1 /*
2 * Copyright (c) 2014 - 2016, The Linux Foundation. All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without modification, are permitted
5 * provided that the following conditions are met:
6 * * Redistributions of source code must retain the above copyright notice, this list of
7 * conditions and the following disclaimer.
8 * * Redistributions in binary form must reproduce the above copyright notice, this list of
9 * conditions and the following disclaimer in the documentation and/or other materials provided
10 * with the distribution.
11 * * Neither the name of The Linux Foundation nor the names of its contributors may be used to
12 * endorse or promote products derived from this software without specific prior written
13 * permission.
14 *
15 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
16 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
17 * NON-INFRINGEMENT ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
19 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
20 * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
21 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
22 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
23 */
24
25 #include <math.h>
26 #include <utils/constants.h>
27 #include <utils/debug.h>
28 #include <utils/rect.h>
29 #include <utils/formats.h>
30 #include <utils/sys.h>
31 #include <dlfcn.h>
32 #include <algorithm>
33
34 #include "resource_default.h"
35
36 #define __CLASS__ "ResourceDefault"
37
38 namespace sdm {
39
Init(const HWResourceInfo & hw_res_info)40 DisplayError ResourceDefault::Init(const HWResourceInfo &hw_res_info) {
41 DisplayError error = kErrorNone;
42
43 num_pipe_ = hw_res_info.num_vig_pipe + hw_res_info.num_rgb_pipe + hw_res_info.num_dma_pipe;
44
45 if (!num_pipe_) {
46 DLOGE("Number of H/W pipes is Zero!");
47 return kErrorParameters;
48 }
49
50 src_pipes_.resize(num_pipe_);
51 hw_res_info_ = hw_res_info;
52
53 // Priority order of pipes: VIG, RGB, DMA
54 uint32_t vig_index = 0;
55 uint32_t rgb_index = hw_res_info_.num_vig_pipe;
56 uint32_t dma_index = rgb_index + hw_res_info_.num_rgb_pipe;
57
58 for (uint32_t i = 0; i < num_pipe_; i++) {
59 const HWPipeCaps &pipe_caps = hw_res_info_.hw_pipes.at(i);
60 if (pipe_caps.type == kPipeTypeVIG) {
61 src_pipes_[vig_index].type = kPipeTypeVIG;
62 src_pipes_[vig_index].index = i;
63 src_pipes_[vig_index].mdss_pipe_id = pipe_caps.id;
64 vig_index++;
65 } else if (pipe_caps.type == kPipeTypeRGB) {
66 src_pipes_[rgb_index].type = kPipeTypeRGB;
67 src_pipes_[rgb_index].index = i;
68 src_pipes_[rgb_index].mdss_pipe_id = pipe_caps.id;
69 rgb_index++;
70 } else if (pipe_caps.type == kPipeTypeDMA) {
71 src_pipes_[dma_index].type = kPipeTypeDMA;
72 src_pipes_[dma_index].index = i;
73 src_pipes_[dma_index].mdss_pipe_id = pipe_caps.id;
74 dma_index++;
75 }
76 }
77
78 for (uint32_t i = 0; i < num_pipe_; i++) {
79 src_pipes_[i].priority = INT(i);
80 }
81
82 DLOGI("hw_rev=%x, DMA=%d RGB=%d VIG=%d", hw_res_info_.hw_revision, hw_res_info_.num_dma_pipe,
83 hw_res_info_.num_rgb_pipe, hw_res_info_.num_vig_pipe);
84
85 if (hw_res_info_.max_scale_down < 1 || hw_res_info_.max_scale_up < 1) {
86 DLOGE("Max scaling setting is invalid! max_scale_down = %d, max_scale_up = %d",
87 hw_res_info_.max_scale_down, hw_res_info_.max_scale_up);
88 hw_res_info_.max_scale_down = 1;
89 hw_res_info_.max_scale_up = 1;
90 }
91
92 // TODO(user): clean it up, query from driver for initial pipe status.
