1 /*
2 * Copyright 2020 Advanced Micro Devices, Inc.
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 shall be included in
12 * all copies or substantial portions of the Software.
13 *
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20 * OTHER DEALINGS IN THE SOFTWARE.
21 *
22 * Authors: AMD
23 *
24 */
25
26
27 #include "dm_services.h"
28 #include "dm_helpers.h"
29 #include "core_types.h"
30 #include "resource.h"
31 #include "dcn30_hwseq.h"
32 #include "dccg.h"
33 #include "dce/dce_hwseq.h"
34 #include "dcn30_mpc.h"
35 #include "dcn30_dpp.h"
36 #include "dcn10/dcn10_cm_common.h"
37 #include "dcn30_cm_common.h"
38 #include "reg_helper.h"
39 #include "abm.h"
40 #include "clk_mgr.h"
41 #include "hubp.h"
42 #include "dchubbub.h"
43 #include "timing_generator.h"
44 #include "opp.h"
45 #include "ipp.h"
46 #include "mpc.h"
47 #include "mcif_wb.h"
48 #include "dc_dmub_srv.h"
49 #include "link_hwss.h"
50 #include "dpcd_defs.h"
51 #include "../dcn20/dcn20_hwseq.h"
52 #include "dcn30_resource.h"
53 #include "link.h"
54
55
56
57
58 #define DC_LOGGER_INIT(logger)
59
60 #define CTX \
61 hws->ctx
62 #define REG(reg)\
63 hws->regs->reg
64 #define DC_LOGGER \
65 dc->ctx->logger
66
67
68 #undef FN
69 #define FN(reg_name, field_name) \
70 hws->shifts->field_name, hws->masks->field_name
71
dcn30_set_blend_lut(struct pipe_ctx * pipe_ctx,const struct dc_plane_state * plane_state)72 bool dcn30_set_blend_lut(
73 struct pipe_ctx *pipe_ctx, const struct dc_plane_state *plane_state)
74 {
75 struct dpp *dpp_base = pipe_ctx->plane_res.dpp;
76 bool result = true;
77 struct pwl_params *blend_lut = NULL;
78
79 if (plane_state->blend_tf) {
80 if (plane_state->blend_tf->type == TF_TYPE_HWPWL)
81 blend_lut = &plane_state->blend_tf->pwl;
82 else if (plane_state->blend_tf->type == TF_TYPE_DISTRIBUTED_POINTS) {
83 cm3_helper_translate_curve_to_hw_format(
84 plane_state->blend_tf, &dpp_base->regamma_params, false);
85 blend_lut = &dpp_base->regamma_params;
86 }
87 }
88 result = dpp_base->funcs->dpp_program_blnd_lut(dpp_base, blend_lut);
89
90 return result;
91 }
92
dcn30_set_mpc_shaper_3dlut(struct pipe_ctx * pipe_ctx,const struct dc_stream_state * stream)93 static bool dcn30_set_mpc_shaper_3dlut(struct pipe_ctx *pipe_ctx,
94 const struct dc_stream_state *stream)
95 {
96 struct dpp *dpp_base = pipe_ctx->plane_res.dpp;
97 int mpcc_id = pipe_ctx->plane_res.hubp->inst;
98 struct mpc *mpc = pipe_ctx->stream_res.opp->ctx->dc->res_pool->mpc;
99 bool result = false;
100 int acquired_rmu = 0;
101 int mpcc_id_projected = 0;
102
103 const struct pwl_params *shaper_lut = NULL;
104 //get the shaper lut params
105 if (stream->func_shaper) {
106 if (stream->func_shaper->type == TF_TYPE_HWPWL) {
107 shaper_lut = &stream->func_shaper->pwl;
108 } else if (stream->func_shaper->type == TF_TYPE_DISTRIBUTED_POINTS) {
109 cm_helper_translate_curve_to_hw_format(stream->ctx, stream->func_shaper,
110 &dpp_base->shaper_params, true);
111 shaper_lut = &dpp_base->shaper_params;
112 }
113 }
114
115 if (stream->lut3d_func &&
116 stream->lut3d_func->state.bits.initialized == 1 &&
117 stream->lut3d_func->state.bits.rmu_idx_valid == 1) {
118 if (stream->lut3d_func->state.bits.rmu_mux_num == 0)
119 mpcc_id_projected = stream->lut3d_func->state.bits.mpc_rmu0_mux;
120 else if (stream->lut3d_func->state.bits.rmu_mux_num == 1)
121 mpcc_id_projected = stream->lut3d_func->state.bits.mpc_rmu1_mux;
122 else if (stream->lut3d_func->state.bits.rmu_mux_num == 2)
123 mpcc_id_projected = stream->lut3d_func->state.bits.mpc_rmu2_mux;
124 if (mpcc_id_projected != mpcc_id)
125 BREAK_TO_DEBUGGER();
126 /* find the reason why logical layer assigned a different
127 * mpcc_id into acquire_post_bldn_3dlut
128 */
129 acquired_rmu = mpc->funcs->acquire_rmu(mpc, mpcc_id,
130 stream->lut3d_func->state.bits.rmu_mux_num);
131 if (acquired_rmu != stream->lut3d_func->state.bits.rmu_mux_num)
132 BREAK_TO_DEBUGGER();
133
134 result = mpc->funcs->program_3dlut(mpc, &stream->lut3d_func->lut_3d,
135 stream->lut3d_func->state.bits.rmu_mux_num);
136 result = mpc->funcs->program_shaper(mpc, shaper_lut,
137 stream->lut3d_func->state.bits.rmu_mux_num);
138 } else {
139 // loop through the available mux and release the requested mpcc_id
140 mpc->funcs->release_rmu(mpc, mpcc_id);
141 }
142
143 return result;
144 }
145
dcn30_set_input_transfer_func(struct dc * dc,struct pipe_ctx * pipe_ctx,const struct dc_plane_state * plane_state)146 bool dcn30_set_input_transfer_func(struct dc *dc,
147 struct pipe_ctx *pipe_ctx,
148 const struct dc_plane_state *plane_state)
149 {
150 struct dce_hwseq *hws = dc->hwseq;
