hwc_utils.cpp revision 513ddc2124abf90c63af41999201f0d2031af0c8
1/* 2 * Copyright (C) 2010 The Android Open Source Project 3 * Copyright (C) 2012-2013, The Linux Foundation All rights reserved. 4 * 5 * Not a Contribution, Apache license notifications and license are retained 6 * for attribution purposes only. 7 * 8 * Licensed under the Apache License, Version 2.0 (the "License"); 9 * you may not use this file except in compliance with the License. 10 * You may obtain a copy of the License at 11 * 12 * http://www.apache.org/licenses/LICENSE-2.0 13 * 14 * Unless required by applicable law or agreed to in writing, software 15 * distributed under the License is distributed on an "AS IS" BASIS, 16 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 17 * See the License for the specific language governing permissions and 18 * limitations under the License. 19 */ 20#define HWC_UTILS_DEBUG 0 21#include <sys/ioctl.h> 22#include <binder/IServiceManager.h> 23#include <EGL/egl.h> 24#include <cutils/properties.h> 25#include <gralloc_priv.h> 26#include <overlay.h> 27#include <overlayRotator.h> 28#include "hwc_utils.h" 29#include "hwc_mdpcomp.h" 30#include "hwc_fbupdate.h" 31#include "mdp_version.h" 32#include "hwc_copybit.h" 33#include "external.h" 34#include "hwc_qclient.h" 35#include "QService.h" 36#include "comptype.h" 37 38using namespace qClient; 39using namespace qService; 40using namespace android; 41using namespace overlay; 42using namespace overlay::utils; 43namespace ovutils = overlay::utils; 44 45namespace qhwc { 46 47static int openFramebufferDevice(hwc_context_t *ctx) 48{ 49 struct fb_fix_screeninfo finfo; 50 struct fb_var_screeninfo info; 51 52 int fb_fd = openFb(HWC_DISPLAY_PRIMARY); 53 54 if (ioctl(fb_fd, FBIOGET_VSCREENINFO, &info) == -1) 55 return -errno; 56 57 if (int(info.width) <= 0 || int(info.height) <= 0) { 58 // the driver doesn't return that information 59 // default to 160 dpi 60 info.width = ((info.xres * 25.4f)/160.0f + 0.5f); 61 info.height = ((info.yres * 25.4f)/160.0f + 0.5f); 62 } 63 64 float xdpi = (info.xres * 25.4f) / info.width; 65 float ydpi = (info.yres * 25.4f) / info.height; 66 67#ifdef MSMFB_METADATA_GET 68 struct msmfb_metadata metadata; 69 memset(&metadata, 0 , sizeof(metadata)); 70 metadata.op = metadata_op_frame_rate; 71 72 if (ioctl(fb_fd, MSMFB_METADATA_GET, &metadata) == -1) { 73 ALOGE("Error retrieving panel frame rate"); 74 return -errno; 75 } 76 77 float fps = metadata.data.panel_frame_rate; 78#else 79 //XXX: Remove reserved field usage on all baselines 80 //The reserved[3] field is used to store FPS by the driver. 81 float fps = info.reserved[3] & 0xFF; 82#endif 83 84 if (ioctl(fb_fd, FBIOGET_FSCREENINFO, &finfo) == -1) 85 return -errno; 86 87 if (finfo.smem_len <= 0) 88 return -errno; 89 90 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].fd = fb_fd; 91 //xres, yres may not be 32 aligned 92 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].stride = finfo.line_length /(info.xres/8); 93 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].xres = info.xres; 94 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].yres = info.yres; 95 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].xdpi = xdpi; 96 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].ydpi = ydpi; 97 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].vsync_period = 1000000000l / fps; 98 99 //Unblank primary on first boot 100 if(ioctl(fb_fd, FBIOBLANK,FB_BLANK_UNBLANK) < 0) { 101 ALOGE("%s: Failed to unblank display", __FUNCTION__); 102 return -errno; 103 } 104 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].isActive = true; 105 106 return 0; 107} 108 109void initContext(hwc_context_t *ctx) 110{ 111 if(openFramebufferDevice(ctx) < 0) { 112 ALOGE("%s: failed to open framebuffer!!", __FUNCTION__); 113 } 114 115 overlay::Overlay::initOverlay(); 116 ctx->mOverlay = overlay::Overlay::getInstance(); 117 ctx->mRotMgr = new RotMgr(); 118 ctx->mMDP.version = qdutils::MDPVersion::getInstance().getMDPVersion(); 119 ctx->mMDP.hasOverlay = qdutils::MDPVersion::getInstance().hasOverlay(); 120 ctx->mMDP.panel = qdutils::MDPVersion::getInstance().getPanelType(); 121 overlay::Overlay::initOverlay(); 122 ctx->mOverlay = overlay::Overlay::getInstance(); 123 ctx->mRotMgr = new RotMgr(); 124 125 //Is created and destroyed only once for primary 126 //For external it could get created and destroyed multiple times depending 127 //on what external we connect to. 128 ctx->mFBUpdate[HWC_DISPLAY_PRIMARY] = 129 IFBUpdate::getObject(ctx->dpyAttr[HWC_DISPLAY_PRIMARY].xres, 130 HWC_DISPLAY_PRIMARY); 131 132 // Check if the target supports copybit compostion (dyn/mdp/c2d) to 133 // decide if we need to open the copybit module. 134 int compositionType = 135 qdutils::QCCompositionType::getInstance().getCompositionType(); 136 137 if (compositionType & (qdutils::COMPOSITION_TYPE_DYN | 138 qdutils::COMPOSITION_TYPE_MDP | 139 qdutils::COMPOSITION_TYPE_C2D)) { 140 ctx->mCopyBit[HWC_DISPLAY_PRIMARY] = new CopyBit(); 141 } 142 143 ctx->mExtDisplay = new ExternalDisplay(ctx); 144 145 for (uint32_t i = 0; i < MAX_DISPLAYS; i++) { 146 ctx->mLayerRotMap[i] = new LayerRotMap(); 147 } 148 149 ctx->mMDPComp[HWC_DISPLAY_PRIMARY] = 150 MDPComp::getObject(ctx->dpyAttr[HWC_DISPLAY_PRIMARY].xres, 151 HWC_DISPLAY_PRIMARY); 152 153 MDPComp::init(ctx); 154 155 ctx->vstate.enable = false; 156 ctx->vstate.fakevsync = false; 157 ctx->mExtDispConfiguring = false; 158 ctx->mBasePipeSetup = false; 159 160 //Right now hwc starts the service but anybody could do it, or it could be 161 //independent process as well. 162 QService::init(); 163 sp<IQClient> client = new QClient(ctx); 164 interface_cast<IQService>( 165 defaultServiceManager()->getService( 166 String16("display.qservice")))->connect(client); 167 168 ALOGI("Initializing Qualcomm Hardware Composer"); 169 ALOGI("MDP version: %d", ctx->mMDP.version); 170} 171 172void closeContext(hwc_context_t *ctx) 173{ 174 if(ctx->mOverlay) { 175 delete ctx->mOverlay; 176 ctx->mOverlay = NULL; 177 } 178 179 if(ctx->mRotMgr) { 180 delete ctx->mRotMgr; 181 ctx->mRotMgr = NULL; 182 } 183 184 for(int i = 0; i < MAX_DISPLAYS; i++) { 185 if(ctx->mCopyBit[i]) { 186 delete ctx->mCopyBit[i]; 187 ctx->mCopyBit[i] = NULL; 188 } 189 } 190 191 if(ctx->dpyAttr[HWC_DISPLAY_PRIMARY].fd) { 192 close(ctx->dpyAttr[HWC_DISPLAY_PRIMARY].fd); 193 ctx->dpyAttr[HWC_DISPLAY_PRIMARY].fd = -1; 194 } 195 196 if(ctx->mExtDisplay) { 197 delete ctx->mExtDisplay; 198 ctx->mExtDisplay = NULL; 199 } 200 201 for(int i = 0; i < MAX_DISPLAYS; i++) { 202 if(ctx->mFBUpdate[i]) { 203 delete ctx->mFBUpdate[i]; 204 ctx->mFBUpdate[i] = NULL; 205 } 206 if(ctx->mMDPComp[i]) { 207 delete ctx->mMDPComp[i]; 208 ctx->mMDPComp[i] = NULL; 209 } 210 if(ctx->mLayerRotMap[i]) { 211 delete ctx->mLayerRotMap[i]; 212 ctx->mLayerRotMap[i] = NULL; 213 } 214 } 215} 216 217 218void dumpsys_log(android::String8& buf, const char* fmt, ...) 219{ 220 va_list varargs; 221 va_start(varargs, fmt); 222 buf.appendFormatV(fmt, varargs); 223 va_end(varargs); 224} 225 226/* Calculates the destination position based on the action safe rectangle */ 227void getActionSafePosition(hwc_context_t *ctx, int dpy, uint32_t& x, 228 uint32_t& y, uint32_t& w, uint32_t& h) { 229 230 // if external supports underscan, do nothing 231 // it will be taken care in the driver 232 if(ctx->mExtDisplay->isCEUnderscanSupported()) 233 return; 234 235 float wRatio = 1.0; 236 float hRatio = 1.0; 237 float xRatio = 1.0; 238 float yRatio = 1.0; 239 240 float fbWidth = ctx->dpyAttr[dpy].xres; 241 float fbHeight = ctx->dpyAttr[dpy].yres; 242 243 float asX = 0; 244 float asY = 0; 245 float asW = fbWidth; 246 float asH= fbHeight; 247 char value[PROPERTY_VALUE_MAX]; 248 249 // Apply action safe parameters 250 property_get("hw.actionsafe.width", value, "0"); 251 int asWidthRatio = atoi(value); 252 property_get("hw.actionsafe.height", value, "0"); 253 int asHeightRatio = atoi(value); 254 // based on the action safe ratio, get the Action safe rectangle 255 asW = fbWidth * (1.0f - asWidthRatio / 100.0f); 256 asH = fbHeight * (1.0f - asHeightRatio / 100.0f); 257 asX = (fbWidth - asW) / 2; 258 asY = (fbHeight - asH) / 2; 259 260 // calculate the position ratio 261 xRatio = (float)x/fbWidth; 262 yRatio = (float)y/fbHeight; 263 wRatio = (float)w/fbWidth; 264 hRatio = (float)h/fbHeight; 265 266 //Calculate the position... 