crypto: aesni - Move HashKey computation from stack to gcm_context
HashKey computation only needs to happen once per scatter/gather operation, save it between calls in gcm_context struct instead of on the stack. Since the asm no longer stores anything on the stack, we can use %rsp directly, and clean up the frame save/restore macros a bit. Hashkeys actually only need to be calculated once per key and could be moved to when set_key is called, however, the current glue code falls back to generic aes code if fpu is disabled. Signed-off-by: Dave Watson <davejwatson@fb.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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@ -94,23 +94,6 @@ ALL_F: .octa 0xffffffffffffffffffffffffffffffff
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#define STACK_OFFSET 8*3
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#define HashKey 16*0 // store HashKey <<1 mod poly here
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#define HashKey_2 16*1 // store HashKey^2 <<1 mod poly here
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#define HashKey_3 16*2 // store HashKey^3 <<1 mod poly here
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#define HashKey_4 16*3 // store HashKey^4 <<1 mod poly here
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#define HashKey_k 16*4 // store XOR of High 64 bits and Low 64
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// bits of HashKey <<1 mod poly here
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//(for Karatsuba purposes)
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#define HashKey_2_k 16*5 // store XOR of High 64 bits and Low 64
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// bits of HashKey^2 <<1 mod poly here
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// (for Karatsuba purposes)
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#define HashKey_3_k 16*6 // store XOR of High 64 bits and Low 64
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// bits of HashKey^3 <<1 mod poly here
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// (for Karatsuba purposes)
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#define HashKey_4_k 16*7 // store XOR of High 64 bits and Low 64
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// bits of HashKey^4 <<1 mod poly here
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// (for Karatsuba purposes)
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#define VARIABLE_OFFSET 16*8
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#define AadHash 16*0
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#define AadLen 16*1
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@ -119,6 +102,22 @@ ALL_F: .octa 0xffffffffffffffffffffffffffffffff
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#define OrigIV 16*3
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#define CurCount 16*4
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#define PBlockLen 16*5
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#define HashKey 16*6 // store HashKey <<1 mod poly here
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#define HashKey_2 16*7 // store HashKey^2 <<1 mod poly here
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#define HashKey_3 16*8 // store HashKey^3 <<1 mod poly here
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#define HashKey_4 16*9 // store HashKey^4 <<1 mod poly here
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#define HashKey_k 16*10 // store XOR of High 64 bits and Low 64
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// bits of HashKey <<1 mod poly here
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//(for Karatsuba purposes)
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#define HashKey_2_k 16*11 // store XOR of High 64 bits and Low 64
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// bits of HashKey^2 <<1 mod poly here
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// (for Karatsuba purposes)
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#define HashKey_3_k 16*12 // store XOR of High 64 bits and Low 64
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// bits of HashKey^3 <<1 mod poly here
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// (for Karatsuba purposes)
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#define HashKey_4_k 16*13 // store XOR of High 64 bits and Low 64
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// bits of HashKey^4 <<1 mod poly here
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// (for Karatsuba purposes)
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#define arg1 rdi
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#define arg2 rsi
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@ -126,11 +125,11 @@ ALL_F: .octa 0xffffffffffffffffffffffffffffffff
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#define arg4 rcx
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#define arg5 r8
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#define arg6 r9
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#define arg7 STACK_OFFSET+8(%r14)
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#define arg8 STACK_OFFSET+16(%r14)
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#define arg9 STACK_OFFSET+24(%r14)
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#define arg10 STACK_OFFSET+32(%r14)
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#define arg11 STACK_OFFSET+40(%r14)
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#define arg7 STACK_OFFSET+8(%rsp)
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#define arg8 STACK_OFFSET+16(%rsp)
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#define arg9 STACK_OFFSET+24(%rsp)
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#define arg10 STACK_OFFSET+32(%rsp)
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#define arg11 STACK_OFFSET+40(%rsp)
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#define keysize 2*15*16(%arg1)
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#endif
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@ -184,28 +183,79 @@ ALL_F: .octa 0xffffffffffffffffffffffffffffffff
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push %r12
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push %r13
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push %r14
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mov %rsp, %r14
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#
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# states of %xmm registers %xmm6:%xmm15 not saved
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# all %xmm registers are clobbered
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#
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sub $VARIABLE_OFFSET, %rsp
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and $~63, %rsp
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.endm
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.macro FUNC_RESTORE
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mov %r14, %rsp
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pop %r14
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pop %r13
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pop %r12
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.endm
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# Precompute hashkeys.
