blob: 7031dfd50ae9689471b283f82bbfbaf27caf7e99 [file] [log] [blame]
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -08001/*
2 * Copyright © 2014 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
Rodrigo Vivib2b89f52014-11-14 08:52:29 -080024/**
25 * DOC: Panel Self Refresh (PSR/SRD)
26 *
27 * Since Haswell Display controller supports Panel Self-Refresh on display
28 * panels witch have a remote frame buffer (RFB) implemented according to PSR
29 * spec in eDP1.3. PSR feature allows the display to go to lower standby states
30 * when system is idle but display is on as it eliminates display refresh
31 * request to DDR memory completely as long as the frame buffer for that
32 * display is unchanged.
33 *
34 * Panel Self Refresh must be supported by both Hardware (source) and
35 * Panel (sink).
36 *
37 * PSR saves power by caching the framebuffer in the panel RFB, which allows us
38 * to power down the link and memory controller. For DSI panels the same idea
39 * is called "manual mode".
40 *
41 * The implementation uses the hardware-based PSR support which automatically
42 * enters/exits self-refresh mode. The hardware takes care of sending the
43 * required DP aux message and could even retrain the link (that part isn't
44 * enabled yet though). The hardware also keeps track of any frontbuffer
45 * changes to know when to exit self-refresh mode again. Unfortunately that
46 * part doesn't work too well, hence why the i915 PSR support uses the
47 * software frontbuffer tracking to make sure it doesn't miss a screen
48 * update. For this integration intel_psr_invalidate() and intel_psr_flush()
49 * get called by the frontbuffer tracking code. Note that because of locking
50 * issues the self-refresh re-enable code is done from a work queue, which
51 * must be correctly synchronized/cancelled when shutting down the pipe."
52 */
53
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -080054#include <drm/drmP.h>
55
56#include "intel_drv.h"
57#include "i915_drv.h"
58
59static bool is_edp_psr(struct intel_dp *intel_dp)
60{
61 return intel_dp->psr_dpcd[0] & DP_PSR_IS_SUPPORTED;
62}
63
Rodrigo Vivie2bbc342014-11-19 07:37:00 -080064static bool vlv_is_psr_active_on_pipe(struct drm_device *dev, int pipe)
65{
Chris Wilsonfac5e232016-07-04 11:34:36 +010066 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -080067 uint32_t val;
68
69 val = I915_READ(VLV_PSRSTAT(pipe)) &
70 VLV_EDP_PSR_CURR_STATE_MASK;
71 return (val == VLV_EDP_PSR_ACTIVE_NORFB_UP) ||
72 (val == VLV_EDP_PSR_ACTIVE_SF_UPDATE);
73}
74
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -080075static void intel_psr_write_vsc(struct intel_dp *intel_dp,
Ville Syrjälä436c6d42015-09-18 20:03:37 +030076 const struct edp_vsc_psr *vsc_psr)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -080077{
78 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
79 struct drm_device *dev = dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +010080 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -080081 struct intel_crtc *crtc = to_intel_crtc(dig_port->base.base.crtc);
Ville Syrjälä436c6d42015-09-18 20:03:37 +030082 enum transcoder cpu_transcoder = crtc->config->cpu_transcoder;
Ville Syrjäläf0f59a02015-11-18 15:33:26 +020083 i915_reg_t ctl_reg = HSW_TVIDEO_DIP_CTL(cpu_transcoder);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -080084 uint32_t *data = (uint32_t *) vsc_psr;
85 unsigned int i;
86
87 /* As per BSPec (Pipe Video Data Island Packet), we need to disable
88 the video DIP being updated before program video DIP data buffer
89 registers for DIP being updated. */
90 I915_WRITE(ctl_reg, 0);
91 POSTING_READ(ctl_reg);
92
Ville Syrjälä436c6d42015-09-18 20:03:37 +030093 for (i = 0; i < sizeof(*vsc_psr); i += 4) {
94 I915_WRITE(HSW_TVIDEO_DIP_VSC_DATA(cpu_transcoder,
95 i >> 2), *data);
96 data++;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -080097 }
Ville Syrjälä436c6d42015-09-18 20:03:37 +030098 for (; i < VIDEO_DIP_VSC_DATA_SIZE; i += 4)
99 I915_WRITE(HSW_TVIDEO_DIP_VSC_DATA(cpu_transcoder,
100 i >> 2), 0);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800101
102 I915_WRITE(ctl_reg, VIDEO_DIP_ENABLE_VSC_HSW);
103 POSTING_READ(ctl_reg);
104}
105
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300106static void vlv_psr_setup_vsc(struct intel_dp *intel_dp,
107 const struct intel_crtc_state *crtc_state)
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800108{
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300109 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
110 struct drm_i915_private *dev_priv = to_i915(crtc->base.dev);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800111 uint32_t val;
112
113 /* VLV auto-generate VSC package as per EDP 1.3 spec, Table 3.10 */
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300114 val = I915_READ(VLV_VSCSDP(crtc->pipe));
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800115 val &= ~VLV_EDP_PSR_SDP_FREQ_MASK;
116 val |= VLV_EDP_PSR_SDP_FREQ_EVFRAME;
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300117 I915_WRITE(VLV_VSCSDP(crtc->pipe), val);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800118}
119
Rodrigo Vivi2ce4df82017-09-07 16:00:35 -0700120static void hsw_psr_setup_vsc(struct intel_dp *intel_dp,
121 const struct intel_crtc_state *crtc_state)
Sonika Jindal474d1ec2015-04-02 11:02:44 +0530122{
Nagaraju, Vathsala97da2ef2017-01-02 17:00:55 +0530123 struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp);
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300124 struct drm_i915_private *dev_priv = to_i915(intel_dig_port->base.base.dev);
125 struct edp_vsc_psr psr_vsc;
Sonika Jindal474d1ec2015-04-02 11:02:44 +0530126
Rodrigo Vivi2ce4df82017-09-07 16:00:35 -0700127 if (dev_priv->psr.psr2_support) {
128 /* Prepare VSC Header for SU as per EDP 1.4 spec, Table 6.11 */
