Mercurial > openid
view src/c/openid.c @ 12:c778455fe570
Diffie-Hellman seems to be working
author | Adam Chlipala <adam@chlipala.net> |
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date | Sat, 01 Jan 2011 14:00:52 -0500 |
parents | e637249abfd2 |
children | de04a3fc6b72 |
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#include <string.h> #include <openssl/bio.h> #include <openssl/evp.h> #include <openssl/buffer.h> #include <openssl/sha.h> #include <openssl/hmac.h> #include <openssl/dh.h> #include <curl/curl.h> #include <expat.h> #include <openid.h> #define BUF_MAX 10240 #define BUF_INIT 1024 #define PRIME_LEN 64 #define GENERATOR DH_GENERATOR_5 uw_Basis_string uw_OpenidFfi_endpoint(uw_context ctx, uw_OpenidFfi_discovery d) { return d.endpoint; } uw_Basis_string uw_OpenidFfi_localId(uw_context ctx, uw_OpenidFfi_discovery d) { return d.localId; } uw_unit uw_OpenidFfi_init(uw_context ctx) { curl_global_init(CURL_GLOBAL_ALL); return uw_unit_v; } static CURL *curl(uw_context ctx) { CURL *r; if (!(r = uw_get_global(ctx, "curl"))) { r = curl_easy_init(); if (r) uw_set_global(ctx, "curl", r, curl_easy_cleanup); } return r; } typedef struct { uw_context ctx; uw_OpenidFfi_discovery *d; } endpoint; static void XMLCALL startElement(void *userData, const XML_Char *name, const XML_Char **atts) { endpoint *ep = userData; if (!strcmp(name, "link")) { const XML_Char **attp; int found = 0; for (attp = atts; *attp; attp += 2) { if (!strcmp(attp[0], "rel") && !strcmp(attp[1], "openid2.provider")) { found = 1; break; } } if (found) { for (attp = atts; *attp; attp += 2) { if (!strcmp(attp[0], "href")) { ep->d->endpoint = uw_strdup(ep->ctx, attp[1]); return; } } } } } typedef struct { XML_Parser parser; int any_errors; } curl_discovery_data; static size_t write_discovery_data(void *buffer, size_t size, size_t nmemb, void *userp) { curl_discovery_data *d = userp; if (!XML_Parse(d->parser, buffer, size * nmemb, 0)) d->any_errors = 1; return size * nmemb; } uw_OpenidFfi_discovery *uw_OpenidFfi_discover(uw_context ctx, uw_Basis_string id) { char *s; CURL *c = curl(ctx); curl_discovery_data cd = {}; uw_OpenidFfi_discovery *dy = uw_malloc(ctx, sizeof(uw_OpenidFfi_discovery)); endpoint ep = {ctx, dy}; CURLcode code; dy->endpoint = dy->localId = NULL; if (!strchr(id, ':')) { id = uw_Basis_strcat(ctx, "http://", id); if ((s = strchr(id, '#')) != NULL) *s = 0; } else if ((s = strchr(id, '#')) != NULL) { char *id2 = uw_malloc(ctx, s - id + 1); memcpy(id2, s, s - id); id2[s - id] = 0; id = id2; } cd.parser = XML_ParserCreate(NULL); XML_SetUserData(cd.parser, &ep); uw_push_cleanup(ctx, (void (*)(void *))XML_ParserFree, cd.parser); XML_SetStartElementHandler(cd.parser, startElement); curl_easy_setopt(c, CURLOPT_URL, id); curl_easy_setopt(c, CURLOPT_WRITEFUNCTION, write_discovery_data); curl_easy_setopt(c, CURLOPT_WRITEDATA, &cd); code = curl_easy_perform(c); uw_pop_cleanup(ctx); if (code || !dy->endpoint) return NULL; else return dy; } uw_OpenidFfi_inputs uw_OpenidFfi_createInputs(uw_context ctx) { uw_buffer *r = uw_malloc(ctx, sizeof(uw_buffer)); uw_buffer_init(BUF_MAX, r, BUF_INIT); return r; } static void postify(uw_OpenidFfi_inputs buf, uw_Basis_string s) { for (; *s; ++s) { switch (*s) { case '=': uw_buffer_append(buf, "%3D", 3); break; case '&': uw_buffer_append(buf, "%26", 3); break; default: uw_buffer_append(buf, s, 1); } } } uw_unit uw_OpenidFfi_addInput(uw_context ctx, uw_OpenidFfi_inputs buf, uw_Basis_string key, uw_Basis_string value) { if (uw_buffer_used(buf) > 0) uw_buffer_append(buf, "&", 1); postify(buf, key); uw_buffer_append(buf, "=", 1); postify(buf, value); return uw_unit_v; } uw_Basis_string uw_OpenidFfi_getOutput(uw_context ctx, uw_OpenidFfi_outputs buf, uw_Basis_string key) { char *s = buf->start; for (; *s; s = strchr(strchr(s, 0)+1, 0)+1) if (!strcmp(key, s)) return strchr(s, 0)+1; return NULL; } static size_t write_buffer_data(void *buffer, size_t size, size_t nmemb, void *userp) { uw_buffer *buf = userp; uw_buffer_append(buf, buffer, size * nmemb); return size * nmemb; } const char curl_failure[] = "error\0Error fetching URL"; uw_OpenidFfi_outputs uw_OpenidFfi_direct(uw_context ctx, uw_Basis_string url, uw_OpenidFfi_inputs inps) { uw_buffer *buf = uw_malloc(ctx, sizeof(uw_buffer)); CURL *c = curl(ctx); CURLcode code; uw_buffer_init(BUF_MAX, buf, BUF_INIT); uw_buffer_append(inps, "", 1); curl_easy_setopt(c, CURLOPT_URL, url); curl_easy_setopt(c, CURLOPT_POSTFIELDS, inps->start); curl_easy_setopt(c, CURLOPT_WRITEFUNCTION, write_buffer_data); curl_easy_setopt(c, CURLOPT_WRITEDATA, buf); code = curl_easy_perform(c); uw_buffer_append(buf, "", 1); if (code) { uw_buffer_reset(buf); uw_buffer_append(buf, curl_failure, sizeof curl_failure); } else { char *s; s = buf->start; while (*s) { char *colon = strchr(s, ':'), *newline; if (!colon) { *s = 0; break; } *colon = 0; newline = strchr(colon+1, '\n'); if (!newline) break; *newline = 0; s = newline+1; } } return buf; } static uw_Basis_string deurl(uw_context ctx, uw_Basis_string s) { uw_Basis_string r = uw_malloc(ctx, strlen(s)), s2 = r; for (; *s; ++s) { if (s[0] == '%' && s[1] && s[2]) { unsigned u; sscanf(s+1, "%02x", &u); *s2++ = u; s += 2; } else *s2++ = *s; } *s2 = 0; return r; } uw_OpenidFfi_outputs uw_OpenidFfi_indirect(uw_context ctx, uw_Basis_string fields) { uw_OpenidFfi_outputs b = malloc(sizeof(uw_buffer)); uw_buffer_init(BUF_MAX, b, BUF_INIT); fields = uw_strdup(ctx, fields); while (*fields) { char *equal = strchr(fields, '='), *and, *s; if (!equal) break; *equal = 0; s = deurl(ctx, fields); uw_buffer_append(b, s, strlen(s)); uw_buffer_append(b, "", 1); and = strchr(equal+1, '&'); if (and) { *and = 0; fields = and+1; } else fields = and = strchr(equal+1, 0); s = deurl(ctx, equal+1); uw_buffer_append(b, s, strlen(s)); uw_buffer_append(b, "", 1); } uw_buffer_append(b, "", 1); return b; } static uw_Basis_string base64(uw_context ctx, unsigned char *input, int length) { BIO *bmem, *b64; b64 = BIO_new(BIO_f_base64()); BIO_set_flags(b64, BIO_FLAGS_BASE64_NO_NL); bmem = BIO_new(BIO_s_mem()); BIO_push(b64, bmem); BIO_write(b64, input, length); (void)BIO_flush(b64); int len = BIO_ctrl_pending(bmem); char *buff = uw_malloc(ctx, len+1); BIO_read(bmem, buff, len); buff[len] = 0; BIO_free_all(b64); return buff; } static int unbase64(unsigned char *input, int length, unsigned char *buffer, int bufferLength) { BIO *b64, *bmem; int n; b64 = BIO_new(BIO_f_base64()); BIO_set_flags(b64, BIO_FLAGS_BASE64_NO_NL); bmem = BIO_new_mem_buf(input, length); BIO_push(b64, bmem); n = BIO_read(b64, buffer, bufferLength); BIO_free_all(bmem); return n; } uw_Basis_string uw_OpenidFfi_hmac_sha1(uw_context ctx, uw_Basis_string key, uw_Basis_string