forked from Qortal/Brooklyn
638 lines
19 KiB
C
638 lines
19 KiB
C
/*
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Copyright (c) 2012, Broadcom Europe Ltd
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are met:
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* Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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* Neither the name of the copyright holder nor the
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names of its contributors may be used to endorse or promote products
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derived from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY
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DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <stddef.h>
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#include "applog.h"
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#include "interface/vcos/vcos_stdbool.h"
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#include "interface/vcos/vcos_inttypes.h"
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#include "interface/mmal/mmal.h"
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#include "interface/mmal/mmal_logging.h"
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#include "interface/mmal/util/mmal_connection.h"
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#include "interface/mmal/util/mmal_util.h"
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#include "interface/mmal/util/mmal_default_components.h"
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#include "interface/mmal/util/mmal_util_params.h"
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#include "svp.h"
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#define CHECK_STATUS(s, m) \
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if ((s) != MMAL_SUCCESS) { \
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LOG_ERROR("%s: %s", (m), mmal_status_to_string((s))); \
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goto error; \
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}
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/* Flags specifying fields of SVP_T struct */
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#define SVP_CREATED_SEM (1 << 0)
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#define SVP_CREATED_THREAD (1 << 1)
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#define SVP_CREATED_MUTEX (1 << 2)
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#define SVP_CREATED_TIMER (1 << 3)
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#define SVP_CREATED_WD_TIMER (1 << 4)
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/* Hard-coded camera parameters */
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#if 0
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#define SVP_CAMERA_WIDTH 1920
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#define SVP_CAMERA_HEIGHT 1080
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#else
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#define SVP_CAMERA_WIDTH 1280
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#define SVP_CAMERA_HEIGHT 720
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#endif
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#define SVP_CAMERA_FRAMERATE 30
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#define SVP_CAMERA_DURATION_MS 10000
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/* Watchdog timeout - elapsed time to allow for no video frames received */
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#define SVP_WATCHDOG_TIMEOUT_MS 5000
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/** Simple video player instance */
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struct SVP_T
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{
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/* Player options */
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SVP_OPTS_T opts;
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/* Bitmask of SVP_CREATED_XXX values indicating which fields have been created.
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* Only used for those fields which can't be (portably) determined from their
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* own value.
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*/
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uint32_t created;
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/* Semaphore used for synchronising buffer handling for decoded frames */
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VCOS_SEMAPHORE_T sema;
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/* User supplied callbacks */
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SVP_CALLBACKS_T callbacks;
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/* Container reader component */
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MMAL_COMPONENT_T *reader;
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/* Video decoder component */
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MMAL_COMPONENT_T *video_decode;
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/* Camera component */
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MMAL_COMPONENT_T *camera;
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/* Connection: container reader -> video decoder */
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MMAL_CONNECTION_T *connection;
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/* Output port from video decoder or camera */
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MMAL_PORT_T *video_output;
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/* Pool of buffers for video decoder output */
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MMAL_POOL_T *out_pool;
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/* Queue to hold decoded video frames */
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MMAL_QUEUE_T *queue;
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/* Worker thread */
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VCOS_THREAD_T thread;
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/* Timer to trigger stop in camera preview case */
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VCOS_TIMER_T timer;
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/* Watchdog timer */
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VCOS_TIMER_T wd_timer;
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/* Mutex to synchronise access to all following fields */
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VCOS_MUTEX_T mutex;
