1 /*
2 * Copyright © 2012 Intel Corporation
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
21 * IN THE SOFTWARE.
22 *
23 * Authors:
24 * Eugeni Dodonov <eugeni.dodonov@intel.com>
25 *
26 */
27
28 #include <linux/iopoll.h>
29 #include <linux/seq_buf.h>
30 #include <linux/string_helpers.h>
31
32 #include <drm/display/drm_dp_helper.h>
33 #include <drm/display/drm_scdc_helper.h>
34 #include <drm/drm_print.h>
35 #include <drm/drm_privacy_screen_consumer.h>
36 #include <drm/intel/step.h>
37
38 #include "icl_dsi.h"
39 #include "intel_alpm.h"
40 #include "intel_audio.h"
41 #include "intel_audio_regs.h"
42 #include "intel_backlight.h"
43 #include "intel_combo_phy.h"
44 #include "intel_combo_phy_regs.h"
45 #include "intel_connector.h"
46 #include "intel_crtc.h"
47 #include "intel_cx0_phy.h"
48 #include "intel_cx0_phy_regs.h"
49 #include "intel_ddi.h"
50 #include "intel_ddi_buf_trans.h"
51 #include "intel_de.h"
52 #include "intel_display_power.h"
53 #include "intel_display_regs.h"
54 #include "intel_display_types.h"
55 #include "intel_display_utils.h"
56 #include "intel_display_wa.h"
57 #include "intel_dkl_phy.h"
58 #include "intel_dkl_phy_regs.h"
59 #include "intel_dp.h"
60 #include "intel_dp_aux.h"
61 #include "intel_dp_link_training.h"
62 #include "intel_dp_mst.h"
63 #include "intel_dp_test.h"
64 #include "intel_dp_tunnel.h"
65 #include "intel_dpio_phy.h"
66 #include "intel_dsi.h"
67 #include "intel_encoder.h"
68 #include "intel_fdi.h"
69 #include "intel_fifo_underrun.h"
70 #include "intel_gmbus.h"
71 #include "intel_hdcp.h"
72 #include "intel_hdmi.h"
73 #include "intel_hotplug.h"
74 #include "intel_hti.h"
75 #include "intel_lspcon.h"
76 #include "intel_lt_phy.h"
77 #include "intel_mg_phy_regs.h"
78 #include "intel_modeset_lock.h"
79 #include "intel_panel.h"
80 #include "intel_pfit.h"
81 #include "intel_pps.h"
82 #include "intel_psr.h"
83 #include "intel_quirks.h"
84 #include "intel_snps_phy.h"
85 #include "intel_tc.h"
86 #include "intel_vdsc.h"
87 #include "intel_vdsc_regs.h"
88 #include "intel_vrr.h"
89 #include "skl_scaler.h"
90 #include "skl_universal_plane.h"
91
92 struct intel_dpll;
93
94 static const u8 index_to_dp_signal_levels[] = {
95 [0] = DP_TRAIN_VOLTAGE_SWING_LEVEL_0 | DP_TRAIN_PRE_EMPH_LEVEL_0,
96 [1] = DP_TRAIN_VOLTAGE_SWING_LEVEL_0 | DP_TRAIN_PRE_EMPH_LEVEL_1,
97 [2] = DP_TRAIN_VOLTAGE_SWING_LEVEL_0 | DP_TRAIN_PRE_EMPH_LEVEL_2,
98 [3] = DP_TRAIN_VOLTAGE_SWING_LEVEL_0 | DP_TRAIN_PRE_EMPH_LEVEL_3,
99 [4] = DP_TRAIN_VOLTAGE_SWING_LEVEL_1 | DP_TRAIN_PRE_EMPH_LEVEL_0,
100 [5] = DP_TRAIN_VOLTAGE_SWING_LEVEL_1 | DP_TRAIN_PRE_EMPH_LEVEL_1,
101 [6] = DP_TRAIN_VOLTAGE_SWING_LEVEL_1 | DP_TRAIN_PRE_EMPH_LEVEL_2,
102 [7] = DP_TRAIN_VOLTAGE_SWING_LEVEL_2 | DP_TRAIN_PRE_EMPH_LEVEL_0,
103 [8] = DP_TRAIN_VOLTAGE_SWING_LEVEL_2 | DP_TRAIN_PRE_EMPH_LEVEL_1,
104 [9] = DP_TRAIN_VOLTAGE_SWING_LEVEL_3 | DP_TRAIN_PRE_EMPH_LEVEL_0,
105 };
106
intel_ddi_hdmi_level(struct intel_encoder * encoder,const struct intel_ddi_buf_trans * trans)107 static int intel_ddi_hdmi_level(struct intel_encoder *encoder,
108 const struct intel_ddi_buf_trans *trans)
109 {
110 int level;
111
112 level = intel_bios_hdmi_level_shift(encoder->devdata);
113 if (level < 0)
114 level = trans->hdmi_default_entry;
115
116 return level;
117 }
118
has_buf_trans_select(struct intel_display * display)119 static bool has_buf_trans_select(struct intel_display *display)
120 {
121 return DISPLAY_VER(display) < 10 && !display->platform.broxton;
122 }
123
has_iboost(struct intel_display * display)124 static bool has_iboost(struct intel_display *display)
125 {
126 return DISPLAY_VER(display) == 9 && !display->platform.broxton;
127 }
128
129 /*
130 * Starting with Haswell, DDI port buffers must be programmed with correct
131 * values in advance. This function programs the correct values for
132 * DP/eDP/FDI use cases.
133 */
hsw_prepare_dp_ddi_buffers(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)134 void hsw_prepare_dp_ddi_buffers(struct intel_encoder *encoder,
135 const struct intel_crtc_state *crtc_state)
136 {
137 struct intel_display *display = to_intel_display(encoder);
138 u32 iboost_bit = 0;
139 int i, n_entries;
140 enum port port = encoder->port;
141 const struct intel_ddi_buf_trans *trans;
142
143 trans = intel_ddi_buf_trans_get(encoder, crtc_state, &n_entries);
144 if (drm_WARN_ON_ONCE(display->drm, !trans))
145 return;
146
147 /* If we're boosting the current, set bit 31 of trans1 */
148 if (has_iboost(display) &&
149 intel_bios_dp_boost_level(encoder->devdata))
150 iboost_bit = DDI_BUF_BALANCE_LEG_ENABLE;
151
152 for (i = 0; i < n_entries; i++) {
153 intel_de_write(display, DDI_BUF_TRANS_LO(port, i),
154 trans->entries[i].hsw.trans1 | iboost_bit);
155 intel_de_write(display, DDI_BUF_TRANS_HI(port, i),
156 trans->entries[i].hsw.trans2);
157 }
158 }
159
160 /*
161 * Starting with Haswell, DDI port buffers must be programmed with correct
162 * values in advance. This function programs the correct values for
163 * HDMI/DVI use cases.
164 */
hsw_prepare_hdmi_ddi_buffers(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)165 static void hsw_prepare_hdmi_ddi_buffers(struct intel_encoder *encoder,
166 const struct intel_crtc_state *crtc_state)
167 {
168 struct intel_display *display = to_intel_display(encoder);
169 int level = intel_ddi_level(encoder, crtc_state, 0);
170 u32 iboost_bit = 0;
171 int n_entries;
172 enum port port = encoder->port;
173 const struct intel_ddi_buf_trans *trans;
174
175 trans = intel_ddi_buf_trans_get(encoder, crtc_state, &n_entries);
176 if (drm_WARN_ON_ONCE(display->drm, !trans))
177 return;
178
179 /* If we're boosting the current, set bit 31 of trans1 */
180 if (has_iboost(display) &&
181 intel_bios_hdmi_boost_level(encoder->devdata))
182 iboost_bit = DDI_BUF_BALANCE_LEG_ENABLE;
183
184 /* Entry 9 is for HDMI: */
185 intel_de_write(display, DDI_BUF_TRANS_LO(port, 9),
186 trans->entries[level].hsw.trans1 | iboost_bit);
187 intel_de_write(display, DDI_BUF_TRANS_HI(port, 9),
188 trans->entries[level].hsw.trans2);
189 }
190
intel_ddi_buf_status_reg(struct intel_display * display,enum port port)191 static intel_reg_t intel_ddi_buf_status_reg(struct intel_display *display, enum port port)
192 {
193 if (DISPLAY_VER(display) >= 14)
194 return XELPDP_PORT_BUF_CTL1(display, port);
195 else
196 return DDI_BUF_CTL(port);
197 }
198
intel_wait_ddi_buf_idle(struct intel_display * display,enum port port)199 void intel_wait_ddi_buf_idle(struct intel_display *display, enum port port)
200 {
201 /*
202 * Bspec's platform specific timeouts:
203 * MTL+ : 100 us
204 * BXT : fixed 16 us
205 * HSW-ADL: 8 us
206 *
207 * FIXME: MTL requires 10 ms based on tests, find out why 100 us is too short
208 */
209 if (display->platform.broxton) {
210 udelay(16);
211 return;
212 }
213
214 static_assert(DDI_BUF_IS_IDLE == XELPDP_PORT_BUF_PHY_IDLE);
215 if (intel_de_wait_for_set_ms(display, intel_ddi_buf_status_reg(display, port),
216 DDI_BUF_IS_IDLE, 10))
217 drm_err(display->drm, "Timeout waiting for DDI BUF %c to get idle\n",
218 port_name(port));
219 }
220
intel_wait_ddi_buf_active(struct intel_encoder * encoder)221 static void intel_wait_ddi_buf_active(struct intel_encoder *encoder)
222 {
223 struct intel_display *display = to_intel_display(encoder);
224 enum port port = encoder->port;
225
226 /*
227 * Bspec's platform specific timeouts:
228 * MTL+ : 10000 us
229 * DG2 : 1200 us
230 * TGL-ADL combo PHY: 1000 us
231 * TGL-ADL TypeC PHY: 3000 us
232 * HSW-ICL : fixed 518 us
233 */
234 if (DISPLAY_VER(display) < 10) {
235 usleep_range(518, 1000);
236 return;
237 }
238
239 static_assert(DDI_BUF_IS_IDLE == XELPDP_PORT_BUF_PHY_IDLE);
240 if (intel_de_wait_for_clear_ms(display, intel_ddi_buf_status_reg(display, port),
241 DDI_BUF_IS_IDLE, 10))
242 drm_err(display->drm, "Timeout waiting for DDI BUF %c to get active\n",
243 port_name(port));
244 }
245
hsw_pll_to_ddi_pll_sel(const struct intel_dpll * pll)246 static u32 hsw_pll_to_ddi_pll_sel(const struct intel_dpll *pll)
247 {
248 switch (pll->info->id) {
249 case DPLL_ID_WRPLL1:
250 return PORT_CLK_SEL_WRPLL1;
251 case DPLL_ID_WRPLL2:
252 return PORT_CLK_SEL_WRPLL2;
253 case DPLL_ID_SPLL:
254 return PORT_CLK_SEL_SPLL;
255 case DPLL_ID_LCPLL_810:
256 return PORT_CLK_SEL_LCPLL_810;
257 case DPLL_ID_LCPLL_1350:
258 return PORT_CLK_SEL_LCPLL_1350;
259 case DPLL_ID_LCPLL_2700:
260 return PORT_CLK_SEL_LCPLL_2700;
261 default:
262 MISSING_CASE(pll->info->id);
263 return PORT_CLK_SEL_NONE;
264 }
265 }
266
icl_pll_to_ddi_clk_sel(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)267 static u32 icl_pll_to_ddi_clk_sel(struct intel_encoder *encoder,
268 const struct intel_crtc_state *crtc_state)
269 {
270 const struct intel_dpll *pll = crtc_state->intel_dpll;
271 int clock = crtc_state->port_clock;
272 const enum intel_dpll_id id = pll->info->id;
273
274 switch (id) {
275 default:
276 /*
277 * DPLL_ID_ICL_DPLL0 and DPLL_ID_ICL_DPLL1 should not be used
278 * here, so do warn if this get passed in
279 */
280 MISSING_CASE(id);
281 return DDI_CLK_SEL_NONE;
282 case DPLL_ID_ICL_TBTPLL:
283 switch (clock) {
284 case 162000:
285 return DDI_CLK_SEL_TBT_162;
286 case 270000:
287 return DDI_CLK_SEL_TBT_270;
288 case 540000:
289 return DDI_CLK_SEL_TBT_540;
290 case 810000:
291 return DDI_CLK_SEL_TBT_810;
292 default:
293 MISSING_CASE(clock);
294 return DDI_CLK_SEL_NONE;
295 }
296 case DPLL_ID_ICL_MGPLL1:
297 case DPLL_ID_ICL_MGPLL2:
298 case DPLL_ID_ICL_MGPLL3:
299 case DPLL_ID_ICL_MGPLL4:
300 case DPLL_ID_TGL_MGPLL5:
301 case DPLL_ID_TGL_MGPLL6:
302 return DDI_CLK_SEL_MG;
303 }
304 }
305
ddi_buf_phy_link_rate(int port_clock)306 static u32 ddi_buf_phy_link_rate(int port_clock)
307 {
308 switch (port_clock) {
309 case 162000:
310 return DDI_BUF_PHY_LINK_RATE(0);
311 case 216000:
312 return DDI_BUF_PHY_LINK_RATE(4);
313 case 243000:
314 return DDI_BUF_PHY_LINK_RATE(5);
315 case 270000:
316 return DDI_BUF_PHY_LINK_RATE(1);
317 case 324000:
318 return DDI_BUF_PHY_LINK_RATE(6);
319 case 432000:
320 return DDI_BUF_PHY_LINK_RATE(7);
321 case 540000:
322 return DDI_BUF_PHY_LINK_RATE(2);
323 case 810000:
324 return DDI_BUF_PHY_LINK_RATE(3);
325 default:
326 MISSING_CASE(port_clock);
327 return DDI_BUF_PHY_LINK_RATE(0);
328 }
329 }
330
dp_phy_lane_stagger_delay(int port_clock)331 static int dp_phy_lane_stagger_delay(int port_clock)
332 {
333 /*
334 * Return the number of symbol clocks delay used to stagger the
335 * assertion/desassertion of the port lane enables. The target delay
336 * time is 100 ns or greater, return the number of symbols specific to
337 * the provided port_clock (aka link clock) corresponding to this delay
338 * time, i.e. so that
339 *
340 * number_of_symbols * duration_of_one_symbol >= 100 ns
341 *
342 * The delay must be applied only on TypeC DP outputs, for everything else
343 * the delay must be set to 0.
344 *
345 * Return the number of link symbols per 100 ns:
346 * port_clock (10 kHz) -> bits / 100 us
347 * / symbol_size -> symbols / 100 us
348 * / 1000 -> symbols / 100 ns
349 */
350 return DIV_ROUND_UP(port_clock, intel_dp_link_symbol_size(port_clock) * 1000);
351 }
352
intel_ddi_init_dp_buf_reg(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)353 static void intel_ddi_init_dp_buf_reg(struct intel_encoder *encoder,
354 const struct intel_crtc_state *crtc_state)
355 {
356 struct intel_display *display = to_intel_display(encoder);
357 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
358 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
359
360 /* DDI_BUF_CTL_ENABLE will be set by intel_ddi_prepare_link_retrain() later */
361 intel_dp->DP = DDI_PORT_WIDTH(crtc_state->lane_count) |
362 DDI_BUF_TRANS_SELECT(0);
363
364 if (dig_port->lane_reversal)
365 intel_dp->DP |= DDI_BUF_PORT_REVERSAL;
366 if (dig_port->ddi_a_4_lanes)
367 intel_dp->DP |= DDI_A_4_LANES;
368
369 if (DISPLAY_VER(display) >= 14) {
370 if (intel_dp_is_uhbr(crtc_state))
371 intel_dp->DP |= DDI_BUF_PORT_DATA_40BIT;
372 else
373 intel_dp->DP |= DDI_BUF_PORT_DATA_10BIT;
374 }
375
376 if (display->platform.alderlake_p && intel_encoder_is_tc(encoder)) {
377 intel_dp->DP |= ddi_buf_phy_link_rate(crtc_state->port_clock);
378 if (!intel_tc_port_in_tbt_alt_mode(dig_port))
379 intel_dp->DP |= DDI_BUF_CTL_TC_PHY_OWNERSHIP;
380 }
381
382 if (IS_DISPLAY_VER(display, 11, 13) && intel_encoder_is_tc(encoder)) {
383 int delay = dp_phy_lane_stagger_delay(crtc_state->port_clock);
384
385 intel_dp->DP |= DDI_BUF_LANE_STAGGER_DELAY(delay);
386 }
387 }
388
icl_calc_tbt_pll_link(struct intel_display * display,enum port port)389 static int icl_calc_tbt_pll_link(struct intel_display *display, enum port port)
390 {
391 u32 val = intel_de_read(display, DDI_CLK_SEL(port)) & DDI_CLK_SEL_MASK;
392
393 switch (val) {
394 case DDI_CLK_SEL_NONE:
395 return 0;
396 case DDI_CLK_SEL_TBT_162:
397 return 162000;
398 case DDI_CLK_SEL_TBT_270:
399 return 270000;
400 case DDI_CLK_SEL_TBT_540:
401 return 540000;
402 case DDI_CLK_SEL_TBT_810:
403 return 810000;
404 default:
405 MISSING_CASE(val);
406 return 0;
407 }
408 }
409
ddi_dotclock_get(struct intel_crtc_state * pipe_config)410 static void ddi_dotclock_get(struct intel_crtc_state *pipe_config)
411 {
412 /* CRT dotclock is determined via other means */
413 if (pipe_config->has_pch_encoder)
414 return;
415
416 pipe_config->hw.adjusted_mode.crtc_clock =
417 intel_crtc_dotclock(pipe_config);
418 }
419
intel_ddi_set_dp_msa(const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)420 void intel_ddi_set_dp_msa(const struct intel_crtc_state *crtc_state,
421 const struct drm_connector_state *conn_state)
422 {
423 struct intel_display *display = to_intel_display(crtc_state);
424 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
425 u32 temp;
426
427 if (!intel_crtc_has_dp_encoder(crtc_state))
428 return;
429
430 drm_WARN_ON(display->drm, transcoder_is_dsi(cpu_transcoder));
431
432 temp = DP_MSA_MISC_SYNC_CLOCK;
433
434 switch (crtc_state->pipe_bpp) {
435 case 18:
436 temp |= DP_MSA_MISC_6_BPC;
437 break;
438 case 24:
439 temp |= DP_MSA_MISC_8_BPC;
440 break;
441 case 30:
442 temp |= DP_MSA_MISC_10_BPC;
443 break;
444 case 36:
445 temp |= DP_MSA_MISC_12_BPC;
446 break;
447 default:
448 MISSING_CASE(crtc_state->pipe_bpp);
449 break;
450 }
451
452 /* nonsense combination */
453 drm_WARN_ON(display->drm, crtc_state->limited_color_range &&
454 crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB);
455
456 if (crtc_state->limited_color_range)
457 temp |= DP_MSA_MISC_COLOR_CEA_RGB;
458
459 /*
460 * As per DP 1.2 spec section 2.3.4.3 while sending
461 * YCBCR 444 signals we should program MSA MISC1/0 fields with
462 * colorspace information.
463 */
464 if (crtc_state->output_format == INTEL_OUTPUT_FORMAT_YCBCR444)
465 temp |= DP_MSA_MISC_COLOR_YCBCR_444_BT709;
466
467 /*
468 * As per DP 1.4a spec section 2.2.4.3 [MSA Field for Indication
469 * of Color Encoding Format and Content Color Gamut] while sending
470 * YCBCR 420, HDR BT.2020 signals we should program MSA MISC1 fields
471 * which indicate VSC SDP for the Pixel Encoding/Colorimetry Format.
472 * Only set the delegation bit when the content needs it and
473 * the sink advertises support.
474 */
475 if (intel_dp_needs_vsc_colorimetry(crtc_state, conn_state))
476 temp |= DP_MSA_MISC_COLOR_VSC_SDP;
477
478 intel_de_write(display, TRANS_MSA_MISC(display, cpu_transcoder),
479 temp);
480 }
481
bdw_trans_port_sync_master_select(enum transcoder master_transcoder)482 static u32 bdw_trans_port_sync_master_select(enum transcoder master_transcoder)
483 {
484 if (master_transcoder == TRANSCODER_EDP)
485 return 0;
486 else
487 return master_transcoder + 1;
488 }
489
490 static void
intel_ddi_config_transcoder_dp2(const struct intel_crtc_state * crtc_state,bool enable)491 intel_ddi_config_transcoder_dp2(const struct intel_crtc_state *crtc_state,
492 bool enable)
493 {
494 struct intel_display *display = to_intel_display(crtc_state);
495 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
496 u32 val = 0;
497
498 if (!HAS_DP20(display))
499 return;
500
501 if (enable && intel_dp_is_uhbr(crtc_state))
502 val = TRANS_DP2_128B132B_CHANNEL_CODING;
503
504 intel_de_write(display, TRANS_DP2_CTL(cpu_transcoder), val);
505 }
506
507 /*
508 * Returns the TRANS_DDI_FUNC_CTL value based on CRTC state.
509 *
510 * Only intended to be used by intel_ddi_enable_transcoder_func() and
511 * intel_ddi_config_transcoder_func().
512 */
513 static u32
intel_ddi_transcoder_func_reg_val_get(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)514 intel_ddi_transcoder_func_reg_val_get(struct intel_encoder *encoder,
515 const struct intel_crtc_state *crtc_state)
516 {
517 struct intel_display *display = to_intel_display(crtc_state);
518 struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
519 enum pipe pipe = crtc->pipe;
520 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
521 enum port port = encoder->port;
522 u32 temp;
523
524 /* Enable TRANS_DDI_FUNC_CTL for the pipe to work in HDMI mode */
525 temp = TRANS_DDI_FUNC_ENABLE;
526 if (DISPLAY_VER(display) >= 12)
527 temp |= TGL_TRANS_DDI_SELECT_PORT(port);
528 else
529 temp |= TRANS_DDI_SELECT_PORT(port);
530
531 switch (crtc_state->pipe_bpp) {
532 default:
533 MISSING_CASE(crtc_state->pipe_bpp);
534 fallthrough;
535 case 18:
536 temp |= TRANS_DDI_BPC_6;
537 break;
538 case 24:
539 temp |= TRANS_DDI_BPC_8;
540 break;
541 case 30:
542 temp |= TRANS_DDI_BPC_10;
543 break;
544 case 36:
545 temp |= TRANS_DDI_BPC_12;
546 break;
547 }
548
549 if (crtc_state->hw.adjusted_mode.flags & DRM_MODE_FLAG_PVSYNC)
550 temp |= TRANS_DDI_PVSYNC;
551 if (crtc_state->hw.adjusted_mode.flags & DRM_MODE_FLAG_PHSYNC)
552 temp |= TRANS_DDI_PHSYNC;
553
554 if (cpu_transcoder == TRANSCODER_EDP) {
555 switch (pipe) {
556 default:
557 MISSING_CASE(pipe);
558 fallthrough;
559 case PIPE_A:
560 /* On Haswell, can only use the always-on power well for
561 * eDP when not using the panel fitter, and when not
562 * using motion blur mitigation (which we don't
563 * support). */
564 if (crtc_state->pch_pfit.force_thru)
565 temp |= TRANS_DDI_EDP_INPUT_A_ONOFF;
566 else
567 temp |= TRANS_DDI_EDP_INPUT_A_ON;
568 break;
569 case PIPE_B:
570 temp |= TRANS_DDI_EDP_INPUT_B_ONOFF;
571 break;
572 case PIPE_C:
573 temp |= TRANS_DDI_EDP_INPUT_C_ONOFF;
574 break;
575 }
576 }
577
578 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) {
579 if (crtc_state->has_hdmi_sink)
580 temp |= TRANS_DDI_MODE_SELECT_HDMI;
581 else
582 temp |= TRANS_DDI_MODE_SELECT_DVI;
583
584 if (crtc_state->hdmi_scrambling)
585 temp |= TRANS_DDI_HDMI_SCRAMBLING;
586 if (crtc_state->hdmi_high_tmds_clock_ratio)
587 temp |= TRANS_DDI_HIGH_TMDS_CHAR_RATE;
588 if (DISPLAY_VER(display) >= 14)
589 temp |= TRANS_DDI_PORT_WIDTH(crtc_state->lane_count);
590 } else if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_ANALOG)) {
591 temp |= TRANS_DDI_MODE_SELECT_FDI_OR_128B132B;
592 temp |= (crtc_state->fdi_lanes - 1) << 1;
593 } else if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST) ||
594 intel_dp_is_uhbr(crtc_state)) {
595 if (intel_dp_is_uhbr(crtc_state))
596 temp |= TRANS_DDI_MODE_SELECT_FDI_OR_128B132B;
597 else
598 temp |= TRANS_DDI_MODE_SELECT_DP_MST;
599 temp |= DDI_PORT_WIDTH(crtc_state->lane_count);
600
601 if (DISPLAY_VER(display) >= 12) {
602 enum transcoder master;
603
604 master = crtc_state->mst_master_transcoder;
605 if (drm_WARN_ON(display->drm,
606 master == INVALID_TRANSCODER))
607 master = TRANSCODER_A;
608 temp |= TRANS_DDI_MST_TRANSPORT_SELECT(master);
609 }
610 } else {
611 temp |= TRANS_DDI_MODE_SELECT_DP_SST;
612 temp |= DDI_PORT_WIDTH(crtc_state->lane_count);
613 }
614
615 if (IS_DISPLAY_VER(display, 8, 10) &&
616 crtc_state->master_transcoder != INVALID_TRANSCODER) {
617 u8 master_select =
618 bdw_trans_port_sync_master_select(crtc_state->master_transcoder);
619
620 temp |= TRANS_DDI_PORT_SYNC_ENABLE |
621 TRANS_DDI_PORT_SYNC_MASTER_SELECT(master_select);
622 }
623
624 return temp;
625 }
626
intel_ddi_enable_transcoder_func(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)627 void intel_ddi_enable_transcoder_func(struct intel_encoder *encoder,
628 const struct intel_crtc_state *crtc_state)
629 {
630 struct intel_display *display = to_intel_display(crtc_state);
631 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
632
633 if (DISPLAY_VER(display) >= 11) {
634 enum transcoder master_transcoder = crtc_state->master_transcoder;
635 u32 ctl2 = 0;
636
637 if (master_transcoder != INVALID_TRANSCODER) {
638 u8 master_select =
639 bdw_trans_port_sync_master_select(master_transcoder);
640
641 ctl2 |= PORT_SYNC_MODE_ENABLE |
642 PORT_SYNC_MODE_MASTER_SELECT(master_select);
643 }
644
645 intel_de_write(display,
646 TRANS_DDI_FUNC_CTL2(display, cpu_transcoder),
647 ctl2);
648 }
649
650 intel_de_write(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder),
651 intel_ddi_transcoder_func_reg_val_get(encoder,
652 crtc_state));
653 }
654
655 /*
656 * Same as intel_ddi_enable_transcoder_func(), but it does not set the enable
657 * bit for the DDI function and enables the DP2 configuration. Called for all
658 * transcoder types.
659 */
660 void
intel_ddi_config_transcoder_func(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)661 intel_ddi_config_transcoder_func(struct intel_encoder *encoder,
662 const struct intel_crtc_state *crtc_state)
663 {
664 struct intel_display *display = to_intel_display(crtc_state);
665 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
666 u32 ctl;
667
668 intel_ddi_config_transcoder_dp2(crtc_state, true);
669
670 ctl = intel_ddi_transcoder_func_reg_val_get(encoder, crtc_state);
671 ctl &= ~TRANS_DDI_FUNC_ENABLE;
672 intel_de_write(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder),
673 ctl);
674 }
675
676 /*
677 * Disable the DDI function and port syncing.
678 * For SST, pre-TGL MST, TGL+ MST-slave transcoders: deselect the DDI port,
679 * SST/MST mode and disable the DP2 configuration. For TGL+ MST-master
680 * transcoders these are done later in intel_ddi_post_disable_dp().
681 */
intel_ddi_disable_transcoder_func(const struct intel_crtc_state * crtc_state)682 void intel_ddi_disable_transcoder_func(const struct intel_crtc_state *crtc_state)
683 {
684 struct intel_display *display = to_intel_display(crtc_state);
685 struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
686 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
687 u32 ctl;
688
689 if (DISPLAY_VER(display) >= 11)
690 intel_de_write(display,
691 TRANS_DDI_FUNC_CTL2(display, cpu_transcoder),
692 0);
693
694 ctl = intel_de_read(display,
695 TRANS_DDI_FUNC_CTL(display, cpu_transcoder));
696
697 drm_WARN_ON(crtc->base.dev, ctl & TRANS_DDI_HDCP_SIGNALLING);
698
699 ctl &= ~TRANS_DDI_FUNC_ENABLE;
700
701 if (IS_DISPLAY_VER(display, 8, 10))
702 ctl &= ~(TRANS_DDI_PORT_SYNC_ENABLE |
703 TRANS_DDI_PORT_SYNC_MASTER_SELECT_MASK);
704
705 if (DISPLAY_VER(display) >= 12) {
706 if (!intel_dp_mst_is_master_trans(crtc_state)) {
707 ctl &= ~(TGL_TRANS_DDI_PORT_MASK |
708 TRANS_DDI_MODE_SELECT_MASK);
709 }
710 } else {
711 ctl &= ~(TRANS_DDI_PORT_MASK | TRANS_DDI_MODE_SELECT_MASK);
712 }
713
714 intel_de_write(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder),
715 ctl);
716
717 if (intel_dp_mst_is_slave_trans(crtc_state))
718 intel_ddi_config_transcoder_dp2(crtc_state, false);
719
720 if (intel_has_quirk(display, QUIRK_INCREASE_DDI_DISABLED_TIME) &&
721 intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) {
722 drm_dbg_kms(display->drm, "Quirk Increase DDI disabled time\n");
723 /* Quirk time at 100ms for reliable operation */
724 msleep(100);
725 }
726 }
727
intel_ddi_toggle_hdcp_bits(struct intel_encoder * intel_encoder,enum transcoder cpu_transcoder,bool enable,u32 hdcp_mask)728 int intel_ddi_toggle_hdcp_bits(struct intel_encoder *intel_encoder,
729 enum transcoder cpu_transcoder,
730 bool enable, u32 hdcp_mask)
731 {
732 struct intel_display *display = to_intel_display(intel_encoder);
733 struct ref_tracker *wakeref;
734 int ret = 0;
735
736 wakeref = intel_display_power_get_if_enabled(display,
737 intel_encoder->power_domain);
738 if (drm_WARN_ON(display->drm, !wakeref))
739 return -ENXIO;
740
741 intel_de_rmw(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder),
742 hdcp_mask, enable ? hdcp_mask : 0);
743 intel_display_power_put(display, intel_encoder->power_domain, wakeref);
744 return ret;
745 }
746
intel_ddi_connector_get_hw_state(struct intel_connector * intel_connector)747 bool intel_ddi_connector_get_hw_state(struct intel_connector *intel_connector)
748 {
749 struct intel_display *display = to_intel_display(intel_connector);
750 struct intel_encoder *encoder = intel_attached_encoder(intel_connector);
751 int type = intel_connector->base.connector_type;
752 enum port port = encoder->port;
753 enum transcoder cpu_transcoder;
754 struct ref_tracker *wakeref;
755 enum pipe pipe = 0;
756 u32 ddi_mode;
757 bool ret;
758
759 wakeref = intel_display_power_get_if_enabled(display,
760 encoder->power_domain);
761 if (!wakeref)
762 return false;
763
764 /* Note: This returns false for DP MST primary encoders. */
765 if (!encoder->get_hw_state(encoder, &pipe)) {
766 ret = false;
767 goto out;
768 }
769
770 if (HAS_TRANSCODER(display, TRANSCODER_EDP) && port == PORT_A)
771 cpu_transcoder = TRANSCODER_EDP;
772 else
773 cpu_transcoder = (enum transcoder) pipe;
774
775 ddi_mode = intel_de_read(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder)) &
776 TRANS_DDI_MODE_SELECT_MASK;
777
778 if (ddi_mode == TRANS_DDI_MODE_SELECT_HDMI ||
779 ddi_mode == TRANS_DDI_MODE_SELECT_DVI) {
780 ret = type == DRM_MODE_CONNECTOR_HDMIA;
781 } else if (ddi_mode == TRANS_DDI_MODE_SELECT_FDI_OR_128B132B && !HAS_DP20(display)) {
782 ret = type == DRM_MODE_CONNECTOR_VGA;
783 } else if (ddi_mode == TRANS_DDI_MODE_SELECT_DP_SST) {
784 ret = type == DRM_MODE_CONNECTOR_eDP ||
785 type == DRM_MODE_CONNECTOR_DisplayPort;
786 } else if (ddi_mode == TRANS_DDI_MODE_SELECT_FDI_OR_128B132B && HAS_DP20(display)) {
787 /*
788 * encoder->get_hw_state() should have bailed out on MST. This
789 * must be SST and non-eDP.
