gtt_offset | PWRCTX_EN);
5833 I915_WRITE(MCHBAR_RENDER_STANDBY,
5834 I915_READ(MCHBAR_RENDER_STANDBY) & ~RCX_SW_EXIT);
5835 }
Jesse Barnes97f5ab62009-10-08 10:16:48 -07005836 }
Jesse Barnes652c3932009-08-17 13:31:43 -07005837}
5838
Jesse Barnese70236a2009-09-21 10:42:27 -07005839/* Set up chip specific display functions */
5840static void intel_init_display(struct drm_device *dev)
5841{
5842 struct drm_i915_private *dev_priv = dev->dev_private;
5843
5844 /* We always want a DPMS function */
Eric Anholtbad720f2009-10-22 16:11:14 -07005845 if (HAS_PCH_SPLIT(dev))
Adam Jacksonf2b115e2009-12-03 17:14:42 -05005846 dev_priv->display.dpms = ironlake_crtc_dpms;
Jesse Barnese70236a2009-09-21 10:42:27 -07005847 else
5848 dev_priv->display.dpms = i9xx_crtc_dpms;
5849
Adam Jacksonee5382a2010-04-23 11:17:39 -04005850 if (I915_HAS_FBC(dev)) {
Zhao Yakuib52eb4d2010-06-12 14:32:27 +08005851 if (IS_IRONLAKE_M(dev)) {
5852 dev_priv->display.fbc_enabled = ironlake_fbc_enabled;
5853 dev_priv->display.enable_fbc = ironlake_enable_fbc;
5854 dev_priv->display.disable_fbc = ironlake_disable_fbc;
5855 } else if (IS_GM45(dev)) {
Jesse Barnes74dff282009-09-14 15:39:40 -07005856 dev_priv->display.fbc_enabled = g4x_fbc_enabled;
5857 dev_priv->display.enable_fbc = g4x_enable_fbc;
5858 dev_priv->display.disable_fbc = g4x_disable_fbc;
Robert Hooker8d06a1e2010-03-19 15:13:27 -04005859 } else if (IS_I965GM(dev)) {
Jesse Barnese70236a2009-09-21 10:42:27 -07005860 dev_priv->display.fbc_enabled = i8xx_fbc_enabled;
5861 dev_priv->display.enable_fbc = i8xx_enable_fbc;
5862 dev_priv->display.disable_fbc = i8xx_disable_fbc;
5863 }
Jesse Barnes74dff282009-09-14 15:39:40 -07005864 /* 855GM needs testing */
Jesse Barnese70236a2009-09-21 10:42:27 -07005865 }
5866
5867 /* Returns the core display clock speed */
Adam Jacksonf2b115e2009-12-03 17:14:42 -05005868 if (IS_I945G(dev) || (IS_G33(dev) && ! IS_PINEVIEW_M(dev)))
Jesse Barnese70236a2009-09-21 10:42:27 -07005869 dev_priv->display.get_display_clock_speed =
5870 i945_get_display_clock_speed;
5871 else if (IS_I915G(dev))
5872 dev_priv->display.get_display_clock_speed =
5873 i915_get_display_clock_speed;
Adam Jacksonf2b115e2009-12-03 17:14:42 -05005874 else if (IS_I945GM(dev) || IS_845G(dev) || IS_PINEVIEW_M(dev))
Jesse Barnese70236a2009-09-21 10:42:27 -07005875 dev_priv->display.get_display_clock_speed =
5876 i9xx_misc_get_display_clock_speed;
5877 else if (IS_I915GM(dev))
5878 dev_priv->display.get_display_clock_speed =
5879 i915gm_get_display_clock_speed;
5880 else if (IS_I865G(dev))
5881 dev_priv->display.get_display_clock_speed =
5882 i865_get_display_clock_speed;
Daniel Vetterf0f8a9c2009-09-15 22:57:33 +02005883 else if (IS_I85X(dev))
Jesse Barnese70236a2009-09-21 10:42:27 -07005884 dev_priv->display.get_display_clock_speed =