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# Input: Hash subkey.
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# Output: HashKeys stored in gcm_context_data. Only needs to be called
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# once per key.
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# clobbers r12, and tmp xmm registers.
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.macro PRECOMPUTE TMP1 TMP2 TMP3 TMP4 TMP5 TMP6 TMP7
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mov arg7, %r12
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movdqu (%r12), \TMP3
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movdqa SHUF_MASK(%rip), \TMP2
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PSHUFB_XMM \TMP2, \TMP3
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# precompute HashKey<<1 mod poly from the HashKey (required for GHASH)
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movdqa \TMP3, \TMP2
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psllq $1, \TMP3
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psrlq $63, \TMP2
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movdqa \TMP2, \TMP1
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pslldq $8, \TMP2
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psrldq $8, \TMP1
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por \TMP2, \TMP3
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# reduce HashKey<<1
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pshufd $0x24, \TMP1, \TMP2
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pcmpeqd TWOONE(%rip), \TMP2
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pand POLY(%rip), \TMP2
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pxor \TMP2, \TMP3
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movdqa \TMP3, HashKey(%arg2)
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movdqa \TMP3, \TMP5
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pshufd $78, \TMP3, \TMP1
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pxor \TMP3, \TMP1
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movdqa \TMP1, HashKey_k(%arg2)
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GHASH_MUL \TMP5, \TMP3, \TMP1, \TMP2, \TMP4, \TMP6, \TMP7
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# TMP5 = HashKey^2<<1 (mod poly)
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movdqa \TMP5, HashKey_2(%arg2)
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# HashKey_2 = HashKey^2<<1 (mod poly)
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pshufd $78, \TMP5, \TMP1
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pxor \TMP5, \TMP1
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movdqa \TMP1, HashKey_2_k(%arg2)
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GHASH_MUL \TMP5, \TMP3, \TMP1, \TMP2, \TMP4, \TMP6, \TMP7
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# TMP5 = HashKey^3<<1 (mod poly)
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movdqa \TMP5, HashKey_3(%arg2)
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pshufd $78, \TMP5, \TMP1
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pxor \TMP5, \TMP1
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movdqa \TMP1, HashKey_3_k(%arg2)
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GHASH_MUL \TMP5, \TMP3, \TMP1, \TMP2, \TMP4, \TMP6, \TMP7
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# TMP5 = HashKey^3<<1 (mod poly)
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movdqa \TMP5, HashKey_4(%arg2)
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pshufd $78, \TMP5, \TMP1
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pxor \TMP5, \TMP1
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movdqa \TMP1, HashKey_4_k(%arg2)
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.endm
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# GCM_INIT initializes a gcm_context struct to prepare for encoding/decoding.
