Merge branch 'nist-kat' into more-ntru
This commit is contained in:
commit
51102e05ce
2
.github/pull_request_template.md
vendored
2
.github/pull_request_template.md
vendored
@ -2,7 +2,7 @@
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<!-- Type some lines about your submission -->
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<!-- If you are not submitting a new scheme, we suggest removing the following lines -->
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#### Manually checked properties
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<!-- These checkboxes serve for the maintainers of PQClean to verify your submission. Please do not check them yourself. -->
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@ -26,7 +26,6 @@ See the section [API](#API) below.
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type: <kem|signature>
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claimed-nist-level: <N>
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length-public-key: <N> # KEM and signature
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length-secret-key: <N> # KEM and signature
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length-ciphertext: <N> # KEM only
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length-shared-secret: <N> # KEM only
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length-signature: <N> # Signature only
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@ -38,6 +37,7 @@ See the section [API](#API) below.
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- ...
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implementations:
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- name: clean
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length-secret-key: <N> # KEM and signature
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version: <some version indicator>
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```
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@ -16,7 +16,8 @@ void PQCLEAN_FRODOKEM1344AES_CLEAN_sample_n(uint16_t *s, size_t n) {
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// Fills vector s with n samples from the noise distribution which requires 16 bits to sample.
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// The distribution is specified by its CDF.
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// Input: pseudo-random values (2*n bytes) passed in s. The input is overwritten by the output.
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size_t i, j;
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size_t i;
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unsigned int j;
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for (i = 0; i < n; ++i) {
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uint8_t sample = 0;
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@ -16,7 +16,8 @@ void PQCLEAN_FRODOKEM1344SHAKE_CLEAN_sample_n(uint16_t *s, size_t n) {
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// Fills vector s with n samples from the noise distribution which requires 16 bits to sample.
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// The distribution is specified by its CDF.
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// Input: pseudo-random values (2*n bytes) passed in s. The input is overwritten by the output.
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size_t i, j;
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size_t i;
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unsigned int j;
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for (i = 0; i < n; ++i) {
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uint8_t sample = 0;
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@ -16,7 +16,8 @@ void PQCLEAN_FRODOKEM640AES_CLEAN_sample_n(uint16_t *s, size_t n) {
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// Fills vector s with n samples from the noise distribution which requires 16 bits to sample.
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// The distribution is specified by its CDF.
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// Input: pseudo-random values (2*n bytes) passed in s. The input is overwritten by the output.
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size_t i, j;
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size_t i;
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unsigned int j;
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for (i = 0; i < n; ++i) {
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uint8_t sample = 0;
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@ -16,7 +16,8 @@ void PQCLEAN_FRODOKEM640SHAKE_CLEAN_sample_n(uint16_t *s, size_t n) {
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// Fills vector s with n samples from the noise distribution which requires 16 bits to sample.
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// The distribution is specified by its CDF.
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// Input: pseudo-random values (2*n bytes) passed in s. The input is overwritten by the output.
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size_t i, j;
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size_t i;
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unsigned int j;
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for (i = 0; i < n; ++i) {
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uint8_t sample = 0;
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@ -16,7 +16,8 @@ void PQCLEAN_FRODOKEM976AES_CLEAN_sample_n(uint16_t *s, size_t n) {
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// Fills vector s with n samples from the noise distribution which requires 16 bits to sample.
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// The distribution is specified by its CDF.
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// Input: pseudo-random values (2*n bytes) passed in s. The input is overwritten by the output.
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size_t i, j;
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size_t i;
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unsigned int j;
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for (i = 0; i < n; ++i) {
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uint8_t sample = 0;
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@ -16,7 +16,8 @@ void PQCLEAN_FRODOKEM976SHAKE_CLEAN_sample_n(uint16_t *s, size_t n) {
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// Fills vector s with n samples from the noise distribution which requires 16 bits to sample.
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// The distribution is specified by its CDF.
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// Input: pseudo-random values (2*n bytes) passed in s. The input is overwritten by the output.