5885 i855_get_display_clock_speed;
5886 else /* 852, 830 */
5887 dev_priv->display.get_display_clock_speed =
5888 i830_get_display_clock_speed;
5889
5890 /* For FIFO watermark updates */
Zhenyu Wang7f8a8562010-04-01 13:07:53 +08005891 if (HAS_PCH_SPLIT(dev)) {
5892 if (IS_IRONLAKE(dev)) {
5893 if (I915_READ(MLTR_ILK) & ILK_SRLT_MASK)
5894 dev_priv->display.update_wm = ironlake_update_wm;
5895 else {
5896 DRM_DEBUG_KMS("Failed to get proper latency. "
5897 "Disable CxSR\n");
5898 dev_priv->display.update_wm = NULL;
5899 }
5900 } else
5901 dev_priv->display.update_wm = NULL;
5902 } else if (IS_PINEVIEW(dev)) {
Zhao Yakuid4294342010-03-22 22:45:36 +08005903 if (!intel_get_cxsr_latency(IS_PINEVIEW_G(dev),
Li Peng95534262010-05-18 18:58:44 +08005904 dev_priv->is_ddr3,
Zhao Yakuid4294342010-03-22 22:45:36 +08005905 dev_priv->fsb_freq,
5906 dev_priv->mem_freq)) {
5907 DRM_INFO("failed to find known CxSR latency "
Li Peng95534262010-05-18 18:58:44 +08005908 "(found ddr%s fsb freq %d, mem freq %d), "
Zhao Yakuid4294342010-03-22 22:45:36 +08005909 "disabling CxSR\n",
Li Peng95534262010-05-18 18:58:44 +08005910 (dev_priv->is_ddr3 == 1) ? "3": "2",
Zhao Yakuid4294342010-03-22 22:45:36 +08005911 dev_priv->fsb_freq, dev_priv->mem_freq);
5912 /* Disable CxSR and never update its watermark again */
5913 pineview_disable_cxsr(dev);
5914 dev_priv->display.update_wm = NULL;
5915 } else
5916 dev_priv->display.update_wm = pineview_update_wm;
5917 } else if (IS_G4X(dev))
Jesse Barnese70236a2009-09-21 10:42:27 -07005918 dev_priv->display.update_wm = g4x_update_wm;
5919 else if (IS_I965G(dev))
5920 dev_priv->display.update_wm = i965_update_wm;
Adam Jackson8f4695e2010-04-16 18:20:57 -04005921 else if (IS_I9XX(dev)) {
Jesse Barnese70236a2009-09-21 10:42:27 -07005922 dev_priv->display.update_wm = i9xx_update_wm;
5923 dev_priv->display.get_fifo_size = i9xx_get_fifo_size;
Adam Jackson8f4695e2010-04-16 18:20:57 -04005924 } else if (IS_I85X(dev)) {
5925 dev_priv->display.update_wm = i9xx_update_wm;
5926 dev_priv->display.get_fifo_size = i85x_get_fifo_size;
Jesse Barnese70236a2009-09-21 10:42:27 -07005927 } else {
Adam Jackson8f4695e2010-04-16 18:20:57 -04005928 dev_priv->display.update_wm = i830_update_wm;
5929 if (IS_845G(dev))
Jesse Barnese70236a2009-09-21 10:42:27 -07005930 dev_priv->display.get_fifo_size = i845_get_fifo_size;
5931 else
5932 dev_priv->display.get_fifo_size = i830_get_fifo_size;
Jesse Barnese70236a2009-09-21 10:42:27 -07005933 }
5934}
5935
Jesse Barnesb690e962010-07-19 13:53:12 -07005936/*
5937 * Some BIOSes insist on assuming the GPU's pipe A is enabled at suspend,
5938 * resume, or other times. This quirk makes sure that's the case for
5939 * affected systems.
