1 // SPDX-License-Identifier: MIT
2 /*
3 * Copyright 2015 Advanced Micro Devices, Inc.
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining a
6 * copy of this software and associated documentation files (the "Software"),
7 * to deal in the Software without restriction, including without limitation
8 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
9 * and/or sell copies of the Software, and to permit persons to whom the
10 * Software is furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice shall be included in
13 * all copies or substantial portions of the 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 COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
19 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
20 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
21 * OTHER DEALINGS IN THE SOFTWARE.
22 *
23 * Authors: AMD
24 *
25 */
26
27 #include <acpi/video.h>
28
29 #include <linux/string.h>
30 #include <linux/acpi.h>
31 #include <linux/i2c.h>
32
33 #include <drm/drm_atomic.h>
34 #include <drm/drm_probe_helper.h>
35 #include <drm/amdgpu_drm.h>
36 #include <drm/drm_edid.h>
37 #include <drm/drm_fixed.h>
38
39 #include "dm_services.h"
40 #include "amdgpu.h"
41 #include "dc.h"
42 #include "amdgpu_dm.h"
43 #include "amdgpu_dm_irq.h"
44 #include "amdgpu_dm_mst_types.h"
45 #include "dpcd_defs.h"
46 #include "dc/inc/core_types.h"
47
48 #include "dm_helpers.h"
49 #include "ddc_service_types.h"
50 #include "clk_mgr.h"
51
52 #define MCCS_DEST_ADDR (0x6E >> 1)
53 #define MCCS_SRC_ADDR 0x51
54 #define MCCS_LENGTH_OFFSET 0x80
55 #define MCCS_MAX_DATA_SIZE 0x20
56
57 enum mccs_op_code {
58 MCCS_OP_CODE_VCP_REQUEST = 0x01,
59 MCCS_OP_CODE_VCP_REPLY = 0x02,
60 MCCS_OP_CODE_VCP_SET = 0x03,
61 MCCS_OP_CODE_VCP_RESET = 0x09,
62 MCCS_OP_CODE_CAP_REQUEST = 0xF3,
63 MCCS_OP_CODE_CAP_REPLY = 0xE3
64 };
65
66 enum mccs_op_buff_size {
67 MCCS_OP_BUFF_SIZE__WR_VCP_REQUEST = 5,
68 MCCS_OP_BUFF_SIZE_RD_VCP_REQUEST = 11,
69 MCCS_OP_BUFF_SIZE_WR_VCP_SET = 7,
70 };
71
72 enum vcp_reply_mask {
73 FREESYNC_SUPPORTED = 0x1
74 };
75
76 union vcp_reply {
77 struct {
78 unsigned char src_addr;
79 unsigned char length; /* Length is offset by MccsLengthOffs = 0x80 */
80 unsigned char reply_op_code; /* Should return MCCS_OP_CODE_VCP_REPLY = 0x02 */
81 unsigned char result_code; /* 00h No Error, 01h Unsupported VCP Code */
82 unsigned char request_code; /* Should return mccs vcp code sent in the vcp request */
83 unsigned char type_code; /* VCP type code: 00h Set parameter, 01h Momentary */
84 unsigned char max_value[2]; /* 2 bytes returning max value current value */
85 unsigned char present_value[2]; /* NOTE: Byte0 is MSB, Byte1 is LSB */
86 unsigned char check_sum;
87 } bytes;
88 unsigned char raw[11];
89 };
90
edid_extract_panel_id(struct edid * edid)91 static u32 edid_extract_panel_id(struct edid *edid)
92 {
93 return (u32)edid->mfg_id[0] << 24 |
94 (u32)edid->mfg_id[1] << 16 |
95 (u32)EDID_PRODUCT_ID(edid);
96 }
97
apply_edid_quirks(struct dc_link * link,struct edid * edid,struct dc_edid_caps * edid_caps)98 static void apply_edid_quirks(struct dc_link *link, struct edid *edid,
99 struct dc_edid_caps *edid_caps)
100 {
101 struct amdgpu_dm_connector *aconnector = link->priv;
102 struct drm_device *dev = aconnector->base.dev;
103 uint32_t panel_id = edid_extract_panel_id(edid);
104
105 switch (panel_id) {
106 /* Workaround for monitors that need a delay after detecting the link */
107 case drm_edid_encode_panel_id('G', 'B', 'T', 0x3215):
108 drm_dbg_driver(dev, "Add 10s delay for link detection for panel id %X\n", panel_id);
109 edid_caps->panel_patch.wait_after_dpcd_poweroff_ms = 10000;
110 break;
111 /* Workaround for some monitors which does not work well with FAMS */
112 case drm_edid_encode_panel_id('S', 'A', 'M', 0x0E5E):
113 case drm_edid_encode_panel_id('S', 'A', 'M', 0x7053):
114 case drm_edid_encode_panel_id('S', 'A', 'M', 0x71AC):
115 drm_dbg_driver(dev, "Disabling FAMS on monitor with panel id %X\n", panel_id);
116 edid_caps->panel_patch.disable_fams = true;
117 break;
118 /* Workaround for some monitors that do not clear DPCD 0x317 if FreeSync is unsupported */
119 case drm_edid_encode_panel_id('A', 'U', 'O', 0xA7AB):
120 case drm_edid_encode_panel_id('A', 'U', 'O', 0xE69B):
121 case drm_edid_encode_panel_id('B', 'O', 'E', 0x092A):
122 case drm_edid_encode_panel_id('L', 'G', 'D', 0x06D1):
123 case drm_edid_encode_panel_id('M', 'S', 'F', 0x1003):
124 drm_dbg_driver(dev, "Clearing DPCD 0x317 on monitor with panel id %X\n", panel_id);
125 edid_caps->panel_patch.remove_sink_ext_caps = true;
126 break;
127 case drm_edid_encode_panel_id('S', 'D', 'C', 0x4154):
128 case drm_edid_encode_panel_id('S', 'D', 'C', 0x4171):
129 drm_dbg_driver(dev, "Disabling VSC on monitor with panel id %X\n", panel_id);
130 edid_caps->panel_patch.disable_colorimetry = true;
131 break;
132 /* Workaround for monitors that get corrupted by the PHY SSC reduction */
133 case drm_edid_encode_panel_id('D', 'E', 'L', 0x4147):
134 drm_dbg_driver(dev, "Skip PHY SSC reduction on panel id %X\n", panel_id);
135 link->wa_flags.skip_phy_ssc_reduction = true;
136 break;
137 default:
138 return;
139 }
140 }
141
142 /**
143 * dm_helpers_parse_edid_caps() - Parse edid caps
144 *
145 * @link: current detected link
146 * @edid: [in] pointer to edid
147 * @edid_caps: [in] pointer to edid caps
148 *
149 * Return: void
150 */
dm_helpers_parse_edid_caps(struct dc_link * link,const struct dc_edid * edid,struct dc_edid_caps * edid_caps)151 enum dc_edid_status dm_helpers_parse_edid_caps(
152 struct dc_link *link,
153 const struct dc_edid *edid,
154 struct dc_edid_caps *edid_caps)
155 {
156 struct amdgpu_dm_connector *aconnector = link->priv;
157 struct drm_connector *connector = &aconnector->base;
158 struct edid *edid_buf = edid ? (struct edid *) edid->raw_edid : NULL;
159 struct cea_sad *sads;
160 int sad_count = -1;
161 int sadb_count = -1;
162 int i = 0;
163 uint8_t *sadb = NULL;
164
165 enum dc_edid_status result = EDID_OK;
166
167 if (!edid_caps || !edid)
168 return EDID_BAD_INPUT;
169
170 if (!drm_edid_is_valid(edid_buf))
171 result = EDID_BAD_CHECKSUM;
172
173 edid_caps->manufacturer_id = (uint16_t) edid_buf->mfg_id[0] |
174 ((uint16_t) edid_buf->mfg_id[1])<<8;
175 edid_caps->product_id = (uint16_t) edid_buf->prod_code[0] |
176 ((uint16_t) edid_buf->prod_code[1])<<8;
177 edid_caps->serial_number = edid_buf->serial;
178 edid_caps->manufacture_week = edid_buf->mfg_week;
179 edid_caps->manufacture_year = edid_buf->mfg_year;
180 edid_caps->analog = !(edid_buf->input & DRM_EDID_INPUT_DIGITAL);
181
182 drm_edid_get_monitor_name(edid_buf,
183 edid_caps->display_name,
184 AUDIO_INFO_DISPLAY_NAME_SIZE_IN_CHARS);
185
186 edid_caps->edid_hdmi = connector->display_info.is_hdmi;
187
188 if (edid_caps->edid_hdmi) {
189 populate_hdmi_info_from_connector(link->dc->config.enable_frl, &connector->display_info.hdmi, edid_caps);
190 drm_dbg_driver(connector->dev, "%s: HDMI_FRL [%s] max_frl_rate %d\n", __func__, connector->name, edid_caps->max_frl_rate);
191 if (edid_caps->frl_dsc_support)
192 drm_dbg_driver(connector->dev, "%s: HDMI_FRL_DSC [%s] frl_dsc_10bpc %d, frl_dsc_12bpc %d, frl_dsc_all_bpp %d, frl_dsc_native_420 %d, frl_dsc_max_slices %d, frl_dsc_max_frl_rate %d, frl_dsc_total_chunk_kbytes %d\n",
193 __func__, connector->name, edid_caps->frl_dsc_10bpc, edid_caps->frl_dsc_12bpc, \