151 struct dpp *dpp_base = pipe_ctx->plane_res.dpp;
152 enum dc_transfer_func_predefined tf;
153 bool result = true;
154 struct pwl_params *params = NULL;
155
156 if (dpp_base == NULL || plane_state == NULL)
157 return false;
158
159 tf = TRANSFER_FUNCTION_UNITY;
160
161 if (plane_state->in_transfer_func &&
162 plane_state->in_transfer_func->type == TF_TYPE_PREDEFINED)
163 tf = plane_state->in_transfer_func->tf;
164
165 dpp_base->funcs->dpp_set_pre_degam(dpp_base, tf);
166
167 if (plane_state->in_transfer_func) {
168 if (plane_state->in_transfer_func->type == TF_TYPE_HWPWL)
169 params = &plane_state->in_transfer_func->pwl;
170 else if (plane_state->in_transfer_func->type == TF_TYPE_DISTRIBUTED_POINTS &&
171 cm3_helper_translate_curve_to_hw_format(plane_state->in_transfer_func,
172 &dpp_base->degamma_params, false))
173 params = &dpp_base->degamma_params;
174 }
175
176 result = dpp_base->funcs->dpp_program_gamcor_lut(dpp_base, params);
177
178 if (pipe_ctx->stream_res.opp && pipe_ctx->stream_res.opp->ctx) {
179 if (dpp_base->funcs->dpp_program_blnd_lut)
180 hws->funcs.set_blend_lut(pipe_ctx, plane_state);
181 if (dpp_base->funcs->dpp_program_shaper_lut &&
182 dpp_base->funcs->dpp_program_3dlut)
183 hws->funcs.set_shaper_3dlut(pipe_ctx, plane_state);
184 }
185
186 return result;
187 }
188
dcn30_set_output_transfer_func(struct dc * dc,struct pipe_ctx * pipe_ctx,const struct dc_stream_state * stream)189 bool dcn30_set_output_transfer_func(struct dc *dc,
190 struct pipe_ctx *pipe_ctx,
191 const struct dc_stream_state *stream)
192 {
193 int mpcc_id = pipe_ctx->plane_res.hubp->inst;
194 struct mpc *mpc = pipe_ctx->stream_res.opp->ctx->dc->res_pool->mpc;
195 struct pwl_params *params = NULL;
196 bool ret = false;
197
198 /* program OGAM or 3DLUT only for the top pipe*/
199 if (pipe_ctx->top_pipe == NULL) {
200 /*program rmu shaper and 3dlut in MPC*/
201 ret = dcn30_set_mpc_shaper_3dlut(pipe_ctx, stream);
202 if (ret == false && mpc->funcs->set_output_gamma && stream->out_transfer_func) {
203 if (stream->out_transfer_func->type == TF_TYPE_HWPWL)
204 params = &stream->out_transfer_func->pwl;
205 else if (pipe_ctx->stream->out_transfer_func->type ==
206 TF_TYPE_DISTRIBUTED_POINTS &&
207 cm3_helper_translate_curve_to_hw_format(
208 stream->out_transfer_func,
209 &mpc->blender_params, false))
210 params = &mpc->blender_params;
211 /* there are no ROM LUTs in OUTGAM */
212 if (stream->out_transfer_func->type == TF_TYPE_PREDEFINED)
213 BREAK_TO_DEBUGGER();
214 }
215 }
216
217 if (mpc->funcs->set_output_gamma)
218 mpc->funcs->set_output_gamma(mpc, mpcc_id, params);
219 else
220 DC_LOG_ERROR("%s: set_output_gamma function pointer is NULL.\n", __func__);
221
222 return ret;
223 }
224
dcn30_set_writeback(struct dc * dc,struct dc_writeback_info * wb_info,struct dc_state * context)225 static void dcn30_set_writeback(
226 struct dc *dc,
227 struct dc_writeback_info *wb_info,
228 struct dc_state *context)
229 {
230 struct mcif_wb *mcif_wb;
231 struct mcif_buf_params *mcif_buf_params;
232
233 ASSERT(wb_info->dwb_pipe_inst < MAX_DWB_PIPES);
234 ASSERT(wb_info->wb_enabled);
235 ASSERT(wb_info->mpcc_inst >= 0);
236 ASSERT(wb_info->mpcc_inst < dc->res_pool->mpcc_count);
237 mcif_wb = dc->res_pool->mcif_wb[wb_info->dwb_pipe_inst];
238 mcif_buf_params = &wb_info->mcif_buf_params;
239
240 /* set DWB MPC mux */
241 dc->res_pool->mpc->funcs->set_dwb_mux(dc->res_pool->mpc,
242 wb_info->dwb_pipe_inst, wb_info->mpcc_inst);
243 /* set MCIF_WB buffer and arbitration configuration */
244 mcif_wb->funcs->config_mcif_buf(mcif_wb, mcif_buf_params, wb_info->dwb_params.dest_height);
245 mcif_wb->funcs->config_mcif_arb(mcif_wb, &context->bw_ctx.bw.dcn.bw_writeback.mcif_wb_arb[wb_info->dwb_pipe_inst]);
246 }
247
dcn30_update_writeback(struct dc * dc,struct dc_writeback_info * wb_info,struct dc_state * context)248 void dcn30_update_writeback(
249 struct dc *dc,
250 struct dc_writeback_info *wb_info,
251 struct dc_state *context)
252 {
253 struct dwbc *dwb;
254 dwb = dc->res_pool->dwbc[wb_info->dwb_pipe_inst];
255 DC_LOG_DWB("%s dwb_pipe_inst = %d, mpcc_inst = %d",\
256 __func__, wb_info->dwb_pipe_inst,\
257 wb_info->mpcc_inst);
258
259 dcn30_set_writeback(dc, wb_info, context);
260
261 /* update DWB */
262 dwb->funcs->update(dwb, &wb_info->dwb_params);
263 }
264
dcn30_mmhubbub_warmup(struct dc * dc,unsigned int num_dwb,struct dc_writeback_info * wb_info)265 bool dcn30_mmhubbub_warmup(
266 struct dc *dc,
267 unsigned int num_dwb,
268 struct dc_writeback_info *wb_info)
269 {
270 struct dwbc *dwb;
271 struct mcif_wb *mcif_wb;