790 */
791 ret = type == DRM_MODE_CONNECTOR_DisplayPort;
792 } else if (drm_WARN_ON(display->drm, ddi_mode == TRANS_DDI_MODE_SELECT_DP_MST)) {
793 /* encoder->get_hw_state() should have bailed out on MST. */
794 ret = false;
795 } else {
796 ret = false;
797 }
798
799 out:
800 intel_display_power_put(display, encoder->power_domain, wakeref);
801
802 return ret;
803 }
804
intel_ddi_get_encoder_pipes(struct intel_encoder * encoder,u8 * pipe_mask,bool * is_dp_mst)805 static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder,
806 u8 *pipe_mask, bool *is_dp_mst)
807 {
808 struct intel_display *display = to_intel_display(encoder);
809 enum port port = encoder->port;
810 struct ref_tracker *wakeref;
811 enum pipe p;
812 u32 tmp;
813 u8 mst_pipe_mask = 0, dp128b132b_pipe_mask = 0;
814
815 *pipe_mask = 0;
816 *is_dp_mst = false;
817
818 wakeref = intel_display_power_get_if_enabled(display,
819 encoder->power_domain);
820 if (!wakeref)
821 return;
822
823 tmp = intel_de_read(display, DDI_BUF_CTL(port));
824 if (!(tmp & DDI_BUF_CTL_ENABLE))
825 goto out;
826
827 if (HAS_TRANSCODER(display, TRANSCODER_EDP) && port == PORT_A) {
828 tmp = intel_de_read(display,
829 TRANS_DDI_FUNC_CTL(display, TRANSCODER_EDP));
830
831 switch (tmp & TRANS_DDI_EDP_INPUT_MASK) {
832 default:
833 MISSING_CASE(tmp & TRANS_DDI_EDP_INPUT_MASK);
834 fallthrough;
835 case TRANS_DDI_EDP_INPUT_A_ON:
836 case TRANS_DDI_EDP_INPUT_A_ONOFF:
837 *pipe_mask = BIT(PIPE_A);
838 break;
839 case TRANS_DDI_EDP_INPUT_B_ONOFF:
840 *pipe_mask = BIT(PIPE_B);
841 break;
842 case TRANS_DDI_EDP_INPUT_C_ONOFF:
843 *pipe_mask = BIT(PIPE_C);
844 break;
845 }
846
847 goto out;
848 }
849
850 for_each_pipe(display, p) {
851 enum transcoder cpu_transcoder = (enum transcoder)p;
852 u32 port_mask, ddi_select, ddi_mode;
853 struct ref_tracker *trans_wakeref;
854
855 trans_wakeref = intel_display_power_get_if_enabled(display,
856 POWER_DOMAIN_TRANSCODER(cpu_transcoder));
857 if (!trans_wakeref)
858 continue;
859
860 if (DISPLAY_VER(display) >= 12) {
861 port_mask = TGL_TRANS_DDI_PORT_MASK;
862 ddi_select = TGL_TRANS_DDI_SELECT_PORT(port);
863 } else {
864 port_mask = TRANS_DDI_PORT_MASK;
865 ddi_select = TRANS_DDI_SELECT_PORT(port);
866 }
867
868 tmp = intel_de_read(display,
869 TRANS_DDI_FUNC_CTL(display, cpu_transcoder));
870 intel_display_power_put(display, POWER_DOMAIN_TRANSCODER(cpu_transcoder),
871 trans_wakeref);
872
873 if ((tmp & port_mask) != ddi_select)
874 continue;
875
876 ddi_mode = tmp & TRANS_DDI_MODE_SELECT_MASK;
877
878 if (ddi_mode == TRANS_DDI_MODE_SELECT_DP_MST)
879 mst_pipe_mask |= BIT(p);
880 else if (ddi_mode == TRANS_DDI_MODE_SELECT_FDI_OR_128B132B && HAS_DP20(display))
881 dp128b132b_pipe_mask |= BIT(p);
882
883 *pipe_mask |= BIT(p);
884 }
885
886 if (!*pipe_mask)
887 drm_dbg_kms(display->drm,
888 "No pipe for [ENCODER:%d:%s] found\n",
889 encoder->base.base.id, encoder->base.name);
890
891 if (!mst_pipe_mask && dp128b132b_pipe_mask) {
892 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
893
894 /*
895 * If we don't have 8b/10b MST, but have more than one
896 * transcoder in 128b/132b mode, we know it must be 128b/132b
897 * MST.
898 *
899 * Otherwise, we fall back to checking the current MST
900 * state. It's not accurate for hardware takeover at probe, but
901 * we don't expect MST to have been enabled at that point, and
902 * can assume it's SST.
903 */
904 if (hweight8(dp128b132b_pipe_mask) > 1 ||
905 intel_dp_mst_active_streams(intel_dp))
906 mst_pipe_mask = dp128b132b_pipe_mask;
907 }
908
909 if (!mst_pipe_mask && hweight8(*pipe_mask) > 1) {
910 drm_dbg_kms(display->drm,
911 "Multiple pipes for [ENCODER:%d:%s] (pipe_mask %02x)\n",
912 encoder->base.base.id, encoder->base.name,
913 *pipe_mask);
914 *pipe_mask = BIT(ffs(*pipe_mask) - 1);
915 }
916
917 if (mst_pipe_mask && mst_pipe_mask != *pipe_mask)
918 drm_dbg_kms(display->drm,
919 "Conflicting MST and non-MST state for [ENCODER:%d:%s] (pipe masks: all %02x, MST %02x, 128b/132b %02x)\n",
920 encoder->base.base.id, encoder->base.name,
921 *pipe_mask, mst_pipe_mask, dp128b132b_pipe_mask);
922 else
923 *is_dp_mst = mst_pipe_mask;
924
925 out:
926 if (*pipe_mask && (display->platform.geminilake || display->platform.broxton)) {
927 tmp = intel_de_read(display, BXT_PHY_CTL(port));
928 if ((tmp & (BXT_PHY_CMNLANE_POWERDOWN_ACK |
929 BXT_PHY_LANE_POWERDOWN_ACK |
930 BXT_PHY_LANE_ENABLED)) != BXT_PHY_LANE_ENABLED)
931 drm_err(display->drm,
932 "[ENCODER:%d:%s] enabled but PHY powered down? (PHY_CTL %08x)\n",
933 encoder->base.base.id, encoder->base.name, tmp);
934 }
935
936 intel_display_power_put(display, encoder->power_domain, wakeref);
937 }
938
intel_ddi_get_hw_state(struct intel_encoder * encoder,enum pipe * pipe)939 bool intel_ddi_get_hw_state(struct intel_encoder *encoder,
940 enum pipe *pipe)
941 {
942 u8 pipe_mask;
943 bool is_mst;
944
945 intel_ddi_get_encoder_pipes(encoder, &pipe_mask, &is_mst);
946
947 if (is_mst || !pipe_mask)
948 return false;
949
950 *pipe = ffs(pipe_mask) - 1;
951
952 return true;
953 }
954
955 static enum intel_display_power_domain
intel_ddi_main_link_aux_domain(struct intel_digital_port * dig_port,const struct intel_crtc_state * crtc_state)956 intel_ddi_main_link_aux_domain(struct intel_digital_port *dig_port,
957 const struct intel_crtc_state *crtc_state)
958 {
959 struct intel_display *display = to_intel_display(dig_port);
960
961 /*
962 * ICL+ HW requires corresponding AUX IOs to be powered up for PSR with
963 * DC states enabled at the same time, while for driver initiated AUX
964 * transfers we need the same AUX IOs to be powered but with DC states
965 * disabled. Accordingly use the AUX_IO_<port> power domain here which
966 * leaves DC states enabled.
967 *
968 * Before MTL TypeC PHYs (in all TypeC modes and both DP/HDMI) also require
969 * AUX IO to be enabled, but all these require DC_OFF to be enabled as
970 * well, so we can acquire a wider AUX_<port> power domain reference
971 * instead of a specific AUX_IO_<port> reference without powering up any
972 * extra wells.
973 */
974 if (intel_psr_needs_aux_io_power(&dig_port->base, crtc_state))
975 return intel_display_power_aux_io_domain(display, dig_port->aux_ch);
976 else if (DISPLAY_VER(display) < 14 &&
977 (intel_crtc_has_dp_encoder(crtc_state) ||
978 intel_encoder_is_tc(&dig_port->base)))
979 return intel_aux_power_domain(dig_port);
980 else
981 return POWER_DOMAIN_INVALID;
982 }
983
984 static void
main_link_aux_power_domain_get(struct intel_digital_port * dig_port,const struct intel_crtc_state * crtc_state)985 main_link_aux_power_domain_get(struct intel_digital_port *dig_port,
986 const struct intel_crtc_state *crtc_state)
987 {
988 struct intel_display *display = to_intel_display(dig_port);
989 enum intel_display_power_domain domain =
990 intel_ddi_main_link_aux_domain(dig_port, crtc_state);
991
992 drm_WARN_ON(display->drm, dig_port->aux_wakeref);
993
994 if (domain == POWER_DOMAIN_INVALID)
995 return;
996
997 dig_port->aux_wakeref = intel_display_power_get(display, domain);
998 }
999
1000 static void
main_link_aux_power_domain_put(struct intel_digital_port * dig_port,const struct intel_crtc_state * crtc_state)1001 main_link_aux_power_domain_put(struct intel_digital_port *dig_port,
1002 const struct intel_crtc_state *crtc_state)
1003 {
1004 struct intel_display *display = to_intel_display(dig_port);
1005 enum intel_display_power_domain domain =
1006 intel_ddi_main_link_aux_domain(dig_port, crtc_state);
1007 struct ref_tracker *wf;
1008
1009 wf = fetch_and_zero(&dig_port->aux_wakeref);
1010 if (!wf)
1011 return;
1012
1013 intel_display_power_put(display, domain, wf);
1014 }
1015
intel_ddi_get_power_domains(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)1016 static void intel_ddi_get_power_domains(struct intel_encoder *encoder,
1017 struct intel_crtc_state *crtc_state)
1018 {
1019 struct intel_display *display = to_intel_display(encoder);
1020 struct intel_digital_port *dig_port;
1021
1022 /*
1023 * TODO: Add support for MST encoders. Atm, the following should never
1024 * happen since fake-MST encoders don't set their get_power_domains()
1025 * hook.
1026 */
1027 if (drm_WARN_ON(display->drm,
1028 intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST)))
1029 return;
1030
1031 dig_port = enc_to_dig_port(encoder);
1032
1033 if (!intel_tc_port_in_tbt_alt_mode(dig_port)) {
1034 drm_WARN_ON(display->drm, dig_port->ddi_io_wakeref);
1035 dig_port->ddi_io_wakeref = intel_display_power_get(display,
1036 dig_port->ddi_io_power_domain);
1037 }
1038
1039 main_link_aux_power_domain_get(dig_port, crtc_state);
1040 }
1041
intel_ddi_enable_transcoder_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1042 void intel_ddi_enable_transcoder_clock(struct intel_encoder *encoder,
1043 const struct intel_crtc_state *crtc_state)
1044 {
1045 struct intel_display *display = to_intel_display(crtc_state);
1046 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
1047 enum phy phy = intel_encoder_to_phy(encoder);
1048 u32 val;
1049
1050 if (cpu_transcoder == TRANSCODER_EDP)
1051 return;
1052
1053 if (DISPLAY_VER(display) >= 13)
1054 val = TGL_TRANS_CLK_SEL_PORT(phy);
1055 else if (DISPLAY_VER(display) >= 12)
1056 val = TGL_TRANS_CLK_SEL_PORT(encoder->port);
1057 else
1058 val = TRANS_CLK_SEL_PORT(encoder->port);
1059
1060 intel_de_write(display, TRANS_CLK_SEL(cpu_transcoder), val);
1061 }
1062
intel_ddi_disable_transcoder_clock(const struct intel_crtc_state * crtc_state)1063 void intel_ddi_disable_transcoder_clock(const struct intel_crtc_state *crtc_state)
1064 {
1065 struct intel_display *display = to_intel_display(crtc_state);
1066 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
1067 u32 val;
1068
1069 if (cpu_transcoder == TRANSCODER_EDP)
1070 return;
1071
1072 if (DISPLAY_VER(display) >= 12)
1073 val = TGL_TRANS_CLK_SEL_DISABLED;
1074 else
1075 val = TRANS_CLK_SEL_DISABLED;
1076
1077 intel_de_write(display, TRANS_CLK_SEL(cpu_transcoder), val);
1078 }
1079
_skl_ddi_set_iboost(struct intel_display * display,enum port port,u8 iboost)1080 static void _skl_ddi_set_iboost(struct intel_display *display,
1081 enum port port, u8 iboost)
1082 {
1083 u32 tmp;
1084
1085 tmp = intel_de_read(display, DISPIO_CR_TX_BMU_CR0);
1086 tmp &= ~(BALANCE_LEG_MASK(port) | BALANCE_LEG_DISABLE(port));
1087 if (iboost)
1088 tmp |= iboost << BALANCE_LEG_SHIFT(port);
1089 else
1090 tmp |= BALANCE_LEG_DISABLE(port);
1091 intel_de_write(display, DISPIO_CR_TX_BMU_CR0, tmp);
1092 }
1093
skl_ddi_set_iboost(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,int level)1094 static void skl_ddi_set_iboost(struct intel_encoder *encoder,
1095 const struct intel_crtc_state *crtc_state,
1096 int level)
1097 {
1098 struct intel_display *display = to_intel_display(encoder);
1099 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
1100 u8 iboost;
1101
1102 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI))
1103 iboost = intel_bios_hdmi_boost_level(encoder->devdata);
1104 else
1105 iboost = intel_bios_dp_boost_level(encoder->devdata);
1106
1107 if (iboost == 0) {
1108 const struct intel_ddi_buf_trans *trans;
1109 int n_entries;
1110
1111 trans = intel_ddi_buf_trans_get(encoder, crtc_state, &n_entries);
1112 if (drm_WARN_ON_ONCE(display->drm, !trans))
1113 return;
1114
1115 iboost = trans->entries[level].hsw.i_boost;
1116 }
1117
1118 /* Make sure that the requested I_boost is valid */
1119 if (iboost && iboost != 0x1 && iboost != 0x3 && iboost != 0x7) {
1120 drm_err(display->drm, "Invalid I_boost value %u\n", iboost);
1121 return;
1122 }
1123
1124 _skl_ddi_set_iboost(display, encoder->port, iboost);
1125
1126 if (encoder->port == PORT_A && dig_port->max_lanes == 4)
1127 _skl_ddi_set_iboost(display, PORT_E, iboost);
1128 }
1129
intel_ddi_dp_voltage_max(struct intel_dp * intel_dp,const struct intel_crtc_state * crtc_state)1130 static u8 intel_ddi_dp_voltage_max(struct intel_dp *intel_dp,
1131 const struct intel_crtc_state *crtc_state)
1132 {
1133 struct intel_display *display = to_intel_display(intel_dp);
1134 struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
1135 int n_entries;
1136
1137 intel_ddi_buf_trans_get(encoder, crtc_state, &n_entries);
1138
1139 if (drm_WARN_ON(display->drm, n_entries < 1))
1140 n_entries = 1;
1141 if (drm_WARN_ON(display->drm,
1142 n_entries > ARRAY_SIZE(index_to_dp_signal_levels)))
1143 n_entries = ARRAY_SIZE(index_to_dp_signal_levels);
1144
1145 return index_to_dp_signal_levels[n_entries - 1] &
1146 DP_TRAIN_VOLTAGE_SWING_MASK;
1147 }
1148
1149 /*
1150 * We assume that the full set of pre-emphasis values can be
1151 * used on all DDI platforms. Should that change we need to
1152 * rethink this code.
1153 */
intel_ddi_dp_preemph_max(struct intel_dp * intel_dp)1154 static u8 intel_ddi_dp_preemph_max(struct intel_dp *intel_dp)
1155 {
1156 return DP_TRAIN_PRE_EMPH_LEVEL_3;
1157 }
1158
icl_combo_phy_loadgen_select(const struct intel_crtc_state * crtc_state,int lane)1159 static u32 icl_combo_phy_loadgen_select(const struct intel_crtc_state *crtc_state,
1160 int lane)
1161 {
1162 if (crtc_state->port_clock > 600000)
1163 return 0;
1164
1165 if (crtc_state->lane_count == 4)
1166 return lane >= 1 ? LOADGEN_SELECT : 0;
1167 else
1168 return lane == 1 || lane == 2 ? LOADGEN_SELECT : 0;
1169 }
1170
icl_ddi_combo_vswing_program(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1171 static void icl_ddi_combo_vswing_program(struct intel_encoder *encoder,
1172 const struct intel_crtc_state *crtc_state)
1173 {
1174 struct intel_display *display = to_intel_display(encoder);
1175 const struct intel_ddi_buf_trans *trans;
1176 enum phy phy = intel_encoder_to_phy(encoder);
1177 int n_entries, ln;
1178 u32 val;
1179
1180 trans = intel_ddi_buf_trans_get(encoder, crtc_state, &n_entries);
1181 if (drm_WARN_ON_ONCE(display->drm, !trans))
1182 return;
1183
1184 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_EDP)) {
1185 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
1186
1187 val = EDP4K2K_MODE_OVRD_EN | EDP4K2K_MODE_OVRD_OPTIMIZED;
1188 intel_dp->hobl_active = is_hobl_buf_trans(trans);
1189 intel_de_rmw(display, ICL_PORT_CL_DW10(phy), val,
1190 intel_dp->hobl_active ? val : 0);
1191 }
1192
1193 /* Set PORT_TX_DW5 */
1194 val = intel_de_read(display, ICL_PORT_TX_DW5_LN(0, phy));
1195 val &= ~(SCALING_MODE_SEL_MASK | RTERM_SELECT_MASK |
1196 COEFF_POLARITY | CURSOR_PROGRAM |
1197 TAP2_DISABLE | TAP3_DISABLE);
1198 val |= SCALING_MODE_SEL(0x2);
1199 val |= RTERM_SELECT(0x6);
1200 val |= TAP3_DISABLE;
1201 intel_de_write(display, ICL_PORT_TX_DW5_GRP(phy), val);
1202
1203 /* Program PORT_TX_DW2 */
1204 for (ln = 0; ln < 4; ln++) {
1205 int level = intel_ddi_level(encoder, crtc_state, ln);
1206
1207 intel_de_rmw(display, ICL_PORT_TX_DW2_LN(ln, phy),
1208 SWING_SEL_UPPER_MASK | SWING_SEL_LOWER_MASK | RCOMP_SCALAR_MASK,
1209 SWING_SEL_UPPER(trans->entries[level].icl.dw2_swing_sel) |
1210 SWING_SEL_LOWER(trans->entries[level].icl.dw2_swing_sel) |
1211 RCOMP_SCALAR(0x98));
1212 }
1213
1214 /* Program PORT_TX_DW4 */
1215 /* We cannot write to GRP. It would overwrite individual loadgen. */
1216 for (ln = 0; ln < 4; ln++) {
1217 int level = intel_ddi_level(encoder, crtc_state, ln);
1218
1219 intel_de_rmw(display, ICL_PORT_TX_DW4_LN(ln, phy),
1220 POST_CURSOR_1_MASK | POST_CURSOR_2_MASK | CURSOR_COEFF_MASK,
1221 POST_CURSOR_1(trans->entries[level].icl.dw4_post_cursor_1) |
1222 POST_CURSOR_2(trans->entries[level].icl.dw4_post_cursor_2) |
1223 CURSOR_COEFF(trans->entries[level].icl.dw4_cursor_coeff));
1224 }
1225
1226 /* Program PORT_TX_DW7 */
1227 for (ln = 0; ln < 4; ln++) {
1228 int level = intel_ddi_level(encoder, crtc_state, ln);
1229
1230 intel_de_rmw(display, ICL_PORT_TX_DW7_LN(ln, phy),
1231 N_SCALAR_MASK,
1232 N_SCALAR(trans->entries[level].icl.dw7_n_scalar));
1233 }
1234 }
1235
icl_combo_phy_set_signal_levels(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1236 static void icl_combo_phy_set_signal_levels(struct intel_encoder *encoder,
1237 const struct intel_crtc_state *crtc_state)
1238 {
1239 struct intel_display *display = to_intel_display(encoder);
1240 enum phy phy = intel_encoder_to_phy(encoder);
1241 u32 val;
1242 int ln;
1243
1244 /*
1245 * 1. If port type is eDP or DP,
1246 * set PORT_PCS_DW1 cmnkeeper_enable to 1b,
1247 * else clear to 0b.
1248 */
1249 val = intel_de_read(display, ICL_PORT_PCS_DW1_LN(0, phy));
1250 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI))
1251 val &= ~COMMON_KEEPER_EN;
1252 else
1253 val |= COMMON_KEEPER_EN;
1254 intel_de_write(display, ICL_PORT_PCS_DW1_GRP(phy), val);
1255
1256 /* 2. Program loadgen select */
1257 /*
1258 * Program PORT_TX_DW4 depending on Bit rate and used lanes
1259 * <= 6 GHz and 4 lanes (LN0=0, LN1=1, LN2=1, LN3=1)
1260 * <= 6 GHz and 1,2 lanes (LN0=0, LN1=1, LN2=1, LN3=0)
1261 * > 6 GHz (LN0=0, LN1=0, LN2=0, LN3=0)
1262 */
1263 for (ln = 0; ln < 4; ln++) {
1264 intel_de_rmw(display, ICL_PORT_TX_DW4_LN(ln, phy),
1265 LOADGEN_SELECT,
1266 icl_combo_phy_loadgen_select(crtc_state, ln));
1267 }
1268
1269 /* 3. Set PORT_CL_DW5 SUS Clock Config to 11b */
1270 intel_de_rmw(display, ICL_PORT_CL_DW5(phy),
1271 0, SUS_CLOCK_CONFIG);
1272
1273 /* 4. Clear training enable to change swing values */
1274 val = intel_de_read(display, ICL_PORT_TX_DW5_LN(0, phy));
1275 val &= ~TX_TRAINING_EN;
1276 intel_de_write(display, ICL_PORT_TX_DW5_GRP(phy), val);
1277
1278 /* 5. Program swing and de-emphasis */
1279 icl_ddi_combo_vswing_program(encoder, crtc_state);
1280
1281 /* 6. Set training enable to trigger update */
1282 val = intel_de_read(display, ICL_PORT_TX_DW5_LN(0, phy));
1283 val |= TX_TRAINING_EN;
1284 intel_de_write(display, ICL_PORT_TX_DW5_GRP(phy), val);
1285 }
1286
icl_mg_phy_set_signal_levels(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1287 static void icl_mg_phy_set_signal_levels(struct intel_encoder *encoder,
1288 const struct intel_crtc_state *crtc_state)
1289 {
1290 struct intel_display *display = to_intel_display(encoder);
1291 enum tc_port tc_port = intel_encoder_to_tc(encoder);
1292 const struct intel_ddi_buf_trans *trans;
1293 int n_entries, ln;
1294
1295 if (intel_tc_port_in_tbt_alt_mode(enc_to_dig_port(encoder)))
1296 return;
1297
1298 trans = intel_ddi_buf_trans_get(encoder, crtc_state, &n_entries);
1299 if (drm_WARN_ON_ONCE(display->drm, !trans))
1300 return;
1301
1302 for (ln = 0; ln < 2; ln++) {
1303 intel_de_rmw(display, MG_TX1_LINK_PARAMS(ln, tc_port),
1304 CRI_USE_FS32, 0);
1305 intel_de_rmw(display, MG_TX2_LINK_PARAMS(ln, tc_port),
1306 CRI_USE_FS32, 0);
1307 }
1308
1309 /* Program MG_TX_SWINGCTRL with values from vswing table */
1310 for (ln = 0; ln < 2; ln++) {
1311 int level;
1312
1313 level = intel_ddi_level(encoder, crtc_state, 2*ln+0);
1314
1315 intel_de_rmw(display, MG_TX1_SWINGCTRL(ln, tc_port),
1316 CRI_TXDEEMPH_OVERRIDE_17_12_MASK,
1317 CRI_TXDEEMPH_OVERRIDE_17_12(trans->entries[level].mg.cri_txdeemph_override_17_12));
1318
1319 level = intel_ddi_level(encoder, crtc_state, 2*ln+1);
1320
1321 intel_de_rmw(display, MG_TX2_SWINGCTRL(ln, tc_port),
1322 CRI_TXDEEMPH_OVERRIDE_17_12_MASK,
1323 CRI_TXDEEMPH_OVERRIDE_17_12(trans->entries[level].mg.cri_txdeemph_override_17_12));
1324 }
1325
1326 /* Program MG_TX_DRVCTRL with values from vswing table */
1327 for (ln = 0; ln < 2; ln++) {
1328 int level;
1329
1330 level = intel_ddi_level(encoder, crtc_state, 2*ln+0);
1331
1332 intel_de_rmw(display, MG_TX1_DRVCTRL(ln, tc_port),
1333 CRI_TXDEEMPH_OVERRIDE_11_6_MASK |
1334 CRI_TXDEEMPH_OVERRIDE_5_0_MASK,
1335 CRI_TXDEEMPH_OVERRIDE_11_6(trans->entries[level].mg.cri_txdeemph_override_11_6) |
1336 CRI_TXDEEMPH_OVERRIDE_5_0(trans->entries[level].mg.cri_txdeemph_override_5_0) |
1337 CRI_TXDEEMPH_OVERRIDE_EN);
1338
1339 level = intel_ddi_level(encoder, crtc_state, 2*ln+1);
1340
1341 intel_de_rmw(display, MG_TX2_DRVCTRL(ln, tc_port),
1342 CRI_TXDEEMPH_OVERRIDE_11_6_MASK |
1343 CRI_TXDEEMPH_OVERRIDE_5_0_MASK,
1344 CRI_TXDEEMPH_OVERRIDE_11_6(trans->entries[level].mg.cri_txdeemph_override_11_6) |
1345 CRI_TXDEEMPH_OVERRIDE_5_0(trans->entries[level].mg.cri_txdeemph_override_5_0) |
1346 CRI_TXDEEMPH_OVERRIDE_EN);
1347
1348 /* FIXME: Program CRI_LOADGEN_SEL after the spec is updated */
1349 }
1350
1351 /*
1352 * Program MG_CLKHUB<LN, port being used> with value from frequency table
1353 * In case of Legacy mode on MG PHY, both TX1 and TX2 enabled so use the
1354 * values from table for which TX1 and TX2 enabled.
1355 */
1356 for (ln = 0; ln < 2; ln++) {
1357 intel_de_rmw(display, MG_CLKHUB(ln, tc_port),
1358 CFG_LOW_RATE_LKREN_EN,
1359 crtc_state->port_clock < 300000 ? CFG_LOW_RATE_LKREN_EN : 0);
1360 }
1361
1362 /* Program the MG_TX_DCC<LN, port being used> based on the link frequency */
1363 for (ln = 0; ln < 2; ln++) {
1364 intel_de_rmw(display, MG_TX1_DCC(ln, tc_port),
1365 CFG_AMI_CK_DIV_OVERRIDE_VAL_MASK |
1366 CFG_AMI_CK_DIV_OVERRIDE_EN,
1367 crtc_state->port_clock > 500000 ?
1368 CFG_AMI_CK_DIV_OVERRIDE_VAL(1) |
1369 CFG_AMI_CK_DIV_OVERRIDE_EN : 0);
1370
1371 intel_de_rmw(display, MG_TX2_DCC(ln, tc_port),
1372 CFG_AMI_CK_DIV_OVERRIDE_VAL_MASK |
1373 CFG_AMI_CK_DIV_OVERRIDE_EN,
1374 crtc_state->port_clock > 500000 ?
