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import changes from tenfourfox:
- #622: update brotli to 1.0.9, woff2 to tip (7c24b77e7) - #622: actually add new brotli files (fc50954e6)
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64ccce7c22
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64 changed files with 3990 additions and 2780 deletions
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@ -16,8 +16,6 @@
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extern "C" {
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#endif
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/*#define BIT_WRITER_DEBUG */
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/* This function writes bits into bytes in increasing addresses, and within
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a byte least-significant-bit first.
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@ -28,7 +26,7 @@ extern "C" {
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0000 0RRR 0000 0000 0000 0000
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Now, we could write 5 or less bits in MSB by just sifting by 3
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Now, we could write 5 or less bits in MSB by just shifting by 3
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and OR'ing to BYTE-0.
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For n bits, we take the last 5 bits, OR that with high bits in BYTE-0,
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@ -37,37 +35,41 @@ static BROTLI_INLINE void BrotliWriteBits(size_t n_bits,
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uint64_t bits,
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size_t* BROTLI_RESTRICT pos,
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uint8_t* BROTLI_RESTRICT array) {
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BROTLI_LOG(("WriteBits %2d 0x%08x%08x %10d\n", (int)n_bits,
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(uint32_t)(bits >> 32), (uint32_t)(bits & 0xFFFFFFFF),
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(int)*pos));
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BROTLI_DCHECK((bits >> n_bits) == 0);
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BROTLI_DCHECK(n_bits <= 56);
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#if defined(BROTLI_LITTLE_ENDIAN)
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/* This branch of the code can write up to 56 bits at a time,
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7 bits are lost by being perhaps already in *p and at least
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1 bit is needed to initialize the bit-stream ahead (i.e. if 7
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bits are in *p and we write 57 bits, then the next write will
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access a byte that was never initialized). */
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uint8_t* p = &array[*pos >> 3];
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uint64_t v = (uint64_t)(*p); /* Zero-extend 8 to 64 bits. */
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BROTLI_LOG(("WriteBits %2d 0x%08x%08x %10d\n", (int)n_bits,
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(uint32_t)(bits >> 32), (uint32_t)(bits & 0xFFFFFFFF),
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(int)*pos));
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BROTLI_DCHECK((bits >> n_bits) == 0);
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BROTLI_DCHECK(n_bits <= 56);
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v |= bits << (*pos & 7);
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BROTLI_UNALIGNED_STORE64LE(p, v); /* Set some bits. */
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*pos += n_bits;
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{
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uint8_t* p = &array[*pos >> 3];
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uint64_t v = (uint64_t)(*p); /* Zero-extend 8 to 64 bits. */
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v |= bits << (*pos & 7);
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BROTLI_UNALIGNED_STORE64LE(p, v); /* Set some bits. */
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*pos += n_bits;
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}
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#else
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/* implicit & 0xFF is assumed for uint8_t arithmetics */
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uint8_t* array_pos = &array[*pos >> 3];
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const size_t bits_reserved_in_first_byte = (*pos & 7);
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size_t bits_left_to_write;
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bits <<= bits_reserved_in_first_byte;
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*array_pos++ |= (uint8_t)bits;
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for (bits_left_to_write = n_bits + bits_reserved_in_first_byte;
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bits_left_to_write >= 9;
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bits_left_to_write -= 8) {
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bits >>= 8;
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*array_pos++ = (uint8_t)bits;
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{
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uint8_t* array_pos = &array[*pos >> 3];
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const size_t bits_reserved_in_first_byte = (*pos & 7);
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size_t bits_left_to_write;
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bits <<= bits_reserved_in_first_byte;
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*array_pos++ |= (uint8_t)bits;
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for (bits_left_to_write = n_bits + bits_reserved_in_first_byte;
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bits_left_to_write >= 9;
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bits_left_to_write -= 8) {
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bits >>= 8;
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*array_pos++ = (uint8_t)bits;
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}
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*array_pos = 0;
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*pos += n_bits;
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}
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*array_pos = 0;
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*pos += n_bits;
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#endif
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}
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