194 edid_caps->frl_dsc_all_bpp, edid_caps->frl_dsc_native_420, edid_caps->frl_dsc_max_slices, \
195 edid_caps->frl_dsc_max_frl_rate, edid_caps->frl_dsc_total_chunk_kbytes);
196 }
197
198 apply_edid_quirks(link, edid_buf, edid_caps);
199
200 sad_count = drm_edid_to_sad((struct edid *) edid->raw_edid, &sads);
201 if (sad_count <= 0)
202 return result;
203
204 edid_caps->audio_mode_count = min(sad_count, DC_MAX_AUDIO_DESC_COUNT);
205 for (i = 0; i < edid_caps->audio_mode_count; ++i) {
206 struct cea_sad *sad = &sads[i];
207
208 edid_caps->audio_modes[i].format_code = sad->format;
209 edid_caps->audio_modes[i].channel_count = sad->channels + 1;
210 edid_caps->audio_modes[i].sample_rate = sad->freq;
211 edid_caps->audio_modes[i].sample_size = sad->byte2;
212 }
213
214 sadb_count = drm_edid_to_speaker_allocation((struct edid *) edid->raw_edid, &sadb);
215
216 if (sadb_count < 0) {
217 DRM_ERROR("Couldn't read Speaker Allocation Data Block: %d\n", sadb_count);
218 sadb_count = 0;
219 }
220
221 if (sadb_count)
222 edid_caps->speaker_flags = sadb[0];
223 else
224 edid_caps->speaker_flags = DEFAULT_SPEAKER_LOCATION;
225
226 kfree(sads);
227 kfree(sadb);
228
229 return result;
230 }
231
232 static void
fill_dc_mst_payload_table_from_drm(struct dc_link * link,bool enable,struct drm_dp_mst_atomic_payload * target_payload,struct dc_dp_mst_stream_allocation_table * table)233 fill_dc_mst_payload_table_from_drm(struct dc_link *link,
234 bool enable,
235 struct drm_dp_mst_atomic_payload *target_payload,
236 struct dc_dp_mst_stream_allocation_table *table)
237 {
238 struct dc_dp_mst_stream_allocation_table new_table = { 0 };
239 struct dc_dp_mst_stream_allocation *sa;
240 struct link_mst_stream_allocation_table copy_of_link_table =
241 link->mst_stream_alloc_table;
242
243 int i;
244 int current_hw_table_stream_cnt = copy_of_link_table.stream_count;
245 struct link_mst_stream_allocation *dc_alloc;
246
247 /* TODO: refactor to set link->mst_stream_alloc_table directly if possible.*/
248 if (enable) {
249 dc_alloc =
250 ©_of_link_table.stream_allocations[current_hw_table_stream_cnt];
251 dc_alloc->vcp_id = target_payload->vcpi;
252 dc_alloc->slot_count = target_payload->time_slots;
253 } else {
254 for (i = 0; i < copy_of_link_table.stream_count; i++) {
255 dc_alloc =
256 ©_of_link_table.stream_allocations[i];
257
258 if (dc_alloc->vcp_id == target_payload->vcpi) {
259 dc_alloc->vcp_id = 0;
260 dc_alloc->slot_count = 0;
261 break;
262 }
263 }
264 ASSERT(i != copy_of_link_table.stream_count);
265 }
266
267 /* Fill payload info*/
268 for (i = 0; i < MAX_CONTROLLER_NUM; i++) {
269 dc_alloc =
270 ©_of_link_table.stream_allocations[i];
271 if (dc_alloc->vcp_id > 0 && dc_alloc->slot_count > 0) {
272 sa = &new_table.stream_allocations[new_table.stream_count];
273 sa->slot_count = dc_alloc->slot_count;
274 sa->vcp_id = dc_alloc->vcp_id;
275 new_table.stream_count++;
276 }
277 }
278
279 /* Overwrite the old table */
280 *table = new_table;
281 }
282
dm_helpers_dp_update_branch_info(struct dc_context * ctx,const struct dc_link * link)283 void dm_helpers_dp_update_branch_info(
284 struct dc_context *ctx,
285 const struct dc_link *link)
286 {}
287
dm_helpers_construct_old_payload(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_topology_state * mst_state,struct drm_dp_mst_atomic_payload * new_payload,struct drm_dp_mst_atomic_payload * old_payload)288 static void dm_helpers_construct_old_payload(
289 struct drm_dp_mst_topology_mgr *mgr,
290 struct drm_dp_mst_topology_state *mst_state,
291 struct drm_dp_mst_atomic_payload *new_payload,
292 struct drm_dp_mst_atomic_payload *old_payload)
293 {
294 struct drm_dp_mst_atomic_payload *pos;
295 int pbn_per_slot = dfixed_trunc(mst_state->pbn_div);
296 u8 next_payload_vc_start = mgr->next_start_slot;
297 u8 payload_vc_start = new_payload->vc_start_slot;
298 u8 allocated_time_slots;
299
300 *old_payload = *new_payload;
301
302 /* Set correct time_slots/PBN of old payload.
303 * other fields (delete & dsc_enabled) in
304 * struct drm_dp_mst_atomic_payload are don't care fields
305 * while calling drm_dp_remove_payload_part2()
306 */
307 list_for_each_entry(pos, &mst_state->payloads, next) {
308 if (pos != new_payload &&
309 pos->vc_start_slot > payload_vc_start &&
310 pos->vc_start_slot < next_payload_vc_start)
311 next_payload_vc_start = pos->vc_start_slot;
312 }
313
314 allocated_time_slots = next_payload_vc_start - payload_vc_start;
315
316 old_payload->time_slots = allocated_time_slots;
317 old_payload->pbn = allocated_time_slots * pbn_per_slot;
318 }
319
320 /*
321 * Writes payload allocation table in immediate downstream device.
322 */
dm_helpers_dp_mst_write_payload_allocation_table(struct dc_context * ctx,const struct dc_stream_state * stream,struct dc_dp_mst_stream_allocation_table * proposed_table,bool enable)323 bool dm_helpers_dp_mst_write_payload_allocation_table(
324 struct dc_context *ctx,
325 const struct dc_stream_state *stream,
326 struct dc_dp_mst_stream_allocation_table *proposed_table,
327 bool enable)
328 {
329 struct amdgpu_dm_connector *aconnector;
330 struct drm_dp_mst_topology_state *mst_state;
331 struct drm_dp_mst_atomic_payload *target_payload, *new_payload, old_payload;
332 struct drm_dp_mst_topology_mgr *mst_mgr;
333
334 aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
335 /* Accessing the connector state is required for vcpi_slots allocation
336 * and directly relies on behaviour in commit check
337 * that blocks before commit guaranteeing that the state
338 * is not gonna be swapped while still in use in commit tail
339 */
340
341 if (!aconnector || !aconnector->mst_root)
342 return false;
343
344 mst_mgr = &aconnector->mst_root->mst_mgr;
345 mst_state = to_drm_dp_mst_topology_state(mst_mgr->base.state);
346 new_payload = drm_atomic_get_mst_payload_state(mst_state, aconnector->mst_output_port);
347
348 if (enable) {
349 target_payload = new_payload;
350
351 /* It's OK for this to fail */
352 drm_dp_add_payload_part1(mst_mgr, mst_state, new_payload);
353 } else {
354 /* construct old payload by VCPI*/
355 dm_helpers_construct_old_payload(mst_mgr, mst_state,
356 new_payload, &old_payload);
357 target_payload = &old_payload;
358
359 drm_dp_remove_payload_part1(mst_mgr, mst_state, new_payload);
360 }
361
362 /* mst_mgr->->payloads are VC payload notify MST branch using DPCD or
363 * AUX message. The sequence is slot 1-63 allocated sequence for each
364 * stream. AMD ASIC stream slot allocation should follow the same
365 * sequence. copy DRM MST allocation to dc
366 */
367 fill_dc_mst_payload_table_from_drm(stream->link, enable, target_payload, proposed_table);
368
369 return true;
370 }
371
372 /*
373 * poll pending down reply
374 */
dm_helpers_dp_mst_poll_pending_down_reply(struct dc_context * ctx,const struct dc_link * link)375 void dm_helpers_dp_mst_poll_pending_down_reply(
376 struct dc_context *ctx,
377 const struct dc_link *link)
378 {}
379
380 /*
381 * Clear payload allocation table before enable MST DP link.
382 */
dm_helpers_dp_mst_clear_payload_allocation_table(struct dc_context * ctx,const struct dc_link * link)383 void dm_helpers_dp_mst_clear_payload_allocation_table(
384 struct dc_context *ctx,
385 const struct dc_link *link)
386 {}
387
388 /*
389 * Polls for ACT (allocation change trigger) handled and sends
390 * ALLOCATE_PAYLOAD message.
