Surface.cpp 27.8 KB
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/*
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 * Copyright (C) 2010 The Android Open Source Project
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 *
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at
 *
 *      http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */

#define LOG_TAG "Surface"
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#define ATRACE_TAG ATRACE_TAG_GRAPHICS
//#define LOG_NDEBUG 0
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#include <android/native_window.h>

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#include <binder/Parcel.h>
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#include <utils/Log.h>
#include <utils/Trace.h>
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#include <utils/NativeHandle.h>
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#include <ui/Fence.h>
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#include <gui/IProducerListener.h>
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#include <gui/ISurfaceComposer.h>
#include <gui/SurfaceComposerClient.h>
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#include <gui/GLConsumer.h>
#include <gui/Surface.h>
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#include <private/gui/ComposerService.h>
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namespace android {
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Surface::Surface(
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        const sp<IGraphicBufferProducer>& bufferProducer,
        bool controlledByApp)
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    : mGraphicBufferProducer(bufferProducer)
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{
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    // Initialize the ANativeWindow function pointers.
    ANativeWindow::setSwapInterval  = hook_setSwapInterval;
    ANativeWindow::dequeueBuffer    = hook_dequeueBuffer;
    ANativeWindow::cancelBuffer     = hook_cancelBuffer;
    ANativeWindow::queueBuffer      = hook_queueBuffer;
    ANativeWindow::query            = hook_query;
    ANativeWindow::perform          = hook_perform;

    ANativeWindow::dequeueBuffer_DEPRECATED = hook_dequeueBuffer_DEPRECATED;
    ANativeWindow::cancelBuffer_DEPRECATED  = hook_cancelBuffer_DEPRECATED;
    ANativeWindow::lockBuffer_DEPRECATED    = hook_lockBuffer_DEPRECATED;
    ANativeWindow::queueBuffer_DEPRECATED   = hook_queueBuffer_DEPRECATED;

    const_cast<int&>(ANativeWindow::minSwapInterval) = 0;
    const_cast<int&>(ANativeWindow::maxSwapInterval) = 1;

    mReqWidth = 0;
    mReqHeight = 0;
    mReqFormat = 0;
    mReqUsage = 0;
    mTimestamp = NATIVE_WINDOW_TIMESTAMP_AUTO;
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    mDataSpace = HAL_DATASPACE_UNKNOWN;
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    mCrop.clear();
    mScalingMode = NATIVE_WINDOW_SCALING_MODE_FREEZE;
    mTransform = 0;
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    mStickyTransform = 0;
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    mDefaultWidth = 0;
    mDefaultHeight = 0;
    mUserWidth = 0;
    mUserHeight = 0;
    mTransformHint = 0;
    mConsumerRunningBehind = false;
    mConnectedToCpu = false;
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    mProducerControlledByApp = controlledByApp;
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    mSwapIntervalZero = false;
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}

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Surface::~Surface() {
    if (mConnectedToCpu) {
        Surface::disconnect(NATIVE_WINDOW_API_CPU);
    }
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}

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sp<IGraphicBufferProducer> Surface::getIGraphicBufferProducer() const {
    return mGraphicBufferProducer;
}

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void Surface::setSidebandStream(const sp<NativeHandle>& stream) {
    mGraphicBufferProducer->setSidebandStream(stream);
}

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void Surface::allocateBuffers() {
    uint32_t reqWidth = mReqWidth ? mReqWidth : mUserWidth;
    uint32_t reqHeight = mReqHeight ? mReqHeight : mUserHeight;
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    mGraphicBufferProducer->allocateBuffers(mSwapIntervalZero, reqWidth,
            reqHeight, mReqFormat, mReqUsage);
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}

