2023-04-18 16:56:20 +00:00
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/* GStreamer
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* Copyright (C) 2023 Seungha Yang <seungha@centricular.com>
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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/**
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* SECTION:element-cudaipcsrc
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* @title: cudaipcsrc
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* @short_description: CUDA Inter Process Communication (IPC) src
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*
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* cudaipcsrc imports CUDA memory exported by peer cudaipcsrc element
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*
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* ## Example launch line
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* ```
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* gst-launch-1.0 cudaipcsrc ! queue ! cudadownload ! videoconvert ! queue ! autovideosink
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* ```
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*
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* Since: 1.24
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*/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include "gstcudaipcsrc.h"
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#include "gstcudaformat.h"
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#include <mutex>
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#include <string>
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#ifdef G_OS_WIN32
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#include "gstcudaipcclient_win32.h"
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#else
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#include "gstcudaipcclient_unix.h"
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#endif
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GST_DEBUG_CATEGORY_STATIC (gst_cuda_ipc_src_debug);
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#define GST_CAT_DEFAULT gst_cuda_ipc_src_debug
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static GstStaticPadTemplate src_template = GST_STATIC_PAD_TEMPLATE ("src",
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GST_PAD_SRC,
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GST_PAD_ALWAYS,
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GST_STATIC_CAPS (GST_VIDEO_CAPS_MAKE_WITH_FEATURES
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(GST_CAPS_FEATURE_MEMORY_CUDA_MEMORY,
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GST_CUDA_FORMATS)));
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enum
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{
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PROP_0,
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PROP_DEVICE_ID,
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PROP_ADDRESS,
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PROP_PROCESSING_DEADLINE,
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PROP_IO_MODE,
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PROP_CONN_TIMEOUT,
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PROP_BUFFER_SIZE,
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};
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#define DEFAULT_DEVICE_ID -1
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#ifdef G_OS_WIN32
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#define DEFAULT_ADDRESS "\\\\.\\pipe\\gst.cuda.ipc"
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#else
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#define DEFAULT_ADDRESS "/tmp/gst.cuda.ipc"
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#endif
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#define DEFAULT_PROCESSING_DEADLINE (20 * GST_MSECOND)
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#define DEFAULT_IO_MODE GST_CUDA_IPC_IO_COPY
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#define DEFAULT_CONN_TIMEOUT 5
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#define DEFAULT_BUFFER_SIZE 3
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/* *INDENT-OFF* */
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struct GstCudaIpcSrcPrivate
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{
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GstCudaContext *context = nullptr;
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GstCudaStream *stream = nullptr;
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GstCudaIpcClient *client = nullptr;
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GstCaps *caps = nullptr;
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GstVideoInfo info;
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std::mutex lock;
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bool flushing = false;
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/* properties */
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gint device_id = DEFAULT_DEVICE_ID;
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std::string address = DEFAULT_ADDRESS;
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GstClockTime processing_deadline = DEFAULT_PROCESSING_DEADLINE;
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GstCudaIpcIOMode io_mode = DEFAULT_IO_MODE;
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guint conn_timeout = DEFAULT_CONN_TIMEOUT;
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guint buffer_size = DEFAULT_BUFFER_SIZE;
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};
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/* *INDENT-ON* */
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struct _GstCudaIpcSrc
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{
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GstBaseSrc parent;
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GstCudaIpcSrcPrivate *priv;
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};
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static void gst_cuda_ipc_src_finalize (GObject * object);
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static void gst_cuda_ipc_src_set_property (GObject * object,
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guint prop_id, const GValue * value, GParamSpec * pspec);
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static void gst_win32_video_src_get_property (GObject * object, guint prop_id,
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GValue * value, GParamSpec * pspec);
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static GstClock *gst_cuda_ipc_src_provide_clock (GstElement * elem);
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static void gst_cuda_ipc_src_set_context (GstElement * elem,
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GstContext * context);
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static gboolean gst_cuda_ipc_src_start (GstBaseSrc * src);
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static gboolean gst_cuda_ipc_src_stop (GstBaseSrc * src);
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static gboolean gst_cuda_ipc_src_unlock (GstBaseSrc * src);
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static gboolean gst_cuda_ipc_src_unlock_stop (GstBaseSrc * src);
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static gboolean gst_cuda_ipc_src_query (GstBaseSrc * src, GstQuery * query);
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static GstCaps *gst_cuda_ipc_src_get_caps (GstBaseSrc * src, GstCaps * filter);
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static GstCaps *gst_cuda_ipc_src_fixate (GstBaseSrc * src, GstCaps * caps);