93 #ifndef SDM_VIRTUAL_DRIVER
94 rgb_index = hw_res_info_.num_vig_pipe;
95 src_pipes_[rgb_index].owner = kPipeOwnerKernelMode;
96 src_pipes_[rgb_index + 1].owner = kPipeOwnerKernelMode;
97 #endif
98
99 return error;
100 }
101
Deinit()102 DisplayError ResourceDefault::Deinit() {
103 return kErrorNone;
104 }
105
RegisterDisplay(DisplayType type,const HWDisplayAttributes & display_attributes,const HWPanelInfo & hw_panel_info,const HWMixerAttributes & mixer_attributes,Handle * display_ctx)106 DisplayError ResourceDefault::RegisterDisplay(DisplayType type,
107 const HWDisplayAttributes &display_attributes,
108 const HWPanelInfo &hw_panel_info,
109 const HWMixerAttributes &mixer_attributes,
110 Handle *display_ctx) {
111 DisplayError error = kErrorNone;
112
113 HWBlockType hw_block_id = kHWBlockMax;
114 switch (type) {
115 case kPrimary:
116 if (!hw_block_ctx_[kHWPrimary].is_in_use) {
117 hw_block_id = kHWPrimary;
118 }
119 break;
120
121 case kHDMI:
122 if (!hw_block_ctx_[kHWHDMI].is_in_use) {
123 hw_block_id = kHWHDMI;
124 }
125 break;
126
127 default:
128 DLOGW("RegisterDisplay, invalid type %d", type);
129 return kErrorParameters;
130 }
131
132 if (hw_block_id == kHWBlockMax) {
133 return kErrorResources;
134 }
135
136 DisplayResourceContext *display_resource_ctx = new DisplayResourceContext();
137 if (!display_resource_ctx) {
138 return kErrorMemory;
139 }
140
141 hw_block_ctx_[hw_block_id].is_in_use = true;
142
143 display_resource_ctx->display_attributes = display_attributes;
144 display_resource_ctx->hw_block_id = hw_block_id;
145 display_resource_ctx->mixer_attributes = mixer_attributes;
146
147 *display_ctx = display_resource_ctx;
148 return error;
149 }
150
UnregisterDisplay(Handle display_ctx)151 DisplayError ResourceDefault::UnregisterDisplay(Handle display_ctx) {
152 DisplayResourceContext *display_resource_ctx =
153 reinterpret_cast<DisplayResourceContext *>(display_ctx);
154 Purge(display_ctx);
155
156 hw_block_ctx_[display_resource_ctx->hw_block_id].is_in_use = false;
157
158 delete display_resource_ctx;
159
160 return kErrorNone;
161 }
162
ReconfigureDisplay(Handle display_ctx,const HWDisplayAttributes & display_attributes,const HWPanelInfo & hw_panel_info,const HWMixerAttributes & mixer_attributes)163 DisplayError ResourceDefault::ReconfigureDisplay(Handle display_ctx,
164 const HWDisplayAttributes &display_attributes,
165 const HWPanelInfo &hw_panel_info,
166 const HWMixerAttributes &mixer_attributes) {
167 SCOPE_LOCK(locker_);
168
169 DisplayResourceContext *display_resource_ctx =
170 reinterpret_cast<DisplayResourceContext *>(display_ctx);
171
172 display_resource_ctx->display_attributes = display_attributes;
173 display_resource_ctx->mixer_attributes = mixer_attributes;
174
175 return kErrorNone;
176 }
177
Start(Handle display_ctx)178 DisplayError ResourceDefault::Start(Handle display_ctx) {
179 locker_.Lock();
180
181 return kErrorNone;
182 }
183
Stop(Handle display_ctx)184 DisplayError ResourceDefault::Stop(Handle display_ctx) {
185 locker_.Unlock();
186
187 return kErrorNone;
188 }
189
Acquire(Handle display_ctx,HWLayers * hw_layers)190 DisplayError ResourceDefault::Acquire(Handle display_ctx, HWLayers *hw_layers) {
191 DisplayResourceContext *display_resource_ctx =
192 reinterpret_cast<DisplayResourceContext *>(display_ctx);
193
194 DisplayError error = kErrorNone;
195 const struct HWLayersInfo &layer_info = hw_layers->info;
196 HWBlockType hw_block_id = display_resource_ctx->hw_block_id;
197
198 DLOGV_IF(kTagResources, "==== Resource reserving start: hw_block = %d ====", hw_block_id);
199
200 if (layer_info.count > 1) {
201 DLOGV_IF(kTagResources, "More than one FB layers");
202 return kErrorResources;
203 }
204
205 Layer *layer = layer_info.stack->layers.at(layer_info.index[0]);
206
207 if (layer->composition != kCompositionGPUTarget) {
208 DLOGV_IF(kTagResources, "Not an FB layer");
209 return kErrorParameters;
210 }
211
