forked from Qortal/Brooklyn
359 lines
13 KiB
C
359 lines
13 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 <stdlib.h>
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#include <string.h>
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#include "containers/core/containers_private.h"
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#include "containers/core/containers_io_helpers.h"
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#include "containers/core/containers_utils.h"
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#include "containers/core/containers_index.h"
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#include "containers/core/containers_logging.h"
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/******************************************************************************
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Defines.
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******************************************************************************/
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#define LI32(b) (((b)[3]<<24)|((b)[2]<<16)|((b)[1]<<8)|((b)[0]))
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#define LI24(b) (((b)[2]<<16)|((b)[1]<<8)|((b)[0]))
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/******************************************************************************
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Type definitions
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******************************************************************************/
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typedef struct {
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unsigned int num_frames : 24;
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unsigned int constant_c5 : 8;
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int constant_4;
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uint32_t struct_c;
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uint32_t vert_size;
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uint32_t horiz_size;
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int constant_c;
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uint32_t struct_b[2];
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uint32_t framerate;
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} RCV_FILE_HEADER_T;
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typedef struct {
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unsigned int framesize : 24;
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unsigned int res : 7;
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unsigned int keyframe : 1;
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uint32_t timestamp;
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} RCV_FRAME_HEADER_T;
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typedef struct VC_CONTAINER_MODULE_T
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{
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VC_CONTAINER_TRACK_T *track;
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uint8_t extradata[4];
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uint8_t mid_frame;
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uint32_t frame_read;
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RCV_FRAME_HEADER_T frame;
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VC_CONTAINER_INDEX_T *index; /* index of key frames */
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} VC_CONTAINER_MODULE_T;
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/******************************************************************************
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Function prototypes
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******************************************************************************/
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VC_CONTAINER_STATUS_T rcv_reader_open( VC_CONTAINER_T * );
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/******************************************************************************
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Local Functions
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******************************************************************************/
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static VC_CONTAINER_STATUS_T rcv_read_header(VC_CONTAINER_T *p_ctx)
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{
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VC_CONTAINER_MODULE_T *module = p_ctx->priv->module;
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RCV_FILE_HEADER_T header;
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uint8_t dummy[36];
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if(PEEK_BYTES(p_ctx, dummy, sizeof(dummy)) != sizeof(dummy)) return VC_CONTAINER_ERROR_EOS;
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header.num_frames = LI24(dummy);
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header.constant_c5 = dummy[3];
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header.constant_4 = LI32(dummy+4);
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// extradata is just struct_c from the header
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memcpy(module->extradata, dummy+8, 4);
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module->track->format->extradata = module->extradata;
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module->track->format->extradata_size = 4;
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module->track->format->type->video.height = LI32(dummy+12);
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module->track->format->type->video.width = LI32(dummy+16);
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header.constant_c = LI32(dummy+20);
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memcpy(header.struct_b, dummy+24, 8);
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header.framerate = LI32(dummy+32);
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if(header.constant_c5 != 0xc5 || header.constant_4 != 0x4 || header.constant_c != 0xc)
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return VC_CONTAINER_ERROR_FORMAT_NOT_SUPPORTED;
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if(header.framerate != 0 && header.framerate != 0xffffffffUL)
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{
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module->track->format->type->video.frame_rate_num = header.framerate;
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module->track->format->type->video.frame_rate_den = 1;
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}
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// fill in general information
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if(header.num_frames != (1<<24)-1 && header.framerate != 0 && header.framerate != 0xffffffffUL)
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p_ctx->duration = ((int64_t) header.num_frames * 1000000LL) / (int64_t) header.framerate;
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// we're happy that this is an rcv file
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SKIP_BYTES(p_ctx, sizeof(dummy));
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return STREAM_STATUS(p_ctx);
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}
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/*****************************************************************************
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* Utility function to seek to the keyframe nearest the given timestamp.
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*
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* @param p_ctx Pointer to the container context.
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* @param timestamp The requested time. On success, this is updated with the time of the selected keyframe.
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* @param later If true, the selected frame is the earliest keyframe with a time greater or equal to timestamp.
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* If false, the selected frame is the latest keyframe with a time earlier or equal to timestamp.
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* @return Status code.