129 memset(&psr_vsc, 0, sizeof(psr_vsc));
130 psr_vsc.sdp_header.HB0 = 0;
131 psr_vsc.sdp_header.HB1 = 0x7;
132 if (dev_priv->psr.colorimetry_support &&
133 dev_priv->psr.y_cord_support) {
134 psr_vsc.sdp_header.HB2 = 0x5;
135 psr_vsc.sdp_header.HB3 = 0x13;
136 } else if (dev_priv->psr.y_cord_support) {
137 psr_vsc.sdp_header.HB2 = 0x4;
138 psr_vsc.sdp_header.HB3 = 0xe;
139 } else {
140 psr_vsc.sdp_header.HB2 = 0x3;
141 psr_vsc.sdp_header.HB3 = 0xc;
142 }
Nagaraju, Vathsala97da2ef2017-01-02 17:00:55 +0530143 } else {
Rodrigo Vivi2ce4df82017-09-07 16:00:35 -0700144 /* Prepare VSC packet as per EDP 1.3 spec, Table 3.10 */
145 memset(&psr_vsc, 0, sizeof(psr_vsc));
146 psr_vsc.sdp_header.HB0 = 0;
147 psr_vsc.sdp_header.HB1 = 0x7;
148 psr_vsc.sdp_header.HB2 = 0x2;
149 psr_vsc.sdp_header.HB3 = 0x8;
Nagaraju, Vathsala97da2ef2017-01-02 17:00:55 +0530150 }
151
Sonika Jindal474d1ec2015-04-02 11:02:44 +0530152 intel_psr_write_vsc(intel_dp, &psr_vsc);
153}
154
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800155static void vlv_psr_enable_sink(struct intel_dp *intel_dp)
156{
157 drm_dp_dpcd_writeb(&intel_dp->aux, DP_PSR_EN_CFG,
Durgadoss R670b90d2015-03-27 17:21:32 +0530158 DP_PSR_ENABLE | DP_PSR_MAIN_LINK_ACTIVE);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800159}
160
Ville Syrjäläf0f59a02015-11-18 15:33:26 +0200161static i915_reg_t psr_aux_ctl_reg(struct drm_i915_private *dev_priv,
162 enum port port)
Ville Syrjälä1f380892015-11-11 20:34:16 +0200163{
164 if (INTEL_INFO(dev_priv)->gen >= 9)
165 return DP_AUX_CH_CTL(port);
166 else
167 return EDP_PSR_AUX_CTL;
168}
169
Ville Syrjäläf0f59a02015-11-18 15:33:26 +0200170static i915_reg_t psr_aux_data_reg(struct drm_i915_private *dev_priv,
171 enum port port, int index)
Ville Syrjälä1f380892015-11-11 20:34:16 +0200172{
173 if (INTEL_INFO(dev_priv)->gen >= 9)
174 return DP_AUX_CH_DATA(port, index);
175 else
176 return EDP_PSR_AUX_DATA(index);
177}
178
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800179static void hsw_psr_enable_sink(struct intel_dp *intel_dp)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800180{
181 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
182 struct drm_device *dev = dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100183 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800184 uint32_t aux_clock_divider;
Ville Syrjäläf0f59a02015-11-18 15:33:26 +0200185 i915_reg_t aux_ctl_reg;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800186 static const uint8_t aux_msg[] = {
187 [0] = DP_AUX_NATIVE_WRITE << 4,
188 [1] = DP_SET_POWER >> 8,
189 [2] = DP_SET_POWER & 0xff,
190 [3] = 1 - 1,
191 [4] = DP_SET_POWER_D0,
192 };
Ville Syrjälä750a9512015-11-11 20:34:12 +0200193 enum port port = dig_port->port;
Daniel Vetterd4dcbdc2016-05-18 18:47:15 +0200194 u32 aux_ctl;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800195 int i;
196
197 BUILD_BUG_ON(sizeof(aux_msg) > 20);
198
199 aux_clock_divider = intel_dp->get_aux_clock_divider(intel_dp, 0);
200
Sonika Jindal474d1ec2015-04-02 11:02:44 +0530201 /* Enable AUX frame sync at sink */
202 if (dev_priv->psr.aux_frame_sync)
203 drm_dp_dpcd_writeb(&intel_dp->aux,
204 DP_SINK_DEVICE_AUX_FRAME_SYNC_CONF,
205 DP_AUX_FRAME_SYNC_ENABLE);
Nagaraju, Vathsala340c93c2017-01-02 17:00:58 +0530206 /* Enable ALPM at sink for psr2 */
207 if (dev_priv->psr.psr2_support && dev_priv->psr.alpm)
208 drm_dp_dpcd_writeb(&intel_dp->aux,
209 DP_RECEIVER_ALPM_CONFIG,
210 DP_ALPM_ENABLE);
Daniel Vetter6f32ea72016-05-18 18:47:14 +0200211 if (dev_priv->psr.link_standby)
212 drm_dp_dpcd_writeb(&intel_dp->aux, DP_PSR_EN_CFG,
213 DP_PSR_ENABLE | DP_PSR_MAIN_LINK_ACTIVE);
214 else
215 drm_dp_dpcd_writeb(&intel_dp->aux, DP_PSR_EN_CFG,
216 DP_PSR_ENABLE);
217
Ville Syrjälä1f380892015-11-11 20:34:16 +0200218 aux_ctl_reg = psr_aux_ctl_reg(dev_priv, port);
Sonika Jindale3d99842015-01-22 14:30:54 +0530219
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800220 /* Setup AUX registers */
221 for (i = 0; i < sizeof(aux_msg); i += 4)
Ville Syrjälä1f380892015-11-11 20:34:16 +0200222 I915_WRITE(psr_aux_data_reg(dev_priv, port, i >> 2),
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800223 intel_dp_pack_aux(&aux_msg[i], sizeof(aux_msg) - i));
224
Daniel Vetterd4dcbdc2016-05-18 18:47:15 +0200225 aux_ctl = intel_dp->get_aux_send_ctl(intel_dp, 0, sizeof(aux_msg),
226 aux_clock_divider);
227 I915_WRITE(aux_ctl_reg, aux_ctl);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800228}
229
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300230static void vlv_psr_enable_source(struct intel_dp *intel_dp,
231 const struct intel_crtc_state *crtc_state)
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800232{
233 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300234 struct drm_i915_private *dev_priv = to_i915(dig_port->base.base.dev);
235 struct intel_crtc *crtc = to_intel_crtc(crtc_state->base.crtc);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800236
237 /* Transition from PSR_state 0 to PSR_state 1, i.e. PSR Inactive */
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300238 I915_WRITE(VLV_PSRCTL(crtc->pipe),
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800239 VLV_EDP_PSR_MODE_SW_TIMER |
240 VLV_EDP_PSR_SRC_TRANSMITTER_STATE |
241 VLV_EDP_PSR_ENABLE);
242}
243
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800244static void vlv_psr_activate(struct intel_dp *intel_dp)
245{
246 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
247 struct drm_device *dev = dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100248 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800249 struct drm_crtc *crtc = dig_port->base.base.crtc;
250 enum pipe pipe = to_intel_crtc(crtc)->pipe;
251
252 /* Let's do the transition from PSR_state 1 to PSR_state 2
253 * that is PSR transition to active - static frame transmission.