212 error = Config(display_resource_ctx, hw_layers);
213 if (error != kErrorNone) {
214 DLOGV_IF(kTagResources, "Resource config failed");
215 return error;
216 }
217
218 for (uint32_t i = 0; i < num_pipe_; i++) {
219 if (src_pipes_[i].hw_block_id == hw_block_id && src_pipes_[i].owner == kPipeOwnerUserMode) {
220 src_pipes_[i].ResetState();
221 }
222 }
223
224 uint32_t left_index = num_pipe_;
225 uint32_t right_index = num_pipe_;
226 bool need_scale = false;
227
228 struct HWLayerConfig &layer_config = hw_layers->config[0];
229
230 HWPipeInfo *left_pipe = &layer_config.left_pipe;
231 HWPipeInfo *right_pipe = &layer_config.right_pipe;
232
233 // left pipe is needed
234 if (left_pipe->valid) {
235 need_scale = IsScalingNeeded(left_pipe);
236 left_index = GetPipe(hw_block_id, need_scale);
237 if (left_index >= num_pipe_) {
238 DLOGV_IF(kTagResources, "Get left pipe failed: hw_block_id = %d, need_scale = %d",
239 hw_block_id, need_scale);
240 ResourceStateLog();
241 goto CleanupOnError;
242 }
243 }
244
245 error = SetDecimationFactor(left_pipe);
246 if (error != kErrorNone) {
247 goto CleanupOnError;
248 }
249
250 if (!right_pipe->valid) {
251 // assign single pipe
252 if (left_index < num_pipe_) {
253 left_pipe->pipe_id = src_pipes_[left_index].mdss_pipe_id;
254 }
255 DLOGV_IF(kTagResources, "1 pipe acquired for FB layer, left_pipe = %x", left_pipe->pipe_id);
256 return kErrorNone;
257 }
258
259 need_scale = IsScalingNeeded(right_pipe);
260
261 right_index = GetPipe(hw_block_id, need_scale);
262 if (right_index >= num_pipe_) {
263 DLOGV_IF(kTagResources, "Get right pipe failed: hw_block_id = %d, need_scale = %d", hw_block_id,
264 need_scale);
265 ResourceStateLog();
266 goto CleanupOnError;
267 }
268
269 if (src_pipes_[right_index].priority < src_pipes_[left_index].priority) {
270 // Swap pipe based on priority
271 std::swap(left_index, right_index);
272 }
273
274 // assign dual pipes
275 left_pipe->pipe_id = src_pipes_[left_index].mdss_pipe_id;
276 right_pipe->pipe_id = src_pipes_[right_index].mdss_pipe_id;
277
278 error = SetDecimationFactor(right_pipe);
279 if (error != kErrorNone) {
280 goto CleanupOnError;
281 }
282
283 DLOGV_IF(kTagResources, "2 pipes acquired for FB layer, left_pipe = %x, right_pipe = %x",
284 left_pipe->pipe_id, right_pipe->pipe_id);
285
286 return kErrorNone;
287
288 CleanupOnError:
289 DLOGV_IF(kTagResources, "Resource reserving failed! hw_block = %d", hw_block_id);
290
291 return kErrorResources;
292 }
293
PostPrepare(Handle display_ctx,HWLayers * hw_layers)294 DisplayError ResourceDefault::PostPrepare(Handle display_ctx, HWLayers *hw_layers) {
295 SCOPE_LOCK(locker_);
296
297 return kErrorNone;
298 }
299
PostCommit(Handle display_ctx,HWLayers * hw_layers)300 DisplayError ResourceDefault::PostCommit(Handle display_ctx, HWLayers *hw_layers) {
301 SCOPE_LOCK(locker_);
302 DisplayResourceContext *display_resource_ctx =
303 reinterpret_cast<DisplayResourceContext *>(display_ctx);
304 HWBlockType hw_block_id = display_resource_ctx->hw_block_id;
305 uint64_t frame_count = display_resource_ctx->frame_count;
306
307 DLOGV_IF(kTagResources, "Resource for hw_block = %d, frame_count = %d", hw_block_id, frame_count);
308
309 // handoff pipes which are used by splash screen
310 if ((frame_count == 0) && (hw_block_id == kHWPrimary)) {
311 for (uint32_t i = 0; i < num_pipe_; i++) {
312 if (src_pipes_[i].hw_block_id == hw_block_id && src_pipes_[i].owner == kPipeOwnerKernelMode) {
313 src_pipes_[i].owner = kPipeOwnerUserMode;
314 }
315 }
316 }
317
318 if (hw_layers->info.sync_handle >= 0)
319 Sys::close_(hw_layers->info.sync_handle);
320
321 display_resource_ctx->frame_count++;
322
323 return kErrorNone;
324 }
325
Purge(Handle display_ctx)326 void ResourceDefault::Purge(Handle display_ctx) {
327 SCOPE_LOCK(locker_);
328
329 DisplayResourceContext *display_resource_ctx =
330 reinterpret_cast<DisplayResourceContext *>(display_ctx);
