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/Linux-v5.10/arch/arm64/crypto/
Daes-ce.S28 .macro load_round_keys, rounds, rk
29 cmp \rounds, #12
40 .macro enc_prepare, rounds, rk, temp
42 load_round_keys \rounds, \temp
46 .macro enc_switch_key, rounds, rk, temp
48 load_round_keys \rounds, \temp
52 .macro dec_prepare, rounds, rk, temp
54 load_round_keys \rounds, \temp
112 .macro do_block_Nx, enc, rounds, i0, i1, i2, i3, i4
113 cmp \rounds, #12
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Daes-neonbs-glue.c26 asmlinkage void aesbs_convert_key(u8 out[], u32 const rk[], int rounds);
29 int rounds, int blocks);
31 int rounds, int blocks);
34 int rounds, int blocks, u8 iv[]);
37 int rounds, int blocks, u8 iv[], u8 final[]);
40 int rounds, int blocks, u8 iv[]);
42 int rounds, int blocks, u8 iv[]);
46 int rounds, int blocks);
48 int rounds, int blocks, u8 iv[]);
50 u32 const rk1[], int rounds, int bytes,
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Daes-cipher-glue.c12 asmlinkage void __aes_arm64_encrypt(u32 *rk, u8 *out, const u8 *in, int rounds);
13 asmlinkage void __aes_arm64_decrypt(u32 *rk, u8 *out, const u8 *in, int rounds);
18 int rounds = 6 + ctx->key_length / 4; in aes_arm64_encrypt() local
20 __aes_arm64_encrypt(ctx->key_enc, out, in, rounds); in aes_arm64_encrypt()
26 int rounds = 6 + ctx->key_length / 4; in aes_arm64_decrypt() local
28 __aes_arm64_decrypt(ctx->key_dec, out, in, rounds); in aes_arm64_decrypt()
Daes-glue.c75 int rounds, int blocks);
77 int rounds, int blocks);
80 int rounds, int blocks, u8 iv[]);
82 int rounds, int blocks, u8 iv[]);
85 int rounds, int bytes, u8 const iv[]);
87 int rounds, int bytes, u8 const iv[]);
90 int rounds, int blocks, u8 ctr[]);
93 int rounds, int bytes, u32 const rk2[], u8 iv[],
96 int rounds, int bytes, u32 const rk2[], u8 iv[],
100 int rounds, int blocks, u8 iv[],
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Daes-neon.S98 .macro do_block, enc, in, rounds, rk, rkp, i
101 mov \i, \rounds
114 .macro encrypt_block, in, rounds, rk, rkp, i
115 do_block 1, \in, \rounds, \rk, \rkp, \i
118 .macro decrypt_block, in, rounds, rk, rkp, i
119 do_block 0, \in, \rounds, \rk, \rkp, \i
205 .macro do_block_4x, enc, in0, in1, in2, in3, rounds, rk, rkp, i
208 mov \i, \rounds
231 .macro encrypt_block4x, in0, in1, in2, in3, rounds, rk, rkp, i
232 do_block_4x 1, \in0, \in1, \in2, \in3, \rounds, \rk, \rkp, \i
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Daes-cipher-core.S17 rounds .req x3
102 tbnz rounds, #1, 1f
107 1: subs rounds, rounds, #4
Daes-ce-ccm-glue.c33 u32 *macp, u32 const rk[], u32 rounds);
36 u32 const rk[], u32 rounds, u8 mac[],
40 u32 const rk[], u32 rounds, u8 mac[],
44 u32 rounds);
/Linux-v5.10/arch/powerpc/crypto/
Daes-spe-glue.c44 u32 rounds; member
51 u32 rounds; member
54 extern void ppc_encrypt_aes(u8 *out, const u8 *in, u32 *key_enc, u32 rounds);
55 extern void ppc_decrypt_aes(u8 *out, const u8 *in, u32 *key_dec, u32 rounds);
56 extern void ppc_encrypt_ecb(u8 *out, const u8 *in, u32 *key_enc, u32 rounds,