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static GstFlowReturn gst_cuda_ipc_src_create (GstBaseSrc * src, guint64 offset,
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guint size, GstBuffer ** buf);
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#define gst_cuda_ipc_src_parent_class parent_class
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G_DEFINE_TYPE (GstCudaIpcSrc, gst_cuda_ipc_src, GST_TYPE_BASE_SRC);
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static void
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gst_cuda_ipc_src_class_init (GstCudaIpcSrcClass * klass)
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{
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GObjectClass *object_class = G_OBJECT_CLASS (klass);
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GstElementClass *element_class = GST_ELEMENT_CLASS (klass);
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GstBaseSrcClass *src_class = GST_BASE_SRC_CLASS (klass);
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object_class->finalize = gst_cuda_ipc_src_finalize;
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object_class->set_property = gst_cuda_ipc_src_set_property;
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object_class->get_property = gst_win32_video_src_get_property;
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g_object_class_install_property (object_class, PROP_DEVICE_ID,
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g_param_spec_int ("cuda-device-id", "CUDA Device ID",
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"CUDA device id to use (-1 = auto)", -1, G_MAXINT, DEFAULT_DEVICE_ID,
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(GParamFlags) (G_PARAM_READWRITE | GST_PARAM_MUTABLE_READY |
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G_PARAM_STATIC_STRINGS)));
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g_object_class_install_property (object_class, PROP_ADDRESS,
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g_param_spec_string ("address", "Address",
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"Server address. Specifies name of WIN32 named pipe "
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"or unix domain socket path on Linux",
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DEFAULT_ADDRESS, (GParamFlags) (G_PARAM_READWRITE |
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G_PARAM_STATIC_STRINGS | GST_PARAM_MUTABLE_READY)));
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g_object_class_install_property (object_class, PROP_PROCESSING_DEADLINE,
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g_param_spec_uint64 ("processing-deadline", "Processing deadline",
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"Maximum processing time for a buffer in nanoseconds", 0, G_MAXUINT64,
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DEFAULT_PROCESSING_DEADLINE, (GParamFlags) (G_PARAM_READWRITE |
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G_PARAM_STATIC_STRINGS | GST_PARAM_MUTABLE_PLAYING)));
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g_object_class_install_property (object_class, PROP_IO_MODE,
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g_param_spec_enum ("io-mode", "IO Mode",
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"Memory I/O mode to use. This option will be ignored if the selected "
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"IPC mode is mmap",
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GST_TYPE_CUDA_IPC_IO_MODE, DEFAULT_IO_MODE,
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(GParamFlags) (G_PARAM_READWRITE | GST_PARAM_MUTABLE_READY |
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G_PARAM_STATIC_STRINGS)));
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g_object_class_install_property (object_class, PROP_CONN_TIMEOUT,
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g_param_spec_uint ("connection-timeout", "Connection Timeout",
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"Connection timeout in seconds (0 = never timeout)", 0, G_MAXINT,
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DEFAULT_CONN_TIMEOUT,
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(GParamFlags) (G_PARAM_READWRITE | GST_PARAM_MUTABLE_READY |
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G_PARAM_STATIC_STRINGS)));
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g_object_class_install_property (object_class, PROP_BUFFER_SIZE,
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g_param_spec_uint ("buffer-size", "Buffer Size",
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"Size of internal buffer", 1, G_MAXINT,
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DEFAULT_BUFFER_SIZE,
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(GParamFlags) (G_PARAM_READWRITE | GST_PARAM_MUTABLE_READY |
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G_PARAM_STATIC_STRINGS)));
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gst_element_class_set_static_metadata (element_class,
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"CUDA IPC Src", "Source/Video",
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"Receive CUDA memory from the cudaipcsrc element",
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"Seungha Yang <seungha@centricular.com>");
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gst_element_class_add_static_pad_template (element_class, &src_template);
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element_class->provide_clock =
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GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_provide_clock);
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element_class->set_context = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_set_context);
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src_class->start = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_start);
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src_class->stop = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_stop);
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src_class->unlock = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_unlock);
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src_class->unlock_stop = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_unlock_stop);
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src_class->query = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_query);
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src_class->get_caps = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_get_caps);
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src_class->fixate = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_fixate);
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src_class->create = GST_DEBUG_FUNCPTR (gst_cuda_ipc_src_create);
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GST_DEBUG_CATEGORY_INIT (gst_cuda_ipc_src_debug, "cudaipcsrc",
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0, "cudaipcsrc");
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gst_type_mark_as_plugin_api (GST_TYPE_CUDA_IPC_IO_MODE,
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(GstPluginAPIFlags) 0);
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}
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static void
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gst_cuda_ipc_src_init (GstCudaIpcSrc * self)
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{
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gst_base_src_set_format (GST_BASE_SRC (self), GST_FORMAT_TIME);
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gst_base_src_set_live (GST_BASE_SRC (self), TRUE);
