Files
haiku-beta6/src/add-ons/media/plugins/avi_reader/libOpenDML/OpenDMLParser.cpp
T
beveloper 84f1c37fc5 Added a lot of checks to read slightly broken AVI files, as those created by Pinnacle Studio 9 for Windows, without problems.
git-svn-id: file:///srv/svn/repos/haiku/trunk/current@9654 a95241bf-73f2-0310-859d-f6bbb57e9c96
2004-10-29 20:22:23 +00:00

721 lines
22 KiB
C++

#include <stdio.h>
#include <string.h>
#include "OpenDMLParser.h"
#include "avi.h"
//#define TRACE_ODML_PARSER
#ifdef TRACE_ODML_PARSER
#define TRACE printf
#else
#define TRACE(a...)
#endif
#define ERROR(a...) fprintf(stderr, a)
struct movie_chunk
{
movie_chunk * next;
int64 start;
uint32 size;
};
OpenDMLParser::OpenDMLParser()
: fSource(0),
fSize(0),
fMovieListStart(0),
fStandardIndexStart(0),
fStandardIndexSize(0),
fStreamCount(0),
fMovieChunkCount(0),
fAviMainHeaderValid(false),
fOdmlExtendedHeaderValid(false),
fStreams(0),
fCurrentStream(0)
{
}
OpenDMLParser::~OpenDMLParser()
{
// XXX free memory here!
}
int
OpenDMLParser::StreamCount()
{
return fStreamCount;
}
const stream_info *
OpenDMLParser::StreamInfo(int index)
{
if (index < 0 || index >= fStreamCount)
return 0;
stream_info *info = fStreams;
while (index--)
info = info->next;
return info;
}
int64
OpenDMLParser::StandardIndexStart()
{
return fStandardIndexStart;
}
uint32
OpenDMLParser::StandardIndexSize()
{
return fStandardIndexSize;
}
int64
OpenDMLParser::MovieListStart()
{
return fMovieListStart;
}
const avi_main_header *
OpenDMLParser::AviMainHeader()
{
return fAviMainHeaderValid ? &fAviMainHeader : 0;
}
const odml_extended_header *
OpenDMLParser::OdmlExtendedHeader()
{
return fOdmlExtendedHeaderValid ? &fOdmlExtendedHeader : 0;
}
void
OpenDMLParser::CreateNewStreamInfo()
{
stream_info *info = new stream_info;
info->next = 0;
info->is_audio = false;
info->is_video = false;
info->stream_header_valid = false;
info->audio_format = 0;
info->video_format_valid = false;
info->odml_index_start = 0;
info->odml_index_size = 0;
// append the new stream_info to the fStreams list and point fCurrentStream to it
if (fStreams) {
stream_info *cur = fStreams;
while (cur->next)
cur = cur->next;
cur->next = info;
} else {
fStreams = info;
}
fCurrentStream = info;
}
// this function returns false to indicate that an error occured,
// but the object is correctly initialized anyway.
