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ctap2_issu
Author | SHA1 | Date | |
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8955a1ccf4 | ||
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16f07bfc95 | ||
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0945ad264c | ||
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b20ca7c5f7 | ||
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bc73ce8d21 | ||
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2051ddb180 |
34
fido2/ctap.c
34
fido2/ctap.c
@ -438,7 +438,11 @@ static int ctap2_user_presence_test()
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{
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device_set_status(CTAPHID_STATUS_UPNEEDED);
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int ret = ctap_user_presence_test(CTAP2_UP_DELAY_MS);
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if ( ret > 0 )
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if ( ret > 1 )
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{
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return CTAP2_ERR_PROCESSING;
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}
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else if ( ret > 0 )
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{
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return CTAP1_ERR_SUCCESS;
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}
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@ -482,11 +486,19 @@ static int ctap_make_auth_data(struct rpId * rp, CborEncoder * map, uint8_t * au
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int but;
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but = ctap2_user_presence_test(CTAP2_UP_DELAY_MS);
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check_retr(but);
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if (CTAP2_ERR_PROCESSING == but)
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{
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authData->head.flags = (0 << 0); // User presence disabled
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}
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else
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{
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check_retr(but);
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authData->head.flags = (1 << 0); // User presence
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}
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device_set_status(CTAPHID_STATUS_PROCESSING);
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authData->head.flags = (1 << 0); // User presence
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authData->head.flags |= (ctap_is_pin_set() << 2);
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@ -670,7 +682,16 @@ int ctap_authenticate_credential(struct rpId * rp, CTAP_credentialDescriptor * d
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switch(desc->type)
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{
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case PUB_KEY_CRED_PUB_KEY:
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make_auth_tag(desc->credential.id.rpIdHash, desc->credential.id.nonce, desc->credential.id.count, tag);
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crypto_sha256_init();
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crypto_sha256_update(rp->id, rp->size);
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crypto_sha256_final(rpIdHash);
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printf1(TAG_RED,"rpId: %s\r\n", rp->id); dump_hex1(TAG_RED,rp->id, rp->size);
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if (memcmp(desc->credential.id.rpIdHash, rpIdHash, 32) != 0)
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{
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return 0;
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}
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make_auth_tag(rpIdHash, desc->credential.id.nonce, desc->credential.id.count, tag);
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return (memcmp(desc->credential.id.tag, tag, CREDENTIAL_TAG_SIZE) == 0);
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break;
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case PUB_KEY_CRED_CTAP1:
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@ -734,7 +755,7 @@ uint8_t ctap_make_credential(CborEncoder * encoder, uint8_t * request, int lengt
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}
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}
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if (MC.up)
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if (MC.up == 1 || MC.up == 0)
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{
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return CTAP2_ERR_INVALID_OPTION;
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}
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@ -1227,8 +1248,9 @@ uint8_t ctap_get_assertion(CborEncoder * encoder, uint8_t * request, int length)
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else
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#endif
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{
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device_disable_up(GA.up == 0);
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ret = ctap_make_auth_data(&GA.rp, &map, auth_data_buf, &auth_data_buf_sz, NULL);
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device_disable_up(false);
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check_retr(ret);
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((CTAP_authDataHeader *)auth_data_buf)->flags &= ~(1 << 2);
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@ -715,6 +715,7 @@ uint8_t ctap_parse_make_credential(CTAP_makeCredential * MC, CborEncoder * encod
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CborValue it,map;
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memset(MC, 0, sizeof(CTAP_makeCredential));
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MC->up = 0xff;
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ret = cbor_parser_init(request, length, CborValidateCanonicalFormat, &parser, &it);
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check_retr(ret);
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@ -1010,6 +1011,7 @@ uint8_t ctap_parse_get_assertion(CTAP_getAssertion * GA, uint8_t * request, int
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memset(GA, 0, sizeof(CTAP_getAssertion));
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GA->creds = getAssertionState.creds; // Save stack memory
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GA->up = 0xff;
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ret = cbor_parser_init(request, length, CborValidateCanonicalFormat, &parser, &it);
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check_ret(ret);
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150
fido2/ctaphid.c
150
fido2/ctaphid.c
@ -16,6 +16,7 @@
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#include "util.h"
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#include "log.h"
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#include "extensions.h"
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#include "version.h"
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// move custom SHA512 command out,
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// and the following headers too
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@ -729,155 +730,22 @@ uint8_t ctaphid_handle_packet(uint8_t * pkt_raw)
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is_busy = 0;
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break;
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#endif
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#if defined(SOLO_HACKER) && (DEBUG_LEVEL > 0) && (!IS_BOOTLOADER == 1)
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case CTAPHID_PROBE:
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/*
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* Expects CBOR-serialized data of the form
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* {"subcommand": "hash_type", "data": b"the_data"}
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* with hash_type in SHA256, SHA512
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*/
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// some random logging
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printf1(TAG_HID,"CTAPHID_PROBE\n");
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// initialise CTAP response object
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case CTAPHID_GETVERSION:
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printf1(TAG_HID,"CTAPHID_GETVERSION\n");
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ctap_response_init(&ctap_resp);
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// initialise write buffer
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ctaphid_write_buffer_init(&wb);
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wb.cid = cid;
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wb.cmd = CTAPHID_PROBE;
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// prepare parsing (or halt)
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int ret;
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CborParser parser;
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CborValue it, map;
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ret = cbor_parser_init(
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ctap_buffer, (size_t) buffer_len(),
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// strictly speaking, CTAP is not RFC canonical...