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self->priv = new GstCudaIpcSrcPrivate ();
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GST_OBJECT_FLAG_SET (self, GST_ELEMENT_FLAG_PROVIDE_CLOCK);
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GST_OBJECT_FLAG_SET (self, GST_ELEMENT_FLAG_REQUIRE_CLOCK);
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}
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static void
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gst_cuda_ipc_src_finalize (GObject * object)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (object);
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delete self->priv;
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G_OBJECT_CLASS (parent_class)->finalize (object);
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}
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static void
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gst_cuda_ipc_src_set_property (GObject * object, guint prop_id,
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const GValue * value, GParamSpec * pspec)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (object);
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GstCudaIpcSrcPrivate *priv = self->priv;
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std::unique_lock < std::mutex > lk (priv->lock);
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switch (prop_id) {
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case PROP_DEVICE_ID:
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priv->device_id = g_value_get_int (value);
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break;
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case PROP_ADDRESS:
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{
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const gchar *address = g_value_get_string (value);
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priv->address.clear ();
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if (address)
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priv->address = address;
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break;
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}
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case PROP_PROCESSING_DEADLINE:
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{
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GstClockTime prev_val, new_val;
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prev_val = priv->processing_deadline;
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new_val = g_value_get_uint64 (value);
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priv->processing_deadline = new_val;
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if (prev_val != new_val) {
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lk.unlock ();
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GST_DEBUG_OBJECT (self, "Posting latency message");
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gst_element_post_message (GST_ELEMENT_CAST (self),
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gst_message_new_latency (GST_OBJECT_CAST (self)));
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}
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break;
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}
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case PROP_IO_MODE:
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priv->io_mode = (GstCudaIpcIOMode) g_value_get_enum (value);
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break;
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case PROP_CONN_TIMEOUT:
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priv->conn_timeout = g_value_get_uint (value);
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break;
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case PROP_BUFFER_SIZE:
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priv->buffer_size = g_value_get_uint (value);
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break;
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default:
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G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
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break;
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}
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}
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static void
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gst_win32_video_src_get_property (GObject * object, guint prop_id,
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GValue * value, GParamSpec * pspec)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (object);
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GstCudaIpcSrcPrivate *priv = self->priv;
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std::lock_guard < std::mutex > lk (priv->lock);
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switch (prop_id) {
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case PROP_DEVICE_ID:
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g_value_set_int (value, priv->device_id);
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break;
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case PROP_ADDRESS:
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g_value_set_string (value, priv->address.c_str ());
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break;
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case PROP_PROCESSING_DEADLINE:
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g_value_set_uint64 (value, priv->processing_deadline);
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break;
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case PROP_IO_MODE:
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g_value_set_enum (value, priv->io_mode);
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break;
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case PROP_CONN_TIMEOUT:
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g_value_set_uint (value, priv->conn_timeout);
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break;
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case PROP_BUFFER_SIZE:
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g_value_set_uint (value, priv->buffer_size);
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break;
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default:
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G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
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break;
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}
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}
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static GstClock *
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gst_cuda_ipc_src_provide_clock (GstElement * elem)
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{
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return gst_system_clock_obtain ();
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}
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static void
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gst_cuda_ipc_src_set_context (GstElement * elem, GstContext * context)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (elem);
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GstCudaIpcSrcPrivate *priv = self->priv;
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gst_cuda_handle_set_context (elem, context, priv->device_id, &priv->context);
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GST_ELEMENT_CLASS (parent_class)->set_context (elem, context);
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}