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int Surface::hook_setSwapInterval(ANativeWindow* window, int interval) {
    Surface* c = getSelf(window);
    return c->setSwapInterval(interval);
}

int Surface::hook_dequeueBuffer(ANativeWindow* window,
        ANativeWindowBuffer** buffer, int* fenceFd) {
    Surface* c = getSelf(window);
    return c->dequeueBuffer(buffer, fenceFd);
}

int Surface::hook_cancelBuffer(ANativeWindow* window,
        ANativeWindowBuffer* buffer, int fenceFd) {
    Surface* c = getSelf(window);
    return c->cancelBuffer(buffer, fenceFd);
}

int Surface::hook_queueBuffer(ANativeWindow* window,
        ANativeWindowBuffer* buffer, int fenceFd) {
    Surface* c = getSelf(window);
    return c->queueBuffer(buffer, fenceFd);
}

int Surface::hook_dequeueBuffer_DEPRECATED(ANativeWindow* window,
        ANativeWindowBuffer** buffer) {
    Surface* c = getSelf(window);
    ANativeWindowBuffer* buf;
    int fenceFd = -1;
    int result = c->dequeueBuffer(&buf, &fenceFd);
    sp<Fence> fence(new Fence(fenceFd));
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    int waitResult = fence->waitForever("dequeueBuffer_DEPRECATED");
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    if (waitResult != OK) {
        ALOGE("dequeueBuffer_DEPRECATED: Fence::wait returned an error: %d",
                waitResult);
        c->cancelBuffer(buf, -1);
        return waitResult;
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    }
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    *buffer = buf;
    return result;
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}

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int Surface::hook_cancelBuffer_DEPRECATED(ANativeWindow* window,
        ANativeWindowBuffer* buffer) {
    Surface* c = getSelf(window);
    return c->cancelBuffer(buffer, -1);
}

int Surface::hook_lockBuffer_DEPRECATED(ANativeWindow* window,
        ANativeWindowBuffer* buffer) {
    Surface* c = getSelf(window);
    return c->lockBuffer_DEPRECATED(buffer);
}

int Surface::hook_queueBuffer_DEPRECATED(ANativeWindow* window,
        ANativeWindowBuffer* buffer) {
    Surface* c = getSelf(window);
    return c->queueBuffer(buffer, -1);
}

int Surface::hook_query(const ANativeWindow* window,
                                int what, int* value) {
    const Surface* c = getSelf(window);
    return c->query(what, value);
}

int Surface::hook_perform(ANativeWindow* window, int operation, ...) {
    va_list args;
    va_start(args, operation);
    Surface* c = getSelf(window);
    return c->perform(operation, args);
}

int Surface::setSwapInterval(int interval) {
    ATRACE_CALL();
    // EGL specification states:
    //  interval is silently clamped to minimum and maximum implementation
    //  dependent values before being stored.

    if (interval < minSwapInterval)
        interval = minSwapInterval;

    if (interval > maxSwapInterval)
        interval = maxSwapInterval;

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    mSwapIntervalZero = (interval == 0);
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    return NO_ERROR;
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}

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int Surface::dequeueBuffer(android_native_buffer_t** buffer, int* fenceFd) {
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    ATRACE_CALL();
    ALOGV("Surface::dequeueBuffer");
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    uint32_t reqWidth;
    uint32_t reqHeight;
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    bool swapIntervalZero;
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    PixelFormat reqFormat;
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    uint32_t reqUsage;

    {
        Mutex::Autolock lock(mMutex);

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        reqWidth = mReqWidth ? mReqWidth : mUserWidth;
        reqHeight = mReqHeight ? mReqHeight : mUserHeight;
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        swapIntervalZero = mSwapIntervalZero;
        reqFormat = mReqFormat;
        reqUsage = mReqUsage;
    } // Drop the lock so that we can still touch the Surface while blocking in IGBP::dequeueBuffer

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    int buf = -1;
    sp<Fence> fence;
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    status_t result = mGraphicBufferProducer->dequeueBuffer(&buf, &fence, swapIntervalZero,
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            reqWidth, reqHeight, reqFormat, reqUsage);
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    if (result < 0) {
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        ALOGV("dequeueBuffer: IGraphicBufferProducer::dequeueBuffer(%d, %d, %d, %d, %d)"
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             "failed: %d", swapIntervalZero, reqWidth, reqHeight, reqFormat,
             reqUsage, result);
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        return result;
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    }
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    Mutex::Autolock lock(mMutex);