391 */
dm_helpers_dp_mst_poll_for_allocation_change_trigger(struct dc_context * ctx,const struct dc_stream_state * stream)392 enum act_return_status dm_helpers_dp_mst_poll_for_allocation_change_trigger(
393 struct dc_context *ctx,
394 const struct dc_stream_state *stream)
395 {
396 struct amdgpu_dm_connector *aconnector;
397 struct drm_dp_mst_topology_mgr *mst_mgr;
398 int ret;
399
400 aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
401
402 if (!aconnector || !aconnector->mst_root)
403 return ACT_FAILED;
404
405 mst_mgr = &aconnector->mst_root->mst_mgr;
406
407 if (!mst_mgr->mst_state)
408 return ACT_FAILED;
409
410 ret = drm_dp_check_act_status(mst_mgr);
411
412 if (ret)
413 return ACT_FAILED;
414
415 return ACT_SUCCESS;
416 }
417
dm_helpers_dp_mst_send_payload_allocation(struct dc_context * ctx,const struct dc_stream_state * stream)418 void dm_helpers_dp_mst_send_payload_allocation(
419 struct dc_context *ctx,
420 const struct dc_stream_state *stream)
421 {
422 struct amdgpu_dm_connector *aconnector;
423 struct drm_dp_mst_topology_state *mst_state;
424 struct drm_dp_mst_topology_mgr *mst_mgr;
425 struct drm_dp_mst_atomic_payload *new_payload;
426 enum mst_progress_status set_flag = MST_ALLOCATE_NEW_PAYLOAD;
427 enum mst_progress_status clr_flag = MST_CLEAR_ALLOCATED_PAYLOAD;
428 int ret = 0;
429
430 aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
431
432 if (!aconnector || !aconnector->mst_root)
433 return;
434
435 mst_mgr = &aconnector->mst_root->mst_mgr;
436 mst_state = to_drm_dp_mst_topology_state(mst_mgr->base.state);
437 new_payload = drm_atomic_get_mst_payload_state(mst_state, aconnector->mst_output_port);
438
439 ret = drm_dp_add_payload_part2(mst_mgr, new_payload);
440
441 if (ret) {
442 amdgpu_dm_set_mst_status(&aconnector->mst_status,
443 set_flag, false);
444 } else {
445 amdgpu_dm_set_mst_status(&aconnector->mst_status,
446 set_flag, true);
447 amdgpu_dm_set_mst_status(&aconnector->mst_status,
448 clr_flag, false);
449 }
450 }
451
dm_helpers_dp_mst_update_mst_mgr_for_deallocation(struct dc_context * ctx,const struct dc_stream_state * stream)452 void dm_helpers_dp_mst_update_mst_mgr_for_deallocation(
453 struct dc_context *ctx,
454 const struct dc_stream_state *stream)
455 {
456 struct amdgpu_dm_connector *aconnector;
457 struct drm_dp_mst_topology_state *mst_state;
458 struct drm_dp_mst_topology_mgr *mst_mgr;
459 struct drm_dp_mst_atomic_payload *new_payload, old_payload;
460 enum mst_progress_status set_flag = MST_CLEAR_ALLOCATED_PAYLOAD;
461 enum mst_progress_status clr_flag = MST_ALLOCATE_NEW_PAYLOAD;
462
463 aconnector = (struct amdgpu_dm_connector *)stream->dm_stream_context;
464
465 if (!aconnector || !aconnector->mst_root)
466 return;
467
468 mst_mgr = &aconnector->mst_root->mst_mgr;
469 mst_state = to_drm_dp_mst_topology_state(mst_mgr->base.state);
470 new_payload = drm_atomic_get_mst_payload_state(mst_state, aconnector->mst_output_port);
471 dm_helpers_construct_old_payload(mst_mgr, mst_state,
472 new_payload, &old_payload);
473
474 drm_dp_remove_payload_part2(mst_mgr, mst_state, &old_payload, new_payload);
475
476 amdgpu_dm_set_mst_status(&aconnector->mst_status, set_flag, true);
477 amdgpu_dm_set_mst_status(&aconnector->mst_status, clr_flag, false);
478 }
479
dm_dtn_log_begin(struct dc_context * ctx,struct dc_log_buffer_ctx * log_ctx)480 void dm_dtn_log_begin(struct dc_context *ctx,
481 struct dc_log_buffer_ctx *log_ctx)
482 {
483 static const char msg[] = "[dtn begin]\n";
484
485 if (!log_ctx) {
486 pr_info("%s", msg);
487 return;
488 }
489
490 dm_dtn_log_append_v(ctx, log_ctx, "%s", msg);
491 }
492
493 __printf(3, 4)
dm_dtn_log_append_v(struct dc_context * ctx,struct dc_log_buffer_ctx * log_ctx,const char * msg,...)494 void dm_dtn_log_append_v(struct dc_context *ctx,
495 struct dc_log_buffer_ctx *log_ctx,
496 const char *msg, ...)
497 {
498 va_list args;
499 size_t total;
500 int n;
501
502 if (!log_ctx) {
503 /* No context, redirect to dmesg. */
504 struct va_format vaf;
505
506 vaf.fmt = msg;
507 vaf.va = &args;
508
509 va_start(args, msg);
510 pr_info("%pV", &vaf);
511 va_end(args);
512
513 return;
514 }
515
516 /* Measure the output. */
517 va_start(args, msg);
518 n = vsnprintf(NULL, 0, msg, args);
519 va_end(args);
520
521 if (n <= 0)
522 return;
523
524 /* Reallocate the string buffer as needed. */
525 total = log_ctx->pos + n + 1;
526
527 if (total > log_ctx->size) {
528 char *buf = kvcalloc(total, sizeof(char), GFP_KERNEL);
529
530 if (buf) {
531 memcpy(buf, log_ctx->buf, log_ctx->pos);
532 kfree(log_ctx->buf);
533
534 log_ctx->buf = buf;
535 log_ctx->size = total;
536 }
537 }
538
539 if (!log_ctx->buf)
540 return;
541
542 /* Write the formatted string to the log buffer. */
543 va_start(args, msg);
544 n = vscnprintf(
545 log_ctx->buf + log_ctx->pos,
546 log_ctx->size - log_ctx->pos,
547 msg,
548 args);
549 va_end(args);
550
551 if (n > 0)
552 log_ctx->pos += n;
553 }
554
dm_dtn_log_end(struct dc_context * ctx,struct dc_log_buffer_ctx * log_ctx)555 void dm_dtn_log_end(struct dc_context *ctx,
556 struct dc_log_buffer_ctx *log_ctx)
557 {
558 static const char msg[] = "[dtn end]\n";
559
560 if (!log_ctx) {
561 pr_info("%s", msg);
562 return;
563 }
564
565 dm_dtn_log_append_v(ctx, log_ctx, "%s", msg);
566 }
567
dm_helpers_dp_mst_start_top_mgr(struct dc_context * ctx,const struct dc_link * link,bool boot)568 bool dm_helpers_dp_mst_start_top_mgr(
569 struct dc_context *ctx,
570 const struct dc_link *link,
571 bool boot)
572 {
573 struct amdgpu_dm_connector *aconnector = link->priv;
574 int ret;
575
576 if (!aconnector) {
577 DRM_ERROR("Failed to find connector for link!");
578 return false;
579 }
580
581 if (boot) {
582 DRM_INFO("DM_MST: Differing MST start on aconnector: %p [id: %d]\n",
583 aconnector, aconnector->base.base.id);
584 return true;
585 }
586
587 DRM_INFO("DM_MST: starting TM on aconnector: %p [id: %d]\n",
588 aconnector, aconnector->base.base.id);
589
590 ret = drm_dp_mst_topology_mgr_set_mst(&aconnector->mst_mgr, true);
591 if (ret < 0) {
592 DRM_ERROR("DM_MST: Failed to set the device into MST mode!");
593 return false;
594 }
595
596 DRM_INFO("DM_MST: DP%x, %d-lane link detected\n", aconnector->mst_mgr.dpcd[0],
597 aconnector->mst_mgr.dpcd[2] & DP_MAX_LANE_COUNT_MASK);
598
599 return true;
600 }
601
dm_helpers_dp_mst_stop_top_mgr(struct dc_context * ctx,struct dc_link * link)602 bool dm_helpers_dp_mst_stop_top_mgr(
603 struct dc_context *ctx,
604 struct dc_link *link)
605 {
606 struct amdgpu_dm_connector *aconnector = link->priv;
607
608 if (!aconnector) {
609 DRM_ERROR("Failed to find connector for link!");
610 return false;
611 }
612
613 DRM_INFO("DM_MST: stopping TM on aconnector: %p [id: %d]\n",
614 aconnector, aconnector->base.base.id);
615
616 if (aconnector->mst_mgr.mst_state == true) {
617 drm_dp_mst_topology_mgr_set_mst(&aconnector->mst_mgr, false);
618 link->cur_link_settings.lane_count = 0;
619 }
620
621 return false;
622 }
623
dm_helpers_dp_read_dpcd(struct dc_context * ctx,const struct dc_link * link,uint32_t address,uint8_t * data,uint32_t size)624 bool dm_helpers_dp_read_dpcd(
625 struct dc_context *ctx,
626 const struct dc_link *link,
627 uint32_t address,
628 uint8_t *data,
629 uint32_t size)
630 {
631
632 struct amdgpu_dm_connector *aconnector = link->priv;
633
634 if (!aconnector)
635 return false;
636
637 return drm_dp_dpcd_read(&aconnector->dm_dp_aux.aux, address, data,
638 size) == size;
639 }
640
dm_helpers_dp_write_dpcd(struct dc_context * ctx,const struct dc_link * link,uint32_t address,const uint8_t * data,uint32_t size)641 bool dm_helpers_dp_write_dpcd(
642 struct dc_context *ctx,
643 const struct dc_link *link,
644 uint32_t address,
645 const uint8_t *data,
646 uint32_t size)
647 {
648 struct amdgpu_dm_connector *aconnector = link->priv;
649
650 if (!aconnector)
651 return false;
652
653 return drm_dp_dpcd_write(&aconnector->dm_dp_aux.aux,
654 address, (uint8_t *)data, size) > 0;
655 }
656
dm_helpers_submit_i2c(struct dc_context * ctx,const struct dc_link * link,struct i2c_command * cmd)657 bool dm_helpers_submit_i2c(
658 struct dc_context *ctx,
659 const struct dc_link *link,
660 struct i2c_command *cmd)
661 {
662 struct amdgpu_dm_connector *aconnector = link->priv;
663 struct i2c_msg *msgs;
664 int i = 0;
665 int num = cmd->number_of_payloads;
666 bool result;
667
668 if (!aconnector) {
669 DRM_ERROR("Failed to find connector for link!");
670 return false;
671 }
672
