Configure the camera before exposing the caps valid controls values (and bounds) are available. These control values might be of interest to be exposed on the capabilites, which otherwise, would not be available if the camera is configured after the update caps event. For instance, the FrameDurationLimits are computed by RPi's IPA in its configure(). Hence, we need to Camera::configure() to happen in order to know the FrameDurationLimits, that can be exposed in the caps. This ties into the framerate support for libcamerasrc which will happen in a follow-up commit. Signed-off-by: Rishikesh Donadkar <rishikeshdonadkar@gmail.com> Signed-off-by: Umang Jain <umang.jain@ideasonboard.com> Tested-by: Umang Jain <umang.jain@ideasonboard.com> Reviewed-by: Umang Jain <umang.jain@ideasonboard.com> Reviewed-by: Kieran Bingham <kieran.bingham@ideasonboard.com>
837 lines
23 KiB
C++
837 lines
23 KiB
C++
/* SPDX-License-Identifier: LGPL-2.1-or-later */
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/*
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* Copyright (C) 2019, Collabora Ltd.
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* Author: Nicolas Dufresne <nicolas.dufresne@collabora.com>
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*
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* gstlibcamerasrc.cpp - GStreamer Capture Element
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*/
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/**
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* \todo The following is a list of items that needs implementation in the GStreamer plugin
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* - Implement GstElement::send_event
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* + Allowing application to send EOS
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* + Allowing application to use FLUSH/FLUSH_STOP
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* + Prevent the main thread from accessing streaming thread
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* - Implement renegotiation (even if slow)
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* - Implement GstElement::request-new-pad (multi stream)
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* + Evaluate if a single streaming thread is fine
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* - Add application driven request (snapshot)
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* - Add framerate control
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* - Add buffer importation support
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*
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* Requires new libcamera API:
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* - Add framerate negotiation support
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* - Add colorimetry support
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* - Add timestamp support
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* - Use unique names to select the camera devices
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* - Add GstVideoMeta support (strides and offsets)
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*/
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#include "gstlibcamerasrc.h"
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#include <queue>
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#include <vector>
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#include <libcamera/base/mutex.h>
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#include <libcamera/camera.h>
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#include <libcamera/camera_manager.h>
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#include <libcamera/control_ids.h>
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#include <gst/base/base.h>
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#include "gstlibcameraallocator.h"
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#include "gstlibcamerapad.h"
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#include "gstlibcamerapool.h"
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#include "gstlibcamera-utils.h"
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using namespace libcamera;
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GST_DEBUG_CATEGORY_STATIC(source_debug);
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#define GST_CAT_DEFAULT source_debug
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struct RequestWrap {
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RequestWrap(std::unique_ptr<Request> request);
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~RequestWrap();
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void attachBuffer(Stream *stream, GstBuffer *buffer);
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GstBuffer *detachBuffer(Stream *stream);
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std::unique_ptr<Request> request_;
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std::map<Stream *, GstBuffer *> buffers_;
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GstClockTime latency_;
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GstClockTime pts_;
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};
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RequestWrap::RequestWrap(std::unique_ptr<Request> request)
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: request_(std::move(request)), latency_(0), pts_(GST_CLOCK_TIME_NONE)
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{
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}
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RequestWrap::~RequestWrap()
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{
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for (std::pair<Stream *const, GstBuffer *> &item : buffers_) {
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if (item.second)
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gst_buffer_unref(item.second);
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}
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}
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void RequestWrap::attachBuffer(Stream *stream, GstBuffer *buffer)
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{
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FrameBuffer *fb = gst_libcamera_buffer_get_frame_buffer(buffer);
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request_->addBuffer(stream, fb);
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auto item = buffers_.find(stream);
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if (item != buffers_.end()) {
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gst_buffer_unref(item->second);
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item->second = buffer;
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} else {
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buffers_[stream] = buffer;
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}
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}
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GstBuffer *RequestWrap::detachBuffer(Stream *stream)
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{
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GstBuffer *buffer = nullptr;
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auto item = buffers_.find(stream);
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if (item != buffers_.end()) {
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buffer = item->second;
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item->second = nullptr;
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}
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return buffer;
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}
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/* Used for C++ object with destructors. */
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struct GstLibcameraSrcState {
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GstLibcameraSrc *src_;
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std::shared_ptr<CameraManager> cm_;
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std::shared_ptr<Camera> cam_;
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std::unique_ptr<CameraConfiguration> config_;
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std::vector<GstPad *> srcpads_; /* Protected by stream_lock */
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/*
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* Contention on this lock_ must be minimized, as it has to be taken in
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* the realtime-sensitive requestCompleted() handler to protect
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* queuedRequests_ and completedRequests_.