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*/
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static VC_CONTAINER_STATUS_T rcv_seek_nearest_keyframe(VC_CONTAINER_T *p_ctx, int64_t *timestamp, int later)
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{
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VC_CONTAINER_MODULE_T *module = p_ctx->priv->module;
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VC_CONTAINER_STATUS_T status = VC_CONTAINER_SUCCESS;
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int64_t prev_keyframe_offset = sizeof(RCV_FILE_HEADER_T); /* set to very first frame */
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int64_t prev_keyframe_timestamp = 0;
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int use_prev_keyframe = !later;
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if(use_prev_keyframe || (module->frame.timestamp * 1000LL > *timestamp))
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{
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/* A seek has been requested to an earlier keyframe, so rewind to the beginning
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* of the stream since there's no information available on previous frames */
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SEEK(p_ctx, sizeof(RCV_FILE_HEADER_T));
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memset(&module->frame, 0, sizeof(RCV_FRAME_HEADER_T));
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module->mid_frame = 0;
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module->frame_read = 0;
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}
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if(module->mid_frame)
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{
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/* Seek back to the start of the current frame */
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SEEK(p_ctx, STREAM_POSITION(p_ctx) - module->frame_read - sizeof(RCV_FILE_HEADER_T));
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module->mid_frame = 0;
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module->frame_read = 0;
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}
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while(1)
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{
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if(PEEK_BYTES(p_ctx, &module->frame, sizeof(RCV_FRAME_HEADER_T)) != sizeof(RCV_FRAME_HEADER_T))
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{
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status = VC_CONTAINER_ERROR_EOS;
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break;
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}
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if(module->frame.keyframe)
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{
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if(module->index)
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vc_container_index_add(module->index, module->frame.timestamp * 1000LL, STREAM_POSITION(p_ctx));
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if((module->frame.timestamp * 1000LL) >= *timestamp)
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{
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if((module->frame.timestamp * 1000LL) == *timestamp)
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use_prev_keyframe = 0;
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*timestamp = module->frame.timestamp * 1000LL;
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break;
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}
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prev_keyframe_offset = STREAM_POSITION(p_ctx);
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prev_keyframe_timestamp = module->frame.timestamp * 1000LL;
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}
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SKIP_BYTES(p_ctx, module->frame.framesize + sizeof(RCV_FRAME_HEADER_T));
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}
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if(use_prev_keyframe)
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{
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*timestamp = prev_keyframe_timestamp;
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status = SEEK(p_ctx, prev_keyframe_offset);
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}
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return status;
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}
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/*****************************************************************************
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Functions exported as part of the Container Module API
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*****************************************************************************/
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static VC_CONTAINER_STATUS_T rcv_reader_read( VC_CONTAINER_T *p_ctx,
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VC_CONTAINER_PACKET_T *packet, uint32_t flags )
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{
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VC_CONTAINER_MODULE_T *module = p_ctx->priv->module;
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unsigned int size;
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if(!module->mid_frame)
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{
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/* Save the current position for updating the indexer */
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int64_t position = STREAM_POSITION(p_ctx);
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if(READ_BYTES(p_ctx, &module->frame, sizeof(RCV_FRAME_HEADER_T)) != sizeof(RCV_FRAME_HEADER_T))
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return VC_CONTAINER_ERROR_EOS;
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module->mid_frame = 1;
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module->frame_read = 0;
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if(module->index && module->frame.keyframe)
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vc_container_index_add(module->index, (int64_t)module->frame.timestamp * 1000LL, position);
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}
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packet->size = module->frame.framesize;
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packet->dts = packet->pts = module->frame.timestamp * 1000LL;
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packet->track = 0;
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packet->flags = 0;
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if(module->frame_read == 0)
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packet->flags |= VC_CONTAINER_PACKET_FLAG_FRAME_START;
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if(module->frame.keyframe)
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packet->flags |= VC_CONTAINER_PACKET_FLAG_KEYFRAME;
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if(flags & VC_CONTAINER_READ_FLAG_SKIP)
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{
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size = SKIP_BYTES(p_ctx, module->frame.framesize - module->frame_read);
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if((module->frame_read += size) == module->frame.framesize)
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{
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module->frame_read = 0;
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module->mid_frame = 0;
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}
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return STREAM_STATUS(p_ctx);
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}
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if(flags & VC_CONTAINER_READ_FLAG_INFO)
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return VC_CONTAINER_SUCCESS;
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size = MIN(module->frame.framesize - module->frame_read, packet->buffer_size);