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/* Stop control: 0 to process stream; bitmask of SVP_STOP_XXX values to stop */
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uint32_t stop;
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/* Player stats */
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SVP_STATS_T stats;
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};
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/* Local function prototypes */
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static MMAL_STATUS_T svp_setup_reader(MMAL_COMPONENT_T *reader, const char *uri,
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MMAL_PORT_T **video_port);
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static void svp_timer_cb(void *ctx);
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static void svp_watchdog_cb(void *ctx);
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static MMAL_STATUS_T svp_port_enable(SVP_T *svp, MMAL_PORT_T *port, MMAL_PORT_BH_CB_T cb);
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static void *svp_worker(void *arg);
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static void svp_bh_control_cb(MMAL_PORT_T *port, MMAL_BUFFER_HEADER_T *buffer);
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static void svp_bh_output_cb(MMAL_PORT_T *port, MMAL_BUFFER_HEADER_T *buffer);
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static void svp_reset_stop(SVP_T *svp);
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static void svp_set_stop(SVP_T *svp, uint32_t stop_flags);
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static uint32_t svp_get_stop(SVP_T *svp);
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/* Create Simple Video Player instance. */
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SVP_T *svp_create(const char *uri, SVP_CALLBACKS_T *callbacks, const SVP_OPTS_T *opts)
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{
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SVP_T *svp;
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MMAL_STATUS_T st;
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VCOS_STATUS_T vst;
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MMAL_PORT_T *reader_output = NULL;
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MMAL_COMPONENT_T *video_decode = NULL;
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MMAL_PORT_T *video_output = NULL;
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LOG_TRACE("Creating player for %s", (uri ? uri : "camera preview"));
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vcos_assert(callbacks->video_frame_cb);
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vcos_assert(callbacks->stop_cb);
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svp = vcos_calloc(1, sizeof(*svp), "svp");
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CHECK_STATUS((svp ? MMAL_SUCCESS : MMAL_ENOMEM), "Failed to allocate context");
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svp->opts = *opts;
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svp->callbacks = *callbacks;
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/* Semaphore used for synchronising buffer handling for decoded frames */
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vst = vcos_semaphore_create(&svp->sema, "svp-sem", 0);
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CHECK_STATUS((vst == VCOS_SUCCESS ? MMAL_SUCCESS : MMAL_ENOMEM), "Failed to create semaphore");
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svp->created |= SVP_CREATED_SEM;
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vst = vcos_mutex_create(&svp->mutex, "svp-mutex");
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CHECK_STATUS((vst == VCOS_SUCCESS ? MMAL_SUCCESS : MMAL_ENOMEM), "Failed to create mutex");
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svp->created |= SVP_CREATED_MUTEX;
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vst = vcos_timer_create(&svp->timer, "svp-timer", svp_timer_cb, svp);
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CHECK_STATUS((vst == VCOS_SUCCESS ? MMAL_SUCCESS : MMAL_ENOMEM), "Failed to create timer");
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svp->created |= SVP_CREATED_TIMER;
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vst = vcos_timer_create(&svp->wd_timer, "svp-wd-timer", svp_watchdog_cb, svp);
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CHECK_STATUS((vst == VCOS_SUCCESS ? MMAL_SUCCESS : MMAL_ENOMEM), "Failed to create timer");
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svp->created |= SVP_CREATED_WD_TIMER;
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/* Create components */
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svp->reader = NULL;
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svp->video_decode = NULL;
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svp->camera = NULL;
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svp->connection = NULL;
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if (uri)
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{
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/* Video from URI: setup container_reader -> video_decode */
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/* Create and set up container reader */
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st = mmal_component_create(MMAL_COMPONENT_DEFAULT_CONTAINER_READER, &svp->reader);
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CHECK_STATUS(st, "Failed to create container reader");
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st = svp_setup_reader(svp->reader, uri, &reader_output);
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if (st != MMAL_SUCCESS)
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goto error;
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st = mmal_component_enable(svp->reader);
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CHECK_STATUS(st, "Failed to enable container reader");
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st = svp_port_enable(svp, svp->reader->control, svp_bh_control_cb);
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CHECK_STATUS(st, "Failed to enable container reader control port");
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/* Create and set up video decoder */
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st = mmal_component_create(MMAL_COMPONENT_DEFAULT_VIDEO_DECODER, &svp->video_decode);
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CHECK_STATUS(st, "Failed to create video decoder");
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video_decode = svp->video_decode;