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*
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* stream_lock must be taken before lock_ in contexts where both locks
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* need to be taken. In particular, this means that the lock_ must not
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* be held while calling into other graph elements (e.g. when calling
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* gst_pad_query()).
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*/
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Mutex lock_;
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std::queue<std::unique_ptr<RequestWrap>> queuedRequests_
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LIBCAMERA_TSA_GUARDED_BY(lock_);
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std::queue<std::unique_ptr<RequestWrap>> completedRequests_
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LIBCAMERA_TSA_GUARDED_BY(lock_);
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guint group_id_;
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int queueRequest();
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void requestCompleted(Request *request);
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int processRequest();
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};
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struct _GstLibcameraSrc {
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GstElement parent;
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GRecMutex stream_lock;
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GstTask *task;
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gchar *camera_name;
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GstLibcameraSrcState *state;
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GstLibcameraAllocator *allocator;
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GstFlowCombiner *flow_combiner;
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};
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enum {
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PROP_0,
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PROP_CAMERA_NAME
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};
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G_DEFINE_TYPE_WITH_CODE(GstLibcameraSrc, gst_libcamera_src, GST_TYPE_ELEMENT,
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GST_DEBUG_CATEGORY_INIT(source_debug, "libcamerasrc", 0,
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"libcamera Source"))
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#define TEMPLATE_CAPS GST_STATIC_CAPS("video/x-raw; image/jpeg")
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/* For the simple case, we have a src pad that is always present. */
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GstStaticPadTemplate src_template = {
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"src", GST_PAD_SRC, GST_PAD_ALWAYS, TEMPLATE_CAPS
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};
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/* More pads can be requested in state < PAUSED */
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GstStaticPadTemplate request_src_template = {
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"src_%u", GST_PAD_SRC, GST_PAD_REQUEST, TEMPLATE_CAPS
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};
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/* Must be called with stream_lock held. */
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int GstLibcameraSrcState::queueRequest()
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{
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std::unique_ptr<Request> request = cam_->createRequest();
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if (!request)
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return -ENOMEM;
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std::unique_ptr<RequestWrap> wrap =
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std::make_unique<RequestWrap>(std::move(request));
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for (GstPad *srcpad : srcpads_) {
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Stream *stream = gst_libcamera_pad_get_stream(srcpad);
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GstLibcameraPool *pool = gst_libcamera_pad_get_pool(srcpad);
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GstBuffer *buffer;
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GstFlowReturn ret;
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ret = gst_buffer_pool_acquire_buffer(GST_BUFFER_POOL(pool),
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&buffer, nullptr);
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if (ret != GST_FLOW_OK) {
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/*
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* RequestWrap has ownership of the request, and we
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* won't be queueing this one due to lack of buffers.