1375 CFG_AMI_CK_DIV_OVERRIDE_VAL(1) |
1376 CFG_AMI_CK_DIV_OVERRIDE_EN : 0);
1377 }
1378
1379 /* Program MG_TX_PISO_READLOAD with values from vswing table */
1380 for (ln = 0; ln < 2; ln++) {
1381 intel_de_rmw(display, MG_TX1_PISO_READLOAD(ln, tc_port),
1382 0, CRI_CALCINIT);
1383 intel_de_rmw(display, MG_TX2_PISO_READLOAD(ln, tc_port),
1384 0, CRI_CALCINIT);
1385 }
1386 }
1387
tgl_dkl_phy_set_signal_levels(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1388 static void tgl_dkl_phy_set_signal_levels(struct intel_encoder *encoder,
1389 const struct intel_crtc_state *crtc_state)
1390 {
1391 struct intel_display *display = to_intel_display(encoder);
1392 enum tc_port tc_port = intel_encoder_to_tc(encoder);
1393 const struct intel_ddi_buf_trans *trans;
1394 int n_entries, ln;
1395
1396 if (intel_tc_port_in_tbt_alt_mode(enc_to_dig_port(encoder)))
1397 return;
1398
1399 trans = intel_ddi_buf_trans_get(encoder, crtc_state, &n_entries);
1400 if (drm_WARN_ON_ONCE(display->drm, !trans))
1401 return;
1402
1403 for (ln = 0; ln < 2; ln++) {
1404 int level;
1405
1406 /* Wa_16011342517:adl-p */
1407 if (intel_display_wa(display, INTEL_DISPLAY_WA_16011342517)) {
1408 if ((intel_encoder_is_hdmi(encoder) &&
1409 crtc_state->port_clock == 594000) ||
1410 (intel_encoder_is_dp(encoder) &&
1411 crtc_state->port_clock == 162000)) {
1412 intel_dkl_phy_rmw(display, DKL_TX_DPCNTL2(tc_port, ln),
1413 LOADGEN_SHARING_PMD_DISABLE, 1);
1414 } else {
1415 intel_dkl_phy_rmw(display, DKL_TX_DPCNTL2(tc_port, ln),
1416 LOADGEN_SHARING_PMD_DISABLE, 0);
1417 }
1418 }
1419
1420 intel_dkl_phy_write(display, DKL_TX_PMD_LANE_SUS(tc_port, ln), 0);
1421
1422 level = intel_ddi_level(encoder, crtc_state, 2*ln+0);
1423
1424 intel_dkl_phy_rmw(display, DKL_TX_DPCNTL0(tc_port, ln),
1425 DKL_TX_PRESHOOT_COEFF_MASK |
1426 DKL_TX_DE_EMPAHSIS_COEFF_MASK |
1427 DKL_TX_VSWING_CONTROL_MASK,
1428 DKL_TX_PRESHOOT_COEFF(trans->entries[level].dkl.preshoot) |
1429 DKL_TX_DE_EMPHASIS_COEFF(trans->entries[level].dkl.de_emphasis) |
1430 DKL_TX_VSWING_CONTROL(trans->entries[level].dkl.vswing));
1431
1432 level = intel_ddi_level(encoder, crtc_state, 2*ln+1);
1433
1434 intel_dkl_phy_rmw(display, DKL_TX_DPCNTL1(tc_port, ln),
1435 DKL_TX_PRESHOOT_COEFF_MASK |
1436 DKL_TX_DE_EMPAHSIS_COEFF_MASK |
1437 DKL_TX_VSWING_CONTROL_MASK,
1438 DKL_TX_PRESHOOT_COEFF(trans->entries[level].dkl.preshoot) |
1439 DKL_TX_DE_EMPHASIS_COEFF(trans->entries[level].dkl.de_emphasis) |
1440 DKL_TX_VSWING_CONTROL(trans->entries[level].dkl.vswing));
1441
1442 intel_dkl_phy_rmw(display, DKL_TX_DPCNTL2(tc_port, ln),
1443 DKL_TX_DP20BITMODE, 0);
1444
1445 if (display->platform.alderlake_p) {
1446 u32 val;
1447
1448 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) {
1449 if (ln == 0) {
1450 val = DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1(0);
1451 val |= DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2(2);
1452 } else {
1453 val = DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1(3);
1454 val |= DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2(3);
1455 }
1456 } else {
1457 val = DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1(0);
1458 val |= DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2(0);
1459 }
1460
1461 intel_dkl_phy_rmw(display, DKL_TX_DPCNTL2(tc_port, ln),
1462 DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX1_MASK |
1463 DKL_TX_DPCNTL2_CFG_LOADGENSELECT_TX2_MASK,
1464 val);
1465 }
1466 }
1467 }
1468
translate_signal_level(struct intel_dp * intel_dp,u8 signal_levels)1469 static int translate_signal_level(struct intel_dp *intel_dp,
1470 u8 signal_levels)
1471 {
1472 struct intel_display *display = to_intel_display(intel_dp);
1473 const u8 *signal_array;
1474 size_t array_size;
1475 int i;
1476
1477 signal_array = index_to_dp_signal_levels;
1478 array_size = ARRAY_SIZE(index_to_dp_signal_levels);
1479
1480 for (i = 0; i < array_size; i++) {
1481 if (signal_array[i] == signal_levels)
1482 return i;
1483 }
1484
1485 drm_WARN(display->drm, 1,
1486 "Unsupported voltage swing/pre-emphasis level: 0x%x\n",
1487 signal_levels);
1488
1489 return 0;
1490 }
1491
intel_ddi_dp_level(struct intel_dp * intel_dp,const struct intel_crtc_state * crtc_state,int lane)1492 static int intel_ddi_dp_level(struct intel_dp *intel_dp,
1493 const struct intel_crtc_state *crtc_state,
1494 int lane)
1495 {
1496 u8 train_set = intel_dp->train_set[lane];
1497
1498 if (intel_dp_is_uhbr(crtc_state)) {
1499 return train_set & DP_TX_FFE_PRESET_VALUE_MASK;
1500 } else {
1501 u8 signal_levels = train_set & (DP_TRAIN_VOLTAGE_SWING_MASK |
1502 DP_TRAIN_PRE_EMPHASIS_MASK);
1503
1504 return translate_signal_level(intel_dp, signal_levels);
1505 }
1506 }
1507
intel_ddi_level(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,int lane)1508 int intel_ddi_level(struct intel_encoder *encoder,
1509 const struct intel_crtc_state *crtc_state,
1510 int lane)
1511 {
1512 struct intel_display *display = to_intel_display(encoder);
1513 const struct intel_ddi_buf_trans *trans;
1514 int level, n_entries;
1515
1516 trans = intel_ddi_buf_trans_get(encoder, crtc_state, &n_entries);
1517 if (drm_WARN_ON_ONCE(display->drm, !trans))
1518 return 0;
1519
1520 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI))
1521 level = intel_ddi_hdmi_level(encoder, trans);
1522 else
1523 level = intel_ddi_dp_level(enc_to_intel_dp(encoder), crtc_state,
1524 lane);
1525
1526 if (drm_WARN_ON_ONCE(display->drm, level >= n_entries))
1527 level = n_entries - 1;
1528
1529 return level;
1530 }
1531
1532 static void
hsw_set_signal_levels(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1533 hsw_set_signal_levels(struct intel_encoder *encoder,
1534 const struct intel_crtc_state *crtc_state)
1535 {
1536 struct intel_display *display = to_intel_display(encoder);
1537 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
1538 int level = intel_ddi_level(encoder, crtc_state, 0);
1539 enum port port = encoder->port;
1540 u32 signal_levels;
1541
1542 if (has_iboost(display))
1543 skl_ddi_set_iboost(encoder, crtc_state, level);
1544
1545 /* HDMI ignores the rest */
1546 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI))
1547 return;
1548
1549 signal_levels = DDI_BUF_TRANS_SELECT(level);
1550
1551 drm_dbg_kms(display->drm, "Using signal levels %08x\n",
1552 signal_levels);
1553
1554 intel_dp->DP &= ~DDI_BUF_EMP_MASK;
1555 intel_dp->DP |= signal_levels;
1556
1557 intel_de_write(display, DDI_BUF_CTL(port), intel_dp->DP);
1558 intel_de_posting_read(display, DDI_BUF_CTL(port));
1559 }
1560
_icl_ddi_enable_clock(struct intel_display * display,intel_reg_t reg,u32 clk_sel_mask,u32 clk_sel,u32 clk_off)1561 static void _icl_ddi_enable_clock(struct intel_display *display, intel_reg_t reg,
1562 u32 clk_sel_mask, u32 clk_sel, u32 clk_off)
1563 {
1564 mutex_lock(&display->dpll.lock);
1565
1566 intel_de_rmw(display, reg, clk_sel_mask, clk_sel);
1567
1568 /*
1569 * "This step and the step before must be
1570 * done with separate register writes."
1571 */
1572 intel_de_rmw(display, reg, clk_off, 0);
1573
1574 mutex_unlock(&display->dpll.lock);
1575 }
1576
_icl_ddi_disable_clock(struct intel_display * display,intel_reg_t reg,u32 clk_off)1577 static void _icl_ddi_disable_clock(struct intel_display *display, intel_reg_t reg,
1578 u32 clk_off)
1579 {
1580 mutex_lock(&display->dpll.lock);
1581
1582 intel_de_rmw(display, reg, 0, clk_off);
1583
1584 mutex_unlock(&display->dpll.lock);
1585 }
1586
_icl_ddi_is_clock_enabled(struct intel_display * display,intel_reg_t reg,u32 clk_off)1587 static bool _icl_ddi_is_clock_enabled(struct intel_display *display, intel_reg_t reg,
1588 u32 clk_off)
1589 {
1590 return !(intel_de_read(display, reg) & clk_off);
1591 }
1592
1593 static struct intel_dpll *
_icl_ddi_get_pll(struct intel_display * display,intel_reg_t reg,u32 clk_sel_mask,u32 clk_sel_shift)1594 _icl_ddi_get_pll(struct intel_display *display, intel_reg_t reg,
1595 u32 clk_sel_mask, u32 clk_sel_shift)
1596 {
1597 enum intel_dpll_id id;
1598
1599 id = (intel_de_read(display, reg) & clk_sel_mask) >> clk_sel_shift;
1600
1601 return intel_get_dpll_by_id(display, id);
1602 }
1603
adls_ddi_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1604 static void adls_ddi_enable_clock(struct intel_encoder *encoder,
1605 const struct intel_crtc_state *crtc_state)
1606 {
1607 struct intel_display *display = to_intel_display(encoder);
1608 const struct intel_dpll *pll = crtc_state->intel_dpll;
1609 enum phy phy = intel_encoder_to_phy(encoder);
1610
1611 if (drm_WARN_ON(display->drm, !pll))
1612 return;
1613
1614 _icl_ddi_enable_clock(display, ADLS_DPCLKA_CFGCR(phy),
1615 ADLS_DPCLKA_CFGCR_DDI_CLK_SEL_MASK(phy),
1616 pll->info->id << ADLS_DPCLKA_CFGCR_DDI_SHIFT(phy),
1617 ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1618 }
1619
adls_ddi_disable_clock(struct intel_encoder * encoder)1620 static void adls_ddi_disable_clock(struct intel_encoder *encoder)
1621 {
1622 struct intel_display *display = to_intel_display(encoder);
1623 enum phy phy = intel_encoder_to_phy(encoder);
1624
1625 _icl_ddi_disable_clock(display, ADLS_DPCLKA_CFGCR(phy),
1626 ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1627 }
1628
adls_ddi_is_clock_enabled(struct intel_encoder * encoder)1629 static bool adls_ddi_is_clock_enabled(struct intel_encoder *encoder)
1630 {
1631 struct intel_display *display = to_intel_display(encoder);
1632 enum phy phy = intel_encoder_to_phy(encoder);
1633
1634 return _icl_ddi_is_clock_enabled(display, ADLS_DPCLKA_CFGCR(phy),
1635 ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1636 }
1637
adls_ddi_get_pll(struct intel_encoder * encoder)1638 static struct intel_dpll *adls_ddi_get_pll(struct intel_encoder *encoder)
1639 {
1640 struct intel_display *display = to_intel_display(encoder);
1641 enum phy phy = intel_encoder_to_phy(encoder);
1642
1643 return _icl_ddi_get_pll(display, ADLS_DPCLKA_CFGCR(phy),
1644 ADLS_DPCLKA_CFGCR_DDI_CLK_SEL_MASK(phy),
1645 ADLS_DPCLKA_CFGCR_DDI_SHIFT(phy));
1646 }
1647
rkl_ddi_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1648 static void rkl_ddi_enable_clock(struct intel_encoder *encoder,
1649 const struct intel_crtc_state *crtc_state)
1650 {
1651 struct intel_display *display = to_intel_display(encoder);
1652 const struct intel_dpll *pll = crtc_state->intel_dpll;
1653 enum phy phy = intel_encoder_to_phy(encoder);
1654
1655 if (drm_WARN_ON(display->drm, !pll))
1656 return;
1657
1658 _icl_ddi_enable_clock(display, ICL_DPCLKA_CFGCR0,
1659 RKL_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy),
1660 RKL_DPCLKA_CFGCR0_DDI_CLK_SEL(pll->info->id, phy),
1661 RKL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1662 }
1663
rkl_ddi_disable_clock(struct intel_encoder * encoder)1664 static void rkl_ddi_disable_clock(struct intel_encoder *encoder)
1665 {
1666 struct intel_display *display = to_intel_display(encoder);
1667 enum phy phy = intel_encoder_to_phy(encoder);
1668
1669 _icl_ddi_disable_clock(display, ICL_DPCLKA_CFGCR0,
1670 RKL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1671 }
1672
rkl_ddi_is_clock_enabled(struct intel_encoder * encoder)1673 static bool rkl_ddi_is_clock_enabled(struct intel_encoder *encoder)
1674 {
1675 struct intel_display *display = to_intel_display(encoder);
1676 enum phy phy = intel_encoder_to_phy(encoder);
1677
1678 return _icl_ddi_is_clock_enabled(display, ICL_DPCLKA_CFGCR0,
1679 RKL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1680 }
1681
rkl_ddi_get_pll(struct intel_encoder * encoder)1682 static struct intel_dpll *rkl_ddi_get_pll(struct intel_encoder *encoder)
1683 {
1684 struct intel_display *display = to_intel_display(encoder);
1685 enum phy phy = intel_encoder_to_phy(encoder);
1686
1687 return _icl_ddi_get_pll(display, ICL_DPCLKA_CFGCR0,
1688 RKL_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy),
1689 RKL_DPCLKA_CFGCR0_DDI_CLK_SEL_SHIFT(phy));
1690 }
1691
dg1_ddi_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1692 static void dg1_ddi_enable_clock(struct intel_encoder *encoder,
1693 const struct intel_crtc_state *crtc_state)
1694 {
1695 struct intel_display *display = to_intel_display(encoder);
1696 const struct intel_dpll *pll = crtc_state->intel_dpll;
1697 enum phy phy = intel_encoder_to_phy(encoder);
1698
1699 if (drm_WARN_ON(display->drm, !pll))
1700 return;
1701
1702 /*
1703 * If we fail this, something went very wrong: first 2 PLLs should be
1704 * used by first 2 phys and last 2 PLLs by last phys
1705 */
1706 if (drm_WARN_ON(display->drm,
1707 (pll->info->id < DPLL_ID_DG1_DPLL2 && phy >= PHY_C) ||
1708 (pll->info->id >= DPLL_ID_DG1_DPLL2 && phy < PHY_C)))
1709 return;
1710
1711 _icl_ddi_enable_clock(display, DG1_DPCLKA_CFGCR0(phy),
1712 DG1_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy),
1713 DG1_DPCLKA_CFGCR0_DDI_CLK_SEL(pll->info->id, phy),
1714 DG1_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1715 }
1716
dg1_ddi_disable_clock(struct intel_encoder * encoder)1717 static void dg1_ddi_disable_clock(struct intel_encoder *encoder)
1718 {
1719 struct intel_display *display = to_intel_display(encoder);
1720 enum phy phy = intel_encoder_to_phy(encoder);
1721
1722 _icl_ddi_disable_clock(display, DG1_DPCLKA_CFGCR0(phy),
1723 DG1_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1724 }
1725
dg1_ddi_is_clock_enabled(struct intel_encoder * encoder)1726 static bool dg1_ddi_is_clock_enabled(struct intel_encoder *encoder)
1727 {
1728 struct intel_display *display = to_intel_display(encoder);
1729 enum phy phy = intel_encoder_to_phy(encoder);
1730
1731 return _icl_ddi_is_clock_enabled(display, DG1_DPCLKA_CFGCR0(phy),
1732 DG1_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1733 }
1734
dg1_ddi_get_pll(struct intel_encoder * encoder)1735 static struct intel_dpll *dg1_ddi_get_pll(struct intel_encoder *encoder)
1736 {
1737 struct intel_display *display = to_intel_display(encoder);
1738 enum phy phy = intel_encoder_to_phy(encoder);
1739 enum intel_dpll_id id;
1740 u32 val;
1741
1742 val = intel_de_read(display, DG1_DPCLKA_CFGCR0(phy));
1743 val &= DG1_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy);
1744 val >>= DG1_DPCLKA_CFGCR0_DDI_CLK_SEL_SHIFT(phy);
1745 id = val;
1746
1747 /*
1748 * _DG1_DPCLKA0_CFGCR0 maps between DPLL 0 and 1 with one bit for phy A
1749 * and B while _DG1_DPCLKA1_CFGCR0 maps between DPLL 2 and 3 with one
1750 * bit for phy C and D.
1751 */
1752 if (phy >= PHY_C)
1753 id += DPLL_ID_DG1_DPLL2;
1754
1755 return intel_get_dpll_by_id(display, id);
1756 }
1757
icl_ddi_combo_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1758 static void icl_ddi_combo_enable_clock(struct intel_encoder *encoder,
1759 const struct intel_crtc_state *crtc_state)
1760 {
1761 struct intel_display *display = to_intel_display(encoder);
1762 const struct intel_dpll *pll = crtc_state->intel_dpll;
1763 enum phy phy = intel_encoder_to_phy(encoder);
1764
1765 if (drm_WARN_ON(display->drm, !pll))
1766 return;
1767
1768 _icl_ddi_enable_clock(display, ICL_DPCLKA_CFGCR0,
1769 ICL_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy),
1770 ICL_DPCLKA_CFGCR0_DDI_CLK_SEL(pll->info->id, phy),
1771 ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1772 }
1773
icl_ddi_combo_disable_clock(struct intel_encoder * encoder)1774 static void icl_ddi_combo_disable_clock(struct intel_encoder *encoder)
1775 {
1776 struct intel_display *display = to_intel_display(encoder);
1777 enum phy phy = intel_encoder_to_phy(encoder);
1778
1779 _icl_ddi_disable_clock(display, ICL_DPCLKA_CFGCR0,
1780 ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1781 }
1782
icl_ddi_combo_is_clock_enabled(struct intel_encoder * encoder)1783 static bool icl_ddi_combo_is_clock_enabled(struct intel_encoder *encoder)
1784 {
1785 struct intel_display *display = to_intel_display(encoder);
1786 enum phy phy = intel_encoder_to_phy(encoder);
1787
1788 return _icl_ddi_is_clock_enabled(display, ICL_DPCLKA_CFGCR0,
1789 ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy));
1790 }
1791
icl_ddi_combo_get_pll(struct intel_encoder * encoder)1792 struct intel_dpll *icl_ddi_combo_get_pll(struct intel_encoder *encoder)
1793 {
1794 struct intel_display *display = to_intel_display(encoder);
1795 enum phy phy = intel_encoder_to_phy(encoder);
1796
1797 return _icl_ddi_get_pll(display, ICL_DPCLKA_CFGCR0,
1798 ICL_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy),
1799 ICL_DPCLKA_CFGCR0_DDI_CLK_SEL_SHIFT(phy));
1800 }
1801
jsl_ddi_tc_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1802 static void jsl_ddi_tc_enable_clock(struct intel_encoder *encoder,
1803 const struct intel_crtc_state *crtc_state)
1804 {
1805 struct intel_display *display = to_intel_display(encoder);
1806 const struct intel_dpll *pll = crtc_state->intel_dpll;
1807 enum port port = encoder->port;
1808
1809 if (drm_WARN_ON(display->drm, !pll))
1810 return;
1811
1812 /*
1813 * "For DDIC and DDID, program DDI_CLK_SEL to map the MG clock to the port.
1814 * MG does not exist, but the programming is required to ungate DDIC and DDID."
1815 */
1816 intel_de_write(display, DDI_CLK_SEL(port), DDI_CLK_SEL_MG);
1817
1818 icl_ddi_combo_enable_clock(encoder, crtc_state);
1819 }
1820
jsl_ddi_tc_disable_clock(struct intel_encoder * encoder)1821 static void jsl_ddi_tc_disable_clock(struct intel_encoder *encoder)
1822 {
1823 struct intel_display *display = to_intel_display(encoder);
1824 enum port port = encoder->port;
1825
1826 icl_ddi_combo_disable_clock(encoder);
1827
1828 intel_de_write(display, DDI_CLK_SEL(port), DDI_CLK_SEL_NONE);
1829 }
1830
jsl_ddi_tc_is_clock_enabled(struct intel_encoder * encoder)1831 static bool jsl_ddi_tc_is_clock_enabled(struct intel_encoder *encoder)
1832 {
1833 struct intel_display *display = to_intel_display(encoder);
1834 enum port port = encoder->port;
1835 u32 tmp;
1836
1837 tmp = intel_de_read(display, DDI_CLK_SEL(port));
1838
1839 if ((tmp & DDI_CLK_SEL_MASK) == DDI_CLK_SEL_NONE)
1840 return false;
1841
1842 return icl_ddi_combo_is_clock_enabled(encoder);
1843 }
1844
icl_ddi_tc_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1845 static void icl_ddi_tc_enable_clock(struct intel_encoder *encoder,
1846 const struct intel_crtc_state *crtc_state)
1847 {
1848 struct intel_display *display = to_intel_display(encoder);
1849 const struct intel_dpll *pll = crtc_state->intel_dpll;
1850 enum tc_port tc_port = intel_encoder_to_tc(encoder);
1851 enum port port = encoder->port;
1852
1853 if (drm_WARN_ON(display->drm, !pll))
1854 return;
1855
1856 intel_de_write(display, DDI_CLK_SEL(port),
1857 icl_pll_to_ddi_clk_sel(encoder, crtc_state));
1858
1859 mutex_lock(&display->dpll.lock);
1860
1861 intel_de_rmw(display, ICL_DPCLKA_CFGCR0,
1862 ICL_DPCLKA_CFGCR0_TC_CLK_OFF(tc_port), 0);
1863
1864 mutex_unlock(&display->dpll.lock);
1865 }
1866
icl_ddi_tc_disable_clock(struct intel_encoder * encoder)1867 static void icl_ddi_tc_disable_clock(struct intel_encoder *encoder)
1868 {
1869 struct intel_display *display = to_intel_display(encoder);
1870 enum tc_port tc_port = intel_encoder_to_tc(encoder);
1871 enum port port = encoder->port;
1872
1873 mutex_lock(&display->dpll.lock);
1874
1875 intel_de_rmw(display, ICL_DPCLKA_CFGCR0,
1876 0, ICL_DPCLKA_CFGCR0_TC_CLK_OFF(tc_port));
1877
1878 mutex_unlock(&display->dpll.lock);
1879
1880 intel_de_write(display, DDI_CLK_SEL(port), DDI_CLK_SEL_NONE);
1881 }
1882
icl_ddi_tc_is_clock_enabled(struct intel_encoder * encoder)1883 static bool icl_ddi_tc_is_clock_enabled(struct intel_encoder *encoder)
1884 {
1885 struct intel_display *display = to_intel_display(encoder);
1886 enum tc_port tc_port = intel_encoder_to_tc(encoder);
1887 enum port port = encoder->port;
1888 u32 tmp;
1889
1890 tmp = intel_de_read(display, DDI_CLK_SEL(port));
1891
1892 if ((tmp & DDI_CLK_SEL_MASK) == DDI_CLK_SEL_NONE)
1893 return false;
1894
1895 tmp = intel_de_read(display, ICL_DPCLKA_CFGCR0);
1896
1897 return !(tmp & ICL_DPCLKA_CFGCR0_TC_CLK_OFF(tc_port));
1898 }
1899
icl_ddi_tc_get_pll(struct intel_encoder * encoder)1900 static struct intel_dpll *icl_ddi_tc_get_pll(struct intel_encoder *encoder)
1901 {
1902 struct intel_display *display = to_intel_display(encoder);
1903 enum tc_port tc_port = intel_encoder_to_tc(encoder);
1904 enum port port = encoder->port;
1905 enum intel_dpll_id id;
1906 u32 tmp;
1907
1908 tmp = intel_de_read(display, DDI_CLK_SEL(port));
1909
1910 switch (tmp & DDI_CLK_SEL_MASK) {
1911 case DDI_CLK_SEL_TBT_162:
1912 case DDI_CLK_SEL_TBT_270:
1913 case DDI_CLK_SEL_TBT_540:
1914 case DDI_CLK_SEL_TBT_810:
1915 id = DPLL_ID_ICL_TBTPLL;
1916 break;
1917 case DDI_CLK_SEL_MG:
1918 id = icl_tc_port_to_pll_id(tc_port);
1919 break;
1920 default:
1921 MISSING_CASE(tmp);
1922 fallthrough;
1923 case DDI_CLK_SEL_NONE:
1924 return NULL;
1925 }
1926
1927 return intel_get_dpll_by_id(display, id);
1928 }
1929
bxt_ddi_get_pll(struct intel_encoder * encoder)1930 static struct intel_dpll *bxt_ddi_get_pll(struct intel_encoder *encoder)
1931 {
1932 struct intel_display *display = to_intel_display(encoder->base.dev);
1933 enum intel_dpll_id id;
1934
1935 switch (encoder->port) {
1936 case PORT_A:
1937 id = DPLL_ID_SKL_DPLL0;
1938 break;
1939 case PORT_B:
1940 id = DPLL_ID_SKL_DPLL1;
1941 break;
1942 case PORT_C:
1943 id = DPLL_ID_SKL_DPLL2;
1944 break;
1945 default:
1946 MISSING_CASE(encoder->port);
1947 return NULL;
1948 }
1949
1950 return intel_get_dpll_by_id(display, id);
1951 }
1952
skl_ddi_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)1953 static void skl_ddi_enable_clock(struct intel_encoder *encoder,
1954 const struct intel_crtc_state *crtc_state)
1955 {
1956 struct intel_display *display = to_intel_display(encoder);
1957 const struct intel_dpll *pll = crtc_state->intel_dpll;
1958 enum port port = encoder->port;
1959
1960 if (drm_WARN_ON(display->drm, !pll))
1961 return;
1962
1963 mutex_lock(&display->dpll.lock);
1964
1965 intel_de_rmw(display, DPLL_CTRL2,
1966 DPLL_CTRL2_DDI_CLK_OFF(port) |
1967 DPLL_CTRL2_DDI_CLK_SEL_MASK(port),
1968 DPLL_CTRL2_DDI_CLK_SEL(pll->info->id, port) |
1969 DPLL_CTRL2_DDI_SEL_OVERRIDE(port));
1970
1971 mutex_unlock(&display->dpll.lock);
1972 }
1973
skl_ddi_disable_clock(struct intel_encoder * encoder)1974 static void skl_ddi_disable_clock(struct intel_encoder *encoder)
1975 {
1976 struct intel_display *display = to_intel_display(encoder);
1977 enum port port = encoder->port;
1978
1979 mutex_lock(&display->dpll.lock);
1980
1981 intel_de_rmw(display, DPLL_CTRL2,
1982 0, DPLL_CTRL2_DDI_CLK_OFF(port));
1983
1984 mutex_unlock(&display->dpll.lock);
1985 }
1986
skl_ddi_is_clock_enabled(struct intel_encoder * encoder)1987 static bool skl_ddi_is_clock_enabled(struct intel_encoder *encoder)
1988 {
1989 struct intel_display *display = to_intel_display(encoder);
1990 enum port port = encoder->port;
1991
1992 /*
1993 * FIXME Not sure if the override affects both
1994 * the PLL selection and the CLK_OFF bit.
1995 */
1996 return !(intel_de_read(display, DPLL_CTRL2) & DPLL_CTRL2_DDI_CLK_OFF(port));
1997 }
1998
skl_ddi_get_pll(struct intel_encoder * encoder)1999 static struct intel_dpll *skl_ddi_get_pll(struct intel_encoder *encoder)
2000 {
2001 struct intel_display *display = to_intel_display(encoder);
2002 enum port port = encoder->port;
2003 enum intel_dpll_id id;
2004 u32 tmp;
2005
2006 tmp = intel_de_read(display, DPLL_CTRL2);
2007
2008 /*
2009 * FIXME Not sure if the override affects both
2010 * the PLL selection and the CLK_OFF bit.
2011 */
2012 if ((tmp & DPLL_CTRL2_DDI_SEL_OVERRIDE(port)) == 0)
2013 return NULL;
2014
2015 id = (tmp & DPLL_CTRL2_DDI_CLK_SEL_MASK(port)) >>
2016 DPLL_CTRL2_DDI_CLK_SEL_SHIFT(port);
2017
2018 return intel_get_dpll_by_id(display, id);
2019 }
2020
hsw_ddi_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2021 void hsw_ddi_enable_clock(struct intel_encoder *encoder,
2022 const struct intel_crtc_state *crtc_state)
2023 {
2024 struct intel_display *display = to_intel_display(encoder);
2025 const struct intel_dpll *pll = crtc_state->intel_dpll;
2026 enum port port = encoder->port;
2027
2028 if (drm_WARN_ON(display->drm, !pll))
2029 return;
2030
2031 intel_de_write(display, PORT_CLK_SEL(port), hsw_pll_to_ddi_pll_sel(pll));
2032 }
2033
hsw_ddi_disable_clock(struct intel_encoder * encoder)2034 void hsw_ddi_disable_clock(struct intel_encoder *encoder)
2035 {
2036 struct intel_display *display = to_intel_display(encoder);
2037 enum port port = encoder->port;
2038
2039 intel_de_write(display, PORT_CLK_SEL(port), PORT_CLK_SEL_NONE);
2040 }
2041
hsw_ddi_is_clock_enabled(struct intel_encoder * encoder)2042 bool hsw_ddi_is_clock_enabled(struct intel_encoder *encoder)
2043 {
2044 struct intel_display *display = to_intel_display(encoder);
2045 enum port port = encoder->port;
2046
2047 return intel_de_read(display, PORT_CLK_SEL(port)) != PORT_CLK_SEL_NONE;
2048 }
2049
hsw_ddi_get_pll(struct intel_encoder * encoder)2050 static struct intel_dpll *hsw_ddi_get_pll(struct intel_encoder *encoder)
2051 {
2052 struct intel_display *display = to_intel_display(encoder);
2053 enum port port = encoder->port;
2054 enum intel_dpll_id id;
2055 u32 tmp;
2056
2057 tmp = intel_de_read(display, PORT_CLK_SEL(port));
2058
2059 switch (tmp & PORT_CLK_SEL_MASK) {
2060 case PORT_CLK_SEL_WRPLL1:
2061 id = DPLL_ID_WRPLL1;
2062 break;
2063 case PORT_CLK_SEL_WRPLL2:
2064 id = DPLL_ID_WRPLL2;
2065 break;
2066 case PORT_CLK_SEL_SPLL:
2067 id = DPLL_ID_SPLL;
2068 break;
2069 case PORT_CLK_SEL_LCPLL_810:
2070 id = DPLL_ID_LCPLL_810;
2071 break;
2072 case PORT_CLK_SEL_LCPLL_1350:
2073 id = DPLL_ID_LCPLL_1350;
2074 break;
2075 case PORT_CLK_SEL_LCPLL_2700:
2076 id = DPLL_ID_LCPLL_2700;
2077 break;
2078 default:
2079 MISSING_CASE(tmp);
2080 fallthrough;
2081 case PORT_CLK_SEL_NONE:
2082 return NULL;
2083 }
2084
2085 return intel_get_dpll_by_id(display, id);
2086 }
2087
intel_ddi_enable_clock(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2088 void intel_ddi_enable_clock(struct intel_encoder *encoder,
2089 const struct intel_crtc_state *crtc_state)
2090 {
2091 if (encoder->enable_clock)
2092 encoder->enable_clock(encoder, crtc_state);
2093 }
2094
intel_ddi_disable_clock(struct intel_encoder * encoder)2095 void intel_ddi_disable_clock(struct intel_encoder *encoder)
2096 {
2097 if (encoder->disable_clock)
2098 encoder->disable_clock(encoder);
2099 }
2100
intel_ddi_sanitize_encoder_pll_mapping(struct intel_encoder * encoder)2101 void intel_ddi_sanitize_encoder_pll_mapping(struct intel_encoder *encoder)
2102 {
2103 struct intel_display *display = to_intel_display(encoder);
2104 u32 port_mask;
2105 bool ddi_clk_needed;
2106
2107 /*
2108 * In case of DP MST, we sanitize the primary encoder only, not the
2109 * virtual ones.
2110 */
2111 if (encoder->type == INTEL_OUTPUT_DP_MST)
2112 return;
2113
2114 if (!encoder->base.crtc && intel_encoder_is_dp(encoder)) {
2115 u8 pipe_mask;
2116 bool is_mst;
2117
2118 intel_ddi_get_encoder_pipes(encoder, &pipe_mask, &is_mst);
2119 /*
2120 * In the unlikely case that BIOS enables DP in MST mode, just
2121 * warn since our MST HW readout is incomplete.