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    sp<GraphicBuffer>& gbuf(mSlots[buf].buffer);
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    // this should never happen
    ALOGE_IF(fence == NULL, "Surface::dequeueBuffer: received null Fence! buf=%d", buf);

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    if (result & IGraphicBufferProducer::RELEASE_ALL_BUFFERS) {
        freeAllBuffers();
    }

    if ((result & IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION) || gbuf == 0) {
        result = mGraphicBufferProducer->requestBuffer(buf, &gbuf);
        if (result != NO_ERROR) {
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            ALOGE("dequeueBuffer: IGraphicBufferProducer::requestBuffer failed: %d", result);
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            mGraphicBufferProducer->cancelBuffer(buf, fence);
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            return result;
        }
    }

    if (fence->isValid()) {
        *fenceFd = fence->dup();
        if (*fenceFd == -1) {
            ALOGE("dequeueBuffer: error duping fence: %d", errno);
            // dup() should never fail; something is badly wrong. Soldier on
            // and hope for the best; the worst that should happen is some
            // visible corruption that lasts until the next frame.
        }
    } else {
        *fenceFd = -1;
    }

    *buffer = gbuf.get();
    return OK;
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}

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int Surface::cancelBuffer(android_native_buffer_t* buffer,
        int fenceFd) {
    ATRACE_CALL();
    ALOGV("Surface::cancelBuffer");
    Mutex::Autolock lock(mMutex);
    int i = getSlotFromBufferLocked(buffer);
    if (i < 0) {
        return i;
    }
    sp<Fence> fence(fenceFd >= 0 ? new Fence(fenceFd) : Fence::NO_FENCE);
    mGraphicBufferProducer->cancelBuffer(i, fence);
    return OK;
}

int Surface::getSlotFromBufferLocked(
        android_native_buffer_t* buffer) const {
    for (int i = 0; i < NUM_BUFFER_SLOTS; i++) {
        if (mSlots[i].buffer != NULL &&
                mSlots[i].buffer->handle == buffer->handle) {
            return i;
        }
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    }
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    ALOGE("getSlotFromBufferLocked: unknown buffer: %p", buffer->handle);
    return BAD_VALUE;
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}

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int Surface::lockBuffer_DEPRECATED(android_native_buffer_t* buffer __attribute__((unused))) {
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    ALOGV("Surface::lockBuffer");
    Mutex::Autolock lock(mMutex);
    return OK;
}
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int Surface::queueBuffer(android_native_buffer_t* buffer, int fenceFd) {
    ATRACE_CALL();
    ALOGV("Surface::queueBuffer");
    Mutex::Autolock lock(mMutex);
    int64_t timestamp;
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    bool isAutoTimestamp = false;
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    if (mTimestamp == NATIVE_WINDOW_TIMESTAMP_AUTO) {
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        timestamp = systemTime(SYSTEM_TIME_MONOTONIC);
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        isAutoTimestamp = true;
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        ALOGV("Surface::queueBuffer making up timestamp: %.2f ms",
            timestamp / 1000000.f);
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    } else {
        timestamp = mTimestamp;
    }
    int i = getSlotFromBufferLocked(buffer);
    if (i < 0) {
        return i;
    }


    // Make sure the crop rectangle is entirely inside the buffer.
    Rect crop;
    mCrop.intersect(Rect(buffer->width, buffer->height), &crop);

    sp<Fence> fence(fenceFd >= 0 ? new Fence(fenceFd) : Fence::NO_FENCE);
    IGraphicBufferProducer::QueueBufferOutput output;
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    IGraphicBufferProducer::QueueBufferInput input(timestamp, isAutoTimestamp,
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            mDataSpace, crop, mScalingMode, mTransform ^ mStickyTransform,
            mSwapIntervalZero, fence, mStickyTransform);
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    status_t err = mGraphicBufferProducer->queueBuffer(i, input, &output);
    if (err != OK)  {
        ALOGE("queueBuffer: error queuing buffer to SurfaceTexture, %d", err);
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    }
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    uint32_t numPendingBuffers = 0;
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    uint32_t hint = 0;
    output.deflate(&mDefaultWidth, &mDefaultHeight, &hint,
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            &numPendingBuffers);