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*/
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return -ENOBUFS;
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}
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wrap->attachBuffer(stream, buffer);
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}
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GST_TRACE_OBJECT(src_, "Requesting buffers");
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cam_->queueRequest(wrap->request_.get());
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{
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MutexLocker locker(lock_);
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queuedRequests_.push(std::move(wrap));
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}
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/* The RequestWrap will be deleted in the completion handler. */
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return 0;
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}
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void
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GstLibcameraSrcState::requestCompleted(Request *request)
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{
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GST_DEBUG_OBJECT(src_, "buffers are ready");
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std::unique_ptr<RequestWrap> wrap;
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{
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MutexLocker locker(lock_);
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wrap = std::move(queuedRequests_.front());
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queuedRequests_.pop();
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}
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g_return_if_fail(wrap->request_.get() == request);
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if ((request->status() == Request::RequestCancelled)) {
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GST_DEBUG_OBJECT(src_, "Request was cancelled");
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return;
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}
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if (GST_ELEMENT_CLOCK(src_)) {
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int64_t timestamp = request->metadata().get(controls::SensorTimestamp).value_or(0);
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GstClockTime gst_base_time = GST_ELEMENT(src_)->base_time;
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GstClockTime gst_now = gst_clock_get_time(GST_ELEMENT_CLOCK(src_));
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/* \todo Need to expose which reference clock the timestamp relates to. */
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GstClockTime sys_now = g_get_monotonic_time() * 1000;
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/* Deduced from: sys_now - sys_base_time == gst_now - gst_base_time */
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GstClockTime sys_base_time = sys_now - (gst_now - gst_base_time);
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wrap->pts_ = timestamp - sys_base_time;
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wrap->latency_ = sys_now - timestamp;
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}
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{
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MutexLocker locker(lock_);
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completedRequests_.push(std::move(wrap));
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}
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gst_task_resume(src_->task);
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}
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/* Must be called with stream_lock held. */
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int GstLibcameraSrcState::processRequest()
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{
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std::unique_ptr<RequestWrap> wrap;
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int err = 0;
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{
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MutexLocker locker(lock_);
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if (!completedRequests_.empty()) {
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wrap = std::move(completedRequests_.front());
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completedRequests_.pop();
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}
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if (completedRequests_.empty())
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err = -ENOBUFS;
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}
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if (!wrap)
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return -ENOBUFS;
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GstFlowReturn ret = GST_FLOW_OK;
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gst_flow_combiner_reset(src_->flow_combiner);
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for (GstPad *srcpad : srcpads_) {
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Stream *stream = gst_libcamera_pad_get_stream(srcpad);
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GstBuffer *buffer = wrap->detachBuffer(stream);
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FrameBuffer *fb = gst_libcamera_buffer_get_frame_buffer(buffer);
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if (GST_CLOCK_TIME_IS_VALID(wrap->pts_)) {
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GST_BUFFER_PTS(buffer) = wrap->pts_;
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gst_libcamera_pad_set_latency(srcpad, wrap->latency_);
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} else {
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GST_BUFFER_PTS(buffer) = 0;
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}
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GST_BUFFER_OFFSET(buffer) = fb->metadata().sequence;
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GST_BUFFER_OFFSET_END(buffer) = fb->metadata().sequence;
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ret = gst_pad_push(srcpad, buffer);
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ret = gst_flow_combiner_update_pad_flow(src_->flow_combiner,
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srcpad, ret);
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}
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if (ret != GST_FLOW_OK) {
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if (ret == GST_FLOW_EOS) {
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g_autoptr(GstEvent) eos = gst_event_new_eos();
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guint32 seqnum = gst_util_seqnum_next();
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gst_event_set_seqnum(eos, seqnum);
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for (GstPad *srcpad : srcpads_)
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gst_pad_push_event(srcpad, gst_event_ref(eos));
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} else if (ret != GST_FLOW_FLUSHING) {
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GST_ELEMENT_FLOW_ERROR(src_, ret);
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}
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return -EPIPE;
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}
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return err;
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}
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static bool
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gst_libcamera_src_open(GstLibcameraSrc *self)
