mirror of
https://gitlab.freedesktop.org/gstreamer/gstreamer.git
synced 2024-11-30 13:41:48 +00:00
7b6023d9cf
Adding cudaipc{src,sink} element for CUDA IPC support. Implementation note: * For the communication between end points, Win32 named-pipe and unix domain socket will be used on Windows and Linux respectively. * cudaipcsink behaves as a server, and all GPU resources will be owned by the server process and exported for other processes, then cudaipcsrc (client) will import each exported handle. * User can select IPC mode via "ipc-mode" property of cudaipcsink. There are two IPC mode, one is "legacy" which uses legacy CUDA IPC method and the other is "mmap" which uses CUDA virtual memory API with OS's resource handle sharing method such as DuplicateHandle() on Windows. The "mmap" mode might be better than "legacy" in terms of stability since it relies on OS's resource management but it would consume more GPU memory than "legacy" mode. Part-of: <https://gitlab.freedesktop.org/gstreamer/gstreamer/-/merge_requests/4510>
432 lines
12 KiB
C++
432 lines
12 KiB
C++
/* 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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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include "gstcudaipcclient_unix.h"
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#include <string>
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#include <mutex>
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#include <condition_variable>
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#include <chrono>
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#include <gio/gunixsocketaddress.h>
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#include <gio/gunixconnection.h>
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GST_DEBUG_CATEGORY_EXTERN (cuda_ipc_client_debug);
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#define GST_CAT_DEFAULT cuda_ipc_client_debug
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/* *INDENT-OFF* */
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struct GstCudaIpcClientConnUnix : public GstCudaIpcClientConn
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{
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GstCudaIpcClientConnUnix (GSocketConnection * socket_conn,
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GCancellable * cancel)
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{
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conn = socket_conn;
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cancellable = (GCancellable *) g_object_ref (cancel);
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istream = g_io_stream_get_input_stream (G_IO_STREAM (conn));
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ostream = g_io_stream_get_output_stream (G_IO_STREAM (conn));
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}
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~GstCudaIpcClientConnUnix ()
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{
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g_cancellable_cancel (cancellable);
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g_object_unref (conn);
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g_object_unref (cancellable);
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}
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GSocketConnection *conn;
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GInputStream *istream;
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GOutputStream *ostream;
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GCancellable *cancellable;
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};
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struct GstCudaIpcClientUnixPrivate
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{
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GstCudaIpcClientUnixPrivate ()
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{
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main_context = g_main_context_new ();
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main_loop = g_main_loop_new (main_context, FALSE);
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cancellable = g_cancellable_new ();
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}
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~GstCudaIpcClientUnixPrivate ()
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{
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g_main_loop_unref (main_loop);
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g_main_context_unref (main_context);
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}
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std::string address;
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GstClockTime timeout;
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std::mutex lock;
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std::condition_variable cond;
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GMainLoop *main_loop;
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GMainContext *main_context;
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GCancellable *cancellable;
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bool flushing = false;
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};
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/* *INDENT-ON* */
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struct _GstCudaIpcClientUnix
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{
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GstCudaIpcClient parent;
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GstCudaIpcClientUnixPrivate *priv;
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};
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static void gst_cuda_ipc_client_unix_finalize (GObject * object);
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static bool gst_cuda_ipc_client_unix_send_msg (GstCudaIpcClient * client,
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GstCudaIpcClientConn * conn);
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static bool gst_cuda_ipc_client_unix_wait_msg (GstCudaIpcClient * client,
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GstCudaIpcClientConn * conn);
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static void gst_cuda_ipc_client_unix_terminate (GstCudaIpcClient * client);
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static void gst_cuda_ipc_client_unix_invoke (GstCudaIpcClient * client);
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static void gst_cuda_ipc_client_unix_set_flushing (GstCudaIpcClient * client,
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bool flushing);
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static void gst_cuda_ipc_client_unix_loop (GstCudaIpcClient * client);
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#define gst_cuda_ipc_client_unix_parent_class parent_class
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G_DEFINE_TYPE (GstCudaIpcClientUnix,
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gst_cuda_ipc_client_unix, GST_TYPE_CUDA_IPC_CLIENT);
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static void
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gst_cuda_ipc_client_unix_class_init (GstCudaIpcClientUnixClass * klass)
