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agent: Add more diagnostics to PQC decryption.
* agent/pkdecrypt.c (composite_pgp_kem_decrypt): Use %d for correctness. Add error diagnostics and one extra check. -- GnuPG-bug-id: 7014
This commit is contained in:
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869d1df270
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61717fb0a7
@ -2,3 +2,5 @@
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6a80d6f9206eae2c867c45daa5cd3e7d6c6ad114
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6a80d6f9206eae2c867c45daa5cd3e7d6c6ad114
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# doc: Fix spelling errors found by lintian.
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# doc: Fix spelling errors found by lintian.
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2ed1f68b48db7b5503045386de0500fddf70077e
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2ed1f68b48db7b5503045386de0500fddf70077e
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# indent: Re-indent a function
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869d1df270c0ccc3a9f792167b96d678a932b37e
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@ -177,7 +177,7 @@ reverse_buffer (unsigned char *buffer, unsigned int length)
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First keygrip is for ECC, second keygrip is for PQC. CIPHERTEXT
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First keygrip is for ECC, second keygrip is for PQC. CIPHERTEXT
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should follow the format of:
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should follow the format of:
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(enc-val(pqc(c%u)(e%m)(k%m)(s%m)(fixed-info&)))
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(enc-val(pqc(c%d)(e%m)(k%m)(s%m)(fixed-info&)))
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c: cipher identifier (symmetric)
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c: cipher identifier (symmetric)
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e: ECDH ciphertext
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e: ECDH ciphertext
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k: ML-KEM ciphertext
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k: ML-KEM ciphertext
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@ -252,17 +252,25 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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/* Here assumes no smartcard, but private keys */
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/* Here assumes no smartcard, but private keys */
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gcry_sexp_extract_param (s_cipher, NULL, "%uc/eks&'fixed-info'",
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err = gcry_sexp_extract_param (s_cipher, NULL, "%dc/eks&'fixed-info'",
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&algo, &ecc_ct_mpi, &mlkem_ct_mpi,
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&algo, &ecc_ct_mpi, &mlkem_ct_mpi,
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&encrypted_sessionkey_mpi, &fixed_info, NULL);
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&encrypted_sessionkey_mpi, &fixed_info, NULL);
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if (err)
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if (err)
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goto leave;
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{
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if (opt.verbose)
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log_info ("%s: extracting parameters failed\n", __func__);
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goto leave;
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}
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len = gcry_cipher_get_algo_keylen (algo);
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len = gcry_cipher_get_algo_keylen (algo);
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encrypted_sessionkey = gcry_mpi_get_opaque (encrypted_sessionkey_mpi, &nbits);
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encrypted_sessionkey = gcry_mpi_get_opaque (encrypted_sessionkey_mpi, &nbits);
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encrypted_sessionkey_len = (nbits+7)/8;
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encrypted_sessionkey_len = (nbits+7)/8;
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if (len == 0 || encrypted_sessionkey_len != len + 8)
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if (len == 0 || encrypted_sessionkey_len != len + 8)
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{
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{
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if (opt.verbose)
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log_info ("%s: encrypted session key length %zu"
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" does not match the length for algo %d\n",
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__func__, encrypted_sessionkey_len, algo);
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err = gpg_error (GPG_ERR_INV_DATA);
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err = gpg_error (GPG_ERR_INV_DATA);
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goto leave;
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goto leave;
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}
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}
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@ -271,6 +279,8 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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curve = gcry_sexp_find_token (s_skey0, "curve", 0);
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curve = gcry_sexp_find_token (s_skey0, "curve", 0);
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if (!curve)
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if (!curve)
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{
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{
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if (opt.verbose)
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log_info ("%s: no curve given\n", __func__);
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err = gpg_error (GPG_ERR_BAD_SECKEY);
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err = gpg_error (GPG_ERR_BAD_SECKEY);
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goto leave;
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goto leave;
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}
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}
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@ -278,6 +288,8 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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curve_name = gcry_sexp_nth_data (curve, 1, &len);
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curve_name = gcry_sexp_nth_data (curve, 1, &len);
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if (len != 10 || memcmp (curve_name, "Curve25519", len))
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if (len != 10 || memcmp (curve_name, "Curve25519", len))
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{
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{
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if (opt.verbose)
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log_info ("%s: curve '%s' not supported\n", __func__, curve_name);
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err = gpg_error (GPG_ERR_BAD_SECKEY);
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err = gpg_error (GPG_ERR_BAD_SECKEY);
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goto leave;
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goto leave;
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}