2122 */
2123 if (drm_WARN_ON(display->drm, is_mst))
2124 return;
2125 }
2126
2127 port_mask = BIT(encoder->port);
2128 ddi_clk_needed = encoder->base.crtc;
2129
2130 if (encoder->type == INTEL_OUTPUT_DSI) {
2131 struct intel_encoder *other_encoder;
2132
2133 port_mask = intel_dsi_encoder_ports(encoder);
2134 /*
2135 * Sanity check that we haven't incorrectly registered another
2136 * encoder using any of the ports of this DSI encoder.
2137 */
2138 for_each_intel_encoder(display->drm, other_encoder) {
2139 if (other_encoder == encoder)
2140 continue;
2141
2142 if (drm_WARN_ON(display->drm,
2143 port_mask & BIT(other_encoder->port)))
2144 return;
2145 }
2146 /*
2147 * For DSI we keep the ddi clocks gated
2148 * except during enable/disable sequence.
2149 */
2150 ddi_clk_needed = false;
2151 }
2152
2153 if (ddi_clk_needed || !encoder->is_clock_enabled ||
2154 !encoder->is_clock_enabled(encoder))
2155 return;
2156
2157 drm_dbg_kms(display->drm,
2158 "[ENCODER:%d:%s] is disabled/in DSI mode with an ungated DDI clock, gate it\n",
2159 encoder->base.base.id, encoder->base.name);
2160
2161 encoder->disable_clock(encoder);
2162 }
2163
2164 static void
tgl_dkl_phy_check_and_rewrite(struct intel_display * display,enum tc_port tc_port,u32 ln0,u32 ln1)2165 tgl_dkl_phy_check_and_rewrite(struct intel_display *display,
2166 enum tc_port tc_port, u32 ln0, u32 ln1)
2167 {
2168 if (ln0 != intel_dkl_phy_read(display, DKL_DP_MODE(tc_port, 0)))
2169 intel_dkl_phy_write(display, DKL_DP_MODE(tc_port, 0), ln0);
2170 if (ln1 != intel_dkl_phy_read(display, DKL_DP_MODE(tc_port, 1)))
2171 intel_dkl_phy_write(display, DKL_DP_MODE(tc_port, 1), ln1);
2172 }
2173
2174 static void
icl_program_mg_dp_mode(struct intel_digital_port * dig_port,const struct intel_crtc_state * crtc_state)2175 icl_program_mg_dp_mode(struct intel_digital_port *dig_port,
2176 const struct intel_crtc_state *crtc_state)
2177 {
2178 struct intel_display *display = to_intel_display(crtc_state);
2179 enum tc_port tc_port = intel_encoder_to_tc(&dig_port->base);
2180 enum intel_tc_pin_assignment pin_assignment;
2181 u32 ln0, ln1;
2182 u8 width;
2183
2184 if (DISPLAY_VER(display) >= 14)
2185 return;
2186
2187 if (!intel_encoder_is_tc(&dig_port->base) ||
2188 intel_tc_port_in_tbt_alt_mode(dig_port))
2189 return;
2190
2191 if (DISPLAY_VER(display) >= 12) {
2192 ln0 = intel_dkl_phy_read(display, DKL_DP_MODE(tc_port, 0));
2193 ln1 = intel_dkl_phy_read(display, DKL_DP_MODE(tc_port, 1));
2194 } else {
2195 ln0 = intel_de_read(display, MG_DP_MODE(0, tc_port));
2196 ln1 = intel_de_read(display, MG_DP_MODE(1, tc_port));
2197 }
2198
2199 ln0 &= ~(MG_DP_MODE_CFG_DP_X1_MODE | MG_DP_MODE_CFG_DP_X2_MODE);
2200 ln1 &= ~(MG_DP_MODE_CFG_DP_X1_MODE | MG_DP_MODE_CFG_DP_X2_MODE);
2201
2202 /* DPPATC */
2203 pin_assignment = intel_tc_port_get_pin_assignment(dig_port);
2204 width = crtc_state->lane_count;
2205
2206 switch (pin_assignment) {
2207 case INTEL_TC_PIN_ASSIGNMENT_NONE:
2208 drm_WARN_ON(display->drm,
2209 !intel_tc_port_in_legacy_mode(dig_port));
2210 if (width == 1) {
2211 ln1 |= MG_DP_MODE_CFG_DP_X1_MODE;
2212 } else {
2213 ln0 |= MG_DP_MODE_CFG_DP_X2_MODE;
2214 ln1 |= MG_DP_MODE_CFG_DP_X2_MODE;
2215 }
2216 break;
2217 case INTEL_TC_PIN_ASSIGNMENT_A:
2218 if (width == 4) {
2219 ln0 |= MG_DP_MODE_CFG_DP_X2_MODE;
2220 ln1 |= MG_DP_MODE_CFG_DP_X2_MODE;
2221 }
2222 break;
2223 case INTEL_TC_PIN_ASSIGNMENT_B:
2224 if (width == 2) {
2225 ln0 |= MG_DP_MODE_CFG_DP_X2_MODE;
2226 ln1 |= MG_DP_MODE_CFG_DP_X2_MODE;
2227 }
2228 break;
2229 case INTEL_TC_PIN_ASSIGNMENT_C:
2230 case INTEL_TC_PIN_ASSIGNMENT_E:
2231 if (width == 1) {
2232 ln0 |= MG_DP_MODE_CFG_DP_X1_MODE;
2233 ln1 |= MG_DP_MODE_CFG_DP_X1_MODE;
2234 } else {
2235 ln0 |= MG_DP_MODE_CFG_DP_X2_MODE;
2236 ln1 |= MG_DP_MODE_CFG_DP_X2_MODE;
2237 }
2238 break;
2239 case INTEL_TC_PIN_ASSIGNMENT_D:
2240 case INTEL_TC_PIN_ASSIGNMENT_F:
2241 if (width == 1) {
2242 ln0 |= MG_DP_MODE_CFG_DP_X1_MODE;
2243 ln1 |= MG_DP_MODE_CFG_DP_X1_MODE;
2244 } else {
2245 ln0 |= MG_DP_MODE_CFG_DP_X2_MODE;
2246 ln1 |= MG_DP_MODE_CFG_DP_X2_MODE;
2247 }
2248 break;
2249 default:
2250 MISSING_CASE(pin_assignment);
2251 }
2252
2253 if (DISPLAY_VER(display) >= 12) {
2254 intel_dkl_phy_write(display, DKL_DP_MODE(tc_port, 0), ln0);
2255 intel_dkl_phy_write(display, DKL_DP_MODE(tc_port, 1), ln1);
2256 /* WA_14018221282 */
2257 if (IS_DISPLAY_VER(display, 12, 13))
2258 tgl_dkl_phy_check_and_rewrite(display, tc_port, ln0, ln1);
2259
2260 } else {
2261 intel_de_write(display, MG_DP_MODE(0, tc_port), ln0);
2262 intel_de_write(display, MG_DP_MODE(1, tc_port), ln1);
2263 }
2264 }
2265
2266 static enum transcoder
tgl_dp_tp_transcoder(const struct intel_crtc_state * crtc_state)2267 tgl_dp_tp_transcoder(const struct intel_crtc_state *crtc_state)
2268 {
2269 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST))
2270 return crtc_state->mst_master_transcoder;
2271 else
2272 return crtc_state->cpu_transcoder;
2273 }
2274
dp_tp_ctl_reg(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2275 intel_reg_t dp_tp_ctl_reg(struct intel_encoder *encoder,
2276 const struct intel_crtc_state *crtc_state)
2277 {
2278 struct intel_display *display = to_intel_display(encoder);
2279
2280 if (DISPLAY_VER(display) >= 12)
2281 return TGL_DP_TP_CTL(display,
2282 tgl_dp_tp_transcoder(crtc_state));
2283 else
2284 return DP_TP_CTL(encoder->port);
2285 }
2286
dp_tp_status_reg(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2287 static intel_reg_t dp_tp_status_reg(struct intel_encoder *encoder,
2288 const struct intel_crtc_state *crtc_state)
2289 {
2290 struct intel_display *display = to_intel_display(encoder);
2291
2292 if (DISPLAY_VER(display) >= 12)
2293 return TGL_DP_TP_STATUS(display,
2294 tgl_dp_tp_transcoder(crtc_state));
2295 else
2296 return DP_TP_STATUS(encoder->port);
2297 }
2298
intel_ddi_clear_act_sent(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2299 void intel_ddi_clear_act_sent(struct intel_encoder *encoder,
2300 const struct intel_crtc_state *crtc_state)
2301 {
2302 struct intel_display *display = to_intel_display(encoder);
2303
2304 intel_de_write(display, dp_tp_status_reg(encoder, crtc_state),
2305 DP_TP_STATUS_ACT_SENT);
2306 }
2307
intel_ddi_wait_for_act_sent(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2308 void intel_ddi_wait_for_act_sent(struct intel_encoder *encoder,
2309 const struct intel_crtc_state *crtc_state)
2310 {
2311 struct intel_display *display = to_intel_display(encoder);
2312
2313 if (intel_de_wait_for_set_ms(display, dp_tp_status_reg(encoder, crtc_state),
2314 DP_TP_STATUS_ACT_SENT, 1))
2315 drm_err(display->drm, "Timed out waiting for ACT sent\n");
2316 }
2317
intel_dp_sink_set_msa_timing_par_ignore_state(struct intel_dp * intel_dp,const struct intel_crtc_state * crtc_state,bool enable)2318 static void intel_dp_sink_set_msa_timing_par_ignore_state(struct intel_dp *intel_dp,
2319 const struct intel_crtc_state *crtc_state,
2320 bool enable)
2321 {
2322 struct intel_display *display = to_intel_display(intel_dp);
2323
2324 if (!crtc_state->vrr.enable)
2325 return;
2326
2327 if (drm_dp_dpcd_writeb(&intel_dp->aux, DP_DOWNSPREAD_CTRL,
2328 enable ? DP_MSA_TIMING_PAR_IGNORE_EN : 0) <= 0)
2329 drm_dbg_kms(display->drm,
2330 "Failed to %s MSA_TIMING_PAR_IGNORE in the sink\n",
2331 str_enable_disable(enable));
2332 }
2333
intel_dp_sink_set_fec_ready(struct intel_dp * intel_dp,const struct intel_crtc_state * crtc_state,bool enable)2334 static void intel_dp_sink_set_fec_ready(struct intel_dp *intel_dp,
2335 const struct intel_crtc_state *crtc_state,
2336 bool enable)
2337 {
2338 struct intel_display *display = to_intel_display(intel_dp);
2339
2340 if (!crtc_state->fec_enable)
2341 return;
2342
2343 if (drm_dp_dpcd_writeb(&intel_dp->aux, DP_FEC_CONFIGURATION,
2344 enable ? DP_FEC_READY : 0) <= 0)
2345 drm_dbg_kms(display->drm, "Failed to set FEC_READY to %s in the sink\n",
2346 str_enabled_disabled(enable));
2347
2348 if (enable &&
2349 drm_dp_dpcd_writeb(&intel_dp->aux, DP_FEC_STATUS,
2350 DP_FEC_DECODE_EN_DETECTED | DP_FEC_DECODE_DIS_DETECTED) <= 0)
2351 drm_dbg_kms(display->drm, "Failed to clear FEC detected flags\n");
2352 }
2353
wait_for_fec_detected(struct drm_dp_aux * aux,bool enabled)2354 static int wait_for_fec_detected(struct drm_dp_aux *aux, bool enabled)
2355 {
2356 struct intel_display *display = to_intel_display(aux->drm_dev);
2357 int mask = enabled ? DP_FEC_DECODE_EN_DETECTED : DP_FEC_DECODE_DIS_DETECTED;
2358 u8 status = 0;
2359 int ret, err;
2360
2361 ret = poll_timeout_us(err = drm_dp_dpcd_read_byte(aux, DP_FEC_STATUS, &status),
2362 err || (status & mask),
2363 10 * 1000, 200 * 1000, false);
2364
2365 /* Either can be non-zero, but not both */
2366 ret = ret ?: err;
2367 if (ret) {
2368 drm_dbg_kms(display->drm,
2369 "Failed waiting for FEC %s to get detected: %d (status 0x%02x)\n",
2370 str_enabled_disabled(enabled), ret, status);
2371 return ret;
2372 }
2373
2374 return 0;
2375 }
2376
intel_ddi_wait_for_fec_status(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,bool enabled)2377 int intel_ddi_wait_for_fec_status(struct intel_encoder *encoder,
2378 const struct intel_crtc_state *crtc_state,
2379 bool enabled)
2380 {
2381 struct intel_display *display = to_intel_display(encoder);
2382 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
2383 int ret;
2384
2385 if (!crtc_state->fec_enable)
2386 return 0;
2387
2388 if (enabled)
2389 ret = intel_de_wait_for_set_ms(display, dp_tp_status_reg(encoder, crtc_state),
2390 DP_TP_STATUS_FEC_ENABLE_LIVE, 1);
2391 else
2392 ret = intel_de_wait_for_clear_ms(display, dp_tp_status_reg(encoder, crtc_state),
2393 DP_TP_STATUS_FEC_ENABLE_LIVE, 1);
2394
2395 if (ret) {
2396 drm_err(display->drm,
2397 "Timeout waiting for FEC live state to get %s\n",
2398 str_enabled_disabled(enabled));
2399 return ret;
2400 }
2401 /*
2402 * At least the Synoptics MST hub doesn't set the detected flag for
2403 * FEC decoding disabling so skip waiting for that.
2404 */
2405 if (enabled) {
2406 ret = wait_for_fec_detected(&intel_dp->aux, enabled);
2407 if (ret)
2408 return ret;
2409 }
2410
2411 return 0;
2412 }
2413
intel_ddi_enable_fec(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2414 static void intel_ddi_enable_fec(struct intel_encoder *encoder,
2415 const struct intel_crtc_state *crtc_state)
2416 {
2417 struct intel_display *display = to_intel_display(encoder);
2418 int i;
2419 int ret;
2420
2421 if (!crtc_state->fec_enable)
2422 return;
2423
2424 intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state),
2425 0, DP_TP_CTL_FEC_ENABLE);
2426
2427 if (DISPLAY_VER(display) < 30)
2428 return;
2429
2430 ret = intel_ddi_wait_for_fec_status(encoder, crtc_state, true);
2431 if (!ret)
2432 return;
2433
2434 for (i = 0; i < 3; i++) {
2435 drm_dbg_kms(display->drm, "Retry FEC enabling\n");
2436
2437 intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state),
2438 DP_TP_CTL_FEC_ENABLE, 0);
2439
2440 ret = intel_ddi_wait_for_fec_status(encoder, crtc_state, false);
2441 if (ret)
2442 continue;
2443
2444 intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state),
2445 0, DP_TP_CTL_FEC_ENABLE);
2446
2447 ret = intel_ddi_wait_for_fec_status(encoder, crtc_state, true);
2448 if (!ret)
2449 return;
2450 }
2451
2452 drm_dbg_kms(display->drm, "Failed to enable FEC after retries\n");
2453 }
2454
intel_ddi_disable_fec(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2455 static void intel_ddi_disable_fec(struct intel_encoder *encoder,
2456 const struct intel_crtc_state *crtc_state)
2457 {
2458 struct intel_display *display = to_intel_display(encoder);
2459
2460 if (!crtc_state->fec_enable)
2461 return;
2462
2463 intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state),
2464 DP_TP_CTL_FEC_ENABLE, 0);
2465 intel_de_posting_read(display, dp_tp_ctl_reg(encoder, crtc_state));
2466 }
2467
intel_ddi_power_up_lanes(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2468 static void intel_ddi_power_up_lanes(struct intel_encoder *encoder,
2469 const struct intel_crtc_state *crtc_state)
2470 {
2471 struct intel_display *display = to_intel_display(encoder);
2472 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
2473
2474 if (intel_encoder_is_combo(encoder)) {
2475 enum phy phy = intel_encoder_to_phy(encoder);
2476
2477 intel_combo_phy_power_up_lanes(display, phy, false,
2478 crtc_state->lane_count,
2479 dig_port->lane_reversal);
2480 }
2481 }
2482
2483 /*
2484 * Splitter enable for eDP MSO is limited to certain pipes, on certain
2485 * platforms.
2486 */
intel_ddi_splitter_pipe_mask(struct intel_display * display)2487 static u8 intel_ddi_splitter_pipe_mask(struct intel_display *display)
2488 {
2489 if (DISPLAY_VER(display) > 20)
2490 return ~0;
2491 else if (display->platform.alderlake_p)
2492 return BIT(PIPE_A) | BIT(PIPE_B);
2493 else
2494 return BIT(PIPE_A);
2495 }
2496
intel_ddi_mso_get_config(struct intel_encoder * encoder,struct intel_crtc_state * pipe_config)2497 static void intel_ddi_mso_get_config(struct intel_encoder *encoder,
2498 struct intel_crtc_state *pipe_config)
2499 {
2500 struct intel_display *display = to_intel_display(pipe_config);
2501 struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
2502 enum pipe pipe = crtc->pipe;
2503 u32 dss1;
2504
2505 if (!HAS_MSO(display))
2506 return;
2507
2508 dss1 = intel_de_read(display, ICL_PIPE_DSS_CTL1(pipe));
2509
2510 pipe_config->splitter.enable = dss1 & SPLITTER_ENABLE;
2511 if (!pipe_config->splitter.enable)
2512 return;
2513
2514 if (drm_WARN_ON(display->drm, !(intel_ddi_splitter_pipe_mask(display) & BIT(pipe)))) {
2515 pipe_config->splitter.enable = false;
2516 return;
2517 }
2518
2519 switch (dss1 & SPLITTER_CONFIGURATION_MASK) {
2520 default:
2521 drm_WARN(display->drm, true,
2522 "Invalid splitter configuration, dss1=0x%08x\n", dss1);
2523 fallthrough;
2524 case SPLITTER_CONFIGURATION_2_SEGMENT:
2525 pipe_config->splitter.link_count = 2;
2526 break;
2527 case SPLITTER_CONFIGURATION_4_SEGMENT:
2528 pipe_config->splitter.link_count = 4;
2529 break;
2530 }
2531
2532 pipe_config->splitter.pixel_overlap = REG_FIELD_GET(OVERLAP_PIXELS_MASK, dss1);
2533 }
2534
intel_ddi_mso_configure(const struct intel_crtc_state * crtc_state)2535 static void intel_ddi_mso_configure(const struct intel_crtc_state *crtc_state)
2536 {
2537 struct intel_display *display = to_intel_display(crtc_state);
2538 struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
2539 enum pipe pipe = crtc->pipe;
2540 u32 dss1 = 0;
2541
2542 if (!HAS_MSO(display))
2543 return;
2544
2545 if (crtc_state->splitter.enable) {
2546 dss1 |= SPLITTER_ENABLE;
2547 dss1 |= OVERLAP_PIXELS(crtc_state->splitter.pixel_overlap);
2548 if (crtc_state->splitter.link_count == 2)
2549 dss1 |= SPLITTER_CONFIGURATION_2_SEGMENT;
2550 else
2551 dss1 |= SPLITTER_CONFIGURATION_4_SEGMENT;
2552 }
2553
2554 intel_de_rmw(display, ICL_PIPE_DSS_CTL1(pipe),
2555 SPLITTER_ENABLE | SPLITTER_CONFIGURATION_MASK |
2556 OVERLAP_PIXELS_MASK, dss1);
2557 }
2558
2559 static void
mtl_ddi_enable_d2d(struct intel_encoder * encoder)2560 mtl_ddi_enable_d2d(struct intel_encoder *encoder)
2561 {
2562 struct intel_display *display = to_intel_display(encoder);
2563 enum port port = encoder->port;
2564 intel_reg_t reg;
2565 u32 set_bits, wait_bits;
2566 int ret;
2567
2568 if (DISPLAY_VER(display) < 14)
2569 return;
2570
2571 if (DISPLAY_VER(display) >= 20) {
2572 reg = DDI_BUF_CTL(port);
2573 set_bits = XE2LPD_DDI_BUF_D2D_LINK_ENABLE;
2574 wait_bits = XE2LPD_DDI_BUF_D2D_LINK_STATE;
2575 } else {
2576 reg = XELPDP_PORT_BUF_CTL1(display, port);
2577 set_bits = XELPDP_PORT_BUF_D2D_LINK_ENABLE;
2578 wait_bits = XELPDP_PORT_BUF_D2D_LINK_STATE;
2579 }
2580
2581 intel_de_rmw(display, reg, 0, set_bits);
2582
2583 ret = intel_de_wait_for_set_us(display, reg, wait_bits, 100);
2584 if (ret) {
2585 drm_err(display->drm, "Timeout waiting for D2D Link enable for DDI/PORT_BUF_CTL %c\n",
2586 port_name(port));
2587 }
2588 }
2589
mtl_port_buf_ctl_program(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)2590 static void mtl_port_buf_ctl_program(struct intel_encoder *encoder,
2591 const struct intel_crtc_state *crtc_state)
2592 {
2593 struct intel_display *display = to_intel_display(encoder);
2594 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
2595 enum port port = encoder->port;
2596 u32 val = 0;
2597
2598 val |= XELPDP_PORT_WIDTH(crtc_state->lane_count);
2599
2600 if (intel_dp_is_uhbr(crtc_state))
2601 val |= XELPDP_PORT_BUF_PORT_DATA_40BIT;
2602 else
2603 val |= XELPDP_PORT_BUF_PORT_DATA_10BIT;
2604
2605 if (dig_port->lane_reversal)
2606 val |= XELPDP_PORT_REVERSAL;
2607
2608 intel_de_rmw(display, XELPDP_PORT_BUF_CTL1(display, port),
2609 XELPDP_PORT_WIDTH_MASK | XELPDP_PORT_BUF_PORT_DATA_WIDTH_MASK,
2610 val);
2611 }
2612
mtl_port_buf_ctl_io_selection(struct intel_encoder * encoder)2613 static void mtl_port_buf_ctl_io_selection(struct intel_encoder *encoder)
2614 {
2615 struct intel_display *display = to_intel_display(encoder);
2616 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
2617 u32 val;
2618
2619 val = intel_tc_port_in_tbt_alt_mode(dig_port) ?
2620 XELPDP_PORT_BUF_IO_SELECT_TBT : 0;
2621 intel_de_rmw(display, XELPDP_PORT_BUF_CTL1(display, encoder->port),
2622 XELPDP_PORT_BUF_IO_SELECT_TBT, val);
2623 }
2624
mtl_ddi_pre_enable_dp(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)2625 static void mtl_ddi_pre_enable_dp(struct intel_atomic_state *state,
2626 struct intel_encoder *encoder,
2627 const struct intel_crtc_state *crtc_state,
2628 const struct drm_connector_state *conn_state)
2629 {
2630 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
2631 bool is_mst = intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST);
2632 bool transparent_mode;
2633 int ret;
2634
2635 intel_dp_set_link_params(intel_dp,
2636 crtc_state->port_clock,
2637 crtc_state->lane_count);
2638
2639 /*
2640 * We only configure what the register value will be here. Actual
2641 * enabling happens during link training farther down.
2642 */
2643 intel_ddi_init_dp_buf_reg(encoder, crtc_state);
2644
2645 /*
2646 * 1. Enable Power Wells
2647 *
2648 * This was handled at the beginning of intel_atomic_commit_tail(),
2649 * before we called down into this function.
2650 */
2651
2652 /* 2. PMdemand was already set */
2653
2654 /* 3. Select Thunderbolt */
2655 mtl_port_buf_ctl_io_selection(encoder);
2656
2657 /* 5. Enable the port PLL */
2658 intel_ddi_enable_clock(encoder, crtc_state);
2659
2660 /*
2661 * 6.a Configure Transcoder Clock Select to direct the Port clock to the
2662 * Transcoder.
2663 */
2664 intel_ddi_enable_transcoder_clock(encoder, crtc_state);
2665
2666 /*
2667 * 6.b If DP v2.0/128b mode - Configure TRANS_DP2_CTL register settings.
2668 * 6.c Configure TRANS_DDI_FUNC_CTL DDI Select, DDI Mode Select & MST
2669 * Transport Select
2670 */
2671 intel_ddi_config_transcoder_func(encoder, crtc_state);
2672
2673 /*
2674 * 6.e Program CoG/MSO configuration bits in DSS_CTL1 if selected.
2675 */
2676 intel_ddi_mso_configure(crtc_state);
2677
2678 if (!is_mst)
2679 intel_dp_set_power(intel_dp, DP_SET_POWER_D0);
2680
2681 transparent_mode = intel_dp_lttpr_transparent_mode_enabled(intel_dp);
2682 drm_dp_lttpr_wake_timeout_setup(&intel_dp->aux, transparent_mode);
2683
2684 intel_dp_configure_protocol_converter(intel_dp, crtc_state);
2685 if (!is_mst)
2686 intel_dp_sink_enable_decompression(state,
2687 to_intel_connector(conn_state->connector),
2688 crtc_state);
2689
2690 /*
2691 * DDI FEC: "anticipates enabling FEC encoding sets the FEC_READY bit
2692 * in the FEC_CONFIGURATION register to 1 before initiating link
2693 * training
2694 */
2695 intel_dp_sink_set_fec_ready(intel_dp, crtc_state, true);
2696
2697 intel_dp_check_frl_training(intel_dp);
2698 intel_dp_pcon_dsc_configure(intel_dp, crtc_state);
2699
2700 /*
2701 * 6. The rest of the below are substeps under the bspec's "Enable and
2702 * Train Display Port" step. Note that steps that are specific to
2703 * MST will be handled by intel_mst_pre_enable_dp() before/after it
2704 * calls into this function. Also intel_mst_pre_enable_dp() only calls
2705 * us when active_mst_links==0, so any steps designated for "single
2706 * stream or multi-stream master transcoder" can just be performed
2707 * unconditionally here.
2708 *
2709 * mtl_ddi_prepare_link_retrain() that is called by
2710 * intel_dp_start_link_train() will execute steps: 6.d, 6.f, 6.g, 6.h,
2711 * 6.i and 6.j
2712 *
2713 * 6.k Follow DisplayPort specification training sequence (see notes for
2714 * failure handling)
2715 * 6.m If DisplayPort multi-stream - Set DP_TP_CTL link training to Idle
2716 * Pattern, wait for 5 idle patterns (DP_TP_STATUS Min_Idles_Sent)
2717 * (timeout after 800 us)
2718 */
2719 intel_dp_start_link_train(state, intel_dp, crtc_state);
2720
2721 /* 6.n Set DP_TP_CTL link training to Normal */
2722 if (!is_trans_port_sync_mode(crtc_state))
2723 intel_dp_stop_link_train(intel_dp, crtc_state);
2724
2725 /* 6.o Configure and enable FEC if needed */
2726 intel_ddi_enable_fec(encoder, crtc_state);
2727
2728 /* 7.a 128b/132b SST. */
2729 if (!is_mst && intel_dp_is_uhbr(crtc_state)) {
2730 /* VCPID 1, start slot 0 for 128b/132b, tu slots */
2731 ret = drm_dp_dpcd_write_payload(&intel_dp->aux, 1, 0, crtc_state->dp_m_n.tu);
2732 if (ret < 0)
2733 intel_dp_queue_modeset_retry_for_link(state, encoder, crtc_state);
2734 }
2735
2736 if (!is_mst)
2737 intel_dsc_dp_pps_write(encoder, crtc_state);
2738 }
2739
tgl_ddi_pre_enable_dp(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)2740 static void tgl_ddi_pre_enable_dp(struct intel_atomic_state *state,
2741 struct intel_encoder *encoder,
2742 const struct intel_crtc_state *crtc_state,
2743 const struct drm_connector_state *conn_state)
2744 {
2745 struct intel_display *display = to_intel_display(encoder);
2746 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
2747 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
2748 bool is_mst = intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST);
2749 int ret;
2750
2751 intel_dp_set_link_params(intel_dp,
2752 crtc_state->port_clock,
2753 crtc_state->lane_count);
2754
2755 /*
2756 * We only configure what the register value will be here. Actual
2757 * enabling happens during link training farther down.
2758 */
2759 intel_ddi_init_dp_buf_reg(encoder, crtc_state);
2760
2761 /*
2762 * 1. Enable Power Wells
2763 *
2764 * This was handled at the beginning of intel_atomic_commit_tail(),
2765 * before we called down into this function.
2766 */
2767
2768 /* 2. Enable Panel Power if PPS is required */
2769 intel_pps_on(intel_dp);
2770
2771 /*
2772 * 3. For non-TBT Type-C ports, set FIA lane count
2773 * (DFLEXDPSP.DPX4TXLATC)
2774 *
2775 * This was done before tgl_ddi_pre_enable_dp by
2776 * hsw_crtc_enable()->intel_encoders_pre_pll_enable().
2777 */
2778
2779 /*
2780 * 4. Enable the port PLL.
2781 *
2782 * The PLL enabling itself was already done before this function by
2783 * hsw_crtc_enable()->intel_enable_dpll(). We need only
2784 * configure the PLL to port mapping here.
2785 */
2786 intel_ddi_enable_clock(encoder, crtc_state);
2787
2788 /* 5. If IO power is controlled through PWR_WELL_CTL, Enable IO Power */
2789 if (!intel_tc_port_in_tbt_alt_mode(dig_port)) {
2790 drm_WARN_ON(display->drm, dig_port->ddi_io_wakeref);
2791 dig_port->ddi_io_wakeref = intel_display_power_get(display,
2792 dig_port->ddi_io_power_domain);
2793 }
2794
2795 /* 6. Program DP_MODE */
2796 icl_program_mg_dp_mode(dig_port, crtc_state);
2797
2798 /*
2799 * 7. The rest of the below are substeps under the bspec's "Enable and
2800 * Train Display Port" step. Note that steps that are specific to
2801 * MST will be handled by intel_mst_pre_enable_dp() before/after it
2802 * calls into this function. Also intel_mst_pre_enable_dp() only calls
2803 * us when active_mst_links==0, so any steps designated for "single
2804 * stream or multi-stream master transcoder" can just be performed
2805 * unconditionally here.
2806 */
2807
2808 /*
2809 * 7.a Configure Transcoder Clock Select to direct the Port clock to the
2810 * Transcoder.
2811 */
2812 intel_ddi_enable_transcoder_clock(encoder, crtc_state);
2813
2814 /*
2815 * 7.b Configure TRANS_DDI_FUNC_CTL DDI Select, DDI Mode Select & MST
2816 * Transport Select
2817 */
2818 intel_ddi_config_transcoder_func(encoder, crtc_state);
2819
2820 /*
2821 * 7.c Configure & enable DP_TP_CTL with link training pattern 1
2822 * selected
2823 *
2824 * This will be handled by the intel_dp_start_link_train() farther
2825 * down this function.
2826 */
2827
2828 /* 7.e Configure voltage swing and related IO settings */
2829 encoder->set_signal_levels(encoder, crtc_state);
2830
2831 /*
2832 * 7.f Combo PHY: Configure PORT_CL_DW10 Static Power Down to power up
2833 * the used lanes of the DDI.
2834 */
2835 intel_ddi_power_up_lanes(encoder, crtc_state);
2836
2837 /*
2838 * 7.g Program CoG/MSO configuration bits in DSS_CTL1 if selected.
