1 /*
2 * Copyright (c) 2014 - 2017, The Linux Foundation. All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions are
6 * met:
7 * * Redistributions of source code must retain the above copyright
8 * notice, this list of conditions and the following disclaimer.
9 * * Redistributions in binary form must reproduce the above
10 * copyright notice, this list of conditions and the following
11 * disclaimer in the documentation and/or other materials provided
12 * with the distribution.
13 * * Neither the name of The Linux Foundation nor the names of its
14 * contributors may be used to endorse or promote products derived
15 * from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
19 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT
20 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS
21 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
24 * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
25 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE
26 * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
27 * IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30 #include <cutils/properties.h>
31 #include <sync/sync.h>
32 #include <utils/constants.h>
33 #include <utils/debug.h>
34 #include <stdarg.h>
35 #include <sys/mman.h>
36
37 #include <gr.h>
38 #include "hwc_display_primary.h"
39 #include "hwc_debugger.h"
40
41 #define __CLASS__ "HWCDisplayPrimary"
42
43 namespace sdm {
44
Create(CoreInterface * core_intf,BufferAllocator * buffer_allocator,hwc_procs_t const ** hwc_procs,qService::QService * qservice,HWCDisplay ** hwc_display)45 int HWCDisplayPrimary::Create(CoreInterface *core_intf, BufferAllocator *buffer_allocator,
46 hwc_procs_t const **hwc_procs, qService::QService *qservice,
47 HWCDisplay **hwc_display) {
48 int status = 0;
49 uint32_t primary_width = 0;
50 uint32_t primary_height = 0;
51
52 HWCDisplay *hwc_display_primary = new HWCDisplayPrimary(core_intf, buffer_allocator,
53 hwc_procs, qservice);
54 status = hwc_display_primary->Init();
55 if (status) {
56 delete hwc_display_primary;
57 return status;
58 }
59
60 hwc_display_primary->GetMixerResolution(&primary_width, &primary_height);
61 int width = 0, height = 0;
62 HWCDebugHandler::Get()->GetProperty("sdm.fb_size_width", &width);
63 HWCDebugHandler::Get()->GetProperty("sdm.fb_size_height", &height);
64 if (width > 0 && height > 0) {
65 primary_width = UINT32(width);
66 primary_height = UINT32(height);
67 }
68
69 status = hwc_display_primary->SetFrameBufferResolution(primary_width, primary_height);
70 if (status) {
71 Destroy(hwc_display_primary);
72 return status;
73 }
74
75 *hwc_display = hwc_display_primary;
76
77 return status;
78 }
79
Destroy(HWCDisplay * hwc_display)80 void HWCDisplayPrimary::Destroy(HWCDisplay *hwc_display) {
81 hwc_display->Deinit();
82 delete hwc_display;
83 }
84
HWCDisplayPrimary(CoreInterface * core_intf,BufferAllocator * buffer_allocator,hwc_procs_t const ** hwc_procs,qService::QService * qservice)85 HWCDisplayPrimary::HWCDisplayPrimary(CoreInterface *core_intf,
86 BufferAllocator *buffer_allocator,
87 hwc_procs_t const **hwc_procs,
88 qService::QService *qservice)
89 : HWCDisplay(core_intf, hwc_procs, kPrimary, HWC_DISPLAY_PRIMARY, true, qservice,
90 DISPLAY_CLASS_PRIMARY), buffer_allocator_(buffer_allocator) {
91 }
92
Init()93 int HWCDisplayPrimary::Init() {
94 cpu_hint_.Init(static_cast<HWCDebugHandler*>(HWCDebugHandler::Get()));
