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avcodec/apedec: Fix several integer overflows in predictor_update_filter() and do_apply_filter()
Fixes: negation of -2147483648 cannot be represented in type 'int'; cast to an unsigned type to negate this value to itself Fixes: signed integer overflow: -14527961 - 2147483425 cannot be represented in type 'int' Fixes: 16380/clusterfuzz-testcase-minimized-ffmpeg_AV_CODEC_ID_APE_fuzzer-5645957131141120 Fixes: 16968/clusterfuzz-testcase-minimized-ffmpeg_AV_CODEC_ID_APE_fuzzer-5716169901735936 Fixes: 17074/clusterfuzz-testcase-minimized-ffmpeg_AV_CODEC_ID_APE_fuzzer-5198710497083392 Found-by: continuous fuzzing process https://github.com/google/oss-fuzz/tree/master/projects/ffmpeg Signed-off-by: Michael Niedermayer <michael@niedermayer.cc>
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@ -1121,7 +1121,7 @@ static av_always_inline int predictor_update_filter(APEPredictor *p,
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p->buf[delayA] = p->lastA[filter];
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p->buf[adaptA] = APESIGN(p->buf[delayA]);
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p->buf[delayA - 1] = p->buf[delayA] - p->buf[delayA - 1];
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p->buf[delayA - 1] = p->buf[delayA] - (unsigned)p->buf[delayA - 1];
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p->buf[adaptA - 1] = APESIGN(p->buf[delayA - 1]);
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predictionA = p->buf[delayA ] * p->coeffsA[filter][0] +
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@ -1132,7 +1132,7 @@ static av_always_inline int predictor_update_filter(APEPredictor *p,
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/* Apply a scaled first-order filter compression */
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p->buf[delayB] = p->filterA[filter ^ 1] - ((int)(p->filterB[filter] * 31U) >> 5);
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p->buf[adaptB] = APESIGN(p->buf[delayB]);
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p->buf[delayB - 1] = p->buf[delayB] - p->buf[delayB - 1];
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p->buf[delayB - 1] = p->buf[delayB] - (unsigned)p->buf[delayB - 1];
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p->buf[adaptB - 1] = APESIGN(p->buf[delayB - 1]);
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p->filterB[filter] = p->filterA[filter ^ 1];
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@ -1282,7 +1282,7 @@ static void do_apply_filter(APEContext *ctx, int version, APEFilter *f,
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/* Version 3.98 and later files */
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/* Update the adaption coefficients */
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absres = FFABS(res);
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absres = res < 0 ? -(unsigned)res : res;
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if (absres)
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*f->adaptcoeffs = APESIGN(res) *
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(8 << ((absres > f->avg * 3) + (absres > f->avg * 4 / 3)));
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