2839 */
2840 intel_ddi_mso_configure(crtc_state);
2841
2842 if (!is_mst)
2843 intel_dp_set_power(intel_dp, DP_SET_POWER_D0);
2844
2845 intel_dp_configure_protocol_converter(intel_dp, crtc_state);
2846 if (!is_mst)
2847 intel_dp_sink_enable_decompression(state,
2848 to_intel_connector(conn_state->connector),
2849 crtc_state);
2850 /*
2851 * DDI FEC: "anticipates enabling FEC encoding sets the FEC_READY bit
2852 * in the FEC_CONFIGURATION register to 1 before initiating link
2853 * training
2854 */
2855 intel_dp_sink_set_fec_ready(intel_dp, crtc_state, true);
2856
2857 intel_dp_check_frl_training(intel_dp);
2858 intel_dp_pcon_dsc_configure(intel_dp, crtc_state);
2859
2860 /*
2861 * 7.i Follow DisplayPort specification training sequence (see notes for
2862 * failure handling)
2863 * 7.j If DisplayPort multi-stream - Set DP_TP_CTL link training to Idle
2864 * Pattern, wait for 5 idle patterns (DP_TP_STATUS Min_Idles_Sent)
2865 * (timeout after 800 us)
2866 */
2867 intel_dp_start_link_train(state, intel_dp, crtc_state);
2868
2869 /* 7.k Set DP_TP_CTL link training to Normal */
2870 if (!is_trans_port_sync_mode(crtc_state))
2871 intel_dp_stop_link_train(intel_dp, crtc_state);
2872
2873 /* 7.l Configure and enable FEC if needed */
2874 intel_ddi_enable_fec(encoder, crtc_state);
2875
2876 if (!is_mst && intel_dp_is_uhbr(crtc_state)) {
2877 /* VCPID 1, start slot 0 for 128b/132b, tu slots */
2878 ret = drm_dp_dpcd_write_payload(&intel_dp->aux, 1, 0, crtc_state->dp_m_n.tu);
2879 if (ret < 0)
2880 intel_dp_queue_modeset_retry_for_link(state, encoder, crtc_state);
2881 }
2882
2883 if (!is_mst)
2884 intel_dsc_dp_pps_write(encoder, crtc_state);
2885 }
2886
hsw_ddi_pre_enable_dp(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)2887 static void hsw_ddi_pre_enable_dp(struct intel_atomic_state *state,
2888 struct intel_encoder *encoder,
2889 const struct intel_crtc_state *crtc_state,
2890 const struct drm_connector_state *conn_state)
2891 {
2892 struct intel_display *display = to_intel_display(encoder);
2893 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
2894 enum port port = encoder->port;
2895 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
2896 bool is_mst = intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST);
2897
2898 if (DISPLAY_VER(display) < 11)
2899 drm_WARN_ON(display->drm,
2900 is_mst && (port == PORT_A || port == PORT_E));
2901 else
2902 drm_WARN_ON(display->drm, is_mst && port == PORT_A);
2903
2904 intel_dp_set_link_params(intel_dp,
2905 crtc_state->port_clock,
2906 crtc_state->lane_count);
2907
2908 /*
2909 * We only configure what the register value will be here. Actual
2910 * enabling happens during link training farther down.
2911 */
2912 intel_ddi_init_dp_buf_reg(encoder, crtc_state);
2913
2914 intel_pps_on(intel_dp);
2915
2916 intel_ddi_enable_clock(encoder, crtc_state);
2917
2918 if (!intel_tc_port_in_tbt_alt_mode(dig_port)) {
2919 drm_WARN_ON(display->drm, dig_port->ddi_io_wakeref);
2920 dig_port->ddi_io_wakeref = intel_display_power_get(display,
2921 dig_port->ddi_io_power_domain);
2922 }
2923
2924 icl_program_mg_dp_mode(dig_port, crtc_state);
2925
2926 if (has_buf_trans_select(display))
2927 hsw_prepare_dp_ddi_buffers(encoder, crtc_state);
2928
2929 encoder->set_signal_levels(encoder, crtc_state);
2930
2931 intel_ddi_power_up_lanes(encoder, crtc_state);
2932
2933 if (!is_mst)
2934 intel_dp_set_power(intel_dp, DP_SET_POWER_D0);
2935 intel_dp_configure_protocol_converter(intel_dp, crtc_state);
2936 if (!is_mst)
2937 intel_dp_sink_enable_decompression(state,
2938 to_intel_connector(conn_state->connector),
2939 crtc_state);
2940 intel_dp_sink_set_fec_ready(intel_dp, crtc_state, true);
2941 intel_dp_start_link_train(state, intel_dp, crtc_state);
2942 if ((port != PORT_A || DISPLAY_VER(display) >= 9) &&
2943 !is_trans_port_sync_mode(crtc_state))
2944 intel_dp_stop_link_train(intel_dp, crtc_state);
2945
2946 intel_ddi_enable_fec(encoder, crtc_state);
2947
2948 if (!is_mst) {
2949 intel_ddi_enable_transcoder_clock(encoder, crtc_state);
2950 intel_dsc_dp_pps_write(encoder, crtc_state);
2951 }
2952 }
2953
intel_ddi_pre_enable_dp(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)2954 static void intel_ddi_pre_enable_dp(struct intel_atomic_state *state,
2955 struct intel_encoder *encoder,
2956 const struct intel_crtc_state *crtc_state,
2957 const struct drm_connector_state *conn_state)
2958 {
2959 struct intel_display *display = to_intel_display(encoder);
2960
2961 if (HAS_DP20(display))
2962 intel_dp_128b132b_sdp_crc16(enc_to_intel_dp(encoder),
2963 crtc_state);
2964
2965 /* Panel replay has to be enabled in sink dpcd before link training. */
2966 intel_psr_panel_replay_enable_sink(enc_to_intel_dp(encoder));
2967
2968 if (DISPLAY_VER(display) >= 14)
2969 mtl_ddi_pre_enable_dp(state, encoder, crtc_state, conn_state);
2970 else if (DISPLAY_VER(display) >= 12)
2971 tgl_ddi_pre_enable_dp(state, encoder, crtc_state, conn_state);
2972 else
2973 hsw_ddi_pre_enable_dp(state, encoder, crtc_state, conn_state);
2974
2975 /* MST will call a setting of MSA after an allocating of Virtual Channel
2976 * from MST encoder pre_enable callback.
2977 */
2978 if (!intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST))
2979 intel_ddi_set_dp_msa(crtc_state, conn_state);
2980 }
2981
intel_ddi_pre_enable_hdmi(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)2982 static void intel_ddi_pre_enable_hdmi(struct intel_atomic_state *state,
2983 struct intel_encoder *encoder,
2984 const struct intel_crtc_state *crtc_state,
2985 const struct drm_connector_state *conn_state)
2986 {
2987 struct intel_display *display = to_intel_display(encoder);
2988 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
2989 struct intel_hdmi *intel_hdmi = &dig_port->hdmi;
2990
2991 intel_dp_dual_mode_set_tmds_output(intel_hdmi, true);
2992 intel_ddi_enable_clock(encoder, crtc_state);
2993
2994 drm_WARN_ON(display->drm, dig_port->ddi_io_wakeref);
2995 dig_port->ddi_io_wakeref = intel_display_power_get(display,
2996 dig_port->ddi_io_power_domain);
2997
2998 icl_program_mg_dp_mode(dig_port, crtc_state);
2999
3000 intel_ddi_enable_transcoder_clock(encoder, crtc_state);
3001
3002 dig_port->set_infoframes(encoder,
3003 crtc_state->has_infoframe,
3004 crtc_state, conn_state);
3005 }
3006
3007 /*
3008 * Note: Also called from the ->pre_enable of the first active MST stream
3009 * encoder on its primary encoder.
3010 *
3011 * When called from DP MST code:
3012 *
3013 * - conn_state will be NULL
3014 *
3015 * - encoder will be the primary encoder (i.e. mst->primary)
3016 *
3017 * - the main connector associated with this port won't be active or linked to a
3018 * crtc
3019 *
3020 * - crtc_state will be the state of the first stream to be activated on this
3021 * port, and it may not be the same stream that will be deactivated last, but
3022 * each stream should have a state that is identical when it comes to the DP
3023 * link parameters.
3024 */
intel_ddi_pre_enable(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)3025 static void intel_ddi_pre_enable(struct intel_atomic_state *state,
3026 struct intel_encoder *encoder,
3027 const struct intel_crtc_state *crtc_state,
3028 const struct drm_connector_state *conn_state)
3029 {
3030 struct intel_display *display = to_intel_display(state);
3031 struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
3032 enum pipe pipe = crtc->pipe;
3033
3034 drm_WARN_ON(display->drm, crtc_state->has_pch_encoder);
3035
3036 intel_set_cpu_fifo_underrun_reporting(display, pipe, true);
3037
3038 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) {
3039 intel_ddi_pre_enable_hdmi(state, encoder, crtc_state,
3040 conn_state);
3041 } else {
3042 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
3043
3044 intel_ddi_pre_enable_dp(state, encoder, crtc_state,
3045 conn_state);
3046
3047 /* FIXME precompute everything properly */
3048 /* FIXME how do we turn infoframes off again? */
3049 if (intel_lspcon_active(dig_port) && intel_dp_has_hdmi_sink(&dig_port->dp))
3050 dig_port->set_infoframes(encoder,
3051 crtc_state->has_infoframe,
3052 crtc_state, conn_state);
3053 }
3054 }
3055
3056 static void
mtl_ddi_disable_d2d(struct intel_encoder * encoder)3057 mtl_ddi_disable_d2d(struct intel_encoder *encoder)
3058 {
3059 struct intel_display *display = to_intel_display(encoder);
3060 enum port port = encoder->port;
3061 intel_reg_t reg;
3062 u32 clr_bits, wait_bits;
3063 int ret;
3064
3065 if (DISPLAY_VER(display) < 14)
3066 return;
3067
3068 if (DISPLAY_VER(display) >= 20) {
3069 reg = DDI_BUF_CTL(port);
3070 clr_bits = XE2LPD_DDI_BUF_D2D_LINK_ENABLE;
3071 wait_bits = XE2LPD_DDI_BUF_D2D_LINK_STATE;
3072 } else {
3073 reg = XELPDP_PORT_BUF_CTL1(display, port);
3074 clr_bits = XELPDP_PORT_BUF_D2D_LINK_ENABLE;
3075 wait_bits = XELPDP_PORT_BUF_D2D_LINK_STATE;
3076 }
3077
3078 intel_de_rmw(display, reg, clr_bits, 0);
3079
3080 ret = intel_de_wait_for_clear_us(display, reg, wait_bits, 100);
3081 if (ret)
3082 drm_err(display->drm, "Timeout waiting for D2D Link disable for DDI/PORT_BUF_CTL %c\n",
3083 port_name(port));
3084 }
3085
intel_ddi_buf_enable(struct intel_encoder * encoder,u32 buf_ctl)3086 static void intel_ddi_buf_enable(struct intel_encoder *encoder, u32 buf_ctl)
3087 {
3088 struct intel_display *display = to_intel_display(encoder);
3089 enum port port = encoder->port;
3090
3091 intel_de_write(display, DDI_BUF_CTL(port), buf_ctl | DDI_BUF_CTL_ENABLE);
3092 intel_de_posting_read(display, DDI_BUF_CTL(port));
3093
3094 intel_wait_ddi_buf_active(encoder);
3095 }
3096
intel_ddi_buf_disable(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)3097 static void intel_ddi_buf_disable(struct intel_encoder *encoder,
3098 const struct intel_crtc_state *crtc_state)
3099 {
3100 struct intel_display *display = to_intel_display(encoder);
3101 enum port port = encoder->port;
3102
3103 intel_de_rmw(display, DDI_BUF_CTL(port), DDI_BUF_CTL_ENABLE, 0);
3104
3105 if (DISPLAY_VER(display) >= 14)
3106 intel_wait_ddi_buf_idle(display, port);
3107
3108 mtl_ddi_disable_d2d(encoder);
3109
3110 if (intel_crtc_has_dp_encoder(crtc_state)) {
3111 intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state),
3112 DP_TP_CTL_ENABLE, 0);
3113 }
3114
3115 intel_ddi_disable_fec(encoder, crtc_state);
3116
3117 if (DISPLAY_VER(display) < 14)
3118 intel_wait_ddi_buf_idle(display, port);
3119
3120 intel_ddi_wait_for_fec_status(encoder, crtc_state, false);
3121 }
3122
intel_ddi_post_disable_dp(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * old_crtc_state,const struct drm_connector_state * old_conn_state)3123 static void intel_ddi_post_disable_dp(struct intel_atomic_state *state,
3124 struct intel_encoder *encoder,
3125 const struct intel_crtc_state *old_crtc_state,
3126 const struct drm_connector_state *old_conn_state)
3127 {
3128 struct intel_display *display = to_intel_display(encoder);
3129 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
3130 struct intel_dp *intel_dp = &dig_port->dp;
3131 struct ref_tracker *wakeref;
3132 bool is_mst = intel_crtc_has_type(old_crtc_state,
3133 INTEL_OUTPUT_DP_MST);
3134
3135 if (!is_mst)
3136 intel_dp_set_infoframes(encoder, false,
3137 old_crtc_state, old_conn_state);
3138
3139 /*
3140 * Power down sink before disabling the port, otherwise we end
3141 * up getting interrupts from the sink on detecting link loss.
3142 */
3143 intel_dp_set_power(intel_dp, DP_SET_POWER_D3);
3144
3145 if (DISPLAY_VER(display) >= 12) {
3146 if (is_mst || intel_dp_is_uhbr(old_crtc_state)) {
3147 enum transcoder cpu_transcoder = old_crtc_state->cpu_transcoder;
3148
3149 intel_de_rmw(display,
3150 TRANS_DDI_FUNC_CTL(display, cpu_transcoder),
3151 TGL_TRANS_DDI_PORT_MASK | TRANS_DDI_MODE_SELECT_MASK,
3152 0);
3153 }
3154 } else {
3155 if (!is_mst)
3156 intel_ddi_disable_transcoder_clock(old_crtc_state);
3157 }
3158
3159 intel_ddi_buf_disable(encoder, old_crtc_state);
3160
3161 intel_dp_sink_set_fec_ready(intel_dp, old_crtc_state, false);
3162
3163 intel_ddi_config_transcoder_dp2(old_crtc_state, false);
3164
3165 /*
3166 * From TGL spec: "If single stream or multi-stream master transcoder:
3167 * Configure Transcoder Clock select to direct no clock to the
3168 * transcoder"
3169 */
3170 if (DISPLAY_VER(display) >= 12)
3171 intel_ddi_disable_transcoder_clock(old_crtc_state);
3172
3173 intel_pps_vdd_on(intel_dp);
3174 intel_pps_off(intel_dp);
3175
3176 wakeref = fetch_and_zero(&dig_port->ddi_io_wakeref);
3177
3178 if (wakeref)
3179 intel_display_power_put(display,
3180 dig_port->ddi_io_power_domain,
3181 wakeref);
3182
3183 intel_ddi_disable_clock(encoder);
3184
3185 /* De-select Thunderbolt */
3186 if (DISPLAY_VER(display) >= 14)
3187 intel_de_rmw(display, XELPDP_PORT_BUF_CTL1(display, encoder->port),
3188 XELPDP_PORT_BUF_IO_SELECT_TBT, 0);
3189 }
3190
intel_ddi_post_disable_hdmi(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * old_crtc_state,const struct drm_connector_state * old_conn_state)3191 static void intel_ddi_post_disable_hdmi(struct intel_atomic_state *state,
3192 struct intel_encoder *encoder,
3193 const struct intel_crtc_state *old_crtc_state,
3194 const struct drm_connector_state *old_conn_state)
3195 {
3196 struct intel_display *display = to_intel_display(encoder);
3197 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
3198 struct intel_hdmi *intel_hdmi = &dig_port->hdmi;
3199 struct ref_tracker *wakeref;
3200
3201 dig_port->set_infoframes(encoder, false,
3202 old_crtc_state, old_conn_state);
3203
3204 if (DISPLAY_VER(display) < 12)
3205 intel_ddi_disable_transcoder_clock(old_crtc_state);
3206
3207 intel_ddi_buf_disable(encoder, old_crtc_state);
3208
3209 if (DISPLAY_VER(display) >= 12)
3210 intel_ddi_disable_transcoder_clock(old_crtc_state);
3211
3212 wakeref = fetch_and_zero(&dig_port->ddi_io_wakeref);
3213 if (wakeref)
3214 intel_display_power_put(display,
3215 dig_port->ddi_io_power_domain,
3216 wakeref);
3217
3218 intel_ddi_disable_clock(encoder);
3219
3220 intel_dp_dual_mode_set_tmds_output(intel_hdmi, false);
3221 }
3222
intel_ddi_post_disable_hdmi_or_sst(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * old_crtc_state,const struct drm_connector_state * old_conn_state)3223 static void intel_ddi_post_disable_hdmi_or_sst(struct intel_atomic_state *state,
3224 struct intel_encoder *encoder,
3225 const struct intel_crtc_state *old_crtc_state,
3226 const struct drm_connector_state *old_conn_state)
3227 {
3228 struct intel_display *display = to_intel_display(encoder);
3229 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
3230 struct intel_crtc *pipe_crtc;
3231 bool is_hdmi = intel_crtc_has_type(old_crtc_state, INTEL_OUTPUT_HDMI);
3232
3233 for_each_pipe_crtc_modeset_disable(display, pipe_crtc, old_crtc_state) {
3234 const struct intel_crtc_state *old_pipe_crtc_state =
3235 intel_atomic_get_old_crtc_state(state, pipe_crtc);
3236
3237 intel_crtc_vblank_off(old_pipe_crtc_state);
3238 }
3239
3240 intel_disable_transcoder(old_crtc_state);
3241
3242 /* 128b/132b SST */
3243 if (!is_hdmi && intel_dp_is_uhbr(old_crtc_state)) {
3244 /* VCPID 1, start slot 0 for 128b/132b, clear */
3245 drm_dp_dpcd_write_payload(&intel_dp->aux, 1, 0, 0);
3246
3247 intel_ddi_clear_act_sent(encoder, old_crtc_state);
3248
3249 intel_de_rmw(display, TRANS_DDI_FUNC_CTL(display, old_crtc_state->cpu_transcoder),
3250 TRANS_DDI_DP_VC_PAYLOAD_ALLOC, 0);
3251
3252 intel_ddi_wait_for_act_sent(encoder, old_crtc_state);
3253 drm_dp_dpcd_poll_act_handled(&intel_dp->aux, 0);
3254 }
3255
3256 intel_vrr_transcoder_disable(old_crtc_state);
3257
3258 intel_ddi_disable_transcoder_func(old_crtc_state);
3259
3260 for_each_pipe_crtc_modeset_disable(display, pipe_crtc, old_crtc_state) {
3261 const struct intel_crtc_state *old_pipe_crtc_state =
3262 intel_atomic_get_old_crtc_state(state, pipe_crtc);
3263
3264 intel_dsc_disable(old_pipe_crtc_state);
3265
3266 if (DISPLAY_VER(display) >= 9)
3267 skl_scaler_disable(old_pipe_crtc_state);
3268 else
3269 ilk_pfit_disable(old_pipe_crtc_state);
3270 }
3271 }
3272
3273 /*
3274 * Note: Also called from the ->post_disable of the last active MST stream
3275 * encoder on its primary encoder. See also the comment for
3276 * intel_ddi_pre_enable().
3277 */
intel_ddi_post_disable(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * old_crtc_state,const struct drm_connector_state * old_conn_state)3278 static void intel_ddi_post_disable(struct intel_atomic_state *state,
3279 struct intel_encoder *encoder,
3280 const struct intel_crtc_state *old_crtc_state,
3281 const struct drm_connector_state *old_conn_state)
3282 {
3283 if (!intel_crtc_has_type(old_crtc_state, INTEL_OUTPUT_DP_MST))
3284 intel_ddi_post_disable_hdmi_or_sst(state, encoder, old_crtc_state,
3285 old_conn_state);
3286
3287 /*
3288 * When called from DP MST code:
3289 * - old_conn_state will be NULL
3290 * - encoder will be the main encoder (ie. mst->primary)
3291 * - the main connector associated with this port
3292 * won't be active or linked to a crtc
3293 * - old_crtc_state will be the state of the last stream to
3294 * be deactivated on this port, and it may not be the same
3295 * stream that was activated last, but each stream
3296 * should have a state that is identical when it comes to
3297 * the DP link parameters
3298 */
3299
3300 if (intel_crtc_has_type(old_crtc_state, INTEL_OUTPUT_HDMI))
3301 intel_ddi_post_disable_hdmi(state, encoder, old_crtc_state,
3302 old_conn_state);
3303 else
3304 intel_ddi_post_disable_dp(state, encoder, old_crtc_state,
3305 old_conn_state);
3306 }
3307
3308 /*
3309 * Note: Also called from the ->post_pll_disable of the last active MST stream
3310 * encoder on its primary encoder. See also the comment for
3311 * intel_ddi_pre_enable().
3312 */
intel_ddi_post_pll_disable(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * old_crtc_state,const struct drm_connector_state * old_conn_state)3313 static void intel_ddi_post_pll_disable(struct intel_atomic_state *state,
3314 struct intel_encoder *encoder,
3315 const struct intel_crtc_state *old_crtc_state,
3316 const struct drm_connector_state *old_conn_state)
3317 {
3318 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
3319
3320 main_link_aux_power_domain_put(dig_port, old_crtc_state);
3321
3322 if (intel_encoder_is_tc(encoder))
3323 intel_tc_port_put_link(dig_port);
3324 }
3325
trans_port_sync_stop_link_train(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)3326 static void trans_port_sync_stop_link_train(struct intel_atomic_state *state,
3327 struct intel_encoder *encoder,
3328 const struct intel_crtc_state *crtc_state)
3329 {
3330 const struct drm_connector_state *conn_state;
3331 struct drm_connector *conn;
3332 int i;
3333
3334 if (!crtc_state->sync_mode_slaves_mask)
3335 return;
3336
3337 for_each_new_connector_in_state(&state->base, conn, conn_state, i) {
3338 struct intel_encoder *slave_encoder =
3339 to_intel_encoder(conn_state->best_encoder);
3340 struct intel_crtc *slave_crtc = to_intel_crtc(conn_state->crtc);
3341 const struct intel_crtc_state *slave_crtc_state;
3342
3343 if (!slave_crtc)
3344 continue;
3345
3346 slave_crtc_state =
3347 intel_atomic_get_new_crtc_state(state, slave_crtc);
3348
3349 if (slave_crtc_state->master_transcoder !=
3350 crtc_state->cpu_transcoder)
3351 continue;
3352
3353 intel_dp_stop_link_train(enc_to_intel_dp(slave_encoder),
3354 slave_crtc_state);
3355 }
3356
3357 usleep_range(200, 400);
3358
3359 intel_dp_stop_link_train(enc_to_intel_dp(encoder),
3360 crtc_state);
3361 }
3362
intel_ddi_enable_dp(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)3363 static void intel_ddi_enable_dp(struct intel_atomic_state *state,
3364 struct intel_encoder *encoder,
3365 const struct intel_crtc_state *crtc_state,
3366 const struct drm_connector_state *conn_state)
3367 {
3368 struct intel_display *display = to_intel_display(encoder);
3369 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
3370 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
3371 enum port port = encoder->port;
3372
3373 if (port == PORT_A && DISPLAY_VER(display) < 9)
3374 intel_dp_stop_link_train(intel_dp, crtc_state);
3375
3376 drm_connector_update_privacy_screen(conn_state);
3377 intel_edp_backlight_on(crtc_state, conn_state);
3378
3379 intel_panel_prepare(crtc_state, conn_state);
3380
3381 if (!intel_lspcon_active(dig_port) || intel_dp_has_hdmi_sink(&dig_port->dp))
3382 intel_dp_set_infoframes(encoder, true, crtc_state, conn_state);
3383
3384 trans_port_sync_stop_link_train(state, encoder, crtc_state);
3385 }
3386
3387 static intel_reg_t
gen9_chicken_trans_reg_by_port(struct intel_display * display,enum port port)3388 gen9_chicken_trans_reg_by_port(struct intel_display *display, enum port port)
3389 {
3390 static const enum transcoder trans[] = {
3391 [PORT_A] = TRANSCODER_EDP,
3392 [PORT_B] = TRANSCODER_A,
3393 [PORT_C] = TRANSCODER_B,
3394 [PORT_D] = TRANSCODER_C,
3395 [PORT_E] = TRANSCODER_A,
3396 };
3397
3398 drm_WARN_ON(display->drm, DISPLAY_VER(display) < 9);
3399
3400 if (drm_WARN_ON(display->drm, port < PORT_A || port > PORT_E))
3401 port = PORT_A;
3402
3403 return CHICKEN_TRANS(display, trans[port]);
3404 }
3405
intel_ddi_enable_hdmi(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)3406 static void intel_ddi_enable_hdmi(struct intel_atomic_state *state,
3407 struct intel_encoder *encoder,
3408 const struct intel_crtc_state *crtc_state,
3409 const struct drm_connector_state *conn_state)
3410 {
3411 struct intel_display *display = to_intel_display(encoder);
3412 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
3413 struct drm_connector *connector = conn_state->connector;
3414 enum port port = encoder->port;
3415 u32 buf_ctl = 0;
3416
3417 if (!intel_hdmi_handle_sink_scrambling(encoder, connector,
3418 crtc_state->hdmi_high_tmds_clock_ratio,
3419 crtc_state->hdmi_scrambling))
3420 drm_dbg_kms(display->drm,
3421 "[CONNECTOR:%d:%s] Failed to configure sink scrambling/TMDS bit clock ratio\n",
3422 connector->base.id, connector->name);
3423
3424 if (has_buf_trans_select(display))
3425 hsw_prepare_hdmi_ddi_buffers(encoder, crtc_state);
3426
3427 /* e. Enable D2D Link for C10/C20 Phy */
3428 mtl_ddi_enable_d2d(encoder);
3429
3430 encoder->set_signal_levels(encoder, crtc_state);
3431
3432 /* Display WA #1143: skl,kbl,cfl */
3433 if (DISPLAY_VER(display) == 9 && !display->platform.broxton) {
3434 /*
3435 * For some reason these chicken bits have been
3436 * stuffed into a transcoder register, event though
3437 * the bits affect a specific DDI port rather than
3438 * a specific transcoder.
3439 */
3440 intel_reg_t reg = gen9_chicken_trans_reg_by_port(display, port);
3441 u32 val;
3442
3443 val = intel_de_read(display, reg);
3444
3445 if (port == PORT_E)
3446 val |= DDIE_TRAINING_OVERRIDE_ENABLE |
3447 DDIE_TRAINING_OVERRIDE_VALUE;
3448 else
3449 val |= DDI_TRAINING_OVERRIDE_ENABLE |
3450 DDI_TRAINING_OVERRIDE_VALUE;
3451
3452 intel_de_write(display, reg, val);
3453 intel_de_posting_read(display, reg);
3454
3455 udelay(1);
3456
3457 if (port == PORT_E)
3458 val &= ~(DDIE_TRAINING_OVERRIDE_ENABLE |
3459 DDIE_TRAINING_OVERRIDE_VALUE);
3460 else
3461 val &= ~(DDI_TRAINING_OVERRIDE_ENABLE |
3462 DDI_TRAINING_OVERRIDE_VALUE);
3463
3464 intel_de_write(display, reg, val);
3465 }
3466
3467 intel_ddi_power_up_lanes(encoder, crtc_state);
3468
3469 /* In HDMI/DVI mode, the port width, and swing/emphasis values
3470 * are ignored so nothing special needs to be done besides
3471 * enabling the port.
3472 *
3473 * On ADL_P the PHY link rate and lane count must be programmed but
3474 * these are both 0 for HDMI.
3475 *
3476 * But MTL onwards HDMI2.1 is supported and in TMDS mode this
3477 * is filled with lane count, already set in the crtc_state.
3478 * The same is required to be filled in PORT_BUF_CTL for C10/20 Phy.