267 x = (xRatio * asW) + asX; 268 y = (yRatio * asH) + asY; 269 w = (wRatio * asW); 270 h = (hRatio * asH); 271 272 return; 273} 274 275bool needsScaling(hwc_layer_1_t const* layer) { 276 int dst_w, dst_h, src_w, src_h; 277 278 hwc_rect_t displayFrame = layer->displayFrame; 279 hwc_rect_t sourceCrop = layer->sourceCrop; 280 281 dst_w = displayFrame.right - displayFrame.left; 282 dst_h = displayFrame.bottom - displayFrame.top; 283 284 src_w = sourceCrop.right - sourceCrop.left; 285 src_h = sourceCrop.bottom - sourceCrop.top; 286 287 if(((src_w != dst_w) || (src_h != dst_h))) 288 return true; 289 290 return false; 291} 292 293bool isAlphaScaled(hwc_layer_1_t const* layer) { 294 if(needsScaling(layer) && isAlphaPresent(layer)) { 295 return true; 296 } 297 return false; 298} 299 300bool isAlphaPresent(hwc_layer_1_t const* layer) { 301 private_handle_t *hnd = (private_handle_t *)layer->handle; 302 if(hnd) { 303 int format = hnd->format; 304 switch(format) { 305 case HAL_PIXEL_FORMAT_RGBA_8888: 306 case HAL_PIXEL_FORMAT_BGRA_8888: 307 // In any more formats with Alpha go here.. 308 return true; 309 default : return false; 310 } 311 } 312 return false; 313} 314 315// Let CABL know we have a YUV layer 316static void setYUVProp(int yuvCount) { 317 static char property[PROPERTY_VALUE_MAX]; 318 if(yuvCount > 0) { 319 if (property_get("hw.cabl.yuv", property, NULL) > 0) { 320 if (atoi(property) != 1) { 321 property_set("hw.cabl.yuv", "1"); 322 } 323 } 324 } else { 325 if (property_get("hw.cabl.yuv", property, NULL) > 0) { 326 if (atoi(property) != 0) { 327 property_set("hw.cabl.yuv", "0"); 328 } 329 } 330 } 331} 332 333void setListStats(hwc_context_t *ctx, 334 const hwc_display_contents_1_t *list, int dpy) { 335 336 ctx->listStats[dpy].numAppLayers = list->numHwLayers - 1; 337 ctx->listStats[dpy].fbLayerIndex = list->numHwLayers - 1; 338 ctx->listStats[dpy].skipCount = 0; 339 ctx->listStats[dpy].needsAlphaScale = false; 340 ctx->listStats[dpy].preMultipliedAlpha = false; 341 ctx->listStats[dpy].planeAlpha = false; 342 ctx->listStats[dpy].yuvCount = 0; 343 344 for (size_t i = 0; i < list->numHwLayers; i++) { 345 hwc_layer_1_t const* layer = &list->hwLayers[i]; 346 private_handle_t *hnd = (private_handle_t *)layer->handle; 347 348 //reset stored yuv index 349 ctx->listStats[dpy].yuvIndices[i] = -1; 350 351 if(list->hwLayers[i].compositionType == HWC_FRAMEBUFFER_TARGET) { 352 continue; 353 //We disregard FB being skip for now! so the else if 354 } else if (isSkipLayer(&list->hwLayers[i])) { 355 ctx->listStats[dpy].skipCount++; 356 } else if (UNLIKELY(isYuvBuffer(hnd))) { 357 int& yuvCount = ctx->listStats[dpy].yuvCount; 358 ctx->listStats[dpy].yuvIndices[yuvCount] = i; 359 yuvCount++; 360 361 if(layer->transform & HWC_TRANSFORM_ROT_90) 362 ctx->mNeedsRotator = true; 363 } 364 if(layer->blending == HWC_BLENDING_PREMULT) 365 ctx->listStats[dpy].preMultipliedAlpha = true; 366 if(layer->planeAlpha < 0xFF) 367 ctx->listStats[dpy].planeAlpha = true; 368 if(!ctx->listStats[dpy].needsAlphaScale) 369 ctx->listStats[dpy].needsAlphaScale = isAlphaScaled(layer); 370 } 371 setYUVProp(ctx->listStats[dpy].yuvCount); 372} 373 374 375static inline void calc_cut(float& leftCutRatio, float& topCutRatio, 376 float& rightCutRatio, float& bottomCutRatio, int orient) { 377 if(orient & HAL_TRANSFORM_FLIP_H) { 378 swap(leftCutRatio, rightCutRatio); 379 } 380 if(orient & HAL_TRANSFORM_FLIP_V) { 381 swap(topCutRatio, bottomCutRatio); 382 } 383 if(orient & HAL_TRANSFORM_ROT_90) { 384 //Anti clock swapping 385 float tmpCutRatio = leftCutRatio; 386 leftCutRatio = topCutRatio; 387 topCutRatio = rightCutRatio; 388 rightCutRatio = bottomCutRatio; 389 bottomCutRatio = tmpCutRatio; 390 } 391} 392 393bool isSecuring(hwc_context_t* ctx, hwc_layer_1_t const* layer) { 394 if((ctx->mMDP.version < qdutils::MDSS_V5) && 395 (ctx->mMDP.version > qdutils::MDP_V3_0) && 396 ctx->mSecuring) { 397 return true; 398 } 399 // On A-Family, Secure policy is applied system wide and not on 400 // buffers. 