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{
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std::shared_ptr<CameraManager> cm;
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std::shared_ptr<Camera> cam;
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gint ret;
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GST_DEBUG_OBJECT(self, "Opening camera device ...");
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cm = gst_libcamera_get_camera_manager(ret);
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if (ret) {
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GST_ELEMENT_ERROR(self, LIBRARY, INIT,
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("Failed listing cameras."),
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("libcamera::CameraMananger::start() failed: %s", g_strerror(-ret)));
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return false;
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}
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g_autofree gchar *camera_name = nullptr;
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{
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GLibLocker lock(GST_OBJECT(self));
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if (self->camera_name)
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camera_name = g_strdup(self->camera_name);
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}
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if (camera_name) {
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cam = cm->get(self->camera_name);
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if (!cam) {
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GST_ELEMENT_ERROR(self, RESOURCE, NOT_FOUND,
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("Could not find a camera named '%s'.", self->camera_name),
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("libcamera::CameraMananger::get() returned nullptr"));
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return false;
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}
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} else {
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if (cm->cameras().empty()) {
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GST_ELEMENT_ERROR(self, RESOURCE, NOT_FOUND,
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("Could not find any supported camera on this system."),
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("libcamera::CameraMananger::cameras() is empty"));
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return false;
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}
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cam = cm->cameras()[0];
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}
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GST_INFO_OBJECT(self, "Using camera '%s'", cam->id().c_str());
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ret = cam->acquire();
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if (ret) {
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GST_ELEMENT_ERROR(self, RESOURCE, BUSY,
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("Camera '%s' is already in use.", cam->id().c_str()),
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("libcamera::Camera::acquire() failed: %s", g_strerror(ret)));
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return false;
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}
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cam->requestCompleted.connect(self->state, &GstLibcameraSrcState::requestCompleted);
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/* No need to lock here, we didn't start our threads yet. */
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self->state->cm_ = cm;
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self->state->cam_ = cam;
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return true;
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}
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static void
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gst_libcamera_src_task_run(gpointer user_data)
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{
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GstLibcameraSrc *self = GST_LIBCAMERA_SRC(user_data);
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GstLibcameraSrcState *state = self->state;
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/*
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* Start by pausing the task. The task may also get resumed by the
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* buffer-notify signal when new buffers are queued back to the pool,
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* or by the request completion handler when a new request has
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* completed. Both will resume the task after adding the buffers or
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* request to their respective lists, which are checked below to decide
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* if the task needs to be resumed for another iteration. This is thus
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* guaranteed to be race-free, the lock taken by gst_task_pause() and
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* gst_task_resume() serves as a memory barrier.
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*/
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gst_task_pause(self->task);
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bool doResume = false;
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/*
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* Create and queue one request. If no buffers are available the
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* function returns -ENOBUFS, which we ignore here as that's not a
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* fatal error.
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*/
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int ret = state->queueRequest();
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switch (ret) {
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case 0:
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/*
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* The request was successfully queued, there may be enough
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* buffers to create a new one. Don't pause the task to give it
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* another try.
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*/
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doResume = true;
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break;
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case -ENOMEM:
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GST_ELEMENT_ERROR(self, RESOURCE, NO_SPACE_LEFT,
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("Failed to allocate request for camera '%s'.",
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state->cam_->id().c_str()),
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("libcamera::Camera::createRequest() failed"));
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gst_task_stop(self->task);
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return;
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case -ENOBUFS:
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default:
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break;
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}
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/*
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* Process one completed request, if available, and record if further
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* requests are ready for processing.
