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https://github.com/FFmpeg/FFmpeg.git
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flacenc: use uint64_t for bit counts
Needed to avoid integer overflows for 24-bit encoding.
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e783316322
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5ff998a233
@ -442,10 +442,10 @@ static void copy_samples(FlacEncodeContext *s, const int16_t *samples)
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}
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static int rice_count_exact(int32_t *res, int n, int k)
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static uint64_t rice_count_exact(int32_t *res, int n, int k)
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{
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int i;
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int count = 0;
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uint64_t count = 0;
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for (i = 0; i < n; i++) {
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int32_t v = -2 * res[i] - 1;
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@ -456,12 +456,12 @@ static int rice_count_exact(int32_t *res, int n, int k)
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}
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static int subframe_count_exact(FlacEncodeContext *s, FlacSubframe *sub,
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int pred_order)
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static uint64_t subframe_count_exact(FlacEncodeContext *s, FlacSubframe *sub,
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int pred_order)
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{
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int p, porder, psize;
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int i, part_end;
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int count = 0;
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uint64_t count = 0;
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/* subframe header */
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count += 8;
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@ -508,25 +508,25 @@ static int subframe_count_exact(FlacEncodeContext *s, FlacSubframe *sub,
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/**
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* Solve for d/dk(rice_encode_count) = n-((sum-(n>>1))>>(k+1)) = 0.
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*/
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static int find_optimal_param(uint32_t sum, int n)
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static int find_optimal_param(uint64_t sum, int n)
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{
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int k;
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uint32_t sum2;
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uint64_t sum2;
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if (sum <= n >> 1)
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return 0;
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sum2 = sum - (n >> 1);
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k = av_log2(n < 256 ? FASTDIV(sum2, n) : sum2 / n);
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k = av_log2(av_clipl_int32(sum2 / n));
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return FFMIN(k, MAX_RICE_PARAM);
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}
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static uint32_t calc_optimal_rice_params(RiceContext *rc, int porder,
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uint32_t *sums, int n, int pred_order)
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static uint64_t calc_optimal_rice_params(RiceContext *rc, int porder,
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uint64_t *sums, int n, int pred_order)
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{
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int i;
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int k, cnt, part;
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uint32_t all_bits;
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uint64_t all_bits;
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part = (1 << porder);
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all_bits = 4 * part;
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@ -546,7 +546,7 @@ static uint32_t calc_optimal_rice_params(RiceContext *rc, int porder,
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static void calc_sums(int pmin, int pmax, uint32_t *data, int n, int pred_order,
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uint32_t sums[][MAX_PARTITIONS])
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uint64_t sums[][MAX_PARTITIONS])
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{
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int i, j;
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int parts;
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@ -557,7 +557,7 @@ static void calc_sums(int pmin, int pmax, uint32_t *data, int n, int pred_order,
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res = &data[pred_order];
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res_end = &data[n >> pmax];
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for (i = 0; i < parts; i++) {
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uint32_t sum = 0;
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uint64_t sum = 0;
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while (res < res_end)
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sum += *(res++);
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sums[pmax][i] = sum;
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@ -572,15 +572,15 @@ static void calc_sums(int pmin, int pmax, uint32_t *data, int n, int pred_order,
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}
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static uint32_t calc_rice_params(RiceContext *rc, int pmin, int pmax,
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static uint64_t calc_rice_params(RiceContext *rc, int pmin, int pmax,
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int32_t *data, int n, int pred_order)
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{
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int i;
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uint32_t bits[MAX_PARTITION_ORDER+1];
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uint64_t bits[MAX_PARTITION_ORDER+1];
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int opt_porder;
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RiceContext tmp_rc;
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uint32_t *udata;
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uint32_t sums[MAX_PARTITION_ORDER+1][MAX_PARTITIONS];
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uint64_t sums[MAX_PARTITION_ORDER+1][MAX_PARTITIONS];
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assert(pmin >= 0 && pmin <= MAX_PARTITION_ORDER);