401 if (isSecureModePolicy(ctx->mMDP.version)) { 402 private_handle_t *hnd = (private_handle_t *)layer->handle; 403 if(ctx->mSecureMode) { 404 if (! isSecureBuffer(hnd)) { 405 // This code path executes for the following usecase: 406 // Some Apps in which first few seconds, framework 407 // sends non-secure buffer and with out destroying 408 // surfaces, switches to secure buffer thereby exposing 409 // vulnerability on A-family devices. Catch this situation 410 // and handle it gracefully by allowing it to be composed by 411 // GPU. 412 ALOGD_IF(HWC_UTILS_DEBUG, "%s: Handle non-secure video layer" 413 "during secure playback gracefully", __FUNCTION__); 414 return true; 415 } 416 } else { 417 if (isSecureBuffer(hnd)) { 418 // This code path executes for the following usecase: 419 // For some Apps, when User terminates playback, Framework 420 // doesnt destroy video surface and video surface still 421 // comes to Display HAL. This exposes vulnerability on 422 // A-family. Catch this situation and handle it gracefully 423 // by allowing it to be composed by GPU. 424 ALOGD_IF(HWC_UTILS_DEBUG, "%s: Handle secure video layer" 425 "during non-secure playback gracefully", __FUNCTION__); 426 return true; 427 } 428 } 429 } 430 return false; 431} 432 433bool isSecureModePolicy(int mdpVersion) { 434 if (mdpVersion < qdutils::MDSS_V5) 435 return true; 436 else 437 return false; 438} 439 440int getBlending(int blending) { 441 switch(blending) { 442 case HWC_BLENDING_NONE: 443 return overlay::utils::OVERLAY_BLENDING_OPAQUE; 444 case HWC_BLENDING_PREMULT: 445 return overlay::utils::OVERLAY_BLENDING_PREMULT; 446 case HWC_BLENDING_COVERAGE : 447 default: 448 return overlay::utils::OVERLAY_BLENDING_COVERAGE; 449 } 450} 451 452//Crops source buffer against destination and FB boundaries 453void calculate_crop_rects(hwc_rect_t& crop, hwc_rect_t& dst, 454 const hwc_rect_t& scissor, int orient) { 455 456 int& crop_l = crop.left; 457 int& crop_t = crop.top; 458 int& crop_r = crop.right; 459 int& crop_b = crop.bottom; 460 int crop_w = crop.right - crop.left; 461 int crop_h = crop.bottom - crop.top; 462 463 int& dst_l = dst.left; 464 int& dst_t = dst.top; 465 int& dst_r = dst.right; 466 int& dst_b = dst.bottom; 467 int dst_w = abs(dst.right - dst.left); 468 int dst_h = abs(dst.bottom - dst.top); 469 470 const int& sci_l = scissor.left; 471 const int& sci_t = scissor.top; 472 const int& sci_r = scissor.right; 473 const int& sci_b = scissor.bottom; 474 int sci_w = abs(sci_r - sci_l); 475 int sci_h = abs(sci_b - sci_t); 476 477 float leftCutRatio = 0.0f, rightCutRatio = 0.0f, topCutRatio = 0.0f, 478 bottomCutRatio = 0.0f; 479 480 if(dst_l < sci_l) { 481 leftCutRatio = (float)(sci_l - dst_l) / (float)dst_w; 482 dst_l = sci_l; 483 } 484 485 if(dst_r > sci_r) { 486 rightCutRatio = (float)(dst_r - sci_r) / (float)dst_w; 487 dst_r = sci_r; 488 } 489 490 if(dst_t < sci_t) { 491 topCutRatio = (float)(sci_t - dst_t) / (float)dst_h; 492 dst_t = sci_t; 493 } 494 495 if(dst_b > sci_b) { 496 bottomCutRatio = (float)(dst_b - sci_b) / (float)dst_h; 497 dst_b = sci_b; 498 } 499 500 calc_cut(leftCutRatio, topCutRatio, rightCutRatio, bottomCutRatio, orient); 501 crop_l += crop_w * leftCutRatio; 502 crop_t += crop_h * topCutRatio; 503 crop_r -= crop_w * rightCutRatio; 504 crop_b -= crop_h * bottomCutRatio; 505} 506 507void getNonWormholeRegion(hwc_display_contents_1_t* list, 508 hwc_rect_t& nwr) 509{ 510 uint32_t last = list->numHwLayers - 1; 511 hwc_rect_t fbDisplayFrame = list->hwLayers[last].displayFrame; 512 //Initiliaze nwr to first frame 513 nwr.left = list->hwLayers[0].displayFrame.left; 514 nwr.top = list->hwLayers[0].displayFrame.top; 515 nwr.right = list->hwLayers[0].displayFrame.right; 516 nwr.bottom = list->hwLayers[0].displayFrame.bottom; 517 518 for (uint32_t i = 1; i < last; i++) { 