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*/
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ret = state->processRequest();
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switch (ret) {
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case 0:
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/* Another completed request is available, resume the task. */
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doResume = true;
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break;
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case -EPIPE:
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gst_task_stop(self->task);
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return;
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case -ENOBUFS:
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default:
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break;
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}
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/* Resume the task for another iteration if needed. */
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if (doResume)
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gst_task_resume(self->task);
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}
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static void
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gst_libcamera_src_task_enter(GstTask *task, [[maybe_unused]] GThread *thread,
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gpointer user_data)
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{
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GstLibcameraSrc *self = GST_LIBCAMERA_SRC(user_data);
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GLibRecLocker lock(&self->stream_lock);
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GstLibcameraSrcState *state = self->state;
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GstFlowReturn flow_ret = GST_FLOW_OK;
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gint ret;
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GST_DEBUG_OBJECT(self, "Streaming thread has started");
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gint stream_id_num = 0;
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StreamRoles roles;
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for (GstPad *srcpad : state->srcpads_) {
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/* Create stream-id and push stream-start. */
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g_autofree gchar *stream_id_intermediate = g_strdup_printf("%i%i", state->group_id_, stream_id_num++);
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g_autofree gchar *stream_id = gst_pad_create_stream_id(srcpad, GST_ELEMENT(self), stream_id_intermediate);
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GstEvent *event = gst_event_new_stream_start(stream_id);
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gst_event_set_group_id(event, state->group_id_);
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gst_pad_push_event(srcpad, event);
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/* Collect the streams roles for the next iteration. */
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roles.push_back(gst_libcamera_pad_get_role(srcpad));
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}
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/* Generate the stream configurations, there should be one per pad. */
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state->config_ = state->cam_->generateConfiguration(roles);
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if (state->config_ == nullptr) {
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GST_ELEMENT_ERROR(self, RESOURCE, SETTINGS,
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("Failed to generate camera configuration from roles"),
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("Camera::generateConfiguration() returned nullptr"));
