forked from Minki/linux
lib/mpi: mpi_read_buffer(): optimize skipping of leading zero limbs
Currently, if the number of leading zeros is greater than fits into a complete limb, mpi_read_buffer() skips them by iterating over them limb-wise. Instead of skipping the high order zero limbs within the loop as shown above, adjust the copying loop's bounds. Signed-off-by: Nicolai Stange <nicstange@gmail.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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@ -184,7 +184,9 @@ int mpi_read_buffer(MPI a, uint8_t *buf, unsigned buf_len, unsigned *nbytes,
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p = buf;
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*nbytes = n - lzeros;
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for (i = a->nlimbs - 1; i >= 0; i--) {
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for (i = a->nlimbs - 1 - lzeros / BYTES_PER_MPI_LIMB,
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lzeros %= BYTES_PER_MPI_LIMB;
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i >= 0; i--) {
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alimb = a->d[i];
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#if BYTES_PER_MPI_LIMB == 4
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*p++ = alimb >> 24;
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@ -205,15 +207,11 @@ int mpi_read_buffer(MPI a, uint8_t *buf, unsigned buf_len, unsigned *nbytes,
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#endif
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if (lzeros > 0) {
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if (lzeros >= sizeof(alimb)) {
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p -= sizeof(alimb);
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} else {
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mpi_limb_t *limb1 = (void *)p - sizeof(alimb);
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mpi_limb_t *limb2 = (void *)p - sizeof(alimb)
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+ lzeros;
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*limb1 = *limb2;
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p -= lzeros;
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}
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mpi_limb_t *limb1 = (void *)p - sizeof(alimb);
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mpi_limb_t *limb2 = (void *)p - sizeof(alimb)
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+ lzeros;
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*limb1 = *limb2;
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p -= lzeros;
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lzeros -= sizeof(alimb);
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}
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}
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