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Merge git://git.kernel.org/pub/scm/linux/kernel/git/herbert/crypto-2.6
Merge the crypto tree to resolve the conflict between the temporary and long-term fixes in algif_skcipher.
This commit is contained in:
commit
e90c48efde
arch/x86/crypto
crypto
drivers/crypto
lib/mpi
@ -117,11 +117,10 @@
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.set T1, REG_T1
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.endm
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#define K_BASE %r8
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#define HASH_PTR %r9
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#define BLOCKS_CTR %r8
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#define BUFFER_PTR %r10
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#define BUFFER_PTR2 %r13
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#define BUFFER_END %r11
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#define PRECALC_BUF %r14
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#define WK_BUF %r15
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@ -205,14 +204,14 @@
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* blended AVX2 and ALU instruction scheduling
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* 1 vector iteration per 8 rounds
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*/
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vmovdqu ((i * 2) + PRECALC_OFFSET)(BUFFER_PTR), W_TMP
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vmovdqu (i * 2)(BUFFER_PTR), W_TMP
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.elseif ((i & 7) == 1)
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vinsertf128 $1, (((i-1) * 2)+PRECALC_OFFSET)(BUFFER_PTR2),\
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vinsertf128 $1, ((i-1) * 2)(BUFFER_PTR2),\
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WY_TMP, WY_TMP
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.elseif ((i & 7) == 2)
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vpshufb YMM_SHUFB_BSWAP, WY_TMP, WY
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.elseif ((i & 7) == 4)
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vpaddd K_XMM(K_BASE), WY, WY_TMP
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vpaddd K_XMM + K_XMM_AR(%rip), WY, WY_TMP
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.elseif ((i & 7) == 7)
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vmovdqu WY_TMP, PRECALC_WK(i&~7)
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@ -255,7 +254,7 @@
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vpxor WY, WY_TMP, WY_TMP
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.elseif ((i & 7) == 7)
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vpxor WY_TMP2, WY_TMP, WY
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vpaddd K_XMM(K_BASE), WY, WY_TMP
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vpaddd K_XMM + K_XMM_AR(%rip), WY, WY_TMP
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vmovdqu WY_TMP, PRECALC_WK(i&~7)
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PRECALC_ROTATE_WY
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@ -291,7 +290,7 @@
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vpsrld $30, WY, WY
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vpor WY, WY_TMP, WY
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.elseif ((i & 7) == 7)
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vpaddd K_XMM(K_BASE), WY, WY_TMP
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vpaddd K_XMM + K_XMM_AR(%rip), WY, WY_TMP
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vmovdqu WY_TMP, PRECALC_WK(i&~7)
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PRECALC_ROTATE_WY
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@ -446,6 +445,16 @@
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.endm
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/* Add constant only if (%2 > %3) condition met (uses RTA as temp)
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* %1 + %2 >= %3 ? %4 : 0
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*/
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.macro ADD_IF_GE a, b, c, d
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mov \a, RTA
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add $\d, RTA
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cmp $\c, \b
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cmovge RTA, \a
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.endm
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/*
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* macro implements 80 rounds of SHA-1, for multiple blocks with s/w pipelining
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*/
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@ -463,13 +472,16 @@
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lea (2*4*80+32)(%rsp), WK_BUF
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# Precalc WK for first 2 blocks
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PRECALC_OFFSET = 0
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ADD_IF_GE BUFFER_PTR2, BLOCKS_CTR, 2, 64
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.set i, 0
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.rept 160
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PRECALC i
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.set i, i + 1
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.endr
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PRECALC_OFFSET = 128
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/* Go to next block if needed */
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ADD_IF_GE BUFFER_PTR, BLOCKS_CTR, 3, 128
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ADD_IF_GE BUFFER_PTR2, BLOCKS_CTR, 4, 128
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xchg WK_BUF, PRECALC_BUF
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.align 32
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@ -479,8 +491,8 @@ _loop:
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* we use K_BASE value as a signal of a last block,
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* it is set below by: cmovae BUFFER_PTR, K_BASE
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*/