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video_output = video_decode->output[0];
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st = mmal_component_enable(video_decode);
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CHECK_STATUS(st, "Failed to enable video decoder");
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st = svp_port_enable(svp, video_decode->control, svp_bh_control_cb);
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CHECK_STATUS(st, "Failed to enable video decoder control port");
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}
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else
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{
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/* Camera preview */
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st = mmal_component_create(MMAL_COMPONENT_DEFAULT_CAMERA, &svp->camera);
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CHECK_STATUS(st, "Failed to create camera");
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st = mmal_component_enable(svp->camera);
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CHECK_STATUS(st, "Failed to enable camera");
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st = svp_port_enable(svp, svp->camera->control, svp_bh_control_cb);
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CHECK_STATUS(st, "Failed to enable camera control port");
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video_output = svp->camera->output[0]; /* Preview port */
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}
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st = mmal_port_parameter_set_boolean(video_output, MMAL_PARAMETER_ZERO_COPY, MMAL_TRUE);
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CHECK_STATUS((st == MMAL_ENOSYS ? MMAL_SUCCESS : st), "Failed to enable zero copy");
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if (uri)
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{
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/* Create connection: container_reader -> video_decoder */
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st = mmal_connection_create(&svp->connection, reader_output, video_decode->input[0],
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MMAL_CONNECTION_FLAG_TUNNELLING);
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CHECK_STATUS(st, "Failed to create connection");
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}
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/* Set video output port format.
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* Opaque encoding ensures we get buffer data as handles to relocatable heap. */
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video_output->format->encoding = MMAL_ENCODING_OPAQUE;
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if (!uri)
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{
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/* Set video format for camera preview */
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MMAL_VIDEO_FORMAT_T *vfmt = &video_output->format->es->video;
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CHECK_STATUS((video_output->format->type == MMAL_ES_TYPE_VIDEO) ? MMAL_SUCCESS : MMAL_EINVAL,
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"Output port isn't video format");
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vfmt->width = SVP_CAMERA_WIDTH;
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vfmt->height = SVP_CAMERA_HEIGHT;
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vfmt->crop.x = 0;
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vfmt->crop.y = 0;
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vfmt->crop.width = vfmt->width;
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vfmt->crop.height = vfmt->height;
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vfmt->frame_rate.num = SVP_CAMERA_FRAMERATE;
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vfmt->frame_rate.den = 1;
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}
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st = mmal_port_format_commit(video_output);
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CHECK_STATUS(st, "Failed to set output port format");
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/* Finally, set buffer num/size. N.B. For container_reader/video_decode, must be after
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* connection created, in order for port format to propagate.
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* Don't enable video output port until want to produce frames. */
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video_output->buffer_num = video_output->buffer_num_recommended;
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video_output->buffer_size = video_output->buffer_size_recommended;
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/* Pool + queue to hold decoded video frames */
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svp->out_pool = mmal_port_pool_create(video_output, video_output->buffer_num,
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video_output->buffer_size);
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CHECK_STATUS((svp->out_pool ? MMAL_SUCCESS : MMAL_ENOMEM), "Error allocating pool");
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svp->queue = mmal_queue_create();
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CHECK_STATUS((svp ? MMAL_SUCCESS : MMAL_ENOMEM), "Error allocating queue");
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svp->video_output = video_output;
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return svp;
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error:
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svp_destroy(svp);
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return NULL;
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}
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/**
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* Setup container reader component.
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* Sets URI, to initialize processing, and finds a video track.
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* @param reader Container reader component.
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* @param uri Media URI.
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* @param video_port On success, the output port for the first video track is returned here.
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* @return MMAL_SUCCESS if the container reader was successfully set up and a video track located.