95
96 use_metadata_refresh_rate_ = true;
97 int disable_metadata_dynfps = 0;
98 HWCDebugHandler::Get()->GetProperty("persist.metadata_dynfps.disable", &disable_metadata_dynfps);
99 if (disable_metadata_dynfps) {
100 use_metadata_refresh_rate_ = false;
101 }
102
103 int status = HWCDisplay::Init();
104 if (status) {
105 return status;
106 }
107 color_mode_ = new HWCColorMode(display_intf_);
108 color_mode_->Init();
109
110 return status;
111 }
112
Deinit()113 int HWCDisplayPrimary::Deinit() {
114 color_mode_->DeInit();
115 delete color_mode_;
116 color_mode_ = NULL;
117
118 return HWCDisplay::Deinit();
119 }
120
121
ProcessBootAnimCompleted(hwc_display_contents_1_t * list)122 void HWCDisplayPrimary::ProcessBootAnimCompleted(hwc_display_contents_1_t *list) {
123 uint32_t numBootUpLayers = 0;
124
125 numBootUpLayers = static_cast<uint32_t>(Debug::GetBootAnimLayerCount());
126
127 if (numBootUpLayers == 0) {
128 numBootUpLayers = 2;
129 }
130 /* All other checks namely "init.svc.bootanim" or
131 * HWC_GEOMETRY_CHANGED fail in correctly identifying the
132 * exact bootup transition to homescreen
133 */
134 char cryptoState[PROPERTY_VALUE_MAX];
135 char voldDecryptState[PROPERTY_VALUE_MAX];
136 bool isEncrypted = false;
137 bool main_class_services_started = false;
138 if (property_get("ro.crypto.state", cryptoState, "unencrypted")) {
139 if (!strcmp(cryptoState, "encrypted")) {
140 isEncrypted = true;
141 if (property_get("vold.decrypt", voldDecryptState, "") &&
142 !strcmp(voldDecryptState, "trigger_restart_framework"))
143 main_class_services_started = true;
144 }
145 }
146 if ((!isEncrypted ||(isEncrypted && main_class_services_started)) &&
147 (list->numHwLayers > numBootUpLayers)) {
148 boot_animation_completed_ = true;
149 // Applying default mode after bootanimation is finished And
150 // If Data is Encrypted, it is ready for access.
151 if (display_intf_)
152 display_intf_->ApplyDefaultDisplayMode();
153 }
154 }
155
Prepare(hwc_display_contents_1_t * content_list)156 int HWCDisplayPrimary::Prepare(hwc_display_contents_1_t *content_list) {
157 int status = 0;
158 DisplayError error = kErrorNone;
159
160 if (!boot_animation_completed_)
161 ProcessBootAnimCompleted(content_list);
162
163 if (display_paused_) {
164 MarkLayersForGPUBypass(content_list);
165 return status;
166 }
167
168 status = AllocateLayerStack(content_list);
169 if (status) {
170 return status;
171 }
172
173 status = PrePrepareLayerStack(content_list);
174 if (status) {
175 return status;
176 }
177
178 bool pending_output_dump = dump_frame_count_ && dump_output_to_file_;
179
180 if (frame_capture_buffer_queued_ || pending_output_dump) {
181 // RHS values were set in FrameCaptureAsync() called from a binder thread. They are picked up
182 // here in a subsequent draw round.
183 layer_stack_.output_buffer = &output_buffer_;
184 layer_stack_.flags.post_processed_output = post_processed_output_;
185 }
186
187 uint32_t num_updating_layers = GetUpdatingLayersCount(UINT32(content_list->numHwLayers - 1));
188 bool one_updating_layer = (num_updating_layers == 1);
189
190 if (num_updating_layers != 0) {
191 ToggleCPUHint(one_updating_layer);
192 }
193
194 uint32_t refresh_rate = GetOptimalRefreshRate(one_updating_layer);
195 // TODO(user): Need to read current refresh rate to avoid
196 // redundant calls to set refresh rate during idle fall back.