58 extern void ppc_decrypt_ecb(u8 *out, const u8 *in, u32 *key_dec, u32 rounds,
60 extern void ppc_encrypt_cbc(u8 *out, const u8 *in, u32 *key_enc, u32 rounds,
62 extern void ppc_decrypt_cbc(u8 *out, const u8 *in, u32 *key_dec, u32 rounds,
64 extern void ppc_crypt_ctr (u8 *out, const u8 *in, u32 *key_enc, u32 rounds,
66 extern void ppc_encrypt_xts(u8 *out, const u8 *in, u32 *key_enc, u32 rounds,
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/Linux-v5.10/arch/arm/crypto/
Daes-cipher-glue.c13 asmlinkage void __aes_arm_encrypt(u32 *rk, int rounds, const u8 *in, u8 *out);
14 asmlinkage void __aes_arm_decrypt(u32 *rk, int rounds, const u8 *in, u8 *out);
19 int rounds = 6 + ctx->key_length / 4; in aes_arm_encrypt() local
21 __aes_arm_encrypt(ctx->key_enc, rounds, in, out); in aes_arm_encrypt()
27 int rounds = 6 + ctx->key_length / 4; in aes_arm_decrypt() local
29 __aes_arm_decrypt(ctx->key_dec, rounds, in, out); in aes_arm_decrypt()
Daes-neonbs-glue.c26 asmlinkage void aesbs_convert_key(u8 out[], u32 const rk[], int rounds);
29 int rounds, int blocks);
31 int rounds, int blocks);
34 int rounds, int blocks, u8 iv[]);
37 int rounds, int blocks, u8 ctr[], u8 final[]);
40 int rounds, int blocks, u8 iv[], int);
42 int rounds, int blocks, u8 iv[], int);
45 int rounds; member
76 ctx->rounds = 6 + key_len / 4; in aesbs_setkey()
79 aesbs_convert_key(ctx->rk, rk.key_enc, ctx->rounds); in aesbs_setkey()
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Daes-ce-glue.c30 int rounds, int blocks);
32 int rounds, int blocks);
35 int rounds, int blocks, u8 iv[]);
37 int rounds, int blocks, u8 iv[]);
39 int rounds, int bytes, u8 const iv[]);
41 int rounds, int bytes, u8 const iv[]);
44 int rounds, int blocks, u8 ctr[]);
47 int rounds, int bytes, u8 iv[],
50 int rounds, int bytes, u8 iv[],
448 int err, first, rounds = num_rounds(&ctx->key1); in xts_encrypt() local
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Daes-cipher-core.S17 rounds .req r1
168 tst rounds, #2
174 1: subs rounds, rounds, #4
193 pop {rounds} // oldcpsr
194 \round r4, r5, r6, r7, r8, r9, r10, r11, \bsz, b, rounds
Daes-neonbs-core.S24 rounds .req ip
507 sub rounds, rounds, #1
521 subs rounds, rounds, #1
551 add bskey, bskey, rounds, lsl #7
576 sub rounds, rounds, #1
590 subs rounds, rounds, #1
643 mov rounds, r3
704 mov rounds, r3
819 mov rounds, r3
967 mov rounds, r3
/Linux-v5.10/tools/power/cpupower/bench/
Dbenchmark.c37 unsigned int rounds = 0; in calculate_timespace() local
53 rounds = (unsigned int)(load * estimated / timed); in calculate_timespace()
54 dprintf("calibrating with %u rounds\n", rounds); in calculate_timespace()
56 ROUNDS(rounds); in calculate_timespace()
60 estimated = rounds; in calculate_timespace()
91 for (_round = 1; _round <= config->rounds; _round++) in start_benchmark()
95 for (_round = 0; _round < config->rounds; _round++) { in start_benchmark()
Dmain.c126 sscanf(optarg, "%u", &config->rounds); in main()
174 config->rounds, in main()
DREADME-BENCH47 rounds=5
66 This shows expected results of the first two test run rounds from
