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Update DUMB to revision 5bee3e5ba3d57d1b16dda6d82c18fb417781625b
- Fixed XM reader for files with smaller than expected instrument or sample header sizes SVN r4092 (trunk)
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3681a6673f
commit
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1 changed files with 176 additions and 11 deletions
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@ -111,6 +111,7 @@ typedef struct XM_INSTRUMENT_EXTRA
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int vibrato_sweep; /* 0-0xFF */
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int vibrato_depth; /* 0-0x0F */
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int vibrato_speed; /* 0-0x3F */
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int sample_header_size;
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}
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XM_INSTRUMENT_EXTRA;
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@ -359,6 +360,116 @@ static int it_xm_make_envelope(IT_ENVELOPE *envelope, const unsigned short *data
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typedef struct LIMITED_XM LIMITED_XM;
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struct LIMITED_XM
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{
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unsigned char *buffered;
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long ptr, limit, allocated;
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DUMBFILE *remaining;
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};
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/* XXX */
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struct DUMBFILE
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{
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DUMBFILE_SYSTEM *dfs;
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void *file;
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long pos;
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};
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static int limit_xm_resize(void *f, long n)
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{
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DUMBFILE *df = f;
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LIMITED_XM *lx = df->file;
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if (lx->buffered || n) {
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if (n > lx->allocated) {
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unsigned char *buffered = realloc( lx->buffered, n );
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if ( !buffered ) return -1;
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lx->buffered = buffered;
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memset( buffered + lx->allocated, 0, n - lx->allocated );
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lx->allocated = n;
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}
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if ( dumbfile_getnc( lx->buffered, n, lx->remaining ) < n ) return -1;
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} else if (!n) {
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if ( lx->buffered ) free( lx->buffered );
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lx->buffered = NULL;
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lx->allocated = 0;
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}
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lx->limit = n;
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lx->ptr = 0;
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return 0;
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}
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static int limit_xm_skip(void *f, long n)
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{
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LIMITED_XM *lx = f;
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lx->ptr += n;
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return 0;
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}
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static int limit_xm_getc(void *f)
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{
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LIMITED_XM *lx = f;
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if (lx->ptr >= lx->allocated) {
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return 0;
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}
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return lx->buffered[lx->ptr++];
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}
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static long limit_xm_getnc(char *ptr, long n, void *f)
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{
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LIMITED_XM *lx = f;
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int left;
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left = lx->allocated - lx->ptr;
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if (n > left) {
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if (left > 0) {
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memcpy( ptr, lx->buffered + lx->ptr, left );
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memset( ptr + left, 0, n - left );
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} else {
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memset( ptr, 0, n );
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}
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} else {
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memcpy( ptr, lx->buffered + lx->ptr, n );
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}
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lx->ptr += n;
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return n;
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}
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static void limit_xm_close(void *f)
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{
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LIMITED_XM *lx = f;
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if (lx->buffered) free(lx->buffered);
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/* Do NOT close lx->remaining */
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free(f);
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}
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DUMBFILE_SYSTEM limit_xm_dfs = {
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NULL,
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&limit_xm_skip,
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&limit_xm_getc,
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&limit_xm_getnc,
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&limit_xm_close
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};
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static DUMBFILE *dumbfile_limit_xm(DUMBFILE *f)
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{
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LIMITED_XM * lx = malloc(sizeof(*lx));
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lx->remaining = f;
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lx->buffered = NULL;
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lx->ptr = 0;
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lx->limit = 0;
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lx->allocated = 0;
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return dumbfile_open_ex( lx, &limit_xm_dfs );
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}
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static int it_xm_read_instrument(IT_INSTRUMENT *instrument, XM_INSTRUMENT_EXTRA *extra, DUMBFILE *f)
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{
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uint32 size, bytes_read;
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@ -370,8 +481,15 @@ static int it_xm_read_instrument(IT_INSTRUMENT *instrument, XM_INSTRUMENT_EXTRA
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* So unread bytes must be skipped before reading the first sample
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* header.
