xs_httpd.h 6.5 KB

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  1. /* copyright (c) 2022 grunfink - MIT license */
  2. #ifndef _XS_HTTPD_H
  3. #define _XS_HTTPD_H
  4. d_char *xs_url_dec(char *str);
  5. d_char *xs_url_vars(char *str);
  6. d_char *xs_httpd_request(FILE *f, d_char **payload, int *p_size);
  7. void xs_httpd_response(FILE *f, int status, d_char *headers, char *body, int b_size);
  8. #ifdef XS_IMPLEMENTATION
  9. d_char *xs_url_dec(char *str)
  10. /* decodes an URL */
  11. {
  12. d_char *s = xs_str_new(NULL);
  13. while (*str) {
  14. if (*str == '%') {
  15. int i;
  16. if (sscanf(str + 1, "%02x", &i) == 1) {
  17. unsigned char uc = i;
  18. s = xs_append_m(s, (char *)&uc, 1);
  19. str += 2;
  20. }
  21. }
  22. else
  23. if (*str == '+')
  24. s = xs_append_m(s, " ", 1);
  25. else
  26. s = xs_append_m(s, str, 1);
  27. str++;
  28. }
  29. return s;
  30. }
  31. d_char *xs_url_vars(char *str)
  32. /* parse url variables */
  33. {
  34. d_char *vars;
  35. vars = xs_dict_new();
  36. if (str != NULL) {
  37. char *v, *l;
  38. xs *args;
  39. /* split by arguments */
  40. args = xs_split(str, "&");
  41. l = args;
  42. while (xs_list_iter(&l, &v)) {
  43. xs *kv = xs_split_n(v, "=", 2);
  44. if (xs_list_len(kv) == 2)
  45. vars = xs_dict_append(vars,
  46. xs_list_get(kv, 0), xs_list_get(kv, 1));
  47. }
  48. }
  49. return vars;
  50. }
  51. void *memmem(const void *, size_t, const void *, size_t);
  52. d_char *_xs_multipart_form_data(char *payload, int p_size, char *header)
  53. /* parses a multipart/form-data payload */
  54. {
  55. d_char *p_vars = xs_dict_new();
  56. xs *boundary = NULL;
  57. int offset = 0;
  58. int bsz;
  59. char *p;
  60. /* build the boundary string */
  61. {
  62. xs *l1 = xs_split(header, "=");
  63. if (xs_list_len(l1) != 2)
  64. return NULL;
  65. boundary = xs_fmt("--%s", xs_list_get(l1, 1));
  66. }
  67. bsz = strlen(boundary);
  68. /* iterate searching the boundaries */
  69. while ((p = memmem(payload + offset, p_size - offset, boundary, bsz)) != NULL) {
  70. xs *s1 = NULL;
  71. xs *l1 = NULL;
  72. char *vn = NULL;
  73. char *fn = NULL;
  74. char *q;
  75. int po, ps;
  76. /* final boundary? */
  77. p += bsz;
  78. if (p[0] == '-' && p[1] == '-')
  79. break;
  80. /* skip the \r\n */
  81. p += 2;
  82. /* now on a Content-Disposition... line; get it */
  83. q = strchr(p, '\r');
  84. s1 = xs_realloc(NULL, q - p + 1);
  85. memcpy(s1, p, q - p);
  86. s1[q - p] = '\0';
  87. /* move on (over a \r\n) */
  88. p = q;
  89. /* split by " like a primitive man */
  90. l1 = xs_split(s1, "\"");
  91. /* get the variable name */
  92. vn = xs_list_get(l1, 1);
  93. /* is it an attached file? */
  94. if (xs_list_len(l1) >= 4 && strcmp(xs_list_get(l1, 2), "; filename=") == 0) {
  95. /* get the file name */
  96. fn = xs_list_get(l1, 3);
  97. }
  98. /* find the start of the part content */
  99. if ((p = memmem(p, p_size - offset, "\r\n\r\n", 4)) == NULL)
  100. break;
  101. p += 4;
  102. /* find the next boundary */
  103. if ((q = memmem(p, p_size - offset, boundary, bsz)) == NULL)
  104. break;
  105. po = p - payload;
  106. ps = q - p - 2; /* - 2 because the final \r\n */
  107. /* is it a filename? */
  108. if (fn != NULL) {
  109. /* p_var value is a list */
  110. xs *l1 = xs_list_new();
