mirror of
https://github.com/wpilibsuite/allwpilib
synced 2026-06-19 00:41:43 +00:00
- Twine, StringRef, Format, and NativeFormatting have been removed - Logging now uses fmtlib style formatting - Nearly all uses of wpi::outs/errs have been replaced with fmt::print() or std::puts()/std::fputs() (for unformatted strings). - A wpi/fmt/raw_ostream.h header has been added to enable fmt::print() with wpi::raw_ostream
557 lines
16 KiB
C++
557 lines
16 KiB
C++
// Copyright (c) FIRST and other WPILib contributors.
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// Open Source Software; you can modify and/or share it under the terms of
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// the WPILib BSD license file in the root directory of this project.
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#include "SourceImpl.h"
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#include <algorithm>
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#include <cstring>
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#include <memory>
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#include <wpi/StringExtras.h>
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#include <wpi/json.h>
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#include <wpi/timestamp.h>
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#include "Log.h"
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#include "Notifier.h"
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#include "Telemetry.h"
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using namespace cs;
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static constexpr size_t kMaxImagesAvail = 32;
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SourceImpl::SourceImpl(std::string_view name, wpi::Logger& logger,
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Notifier& notifier, Telemetry& telemetry)
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: m_logger(logger),
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m_notifier(notifier),
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m_telemetry(telemetry),
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m_name{name} {
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m_frame = Frame{*this, std::string_view{}, 0};
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}
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SourceImpl::~SourceImpl() {
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// Wake up anyone who is waiting. This also clears the current frame,
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// which is good because its destructor will call back into the class.
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Wakeup();
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// Set a flag so ReleaseFrame() doesn't re-add them to m_framesAvail.
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// Put in a block so we destroy before the destructor ends.
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{
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m_destroyFrames = true;
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auto frames = std::move(m_framesAvail);
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}
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// Everything else can clean up itself.
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}
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void SourceImpl::SetDescription(std::string_view description) {
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std::scoped_lock lock(m_mutex);
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m_description = description;
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}
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std::string_view SourceImpl::GetDescription(
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wpi::SmallVectorImpl<char>& buf) const {
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std::scoped_lock lock(m_mutex);
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buf.append(m_description.begin(), m_description.end());
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return {buf.data(), buf.size()};
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}
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void SourceImpl::SetConnected(bool connected) {
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bool wasConnected = m_connected.exchange(connected);
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if (wasConnected && !connected) {
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m_notifier.NotifySource(*this, CS_SOURCE_DISCONNECTED);
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} else if (!wasConnected && connected) {
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m_notifier.NotifySource(*this, CS_SOURCE_CONNECTED);
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}
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}
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uint64_t SourceImpl::GetCurFrameTime() {
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std::unique_lock lock{m_frameMutex};
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return m_frame.GetTime();
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}
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Frame SourceImpl::GetCurFrame() {
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std::unique_lock lock{m_frameMutex};
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return m_frame;
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}
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Frame SourceImpl::GetNextFrame() {
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std::unique_lock lock{m_frameMutex};
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auto oldTime = m_frame.GetTime();
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m_frameCv.wait(lock, [=] { return m_frame.GetTime() != oldTime; });
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return m_frame;
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}
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Frame SourceImpl::GetNextFrame(double timeout) {
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std::unique_lock lock{m_frameMutex};
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auto oldTime = m_frame.GetTime();
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if (!m_frameCv.wait_for(
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lock, std::chrono::milliseconds(static_cast<int>(timeout * 1000)),
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[=] { return m_frame.GetTime() != oldTime; })) {
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m_frame = Frame{*this, "timed out getting frame", wpi::Now()};
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}
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return m_frame;
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}
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void SourceImpl::Wakeup() {
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{
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std::scoped_lock lock{m_frameMutex};
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m_frame = Frame{*this, std::string_view{}, 0};
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}
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m_frameCv.notify_all();
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}
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void SourceImpl::SetBrightness(int brightness, CS_Status* status) {
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*status = CS_INVALID_HANDLE;
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}
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int SourceImpl::GetBrightness(CS_Status* status) const {
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*status = CS_INVALID_HANDLE;
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return 0;
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}
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void SourceImpl::SetWhiteBalanceAuto(CS_Status* status) {
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*status = CS_INVALID_HANDLE;
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}
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void SourceImpl::SetWhiteBalanceHoldCurrent(CS_Status* status) {
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*status = CS_INVALID_HANDLE;
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}
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void SourceImpl::SetWhiteBalanceManual(int value, CS_Status* status) {
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*status = CS_INVALID_HANDLE;
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}
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void SourceImpl::SetExposureAuto(CS_Status* status) {
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*status = CS_INVALID_HANDLE;
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}
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void SourceImpl::SetExposureHoldCurrent(CS_Status* status) {
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*status = CS_INVALID_HANDLE;
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}
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void SourceImpl::SetExposureManual(int value, CS_Status* status) {
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*status = CS_INVALID_HANDLE;
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}
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VideoMode SourceImpl::GetVideoMode(CS_Status* status) const {
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if (!m_properties_cached && !CacheProperties(status)) {
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return {};
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}
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std::scoped_lock lock(m_mutex);
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return m_mode;