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cmp K_BASE, BUFFER_PTR
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jne _begin
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test BLOCKS_CTR, BLOCKS_CTR
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jnz _begin
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.align 32
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jmp _end
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.align 32
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@ -512,10 +524,10 @@ _loop0:
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.set j, j+2
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.endr
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add $(2*64), BUFFER_PTR /* move to next odd-64-byte block */
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cmp BUFFER_END, BUFFER_PTR /* is current block the last one? */
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cmovae K_BASE, BUFFER_PTR /* signal the last iteration smartly */
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/* Update Counter */
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sub $1, BLOCKS_CTR
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/* Move to the next block only if needed*/
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ADD_IF_GE BUFFER_PTR, BLOCKS_CTR, 4, 128
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/*
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* rounds
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* 60,62,64,66,68
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@ -532,8 +544,8 @@ _loop0:
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UPDATE_HASH 12(HASH_PTR), D
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UPDATE_HASH 16(HASH_PTR), E
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cmp K_BASE, BUFFER_PTR /* is current block the last one? */
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je _loop
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test BLOCKS_CTR, BLOCKS_CTR
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jz _loop
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mov TB, B
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@ -575,10 +587,10 @@ _loop2:
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.set j, j+2
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.endr
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add $(2*64), BUFFER_PTR2 /* move to next even-64-byte block */
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cmp BUFFER_END, BUFFER_PTR2 /* is current block the last one */
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cmovae K_BASE, BUFFER_PTR /* signal the last iteration smartly */
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/* update counter */
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sub $1, BLOCKS_CTR
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/* Move to the next block only if needed*/
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ADD_IF_GE BUFFER_PTR2, BLOCKS_CTR, 4, 128
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jmp _loop3
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_loop3:
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@ -641,19 +653,12 @@ _loop3:
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avx2_zeroupper
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lea K_XMM_AR(%rip), K_BASE
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/* Setup initial values */
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mov CTX, HASH_PTR
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mov BUF, BUFFER_PTR
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lea 64(BUF), BUFFER_PTR2
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shl $6, CNT /* mul by 64 */
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add BUF, CNT
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add $64, CNT
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mov CNT, BUFFER_END
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cmp BUFFER_END, BUFFER_PTR2
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cmovae K_BASE, BUFFER_PTR2
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mov BUF, BUFFER_PTR2
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mov CNT, BLOCKS_CTR
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xmm_mov BSWAP_SHUFB_CTL(%rip), YMM_SHUFB_BSWAP
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@ -201,7 +201,7 @@ asmlinkage void sha1_transform_avx2(u32 *digest, const char *data,
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static bool avx2_usable(void)
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{
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if (false && avx_usable() && boot_cpu_has(X86_FEATURE_AVX2)
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if (avx_usable() && boot_cpu_has(X86_FEATURE_AVX2)
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&& boot_cpu_has(X86_FEATURE_BMI1)
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&& boot_cpu_has(X86_FEATURE_BMI2))
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return true;
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@ -91,9 +91,14 @@ int crypto_chacha20_crypt(struct skcipher_request *req)
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crypto_chacha20_init(state, ctx, walk.iv);
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while (walk.nbytes > 0) {
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unsigned int nbytes = walk.nbytes;
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if (nbytes < walk.total)
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nbytes = round_down(nbytes, walk.stride);
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chacha20_docrypt(state, walk.dst.virt.addr, walk.src.virt.addr,
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walk.nbytes);
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err = skcipher_walk_done(&walk, 0);
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nbytes);
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err = skcipher_walk_done(&walk, walk.nbytes - nbytes);
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}
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return err;
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@ -32675,6 +32675,10 @@ static const struct cipher_testvec chacha20_enc_tv_template[] = {