bool
OpenDMLParser::Parse(BPositionIO *source)
{
TRACE("OpenDMLParser::Parse\n");
fSource = source;
fSize = source->Seek(0, SEEK_END);
if (fSize < 32) {
ERROR("OpenDMLParser::Parse: file to small\n");
return false;
}
uint64 pos = 0;
int riff_chunk_number = 0;
while (pos < (uint64)fSize) {
uint32 temp;
uint32 fourcc;
uint32 size;
uint64 maxsize;
maxsize = fSize - pos;
if (maxsize < 13) {
ERROR("OpenDMLParser::Parse: remaining size too small for RIFF AVI chunk data at pos %lld\n", pos);
return false;
}
if (sizeof(temp) != fSource->ReadAt(pos, &temp, sizeof(temp))) {
ERROR("OpenDMLParser::Parse: read error at pos %llu\n", pos);
return false;
}
pos += 4;
maxsize -= 4;
fourcc = AVI_UINT32(temp);
if (sizeof(temp) != fSource->ReadAt(pos, &temp, sizeof(temp))) {
ERROR("OpenDMLParser::Parse: read error at pos %llu\n", pos);
return false;
}
pos += 4;
maxsize -= 4;
size = AVI_UINT32(temp);
if (size == 0) {
ERROR("OpenDMLParser::Parse: Error: chunk of size 0 found\n");
return false;
}
TRACE("OpenDMLParser::Parse: chunk '"FOURCC_FORMAT"', size = %lu, maxsize %Ld\n", FOURCC_PARAM(fourcc), size, maxsize);
if (size > maxsize) {
ERROR("OpenDMLParser::Parse: Warning chunk '"FOURCC_FORMAT"', size = %lu extends beyond end of file\n", FOURCC_PARAM(fourcc), size);
ERROR("OpenDMLParser::Parse: Chunk at filepos %Ld truncated to %Ld, filesize %Ld\n", pos - 8, maxsize, fSize);
size = maxsize;
}
if (fourcc == FOURCC('J','U','N','K')) {
ERROR("OpenDMLParser::Parse: JUNK chunk ignored, size: %lu bytes\n", size);
goto cont;
}
if (fourcc != FOURCC('R','I','F','F')) {
if (riff_chunk_number == 0) {
ERROR("OpenDMLParser::Parse: not a RIFF file\n");
return false;
} else {
TRACE("OpenDMLParser::Parse: unknown chunk '"FOURCC_FORMAT"' (expected 'RIFF'), size = %lu ignored\n", FOURCC_PARAM(fourcc), size);
goto cont;
}
}
TRACE("OpenDMLParser::Parse: it's a RIFF chunk!\n");
if (sizeof(temp) != fSource->ReadAt(pos, &temp, sizeof(temp))) {
ERROR("OpenDMLParser::Parse: read error at pos %llu\n", pos);
return false;
}
fourcc = AVI_UINT32(temp);
if (riff_chunk_number == 0 && fourcc != FOURCC('A','V','I',' ')) {
ERROR("OpenDMLParser::Parse: not a AVI file\n");
return false;
}
if (fourcc != FOURCC('A','V','I',' ') && fourcc != FOURCC('A','V','I','X')) {
TRACE("OpenDMLParser::Parse: unknown RIFF subchunk '"FOURCC_FORMAT"' , size = %lu ignored, filepos %Ld, filesize %Ld\n", FOURCC_PARAM(fourcc), size, pos - 8, fSize);
goto cont;
}
if (!ParseChunk_AVI(riff_chunk_number, pos + 4, size - 4))
return false;
cont:
pos += (size) + (size & 1);
riff_chunk_number++;
}
return true;
}
bool
OpenDMLParser::ParseChunk_AVI(int number, uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseChunk_AVI\n");
uint64 pos = start;
uint64 end = start + size;
if (size < 9) {
ERROR("OpenDMLParser::ParseChunk_AVI: chunk is to small at pos %llu\n", start);
return false;
}
while (pos < end) {
uint32 temp;
uint32 Chunkfcc;
uint32 Chunksize;
if (sizeof(temp) != fSource->ReadAt(pos, &temp, sizeof(temp))) {
ERROR("OpenDMLParser::ParseChunk_AVI: read error at pos %llu\n",pos);
return false;
}
pos += 4;
Chunkfcc = AVI_UINT32(temp);
if (sizeof(temp) != fSource->ReadAt(pos, &temp, sizeof(temp))) {
