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237 lines
9.0 KiB
237 lines
9.0 KiB
/* |
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* Copyright (C) 2010 The Android Open Source Project |
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* Copyright (C) 2012-2014, The Linux Foundation. All rights reserved. |
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* |
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* Not a Contribution, Apache license notifications and license are retained |
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* for attribution purposes only. |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#include <fcntl.h> |
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#include <errno.h> |
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#include <cutils/log.h> |
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#include <overlayWriteback.h> |
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#include "hwc_utils.h" |
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#include "hwc_fbupdate.h" |
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#include "hwc_mdpcomp.h" |
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#include "hwc_dump_layers.h" |
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#include "hwc_copybit.h" |
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#include "hwc_virtual.h" |
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#include "sync/sync.h" |
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#include <utils/Trace.h> |
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#define HWCVIRTUAL_LOG 0 |
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using namespace qhwc; |
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using namespace overlay; |
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bool HWCVirtualVDS::sVDDumpEnabled = false; |
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void HWCVirtualVDS::init(hwc_context_t *ctx) { |
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const int dpy = HWC_DISPLAY_VIRTUAL; |
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mScalingWidth = 0, mScalingHeight = 0; |
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initCompositionResources(ctx, dpy); |
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if(ctx->mFBUpdate[dpy]) |
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ctx->mFBUpdate[dpy]->reset(); |
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if(ctx->mMDPComp[dpy]) |
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ctx->mMDPComp[dpy]->reset(); |
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} |
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void HWCVirtualVDS::destroy(hwc_context_t *ctx, size_t /*numDisplays*/, |
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hwc_display_contents_1_t** displays) { |
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int dpy = HWC_DISPLAY_VIRTUAL; |
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//Cleanup virtual display objs, since there is no explicit disconnect |
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if(ctx->dpyAttr[dpy].connected && (displays[dpy] == NULL)) { |
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ctx->dpyAttr[dpy].connected = false; |
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ctx->dpyAttr[dpy].isPause = false; |
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destroyCompositionResources(ctx, dpy); |
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// signal synclock to indicate successful wfd teardown |
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ctx->mWfdSyncLock.lock(); |
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ctx->mWfdSyncLock.signal(); |
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ctx->mWfdSyncLock.unlock(); |
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} |
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} |
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int HWCVirtualVDS::prepare(hwc_composer_device_1 *dev, |
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hwc_display_contents_1_t *list) { |
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ATRACE_CALL(); |
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//XXX: Fix when framework support is added |
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hwc_context_t* ctx = (hwc_context_t*)(dev); |
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const int dpy = HWC_DISPLAY_VIRTUAL; |
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if (list && list->outbuf && list->numHwLayers > 0) { |
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reset_layer_prop(ctx, dpy, (int)list->numHwLayers - 1); |
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uint32_t last = (uint32_t)list->numHwLayers - 1; |
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hwc_layer_1_t *fbLayer = &list->hwLayers[last]; |
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int fbWidth = 0, fbHeight = 0; |
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getLayerResolution(fbLayer, fbWidth, fbHeight); |
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ctx->dpyAttr[dpy].xres = fbWidth; |
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ctx->dpyAttr[dpy].yres = fbHeight; |
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if(ctx->dpyAttr[dpy].connected == false) { |
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ctx->dpyAttr[dpy].connected = true; |
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ctx->dpyAttr[dpy].isPause = false; |
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// We set the vsync period to the primary refresh rate, leaving |
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// it up to the consumer to decide how fast to consume frames. |
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ctx->dpyAttr[dpy].vsync_period |
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= ctx->dpyAttr[HWC_DISPLAY_PRIMARY].vsync_period; |
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init(ctx); |
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// Do one padding round for cases where primary has all pipes |
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// The virtual composition falls back to GPU in such cases. |
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ctx->isPaddingRound = true; |
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} |
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if(!ctx->dpyAttr[dpy].isPause) { |
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ctx->dpyAttr[dpy].isConfiguring = false; |
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ctx->dpyAttr[dpy].fd = Writeback::getInstance()->getFbFd(); |
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private_handle_t *ohnd = (private_handle_t *)list->outbuf; |
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setMDPScalingMode(ctx, ohnd, dpy); |
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mScalingWidth = getWidth(ohnd); |
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mScalingHeight = getHeight(ohnd); |
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Writeback::getInstance()->configureDpyInfo(mScalingWidth, |
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mScalingHeight); |
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setListStats(ctx, list, dpy); |
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if(ctx->mMDPComp[dpy]->prepare(ctx, list) < 0) { |
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const int fbZ = 0; |
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if(not ctx->mFBUpdate[dpy]->prepareAndValidate(ctx, list, fbZ)) |
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{ |
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ctx->mOverlay->clear(dpy); |
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ctx->mLayerRotMap[dpy]->clear(); |
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} |
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} |
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} else { |
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/* Virtual Display is in Pause state. |
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* Mark all application layers as OVERLAY so that |
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* GPU will not compose. |
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*/ |
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Writeback::getInstance(); //Ensure that WB is active during pause |
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for(size_t i = 0 ;i < (size_t)(list->numHwLayers - 1); i++) { |
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hwc_layer_1_t *layer = &list->hwLayers[i]; |