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    // Disable transform hint if sticky transform is set.
    if (mStickyTransform == 0) {
        mTransformHint = hint;
    }

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    mConsumerRunningBehind = (numPendingBuffers >= 2);

    return err;
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}
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int Surface::query(int what, int* value) const {
    ATRACE_CALL();
    ALOGV("Surface::query");
    { // scope for the lock
        Mutex::Autolock lock(mMutex);
        switch (what) {
            case NATIVE_WINDOW_FORMAT:
                if (mReqFormat) {
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                    *value = static_cast<int>(mReqFormat);
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                    return NO_ERROR;
                }
                break;
            case NATIVE_WINDOW_QUEUES_TO_WINDOW_COMPOSER: {
                sp<ISurfaceComposer> composer(
                        ComposerService::getComposerService());
                if (composer->authenticateSurfaceTexture(mGraphicBufferProducer)) {
                    *value = 1;
                } else {
                    *value = 0;
                }
                return NO_ERROR;
            }
            case NATIVE_WINDOW_CONCRETE_TYPE:
                *value = NATIVE_WINDOW_SURFACE;
                return NO_ERROR;
            case NATIVE_WINDOW_DEFAULT_WIDTH:
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                *value = static_cast<int>(
                        mUserWidth ? mUserWidth : mDefaultWidth);
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                return NO_ERROR;
            case NATIVE_WINDOW_DEFAULT_HEIGHT:
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                *value = static_cast<int>(
                        mUserHeight ? mUserHeight : mDefaultHeight);
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                return NO_ERROR;
            case NATIVE_WINDOW_TRANSFORM_HINT:
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                *value = static_cast<int>(mTransformHint);
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                return NO_ERROR;
            case NATIVE_WINDOW_CONSUMER_RUNNING_BEHIND: {
                status_t err = NO_ERROR;
                if (!mConsumerRunningBehind) {
                    *value = 0;
                } else {
                    err = mGraphicBufferProducer->query(what, value);
                    if (err == NO_ERROR) {
                        mConsumerRunningBehind = *value;
                    }
                }
                return err;
            }
        }
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    }
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    return mGraphicBufferProducer->query(what, value);
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}

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int Surface::perform(int operation, va_list args)
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{
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    int res = NO_ERROR;
    switch (operation) {
    case NATIVE_WINDOW_CONNECT:
        // deprecated. must return NO_ERROR.
        break;
    case NATIVE_WINDOW_DISCONNECT:
        // deprecated. must return NO_ERROR.
        break;
    case NATIVE_WINDOW_SET_USAGE:
        res = dispatchSetUsage(args);
        break;
    case NATIVE_WINDOW_SET_CROP:
        res = dispatchSetCrop(args);
        break;
    case NATIVE_WINDOW_SET_BUFFER_COUNT:
        res = dispatchSetBufferCount(args);
        break;
    case NATIVE_WINDOW_SET_BUFFERS_GEOMETRY:
        res = dispatchSetBuffersGeometry(args);
        break;
    case NATIVE_WINDOW_SET_BUFFERS_TRANSFORM:
        res = dispatchSetBuffersTransform(args);
        break;
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    case NATIVE_WINDOW_SET_BUFFERS_STICKY_TRANSFORM:
        res = dispatchSetBuffersStickyTransform(args);
        break;
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    case NATIVE_WINDOW_SET_BUFFERS_TIMESTAMP:
        res = dispatchSetBuffersTimestamp(args);
        break;
    case NATIVE_WINDOW_SET_BUFFERS_DIMENSIONS:
        res = dispatchSetBuffersDimensions(args);
        break;
    case NATIVE_WINDOW_SET_BUFFERS_USER_DIMENSIONS:
        res = dispatchSetBuffersUserDimensions(args);
        break;
    case NATIVE_WINDOW_SET_BUFFERS_FORMAT:
        res = dispatchSetBuffersFormat(args);
        break;
    case NATIVE_WINDOW_LOCK:
        res = dispatchLock(args);
        break;
    case NATIVE_WINDOW_UNLOCK_AND_POST:
        res = dispatchUnlockAndPost(args);
        break;
    case NATIVE_WINDOW_SET_SCALING_MODE:
        res = dispatchSetScalingMode(args);
        break;
    case NATIVE_WINDOW_API_CONNECT:
        res = dispatchConnect(args);
        break;
    case NATIVE_WINDOW_API_DISCONNECT:
        res = dispatchDisconnect(args);
        break;
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    case NATIVE_WINDOW_SET_SIDEBAND_STREAM:
        res = dispatchSetSidebandStream(args);
        break;
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    case NATIVE_WINDOW_SET_BUFFERS_DATASPACE:
        res = dispatchSetBuffersDataSpace(args);
        break;
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    default:
        res = NAME_NOT_FOUND;
        break;
    }
    return res;
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}