197 if ((current_refresh_rate_ != refresh_rate) || (handle_idle_timeout_)) {
198 error = display_intf_->SetRefreshRate(refresh_rate);
199 }
200
201 if (error == kErrorNone) {
202 // On success, set current refresh rate to new refresh rate
203 current_refresh_rate_ = refresh_rate;
204 }
205
206 if (handle_idle_timeout_) {
207 handle_idle_timeout_ = false;
208 }
209
210 if (content_list->numHwLayers <= 1) {
211 flush_ = true;
212 }
213
214 status = PrepareLayerStack(content_list);
215 if (status) {
216 return status;
217 }
218
219 return 0;
220 }
221
Commit(hwc_display_contents_1_t * content_list)222 int HWCDisplayPrimary::Commit(hwc_display_contents_1_t *content_list) {
223 int status = 0;
224
225 DisplayConfigFixedInfo display_config;
226 display_intf_->GetConfig(&display_config);
227 if (content_list->numHwLayers <= 1 && display_config.is_cmdmode) {
228 DLOGV("Skipping null commit on cmd mode panel");
229 flush_ = false;
230 return 0;
231 }
232
233 if (display_paused_) {
234 if (content_list->outbufAcquireFenceFd >= 0) {
235 // If we do not handle the frame set retireFenceFd to outbufAcquireFenceFd,
236 // which will make sure the framework waits on it and closes it.
237 content_list->retireFenceFd = dup(content_list->outbufAcquireFenceFd);
238 close(content_list->outbufAcquireFenceFd);
239 content_list->outbufAcquireFenceFd = -1;
240 }
241
242 DisplayError error = display_intf_->Flush();
243 if (error != kErrorNone) {
244 DLOGE("Flush failed. Error = %d", error);
245 }
246 return status;
247 }
248
249 status = HWCDisplay::CommitLayerStack(content_list);
250 if (status) {
251 return status;
252 }
253
254 HandleFrameOutput();
255
256 status = HWCDisplay::PostCommitLayerStack(content_list);
257 if (status) {
258 return status;
259 }
260
261 return 0;
262 }
263
Perform(uint32_t operation,...)264 int HWCDisplayPrimary::Perform(uint32_t operation, ...) {
265 va_list args;
266 va_start(args, operation);
267 int val = va_arg(args, int32_t);
268 va_end(args);
269 switch (operation) {
270 case SET_METADATA_DYN_REFRESH_RATE:
271 SetMetaDataRefreshRateFlag(val);
272 break;
273 case SET_BINDER_DYN_REFRESH_RATE:
274 ForceRefreshRate(UINT32(val));
275 break;
276 case SET_DISPLAY_MODE:
277 SetDisplayMode(UINT32(val));
278 break;
279 case SET_QDCM_SOLID_FILL_INFO:
280 SetQDCMSolidFillInfo(true, UINT32(val));
281 break;
282 case UNSET_QDCM_SOLID_FILL_INFO:
283 SetQDCMSolidFillInfo(false, UINT32(val));
284 break;
285 default:
286 DLOGW("Invalid operation %d", operation);
287 return -EINVAL;
288 }
289
290 return 0;
291 }
292
SetDisplayMode(uint32_t mode)293 DisplayError HWCDisplayPrimary::SetDisplayMode(uint32_t mode) {
294 DisplayError error = kErrorNone;
295
296 if (display_intf_) {
297 error = display_intf_->SetDisplayMode(mode);
298 }
299
300 return error;
301 }
302
SetMetaDataRefreshRateFlag(bool enable)303 void HWCDisplayPrimary::SetMetaDataRefreshRateFlag(bool enable) {
304 int disable_metadata_dynfps = 0;
305
306 HWCDebugHandler::Get()->GetProperty("persist.metadata_dynfps.disable", &disable_metadata_dynfps);
307 if (disable_metadata_dynfps) {
308 return;
309 }
310 use_metadata_refresh_rate_ = enable;
311 }
312
SetQDCMSolidFillInfo(bool enable,uint32_t color)313 void HWCDisplayPrimary::SetQDCMSolidFillInfo(bool enable, uint32_t color) {
314 solid_fill_enable_ = enable;
315 solid_fill_color_ = color;
316 }
317
ToggleCPUHint(bool set)318 void HWCDisplayPrimary::ToggleCPUHint(bool set) {
319 if (set) {
320 cpu_hint_.Set();
321 } else {
322 cpu_hint_.Reset();
323 }
324 }
325
SetSecureDisplay(bool secure_display_active,bool force_flush)326 void HWCDisplayPrimary::SetSecureDisplay(bool secure_display_active, bool force_flush) {
327 if (secure_display_active_ != secure_display_active) {
328 // Skip Prepare and call Flush for null commit
329 DLOGI("SecureDisplay state changed from %d to %d Needs Flush!!", secure_display_active_,
330 secure_display_active);
331 secure_display_active_ = secure_display_active;
332 skip_prepare_cnt = 1;
333
334 // Issue two null commits for command mode panels when external displays are connected.