254 * Then Hardware is responsible for the transition to PSR_state 3
255 * that is PSR active - no Remote Frame Buffer (RFB) update.
256 */
257 I915_WRITE(VLV_PSRCTL(pipe), I915_READ(VLV_PSRCTL(pipe)) |
258 VLV_EDP_PSR_ACTIVE_ENTRY);
259}
260
Rodrigo Vivied63d242017-09-07 16:00:33 -0700261static void hsw_activate_psr1(struct intel_dp *intel_dp)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800262{
263 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
264 struct drm_device *dev = dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100265 struct drm_i915_private *dev_priv = to_i915(dev);
Sonika Jindal474d1ec2015-04-02 11:02:44 +0530266
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800267 uint32_t max_sleep_time = 0x1f;
Rodrigo Vivi40918e02016-09-07 17:42:31 -0700268 /*
269 * Let's respect VBT in case VBT asks a higher idle_frame value.
270 * Let's use 6 as the minimum to cover all known cases including
271 * the off-by-one issue that HW has in some cases. Also there are
272 * cases where sink should be able to train
273 * with the 5 or 6 idle patterns.
Rodrigo Vivid44b4dc2014-11-14 08:52:31 -0800274 */
Rodrigo Vivi40918e02016-09-07 17:42:31 -0700275 uint32_t idle_frames = max(6, dev_priv->vbt.psr.idle_frames);
Daniel Vetter50db1392016-05-18 18:47:11 +0200276 uint32_t val = EDP_PSR_ENABLE;
277
278 val |= max_sleep_time << EDP_PSR_MAX_SLEEP_TIME_SHIFT;
279 val |= idle_frames << EDP_PSR_IDLE_FRAME_SHIFT;
Rodrigo Vivi7370c682015-12-11 16:31:31 -0800280
Tvrtko Ursulin772c2a52016-10-13 11:03:01 +0100281 if (IS_HASWELL(dev_priv))
Rodrigo Vivi7370c682015-12-11 16:31:31 -0800282 val |= EDP_PSR_MIN_LINK_ENTRY_TIME_8_LINES;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800283
Rodrigo Vivi60e5ffe2016-02-01 12:02:07 -0800284 if (dev_priv->psr.link_standby)
285 val |= EDP_PSR_LINK_STANDBY;
286
Daniel Vetter50db1392016-05-18 18:47:11 +0200287 if (dev_priv->vbt.psr.tp1_wakeup_time > 5)
288 val |= EDP_PSR_TP1_TIME_2500us;
289 else if (dev_priv->vbt.psr.tp1_wakeup_time > 1)
290 val |= EDP_PSR_TP1_TIME_500us;
291 else if (dev_priv->vbt.psr.tp1_wakeup_time > 0)
292 val |= EDP_PSR_TP1_TIME_100us;
293 else
294 val |= EDP_PSR_TP1_TIME_0us;
Sonika Jindal474d1ec2015-04-02 11:02:44 +0530295
Daniel Vetter50db1392016-05-18 18:47:11 +0200296 if (dev_priv->vbt.psr.tp2_tp3_wakeup_time > 5)
297 val |= EDP_PSR_TP2_TP3_TIME_2500us;
298 else if (dev_priv->vbt.psr.tp2_tp3_wakeup_time > 1)
299 val |= EDP_PSR_TP2_TP3_TIME_500us;
300 else if (dev_priv->vbt.psr.tp2_tp3_wakeup_time > 0)
301 val |= EDP_PSR_TP2_TP3_TIME_100us;
302 else
303 val |= EDP_PSR_TP2_TP3_TIME_0us;
304
305 if (intel_dp_source_supports_hbr2(intel_dp) &&
306 drm_dp_tps3_supported(intel_dp->dpcd))
307 val |= EDP_PSR_TP1_TP3_SEL;
308 else
309 val |= EDP_PSR_TP1_TP2_SEL;
310
Jim Bride912d6412017-08-08 14:51:34 -0700311 val |= I915_READ(EDP_PSR_CTL) & EDP_PSR_RESTORE_PSR_ACTIVE_CTX_MASK;
Daniel Vetter50db1392016-05-18 18:47:11 +0200312 I915_WRITE(EDP_PSR_CTL, val);
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530313}
Daniel Vetter50db1392016-05-18 18:47:11 +0200314
Rodrigo Vivied63d242017-09-07 16:00:33 -0700315static void hsw_activate_psr2(struct intel_dp *intel_dp)
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530316{
317 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
318 struct drm_device *dev = dig_port->base.base.dev;
319 struct drm_i915_private *dev_priv = to_i915(dev);
320 /*
321 * Let's respect VBT in case VBT asks a higher idle_frame value.
322 * Let's use 6 as the minimum to cover all known cases including
323 * the off-by-one issue that HW has in some cases. Also there are
324 * cases where sink should be able to train
325 * with the 5 or 6 idle patterns.
326 */
327 uint32_t idle_frames = max(6, dev_priv->vbt.psr.idle_frames);
328 uint32_t val;
329
330 val = idle_frames << EDP_PSR_IDLE_FRAME_SHIFT;
Daniel Vetter50db1392016-05-18 18:47:11 +0200331
332 /* FIXME: selective update is probably totally broken because it doesn't
333 * mesh at all with our frontbuffer tracking. And the hw alone isn't
334 * good enough. */
Nagaraju, Vathsala64332262017-01-13 06:01:24 +0530335 val |= EDP_PSR2_ENABLE |
336 EDP_SU_TRACK_ENABLE |
337 EDP_FRAMES_BEFORE_SU_ENTRY;
Daniel Vetter50db1392016-05-18 18:47:11 +0200338
339 if (dev_priv->vbt.psr.tp2_tp3_wakeup_time > 5)
340 val |= EDP_PSR2_TP2_TIME_2500;
341 else if (dev_priv->vbt.psr.tp2_tp3_wakeup_time > 1)
342 val |= EDP_PSR2_TP2_TIME_500;
343 else if (dev_priv->vbt.psr.tp2_tp3_wakeup_time > 0)
344 val |= EDP_PSR2_TP2_TIME_100;
345 else
346 val |= EDP_PSR2_TP2_TIME_50;
347
348 I915_WRITE(EDP_PSR2_CTL, val);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800349}
350
Rodrigo Vivied63d242017-09-07 16:00:33 -0700351static void hsw_psr_activate(struct intel_dp *intel_dp)
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530352{
353 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
354 struct drm_device *dev = dig_port->base.base.dev;
355 struct drm_i915_private *dev_priv = to_i915(dev);
356
Rodrigo Vivied63d242017-09-07 16:00:33 -0700357 /* On HSW+ after we enable PSR on source it will activate it
358 * as soon as it match configure idle_frame count. So
359 * we just actually enable it here on activation time.