673 msgs = kzalloc_objs(struct i2c_msg, num);
674
675 if (!msgs)
676 return false;
677
678 for (i = 0; i < num; i++) {
679 msgs[i].flags = cmd->payloads[i].write ? 0 : I2C_M_RD;
680 msgs[i].addr = cmd->payloads[i].address;
681 msgs[i].len = cmd->payloads[i].length;
682 msgs[i].buf = cmd->payloads[i].data;
683 }
684
685 result = i2c_transfer(&aconnector->i2c->base, msgs, num) == num;
686
687 kfree(msgs);
688
689 return result;
690 }
691
dm_helpers_execute_fused_io(struct dc_context * ctx,struct dc_link * link,union dmub_rb_cmd * commands,uint8_t count,uint32_t timeout_us)692 bool dm_helpers_execute_fused_io(
693 struct dc_context *ctx,
694 struct dc_link *link,
695 union dmub_rb_cmd *commands,
696 uint8_t count,
697 uint32_t timeout_us
698 )
699 {
700 struct amdgpu_device *dev = ctx->driver_context;
701
702 return amdgpu_dm_execute_fused_io(dev, link, commands, count, timeout_us);
703 }
704
execute_synaptics_rc_command(struct drm_dp_aux * aux,bool is_write_cmd,unsigned char cmd,unsigned int length,unsigned int offset,unsigned char * data)705 static bool execute_synaptics_rc_command(struct drm_dp_aux *aux,
706 bool is_write_cmd,
707 unsigned char cmd,
708 unsigned int length,
709 unsigned int offset,
710 unsigned char *data)
711 {
712 bool success = false;
713 unsigned char rc_data[16] = {0};
714 unsigned char rc_offset[4] = {0};
715 unsigned char rc_length[2] = {0};
716 unsigned char rc_cmd = 0;
717 unsigned char rc_result = 0xFF;
718 unsigned char i = 0;
719 int ret;
720
721 if (is_write_cmd) {
722 // write rc data
723 memmove(rc_data, data, length);
724 ret = drm_dp_dpcd_write(aux, SYNAPTICS_RC_DATA, rc_data, sizeof(rc_data));
725 if (ret < 0)
726 goto err;
727 }
728
729 // write rc offset
730 rc_offset[0] = (unsigned char) offset & 0xFF;
731 rc_offset[1] = (unsigned char) (offset >> 8) & 0xFF;
732 rc_offset[2] = (unsigned char) (offset >> 16) & 0xFF;
733 rc_offset[3] = (unsigned char) (offset >> 24) & 0xFF;
734 ret = drm_dp_dpcd_write(aux, SYNAPTICS_RC_OFFSET, rc_offset, sizeof(rc_offset));
735 if (ret < 0)
736 goto err;
737
738 // write rc length
739 rc_length[0] = (unsigned char) length & 0xFF;
740 rc_length[1] = (unsigned char) (length >> 8) & 0xFF;
741 ret = drm_dp_dpcd_write(aux, SYNAPTICS_RC_LENGTH, rc_length, sizeof(rc_length));
742 if (ret < 0)
743 goto err;
744
745 // write rc cmd
746 rc_cmd = cmd | 0x80;
747 ret = drm_dp_dpcd_write(aux, SYNAPTICS_RC_COMMAND, &rc_cmd, sizeof(rc_cmd));
748 if (ret < 0)
749 goto err;
750
751 // poll until active is 0
752 for (i = 0; i < 10; i++) {
753 drm_dp_dpcd_read(aux, SYNAPTICS_RC_COMMAND, &rc_cmd, sizeof(rc_cmd));
754 if (rc_cmd == cmd)
755 // active is 0
756 break;
757 msleep(10);
758 }
759
760 // read rc result
761 drm_dp_dpcd_read(aux, SYNAPTICS_RC_RESULT, &rc_result, sizeof(rc_result));
762 success = (rc_result == 0);
763
764 if (success && !is_write_cmd) {
765 // read rc data
766 drm_dp_dpcd_read(aux, SYNAPTICS_RC_DATA, data, length);
767 }
768
769 drm_dbg_dp(aux->drm_dev, "success = %d\n", success);
770
771 return success;
772
773 err:
774 DRM_ERROR("%s: write cmd ..., err = %d\n", __func__, ret);
775 return false;
776 }
777
apply_synaptics_fifo_reset_wa(struct drm_dp_aux * aux)778 static void apply_synaptics_fifo_reset_wa(struct drm_dp_aux *aux)
779 {
780 unsigned char data[16] = {0};
781
782 drm_dbg_dp(aux->drm_dev, "Start\n");
783
784 // Step 2
785 data[0] = 'P';
786 data[1] = 'R';
787 data[2] = 'I';
788 data[3] = 'U';
789 data[4] = 'S';
790
791 if (!execute_synaptics_rc_command(aux, true, 0x01, 5, 0, data))
792 return;
793
794 // Step 3 and 4
795 if (!execute_synaptics_rc_command(aux, false, 0x31, 4, 0x220998, data))
796 return;
797
798 data[0] &= (~(1 << 1)); // set bit 1 to 0
799 if (!execute_synaptics_rc_command(aux, true, 0x21, 4, 0x220998, data))
800 return;
801
802 if (!execute_synaptics_rc_command(aux, false, 0x31, 4, 0x220D98, data))
803 return;
804
805 data[0] &= (~(1 << 1)); // set bit 1 to 0
806 if (!execute_synaptics_rc_command(aux, true, 0x21, 4, 0x220D98, data))
807 return;
808
809 if (!execute_synaptics_rc_command(aux, false, 0x31, 4, 0x221198, data))
810 return;
811
812 data[0] &= (~(1 << 1)); // set bit 1 to 0
813 if (!execute_synaptics_rc_command(aux, true, 0x21, 4, 0x221198, data))
814 return;
815
816 // Step 3 and 5
817 if (!execute_synaptics_rc_command(aux, false, 0x31, 4, 0x220998, data))
818 return;
819
820 data[0] |= (1 << 1); // set bit 1 to 1
821 if (!execute_synaptics_rc_command(aux, true, 0x21, 4, 0x220998, data))
822 return;
823
824 if (!execute_synaptics_rc_command(aux, false, 0x31, 4, 0x220D98, data))
825 return;
826
827 data[0] |= (1 << 1); // set bit 1 to 1
828
829 if (!execute_synaptics_rc_command(aux, false, 0x31, 4, 0x221198, data))
830 return;
831
832 data[0] |= (1 << 1); // set bit 1 to 1
833 if (!execute_synaptics_rc_command(aux, true, 0x21, 4, 0x221198, data))
834 return;
835
836 // Step 6
837 if (!execute_synaptics_rc_command(aux, true, 0x02, 0, 0, NULL))
838 return;
839
840 drm_dbg_dp(aux->drm_dev, "Done\n");
841 }
842
843 /* MST Dock */
844 static const uint8_t SYNAPTICS_DEVICE_ID[] = "SYNA";
845
write_dsc_enable_synaptics_non_virtual_dpcd_mst(struct drm_dp_aux * aux,const struct dc_stream_state * stream,bool enable)846 static uint8_t write_dsc_enable_synaptics_non_virtual_dpcd_mst(
847 struct drm_dp_aux *aux,
848 const struct dc_stream_state *stream,
849 bool enable)
850 {
851 uint8_t ret = 0;
852
853 drm_dbg_dp(aux->drm_dev,
854 "MST_DSC Configure DSC to non-virtual dpcd synaptics\n");
855
856 if (enable) {
857 /* When DSC is enabled on previous boot and reboot with the hub,
858 * there is a chance that Synaptics hub gets stuck during reboot sequence.
859 * Applying a workaround to reset Synaptics SDP fifo before enabling the first stream
860 */
861 if (!stream->link->link_status.link_active &&
862 memcmp(stream->link->dpcd_caps.branch_dev_name,
863 (int8_t *)SYNAPTICS_DEVICE_ID, 4) == 0)
864 apply_synaptics_fifo_reset_wa(aux);
865
866 ret = drm_dp_dpcd_write(aux, DP_DSC_ENABLE, &enable, 1);
867 DRM_INFO("MST_DSC Send DSC enable to synaptics\n");
868
869 } else {
870 /* Synaptics hub not support virtual dpcd,
871 * external monitor occur garbage while disable DSC,
872 * Disable DSC only when entire link status turn to false,
873 */
874 if (!stream->link->link_status.link_active) {
875 ret = drm_dp_dpcd_write(aux, DP_DSC_ENABLE, &enable, 1);
876 DRM_INFO("MST_DSC Send DSC disable to synaptics\n");
877 }
878 }
879
880 return ret;
881 }
882
dm_helpers_dp_write_dsc_enable(struct dc_context * ctx,const struct dc_stream_state * stream,bool enable)883 bool dm_helpers_dp_write_dsc_enable(
884 struct dc_context *ctx,
885 const struct dc_stream_state *stream,
886 bool enable)
887 {
888 static const uint8_t DSC_DISABLE;
889 static const uint8_t DSC_DECODING = 0x01;
890 static const uint8_t DSC_PASSTHROUGH = 0x02;
891
892 struct amdgpu_dm_connector *aconnector =
893 (struct amdgpu_dm_connector *)stream->dm_stream_context;
894 struct drm_device *dev = aconnector->base.dev;
895 struct drm_dp_mst_port *port;
896 uint8_t enable_dsc = enable ? DSC_DECODING : DSC_DISABLE;
897 uint8_t enable_passthrough = enable ? DSC_PASSTHROUGH : DSC_DISABLE;
898 uint8_t ret = 0;
899
900 if (stream->signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
901 if (!aconnector->dsc_aux)
902 return false;
903
904 // apply w/a to synaptics
905 if (needs_dsc_aux_workaround(aconnector->dc_link) &&
906 (aconnector->mst_downstream_port_present.byte & 0x7) != 0x3)
907 return write_dsc_enable_synaptics_non_virtual_dpcd_mst(
908 aconnector->dsc_aux, stream, enable_dsc);
909
910 port = aconnector->mst_output_port;
911
912 if (enable) {
913 if (port->passthrough_aux) {
914 ret = drm_dp_dpcd_write(port->passthrough_aux,
915 DP_DSC_ENABLE,
916 &enable_passthrough, 1);
917 drm_dbg_dp(dev,
918 "MST_DSC Sent DSC pass-through enable to virtual dpcd port, ret = %u\n",
919 ret);
920 }
921
922 ret = drm_dp_dpcd_write(aconnector->dsc_aux,
923 DP_DSC_ENABLE, &enable_dsc, 1);
924 drm_dbg_dp(dev,
925 "MST_DSC Sent DSC decoding enable to %s port, ret = %u\n",
926 (port->passthrough_aux) ? "remote RX" :
927 "virtual dpcd",
928 ret);
929 } else {
930 ret = drm_dp_dpcd_write(aconnector->dsc_aux,
931 DP_DSC_ENABLE, &enable_dsc, 1);
932 drm_dbg_dp(dev,
933 "MST_DSC Sent DSC decoding disable to %s port, ret = %u\n",
934 (port->passthrough_aux) ? "remote RX" :
935 "virtual dpcd",
936 ret);
937
938 if (port->passthrough_aux) {