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{
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GObjectClass *object_class = G_OBJECT_CLASS (klass);
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GstCudaIpcClientClass *client_class = GST_CUDA_IPC_CLIENT_CLASS (klass);
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object_class->finalize = gst_cuda_ipc_client_unix_finalize;
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client_class->send_msg =
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GST_DEBUG_FUNCPTR (gst_cuda_ipc_client_unix_send_msg);
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client_class->wait_msg =
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GST_DEBUG_FUNCPTR (gst_cuda_ipc_client_unix_wait_msg);
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client_class->terminate =
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GST_DEBUG_FUNCPTR (gst_cuda_ipc_client_unix_terminate);
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client_class->invoke = GST_DEBUG_FUNCPTR (gst_cuda_ipc_client_unix_invoke);
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client_class->set_flushing =
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GST_DEBUG_FUNCPTR (gst_cuda_ipc_client_unix_set_flushing);
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client_class->loop = GST_DEBUG_FUNCPTR (gst_cuda_ipc_client_unix_loop);
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}
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static void
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gst_cuda_ipc_client_unix_init (GstCudaIpcClientUnix * self)
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{
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self->priv = new GstCudaIpcClientUnixPrivate ();
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}
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static void
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gst_cuda_ipc_client_unix_finalize (GObject * object)
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{
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GstCudaIpcClientUnix *self = GST_CUDA_IPC_CLIENT_UNIX (object);
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GST_DEBUG_OBJECT (self, "finalize");
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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_client_unix_send_msg_finish (GObject * source,
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GAsyncResult * result, GstCudaIpcClientConnUnix * conn)
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{
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GstCudaIpcClient *client = conn->client;
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gsize size;
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GError *err = nullptr;
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bool ret = true;
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if (!g_output_stream_write_all_finish (conn->ostream, result, &size, &err)) {
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GST_WARNING_OBJECT (client, "Write failed with %s", err->message);
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g_clear_error (&err);
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ret = false;
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}
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gst_cuda_ipc_client_send_msg_finish (client, ret);
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}
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static bool
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gst_cuda_ipc_client_unix_send_msg (GstCudaIpcClient * client,
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GstCudaIpcClientConn * conn)
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{
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GstCudaIpcClientConnUnix *unix_conn =
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static_cast < GstCudaIpcClientConnUnix * >(conn);
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g_output_stream_write_all_async (unix_conn->ostream, &conn->client_msg[0],
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conn->client_msg.size (), G_PRIORITY_DEFAULT, unix_conn->cancellable,
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(GAsyncReadyCallback) gst_cuda_ipc_client_unix_send_msg_finish,
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unix_conn);
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return true;
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}
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static void
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gst_cuda_ipc_client_unix_finish_have_mmap_data (GstCudaIpcClient * client,
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GstCudaIpcClientConnUnix * conn)
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{
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GstClockTime pts;
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GstCudaIpcMemLayout layout;
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GstCudaSharableHandle server_handle = 0;
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GstCudaSharableHandle client_handle = 0;
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GstCaps *caps = nullptr;
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GError *err = nullptr;
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if (!gst_cuda_ipc_pkt_parse_have_mmap_data (conn->server_msg, pts,
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layout, &server_handle, &caps)) {
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GST_ERROR_OBJECT (client, "Couldn't parse MMAP-DATA");
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goto error;
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}
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client_handle =
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g_unix_connection_receive_fd (G_UNIX_CONNECTION (conn->conn),
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conn->cancellable, &err);
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if (err) {
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GST_ERROR_OBJECT (client, "Couldn't get fd, %s", err->message);
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goto error;
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}
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gst_cuda_ipc_client_have_mmap_data (client, pts, layout, caps,
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server_handle, client_handle);
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return;
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error:
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gst_cuda_ipc_client_wait_msg_finish (client, false);
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}
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static void
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gst_cuda_ipc_client_unix_payload_finish (GObject * source,
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GAsyncResult * result, GstCudaIpcClientConnUnix * conn)
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{
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GstCudaIpcClient *client = conn->client;
