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451 lines
14 KiB
451 lines
14 KiB
/* |
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* Copyright 2016 The Android Open Source Project |
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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 "v4l2_camera.h" |
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#include <fcntl.h> |
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#include <linux/videodev2.h> |
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#include <sys/stat.h> |
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#include <sys/types.h> |
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#include <cstdlib> |
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#include <camera/CameraMetadata.h> |
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#include <hardware/camera3.h> |
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#include "common.h" |
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#include "function_thread.h" |
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#include "metadata/metadata_common.h" |
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#include "stream_format.h" |
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#include "v4l2_metadata_factory.h" |
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#define ARRAY_SIZE(a) (sizeof(a) / sizeof(*(a))) |
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namespace v4l2_camera_hal { |
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// Helper function for managing metadata. |
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static std::vector<int32_t> getMetadataKeys(const camera_metadata_t* metadata) { |
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std::vector<int32_t> keys; |
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size_t num_entries = get_camera_metadata_entry_count(metadata); |
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for (size_t i = 0; i < num_entries; ++i) { |
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camera_metadata_ro_entry_t entry; |
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get_camera_metadata_ro_entry(metadata, i, &entry); |
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keys.push_back(entry.tag); |
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} |
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return keys; |
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} |
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V4L2Camera* V4L2Camera::NewV4L2Camera(int id, const std::string path) { |
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HAL_LOG_ENTER(); |
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std::shared_ptr<V4L2Wrapper> v4l2_wrapper(V4L2Wrapper::NewV4L2Wrapper(path)); |
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if (!v4l2_wrapper) { |
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HAL_LOGE("Failed to initialize V4L2 wrapper."); |
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return nullptr; |
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} |
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std::unique_ptr<Metadata> metadata; |
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int res = GetV4L2Metadata(v4l2_wrapper, &metadata); |
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if (res) { |
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HAL_LOGE("Failed to initialize V4L2 metadata: %d", res); |
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return nullptr; |
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} |
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return new V4L2Camera(id, std::move(v4l2_wrapper), std::move(metadata)); |
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} |
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V4L2Camera::V4L2Camera(int id, |
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std::shared_ptr<V4L2Wrapper> v4l2_wrapper, |
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std::unique_ptr<Metadata> metadata) |
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: default_camera_hal::Camera(id), |
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device_(std::move(v4l2_wrapper)), |
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metadata_(std::move(metadata)), |
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max_input_streams_(0), |
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max_output_streams_({{0, 0, 0}}), |
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buffer_enqueuer_(new FunctionThread( |
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std::bind(&V4L2Camera::enqueueRequestBuffers, this))), |
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buffer_dequeuer_(new FunctionThread( |
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std::bind(&V4L2Camera::dequeueRequestBuffers, this))) { |
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HAL_LOG_ENTER(); |
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} |
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V4L2Camera::~V4L2Camera() { |
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HAL_LOG_ENTER(); |
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} |
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int V4L2Camera::connect() { |
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HAL_LOG_ENTER(); |
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if (connection_) { |
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HAL_LOGE("Already connected. Please disconnect and try again."); |
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return -EIO; |
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} |
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connection_.reset(new V4L2Wrapper::Connection(device_)); |
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if (connection_->status()) { |
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HAL_LOGE("Failed to connect to device."); |
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return connection_->status(); |
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} |
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// TODO(b/29185945): confirm this is a supported device. |
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// This is checked by the HAL, but the device at |device_|'s path may |
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// not be the same one that was there when the HAL was loaded. |
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// (Alternatively, better hotplugging support may make this unecessary |
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// by disabling cameras that get disconnected and checking newly connected |
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// cameras, so connect() is never called on an unsupported camera) |
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// TODO(b/29158098): Inform service of any flashes that are no longer |
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// available because this camera is in use. |
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return 0; |
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} |
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void V4L2Camera::disconnect() { |
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HAL_LOG_ENTER(); |
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connection_.reset(); |
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// TODO(b/29158098): Inform service of any flashes that are available again |
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// because this camera is no longer in use. |
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} |
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int V4L2Camera::flushBuffers() { |
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HAL_LOG_ENTER(); |
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int res = device_->StreamOff(); |
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// This is not strictly necessary, but prevents a buildup of aborted |