939 ret = drm_dp_dpcd_write(port->passthrough_aux,
940 DP_DSC_ENABLE,
941 &enable_passthrough, 1);
942 drm_dbg_dp(dev,
943 "MST_DSC Sent DSC pass-through disable to virtual dpcd port, ret = %u\n",
944 ret);
945 }
946 }
947 }
948
949 if (stream->signal == SIGNAL_TYPE_DISPLAY_PORT || stream->signal == SIGNAL_TYPE_EDP) {
950 if (stream->sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_NONE) {
951 ret = dm_helpers_dp_write_dpcd(ctx, stream->link, DP_DSC_ENABLE, &enable_dsc, 1);
952 drm_dbg_dp(dev,
953 "SST_DSC Send DSC %s to SST RX\n",
954 enable_dsc ? "enable" : "disable");
955 } else if (stream->sink->link->dpcd_caps.dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER) {
956 ret = dm_helpers_dp_write_dpcd(ctx, stream->link, DP_DSC_ENABLE, &enable_dsc, 1);
957 drm_dbg_dp(dev,
958 "SST_DSC Send DSC %s to DP-HDMI PCON\n",
959 enable_dsc ? "enable" : "disable");
960 }
961 }
962
963 return ret;
964 }
965
dm_helpers_dp_write_hblank_reduction(struct dc_context * ctx,const struct dc_stream_state * stream)966 bool dm_helpers_dp_write_hblank_reduction(struct dc_context *ctx, const struct dc_stream_state *stream)
967 {
968 // TODO
969 return false;
970 }
971
dm_helpers_is_dp_sink_present(struct dc_link * link)972 bool dm_helpers_is_dp_sink_present(struct dc_link *link)
973 {
974 bool dp_sink_present;
975 struct amdgpu_dm_connector *aconnector = link->priv;
976
977 if (!aconnector) {
978 DRM_ERROR("Failed to find connector for link!");
979 return true;
980 }
981
982 mutex_lock(&aconnector->dm_dp_aux.aux.hw_mutex);
983 dp_sink_present = dc_link_is_dp_sink_present(link);
984 mutex_unlock(&aconnector->dm_dp_aux.aux.hw_mutex);
985 return dp_sink_present;
986 }
987
988 static int
dm_helpers_probe_acpi_edid(void * data,u8 * buf,unsigned int block,size_t len)989 dm_helpers_probe_acpi_edid(void *data, u8 *buf, unsigned int block, size_t len)
990 {
991 struct drm_connector *connector = data;
992 struct acpi_device *acpidev = ACPI_COMPANION(connector->dev->dev);
993 unsigned short start = block * EDID_LENGTH;
994 struct edid *edid;
995 int r;
996
997 if (!acpidev)
998 return -ENODEV;
999
1000 /* fetch the entire edid from BIOS */
1001 r = acpi_video_get_edid(acpidev, ACPI_VIDEO_DISPLAY_LCD, -1, (void *)&edid);
1002 if (r < 0) {
1003 drm_dbg(connector->dev, "Failed to get EDID from ACPI: %d\n", r);
1004 return r;
1005 }
1006 if (len > r || start > r || start + len > r) {
1007 r = -EINVAL;
1008 goto cleanup;
1009 }
1010
1011 /* sanity check */
1012 if (edid->revision < 4 || !(edid->input & DRM_EDID_INPUT_DIGITAL) ||
1013 (edid->input & DRM_EDID_DIGITAL_TYPE_MASK) == DRM_EDID_DIGITAL_TYPE_UNDEF) {
1014 r = -EINVAL;
1015 goto cleanup;
1016 }
1017
1018 memcpy(buf, (void *)edid + start, len);
1019 r = 0;
1020
1021 cleanup:
1022 kfree(edid);
1023
1024 return r;
1025 }
1026
1027 static const struct drm_edid *
dm_helpers_read_acpi_edid(struct amdgpu_dm_connector * aconnector)1028 dm_helpers_read_acpi_edid(struct amdgpu_dm_connector *aconnector)
1029 {
1030 struct drm_connector *connector = &aconnector->base;
1031
1032 if (amdgpu_dc_debug_mask & DC_DISABLE_ACPI_EDID)
1033 return NULL;
1034
1035 switch (connector->connector_type) {
1036 case DRM_MODE_CONNECTOR_LVDS:
1037 case DRM_MODE_CONNECTOR_eDP:
1038 break;
1039 default:
1040 return NULL;
1041 }
1042
1043 if (connector->force == DRM_FORCE_OFF)
1044 return NULL;
1045
1046 return drm_edid_read_custom(connector, dm_helpers_probe_acpi_edid, connector);
1047 }
1048
1049 static const struct drm_edid *
dm_helpers_read_vbios_hardcoded_edid(struct dc_link * link,struct amdgpu_dm_connector * aconnector)1050 dm_helpers_read_vbios_hardcoded_edid(struct dc_link *link, struct amdgpu_dm_connector *aconnector)
1051 {
1052 struct dc_bios *bios = link->ctx->dc_bios;
1053 struct embedded_panel_info info;
1054 const struct drm_edid *edid;
1055 enum bp_result r;
1056
1057 if (!dc_is_embedded_signal(link->connector_signal) ||
1058 !bios->funcs->get_embedded_panel_info)
1059 return NULL;
1060
1061 memset(&info, 0, sizeof(info));
1062 r = bios->funcs->get_embedded_panel_info(bios, &info);
1063
1064 if (r != BP_RESULT_OK) {
1065 dm_error("Error when reading embedded panel info: %u\n", r);
1066 return NULL;
1067 }
1068
1069 if (!info.fake_edid || !info.fake_edid_size) {
1070 dm_error("Embedded panel info doesn't contain an EDID\n");
1071 return NULL;
1072 }
1073
1074 edid = drm_edid_alloc(info.fake_edid, info.fake_edid_size);
1075
1076 if (!drm_edid_valid(edid)) {
1077 dm_error("EDID from embedded panel info is invalid\n");
1078 drm_edid_free(edid);
1079 return NULL;
1080 }
1081
1082 aconnector->base.display_info.width_mm = info.panel_width_mm;
1083 aconnector->base.display_info.height_mm = info.panel_height_mm;
1084
1085 return edid;
1086 }
1087
get_max_frl_rate(uint8_t max_lanes,uint8_t max_rate_per_lane)1088 static uint8_t get_max_frl_rate(uint8_t max_lanes, uint8_t max_rate_per_lane)
1089 {
1090 uint8_t max_frl_rate;
1091
1092 if ((max_lanes == 3) && (max_rate_per_lane == 3))
1093 max_frl_rate = 1;
1094 else if ((max_lanes == 3) && (max_rate_per_lane == 6))
1095 max_frl_rate = 2;
1096 else if ((max_lanes == 4) && (max_rate_per_lane == 6))
1097 max_frl_rate = 3;
1098 else if ((max_lanes == 4) && (max_rate_per_lane == 8))
1099 max_frl_rate = 4;
1100 else if ((max_lanes == 4) && (max_rate_per_lane == 10))
1101 max_frl_rate = 5;
1102 else if ((max_lanes == 4) && (max_rate_per_lane == 12))
1103 max_frl_rate = 6;
1104 else
1105 max_frl_rate = 0;
1106
1107 return max_frl_rate;
1108 }
1109
get_dsc_max_slices(uint8_t max_slices,int clk_per_slice)1110 static uint8_t get_dsc_max_slices(uint8_t max_slices, int clk_per_slice)
1111 {
1112 uint8_t dsc_max_slices;
1113
1114 if ((max_slices == 1) && (clk_per_slice == 340))
1115 dsc_max_slices = 1;
1116 else if ((max_slices == 2) && (clk_per_slice == 340))
1117 dsc_max_slices = 2;
1118 else if ((max_slices == 4) && (clk_per_slice == 340))
1119 dsc_max_slices = 3;
1120 else if ((max_slices == 8) && (clk_per_slice == 340))
1121 dsc_max_slices = 4;
1122 else if ((max_slices == 8) && (clk_per_slice == 400))
1123 dsc_max_slices = 5;
1124 else if ((max_slices == 12) && (clk_per_slice == 400))
1125 dsc_max_slices = 6;
1126 else if ((max_slices == 16) && (clk_per_slice == 400))
1127 dsc_max_slices = 7;
1128 else
1129 dsc_max_slices = 0;
1130
1131 return dsc_max_slices;
1132 }
1133
populate_hdmi_info_from_connector(bool enable_frl,struct drm_hdmi_info * hdmi,struct dc_edid_caps * edid_caps)1134 void populate_hdmi_info_from_connector(bool enable_frl, struct drm_hdmi_info *hdmi, struct dc_edid_caps *edid_caps)
1135 {
1136 edid_caps->scdc_present = hdmi->scdc.supported;
1137 if (enable_frl) {
1138 edid_caps->max_frl_rate = get_max_frl_rate(hdmi->max_lanes, hdmi->max_frl_rate_per_lane);
1139 edid_caps->frl_dsc_support = hdmi->dsc_cap.v_1p2;
1140 if (edid_caps->frl_dsc_support) {
1141 if (hdmi->dsc_cap.bpc_supported == 10)
1142 edid_caps->frl_dsc_10bpc = true;
1143 else if (hdmi->dsc_cap.bpc_supported == 12)
1144 edid_caps->frl_dsc_12bpc = true;
1145 edid_caps->frl_dsc_all_bpp = hdmi->dsc_cap.all_bpp;
1146 edid_caps->frl_dsc_native_420 = hdmi->dsc_cap.native_420;
1147 edid_caps->frl_dsc_max_slices = get_dsc_max_slices(hdmi->dsc_cap.max_slices, hdmi->dsc_cap.clk_per_slice);
1148 edid_caps->frl_dsc_max_frl_rate = get_max_frl_rate(hdmi->dsc_cap.max_lanes, hdmi->dsc_cap.max_frl_rate_per_lane);
1149 edid_caps->frl_dsc_total_chunk_kbytes = hdmi->dsc_cap.total_chunk_kbytes;
1150 }
1151 }
1152 }
1153
dm_helpers_read_local_edid(struct dc_context * ctx,struct dc_link * link,struct dc_sink * sink)1154 enum dc_edid_status dm_helpers_read_local_edid(
1155 struct dc_context *ctx,
1156 struct dc_link *link,
1157 struct dc_sink *sink)
1158 {
1159 struct amdgpu_dm_connector *aconnector = link->priv;
1160 struct drm_connector *connector = &aconnector->base;
1161 struct i2c_adapter *ddc;
1162 int retry = 25;
1163 enum dc_edid_status edid_status = EDID_NO_RESPONSE;
1164 const struct drm_edid *drm_edid;
1165 const struct edid *edid;
1166
1167 if (link->aux_mode)
1168 ddc = &aconnector->dm_dp_aux.aux.ddc;
1169 else if (link->ddc_hw_inst == GPIO_DDC_LINE_UNKNOWN &&
1170 dc_is_embedded_signal(link->connector_signal))
1171 ddc = NULL;
1172 else
1173 ddc = &aconnector->i2c->base;
1174
1175 if (link->dc->hwss.prepare_ddc)
1176 link->dc->hwss.prepare_ddc(link);
1177
1178 /* some dongles read edid incorrectly the first time,
1179 * do check sum and retry to make sure read correct edid.