ERROR("OpenDMLParser::ParseChunk_AVI: read error at pos %llu\n",pos);
return false;
}
pos += 4;
Chunksize = AVI_UINT32(temp);
uint32 maxsize = end - pos;
TRACE("OpenDMLParser::ParseChunk_AVI: chunk '"FOURCC_FORMAT"', size = %lu, maxsize %lu\n", FOURCC_PARAM(Chunkfcc), Chunksize, maxsize);
if (Chunksize == 0) {
ERROR("OpenDMLParser::ParseChunk_AVI: chunk '"FOURCC_FORMAT"' has size 0\n", FOURCC_PARAM(Chunkfcc));
return false;
}
if (Chunksize > maxsize) {
TRACE("OpenDMLParser::ParseChunk_AVI: chunk '"FOURCC_FORMAT"', size = %lu too big, truncated to %lu\n", FOURCC_PARAM(Chunkfcc), Chunksize, maxsize);
Chunksize = maxsize;
}
if (Chunkfcc == FOURCC('L','I','S','T')) {
if (!ParseChunk_LIST(pos, Chunksize))
return false;
} else if (Chunkfcc == FOURCC('i','d','x','1')) {
if (!ParseChunk_idx1(pos, Chunksize))
return false;
} else if (Chunkfcc == FOURCC('J','U','N','K')) {
; // do nothing
} else {
TRACE("OpenDMLParser::ParseChunk_AVI: unknown chunk ignored\n");
}
pos += (Chunksize) + (Chunksize & 1);
}
return true;
}
bool
OpenDMLParser::ParseChunk_LIST(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseChunk_LIST\n");
uint32 temp;
uint32 fourcc;
if (size < 5) {
ERROR("OpenDMLParser::ParseChunk_LIST: chunk is to small at pos %llu\n", start);
return false;
}
if (sizeof(temp) != fSource->ReadAt(start, &temp, sizeof(temp))) {
ERROR("OpenDMLParser::ParseChunk_LIST: read error at pos %llu\n", start);
return false;
}
fourcc = AVI_UINT32(temp);
TRACE("OpenDMLParser::ParseChunk_LIST: type '"FOURCC_FORMAT"'\n", FOURCC_PARAM(fourcc));
if (fourcc == FOURCC('m','o','v','i')) {
if (!ParseList_movi(start + 4, size - 4))
return false;
} else if (fourcc == FOURCC('r','e','c',' ')) {
if (!ParseList_movi(start + 4, size - 4)) //XXX parse rec simliar to movi???
return false;
} else if (fourcc == FOURCC('h','d','r','l')) {
if (!ParseList_generic(start + 4, size - 4))
return false;
} else if (fourcc == FOURCC('s','t','r','l')) {
if (!ParseList_strl(start + 4, size - 4))
return false;
} else if (fourcc == FOURCC('o','d','m','l')) {
if (!ParseList_generic(start + 4, size - 4))
return false;
} else {
TRACE("OpenDMLParser::ParseChunk_LIST: unknown list type ignored\n");
}
return true;
}
bool
OpenDMLParser::ParseChunk_idx1(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseChunk_idx1\n");
if (fStandardIndexSize != 0) {
TRACE("OpenDMLParser::ParseChunk_idx1: found a second chunk\n");
return true; // just ignore, no error
}
fStandardIndexStart = start;
fStandardIndexSize = size;
return true;
}
bool
OpenDMLParser::ParseChunk_avih(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseChunk_avih\n");
if (fAviMainHeaderValid) {
TRACE("OpenDMLParser::ParseChunk_avih: found a second chunk\n");
return true; // just ignore, no error
}
if (size < sizeof(fAviMainHeader)) {
TRACE("OpenDMLParser::ParseChunk_avih: warning, avi header chunk too small\n");
}
memset(&fAviMainHeader, 0, sizeof(fAviMainHeader));
size = min_c(size, sizeof(fAviMainHeader));
if ((ssize_t)size != fSource->ReadAt(start, &fAviMainHeader, size)) {
ERROR("OpenDMLParser::ParseChunk_avih: read error at pos %llu\n", start);
return false;
}
#if B_HOST_IS_BENDIAN
B_SWAP_INT32(&fAviMainHeader.micro_sec_per_frame);