117 -r, --rounds<int> load/sleep rounds
Dexample.cfg9 rounds = 40
/Linux-v5.10/drivers/crypto/vmx/
Daesp8-ppc.pl120 my ($inp,$bits,$out,$ptr,$cnt,$rounds)=map("r$_",(3..8));
261 li $rounds,10
335 li $rounds,12
343 li $rounds,14
397 stw $rounds,0($out)
417 slwi $cnt,$rounds,4
419 srwi $rounds,$rounds,1
421 mtctr $rounds
459 my ($inp,$out,$key,$rounds,$idx)=map("r$_",(3..7));
463 lwz $rounds,240($key)
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/Linux-v5.10/arch/sparc/crypto/
Dsha1_glue.c27 unsigned int rounds);
52 const unsigned int rounds = (len - done) / SHA1_BLOCK_SIZE; in __sha1_sparc64_update() local
54 sha1_sparc64_transform(sctx->state, data + done, rounds); in __sha1_sparc64_update()
55 done += rounds * SHA1_BLOCK_SIZE; in __sha1_sparc64_update()
Dmd5_glue.c30 unsigned int rounds);
57 const unsigned int rounds = (len - done) / MD5_HMAC_BLOCK_SIZE; in __md5_sparc64_update() local
59 md5_sparc64_transform(sctx->hash, data + done, rounds); in __md5_sparc64_update()
60 done += rounds * MD5_HMAC_BLOCK_SIZE; in __md5_sparc64_update()
Dsha512_glue.c26 unsigned int rounds);
73 const unsigned int rounds = (len - done) / SHA512_BLOCK_SIZE; in __sha512_sparc64_update() local
75 sha512_sparc64_transform(sctx->state, data + done, rounds); in __sha512_sparc64_update()
76 done += rounds * SHA512_BLOCK_SIZE; in __sha512_sparc64_update()
Dsha256_glue.c27 unsigned int rounds);
73 const unsigned int rounds = (len - done) / SHA256_BLOCK_SIZE; in __sha256_sparc64_update() local
75 sha256_sparc64_transform(sctx->state, data + done, rounds); in __sha256_sparc64_update()
76 done += rounds * SHA256_BLOCK_SIZE; in __sha256_sparc64_update()
/Linux-v5.10/drivers/md/
Ddm-verity-fec.c38 return offset + mod * (v->fec->rounds << v->data_dev_block_bits); in fec_interleave()
451 res = div64_u64(offset, v->fec->rounds << v->data_dev_block_bits); in verity_fec_decode()
457 rsb = offset - res * (v->fec->rounds << v->data_dev_block_bits); in verity_fec_decode()
722 f->rounds = f->blocks; in verity_fec_ctr()
723 if (sector_div(f->rounds, f->rsn)) in verity_fec_ctr()
724 f->rounds++; in verity_fec_ctr()
730 if (f->blocks < v->data_blocks + hash_blocks || !f->rounds) { in verity_fec_ctr()
755 ((f->start + f->rounds * f->roots) >> v->data_dev_block_bits)) { in verity_fec_ctr()
/Linux-v5.10/lib/crypto/
Daes.c261 int rounds = 6 + ctx->key_length / 4; in aes_encrypt() local
287 if (round == rounds - 2) in aes_encrypt()
312 int rounds = 6 + ctx->key_length / 4; in aes_decrypt() local
338 if (round == rounds - 2) in aes_decrypt()
/Linux-v5.10/arch/x86/crypto/
Dsha512-ssse3-asm.S155 # Compute rounds t-2 and t-1
158 # Two rounds are computed based on the values for K[t-2]+W[t-2] and
167 # The computation of the message schedule and the rounds are tightly
169 # For clarity, integer instructions (for the rounds calculation) are indented
264 movdqa %xmm0, WK_2(idx) # Store W[t]+K[t] for next rounds
313 # (80 rounds) / (2 rounds/iteration) + (1 iteration)
322 movdqa %xmm0, WK_2(t) # Store into WK for rounds

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