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int Surface::dispatchConnect(va_list args) {
    int api = va_arg(args, int);
    return connect(api);
}

int Surface::dispatchDisconnect(va_list args) {
    int api = va_arg(args, int);
    return disconnect(api);
}

int Surface::dispatchSetUsage(va_list args) {
    int usage = va_arg(args, int);
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    return setUsage(static_cast<uint32_t>(usage));
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}

int Surface::dispatchSetCrop(va_list args) {
    android_native_rect_t const* rect = va_arg(args, android_native_rect_t*);
    return setCrop(reinterpret_cast<Rect const*>(rect));
}

int Surface::dispatchSetBufferCount(va_list args) {
    size_t bufferCount = va_arg(args, size_t);
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    return setBufferCount(static_cast<int32_t>(bufferCount));
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}

int Surface::dispatchSetBuffersGeometry(va_list args) {
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    uint32_t width = va_arg(args, uint32_t);
    uint32_t height = va_arg(args, uint32_t);
    PixelFormat format = va_arg(args, PixelFormat);
    int err = setBuffersDimensions(width, height);
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    if (err != 0) {
        return err;
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    }
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    return setBuffersFormat(format);
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}
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int Surface::dispatchSetBuffersDimensions(va_list args) {
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    uint32_t width = va_arg(args, uint32_t);
    uint32_t height = va_arg(args, uint32_t);
    return setBuffersDimensions(width, height);
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}
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int Surface::dispatchSetBuffersUserDimensions(va_list args) {
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    uint32_t width = va_arg(args, uint32_t);
    uint32_t height = va_arg(args, uint32_t);
    return setBuffersUserDimensions(width, height);
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}

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int Surface::dispatchSetBuffersFormat(va_list args) {
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    PixelFormat format = va_arg(args, PixelFormat);
    return setBuffersFormat(format);
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}
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int Surface::dispatchSetScalingMode(va_list args) {
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    int mode = va_arg(args, int);
    return setScalingMode(mode);
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}

int Surface::dispatchSetBuffersTransform(va_list args) {
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    uint32_t transform = va_arg(args, uint32_t);
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    return setBuffersTransform(transform);
}

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int Surface::dispatchSetBuffersStickyTransform(va_list args) {
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    uint32_t transform = va_arg(args, uint32_t);
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    return setBuffersStickyTransform(transform);
}

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int Surface::dispatchSetBuffersTimestamp(va_list args) {
    int64_t timestamp = va_arg(args, int64_t);
    return setBuffersTimestamp(timestamp);
}

int Surface::dispatchLock(va_list args) {
    ANativeWindow_Buffer* outBuffer = va_arg(args, ANativeWindow_Buffer*);
    ARect* inOutDirtyBounds = va_arg(args, ARect*);
    return lock(outBuffer, inOutDirtyBounds);
}

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int Surface::dispatchUnlockAndPost(va_list args __attribute__((unused))) {
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    return unlockAndPost();
}

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int Surface::dispatchSetSidebandStream(va_list args) {
    native_handle_t* sH = va_arg(args, native_handle_t*);
    sp<NativeHandle> sidebandHandle = NativeHandle::create(sH, false);
    setSidebandStream(sidebandHandle);
    return OK;
}
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int Surface::dispatchSetBuffersDataSpace(va_list args) {
    android_dataspace dataspace =
            static_cast<android_dataspace>(va_arg(args, int));
    return setBuffersDataSpace(dataspace);
}