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gsize size;
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GError *err = nullptr;
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bool ret = true;
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GstCudaIpcPacketHeader header;
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if (!g_input_stream_read_all_finish (conn->istream, result, &size, &err)) {
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GST_WARNING_OBJECT (client, "Read failed with %s", err->message);
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g_clear_error (&err);
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ret = false;
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} else if (!gst_cuda_ipc_pkt_identify (conn->server_msg, header)) {
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GST_ERROR_OBJECT (client, "Broken header");
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ret = false;
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} else if (header.type == GstCudaIpcPktType::HAVE_MMAP_DATA) {
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gst_cuda_ipc_client_unix_finish_have_mmap_data (client, conn);
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return;
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}
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gst_cuda_ipc_client_wait_msg_finish (client, ret);
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}
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static void
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gst_cuda_ipc_client_unix_wait_finish (GObject * source,
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GAsyncResult * result, GstCudaIpcClientConnUnix * conn)
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{
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GstCudaIpcClient *client = conn->client;
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gsize size;
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GError *err = nullptr;
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GstCudaIpcPacketHeader header;
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if (!g_input_stream_read_all_finish (conn->istream, result, &size, &err)) {
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GST_WARNING_OBJECT (client, "Read failed with %s", err->message);
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g_clear_error (&err);
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gst_cuda_ipc_client_wait_msg_finish (client, false);
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return;
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}
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if (!gst_cuda_ipc_pkt_identify (conn->server_msg, header)) {
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GST_ERROR_OBJECT (client, "Broken header");
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gst_cuda_ipc_client_wait_msg_finish (client, false);
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return;
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}
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if (header.payload_size == 0) {
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gst_cuda_ipc_client_wait_msg_finish (client, true);
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return;
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}
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GST_LOG_OBJECT (client, "Reading payload");
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g_input_stream_read_all_async (conn->istream,
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&conn->server_msg[0] + GST_CUDA_IPC_PKT_HEADER_SIZE, header.payload_size,
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G_PRIORITY_DEFAULT, conn->cancellable,
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(GAsyncReadyCallback) gst_cuda_ipc_client_unix_payload_finish, conn);
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}
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static bool
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gst_cuda_ipc_client_unix_wait_msg (GstCudaIpcClient * client,
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GstCudaIpcClientConn * conn)
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{
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GstCudaIpcClientConnUnix *unix_conn =
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static_cast < GstCudaIpcClientConnUnix * >(conn);
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g_input_stream_read_all_async (unix_conn->istream,
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&conn->server_msg[0], GST_CUDA_IPC_PKT_HEADER_SIZE,
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G_PRIORITY_DEFAULT, unix_conn->cancellable,
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(GAsyncReadyCallback) gst_cuda_ipc_client_unix_wait_finish, unix_conn);
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return true;
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}
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static void
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gst_cuda_ipc_client_unix_terminate (GstCudaIpcClient * client)
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{
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GstCudaIpcClientUnix *self = GST_CUDA_IPC_CLIENT_UNIX (client);
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GstCudaIpcClientUnixPrivate *priv = self->priv;
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g_main_loop_quit (priv->main_loop);
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}
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static gboolean
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gst_cuda_ipc_client_unix_invoke_func (GstCudaIpcClient * client)
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{
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gst_cuda_ipc_client_on_idle (client);
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return G_SOURCE_REMOVE;
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}
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static void
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gst_cuda_ipc_client_unix_invoke (GstCudaIpcClient * client)
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{
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GstCudaIpcClientUnix *self = GST_CUDA_IPC_CLIENT_UNIX (client);
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GstCudaIpcClientUnixPrivate *priv = self->priv;
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g_main_context_invoke (priv->main_context,
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(GSourceFunc) gst_cuda_ipc_client_unix_invoke_func, client);
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}
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static void
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gst_cuda_ipc_client_unix_set_flushing (GstCudaIpcClient * client, bool flushing)
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{
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GstCudaIpcClientUnix *self = GST_CUDA_IPC_CLIENT_UNIX (client);
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GstCudaIpcClientUnixPrivate *priv = self->priv;
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std::lock_guard < std::mutex > lk (priv->lock);