335 // Two null commits are required to handle non secure to secure transitions at 30fps.
336 // TODO(user): Need two null commits on video mode also to handle transition cases of
337 // primary at higher fps (ex60) and external at lower fps.
338
339 // Avoid flush for command mode panels when no external displays are connected.
340 // This is to avoid flicker/blink on primary during transitions.
341 DisplayConfigFixedInfo display_config;
342 display_intf_->GetConfig(&display_config);
343 if (display_config.is_cmdmode) {
344 if (force_flush) {
345 DLOGI("Issue two null commits for command mode panels");
346 skip_prepare_cnt = 2;
347 } else {
348 DLOGI("Avoid flush for command mode panel when no external displays are connected");
349 skip_prepare_cnt = 0;
350 }
351 }
352 }
353 }
354
ForceRefreshRate(uint32_t refresh_rate)355 void HWCDisplayPrimary::ForceRefreshRate(uint32_t refresh_rate) {
356 if ((refresh_rate && (refresh_rate < min_refresh_rate_ || refresh_rate > max_refresh_rate_)) ||
357 force_refresh_rate_ == refresh_rate) {
358 // Cannot honor force refresh rate, as its beyond the range or new request is same
359 return;
360 }
361
362 const hwc_procs_t *hwc_procs = *hwc_procs_;
363 force_refresh_rate_ = refresh_rate;
364
365 hwc_procs->invalidate(hwc_procs);
366
367 return;
368 }
369
GetOptimalRefreshRate(bool one_updating_layer)370 uint32_t HWCDisplayPrimary::GetOptimalRefreshRate(bool one_updating_layer) {
371 if (force_refresh_rate_) {
372 return force_refresh_rate_;
373 } else if (handle_idle_timeout_) {
374 return min_refresh_rate_;
375 } else if (use_metadata_refresh_rate_ && one_updating_layer && metadata_refresh_rate_) {
376 return metadata_refresh_rate_;
377 }
378
379 return max_refresh_rate_;
380 }
381
Refresh()382 DisplayError HWCDisplayPrimary::Refresh() {
383 const hwc_procs_t *hwc_procs = *hwc_procs_;
384 DisplayError error = kErrorNone;
385
386 if (!hwc_procs) {
387 return kErrorParameters;
388 }
389
390 hwc_procs->invalidate(hwc_procs);
391 handle_idle_timeout_ = true;
392
393 return error;
394 }
395
SetIdleTimeoutMs(uint32_t timeout_ms)396 void HWCDisplayPrimary::SetIdleTimeoutMs(uint32_t timeout_ms) {
397 display_intf_->SetIdleTimeoutMs(timeout_ms);
398 }
399
SetLayerBuffer(const BufferInfo & output_buffer_info,LayerBuffer * output_buffer)400 static void SetLayerBuffer(const BufferInfo& output_buffer_info, LayerBuffer *output_buffer) {
401 const BufferConfig& buffer_config = output_buffer_info.buffer_config;
402 const AllocatedBufferInfo &alloc_buffer_info = output_buffer_info.alloc_buffer_info;
403