519 hwc_rect_t displayFrame = list->hwLayers[i].displayFrame; 520 nwr.left = min(nwr.left, displayFrame.left); 521 nwr.top = min(nwr.top, displayFrame.top); 522 nwr.right = max(nwr.right, displayFrame.right); 523 nwr.bottom = max(nwr.bottom, displayFrame.bottom); 524 } 525 526 //Intersect with the framebuffer 527 nwr.left = max(nwr.left, fbDisplayFrame.left); 528 nwr.top = max(nwr.top, fbDisplayFrame.top); 529 nwr.right = min(nwr.right, fbDisplayFrame.right); 530 nwr.bottom = min(nwr.bottom, fbDisplayFrame.bottom); 531 532} 533 534bool isExternalActive(hwc_context_t* ctx) { 535 return ctx->dpyAttr[HWC_DISPLAY_EXTERNAL].isActive; 536} 537 538void closeAcquireFds(hwc_display_contents_1_t* list) { 539 if(LIKELY(list)) { 540 for(uint32_t i = 0; i < list->numHwLayers; i++) { 541 //Close the acquireFenceFds 542 //HWC_FRAMEBUFFER are -1 already by SF, rest we close. 543 if(list->hwLayers[i].acquireFenceFd >= 0) { 544 close(list->hwLayers[i].acquireFenceFd); 545 list->hwLayers[i].acquireFenceFd = -1; 546 } 547 } 548 } 549} 550 551int hwc_sync(hwc_context_t *ctx, hwc_display_contents_1_t* list, int dpy, 552 int fd) { 553 int ret = 0; 554 555 int acquireFd[MAX_NUM_LAYERS]; 556 int count = 0; 557 int releaseFd = -1; 558 int fbFd = -1; 559 int rotFd = -1; 560 bool swapzero = false; 561 int mdpVersion = qdutils::MDPVersion::getInstance().getMDPVersion(); 562 563 struct mdp_buf_sync data; 564 memset(&data, 0, sizeof(data)); 565 //Until B-family supports sync for rotator 566 if(mdpVersion >= qdutils::MDSS_V5) { 567 data.flags = MDP_BUF_SYNC_FLAG_WAIT; 568 } 569 data.acq_fen_fd = acquireFd; 570 data.rel_fen_fd = &releaseFd; 571 572 char property[PROPERTY_VALUE_MAX]; 573 if(property_get("debug.egl.swapinterval", property, "1") > 0) { 574 if(atoi(property) == 0) 575 swapzero = true; 576 } 577 578#ifndef MDSS_TARGET 579 //Send acquireFenceFds to rotator 580 if(mdpVersion < qdutils::MDSS_V5) { 581 //A-family 582 int rotFd = ctx->mRotMgr->getRotDevFd(); 583 struct msm_rotator_buf_sync rotData; 584 585 for(uint32_t i = 0; i < ctx->mLayerRotMap[dpy]->getCount(); i++) { 586 memset(&rotData, 0, sizeof(rotData)); 587 int& acquireFenceFd = 588 ctx->mLayerRotMap[dpy]->getLayer(i)->acquireFenceFd; 589 rotData.acq_fen_fd = acquireFenceFd; 590 rotData.session_id = ctx->mLayerRotMap[dpy]->getRot(i)->getSessId(); 591 ioctl(rotFd, MSM_ROTATOR_IOCTL_BUFFER_SYNC, &rotData); 592 close(acquireFenceFd); 593 //For MDP to wait on. 594 acquireFenceFd = dup(rotData.rel_fen_fd); 595 //A buffer is free to be used by producer as soon as its copied to 596 //rotator. 597 ctx->mLayerRotMap[dpy]->getLayer(i)->releaseFenceFd = 598 rotData.rel_fen_fd; 599 } 600 } else { 601 //TODO B-family 602 } 603 604#endif 605 //Accumulate acquireFenceFds for MDP 606 for(uint32_t i = 0; i < list->numHwLayers; i++) { 607 if(list->hwLayers[i].compositionType == HWC_OVERLAY && 608 list->hwLayers[i].acquireFenceFd >= 0) { 609 if(UNLIKELY(swapzero)) 610 acquireFd[count++] = -1; 611 else 612 acquireFd[count++] = list->hwLayers[i].acquireFenceFd; 613 } 614 if(list->hwLayers[i].compositionType == HWC_FRAMEBUFFER_TARGET) { 615 if(UNLIKELY(swapzero)) 616 acquireFd[count++] = -1; 617 else if(fd >= 0) { 618 //set the acquireFD from fd - which is coming from c2d 619 acquireFd[count++] = fd; 620 // Buffer sync IOCTL should be async when using c2d fence is 621 // used 622 data.flags &= ~MDP_BUF_SYNC_FLAG_WAIT; 623 } else if(list->hwLayers[i].acquireFenceFd >= 0) 624 acquireFd[count++] = list->hwLayers[i].acquireFenceFd; 625 } 626 } 627 628 data.acq_fen_fd_cnt = count; 629 fbFd = ctx->dpyAttr[dpy].fd; 630 631 //Waits for acquire fences, returns a release fence 632 if(LIKELY(!swapzero)) { 633 uint64_t start = systemTime(); 634 ret = ioctl(fbFd, MSMFB_BUFFER_SYNC, &data); 635 ALOGD_IF(HWC_UTILS_DEBUG, "%s: time taken for MSMFB_BUFFER_SYNC IOCTL = %d", 636 __FUNCTION__, (size_t) ns2ms(systemTime() - start)); 637 } 638 639 if(ret < 0) { 640 ALOGE("ioctl MSMFB_BUFFER_SYNC failed, err=%s", 641 strerror(errno)); 642 } 643 644 for(uint32_t i = 0; i < list->numHwLayers; i++) { 645 if(list->hwLayers[i].compositionType == HWC_OVERLAY || 646 list->hwLayers[i].compositionType == HWC_FRAMEBUFFER_TARGET) { 647 //Populate releaseFenceFds. 