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int Surface::connect(int api) {
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    static sp<IProducerListener> listener = new DummyProducerListener();
    return connect(api, listener);
}

int Surface::connect(int api, const sp<IProducerListener>& listener) {
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    ATRACE_CALL();
    ALOGV("Surface::connect");
    Mutex::Autolock lock(mMutex);
    IGraphicBufferProducer::QueueBufferOutput output;
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    int err = mGraphicBufferProducer->connect(listener, api, mProducerControlledByApp, &output);
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    if (err == NO_ERROR) {
        uint32_t numPendingBuffers = 0;
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        uint32_t hint = 0;
        output.deflate(&mDefaultWidth, &mDefaultHeight, &hint,
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                &numPendingBuffers);
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        // Disable transform hint if sticky transform is set.
        if (mStickyTransform == 0) {
            mTransformHint = hint;
        }

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        mConsumerRunningBehind = (numPendingBuffers >= 2);
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    }
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    if (!err && api == NATIVE_WINDOW_API_CPU) {
        mConnectedToCpu = true;
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    }
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    return err;
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}

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int Surface::disconnect(int api) {
    ATRACE_CALL();
    ALOGV("Surface::disconnect");
    Mutex::Autolock lock(mMutex);
    freeAllBuffers();
    int err = mGraphicBufferProducer->disconnect(api);
    if (!err) {
        mReqFormat = 0;
        mReqWidth = 0;
        mReqHeight = 0;
        mReqUsage = 0;
        mCrop.clear();
        mScalingMode = NATIVE_WINDOW_SCALING_MODE_FREEZE;
        mTransform = 0;
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        mStickyTransform = 0;

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        if (api == NATIVE_WINDOW_API_CPU) {
            mConnectedToCpu = false;
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        }
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    }
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    return err;
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}

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int Surface::setUsage(uint32_t reqUsage)
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{
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    ALOGV("Surface::setUsage");
    Mutex::Autolock lock(mMutex);
    mReqUsage = reqUsage;
    return OK;
}

int Surface::setCrop(Rect const* rect)
{
    ATRACE_CALL();
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    Rect realRect;
    if (rect == NULL || rect->isEmpty()) {
        realRect.clear();
    } else {
        realRect = *rect;
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    }
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    ALOGV("Surface::setCrop rect=[%d %d %d %d]",
            realRect.left, realRect.top, realRect.right, realRect.bottom);

    Mutex::Autolock lock(mMutex);
    mCrop = realRect;
    return NO_ERROR;
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}

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int Surface::setBufferCount(int bufferCount)
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{
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    ATRACE_CALL();
    ALOGV("Surface::setBufferCount");
    Mutex::Autolock lock(mMutex);

    status_t err = mGraphicBufferProducer->setBufferCount(bufferCount);
    ALOGE_IF(err, "IGraphicBufferProducer::setBufferCount(%d) returned %s",
            bufferCount, strerror(-err));

    if (err == NO_ERROR) {
        freeAllBuffers();
    }

    return err;
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}

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int Surface::setBuffersDimensions(uint32_t width, uint32_t height)
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{
    ATRACE_CALL();
    ALOGV("Surface::setBuffersDimensions");

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    if ((width && !height) || (!width && height))
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        return BAD_VALUE;

    Mutex::Autolock lock(mMutex);
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    mReqWidth = width;
    mReqHeight = height;
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    return NO_ERROR;
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}

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int Surface::setBuffersUserDimensions(uint32_t width, uint32_t height)
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{
    ATRACE_CALL();
    ALOGV("Surface::setBuffersUserDimensions");

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    if ((width && !height) || (!width && height))
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        return BAD_VALUE;

    Mutex::Autolock lock(mMutex);
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    mUserWidth = width;
    mUserHeight = height;
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    return NO_ERROR;
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}

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int Surface::setBuffersFormat(PixelFormat format)
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{
    ALOGV("Surface::setBuffersFormat");

    Mutex::Autolock lock(mMutex);
    mReqFormat = format;
    return NO_ERROR;
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}