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# Clobbers rax, r10-r13 and xmm0-xmm6, %xmm13
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.macro GCM_INIT
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mov arg9, %r11
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mov %r11, AadLen(%arg2) # ctx_data.aad_length = aad_length
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xor %r11, %r11
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@ -220,28 +270,8 @@ ALL_F: .octa 0xffffffffffffffffffffffffffffffff
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PSHUFB_XMM %xmm2, %xmm0
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movdqu %xmm0, CurCount(%arg2) # ctx_data.current_counter = iv
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mov arg7, %r12
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movdqu (%r12), %xmm13
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movdqa SHUF_MASK(%rip), %xmm2
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PSHUFB_XMM %xmm2, %xmm13
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# precompute HashKey<<1 mod poly from the HashKey (required for GHASH)
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movdqa %xmm13, %xmm2
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psllq $1, %xmm13
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psrlq $63, %xmm2
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movdqa %xmm2, %xmm1
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pslldq $8, %xmm2
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psrldq $8, %xmm1
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por %xmm2, %xmm13
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# reduce HashKey<<1
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pshufd $0x24, %xmm1, %xmm2
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pcmpeqd TWOONE(%rip), %xmm2
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pand POLY(%rip), %xmm2
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pxor %xmm2, %xmm13
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movdqa %xmm13, HashKey(%rsp)
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PRECOMPUTE %xmm1 %xmm2 %xmm3 %xmm4 %xmm5 %xmm6 %xmm7
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movdqa HashKey(%arg2), %xmm13
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CALC_AAD_HASH %xmm13 %xmm0 %xmm1 %xmm2 %xmm3 %xmm4 \
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%xmm5 %xmm6
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@ -253,7 +283,7 @@ ALL_F: .octa 0xffffffffffffffffffffffffffffffff
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# Clobbers rax, r10-r13, and xmm0-xmm15
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.macro GCM_ENC_DEC operation
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movdqu AadHash(%arg2), %xmm8
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movdqu HashKey(%rsp), %xmm13
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movdqu HashKey(%arg2), %xmm13
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add %arg5, InLen(%arg2)
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mov %arg5, %r13 # save the number of bytes
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and $-16, %r13 # %r13 = %r13 - (%r13 mod 16)
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@ -377,7 +407,7 @@ _multiple_of_16_bytes_\@:
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# Clobbers rax, r10-r12, and xmm0, xmm1, xmm5-xmm15
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.macro GCM_COMPLETE
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movdqu AadHash(%arg2), %xmm8
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movdqu HashKey(%rsp), %xmm13
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movdqu HashKey(%arg2), %xmm13
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mov PBlockLen(%arg2), %r12
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@ -584,7 +614,7 @@ _get_AAD_done\@:
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* the ciphertext
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* %r10, %r11, %r12, %rax, %xmm5, %xmm6, %xmm7, %xmm8, %xmm9 registers
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* are clobbered
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* arg1, %arg2, %arg3, %r14 are used as a pointer only, not modified
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* arg1, %arg2, %arg3 are used as a pointer only, not modified
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*/
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@ -695,17 +725,6 @@ aes_loop_initial_\@:
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pxor \TMP1, \XMM2
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pxor \TMP1, \XMM3
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pxor \TMP1, \XMM4
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movdqa \TMP3, \TMP5
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pshufd $78, \TMP3, \TMP1
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pxor \TMP3, \TMP1
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movdqa \TMP1, HashKey_k(%rsp)