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size = READ_BYTES(p_ctx, packet->data, size);
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if((module->frame_read += size) == module->frame.framesize)
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{
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module->frame_read = 0;
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module->mid_frame = 0;
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packet->flags |= VC_CONTAINER_PACKET_FLAG_FRAME_END;
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}
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packet->size = size;
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return size ? VC_CONTAINER_SUCCESS : STREAM_STATUS(p_ctx);
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}
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/*****************************************************************************/
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static VC_CONTAINER_STATUS_T rcv_reader_seek( VC_CONTAINER_T *p_ctx, int64_t *offset,
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VC_CONTAINER_SEEK_MODE_T mode, VC_CONTAINER_SEEK_FLAGS_T flags)
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{
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int past = 1;
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int64_t position;
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int64_t timestamp = *offset;
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VC_CONTAINER_STATUS_T status = VC_CONTAINER_ERROR_FAILED;
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VC_CONTAINER_MODULE_T *module = p_ctx->priv->module;
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VC_CONTAINER_PARAM_UNUSED(mode);
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if(module->index)
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status = vc_container_index_get(module->index, flags & VC_CONTAINER_SEEK_FLAG_FORWARD, ×tamp, &position, &past);
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if(status == VC_CONTAINER_SUCCESS && !past)
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{
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/* Indexed keyframe found */
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module->frame_read = 0;
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module->mid_frame = 0;
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*offset = timestamp;
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status = SEEK(p_ctx, position);
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}
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else
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{
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/* No indexed keyframe found, so seek through all frames */
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status = rcv_seek_nearest_keyframe(p_ctx, offset, flags & VC_CONTAINER_SEEK_FLAG_FORWARD);
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}
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return status;
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}
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/*****************************************************************************/
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static VC_CONTAINER_STATUS_T rcv_reader_close( VC_CONTAINER_T *p_ctx )
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{
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VC_CONTAINER_MODULE_T *module = p_ctx->priv->module;
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for(; p_ctx->tracks_num > 0; p_ctx->tracks_num--)
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vc_container_free_track(p_ctx, p_ctx->tracks[p_ctx->tracks_num-1]);
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if(module->index)
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vc_container_index_free(module->index);
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free(module);
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return VC_CONTAINER_SUCCESS;
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}
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/*****************************************************************************/
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VC_CONTAINER_STATUS_T rcv_reader_open( VC_CONTAINER_T *p_ctx )
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{
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VC_CONTAINER_MODULE_T *module = 0;
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VC_CONTAINER_STATUS_T status = VC_CONTAINER_ERROR_FORMAT_NOT_SUPPORTED;
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uint8_t dummy[8];
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/* Quick check for a valid file header */
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if((PEEK_BYTES(p_ctx, dummy, sizeof(dummy)) != sizeof(dummy)) ||
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dummy[3] != 0xc5 || LI32(dummy+4) != 0x4)
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return VC_CONTAINER_ERROR_FORMAT_NOT_SUPPORTED;
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/* Allocate our context */
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module = malloc(sizeof(*module));
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if(!module) { status = VC_CONTAINER_ERROR_OUT_OF_MEMORY; goto error; }
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memset(module, 0, sizeof(*module));
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p_ctx->priv->module = module;
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p_ctx->tracks_num = 1;
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p_ctx->tracks = &module->track;
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p_ctx->tracks[0] = vc_container_allocate_track(p_ctx, 0);
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if(!p_ctx->tracks[0]) { status = VC_CONTAINER_ERROR_OUT_OF_MEMORY; goto error; }
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p_ctx->tracks[0]->format->es_type = VC_CONTAINER_ES_TYPE_VIDEO;
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p_ctx->tracks[0]->format->codec = VC_CONTAINER_CODEC_WMV3;
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p_ctx->tracks[0]->is_enabled = true;
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if((status = rcv_read_header(p_ctx)) != VC_CONTAINER_SUCCESS) goto error;
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LOG_DEBUG(p_ctx, "using rcv reader");
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if(vc_container_index_create(&module->index, 512) == VC_CONTAINER_SUCCESS)
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vc_container_index_add(module->index, 0LL, STREAM_POSITION(p_ctx));
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if(STREAM_SEEKABLE(p_ctx))
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p_ctx->capabilities |= VC_CONTAINER_CAPS_CAN_SEEK;
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p_ctx->priv->pf_close = rcv_reader_close;
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p_ctx->priv->pf_read = rcv_reader_read;
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p_ctx->priv->pf_seek = rcv_reader_seek;
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return VC_CONTAINER_SUCCESS;
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error:
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if(module) rcv_reader_close(p_ctx);
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return status;
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}
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/********************************************************************************
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Entrypoint function
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********************************************************************************/
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#if !defined(ENABLE_CONTAINERS_STANDALONE) && defined(__HIGHC__)
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# pragma weak reader_open rcv_reader_open
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#endif
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