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int Surface::setScalingMode(int mode)
{
    ATRACE_CALL();
    ALOGV("Surface::setScalingMode(%d)", mode);

    switch (mode) {
        case NATIVE_WINDOW_SCALING_MODE_FREEZE:
        case NATIVE_WINDOW_SCALING_MODE_SCALE_TO_WINDOW:
        case NATIVE_WINDOW_SCALING_MODE_SCALE_CROP:
            break;
        default:
            ALOGE("unknown scaling mode: %d", mode);
            return BAD_VALUE;
    }
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    Mutex::Autolock lock(mMutex);
    mScalingMode = mode;
    return NO_ERROR;
}

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int Surface::setBuffersTransform(uint32_t transform)
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{
    ATRACE_CALL();
    ALOGV("Surface::setBuffersTransform");
    Mutex::Autolock lock(mMutex);
    mTransform = transform;
    return NO_ERROR;
}

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int Surface::setBuffersStickyTransform(uint32_t transform)
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{
    ATRACE_CALL();
    ALOGV("Surface::setBuffersStickyTransform");
    Mutex::Autolock lock(mMutex);
    mStickyTransform = transform;
    return NO_ERROR;
}

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int Surface::setBuffersTimestamp(int64_t timestamp)
{
    ALOGV("Surface::setBuffersTimestamp");
    Mutex::Autolock lock(mMutex);
    mTimestamp = timestamp;
    return NO_ERROR;
}

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int Surface::setBuffersDataSpace(android_dataspace dataSpace)
{
    ALOGV("Surface::setBuffersDataSpace");
    Mutex::Autolock lock(mMutex);
    mDataSpace = dataSpace;
    return NO_ERROR;
}

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void Surface::freeAllBuffers() {
    for (int i = 0; i < NUM_BUFFER_SLOTS; i++) {
        mSlots[i].buffer = 0;
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    }
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}

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// ----------------------------------------------------------------------
// the lock/unlock APIs must be used from the same thread

static status_t copyBlt(
        const sp<GraphicBuffer>& dst,
        const sp<GraphicBuffer>& src,
        const Region& reg)
{
    // src and dst with, height and format must be identical. no verification
    // is done here.
    status_t err;
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    uint8_t* src_bits = NULL;
    err = src->lock(GRALLOC_USAGE_SW_READ_OFTEN, reg.bounds(),
            reinterpret_cast<void**>(&src_bits));
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    ALOGE_IF(err, "error locking src buffer %s", strerror(-err));

    uint8_t* dst_bits = NULL;
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    err = dst->lock(GRALLOC_USAGE_SW_WRITE_OFTEN, reg.bounds(),
            reinterpret_cast<void**>(&dst_bits));
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    ALOGE_IF(err, "error locking dst buffer %s", strerror(-err));

    Region::const_iterator head(reg.begin());
    Region::const_iterator tail(reg.end());
    if (head != tail && src_bits && dst_bits) {
        const size_t bpp = bytesPerPixel(src->format);
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        const size_t dbpr = static_cast<uint32_t>(dst->stride) * bpp;
        const size_t sbpr = static_cast<uint32_t>(src->stride) * bpp;
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        while (head != tail) {
            const Rect& r(*head++);
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            int32_t h = r.height();
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            if (h <= 0) continue;
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            size_t size = static_cast<uint32_t>(r.width()) * bpp;
            uint8_t const * s = src_bits +
                    static_cast<uint32_t>(r.left + src->stride * r.top) * bpp;
            uint8_t       * d = dst_bits +
                    static_cast<uint32_t>(r.left + dst->stride * r.top) * bpp;
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            if (dbpr==sbpr && size==sbpr) {
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                size *= static_cast<size_t>(h);
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                h = 1;
            }
            do {
                memcpy(d, s, size);
                d += dbpr;
                s += sbpr;
            } while (--h > 0);
        }
    }

    if (src_bits)
        src->unlock();

    if (dst_bits)
        dst->unlock();

    return err;
}
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// ----------------------------------------------------------------------------
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status_t Surface::lock(
        ANativeWindow_Buffer* outBuffer, ARect* inOutDirtyBounds)
{
    if (mLockedBuffer != 0) {
        ALOGE("Surface::lock failed, already locked");
        return INVALID_OPERATION;
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    }
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    if (!mConnectedToCpu) {
        int err = Surface::connect(NATIVE_WINDOW_API_CPU);
        if (err) {
            return err;
        }
        // we're intending to do software rendering from this point
        setUsage(GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_SW_WRITE_OFTEN);
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    }