360 */
361
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530362 /* psr1 and psr2 are mutually exclusive.*/
363 if (dev_priv->psr.psr2_support)
Rodrigo Vivied63d242017-09-07 16:00:33 -0700364 hsw_activate_psr2(intel_dp);
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530365 else
Rodrigo Vivied63d242017-09-07 16:00:33 -0700366 hsw_activate_psr1(intel_dp);
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530367}
368
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800369static bool intel_psr_match_conditions(struct intel_dp *intel_dp)
370{
371 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
372 struct drm_device *dev = dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100373 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800374 struct drm_crtc *crtc = dig_port->base.base.crtc;
375 struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
Ville Syrjälädfd2e9a2016-05-18 11:34:38 +0300376 const struct drm_display_mode *adjusted_mode =
377 &intel_crtc->config->base.adjusted_mode;
378 int psr_setup_time;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800379
380 lockdep_assert_held(&dev_priv->psr.lock);
381 WARN_ON(!drm_modeset_is_locked(&dev->mode_config.connection_mutex));
382 WARN_ON(!drm_modeset_is_locked(&crtc->mutex));
383
384 dev_priv->psr.source_ok = false;
385
Rodrigo Vividc9b5a02016-02-01 12:02:06 -0800386 /*
387 * HSW spec explicitly says PSR is tied to port A.
388 * BDW+ platforms with DDI implementation of PSR have different
389 * PSR registers per transcoder and we only implement transcoder EDP
390 * ones. Since by Display design transcoder EDP is tied to port A
391 * we can safely escape based on the port A.
392 */
Tvrtko Ursulin4f8036a2016-10-13 11:02:52 +0100393 if (HAS_DDI(dev_priv) && dig_port->port != PORT_A) {
Rodrigo Vividc9b5a02016-02-01 12:02:06 -0800394 DRM_DEBUG_KMS("PSR condition failed: Port not supported\n");
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800395 return false;
396 }
397
398 if (!i915.enable_psr) {
399 DRM_DEBUG_KMS("PSR disable by flag\n");
400 return false;
401 }
402
Tvrtko Ursulin920a14b2016-10-14 10:13:44 +0100403 if ((IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) &&
Rodrigo Vivi65f61b42016-02-01 12:02:08 -0800404 !dev_priv->psr.link_standby) {
405 DRM_ERROR("PSR condition failed: Link off requested but not supported on this platform\n");
406 return false;
407 }
408
Tvrtko Ursulin772c2a52016-10-13 11:03:01 +0100409 if (IS_HASWELL(dev_priv) &&
Ander Conselvan de Oliveira6e3c9712015-01-15 14:55:25 +0200410 I915_READ(HSW_STEREO_3D_CTL(intel_crtc->config->cpu_transcoder)) &
Rodrigo Vivic8e68b72015-01-12 10:14:29 -0800411 S3D_ENABLE) {
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800412 DRM_DEBUG_KMS("PSR condition failed: Stereo 3D is Enabled\n");
413 return false;
414 }
415
Tvrtko Ursulin772c2a52016-10-13 11:03:01 +0100416 if (IS_HASWELL(dev_priv) &&
Ville Syrjälädfd2e9a2016-05-18 11:34:38 +0300417 adjusted_mode->flags & DRM_MODE_FLAG_INTERLACE) {
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800418 DRM_DEBUG_KMS("PSR condition failed: Interlaced is Enabled\n");
419 return false;
420 }
421
Ville Syrjälädfd2e9a2016-05-18 11:34:38 +0300422 psr_setup_time = drm_dp_psr_setup_time(intel_dp->psr_dpcd);
423 if (psr_setup_time < 0) {
424 DRM_DEBUG_KMS("PSR condition failed: Invalid PSR setup time (0x%02x)\n",
425 intel_dp->psr_dpcd[1]);
426 return false;
427 }
428
429 if (intel_usecs_to_scanlines(adjusted_mode, psr_setup_time) >
430 adjusted_mode->crtc_vtotal - adjusted_mode->crtc_vdisplay - 1) {
431 DRM_DEBUG_KMS("PSR condition failed: PSR setup time (%d us) too long\n",
432 psr_setup_time);
433 return false;
434 }
435
Nagaraju, Vathsalaacf45d12017-01-10 12:32:26 +0530436 /* PSR2 is restricted to work with panel resolutions upto 3200x2000 */
Nagaraju, Vathsalabef8c052017-05-25 22:13:29 +0530437 if (dev_priv->psr.psr2_support &&
438 (intel_crtc->config->pipe_src_w > 3200 ||
439 intel_crtc->config->pipe_src_h > 2000)) {
Nagaraju, Vathsalaacf45d12017-01-10 12:32:26 +0530440 dev_priv->psr.psr2_support = false;
441 return false;
442 }
443
Nagaraju, Vathsala18b9bf32017-01-12 03:58:30 +0530444 /*
445 * FIXME:enable psr2 only for y-cordinate psr2 panels
446 * After gtc implementation , remove this restriction.