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assert(pmax >= 0 && pmax <= MAX_PARTITION_ORDER);
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@ -616,7 +616,7 @@ static int get_max_p_order(int max_porder, int n, int order)
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}
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static uint32_t find_subframe_rice_params(FlacEncodeContext *s,
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static uint64_t find_subframe_rice_params(FlacEncodeContext *s,
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FlacSubframe *sub, int pred_order)
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{
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int pmin = get_max_p_order(s->options.min_partition_order,
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@ -624,7 +624,7 @@ static uint32_t find_subframe_rice_params(FlacEncodeContext *s,
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int pmax = get_max_p_order(s->options.max_partition_order,
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s->frame.blocksize, pred_order);
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uint32_t bits = 8 + pred_order * sub->obits + 2 + 4;
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uint64_t bits = 8 + pred_order * sub->obits + 2 + 4;
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if (sub->type == FLAC_SUBFRAME_LPC)
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bits += 4 + 5 + pred_order * s->options.lpc_coeff_precision;
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bits += calc_rice_params(&sub->rc, pmin, pmax, sub->residual,
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@ -829,7 +829,7 @@ static int encode_residual_ch(FlacEncodeContext *s, int ch)
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sub->type = FLAC_SUBFRAME_FIXED;
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if (s->options.lpc_type == FF_LPC_TYPE_NONE ||
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s->options.lpc_type == FF_LPC_TYPE_FIXED || n <= max_order) {
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uint32_t bits[MAX_FIXED_ORDER+1];
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uint64_t bits[MAX_FIXED_ORDER+1];
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if (max_order > MAX_FIXED_ORDER)
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max_order = MAX_FIXED_ORDER;
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opt_order = 0;
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@ -860,7 +860,7 @@ static int encode_residual_ch(FlacEncodeContext *s, int ch)
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omethod == ORDER_METHOD_4LEVEL ||
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omethod == ORDER_METHOD_8LEVEL) {
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int levels = 1 << omethod;
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uint32_t bits[1 << ORDER_METHOD_8LEVEL];
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uint64_t bits[1 << ORDER_METHOD_8LEVEL];
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int order;
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int opt_index = levels-1;
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opt_order = max_order-1;
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@ -879,7 +879,7 @@ static int encode_residual_ch(FlacEncodeContext *s, int ch)
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opt_order++;
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} else if (omethod == ORDER_METHOD_SEARCH) {
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// brute-force optimal order search
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uint32_t bits[MAX_LPC_ORDER];
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uint64_t bits[MAX_LPC_ORDER];
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opt_order = 0;
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bits[0] = UINT32_MAX;
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for (i = min_order-1; i < max_order; i++) {
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@ -890,7 +890,7 @@ static int encode_residual_ch(FlacEncodeContext *s, int ch)
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}
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opt_order++;
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} else if (omethod == ORDER_METHOD_LOG) {
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uint32_t bits[MAX_LPC_ORDER];
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uint64_t bits[MAX_LPC_ORDER];
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int step;
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opt_order = min_order - 1 + (max_order-min_order)/3;
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@ -962,7 +962,8 @@ static int count_frame_header(FlacEncodeContext *s)
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static int encode_frame(FlacEncodeContext *s)
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{
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int ch, count;
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int ch;
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uint64_t count;
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count = count_frame_header(s);
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@ -972,7 +973,10 @@ static int encode_frame(FlacEncodeContext *s)
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count += (8 - (count & 7)) & 7; // byte alignment
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count += 16; // CRC-16
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return count >> 3;
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count >>= 3;
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if (count > INT_MAX)
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return AVERROR_BUG;
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return count;
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}
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@ -1274,9 +1278,13 @@ static int flac_encode_frame(AVCodecContext *avctx, AVPacket *avpkt,
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/* fallback to verbatim mode if the compressed frame is larger than it
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would be if encoded uncompressed. */
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if (frame_bytes > s->max_framesize) {
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if (frame_bytes < 0 || frame_bytes > s->max_framesize) {
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s->frame.verbatim_only = 1;
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frame_bytes = encode_frame(s);
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if (frame_bytes < 0) {
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av_log(avctx, AV_LOG_ERROR, "Bad frame count\n");
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return frame_bytes;
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}
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}
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if ((ret = ff_alloc_packet(avpkt, frame_bytes))) {
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