272 struct mcif_warmup_params warmup_params = {0};
273 unsigned int i, i_buf;
274 /*make sure there is no active DWB eanbled */
275 for (i = 0; i < num_dwb; i++) {
276 dwb = dc->res_pool->dwbc[wb_info[i].dwb_pipe_inst];
277 if (dwb->dwb_is_efc_transition || dwb->dwb_is_drc) {
278 /*can not do warmup while any dwb enabled*/
279 return false;
280 }
281 }
282
283 if (wb_info->mcif_warmup_params.p_vmid == 0)
284 return false;
285
286 /*check whether this is new interface: warmup big buffer once*/
287 if (wb_info->mcif_warmup_params.start_address.quad_part != 0 &&
288 wb_info->mcif_warmup_params.region_size != 0) {
289 /*mmhubbub is shared, so it does not matter which MCIF*/
290 mcif_wb = dc->res_pool->mcif_wb[0];
291 /*warmup a big chunk of VM buffer at once*/
292 warmup_params.start_address.quad_part = wb_info->mcif_warmup_params.start_address.quad_part;
293 warmup_params.address_increment = wb_info->mcif_warmup_params.region_size;
294 warmup_params.region_size = wb_info->mcif_warmup_params.region_size;
295 warmup_params.p_vmid = wb_info->mcif_warmup_params.p_vmid;
296
297 if (warmup_params.address_increment == 0)
298 warmup_params.address_increment = dc->dml.soc.vmm_page_size_bytes;
299
300 mcif_wb->funcs->warmup_mcif(mcif_wb, &warmup_params);
301 return true;
302 }
303 /*following is the original: warmup each DWB's mcif buffer*/
304 for (i = 0; i < num_dwb; i++) {
305 dwb = dc->res_pool->dwbc[wb_info[i].dwb_pipe_inst];
306 mcif_wb = dc->res_pool->mcif_wb[wb_info[i].dwb_pipe_inst];
307 /*warmup is for VM mode only*/
308 if (wb_info[i].mcif_buf_params.p_vmid == 0)
309 return false;
310
311 /* Warmup MCIF_WB */
312 for (i_buf = 0; i_buf < MCIF_BUF_COUNT; i_buf++) {
313 warmup_params.start_address.quad_part = wb_info[i].mcif_buf_params.luma_address[i_buf];
314 warmup_params.address_increment = dc->dml.soc.vmm_page_size_bytes;
315 warmup_params.region_size = wb_info[i].mcif_buf_params.luma_pitch * wb_info[i].dwb_params.dest_height;
316 warmup_params.p_vmid = wb_info[i].mcif_buf_params.p_vmid;
317 mcif_wb->funcs->warmup_mcif(mcif_wb, &warmup_params);
318 }
319 }
320 return true;
321 }
322
dcn30_enable_writeback(struct dc * dc,struct dc_writeback_info * wb_info,struct dc_state * context)323 void dcn30_enable_writeback(
324 struct dc *dc,
325 struct dc_writeback_info *wb_info,
326 struct dc_state *context)
327 {
328 struct dwbc *dwb;
329 struct mcif_wb *mcif_wb;
330
331 dwb = dc->res_pool->dwbc[wb_info->dwb_pipe_inst];
332 mcif_wb = dc->res_pool->mcif_wb[wb_info->dwb_pipe_inst];
333
334 DC_LOG_DWB("%s dwb_pipe_inst = %d, mpcc_inst = %d",\
335 __func__, wb_info->dwb_pipe_inst,\
336 wb_info->mpcc_inst);
337 /* Update writeback pipe */
338 dcn30_set_writeback(dc, wb_info, context);
339
340 /* Enable MCIF_WB */
341 mcif_wb->funcs->enable_mcif(mcif_wb);
342 /* Enable DWB */
343 dwb->funcs->enable(dwb, &wb_info->dwb_params);
344 }
345
dcn30_disable_writeback(struct dc * dc,unsigned int dwb_pipe_inst)346 void dcn30_disable_writeback(
347 struct dc *dc,
348 unsigned int dwb_pipe_inst)
349 {
350 struct dwbc *dwb;
351 struct mcif_wb *mcif_wb;
352
353 ASSERT(dwb_pipe_inst < MAX_DWB_PIPES);
354 dwb = dc->res_pool->dwbc[dwb_pipe_inst];
355 mcif_wb = dc->res_pool->mcif_wb[dwb_pipe_inst];
356 DC_LOG_DWB("%s dwb_pipe_inst = %d",\
357 __func__, dwb_pipe_inst);
358
359 /* disable DWB */
360 dwb->funcs->disable(dwb);
361 /* disable MCIF */
362 mcif_wb->funcs->disable_mcif(mcif_wb);
363 /* disable MPC DWB mux */
364 dc->res_pool->mpc->funcs->disable_dwb_mux(dc->res_pool->mpc, dwb_pipe_inst);
365 }
366
dcn30_program_all_writeback_pipes_in_tree(struct dc * dc,const struct dc_stream_state * stream,struct dc_state * context)367 void dcn30_program_all_writeback_pipes_in_tree(
368 struct dc *dc,
369 const struct dc_stream_state *stream,
370 struct dc_state *context)
371 {
372 struct dc_writeback_info wb_info;
373 struct dwbc *dwb;
374 struct dc_stream_status *stream_status = NULL;
375 int i_wb, i_pipe, i_stream;
376 DC_LOG_DWB("%s", __func__);
377
378 ASSERT(stream);
379 for (i_stream = 0; i_stream < context->stream_count; i_stream++) {
380 if (context->streams[i_stream] == stream) {
381 stream_status = &context->stream_status[i_stream];
382 break;
383 }
384 }
385 ASSERT(stream_status);
386
387 ASSERT(stream->num_wb_info <= dc->res_pool->res_cap->num_dwb);
388 /* For each writeback pipe */
389 for (i_wb = 0; i_wb < stream->num_wb_info; i_wb++) {
390
391 /* copy writeback info to local non-const so mpcc_inst can be set */
392 wb_info = stream->writeback_info[i_wb];
393 if (wb_info.wb_enabled) {
394