447 */
448 if (!dev_priv->psr.y_cord_support && dev_priv->psr.psr2_support) {
449 DRM_DEBUG_KMS("PSR2 disabled, panel does not support Y coordinate\n");
450 return false;
451 }
452
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800453 dev_priv->psr.source_ok = true;
454 return true;
455}
456
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800457static void intel_psr_activate(struct intel_dp *intel_dp)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800458{
459 struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp);
460 struct drm_device *dev = intel_dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100461 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800462
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530463 if (dev_priv->psr.psr2_support)
464 WARN_ON(I915_READ(EDP_PSR2_CTL) & EDP_PSR2_ENABLE);
465 else
466 WARN_ON(I915_READ(EDP_PSR_CTL) & EDP_PSR_ENABLE);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800467 WARN_ON(dev_priv->psr.active);
468 lockdep_assert_held(&dev_priv->psr.lock);
469
Rodrigo Vivie3702ac2017-09-07 16:00:34 -0700470 dev_priv->psr.activate(intel_dp);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800471 dev_priv->psr.active = true;
472}
473
Rodrigo Vivi4d1fa222017-09-07 16:00:36 -0700474static void hsw_psr_enable_source(struct intel_dp *intel_dp,
475 const struct intel_crtc_state *crtc_state)
476{
477 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
478 struct drm_device *dev = dig_port->base.base.dev;
479 struct drm_i915_private *dev_priv = to_i915(dev);
480 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
481 u32 chicken;
482
483 if (dev_priv->psr.psr2_support) {
484 chicken = PSR2_VSC_ENABLE_PROG_HEADER;
485 if (dev_priv->psr.y_cord_support)
486 chicken |= PSR2_ADD_VERTICAL_LINE_COUNT;
487 I915_WRITE(CHICKEN_TRANS(cpu_transcoder), chicken);
488
489 I915_WRITE(EDP_PSR_DEBUG_CTL,
490 EDP_PSR_DEBUG_MASK_MEMUP |
491 EDP_PSR_DEBUG_MASK_HPD |
492 EDP_PSR_DEBUG_MASK_LPSP |
493 EDP_PSR_DEBUG_MASK_MAX_SLEEP |
494 EDP_PSR_DEBUG_MASK_DISP_REG_WRITE);
495 } else {
496 /*
497 * Per Spec: Avoid continuous PSR exit by masking MEMUP
498 * and HPD. also mask LPSP to avoid dependency on other
499 * drivers that might block runtime_pm besides
500 * preventing other hw tracking issues now we can rely
501 * on frontbuffer tracking.
502 */
503 I915_WRITE(EDP_PSR_DEBUG_CTL,
504 EDP_PSR_DEBUG_MASK_MEMUP |
505 EDP_PSR_DEBUG_MASK_HPD |
506 EDP_PSR_DEBUG_MASK_LPSP);
507 }
508}
509
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800510/**
511 * intel_psr_enable - Enable PSR
512 * @intel_dp: Intel DP
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300513 * @crtc_state: new CRTC state
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800514 *
515 * This function can only be called after the pipe is fully trained and enabled.
516 */
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300517void intel_psr_enable(struct intel_dp *intel_dp,
518 const struct intel_crtc_state *crtc_state)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800519{
520 struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp);
521 struct drm_device *dev = intel_dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100522 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800523
Rodrigo Vivi0f328da2017-09-07 16:00:31 -0700524 if (!HAS_PSR(dev_priv))
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800525 return;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800526
527 if (!is_edp_psr(intel_dp)) {
528 DRM_DEBUG_KMS("PSR not supported by this panel\n");
529 return;
530 }
531
532 mutex_lock(&dev_priv->psr.lock);
533 if (dev_priv->psr.enabled) {
534 DRM_DEBUG_KMS("PSR already in use\n");
535 goto unlock;
536 }
537
538 if (!intel_psr_match_conditions(intel_dp))
539 goto unlock;
540
541 dev_priv->psr.busy_frontbuffer_bits = 0;
542
Tvrtko Ursulin4f8036a2016-10-13 11:02:52 +0100543 if (HAS_DDI(dev_priv)) {
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300544
Rodrigo Vivi2ce4df82017-09-07 16:00:35 -0700545 hsw_psr_setup_vsc(intel_dp, crtc_state);
546
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800547 /* Enable PSR on the panel */
548 hsw_psr_enable_sink(intel_dp);
Sonika Jindale3d99842015-01-22 14:30:54 +0530549
Rodrigo Vivi196cebd2017-09-07 16:00:37 -0700550 hsw_psr_enable_source(intel_dp, crtc_state);
551
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800552 } else {
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300553 vlv_psr_setup_vsc(intel_dp, crtc_state);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800554
555 /* Enable PSR on the panel */
556 vlv_psr_enable_sink(intel_dp);
557
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300558 vlv_psr_enable_source(intel_dp, crtc_state);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800559 }
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800560
Rodrigo Vivi29d1efe2017-09-07 16:00:38 -0700561 dev_priv->psr.enabled = intel_dp;
562
563 if (INTEL_GEN(dev_priv) >= 9) {
564 intel_psr_activate(intel_dp);
565 } else {
566 /*
567 * FIXME: Activation should happen immediately since this
568 * function is just called after pipe is fully trained and
569 * enabled.
570 * However on some platforms we face issues when first
571 * activation follows a modeset so quickly.
572 * - On VLV/CHV we get bank screen on first activation
573 * - On HSW/BDW we get a recoverable frozen screen until
574 * next exit-activate sequence.
575 */
Rodrigo Vivid0ac8962015-11-11 11:37:07 -0800576 schedule_delayed_work(&dev_priv->psr.work,
577 msecs_to_jiffies(intel_dp->panel_power_cycle_delay * 5));
Rodrigo Vivi29d1efe2017-09-07 16:00:38 -0700578 }
Rodrigo Vivid0ac8962015-11-11 11:37:07 -0800579
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800580unlock:
581 mutex_unlock(&dev_priv->psr.lock);
582}
583
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300584static void vlv_psr_disable(struct intel_dp *intel_dp,
585 const struct intel_crtc_state *old_crtc_state)
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800586{
587 struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp);
588 struct drm_device *dev = intel_dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100589 struct drm_i915_private *dev_priv = to_i915(dev);
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300590 struct intel_crtc *crtc = to_intel_crtc(old_crtc_state->base.crtc);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800591 uint32_t val;
592
593 if (dev_priv->psr.active) {
594 /* Put VLV PSR back to PSR_state 0 that is PSR Disabled. */
Chris Wilsoneb0241c2016-06-30 15:33:26 +0100595 if (intel_wait_for_register(dev_priv,