3479 */
3480 if (dig_port->lane_reversal)
3481 buf_ctl |= DDI_BUF_PORT_REVERSAL;
3482 if (dig_port->ddi_a_4_lanes)
3483 buf_ctl |= DDI_A_4_LANES;
3484
3485 if (DISPLAY_VER(display) >= 14) {
3486 u32 port_buf = 0;
3487
3488 port_buf |= XELPDP_PORT_WIDTH(crtc_state->lane_count);
3489
3490 if (dig_port->lane_reversal)
3491 port_buf |= XELPDP_PORT_REVERSAL;
3492
3493 intel_de_rmw(display, XELPDP_PORT_BUF_CTL1(display, port),
3494 XELPDP_PORT_WIDTH_MASK | XELPDP_PORT_REVERSAL, port_buf);
3495
3496 buf_ctl |= DDI_PORT_WIDTH(crtc_state->lane_count);
3497
3498 if (DISPLAY_VER(display) >= 20)
3499 buf_ctl |= XE2LPD_DDI_BUF_D2D_LINK_ENABLE;
3500 } else if (display->platform.alderlake_p && intel_encoder_is_tc(encoder)) {
3501 drm_WARN_ON(display->drm, !intel_tc_port_in_legacy_mode(dig_port));
3502 buf_ctl |= DDI_BUF_CTL_TC_PHY_OWNERSHIP;
3503 }
3504
3505 intel_ddi_buf_enable(encoder, buf_ctl);
3506
3507 intel_hdmi_poll_for_scrambling_enable(crtc_state, connector);
3508 }
3509
intel_ddi_enable(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)3510 static void intel_ddi_enable(struct intel_atomic_state *state,
3511 struct intel_encoder *encoder,
3512 const struct intel_crtc_state *crtc_state,
3513 const struct drm_connector_state *conn_state)
3514 {
3515 struct intel_display *display = to_intel_display(encoder);
3516 struct intel_crtc *pipe_crtc;
3517 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
3518 bool is_hdmi = intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI);
3519
3520 /* 128b/132b SST */
3521 if (!is_hdmi && intel_dp_is_uhbr(crtc_state)) {
3522 const struct drm_display_mode *adjusted_mode = &crtc_state->hw.adjusted_mode;
3523 u64 crtc_clock_hz = KHz(adjusted_mode->crtc_clock);
3524
3525 intel_de_write(display, TRANS_DP2_VFREQHIGH(cpu_transcoder),
3526 TRANS_DP2_VFREQ_PIXEL_CLOCK(crtc_clock_hz >> 24));
3527 intel_de_write(display, TRANS_DP2_VFREQLOW(cpu_transcoder),
3528 TRANS_DP2_VFREQ_PIXEL_CLOCK(crtc_clock_hz & 0xffffff));
3529 }
3530
3531 intel_ddi_enable_transcoder_func(encoder, crtc_state);
3532
3533 intel_vrr_transcoder_enable(crtc_state);
3534
3535 /* 128b/132b SST */
3536 if (!is_hdmi && intel_dp_is_uhbr(crtc_state)) {
3537 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
3538
3539 intel_ddi_clear_act_sent(encoder, crtc_state);
3540
3541 intel_de_rmw(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder), 0,
3542 TRANS_DDI_DP_VC_PAYLOAD_ALLOC);
3543
3544 intel_ddi_wait_for_act_sent(encoder, crtc_state);
3545 drm_dp_dpcd_poll_act_handled(&intel_dp->aux, 0);
3546 }
3547
3548 intel_enable_transcoder(crtc_state);
3549
3550 intel_ddi_wait_for_fec_status(encoder, crtc_state, true);
3551
3552 for_each_pipe_crtc_modeset_enable(display, pipe_crtc, crtc_state) {
3553 const struct intel_crtc_state *pipe_crtc_state =
3554 intel_atomic_get_new_crtc_state(state, pipe_crtc);
3555
3556 intel_crtc_vblank_on(pipe_crtc_state);
3557 }
3558
3559 if (is_hdmi)
3560 intel_ddi_enable_hdmi(state, encoder, crtc_state, conn_state);
3561 else
3562 intel_ddi_enable_dp(state, encoder, crtc_state, conn_state);
3563
3564 intel_hdcp_enable(state, encoder, crtc_state, conn_state);
3565
3566 }
3567
intel_ddi_disable_dp(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * old_crtc_state,const struct drm_connector_state * old_conn_state)3568 static void intel_ddi_disable_dp(struct intel_atomic_state *state,
3569 struct intel_encoder *encoder,
3570 const struct intel_crtc_state *old_crtc_state,
3571 const struct drm_connector_state *old_conn_state)
3572 {
3573 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
3574 struct intel_connector *connector =
3575 to_intel_connector(old_conn_state->connector);
3576
3577 intel_dp->link.active = false;
3578
3579 intel_panel_unprepare(old_conn_state);
3580 intel_psr_disable(intel_dp, old_crtc_state);
3581 intel_alpm_disable(intel_dp);
3582 intel_edp_backlight_off(old_conn_state);
3583 /* Disable the decompression in DP Sink */
3584 intel_dp_sink_disable_decompression(state,
3585 connector, old_crtc_state);
3586 /* Disable Ignore_MSA bit in DP Sink */
3587 intel_dp_sink_set_msa_timing_par_ignore_state(intel_dp, old_crtc_state,
3588 false);
3589 }
3590
intel_ddi_disable_hdmi(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * old_crtc_state,const struct drm_connector_state * old_conn_state)3591 static void intel_ddi_disable_hdmi(struct intel_atomic_state *state,
3592 struct intel_encoder *encoder,
3593 const struct intel_crtc_state *old_crtc_state,
3594 const struct drm_connector_state *old_conn_state)
3595 {
3596 struct intel_display *display = to_intel_display(encoder);
3597 struct drm_connector *connector = old_conn_state->connector;
3598
3599 if (!intel_hdmi_handle_sink_scrambling(encoder, connector,
3600 false, false))
3601 drm_dbg_kms(display->drm,
3602 "[CONNECTOR:%d:%s] Failed to reset sink scrambling/TMDS bit clock ratio\n",
3603 connector->base.id, connector->name);
3604 }
3605
intel_ddi_disable(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * old_crtc_state,const struct drm_connector_state * old_conn_state)3606 static void intel_ddi_disable(struct intel_atomic_state *state,
3607 struct intel_encoder *encoder,
3608 const struct intel_crtc_state *old_crtc_state,
3609 const struct drm_connector_state *old_conn_state)
3610 {
3611 intel_tc_port_link_cancel_reset_work(enc_to_dig_port(encoder));
3612
3613 intel_hdcp_disable(to_intel_connector(old_conn_state->connector));
3614
3615 if (intel_crtc_has_type(old_crtc_state, INTEL_OUTPUT_HDMI))
3616 intel_ddi_disable_hdmi(state, encoder, old_crtc_state,
3617 old_conn_state);
3618 else
3619 intel_ddi_disable_dp(state, encoder, old_crtc_state,
3620 old_conn_state);
3621 }
3622
intel_ddi_update_pipe_dp(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)3623 static void intel_ddi_update_pipe_dp(struct intel_atomic_state *state,
3624 struct intel_encoder *encoder,
3625 const struct intel_crtc_state *crtc_state,
3626 const struct drm_connector_state *conn_state)
3627 {
3628 intel_ddi_set_dp_msa(crtc_state, conn_state);
3629
3630 intel_dp_set_infoframes(encoder, true, crtc_state, conn_state);
3631
3632 intel_backlight_update(state, encoder, crtc_state, conn_state);
3633 drm_connector_update_privacy_screen(conn_state);
3634 }
3635
intel_ddi_update_pipe_hdmi(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)3636 static void intel_ddi_update_pipe_hdmi(struct intel_encoder *encoder,
3637 const struct intel_crtc_state *crtc_state,
3638 const struct drm_connector_state *conn_state)
3639 {
3640 intel_hdmi_fastset_infoframes(encoder, crtc_state, conn_state);
3641 }
3642
intel_ddi_update_pipe(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)3643 void intel_ddi_update_pipe(struct intel_atomic_state *state,
3644 struct intel_encoder *encoder,
3645 const struct intel_crtc_state *crtc_state,
3646 const struct drm_connector_state *conn_state)
3647 {
3648
3649 if (!intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI) &&
3650 !intel_encoder_is_mst(encoder))
3651 intel_ddi_update_pipe_dp(state, encoder, crtc_state,
3652 conn_state);
3653
3654 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI))
3655 intel_ddi_update_pipe_hdmi(encoder, crtc_state,
3656 conn_state);
3657
3658 intel_hdcp_update_pipe(state, encoder, crtc_state, conn_state);
3659 }
3660
intel_ddi_update_active_dpll(struct intel_atomic_state * state,struct intel_encoder * encoder,struct intel_crtc * crtc)3661 void intel_ddi_update_active_dpll(struct intel_atomic_state *state,
3662 struct intel_encoder *encoder,
3663 struct intel_crtc *crtc)
3664 {
3665 struct intel_display *display = to_intel_display(encoder);
3666 const struct intel_crtc_state *crtc_state =
3667 intel_atomic_get_new_crtc_state(state, crtc);
3668 struct intel_crtc *pipe_crtc;
3669
3670 /* FIXME: Add NVL+ and DG2 pll_mgr */
3671 if (!intel_encoder_is_tc(encoder) || !display->dpll.mgr)
3672 return;
3673
3674 for_each_intel_crtc_in_pipe_mask(display, pipe_crtc,
3675 intel_crtc_joined_pipe_mask(crtc_state))
3676 intel_dpll_update_active(state, pipe_crtc, encoder);
3677 }
3678
3679 /*
3680 * Note: Also called from the ->pre_pll_enable of the first active MST stream
3681 * encoder on its primary encoder. See also the comment for
3682 * intel_ddi_pre_enable().
3683 */
3684 static void
intel_ddi_pre_pll_enable(struct intel_atomic_state * state,struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state,const struct drm_connector_state * conn_state)3685 intel_ddi_pre_pll_enable(struct intel_atomic_state *state,
3686 struct intel_encoder *encoder,
3687 const struct intel_crtc_state *crtc_state,
3688 const struct drm_connector_state *conn_state)
3689 {
3690 struct intel_display *display = to_intel_display(encoder);
3691 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
3692 bool is_tc_port = intel_encoder_is_tc(encoder);
3693
3694 if (is_tc_port) {
3695 struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
3696
3697 intel_tc_port_get_link(dig_port, crtc_state->lane_count);
3698 intel_ddi_update_active_dpll(state, encoder, crtc);
3699 }
3700
3701 main_link_aux_power_domain_get(dig_port, crtc_state);
3702
3703 if (is_tc_port && !intel_tc_port_in_tbt_alt_mode(dig_port))
3704 /*
3705 * Program the lane count for static/dynamic connections on
3706 * Type-C ports. Skip this step for TBT.
3707 */
3708 intel_tc_port_set_fia_lane_count(dig_port, crtc_state->lane_count);
3709 else if (display->platform.geminilake || display->platform.broxton)
3710 bxt_dpio_phy_set_lane_optim_mask(encoder,
3711 crtc_state->lane_lat_optim_mask);
3712
3713 /*
3714 * There is no direct connection between the PLL and PPS, however
3715 * enabling PPS before PLL is required to avoid PLL/DDI BUF timeouts
3716 * during system resume. Do that matching the Bspec order as well.
3717 */
3718 if (DISPLAY_VER(display) >= 14)
3719 intel_pps_on(&dig_port->dp);
3720 }
3721
adlp_tbt_to_dp_alt_switch_wa(struct intel_encoder * encoder)3722 static void adlp_tbt_to_dp_alt_switch_wa(struct intel_encoder *encoder)
3723 {
3724 struct intel_display *display = to_intel_display(encoder);
3725 enum tc_port tc_port = intel_encoder_to_tc(encoder);
3726 int ln;
3727
3728 for (ln = 0; ln < 2; ln++)
3729 intel_dkl_phy_rmw(display, DKL_PCS_DW5(tc_port, ln),
3730 DKL_PCS_DW5_CORE_SOFTRESET, 0);
3731 }
3732
mtl_ddi_prepare_link_retrain(struct intel_dp * intel_dp,const struct intel_crtc_state * crtc_state)3733 static void mtl_ddi_prepare_link_retrain(struct intel_dp *intel_dp,
3734 const struct intel_crtc_state *crtc_state)
3735 {
3736 struct intel_display *display = to_intel_display(crtc_state);
3737 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
3738 struct intel_encoder *encoder = &dig_port->base;
3739 u32 dp_tp_ctl;
3740
3741 /*
3742 * TODO: To train with only a different voltage swing entry is not
3743 * necessary disable and enable port
3744 */
3745 dp_tp_ctl = intel_de_read(display, dp_tp_ctl_reg(encoder, crtc_state));
3746
3747 drm_WARN_ON(display->drm, dp_tp_ctl & DP_TP_CTL_ENABLE);
3748
3749 /* 6.d Configure and enable DP_TP_CTL with link training pattern 1 selected */
3750 dp_tp_ctl = DP_TP_CTL_ENABLE | DP_TP_CTL_LINK_TRAIN_PAT1;
3751 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST) ||
3752 intel_dp_is_uhbr(crtc_state)) {
3753 dp_tp_ctl |= DP_TP_CTL_MODE_MST;
3754 } else {
3755 dp_tp_ctl |= DP_TP_CTL_MODE_SST;
3756 if (crtc_state->enhanced_framing)
3757 dp_tp_ctl |= DP_TP_CTL_ENHANCED_FRAME_ENABLE;
3758 }
3759 intel_de_write(display, dp_tp_ctl_reg(encoder, crtc_state), dp_tp_ctl);
3760 intel_de_posting_read(display, dp_tp_ctl_reg(encoder, crtc_state));
3761
3762 /* 6.f Enable D2D Link */
3763 mtl_ddi_enable_d2d(encoder);
3764
3765 /* 6.g Configure voltage swing and related IO settings */
3766 encoder->set_signal_levels(encoder, crtc_state);
3767
3768 /* 6.h Configure PORT_BUF_CTL1 */
3769 mtl_port_buf_ctl_program(encoder, crtc_state);
3770
3771 /* 6.i Configure and enable DDI_CTL_DE to start sending valid data to port slice */
3772 if (DISPLAY_VER(display) >= 20)
3773 intel_dp->DP |= XE2LPD_DDI_BUF_D2D_LINK_ENABLE;
3774
3775 intel_ddi_buf_enable(encoder, intel_dp->DP);
3776 intel_dp->DP |= DDI_BUF_CTL_ENABLE;
3777
3778 /*
3779 * 6.k If AUX-Less ALPM is going to be enabled:
3780 * i. Configure PORT_ALPM_CTL and PORT_ALPM_LFPS_CTL here
3781 */
3782 intel_alpm_port_configure(intel_dp, crtc_state);
3783
3784 /*
3785 * ii. Enable MAC Transmits LFPS in the "PHY Common Control 0" PIPE
3786 * register
3787 */
3788 intel_lnl_mac_transmit_lfps(encoder, crtc_state);
3789 }
3790
intel_ddi_prepare_link_retrain(struct intel_dp * intel_dp,const struct intel_crtc_state * crtc_state)3791 static void intel_ddi_prepare_link_retrain(struct intel_dp *intel_dp,
3792 const struct intel_crtc_state *crtc_state)
3793 {
3794 struct intel_display *display = to_intel_display(intel_dp);
3795 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
3796 struct intel_encoder *encoder = &dig_port->base;
3797 u32 dp_tp_ctl;
3798
3799 dp_tp_ctl = intel_de_read(display, dp_tp_ctl_reg(encoder, crtc_state));
3800
3801 drm_WARN_ON(display->drm, dp_tp_ctl & DP_TP_CTL_ENABLE);
3802
3803 dp_tp_ctl = DP_TP_CTL_ENABLE | DP_TP_CTL_LINK_TRAIN_PAT1;
3804 if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST) ||
3805 intel_dp_is_uhbr(crtc_state)) {
3806 dp_tp_ctl |= DP_TP_CTL_MODE_MST;
3807 } else {
3808 dp_tp_ctl |= DP_TP_CTL_MODE_SST;
3809 if (crtc_state->enhanced_framing)
3810 dp_tp_ctl |= DP_TP_CTL_ENHANCED_FRAME_ENABLE;
3811 }
3812 intel_de_write(display, dp_tp_ctl_reg(encoder, crtc_state), dp_tp_ctl);
3813 intel_de_posting_read(display, dp_tp_ctl_reg(encoder, crtc_state));
3814
3815 if (display->platform.alderlake_p &&
3816 (intel_tc_port_in_dp_alt_mode(dig_port) || intel_tc_port_in_legacy_mode(dig_port)))
3817 adlp_tbt_to_dp_alt_switch_wa(encoder);
3818
3819 intel_ddi_buf_enable(encoder, intel_dp->DP);
3820 intel_dp->DP |= DDI_BUF_CTL_ENABLE;
3821 }
3822
intel_ddi_set_link_train(struct intel_dp * intel_dp,const struct intel_crtc_state * crtc_state,u8 dp_train_pat)3823 static void intel_ddi_set_link_train(struct intel_dp *intel_dp,
3824 const struct intel_crtc_state *crtc_state,
3825 u8 dp_train_pat)
3826 {
3827 struct intel_display *display = to_intel_display(intel_dp);
3828 struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
3829 u32 temp;
3830
3831 temp = intel_de_read(display, dp_tp_ctl_reg(encoder, crtc_state));
3832
3833 temp &= ~DP_TP_CTL_LINK_TRAIN_MASK;
3834 switch (intel_dp_training_pattern_symbol(dp_train_pat)) {
3835 case DP_TRAINING_PATTERN_DISABLE:
3836 temp |= DP_TP_CTL_LINK_TRAIN_NORMAL;
3837 break;
3838 case DP_TRAINING_PATTERN_1:
3839 temp |= DP_TP_CTL_LINK_TRAIN_PAT1;
3840 break;
3841 case DP_TRAINING_PATTERN_2:
3842 temp |= DP_TP_CTL_LINK_TRAIN_PAT2;
3843 break;
3844 case DP_TRAINING_PATTERN_3:
3845 temp |= DP_TP_CTL_LINK_TRAIN_PAT3;
3846 break;
3847 case DP_TRAINING_PATTERN_4:
3848 temp |= DP_TP_CTL_LINK_TRAIN_PAT4;
3849 break;
3850 }
3851
3852 intel_de_write(display, dp_tp_ctl_reg(encoder, crtc_state), temp);
3853 }
3854
intel_ddi_set_idle_link_train(struct intel_dp * intel_dp,const struct intel_crtc_state * crtc_state)3855 static void intel_ddi_set_idle_link_train(struct intel_dp *intel_dp,
3856 const struct intel_crtc_state *crtc_state)
3857 {
3858 struct intel_display *display = to_intel_display(intel_dp);
3859 struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base;
3860 enum port port = encoder->port;
3861
3862 intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state),
3863 DP_TP_CTL_LINK_TRAIN_MASK, DP_TP_CTL_LINK_TRAIN_IDLE);
3864
3865 /*
3866 * Until TGL on PORT_A we can have only eDP in SST mode. There the only
3867 * reason we need to set idle transmission mode is to work around a HW
3868 * issue where we enable the pipe while not in idle link-training mode.
3869 * In this case there is requirement to wait for a minimum number of
3870 * idle patterns to be sent.
3871 */
3872 if (port == PORT_A && DISPLAY_VER(display) < 12)
3873 return;
3874
3875 if (intel_de_wait_for_set_ms(display,
3876 dp_tp_status_reg(encoder, crtc_state),
3877 DP_TP_STATUS_IDLE_DONE, 2))
3878 drm_err(display->drm,
3879 "Timed out waiting for DP idle patterns\n");
3880 }
3881
intel_ddi_is_audio_enabled(struct intel_display * display,enum transcoder cpu_transcoder)3882 static bool intel_ddi_is_audio_enabled(struct intel_display *display,
3883 enum transcoder cpu_transcoder)
3884 {
3885 if (cpu_transcoder == TRANSCODER_EDP)
3886 return false;
3887
3888 if (!intel_display_power_is_enabled(display, POWER_DOMAIN_AUDIO_MMIO))
3889 return false;
3890
3891 return intel_de_read(display, HSW_AUD_PIN_ELD_CP_VLD) &
3892 AUDIO_OUTPUT_ENABLE(cpu_transcoder);
3893 }
3894
tgl_ddi_min_voltage_level(const struct intel_crtc_state * crtc_state)3895 static int tgl_ddi_min_voltage_level(const struct intel_crtc_state *crtc_state)
3896 {
3897 if (crtc_state->port_clock > 594000)
3898 return 2;
3899 else
3900 return 0;
3901 }
3902
jsl_ddi_min_voltage_level(const struct intel_crtc_state * crtc_state)3903 static int jsl_ddi_min_voltage_level(const struct intel_crtc_state *crtc_state)
3904 {
3905 if (crtc_state->port_clock > 594000)
3906 return 3;
3907 else
3908 return 0;
3909 }
3910
icl_ddi_min_voltage_level(const struct intel_crtc_state * crtc_state)3911 static int icl_ddi_min_voltage_level(const struct intel_crtc_state *crtc_state)
3912 {
3913 if (crtc_state->port_clock > 594000)
3914 return 1;
3915 else
3916 return 0;
3917 }
3918
intel_ddi_compute_min_voltage_level(struct intel_crtc_state * crtc_state)3919 void intel_ddi_compute_min_voltage_level(struct intel_crtc_state *crtc_state)
3920 {
3921 struct intel_display *display = to_intel_display(crtc_state);
3922
3923 if (DISPLAY_VER(display) >= 14)
3924 crtc_state->min_voltage_level = icl_ddi_min_voltage_level(crtc_state);
3925 else if (DISPLAY_VER(display) >= 12)
3926 crtc_state->min_voltage_level = tgl_ddi_min_voltage_level(crtc_state);
3927 else if (display->platform.jasperlake || display->platform.elkhartlake)
3928 crtc_state->min_voltage_level = jsl_ddi_min_voltage_level(crtc_state);
3929 else if (DISPLAY_VER(display) >= 11)
3930 crtc_state->min_voltage_level = icl_ddi_min_voltage_level(crtc_state);
3931 }
3932
bdw_transcoder_master_readout(struct intel_display * display,enum transcoder cpu_transcoder)3933 static enum transcoder bdw_transcoder_master_readout(struct intel_display *display,
3934 enum transcoder cpu_transcoder)
3935 {
3936 u32 master_select;
3937
3938 if (DISPLAY_VER(display) >= 11) {
3939 u32 ctl2 = intel_de_read(display,
3940 TRANS_DDI_FUNC_CTL2(display, cpu_transcoder));
3941
3942 if ((ctl2 & PORT_SYNC_MODE_ENABLE) == 0)
3943 return INVALID_TRANSCODER;
3944
3945 master_select = REG_FIELD_GET(PORT_SYNC_MODE_MASTER_SELECT_MASK, ctl2);
3946 } else {
3947 u32 ctl = intel_de_read(display,
3948 TRANS_DDI_FUNC_CTL(display, cpu_transcoder));
3949
3950 if ((ctl & TRANS_DDI_PORT_SYNC_ENABLE) == 0)
3951 return INVALID_TRANSCODER;
3952
3953 master_select = REG_FIELD_GET(TRANS_DDI_PORT_SYNC_MASTER_SELECT_MASK, ctl);
3954 }
3955
3956 if (master_select == 0)
3957 return TRANSCODER_EDP;
3958 else
3959 return master_select - 1;
3960 }
3961
bdw_get_trans_port_sync_config(struct intel_crtc_state * crtc_state)3962 static void bdw_get_trans_port_sync_config(struct intel_crtc_state *crtc_state)
3963 {
3964 struct intel_display *display = to_intel_display(crtc_state);
3965 u32 transcoders = BIT(TRANSCODER_A) | BIT(TRANSCODER_B) |
3966 BIT(TRANSCODER_C) | BIT(TRANSCODER_D);
3967 enum transcoder cpu_transcoder;
3968
3969 crtc_state->master_transcoder =
3970 bdw_transcoder_master_readout(display, crtc_state->cpu_transcoder);
3971
3972 for_each_cpu_transcoder_masked(display, cpu_transcoder, transcoders) {
3973 enum intel_display_power_domain power_domain;
3974 struct ref_tracker *trans_wakeref;
3975
3976 power_domain = POWER_DOMAIN_TRANSCODER(cpu_transcoder);
3977 trans_wakeref = intel_display_power_get_if_enabled(display,
3978 power_domain);
3979
3980 if (!trans_wakeref)
3981 continue;
3982
3983 if (bdw_transcoder_master_readout(display, cpu_transcoder) ==
3984 crtc_state->cpu_transcoder)
3985 crtc_state->sync_mode_slaves_mask |= BIT(cpu_transcoder);
3986
3987 intel_display_power_put(display, power_domain, trans_wakeref);
3988 }
3989
3990 drm_WARN_ON(display->drm,
3991 crtc_state->master_transcoder != INVALID_TRANSCODER &&
3992 crtc_state->sync_mode_slaves_mask);
3993 }
3994
intel_ddi_read_func_ctl_dvi(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,u32 ddi_func_ctl)3995 static void intel_ddi_read_func_ctl_dvi(struct intel_encoder *encoder,
3996 struct intel_crtc_state *crtc_state,
3997 u32 ddi_func_ctl)
3998 {
3999 struct intel_display *display = to_intel_display(encoder);
4000
4001 crtc_state->output_types |= BIT(INTEL_OUTPUT_HDMI);
4002 if (DISPLAY_VER(display) >= 14)
4003 crtc_state->lane_count =
4004 ((ddi_func_ctl & DDI_PORT_WIDTH_MASK) >> DDI_PORT_WIDTH_SHIFT) + 1;
4005 else
4006 crtc_state->lane_count = 4;
4007 }
4008
intel_ddi_read_func_ctl_hdmi(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,u32 ddi_func_ctl)4009 static void intel_ddi_read_func_ctl_hdmi(struct intel_encoder *encoder,
4010 struct intel_crtc_state *crtc_state,
4011 u32 ddi_func_ctl)
4012 {
4013 crtc_state->has_hdmi_sink = true;
4014
4015 crtc_state->infoframes.enable |=
4016 intel_hdmi_infoframes_enabled(encoder, crtc_state);
4017
4018 if (crtc_state->infoframes.enable)
4019 crtc_state->has_infoframe = true;
4020
4021 if (ddi_func_ctl & TRANS_DDI_HDMI_SCRAMBLING)
4022 crtc_state->hdmi_scrambling = true;
4023 if (ddi_func_ctl & TRANS_DDI_HIGH_TMDS_CHAR_RATE)
4024 crtc_state->hdmi_high_tmds_clock_ratio = true;
4025
4026 intel_ddi_read_func_ctl_dvi(encoder, crtc_state, ddi_func_ctl);
4027 }
4028
intel_ddi_read_func_ctl_fdi(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,u32 ddi_func_ctl)4029 static void intel_ddi_read_func_ctl_fdi(struct intel_encoder *encoder,
4030 struct intel_crtc_state *crtc_state,
4031 u32 ddi_func_ctl)
4032 {
4033 struct intel_display *display = to_intel_display(encoder);
4034
4035 crtc_state->output_types |= BIT(INTEL_OUTPUT_ANALOG);
4036 crtc_state->enhanced_framing =
4037 intel_de_read(display, dp_tp_ctl_reg(encoder, crtc_state)) &
4038 DP_TP_CTL_ENHANCED_FRAME_ENABLE;
4039 }
4040
intel_ddi_read_func_ctl_dp_sst(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,u32 ddi_func_ctl)4041 static void intel_ddi_read_func_ctl_dp_sst(struct intel_encoder *encoder,
4042 struct intel_crtc_state *crtc_state,
4043 u32 ddi_func_ctl)
4044 {
4045 struct intel_display *display = to_intel_display(encoder);
4046 struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
4047 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
4048 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
4049
4050 if (encoder->type == INTEL_OUTPUT_EDP)
4051 crtc_state->output_types |= BIT(INTEL_OUTPUT_EDP);
4052 else
4053 crtc_state->output_types |= BIT(INTEL_OUTPUT_DP);
4054 crtc_state->lane_count =
4055 ((ddi_func_ctl & DDI_PORT_WIDTH_MASK) >> DDI_PORT_WIDTH_SHIFT) + 1;
4056
4057 if (DISPLAY_VER(display) >= 12 &&
4058 (ddi_func_ctl & TRANS_DDI_MODE_SELECT_MASK) == TRANS_DDI_MODE_SELECT_FDI_OR_128B132B)
4059 crtc_state->mst_master_transcoder =
4060 REG_FIELD_GET(TRANS_DDI_MST_TRANSPORT_SELECT_MASK, ddi_func_ctl);
4061
4062 intel_cpu_transcoder_get_m1_n1(crtc, cpu_transcoder, &crtc_state->dp_m_n);
4063 intel_cpu_transcoder_get_m2_n2(crtc, cpu_transcoder, &crtc_state->dp_m2_n2);
4064
4065 crtc_state->enhanced_framing =
4066 intel_de_read(display, dp_tp_ctl_reg(encoder, crtc_state)) &
4067 DP_TP_CTL_ENHANCED_FRAME_ENABLE;
4068
4069 if (DISPLAY_VER(display) >= 11)
4070 crtc_state->fec_enable =
4071 intel_de_read(display,
4072 dp_tp_ctl_reg(encoder, crtc_state)) & DP_TP_CTL_FEC_ENABLE;
4073
4074 if (intel_lspcon_active(dig_port) && intel_dp_has_hdmi_sink(&dig_port->dp))
4075 crtc_state->infoframes.enable |=
4076 intel_lspcon_infoframes_enabled(encoder, crtc_state);
4077 else
4078 crtc_state->infoframes.enable |=
4079 intel_hdmi_infoframes_enabled(encoder, crtc_state);
4080 }
4081
intel_ddi_read_func_ctl_dp_mst(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,u32 ddi_func_ctl)4082 static void intel_ddi_read_func_ctl_dp_mst(struct intel_encoder *encoder,
4083 struct intel_crtc_state *crtc_state,
4084 u32 ddi_func_ctl)
4085 {
4086 struct intel_display *display = to_intel_display(encoder);
4087 struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc);
4088 enum transcoder cpu_transcoder = crtc_state->cpu_transcoder;
4089
4090 crtc_state->output_types |= BIT(INTEL_OUTPUT_DP_MST);
4091 crtc_state->lane_count =
4092 ((ddi_func_ctl & DDI_PORT_WIDTH_MASK) >> DDI_PORT_WIDTH_SHIFT) + 1;
4093
4094 if (DISPLAY_VER(display) >= 12)
4095 crtc_state->mst_master_transcoder =
4096 REG_FIELD_GET(TRANS_DDI_MST_TRANSPORT_SELECT_MASK, ddi_func_ctl);
4097
4098 intel_cpu_transcoder_get_m1_n1(crtc, cpu_transcoder, &crtc_state->dp_m_n);
4099
4100 if (DISPLAY_VER(display) >= 11)
4101 crtc_state->fec_enable =
4102 intel_de_read(display,
4103 dp_tp_ctl_reg(encoder, crtc_state)) & DP_TP_CTL_FEC_ENABLE;
4104
4105 crtc_state->infoframes.enable |=
4106 intel_hdmi_infoframes_enabled(encoder, crtc_state);
4107 }
4108
intel_ddi_read_func_ctl(struct intel_encoder * encoder,struct intel_crtc_state * pipe_config)4109 static void intel_ddi_read_func_ctl(struct intel_encoder *encoder,
4110 struct intel_crtc_state *pipe_config)
4111 {
4112 struct intel_display *display = to_intel_display(encoder);
4113 enum transcoder cpu_transcoder = pipe_config->cpu_transcoder;
4114 u32 ddi_func_ctl, ddi_mode, flags = 0;
4115
4116 ddi_func_ctl = intel_de_read(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder));
4117 if (ddi_func_ctl & TRANS_DDI_PHSYNC)
4118 flags |= DRM_MODE_FLAG_PHSYNC;
4119 else
4120 flags |= DRM_MODE_FLAG_NHSYNC;
4121 if (ddi_func_ctl & TRANS_DDI_PVSYNC)
4122 flags |= DRM_MODE_FLAG_PVSYNC;
4123 else
4124 flags |= DRM_MODE_FLAG_NVSYNC;
4125
4126 pipe_config->hw.adjusted_mode.flags |= flags;
4127
4128 switch (ddi_func_ctl & TRANS_DDI_BPC_MASK) {
4129 case TRANS_DDI_BPC_6:
4130 pipe_config->pipe_bpp = 18;
4131 break;
4132 case TRANS_DDI_BPC_8:
4133 pipe_config->pipe_bpp = 24;
4134 break;
4135 case TRANS_DDI_BPC_10:
4136 pipe_config->pipe_bpp = 30;
4137 break;
4138 case TRANS_DDI_BPC_12:
4139 pipe_config->pipe_bpp = 36;
4140 break;
4141 default:
4142 break;
4143 }
4144
4145 ddi_mode = ddi_func_ctl & TRANS_DDI_MODE_SELECT_MASK;
4146
4147 if (ddi_mode == TRANS_DDI_MODE_SELECT_HDMI) {
4148 intel_ddi_read_func_ctl_hdmi(encoder, pipe_config, ddi_func_ctl);
4149 } else if (ddi_mode == TRANS_DDI_MODE_SELECT_DVI) {
4150 intel_ddi_read_func_ctl_dvi(encoder, pipe_config, ddi_func_ctl);
4151 } else if (ddi_mode == TRANS_DDI_MODE_SELECT_FDI_OR_128B132B && !HAS_DP20(display)) {
4152 intel_ddi_read_func_ctl_fdi(encoder, pipe_config, ddi_func_ctl);
4153 } else if (ddi_mode == TRANS_DDI_MODE_SELECT_DP_SST) {
4154 intel_ddi_read_func_ctl_dp_sst(encoder, pipe_config, ddi_func_ctl);
4155 } else if (ddi_mode == TRANS_DDI_MODE_SELECT_DP_MST) {
4156 intel_ddi_read_func_ctl_dp_mst(encoder, pipe_config, ddi_func_ctl);
4157 } else if (ddi_mode == TRANS_DDI_MODE_SELECT_FDI_OR_128B132B && HAS_DP20(display)) {
4158 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
4159
4160 /*
4161 * If this is true, we know we're being called from mst stream
4162 * encoder's ->get_config().
4163 */
4164 if (intel_dp_mst_active_streams(intel_dp))
4165 intel_ddi_read_func_ctl_dp_mst(encoder, pipe_config, ddi_func_ctl);
4166 else
4167 intel_ddi_read_func_ctl_dp_sst(encoder, pipe_config, ddi_func_ctl);
4168 }
4169 }
4170
4171 /*
4172 * Note: Also called from the ->get_config of the MST stream encoders on their
4173 * primary encoder, via the platform specific hooks here. See also the comment
4174 * for intel_ddi_pre_enable().