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size_t i, j;
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size_t i;
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unsigned int j;
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for (i = 0; i < n; ++i) {
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uint8_t sample = 0;
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0
crypto_kem/ntruhps2048509/clean/api.h
Executable file → Normal file
0
crypto_kem/ntruhps2048509/clean/api.h
Executable file → Normal file
2
crypto_kem/ntruhps2048509/clean/crypto_sort.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/crypto_sort.c
Executable file → Normal file
@ -8,7 +8,7 @@
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#define int32_MINMAX(a,b) \
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do { \
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int32_t ab = (b) ^ (a); \
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int32_t c = (b) - (a); \
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int32_t c = (int32_t)((int64_t)(b) - (int64_t)(a)); \
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c ^= ab & (c ^ (b)); \
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c >>= 31; \
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c &= ab; \
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0
crypto_kem/ntruhps2048509/clean/crypto_sort.h
Executable file → Normal file
0
crypto_kem/ntruhps2048509/clean/crypto_sort.h
Executable file → Normal file
5
crypto_kem/ntruhps2048509/clean/kem.c
Executable file → Normal file
5
crypto_kem/ntruhps2048509/clean/kem.c
Executable file → Normal file
@ -37,7 +37,6 @@ int PQCLEAN_NTRUHPS2048509_CLEAN_crypto_kem_dec(uint8_t *k, const uint8_t *c, co
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int i, fail;
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uint8_t rm[NTRU_OWCPA_MSGBYTES];
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uint8_t buf[NTRU_PRFKEYBYTES + NTRU_CIPHERTEXTBYTES];
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uint8_t *cmp = buf + NTRU_PRFKEYBYTES;
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fail = PQCLEAN_NTRUHPS2048509_CLEAN_owcpa_dec(rm, c, sk);
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/* If fail = 0 then c = Enc(h, rm), there is no need to re-encapsulate. */
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@ -50,9 +49,9 @@ int PQCLEAN_NTRUHPS2048509_CLEAN_crypto_kem_dec(uint8_t *k, const uint8_t *c, co
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buf[i] = sk[i + NTRU_OWCPA_SECRETKEYBYTES];
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}
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for (i = 0; i < NTRU_CIPHERTEXTBYTES; i++) {
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cmp[i] = c[i];
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buf[NTRU_PRFKEYBYTES + i] = c[i];
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}
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sha3_256(rm, cmp, NTRU_PRFKEYBYTES + NTRU_CIPHERTEXTBYTES);
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sha3_256(rm, buf, NTRU_PRFKEYBYTES + NTRU_CIPHERTEXTBYTES);
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PQCLEAN_NTRUHPS2048509_CLEAN_cmov(k, rm, NTRU_SHAREDKEYBYTES, (unsigned char) fail);
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0
crypto_kem/ntruhps2048509/clean/owcpa.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/owcpa.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/owcpa.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/owcpa.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/pack3.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/pack3.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/packq.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/packq.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/params.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/params.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/poly.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/poly.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/poly.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/poly.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/sample.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/sample.c
Executable file → Normal file
@ -25,15 +25,15 @@ void PQCLEAN_NTRUHPS2048509_CLEAN_sample_iid(poly *r, const unsigned char unifor
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void PQCLEAN_NTRUHPS2048509_CLEAN_sample_fixed_type(poly *r, const unsigned char u[NTRU_SAMPLE_FT_BYTES]) {
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// Assumes NTRU_SAMPLE_FT_BYTES = ceil(30*(n-1)/8)
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int32_t s[NTRU_N - 1];
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uint32_t s[NTRU_N - 1];
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int i;
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// Use 30 bits of u per word
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for (i = 0; i < (NTRU_N - 1) / 4; i++) {
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s[4 * i + 0] = (u[15 * i + 0] << 2) + (u[15 * i + 1] << 10) + (u[15 * i + 2] << 18) + (u[15 * i + 3] << 26);
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s[4 * i + 1] = ((u[15 * i + 3] & 0xc0) >> 4) + (u[15 * i + 4] << 4) + (u[15 * i + 5] << 12) + (u[15 * i + 6] << 20) + (u[15 * i + 7] << 28);
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s[4 * i + 2] = ((u[15 * i + 7] & 0xf0) >> 2) + (u[15 * i + 8] << 6) + (u[15 * i + 9] << 14) + (u[15 * i + 10] << 22) + (u[15 * i + 11] << 30);
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s[4 * i + 3] = (u[15 * i + 11] & 0xfc) + (u[15 * i + 12] << 8) + (u[15 * i + 13] << 15) + (u[15 * i + 14] << 24);
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s[4 * i + 0] = (u[15 * i + 0] << 2) + (u[15 * i + 1] << 10) + (u[15 * i + 2] << 18) + ((uint32_t)u[15 * i + 3] << 26);
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s[4 * i + 1] = ((u[15 * i + 3] & 0xc0) >> 4) + (u[15 * i + 4] << 4) + (u[15 * i + 5] << 12) + (u[15 * i + 6] << 20) + ((uint32_t)u[15 * i + 7] << 28);