404 output_buffer->width = alloc_buffer_info.aligned_width;
405 output_buffer->height = alloc_buffer_info.aligned_height;
406 output_buffer->unaligned_width = buffer_config.width;
407 output_buffer->unaligned_height = buffer_config.height;
408 output_buffer->format = buffer_config.format;
409 output_buffer->planes[0].fd = alloc_buffer_info.fd;
410 output_buffer->planes[0].stride = alloc_buffer_info.stride;
411 }
412
HandleFrameOutput()413 void HWCDisplayPrimary::HandleFrameOutput() {
414 if (frame_capture_buffer_queued_) {
415 HandleFrameCapture();
416 } else if (dump_output_to_file_) {
417 HandleFrameDump();
418 }
419 }
420
HandleFrameCapture()421 void HWCDisplayPrimary::HandleFrameCapture() {
422 if (output_buffer_.release_fence_fd >= 0) {
423 frame_capture_status_ = sync_wait(output_buffer_.release_fence_fd, 1000);
424 ::close(output_buffer_.release_fence_fd);
425 output_buffer_.release_fence_fd = -1;
426 }
427
428 frame_capture_buffer_queued_ = false;
429 post_processed_output_ = false;
430 output_buffer_ = {};
431 }
432
HandleFrameDump()433 void HWCDisplayPrimary::HandleFrameDump() {
434 if (dump_frame_count_ && output_buffer_.release_fence_fd >= 0) {
435 int ret = sync_wait(output_buffer_.release_fence_fd, 1000);
436 ::close(output_buffer_.release_fence_fd);
437 output_buffer_.release_fence_fd = -1;
438 if (ret < 0) {
439 DLOGE("sync_wait error errno = %d, desc = %s", errno, strerror(errno));
440 } else {
441 DumpOutputBuffer(output_buffer_info_, output_buffer_base_, layer_stack_.retire_fence_fd);
442 }
443 }
444
445 if (0 == dump_frame_count_) {
446 dump_output_to_file_ = false;
447 // Unmap and Free buffer
448 if (munmap(output_buffer_base_, output_buffer_info_.alloc_buffer_info.size) != 0) {
449 DLOGE("unmap failed with err %d", errno);
450 }
451 if (buffer_allocator_->FreeBuffer(&output_buffer_info_) != 0) {
452 DLOGE("FreeBuffer failed");
453 }
454
455 post_processed_output_ = false;
456 output_buffer_ = {};
457 output_buffer_info_ = {};
458 output_buffer_base_ = nullptr;
459 }
460 }
461
SetFrameDumpConfig(uint32_t count,uint32_t bit_mask_layer_type)462 void HWCDisplayPrimary::SetFrameDumpConfig(uint32_t count, uint32_t bit_mask_layer_type) {
463 HWCDisplay::SetFrameDumpConfig(count, bit_mask_layer_type);
464 dump_output_to_file_ = bit_mask_layer_type & (1 << OUTPUT_LAYER_DUMP);
465 DLOGI("output_layer_dump_enable %d", dump_output_to_file_);
466
467 if (!count || !dump_output_to_file_) {
468 return;
469 }
470
471 // Allocate and map output buffer
472 output_buffer_info_ = {};
473 // Since we dump DSPP output use Panel resolution.