5940 */
5941static void quirk_pipea_force (struct drm_device *dev)
5942{
5943 struct drm_i915_private *dev_priv = dev->dev_private;
5944
5945 dev_priv->quirks |= QUIRK_PIPEA_FORCE;
5946 DRM_DEBUG_DRIVER("applying pipe a force quirk\n");
5947}
5948
5949struct intel_quirk {
5950 int device;
5951 int subsystem_vendor;
5952 int subsystem_device;
5953 void (*hook)(struct drm_device *dev);
5954};
5955
5956struct intel_quirk intel_quirks[] = {
5957 /* HP Compaq 2730p needs pipe A force quirk (LP: #291555) */
5958 { 0x2a42, 0x103c, 0x30eb, quirk_pipea_force },
5959 /* HP Mini needs pipe A force quirk (LP: #322104) */
5960 { 0x27ae,0x103c, 0x361a, quirk_pipea_force },
5961
5962 /* Thinkpad R31 needs pipe A force quirk */
5963 { 0x3577, 0x1014, 0x0505, quirk_pipea_force },
5964 /* Toshiba Protege R-205, S-209 needs pipe A force quirk */
5965 { 0x2592, 0x1179, 0x0001, quirk_pipea_force },
5966
5967 /* ThinkPad X30 needs pipe A force quirk (LP: #304614) */
5968 { 0x3577, 0x1014, 0x0513, quirk_pipea_force },
5969 /* ThinkPad X40 needs pipe A force quirk */
5970
5971 /* ThinkPad T60 needs pipe A force quirk (bug #16494) */
5972 { 0x2782, 0x17aa, 0x201a, quirk_pipea_force },
5973
5974 /* 855 & before need to leave pipe A & dpll A up */
5975 { 0x3582, PCI_ANY_ID, PCI_ANY_ID, quirk_pipea_force },
5976 { 0x2562, PCI_ANY_ID, PCI_ANY_ID, quirk_pipea_force },
5977};
5978
5979static void intel_init_quirks(struct drm_device *dev)
5980{
5981 struct pci_dev *d = dev->pdev;
5982 int i;
5983
5984 for (i = 0; i < ARRAY_SIZE(intel_quirks); i++) {
5985 struct intel_quirk *q = &intel_quirks[i];
5986
5987 if (d->device == q->device &&
5988 (d->subsystem_vendor == q->subsystem_vendor ||
5989 q->subsystem_vendor == PCI_ANY_ID) &&
5990 (d->subsystem_device == q->subsystem_device ||
5991 q->subsystem_device == PCI_ANY_ID))
5992 q->hook(dev);
5993 }
5994}
5995
Jesse Barnes9cce37f2010-08-13 15:11:26 -07005996/* Disable the VGA plane that we never use */
5997static void i915_disable_vga(struct drm_device *dev)
5998{
5999 struct drm_i915_private *dev_priv = dev->dev_private;
6000 u8 sr1;
6001 u32 vga_reg;
6002
6003 if (HAS_PCH_SPLIT(dev))
6004 vga_reg = CPU_VGACNTRL;
6005 else
6006 vga_reg = VGACNTRL;
6007
6008 vga_get_uninterruptible(dev->pdev, VGA_RSRC_LEGACY_IO);
6009 outb(1, VGA_SR_INDEX);
6010 sr1 = inb(VGA_SR_DATA);
6011 outb(sr1 | 1<<5, VGA_SR_DATA);
6012 vga_put(dev->pdev, VGA_RSRC_LEGACY_IO);
6013 udelay(300);
6014
6015 I915_WRITE(vga_reg, VGA_DISP_DISABLE);
6016 POSTING_READ(vga_reg);
6017}
6018
Jesse Barnes79e53942008-11-07 14:24:08 -08006019void intel_modeset_init(struct drm_device *dev)
6020{
Jesse Barnes652c3932009-08-17 13:31:43 -07006021 struct drm_i915_private *dev_priv = dev->dev_private;
Jesse Barnes79e53942008-11-07 14:24:08 -08006022 int i;
6023
6024 drm_mode_config_init(dev);
6025
6026 dev->mode_config.min_width = 0;
6027 dev->mode_config.min_height = 0;
6028
6029 dev->mode_config.funcs = (void *)&intel_mode_funcs;
6030
Jesse Barnesb690e962010-07-19 13:53:12 -07006031 intel_init_quirks(dev);
6032
Jesse Barnese70236a2009-09-21 10:42:27 -07006033 intel_init_display(dev);
6034