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    ANativeWindowBuffer* out;
    int fenceFd = -1;
    status_t err = dequeueBuffer(&out, &fenceFd);
    ALOGE_IF(err, "dequeueBuffer failed (%s)", strerror(-err));
    if (err == NO_ERROR) {
        sp<GraphicBuffer> backBuffer(GraphicBuffer::getSelf(out));
        const Rect bounds(backBuffer->width, backBuffer->height);

        Region newDirtyRegion;
        if (inOutDirtyBounds) {
            newDirtyRegion.set(static_cast<Rect const&>(*inOutDirtyBounds));
            newDirtyRegion.andSelf(bounds);
        } else {
            newDirtyRegion.set(bounds);
        }

        // figure out if we can copy the frontbuffer back
        const sp<GraphicBuffer>& frontBuffer(mPostedBuffer);
        const bool canCopyBack = (frontBuffer != 0 &&
                backBuffer->width  == frontBuffer->width &&
                backBuffer->height == frontBuffer->height &&
                backBuffer->format == frontBuffer->format);

        if (canCopyBack) {
            // copy the area that is invalid and not repainted this round
            const Region copyback(mDirtyRegion.subtract(newDirtyRegion));
            if (!copyback.isEmpty())
                copyBlt(backBuffer, frontBuffer, copyback);
        } else {
            // if we can't copy-back anything, modify the user's dirty
            // region to make sure they redraw the whole buffer
            newDirtyRegion.set(bounds);
            mDirtyRegion.clear();
            Mutex::Autolock lock(mMutex);
            for (size_t i=0 ; i<NUM_BUFFER_SLOTS ; i++) {
                mSlots[i].dirtyRegion.clear();
            }
        }


        { // scope for the lock
            Mutex::Autolock lock(mMutex);
            int backBufferSlot(getSlotFromBufferLocked(backBuffer.get()));
            if (backBufferSlot >= 0) {
                Region& dirtyRegion(mSlots[backBufferSlot].dirtyRegion);
                mDirtyRegion.subtract(dirtyRegion);
                dirtyRegion = newDirtyRegion;
            }
        }

        mDirtyRegion.orSelf(newDirtyRegion);
        if (inOutDirtyBounds) {
            *inOutDirtyBounds = newDirtyRegion.getBounds();
        }

        void* vaddr;
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        status_t res = backBuffer->lockAsync(
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                GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_SW_WRITE_OFTEN,
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                newDirtyRegion.bounds(), &vaddr, fenceFd);
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        ALOGW_IF(res, "failed locking buffer (handle = %p)",
                backBuffer->handle);

        if (res != 0) {
            err = INVALID_OPERATION;
        } else {
            mLockedBuffer = backBuffer;
            outBuffer->width  = backBuffer->width;
            outBuffer->height = backBuffer->height;
            outBuffer->stride = backBuffer->stride;
            outBuffer->format = backBuffer->format;
            outBuffer->bits   = vaddr;
        }
    }
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    return err;
906
}
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status_t Surface::unlockAndPost()
{
    if (mLockedBuffer == 0) {
        ALOGE("Surface::unlockAndPost failed, no locked buffer");
        return INVALID_OPERATION;
    }

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    int fd = -1;
    status_t err = mLockedBuffer->unlockAsync(&fd);
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    ALOGE_IF(err, "failed unlocking buffer (%p)", mLockedBuffer->handle);

919
    err = queueBuffer(mLockedBuffer.get(), fd);
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    ALOGE_IF(err, "queueBuffer (handle=%p) failed (%s)",
            mLockedBuffer->handle, strerror(-err));

    mPostedBuffer = mLockedBuffer;
    mLockedBuffer = 0;
    return err;
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}

}; // namespace android