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Fix an out of array access and some minor cleanup of the code.
All available cook samples decode correctly now. patch by Benjamin Larsson < banan ** at ** student ** dot ** ltu ** dot ** se > Originally committed as revision 4810 to svn://svn.ffmpeg.org/ffmpeg/trunk
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@ -131,11 +131,6 @@ typedef struct {
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float rootpow2tab[127];
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/* data buffers */
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uint8_t* frame_reorder_buffer;
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int* frame_reorder_index;
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int frame_reorder_counter;
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int frame_reorder_complete;
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int frame_reorder_index_size;
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uint8_t* decoded_bytes_buffer;
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float mono_mdct_output[2048] __attribute__((aligned(16)));
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@ -325,8 +320,6 @@ static int cook_decode_close(AVCodecContext *avctx)
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av_free(q->mlt_precos);
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av_free(q->mlt_presin);
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av_free(q->mlt_postcos);
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av_free(q->frame_reorder_index);
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av_free(q->frame_reorder_buffer);
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av_free(q->decoded_bytes_buffer);
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/* Free the transform. */
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@ -915,7 +908,7 @@ static void joint_decode(COOKContext *q, float* mlt_buffer1,
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float* mlt_buffer2) {
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int i,j;
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int decouple_tab[SUBBAND_SIZE];
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float decode_buffer[2048]; //Only 1060 might be needed.
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float decode_buffer[1060];
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int idx, cpl_tmp,tmp_idx;
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float f1,f2;
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float* cplscale;
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@ -940,20 +933,18 @@ static void joint_decode(COOKContext *q, float* mlt_buffer1,
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/* When we reach js_subband_start (the higher frequencies)
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the coefficients are stored in a coupling scheme. */
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idx = (1 << q->js_vlc_bits) - 1;
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if (q->js_subband_start < q->subbands) {
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for (i=0 ; i<q->subbands ; i++) {
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cpl_tmp = cplband[i + q->js_subband_start];
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idx -=decouple_tab[cpl_tmp];
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cplscale = (float*)cplscales[q->js_vlc_bits-2]; //choose decoupler table
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f1 = cplscale[decouple_tab[cpl_tmp]];
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f2 = cplscale[idx-1];
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for (j=0 ; j<SUBBAND_SIZE ; j++) {
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tmp_idx = ((2*q->js_subband_start + i)*20)+j;
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mlt_buffer1[20*(i+q->js_subband_start) + j] = f1 * decode_buffer[tmp_idx];
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mlt_buffer2[20*(i+q->js_subband_start) + j] = f2 * decode_buffer[tmp_idx];
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}
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idx = (1 << q->js_vlc_bits) - 1;
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for (i=q->js_subband_start ; i<q->subbands ; i++) {
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cpl_tmp = cplband[i];
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idx -=decouple_tab[cpl_tmp];
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cplscale = (float*)cplscales[q->js_vlc_bits-2]; //choose decoupler table
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f1 = cplscale[decouple_tab[cpl_tmp]];
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f2 = cplscale[idx-1];
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for (j=0 ; j<SUBBAND_SIZE ; j++) {
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tmp_idx = ((q->js_subband_start + i)*20)+j;
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mlt_buffer1[20*i + j] = f1 * decode_buffer[tmp_idx];
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mlt_buffer2[20*i + j] = f2 * decode_buffer[tmp_idx];
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}
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idx = (1 << q->js_vlc_bits) - 1;
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}
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}
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@ -1159,8 +1150,6 @@ static void dump_cook_context(COOKContext *q, COOKextradata *e)
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PRINT("numvector_bits",q->numvector_bits);
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PRINT("numvector_size",q->numvector_size);
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PRINT("total_subbands",q->total_subbands);
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PRINT("frame_reorder_counter",q->frame_reorder_counter);
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PRINT("frame_reorder_index_size",q->frame_reorder_index_size);
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}
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#endif
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/**
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@ -1293,8 +1282,9 @@ static int cook_decode_init(AVCodecContext *avctx)
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/* Initialize transform. */
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if ( init_cook_mlt(q) == 0 )
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return -1;
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//dump_cook_context(q,e);
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#ifdef COOKDEBUG
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dump_cook_context(q,e);
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#endif
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return 0;
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}
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