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}
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bool SourceImpl::SetPixelFormat(VideoMode::PixelFormat pixelFormat,
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CS_Status* status) {
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auto mode = GetVideoMode(status);
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if (!mode) {
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return false;
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}
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mode.pixelFormat = pixelFormat;
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return SetVideoMode(mode, status);
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}
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bool SourceImpl::SetResolution(int width, int height, CS_Status* status) {
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auto mode = GetVideoMode(status);
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if (!mode) {
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return false;
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}
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mode.width = width;
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mode.height = height;
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return SetVideoMode(mode, status);
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}
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bool SourceImpl::SetFPS(int fps, CS_Status* status) {
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auto mode = GetVideoMode(status);
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if (!mode) {
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return false;
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}
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mode.fps = fps;
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return SetVideoMode(mode, status);
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}
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bool SourceImpl::SetConfigJson(std::string_view config, CS_Status* status) {
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wpi::json j;
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try {
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j = wpi::json::parse(config);
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} catch (const wpi::json::parse_error& e) {
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SWARNING("SetConfigJson: parse error at byte {}: {}", e.byte, e.what());
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*status = CS_PROPERTY_WRITE_FAILED;
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return false;
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}
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return SetConfigJson(j, status);
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}
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bool SourceImpl::SetConfigJson(const wpi::json& config, CS_Status* status) {
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VideoMode mode;
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// pixel format
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if (config.count("pixel format") != 0) {
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try {
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auto str = config.at("pixel format").get<std::string>();
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if (wpi::equals_lower(str, "mjpeg")) {
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mode.pixelFormat = cs::VideoMode::kMJPEG;
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} else if (wpi::equals_lower(str, "yuyv")) {
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mode.pixelFormat = cs::VideoMode::kYUYV;
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} else if (wpi::equals_lower(str, "rgb565")) {
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mode.pixelFormat = cs::VideoMode::kRGB565;
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} else if (wpi::equals_lower(str, "bgr")) {
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mode.pixelFormat = cs::VideoMode::kBGR;
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} else if (wpi::equals_lower(str, "gray")) {
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mode.pixelFormat = cs::VideoMode::kGray;
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} else {
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SWARNING("SetConfigJson: could not understand pixel format value '{}'",
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str);
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}
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} catch (const wpi::json::exception& e) {
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SWARNING("SetConfigJson: could not read pixel format: {}", e.what());
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}
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}
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// width
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if (config.count("width") != 0) {
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try {
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mode.width = config.at("width").get<unsigned int>();
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} catch (const wpi::json::exception& e) {
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SWARNING("SetConfigJson: could not read width: {}", e.what());
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}
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}
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// height
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if (config.count("height") != 0) {
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try {
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mode.height = config.at("height").get<unsigned int>();
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} catch (const wpi::json::exception& e) {
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SWARNING("SetConfigJson: could not read height: {}", e.what());
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}
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}
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// fps
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if (config.count("fps") != 0) {
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try {
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mode.fps = config.at("fps").get<unsigned int>();
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} catch (const wpi::json::exception& e) {
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SWARNING("SetConfigJson: could not read fps: {}", e.what());
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}
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}
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// if all of video mode is set, use SetVideoMode, otherwise piecemeal it
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if (mode.pixelFormat != VideoMode::kUnknown && mode.width != 0 &&
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mode.height != 0 && mode.fps != 0) {
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SINFO(
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"SetConfigJson: setting video mode to pixelFormat {}, width {}, height "
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"{}, fps {}",
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mode.pixelFormat, mode.width, mode.height, mode.fps);
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SetVideoMode(mode, status);
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} else {
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if (mode.pixelFormat != cs::VideoMode::kUnknown) {
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SINFO("SetConfigJson: setting pixelFormat {}", mode.pixelFormat);
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SetPixelFormat(static_cast<cs::VideoMode::PixelFormat>(mode.pixelFormat),
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status);
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}
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if (mode.width != 0 && mode.height != 0) {
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SINFO("SetConfigJson: setting width {}, height {}", mode.width,
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mode.height);
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SetResolution(mode.width, mode.height, status);
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}
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if (mode.fps != 0) {
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SINFO("SetConfigJson: setting fps {}", mode.fps);
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SetFPS(mode.fps, status);
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}
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}
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// brightness
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if (config.count("brightness") != 0) {
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try {
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int val = config.at("brightness").get<int>();
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SINFO("SetConfigJson: setting brightness to {}", val);
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SetBrightness(val, status);
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} catch (const wpi::json::exception& e) {
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SWARNING("SetConfigJson: could not read brightness: {}", e.what());
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}
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}
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// white balance
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if (config.count("white balance") != 0) {