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CborValidateCanonicalFormat,
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&parser, &it);
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check_hardcore(ret);
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CborType type = cbor_value_get_type(&it);
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if (type != CborMapType) exit(1);
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ret = cbor_value_enter_container(&it,&map);
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check_hardcore(ret);
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size_t map_length = 0;
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ret = cbor_value_get_map_length(&it, &map_length);
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if (map_length != 2) exit(1);
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// parse subcommand (or halt)
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CborValue val;
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ret = cbor_value_map_find_value(&it, "subcommand", &val);
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check_hardcore(ret);
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if (!cbor_value_is_text_string(&val))
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exit(1);
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int sha_version = 0;
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bool found = false;
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if (!found) {
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ret = cbor_value_text_string_equals(
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&val, "SHA256", &found);
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check_hardcore(ret);
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if (found)
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sha_version = 256;
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}
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if (!found) {
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ret = cbor_value_text_string_equals(
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&val, "SHA512", &found);
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check_hardcore(ret);
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if (found)
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sha_version = 512;
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}
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if (sha_version == 0)
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exit(1);
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// parse data (or halt)
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ret = cbor_value_map_find_value(&it, "data", &val);
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check_hardcore(ret);
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if (!cbor_value_is_byte_string(&val))
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exit(1);
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size_t data_length = 0;
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ret = cbor_value_calculate_string_length(&val, &data_length);
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check_hardcore(ret);
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if (data_length > 6*1024)
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exit(1);
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unsigned char data[6*1024];
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ret = cbor_value_copy_byte_string (
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&val, &data[0], &data_length, &val);
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check_hardcore(ret);
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// execute subcommand
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if (sha_version == 256) {
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// calculate hash
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crypto_sha256_init();
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crypto_sha256_update(data, data_length);
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crypto_sha256_final(ctap_buffer);
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// write output
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wb.bcnt = CF_SHA256_HASHSZ; // 32 bytes
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ctaphid_write(&wb, &ctap_buffer, CF_SHA256_HASHSZ);
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}
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if (sha_version == 512) {
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// calculate hash
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crypto_sha512_init();
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crypto_sha512_update(data, data_length);
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crypto_sha512_final(ctap_buffer);
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// write output
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wb.bcnt = CF_SHA512_HASHSZ; // 64 bytes
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ctaphid_write(&wb, &ctap_buffer, CF_SHA512_HASHSZ);
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}
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// finalize
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wb.cmd = CTAPHID_GETVERSION;
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wb.bcnt = 3;
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ctap_buffer[0] = SOLO_VERSION_MAJ;
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ctap_buffer[1] = SOLO_VERSION_MIN;
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ctap_buffer[2] = SOLO_VERSION_PATCH;
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ctaphid_write(&wb, &ctap_buffer, 3);
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ctaphid_write(&wb, NULL, 0);
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is_busy = 0;
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break;
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/*
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case CTAPHID_SHA256:
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// some random logging
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printf1(TAG_HID,"CTAPHID_SHA256\n");
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// initialise CTAP response object
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ctap_response_init(&ctap_resp);
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// initialise write buffer
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ctaphid_write_buffer_init(&wb);
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wb.cid = cid;
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wb.cmd = CTAPHID_SHA256;
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wb.bcnt = CF_SHA256_HASHSZ; // 32 bytes
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// calculate hash
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crypto_sha256_init();
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crypto_sha256_update(ctap_buffer, buffer_len());
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crypto_sha256_final(ctap_buffer);
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// copy to output
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ctaphid_write(&wb, &ctap_buffer, CF_SHA256_HASHSZ);
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ctaphid_write(&wb, NULL, 0);
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is_busy = 0;
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break;
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case CTAPHID_SHA512:
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// some random logging
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printf1(TAG_HID,"CTAPHID_SHA512\n");
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// initialise CTAP response object
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ctap_response_init(&ctap_resp);
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// initialise write buffer
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ctaphid_write_buffer_init(&wb);
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wb.cid = cid;
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wb.cmd = CTAPHID_SHA512;
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wb.bcnt = CF_SHA512_HASHSZ; // 64 bytes
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// calculate hash
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crypto_sha512_init();
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crypto_sha512_update(ctap_buffer, buffer_len());
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crypto_sha512_final(ctap_buffer);
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// copy to output
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ctaphid_write(&wb, &ctap_buffer, CF_SHA512_HASHSZ);
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ctaphid_write(&wb, NULL, 0);
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is_busy = 0;
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break;
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*/
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#endif
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default:
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printf2(TAG_ERR,"error, unimplemented HID cmd: %02x\r\n", buffer_cmd());
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ctaphid_send_error(cid, CTAP1_ERR_INVALID_COMMAND);
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@ -28,6 +28,7 @@
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#define CTAPHID_ENTERBOOT (TYPE_INIT | 0x51)
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#define CTAPHID_ENTERSTBOOT (TYPE_INIT | 0x52)
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#define CTAPHID_GETRNG (TYPE_INIT | 0x60)
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#define CTAPHID_GETVERSION (TYPE_INIT | 0x61)
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// reserved for debug, not implemented except for HACKER and DEBUG_LEVEl > 0
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#define CTAPHID_PROBE (TYPE_INIT | 0x70)
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@ -53,7 +53,7 @@ void device_set_status(uint32_t status);
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int device_is_button_pressed();
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// Test for user presence
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// Return 1 for user is present, 0 user not present, -1 if cancel is requested.