331 HWBlockType hw_block_id = display_resource_ctx->hw_block_id;
332
333 for (uint32_t i = 0; i < num_pipe_; i++) {
334 if (src_pipes_[i].hw_block_id == hw_block_id && src_pipes_[i].owner == kPipeOwnerUserMode) {
335 src_pipes_[i].ResetState();
336 }
337 }
338 DLOGV_IF(kTagResources, "display id = %d", display_resource_ctx->hw_block_id);
339 }
340
SetMaxMixerStages(Handle display_ctx,uint32_t max_mixer_stages)341 DisplayError ResourceDefault::SetMaxMixerStages(Handle display_ctx, uint32_t max_mixer_stages) {
342 SCOPE_LOCK(locker_);
343
344 return kErrorNone;
345 }
346
SearchPipe(HWBlockType hw_block_id,SourcePipe * src_pipes,uint32_t num_pipe)347 uint32_t ResourceDefault::SearchPipe(HWBlockType hw_block_id, SourcePipe *src_pipes,
348 uint32_t num_pipe) {
349 uint32_t index = num_pipe_;
350 SourcePipe *src_pipe;
351
352 // search the pipe being used
353 for (uint32_t i = 0; i < num_pipe; i++) {
354 src_pipe = &src_pipes[i];
355 if (src_pipe->owner == kPipeOwnerUserMode && src_pipe->hw_block_id == kHWBlockMax) {
356 index = src_pipe->index;
357 src_pipe->hw_block_id = hw_block_id;
358 break;
359 }
360 }
361
362 return index;
363 }
364
NextPipe(PipeType type,HWBlockType hw_block_id)365 uint32_t ResourceDefault::NextPipe(PipeType type, HWBlockType hw_block_id) {
366 uint32_t num_pipe = 0;
367 SourcePipe *src_pipes = NULL;
368
369 switch (type) {
370 case kPipeTypeVIG:
371 src_pipes = &src_pipes_[0];
372 num_pipe = hw_res_info_.num_vig_pipe;
373 break;
374 case kPipeTypeRGB:
375 src_pipes = &src_pipes_[hw_res_info_.num_vig_pipe];
376 num_pipe = hw_res_info_.num_rgb_pipe;
377 break;
378 case kPipeTypeDMA:
379 default:
380 src_pipes = &src_pipes_[hw_res_info_.num_vig_pipe + hw_res_info_.num_rgb_pipe];
381 num_pipe = hw_res_info_.num_dma_pipe;
382 break;
383 }
384
385 return SearchPipe(hw_block_id, src_pipes, num_pipe);
386 }
387
GetPipe(HWBlockType hw_block_id,bool need_scale)388 uint32_t ResourceDefault::GetPipe(HWBlockType hw_block_id, bool need_scale) {
389 uint32_t index = num_pipe_;
390
391 // The default behavior is to assume RGB and VG pipes have scalars
392 if (!need_scale) {
393 index = NextPipe(kPipeTypeDMA, hw_block_id);
394 }
395
396 if ((index >= num_pipe_) && (!need_scale || !hw_res_info_.has_non_scalar_rgb)) {
397 index = NextPipe(kPipeTypeRGB, hw_block_id);
398 }
399
400 if (index >= num_pipe_) {
401 index = NextPipe(kPipeTypeVIG, hw_block_id);
402 }
403
404 return index;
405 }
406
IsScalingNeeded(const HWPipeInfo * pipe_info)407 bool ResourceDefault::IsScalingNeeded(const HWPipeInfo *pipe_info) {
408 const LayerRect &src_roi = pipe_info->src_roi;
409 const LayerRect &dst_roi = pipe_info->dst_roi;
410
411 return ((dst_roi.right - dst_roi.left) != (src_roi.right - src_roi.left)) ||
412 ((dst_roi.bottom - dst_roi.top) != (src_roi.bottom - src_roi.top));
413 }
414
ResourceStateLog()415 void ResourceDefault::ResourceStateLog() {
416 DLOGV_IF(kTagResources, "==== resource manager pipe state ====");
417 uint32_t i;
418 for (i = 0; i < num_pipe_; i++) {
419 SourcePipe *src_pipe = &src_pipes_[i];
420 DLOGV_IF(kTagResources, "index = %d, id = %x, hw_block = %d, owner = %s",
421 src_pipe->index, src_pipe->mdss_pipe_id, src_pipe->hw_block_id,
422 (src_pipe->owner == kPipeOwnerUserMode) ? "user mode" : "kernel mode");
423 }
424 }
425
SrcSplitConfig(DisplayResourceContext * display_resource_ctx,const LayerRect & src_rect,const LayerRect & dst_rect,HWLayerConfig * layer_config)426 DisplayError ResourceDefault::SrcSplitConfig(DisplayResourceContext *display_resource_ctx,
427 const LayerRect &src_rect, const LayerRect &dst_rect,
428 HWLayerConfig *layer_config) {
429 HWPipeInfo *left_pipe = &layer_config->left_pipe;
430 HWPipeInfo *right_pipe = &layer_config->right_pipe;
431 float src_width = src_rect.right - src_rect.left;
432 float dst_width = dst_rect.right - dst_rect.left;
433
434 // Layer cannot qualify for SrcSplit if source or destination width exceeds max pipe width.