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*/
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static MMAL_STATUS_T svp_setup_reader(MMAL_COMPONENT_T *reader, const char *uri,
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MMAL_PORT_T **video_port)
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{
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MMAL_STATUS_T st;
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uint32_t track;
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st = mmal_util_port_set_uri(reader->control, uri);
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if (st != MMAL_SUCCESS)
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{
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LOG_ERROR("%s: couldn't open uri %s", reader->name, uri);
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return st;
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}
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/* Find a video track */
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for (track = 0; track < reader->output_num; track++)
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{
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if (reader->output[track]->format->type == MMAL_ES_TYPE_VIDEO)
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{
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break;
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}
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}
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if (track == reader->output_num)
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{
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LOG_ERROR("%s: no video track", uri);
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return MMAL_EINVAL;
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}
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*video_port = reader->output[track];
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return MMAL_SUCCESS;
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}
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/* Destroy SVP instance. svp may be NULL. */
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void svp_destroy(SVP_T *svp)
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{
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if (svp)
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{
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MMAL_COMPONENT_T *components[] = { svp->reader, svp->video_decode, svp->camera };
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MMAL_COMPONENT_T **comp;
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/* Stop thread, disable connection and components */
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svp_stop(svp);
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for (comp = components; comp < components + vcos_countof(components); comp++)
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{
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mmal_component_disable(*comp);
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}
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/* Destroy connection + components */
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if (svp->connection)
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{
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mmal_connection_destroy(svp->connection);
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}
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for (comp = components; comp < components + vcos_countof(components); comp++)
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{
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mmal_component_destroy(*comp);
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}
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/* Free remaining resources */
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if (svp->out_pool)
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{
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mmal_pool_destroy(svp->out_pool);
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}
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if (svp->queue)
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{
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mmal_queue_destroy(svp->queue);
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}
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if (svp->created & SVP_CREATED_WD_TIMER)
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{
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vcos_timer_delete(&svp->wd_timer);
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}
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if (svp->created & SVP_CREATED_TIMER)
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{
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vcos_timer_delete(&svp->timer);
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}
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if (svp->created & SVP_CREATED_MUTEX)
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{
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vcos_mutex_delete(&svp->mutex);
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}
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if (svp->created & SVP_CREATED_SEM)
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{
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vcos_semaphore_delete(&svp->sema);
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}
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vcos_free(svp);
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}
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}
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/* Start SVP. Enables MMAL connection + creates worker thread. */
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int svp_start(SVP_T *svp)
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{
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MMAL_STATUS_T st;
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VCOS_STATUS_T vst;
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/* Ensure SVP is stopped first */
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svp_stop(svp);
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/* Reset the worker thread stop status, before enabling ports that might trigger a stop */
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svp_reset_stop(svp);
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if (svp->connection)
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{
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/* Enable reader->decoder connection */
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st = mmal_connection_enable(svp->connection);
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CHECK_STATUS(st, "Failed to create connection");
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}
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/* Enable video output port */
