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/mbedtls-3.5.0/library/
Daes.c804 #define AES_FROUND(X0, X1, X2, X3, Y0, Y1, Y2, Y3) \ argument
812 (X1) = *RK++ ^ AES_FT0(MBEDTLS_BYTE_0(Y1)) ^ \
828 #define AES_RROUND(X0, X1, X2, X3, Y0, Y1, Y2, Y3) \ argument
836 (X1) = *RK++ ^ AES_RT0(MBEDTLS_BYTE_0(Y1)) ^ \
Decp_curves.c5419 mbedtls_mpi_uint *X1 = X + X0_limbs; in mbedtls_ecp_mod_p521_raw() local
5435 carry = mbedtls_mpi_core_mla(X0, X0_limbs, X1, X1_limbs, shift); in mbedtls_ecp_mod_p521_raw()
5437 memset(X1, 0, X1_limbs * sizeof(mbedtls_mpi_uint)); in mbedtls_ecp_mod_p521_raw()
/mbedtls-3.5.0/docs/proposed/
Dpsa-driver-interface.md443 * `PSA_JPAKE_X1_STEP_KEY_SHARE`     Round 1: output our key share (for ephemeral private key X1)
444 * `PSA_JPAKE_X1_STEP_ZK_PUBLIC`     Round 1: output Schnorr NIZKP public key for the X1 key
445 * `PSA_JPAKE_X1_STEP_ZK_PROOF`      Round 1: output Schnorr NIZKP proof for the X1 key
467 …`PSA_JPAKE_X1_STEP_KEY_SHARE`     Round 1: input key share from peer (for ephemeral private key X1)
468 * `PSA_JPAKE_X1_STEP_ZK_PUBLIC`     Round 1: input Schnorr NIZKP public key for the X1 key
469 * `PSA_JPAKE_X1_STEP_ZK_PROOF`      Round 1: input Schnorr NIZKP proof for the X1 key