395 /* get the MPCC instance for writeback_source_plane */
396 wb_info.mpcc_inst = -1;
397 for (i_pipe = 0; i_pipe < dc->res_pool->pipe_count; i_pipe++) {
398 struct pipe_ctx *pipe_ctx = &context->res_ctx.pipe_ctx[i_pipe];
399
400 if (!pipe_ctx->plane_state)
401 continue;
402
403 if (pipe_ctx->plane_state == wb_info.writeback_source_plane) {
404 wb_info.mpcc_inst = pipe_ctx->plane_res.mpcc_inst;
405 break;
406 }
407 }
408
409 if (wb_info.mpcc_inst == -1) {
410 /* Disable writeback pipe and disconnect from MPCC
411 * if source plane has been removed
412 */
413 dc->hwss.disable_writeback(dc, wb_info.dwb_pipe_inst);
414 continue;
415 }
416
417 ASSERT(wb_info.dwb_pipe_inst < dc->res_pool->res_cap->num_dwb);
418 dwb = dc->res_pool->dwbc[wb_info.dwb_pipe_inst];
419 if (dwb->funcs->is_enabled(dwb)) {
420 /* writeback pipe already enabled, only need to update */
421 dc->hwss.update_writeback(dc, &wb_info, context);
422 } else {
423 /* Enable writeback pipe and connect to MPCC */
424 dc->hwss.enable_writeback(dc, &wb_info, context);
425 }
426 } else {
427 /* Disable writeback pipe and disconnect from MPCC */
428 dc->hwss.disable_writeback(dc, wb_info.dwb_pipe_inst);
429 }
430 }
431 }
432
dcn30_init_hw(struct dc * dc)433 void dcn30_init_hw(struct dc *dc)
434 {
435 struct abm **abms = dc->res_pool->multiple_abms;
436 struct dce_hwseq *hws = dc->hwseq;
437 struct dc_bios *dcb = dc->ctx->dc_bios;
438 struct resource_pool *res_pool = dc->res_pool;
439 int i;
440 int edp_num;
441 uint32_t backlight = MAX_BACKLIGHT_LEVEL;
442
443 if (dc->clk_mgr && dc->clk_mgr->funcs->init_clocks)
444 dc->clk_mgr->funcs->init_clocks(dc->clk_mgr);
445
446 // Initialize the dccg
447 if (res_pool->dccg->funcs->dccg_init)
448 res_pool->dccg->funcs->dccg_init(res_pool->dccg);
449
450 if (!dcb->funcs->is_accelerated_mode(dcb)) {
451 hws->funcs.bios_golden_init(dc);
452 hws->funcs.disable_vga(dc->hwseq);
453 }
454
455 if (dc->debug.enable_mem_low_power.bits.dmcu) {
456 // Force ERAM to shutdown if DMCU is not enabled
457 if (dc->debug.disable_dmcu || dc->config.disable_dmcu) {
458 REG_UPDATE(DMU_MEM_PWR_CNTL, DMCU_ERAM_MEM_PWR_FORCE, 3);
459 }
460 }
461
462 // Set default OPTC memory power states
463 if (dc->debug.enable_mem_low_power.bits.optc) {
464 // Shutdown when unassigned and light sleep in VBLANK
465 REG_SET_2(ODM_MEM_PWR_CTRL3, 0, ODM_MEM_UNASSIGNED_PWR_MODE, 3, ODM_MEM_VBLANK_PWR_MODE, 1);
466 }
467
468 if (dc->debug.enable_mem_low_power.bits.vga) {
469 // Power down VGA memory
470 REG_UPDATE(MMHUBBUB_MEM_PWR_CNTL, VGA_MEM_PWR_FORCE, 1);
471 }
472
473 if (dc->ctx->dc_bios->fw_info_valid) {
474 res_pool->ref_clocks.xtalin_clock_inKhz =
475 dc->ctx->dc_bios->fw_info.pll_info.crystal_frequency;
476
477 if (res_pool->dccg && res_pool->hubbub) {
478
479 (res_pool->dccg->funcs->get_dccg_ref_freq)(res_pool->dccg,
480 dc->ctx->dc_bios->fw_info.pll_info.crystal_frequency,
481 &res_pool->ref_clocks.dccg_ref_clock_inKhz);
482
483 (res_pool->hubbub->funcs->get_dchub_ref_freq)(res_pool->hubbub,
484 res_pool->ref_clocks.dccg_ref_clock_inKhz,
485 &res_pool->ref_clocks.dchub_ref_clock_inKhz);
486 } else {
487 // Not all ASICs have DCCG sw component
488 res_pool->ref_clocks.dccg_ref_clock_inKhz =
489 res_pool->ref_clocks.xtalin_clock_inKhz;
490 res_pool->ref_clocks.dchub_ref_clock_inKhz =
491 res_pool->ref_clocks.xtalin_clock_inKhz;
492 }
493 } else
494 ASSERT_CRITICAL(false);
495
496 for (i = 0; i < dc->link_count; i++) {
497 /* Power up AND update implementation according to the
498 * required signal (which may be different from the
499 * default signal on connector).
500 */
501 struct dc_link *link = dc->links[i];
502
503 link->link_enc->funcs->hw_init(link->link_enc);
504
505 /* Check for enabled DIG to identify enabled display */
506 if (link->link_enc->funcs->is_dig_enabled &&
507 link->link_enc->funcs->is_dig_enabled(link->link_enc)) {
508 link->link_status.link_active = true;
509 if (link->link_enc->funcs->fec_is_active &&
510 link->link_enc->funcs->fec_is_active(link->link_enc))
511 link->fec_state = dc_link_fec_enabled;
512 }
513 }
514
515 /* we want to turn off all dp displays before doing detection */
516 dc->link_srv->blank_all_dp_displays(dc);
517
518 if (hws->funcs.enable_power_gating_plane)
519 hws->funcs.enable_power_gating_plane(dc->hwseq, true);
520
521 /* If taking control over from VBIOS, we may want to optimize our first
522 * mode set, so we need to skip powering down pipes until we know which
523 * pipes we want to use.
524 * Otherwise, if taking control is not possible, we need to power
525 * everything down.