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try {
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auto& setting = config.at("white balance");
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if (setting.is_string()) {
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auto str = setting.get<std::string>();
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if (wpi::equals_lower(str, "auto")) {
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SINFO("SetConfigJson: setting white balance to {}", "auto");
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SetWhiteBalanceAuto(status);
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} else if (wpi::equals_lower(str, "hold")) {
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SINFO("SetConfigJson: setting white balance to {}", "hold current");
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SetWhiteBalanceHoldCurrent(status);
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} else {
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SWARNING(
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"SetConfigJson: could not understand white balance value '{}'",
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str);
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}
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} else {
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int val = setting.get<int>();
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SINFO("SetConfigJson: setting white balance to {}", val);
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SetWhiteBalanceManual(val, status);
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}
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} catch (const wpi::json::exception& e) {
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SWARNING("SetConfigJson: could not read white balance: {}", e.what());
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}
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}
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// exposure
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if (config.count("exposure") != 0) {
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try {
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auto& setting = config.at("exposure");
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if (setting.is_string()) {
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auto str = setting.get<std::string>();
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if (wpi::equals_lower(str, "auto")) {
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SINFO("SetConfigJson: setting exposure to {}", "auto");
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SetExposureAuto(status);
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} else if (wpi::equals_lower(str, "hold")) {
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SINFO("SetConfigJson: setting exposure to {}", "hold current");
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SetExposureHoldCurrent(status);
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} else {
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SWARNING("SetConfigJson: could not understand exposure value '{}'",
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str);
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}
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} else {
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int val = setting.get<int>();
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SINFO("SetConfigJson: setting exposure to {}", val);
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SetExposureManual(val, status);
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}
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} catch (const wpi::json::exception& e) {
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SWARNING("SetConfigJson: could not read exposure: {}", e.what());
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}
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}
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// properties
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if (config.count("properties") != 0) {
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SetPropertiesJson(config.at("properties"), m_logger, GetName(), status);
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}
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return true;
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}
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std::string SourceImpl::GetConfigJson(CS_Status* status) {
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std::string rv;
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wpi::raw_string_ostream os(rv);
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GetConfigJsonObject(status).dump(os, 4);
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os.flush();
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return rv;
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}
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wpi::json SourceImpl::GetConfigJsonObject(CS_Status* status) {
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wpi::json j;
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// pixel format
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std::string_view pixelFormat;
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switch (m_mode.pixelFormat) {
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case VideoMode::kMJPEG:
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pixelFormat = "mjpeg";
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break;
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case VideoMode::kYUYV:
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pixelFormat = "yuyv";
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break;
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case VideoMode::kRGB565:
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pixelFormat = "rgb565";
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break;
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case VideoMode::kBGR:
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pixelFormat = "bgr";
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break;
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case VideoMode::kGray:
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pixelFormat = "gray";
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break;
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default:
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break;
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}
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if (!pixelFormat.empty()) {
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j.emplace("pixel format", pixelFormat);
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}
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// width
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if (m_mode.width != 0) {
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j.emplace("width", m_mode.width);
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}
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// height
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if (m_mode.height != 0) {
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j.emplace("height", m_mode.height);
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}
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// fps
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if (m_mode.fps != 0) {
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j.emplace("fps", m_mode.fps);
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}
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// TODO: output brightness, white balance, and exposure?
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// properties
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wpi::json props = GetPropertiesJsonObject(status);
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if (props.is_array()) {
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j.emplace("properties", props);
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}
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return j;
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}
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std::vector<VideoMode> SourceImpl::EnumerateVideoModes(
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CS_Status* status) const {
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if (!m_properties_cached && !CacheProperties(status)) {
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return {};
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}
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std::scoped_lock lock(m_mutex);
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return m_videoModes;
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}
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std::unique_ptr<Image> SourceImpl::AllocImage(
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VideoMode::PixelFormat pixelFormat, int width, int height, size_t size) {
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std::unique_ptr<Image> image;
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{
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std::scoped_lock lock{m_poolMutex};
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// find the smallest existing frame that is at least big enough.
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int found = -1;
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for (size_t i = 0; i < m_imagesAvail.size(); ++i) {
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// is it big enough?
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if (m_imagesAvail[i] && m_imagesAvail[i]->capacity() >= size) {
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// is it smaller than the last found?
