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se: Hardcode internal se vars, add HMAC-SHA256
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parent
5f100fef8a
commit
5d44ef0af6
@ -94,17 +94,15 @@ static int _se_wait()
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static int _se_execute(u32 op, void *dst, u32 dst_size, const void *src, u32 src_size)
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static int _se_execute(u32 op, void *dst, u32 dst_size, const void *src, u32 src_size)
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{
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{
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se_ll_t *ll_dst = NULL, *ll_src = NULL;
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se_ll_t *ll_dst = (se_ll_t *)0xECFFFFE0, *ll_src = (se_ll_t *)0xECFFFFF0;
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if (dst)
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if (dst)
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{
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{
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ll_dst = (se_ll_t *)malloc(sizeof(se_ll_t));
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_se_ll_init(ll_dst, (u32)dst, dst_size);
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_se_ll_init(ll_dst, (u32)dst, dst_size);
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}
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}
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if (src)
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if (src)
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{
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{
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ll_src = (se_ll_t *)malloc(sizeof(se_ll_t));
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_se_ll_init(ll_src, (u32)src, src_size);
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_se_ll_init(ll_src, (u32)src, src_size);
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}
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}
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@ -120,11 +118,6 @@ static int _se_execute(u32 op, void *dst, u32 dst_size, const void *src, u32 src
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bpmp_mmu_maintenance(BPMP_MMU_MAINT_CLN_INV_WAY);
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bpmp_mmu_maintenance(BPMP_MMU_MAINT_CLN_INV_WAY);
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if (src)
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free(ll_src);
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if (dst)
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free(ll_dst);
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return res;
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return res;
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}
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}
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@ -428,7 +421,7 @@ int se_calc_sha256(void *dst, const void *src, u32 src_size)
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int res;
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int res;
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// Setup config for SHA256, size = BITS(src_size).
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// Setup config for SHA256, size = BITS(src_size).
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SE(SE_CONFIG_REG_OFFSET) = SE_CONFIG_ENC_MODE(MODE_SHA256) | SE_CONFIG_ENC_ALG(ALG_SHA) | SE_CONFIG_DST(DST_HASHREG);
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SE(SE_CONFIG_REG_OFFSET) = SE_CONFIG_ENC_MODE(MODE_SHA256) | SE_CONFIG_ENC_ALG(ALG_SHA) | SE_CONFIG_DST(DST_HASHREG);
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SE(SE_SHA_CONFIG_REG_OFFSET) = SHA_ENABLE;
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SE(SE_SHA_CONFIG_REG_OFFSET) = SHA_INIT_ENABLE;
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SE(SE_SHA_MSG_LENGTH_REG_OFFSET) = (u32)(src_size << 3);
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SE(SE_SHA_MSG_LENGTH_REG_OFFSET) = (u32)(src_size << 3);
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SE(SE_SHA_MSG_LENGTH_REG_OFFSET + 4 * 1) = 0;
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SE(SE_SHA_MSG_LENGTH_REG_OFFSET + 4 * 1) = 0;
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SE(SE_SHA_MSG_LENGTH_REG_OFFSET + 4 * 2) = 0;
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SE(SE_SHA_MSG_LENGTH_REG_OFFSET + 4 * 2) = 0;
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@ -448,3 +441,46 @@ int se_calc_sha256(void *dst, const void *src, u32 src_size)
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return res;
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return res;
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}
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}
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int se_calc_hmac_sha256(void *dst, const void *src, u32 src_size, const void *key, u32 key_size) {
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int res = 0;
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u8 *secret = (u8 *)malloc(0x40);
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u8 *ipad = (u8 *)malloc(0x40 + src_size);
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u8 *opad = (u8 *)malloc(0x60);
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if (key_size > 0x40)
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{
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if (!se_calc_sha256(secret, key, key_size))
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goto out;
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memset(secret + 0x20, 0, 0x20);
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}
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else
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{
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memcpy(secret, key, key_size);
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memset(secret + key_size, 0, 0x40 - key_size);
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}
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u32 *secret32 = (u32 *)secret;
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u32 *ipad32 = (u32 *)ipad;
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u32 *opad32 = (u32 *)opad;
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for (u32 i = 0; i < 0x10; i++)
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{
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ipad32[i] = secret32[i] ^ 0x36363636;
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opad32[i] = secret32[i] ^ 0x5C5C5C5C;
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}
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memcpy(ipad + 0x40, src, src_size);
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if (!se_calc_sha256(dst, ipad, 0x40 + src_size))
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goto out;
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memcpy(opad + 0x40, dst, 0x20);
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if (!se_calc_sha256(dst, opad, 0x60))
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goto out;
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res = 1;
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out:;
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free(secret);
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free(ipad);
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free(opad);
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return res;
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}
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@ -35,5 +35,6 @@ int se_aes_xts_crypt_sec(u32 ks1, u32 ks2, u32 enc, u64 sec, void *dst, const vo
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int se_aes_xts_crypt(u32 ks1, u32 ks2, u32 enc, u64 sec, void *dst, const void *src, u32 secsize, u32 num_secs);
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int se_aes_xts_crypt(u32 ks1, u32 ks2, u32 enc, u64 sec, void *dst, const void *src, u32 secsize, u32 num_secs);
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int se_aes_cmac(u32 ks, void *dst, u32 dst_size, const void *src, u32 src_size);
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int se_aes_cmac(u32 ks, void *dst, u32 dst_size, const void *src, u32 src_size);
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int se_calc_sha256(void *dst, const void *src, u32 src_size);
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int se_calc_sha256(void *dst, const void *src, u32 src_size);
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int se_calc_hmac_sha256(void *dst, const void *src, u32 src_size, const void *key, u32 key_size);
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#endif
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#endif
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@ -231,8 +231,8 @@
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#define SE_SPARE_0_REG_OFFSET 0x80c
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#define SE_SPARE_0_REG_OFFSET 0x80c
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#define SE_SHA_CONFIG_REG_OFFSET 0x200
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#define SE_SHA_CONFIG_REG_OFFSET 0x200
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#define SHA_DISABLE 0
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#define SHA_INIT_DISABLE 0
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#define SHA_ENABLE 1
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#define SHA_INIT_ENABLE 1
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#define SE_SHA_MSG_LENGTH_REG_OFFSET 0x204
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#define SE_SHA_MSG_LENGTH_REG_OFFSET 0x204
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#define SE_SHA_MSG_LEFT_REG_OFFSET 0x214
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#define SE_SHA_MSG_LEFT_REG_OFFSET 0x214
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