526 */
527 if (dcb->funcs->is_accelerated_mode(dcb) || !dc->config.seamless_boot_edp_requested) {
528 hws->funcs.init_pipes(dc, dc->current_state);
529 if (dc->res_pool->hubbub->funcs->allow_self_refresh_control)
530 dc->res_pool->hubbub->funcs->allow_self_refresh_control(dc->res_pool->hubbub,
531 !dc->res_pool->hubbub->ctx->dc->debug.disable_stutter);
532 }
533
534 /* In headless boot cases, DIG may be turned
535 * on which causes HW/SW discrepancies.
536 * To avoid this, power down hardware on boot
537 * if DIG is turned on and seamless boot not enabled
538 */
539 if (!dc->config.seamless_boot_edp_requested) {
540 struct dc_link *edp_links[MAX_NUM_EDP];
541 struct dc_link *edp_link = NULL;
542
543 dc_get_edp_links(dc, edp_links, &edp_num);
544 if (edp_num)
545 edp_link = edp_links[0];
546 if (edp_link && edp_link->link_enc->funcs->is_dig_enabled &&
547 edp_link->link_enc->funcs->is_dig_enabled(edp_link->link_enc) &&
548 dc->hwss.edp_backlight_control &&
549 dc->hwss.power_down &&
550 dc->hwss.edp_power_control) {
551 dc->hwss.edp_backlight_control(edp_link, false);
552 dc->hwss.power_down(dc);
553 dc->hwss.edp_power_control(edp_link, false);
554 } else {
555 for (i = 0; i < dc->link_count; i++) {
556 struct dc_link *link = dc->links[i];
557
558 if (link->link_enc->funcs->is_dig_enabled &&
559 link->link_enc->funcs->is_dig_enabled(link->link_enc) &&
560 dc->hwss.power_down) {
561 dc->hwss.power_down(dc);
562 break;
563 }
564
565 }
566 }
567 }
568
569 for (i = 0; i < res_pool->audio_count; i++) {
570 struct audio *audio = res_pool->audios[i];
571
572 audio->funcs->hw_init(audio);
573 }
574
575 for (i = 0; i < dc->link_count; i++) {
576 struct dc_link *link = dc->links[i];
577
578 if (link->panel_cntl)
579 backlight = link->panel_cntl->funcs->hw_init(link->panel_cntl);
580 }
581
582 for (i = 0; i < dc->res_pool->pipe_count; i++) {
583 if (abms[i] != NULL)
584 abms[i]->funcs->abm_init(abms[i], backlight);
585 }
586
587 /* power AFMT HDMI memory TODO: may move to dis/en output save power*/
588 REG_WRITE(DIO_MEM_PWR_CTRL, 0);
589
590 if (!dc->debug.disable_clock_gate) {
591 /* enable all DCN clock gating */
592 REG_WRITE(DCCG_GATE_DISABLE_CNTL, 0);
593
594 REG_WRITE(DCCG_GATE_DISABLE_CNTL2, 0);
595
596 REG_UPDATE(DCFCLK_CNTL, DCFCLK_GATE_DIS, 0);
597 }
598
599 if (!dcb->funcs->is_accelerated_mode(dcb) && dc->res_pool->hubbub->funcs->init_watermarks)
600 dc->res_pool->hubbub->funcs->init_watermarks(dc->res_pool->hubbub);
601
602 if (dc->clk_mgr->funcs->notify_wm_ranges)
603 dc->clk_mgr->funcs->notify_wm_ranges(dc->clk_mgr);
604
605 //if softmax is enabled then hardmax will be set by a different call
606 if (dc->clk_mgr->funcs->set_hard_max_memclk && !dc->clk_mgr->dc_mode_softmax_enabled)
607 dc->clk_mgr->funcs->set_hard_max_memclk(dc->clk_mgr);
608
609 if (dc->res_pool->hubbub->funcs->force_pstate_change_control)
610 dc->res_pool->hubbub->funcs->force_pstate_change_control(
611 dc->res_pool->hubbub, false, false);
612 if (dc->res_pool->hubbub->funcs->init_crb)
613 dc->res_pool->hubbub->funcs->init_crb(dc->res_pool->hubbub);
614
615 // Get DMCUB capabilities
616 dc_dmub_srv_query_caps_cmd(dc->ctx->dmub_srv);
617 dc->caps.dmub_caps.psr = dc->ctx->dmub_srv->dmub->feature_caps.psr;
618 dc->caps.dmub_caps.mclk_sw = dc->ctx->dmub_srv->dmub->feature_caps.fw_assisted_mclk_switch;
619 }
620
dcn30_set_avmute(struct pipe_ctx * pipe_ctx,bool enable)621 void dcn30_set_avmute(struct pipe_ctx *pipe_ctx, bool enable)
622 {
623 if (pipe_ctx == NULL)
624 return;
625
626 if (dc_is_hdmi_signal(pipe_ctx->stream->signal) && pipe_ctx->stream_res.stream_enc != NULL) {
627 pipe_ctx->stream_res.stream_enc->funcs->set_avmute(
628 pipe_ctx->stream_res.stream_enc,
629 enable);
630
631 /* Wait for two frame to make sure AV mute is sent out */
632 if (enable) {
633 pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg, CRTC_STATE_VACTIVE);
634 pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg, CRTC_STATE_VBLANK);
635 pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg, CRTC_STATE_VACTIVE);
636 pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg, CRTC_STATE_VBLANK);
637 pipe_ctx->stream_res.tg->funcs->wait_for_state(pipe_ctx->stream_res.tg, CRTC_STATE_VACTIVE);
638 }
639 }
640 }
641
dcn30_update_info_frame(struct pipe_ctx * pipe_ctx)642 void dcn30_update_info_frame(struct pipe_ctx *pipe_ctx)