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// requests in the in_flight_ map. These should be cleared |
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// whenever the stream is turned off. |
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std::lock_guard<std::mutex> guard(in_flight_lock_); |
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in_flight_.clear(); |
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return res; |
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} |
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int V4L2Camera::initStaticInfo(android::CameraMetadata* out) { |
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HAL_LOG_ENTER(); |
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int res = metadata_->FillStaticMetadata(out); |
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if (res) { |
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HAL_LOGE("Failed to get static metadata."); |
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return res; |
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} |
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// Extract max streams for use in verifying stream configs. |
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res = SingleTagValue( |
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*out, ANDROID_REQUEST_MAX_NUM_INPUT_STREAMS, &max_input_streams_); |
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if (res) { |
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HAL_LOGE("Failed to get max num input streams from static metadata."); |
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return res; |
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} |
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res = SingleTagValue( |
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*out, ANDROID_REQUEST_MAX_NUM_OUTPUT_STREAMS, &max_output_streams_); |
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if (res) { |
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HAL_LOGE("Failed to get max num output streams from static metadata."); |
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return res; |
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} |
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return 0; |
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} |
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int V4L2Camera::initTemplate(int type, android::CameraMetadata* out) { |
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HAL_LOG_ENTER(); |
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return metadata_->GetRequestTemplate(type, out); |
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} |
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void V4L2Camera::initDeviceInfo(camera_info_t* info) { |
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HAL_LOG_ENTER(); |
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// TODO(b/31044975): move this into device interface. |
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// For now, just constants. |
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info->resource_cost = 100; |
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info->conflicting_devices = nullptr; |
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info->conflicting_devices_length = 0; |
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} |
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int V4L2Camera::initDevice() { |
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HAL_LOG_ENTER(); |
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// Start the buffer enqueue/dequeue threads if they're not already running. |
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if (!buffer_enqueuer_->isRunning()) { |
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android::status_t res = buffer_enqueuer_->run("Enqueue buffers"); |
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if (res != android::OK) { |
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HAL_LOGE("Failed to start buffer enqueue thread: %d", res); |
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return -ENODEV; |
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} |
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} |
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if (!buffer_dequeuer_->isRunning()) { |
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android::status_t res = buffer_dequeuer_->run("Dequeue buffers"); |
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if (res != android::OK) { |
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HAL_LOGE("Failed to start buffer dequeue thread: %d", res); |
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return -ENODEV; |
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} |
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} |
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return 0; |
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} |
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int V4L2Camera::enqueueRequest( |
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std::shared_ptr<default_camera_hal::CaptureRequest> request) { |
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HAL_LOG_ENTER(); |
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// Assume request validated before calling this function. |
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// (For now, always exactly 1 output buffer, no inputs). |
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{ |
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std::lock_guard<std::mutex> guard(request_queue_lock_); |
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request_queue_.push(request); |
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requests_available_.notify_one(); |
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} |
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return 0; |
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} |
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std::shared_ptr<default_camera_hal::CaptureRequest> |
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V4L2Camera::dequeueRequest() { |
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std::unique_lock<std::mutex> lock(request_queue_lock_); |
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while (request_queue_.empty()) { |
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requests_available_.wait(lock); |
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} |
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std::shared_ptr<default_camera_hal::CaptureRequest> request = |
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request_queue_.front(); |
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request_queue_.pop(); |
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return request; |
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} |
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bool V4L2Camera::enqueueRequestBuffers() { |
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// Get a request from the queue (blocks this thread until one is available). |
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std::shared_ptr<default_camera_hal::CaptureRequest> request = |
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dequeueRequest(); |
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// Assume request validated before being added to the queue |
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// (For now, always exactly 1 output buffer, no inputs). |
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// Setting and getting settings are best effort here, |
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// since there's no way to know through V4L2 exactly what |
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// settings are used for a buffer unless we were to enqueue them |
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// one at a time, which would be too slow. |
