X-Git-Url: https://git.sesse.net/?a=blobdiff_plain;f=libavcodec%2Fsonic.c;h=ea6ef10c9eff5176ea9eb8109e6bd92f852201a3;hb=60e7021064ea9e99854c585d452e89f38635480e;hp=34d2952e69ce5304a7eb13964f72e9563f632a6e;hpb=0084eed5bffebd7f3915bc0f9eba7350e8bc0ef7;p=ffmpeg diff --git a/libavcodec/sonic.c b/libavcodec/sonic.c index 34d2952e69c..ea6ef10c9ef 100644 --- a/libavcodec/sonic.c +++ b/libavcodec/sonic.c @@ -140,10 +140,13 @@ static inline av_flatten int get_symbol(RangeCoder *c, uint8_t *state, int is_si if(get_rac(c, state+0)) return 0; else{ - int i, e, a; + int i, e; + unsigned a; e= 0; while(get_rac(c, state+1 + FFMIN(e,9))){ //1..10 e++; + if (e > 31) + return AVERROR_INVALIDDATA; } a= 1; @@ -455,8 +458,8 @@ static void predictor_init_state(int *k, int *state, int order) for (j = 0, p = i+1; p < order; j++,p++) { - int tmp = x + shift_down(k[j] * state[p], LATTICE_SHIFT); - state[p] += shift_down(k[j]*x, LATTICE_SHIFT); + int tmp = x + shift_down(k[j] * (unsigned)state[p], LATTICE_SHIFT); + state[p] += shift_down(k[j]* (unsigned)x, LATTICE_SHIFT); x = tmp; } } @@ -464,7 +467,7 @@ static void predictor_init_state(int *k, int *state, int order) static int predictor_calc_error(int *k, int *state, int order, int error) { - int i, x = error - shift_down(k[order-1] * state[order-1], LATTICE_SHIFT); + int i, x = error - shift_down(k[order-1] * (unsigned)state[order-1], LATTICE_SHIFT); #if 1 int *k_ptr = &(k[order-2]), @@ -472,8 +475,8 @@ static int predictor_calc_error(int *k, int *state, int order, int error) for (i = order-2; i >= 0; i--, k_ptr--, state_ptr--) { int k_value = *k_ptr, state_value = *state_ptr; - x -= shift_down(k_value * state_value, LATTICE_SHIFT); - state_ptr[1] = state_value + shift_down(k_value * x, LATTICE_SHIFT); + x -= shift_down(k_value * (unsigned)state_value, LATTICE_SHIFT); + state_ptr[1] = state_value + shift_down(k_value * (unsigned)x, LATTICE_SHIFT); } #else for (i = order-2; i >= 0; i--) @@ -1042,7 +1045,7 @@ static int sonic_decode_frame(AVCodecContext *avctx, x += s->channels; } - s->int_samples[x] = predictor_calc_error(s->predictor_k, s->predictor_state[ch], s->num_taps, s->coded_samples[ch][i] * quant); + s->int_samples[x] = predictor_calc_error(s->predictor_k, s->predictor_state[ch], s->num_taps, s->coded_samples[ch][i] * (unsigned)quant); x += s->channels; }