Jesse Barnes79e53942008-11-07 14:24:08 -08006035 if (IS_I965G(dev)) {
6036 dev->mode_config.max_width = 8192;
6037 dev->mode_config.max_height = 8192;
Keith Packard5e4d6fa2009-07-12 23:53:17 -07006038 } else if (IS_I9XX(dev)) {
6039 dev->mode_config.max_width = 4096;
6040 dev->mode_config.max_height = 4096;
Jesse Barnes79e53942008-11-07 14:24:08 -08006041 } else {
6042 dev->mode_config.max_width = 2048;
6043 dev->mode_config.max_height = 2048;
6044 }
6045
6046 /* set memory base */
6047 if (IS_I9XX(dev))
6048 dev->mode_config.fb_base = pci_resource_start(dev->pdev, 2);
6049 else
6050 dev->mode_config.fb_base = pci_resource_start(dev->pdev, 0);
6051
6052 if (IS_MOBILE(dev) || IS_I9XX(dev))
Dave Airliea3524f12010-06-06 18:59:41 +10006053 dev_priv->num_pipe = 2;
Jesse Barnes79e53942008-11-07 14:24:08 -08006054 else
Dave Airliea3524f12010-06-06 18:59:41 +10006055 dev_priv->num_pipe = 1;
Zhao Yakui28c97732009-10-09 11:39:41 +08006056 DRM_DEBUG_KMS("%d display pipe%s available.\n",
Dave Airliea3524f12010-06-06 18:59:41 +10006057 dev_priv->num_pipe, dev_priv->num_pipe > 1 ? "s" : "");
Jesse Barnes79e53942008-11-07 14:24:08 -08006058
Dave Airliea3524f12010-06-06 18:59:41 +10006059 for (i = 0; i < dev_priv->num_pipe; i++) {
Jesse Barnes79e53942008-11-07 14:24:08 -08006060 intel_crtc_init(dev, i);
6061 }
6062
6063 intel_setup_outputs(dev);
Jesse Barnes652c3932009-08-17 13:31:43 -07006064
6065 intel_init_clock_gating(dev);
6066
Jesse Barnes9cce37f2010-08-13 15:11:26 -07006067 /* Just disable it once at startup */
6068 i915_disable_vga(dev);
6069
Jesse Barnes7648fa92010-05-20 14:28:11 -07006070 if (IS_IRONLAKE_M(dev)) {
Jesse Barnesf97108d2010-01-29 11:27:07 -08006071 ironlake_enable_drps(dev);
Jesse Barnes7648fa92010-05-20 14:28:11 -07006072 intel_init_emon(dev);
6073 }
Jesse Barnesf97108d2010-01-29 11:27:07 -08006074
Jesse Barnes652c3932009-08-17 13:31:43 -07006075 INIT_WORK(&dev_priv->idle_work, intel_idle_update);
6076 setup_timer(&dev_priv->idle_timer, intel_gpu_idle_timer,
6077 (unsigned long)dev);
Daniel Vetter02e792f2009-09-15 22:57:34 +02006078
6079 intel_setup_overlay(dev);
Jesse Barnes79e53942008-11-07 14:24:08 -08006080}
6081
6082void intel_modeset_cleanup(struct drm_device *dev)
6083{
Jesse Barnes652c3932009-08-17 13:31:43 -07006084 struct drm_i915_private *dev_priv = dev->dev_private;
6085 struct drm_crtc *crtc;
6086 struct intel_crtc *intel_crtc;
6087
6088 mutex_lock(&dev->struct_mutex);
6089
Dave Airlieeb1f8e42010-05-07 06:42:51 +00006090 drm_kms_helper_poll_fini(dev);
Dave Airlie38651672010-03-30 05:34:13 +00006091 intel_fbdev_fini(dev);
6092
Jesse Barnes652c3932009-08-17 13:31:43 -07006093 list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
6094 /* Skip inactive CRTCs */
6095 if (!crtc->fb)
6096 continue;
6097
6098 intel_crtc = to_intel_crtc(crtc);
Daniel Vetter3dec0092010-08-20 21:40:52 +02006099 intel_increase_pllclock(crtc);
Jesse Barnes652c3932009-08-17 13:31:43 -07006100 }
6101
Jesse Barnese70236a2009-09-21 10:42:27 -07006102 if (dev_priv->display.disable_fbc)
6103 dev_priv->display.disable_fbc(dev);
6104
Zou Nan haiaa40d6b2010-06-25 13:40:23 +08006105 if (dev_priv->renderctx) {