B_SWAP_INT32(&fAviMainHeader.max_bytes_per_sec);
B_SWAP_INT32(&fAviMainHeader.padding_granularity);
B_SWAP_INT32(&fAviMainHeader.flags);
B_SWAP_INT32(&fAviMainHeader.total_frames);
B_SWAP_INT32(&fAviMainHeader.initial_frames);
B_SWAP_INT32(&fAviMainHeader.streams);
B_SWAP_INT32(&fAviMainHeader.suggested_buffer_size);
B_SWAP_INT32(&fAviMainHeader.width);
B_SWAP_INT32(&fAviMainHeader.height);
#endif
fAviMainHeaderValid = true;
TRACE("fAviMainHeader:\n");
TRACE("micro_sec_per_frame = %lu\n", fAviMainHeader.micro_sec_per_frame);
TRACE("max_bytes_per_sec = %lu\n", fAviMainHeader.max_bytes_per_sec);
TRACE("padding_granularity = %lu\n", fAviMainHeader.padding_granularity);
TRACE("flags = 0x%lx\n", fAviMainHeader.flags);
TRACE("total_frames = %lu\n", fAviMainHeader.total_frames);
TRACE("initial_frames = %lu\n", fAviMainHeader.initial_frames);
TRACE("streams = %lu\n", fAviMainHeader.streams);
TRACE("suggested_buffer_size = %lu\n", fAviMainHeader.suggested_buffer_size);
TRACE("width = %lu\n", fAviMainHeader.width);
TRACE("height = %lu\n", fAviMainHeader.height);
return true;
}
bool
OpenDMLParser::ParseChunk_strh(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseChunk_strh\n");
if (fCurrentStream == 0) {
ERROR("OpenDMLParser::ParseChunk_strh: error, no Stream info\n");
return false;
}
if (fCurrentStream->stream_header_valid) {
TRACE("OpenDMLParser::ParseChunk_strh: error, already have stream header\n");
return true; // just ignore, no error
}
if (size < sizeof(fCurrentStream->stream_header)) {
TRACE("OpenDMLParser::ParseChunk_strh: warning, avi stream header chunk too small\n");
}
memset(&fCurrentStream->stream_header, 0, sizeof(fCurrentStream->stream_header));
size = min_c(size, sizeof(fCurrentStream->stream_header));
if ((ssize_t)size != fSource->ReadAt(start, &fCurrentStream->stream_header, size)) {
ERROR("OpenDMLParser::ParseChunk_strh: read error at pos %llu\n", start);
return false;
}
#if B_HOST_IS_BENDIAN
B_SWAP_INT32(&fCurrentStream->stream_header.fourcc_type);
B_SWAP_INT32(&fCurrentStream->stream_header.fourcc_handler);
B_SWAP_INT32(&fCurrentStream->stream_header.flags);
B_SWAP_INT16(&fCurrentStream->stream_header.priority);
B_SWAP_INT16(&fCurrentStream->stream_header.language);
B_SWAP_INT32(&fCurrentStream->stream_header.initial_frames);
B_SWAP_INT32(&fCurrentStream->stream_header.scale);
B_SWAP_INT32(&fCurrentStream->stream_header.rate);
B_SWAP_INT32(&fCurrentStream->stream_header.start);
B_SWAP_INT32(&fCurrentStream->stream_header.length);
B_SWAP_INT32(&fCurrentStream->stream_header.suggested_buffer_size);
B_SWAP_INT32(&fCurrentStream->stream_header.quality);
B_SWAP_INT32(&fCurrentStream->stream_header.sample_size);
B_SWAP_INT16(&fCurrentStream->stream_header.rect_left);
B_SWAP_INT16(&fCurrentStream->stream_header.rect_top);
B_SWAP_INT16(&fCurrentStream->stream_header.rect_right);
B_SWAP_INT16(&fCurrentStream->stream_header.rect_bottom);
#endif
fCurrentStream->stream_header_valid = true;
fCurrentStream->is_audio = fCurrentStream->stream_header.fourcc_type == FOURCC('a','u','d','s');
fCurrentStream->is_video = fCurrentStream->stream_header.fourcc_type == FOURCC('v','i','d','s');