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GHASH_MUL \TMP5, \TMP3, \TMP1, \TMP2, \TMP4, \TMP6, \TMP7
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# TMP5 = HashKey^2<<1 (mod poly)
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movdqa \TMP5, HashKey_2(%rsp)
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# HashKey_2 = HashKey^2<<1 (mod poly)
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pshufd $78, \TMP5, \TMP1
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pxor \TMP5, \TMP1
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movdqa \TMP1, HashKey_2_k(%rsp)
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.irpc index, 1234 # do 4 rounds
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movaps 0x10*\index(%arg1), \TMP1
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AESENC \TMP1, \XMM1
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@ -713,12 +732,6 @@ aes_loop_initial_\@:
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AESENC \TMP1, \XMM3
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AESENC \TMP1, \XMM4
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.endr
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GHASH_MUL \TMP5, \TMP3, \TMP1, \TMP2, \TMP4, \TMP6, \TMP7
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# TMP5 = HashKey^3<<1 (mod poly)
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movdqa \TMP5, HashKey_3(%rsp)
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pshufd $78, \TMP5, \TMP1
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pxor \TMP5, \TMP1
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movdqa \TMP1, HashKey_3_k(%rsp)
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.irpc index, 56789 # do next 5 rounds
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movaps 0x10*\index(%arg1), \TMP1
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AESENC \TMP1, \XMM1
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@ -726,12 +739,6 @@ aes_loop_initial_\@:
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AESENC \TMP1, \XMM3
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AESENC \TMP1, \XMM4
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.endr
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GHASH_MUL \TMP5, \TMP3, \TMP1, \TMP2, \TMP4, \TMP6, \TMP7
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# TMP5 = HashKey^3<<1 (mod poly)
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movdqa \TMP5, HashKey_4(%rsp)
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pshufd $78, \TMP5, \TMP1
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pxor \TMP5, \TMP1
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movdqa \TMP1, HashKey_4_k(%rsp)
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lea 0xa0(%arg1),%r10
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mov keysize,%eax
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shr $2,%eax # 128->4, 192->6, 256->8
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@ -816,7 +823,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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pshufd $78, \XMM5, \TMP6
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pxor \XMM5, \TMP6
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paddd ONE(%rip), \XMM0 # INCR CNT
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movdqa HashKey_4(%rsp), \TMP5
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movdqa HashKey_4(%arg2), \TMP5
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PCLMULQDQ 0x11, \TMP5, \TMP4 # TMP4 = a1*b1
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movdqa \XMM0, \XMM1
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paddd ONE(%rip), \XMM0 # INCR CNT
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@ -835,7 +842,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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pxor (%arg1), \XMM2
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pxor (%arg1), \XMM3
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pxor (%arg1), \XMM4
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movdqa HashKey_4_k(%rsp), \TMP5
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movdqa HashKey_4_k(%arg2), \TMP5
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PCLMULQDQ 0x00, \TMP5, \TMP6 # TMP6 = (a1+a0)*(b1+b0)
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movaps 0x10(%arg1), \TMP1
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AESENC \TMP1, \XMM1 # Round 1
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@ -850,7 +857,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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movdqa \XMM6, \TMP1
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pshufd $78, \XMM6, \TMP2
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pxor \XMM6, \TMP2
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movdqa HashKey_3(%rsp), \TMP5
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movdqa HashKey_3(%arg2), \TMP5
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PCLMULQDQ 0x11, \TMP5, \TMP1 # TMP1 = a1 * b1
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movaps 0x30(%arg1), \TMP3