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static gboolean
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gst_cuda_ipc_src_start (GstBaseSrc * src)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (src);
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GstCudaIpcSrcPrivate *priv = self->priv;
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GST_DEBUG_OBJECT (self, "Start");
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if (!gst_cuda_ensure_element_context (GST_ELEMENT_CAST (self),
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priv->device_id, &priv->context)) {
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GST_ERROR_OBJECT (self, "Couldn't get CUDA context");
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return FALSE;
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}
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priv->stream = gst_cuda_stream_new (priv->context);
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std::lock_guard < std::mutex > lk (priv->lock);
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priv->client = gst_cuda_ipc_client_new (priv->address.c_str (), priv->context,
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priv->stream, priv->io_mode, priv->conn_timeout, priv->buffer_size - 1);
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return TRUE;
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}
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static gboolean
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gst_cuda_ipc_src_stop (GstBaseSrc * src)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (src);
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GstCudaIpcSrcPrivate *priv = self->priv;
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std::lock_guard < std::mutex > lk (priv->lock);
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GST_DEBUG_OBJECT (self, "Stop");
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if (priv->client)
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gst_cuda_ipc_client_stop (priv->client);
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gst_clear_object (&priv->client);
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gst_clear_cuda_stream (&priv->stream);
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gst_clear_object (&priv->context);
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gst_clear_caps (&priv->caps);
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return TRUE;
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}
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static gboolean
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gst_cuda_ipc_src_unlock (GstBaseSrc * src)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (src);
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GstCudaIpcSrcPrivate *priv = self->priv;
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GST_DEBUG_OBJECT (self, "Unlock");
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std::lock_guard < std::mutex > lk (priv->lock);
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priv->flushing = true;
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if (priv->client)
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gst_cuda_ipc_client_set_flushing (priv->client, true);
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2023-08-23 10:17:57 +00:00
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GST_DEBUG_OBJECT (self, "Unlocked");
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2023-04-18 16:56:20 +00:00
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return TRUE;
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}
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static gboolean
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gst_cuda_ipc_src_unlock_stop (GstBaseSrc * src)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (src);
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GstCudaIpcSrcPrivate *priv = self->priv;
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GST_DEBUG_OBJECT (self, "Unlock stop");
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std::lock_guard < std::mutex > lk (priv->lock);
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priv->flushing = false;
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if (priv->client)
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gst_cuda_ipc_client_set_flushing (priv->client, false);
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2023-08-23 10:17:57 +00:00
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GST_DEBUG_OBJECT (self, "Unlock stopped");
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2023-04-18 16:56:20 +00:00
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return TRUE;
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}
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static gboolean
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gst_cuda_ipc_src_query (GstBaseSrc * src, GstQuery * query)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (src);
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GstCudaIpcSrcPrivate *priv = self->priv;
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switch (GST_QUERY_TYPE (query)) {
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case GST_QUERY_LATENCY:
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{
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std::lock_guard < std::mutex > lk (priv->lock);
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if (GST_CLOCK_TIME_IS_VALID (priv->processing_deadline)) {
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gst_query_set_latency (query, TRUE, priv->processing_deadline,
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GST_CLOCK_TIME_NONE);
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} else {
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gst_query_set_latency (query, TRUE, 0, 0);
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}
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return TRUE;
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}
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case GST_QUERY_CONTEXT:
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if (gst_cuda_handle_context_query (GST_ELEMENT (self), query,
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priv->context)) {
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return TRUE;
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}
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break;
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default:
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break;
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}
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return GST_BASE_SRC_CLASS (parent_class)->query (src, query);
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}
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static GstCaps *
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gst_cuda_ipc_src_get_caps (GstBaseSrc * src, GstCaps * filter)
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{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (src);
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GstCudaIpcSrcPrivate *priv = self->priv;
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GstCudaIpcClient *client = nullptr;
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GstCaps *caps = nullptr;
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GST_DEBUG_OBJECT (self, "Get caps");
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priv->lock.lock ();
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if (priv->caps)
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caps = gst_caps_ref (priv->caps);