  111. xs *vpo = xs_number_new(po);
  112. xs *vps = xs_number_new(ps);
  113. l1 = xs_list_append(l1, fn);
  114. l1 = xs_list_append(l1, vpo);
  115. l1 = xs_list_append(l1, vps);
  116. p_vars = xs_dict_append(p_vars, vn, l1);
  117. }
  118. else {
  119. /* regular variable; just copy */
  120. xs *vc = xs_realloc(NULL, ps + 1);
  121. memcpy(vc, payload + po, ps);
  122. vc[ps] = '\0';
  123. p_vars = xs_dict_append(p_vars, vn, vc);
  124. }
  125. /* move on */
  126. offset = q - payload;
  127. }
  128. return p_vars;
  129. }
  130. d_char *xs_httpd_request(FILE *f, d_char **payload, int *p_size)
  131. /* processes an httpd connection */
  132. {
  133. d_char *req = NULL;
  134. xs *q_vars = NULL;
  135. xs *p_vars = NULL;
  136. xs *l1, *l2;
  137. char *v;
  138. xs_socket_timeout(fileno(f), 2.0, 0.0);
  139. /* read the first line and split it */
  140. l1 = xs_strip(xs_readline(f));
  141. l2 = xs_split(l1, " ");
  142. if (xs_list_len(l2) != 3) {
  143. /* error or timeout */
  144. return NULL;
  145. }
  146. req = xs_dict_new();
  147. req = xs_dict_append(req, "method", xs_list_get(l2, 0));
  148. req = xs_dict_append(req, "proto", xs_list_get(l2, 2));
  149. {
  150. /* split the path with its optional variables */
  151. xs *udp = xs_url_dec(xs_list_get(l2, 1));
  152. xs *pnv = xs_split_n(udp, "?", 1);
  153. /* store the path */
  154. req = xs_dict_append(req, "path", xs_list_get(pnv, 0));
  155. /* get the variables */
  156. q_vars = xs_url_vars(xs_list_get(pnv, 1));
  157. }
  158. /* read the headers */
  159. for (;;) {
  160. xs *l, *p = NULL;
  161. l = xs_strip(xs_readline(f));
  162. /* done with the header? */
  163. if (strcmp(l, "") == 0)
  164. break;
  165. /* split header and content */
  166. p = xs_split_n(l, ": ", 1);
  167. if (xs_list_len(p) == 2)
  168. req = xs_dict_append(req, xs_tolower(xs_list_get(p, 0)), xs_list_get(p, 1));
  169. }
  170. xs_socket_timeout(fileno(f), 5.0, 0.0);
  171. if ((v = xs_dict_get(req, "content-length")) != NULL) {
  172. /* if it has a payload, load it */
  173. *p_size = atoi(v);
  174. *payload = xs_read(f, p_size);
  175. }
  176. v = xs_dict_get(req, "content-type");
  177. if (v && strcmp(v, "application/x-www-form-urlencoded") == 0) {
  178. xs *upl = xs_url_dec(*payload);
  179. p_vars = xs_url_vars(upl);
  180. }
  181. else
  182. if (v && xs_startswith(v, "multipart/form-data")) {
  183. p_vars = _xs_multipart_form_data(*payload, *p_size, v);
  184. }
  185. else
  186. p_vars = xs_dict_new();
  187. req = xs_dict_append(req, "q_vars", q_vars);
  188. req = xs_dict_append(req, "p_vars", p_vars);
  189. if (errno)
  190. req = xs_free(req);
  191. return req;
  192. }
  193. void xs_httpd_response(FILE *f, int status, d_char *headers, char *body, int b_size)
  194. /* sends an httpd response */
  195. {
  196. xs *proto;
  197. char *p, *k, *v;
  198. proto = xs_fmt("HTTP/1.1 %d", status);
  199. fprintf(f, "%s\r\n", proto);
  200. p = headers;
  201. while (xs_dict_iter(&p, &k, &v)) {
  202. fprintf(f, "%s: %s\r\n", k, v);
  203. }
  204. if (b_size != 0)
  205. fprintf(f, "content-length: %d\r\n", b_size);
  206. fprintf(f, "\r\n");
  207. if (body != NULL && b_size != 0)
  208. fwrite(body, b_size, 1, f);
  209. }
  210. #endif /* XS_IMPLEMENTATION */
  211. #endif /* XS_HTTPD_H */