1180 */
1181 do {
1182 drm_edid = dm_helpers_read_acpi_edid(aconnector);
1183 if (drm_edid)
1184 drm_info(connector->dev, "Using ACPI provided EDID for %s\n", connector->name);
1185 else if (!ddc)
1186 drm_edid = dm_helpers_read_vbios_hardcoded_edid(link, aconnector);
1187 else
1188 drm_edid = drm_edid_read_ddc(connector, ddc);
1189 drm_edid_connector_update(connector, drm_edid);
1190
1191 /* DP Compliance Test 4.2.2.6 */
1192 if (link->aux_mode && connector->edid_corrupt)
1193 drm_dp_send_real_edid_checksum(&aconnector->dm_dp_aux.aux, connector->real_edid_checksum);
1194
1195 if (!drm_edid && connector->edid_corrupt) {
1196 connector->edid_corrupt = false;
1197 return EDID_BAD_CHECKSUM;
1198 }
1199
1200 if (!drm_edid)
1201 continue;
1202
1203 edid = drm_edid_raw(drm_edid); // FIXME: Get rid of drm_edid_raw()
1204 /*
1205 * Use the length of the EDID property blob populated by
1206 * drm_edid_connector_update() above. It reflects the true number
1207 * of EDID blocks, including any HDMI Forum EDID Extension Override
1208 * Data Block (HF-EEODB) count, which the raw byte 0x7e extension
1209 * count can hide (e.g. HDMI 8K sinks).
1210 */
1211 if (!edid || !connector->edid_blob_ptr ||
1212 connector->edid_blob_ptr->length > sizeof(sink->dc_edid.raw_edid))
1213 return EDID_BAD_INPUT;
1214
1215 /*
1216 * FIXME: amdgpu_dm today does not consider the HF-EEODB, which
1217 * may contain additional mode info for sinks. This is a
1218 * workaround until dc_edid is refactored out from DC into
1219 * amdgpu_dm's ownership, allowing amdgpu_dm to use drm_edid
1220 * directly
1221 */
1222 sink->dc_edid.length = connector->edid_blob_ptr->length;
1223 memmove(sink->dc_edid.raw_edid, (uint8_t *)edid, sink->dc_edid.length);
1224
1225 /* We don't need the original edid anymore */
1226 drm_edid_free(drm_edid);
1227
1228 edid_status = dm_helpers_parse_edid_caps(
1229 link,
1230 &sink->dc_edid,
1231 &sink->edid_caps);
1232
1233 } while ((edid_status == EDID_BAD_CHECKSUM || edid_status == EDID_NO_RESPONSE) && --retry > 0);
1234
1235 if (edid_status != EDID_OK)
1236 DRM_ERROR("EDID err: %d, on connector: %s",
1237 edid_status,
1238 aconnector->base.name);
1239 if (link->aux_mode) {
1240 union test_request test_request = {0};
1241 union test_response test_response = {0};
1242
1243 dm_helpers_dp_read_dpcd(ctx,
1244 link,
1245 DP_TEST_REQUEST,
1246 &test_request.raw,
1247 sizeof(union test_request));
1248
1249 if (!test_request.bits.EDID_READ)
1250 return edid_status;
1251
1252 test_response.bits.EDID_CHECKSUM_WRITE = 1;
1253
1254 dm_helpers_dp_write_dpcd(ctx,
1255 link,
1256 DP_TEST_EDID_CHECKSUM,
1257 &sink->dc_edid.raw_edid[sink->dc_edid.length-1],
1258 1);
1259
1260 dm_helpers_dp_write_dpcd(ctx,
1261 link,
1262 DP_TEST_RESPONSE,
1263 &test_response.raw,
1264 sizeof(test_response));
1265
1266 }
1267
1268 return edid_status;
1269 }
dm_helper_dmub_aux_transfer_sync(struct dc_context * ctx,const struct dc_link * link,struct aux_payload * payload,enum aux_return_code_type * operation_result)1270 int dm_helper_dmub_aux_transfer_sync(
1271 struct dc_context *ctx,
1272 const struct dc_link *link,
1273 struct aux_payload *payload,
1274 enum aux_return_code_type *operation_result)
1275 {
1276 if (!link->hpd_status) {
1277 *operation_result = AUX_RET_ERROR_HPD_DISCON;
1278 return -1;
1279 }
1280
1281 return amdgpu_dm_process_dmub_aux_transfer_sync(ctx, link->link_index, payload,
1282 operation_result);
1283 }
1284
dm_helpers_dmub_set_config_sync(struct dc_context * ctx,const struct dc_link * link,struct set_config_cmd_payload * payload,enum set_config_status * operation_result)1285 int dm_helpers_dmub_set_config_sync(struct dc_context *ctx,
1286 const struct dc_link *link,
1287 struct set_config_cmd_payload *payload,
1288 enum set_config_status *operation_result)
1289 {
1290 return amdgpu_dm_process_dmub_set_config_sync(ctx, link->link_index, payload,
1291 operation_result);
1292 }
1293
dm_set_dcn_clocks(struct dc_context * ctx,struct dc_clocks * clks)1294 void dm_set_dcn_clocks(struct dc_context *ctx, struct dc_clocks *clks)
1295 {
1296 /* TODO: something */
1297 }
1298
dm_helpers_dmu_timeout(struct dc_context * ctx)1299 void dm_helpers_dmu_timeout(struct dc_context *ctx)
1300 {
1301 // TODO:
1302 //amdgpu_device_gpu_recover(dc_context->driver-context, NULL);
1303 }
1304
dm_helpers_smu_timeout(struct dc_context * ctx,unsigned int msg_id,unsigned int param,unsigned int timeout_us)1305 void dm_helpers_smu_timeout(struct dc_context *ctx, unsigned int msg_id, unsigned int param, unsigned int timeout_us)
1306 {
1307 // TODO:
1308 //amdgpu_device_gpu_recover(dc_context->driver-context, NULL);
1309 }
1310
dm_helpers_init_panel_settings(struct dc_context * ctx,struct dc_panel_config * panel_config,struct dc_sink * sink)1311 void dm_helpers_init_panel_settings(
1312 struct dc_context *ctx,
1313 struct dc_panel_config *panel_config,
1314 struct dc_sink *sink)
1315 {
1316 // Extra Panel Power Sequence
1317 panel_config->pps.extra_t3_ms = sink->edid_caps.panel_patch.extra_t3_ms;
1318 panel_config->pps.extra_t7_ms = sink->edid_caps.panel_patch.extra_t7_ms;
1319 panel_config->pps.extra_delay_backlight_off = sink->edid_caps.panel_patch.extra_delay_backlight_off;
1320 panel_config->pps.extra_post_t7_ms = 0;
1321 panel_config->pps.extra_pre_t11_ms = 0;
1322 panel_config->pps.extra_t12_ms = sink->edid_caps.panel_patch.extra_t12_ms;
1323 panel_config->pps.extra_post_OUI_ms = 0;
1324 // Feature DSC
1325 panel_config->dsc.disable_dsc_edp = false;
1326 panel_config->dsc.force_dsc_edp_policy = 0;
1327 }
1328
dm_helpers_override_panel_settings(struct dc_context * ctx,struct dc_link * link)1329 void dm_helpers_override_panel_settings(
1330 struct dc_context *ctx,
1331 struct dc_link *link)
1332 {
1333 unsigned int panel_inst = 0;
1334
1335 // Feature DSC
1336 if (amdgpu_dc_debug_mask & DC_DISABLE_DSC)
1337 link->panel_config.dsc.disable_dsc_edp = true;
1338
1339 if (dc_get_edp_link_panel_inst(ctx->dc, link, &panel_inst) && panel_inst == 1) {
1340 link->panel_config.psr.disable_psr = true;
1341 link->panel_config.psr.disallow_psrsu = true;
1342 link->panel_config.psr.disallow_replay = true;
1343 }
1344 }
1345
dm_helpers_allocate_gpu_mem(struct dc_context * ctx,enum dc_gpu_mem_alloc_type type,size_t size,long long * addr)1346 void *dm_helpers_allocate_gpu_mem(
1347 struct dc_context *ctx,
1348 enum dc_gpu_mem_alloc_type type,
1349 size_t size,
1350 long long *addr)
1351 {
1352 struct amdgpu_device *adev = ctx->driver_context;
1353
1354 return dm_allocate_gpu_mem(adev, type, size, addr);
1355 }
1356
dm_helpers_free_gpu_mem(struct dc_context * ctx,enum dc_gpu_mem_alloc_type type,void * pvMem)1357 void dm_helpers_free_gpu_mem(
1358 struct dc_context *ctx,
1359 enum dc_gpu_mem_alloc_type type,
1360 void *pvMem)
1361 {
1362 struct amdgpu_device *adev = ctx->driver_context;
1363
1364 dm_free_gpu_mem(adev, type, pvMem);
1365 }
1366
dm_helpers_dmub_outbox_interrupt_control(struct dc_context * ctx,bool enable)1367 bool dm_helpers_dmub_outbox_interrupt_control(struct dc_context *ctx, bool enable)
1368 {
1369 enum dc_irq_source irq_source;
1370 bool ret;
1371
1372 irq_source = DC_IRQ_SOURCE_DMCUB_OUTBOX;
1373
1374 ret = dc_interrupt_set(ctx->dc, irq_source, enable);
1375