TRACE("stream_header, Stream %d, is_audio %d, is_video %d:\n", fStreamCount - 1, fCurrentStream->is_audio, fCurrentStream->is_video);
TRACE("fourcc_type = '"FOURCC_FORMAT"'\n",FOURCC_PARAM(fCurrentStream->stream_header.fourcc_type));
TRACE("fourcc_handler = '"FOURCC_FORMAT"'\n",FOURCC_PARAM(fCurrentStream->stream_header.fourcc_handler));
TRACE("flags = 0x%lx\n", fCurrentStream->stream_header.flags);
TRACE("priority = %u\n", fCurrentStream->stream_header.priority);
TRACE("language = %u\n", fCurrentStream->stream_header.language);
TRACE("initial_frames = %lu\n", fCurrentStream->stream_header.initial_frames);
TRACE("scale = %lu\n", fCurrentStream->stream_header.scale);
TRACE("rate = %lu\n", fCurrentStream->stream_header.rate);
TRACE("frames/sec = %.3f\n", fCurrentStream->stream_header.rate / (float)fCurrentStream->stream_header.scale);
TRACE("start = %lu\n", fCurrentStream->stream_header.start);
TRACE("length = %lu\n", fCurrentStream->stream_header.length);
TRACE("suggested_buffer_size = %lu\n", fCurrentStream->stream_header.suggested_buffer_size);
TRACE("quality = %lu\n", fCurrentStream->stream_header.quality);
TRACE("sample_size = %lu\n", fCurrentStream->stream_header.sample_size);
TRACE("rect_left = %d\n", fCurrentStream->stream_header.rect_left);
TRACE("rect_top = %d\n", fCurrentStream->stream_header.rect_top);
TRACE("rect_right = %d\n", fCurrentStream->stream_header.rect_right );
TRACE("rect_bottom = %d\n", fCurrentStream->stream_header.rect_bottom);
return true;
}
bool
OpenDMLParser::ParseChunk_strf(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseChunk_strf, size %lu\n", size);
if (fCurrentStream == 0) {
ERROR("OpenDMLParser::ParseChunk_strf: error, no Stream info\n");
return false;
}
if (fCurrentStream->is_audio) {
if (fCurrentStream->audio_format) {
TRACE("OpenDMLParser::ParseChunk_strf: error, already have audio format header\n");
return true; // just ignore, no error
}
// if (size < sizeof(fCurrentStream->audio_format)) {
// TRACE("OpenDMLParser::ParseChunk_strf: warning, avi audio header chunk too small\n");
// }
// if size to read is less then sizeof(wave_format_ex), allocate
// a full wave_format_ex and fill reminder with zero bytes
fCurrentStream->audio_format_size = max_c(sizeof(wave_format_ex), size);
fCurrentStream->audio_format = (wave_format_ex *) new char[fCurrentStream->audio_format_size];
memset(size + (char *)fCurrentStream->audio_format, 0, fCurrentStream->audio_format_size - size);
if ((ssize_t)size != fSource->ReadAt(start, fCurrentStream->audio_format, size)) {
ERROR("OpenDMLParser::ParseChunk_strf: read error at pos %llu\n", start);
delete [] fCurrentStream->audio_format;
fCurrentStream->audio_format_size = 0;
fCurrentStream->audio_format = 0;
return false;
}
#if B_HOST_IS_BENDIAN
B_SWAP_INT16(&fCurrentStream->audio_format->format_tag);
B_SWAP_INT16(&fCurrentStream->audio_format->channels);
B_SWAP_INT32(&fCurrentStream->audio_format->frames_per_sec);
B_SWAP_INT32(&fCurrentStream->audio_format->avg_bytes_per_sec);
B_SWAP_INT32(&fCurrentStream->audio_format->block_align);
B_SWAP_INT32(&fCurrentStream->audio_format->bits_per_sample);
B_SWAP_INT32(&fCurrentStream->audio_format->extra_size);
#endif
TRACE("audio_format:\n");