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gst_task_stop(task);
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return;
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}
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g_assert(state->config_->size() == state->srcpads_.size());
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for (gsize i = 0; i < state->srcpads_.size(); i++) {
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GstPad *srcpad = state->srcpads_[i];
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StreamConfiguration &stream_cfg = state->config_->at(i);
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/* Retrieve the supported caps. */
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g_autoptr(GstCaps) filter = gst_libcamera_stream_formats_to_caps(stream_cfg.formats());
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g_autoptr(GstCaps) caps = gst_pad_peer_query_caps(srcpad, filter);
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if (gst_caps_is_empty(caps)) {
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flow_ret = GST_FLOW_NOT_NEGOTIATED;
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break;
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}
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/* Fixate caps and configure the stream. */
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caps = gst_caps_make_writable(caps);
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gst_libcamera_configure_stream_from_caps(stream_cfg, caps);
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}
|
|
|
|
if (flow_ret != GST_FLOW_OK)
|
|
goto done;
|
|
|
|
/* Validate the configuration. */
|
|
if (state->config_->validate() == CameraConfiguration::Invalid) {
|
|
flow_ret = GST_FLOW_NOT_NEGOTIATED;
|
|
goto done;
|
|
}
|
|
|
|
ret = state->cam_->configure(state->config_.get());
|
|
if (ret) {
|
|
GST_ELEMENT_ERROR(self, RESOURCE, SETTINGS,
|
|
("Failed to configure camera: %s", g_strerror(-ret)),
|
|
("Camera::configure() failed with error code %i", ret));
|
|
gst_task_stop(task);
|
|
flow_ret = GST_FLOW_NOT_NEGOTIATED;
|
|
goto done;
|
|
}
|
|
|
|
/*
|
|
* Regardless if it has been modified, create clean caps and push the
|
|
* caps event. Downstream will decide if the caps are acceptable.
|
|
*/
|
|
for (gsize i = 0; i < state->srcpads_.size(); i++) {
|
|
GstPad *srcpad = state->srcpads_[i];
|
|
const StreamConfiguration &stream_cfg = state->config_->at(i);
|
|
|
|
g_autoptr(GstCaps) caps = gst_libcamera_stream_configuration_to_caps(stream_cfg);
|
|
if (!gst_pad_push_event(srcpad, gst_event_new_caps(caps))) {
|
|
flow_ret = GST_FLOW_NOT_NEGOTIATED;
|
|
break;
|
|
}
|
|
|
|
/* Send an open segment event with time format. */
|
|
GstSegment segment;
|
|
gst_segment_init(&segment, GST_FORMAT_TIME);
|
|
gst_pad_push_event(srcpad, gst_event_new_segment(&segment));
|
|
}
|
|
|
|
self->allocator = gst_libcamera_allocator_new(state->cam_, state->config_.get());
|
|
if (!self->allocator) {
|
|
GST_ELEMENT_ERROR(self, RESOURCE, NO_SPACE_LEFT,
|
|
("Failed to allocate memory"),
|
|
("gst_libcamera_allocator_new() failed."));
|
|
gst_task_stop(task);
|
|
return;
|
|
}
|
|
|
|
self->flow_combiner = gst_flow_combiner_new();
|
|
for (gsize i = 0; i < state->srcpads_.size(); i++) {
|
|
GstPad *srcpad = state->srcpads_[i];
|
|
const StreamConfiguration &stream_cfg = state->config_->at(i);
|
|
GstLibcameraPool *pool = gst_libcamera_pool_new(self->allocator,
|
|
stream_cfg.stream());
|
|
g_signal_connect_swapped(pool, "buffer-notify",
|
|
G_CALLBACK(gst_task_resume), task);
|
|
|
|
gst_libcamera_pad_set_pool(srcpad, pool);
|
|
gst_flow_combiner_add_pad(self->flow_combiner, srcpad);
|
|
}
|
|
|
|
ret = state->cam_->start();
|
|
if (ret) {
|
|
GST_ELEMENT_ERROR(self, RESOURCE, SETTINGS,
|
|
("Failed to start the camera: %s", g_strerror(-ret)),
|
|
("Camera.start() failed with error code %i", ret));
|
|
gst_task_stop(task);
|
|
return;
|
|
