2 * keyid.c - Routines to calculate key IDs.
4 * Jonathan McDowell <noodles@earth.li>
6 * Copyright 2002 Project Purple
8 * $Id: keyid.c,v 1.9 2004/05/29 02:52:56 noodles Exp $
11 #include <sys/types.h>
14 #include "keystructs.h"
21 * get_keyid - Given a public key returns the keyid.
22 * @publickey: The key to calculate the id for.
24 uint64_t get_keyid(struct openpgp_publickey *publickey)
26 return (get_packetid(publickey->publickey));
30 * get_fingerprint - Given a public key returns the fingerprint.
31 * @publickey: The key to calculate the id for.
32 * @fingerprint: The fingerprint (must be at least 20 bytes of space).
33 * @len: The length of the returned fingerprint.
35 * This function returns the fingerprint for a given public key. As Type 3
36 * fingerprints are 16 bytes and Type 4 are 20 the len field indicates
37 * which we've returned.
39 unsigned char *get_fingerprint(struct openpgp_packet *packet,
40 unsigned char *fingerprint,
46 unsigned char *buff = NULL;
47 size_t modlen, explen;
49 assert(fingerprint != NULL);
54 switch (packet->data[0]) {
60 * MD5 the modulus and exponent.
62 modlen = ((packet->data[8] << 8) +
63 packet->data[9] + 7) >> 3;
64 md5_write(&md5_ctx, &packet->data[10], modlen);
66 explen = ((packet->data[10+modlen] << 8) +
67 packet->data[11+modlen] + 7) >> 3;
68 md5_write(&md5_ctx, &packet->data[12 + modlen], explen);
71 buff = md5_read(&md5_ctx);
74 memcpy(fingerprint, buff, *len);
81 * TODO: Can this be 0x99? Are all public key packets old
82 * format with 2 bytes of length data?
85 sha1_write(&sha_ctx, &c, sizeof(c));
86 c = packet->length >> 8;
87 sha1_write(&sha_ctx, &c, sizeof(c));
88 c = packet->length & 0xFF;
89 sha1_write(&sha_ctx, &c, sizeof(c));
90 sha1_write(&sha_ctx, packet->data,
93 buff = sha1_read(&sha_ctx);
96 memcpy(fingerprint, buff, *len);
99 logthing(LOGTHING_ERROR, "Unknown key type: %d",
108 * get_packetid - Given a PGP packet returns the keyid.
109 * @packet: The packet to calculate the id for.
111 uint64_t get_packetid(struct openpgp_packet *packet)
117 unsigned char buff[20];
119 assert(packet != NULL);
121 switch (packet->data[0]) {
125 * For a type 2 or 3 key the keyid is the last 64 bits of the
126 * public modulus n, which is stored as an MPI from offset 8
129 offset = (packet->data[8] << 8) +
131 offset = ((offset + 7) / 8) + 2;
133 for (keyid = 0, i = 0; i < 8; i++) {
135 keyid += packet->data[offset++];
138 * Check for an RSA key; if not then log but accept anyway.
140 * 2 == RSA Encrypt-Only
143 if (packet->data[7] < 1 || packet->data[7] > 3) {
144 logthing(LOGTHING_NOTICE,
145 "Type 2 or 3 key, but not RSA: %llx (type %d)",
151 get_fingerprint(packet, buff, &length);
153 for (keyid = 0, i = 12; i < 20; i++) {
160 logthing(LOGTHING_ERROR, "Unknown key type: %d",