1376 DRM_DEBUG_DRIVER("Dmub trace irq %sabling: r=%d\n",
1377 enable ? "en" : "dis", ret);
1378 return ret;
1379 }
1380
dm_helpers_mst_enable_stream_features(const struct dc_stream_state * stream)1381 void dm_helpers_mst_enable_stream_features(const struct dc_stream_state *stream)
1382 {
1383 /* TODO: virtual DPCD */
1384 struct dc_link *link = stream->link;
1385 union down_spread_ctrl old_downspread;
1386 union down_spread_ctrl new_downspread;
1387
1388 if (link->aux_access_disabled)
1389 return;
1390
1391 if (!dm_helpers_dp_read_dpcd(link->ctx, link, DP_DOWNSPREAD_CTRL,
1392 &old_downspread.raw,
1393 sizeof(old_downspread)))
1394 return;
1395
1396 new_downspread.raw = old_downspread.raw;
1397 new_downspread.bits.IGNORE_MSA_TIMING_PARAM =
1398 (stream->ignore_msa_timing_param) ? 1 : 0;
1399
1400 if (new_downspread.raw != old_downspread.raw)
1401 dm_helpers_dp_write_dpcd(link->ctx, link, DP_DOWNSPREAD_CTRL,
1402 &new_downspread.raw,
1403 sizeof(new_downspread));
1404 }
1405
dm_helpers_dp_handle_test_pattern_request(struct dc_context * ctx,const struct dc_link * link,union link_test_pattern dpcd_test_pattern,union test_misc dpcd_test_params)1406 bool dm_helpers_dp_handle_test_pattern_request(
1407 struct dc_context *ctx,
1408 const struct dc_link *link,
1409 union link_test_pattern dpcd_test_pattern,
1410 union test_misc dpcd_test_params)
1411 {
1412 enum dp_test_pattern test_pattern;
1413 enum dp_test_pattern_color_space test_pattern_color_space =
1414 DP_TEST_PATTERN_COLOR_SPACE_UNDEFINED;
1415 enum dc_color_depth requestColorDepth = COLOR_DEPTH_UNDEFINED;
1416 enum dc_pixel_encoding requestPixelEncoding = PIXEL_ENCODING_UNDEFINED;
1417 struct pipe_ctx *pipes = link->dc->current_state->res_ctx.pipe_ctx;
1418 struct pipe_ctx *pipe_ctx = NULL;
1419 struct amdgpu_dm_connector *aconnector = link->priv;
1420 struct drm_device *dev = aconnector->base.dev;
1421 struct dc_state *dc_state = ctx->dc->current_state;
1422 struct clk_mgr *clk_mgr = ctx->dc->clk_mgr;
1423 int i;
1424
1425 for (i = 0; i < MAX_PIPES; i++) {
1426 if (pipes[i].stream == NULL)
1427 continue;
1428
1429 if (pipes[i].stream->link == link && !pipes[i].top_pipe &&
1430 !pipes[i].prev_odm_pipe) {
1431 pipe_ctx = &pipes[i];
1432 break;
1433 }
1434 }
1435
1436 if (pipe_ctx == NULL)
1437 return false;
1438
1439 switch (dpcd_test_pattern.bits.PATTERN) {
1440 case LINK_TEST_PATTERN_COLOR_RAMP:
1441 test_pattern = DP_TEST_PATTERN_COLOR_RAMP;
1442 break;
1443 case LINK_TEST_PATTERN_VERTICAL_BARS:
1444 test_pattern = DP_TEST_PATTERN_VERTICAL_BARS;
1445 break; /* black and white */
1446 case LINK_TEST_PATTERN_COLOR_SQUARES:
1447 test_pattern = (dpcd_test_params.bits.DYN_RANGE ==
1448 TEST_DYN_RANGE_VESA ?
1449 DP_TEST_PATTERN_COLOR_SQUARES :
1450 DP_TEST_PATTERN_COLOR_SQUARES_CEA);
1451 break;
1452 default:
1453 test_pattern = DP_TEST_PATTERN_VIDEO_MODE;
1454 break;
1455 }
1456
1457 if (dpcd_test_params.bits.CLR_FORMAT == 0)
1458 test_pattern_color_space = DP_TEST_PATTERN_COLOR_SPACE_RGB;
1459 else
1460 test_pattern_color_space = dpcd_test_params.bits.YCBCR_COEFS ?
1461 DP_TEST_PATTERN_COLOR_SPACE_YCBCR709 :
1462 DP_TEST_PATTERN_COLOR_SPACE_YCBCR601;
1463
1464 switch (dpcd_test_params.bits.BPC) {
1465 case 0: // 6 bits
1466 requestColorDepth = COLOR_DEPTH_666;
1467 break;
1468 case 1: // 8 bits
1469 requestColorDepth = COLOR_DEPTH_888;
1470 break;
1471 case 2: // 10 bits
1472 requestColorDepth = COLOR_DEPTH_101010;
1473 break;
1474 case 3: // 12 bits
1475 requestColorDepth = COLOR_DEPTH_121212;
1476 break;
1477 default:
1478 break;
1479 }
1480
1481 switch (dpcd_test_params.bits.CLR_FORMAT) {
1482 case 0:
1483 requestPixelEncoding = PIXEL_ENCODING_RGB;
1484 break;
1485 case 1:
1486 requestPixelEncoding = PIXEL_ENCODING_YCBCR422;
1487 break;
1488 case 2:
1489 requestPixelEncoding = PIXEL_ENCODING_YCBCR444;
1490 break;
1491 default:
1492 requestPixelEncoding = PIXEL_ENCODING_RGB;
1493 break;
1494 }
1495
1496 if ((requestColorDepth != COLOR_DEPTH_UNDEFINED
1497 && pipe_ctx->stream->timing.display_color_depth != requestColorDepth)
1498 || (requestPixelEncoding != PIXEL_ENCODING_UNDEFINED
1499 && pipe_ctx->stream->timing.pixel_encoding != requestPixelEncoding)) {
1500 drm_dbg(dev,
1501 "original bpc %d pix encoding %d, changing to %d %d\n",
1502 pipe_ctx->stream->timing.display_color_depth,
1503 pipe_ctx->stream->timing.pixel_encoding,
1504 requestColorDepth,
1505 requestPixelEncoding);
1506 pipe_ctx->stream->timing.display_color_depth = requestColorDepth;
1507 pipe_ctx->stream->timing.pixel_encoding = requestPixelEncoding;
1508
1509 dc_link_update_dsc_config(pipe_ctx);
1510
1511 aconnector->timing_changed = true;
1512 /* store current timing */
1513 if (aconnector->timing_requested)
1514 *aconnector->timing_requested = pipe_ctx->stream->timing;
1515 else
1516 drm_err(dev, "timing storage failed\n");
1517
1518 }
1519
1520 pipe_ctx->stream->test_pattern.type = test_pattern;
1521 pipe_ctx->stream->test_pattern.color_space = test_pattern_color_space;
1522
1523 /* Temp W/A for compliance test failure */
1524 dc_state->bw_ctx.bw.dcn.clk.p_state_change_support = false;
1525 dc_state->bw_ctx.bw.dcn.clk.dramclk_khz = clk_mgr->dc_mode_softmax_enabled ?
1526 clk_mgr->bw_params->dc_mode_softmax_memclk : clk_mgr->bw_params->max_memclk_mhz;
1527 dc_state->bw_ctx.bw.dcn.clk.idle_dramclk_khz = dc_state->bw_ctx.bw.dcn.clk.dramclk_khz;
1528 ctx->dc->clk_mgr->funcs->update_clocks(
1529 ctx->dc->clk_mgr,
1530 dc_state,
1531 false);
1532
1533 dc_link_dp_set_test_pattern(
1534 (struct dc_link *) link,
1535 test_pattern,
1536 test_pattern_color_space,
1537 NULL,
1538 NULL,
1539 0);
1540
1541 return false;
1542 }
1543
dm_set_phyd32clk(struct dc_context * ctx,int freq_khz)1544 void dm_set_phyd32clk(struct dc_context *ctx, int freq_khz)
1545 {
1546 // TODO
1547 }
1548
dm_helpers_enable_periodic_detection(struct dc_context * ctx,bool enable)1549 void dm_helpers_enable_periodic_detection(struct dc_context *ctx, bool enable)
1550 {
1551 struct amdgpu_device *adev = ctx->driver_context;
1552
1553 if (adev->dm.idle_workqueue) {
1554 adev->dm.idle_workqueue->enable = enable;
1555 if (enable && !adev->dm.idle_workqueue->running && amdgpu_dm_is_headless(adev))
1556 schedule_work(&adev->dm.idle_workqueue->work);
1557 }
1558 }
1559
dm_helpers_dp_mst_update_branch_bandwidth(struct dc_context * ctx,struct dc_link * link)1560 void dm_helpers_dp_mst_update_branch_bandwidth(
1561 struct dc_context *ctx,
1562 struct dc_link *link)
1563 {
1564 // TODO
1565 }
1566
dm_is_freesync_pcon_whitelist(const uint32_t branch_dev_id)1567 static bool dm_is_freesync_pcon_whitelist(const uint32_t branch_dev_id)
1568 {
1569 bool ret_val = false;
1570
1571 switch (branch_dev_id) {
1572 case DP_BRANCH_DEVICE_ID_0060AD:
1573 case DP_BRANCH_DEVICE_ID_00E04C:
1574 case DP_BRANCH_DEVICE_ID_90CC24:
1575 case DP_BRANCH_DEVICE_ID_001CF8:
1576 case DP_BRANCH_DEVICE_ID_001FF2:
1577 ret_val = true;
1578 break;
1579 default:
1580 break;
1581 }
1582
1583 return ret_val;
1584 }
1585
dm_get_adaptive_sync_support_type(struct dc_link * link)1586 enum adaptive_sync_type dm_get_adaptive_sync_support_type(struct dc_link *link)
1587 {
1588 struct dpcd_caps *dpcd_caps = &link->dpcd_caps;
1589 enum adaptive_sync_type as_type = ADAPTIVE_SYNC_TYPE_NONE;
1590
1591 switch (dpcd_caps->dongle_type) {
