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STM32U535NET6QTR 데이터시트(PDF) 69 Page - STMicroelectronics |
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STM32U535NET6QTR 데이터시트(HTML) 69 Page - STMicroelectronics |
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69 / 278 page ![]() DS14217 Rev 1 69/278 STM32U535xx Functional overview 84 3.35 HASH hardware accelerator (HASH) The HASH is a fully compliant implementation of the secure hash algorithm (SHA-1, SHA-224, SHA-256), the MD5 (message-digest algorithm 5) hash algorithm and the HMAC (keyed-hash message authentication code) algorithm. HMAC is suitable for applications requiring message authentication. The HASH computes FIPS (Federal information processing standards) approved digests of length of 160, 224, 256 bits, for messages of up to (264 – 1) bits. It also computes 128 bits digests for the MD5 algorithm. The HASH main features are: • Suitable for data authentication applications, compliant with: – Federal Information Processing Standards Publication FIPS PUB 180-4, Secure Hash Standard (SHA-1 and SHA-2 family) – Federal Information Processing Standards Publication FIPS PUB 186-4, Digital Signature Standard (DSS) – Internet Engineering Task Force (IETF) Request For Comments RFC 1321, MD5 Message-Digest Algorithm – Internet Engineering Task Force (IETF) Request For Comments RFC 2104, HMAC: Keyed-Hashing for Message Authentication and Federal Information Processing Standards Publication FIPS PUB 198-1, The Keyed-Hash Message Authentication Code (HMAC) • Fast computation of SHA-1, SHA-224, SHA-256, and MD5 – 82 (respectively 66) clock cycles for processing one 512-bit block of data using SHA-1 (respectively SHA-256) algorithm – 66 clock cycles for processing one 512-bit block of data using MD5 algorithm • Corresponding 32-bit words of the digest from consecutive message blocks are added to each other to form the digest of the whole message: – Automatic 32-bit words swapping to comply with the internal little-endian representation of the input bit string – Word swapping supported: bits, bytes, half-words and 32-bit words • Automatic padding to complete the input bit string to fit digest minimum block size of 512 bits (16 × 32 bits) • Single 32-bit input register associated to an internal input FIFO of sixteen 32-bit words, corresponding to one block size • AHB slave peripheral, accessible through 32-bit word accesses only (else an AHB error is generated) • 8 × 32-bit words (H0 to H7) for output message digest • Automatic data flow control with support of direct memory access (DMA) using one channel. Single or fixed burst of 4 supported. • Interruptible message digest computation, on a per-32-bit word basis – Re-loadable digest registers – Hashing computation suspend/resume mechanism, including using DMA |
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