4175 */
intel_ddi_get_config(struct intel_encoder * encoder,struct intel_crtc_state * pipe_config)4176 static void intel_ddi_get_config(struct intel_encoder *encoder,
4177 struct intel_crtc_state *pipe_config)
4178 {
4179 struct intel_display *display = to_intel_display(encoder);
4180 enum transcoder cpu_transcoder = pipe_config->cpu_transcoder;
4181
4182 /* XXX: DSI transcoder paranoia */
4183 if (drm_WARN_ON(display->drm, transcoder_is_dsi(cpu_transcoder)))
4184 return;
4185
4186 intel_ddi_read_func_ctl(encoder, pipe_config);
4187
4188 intel_ddi_mso_get_config(encoder, pipe_config);
4189
4190 pipe_config->has_audio =
4191 intel_ddi_is_audio_enabled(display, cpu_transcoder);
4192
4193 if (encoder->type == INTEL_OUTPUT_EDP)
4194 intel_edp_fixup_vbt_bpp(encoder, pipe_config->pipe_bpp);
4195
4196 ddi_dotclock_get(pipe_config);
4197
4198 if (display->platform.geminilake || display->platform.broxton)
4199 pipe_config->lane_lat_optim_mask =
4200 bxt_dpio_phy_get_lane_lat_optim_mask(encoder);
4201
4202 intel_ddi_compute_min_voltage_level(pipe_config);
4203
4204 intel_hdmi_read_gcp_infoframe(encoder, pipe_config);
4205
4206 intel_read_infoframe(encoder, pipe_config,
4207 HDMI_INFOFRAME_TYPE_AVI,
4208 &pipe_config->infoframes.avi);
4209 intel_read_infoframe(encoder, pipe_config,
4210 HDMI_INFOFRAME_TYPE_SPD,
4211 &pipe_config->infoframes.spd);
4212 intel_read_infoframe(encoder, pipe_config,
4213 HDMI_INFOFRAME_TYPE_VENDOR,
4214 &pipe_config->infoframes.hdmi);
4215 intel_read_infoframe(encoder, pipe_config,
4216 HDMI_INFOFRAME_TYPE_DRM,
4217 &pipe_config->infoframes.drm);
4218
4219 if (DISPLAY_VER(display) >= 8)
4220 bdw_get_trans_port_sync_config(pipe_config);
4221
4222 intel_psr_get_config(encoder, pipe_config);
4223
4224 intel_read_dp_sdp(encoder, pipe_config, HDMI_PACKET_TYPE_GAMUT_METADATA);
4225 intel_read_dp_sdp(encoder, pipe_config, DP_SDP_VSC);
4226 intel_read_dp_sdp(encoder, pipe_config, DP_SDP_ADAPTIVE_SYNC);
4227
4228 intel_audio_codec_get_config(encoder, pipe_config);
4229 }
4230
intel_ddi_get_clock(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,struct intel_dpll * pll)4231 void intel_ddi_get_clock(struct intel_encoder *encoder,
4232 struct intel_crtc_state *crtc_state,
4233 struct intel_dpll *pll)
4234 {
4235 struct intel_display *display = to_intel_display(encoder);
4236 enum icl_port_dpll_id port_dpll_id = ICL_PORT_DPLL_DEFAULT;
4237 struct icl_port_dpll *port_dpll = &crtc_state->icl_port_dplls[port_dpll_id];
4238 bool pll_active;
4239
4240 if (drm_WARN_ON(display->drm, !pll))
4241 return;
4242
4243 port_dpll->pll = pll;
4244 pll_active = intel_dpll_get_hw_state(display, pll, &port_dpll->hw_state);
4245 drm_WARN_ON(display->drm, !pll_active);
4246
4247 icl_set_active_port_dpll(crtc_state, port_dpll_id);
4248
4249 crtc_state->port_clock = intel_dpll_get_freq(display, crtc_state->intel_dpll,
4250 &crtc_state->dpll_hw_state);
4251 }
4252
icl_ddi_tc_pll_is_tbt(const struct intel_dpll * pll)4253 static bool icl_ddi_tc_pll_is_tbt(const struct intel_dpll *pll)
4254 {
4255 return pll->info->id == DPLL_ID_ICL_TBTPLL;
4256 }
4257
mtl_ddi_cx0_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,enum icl_port_dpll_id port_dpll_id,enum intel_dpll_id pll_id)4258 static void mtl_ddi_cx0_get_config(struct intel_encoder *encoder,
4259 struct intel_crtc_state *crtc_state,
4260 enum icl_port_dpll_id port_dpll_id,
4261 enum intel_dpll_id pll_id)
4262 {
4263 struct intel_display *display = to_intel_display(encoder);
4264 struct icl_port_dpll *port_dpll;
4265 struct intel_dpll *pll;
4266 bool pll_active;
4267
4268 port_dpll = &crtc_state->icl_port_dplls[port_dpll_id];
4269 pll = intel_get_dpll_by_id(display, pll_id);
4270
4271 if (drm_WARN_ON(display->drm, !pll))
4272 return;
4273
4274 port_dpll->pll = pll;
4275 pll_active = intel_dpll_get_hw_state(display, pll, &port_dpll->hw_state);
4276 drm_WARN_ON(display->drm, !pll_active);
4277
4278 icl_set_active_port_dpll(crtc_state, port_dpll_id);
4279
4280 if (icl_ddi_tc_pll_is_tbt(crtc_state->intel_dpll))
4281 crtc_state->port_clock = intel_mtl_tbt_calc_port_clock(encoder);
4282 else
4283 crtc_state->port_clock = intel_dpll_get_freq(display, crtc_state->intel_dpll,
4284 &crtc_state->dpll_hw_state);
4285
4286 intel_ddi_get_config(encoder, crtc_state);
4287 }
4288
4289 /*
4290 * Get the configuration for either a port using a C10 PHY PLL, or a port using a
4291 * C20 PHY PLL in the cases of:
4292 * - BMG port A/B
4293 * - PTL port B eDP over TypeC PHY
4294 */
mtl_ddi_non_tc_phy_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4295 static void mtl_ddi_non_tc_phy_get_config(struct intel_encoder *encoder,
4296 struct intel_crtc_state *crtc_state)
4297 {
4298 struct intel_display *display = to_intel_display(encoder);
4299
4300 mtl_ddi_cx0_get_config(encoder, crtc_state, ICL_PORT_DPLL_DEFAULT,
4301 mtl_port_to_pll_id(display, encoder->port));
4302 }
4303
mtl_ddi_tc_phy_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4304 static void mtl_ddi_tc_phy_get_config(struct intel_encoder *encoder,
4305 struct intel_crtc_state *crtc_state)
4306 {
4307 struct intel_display *display = to_intel_display(encoder);
4308
4309 if (intel_tc_port_in_tbt_alt_mode(enc_to_dig_port(encoder)))
4310 mtl_ddi_cx0_get_config(encoder, crtc_state, ICL_PORT_DPLL_DEFAULT,
4311 DPLL_ID_ICL_TBTPLL);
4312 else
4313 mtl_ddi_cx0_get_config(encoder, crtc_state, ICL_PORT_DPLL_MG_PHY,
4314 mtl_port_to_pll_id(display, encoder->port));
4315 }
4316
dg2_ddi_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4317 static void dg2_ddi_get_config(struct intel_encoder *encoder,
4318 struct intel_crtc_state *crtc_state)
4319 {
4320 intel_mpllb_readout_hw_state(encoder, &crtc_state->dpll_hw_state.mpllb);
4321 crtc_state->port_clock = intel_mpllb_calc_port_clock(encoder, &crtc_state->dpll_hw_state.mpllb);
4322
4323 intel_ddi_get_config(encoder, crtc_state);
4324 }
4325
adls_ddi_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4326 static void adls_ddi_get_config(struct intel_encoder *encoder,
4327 struct intel_crtc_state *crtc_state)
4328 {
4329 intel_ddi_get_clock(encoder, crtc_state, adls_ddi_get_pll(encoder));
4330 intel_ddi_get_config(encoder, crtc_state);
4331 }
4332
rkl_ddi_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4333 static void rkl_ddi_get_config(struct intel_encoder *encoder,
4334 struct intel_crtc_state *crtc_state)
4335 {
4336 intel_ddi_get_clock(encoder, crtc_state, rkl_ddi_get_pll(encoder));
4337 intel_ddi_get_config(encoder, crtc_state);
4338 }
4339
dg1_ddi_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4340 static void dg1_ddi_get_config(struct intel_encoder *encoder,
4341 struct intel_crtc_state *crtc_state)
4342 {
4343 intel_ddi_get_clock(encoder, crtc_state, dg1_ddi_get_pll(encoder));
4344 intel_ddi_get_config(encoder, crtc_state);
4345 }
4346
icl_ddi_combo_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4347 static void icl_ddi_combo_get_config(struct intel_encoder *encoder,
4348 struct intel_crtc_state *crtc_state)
4349 {
4350 intel_ddi_get_clock(encoder, crtc_state, icl_ddi_combo_get_pll(encoder));
4351 intel_ddi_get_config(encoder, crtc_state);
4352 }
4353
4354 static enum icl_port_dpll_id
icl_ddi_tc_port_pll_type(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)4355 icl_ddi_tc_port_pll_type(struct intel_encoder *encoder,
4356 const struct intel_crtc_state *crtc_state)
4357 {
4358 struct intel_display *display = to_intel_display(encoder);
4359 const struct intel_dpll *pll = crtc_state->intel_dpll;
4360
4361 if (drm_WARN_ON(display->drm, !pll))
4362 return ICL_PORT_DPLL_DEFAULT;
4363
4364 if (icl_ddi_tc_pll_is_tbt(pll))
4365 return ICL_PORT_DPLL_DEFAULT;
4366 else
4367 return ICL_PORT_DPLL_MG_PHY;
4368 }
4369
4370 enum icl_port_dpll_id
intel_ddi_port_pll_type(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)4371 intel_ddi_port_pll_type(struct intel_encoder *encoder,
4372 const struct intel_crtc_state *crtc_state)
4373 {
4374 if (!encoder->port_pll_type)
4375 return ICL_PORT_DPLL_DEFAULT;
4376
4377 return encoder->port_pll_type(encoder, crtc_state);
4378 }
4379
icl_ddi_tc_get_clock(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,struct intel_dpll * pll)4380 static void icl_ddi_tc_get_clock(struct intel_encoder *encoder,
4381 struct intel_crtc_state *crtc_state,
4382 struct intel_dpll *pll)
4383 {
4384 struct intel_display *display = to_intel_display(encoder);
4385 enum icl_port_dpll_id port_dpll_id;
4386 struct icl_port_dpll *port_dpll;
4387 bool pll_active;
4388
4389 if (drm_WARN_ON(display->drm, !pll))
4390 return;
4391
4392 if (icl_ddi_tc_pll_is_tbt(pll))
4393 port_dpll_id = ICL_PORT_DPLL_DEFAULT;
4394 else
4395 port_dpll_id = ICL_PORT_DPLL_MG_PHY;
4396
4397 port_dpll = &crtc_state->icl_port_dplls[port_dpll_id];
4398
4399 port_dpll->pll = pll;
4400 pll_active = intel_dpll_get_hw_state(display, pll, &port_dpll->hw_state);
4401 drm_WARN_ON(display->drm, !pll_active);
4402
4403 icl_set_active_port_dpll(crtc_state, port_dpll_id);
4404
4405 if (icl_ddi_tc_pll_is_tbt(crtc_state->intel_dpll))
4406 crtc_state->port_clock = icl_calc_tbt_pll_link(display, encoder->port);
4407 else
4408 crtc_state->port_clock = intel_dpll_get_freq(display, crtc_state->intel_dpll,
4409 &crtc_state->dpll_hw_state);
4410 }
4411
icl_ddi_tc_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4412 static void icl_ddi_tc_get_config(struct intel_encoder *encoder,
4413 struct intel_crtc_state *crtc_state)
4414 {
4415 icl_ddi_tc_get_clock(encoder, crtc_state, icl_ddi_tc_get_pll(encoder));
4416 intel_ddi_get_config(encoder, crtc_state);
4417 }
4418
bxt_ddi_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4419 static void bxt_ddi_get_config(struct intel_encoder *encoder,
4420 struct intel_crtc_state *crtc_state)
4421 {
4422 intel_ddi_get_clock(encoder, crtc_state, bxt_ddi_get_pll(encoder));
4423 intel_ddi_get_config(encoder, crtc_state);
4424 }
4425
skl_ddi_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4426 static void skl_ddi_get_config(struct intel_encoder *encoder,
4427 struct intel_crtc_state *crtc_state)
4428 {
4429 intel_ddi_get_clock(encoder, crtc_state, skl_ddi_get_pll(encoder));
4430 intel_ddi_get_config(encoder, crtc_state);
4431 }
4432
hsw_ddi_get_config(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4433 void hsw_ddi_get_config(struct intel_encoder *encoder,
4434 struct intel_crtc_state *crtc_state)
4435 {
4436 intel_ddi_get_clock(encoder, crtc_state, hsw_ddi_get_pll(encoder));
4437 intel_ddi_get_config(encoder, crtc_state);
4438 }
4439
intel_ddi_sync_state(struct intel_encoder * encoder,const struct intel_crtc_state * crtc_state)4440 static void intel_ddi_sync_state(struct intel_encoder *encoder,
4441 const struct intel_crtc_state *crtc_state)
4442 {
4443 if (intel_encoder_is_tc(encoder))
4444 intel_tc_port_sanitize_mode(enc_to_dig_port(encoder),
4445 crtc_state);
4446
4447 if ((crtc_state && intel_crtc_has_dp_encoder(crtc_state)) ||
4448 (!crtc_state && intel_encoder_is_dp(encoder)))
4449 intel_dp_sync_state(encoder, crtc_state);
4450 }
4451
intel_ddi_initial_fastset_check(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state)4452 static bool intel_ddi_initial_fastset_check(struct intel_encoder *encoder,
4453 struct intel_crtc_state *crtc_state)
4454 {
4455 struct intel_display *display = to_intel_display(encoder);
4456 bool fastset = true;
4457
4458 if (intel_encoder_is_tc(encoder)) {
4459 drm_dbg_kms(display->drm, "[ENCODER:%d:%s] Forcing full modeset to compute TC port DPLLs\n",
4460 encoder->base.base.id, encoder->base.name);
4461 crtc_state->uapi.mode_changed = true;
4462 fastset = false;
4463 }
4464
4465 if (intel_crtc_has_dp_encoder(crtc_state) &&
4466 !intel_dp_initial_fastset_check(encoder, crtc_state))
4467 fastset = false;
4468
4469 return fastset;
4470 }
4471
4472 static enum intel_output_type
intel_ddi_compute_output_type(struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,struct drm_connector_state * conn_state)4473 intel_ddi_compute_output_type(struct intel_encoder *encoder,
4474 struct intel_crtc_state *crtc_state,
4475 struct drm_connector_state *conn_state)
4476 {
4477 switch (conn_state->connector->connector_type) {
4478 case DRM_MODE_CONNECTOR_HDMIA:
4479 return INTEL_OUTPUT_HDMI;
4480 case DRM_MODE_CONNECTOR_eDP:
4481 return INTEL_OUTPUT_EDP;
4482 case DRM_MODE_CONNECTOR_DisplayPort:
4483 return INTEL_OUTPUT_DP;
4484 default:
4485 MISSING_CASE(conn_state->connector->connector_type);
4486 return INTEL_OUTPUT_UNUSED;
4487 }
4488 }
4489
intel_ddi_compute_config(struct intel_atomic_state * state,struct intel_encoder * encoder,struct intel_crtc_state * pipe_config,struct drm_connector_state * conn_state)4490 static int intel_ddi_compute_config(struct intel_atomic_state *state,
4491 struct intel_encoder *encoder,
4492 struct intel_crtc_state *pipe_config,
4493 struct drm_connector_state *conn_state)
4494 {
4495 struct intel_display *display = to_intel_display(encoder);
4496 struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc);
4497 enum port port = encoder->port;
4498 int ret;
4499
4500 if (HAS_TRANSCODER(display, TRANSCODER_EDP) && port == PORT_A)
4501 pipe_config->cpu_transcoder = TRANSCODER_EDP;
4502
4503 if (intel_crtc_has_type(pipe_config, INTEL_OUTPUT_HDMI)) {
4504 pipe_config->has_hdmi_sink =
4505 intel_hdmi_compute_has_hdmi_sink(encoder, pipe_config, conn_state);
4506
4507 ret = intel_hdmi_compute_config(encoder, pipe_config, conn_state);
4508 } else {
4509 ret = intel_dp_compute_config(state, encoder, pipe_config, conn_state);
4510 }
4511
4512 if (ret)
4513 return ret;
4514
4515 if (display->platform.haswell && crtc->pipe == PIPE_A &&
4516 pipe_config->cpu_transcoder == TRANSCODER_EDP)
4517 pipe_config->pch_pfit.force_thru =
4518 pipe_config->pch_pfit.enabled ||
4519 pipe_config->crc_enabled;
4520
4521 if (display->platform.geminilake || display->platform.broxton)
4522 pipe_config->lane_lat_optim_mask =
4523 bxt_dpio_phy_calc_lane_lat_optim_mask(pipe_config->lane_count);
4524
4525 intel_ddi_compute_min_voltage_level(pipe_config);
4526
4527 return 0;
4528 }
4529
mode_equal(const struct drm_display_mode * mode1,const struct drm_display_mode * mode2)4530 static bool mode_equal(const struct drm_display_mode *mode1,
4531 const struct drm_display_mode *mode2)
4532 {
4533 return drm_mode_match(mode1, mode2,
4534 DRM_MODE_MATCH_TIMINGS |
4535 DRM_MODE_MATCH_FLAGS |
4536 DRM_MODE_MATCH_3D_FLAGS) &&
4537 mode1->clock == mode2->clock; /* we want an exact match */
4538 }
4539
m_n_equal(const struct intel_link_m_n * m_n_1,const struct intel_link_m_n * m_n_2)4540 static bool m_n_equal(const struct intel_link_m_n *m_n_1,
4541 const struct intel_link_m_n *m_n_2)
4542 {
4543 return m_n_1->tu == m_n_2->tu &&
4544 m_n_1->data_m == m_n_2->data_m &&
4545 m_n_1->data_n == m_n_2->data_n &&
4546 m_n_1->link_m == m_n_2->link_m &&
4547 m_n_1->link_n == m_n_2->link_n;
4548 }
4549
crtcs_port_sync_compatible(const struct intel_crtc_state * crtc_state1,const struct intel_crtc_state * crtc_state2)4550 static bool crtcs_port_sync_compatible(const struct intel_crtc_state *crtc_state1,
4551 const struct intel_crtc_state *crtc_state2)
4552 {
4553 /*
4554 * FIXME the modeset sequence is currently wrong and
4555 * can't deal with joiner + port sync at the same time.
4556 */
4557 return crtc_state1->hw.active && crtc_state2->hw.active &&
4558 !crtc_state1->joiner_pipes && !crtc_state2->joiner_pipes &&
4559 crtc_state1->output_types == crtc_state2->output_types &&
4560 crtc_state1->output_format == crtc_state2->output_format &&
4561 crtc_state1->lane_count == crtc_state2->lane_count &&
4562 crtc_state1->port_clock == crtc_state2->port_clock &&
4563 mode_equal(&crtc_state1->hw.adjusted_mode,
4564 &crtc_state2->hw.adjusted_mode) &&
4565 m_n_equal(&crtc_state1->dp_m_n, &crtc_state2->dp_m_n);
4566 }
4567
4568 static u16
intel_ddi_port_sync_transcoders(const struct intel_crtc_state * ref_crtc_state,int tile_group_id)4569 intel_ddi_port_sync_transcoders(const struct intel_crtc_state *ref_crtc_state,
4570 int tile_group_id)
4571 {
4572 struct intel_display *display = to_intel_display(ref_crtc_state);
4573 struct drm_connector *connector;
4574 const struct drm_connector_state *conn_state;
4575 struct intel_atomic_state *state =
4576 to_intel_atomic_state(ref_crtc_state->uapi.state);
4577 u16 transcoders = 0;
4578 int i;
4579
4580 /*
4581 * We don't enable port sync on BDW due to missing w/as and
4582 * due to not having adjusted the modeset sequence appropriately.
4583 * From, xe3lpd onwards we have defeatured this with reference to
4584 * Wa_16024710867
4585 */
4586 if (!IS_DISPLAY_VER(display, 9, 20))
4587 return 0;
4588
4589 if (!intel_crtc_has_type(ref_crtc_state, INTEL_OUTPUT_DP))
4590 return 0;
4591
4592 for_each_new_connector_in_state(&state->base, connector, conn_state, i) {
4593 struct intel_crtc *crtc = to_intel_crtc(conn_state->crtc);
4594 const struct intel_crtc_state *crtc_state;
4595
4596 if (!crtc)
4597 continue;
4598
4599 if (!connector->has_tile ||
4600 connector->tile_group->id !=
4601 tile_group_id)
4602 continue;
4603 crtc_state = intel_atomic_get_new_crtc_state(state,
4604 crtc);
4605 if (!crtcs_port_sync_compatible(ref_crtc_state,
4606 crtc_state))
4607 continue;
4608 transcoders |= BIT(crtc_state->cpu_transcoder);
4609 }
4610
4611 return transcoders;
4612 }
4613
intel_ddi_compute_config_late(struct intel_atomic_state * state,struct intel_encoder * encoder,struct intel_crtc_state * crtc_state,struct drm_connector_state * conn_state)4614 static int intel_ddi_compute_config_late(struct intel_atomic_state *state,
4615 struct intel_encoder *encoder,
4616 struct intel_crtc_state *crtc_state,
4617 struct drm_connector_state *conn_state)
4618 {
4619 struct intel_display *display = to_intel_display(encoder);
4620 struct drm_connector *connector = conn_state->connector;
4621 u16 port_sync_transcoders = 0;
4622 int ret = 0;
4623
4624 if (intel_crtc_has_dp_encoder(crtc_state))
4625 ret = intel_dp_compute_config_late(encoder, crtc_state, conn_state);
4626
4627 if (ret)
4628 return ret;
4629
4630 drm_dbg_kms(display->drm, "[ENCODER:%d:%s] [CRTC:%d:%s]\n",
4631 encoder->base.base.id, encoder->base.name,
4632 crtc_state->uapi.crtc->base.id, crtc_state->uapi.crtc->name);
4633
4634 if (connector->has_tile)
4635 port_sync_transcoders = intel_ddi_port_sync_transcoders(crtc_state,
4636 connector->tile_group->id);
4637
4638 /*
4639 * EDP Transcoders cannot be ensalved
4640 * make them a master always when present
4641 */
4642 if (port_sync_transcoders & BIT(TRANSCODER_EDP))
4643 crtc_state->master_transcoder = TRANSCODER_EDP;
4644 else
4645 crtc_state->master_transcoder = ffs(port_sync_transcoders) - 1;
4646
4647 if (crtc_state->master_transcoder == crtc_state->cpu_transcoder) {
4648 crtc_state->master_transcoder = INVALID_TRANSCODER;
4649 crtc_state->sync_mode_slaves_mask =
4650 port_sync_transcoders & ~BIT(crtc_state->cpu_transcoder);
4651 }
4652
4653 return 0;
4654 }
4655
intel_ddi_encoder_destroy(struct drm_encoder * encoder)4656 static void intel_ddi_encoder_destroy(struct drm_encoder *encoder)
4657 {
4658 struct intel_display *display = to_intel_display(encoder->dev);
4659 struct intel_digital_port *dig_port = enc_to_dig_port(to_intel_encoder(encoder));
4660
4661 intel_dp_encoder_flush_work(encoder);
4662 if (intel_encoder_is_tc(&dig_port->base))
4663 intel_tc_port_cleanup(dig_port);
4664 intel_display_power_flush_work(display);
4665
4666 drm_encoder_cleanup(encoder);
4667 kfree(dig_port->hdcp.port_data.streams);
4668 intel_dp_link_cleanup(&dig_port->dp);
4669 kfree(dig_port);
4670 }
4671
intel_ddi_encoder_reset(struct drm_encoder * encoder)4672 static void intel_ddi_encoder_reset(struct drm_encoder *encoder)
4673 {
4674 struct intel_dp *intel_dp = enc_to_intel_dp(to_intel_encoder(encoder));
4675 struct intel_digital_port *dig_port = enc_to_dig_port(to_intel_encoder(encoder));
4676
4677 intel_dp->reset_link_params = true;
4678 intel_dp_invalidate_source_oui(intel_dp);
4679
4680 intel_pps_encoder_reset(intel_dp);
4681
4682 if (intel_encoder_is_tc(&dig_port->base))
4683 intel_tc_port_init_mode(dig_port);
4684 }
4685
intel_ddi_encoder_late_register(struct drm_encoder * _encoder)4686 static int intel_ddi_encoder_late_register(struct drm_encoder *_encoder)
4687 {
4688 struct intel_encoder *encoder = to_intel_encoder(_encoder);
4689
4690 intel_tc_port_link_reset(enc_to_dig_port(encoder));
4691
4692 return 0;
4693 }
4694
4695 static const struct drm_encoder_funcs intel_ddi_funcs = {
4696 .reset = intel_ddi_encoder_reset,
4697 .destroy = intel_ddi_encoder_destroy,
4698 .late_register = intel_ddi_encoder_late_register,
4699 };
4700
intel_ddi_init_dp_connector(struct intel_digital_port * dig_port)4701 static int intel_ddi_init_dp_connector(struct intel_digital_port *dig_port)
4702 {
4703 struct intel_display *display = to_intel_display(dig_port);
4704 struct intel_connector *connector;
4705 enum port port = dig_port->base.port;
4706 int err;
4707
4708 connector = intel_connector_alloc();
4709 if (!connector)
4710 return -ENOMEM;
4711
4712 err = intel_dp_link_init(&dig_port->dp);
4713 if (err)
4714 goto err_dp_init;
4715
4716 dig_port->dp.output_reg = DDI_BUF_CTL(port);
4717 if (DISPLAY_VER(display) >= 14)
4718 dig_port->dp.prepare_link_retrain = mtl_ddi_prepare_link_retrain;
4719 else
4720 dig_port->dp.prepare_link_retrain = intel_ddi_prepare_link_retrain;
4721 dig_port->dp.set_link_train = intel_ddi_set_link_train;
4722 dig_port->dp.set_idle_link_train = intel_ddi_set_idle_link_train;
4723
4724 dig_port->dp.voltage_max = intel_ddi_dp_voltage_max;
4725 dig_port->dp.preemph_max = intel_ddi_dp_preemph_max;
4726
4727 if (!intel_dp_init_connector(dig_port, connector)) {
4728 err = -EINVAL;
4729
4730 goto err_init_connector;
4731 }
4732
4733 if (dig_port->base.type == INTEL_OUTPUT_EDP) {
4734 struct drm_privacy_screen *privacy_screen;
4735
4736 privacy_screen = drm_privacy_screen_get(display->drm->dev, NULL);
4737 if (!IS_ERR(privacy_screen)) {
4738 drm_connector_attach_privacy_screen_provider(&connector->base,
4739 privacy_screen);
4740 } else if (PTR_ERR(privacy_screen) != -ENODEV) {
4741 drm_warn(display->drm, "Error getting privacy-screen\n");
4742 }
4743 }
4744
4745 return 0;
4746
4747 err_init_connector:
4748 intel_dp_link_cleanup(&dig_port->dp);
4749 err_dp_init:
4750 kfree(connector);
4751
4752 return err;
4753 }
4754
intel_ddi_cleanup_dp_connector(struct intel_digital_port * dig_port)4755 static void intel_ddi_cleanup_dp_connector(struct intel_digital_port *dig_port)
4756 {
4757 struct intel_dp *intel_dp = &dig_port->dp;
4758 struct intel_connector *connector = intel_dp->attached_connector;
4759
4760 intel_dp_cleanup_connector(dig_port, connector);
4761 intel_dp_link_cleanup(intel_dp);
4762 kfree(connector);
4763 }
4764
intel_hdmi_reset_link(struct intel_encoder * encoder,struct drm_modeset_acquire_ctx * ctx)4765 static int intel_hdmi_reset_link(struct intel_encoder *encoder,
4766 struct drm_modeset_acquire_ctx *ctx)
4767 {
4768 struct intel_display *display = to_intel_display(encoder);
4769 struct intel_hdmi *hdmi = enc_to_intel_hdmi(encoder);
4770 struct intel_connector *connector = hdmi->attached_connector;
4771 struct i2c_adapter *ddc = connector->base.ddc;
4772 struct drm_connector_state *conn_state;
4773 struct intel_crtc_state *crtc_state;
4774 struct intel_crtc *crtc;
4775 u8 config;
4776 int ret;
4777
4778 if (connector->base.status != connector_status_connected)
4779 return 0;
4780
4781 ret = drm_modeset_lock(&display->drm->mode_config.connection_mutex,
4782 ctx);
4783 if (ret)
4784 return ret;
4785
4786 conn_state = connector->base.state;
4787
4788 crtc = to_intel_crtc(conn_state->crtc);
4789 if (!crtc)
4790 return 0;
4791
4792 ret = drm_modeset_lock(&crtc->base.mutex, ctx);
4793 if (ret)
4794 return ret;
4795
4796 crtc_state = to_intel_crtc_state(crtc->base.state);
4797
4798 drm_WARN_ON(display->drm,
4799 !intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI));
4800
4801 if (!crtc_state->hw.active)
4802 return 0;
4803
4804 if (!crtc_state->hdmi_high_tmds_clock_ratio &&
4805 !crtc_state->hdmi_scrambling)
4806 return 0;
4807
4808 if (conn_state->commit &&
4809 !try_wait_for_completion(&conn_state->commit->hw_done))
4810 return 0;
4811
4812 ret = drm_scdc_readb(ddc, SCDC_TMDS_CONFIG, &config);
4813 if (ret < 0) {
4814 drm_err(display->drm, "[CONNECTOR:%d:%s] Failed to read TMDS config: %d\n",
4815 connector->base.base.id, connector->base.name, ret);
4816 return 0;
4817 }
4818
4819 if (!!(config & SCDC_TMDS_BIT_CLOCK_RATIO_BY_40) ==
4820 crtc_state->hdmi_high_tmds_clock_ratio &&
4821 !!(config & SCDC_SCRAMBLING_ENABLE) ==
4822 crtc_state->hdmi_scrambling)
4823 return 0;
4824
4825 /*
4826 * HDMI 2.0 says that one should not send scrambled data
4827 * prior to configuring the sink scrambling, and that
4828 * TMDS clock/data transmission should be suspended when
4829 * changing the TMDS clock rate in the sink. So let's
4830 * just do a full modeset here, even though some sinks
4831 * would be perfectly happy if were to just reconfigure
4832 * the SCDC settings on the fly.
4833 */
4834 return intel_modeset_commit_pipes(display, BIT(crtc->pipe), ctx);
4835 }
4836
intel_ddi_link_check(struct intel_encoder * encoder)4837 static void intel_ddi_link_check(struct intel_encoder *encoder)
4838 {
4839 struct intel_display *display = to_intel_display(encoder);
4840 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
4841
4842 /* TODO: Move checking the HDMI link state here as well. */
4843 drm_WARN_ON(display->drm, !dig_port->dp.attached_connector);
4844
4845 intel_dp_link_check(encoder);
4846 }
4847
4848 static enum intel_hotplug_state
intel_ddi_hotplug(struct intel_encoder * encoder,struct intel_connector * connector)4849 intel_ddi_hotplug(struct intel_encoder *encoder,
4850 struct intel_connector *connector)
4851 {
4852 struct intel_digital_port *dig_port = enc_to_dig_port(encoder);
4853 struct intel_dp *intel_dp = &dig_port->dp;
4854 bool is_tc = intel_encoder_is_tc(encoder);
4855 struct drm_modeset_acquire_ctx ctx;
4856 enum intel_hotplug_state state;
4857 int ret;
4858
4859 if (intel_dp_test_phy(intel_dp))
4860 return INTEL_HOTPLUG_UNCHANGED;
4861
4862 state = intel_encoder_hotplug(encoder, connector);
4863
4864 if (!intel_tc_port_link_reset(dig_port)) {
4865 if (connector->base.connector_type == DRM_MODE_CONNECTOR_HDMIA) {
4866 intel_modeset_lock_ctx_retry(&ctx, NULL, 0, ret)
4867 ret = intel_hdmi_reset_link(encoder, &ctx);
4868 drm_WARN_ON(encoder->base.dev, ret);
4869 } else {
4870 intel_dp_check_link_state(intel_dp);
4871 }
4872 }
4873
4874 /*
4875 * Unpowered type-c dongles can take some time to boot and be
4876 * responsible, so here giving some time to those dongles to power up
4877 * and then retrying the probe.