TRACE("format_tag = 0x%x\n", fCurrentStream->audio_format->format_tag);
TRACE("channels = %u\n", fCurrentStream->audio_format->channels);
TRACE("frames_per_sec = %lu\n", fCurrentStream->audio_format->frames_per_sec);
TRACE("avg_bytes_per_sec = %lu\n", fCurrentStream->audio_format->avg_bytes_per_sec);
TRACE("block_align = %u\n", fCurrentStream->audio_format->block_align);
TRACE("bits_per_sample = %u\n", fCurrentStream->audio_format->bits_per_sample);
TRACE("extra_size = %u\n", fCurrentStream->audio_format->extra_size);
// XXX read extra data
} else if (fCurrentStream->is_video) {
if (fCurrentStream->video_format_valid) {
TRACE("OpenDMLParser::ParseChunk_strf: error, already have video format header\n");
return true; // just ignore, no error
}
// if (size < sizeof(fCurrentStream->video_format)) {
// TRACE("OpenDMLParser::ParseChunk_strf: warning, avi video header chunk too small\n");
// }
memset(&fCurrentStream->video_format, 0, sizeof(fCurrentStream->video_format));
size = min_c(size, sizeof(fCurrentStream->video_format));
if ((ssize_t)size != fSource->ReadAt(start, &fCurrentStream->video_format, size)) {
ERROR("OpenDMLParser::ParseChunk_strf: read error at pos %llu\n", start);
return false;
}
#if B_HOST_IS_BENDIAN
B_SWAP_INT32(&fCurrentStream->video_format.size);
B_SWAP_INT32(&fCurrentStream->video_format.width);
B_SWAP_INT32(&fCurrentStream->video_format.height);
B_SWAP_INT16(&fCurrentStream->video_format.planes);
B_SWAP_INT16(&fCurrentStream->video_format.bit_count);
B_SWAP_INT32(&fCurrentStream->video_format.compression);
B_SWAP_INT32(&fCurrentStream->video_format.image_size);
B_SWAP_INT32(&fCurrentStream->video_format.x_pels_per_meter);
B_SWAP_INT32(&fCurrentStream->video_format.y_pels_per_meter);
B_SWAP_INT32(&fCurrentStream->video_format.clr_used);
B_SWAP_INT32(&fCurrentStream->video_format.clr_important);
#endif
fCurrentStream->video_format_valid = true;
TRACE("video_format:\n");
TRACE("size = %lu\n", fCurrentStream->video_format.size);
TRACE("width = %lu\n", fCurrentStream->video_format.width);
TRACE("height = %lu\n", fCurrentStream->video_format.height);
TRACE("planes = %u\n", fCurrentStream->video_format.planes);
TRACE("bit_count = %u\n", fCurrentStream->video_format.bit_count);
TRACE("compression = 0x%08lx\n", fCurrentStream->video_format.compression);
TRACE("image_size = %lu\n", fCurrentStream->video_format.image_size);
TRACE("x_pels_per_meter = %lu\n", fCurrentStream->video_format.x_pels_per_meter);
TRACE("y_pels_per_meter = %lu\n", fCurrentStream->video_format.y_pels_per_meter);
TRACE("clr_used = %lu\n", fCurrentStream->video_format.clr_used);
TRACE("clr_important = %lu\n", fCurrentStream->video_format.clr_important);
} else {
ERROR("OpenDMLParser::ParseChunk_strf: error, unknown Stream type\n");
}
return true;
}
bool
OpenDMLParser::ParseChunk_indx(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseChunk_indx\n");
if (fCurrentStream == 0) {
ERROR("OpenDMLParser::ParseChunk_indx: error, no stream info\n");
return false;
}
// XXX
fCurrentStream->odml_index_start = start;
fCurrentStream->odml_index_size = size;
return true;
}
bool
OpenDMLParser::ParseChunk_dmlh(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseChunk_dmlh\n");
