http.c 6.4 KB

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  1. /* snac - A simple, minimalistic ActivityPub instance */
  2. /* copyright (c) 2022 - 2023 grunfink / MIT license */
  3. #include "xs.h"
  4. #include "xs_io.h"
  5. #include "xs_openssl.h"
  6. #include "xs_curl.h"
  7. #include "xs_time.h"
  8. #include "xs_json.h"
  9. #include "snac.h"
  10. xs_dict *http_signed_request_raw(const char *keyid, const char *seckey,
  11. const char *method, const char *url,
  12. xs_dict *headers,
  13. const char *body, int b_size,
  14. int *status, xs_str **payload, int *p_size,
  15. int timeout)
  16. /* does a signed HTTP request */
  17. {
  18. xs *l1 = NULL;
  19. xs *date = NULL;
  20. xs *digest = NULL;
  21. xs *s64 = NULL;
  22. xs *signature = NULL;
  23. xs *hdrs = NULL;
  24. char *host;
  25. char *target;
  26. char *k, *v;
  27. xs_dict *response;
  28. date = xs_str_utctime(0, "%a, %d %b %Y %H:%M:%S GMT");
  29. {
  30. xs *s = xs_replace_n(url, "https:/" "/", "", 1);
  31. l1 = xs_split_n(s, "/", 1);
  32. }
  33. /* strip the url to get host and target */
  34. host = xs_list_get(l1, 0);
  35. if (xs_list_len(l1) == 2)
  36. target = xs_list_get(l1, 1);
  37. else
  38. target = "";
  39. /* digest */
  40. {
  41. xs *s;
  42. if (body != NULL)
  43. s = xs_sha256_base64(body, b_size);
  44. else
  45. s = xs_sha256_base64("", 0);
  46. digest = xs_fmt("SHA-256=%s", s);
  47. }
  48. {
  49. /* build the string to be signed */
  50. xs *s = xs_fmt("(request-target): %s /%s\n"
  51. "host: %s\n"
  52. "digest: %s\n"
  53. "date: %s",
  54. strcmp(method, "POST") == 0 ? "post" : "get",
  55. target, host, digest, date);
  56. s64 = xs_evp_sign(seckey, s, strlen(s));
  57. }
  58. /* build now the signature header */
  59. signature = xs_fmt("keyId=\"%s#main-key\","
  60. "algorithm=\"rsa-sha256\","
  61. "headers=\"(request-target) host digest date\","
  62. "signature=\"%s\"",
  63. keyid, s64);
  64. /* transfer the original headers */
  65. hdrs = xs_dict_new();
  66. while (xs_dict_iter(&headers, &k, &v))
  67. hdrs = xs_dict_append(hdrs, k, v);
  68. /* add the new headers */
  69. if (strcmp(method, "POST") == 0)
  70. hdrs = xs_dict_append(hdrs, "content-type", "application/activity+json");
  71. else
  72. hdrs = xs_dict_append(hdrs, "accept", "application/activity+json");
  73. xs *user_agent = xs_fmt("%s; +%s/", USER_AGENT, srv_baseurl);
  74. hdrs = xs_dict_append(hdrs, "date", date);
  75. hdrs = xs_dict_append(hdrs, "signature", signature);
  76. hdrs = xs_dict_append(hdrs, "digest", digest);
  77. hdrs = xs_dict_append(hdrs, "host", host);
  78. hdrs = xs_dict_append(hdrs, "user-agent", user_agent);
  79. response = xs_http_request(method, url, hdrs,
  80. body, b_size, status, payload, p_size, timeout);
  81. srv_archive("SEND", url, hdrs, body, b_size, *status, response, *payload, *p_size);
  82. return response;
  83. }
  84. xs_dict *http_signed_request(snac *snac, const char *method, const char *url,
  85. xs_dict *headers,
  86. const char *body, int b_size,