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300596 VLV_PSRSTAT(crtc->pipe),
Chris Wilsoneb0241c2016-06-30 15:33:26 +0100597 VLV_EDP_PSR_IN_TRANS,
598 0,
599 1))
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800600 WARN(1, "PSR transition took longer than expected\n");
601
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300602 val = I915_READ(VLV_PSRCTL(crtc->pipe));
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800603 val &= ~VLV_EDP_PSR_ACTIVE_ENTRY;
604 val &= ~VLV_EDP_PSR_ENABLE;
605 val &= ~VLV_EDP_PSR_MODE_MASK;
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300606 I915_WRITE(VLV_PSRCTL(crtc->pipe), val);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800607
608 dev_priv->psr.active = false;
609 } else {
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300610 WARN_ON(vlv_is_psr_active_on_pipe(dev, crtc->pipe));
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800611 }
612}
613
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300614static void hsw_psr_disable(struct intel_dp *intel_dp,
615 const struct intel_crtc_state *old_crtc_state)
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800616{
617 struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp);
618 struct drm_device *dev = intel_dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100619 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800620
621 if (dev_priv->psr.active) {
Chris Wilson77affa32017-01-16 13:06:22 +0000622 i915_reg_t psr_ctl;
623 u32 psr_status_mask;
624
Nagaraju, Vathsalaf40c4842017-01-11 20:44:33 +0530625 if (dev_priv->psr.aux_frame_sync)
626 drm_dp_dpcd_writeb(&intel_dp->aux,
627 DP_SINK_DEVICE_AUX_FRAME_SYNC_CONF,
628 0);
629
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530630 if (dev_priv->psr.psr2_support) {
Chris Wilson77affa32017-01-16 13:06:22 +0000631 psr_ctl = EDP_PSR2_CTL;
632 psr_status_mask = EDP_PSR2_STATUS_STATE_MASK;
633
634 I915_WRITE(psr_ctl,
635 I915_READ(psr_ctl) &
636 ~(EDP_PSR2_ENABLE | EDP_SU_TRACK_ENABLE));
637
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530638 } else {
Chris Wilson77affa32017-01-16 13:06:22 +0000639 psr_ctl = EDP_PSR_STATUS_CTL;
640 psr_status_mask = EDP_PSR_STATUS_STATE_MASK;
641
642 I915_WRITE(psr_ctl,
643 I915_READ(psr_ctl) & ~EDP_PSR_ENABLE);
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530644 }
Chris Wilson77affa32017-01-16 13:06:22 +0000645
646 /* Wait till PSR is idle */
647 if (intel_wait_for_register(dev_priv,
648 psr_ctl, psr_status_mask, 0,
649 2000))
650 DRM_ERROR("Timed out waiting for PSR Idle State\n");
651
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800652 dev_priv->psr.active = false;
653 } else {
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530654 if (dev_priv->psr.psr2_support)
655 WARN_ON(I915_READ(EDP_PSR2_CTL) & EDP_PSR2_ENABLE);
656 else
657 WARN_ON(I915_READ(EDP_PSR_CTL) & EDP_PSR_ENABLE);
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800658 }
659}
660
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800661/**
662 * intel_psr_disable - Disable PSR
663 * @intel_dp: Intel DP
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300664 * @old_crtc_state: old CRTC state
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800665 *
666 * This function needs to be called before disabling pipe.
667 */
Ville Syrjäläd2419ff2017-08-18 16:49:56 +0300668void intel_psr_disable(struct intel_dp *intel_dp,
669 const struct intel_crtc_state *old_crtc_state)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800670{
671 struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp);
672 struct drm_device *dev = intel_dig_port->base.base.dev;
Chris Wilsonfac5e232016-07-04 11:34:36 +0100673 struct drm_i915_private *dev_priv = to_i915(dev);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800674
Rodrigo Vivi0f328da2017-09-07 16:00:31 -0700675 if (!HAS_PSR(dev_priv))
676 return;
677
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800678 mutex_lock(&dev_priv->psr.lock);
679 if (!dev_priv->psr.enabled) {
680 mutex_unlock(&dev_priv->psr.lock);
681 return;
682 }
683
Rodrigo Vivi424644c2017-09-07 16:00:32 -0700684 dev_priv->psr.disable_source(intel_dp, old_crtc_state);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800685
Rodrigo Vivib6e4d532015-11-23 14:19:32 -0800686 /* Disable PSR on Sink */
687 drm_dp_dpcd_writeb(&intel_dp->aux, DP_PSR_EN_CFG, 0);
688
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800689 dev_priv->psr.enabled = NULL;
690 mutex_unlock(&dev_priv->psr.lock);
691
692 cancel_delayed_work_sync(&dev_priv->psr.work);
693}
694
695static void intel_psr_work(struct work_struct *work)
696{
697 struct drm_i915_private *dev_priv =
698 container_of(work, typeof(*dev_priv), psr.work.work);
699 struct intel_dp *intel_dp = dev_priv->psr.enabled;
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800700 struct drm_crtc *crtc = dp_to_dig_port(intel_dp)->base.base.crtc;
701 enum pipe pipe = to_intel_crtc(crtc)->pipe;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800702
703 /* We have to make sure PSR is ready for re-enable
704 * otherwise it keeps disabled until next full enable/disable cycle.
705 * PSR might take some time to get fully disabled
706 * and be ready for re-enable.
707 */
Joonas Lahtinen2d1fe072016-04-07 11:08:05 +0300708 if (HAS_DDI(dev_priv)) {
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530709 if (dev_priv->psr.psr2_support) {
710 if (intel_wait_for_register(dev_priv,
711 EDP_PSR2_STATUS_CTL,
712 EDP_PSR2_STATUS_STATE_MASK,
713 0,
714 50)) {
715 DRM_ERROR("Timed out waiting for PSR2 Idle for re-enable\n");
716 return;
717 }
718 } else {
719 if (intel_wait_for_register(dev_priv,
720 EDP_PSR_STATUS_CTL,
721 EDP_PSR_STATUS_STATE_MASK,
722 0,
723 50)) {
724 DRM_ERROR("Timed out waiting for PSR Idle for re-enable\n");
725 return;
726 }
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800727 }
728 } else {
Chris Wilson12bb6312016-06-30 15:33:28 +0100729 if (intel_wait_for_register(dev_priv,
730 VLV_PSRSTAT(pipe),
731 VLV_EDP_PSR_IN_TRANS,
732 0,
733 1)) {
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800734 DRM_ERROR("Timed out waiting for PSR Idle for re-enable\n");
735 return;
736 }
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800737 }
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800738 mutex_lock(&dev_priv->psr.lock);
739 intel_dp = dev_priv->psr.enabled;
740
741 if (!intel_dp)
742 goto unlock;
743
744 /*
745 * The delayed work can race with an invalidate hence we need to
746 * recheck. Since psr_flush first clears this and then reschedules we
747 * won't ever miss a flush when bailing out here.