if (fOdmlExtendedHeaderValid) {
TRACE("OpenDMLParser::ParseChunk_dmlh: found a second chunk\n");
return true; // just ignore it, no error
}
if (size < sizeof(fOdmlExtendedHeader)) {
TRACE("OpenDMLParser::ParseChunk_dmlh: warning, avi header chunk too small\n");
}
memset(&fOdmlExtendedHeader, 0, sizeof(fOdmlExtendedHeader));
size = min_c(size, sizeof(fOdmlExtendedHeader));
if ((ssize_t)size != fSource->ReadAt(start, &fOdmlExtendedHeader, size)) {
ERROR("OpenDMLParser::ParseChunk_dmlh: read error at pos %llu\n", start);
return false;
}
#if B_HOST_IS_BENDIAN
B_SWAP_INT32(&fOdmlExtendedHeader.total_frames);
#endif
fOdmlExtendedHeaderValid = true;
TRACE("fOdmlExtendedHeader:\n");
TRACE("total_frames = %lu\n", fOdmlExtendedHeader.total_frames);
return true;
}
bool
OpenDMLParser::ParseList_strl(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseList_strl\n");
CreateNewStreamInfo();
fStreamCount++;
return ParseList_generic(start, size);
}
bool
OpenDMLParser::ParseList_generic(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseList_generic\n");
uint64 pos = start;
uint64 end = start + size;
if (size < 9) {
ERROR("OpenDMLParser::ParseList_generic: list too small at pos %llu\n",pos);
return false;
}
while (pos < end) {
uint32 temp;
uint32 Chunkfcc;
uint32 Chunksize;
if (sizeof(temp) != fSource->ReadAt(pos, &temp, sizeof(temp))) {
ERROR("OpenDMLParser::ParseList_generic: read error at pos %llu\n",pos);
return false;
}
pos += 4;
Chunkfcc = AVI_UINT32(temp);
if (sizeof(temp) != fSource->ReadAt(pos, &temp, sizeof(temp))) {
ERROR("OpenDMLParser::ParseList_generic: read error at pos %llu\n",pos);
return false;
}
pos += 4;
Chunksize = AVI_UINT32(temp);
uint32 maxsize = end - pos;
TRACE("OpenDMLParser::ParseList_generic: chunk '"FOURCC_FORMAT"', size = %lu, maxsize = %lu\n", FOURCC_PARAM(Chunkfcc), Chunksize, maxsize);
if (Chunksize == 0) {
ERROR("OpenDMLParser::ParseList_generic: chunk '"FOURCC_FORMAT"' has size 0\n", FOURCC_PARAM(Chunkfcc));
return false;
}
if (Chunksize > maxsize) {
TRACE("OpenDMLParser::ParseList_generic: chunk '"FOURCC_FORMAT"', size = %lu too big, truncated to %lu\n", FOURCC_PARAM(Chunkfcc), Chunksize, maxsize);
Chunksize = maxsize;
}
if (Chunkfcc == FOURCC('a','v','i','h')) {
if (!ParseChunk_avih(pos, Chunksize))
return false;
} else if (Chunkfcc == FOURCC('L','I','S','T')) {
if (!ParseChunk_LIST(pos, Chunksize))
return false;
} else if (Chunkfcc == FOURCC('s','t','r','h')) {
if (!ParseChunk_strh(pos, Chunksize))
return false;
} else if (Chunkfcc == FOURCC('s','t','r','f')) {
if (!ParseChunk_strf(pos, Chunksize))
return false;
} else if (Chunkfcc == FOURCC('i','n','d','x')) {
if (!ParseChunk_indx(pos, Chunksize))
return false;
} else if (Chunkfcc == FOURCC('d','m','l','h')) {
if (!ParseChunk_dmlh(pos, Chunksize))
return false;
} else if (Chunkfcc == FOURCC('J','U','N','K')) {
; // do nothing
} else {
TRACE("OpenDMLParser::ParseList_generic: unknown chunk ignored\n");
}
pos += (Chunksize) + (Chunksize & 1);
}
return true;
}
bool
OpenDMLParser::ParseList_movi(uint64 start, uint32 size)
{
TRACE("OpenDMLParser::ParseList_movi\n");
if (fMovieListStart == 0)
fMovieListStart = start;
fMovieChunkCount++;
return true;
}