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}
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@ -285,22 +297,36 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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err = gcry_sexp_extract_param (s_skey0, NULL, "/qd",
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err = gcry_sexp_extract_param (s_skey0, NULL, "/qd",
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&ecc_pk_mpi, &ecc_sk_mpi, NULL);
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&ecc_pk_mpi, &ecc_sk_mpi, NULL);
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if (err)
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if (err)
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goto leave;
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{
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if (opt.verbose)
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log_info ("%s: extracting q and d from ECC key failed\n", __func__);
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goto leave;
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}
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p = gcry_mpi_get_opaque (ecc_pk_mpi, &nbits);
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p = gcry_mpi_get_opaque (ecc_pk_mpi, &nbits);
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len = (nbits+7)/8;
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len = (nbits+7)/8;
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if (len != 33)
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{
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if (opt.verbose)
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log_info ("%s: ECC public key length invalid (%zu)\n", __func__, len);
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err = gpg_error (GPG_ERR_INV_DATA);
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goto leave;
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}
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memcpy (ecc_pk, p+1, 32); /* Remove the 0x40 prefix */
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memcpy (ecc_pk, p+1, 32); /* Remove the 0x40 prefix */
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mpi_release (ecc_pk_mpi);
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p = gcry_mpi_get_opaque (ecc_sk_mpi, &nbits);
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p = gcry_mpi_get_opaque (ecc_sk_mpi, &nbits);
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len = (nbits+7)/8;
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len = (nbits+7)/8;
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if (len > 32)
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if (len > 32)
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{
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{
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if (opt.verbose)
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log_info ("%s: ECC secret key too long (%zu)\n", __func__, len);
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err = gpg_error (GPG_ERR_INV_DATA);
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err = gpg_error (GPG_ERR_INV_DATA);
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goto leave;
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goto leave;
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}
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}
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memset (ecc_sk, 0, 32);
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memset (ecc_sk, 0, 32);
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memcpy (ecc_sk + 32 - len, p, len);
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memcpy (ecc_sk + 32 - len, p, len);
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reverse_buffer (ecc_sk, 32);
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reverse_buffer (ecc_sk, 32);
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mpi_release (ecc_pk_mpi);
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mpi_release (ecc_sk_mpi);
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mpi_release (ecc_sk_mpi);
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ecc_pk_mpi = NULL;
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ecc_pk_mpi = NULL;
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ecc_sk_mpi = NULL;
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ecc_sk_mpi = NULL;
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@ -309,6 +335,9 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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ecc_ct_len = (nbits+7)/8;
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ecc_ct_len = (nbits+7)/8;
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if (ecc_ct_len != 32)
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if (ecc_ct_len != 32)
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{
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{
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if (opt.verbose)
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log_info ("%s: ECC cipher text length invalid (%zu)\n",
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__func__, ecc_ct_len);
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err = gpg_error (GPG_ERR_INV_DATA);
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err = gpg_error (GPG_ERR_INV_DATA);
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goto leave;
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goto leave;
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}
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}
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@ -316,19 +345,35 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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err = gcry_kem_decap (GCRY_KEM_RAW_X25519, ecc_sk, 32, ecc_ct, ecc_ct_len,
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err = gcry_kem_decap (GCRY_KEM_RAW_X25519, ecc_sk, 32, ecc_ct, ecc_ct_len,
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ecc_ecdh, 32, NULL, 0);
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ecc_ecdh, 32, NULL, 0);
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if (err)
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if (err)
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goto leave;
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{
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if (opt.verbose)
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log_info ("%s: gcry_kem_decap for ECC failed\n", __func__);
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goto leave;
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}
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err = gnupg_ecc_kem_kdf (ecc_ss, 32, GCRY_MD_SHA3_256,
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err = gnupg_ecc_kem_kdf (ecc_ss, 32, GCRY_MD_SHA3_256,
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ecc_ecdh, 32, ecc_ct, 32, ecc_pk, 32);
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ecc_ecdh, 32, ecc_ct, 32, ecc_pk, 32);
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if (err)
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if (err)
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goto leave;
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{
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if (opt.verbose)
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log_info ("%s: kdf for ECC failed\n", __func__);
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goto leave;
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}
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/* Secondly, PQC part. For now, we assume ML-KEM. */
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/* Secondly, PQC part. For now, we assume ML-KEM. */
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gcry_sexp_extract_param (s_skey1, NULL, "/s", &mlkem_sk_mpi, NULL);
