mirror of
https://codeberg.org/grunfink/snac2.git
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369 lines
10 KiB
C
369 lines
10 KiB
C
/* copyright (c) 2022 - 2023 grunfink et al. / MIT license */
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/*
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This is an intentionally-dead-simple FastCGI implementation;
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only FCGI_RESPONDER type with *no* FCGI_KEEP_CON flag is supported.
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This means only one simultaneous connection and no multiplexing.
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It seems it's enough for nginx and OpenBSD's httpd, so here it goes.
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Almost fully compatible with xs_httpd.h
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*/
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#ifndef _XS_FCGI_H
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#define _XS_FCGI_H
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xs_dict *xs_fcgi_request(FILE *f, xs_str **payload, int *p_size, int *id);
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void xs_fcgi_response(FILE *f, int status, xs_dict *headers, xs_str *body, int b_size, int id);
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#ifdef XS_IMPLEMENTATION
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struct fcgi_record_header {
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unsigned char version;
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unsigned char type;
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unsigned short id;
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unsigned short content_len;
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unsigned char padding_len;
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unsigned char reserved;
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} __attribute__((packed));
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/* version */
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#define FCGI_VERSION_1 1
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/* types */
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#define FCGI_BEGIN_REQUEST 1
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#define FCGI_ABORT_REQUEST 2
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#define FCGI_END_REQUEST 3
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#define FCGI_PARAMS 4
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#define FCGI_STDIN 5
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#define FCGI_STDOUT 6
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#define FCGI_STDERR 7
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#define FCGI_DATA 8
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#define FCGI_GET_VALUES 9
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#define FCGI_GET_VALUES_RESULT 10
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#define FCGI_UNKNOWN_TYPE 11
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#define FCGI_MAXTYPE (FCGI_UNKNOWN_TYPE)
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struct fcgi_begin_request {
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unsigned short role;
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unsigned char flags;
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unsigned char reserved[5];
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} __attribute__((packed));
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/* roles */
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#define FCGI_RESPONDER 1
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#define FCGI_AUTHORIZER 2
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#define FCGI_FILTER 3
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/* flags */
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#define FCGI_KEEP_CONN 1
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struct fcgi_end_request {
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unsigned int app_status;
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unsigned char protocol_status;
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unsigned char reserved[3];
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} __attribute__((packed));
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/* protocol statuses */
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#define FCGI_REQUEST_COMPLETE 0
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#define FCGI_CANT_MPX_CONN 1
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#define FCGI_OVERLOADED 2
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#define FCGI_UNKNOWN_ROLE 3
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xs_dict *xs_fcgi_request(FILE *f, xs_str **payload, int *p_size, int *fcgi_id)
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/* keeps receiving FCGI packets until a complete request is finished */
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{
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unsigned char p_buf[100000];
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struct fcgi_record_header hdr;
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struct fcgi_begin_request *breq = (struct fcgi_begin_request *)&p_buf;
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unsigned char *buf = NULL;
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int b_size = 0;
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xs_dict *req = NULL;
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unsigned char p_status = FCGI_REQUEST_COMPLETE;
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xs *q_vars = NULL;
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xs *p_vars = NULL;
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*fcgi_id = -1;
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for (;;) {
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int sz, psz;
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/* read the packet header */
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if (fread(&hdr, sizeof(hdr), 1, f) != 1)
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break;
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/* read the packet body */
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if ((psz = ntohs(hdr.content_len)) > 0) {
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if ((sz = fread(p_buf, 1, psz, f)) != psz)
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break;
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}
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/* read (and drop) the padding */
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if (hdr.padding_len > 0)
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fread(p_buf + sz, 1, hdr.padding_len, f);
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switch (hdr.type) {
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case FCGI_BEGIN_REQUEST:
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/* fail on unsupported roles */
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if (ntohs(breq->role) != FCGI_RESPONDER) {
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p_status = FCGI_UNKNOWN_ROLE;
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goto end;
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}
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/* fail on unsupported flags */
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if (breq->flags & FCGI_KEEP_CONN) {
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p_status = FCGI_CANT_MPX_CONN;
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goto end;
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}
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/* store the id for later */
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*fcgi_id = (int) hdr.id;
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break;
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case FCGI_PARAMS:
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/* unknown id? fail */
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if (hdr.id != *fcgi_id) {
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p_status = FCGI_CANT_MPX_CONN;
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goto end;
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}
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if (psz) {
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/* add to the buffer */
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buf = xs_realloc(buf, b_size + psz);
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memcpy(buf + b_size, p_buf, psz);
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b_size += psz;
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}
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else {
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/* no size, so the packet is complete; process it */
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xs *cgi_vars = xs_dict_new();
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req = xs_dict_new();
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int offset = 0;
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while (offset < b_size) {
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unsigned int ksz = buf[offset++];
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if (ksz & 0x80) {
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ksz &= 0x7f;
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ksz = (ksz << 8) | buf[offset++];
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ksz = (ksz << 8) | buf[offset++];
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ksz = (ksz << 8) | buf[offset++];
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}
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unsigned int vsz = buf[offset++];
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if (vsz & 0x80) {
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vsz &= 0x7f;
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vsz = (vsz << 8) | buf[offset++];
