liblzma: Fix uint64_t vs. size_t confusion.
This broke 32-bit builds due to a pointer type mismatch.
This bug was introduced with the output-size-limited encoding
in 625f4c7c99
.
Thanks to huangqinjin for the bug report.
This commit is contained in:
parent
2bd36c91d0
commit
2523c30705
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@ -160,9 +160,12 @@ rc_shift_low(lzma_range_encoder *rc,
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}
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// NOTE: The last two arguments are uint64_t instead of size_t because in
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// the dummy version these refer to the size of the whole range-encoded
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// output stream, not just to the currently available output buffer space.
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static inline bool
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rc_shift_low_dummy(uint64_t *low, uint64_t *cache_size, uint8_t *cache,
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size_t *out_pos, size_t out_size)
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uint64_t *out_pos, uint64_t out_size)
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{
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if ((uint32_t)(*low) < (uint32_t)(0xFF000000)
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|| (uint32_t)(*low >> 32) != 0) {
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@ -262,7 +265,7 @@ rc_encode(lzma_range_encoder *rc,
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static inline bool
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rc_encode_dummy(const lzma_range_encoder *rc, size_t out_size)
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rc_encode_dummy(const lzma_range_encoder *rc, uint64_t out_limit)
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{
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assert(rc->count <= RC_SYMBOLS_MAX);
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@ -278,7 +281,7 @@ rc_encode_dummy(const lzma_range_encoder *rc, size_t out_size)
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// Normalize
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if (range < RC_TOP_VALUE) {
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if (rc_shift_low_dummy(&low, &cache_size, &cache,
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&out_pos, out_size))
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&out_pos, out_limit))
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return true;
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range <<= RC_SHIFT_BITS;
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@ -330,7 +333,7 @@ rc_encode_dummy(const lzma_range_encoder *rc, size_t out_size)
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// the flushing that will be done at the end of the stream.
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for (pos = 0; pos < 5; ++pos) {
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if (rc_shift_low_dummy(&low, &cache_size,
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&cache, &out_pos, out_size))
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&cache, &out_pos, out_limit))
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return true;
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}
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