643 {
644 bool is_hdmi_tmds;
645 bool is_dp;
646
647 ASSERT(pipe_ctx->stream);
648
649 if (pipe_ctx->stream_res.stream_enc == NULL)
650 return; /* this is not root pipe */
651
652 is_hdmi_tmds = dc_is_hdmi_tmds_signal(pipe_ctx->stream->signal);
653 is_dp = dc_is_dp_signal(pipe_ctx->stream->signal);
654
655 if (!is_hdmi_tmds && !is_dp)
656 return;
657
658 if (is_hdmi_tmds)
659 pipe_ctx->stream_res.stream_enc->funcs->update_hdmi_info_packets(
660 pipe_ctx->stream_res.stream_enc,
661 &pipe_ctx->stream_res.encoder_info_frame);
662 else {
663 if (pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets_sdp_line_num)
664 pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets_sdp_line_num(
665 pipe_ctx->stream_res.stream_enc,
666 &pipe_ctx->stream_res.encoder_info_frame);
667
668 pipe_ctx->stream_res.stream_enc->funcs->update_dp_info_packets(
669 pipe_ctx->stream_res.stream_enc,
670 &pipe_ctx->stream_res.encoder_info_frame);
671 }
672 }
673
dcn30_program_dmdata_engine(struct pipe_ctx * pipe_ctx)674 void dcn30_program_dmdata_engine(struct pipe_ctx *pipe_ctx)
675 {
676 struct dc_stream_state *stream = pipe_ctx->stream;
677 struct hubp *hubp = pipe_ctx->plane_res.hubp;
678 bool enable = false;
679 struct stream_encoder *stream_enc = pipe_ctx->stream_res.stream_enc;
680 enum dynamic_metadata_mode mode = dc_is_dp_signal(stream->signal)
681 ? dmdata_dp
682 : dmdata_hdmi;
683
684 /* if using dynamic meta, don't set up generic infopackets */
685 if (pipe_ctx->stream->dmdata_address.quad_part != 0) {
686 pipe_ctx->stream_res.encoder_info_frame.hdrsmd.valid = false;
687 enable = true;
688 }
689
690 if (!hubp)
691 return;
692
693 if (!stream_enc || !stream_enc->funcs->set_dynamic_metadata)
694 return;
695
696 stream_enc->funcs->set_dynamic_metadata(stream_enc, enable,
697 hubp->inst, mode);
698 }
699
dcn30_apply_idle_power_optimizations(struct dc * dc,bool enable)700 bool dcn30_apply_idle_power_optimizations(struct dc *dc, bool enable)
701 {
702 union dmub_rb_cmd cmd;
703 uint32_t tmr_delay = 0, tmr_scale = 0;
704 struct dc_cursor_attributes cursor_attr;
705 bool cursor_cache_enable = false;
706 struct dc_stream_state *stream = NULL;
707 struct dc_plane_state *plane = NULL;
708
709 if (!dc->ctx->dmub_srv)
710 return false;
711
712 if (enable) {
713 if (dc->current_state) {
714 int i;
715
716 /* First, check no-memory-requests case */
717 for (i = 0; i < dc->current_state->stream_count; i++) {
718 if (dc->current_state->stream_status[i].plane_count)
719 /* Fail eligibility on a visible stream */
720 break;
721 }
722
723 if (i == dc->current_state->stream_count) {
724 /* Enable no-memory-requests case */
725 memset(&cmd, 0, sizeof(cmd));
726 cmd.mall.header.type = DMUB_CMD__MALL;
727 cmd.mall.header.sub_type = DMUB_CMD__MALL_ACTION_NO_DF_REQ;
728 cmd.mall.header.payload_bytes = sizeof(cmd.mall) - sizeof(cmd.mall.header);
729
730 dm_execute_dmub_cmd(dc->ctx, &cmd, DM_DMUB_WAIT_TYPE_NO_WAIT);
731
732 return true;
733 }
734
735 stream = dc->current_state->streams[0];
736 plane = (stream ? dc->current_state->stream_status[0].plane_states[0] : NULL);
737
738 if (!stream || !plane)
739 return false;
740
741 if (stream && plane) {
742 cursor_cache_enable = stream->cursor_position.enable &&
743 plane->address.grph.cursor_cache_addr.quad_part;
744 cursor_attr = stream->cursor_attributes;
745 }
746
747 /*
748 * Second, check MALL eligibility
749 *
750 * single display only, single surface only, 8 and 16 bit formats only, no VM,
751 * do not use MALL for displays that support PSR as they use D0i3.2 in DMCUB FW
752 *
753 * TODO: When we implement multi-display, PSR displays will be allowed if there is
754 * a non-PSR display present, since in that case we can't do D0i3.2
755 */
756 if (dc->current_state->stream_count == 1 &&
757 stream->link->psr_settings.psr_version == DC_PSR_VERSION_UNSUPPORTED &&
758 dc->current_state->stream_status[0].plane_count == 1 &&
759 plane->format <= SURFACE_PIXEL_FORMAT_GRPH_ABGR16161616F &&
760 plane->format >= SURFACE_PIXEL_FORMAT_GRPH_ARGB8888 &&
761 plane->address.page_table_base.quad_part == 0 &&
762 dc->hwss.does_plane_fit_in_mall &&
763 dc->hwss.does_plane_fit_in_mall(dc, plane,
764 cursor_cache_enable ? &cursor_attr : NULL)) {
765 unsigned int v_total = stream->adjust.v_total_max ?
