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https://github.com/polhenarejos/pico-openpgp.git
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f2fe6dd5c2
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f2fe6dd5c2 | ||
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1a24a9ed1b | ||
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b62573a6bd | ||
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58a9d9cf97 | ||
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c39b87019e |
@@ -3,6 +3,8 @@ This project aims at transforming your Raspberry Pico or ESP32 microcontroller i
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OpenPGP cards are used to manage PGP keys and do cryptographic operations, such as keypair generation, signing and asymmetric deciphering. Pico OpenPGP follows the [**OpenPGP 3.4.1** specifications](https://gnupg.org/ftp/specs/OpenPGP-smart-card-application-3.4.pdf "**OpenPGP 3.4.1** specifications"), available at [GnuPG](http://gnupg.org "GnuPG").
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If you are looking for a OpenPGP + Fido, see: https://github.com/polhenarejos/pico-fido2
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## Features
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Pico OpenPGP has implemented the following features:
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@@ -127,7 +127,7 @@ int cmd_keypair_gen() {
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}
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else if (P1(apdu) == 0x81) { //read
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file_t *ef = search_by_fid(fid + 3, NULL, SPECIFY_EF);
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if (!ef || !ef->data) {
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if (!file_has_data(ef)) {
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return SW_REFERENCE_NOT_FOUND();
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}
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res_APDU_size = file_get_size(ef);
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@@ -16,6 +16,7 @@
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*/
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#include "openpgp.h"
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#include "otp.h"
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int cmd_reset_retry() {
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if (P2(apdu) != 0x81) {
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@@ -44,6 +45,8 @@ int cmd_reset_retry() {
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newpin_len = apdu.nc - pin_len;
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has_rc = true;
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hash_multi(apdu.data, pin_len, session_rc);
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has_pw1 = has_pw3 = false;
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isUserAuthenticated = false;
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}
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else if (P1(apdu) == 0x2) {
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if (!has_pw3) {
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@@ -59,6 +62,11 @@ int cmd_reset_retry() {
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if (!tf) {
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return SW_REFERENCE_NOT_FOUND();
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}
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if (otp_key_1) {
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for (int i = 0; i < 32; i++) {
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dek[IV_SIZE + i] ^= otp_key_1[i];
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}
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}
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uint8_t def[IV_SIZE + 32 + 32 + 32 + 32];
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memcpy(def, file_get_data(tf), file_get_size(tf));
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hash_multi(apdu.data + (apdu.nc - newpin_len), newpin_len, session_pw1);
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@@ -74,6 +82,9 @@ int cmd_reset_retry() {
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return SW_MEMORY_FAILURE();
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}
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low_flash_available();
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if ((r = load_dek()) != PICOKEY_OK) {
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return SW_EXEC_ERROR();
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}
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return SW_OK();
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}
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return SW_INCORRECT_P1P2();
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@@ -28,12 +28,7 @@ int parse_do(uint16_t *fids, int mode) {
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data_len = ((int (*)(const file_t *, int))(ef->data))((const file_t *) ef, mode);
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}
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else {
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if (ef->data) {
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data_len = file_get_size(ef);
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}
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else {
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data_len = 0;
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}
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if (mode == 1) {
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if (fids[0] > 1 && res_APDU_size > 0) {
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if (fids[i + 1] < 0x0100) {
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@@ -45,7 +40,7 @@ int parse_do(uint16_t *fids, int mode) {
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}
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res_APDU_size += format_tlv_len(data_len, res_APDU + res_APDU_size);
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}
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if (ef->data) {
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if (file_has_data(ef)) {
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memcpy(res_APDU + res_APDU_size, file_get_data(ef), data_len);
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}
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res_APDU_size += data_len;
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@@ -174,20 +169,6 @@ int parse_pw_status(const file_t *f, int mode) {
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return res_APDU_size - init_len;
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}
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#define ALGO_RSA_1K 0
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#define ALGO_RSA_2k 1
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#define ALGO_RSA_3K 2
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#define ALGO_RSA_4K 3
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#define ALGO_X448 4
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#define ALGO_P256K1 5
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#define ALGO_P256R1 6
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#define ALGO_P384R1 7
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#define ALGO_P521R1 8