648 if(UNLIKELY(swapzero)) { 649 list->hwLayers[i].releaseFenceFd = -1; 650 } else if(list->hwLayers[i].releaseFenceFd < 0) { 651 //If rotator has not already populated this field. 652 list->hwLayers[i].releaseFenceFd = dup(releaseFd); 653 } 654 } 655 } 656 657 if(fd >= 0) { 658 close(fd); 659 fd = -1; 660 } 661 662 if (ctx->mCopyBit[dpy]) 663 ctx->mCopyBit[dpy]->setReleaseFd(releaseFd); 664 665 //A-family 666 if(mdpVersion < qdutils::MDSS_V5) { 667 //Signals when MDP finishes reading rotator buffers. 668 ctx->mLayerRotMap[dpy]->setReleaseFd(releaseFd); 669 } 670 671 if(UNLIKELY(swapzero)){ 672 list->retireFenceFd = -1; 673 close(releaseFd); 674 } else { 675 list->retireFenceFd = releaseFd; 676 } 677 678 return ret; 679} 680 681void trimLayer(hwc_context_t *ctx, const int& dpy, const int& transform, 682 hwc_rect_t& crop, hwc_rect_t& dst) { 683 int hw_w = ctx->dpyAttr[dpy].xres; 684 int hw_h = ctx->dpyAttr[dpy].yres; 685 if(dst.left < 0 || dst.top < 0 || 686 dst.right > hw_w || dst.bottom > hw_h) { 687 hwc_rect_t scissor = {0, 0, hw_w, hw_h }; 688 qhwc::calculate_crop_rects(crop, dst, scissor, transform); 689 } 690} 691 692void setMdpFlags(hwc_layer_1_t *layer, 693 ovutils::eMdpFlags &mdpFlags, 694 int rotDownscale) { 695 private_handle_t *hnd = (private_handle_t *)layer->handle; 696 MetaData_t *metadata = (MetaData_t *)hnd->base_metadata; 697 const int& transform = layer->transform; 698 699 if(layer->blending == HWC_BLENDING_PREMULT) { 700 ovutils::setMdpFlags(mdpFlags, 701 ovutils::OV_MDP_BLEND_FG_PREMULT); 702 } 703 704 if(isYuvBuffer(hnd)) { 705 if(isSecureBuffer(hnd)) { 706 ovutils::setMdpFlags(mdpFlags, 707 ovutils::OV_MDP_SECURE_OVERLAY_SESSION); 708 } 709 if(metadata && (metadata->operation & PP_PARAM_INTERLACED) && 710 metadata->interlaced) { 711 ovutils::setMdpFlags(mdpFlags, 712 ovutils::OV_MDP_DEINTERLACE); 713 } 714 //Pre-rotation will be used using rotator. 715 if(transform & HWC_TRANSFORM_ROT_90) { 716 ovutils::setMdpFlags(mdpFlags, 717 ovutils::OV_MDP_SOURCE_ROTATED_90); 718 } 719 } 720 721 //No 90 component and no rot-downscale then flips done by MDP 722 //If we use rot then it might as well do flips 723 if(!(layer->transform & HWC_TRANSFORM_ROT_90) && !rotDownscale) { 724 if(layer->transform & HWC_TRANSFORM_FLIP_H) { 725 ovutils::setMdpFlags(mdpFlags, ovutils::OV_MDP_FLIP_H); 726 } 727 728 if(layer->transform & HWC_TRANSFORM_FLIP_V) { 729 ovutils::setMdpFlags(mdpFlags, ovutils::OV_MDP_FLIP_V); 730 } 731 } 732 733 if(metadata && 734 ((metadata->operation & PP_PARAM_HSIC) 735 || (metadata->operation & PP_PARAM_IGC) 736 || (metadata->operation & PP_PARAM_SHARP2))) { 737 ovutils::setMdpFlags(mdpFlags, ovutils::OV_MDP_PP_EN); 738 } 739} 740 741static inline int configRotator(Rotator *rot, const Whf& whf, 742 const eMdpFlags& mdpFlags, const eTransform& orient, 743 const int& downscale) { 744 rot->setSource(whf); 745 rot->setFlags(mdpFlags); 746 rot->setTransform(orient); 747 rot->setDownscale(downscale); 748 if(!rot->commit()) return -1; 749 return 0; 750} 751 752/* 753 * Sets up BORDERFILL as default base pipe and detaches RGB0. 754 * Framebuffer is always updated using PLAY ioctl. 755 */ 756bool setupBasePipe(hwc_context_t *ctx) { 757 const int dpy = HWC_DISPLAY_PRIMARY; 758 int fb_stride = ctx->dpyAttr[dpy].stride; 759 int fb_width = ctx->dpyAttr[dpy].xres; 760 int fb_height = ctx->dpyAttr[dpy].yres; 761 int fb_fd = ctx->dpyAttr[dpy].fd; 762 763 mdp_overlay ovInfo; 764 msmfb_overlay_data ovData; 765 memset(&ovInfo, 0, sizeof(mdp_overlay)); 766 memset(&ovData, 0, sizeof(msmfb_overlay_data)); 767 768 ovInfo.src.format = MDP_RGB_BORDERFILL; 769 ovInfo.src.width = fb_width; 770 ovInfo.src.height = fb_height; 771 ovInfo.src_rect.w = fb_width; 772 ovInfo.src_rect.h = fb_height; 773 ovInfo.dst_rect.w = fb_width; 774 ovInfo.dst_rect.h = fb_height; 775 ovInfo.id = MSMFB_NEW_REQUEST; 776 777 if (ioctl(fb_fd, MSMFB_OVERLAY_SET, &ovInfo) < 0) { 778 ALOGE("Failed to call ioctl MSMFB_OVERLAY_SET err=%s", 779 strerror(errno)); 780 return false; 781 } 782 783 ovData.id = ovInfo.id; 784 if (ioctl(fb_fd, MSMFB_OVERLAY_PLAY, &ovData) < 0) { 785 ALOGE("Failed to call ioctl MSMFB_OVERLAY_PLAY err=%s", 786 strerror(errno)); 787 return false; 788 } 789 ctx->mBasePipeSetup = true; 790 return true; 791} 792 793 794static inline int configMdp(Overlay *ov, const PipeArgs& parg, 795 const eTransform& orient, const hwc_rect_t& crop, 796 const hwc_rect_t& pos, const MetaData_t *metadata, 797 const eDest& dest) { 798 ov->setSource(parg, dest); 799 ov->setTransform(orient, dest); 800 801 int crop_w = crop.right - crop.left; 802 int crop_h = crop.bottom - crop.top; 803 Dim dcrop(crop.left, crop.top, crop_w, crop_h); 804 ov->setCrop(dcrop, dest); 805 806 int posW = pos.right - pos.left; 807 int posH = pos.bottom - pos.top; 808 Dim position(pos.left, pos.top, posW, posH); 809 ov->setPosition(position, dest); 810 811 if (metadata) 812 ov->setVisualParams(*metadata, dest); 813 814 if (!ov->commit(dest)) { 815 return -1; 816 } 817 return 0; 818} 819 820static inline void updateSource(eTransform& orient, Whf& whf, 821 hwc_rect_t& crop) { 822 Dim srcCrop(crop.left, crop.top, 823 crop.right - crop.left, 824 crop.bottom - crop.top); 825 //getMdpOrient will switch the flips if the source is 90 rotated. 826 //Clients in Android dont factor in 90 rotation while deciding the flip. 827 orient = static_cast<eTransform>(ovutils::getMdpOrient(orient)); 828 preRotateSource(orient, whf, srcCrop); 829 crop.left = srcCrop.x; 830 crop.top = srcCrop.y; 831 crop.right = srcCrop.x + srcCrop.w; 832 crop.bottom = srcCrop.y + srcCrop.h; 833} 834 835int configureLowRes(hwc_context_t *ctx, hwc_layer_1_t *layer, 836 const int& dpy, eMdpFlags& mdpFlags, const eZorder& z, 837 const eIsFg& isFg, const eDest& dest, Rotator **rot) { 838 839 private_handle_t *hnd = (private_handle_t *)layer->handle; 840 if(!hnd) { 841 ALOGE("%s: layer handle is NULL", __FUNCTION__); 842 return -1; 843 } 844 845 MetaData_t *metadata = (MetaData_t *)hnd->base_metadata; 846 847 hwc_rect_t crop = layer->sourceCrop; 848 hwc_rect_t dst = layer->displayFrame; 849 int transform = layer->transform; 850 eTransform orient = static_cast<eTransform>(transform); 851 int downscale = 0; 852 int rotFlags = ovutils::ROT_FLAGS_NONE; 853 Whf whf(hnd->width, hnd->height, 854 getMdpFormat(hnd->format), hnd->size); 855 856 if(isYuvBuffer(hnd) && ctx->mMDP.version >= qdutils::MDP_V4_2 && 857 ctx->mMDP.version < qdutils::MDSS_V5) { 858 downscale = getDownscaleFactor( 859 crop.right - crop.left, 860 crop.bottom - crop.top, 861 dst.right - dst.left, 862 dst.bottom - dst.top); 863 if(downscale) { 864 rotFlags = ROT_DOWNSCALE_ENABLED; 865 } 866 } 867 868 setMdpFlags(layer, mdpFlags, downscale); 869 trimLayer(ctx, dpy, transform, crop, dst); 870 871 if(isYuvBuffer(hnd) && //if 90 component or downscale, use rot 872 ((transform & HWC_TRANSFORM_ROT_90) || downscale)) { 873 *rot = ctx->mRotMgr->getNext(); 874 if(*rot == NULL) return -1; 875 //Configure rotator for pre-rotation 876 if(configRotator(*rot, whf, mdpFlags, orient, downscale) < 0) 877 return -1; 878 ctx->mLayerRotMap[dpy]->add(layer, *rot); 879 whf.format = (*rot)->getDstFormat(); 880 updateSource(orient, whf, crop); 881 rotFlags |= ovutils::ROT_PREROTATED; 882 } 883 884 //For the mdp, since either we are pre-rotating or MDP does flips 885 orient = OVERLAY_TRANSFORM_0; 886 transform = 0; 887 888 PipeArgs parg(mdpFlags, whf, z, isFg, 889 static_cast<eRotFlags>(rotFlags), layer->planeAlpha, 890 (ovutils::eBlending) getBlending(layer->blending)); 891 892 if(configMdp(ctx->mOverlay, parg, orient, crop, dst, metadata, dest) < 0) { 893 ALOGE("%s: commit failed for low res panel", __FUNCTION__); 894 return -1; 895 } 896 return 0; 897} 898 899int configureHighRes(hwc_context_t *ctx, hwc_layer_1_t *layer, 900 const int& dpy, eMdpFlags& mdpFlagsL, const eZorder& z, 901 const eIsFg& isFg, const eDest& lDest, const eDest& rDest, 902 