1592 case DISPLAY_DONGLE_DP_HDMI_CONVERTER:
1593 if (dpcd_caps->adaptive_sync_caps.dp_adap_sync_caps.bits.ADAPTIVE_SYNC_SDP_SUPPORT == true &&
1594 dpcd_caps->allow_invalid_MSA_timing_param == true &&
1595 dm_is_freesync_pcon_whitelist(dpcd_caps->branch_dev_id))
1596 as_type = FREESYNC_TYPE_PCON_IN_WHITELIST;
1597 break;
1598 default:
1599 break;
1600 }
1601
1602 return as_type;
1603 }
1604
dm_helpers_is_fullscreen(struct dc_context * ctx,struct dc_stream_state * stream)1605 bool dm_helpers_is_fullscreen(struct dc_context *ctx, struct dc_stream_state *stream)
1606 {
1607 // TODO
1608 return false;
1609 }
1610
dm_helpers_is_hdr_on(struct dc_context * ctx,struct dc_stream_state * stream)1611 bool dm_helpers_is_hdr_on(struct dc_context *ctx, struct dc_stream_state *stream)
1612 {
1613 // TODO
1614 return false;
1615 }
1616
mccs_operation_vcp_request(unsigned int vcp_code,struct dc_link * link,union vcp_reply * reply)1617 static int mccs_operation_vcp_request(unsigned int vcp_code, struct dc_link *link,
1618 union vcp_reply *reply)
1619 {
1620 const unsigned char retry_interval_ms = 40;
1621 unsigned char retry = 5;
1622 struct amdgpu_dm_connector *aconnector = link->priv;
1623 struct i2c_adapter *ddc;
1624 struct i2c_msg msg = {0};
1625 int ret = 0;
1626 int idx;
1627
1628 unsigned char wr_data[MCCS_OP_BUFF_SIZE__WR_VCP_REQUEST] = {
1629 MCCS_SRC_ADDR, /* Byte0 - Src Addr */
1630 MCCS_LENGTH_OFFSET + 2, /* Byte1 - Length */
1631 MCCS_OP_CODE_VCP_REQUEST, /* Byte2 - MCCS Command */
1632 (unsigned char) vcp_code, /* Byte3 - VCP Code */
1633 MCCS_DEST_ADDR << 1 /* Byte4 - CheckSum */
1634 };
1635
1636 /* calculate checksum */
1637 for (idx = 0; idx < (MCCS_OP_BUFF_SIZE__WR_VCP_REQUEST - 1); idx++)
1638 wr_data[(MCCS_OP_BUFF_SIZE__WR_VCP_REQUEST-1)] ^= wr_data[idx];
1639
1640 if (link->aux_mode)
1641 ddc = &aconnector->dm_dp_aux.aux.ddc;
1642 else
1643 ddc = &aconnector->i2c->base;
1644
1645 do {
1646 msg.addr = MCCS_DEST_ADDR;
1647 msg.flags = 0;
1648 msg.len = MCCS_OP_BUFF_SIZE__WR_VCP_REQUEST;
1649 msg.buf = wr_data;
1650
1651 ret = i2c_transfer(ddc, &msg, 1);
1652 if (ret != 1)
1653 goto mccs_retry;
1654
1655 msleep(retry_interval_ms);
1656
1657 msg.addr = MCCS_DEST_ADDR;
1658 msg.flags = I2C_M_RD;
1659 msg.len = MCCS_OP_BUFF_SIZE_RD_VCP_REQUEST;
1660 msg.buf = reply->raw;
1661
1662 ret = i2c_transfer(ddc, &msg, 1);
1663
1664 /* sink might reply with null msg if it can't reply in time */
1665 if (ret == 1 && reply->bytes.length > MCCS_LENGTH_OFFSET)
1666 break;
1667 mccs_retry:
1668 retry--;
1669 msleep(retry_interval_ms);
1670 } while (retry);
1671
1672 if (!retry) {
1673 drm_dbg_driver(aconnector->base.dev,
1674 "%s: MCCS VCP request failed after retries", __func__);
1675 return -EIO;
1676 }
1677
1678 return 0;
1679 }
1680
dm_helpers_read_mccs_caps(struct dc_context * ctx,struct dc_link * link,struct dc_sink * sink)1681 void dm_helpers_read_mccs_caps(struct dc_context *ctx, struct dc_link *link,
1682 struct dc_sink *sink)
1683 {
1684 bool mccs_op = false;
1685 struct dpcd_caps *dpcd_caps;
1686 struct drm_device *dev;
1687 uint16_t freesync_vcp_value = 0;
1688 union vcp_reply vcp_reply_value = {0};
1689
1690 if (!ctx)
1691 return;
1692 dev = adev_to_drm(ctx->driver_context);
1693
1694 if (!link || !sink) {
1695 drm_dbg_driver(dev, "%s: link or sink is NULL", __func__);
1696 return;
1697 }
1698
1699 sink->mccs_caps.freesync_supported = false;
1700 dpcd_caps = &link->dpcd_caps;
1701
1702 if (sink->edid_caps.freesync_vcp_code != 0) {
1703 if (dc_is_dp_signal(link->connector_signal)) {
1704 if ((dpcd_caps->dpcd_rev.raw >= DPCD_REV_14) &&
1705 (dpcd_caps->dongle_type == DISPLAY_DONGLE_DP_HDMI_CONVERTER) &&
1706 dm_is_freesync_pcon_whitelist(dpcd_caps->branch_dev_id) &&
1707 (dpcd_caps->adaptive_sync_caps.dp_adap_sync_caps.bits.ADAPTIVE_SYNC_SDP_SUPPORT == true))
1708 mccs_op = true;
1709
1710 if ((dpcd_caps->dongle_type != DISPLAY_DONGLE_NONE &&
1711 dpcd_caps->dongle_type != DISPLAY_DONGLE_DP_HDMI_CONVERTER)) {
1712 if (mccs_op == false)
1713 drm_dbg_driver(dev, "%s: Legacy Pcon support", __func__);
1714 mccs_op = true;
1715 }
1716
1717 if (link->connector_signal == SIGNAL_TYPE_DISPLAY_PORT_MST) {
1718 // Todo: Freesync over MST
1719 mccs_op = false;
1720 }
1721 }
1722
1723 if (dc_is_hdmi_signal(link->connector_signal)) {
1724 drm_dbg_driver(dev, "%s: Local HDMI sink", __func__);
1725 mccs_op = true;
1726 }
1727
1728 if (mccs_op == true) {
1729 // MCCS VCP request to get VCP value
1730 if (!mccs_operation_vcp_request(sink->edid_caps.freesync_vcp_code, link,
1731 &vcp_reply_value)) {
1732 freesync_vcp_value = vcp_reply_value.bytes.present_value[1];
1733 freesync_vcp_value |= (uint16_t) vcp_reply_value.bytes.present_value[0] << 8;
1734 }
1735 // If VCP Value bit 0 is 1, freesyncSupport = true
1736 sink->mccs_caps.freesync_supported =
1737 (freesync_vcp_value & FREESYNC_SUPPORTED) ? true : false;
1738 }
1739 }
1740 }
1741
mccs_operation_vcp_set(unsigned int vcp_code,struct dc_link * link,uint16_t value)1742 static int mccs_operation_vcp_set(unsigned int vcp_code, struct dc_link *link, uint16_t value)
1743 {
1744 const unsigned char retry_interval_ms = 40;
1745 unsigned char retry = 5;
1746 struct amdgpu_dm_connector *aconnector = link->priv;
1747 struct i2c_adapter *ddc;
1748 struct i2c_msg msg = {0};
1749 int ret = 0;
1750 int idx;
1751
1752 unsigned char wr_data[MCCS_OP_BUFF_SIZE_WR_VCP_SET] = {
1753 MCCS_SRC_ADDR, /* Byte0 - Src Addr */
1754 MCCS_LENGTH_OFFSET + 4, /* Byte1 - Length */
1755 MCCS_OP_CODE_VCP_SET, /* Byte2 - MCCS Command */
1756 (unsigned char)vcp_code, /* Byte3 - VCP Code */
1757 (unsigned char)(value >> 8), /* Byte4 - Value High Byte */
1758 (unsigned char)(value & 0xFF), /* Byte5 - Value Low Byte */
1759 MCCS_DEST_ADDR << 1 /* Byte6 - CheckSum */
1760 };
1761
1762 /* calculate checksum */
1763 for (idx = 0; idx < (MCCS_OP_BUFF_SIZE_WR_VCP_SET - 1); idx++)
1764 wr_data[MCCS_OP_BUFF_SIZE_WR_VCP_SET - 1] ^= wr_data[idx];
1765
1766 if (link->aux_mode)
1767 ddc = &aconnector->dm_dp_aux.aux.ddc;
1768 else
1769 ddc = &aconnector->i2c->base;
1770
1771 do {
1772 msg.addr = MCCS_DEST_ADDR;
1773 msg.flags = 0;
1774 msg.len = MCCS_OP_BUFF_SIZE_WR_VCP_SET;
1775 msg.buf = wr_data;
1776
1777 ret = i2c_transfer(ddc, &msg, 1);
1778 if (ret == 1)
1779 break;
1780
1781 retry--;
1782 msleep(retry_interval_ms);
1783 } while (retry);
1784
1785 if (!retry)
1786 return -EIO;
1787
1788 return 0;
1789 }
1790
dm_helpers_mccs_vcp_set(struct dc_context * ctx,struct dc_link * link,struct dc_sink * sink)1791 void dm_helpers_mccs_vcp_set(struct dc_context *ctx, struct dc_link *link,
1792 struct dc_sink *sink)
1793 {
1794 struct drm_device *dev;
1795 const uint16_t enable = 0x0101;
1796
1797 if (!ctx)
1798 return;
1799 dev = adev_to_drm(ctx->driver_context);
1800
1801 if (!link || !sink) {
1802 drm_dbg_driver(dev, "%s: link or sink is NULL", __func__);
1803 return;
1804 }
1805
1806 if (!sink->mccs_caps.freesync_supported) {
1807 drm_dbg_driver(dev, "%s: MCCS freesync not supported on this sink", __func__);
1808 return;
1809 }
1810
1811 if (mccs_operation_vcp_set(sink->edid_caps.freesync_vcp_code, link, enable))
1812 drm_dbg_driver(dev, "%s: Failed to set VCP code %d", __func__,
1813 sink->edid_caps.freesync_vcp_code);
1814 }
1815
1816