435 if ((src_width > hw_res_info_.max_pipe_width) || (dst_width > hw_res_info_.max_pipe_width)) {
436 SplitRect(src_rect, dst_rect, &left_pipe->src_roi, &left_pipe->dst_roi, &right_pipe->src_roi,
437 &right_pipe->dst_roi);
438 left_pipe->valid = true;
439 right_pipe->valid = true;
440 } else {
441 left_pipe->src_roi = src_rect;
442 left_pipe->dst_roi = dst_rect;
443 left_pipe->valid = true;
444 right_pipe->Reset();
445 }
446
447 return kErrorNone;
448 }
449
DisplaySplitConfig(DisplayResourceContext * display_resource_ctx,const LayerRect & src_rect,const LayerRect & dst_rect,HWLayerConfig * layer_config)450 DisplayError ResourceDefault::DisplaySplitConfig(DisplayResourceContext *display_resource_ctx,
451 const LayerRect &src_rect, const LayerRect &dst_rect,
452 HWLayerConfig *layer_config) {
453 HWMixerAttributes &mixer_attributes = display_resource_ctx->mixer_attributes;
454
455 // for display split case
456 HWPipeInfo *left_pipe = &layer_config->left_pipe;
457 HWPipeInfo *right_pipe = &layer_config->right_pipe;
458 LayerRect scissor_left, scissor_right, dst_left, crop_left, crop_right, dst_right;
459
460 scissor_left.right = FLOAT(mixer_attributes.split_left);
461 scissor_left.bottom = FLOAT(mixer_attributes.height);
462
463 scissor_right.left = FLOAT(mixer_attributes.split_left);
464 scissor_right.top = 0.0f;
465 scissor_right.right = FLOAT(mixer_attributes.width);
466 scissor_right.bottom = FLOAT(mixer_attributes.height);
467
468 crop_left = src_rect;
469 dst_left = dst_rect;
470 crop_right = crop_left;
471 dst_right = dst_left;
472
473 bool crop_left_valid = CalculateCropRects(scissor_left, &crop_left, &dst_left);
474 bool crop_right_valid = false;
475
476 if (IsValid(scissor_right)) {
477 crop_right_valid = CalculateCropRects(scissor_right, &crop_right, &dst_right);
478 }
479
480 // Reset left_pipe and right_pipe to invalid by default
481 left_pipe->Reset();
482 right_pipe->Reset();
483
484 if (crop_left_valid) {
485 // assign left pipe
486 left_pipe->src_roi = crop_left;
487 left_pipe->dst_roi = dst_left;
488 left_pipe->valid = true;
489 }
490
491 // assign right pipe if needed
492 if (crop_right_valid) {
493 right_pipe->src_roi = crop_right;
494 right_pipe->dst_roi = dst_right;
495 right_pipe->valid = true;
496 }
497
498 return kErrorNone;
499 }
500
Config(DisplayResourceContext * display_resource_ctx,HWLayers * hw_layers)501 DisplayError ResourceDefault::Config(DisplayResourceContext *display_resource_ctx,
502 HWLayers *hw_layers) {
503 HWLayersInfo &layer_info = hw_layers->info;
504 DisplayError error = kErrorNone;
505 Layer *layer = layer_info.stack->layers.at(layer_info.index[0]);
506
507 error = ValidateLayerParams(layer);
508 if (error != kErrorNone) {
509 return error;
510 }
511
512 struct HWLayerConfig *layer_config = &hw_layers->config[0];
513 HWPipeInfo &left_pipe = layer_config->left_pipe;
514 HWPipeInfo &right_pipe = layer_config->right_pipe;
515
516 LayerRect src_rect = layer->src_rect;
517 LayerRect dst_rect = layer->dst_rect;
518
519 error = ValidateDimensions(src_rect, dst_rect);
520 if (error != kErrorNone) {
521 return error;
522 }
523
524 bool ubwc_tiled = IsUBWCFormat(layer->input_buffer->format);
525 error = ValidateScaling(src_rect, dst_rect, false /*rotated90 */, ubwc_tiled,
526 false /* use_rotator_downscale */);
527 if (error != kErrorNone) {
528 return error;
529 }
530
531 if (hw_res_info_.is_src_split) {
532 error = SrcSplitConfig(display_resource_ctx, src_rect, dst_rect, layer_config);
533 } else {
534 error = DisplaySplitConfig(display_resource_ctx, src_rect, dst_rect, layer_config);
535 }
536
537 if (error != kErrorNone) {
538 return error;
539 }
540
541 error = AlignPipeConfig(layer, &left_pipe, &right_pipe);
542 if (error != kErrorNone) {
543 return error;
544 }
545
546 // set z_order, left_pipe should always be valid
547 left_pipe.z_order = 0;
548
549 DLOGV_IF(kTagResources, "==== FB layer Config ====");
550 Log(kTagResources, "input layer src_rect", layer->src_rect);
551 Log(kTagResources, "input layer dst_rect", layer->dst_rect);
552 Log(kTagResources, "cropped src_rect", src_rect);
553 Log(kTagResources, "cropped dst_rect", dst_rect);
554 Log(kTagResources, "left pipe src", layer_config->left_pipe.src_roi);
555 Log(kTagResources, "left pipe dst", layer_config->left_pipe.dst_roi);
556 if (right_pipe.valid) {
557 right_pipe.z_order = 0;
558 Log(kTagResources, "right pipe src", layer_config->right_pipe.src_roi);