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st = svp_port_enable(svp, svp->video_output, svp_bh_output_cb);
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CHECK_STATUS(st, "Failed to enable output port");
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/* Reset stats */
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svp->stats.video_frame_count = 0;
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/* Create worker thread */
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vst = vcos_thread_create(&svp->thread, "svp-worker", NULL, svp_worker, svp);
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CHECK_STATUS((vst == VCOS_SUCCESS ? MMAL_SUCCESS : MMAL_ENOMEM), "Failed to create connection");
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svp->created |= SVP_CREATED_THREAD;
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/* Set timer */
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if (svp->camera)
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{
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unsigned ms = svp->opts.duration_ms;
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vcos_timer_set(&svp->timer, ((ms == 0) ? SVP_CAMERA_DURATION_MS : ms));
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}
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/* Start watchdog timer */
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vcos_timer_set(&svp->wd_timer, SVP_WATCHDOG_TIMEOUT_MS);
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return 0;
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error:
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return -1;
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}
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/* Stop SVP. Stops worker thread + disables MMAL connection. */
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void svp_stop(SVP_T *svp)
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{
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vcos_timer_cancel(&svp->wd_timer);
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vcos_timer_cancel(&svp->timer);
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/* Stop worker thread */
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if (svp->created & SVP_CREATED_THREAD)
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{
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svp_set_stop(svp, SVP_STOP_USER);
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vcos_semaphore_post(&svp->sema);
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vcos_thread_join(&svp->thread, NULL);
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svp->created &= ~SVP_CREATED_THREAD;
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}
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if (svp->connection)
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{
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mmal_connection_disable(svp->connection);
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}
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mmal_port_disable(svp->video_output);
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}
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/* Get stats since last call to svp_start() */
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void svp_get_stats(SVP_T *svp, SVP_STATS_T *stats)
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{
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vcos_mutex_lock(&svp->mutex);
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*stats = svp->stats;
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vcos_mutex_unlock(&svp->mutex);
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}
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/** Timer callback - stops playback */
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static void svp_timer_cb(void *ctx)
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{
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SVP_T *svp = ctx;
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svp_set_stop(svp, SVP_STOP_TIMEUP);
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vcos_semaphore_post(&svp->sema);
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}
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/** Watchdog timer callback - stops playback */
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static void svp_watchdog_cb(void *ctx)
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{
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SVP_T *svp = ctx;
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LOG_ERROR("%s: no frames received for %d ms, aborting", svp->video_output->name,
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SVP_WATCHDOG_TIMEOUT_MS);
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svp_set_stop(svp, SVP_STOP_ERROR);
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vcos_semaphore_post(&svp->sema);
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}
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/** Enable MMAL port, setting SVP instance as port userdata. */
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static MMAL_STATUS_T svp_port_enable(SVP_T *svp, MMAL_PORT_T *port, MMAL_PORT_BH_CB_T cb)
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{
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port->userdata = (struct MMAL_PORT_USERDATA_T *)svp;
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return mmal_port_enable(port, cb);
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}
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/** Process decoded buffers queued by video decoder output callback */
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static void svp_process_returned_bufs(SVP_T *svp)
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{
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SVP_CALLBACKS_T *callbacks = &svp->callbacks;
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MMAL_BUFFER_HEADER_T *buf;
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while ((buf = mmal_queue_get(svp->queue)) != NULL)
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{
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if ((svp_get_stop(svp) & SVP_STOP_ERROR) == 0)
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{
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callbacks->video_frame_cb(callbacks->ctx, buf->data);
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}
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svp->stats.video_frame_count++;
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mmal_buffer_header_release(buf);
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}
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}
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/** Worker thread. Ensures video decoder output is supplied with buffers and sends decoded frames
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* via user-supplied callback.
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* @param arg Pointer to SVP instance.
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* @return NULL always.