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if (found < 0 ||
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m_imagesAvail[i]->capacity() < m_imagesAvail[found]->capacity()) {
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// yes, update
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found = i;
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}
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}
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}
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// if nothing found, allocate a new buffer
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if (found < 0) {
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image = std::make_unique<Image>(size);
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} else {
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image = std::move(m_imagesAvail[found]);
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}
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}
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// Initialize image
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image->SetSize(size);
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image->pixelFormat = pixelFormat;
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image->width = width;
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image->height = height;
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return image;
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}
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void SourceImpl::PutFrame(VideoMode::PixelFormat pixelFormat, int width,
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int height, std::string_view data, Frame::Time time) {
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auto image = AllocImage(pixelFormat, width, height, data.size());
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// Copy in image data
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SDEBUG4("Copying data to {} from {} ({} bytes)", fmt::ptr(image->data()),
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fmt::ptr(data.data()), data.size());
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std::memcpy(image->data(), data.data(), data.size());
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PutFrame(std::move(image), time);
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}
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void SourceImpl::PutFrame(std::unique_ptr<Image> image, Frame::Time time) {
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// Update telemetry
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m_telemetry.RecordSourceFrames(*this, 1);
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m_telemetry.RecordSourceBytes(*this, static_cast<int>(image->size()));
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// Update frame
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{
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std::scoped_lock lock{m_frameMutex};
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m_frame = Frame{*this, std::move(image), time};
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}
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// Signal listeners
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m_frameCv.notify_all();
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}
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void SourceImpl::PutError(std::string_view msg, Frame::Time time) {
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// Update frame
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{
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std::scoped_lock lock{m_frameMutex};
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m_frame = Frame{*this, msg, time};
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}
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// Signal listeners
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m_frameCv.notify_all();
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}
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void SourceImpl::NotifyPropertyCreated(int propIndex, PropertyImpl& prop) {
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m_notifier.NotifySourceProperty(*this, CS_SOURCE_PROPERTY_CREATED, prop.name,
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propIndex, prop.propKind, prop.value,
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prop.valueStr);
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// also notify choices updated event for enum types
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if (prop.propKind == CS_PROP_ENUM) {
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m_notifier.NotifySourceProperty(*this, CS_SOURCE_PROPERTY_CHOICES_UPDATED,
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prop.name, propIndex, prop.propKind,
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prop.value, {});
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}
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}
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void SourceImpl::UpdatePropertyValue(int property, bool setString, int value,
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std::string_view valueStr) {
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auto prop = GetProperty(property);
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if (!prop) {
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return;
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}
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if (setString) {
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prop->SetValue(valueStr);
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} else {
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prop->SetValue(value);
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}
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// Only notify updates after we've notified created
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if (m_properties_cached) {
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m_notifier.NotifySourceProperty(*this, CS_SOURCE_PROPERTY_VALUE_UPDATED,
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prop->name, property, prop->propKind,
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prop->value, prop->valueStr);
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}
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}
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void SourceImpl::ReleaseImage(std::unique_ptr<Image> image) {
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std::scoped_lock lock{m_poolMutex};
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if (m_destroyFrames) {
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return;
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}
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// Return the frame to the pool. First try to find an empty slot, otherwise
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// add it to the end.
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auto it = std::find(m_imagesAvail.begin(), m_imagesAvail.end(), nullptr);
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if (it != m_imagesAvail.end()) {
|
|
*it = std::move(image);
|
|
} else if (m_imagesAvail.size() > kMaxImagesAvail) {
|
|
// Replace smallest buffer; don't need to check for null because the above
|
|
// find would have found it.
|
|
auto it2 = std::min_element(
|
|
m_imagesAvail.begin(), m_imagesAvail.end(),
|
|
[](const std::unique_ptr<Image>& a, const std::unique_ptr<Image>& b) {
|
|
return a->capacity() < b->capacity();
|
|
});
|
|
if ((*it2)->capacity() < image->capacity()) {
|
|
*it2 = std::move(image);
|
|
}
|
|
} else {
|
|
m_imagesAvail.emplace_back(std::move(image));
|
|
}
|
|
}
|
|
|
|
std::unique_ptr<Frame::Impl> SourceImpl::AllocFrameImpl() {
|
|
std::scoped_lock lock{m_poolMutex};
|
|
|
|
if (m_framesAvail.empty()) {
|
|
return std::make_unique<Frame::Impl>(*this);
|
|
}
|
|
|
|
auto impl = std::move(m_framesAvail.back());
|
|
m_framesAvail.pop_back();
|
|
return impl;
|
|
}
|
|
|
|
void SourceImpl::ReleaseFrameImpl(std::unique_ptr<Frame::Impl> impl) {
|
|
std::scoped_lock lock{m_poolMutex};
|
|
if (m_destroyFrames) {
|
|
return;
|
|
}
|
|
m_framesAvail.push_back(std::move(impl));
|
|
}
|