766 stream->adjust.v_total_max : stream->timing.v_total;
767 unsigned int refresh_hz = div_u64((unsigned long long) stream->timing.pix_clk_100hz *
768 100LL, (v_total * stream->timing.h_total));
769
770 /*
771 * one frame time in microsec:
772 * Delay_Us = 1000000 / refresh
773 * dynamic_delay_us = 1000000 / refresh + 2 * stutter_period
774 *
775 * one frame time modified by 'additional timer percent' (p):
776 * Delay_Us_modified = dynamic_delay_us + dynamic_delay_us * p / 100
777 * = dynamic_delay_us * (1 + p / 100)
778 * = (1000000 / refresh + 2 * stutter_period) * (100 + p) / 100
779 * = (1000000 + 2 * stutter_period * refresh) * (100 + p) / (100 * refresh)
780 *
781 * formula for timer duration based on parameters, from regspec:
782 * dynamic_delay_us = 65.28 * (64 + MallFrameCacheTmrDly) * 2^MallFrameCacheTmrScale
783 *
784 * dynamic_delay_us / 65.28 = (64 + MallFrameCacheTmrDly) * 2^MallFrameCacheTmrScale
785 * (dynamic_delay_us / 65.28) / 2^MallFrameCacheTmrScale = 64 + MallFrameCacheTmrDly
786 * MallFrameCacheTmrDly = ((dynamic_delay_us / 65.28) / 2^MallFrameCacheTmrScale) - 64
787 * = (1000000 + 2 * stutter_period * refresh) * (100 + p) / (100 * refresh) / 65.28 / 2^MallFrameCacheTmrScale - 64
788 * = (1000000 + 2 * stutter_period * refresh) * (100 + p) / (refresh * 6528 * 2^MallFrameCacheTmrScale) - 64
789 *
790 * need to round up the result of the division before the subtraction
791 */
792 unsigned int denom = refresh_hz * 6528;
793 unsigned int stutter_period = dc->current_state->perf_params.stutter_period_us;
794
795 tmr_delay = div_u64(((1000000LL + 2 * stutter_period * refresh_hz) *
796 (100LL + dc->debug.mall_additional_timer_percent) + denom - 1),
797 denom) - 64LL;
798
799 /* In some cases the stutter period is really big (tiny modes) in these
800 * cases MALL cant be enabled, So skip these cases to avoid a ASSERT()
801 *
802 * We can check if stutter_period is more than 1/10th the frame time to
803 * consider if we can actually meet the range of hysteresis timer
804 */
805 if (stutter_period > 100000/refresh_hz)
806 return false;
807
808 /* scale should be increased until it fits into 6 bits */
809 while (tmr_delay & ~0x3F) {
810 tmr_scale++;
811
812 if (tmr_scale > 3) {
813 /* Delay exceeds range of hysteresis timer */
814 ASSERT(false);
815 return false;
816 }
817
818 denom *= 2;
819 tmr_delay = div_u64(((1000000LL + 2 * stutter_period * refresh_hz) *
820 (100LL + dc->debug.mall_additional_timer_percent) + denom - 1),
821 denom) - 64LL;
822 }
823
824 /* Copy HW cursor */
825 if (cursor_cache_enable) {
826 memset(&cmd, 0, sizeof(cmd));
827 cmd.mall.header.type = DMUB_CMD__MALL;
828 cmd.mall.header.sub_type = DMUB_CMD__MALL_ACTION_COPY_CURSOR;
829 cmd.mall.header.payload_bytes =
830 sizeof(cmd.mall) - sizeof(cmd.mall.header);
831
832 switch (cursor_attr.color_format) {
833 case CURSOR_MODE_MONO:
834 cmd.mall.cursor_bpp = 2;
835 break;
836 case CURSOR_MODE_COLOR_1BIT_AND:
837 case CURSOR_MODE_COLOR_PRE_MULTIPLIED_ALPHA:
838 case CURSOR_MODE_COLOR_UN_PRE_MULTIPLIED_ALPHA:
839 cmd.mall.cursor_bpp = 32;
840 break;
841
842 case CURSOR_MODE_COLOR_64BIT_FP_PRE_MULTIPLIED:
843 case CURSOR_MODE_COLOR_64BIT_FP_UN_PRE_MULTIPLIED:
844 cmd.mall.cursor_bpp = 64;
845 break;
846 }
847
848 cmd.mall.cursor_copy_src.quad_part = cursor_attr.address.quad_part;
849 cmd.mall.cursor_copy_dst.quad_part =
850 (plane->address.grph.cursor_cache_addr.quad_part + 2047) & ~2047;
851 cmd.mall.cursor_width = cursor_attr.width;
852 cmd.mall.cursor_height = cursor_attr.height;
853 cmd.mall.cursor_pitch = cursor_attr.pitch;
854
855 dm_execute_dmub_cmd(dc->ctx, &cmd, DM_DMUB_WAIT_TYPE_WAIT);
856
857 /* Use copied cursor, and it's okay to not switch back */
858 cursor_attr.address.quad_part = cmd.mall.cursor_copy_dst.quad_part;
859 dc_stream_set_cursor_attributes(stream, &cursor_attr);
860 }
861
862 /* Enable MALL */
863 memset(&cmd, 0, sizeof(cmd));
864 cmd.mall.header.type = DMUB_CMD__MALL;
865 cmd.mall.header.sub_type = DMUB_CMD__MALL_ACTION_ALLOW;
866 cmd.mall.header.payload_bytes = sizeof(cmd.mall) - sizeof(cmd.mall.header);
867 cmd.mall.tmr_delay = tmr_delay;
868 cmd.mall.tmr_scale = tmr_scale;
869 cmd.mall.debug_bits = dc->debug.mall_error_as_fatal;
870
871 dm_execute_dmub_cmd(dc->ctx, &cmd, DM_DMUB_WAIT_TYPE_NO_WAIT);
872
873 return true;
874 }
875 }
876
877 /* No applicable optimizations */
878 return false;
879 }
880
881 /* Disable MALL */
882 memset(&cmd, 0, sizeof(cmd));
883 cmd.mall.header.type = DMUB_CMD__MALL;
884 cmd.mall.header.sub_type = DMUB_CMD__MALL_ACTION_DISALLOW;
885 cmd.mall.header.payload_bytes =
886 sizeof(cmd.mall) - sizeof(cmd.mall.header);
887
888 dm_execute_dmub_cmd(dc->ctx, &cmd, DM_DMUB_WAIT_TYPE_WAIT);
889
890 return true;
891 }
892
dcn30_does_plane_fit_in_mall(struct dc * dc,struct dc_plane_state * plane,struct dc_cursor_attributes * cursor_attr)893 bool dcn30_does_plane_fit_in_mall(struct dc *dc, struct dc_plane_state *plane, struct dc_cursor_attributes *cursor_attr)
894 {
895 // add meta size?