474 GetPanelResolution(&output_buffer_info_.buffer_config.width,
475 &output_buffer_info_.buffer_config.height);
476 output_buffer_info_.buffer_config.format = kFormatRGB888;
477 output_buffer_info_.buffer_config.buffer_count = 1;
478 if (buffer_allocator_->AllocateBuffer(&output_buffer_info_) != 0) {
479 DLOGE("Buffer allocation failed");
480 output_buffer_info_ = {};
481 return;
482 }
483
484 void *buffer = mmap(NULL, output_buffer_info_.alloc_buffer_info.size,
485 PROT_READ | PROT_WRITE,
486 MAP_SHARED, output_buffer_info_.alloc_buffer_info.fd, 0);
487
488 if (buffer == MAP_FAILED) {
489 DLOGE("mmap failed with err %d", errno);
490 buffer_allocator_->FreeBuffer(&output_buffer_info_);
491 output_buffer_info_ = {};
492 return;
493 }
494
495 output_buffer_base_ = buffer;
496 post_processed_output_ = true;
497 DisablePartialUpdateOneFrame();
498 }
499
FrameCaptureAsync(const BufferInfo & output_buffer_info,bool post_processed_output)500 int HWCDisplayPrimary::FrameCaptureAsync(const BufferInfo& output_buffer_info,
501 bool post_processed_output) {
502 // Note: This function is called in context of a binder thread and a lock is already held
503 if (output_buffer_info.alloc_buffer_info.fd < 0) {
504 DLOGE("Invalid fd %d", output_buffer_info.alloc_buffer_info.fd);
505 return -1;
506 }
507
508 auto panel_width = 0u;
509 auto panel_height = 0u;
510 auto fb_width = 0u;
511 auto fb_height = 0u;
512
513 GetPanelResolution(&panel_width, &panel_height);
514 GetFrameBufferResolution(&fb_width, &fb_height);
515
516 if (post_processed_output && (output_buffer_info.buffer_config.width < panel_width ||
517 output_buffer_info.buffer_config.height < panel_height)) {
518 DLOGE("Buffer dimensions should not be less than panel resolution");
519 return -1;
520 } else if (!post_processed_output && (output_buffer_info.buffer_config.width < fb_width ||
521 output_buffer_info.buffer_config.height < fb_height)) {
522 DLOGE("Buffer dimensions should not be less than FB resolution");
523 return -1;
524 }
525
526 SetLayerBuffer(output_buffer_info, &output_buffer_);
527 post_processed_output_ = post_processed_output;
528 frame_capture_buffer_queued_ = true;
529 // Status is only cleared on a new call to dump and remains valid otherwise
530 frame_capture_status_ = -EAGAIN;
531 DisablePartialUpdateOneFrame();
532
533 return 0;
534 }
535
SetDetailEnhancerConfig(const DisplayDetailEnhancerData & de_data)536 DisplayError HWCDisplayPrimary::SetDetailEnhancerConfig(
537 const DisplayDetailEnhancerData &de_data) {
538 DisplayError error = kErrorNotSupported;
539 if (display_intf_) {
540 error = display_intf_->SetDetailEnhancerData(de_data);
541 }
542 return error;
543 }
544
ControlPartialUpdate(bool enable,uint32_t * pending)545 DisplayError HWCDisplayPrimary::ControlPartialUpdate(bool enable, uint32_t *pending) {
546 DisplayError error = kErrorNone;
547
548 if (display_intf_) {
549 error = display_intf_->ControlPartialUpdate(enable, pending);
550 }
551
552 return error;
553 }
554
DisablePartialUpdateOneFrame()555 DisplayError HWCDisplayPrimary::DisablePartialUpdateOneFrame() {
556 DisplayError error = kErrorNone;
557
558 if (display_intf_) {
559 error = display_intf_->DisablePartialUpdateOneFrame();
560 }
561
562 return error;
563 }
564
SetMixerResolution(uint32_t width,uint32_t height)565 DisplayError HWCDisplayPrimary::SetMixerResolution(uint32_t width, uint32_t height) {
566 return display_intf_->SetMixerResolution(width, height);
567 }
568
GetMixerResolution(uint32_t * width,uint32_t * height)569 DisplayError HWCDisplayPrimary::GetMixerResolution(uint32_t *width, uint32_t *height) {
570 return display_intf_->GetMixerResolution(width, height);
571 }
572
573 } // namespace sdm
574
575