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layer->compositionType = HWC_OVERLAY; |
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} |
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} |
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} |
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return 0; |
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} |
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int HWCVirtualVDS::set(hwc_context_t *ctx, hwc_display_contents_1_t *list) { |
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ATRACE_CALL(); |
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int ret = 0; |
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const int dpy = HWC_DISPLAY_VIRTUAL; |
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if (list && list->outbuf && list->numHwLayers > 0) { |
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uint32_t last = (uint32_t)list->numHwLayers - 1; |
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hwc_layer_1_t *fbLayer = &list->hwLayers[last]; |
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if(ctx->dpyAttr[dpy].connected |
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&& (!ctx->dpyAttr[dpy].isPause)) |
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{ |
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private_handle_t *ohnd = (private_handle_t *)list->outbuf; |
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int format = ohnd->format; |
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if (format == HAL_PIXEL_FORMAT_RGBA_8888) |
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format = HAL_PIXEL_FORMAT_RGBX_8888; |
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Writeback::getInstance()->setOutputFormat( |
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utils::getMdpFormat(format)); |
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// Configure WB secure mode based on output buffer handle |
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if(! Writeback::getInstance()->setSecure(isSecureBuffer(ohnd))) |
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{ |
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ALOGE("Failed to set WB secure mode: %d for virtual display", |
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isSecureBuffer(ohnd)); |
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return false; |
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} |
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int fd = -1; //FenceFD from the Copybit |
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hwc_sync(ctx, list, dpy, fd); |
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// Dump the layers for virtual |
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if(ctx->mHwcDebug[dpy]) |
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ctx->mHwcDebug[dpy]->dumpLayers(list); |
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if (!ctx->mMDPComp[dpy]->draw(ctx, list)) { |
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ALOGE("%s: MDPComp draw failed", __FUNCTION__); |
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ret = -1; |
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} |
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// We need an FB layer handle check to cater for this usecase: |
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// Video is playing in landscape on primary, then launch |
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// ScreenRecord app. |
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// In this scenario, the first VDS draw call will have HWC |
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// composition and VDS does nit involve GPU to get eglSwapBuffer |
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// to get valid fb handle. |
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if (fbLayer->handle && !ctx->mFBUpdate[dpy]->draw(ctx, |
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(private_handle_t *)fbLayer->handle)) { |
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ALOGE("%s: FBUpdate::draw fail!", __FUNCTION__); |
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ret = -1; |
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} |
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Writeback::getInstance()->queueBuffer(ohnd->fd, |
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(uint32_t)ohnd->offset); |
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if(!Overlay::displayCommit(ctx->dpyAttr[dpy].fd)) { |
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ALOGE("%s: display commit fail!", __FUNCTION__); |
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ret = -1; |
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} |
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if(sVDDumpEnabled) { |
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char bufferName[128]; |
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// Dumping frame buffer |
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sync_wait(fbLayer->acquireFenceFd, 1000); |
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snprintf(bufferName, sizeof(bufferName), "vds.fb"); |
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dumpBuffer((private_handle_t *)fbLayer->handle, bufferName); |
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// Dumping WB output for non-secure session |
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if(!isSecureBuffer(ohnd)) { |
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sync_wait(list->retireFenceFd, 1000); |
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snprintf(bufferName, sizeof(bufferName), "vds.wb"); |
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dumpBuffer(ohnd, bufferName); |
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} |
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} |
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} else if(list->outbufAcquireFenceFd >= 0) { |
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//If we dont handle the frame, set retireFenceFd to outbufFenceFd, |
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//which will make sure, the framework waits on it and closes it. |
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//The other way is to wait on outbufFenceFd ourselves, close it and |
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//set retireFenceFd to -1. Since we want hwc to be async, choosing |
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//the former. |
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//Also dup because, the closeAcquireFds() will close the outbufFence |
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list->retireFenceFd = dup(list->outbufAcquireFenceFd); |
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} |
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} |
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closeAcquireFds(list); |
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return ret; |
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} |
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/* We set scaling mode on the VD if the output handle width and height |
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differs from the virtual frame buffer width and height. */ |
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void HWCVirtualVDS::setMDPScalingMode(hwc_context_t* ctx, |
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private_handle_t* ohnd, int dpy) { |
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bool scalingMode = false; |
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int fbWidth = ctx->dpyAttr[dpy].xres; |
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int fbHeight = ctx->dpyAttr[dpy].yres; |
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int alW = 0, alH = 0; |
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getBufferSizeAndDimensions(fbWidth, fbHeight, ohnd->format, alW, alH); |
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if((getWidth(ohnd) != alW) || (getHeight(ohnd) != alH)) { |
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scalingMode = true; |
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} |
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ctx->dpyAttr[dpy].mMDPScalingMode = scalingMode; |
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ALOGD_IF(HWCVIRTUAL_LOG, "%s fb(%dx%d) outputBuffer(%dx%d) scalingMode=%d", |
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__FUNCTION__, alW, alH, |
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getWidth(ohnd), getHeight(ohnd), scalingMode); |
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}
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