896 unsigned int surface_size = plane->plane_size.surface_pitch * plane->plane_size.surface_size.height *
897 (plane->format >= SURFACE_PIXEL_FORMAT_GRPH_ARGB16161616 ? 8 : 4);
898 unsigned int mall_size = dc->caps.mall_size_total;
899 unsigned int cursor_size = 0;
900
901 if (dc->debug.mall_size_override)
902 mall_size = 1024 * 1024 * dc->debug.mall_size_override;
903
904 if (cursor_attr) {
905 cursor_size = dc->caps.max_cursor_size * dc->caps.max_cursor_size;
906
907 switch (cursor_attr->color_format) {
908 case CURSOR_MODE_MONO:
909 cursor_size /= 2;
910 break;
911 case CURSOR_MODE_COLOR_1BIT_AND:
912 case CURSOR_MODE_COLOR_PRE_MULTIPLIED_ALPHA:
913 case CURSOR_MODE_COLOR_UN_PRE_MULTIPLIED_ALPHA:
914 cursor_size *= 4;
915 break;
916
917 case CURSOR_MODE_COLOR_64BIT_FP_PRE_MULTIPLIED:
918 case CURSOR_MODE_COLOR_64BIT_FP_UN_PRE_MULTIPLIED:
919 cursor_size *= 8;
920 break;
921 }
922 }
923
924 return (surface_size + cursor_size) < mall_size;
925 }
926
dcn30_hardware_release(struct dc * dc)927 void dcn30_hardware_release(struct dc *dc)
928 {
929 bool subvp_in_use = false;
930 uint32_t i;
931
932 dc_dmub_srv_p_state_delegate(dc, false, NULL);
933 dc_dmub_setup_subvp_dmub_command(dc, dc->current_state, false);
934
935 /* SubVP treated the same way as FPO. If driver disable and
936 * we are using a SubVP config, disable and force on DCN side
937 * to prevent P-State hang on driver enable.
938 */
939 for (i = 0; i < dc->res_pool->pipe_count; i++) {
940 struct pipe_ctx *pipe = &dc->current_state->res_ctx.pipe_ctx[i];
941
942 if (!pipe->stream)
943 continue;
944
945 if (pipe->stream->mall_stream_config.type == SUBVP_MAIN) {
946 subvp_in_use = true;
947 break;
948 }
949 }
950 /* If pstate unsupported, or still supported
951 * by firmware, force it supported by dcn
952 */
953 if (dc->current_state)
954 if ((!dc->clk_mgr->clks.p_state_change_support || subvp_in_use ||
955 dc->current_state->bw_ctx.bw.dcn.clk.fw_based_mclk_switching) &&
956 dc->res_pool->hubbub->funcs->force_pstate_change_control)
957 dc->res_pool->hubbub->funcs->force_pstate_change_control(
958 dc->res_pool->hubbub, true, true);
959 }
960
dcn30_set_disp_pattern_generator(const struct dc * dc,struct pipe_ctx * pipe_ctx,enum controller_dp_test_pattern test_pattern,enum controller_dp_color_space color_space,enum dc_color_depth color_depth,const struct tg_color * solid_color,int width,int height,int offset)961 void dcn30_set_disp_pattern_generator(const struct dc *dc,
962 struct pipe_ctx *pipe_ctx,
963 enum controller_dp_test_pattern test_pattern,
964 enum controller_dp_color_space color_space,
965 enum dc_color_depth color_depth,
966 const struct tg_color *solid_color,
967 int width, int height, int offset)
968 {
969 pipe_ctx->stream_res.opp->funcs->opp_set_disp_pattern_generator(pipe_ctx->stream_res.opp, test_pattern,
970 color_space, color_depth, solid_color, width, height, offset);
971 }
972
dcn30_prepare_bandwidth(struct dc * dc,struct dc_state * context)973 void dcn30_prepare_bandwidth(struct dc *dc,
974 struct dc_state *context)
975 {
976 bool p_state_change_support = context->bw_ctx.bw.dcn.clk.p_state_change_support;
977 /* Any transition into an FPO config should disable MCLK switching first to avoid
978 * driver and FW P-State synchronization issues.
979 */
980 if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching || dc->clk_mgr->clks.fw_based_mclk_switching) {
981 dc->optimized_required = true;
982 context->bw_ctx.bw.dcn.clk.p_state_change_support = false;
983 }
984
985 if (dc->clk_mgr->dc_mode_softmax_enabled)
986 if (dc->clk_mgr->clks.dramclk_khz <= dc->clk_mgr->bw_params->dc_mode_softmax_memclk * 1000 &&
987 context->bw_ctx.bw.dcn.clk.dramclk_khz > dc->clk_mgr->bw_params->dc_mode_softmax_memclk * 1000)
988 dc->clk_mgr->funcs->set_max_memclk(dc->clk_mgr, dc->clk_mgr->bw_params->clk_table.entries[dc->clk_mgr->bw_params->clk_table.num_entries - 1].memclk_mhz);
989
990 dcn20_prepare_bandwidth(dc, context);
991 /*
992 * enabled -> enabled: do not disable
993 * enabled -> disabled: disable
994 * disabled -> enabled: don't care
995 * disabled -> disabled: don't care
996 */
997 if (!context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching)
998 dc_dmub_srv_p_state_delegate(dc, false, context);
999
1000 if (context->bw_ctx.bw.dcn.clk.fw_based_mclk_switching || dc->clk_mgr->clks.fw_based_mclk_switching) {
1001 /* After disabling P-State, restore the original value to ensure we get the correct P-State
1002 * on the next optimize. */
1003 context->bw_ctx.bw.dcn.clk.p_state_change_support = p_state_change_support;
1004 }
1005 }
1006
dcn30_set_static_screen_control(struct pipe_ctx ** pipe_ctx,int num_pipes,const struct dc_static_screen_params * params)1007 void dcn30_set_static_screen_control(struct pipe_ctx **pipe_ctx,
1008 int num_pipes, const struct dc_static_screen_params *params)
1009 {
1010 unsigned int i;
1011 unsigned int triggers = 0;
1012
1013 if (params->triggers.surface_update)
1014 triggers |= 0x100;
1015 if (params->triggers.cursor_update)
1016 triggers |= 0x8;
1017 if (params->triggers.force_trigger)
1018 triggers |= 0x1;
1019
1020 for (i = 0; i < num_pipes; i++)
1021 pipe_ctx[i]->stream_res.tg->funcs->set_static_screen_control(pipe_ctx[i]->stream_res.tg,
1022 triggers, params->num_frames);
1023 }
1024