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AESENC \TMP3, \XMM1 # Round 3
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@ -863,7 +870,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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AESENC \TMP3, \XMM2
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AESENC \TMP3, \XMM3
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AESENC \TMP3, \XMM4
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movdqa HashKey_3_k(%rsp), \TMP5
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movdqa HashKey_3_k(%arg2), \TMP5
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PCLMULQDQ 0x00, \TMP5, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
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movaps 0x50(%arg1), \TMP3
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AESENC \TMP3, \XMM1 # Round 5
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@ -877,7 +884,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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movdqa \XMM7, \TMP1
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pshufd $78, \XMM7, \TMP2
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pxor \XMM7, \TMP2
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movdqa HashKey_2(%rsp ), \TMP5
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movdqa HashKey_2(%arg2), \TMP5
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# Multiply TMP5 * HashKey using karatsuba
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@ -893,7 +900,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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AESENC \TMP3, \XMM2
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AESENC \TMP3, \XMM3
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AESENC \TMP3, \XMM4
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movdqa HashKey_2_k(%rsp), \TMP5
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movdqa HashKey_2_k(%arg2), \TMP5
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PCLMULQDQ 0x00, \TMP5, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
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movaps 0x80(%arg1), \TMP3
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AESENC \TMP3, \XMM1 # Round 8
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@ -911,7 +918,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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movdqa \XMM8, \TMP1
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pshufd $78, \XMM8, \TMP2
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pxor \XMM8, \TMP2
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movdqa HashKey(%rsp), \TMP5
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movdqa HashKey(%arg2), \TMP5
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PCLMULQDQ 0x11, \TMP5, \TMP1 # TMP1 = a1*b1
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movaps 0x90(%arg1), \TMP3
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AESENC \TMP3, \XMM1 # Round 9
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@ -940,7 +947,7 @@ aes_loop_par_enc_done:
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AESENCLAST \TMP3, \XMM2
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AESENCLAST \TMP3, \XMM3
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AESENCLAST \TMP3, \XMM4
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movdqa HashKey_k(%rsp), \TMP5
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movdqa HashKey_k(%arg2), \TMP5
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PCLMULQDQ 0x00, \TMP5, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
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movdqu (%arg4,%r11,1), \TMP3
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pxor \TMP3, \XMM1 # Ciphertext/Plaintext XOR EK
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@ -1024,7 +1031,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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pshufd $78, \XMM5, \TMP6
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pxor \XMM5, \TMP6
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paddd ONE(%rip), \XMM0 # INCR CNT
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movdqa HashKey_4(%rsp), \TMP5
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movdqa HashKey_4(%arg2), \TMP5
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PCLMULQDQ 0x11, \TMP5, \TMP4 # TMP4 = a1*b1
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movdqa \XMM0, \XMM1
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paddd ONE(%rip), \XMM0 # INCR CNT
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@ -1043,7 +1050,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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pxor (%arg1), \XMM2
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pxor (%arg1), \XMM3
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pxor (%arg1), \XMM4
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movdqa HashKey_4_k(%rsp), \TMP5
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movdqa HashKey_4_k(%arg2), \TMP5