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err = gcry_sexp_extract_param (s_skey1, NULL, "/s", &mlkem_sk_mpi, NULL);
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if (err)
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{
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if (opt.verbose)
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log_info ("%s: extracting s from PQ key failed\n", __func__);
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goto leave;
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}
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mlkem_sk = gcry_mpi_get_opaque (mlkem_sk_mpi, &nbits);
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mlkem_sk = gcry_mpi_get_opaque (mlkem_sk_mpi, &nbits);
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len = (nbits+7)/8;
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len = (nbits+7)/8;
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if (len != GCRY_KEM_MLKEM768_SECKEY_LEN)
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if (len != GCRY_KEM_MLKEM768_SECKEY_LEN)
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{
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{
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if (opt.verbose)
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log_info ("%s: PQ key length invalid (%zu)\n", __func__, len);
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err = gpg_error (GPG_ERR_INV_DATA);
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err = gpg_error (GPG_ERR_INV_DATA);
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goto leave;
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goto leave;
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}
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}
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@ -336,6 +381,8 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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len = (nbits+7)/8;
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len = (nbits+7)/8;
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if (len != GCRY_KEM_MLKEM768_CIPHER_LEN)
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if (len != GCRY_KEM_MLKEM768_CIPHER_LEN)
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{
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{
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if (opt.verbose)
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log_info ("%s: PQ cipher text length invalid (%zu)\n", __func__, len);
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err = gpg_error (GPG_ERR_INV_DATA);
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err = gpg_error (GPG_ERR_INV_DATA);
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goto leave;
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goto leave;
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}
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}
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@ -345,7 +392,11 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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mlkem_ss, GCRY_KEM_MLKEM768_SHARED_LEN,
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mlkem_ss, GCRY_KEM_MLKEM768_SHARED_LEN,
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NULL, 0);
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NULL, 0);
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if (err)
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if (err)
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goto leave;
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{
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if (opt.verbose)
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log_info ("%s: gcry_kem_decap for PQ failed\n", __func__);
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goto leave;
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}
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mpi_release (mlkem_sk_mpi);
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mpi_release (mlkem_sk_mpi);
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mlkem_sk_mpi = NULL;
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mlkem_sk_mpi = NULL;
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@ -358,7 +409,8 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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fixed_info.data, fixed_info.size);
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fixed_info.data, fixed_info.size);
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if (err)
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if (err)
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{
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{
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log_error ("KEM combiner failed: %s\n", gpg_strerror (err));
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if (opt.verbose)
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log_info ("%s: KEM combiner failed\n", __func__);
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goto leave;
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goto leave;
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}
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}
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@ -376,8 +428,9 @@ composite_pgp_kem_decrypt (ctrl_t ctrl, const char *desc_text,
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GCRY_CIPHER_MODE_AESWRAP, 0);
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GCRY_CIPHER_MODE_AESWRAP, 0);
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if (err)
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if (err)
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{
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{
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log_error ("ecdh failed to initialize AESWRAP: %s\n",
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if (opt.verbose)
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gpg_strerror (err));
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log_error ("ecdh failed to initialize AESWRAP: %s\n",
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gpg_strerror (err));
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goto leave;
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goto leave;
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}
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}
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@ -466,9 +519,9 @@ agent_kem_decrypt (ctrl_t ctrl, const char *desc_text, int kemid,
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if (DBG_CRYPTO)
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if (DBG_CRYPTO)
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{
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{
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log_printhex (ctrl->keygrip, 20, "keygrip:");
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log_printhex (ctrl->keygrip, 20, "keygrip0:");
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log_printhex (ctrl->keygrip1, 20, "keygrip1:");
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log_printhex (ctrl->keygrip1, 20, "keygrip1:");
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log_printhex (ciphertext, ciphertextlen, "cipher: ");
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gcry_log_debugsxp ("cipher", s_cipher);
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}
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}
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err = composite_pgp_kem_decrypt (ctrl, desc_text, s_cipher, outbuf);
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err = composite_pgp_kem_decrypt (ctrl, desc_text, s_cipher, outbuf);
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