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priv->flushing = flushing;
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priv->cond.notify_all ();
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}
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static void
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gst_cuda_ipc_client_unix_loop (GstCudaIpcClient * client)
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{
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GstCudaIpcClientUnix *self = GST_CUDA_IPC_CLIENT_UNIX (client);
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GstCudaIpcClientUnixPrivate *priv = self->priv;
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GSocketConnection *socket_conn;
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GSocketClient *socket_client;
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GSocketAddress *addr;
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GError *err = nullptr;
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GstClockTime start_time = gst_util_get_timestamp ();
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g_main_context_push_thread_default (priv->main_context);
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std::unique_lock < std::mutex > lk (priv->lock);
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socket_client = g_socket_client_new ();
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addr = g_unix_socket_address_new (priv->address.c_str ());
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do {
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GstClockTime diff;
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if (priv->flushing) {
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GST_DEBUG_OBJECT (self, "We are flushing");
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gst_cuda_ipc_client_abort (client);
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return;
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}
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socket_conn = g_socket_client_connect (socket_client,
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G_SOCKET_CONNECTABLE (addr), priv->cancellable, &err);
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if (socket_conn)
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break;
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if (err->code == G_IO_ERROR_CANCELLED) {
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GST_DEBUG_OBJECT (self, "Operation cancelled");
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g_clear_error (&err);
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break;
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} else {
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GST_DEBUG_OBJECT (self, "Connection failed with error %s", err->message);
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g_clear_error (&err);
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}
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if (priv->timeout > 0) {
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diff = gst_util_get_timestamp () - start_time;
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if (diff > priv->timeout) {
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GST_WARNING_OBJECT (self, "Timeout");
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break;
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}
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}
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GST_DEBUG_OBJECT (self, "Sleep for next retry");
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priv->cond.wait_for (lk, std::chrono::milliseconds (100));
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} while (true);
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lk.unlock ();
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g_object_unref (socket_client);
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g_object_unref (addr);
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if (socket_conn) {
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GST_DEBUG_OBJECT (self, "Connection established");
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auto conn = std::make_shared < GstCudaIpcClientConnUnix > (socket_conn,
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priv->cancellable);
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gst_cuda_ipc_client_new_connection (client, conn);
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} else {
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GST_WARNING_OBJECT (self, "Connection failed");
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gst_cuda_ipc_client_abort (client);
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}
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GST_DEBUG_OBJECT (self, "Starting loop");
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g_main_loop_run (priv->main_loop);
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GST_DEBUG_OBJECT (self, "Exit loop");
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g_cancellable_cancel (priv->cancellable);
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g_main_context_pop_thread_default (priv->main_context);
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}
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GstCudaIpcClient *
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gst_cuda_ipc_client_new (const gchar * address, GstCudaContext * context,
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GstCudaStream * stream, GstCudaIpcIOMode io_mode, guint timeout,
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guint buffer_size)
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{
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GstCudaIpcClient *client;
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GstCudaIpcClientUnix *self;
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g_return_val_if_fail (address, nullptr);
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g_return_val_if_fail (GST_IS_CUDA_CONTEXT (context), nullptr);
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self = (GstCudaIpcClientUnix *)
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g_object_new (GST_TYPE_CUDA_IPC_CLIENT_UNIX, nullptr);
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gst_object_ref_sink (self);
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self->priv->address = address;
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self->priv->timeout = timeout * GST_SECOND;
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client = GST_CUDA_IPC_CLIENT (self);
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client->context = (GstCudaContext *) gst_object_ref (context);
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if (stream)
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client->stream = gst_cuda_stream_ref (stream);
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client->io_mode = io_mode;
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client->buffer_size = buffer_size;
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return client;
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}
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