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// Return 2 for disabled, 1 for user is present, 0 user not present, -1 if cancel is requested.
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int ctap_user_presence_test(uint32_t delay);
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// Generate @num bytes of random numbers to @dest
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@ -106,7 +106,7 @@ void device_set_clock_rate(DEVICE_CLOCK_RATE param);
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#define NFC_IS_AVAILABLE 2
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int device_is_nfc();
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void request_from_nfc(bool request_active);
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void device_disable_up(bool request_active);
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void device_init_button();
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@ -118,9 +118,9 @@ void u2f_request_nfc(uint8_t * header, uint8_t * data, int datalen, CTAP_RESPONS
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if (!header)
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return;
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request_from_nfc(true); // disable presence test
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device_disable_up(true); // disable presence test
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u2f_request_ex((APDU_HEADER *)header, data, datalen, resp);
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request_from_nfc(false); // enable presence test
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device_disable_up(false); // enable presence test
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}
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void u2f_request(struct u2f_request_apdu* req, CTAP_RESPONSE * resp)
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10
pc/device.c
10
pc/device.c
@ -26,6 +26,7 @@
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#define RK_NUM 50
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bool use_udp = true;
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static bool _up_disabled = false;
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struct ResidentKeyStore {
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CTAP_residentKey rks[RK_NUM];
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@ -299,6 +300,10 @@ void ctaphid_write_block(uint8_t * data)
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int ctap_user_presence_test(uint32_t d)
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{
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if (_up_disabled)
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{
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return 2;
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}
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return 1;
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}
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@ -633,10 +638,9 @@ int device_is_nfc()
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return 0;
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}
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void request_from_nfc(bool request_active)
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void device_disable_up(bool disable)
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{
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_up_disabled = disable;
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}
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void device_set_clock_rate(DEVICE_CLOCK_RATE param)
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@ -45,7 +45,7 @@ uint32_t __last_update = 0;
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extern PCD_HandleTypeDef hpcd;
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static int _NFC_status = 0;
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static bool isLowFreq = 0;
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static bool _RequestComeFromNFC = false;
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static bool _up_disabled = false;
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// #define IS_BUTTON_PRESSED() (0 == (LL_GPIO_ReadInputPort(SOLO_BUTTON_PORT) & SOLO_BUTTON_PIN))
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static int is_physical_button_pressed()
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@ -92,8 +92,8 @@ static void edge_detect_touch_button()
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}
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void request_from_nfc(bool request_active) {
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_RequestComeFromNFC = request_active;
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void device_disable_up(bool disable) {
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_up_disabled = disable;
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}
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// Timer6 overflow handler. happens every ~90ms.
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@ -582,11 +582,17 @@ static int wait_for_button_release(uint32_t wait)
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int ctap_user_presence_test(uint32_t up_delay)
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{
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int ret;
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if (device_is_nfc() == NFC_IS_ACTIVE || _RequestComeFromNFC)
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if (device_is_nfc() == NFC_IS_ACTIVE)
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{
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return 1;
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}
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if (_up_disabled)
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{
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return 2;
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}
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#if SKIP_BUTTON_CHECK_WITH_DELAY
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int i=500;
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while(i--)
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@ -731,10 +731,10 @@ void apdu_process(uint8_t buf0, uint8_t *apduptr, APDU_STRUCT *apdu)
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printf1(TAG_NFC, "FIDO2 CTAP message. %d\r\n", timestamp());
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// WTX_on(WTX_TIME_DEFAULT);
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request_from_nfc(true);
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device_disable_up(true);
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ctap_response_init(&ctap_resp);
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status = ctap_request(apdu->data, apdu->lc, &ctap_resp);
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request_from_nfc(false);
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device_disable_up(false);
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// if (!WTX_off())
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// return;
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Reference in New Issue
Block a user