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*/
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if ( limit_xm_resize( f, 4 ) < 0 ) return -1;
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size = dumbfile_igetl(f);
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if ( size == 0 ) size = 4 + 22 + 1 + 2 + 4 + 96 + 48 + 48 + 1 * 14 + 2 + 2;
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if ( limit_xm_resize( f, size - 4 ) < 0 ) return -1;
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dumbfile_getnc(instrument->name, 22, f);
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instrument->name[22] = 0;
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instrument->filename[0] = 0;
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@ -385,12 +503,9 @@ static int it_xm_read_instrument(IT_INSTRUMENT *instrument, XM_INSTRUMENT_EXTRA
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if (extra->n_samples) {
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/* sample header size */
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dumbfile_skip(f, 4); // XXX can't be trusted, as there are trackers that write the wrong value here
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/*i = dumbfile_igetl(f);
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if (i && i != 0x28) { // XXX some crap with 0 here
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TRACE("XM error: unexpected sample header size\n");
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return -1;
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}*/
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i = dumbfile_igetl(f);
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if (!i) i = 0x28;
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extra->sample_header_size = i;
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/* sample map */
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for (i = 0; i < 96; i++) {
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@ -476,7 +591,7 @@ static int it_xm_read_instrument(IT_INSTRUMENT *instrument, XM_INSTRUMENT_EXTRA
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for (i = 0; i < 96; i++)
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instrument->map_sample[i] = 0;
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if (dumbfile_skip(f, size - bytes_read))
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if (size > bytes_read && dumbfile_skip(f, size - bytes_read))
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return -1;
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instrument->new_note_action = NNA_NOTE_CUT;
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@ -924,16 +1039,24 @@ static DUMB_IT_SIGDATA *it_xm_load_sigdata(DUMBFILE *f, int * version)
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for (i = 0; i < sigdata->n_instruments; i++) {
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XM_INSTRUMENT_EXTRA extra;
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if (it_xm_read_instrument(&sigdata->instrument[i], &extra, f) < 0) {
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DUMBFILE * lf = dumbfile_limit_xm( f );
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if ( !lf ) {
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_dumb_it_unload_sigdata(sigdata);
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return NULL;
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}
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if (it_xm_read_instrument(&sigdata->instrument[i], &extra, lf) < 0) {
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// XXX
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if ( ! i )
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{
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TRACE("XM error: instrument %d\n", i+1);
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dumbfile_close( lf );
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_dumb_it_unload_sigdata(sigdata);
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return NULL;
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}
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else
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{
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dumbfile_close( lf );
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sigdata->n_instruments = i;
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break;
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}
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@ -948,17 +1071,31 @@ static DUMB_IT_SIGDATA *it_xm_load_sigdata(DUMBFILE *f, int * version)
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sigdata->sample = safe_realloc(sigdata->sample, sizeof(*sigdata->sample)*(total_samples+extra.n_samples));
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if (!sigdata->sample) {
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dumbfile_close( lf );
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_dumb_it_unload_sigdata(sigdata);
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return NULL;
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}
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for (j = total_samples; j < total_samples+extra.n_samples; j++)
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sigdata->sample[j].data = NULL;
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if ( limit_xm_resize( lf, 0 ) < 0 ) {
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dumbfile_close( lf );
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_dumb_it_unload_sigdata( sigdata );
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return NULL;
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}
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/* read instrument's samples */
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for (j = 0; j < extra.n_samples; j++) {
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IT_SAMPLE *sample = &sigdata->sample[total_samples+j];
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int b = it_xm_read_sample_header(sample, f);
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int b;
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if ( limit_xm_resize( lf, extra.sample_header_size ) < 0 ) {
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dumbfile_close( lf );
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_dumb_it_unload_sigdata( sigdata );
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return NULL;
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}
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b = it_xm_read_sample_header(sample, lf);
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if (b < 0) {
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dumbfile_close( lf );
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_dumb_it_unload_sigdata(sigdata);
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return NULL;
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}
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@ -975,12 +1112,15 @@ static DUMB_IT_SIGDATA *it_xm_load_sigdata(DUMBFILE *f, int * version)
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}
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for (j = 0; j < extra.n_samples; j++) {
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if (it_xm_read_sample_data(&sigdata->sample[total_samples+j], roguebytes[j], f) != 0) {
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dumbfile_close( lf );
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_dumb_it_unload_sigdata(sigdata);
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return NULL;
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}
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}
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total_samples += extra.n_samples;
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}
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dumbfile_close( lf );
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}
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sigdata->n_samples = total_samples;
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@ -1012,8 +1152,16 @@ static DUMB_IT_SIGDATA *it_xm_load_sigdata(DUMBFILE *f, int * version)
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for (i = 0; i < sigdata->n_instruments; i++) {
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XM_INSTRUMENT_EXTRA extra;
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if (it_xm_read_instrument(&sigdata->instrument[i], &extra, f) < 0) {
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DUMBFILE * lf = dumbfile_limit_xm( f );
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if ( !lf ) {
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free(roguebytes);
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_dumb_it_unload_sigdata(sigdata);
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return NULL;
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}
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if (it_xm_read_instrument(&sigdata->instrument[i], &extra, lf) < 0) {
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TRACE("XM error: instrument %d\n", i+1);
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dumbfile_close(lf);
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free(roguebytes);
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_dumb_it_unload_sigdata(sigdata);
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return NULL;
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@ -1026,6 +1174,7 @@ static DUMB_IT_SIGDATA *it_xm_load_sigdata(DUMBFILE *f, int * version)
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sigdata->sample = safe_realloc(sigdata->sample, sizeof(*sigdata->sample)*(total_samples+extra.n_samples));
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if (!sigdata->sample) {
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dumbfile_close( lf );
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free(roguebytes);
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_dumb_it_unload_sigdata(sigdata);
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return NULL;
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@ -1033,10 +1182,24 @@ static DUMB_IT_SIGDATA *it_xm_load_sigdata(DUMBFILE *f, int * version)
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for (j = total_samples; j < total_samples+extra.n_samples; j++)
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sigdata->sample[j].data = NULL;
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if ( limit_xm_resize( lf, 0 ) < 0 ) {
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dumbfile_close( lf );
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free( roguebytes );
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_dumb_it_unload_sigdata( sigdata );
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return NULL;
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}
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/* read instrument's samples */
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for (j = 0; j < extra.n_samples; j++) {
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IT_SAMPLE *sample = &sigdata->sample[total_samples+j];
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int b = it_xm_read_sample_header(sample, f);
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int b;
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if ( limit_xm_resize( lf, extra.sample_header_size ) < 0 ) {
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dumbfile_close( lf );
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free( roguebytes );
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_dumb_it_unload_sigdata( sigdata );
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return NULL;
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}
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b = it_xm_read_sample_header(sample, lf);
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if (b < 0) {
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free(roguebytes);
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_dumb_it_unload_sigdata(sigdata);
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@ -1055,6 +1218,8 @@ static DUMB_IT_SIGDATA *it_xm_load_sigdata(DUMBFILE *f, int * version)
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}
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total_samples += extra.n_samples;
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}
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dumbfile_close( lf );
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}
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sigdata->n_samples = total_samples;
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