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// Set the requested settings |
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int res = metadata_->SetRequestSettings(request->settings); |
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if (res) { |
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HAL_LOGE("Failed to set settings."); |
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completeRequest(request, res); |
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return true; |
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} |
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// Replace the requested settings with a snapshot of |
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// the used settings/state immediately before enqueue. |
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res = metadata_->FillResultMetadata(&request->settings); |
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if (res) { |
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// Note: since request is a shared pointer, this may happen if another |
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// thread has already decided to complete the request (e.g. via flushing), |
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// since that locks the metadata (in that case, this failing is fine, |
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// and completeRequest will simply do nothing). |
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HAL_LOGE("Failed to fill result metadata."); |
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completeRequest(request, res); |
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return true; |
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} |
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// Actually enqueue the buffer for capture. |
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{ |
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std::lock_guard<std::mutex> guard(in_flight_lock_); |
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uint32_t index; |
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res = device_->EnqueueBuffer(&request->output_buffers[0], &index); |
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if (res) { |
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HAL_LOGE("Device failed to enqueue buffer."); |
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completeRequest(request, res); |
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return true; |
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} |
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// Make sure the stream is on (no effect if already on). |
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res = device_->StreamOn(); |
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if (res) { |
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HAL_LOGE("Device failed to turn on stream."); |
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// Don't really want to send an error for only the request here, |
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// since this is a full device error. |
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// TODO: Should trigger full flush. |
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return true; |
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} |
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// Note: the request should be dequeued/flushed from the device |
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// before removal from in_flight_. |
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in_flight_.emplace(index, request); |
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buffers_in_flight_.notify_one(); |
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} |
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return true; |
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} |
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bool V4L2Camera::dequeueRequestBuffers() { |
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// Dequeue a buffer. |
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uint32_t result_index; |
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int res = device_->DequeueBuffer(&result_index); |
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if (res) { |
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if (res == -EAGAIN) { |
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// EAGAIN just means nothing to dequeue right now. |
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// Wait until something is available before looping again. |
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std::unique_lock<std::mutex> lock(in_flight_lock_); |
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while (in_flight_.empty()) { |
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buffers_in_flight_.wait(lock); |
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} |
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} else { |
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HAL_LOGW("Device failed to dequeue buffer: %d", res); |
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} |
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return true; |
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} |
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// Find the associated request and complete it. |
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std::lock_guard<std::mutex> guard(in_flight_lock_); |
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auto index_request = in_flight_.find(result_index); |
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if (index_request != in_flight_.end()) { |
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completeRequest(index_request->second, 0); |
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in_flight_.erase(index_request); |
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} else { |
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HAL_LOGW( |
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"Dequeued non in-flight buffer index %d. " |
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"This buffer may have been flushed from the HAL but not the device.", |
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index_request->first); |
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} |
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return true; |
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} |
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bool V4L2Camera::validateDataspacesAndRotations( |
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const camera3_stream_configuration_t* stream_config) { |
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HAL_LOG_ENTER(); |
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for (uint32_t i = 0; i < stream_config->num_streams; ++i) { |
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if (stream_config->streams[i]->rotation != CAMERA3_STREAM_ROTATION_0) { |
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HAL_LOGV("Rotation %d for stream %d not supported", |
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stream_config->streams[i]->rotation, |
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i); |
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return false; |
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} |
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// Accept all dataspaces, as it will just be overwritten below anyways. |
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} |
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return true; |
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} |
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int V4L2Camera::setupStreams(camera3_stream_configuration_t* stream_config) { |
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HAL_LOG_ENTER(); |
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std::lock_guard<std::mutex> guard(in_flight_lock_); |