559 Log(kTagResources, "right pipe dst", layer_config->right_pipe.dst_roi);
560 }
561
562 return error;
563 }
564
CalculateCropRects(const LayerRect & scissor,LayerRect * crop,LayerRect * dst)565 bool ResourceDefault::CalculateCropRects(const LayerRect &scissor, LayerRect *crop,
566 LayerRect *dst) {
567 float &crop_left = crop->left;
568 float &crop_top = crop->top;
569 float &crop_right = crop->right;
570 float &crop_bottom = crop->bottom;
571 float crop_width = crop->right - crop->left;
572 float crop_height = crop->bottom - crop->top;
573
574 float &dst_left = dst->left;
575 float &dst_top = dst->top;
576 float &dst_right = dst->right;
577 float &dst_bottom = dst->bottom;
578 float dst_width = dst->right - dst->left;
579 float dst_height = dst->bottom - dst->top;
580
581 const float &sci_left = scissor.left;
582 const float &sci_top = scissor.top;
583 const float &sci_right = scissor.right;
584 const float &sci_bottom = scissor.bottom;
585
586 float left_cut_ratio = 0.0, right_cut_ratio = 0.0, top_cut_ratio = 0.0, bottom_cut_ratio = 0.0;
587 bool need_cut = false;
588
589 if (dst_left < sci_left) {
590 left_cut_ratio = (sci_left - dst_left) / dst_width;
591 dst_left = sci_left;
592 need_cut = true;
593 }
594
595 if (dst_right > sci_right) {
596 right_cut_ratio = (dst_right - sci_right) / dst_width;
597 dst_right = sci_right;
598 need_cut = true;
599 }
600
601 if (dst_top < sci_top) {
602 top_cut_ratio = (sci_top - dst_top) / (dst_height);
603 dst_top = sci_top;
604 need_cut = true;
605 }
606
607 if (dst_bottom > sci_bottom) {
608 bottom_cut_ratio = (dst_bottom - sci_bottom) / (dst_height);
609 dst_bottom = sci_bottom;
610 need_cut = true;
611 }
612
613 if (!need_cut)
614 return true;
615
616 crop_left += crop_width * left_cut_ratio;
617 crop_top += crop_height * top_cut_ratio;
618 crop_right -= crop_width * right_cut_ratio;
619 crop_bottom -= crop_height * bottom_cut_ratio;
620 Normalize(1, 1, crop);
621 Normalize(1, 1, dst);
622 if (IsValid(*crop) && IsValid(*dst))
623 return true;
624 else
625 return false;
626 }
627
ValidateLayerParams(const Layer * layer)628 DisplayError ResourceDefault::ValidateLayerParams(const Layer *layer) {
629 const LayerRect &src = layer->src_rect;
630 const LayerRect &dst = layer->dst_rect;
631 const LayerBuffer *input_buffer = layer->input_buffer;
632
633 if (input_buffer->format == kFormatInvalid) {
634 DLOGV_IF(kTagResources, "Invalid input buffer format %d", input_buffer->format);
635 return kErrorNotSupported;
636 }
637
638 if (!IsValid(src) || !IsValid(dst)) {
639 Log(kTagResources, "input layer src_rect", src);
640 Log(kTagResources, "input layer dst_rect", dst);
641 return kErrorNotSupported;
642 }
643
644 // Make sure source in integral only if it is a non secure layer.
645 if (!input_buffer->flags.secure &&
646 ((src.left - roundf(src.left) != 0.0f) ||
647 (src.top - roundf(src.top) != 0.0f) ||
648 (src.right - roundf(src.right) != 0.0f) ||
649 (src.bottom - roundf(src.bottom) != 0.0f))) {
650 DLOGV_IF(kTagResources, "Input ROI is not integral");
651 return kErrorNotSupported;
652 }
653
654 return kErrorNone;
655 }
656
ValidateDimensions(const LayerRect & crop,const LayerRect & dst)657 DisplayError ResourceDefault::ValidateDimensions(const LayerRect &crop, const LayerRect &dst) {
658 if (!IsValid(crop)) {
659 Log(kTagResources, "Invalid crop rect", crop);
660 return kErrorNotSupported;
661 }
662
663 if (!IsValid(dst)) {
664 Log(kTagResources, "Invalid dst rect", dst);
665 return kErrorNotSupported;
666 }
667
668 float crop_width = crop.right - crop.left;
669 float crop_height = crop.bottom - crop.top;
670 float dst_width = dst.right - dst.left;
671 float dst_height = dst.bottom - dst.top;
672
673 if ((UINT32(crop_width - dst_width) == 1) || (UINT32(crop_height - dst_height) == 1)) {
674 DLOGV_IF(kTagResources, "One pixel downscaling detected crop_w = %.0f, dst_w = %.0f, " \
675 "crop_h = %.0f, dst_h = %.0f", crop_width, dst_width, crop_height, dst_height);
676 return kErrorNotSupported;
677 }
678
679 return kErrorNone;
680 }
681
ValidatePipeParams(HWPipeInfo * pipe_info,bool ubwc_tiled)682 DisplayError ResourceDefault::ValidatePipeParams(HWPipeInfo *pipe_info, bool ubwc_tiled) {
683 DisplayError error = kErrorNone;
684
685 const LayerRect &src_rect = pipe_info->src_roi;
686 const LayerRect &dst_rect = pipe_info->dst_roi;
687
688 error = ValidateDimensions(src_rect, dst_rect);
689 if (error != kErrorNone) {
690 return error;
691 }
692