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else if (priv->client)
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client = (GstCudaIpcClient *) gst_object_ref (priv->client);
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priv->lock.unlock ();
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if (!caps && client)
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caps = gst_cuda_ipc_client_get_caps (priv->client);
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if (!caps)
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caps = gst_pad_get_pad_template_caps (GST_BASE_SRC_PAD (src));
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if (filter) {
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GstCaps *tmp = gst_caps_intersect_full (filter,
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caps, GST_CAPS_INTERSECT_FIRST);
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gst_caps_unref (caps);
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caps = tmp;
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}
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gst_clear_object (&client);
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GST_DEBUG_OBJECT (self, "Returning caps %" GST_PTR_FORMAT, caps);
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return caps;
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}
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static GstCaps *
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gst_cuda_ipc_src_fixate (GstBaseSrc * src, GstCaps * caps)
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{
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/* We don't negotiate with server. In here, we do fixate resolution to
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* 320 x 240 (same as default of videotestsrc) which makes a little more
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* sense than 1x1 */
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caps = gst_caps_make_writable (caps);
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for (guint i = 0; i < gst_caps_get_size (caps); i++) {
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GstStructure *s = gst_caps_get_structure (caps, i);
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gst_structure_fixate_field_nearest_int (s, "width", 320);
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gst_structure_fixate_field_nearest_int (s, "height", 240);
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}
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return gst_caps_fixate (caps);
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}
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static GstFlowReturn
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gst_cuda_ipc_src_create (GstBaseSrc * src, guint64 offset, guint size,
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GstBuffer ** buf)
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|
{
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GstCudaIpcSrc *self = GST_CUDA_IPC_SRC (src);
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GstCudaIpcSrcPrivate *priv = self->priv;
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GstFlowReturn ret;
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GstSample *sample = nullptr;
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GstCaps *caps;
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GstClock *clock;
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bool is_system_clock = true;
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GstClockTime pts;
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GstClockTime base_time;
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GstClockTime now_system;
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GstClockTime now_gst;
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GstClockTime remote_pts;
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GstBuffer *buffer;
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ret = gst_cuda_ipc_client_run (priv->client);
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if (ret != GST_FLOW_OK)
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return ret;
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ret = gst_cuda_ipc_client_get_sample (priv->client, &sample);
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if (ret != GST_FLOW_OK)
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return ret;
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|
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now_system = gst_util_get_timestamp ();
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clock = gst_element_get_clock (GST_ELEMENT_CAST (self));
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now_gst = gst_clock_get_time (clock);
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base_time = GST_ELEMENT_CAST (self)->base_time;
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is_system_clock = gst_cuda_ipc_clock_is_system (clock);
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|
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gst_object_unref (clock);
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buffer = gst_sample_get_buffer (sample);
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remote_pts = GST_BUFFER_PTS (buffer);
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if (!is_system_clock) {
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GstClockTimeDiff now_pts = now_gst - base_time + remote_pts - now_system;
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if (now_pts >= 0)
|
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|
pts = now_pts;
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else
|
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|
pts = 0;
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|
} else {
|
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|
|
if (remote_pts >= base_time) {
|
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|
|
pts = remote_pts - base_time;
|
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|
|
} else {
|
|
|
|
GST_WARNING_OBJECT (self,
|
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|
|
"Remote clock is smaller than our base time, remote %"
|
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|
|
GST_TIME_FORMAT ", base_time %" GST_TIME_FORMAT,
|
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|
|
GST_TIME_ARGS (remote_pts), GST_TIME_ARGS (base_time));
|
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pts = 0;
|
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|
|
}
|
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|
|
}
|
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|
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|
|
GST_BUFFER_PTS (buffer) = pts;
|
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|
|
|
|
|
std::unique_lock < std::mutex > lk (priv->lock);
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|
caps = gst_sample_get_caps (sample);
|
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|
|
if (!priv->caps || !gst_caps_is_equal (priv->caps, caps)) {
|
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|
|
gst_caps_replace (&priv->caps, caps);
|
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|
|
lk.unlock ();
|
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|
|
gst_base_src_set_caps (src, priv->caps);
|
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|
|
}
|
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*buf = gst_buffer_ref (buffer);
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|
|
gst_sample_unref (sample);
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|
return GST_FLOW_OK;
|
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|
|
}
|