748 */
749 if (dev_priv->psr.busy_frontbuffer_bits)
750 goto unlock;
751
Rodrigo Vivie2bbc342014-11-19 07:37:00 -0800752 intel_psr_activate(intel_dp);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800753unlock:
754 mutex_unlock(&dev_priv->psr.lock);
755}
756
Chris Wilson5748b6a2016-08-04 16:32:38 +0100757static void intel_psr_exit(struct drm_i915_private *dev_priv)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800758{
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800759 struct intel_dp *intel_dp = dev_priv->psr.enabled;
760 struct drm_crtc *crtc = dp_to_dig_port(intel_dp)->base.base.crtc;
761 enum pipe pipe = to_intel_crtc(crtc)->pipe;
762 u32 val;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800763
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800764 if (!dev_priv->psr.active)
765 return;
766
Chris Wilson5748b6a2016-08-04 16:32:38 +0100767 if (HAS_DDI(dev_priv)) {
Nagaraju, Vathsalaf40c4842017-01-11 20:44:33 +0530768 if (dev_priv->psr.aux_frame_sync)
769 drm_dp_dpcd_writeb(&intel_dp->aux,
770 DP_SINK_DEVICE_AUX_FRAME_SYNC_CONF,
771 0);
Nagaraju, Vathsala3fcb0ca2017-01-12 23:30:59 +0530772 if (dev_priv->psr.psr2_support) {
773 val = I915_READ(EDP_PSR2_CTL);
774 WARN_ON(!(val & EDP_PSR2_ENABLE));
775 I915_WRITE(EDP_PSR2_CTL, val & ~EDP_PSR2_ENABLE);
776 } else {
777 val = I915_READ(EDP_PSR_CTL);
778 WARN_ON(!(val & EDP_PSR_ENABLE));
779 I915_WRITE(EDP_PSR_CTL, val & ~EDP_PSR_ENABLE);
780 }
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800781 } else {
782 val = I915_READ(VLV_PSRCTL(pipe));
783
784 /* Here we do the transition from PSR_state 3 to PSR_state 5
785 * directly once PSR State 4 that is active with single frame
786 * update can be skipped. PSR_state 5 that is PSR exit then
787 * Hardware is responsible to transition back to PSR_state 1
788 * that is PSR inactive. Same state after
789 * vlv_edp_psr_enable_source.
790 */
791 val &= ~VLV_EDP_PSR_ACTIVE_ENTRY;
792 I915_WRITE(VLV_PSRCTL(pipe), val);
793
794 /* Send AUX wake up - Spec says after transitioning to PSR
795 * active we have to send AUX wake up by writing 01h in DPCD
796 * 600h of sink device.
797 * XXX: This might slow down the transition, but without this
798 * HW doesn't complete the transition to PSR_state 1 and we
799 * never get the screen updated.
800 */
801 drm_dp_dpcd_writeb(&intel_dp->aux, DP_SET_POWER,
802 DP_SET_POWER_D0);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800803 }
804
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800805 dev_priv->psr.active = false;
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800806}
807
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800808/**
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700809 * intel_psr_single_frame_update - Single Frame Update
Chris Wilson5748b6a2016-08-04 16:32:38 +0100810 * @dev_priv: i915 device
Daniel Vetter20c88382015-06-18 10:30:27 +0200811 * @frontbuffer_bits: frontbuffer plane tracking bits
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700812 *
813 * Some platforms support a single frame update feature that is used to
814 * send and update only one frame on Remote Frame Buffer.
815 * So far it is only implemented for Valleyview and Cherryview because
816 * hardware requires this to be done before a page flip.
817 */
Chris Wilson5748b6a2016-08-04 16:32:38 +0100818void intel_psr_single_frame_update(struct drm_i915_private *dev_priv,
Daniel Vetter20c88382015-06-18 10:30:27 +0200819 unsigned frontbuffer_bits)
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700820{
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700821 struct drm_crtc *crtc;
822 enum pipe pipe;
823 u32 val;
824
Rodrigo Vivi0f328da2017-09-07 16:00:31 -0700825 if (!HAS_PSR(dev_priv))
826 return;
827
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700828 /*
829 * Single frame update is already supported on BDW+ but it requires
830 * many W/A and it isn't really needed.
831 */
Chris Wilson5748b6a2016-08-04 16:32:38 +0100832 if (!IS_VALLEYVIEW(dev_priv) && !IS_CHERRYVIEW(dev_priv))
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700833 return;
834
835 mutex_lock(&dev_priv->psr.lock);
836 if (!dev_priv->psr.enabled) {
837 mutex_unlock(&dev_priv->psr.lock);
838 return;
839 }
840
841 crtc = dp_to_dig_port(dev_priv->psr.enabled)->base.base.crtc;
842 pipe = to_intel_crtc(crtc)->pipe;
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700843
Daniel Vetter20c88382015-06-18 10:30:27 +0200844 if (frontbuffer_bits & INTEL_FRONTBUFFER_ALL_MASK(pipe)) {
845 val = I915_READ(VLV_PSRCTL(pipe));
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700846
Daniel Vetter20c88382015-06-18 10:30:27 +0200847 /*
848 * We need to set this bit before writing registers for a flip.
849 * This bit will be self-clear when it gets to the PSR active state.
850 */
851 I915_WRITE(VLV_PSRCTL(pipe), val | VLV_EDP_PSR_SINGLE_FRAME_UPDATE);
852 }
Rodrigo Vivic7240c32015-04-10 11:15:10 -0700853 mutex_unlock(&dev_priv->psr.lock);
854}
855
856/**
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800857 * intel_psr_invalidate - Invalidade PSR
Chris Wilson5748b6a2016-08-04 16:32:38 +0100858 * @dev_priv: i915 device
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800859 * @frontbuffer_bits: frontbuffer plane tracking bits
860 *
861 * Since the hardware frontbuffer tracking has gaps we need to integrate
862 * with the software frontbuffer tracking. This function gets called every
863 * time frontbuffer rendering starts and a buffer gets dirtied. PSR must be
864 * disabled if the frontbuffer mask contains a buffer relevant to PSR.
865 *
866 * Dirty frontbuffers relevant to PSR are tracked in busy_frontbuffer_bits."
867 */
Chris Wilson5748b6a2016-08-04 16:32:38 +0100868void intel_psr_invalidate(struct drm_i915_private *dev_priv,
Daniel Vetter20c88382015-06-18 10:30:27 +0200869 unsigned frontbuffer_bits)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800870{
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800871 struct drm_crtc *crtc;
872 enum pipe pipe;
873
Rodrigo Vivi0f328da2017-09-07 16:00:31 -0700874 if (!HAS_PSR(dev_priv))
875 return;
876
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800877 mutex_lock(&dev_priv->psr.lock);
878 if (!dev_priv->psr.enabled) {
879 mutex_unlock(&dev_priv->psr.lock);
880 return;
881 }
882
883 crtc = dp_to_dig_port(dev_priv->psr.enabled)->base.base.crtc;
884 pipe = to_intel_crtc(crtc)->pipe;
885
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800886 frontbuffer_bits &= INTEL_FRONTBUFFER_ALL_MASK(pipe);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800887 dev_priv->psr.busy_frontbuffer_bits |= frontbuffer_bits;
Daniel Vetterec76d622015-06-18 10:30:26 +0200888
889 if (frontbuffer_bits)
Chris Wilson5748b6a2016-08-04 16:32:38 +0100890 intel_psr_exit(dev_priv);
Daniel Vetterec76d622015-06-18 10:30:26 +0200891
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800892 mutex_unlock(&dev_priv->psr.lock);
893}
894
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800895/**
896 * intel_psr_flush - Flush PSR
Chris Wilson5748b6a2016-08-04 16:32:38 +0100897 * @dev_priv: i915 device
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800898 * @frontbuffer_bits: frontbuffer plane tracking bits
Rodrigo Vivi169de132015-07-08 16:21:31 -0700899 * @origin: which operation caused the flush
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800900 *
901 * Since the hardware frontbuffer tracking has gaps we need to integrate
902 * with the software frontbuffer tracking. This function gets called every
903 * time frontbuffer rendering has completed and flushed out to memory. PSR
904 * can be enabled again if no other frontbuffer relevant to PSR is dirty.