}
|
|
|
|
done:
|
|
switch (flow_ret) {
|
|
case GST_FLOW_NOT_NEGOTIATED:
|
|
GST_ELEMENT_FLOW_ERROR(self, flow_ret);
|
|
gst_task_stop(task);
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
|
|
static void
|
|
gst_libcamera_src_task_leave([[maybe_unused]] GstTask *task,
|
|
[[maybe_unused]] GThread *thread,
|
|
gpointer user_data)
|
|
{
|
|
GstLibcameraSrc *self = GST_LIBCAMERA_SRC(user_data);
|
|
GstLibcameraSrcState *state = self->state;
|
|
|
|
GST_DEBUG_OBJECT(self, "Streaming thread is about to stop");
|
|
|
|
state->cam_->stop();
|
|
|
|
{
|
|
MutexLocker locker(state->lock_);
|
|
state->completedRequests_ = {};
|
|
}
|
|
|
|
{
|
|
GLibRecLocker locker(&self->stream_lock);
|
|
for (GstPad *srcpad : state->srcpads_)
|
|
gst_libcamera_pad_set_pool(srcpad, nullptr);
|
|
}
|
|
|
|
g_clear_object(&self->allocator);
|
|
g_clear_pointer(&self->flow_combiner,
|
|
(GDestroyNotify)gst_flow_combiner_free);
|
|
}
|
|
|
|
static void
|
|
gst_libcamera_src_close(GstLibcameraSrc *self)
|
|
{
|
|
GstLibcameraSrcState *state = self->state;
|
|
gint ret;
|
|
|
|
GST_DEBUG_OBJECT(self, "Releasing resources");
|
|
|
|
state->config_.reset();
|
|
|
|
ret = state->cam_->release();
|
|
if (ret) {
|
|
GST_ELEMENT_WARNING(self, RESOURCE, BUSY,
|
|
("Camera '%s' is still in use.", state->cam_->id().c_str()),
|
|
("libcamera::Camera.release() failed: %s", g_strerror(-ret)));
|
|
}
|
|
|
|
state->cam_.reset();
|
|
state->cm_.reset();
|
|
}
|
|
|
|
static void
|
|
gst_libcamera_src_set_property(GObject *object, guint prop_id,
|
|
const GValue *value, GParamSpec *pspec)
|
|
{
|
|
GLibLocker lock(GST_OBJECT(object));
|
|
GstLibcameraSrc *self = GST_LIBCAMERA_SRC(object);
|
|
|
|
switch (prop_id) {
|
|
case PROP_CAMERA_NAME:
|
|
g_free(self->camera_name);
|
|
self->camera_name = g_value_dup_string(value);
|
|
break;
|
|
default:
|
|
G_OBJECT_WARN_INVALID_PROPERTY_ID(object, prop_id, pspec);
|
|
break;
|
|
}
|
|
}
|
|
|
|
static void
|
|
gst_libcamera_src_get_property(GObject *object, guint prop_id, GValue *value,
|
|
GParamSpec *pspec)
|
|
{
|
|
GLibLocker lock(GST_OBJECT(object));
|
|
GstLibcameraSrc *self = GST_LIBCAMERA_SRC(object);
|
|
|
|
switch (prop_id) {
|
|
case PROP_CAMERA_NAME:
|
|
g_value_set_string(value, self->camera_name);
|
|
break;
|
|
default:
|
|
G_OBJECT_WARN_INVALID_PROPERTY_ID(object, prop_id, pspec);
|
|
break;
|
|
}
|
|
}
|
|
|
|
static GstStateChangeReturn
|
|
gst_libcamera_src_change_state(GstElement *element, GstStateChange transition)
|
|
{
|
|
GstLibcameraSrc *self = GST_LIBCAMERA_SRC(element);
|
|
GstStateChangeReturn ret = GST_STATE_CHANGE_SUCCESS;
|
|
GstElementClass *klass = GST_ELEMENT_CLASS(gst_libcamera_src_parent_class);
|
|
|
|
ret = klass->change_state(element, transition);
|
|
if (ret == GST_STATE_CHANGE_FAILURE)
|
|
return ret;
|
|
|
|
switch (transition) {
|
|
case GST_STATE_CHANGE_NULL_TO_READY:
|
|
if (!gst_libcamera_src_open(self))
|
|
return GST_STATE_CHANGE_FAILURE;
|
|
break;
|
|
case GST_STATE_CHANGE_READY_TO_PAUSED:
|
|
/* This needs to be called after pads activation.*/
|
|
self->state->group_id_ = gst_util_group_id_next();
|
|
if (!gst_task_pause(self->task))
|
|
return GST_STATE_CHANGE_FAILURE;
|
|
ret = GST_STATE_CHANGE_NO_PREROLL;
|
|
break;
|
|
case GST_STATE_CHANGE_PAUSED_TO_PLAYING:
|
|
gst_task_start(self->task);
|
|
break;
|
|
case GST_STATE_CHANGE_PLAYING_TO_PAUSED:
|
|
ret = GST_STATE_CHANGE_NO_PREROLL;
|
|
break;
|
|
case GST_STATE_CHANGE_PAUSED_TO_READY:
|
|
/*
|
|
* \todo this might require some thread unblocking in the future
|
|
* if the streaming thread starts doing any kind of blocking
|
|
* operations. If this was the case, we would need to do so
|
|
* before pad deactivation, so before chaining to the parent
|
|
* change_state function.
|
|
*/
|
|
gst_task_join(self->task);
|
|
break;
|
|
case GST_STATE_CHANGE_READY_TO_NULL:
|
|
gst_libcamera_src_close(self);
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
|
|
return ret;
|
|
}
|
|
|
|
static void
|
|