693 error = ValidateScaling(src_rect, dst_rect, false /* rotated90 */, ubwc_tiled,
694 false /* use_rotator_downscale */);
695 if (error != kErrorNone) {
696 return error;
697 }
698
699 return kErrorNone;
700 }
701
ValidateScaling(const LayerRect & crop,const LayerRect & dst,bool rotate90,bool ubwc_tiled,bool use_rotator_downscale)702 DisplayError ResourceDefault::ValidateScaling(const LayerRect &crop, const LayerRect &dst,
703 bool rotate90, bool ubwc_tiled,
704 bool use_rotator_downscale) {
705 DisplayError error = kErrorNone;
706
707 float scale_x = 1.0f;
708 float scale_y = 1.0f;
709
710 error = GetScaleFactor(crop, dst, &scale_x, &scale_y);
711 if (error != kErrorNone) {
712 return error;
713 }
714
715 error = ValidateDownScaling(scale_x, scale_y, ubwc_tiled);
716 if (error != kErrorNone) {
717 return error;
718 }
719
720 error = ValidateUpScaling(scale_x, scale_y);
721 if (error != kErrorNone) {
722 return error;
723 }
724
725 return kErrorNone;
726 }
727
ValidateDownScaling(float scale_x,float scale_y,bool ubwc_tiled)728 DisplayError ResourceDefault::ValidateDownScaling(float scale_x, float scale_y, bool ubwc_tiled) {
729 if ((UINT32(scale_x) > 1) || (UINT32(scale_y) > 1)) {
730 float max_scale_down = FLOAT(hw_res_info_.max_scale_down);
731
732 // MDP H/W cannot apply decimation on UBWC tiled framebuffer
733 if (!ubwc_tiled && hw_res_info_.has_decimation) {
734 max_scale_down *= FLOAT(kMaxDecimationDownScaleRatio);
735 }
736
737 if (scale_x > max_scale_down || scale_y > max_scale_down) {
738 DLOGV_IF(kTagResources,
739 "Scaling down is over the limit: scale_x = %.0f, scale_y = %.0f, " \
740 "has_deci = %d", scale_x, scale_y, hw_res_info_.has_decimation);
741 return kErrorNotSupported;
742 }
743 }
744
745 DLOGV_IF(kTagResources, "scale_x = %.4f, scale_y = %.4f", scale_x, scale_y);
746
747 return kErrorNone;
748 }
749
ValidateUpScaling(float scale_x,float scale_y)750 DisplayError ResourceDefault::ValidateUpScaling(float scale_x, float scale_y) {
751 float max_scale_up = FLOAT(hw_res_info_.max_scale_up);
752
753 if (UINT32(scale_x) < 1 && scale_x > 0.0f) {
754 if ((1.0f / scale_x) > max_scale_up) {
755 DLOGV_IF(kTagResources, "Scaling up is over limit scale_x = %f", 1.0f / scale_x);
756 return kErrorNotSupported;
757 }
758 }
759
760 if (UINT32(scale_y) < 1 && scale_y > 0.0f) {
761 if ((1.0f / scale_y) > max_scale_up) {
762 DLOGV_IF(kTagResources, "Scaling up is over limit scale_y = %f", 1.0f / scale_y);
763 return kErrorNotSupported;
764 }
765 }
766
767 DLOGV_IF(kTagResources, "scale_x = %.4f, scale_y = %.4f", scale_x, scale_y);
768
769 return kErrorNone;
770 }
771
GetScaleFactor(const LayerRect & crop,const LayerRect & dst,float * scale_x,float * scale_y)772 DisplayError ResourceDefault::GetScaleFactor(const LayerRect &crop, const LayerRect &dst,
773 float *scale_x, float *scale_y) {
774 float crop_width = crop.right - crop.left;
775 float crop_height = crop.bottom - crop.top;
776 float dst_width = dst.right - dst.left;
777 float dst_height = dst.bottom - dst.top;
778
779 *scale_x = crop_width / dst_width;
780 *scale_y = crop_height / dst_height;
781
782 return kErrorNone;
783 }
784
SetDecimationFactor(HWPipeInfo * pipe)785 DisplayError ResourceDefault::SetDecimationFactor(HWPipeInfo *pipe) {
786 float src_h = pipe->src_roi.bottom - pipe->src_roi.top;
787 float dst_h = pipe->dst_roi.bottom - pipe->dst_roi.top;
788 float down_scale_h = src_h / dst_h;
789
790 float src_w = pipe->src_roi.right - pipe->src_roi.left;
791 float dst_w = pipe->dst_roi.right - pipe->dst_roi.left;
792 float down_scale_w = src_w / dst_w;
793
794 pipe->horizontal_decimation = 0;
795 pipe->vertical_decimation = 0;
796
797 if (CalculateDecimation(down_scale_w, &pipe->horizontal_decimation) != kErrorNone) {
798 return kErrorNotSupported;
799 }
800
801 if (CalculateDecimation(down_scale_h, &pipe->vertical_decimation) != kErrorNone) {
802 return kErrorNotSupported;
803 }
804
805 DLOGI_IF(kTagResources, "horizontal_decimation %d, vertical_decimation %d",
806 pipe->horizontal_decimation, pipe->vertical_decimation);
807
808 return kErrorNone;
809 }
810
SplitRect(const LayerRect & src_rect,const LayerRect & dst_rect,LayerRect * src_left,LayerRect * dst_left,LayerRect * src_right,LayerRect * dst_right)811 void ResourceDefault::SplitRect(const LayerRect &src_rect, const LayerRect &dst_rect,
812 LayerRect *src_left, LayerRect *dst_left, LayerRect *src_right,
813 LayerRect *dst_right) {
814 // Split rectangle horizontally and evenly into two.