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#define ALGO_BP256R1 9
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#define ALGO_BP384R1 10
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#define ALGO_BP512R1 11
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#define ALGO_CV22519 12
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const uint8_t algorithm_attr_x448[] = {
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4,
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ALGO_ECDH,
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@@ -275,12 +256,20 @@ const uint8_t algorithm_attr_cv25519[] = {
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0x2b, 0x06, 0x01, 0x04, 0x01, 0x97, 0x55, 0x01, 0x05, 0x01
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};
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#ifdef MBEDTLS_EDDSA_C
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const uint8_t algorithm_attr_ed25519[] = {
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10,
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ALGO_EDDSA,
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0x2b, 0x06, 0x01, 0x04, 0x01, 0xda, 0x47, 0x0f, 0x01
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};
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const uint8_t algorithm_attr_ed448[] = {
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4,
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ALGO_EDDSA,
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0x2b, 0x65, 0x71
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};
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#endif
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int parse_algo(const uint8_t *algo, uint16_t tag) {
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res_APDU[res_APDU_size++] = tag & 0xff;
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memcpy(res_APDU + res_APDU_size, algo, algo[0] + 1);
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@@ -306,7 +295,10 @@ int parse_algoinfo(const file_t *f, int mode) {
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datalen += parse_algo(algorithm_attr_bp256r1, EF_ALGO_SIG);
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datalen += parse_algo(algorithm_attr_bp384r1, EF_ALGO_SIG);
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datalen += parse_algo(algorithm_attr_bp512r1, EF_ALGO_SIG);
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#ifdef MBEDTLS_EDDSA_C
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datalen += parse_algo(algorithm_attr_ed25519, EF_ALGO_SIG);
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datalen += parse_algo(algorithm_attr_ed448, EF_ALGO_SIG);
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#endif
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datalen += parse_algo(algorithm_attr_rsa1k, EF_ALGO_DEC);
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datalen += parse_algo(algorithm_attr_rsa2k, EF_ALGO_DEC);
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@@ -333,7 +325,10 @@ int parse_algoinfo(const file_t *f, int mode) {
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datalen += parse_algo(algorithm_attr_bp256r1, EF_ALGO_AUT);
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datalen += parse_algo(algorithm_attr_bp384r1, EF_ALGO_AUT);
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datalen += parse_algo(algorithm_attr_bp512r1, EF_ALGO_AUT);
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#ifdef MBEDTLS_EDDSA_C
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datalen += parse_algo(algorithm_attr_ed25519, EF_ALGO_AUT);
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datalen += parse_algo(algorithm_attr_ed448, EF_ALGO_AUT);
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#endif
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uint16_t lpdif = res_APDU + res_APDU_size - lp - 2;
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*lp++ = lpdif >> 8;
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*lp++ = lpdif & 0xff;
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@@ -26,4 +26,7 @@ extern const uint8_t algorithm_attr_cv25519[];
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extern const uint8_t algorithm_attr_x448[];
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extern const uint8_t algorithm_attr_rsa2k[];
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extern const uint8_t algorithm_attr_rsa4096[];
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#ifdef MBEDTLS_EDDSA_C
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extern const uint8_t algorithm_attr_ed25519[];
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extern const uint8_t algorithm_attr_ed448[];
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#endif
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@@ -574,7 +574,7 @@ int load_private_key_ecdsa(mbedtls_ecp_keypair *ctx, file_t *fkey, bool use_dek)
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}
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mbedtls_platform_zeroize(kdata, sizeof(kdata));
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#ifdef MBEDTLS_EDDSA_C
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if (ctx->grp.id == MBEDTLS_ECP_DP_ED25519) {
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if (ctx->grp.id == MBEDTLS_ECP_DP_ED25519 || ctx->grp.id == MBEDTLS_ECP_DP_ED448) {
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r = mbedtls_ecp_point_edwards(&ctx->grp, &ctx->Q, &ctx->d, random_gen, NULL);
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}
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else
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@@ -630,6 +630,9 @@ mbedtls_ecp_group_id get_ec_group_id_from_attr(const uint8_t *algo, size_t algo_
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else if (memcmp(algorithm_attr_ed25519 + 2, algo, algo_len) == 0) {
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return MBEDTLS_ECP_DP_ED25519;
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}
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else if (memcmp(algorithm_attr_ed448 + 2, algo, algo_len) == 0) {
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return MBEDTLS_ECP_DP_ED448;
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}
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#endif
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return MBEDTLS_ECP_DP_NONE;
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}
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@@ -750,8 +753,8 @@ int ecdsa_sign(mbedtls_ecp_keypair *ctx,
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int r = 0;
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#ifdef MBEDTLS_EDDSA_C
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if (ctx->grp.id == MBEDTLS_ECP_DP_ED25519) {
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r = mbedtls_eddsa_write_signature(ctx, data, data_len, out, 64, out_len, MBEDTLS_EDDSA_PURE, NULL, 0, random_gen, NULL);
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if (ctx->grp.id == MBEDTLS_ECP_DP_ED25519 || ctx->grp.id == MBEDTLS_ECP_DP_ED448) {
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r = mbedtls_eddsa_write_signature(ctx, data, data_len, out, 114, out_len, MBEDTLS_EDDSA_PURE, NULL, 0, random_gen, NULL);
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}
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else
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#endif
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