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PCLMULQDQ 0x00, \TMP5, \TMP6 # TMP6 = (a1+a0)*(b1+b0)
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movaps 0x10(%arg1), \TMP1
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AESENC \TMP1, \XMM1 # Round 1
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@ -1058,7 +1065,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
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movdqa \XMM6, \TMP1
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pshufd $78, \XMM6, \TMP2
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pxor \XMM6, \TMP2
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movdqa HashKey_3(%rsp), \TMP5
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movdqa HashKey_3(%arg2), \TMP5
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PCLMULQDQ 0x11, \TMP5, \TMP1 # TMP1 = a1 * b1
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movaps 0x30(%arg1), \TMP3
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AESENC \TMP3, \XMM1 # Round 3
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@ -1071,7 +1078,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
|
||||
AESENC \TMP3, \XMM2
|
||||
AESENC \TMP3, \XMM3
|
||||
AESENC \TMP3, \XMM4
|
||||
movdqa HashKey_3_k(%rsp), \TMP5
|
||||
movdqa HashKey_3_k(%arg2), \TMP5
|
||||
PCLMULQDQ 0x00, \TMP5, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
|
||||
movaps 0x50(%arg1), \TMP3
|
||||
AESENC \TMP3, \XMM1 # Round 5
|
||||
@ -1085,7 +1092,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
|
||||
movdqa \XMM7, \TMP1
|
||||
pshufd $78, \XMM7, \TMP2
|
||||
pxor \XMM7, \TMP2
|
||||
movdqa HashKey_2(%rsp ), \TMP5
|
||||
movdqa HashKey_2(%arg2), \TMP5
|
||||
|
||||
# Multiply TMP5 * HashKey using karatsuba
|
||||
|
||||
@ -1101,7 +1108,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
|
||||
AESENC \TMP3, \XMM2
|
||||
AESENC \TMP3, \XMM3
|
||||
AESENC \TMP3, \XMM4
|
||||
movdqa HashKey_2_k(%rsp), \TMP5
|
||||
movdqa HashKey_2_k(%arg2), \TMP5
|
||||
PCLMULQDQ 0x00, \TMP5, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
|
||||
movaps 0x80(%arg1), \TMP3
|
||||
AESENC \TMP3, \XMM1 # Round 8
|
||||
@ -1119,7 +1126,7 @@ TMP6 XMM0 XMM1 XMM2 XMM3 XMM4 XMM5 XMM6 XMM7 XMM8 operation
|
||||
movdqa \XMM8, \TMP1
|
||||
pshufd $78, \XMM8, \TMP2
|
||||
pxor \XMM8, \TMP2
|
||||
movdqa HashKey(%rsp), \TMP5
|
||||
movdqa HashKey(%arg2), \TMP5
|
||||
PCLMULQDQ 0x11, \TMP5, \TMP1 # TMP1 = a1*b1
|
||||
movaps 0x90(%arg1), \TMP3
|
||||
AESENC \TMP3, \XMM1 # Round 9
|
||||
@ -1148,7 +1155,7 @@ aes_loop_par_dec_done:
|
||||
AESENCLAST \TMP3, \XMM2
|
||||
AESENCLAST \TMP3, \XMM3
|
||||
AESENCLAST \TMP3, \XMM4
|
||||
movdqa HashKey_k(%rsp), \TMP5
|
||||
movdqa HashKey_k(%arg2), \TMP5
|
||||
PCLMULQDQ 0x00, \TMP5, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
|
||||
movdqu (%arg4,%r11,1), \TMP3
|
||||
pxor \TMP3, \XMM1 # Ciphertext/Plaintext XOR EK
|
||||
@ -1224,10 +1231,10 @@ TMP7 XMM1 XMM2 XMM3 XMM4 XMMDst
|
||||
movdqa \XMM1, \TMP6
|
||||
pshufd $78, \XMM1, \TMP2
|
||||
pxor \XMM1, \TMP2
|
||||
movdqa HashKey_4(%rsp), \TMP5
|
||||
movdqa HashKey_4(%arg2), \TMP5
|
||||
PCLMULQDQ 0x11, \TMP5, \TMP6 # TMP6 = a1*b1
|
||||
PCLMULQDQ 0x00, \TMP5, \XMM1 # XMM1 = a0*b0
|
||||
movdqa HashKey_4_k(%rsp), \TMP4
|
||||
movdqa HashKey_4_k(%arg2), \TMP4
|
||||
PCLMULQDQ 0x00, \TMP4, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
|
||||
movdqa \XMM1, \XMMDst
|
||||
movdqa \TMP2, \XMM1 # result in TMP6, XMMDst, XMM1
|
||||
@ -1237,10 +1244,10 @@ TMP7 XMM1 XMM2 XMM3 XMM4 XMMDst
|
||||
movdqa \XMM2, \TMP1
|
||||
pshufd $78, \XMM2, \TMP2
|
||||
pxor \XMM2, \TMP2
|
||||
movdqa HashKey_3(%rsp), \TMP5
|
||||
movdqa HashKey_3(%arg2), \TMP5
|
||||
PCLMULQDQ 0x11, \TMP5, \TMP1 # TMP1 = a1*b1
|
||||
PCLMULQDQ 0x00, \TMP5, \XMM2 # XMM2 = a0*b0
|
||||
movdqa HashKey_3_k(%rsp), \TMP4
|
||||
movdqa HashKey_3_k(%arg2), \TMP4
|
||||
PCLMULQDQ 0x00, \TMP4, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
|
||||
pxor \TMP1, \TMP6
|
||||
pxor \XMM2, \XMMDst
|
||||
@ -1252,10 +1259,10 @@ TMP7 XMM1 XMM2 XMM3 XMM4 XMMDst
|
||||
movdqa \XMM3, \TMP1
|
||||
pshufd $78, \XMM3, \TMP2
|
||||
pxor \XMM3, \TMP2
|
||||
movdqa HashKey_2(%rsp), \TMP5
|
||||
movdqa HashKey_2(%arg2), \TMP5
|
||||
PCLMULQDQ 0x11, \TMP5, \TMP1 # TMP1 = a1*b1
|
||||
PCLMULQDQ 0x00, \TMP5, \XMM3 # XMM3 = a0*b0
|
||||
movdqa HashKey_2_k(%rsp), \TMP4
|
||||
movdqa HashKey_2_k(%arg2), \TMP4
|
||||
PCLMULQDQ 0x00, \TMP4, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
|
||||
pxor \TMP1, \TMP6
|
||||
pxor \XMM3, \XMMDst
|
||||
@ -1265,10 +1272,10 @@ TMP7 XMM1 XMM2 XMM3 XMM4 XMMDst
|
||||
movdqa \XMM4, \TMP1
|
||||
pshufd $78, \XMM4, \TMP2
|
||||
pxor \XMM4, \TMP2
|
||||
movdqa HashKey(%rsp), \TMP5
|
||||
movdqa HashKey(%arg2), \TMP5
|
||||
PCLMULQDQ 0x11, \TMP5, \TMP1 # TMP1 = a1*b1
|
||||
PCLMULQDQ 0x00, \TMP5, \XMM4 # XMM4 = a0*b0
|
||||
movdqa HashKey_k(%rsp), \TMP4
|
||||
movdqa HashKey_k(%arg2), \TMP4
|
||||
PCLMULQDQ 0x00, \TMP4, \TMP2 # TMP2 = (a1+a0)*(b1+b0)
|
||||
pxor \TMP1, \TMP6
|
||||
pxor \XMM4, \XMMDst
|
||||
|
Loading…
Reference in New Issue
Block a user