905 *
906 * Dirty frontbuffers relevant to PSR are tracked in busy_frontbuffer_bits.
907 */
Chris Wilson5748b6a2016-08-04 16:32:38 +0100908void intel_psr_flush(struct drm_i915_private *dev_priv,
Rodrigo Vivi169de132015-07-08 16:21:31 -0700909 unsigned frontbuffer_bits, enum fb_op_origin origin)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800910{
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800911 struct drm_crtc *crtc;
912 enum pipe pipe;
913
Rodrigo Vivi0f328da2017-09-07 16:00:31 -0700914 if (!HAS_PSR(dev_priv))
915 return;
916
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800917 mutex_lock(&dev_priv->psr.lock);
918 if (!dev_priv->psr.enabled) {
919 mutex_unlock(&dev_priv->psr.lock);
920 return;
921 }
922
923 crtc = dp_to_dig_port(dev_priv->psr.enabled)->base.base.crtc;
924 pipe = to_intel_crtc(crtc)->pipe;
Daniel Vetterec76d622015-06-18 10:30:26 +0200925
926 frontbuffer_bits &= INTEL_FRONTBUFFER_ALL_MASK(pipe);
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800927 dev_priv->psr.busy_frontbuffer_bits &= ~frontbuffer_bits;
928
Rodrigo Vivi921ec282015-11-18 11:21:12 -0800929 /* By definition flush = invalidate + flush */
930 if (frontbuffer_bits)
Chris Wilson5748b6a2016-08-04 16:32:38 +0100931 intel_psr_exit(dev_priv);
Rodrigo Vivi995d3042014-11-19 07:37:47 -0800932
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800933 if (!dev_priv->psr.active && !dev_priv->psr.busy_frontbuffer_bits)
Rodrigo Vivid0ac8962015-11-11 11:37:07 -0800934 if (!work_busy(&dev_priv->psr.work.work))
935 schedule_delayed_work(&dev_priv->psr.work,
Rodrigo Vivi20bb97f2015-11-11 11:37:08 -0800936 msecs_to_jiffies(100));
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800937 mutex_unlock(&dev_priv->psr.lock);
938}
939
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800940/**
941 * intel_psr_init - Init basic PSR work and mutex.
Ander Conselvan de Oliveira93de0562016-11-29 13:48:47 +0200942 * @dev_priv: i915 device private
Rodrigo Vivib2b89f52014-11-14 08:52:29 -0800943 *
944 * This function is called only once at driver load to initialize basic
945 * PSR stuff.
946 */
Ander Conselvan de Oliveirac39055b2016-11-23 16:21:44 +0200947void intel_psr_init(struct drm_i915_private *dev_priv)
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800948{
Rodrigo Vivi0f328da2017-09-07 16:00:31 -0700949 if (!HAS_PSR(dev_priv))
950 return;
951
Ville Syrjälä443a3892015-11-11 20:34:15 +0200952 dev_priv->psr_mmio_base = IS_HASWELL(dev_priv) ?
953 HSW_EDP_PSR_BASE : BDW_EDP_PSR_BASE;
954
Paulo Zanoni2ee7dc42016-12-13 18:57:44 -0200955 /* Per platform default: all disabled. */
956 if (i915.enable_psr == -1)
957 i915.enable_psr = 0;
Rodrigo Vivid94d6e82016-02-12 04:08:11 -0800958
Rodrigo Vivi65f61b42016-02-01 12:02:08 -0800959 /* Set link_standby x link_off defaults */
Tvrtko Ursulin86527442016-10-13 11:03:00 +0100960 if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv))
Rodrigo Vivi60e5ffe2016-02-01 12:02:07 -0800961 /* HSW and BDW require workarounds that we don't implement. */
962 dev_priv->psr.link_standby = false;
Tvrtko Ursulin920a14b2016-10-14 10:13:44 +0100963 else if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
Rodrigo Vivi60e5ffe2016-02-01 12:02:07 -0800964 /* On VLV and CHV only standby mode is supported. */
965 dev_priv->psr.link_standby = true;
966 else
967 /* For new platforms let's respect VBT back again */
968 dev_priv->psr.link_standby = dev_priv->vbt.psr.full_link;
969
Rodrigo Vivi65f61b42016-02-01 12:02:08 -0800970 /* Override link_standby x link_off defaults */
971 if (i915.enable_psr == 2 && !dev_priv->psr.link_standby) {
972 DRM_DEBUG_KMS("PSR: Forcing link standby\n");
973 dev_priv->psr.link_standby = true;
974 }
975 if (i915.enable_psr == 3 && dev_priv->psr.link_standby) {
976 DRM_DEBUG_KMS("PSR: Forcing main link off\n");
977 dev_priv->psr.link_standby = false;
978 }
979
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800980 INIT_DELAYED_WORK(&dev_priv->psr.work, intel_psr_work);
981 mutex_init(&dev_priv->psr.lock);
Rodrigo Vivi424644c2017-09-07 16:00:32 -0700982
983 if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) {
984 dev_priv->psr.disable_source = vlv_psr_disable;
Rodrigo Vivie3702ac2017-09-07 16:00:34 -0700985 dev_priv->psr.activate = vlv_psr_activate;
Rodrigo Vivi424644c2017-09-07 16:00:32 -0700986 } else {
987 dev_priv->psr.disable_source = hsw_psr_disable;
Rodrigo Vivie3702ac2017-09-07 16:00:34 -0700988 dev_priv->psr.activate = hsw_psr_activate;
Rodrigo Vivi424644c2017-09-07 16:00:32 -0700989 }
Rodrigo Vivi0bc12bc2014-11-14 08:52:28 -0800990}