Rotator **rot) { 903 private_handle_t *hnd = (private_handle_t *)layer->handle; 904 if(!hnd) { 905 ALOGE("%s: layer handle is NULL", __FUNCTION__); 906 return -1; 907 } 908 909 MetaData_t *metadata = (MetaData_t *)hnd->base_metadata; 910 911 int hw_w = ctx->dpyAttr[dpy].xres; 912 int hw_h = ctx->dpyAttr[dpy].yres; 913 hwc_rect_t crop = layer->sourceCrop; 914 hwc_rect_t dst = layer->displayFrame; 915 int transform = layer->transform; 916 eTransform orient = static_cast<eTransform>(transform); 917 const int downscale = 0; 918 int rotFlags = ROT_FLAGS_NONE; 919 920 Whf whf(hnd->width, hnd->height, 921 getMdpFormat(hnd->format), hnd->size); 922 923 setMdpFlags(layer, mdpFlagsL); 924 trimLayer(ctx, dpy, transform, crop, dst); 925 926 if(isYuvBuffer(hnd) && (transform & HWC_TRANSFORM_ROT_90)) { 927 (*rot) = ctx->mRotMgr->getNext(); 928 if((*rot) == NULL) return -1; 929 //Configure rotator for pre-rotation 930 if(configRotator(*rot, whf, mdpFlagsL, orient, downscale) < 0) 931 return -1; 932 ctx->mLayerRotMap[dpy]->add(layer, *rot); 933 whf.format = (*rot)->getDstFormat(); 934 updateSource(orient, whf, crop); 935 rotFlags |= ROT_PREROTATED; 936 } 937 938 eMdpFlags mdpFlagsR = mdpFlagsL; 939 setMdpFlags(mdpFlagsR, OV_MDSS_MDP_RIGHT_MIXER); 940 941 hwc_rect_t tmp_cropL, tmp_dstL; 942 hwc_rect_t tmp_cropR, tmp_dstR; 943 944 if(lDest != OV_INVALID) { 945 tmp_cropL = crop; 946 tmp_dstL = dst; 947 hwc_rect_t scissor = {0, 0, hw_w/2, hw_h }; 948 qhwc::calculate_crop_rects(tmp_cropL, tmp_dstL, scissor, 0); 949 } 950 if(rDest != OV_INVALID) { 951 tmp_cropR = crop; 952 tmp_dstR = dst; 953 hwc_rect_t scissor = {hw_w/2, 0, hw_w, hw_h }; 954 qhwc::calculate_crop_rects(tmp_cropR, tmp_dstR, scissor, 0); 955 } 956 957 //When buffer is flipped, contents of mixer config also needs to swapped. 958 //Not needed if the layer is confined to one half of the screen. 959 //If rotator has been used then it has also done the flips, so ignore them. 960 if((orient & OVERLAY_TRANSFORM_FLIP_V) && lDest != OV_INVALID 961 && rDest != OV_INVALID && rot == NULL) { 962 hwc_rect_t new_cropR; 963 new_cropR.left = tmp_cropL.left; 964 new_cropR.right = new_cropR.left + (tmp_cropR.right - tmp_cropR.left); 965 966 hwc_rect_t new_cropL; 967 new_cropL.left = new_cropR.right; 968 new_cropL.right = tmp_cropR.right; 969 970 tmp_cropL.left = new_cropL.left; 971 tmp_cropL.right = new_cropL.right; 972 973 tmp_cropR.left = new_cropR.left; 974 tmp_cropR.right = new_cropR.right; 975 976 } 977 978 //For the mdp, since either we are pre-rotating or MDP does flips 979 orient = OVERLAY_TRANSFORM_0; 980 transform = 0; 981 982 //configure left mixer 983 if(lDest != OV_INVALID) { 984 PipeArgs pargL(mdpFlagsL, whf, z, isFg, 985 static_cast<eRotFlags>(rotFlags), layer->planeAlpha, 986 (ovutils::eBlending) getBlending(layer->blending)); 987 988 if(configMdp(ctx->mOverlay, pargL, orient, 989 tmp_cropL, tmp_dstL, metadata, lDest) < 0) { 990 ALOGE("%s: commit failed for left mixer config", __FUNCTION__); 991 return -1; 992 } 993 } 994 995 //configure right mixer 996 if(rDest != OV_INVALID) { 997 PipeArgs pargR(mdpFlagsR, whf, z, isFg, 998 static_cast<eRotFlags>(rotFlags), layer->planeAlpha, 999 (ovutils::eBlending) getBlending(layer->blending)); 1000 1001 tmp_dstR.right = tmp_dstR.right - tmp_dstR.left; 1002 tmp_dstR.left = 0; 1003 if(configMdp(ctx->mOverlay, pargR, orient, 1004 tmp_cropR, tmp_dstR, metadata, rDest) < 0) { 1005 ALOGE("%s: commit failed for right mixer config", __FUNCTION__); 1006 return -1; 1007 } 1008 } 1009 1010 return 0; 1011} 1012 1013void LayerRotMap::add(hwc_layer_1_t* layer, Rotator *rot) { 1014 if(mCount >= MAX_SESS) return; 1015 mLayer[mCount] = layer; 1016 mRot[mCount] = rot; 1017 mCount++; 1018} 1019 1020void LayerRotMap::reset() { 1021 for (int i = 0; i < MAX_SESS; i++) { 1022 mLayer[i] = 0; 1023 mRot[i] = 0; 1024 } 1025 mCount = 0; 1026} 1027 1028void LayerRotMap::setReleaseFd(const int& fence) { 1029 for(uint32_t i = 0; i < mCount; i++) { 1030 mRot[i]->setReleaseFd(dup(fence)); 1031 } 1032} 1033 1034};//namespace qhwc 1035