data) { unsigned char keyBin[SHA_DIGEST_LENGTH], out[EVP_MAX_MD_SIZE]; unsigned outLen; unbase64((unsigned char *)key, strlen(key), keyBin, sizeof keyBin); HMAC(EVP_sha1(), keyBin, sizeof keyBin, (unsigned char *)data, strlen(data), out, &outLen); return base64(ctx, out, outLen); } uw_Basis_string uw_OpenidFfi_hmac_sha256(uw_context ctx, uw_Basis_string key, uw_Basis_string data) { unsigned char keyBin[SHA256_DIGEST_LENGTH], out[EVP_MAX_MD_SIZE]; unsigned outLen; unbase64((unsigned char *)key, strlen(key), keyBin, sizeof keyBin); HMAC(EVP_sha256(), keyBin, sizeof keyBin, (unsigned char *)data, strlen(data), out, &outLen); return base64(ctx, out, outLen); } static uw_Basis_string btwoc(uw_context ctx, const BIGNUM *n) { int len = BN_num_bytes(n), i; unsigned char bytes[len+1]; bytes[0] = 0; BN_bn2bin(n, bytes+1); for (i = 1; i <= len; ++i) if (bytes[i]) { if (bytes[i] & 0x80) --i; break; } if (i > len) i = len; return base64(ctx, bytes+i, len+1-i); } static BIGNUM *unbtwoc(uw_context ctx, uw_Basis_string s) { unsigned char bytes[1024]; int len; len = unbase64((unsigned char *)s, strlen(s), bytes, sizeof bytes); return BN_bin2bn(bytes, len, NULL); } uw_Basis_string uw_OpenidFfi_modulus(uw_context ctx, uw_OpenidFfi_dh dh) { return btwoc(ctx, dh->p); } uw_Basis_string uw_OpenidFfi_generator(uw_context ctx, uw_OpenidFfi_dh dh) { return btwoc(ctx, dh->g); } uw_Basis_string uw_OpenidFfi_public(uw_context ctx, uw_OpenidFfi_dh dh) { return btwoc(ctx, dh->pub_key); } static void free_DH(void *data, int will_retry) { DH *dh = data; DH_free(dh); } uw_OpenidFfi_dh uw_OpenidFfi_generate(uw_context ctx) { DH *dh = DH_new(); uw_register_transactional(ctx, dh, NULL, NULL, free_DH); DH_generate_parameters_ex(dh, PRIME_LEN, GENERATOR, NULL); if (DH_generate_key(dh) != 1) uw_error(ctx, FATAL, "Diffie-Hellman key generation failed"); return dh; } uw_Basis_string uw_OpenidFfi_compute(uw_context ctx, uw_OpenidFfi_dh dh, uw_Basis_string server_pub) { BIGNUM *bn = unbtwoc(ctx, server_pub); unsigned char secret[DH_size(dh)+1], *secretP; int size; uw_push_cleanup(ctx, (void (*)(void *))BN_free, bn); size = DH_compute_key(secret+1, bn, dh); if (size == -1) uw_error(ctx, FATAL, "Diffie-Hellman key computation failed"); uw_pop_cleanup(ctx); if (size > 0 && (secret[1] & 0x80)) { secret[0] = 0; secretP = secret; ++size; } else secretP = secret+1; return base64(ctx, secretP, size); } uw_Basis_string uw_OpenidFfi_sha1(uw_context ctx, uw_Basis_string data) { unsigned char dataBin[128], out[EVP_MAX_MD_SIZE]; int len; len = unbase64((unsigned char *)data, strlen(data), dataBin, sizeof dataBin); SHA1(dataBin, len, out); return base64(ctx, out, SHA_DIGEST_LENGTH); } uw_Basis_string uw_OpenidFfi_sha256(uw_context ctx, uw_Basis_string data) { unsigned char dataBin[128], out[EVP_MAX_MD_SIZE]; int len; len = unbase64((unsigned char *)data, strlen(data), dataBin, sizeof dataBin); SHA256(dataBin, len, out); return base64(ctx, out, SHA256_DIGEST_LENGTH); } uw_Basis_string uw_OpenidFfi_xor(uw_context ctx, uw_Basis_string s1, uw_Basis_string s2) { unsigned char buf1[128], buf2[128], bufO[128]; int len1, len2, i; len1 = unbase64((unsigned char *)s1, strlen(s1), buf1, sizeof buf1); len2 = unbase64((unsigned char *)s2, strlen(s2), buf2, sizeof buf2); for (i = 0; i < len1; ++i) bufO[i] = buf1[i] ^ buf2[i % len2]; return base64(ctx, bufO, len1); }