6106 struct drm_i915_gem_object *obj_priv;
6107
6108 obj_priv = to_intel_bo(dev_priv->renderctx);
6109 I915_WRITE(CCID, obj_priv->gtt_offset &~ CCID_EN);
6110 I915_READ(CCID);
6111 i915_gem_object_unpin(dev_priv->renderctx);
6112 drm_gem_object_unreference(dev_priv->renderctx);
6113 }
6114
Jesse Barnes97f5ab62009-10-08 10:16:48 -07006115 if (dev_priv->pwrctx) {
Kristian Høgsbergc1b5dea2009-11-11 12:19:18 -05006116 struct drm_i915_gem_object *obj_priv;
6117
Daniel Vetter23010e42010-03-08 13:35:02 +01006118 obj_priv = to_intel_bo(dev_priv->pwrctx);
Kristian Høgsbergc1b5dea2009-11-11 12:19:18 -05006119 I915_WRITE(PWRCTXA, obj_priv->gtt_offset &~ PWRCTX_EN);
6120 I915_READ(PWRCTXA);
Jesse Barnes97f5ab62009-10-08 10:16:48 -07006121 i915_gem_object_unpin(dev_priv->pwrctx);
6122 drm_gem_object_unreference(dev_priv->pwrctx);
6123 }
6124
Jesse Barnesf97108d2010-01-29 11:27:07 -08006125 if (IS_IRONLAKE_M(dev))
6126 ironlake_disable_drps(dev);
6127
Kristian Høgsberg69341a52009-11-11 12:19:17 -05006128 mutex_unlock(&dev->struct_mutex);
6129
Daniel Vetter6c0d93502010-08-20 18:26:46 +02006130 /* Disable the irq before mode object teardown, for the irq might
6131 * enqueue unpin/hotplug work. */
6132 drm_irq_uninstall(dev);
6133 cancel_work_sync(&dev_priv->hotplug_work);
6134
Daniel Vetter3dec0092010-08-20 21:40:52 +02006135 /* Shut off idle work before the crtcs get freed. */
6136 list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) {
6137 intel_crtc = to_intel_crtc(crtc);
6138 del_timer_sync(&intel_crtc->idle_timer);
6139 }
6140 del_timer_sync(&dev_priv->idle_timer);
6141 cancel_work_sync(&dev_priv->idle_work);
6142
Jesse Barnes79e53942008-11-07 14:24:08 -08006143 drm_mode_config_cleanup(dev);
6144}
6145
Dave Airlie28d52042009-09-21 14:33:58 +10006146/*
Zhenyu Wangf1c79df2010-03-30 14:39:29 +08006147 * Return which encoder is currently attached for connector.
6148 */
Chris Wilsondf0e9242010-09-09 16:20:55 +01006149struct drm_encoder *intel_best_encoder(struct drm_connector *connector)
Jesse Barnes79e53942008-11-07 14:24:08 -08006150{
Chris Wilsondf0e9242010-09-09 16:20:55 +01006151 return &intel_attached_encoder(connector)->base;
6152}
Jesse Barnes79e53942008-11-07 14:24:08 -08006153
Chris Wilsondf0e9242010-09-09 16:20:55 +01006154void intel_connector_attach_encoder(struct intel_connector *connector,
6155 struct intel_encoder *encoder)
6156{
6157 connector->encoder = encoder;
6158 drm_mode_connector_attach_encoder(&connector->base,
6159 &encoder->base);
Jesse Barnes79e53942008-11-07 14:24:08 -08006160}
Dave Airlie28d52042009-09-21 14:33:58 +10006161
6162/*
6163 * set vga decode state - true == enable VGA decode
6164 */
6165int intel_modeset_vga_set_state(struct drm_device *dev, bool state)
6166{
6167 struct drm_i915_private *dev_priv = dev->dev_private;
6168 u16 gmch_ctrl;
6169
6170 pci_read_config_word(dev_priv->bridge_dev, INTEL_GMCH_CTRL, &gmch_ctrl);
6171 if (state)
6172 gmch_ctrl &= ~INTEL_GMCH_VGA_DISABLE;
6173 else
6174 gmch_ctrl |= INTEL_GMCH_VGA_DISABLE;
6175 pci_write_config_word(dev_priv->bridge_dev, INTEL_GMCH_CTRL, gmch_ctrl);
6176 return 0;
6177}