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"\x5b\x86\x2f\x37\x30\xe3\x7c\xfd"
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"\xc4\xfd\x80\x6c\x22\xf2\x21",
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.rlen = 375,
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.also_non_np = 1,
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.np = 3,
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.tap = { 375 - 20, 4, 16 },
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}, { /* RFC7539 A.2. Test Vector #3 */
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.key = "\x1c\x92\x40\xa5\xeb\x55\xd3\x8a"
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"\xf3\x33\x88\x86\x04\xf6\xb5\xf0"
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@ -33049,6 +33053,9 @@ static const struct cipher_testvec chacha20_enc_tv_template[] = {
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"\xa1\xed\xad\xd5\x76\xfa\x24\x8f"
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"\x98",
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.rlen = 1281,
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.also_non_np = 1,
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.np = 3,
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.tap = { 1200, 1, 80 },
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},
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};
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@ -883,10 +883,7 @@ static int safexcel_hmac_sha1_setkey(struct crypto_ahash *tfm, const u8 *key,
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if (ret)
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return ret;
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memcpy(ctx->ipad, &istate.state, SHA1_DIGEST_SIZE);
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memcpy(ctx->opad, &ostate.state, SHA1_DIGEST_SIZE);
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for (i = 0; i < ARRAY_SIZE(istate.state); i++) {
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for (i = 0; i < SHA1_DIGEST_SIZE / sizeof(u32); i++) {
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if (ctx->ipad[i] != le32_to_cpu(istate.state[i]) ||
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ctx->opad[i] != le32_to_cpu(ostate.state[i])) {
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ctx->base.needs_inv = true;
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@ -894,6 +891,9 @@ static int safexcel_hmac_sha1_setkey(struct crypto_ahash *tfm, const u8 *key,
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}
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}
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memcpy(ctx->ipad, &istate.state, SHA1_DIGEST_SIZE);
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memcpy(ctx->opad, &ostate.state, SHA1_DIGEST_SIZE);
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return 0;
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}
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@ -1073,7 +1073,7 @@ static int aead_perform(struct aead_request *req, int encrypt,
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req_ctx->hmac_virt = dma_pool_alloc(buffer_pool, flags,
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&crypt->icv_rev_aes);
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if (unlikely(!req_ctx->hmac_virt))
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goto free_buf_src;
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goto free_buf_dst;
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if (!encrypt) {
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scatterwalk_map_and_copy(req_ctx->hmac_virt,
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req->src, cryptlen, authsize, 0);
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@ -1088,10 +1088,10 @@ static int aead_perform(struct aead_request *req, int encrypt,
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BUG_ON(qmgr_stat_overflow(SEND_QID));
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return -EINPROGRESS;
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free_buf_src:
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free_buf_chain(dev, req_ctx->src, crypt->src_buf);
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free_buf_dst:
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free_buf_chain(dev, req_ctx->dst, crypt->dst_buf);
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free_buf_src:
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free_buf_chain(dev, req_ctx->src, crypt->src_buf);
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crypt->ctl_flags = CTL_FLAG_UNUSED;
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return -ENOMEM;
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}
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@ -364,11 +364,11 @@ MPI mpi_read_raw_from_sgl(struct scatterlist *sgl, unsigned int nbytes)
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}
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miter.consumed = lzeros;
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sg_miter_stop(&miter);
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nbytes -= lzeros;
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nbits = nbytes * 8;
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if (nbits > MAX_EXTERN_MPI_BITS) {
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sg_miter_stop(&miter);
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pr_info("MPI: mpi too large (%u bits)\n", nbits);
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return NULL;
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}
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@ -376,6 +376,8 @@ MPI mpi_read_raw_from_sgl(struct scatterlist *sgl, unsigned int nbytes)
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if (nbytes > 0)
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nbits -= count_leading_zeros(*buff) - (BITS_PER_LONG - 8);
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sg_miter_stop(&miter);
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nlimbs = DIV_ROUND_UP(nbytes, BYTES_PER_MPI_LIMB);
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val = mpi_alloc(nlimbs);
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if (!val)
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