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*/
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static void *svp_worker(void *arg)
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{
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SVP_T *svp = arg;
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MMAL_PORT_T *video_output = svp->video_output;
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SVP_CALLBACKS_T *callbacks = &svp->callbacks;
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MMAL_BUFFER_HEADER_T *buf;
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MMAL_STATUS_T st;
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uint32_t stop;
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|
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while (svp_get_stop(svp) == 0)
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{
|
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/* Send empty buffers to video decoder output port */
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while ((buf = mmal_queue_get(svp->out_pool->queue)) != NULL)
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|
{
|
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st = mmal_port_send_buffer(video_output, buf);
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if (st != MMAL_SUCCESS)
|
|
{
|
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LOG_ERROR("Failed to send buffer to %s", video_output->name);
|
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}
|
|
}
|
|
|
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/* Process returned buffers */
|
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svp_process_returned_bufs(svp);
|
|
|
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/* Block for buffer release */
|
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vcos_semaphore_wait(&svp->sema);
|
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}
|
|
|
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/* Might have the last few buffers queued */
|
|
svp_process_returned_bufs(svp);
|
|
|
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/* Notify caller if we stopped unexpectedly */
|
|
stop = svp_get_stop(svp);
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LOG_TRACE("Worker thread exiting: stop=0x%x", (unsigned)stop);
|
|
callbacks->stop_cb(callbacks->ctx, stop);
|
|
|
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return NULL;
|
|
}
|
|
|
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/** Callback from a control port. */
|
|
static void svp_bh_control_cb(MMAL_PORT_T *port, MMAL_BUFFER_HEADER_T *buf)
|
|
{
|
|
SVP_T *svp = (SVP_T *)port->userdata;
|
|
|
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switch (buf->cmd)
|
|
{
|
|
case MMAL_EVENT_EOS:
|
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LOG_TRACE("%s: EOS", port->name);
|
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svp_set_stop(svp, SVP_STOP_EOS);
|
|
break;
|
|
|
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case MMAL_EVENT_ERROR:
|
|
LOG_ERROR("%s: MMAL error: %s", port->name,
|
|
mmal_status_to_string(*(MMAL_STATUS_T *)buf->data));
|
|
svp_set_stop(svp, SVP_STOP_ERROR);
|
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break;
|
|
|
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default:
|
|
LOG_TRACE("%s: buf %p, event %4.4s", port->name, buf, (char *)&buf->cmd);
|
|
break;
|
|
}
|
|
|
|
mmal_buffer_header_release(buf);
|
|
|
|
vcos_semaphore_post(&svp->sema);
|
|
}
|
|
|
|
/** Callback from video decode output port. */
|
|
static void svp_bh_output_cb(MMAL_PORT_T *port, MMAL_BUFFER_HEADER_T *buf)
|
|
{
|
|
SVP_T *svp = (SVP_T *)port->userdata;
|
|
|
|
if (buf->length == 0)
|
|
{
|
|
LOG_TRACE("%s: zero-length buffer => EOS", port->name);
|
|
svp_set_stop(svp, SVP_STOP_EOS); // This shouldn't be necessary, but it is ...
|
|
mmal_buffer_header_release(buf);
|
|
}
|
|
else if (buf->data == NULL)
|
|
{
|
|
LOG_ERROR("%s: zero buffer handle", port->name);
|
|
mmal_buffer_header_release(buf);
|
|
}
|
|
else
|
|
{
|
|
/* Reset watchdog timer */
|
|
vcos_timer_set(&svp->wd_timer, SVP_WATCHDOG_TIMEOUT_MS);
|
|
|
|
/* Enqueue the decoded frame so we can return quickly to MMAL core */
|
|
mmal_queue_put(svp->queue, buf);
|
|
}
|
|
|
|
/* Notify worker */
|
|
vcos_semaphore_post(&svp->sema);
|
|
}
|
|
|
|
/** Reset svp->stop to 0, with locking. */
|
|
static void svp_reset_stop(SVP_T *svp)
|
|
{
|
|
vcos_mutex_lock(&svp->mutex);
|
|
svp->stop = 0;
|
|
vcos_mutex_unlock(&svp->mutex);
|
|
}
|
|
|
|
/** Set additional flags in svp->stop, with locking. */
|
|
static void svp_set_stop(SVP_T *svp, uint32_t stop_flags)
|
|
{
|
|
vcos_mutex_lock(&svp->mutex);
|
|
svp->stop |= stop_flags;
|
|
vcos_mutex_unlock(&svp->mutex);
|
|
}
|
|
|
|
/** Get value of svp->stop, with locking. */
|
|
static uint32_t svp_get_stop(SVP_T *svp)
|
|
{
|
|
uint32_t stop;
|
|
|
|
vcos_mutex_lock(&svp->mutex);
|
|
stop = svp->stop;
|
|
vcos_mutex_unlock(&svp->mutex);
|
|
|
|
return stop;
|
|
}
|