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avcodec/jpeg2000htdec: check if block decoding will exceed internal precision
Intended to replace https://patchwork.ffmpeg.org/project/ffmpeg/patch/20230802000135.26482-3-michael@niedermayer.cc/ with a more accurate block decoding magnitude bound. Fixes: 62433/clusterfuzz-testcase-minimized-ffmpeg_AV_CODEC_ID_JPEG2000_fuzzer-5828618092937216 Fixes: 58299/clusterfuzz-testcase-minimized-ffmpeg_AV_CODEC_ID_JPEG2000_fuzzer-5828618092937216 Previous-version-reviewed-by: Tomas Härdin <git@haerdin.se> Signed-off-by: Michael Niedermayer <michael@niedermayer.cc>
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@ -567,11 +567,19 @@ static int jpeg2000_decode_ht_cleanup_segment(const Jpeg2000DecoderContext *s,
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uint64_t c;
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uint8_t *sigma;
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uint32_t *mu;
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uint8_t *sigma, *sigma_n, *E;
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uint32_t *mu, *mu_n;
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const uint8_t *vlc_buf = Dcup + Pcup;
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/*
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* Bound on the precision needed to process the codeblock. The number of
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* decoded bit planes is equal to at most cblk->zbp + 2 since S_blk = P if
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* there are no placeholder passes or HT Sets and P = cblk->zbp. See Rec.
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* ITU-T T.814, 7.6.
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*/
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int maxbp = cblk->zbp + 2;
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/* convert to raster-scan */
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const uint16_t is_border_x = width % 2;
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const uint16_t is_border_y = height % 2;
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@ -581,9 +589,13 @@ static int jpeg2000_decode_ht_cleanup_segment(const Jpeg2000DecoderContext *s,
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size_t buf_size = 4 * quad_width * quad_height;
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uint8_t *sigma_n = av_calloc(buf_size, sizeof(uint8_t));
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uint8_t *E = av_calloc(buf_size, sizeof(uint8_t));
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uint32_t *mu_n = av_calloc(buf_size, sizeof(uint32_t));
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/* do we have enough precision, assuming a 32-bit decoding path */
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if (maxbp >= 32)
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return AVERROR_INVALIDDATA;
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sigma_n = av_calloc(buf_size, sizeof(uint8_t));
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E = av_calloc(buf_size, sizeof(uint8_t));
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mu_n = av_calloc(buf_size, sizeof(uint32_t));
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if (!sigma_n || !E || !mu_n) {
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ret = AVERROR(ENOMEM);
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@ -676,6 +688,10 @@ static int jpeg2000_decode_ht_cleanup_segment(const Jpeg2000DecoderContext *s,
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}
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U[J2K_Q1] = kappa[J2K_Q1] + u[J2K_Q1];
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U[J2K_Q2] = kappa[J2K_Q2] + u[J2K_Q2];
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if (U[J2K_Q1] > maxbp || U[J2K_Q2] > maxbp) {
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ret = AVERROR_INVALIDDATA;
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goto free;
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}
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for (int i = 0; i < 4; i++) {
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m[J2K_Q1][i] = sigma_n[4 * q1 + i] * U[J2K_Q1] - ((emb_pat_k[J2K_Q1] >> i) & 1);
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@ -713,6 +729,10 @@ static int jpeg2000_decode_ht_cleanup_segment(const Jpeg2000DecoderContext *s,
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}
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U[J2K_Q1] = kappa[J2K_Q1] + u[J2K_Q1];
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if (U[J2K_Q1] > maxbp) {
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ret = AVERROR_INVALIDDATA;
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goto free;
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}
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for (int i = 0; i < 4; i++)
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m[J2K_Q1][i] = sigma_n[4 * q1 + i] * U[J2K_Q1] - ((emb_pat_k[J2K_Q1] >> i) & 1);
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@ -842,6 +862,10 @@ static int jpeg2000_decode_ht_cleanup_segment(const Jpeg2000DecoderContext *s,
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U[J2K_Q1] = kappa[J2K_Q1] + u[J2K_Q1];
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U[J2K_Q2] = kappa[J2K_Q2] + u[J2K_Q2];
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if (U[J2K_Q1] > maxbp || U[J2K_Q2] > maxbp) {
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ret = AVERROR_INVALIDDATA;
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goto free;
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}
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for (int i = 0; i < 4; i++) {
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m[J2K_Q1][i] = sigma_n[4 * q1 + i] * U[J2K_Q1] - ((emb_pat_k[J2K_Q1] >> i) & 1);
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@ -910,6 +934,10 @@ static int jpeg2000_decode_ht_cleanup_segment(const Jpeg2000DecoderContext *s,
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kappa[J2K_Q1] = FFMAX(1, gamma[J2K_Q1] * (max_e[J2K_Q1] - 1));
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U[J2K_Q1] = kappa[J2K_Q1] + u[J2K_Q1];
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if (U[J2K_Q1] > maxbp) {
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ret = AVERROR_INVALIDDATA;
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goto free;
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}
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for (int i = 0; i < 4; i++)
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m[J2K_Q1][i] = sigma_n[4 * q1 + i] * U[J2K_Q1] - ((emb_pat_k[J2K_Q1] >> i) & 1);
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@ -1238,8 +1266,10 @@ ff_jpeg2000_decode_htj2k(const Jpeg2000DecoderContext *s, Jpeg2000CodingStyle *c
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}
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if ((ret = jpeg2000_decode_ht_cleanup_segment(s, cblk, t1, &mel_state, &mel, &vlc,
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&mag_sgn, Dcup, Lcup, Pcup, pLSB, width,
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height, sample_buf, block_states)) < 0)
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height, sample_buf, block_states)) < 0) {
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av_log(s->avctx, AV_LOG_ERROR, "Bad HT cleanup segment\n");
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goto free;
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}
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if (cblk->npasses > 1)
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jpeg2000_decode_sigprop_segment(cblk, width, height, Dref, Lref,
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