815 float src_width = src_rect.right - src_rect.left;
816 float dst_width = dst_rect.right - dst_rect.left;
817 float src_width_ori = src_width;
818 src_width = ROUND_UP_ALIGN_DOWN(src_width / 2, 1);
819 dst_width = ROUND_UP_ALIGN_DOWN(dst_width * src_width / src_width_ori, 1);
820
821 src_left->left = src_rect.left;
822 src_left->right = src_rect.left + src_width;
823 src_right->left = src_left->right;
824 src_right->right = src_rect.right;
825
826 src_left->top = src_rect.top;
827 src_left->bottom = src_rect.bottom;
828 src_right->top = src_rect.top;
829 src_right->bottom = src_rect.bottom;
830
831 dst_left->top = dst_rect.top;
832 dst_left->bottom = dst_rect.bottom;
833 dst_right->top = dst_rect.top;
834 dst_right->bottom = dst_rect.bottom;
835
836 dst_left->left = dst_rect.left;
837 dst_left->right = dst_rect.left + dst_width;
838 dst_right->left = dst_left->right;
839 dst_right->right = dst_rect.right;
840 }
841
AlignPipeConfig(const Layer * layer,HWPipeInfo * left_pipe,HWPipeInfo * right_pipe)842 DisplayError ResourceDefault::AlignPipeConfig(const Layer *layer, HWPipeInfo *left_pipe,
843 HWPipeInfo *right_pipe) {
844 DisplayError error = kErrorNone;
845 if (!left_pipe->valid) {
846 DLOGE_IF(kTagResources, "left_pipe should not be invalid");
847 return kErrorNotSupported;
848 }
849
850 bool ubwc_tiled = IsUBWCFormat(layer->input_buffer->format);
851 error = ValidatePipeParams(left_pipe, ubwc_tiled);
852 if (error != kErrorNone) {
853 goto PipeConfigExit;
854 }
855
856 if (right_pipe->valid) {
857 // Make sure the left and right ROI are conjunct
858 right_pipe->src_roi.left = left_pipe->src_roi.right;
859 right_pipe->dst_roi.left = left_pipe->dst_roi.right;
860 error = ValidatePipeParams(right_pipe, ubwc_tiled);
861 }
862
863 PipeConfigExit:
864 if (error != kErrorNone) {
865 DLOGV_IF(kTagResources, "AlignPipeConfig failed");
866 }
867 return error;
868 }
869
CalculateDecimation(float downscale,uint8_t * decimation)870 DisplayError ResourceDefault::CalculateDecimation(float downscale, uint8_t *decimation) {
871 float max_down_scale = FLOAT(hw_res_info_.max_scale_down);
872
873 if (downscale <= max_down_scale) {
874 *decimation = 0;
875 return kErrorNone;
876 } else if (!hw_res_info_.has_decimation) {
877 DLOGE("Downscaling exceeds the maximum MDP downscale limit but decimation not enabled");
878 return kErrorNotSupported;
879 }
880
881 // Decimation is the remaining downscale factor after doing max SDE downscale.
882 // In SDE, decimation is supported in powers of 2.
883 // For ex: If a pipe needs downscale of 8 but max_down_scale is 4
884 // So decimation = powf(2.0, ceilf(log2f(8 / 4))) = powf(2.0, 1.0) = 2
885 *decimation = UINT8(ceilf(log2f(downscale / max_down_scale)));
886 return kErrorNone;
887 }
888
ValidateCursorConfig(Handle display_ctx,const Layer * layer,bool is_top)889 DisplayError ResourceDefault::ValidateCursorConfig(Handle display_ctx, const Layer *layer,
890 bool is_top) {
891 return kErrorNotSupported;
892 }
893
ValidateCursorPosition(Handle display_ctx,HWLayers * hw_layers,int x,int y)894 DisplayError ResourceDefault::ValidateCursorPosition(Handle display_ctx, HWLayers *hw_layers,
895 int x, int y) {
896 return kErrorNotSupported;
897 }
898
SetMaxBandwidthMode(HWBwModes mode)899 DisplayError ResourceDefault::SetMaxBandwidthMode(HWBwModes mode) {
900 return kErrorNotSupported;
901 }
902
GetScaleLutConfig(HWScaleLutInfo * lut_info)903 DisplayError ResourceDefault::GetScaleLutConfig(HWScaleLutInfo *lut_info) {
904 return kErrorNone;
905 }
906
SetDetailEnhancerData(Handle display_ctx,const DisplayDetailEnhancerData & de_data)907 DisplayError ResourceDefault::SetDetailEnhancerData(Handle display_ctx,
908 const DisplayDetailEnhancerData &de_data) {
909 return kErrorNotSupported;
910 }
911
912 } // namespace sdm
913