mirror of
https://github.com/henrydcase/pqc.git
synced 2024-11-22 15:39:07 +00:00
Kris Kwiatkowski
9cb7e5a265
Pulls SIKE/p434 from CECPQ2 implementation changed to use SHAKE instead of SHA2
159 lines
4.1 KiB
C
159 lines
4.1 KiB
C
#ifndef PQAPI_H_
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#define PQAPI_H_
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <stdint.h>
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#include <stdbool.h>
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// defines supported signature algorithm list
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#define PQC_SUPPORTED_SIGS(_) \
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_(DILITHIUM2) \
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_(DILITHIUM3) \
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_(DILITHIUM5) \
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_(FALCON1024) \
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_(FALCON512) \
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_(RAINBOWVCLASSIC) \
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_(RAINBOWICLASSIC) \
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_(RAINBOWIIICLASSIC) \
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_(SPHINCSSHA256192FSIMPLE) \
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_(SPHINCSSHAKE256256FSIMPLE) \
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_(SPHINCSSHAKE256192FROBUST) \
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_(SPHINCSSHAKE256128FSIMPLE) \
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_(SPHINCSSHAKE256256SSIMPLE) \
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_(SPHINCSSHAKE256128SSIMPLE) \
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_(SPHINCSSHA256128FROBUST) \
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_(SPHINCSSHA256192SROBUST) \
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_(SPHINCSSHAKE256128FROBUST) \
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_(SPHINCSSHAKE256128SROBUST) \
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_(SPHINCSSHAKE256256SROBUST) \
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_(SPHINCSSHA256192SSIMPLE) \
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_(SPHINCSSHAKE256192SSIMPLE) \
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_(SPHINCSSHAKE256192SROBUST) \
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_(SPHINCSSHAKE256192FSIMPLE) \
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_(SPHINCSSHA256256SSIMPLE) \
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_(SPHINCSSHA256128SSIMPLE) \
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_(SPHINCSSHAKE256256FROBUST) \
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_(SPHINCSSHA256256FROBUST) \
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_(SPHINCSSHA256256FSIMPLE) \
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_(SPHINCSSHA256256SROBUST) \
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_(SPHINCSSHA256128SROBUST) \
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_(SPHINCSSHA256128FSIMPLE) \
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_(SPHINCSSHA256192FROBUST)
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// defines supported kem algorithm list
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#define PQC_SUPPORTED_KEMS(_)\
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_(FRODOKEM976SHAKE) \
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_(FRODOKEM1344SHAKE) \
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_(FRODOKEM640SHAKE) \
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_(KYBER768) \
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_(KYBER1024) \
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_(KYBER512) \
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_(NTRUHPS4096821) \
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_(NTRUHPS2048509) \
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_(NTRUHRSS701) \
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_(NTRUHPS2048677) \
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_(NTRULPR761) \
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_(NTRULPR653) \
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_(NTRULPR857) \
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_(LIGHTSABER) \
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_(FIRESABER) \
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_(SABER) \
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_(HQCRMRS128) \
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_(HQCRMRS192) \
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_(HQCRMRS256) \
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_(SIKE434)
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// Defines IDs for each algorithm. The
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// PQC_ALG_SIG/KEM_MAX indicates number
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// of KEM and signature schemes supported.
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#define DEFNUM(N) N,
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enum { PQC_SUPPORTED_SIGS(DEFNUM) PQC_ALG_SIG_MAX };
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enum { PQC_SUPPORTED_KEMS(DEFNUM) PQC_ALG_KEM_MAX };
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#undef DEFNUM
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// Parameters of the scheme
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typedef struct params_t {
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const uint8_t alg_id;
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const char* alg_name;
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const uint32_t prv_key_bsz;
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const uint32_t pub_key_bsz;
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const bool is_kem;
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int (*keygen)(uint8_t *sk, uint8_t *pk);
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} params_t;
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typedef struct kem_params_t {
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params_t p;
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const uint32_t ciphertext_bsz;
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const uint32_t secret_bsz;
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int (*encapsulate)(uint8_t *ct, uint8_t *ss, const uint8_t *pk);
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int (*decapsulate)(uint8_t *ss, const uint8_t *ct, const uint8_t *sk);
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} kem_params_t;
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typedef struct sig_params_t {
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params_t p;
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const uint32_t sign_bsz;
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int (*sign)(uint8_t *sig, uint64_t *siglen, const uint8_t *m, uint64_t mlen, const uint8_t *sk);
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int (*verify)(const uint8_t *sig, uint64_t siglen, const uint8_t *m, uint64_t mlen, const uint8_t *pk);
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} sig_params_t;
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inline uint32_t ciphertext_bsz(const params_t *p) {
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return ((kem_params_t *)p)->ciphertext_bsz;
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}
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inline uint32_t shared_secret_bsz(const params_t *p) {
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return ((kem_params_t *)p)->secret_bsz;
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}
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inline uint32_t signature_bsz(const params_t *p) {
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return ((sig_params_t *)p)->sign_bsz;
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}
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inline uint32_t public_key_bsz(const params_t *p) {
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return p->pub_key_bsz;
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}
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inline uint32_t private_key_bsz(const params_t *p) {
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return p->prv_key_bsz;
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}
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bool pqc_keygen(
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const params_t *p,
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uint8_t *pk, uint8_t *sk);
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bool pqc_kem_encapsulate(
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const params_t *p,
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uint8_t *ct, uint8_t *ss,
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const uint8_t *pk);
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bool pqc_kem_decapsulate(
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const params_t *p,
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uint8_t *ss, const uint8_t *ct,
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const uint8_t *sk);
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bool pqc_sig_create(
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const params_t *p,
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uint8_t *sig, uint64_t *siglen,
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const uint8_t *m, uint64_t mlen,
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const uint8_t *sk);
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bool pqc_sig_verify(
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const params_t *p,
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const uint8_t *sig, uint64_t siglen,
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const uint8_t *m, uint64_t mlen,
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const uint8_t *pk);
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const params_t *pqc_kem_alg_by_id(uint8_t id);
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const params_t *pqc_sig_alg_by_id(uint8_t id);
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#ifdef __cplusplus
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}
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#endif
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#endif
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