  87. int *status, xs_str **payload, int *p_size,
  88. int timeout)
  89. /* does a signed HTTP request */
  90. {
  91. char *seckey = xs_dict_get(snac->key, "secret");
  92. xs_dict *response;
  93. response = http_signed_request_raw(snac->actor, seckey, method, url,
  94. headers, body, b_size, status, payload, p_size, timeout);
  95. return response;
  96. }
  97. int check_signature(snac *snac, xs_dict *req, xs_str **err)
  98. /* check the signature */
  99. {
  100. char *sig_hdr = xs_dict_get(req, "signature");
  101. xs *keyId = NULL;
  102. xs *headers = NULL;
  103. xs *signature = NULL;
  104. xs *created = NULL;
  105. xs *expires = NULL;
  106. char *pubkey;
  107. char *p;
  108. {
  109. /* extract the values */
  110. xs *l = xs_split(sig_hdr, ",");
  111. xs_list *p;
  112. xs_val *v;
  113. p = l;
  114. while (xs_list_iter(&p, &v)) {
  115. if (xs_startswith(v, "keyId"))
  116. keyId = xs_crop_i(xs_dup(v), 7, -1);
  117. else
  118. if (xs_startswith(v, "headers"))
  119. headers = xs_crop_i(xs_dup(v), 9, -1);
  120. else
  121. if (xs_startswith(v, "signature"))
  122. signature = xs_crop_i(xs_dup(v), 11, -1);
  123. else
  124. if (xs_startswith(v, "created"))
  125. created = xs_crop_i(xs_dup(v), 9, -1);
  126. else
  127. if (xs_startswith(v, "expires"))
  128. expires = xs_crop_i(xs_dup(v), 9, -1);
  129. }
  130. }
  131. if (keyId == NULL || headers == NULL || signature == NULL) {
  132. *err = xs_fmt("bad signature header");
  133. return 0;
  134. }
  135. /* strip the # from the keyId */
  136. if ((p = strchr(keyId, '#')) != NULL)
  137. *p = '\0';
  138. xs *actor = NULL;
  139. if (!valid_status(actor_request(snac, keyId, &actor))) {
  140. *err = xs_fmt("unknown actor %s", keyId);
  141. return 0;
  142. }
  143. if ((p = xs_dict_get(actor, "publicKey")) == NULL ||
  144. ((pubkey = xs_dict_get(p, "publicKeyPem")) == NULL)) {
  145. *err = xs_fmt("cannot get pubkey from %s", keyId);
  146. return 0;
  147. }
  148. /* now build the string to be signed */
  149. xs *sig_str = xs_str_new(NULL);
  150. {
  151. xs *l = xs_split(headers, " ");
  152. xs_list *p;
  153. xs_val *v;
  154. p = l;
  155. while (xs_list_iter(&p, &v)) {
  156. char *hc;
  157. xs *ss = NULL;
  158. if (*sig_str != '\0')
  159. sig_str = xs_str_cat(sig_str, "\n");
  160. if (strcmp(v, "(request-target)") == 0) {
  161. ss = xs_fmt("%s: post %s", v, xs_dict_get(req, "path"));
  162. }
  163. else
  164. if (strcmp(v, "(created)") == 0) {
  165. ss = xs_fmt("%s: %s", v, created);
  166. }
  167. else
  168. if (strcmp(v, "(expires)") == 0) {
  169. ss = xs_fmt("%s: %s", v, expires);
  170. }
  171. else {
  172. /* add the header */
  173. if ((hc = xs_dict_get(req, v)) == NULL) {
  174. *err = xs_fmt("cannot find header '%s'", v);
  175. return 0;
  176. }
  177. ss = xs_fmt("%s: %s", v, hc);
  178. }
  179. sig_str = xs_str_cat(sig_str, ss);
  180. }
  181. }
  182. if (xs_evp_verify(pubkey, sig_str, strlen(sig_str), signature) != 1) {
  183. *err = xs_fmt("RSA verify error %s", keyId);
  184. return 0;
  185. }
  186. return 1;
  187. }