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s[4 * i + 2] = ((u[15 * i + 7] & 0xf0) >> 2) + (u[15 * i + 8] << 6) + (u[15 * i + 9] << 14) + (u[15 * i + 10] << 22) + ((uint32_t)u[15 * i + 11] << 30);
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s[4 * i + 3] = (u[15 * i + 11] & 0xfc) + (u[15 * i + 12] << 8) + (u[15 * i + 13] << 15) + ((uint32_t)u[15 * i + 14] << 24);
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}
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for (i = 0; i < NTRU_WEIGHT / 2; i++) {
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0
crypto_kem/ntruhps2048509/clean/sample.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/sample.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/verify.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/verify.c
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/verify.h
Executable file → Normal file
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crypto_kem/ntruhps2048509/clean/verify.h
Executable file → Normal file
@ -68,7 +68,7 @@ static void base_w(unsigned int *output, const size_t out_len,
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bits += 8;
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}
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bits -= SPX_WOTS_LOGW;
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output[out] = (total >> bits) & (SPX_WOTS_W - 1);
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output[out] = (unsigned int)((total >> bits) & (SPX_WOTS_W - 1));
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out++;
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}
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}
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@ -73,3 +73,7 @@ clean:
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$(RM) $(DEST_DIR)/test_aes
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$(RM) $(DEST_DIR)/test_fips202
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$(RM) $(DEST_DIR)/test_sha2
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.PHONY: distclean
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distclean:
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$(RM) -r $(DEST_DIR)
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@ -41,24 +41,26 @@ def check_functest(implementation):
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)
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@helpers.skip_windows
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@helpers.skip_windows()
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def check_functest_sanitizers(implementation):
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env = None
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if platform.machine() == 'ppc' and os.environ.get('CC', 'gcc') == 'clang':
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raise unittest.SkipTest("Clang does not support ASAN on ppc")
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elif platform.machine() in ['armv7l', 'aarch64']:
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env = {'ASAN_OPTIONS': 'detect_leaks=0'}
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elif platform.system() == 'Darwin':
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raise unittest.SkipTest('valgrind is not reliable on OSX')
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else:
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print("Supported platform: {}".format(platform.machine()))
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helpers.ensure_available('valgrind')
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helpers.make('clean-scheme', 'functest',
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TYPE=implementation.scheme.type,
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SCHEME=implementation.scheme.name,
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IMPLEMENTATION=implementation.name,
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EXTRAFLAGS='-fsanitize=address,undefined',
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EXTRAFLAGS='-g -fsanitize=address,undefined',
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working_dir=os.path.join('..', 'test'),
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env=env)
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try:
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helpers.run_subprocess(
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[os.path.join('..', 'bin', 'functest_{}_{}{}'.format(
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implementation.scheme.name,
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@ -68,6 +70,9 @@ def check_functest_sanitizers(implementation):
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os.path.join('..', 'bin'),
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env=env,
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)
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except AssertionError as e:
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raise e
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finally:
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# Remove files with ASAN library compiled in
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helpers.make('clean-scheme',
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TYPE=implementation.scheme.type,
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@ -16,6 +16,7 @@ def test_clang_tidy():
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yield check_tidy, implementation
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@helpers.skip_windows()
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def check_tidy(implementation: pqclean.Implementation):
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helpers.ensure_available('clang-tidy')
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cfiles = implementation.cfiles()
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Block a user