gst_libcamera_src_finalize(GObject *object)
|
|
{
|
|
GObjectClass *klass = G_OBJECT_CLASS(gst_libcamera_src_parent_class);
|
|
GstLibcameraSrc *self = GST_LIBCAMERA_SRC(object);
|
|
|
|
g_rec_mutex_clear(&self->stream_lock);
|
|
g_clear_object(&self->task);
|
|
g_free(self->camera_name);
|
|
delete self->state;
|
|
|
|
return klass->finalize(object);
|
|
}
|
|
|
|
static void
|
|
gst_libcamera_src_init(GstLibcameraSrc *self)
|
|
{
|
|
GstLibcameraSrcState *state = new GstLibcameraSrcState();
|
|
GstPadTemplate *templ = gst_element_get_pad_template(GST_ELEMENT(self), "src");
|
|
|
|
g_rec_mutex_init(&self->stream_lock);
|
|
self->task = gst_task_new(gst_libcamera_src_task_run, self, nullptr);
|
|
gst_task_set_enter_callback(self->task, gst_libcamera_src_task_enter, self, nullptr);
|
|
gst_task_set_leave_callback(self->task, gst_libcamera_src_task_leave, self, nullptr);
|
|
gst_task_set_lock(self->task, &self->stream_lock);
|
|
|
|
state->srcpads_.push_back(gst_pad_new_from_template(templ, "src"));
|
|
gst_element_add_pad(GST_ELEMENT(self), state->srcpads_.back());
|
|
|
|
/* C-style friend. */
|
|
state->src_ = self;
|
|
self->state = state;
|
|
}
|
|
|
|
static GstPad *
|
|
gst_libcamera_src_request_new_pad(GstElement *element, GstPadTemplate *templ,
|
|
const gchar *name, [[maybe_unused]] const GstCaps *caps)
|
|
{
|
|
GstLibcameraSrc *self = GST_LIBCAMERA_SRC(element);
|
|
g_autoptr(GstPad) pad = NULL;
|
|
|
|
GST_DEBUG_OBJECT(self, "new request pad created");
|
|
|
|
pad = gst_pad_new_from_template(templ, name);
|
|
g_object_ref_sink(pad);
|
|
|
|
if (gst_element_add_pad(element, pad)) {
|
|
GLibRecLocker lock(&self->stream_lock);
|
|
self->state->srcpads_.push_back(reinterpret_cast<GstPad *>(g_object_ref(pad)));
|
|
} else {
|
|
GST_ELEMENT_ERROR(element, STREAM, FAILED,
|
|
("Internal data stream error."),
|
|
("Could not add pad to element"));
|
|
return NULL;
|
|
}
|
|
|
|
return reinterpret_cast<GstPad *>(g_steal_pointer(&pad));
|
|
}
|
|
|
|
static void
|
|
gst_libcamera_src_release_pad(GstElement *element, GstPad *pad)
|
|
{
|
|
GstLibcameraSrc *self = GST_LIBCAMERA_SRC(element);
|
|
|
|
GST_DEBUG_OBJECT(self, "Pad %" GST_PTR_FORMAT " being released", pad);
|
|
|
|
{
|
|
GLibRecLocker lock(&self->stream_lock);
|
|
std::vector<GstPad *> &pads = self->state->srcpads_;
|
|
auto begin_iterator = pads.begin();
|
|
auto end_iterator = pads.end();
|
|
auto pad_iterator = std::find(begin_iterator, end_iterator, pad);
|
|
|
|
if (pad_iterator != end_iterator) {
|
|
g_object_unref(*pad_iterator);
|
|
pads.erase(pad_iterator);
|
|
}
|
|
}
|
|
gst_element_remove_pad(element, pad);
|
|
}
|
|
|
|
static void
|
|
gst_libcamera_src_class_init(GstLibcameraSrcClass *klass)
|
|
{
|
|
GstElementClass *element_class = GST_ELEMENT_CLASS(klass);
|
|
GObjectClass *object_class = G_OBJECT_CLASS(klass);
|
|
|
|
object_class->set_property = gst_libcamera_src_set_property;
|
|
object_class->get_property = gst_libcamera_src_get_property;
|
|
object_class->finalize = gst_libcamera_src_finalize;
|
|
|
|
element_class->request_new_pad = gst_libcamera_src_request_new_pad;
|
|
element_class->release_pad = gst_libcamera_src_release_pad;
|
|
element_class->change_state = gst_libcamera_src_change_state;
|
|
|
|
gst_element_class_set_metadata(element_class,
|
|
"libcamera Source", "Source/Video",
|
|
"Linux Camera source using libcamera",
|
|
"Nicolas Dufresne <nicolas.dufresne@collabora.com");
|
|
gst_element_class_add_static_pad_template_with_gtype(element_class,
|
|
&src_template,
|
|
GST_TYPE_LIBCAMERA_PAD);
|
|
gst_element_class_add_static_pad_template_with_gtype(element_class,
|
|
&request_src_template,
|
|
GST_TYPE_LIBCAMERA_PAD);
|
|
|
|
GParamSpec *spec = g_param_spec_string("camera-name", "Camera Name",
|
|
"Select by name which camera to use.", nullptr,
|
|
(GParamFlags)(GST_PARAM_MUTABLE_READY
|
|
| G_PARAM_CONSTRUCT
|
|
| G_PARAM_READWRITE
|
|
| G_PARAM_STATIC_STRINGS));
|
|
g_object_class_install_property(object_class, PROP_CAMERA_NAME, spec);
|
|
}
|