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// The framework should be enforcing this, but doesn't hurt to be safe. |
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if (!in_flight_.empty()) { |
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HAL_LOGE("Can't set device format while frames are in flight."); |
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return -EINVAL; |
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} |
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// stream_config should have been validated; assume at least 1 stream. |
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camera3_stream_t* stream = stream_config->streams[0]; |
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int format = stream->format; |
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uint32_t width = stream->width; |
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uint32_t height = stream->height; |
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if (stream_config->num_streams > 1) { |
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// TODO(b/29939583): V4L2 doesn't actually support more than 1 |
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// stream at a time. If not all streams are the same format |
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// and size, error. Note that this means the HAL is not spec-compliant. |
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// Technically, this error should be thrown during validation, but |
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// since it isn't a spec-valid error validation isn't set up to check it. |
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for (uint32_t i = 1; i < stream_config->num_streams; ++i) { |
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stream = stream_config->streams[i]; |
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if (stream->format != format || stream->width != width || |
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stream->height != height) { |
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HAL_LOGE( |
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"V4L2 only supports 1 stream configuration at a time " |
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"(stream 0 is format %d, width %u, height %u, " |
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"stream %d is format %d, width %u, height %u).", |
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format, |
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width, |
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height, |
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i, |
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stream->format, |
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stream->width, |
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stream->height); |
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return -EINVAL; |
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} |
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} |
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} |
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// Ensure the stream is off. |
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int res = device_->StreamOff(); |
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if (res) { |
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HAL_LOGE("Device failed to turn off stream for reconfiguration: %d.", res); |
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return -ENODEV; |
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} |
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StreamFormat stream_format(format, width, height); |
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uint32_t max_buffers = 0; |
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res = device_->SetFormat(stream_format, &max_buffers); |
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if (res) { |
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HAL_LOGE("Failed to set device to correct format for stream: %d.", res); |
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return -ENODEV; |
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} |
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// Sanity check. |
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if (max_buffers < 1) { |
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HAL_LOGE("Setting format resulted in an invalid maximum of %u buffers.", |
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max_buffers); |
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return -ENODEV; |
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} |
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// Set all the streams dataspaces, usages, and max buffers. |
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for (uint32_t i = 0; i < stream_config->num_streams; ++i) { |
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stream = stream_config->streams[i]; |
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// Max buffers as reported by the device. |
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stream->max_buffers = max_buffers; |
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// Usage: currently using sw graphics. |
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switch (stream->stream_type) { |
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case CAMERA3_STREAM_INPUT: |
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stream->usage = GRALLOC_USAGE_SW_READ_OFTEN; |
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break; |
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case CAMERA3_STREAM_OUTPUT: |
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stream->usage = GRALLOC_USAGE_SW_WRITE_OFTEN; |
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break; |
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case CAMERA3_STREAM_BIDIRECTIONAL: |
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stream->usage = |
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GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_SW_WRITE_OFTEN; |
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break; |
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default: |
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// nothing to do. |
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break; |
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} |
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// Doesn't matter what was requested, we always use dataspace V0_JFIF. |
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// Note: according to camera3.h, this isn't allowed, but the camera |
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// framework team claims it's underdocumented; the implementation lets the |
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// HAL overwrite it. If this is changed, change the validation above. |
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stream->data_space = HAL_DATASPACE_V0_JFIF; |
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} |
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return 0; |
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} |
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bool V4L2Camera::isValidRequestSettings( |
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const android::CameraMetadata& settings) { |
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if (!metadata_->IsValidRequest(settings)) { |
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HAL_LOGE("Invalid request settings."); |
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return false; |
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} |
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return true; |
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} |
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} // namespace v4l2_camera_hal
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