4878 *
4879 * On many platforms the HDMI live state signal is known to be
4880 * unreliable, so we can't use it to detect if a sink is connected or
4881 * not. Instead we detect if it's connected based on whether we can
4882 * read the EDID or not. That in turn has a problem during disconnect,
4883 * since the HPD interrupt may be raised before the DDC lines get
4884 * disconnected (due to how the required length of DDC vs. HPD
4885 * connector pins are specified) and so we'll still be able to get a
4886 * valid EDID. To solve this schedule another detection cycle if this
4887 * time around we didn't detect any change in the sink's connection
4888 * status.
4889 *
4890 * Type-c connectors which get their HPD signal deasserted then
4891 * reasserted, without unplugging/replugging the sink from the
4892 * connector, introduce a delay until the AUX channel communication
4893 * becomes functional. Retry the detection for 5 seconds on type-c
4894 * connectors to account for this delay.
4895 */
4896 if (state == INTEL_HOTPLUG_UNCHANGED &&
4897 connector->hotplug_retries < (is_tc ? 5 : 1) &&
4898 !dig_port->dp.is_mst)
4899 state = INTEL_HOTPLUG_RETRY;
4900
4901 return state;
4902 }
4903
lpt_digital_port_connected(struct intel_encoder * encoder)4904 static bool lpt_digital_port_connected(struct intel_encoder *encoder)
4905 {
4906 struct intel_display *display = to_intel_display(encoder);
4907 u32 bit = display->hotplug.pch_hpd[encoder->hpd_pin];
4908
4909 return intel_de_read(display, SDEISR) & bit;
4910 }
4911
hsw_digital_port_connected(struct intel_encoder * encoder)4912 static bool hsw_digital_port_connected(struct intel_encoder *encoder)
4913 {
4914 struct intel_display *display = to_intel_display(encoder);
4915 u32 bit = display->hotplug.hpd[encoder->hpd_pin];
4916
4917 return intel_de_read(display, DEISR) & bit;
4918 }
4919
bdw_digital_port_connected(struct intel_encoder * encoder)4920 static bool bdw_digital_port_connected(struct intel_encoder *encoder)
4921 {
4922 struct intel_display *display = to_intel_display(encoder);
4923 u32 bit = display->hotplug.hpd[encoder->hpd_pin];
4924
4925 return intel_de_read(display, GEN8_DE_PORT_ISR) & bit;
4926 }
4927
intel_ddi_init_hdmi_connector(struct intel_digital_port * dig_port)4928 static int intel_ddi_init_hdmi_connector(struct intel_digital_port *dig_port)
4929 {
4930 struct intel_connector *connector;
4931 enum port port = dig_port->base.port;
4932
4933 connector = intel_connector_alloc();
4934 if (!connector)
4935 return -ENOMEM;
4936
4937 dig_port->hdmi.hdmi_reg = DDI_BUF_CTL(port);
4938
4939 if (!intel_hdmi_init_connector(dig_port, connector)) {
4940 /*
4941 * HDMI connector init failures may just mean conflicting DDC
4942 * pins or not having enough lanes. Handle them gracefully, but
4943 * don't fail the entire DDI init.
4944 */
4945 dig_port->hdmi.hdmi_reg = INVALID_MMIO_REG;
4946 kfree(connector);
4947 }
4948
4949 return 0;
4950 }
4951
intel_ddi_a_force_4_lanes(struct intel_digital_port * dig_port)4952 static bool intel_ddi_a_force_4_lanes(struct intel_digital_port *dig_port)
4953 {
4954 struct intel_display *display = to_intel_display(dig_port);
4955
4956 if (dig_port->base.port != PORT_A)
4957 return false;
4958
4959 if (dig_port->ddi_a_4_lanes)
4960 return false;
4961
4962 /* Broxton/Geminilake: Bspec says that DDI_A_4_LANES is the only
4963 * supported configuration
4964 */
4965 if (display->platform.geminilake || display->platform.broxton)
4966 return true;
4967
4968 return false;
4969 }
4970
4971 static int
intel_ddi_max_lanes(struct intel_digital_port * dig_port)4972 intel_ddi_max_lanes(struct intel_digital_port *dig_port)
4973 {
4974 struct intel_display *display = to_intel_display(dig_port);
4975 enum port port = dig_port->base.port;
4976 int max_lanes = 4;
4977
4978 if (DISPLAY_VER(display) >= 11)
4979 return max_lanes;
4980
4981 if (port == PORT_A || port == PORT_E) {
4982 if (intel_de_read(display, DDI_BUF_CTL(PORT_A)) & DDI_A_4_LANES)
4983 max_lanes = port == PORT_A ? 4 : 0;
4984 else
4985 /* Both A and E share 2 lanes */
4986 max_lanes = 2;
4987 }
4988
4989 /*
4990 * Some BIOS might fail to set this bit on port A if eDP
4991 * wasn't lit up at boot. Force this bit set when needed
4992 * so we use the proper lane count for our calculations.
4993 */
4994 if (intel_ddi_a_force_4_lanes(dig_port)) {
4995 drm_dbg_kms(display->drm,
4996 "Forcing DDI_A_4_LANES for port A\n");
4997 dig_port->ddi_a_4_lanes = true;
4998 max_lanes = 4;
4999 }
5000
5001 return max_lanes;
5002 }
5003
xelpd_hpd_pin(struct intel_display * display,enum port port)5004 static enum hpd_pin xelpd_hpd_pin(struct intel_display *display, enum port port)
5005 {
5006 if (port >= PORT_D_XELPD)
5007 return HPD_PORT_D + port - PORT_D_XELPD;
5008 else if (port >= PORT_TC1)
5009 return HPD_PORT_TC1 + port - PORT_TC1;
5010 else
5011 return HPD_PORT_A + port - PORT_A;
5012 }
5013
dg1_hpd_pin(struct intel_display * display,enum port port)5014 static enum hpd_pin dg1_hpd_pin(struct intel_display *display, enum port port)
5015 {
5016 if (port >= PORT_TC1)
5017 return HPD_PORT_C + port - PORT_TC1;
5018 else
5019 return HPD_PORT_A + port - PORT_A;
5020 }
5021
tgl_hpd_pin(struct intel_display * display,enum port port)5022 static enum hpd_pin tgl_hpd_pin(struct intel_display *display, enum port port)
5023 {
5024 if (port >= PORT_TC1)
5025 return HPD_PORT_TC1 + port - PORT_TC1;
5026 else
5027 return HPD_PORT_A + port - PORT_A;
5028 }
5029
rkl_hpd_pin(struct intel_display * display,enum port port)5030 static enum hpd_pin rkl_hpd_pin(struct intel_display *display, enum port port)
5031 {
5032 if (HAS_PCH_TGP(display))
5033 return tgl_hpd_pin(display, port);
5034
5035 if (port >= PORT_TC1)
5036 return HPD_PORT_C + port - PORT_TC1;
5037 else
5038 return HPD_PORT_A + port - PORT_A;
5039 }
5040
icl_hpd_pin(struct intel_display * display,enum port port)5041 static enum hpd_pin icl_hpd_pin(struct intel_display *display, enum port port)
5042 {
5043 if (port >= PORT_C)
5044 return HPD_PORT_TC1 + port - PORT_C;
5045 else
5046 return HPD_PORT_A + port - PORT_A;
5047 }
5048
ehl_hpd_pin(struct intel_display * display,enum port port)5049 static enum hpd_pin ehl_hpd_pin(struct intel_display *display, enum port port)
5050 {
5051 if (port == PORT_D)
5052 return HPD_PORT_A;
5053
5054 if (HAS_PCH_TGP(display))
5055 return icl_hpd_pin(display, port);
5056
5057 return HPD_PORT_A + port - PORT_A;
5058 }
5059
skl_hpd_pin(struct intel_display * display,enum port port)5060 static enum hpd_pin skl_hpd_pin(struct intel_display *display, enum port port)
5061 {
5062 if (HAS_PCH_TGP(display))
5063 return icl_hpd_pin(display, port);
5064
5065 return HPD_PORT_A + port - PORT_A;
5066 }
5067
intel_ddi_is_tc(struct intel_display * display,enum port port)5068 static bool intel_ddi_is_tc(struct intel_display *display, enum port port)
5069 {
5070 if (DISPLAY_VER(display) >= 12)
5071 return port >= PORT_TC1;
5072 else if (DISPLAY_VER(display) >= 11)
5073 return port >= PORT_C;
5074 else
5075 return false;
5076 }
5077
intel_ddi_encoder_suspend(struct intel_encoder * encoder)5078 static void intel_ddi_encoder_suspend(struct intel_encoder *encoder)
5079 {
5080 intel_dp_encoder_suspend(encoder);
5081 }
5082
intel_ddi_tc_encoder_suspend_complete(struct intel_encoder * encoder)5083 static void intel_ddi_tc_encoder_suspend_complete(struct intel_encoder *encoder)
5084 {
5085 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
5086 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
5087
5088 /*
5089 * TODO: Move this to intel_dp_encoder_suspend(),
5090 * once modeset locking around that is removed.
5091 */
5092 intel_encoder_link_check_flush_work(encoder);
5093 intel_tc_port_suspend(dig_port);
5094 }
5095
intel_ddi_encoder_shutdown(struct intel_encoder * encoder)5096 static void intel_ddi_encoder_shutdown(struct intel_encoder *encoder)
5097 {
5098 if (intel_encoder_is_dp(encoder))
5099 intel_dp_encoder_shutdown(encoder);
5100 if (intel_encoder_is_hdmi(encoder))
5101 intel_hdmi_encoder_shutdown(encoder);
5102 }
5103
intel_ddi_tc_encoder_shutdown_complete(struct intel_encoder * encoder)5104 static void intel_ddi_tc_encoder_shutdown_complete(struct intel_encoder *encoder)
5105 {
5106 struct intel_dp *intel_dp = enc_to_intel_dp(encoder);
5107 struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp);
5108
5109 intel_tc_port_cleanup(dig_port);
5110 }
5111
5112 #define port_tc_name(port) ((port) - PORT_TC1 + '1')
5113 #define tc_port_name(tc_port) ((tc_port) - TC_PORT_1 + '1')
5114
port_strap_detected(struct intel_display * display,enum port port)5115 static bool port_strap_detected(struct intel_display *display, enum port port)
5116 {
5117 /* straps not used on skl+ */
5118 if (DISPLAY_VER(display) >= 9)
5119 return true;
5120
5121 switch (port) {
5122 case PORT_A:
5123 return intel_de_read(display, DDI_BUF_CTL(PORT_A)) & DDI_INIT_DISPLAY_DETECTED;
5124 case PORT_B:
5125 return intel_de_read(display, SFUSE_STRAP) & SFUSE_STRAP_DDIB_DETECTED;
5126 case PORT_C:
5127 return intel_de_read(display, SFUSE_STRAP) & SFUSE_STRAP_DDIC_DETECTED;
5128 case PORT_D:
5129 return intel_de_read(display, SFUSE_STRAP) & SFUSE_STRAP_DDID_DETECTED;
5130 case PORT_E:
5131 return true; /* no strap for DDI-E */
5132 default:
5133 MISSING_CASE(port);
5134 return false;
5135 }
5136 }
5137
need_aux_ch(struct intel_encoder * encoder,bool init_dp)5138 static bool need_aux_ch(struct intel_encoder *encoder, bool init_dp)
5139 {
5140 return init_dp || intel_encoder_is_tc(encoder);
5141 }
5142
assert_has_icl_dsi(struct intel_display * display)5143 static bool assert_has_icl_dsi(struct intel_display *display)
5144 {
5145 return !drm_WARN(display->drm, !display->platform.alderlake_p &&
5146 !display->platform.tigerlake && DISPLAY_VER(display) != 11,
5147 "Platform does not support DSI\n");
5148 }
5149
port_in_use(struct intel_display * display,enum port port)5150 static bool port_in_use(struct intel_display *display, enum port port)
5151 {
5152 struct intel_encoder *encoder;
5153
5154 for_each_intel_encoder(display->drm, encoder) {
5155 /* FIXME what about second port for dual link DSI? */
5156 if (encoder->port == port)
5157 return true;
5158 }
5159
5160 return false;
5161 }
5162
intel_ddi_encoder_name(struct intel_display * display,enum port port,enum phy phy,struct seq_buf * s)5163 static const char *intel_ddi_encoder_name(struct intel_display *display,
5164 enum port port, enum phy phy,
5165 struct seq_buf *s)
5166 {
5167 if (DISPLAY_VER(display) >= 13 && port >= PORT_D_XELPD) {
5168 seq_buf_printf(s, "DDI %c/PHY %c",
5169 port_name(port - PORT_D_XELPD + PORT_D),
5170 phy_name(phy));
5171 } else if (DISPLAY_VER(display) >= 12) {
5172 enum tc_port tc_port = intel_tc_phy_port_to_tc(display, port);
5173
5174 seq_buf_printf(s, "DDI %s%c/PHY %s%c",
5175 port >= PORT_TC1 ? "TC" : "",
5176 port >= PORT_TC1 ? port_tc_name(port) : port_name(port),
5177 tc_port != TC_PORT_NONE ? "TC" : "",
5178 tc_port != TC_PORT_NONE ? tc_port_name(tc_port) : phy_name(phy));
5179 } else if (DISPLAY_VER(display) >= 11) {
5180 enum tc_port tc_port = intel_tc_phy_port_to_tc(display, port);
5181
5182 seq_buf_printf(s, "DDI %c%s/PHY %s%c",
5183 port_name(port),
5184 port >= PORT_C ? " (TC)" : "",
5185 tc_port != TC_PORT_NONE ? "TC" : "",
5186 tc_port != TC_PORT_NONE ? tc_port_name(tc_port) : phy_name(phy));
5187 } else {
5188 seq_buf_printf(s, "DDI %c/PHY %c", port_name(port), phy_name(phy));
5189 }
5190
5191 drm_WARN_ON(display->drm, seq_buf_has_overflowed(s));
5192
5193 return seq_buf_str(s);
5194 }
5195
intel_ddi_init(struct intel_display * display,const struct intel_bios_encoder_data * devdata)5196 void intel_ddi_init(struct intel_display *display,
5197 const struct intel_bios_encoder_data *devdata)
5198 {
5199 struct intel_digital_port *dig_port;
5200 struct intel_encoder *encoder;
5201 DECLARE_SEQ_BUF(encoder_name, 20);
5202 bool init_hdmi, init_dp;
5203 enum port port;
5204 enum phy phy;
5205 u32 ddi_buf_ctl;
5206
5207 port = intel_bios_encoder_port(devdata);
5208 if (port == PORT_NONE)
5209 return;
5210
5211 if (!port_strap_detected(display, port)) {
5212 drm_dbg_kms(display->drm,
5213 "Port %c strap not detected\n", port_name(port));
5214 return;
5215 }
5216
5217 if (!assert_port_valid(display, port))
5218 return;
5219
5220 if (port_in_use(display, port)) {
5221 drm_dbg_kms(display->drm,
5222 "Port %c already claimed\n", port_name(port));
5223 return;
5224 }
5225
5226 if (intel_bios_encoder_supports_dsi(devdata)) {
5227 /* BXT/GLK handled elsewhere, for now at least */
5228 if (!assert_has_icl_dsi(display))
5229 return;
5230
5231 icl_dsi_init(display, devdata);
5232 return;
5233 }
5234
5235 phy = intel_port_to_phy(display, port);
5236
5237 /*
5238 * On platforms with HTI (aka HDPORT), if it's enabled at boot it may
5239 * have taken over some of the PHYs and made them unavailable to the
5240 * driver. In that case we should skip initializing the corresponding
5241 * outputs.
5242 */
5243 if (intel_hti_uses_phy(display, phy)) {
5244 drm_dbg_kms(display->drm, "PORT %c / PHY %c reserved by HTI\n",
5245 port_name(port), phy_name(phy));
5246 return;
5247 }
5248
5249 init_hdmi = intel_bios_encoder_supports_dvi(devdata) ||
5250 intel_bios_encoder_supports_hdmi(devdata);
5251 init_dp = intel_bios_encoder_supports_dp(devdata);
5252
5253 if (intel_bios_encoder_is_lspcon(devdata)) {
5254 /*
5255 * Lspcon device needs to be driven with DP connector
5256 * with special detection sequence. So make sure DP
5257 * is initialized before lspcon.
5258 */
5259 init_dp = true;
5260 init_hdmi = false;
5261 drm_dbg_kms(display->drm, "VBT says port %c has lspcon\n",
5262 port_name(port));
5263 }
5264
5265 if (!init_dp && !init_hdmi) {
5266 drm_dbg_kms(display->drm,
5267 "VBT says port %c is not DVI/HDMI/DP compatible, respect it\n",
5268 port_name(port));
5269 return;
5270 }
5271
5272 if (intel_phy_is_snps(display, phy) &&
5273 display->snps.phy_failed_calibration & BIT(phy)) {
5274 drm_dbg_kms(display->drm,
5275 "SNPS PHY %c failed to calibrate, proceeding anyway\n",
5276 phy_name(phy));
5277 }
5278
5279 dig_port = intel_dig_port_alloc();
5280 if (!dig_port)
5281 return;
5282
5283 encoder = &dig_port->base;
5284 encoder->devdata = devdata;
5285
5286 drm_encoder_init(display->drm, &encoder->base, &intel_ddi_funcs,
5287 DRM_MODE_ENCODER_TMDS, "%s",
5288 intel_ddi_encoder_name(display, port, phy, &encoder_name));
5289
5290 intel_encoder_link_check_init(encoder, intel_ddi_link_check);
5291
5292 encoder->hotplug = intel_ddi_hotplug;
5293 encoder->compute_output_type = intel_ddi_compute_output_type;
5294 encoder->compute_config = intel_ddi_compute_config;
5295 encoder->compute_config_late = intel_ddi_compute_config_late;
5296 encoder->enable = intel_ddi_enable;
5297 encoder->pre_pll_enable = intel_ddi_pre_pll_enable;
5298 encoder->pre_enable = intel_ddi_pre_enable;
5299 encoder->disable = intel_ddi_disable;
5300 encoder->post_pll_disable = intel_ddi_post_pll_disable;
5301 encoder->post_disable = intel_ddi_post_disable;
5302 encoder->update_pipe = intel_ddi_update_pipe;
5303 encoder->audio_enable = intel_audio_codec_enable;
5304 encoder->audio_disable = intel_audio_codec_disable;
5305 encoder->get_hw_state = intel_ddi_get_hw_state;
5306 encoder->sync_state = intel_ddi_sync_state;
5307 encoder->initial_fastset_check = intel_ddi_initial_fastset_check;
5308 encoder->suspend = intel_ddi_encoder_suspend;
5309 encoder->shutdown = intel_ddi_encoder_shutdown;
5310 encoder->get_power_domains = intel_ddi_get_power_domains;
5311
5312 encoder->type = INTEL_OUTPUT_DDI;
5313 encoder->power_domain = intel_display_power_ddi_lanes_domain(display, port);
5314 encoder->port = port;
5315 encoder->cloneable = 0;
5316 encoder->pipe_mask = ~0;
5317
5318 if (HAS_LT_PHY(display)) {
5319 encoder->enable_clock = intel_mtl_pll_enable_clock;
5320 encoder->disable_clock = intel_mtl_pll_disable_clock;
5321 encoder->port_pll_type = icl_ddi_tc_port_pll_type;
5322 if (intel_encoder_is_tc(encoder))
5323 encoder->get_config = mtl_ddi_tc_phy_get_config;
5324 else
5325 encoder->get_config = mtl_ddi_non_tc_phy_get_config;
5326 } else if (DISPLAY_VER(display) >= 14) {
5327 encoder->enable_clock = intel_mtl_pll_enable_clock;
5328 encoder->disable_clock = intel_mtl_pll_disable_clock;
5329 encoder->port_pll_type = icl_ddi_tc_port_pll_type;
5330 if (intel_encoder_is_tc(encoder))
5331 encoder->get_config = mtl_ddi_tc_phy_get_config;
5332 else
5333 encoder->get_config = mtl_ddi_non_tc_phy_get_config;
5334 } else if (display->platform.dg2) {
5335 encoder->enable_clock = intel_mpllb_enable;
5336 encoder->disable_clock = intel_mpllb_disable;
5337 encoder->get_config = dg2_ddi_get_config;
5338 } else if (display->platform.alderlake_s) {
5339 encoder->enable_clock = adls_ddi_enable_clock;
5340 encoder->disable_clock = adls_ddi_disable_clock;
5341 encoder->is_clock_enabled = adls_ddi_is_clock_enabled;
5342 encoder->get_config = adls_ddi_get_config;
5343 } else if (display->platform.rocketlake) {
5344 encoder->enable_clock = rkl_ddi_enable_clock;
5345 encoder->disable_clock = rkl_ddi_disable_clock;
5346 encoder->is_clock_enabled = rkl_ddi_is_clock_enabled;
5347 encoder->get_config = rkl_ddi_get_config;
5348 } else if (display->platform.dg1) {
5349 encoder->enable_clock = dg1_ddi_enable_clock;
5350 encoder->disable_clock = dg1_ddi_disable_clock;
5351 encoder->is_clock_enabled = dg1_ddi_is_clock_enabled;
5352 encoder->get_config = dg1_ddi_get_config;
5353 } else if (display->platform.jasperlake || display->platform.elkhartlake) {
5354 if (intel_ddi_is_tc(display, port)) {
5355 encoder->enable_clock = jsl_ddi_tc_enable_clock;
5356 encoder->disable_clock = jsl_ddi_tc_disable_clock;
5357 encoder->is_clock_enabled = jsl_ddi_tc_is_clock_enabled;
5358 encoder->port_pll_type = icl_ddi_tc_port_pll_type;
5359 encoder->get_config = icl_ddi_combo_get_config;
5360 } else {
5361 encoder->enable_clock = icl_ddi_combo_enable_clock;
5362 encoder->disable_clock = icl_ddi_combo_disable_clock;
5363 encoder->is_clock_enabled = icl_ddi_combo_is_clock_enabled;
5364 encoder->get_config = icl_ddi_combo_get_config;
5365 }
5366 } else if (DISPLAY_VER(display) >= 11) {
5367 if (intel_ddi_is_tc(display, port)) {
5368 encoder->enable_clock = icl_ddi_tc_enable_clock;
5369 encoder->disable_clock = icl_ddi_tc_disable_clock;
5370 encoder->is_clock_enabled = icl_ddi_tc_is_clock_enabled;
5371 encoder->port_pll_type = icl_ddi_tc_port_pll_type;
5372 encoder->get_config = icl_ddi_tc_get_config;
5373 } else {
5374 encoder->enable_clock = icl_ddi_combo_enable_clock;
5375 encoder->disable_clock = icl_ddi_combo_disable_clock;
5376 encoder->is_clock_enabled = icl_ddi_combo_is_clock_enabled;
5377 encoder->get_config = icl_ddi_combo_get_config;
5378 }
5379 } else if (display->platform.geminilake || display->platform.broxton) {
5380 /* BXT/GLK have fixed PLL->port mapping */
5381 encoder->get_config = bxt_ddi_get_config;
5382 } else if (DISPLAY_VER(display) == 9) {
5383 encoder->enable_clock = skl_ddi_enable_clock;
5384 encoder->disable_clock = skl_ddi_disable_clock;
5385 encoder->is_clock_enabled = skl_ddi_is_clock_enabled;
5386 encoder->get_config = skl_ddi_get_config;
5387 } else if (display->platform.broadwell || display->platform.haswell) {
5388 encoder->enable_clock = hsw_ddi_enable_clock;
5389 encoder->disable_clock = hsw_ddi_disable_clock;
5390 encoder->is_clock_enabled = hsw_ddi_is_clock_enabled;
5391 encoder->get_config = hsw_ddi_get_config;
5392 }
5393
5394 if (HAS_LT_PHY(display)) {
5395 encoder->set_signal_levels = intel_lt_phy_set_signal_levels;
5396 } else if (DISPLAY_VER(display) >= 14) {
5397 encoder->set_signal_levels = intel_cx0_phy_set_signal_levels;
5398 } else if (display->platform.dg2) {
5399 encoder->set_signal_levels = intel_snps_phy_set_signal_levels;
5400 } else if (DISPLAY_VER(display) >= 12) {
5401 if (intel_encoder_is_combo(encoder))
5402 encoder->set_signal_levels = icl_combo_phy_set_signal_levels;
5403 else
5404 encoder->set_signal_levels = tgl_dkl_phy_set_signal_levels;
5405 } else if (DISPLAY_VER(display) >= 11) {
5406 if (intel_encoder_is_combo(encoder))
5407 encoder->set_signal_levels = icl_combo_phy_set_signal_levels;
5408 else
5409 encoder->set_signal_levels = icl_mg_phy_set_signal_levels;
5410 } else if (display->platform.geminilake || display->platform.broxton) {
5411 encoder->set_signal_levels = bxt_dpio_phy_set_signal_levels;
5412 } else {
5413 encoder->set_signal_levels = hsw_set_signal_levels;
5414 }
5415
5416 intel_ddi_buf_trans_init(encoder);
5417
5418 if (DISPLAY_VER(display) >= 13)
5419 encoder->hpd_pin = xelpd_hpd_pin(display, port);
5420 else if (display->platform.dg1)
5421 encoder->hpd_pin = dg1_hpd_pin(display, port);
5422 else if (display->platform.rocketlake)
5423 encoder->hpd_pin = rkl_hpd_pin(display, port);
5424 else if (DISPLAY_VER(display) >= 12)
5425 encoder->hpd_pin = tgl_hpd_pin(display, port);
5426 else if (display->platform.jasperlake || display->platform.elkhartlake)
5427 encoder->hpd_pin = ehl_hpd_pin(display, port);
5428 else if (DISPLAY_VER(display) == 11)
5429 encoder->hpd_pin = icl_hpd_pin(display, port);
5430 else if (DISPLAY_VER(display) == 9 && !display->platform.broxton)
5431 encoder->hpd_pin = skl_hpd_pin(display, port);
5432 else
5433 encoder->hpd_pin = intel_hpd_pin_default(port);
5434
5435 ddi_buf_ctl = intel_de_read(display, DDI_BUF_CTL(port));
5436
5437 dig_port->lane_reversal = intel_bios_encoder_lane_reversal(devdata) ||
5438 ddi_buf_ctl & DDI_BUF_PORT_REVERSAL;
5439
5440 dig_port->ddi_a_4_lanes = DISPLAY_VER(display) < 11 && ddi_buf_ctl & DDI_A_4_LANES;
5441
5442 dig_port->max_lanes = intel_ddi_max_lanes(dig_port);
5443
5444 if (need_aux_ch(encoder, init_dp)) {
5445 dig_port->aux_ch = intel_dp_aux_ch(encoder);
5446 if (dig_port->aux_ch == AUX_CH_NONE)
5447 goto err_aux_ch_init;
5448 }
5449
5450 /*
5451 * FIXME: We currently need to store dedicated_external because devdata
5452 * does not live long enough for when intel_encoder_is_tc() is called on
5453 * the unbind path. This needs to be fixed by making sure that the VBT
5454 * data is kept long enough, so that
5455 * intel_bios_encoder_is_dedicated_external() can be called directly
5456 * from intel_encoder_is_tc().
5457 */
5458 if (intel_bios_encoder_is_dedicated_external(devdata))
5459 dig_port->dedicated_external = true;
5460
5461 if (intel_encoder_is_tc(encoder)) {
5462 bool is_legacy =
5463 !intel_bios_encoder_supports_typec_usb(devdata) &&
5464 !intel_bios_encoder_supports_tbt(devdata);
5465
5466 if (!is_legacy && init_hdmi) {
5467 is_legacy = !init_dp;
5468
5469 drm_dbg_kms(display->drm,
5470 "VBT says port %c is non-legacy TC and has HDMI (with DP: %s), assume it's %s\n",
5471 port_name(port),
5472 str_yes_no(init_dp),
5473 is_legacy ? "legacy" : "non-legacy");
5474 }
5475
5476 encoder->suspend_complete = intel_ddi_tc_encoder_suspend_complete;
5477 encoder->shutdown_complete = intel_ddi_tc_encoder_shutdown_complete;
5478
5479 dig_port->lock = intel_tc_port_lock;
5480 dig_port->unlock = intel_tc_port_unlock;
5481
5482 if (intel_tc_port_init(dig_port, is_legacy) < 0)
5483 goto err_aux_ch_init;
5484 }
5485
5486 drm_WARN_ON(display->drm, port > PORT_I);
5487 dig_port->ddi_io_power_domain = intel_display_power_ddi_io_domain(display, port);
5488
5489 if (DISPLAY_VER(display) >= 11) {
5490 if (intel_encoder_is_tc(encoder))
5491 dig_port->connected = intel_tc_port_connected;
5492 else
5493 dig_port->connected = lpt_digital_port_connected;
5494 } else if (display->platform.geminilake || display->platform.broxton) {
5495 dig_port->connected = bdw_digital_port_connected;
5496 } else if (DISPLAY_VER(display) == 9) {
5497 dig_port->connected = lpt_digital_port_connected;
5498 } else if (display->platform.broadwell) {
5499 if (port == PORT_A)
5500 dig_port->connected = bdw_digital_port_connected;
5501 else
5502 dig_port->connected = lpt_digital_port_connected;
5503 } else if (display->platform.haswell) {
5504 if (port == PORT_A)
5505 dig_port->connected = hsw_digital_port_connected;
5506 else
5507 dig_port->connected = lpt_digital_port_connected;
5508 }
5509
5510 intel_infoframe_init(dig_port);
5511
5512 if (init_dp) {
5513 if (intel_ddi_init_dp_connector(dig_port))
5514 goto err_dp_connector_init;
5515
5516 dig_port->hpd_pulse = intel_dp_hpd_pulse;
5517
5518 if (dig_port->dp.mso_link_count)
5519 encoder->pipe_mask = intel_ddi_splitter_pipe_mask(display);
5520 }
5521
5522 /*
5523 * In theory we don't need the encoder->type check,
5524 * but leave it just in case we have some really bad VBTs...
5525 */
5526 if (encoder->type != INTEL_OUTPUT_EDP && init_hdmi) {
5527 if (intel_ddi_init_hdmi_connector(dig_port))
5528 goto err_hdmi_connector_init;
5529 }
5530
5531 return;
5532
5533 err_hdmi_connector_init:
5534 if (init_dp)
5535 intel_ddi_cleanup_dp_connector(dig_port);
5536 err_dp_connector_init:
5537 if (intel_encoder_is_tc(encoder))
5538 intel_tc_port_cleanup(dig_port);
5539 err_aux_ch_init:
5540 drm_encoder_cleanup(&encoder->base);
5541 kfree(dig_port);
5542 }
5543