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vsz = (vsz << 8) | buf[offset++];
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vsz = (vsz << 8) | buf[offset++];
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}
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/* get the key */
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xs *k = xs_str_new_sz((char *)&buf[offset], ksz);
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offset += ksz;
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/* get the value */
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xs *v = xs_str_new_sz((char *)&buf[offset], vsz);
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offset += vsz;
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cgi_vars = xs_dict_append(cgi_vars, k, v);
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if (strcmp(k, "REQUEST_METHOD") == 0)
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req = xs_dict_append(req, "method", v);
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else
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if (strcmp(k, "REQUEST_URI") == 0) {
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xs *udp = xs_url_dec(v);
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xs *pnv = xs_split_n(udp, "?", 1);
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/* store the path */
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req = xs_dict_append(req, "path", xs_list_get(pnv, 0));
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/* get the variables */
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q_vars = xs_url_vars(xs_list_get(pnv, 1));
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}
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else
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if (xs_match(k, "CONTENT_TYPE|CONTENT_LENGTH|HTTP_*")) {
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if (xs_startswith(k, "HTTP_"))
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k = xs_crop_i(k, 5, 0);
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k = xs_tolower_i(k);
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k = xs_replace_i(k, "_", "-");
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req = xs_dict_append(req, k, v);
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}
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}
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req = xs_dict_append(req, "cgi_vars", cgi_vars);
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buf = xs_free(buf);
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b_size = 0;
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}
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break;
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case FCGI_STDIN:
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/* unknown id? fail */
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if (hdr.id != *fcgi_id) {
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p_status = FCGI_CANT_MPX_CONN;
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goto end;
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}
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if (psz) {
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/* add to the buffer */
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buf = xs_realloc(buf, b_size + psz);
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memcpy(buf + b_size, p_buf, psz);
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b_size += psz;
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}
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else {
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/* add an asciiz to be able to treat it as a string */
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buf = xs_realloc(buf, _xs_blk_size(b_size + 1));
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buf[b_size] = '\0';
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/* fill the payload info and finish */
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*payload = (xs_str *)buf;
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*p_size = b_size;
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const char *ct = xs_dict_get(req, "content-type");
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if (*payload && ct && strcmp(ct, "application/x-www-form-urlencoded") == 0) {
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xs *upl = xs_url_dec(*payload);
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p_vars = xs_url_vars(upl);
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}
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else
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if (*payload && ct && xs_startswith(ct, "multipart/form-data")) {
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p_vars = xs_multipart_form_data(*payload, *p_size, ct);
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}
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else
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p_vars = xs_dict_new();
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if (q_vars == NULL)
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q_vars = xs_dict_new();
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req = xs_dict_append(req, "q_vars", q_vars);
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req = xs_dict_append(req, "p_vars", p_vars);
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/* disconnect the payload from the buf variable */
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buf = NULL;
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goto end;
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}
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break;
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}
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}
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end:
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/* any kind of error? notify and cleanup */
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if (p_status != FCGI_REQUEST_COMPLETE) {
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struct fcgi_end_request ereq = {0};
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/* complete the connection */
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ereq.app_status = 0;
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ereq.protocol_status = p_status;
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/* reuse header */
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hdr.type = FCGI_ABORT_REQUEST;
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hdr.content_len = htons(sizeof(ereq));
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fwrite(&hdr, sizeof(hdr), 1, f);
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fwrite(&ereq, sizeof(ereq), 1, f);
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/* session closed */
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*fcgi_id = -1;
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/* request dict is not valid */
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req = xs_free(req);
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}
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xs_free(buf);
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return req;
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}
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void xs_fcgi_response(FILE *f, int status, xs_dict *headers, xs_str *body, int b_size, int fcgi_id)
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/* writes an FCGI response */
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{
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struct fcgi_record_header hdr = {0};
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struct fcgi_end_request ereq = {0};
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xs *out = xs_str_new(NULL);
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xs_dict *p;
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xs_str *k;
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xs_str *v;
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/* no previous id? it's an error */
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if (fcgi_id == -1)
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return;
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/* create the headers */
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{
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xs *s1 = xs_fmt("status: %d\r\n", status);
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out = xs_str_cat(out, s1);
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}
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p = headers;
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while (xs_dict_iter(&p, &k, &v)) {
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xs *s1 = xs_fmt("%s: %s\r\n", k, v);
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out = xs_str_cat(out, s1);
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}
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if (b_size > 0) {
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xs *s1 = xs_fmt("content-length: %d\r\n", b_size);
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out = xs_str_cat(out, s1);
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}
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out = xs_str_cat(out, "\r\n");
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/* everything is text by now */
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int size = strlen(out);
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/* add the body */
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if (body != NULL && b_size > 0)
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out = xs_append_m(out, body, b_size);
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/* now send all the STDOUT in packets */
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hdr.version = FCGI_VERSION_1;
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hdr.type = FCGI_STDOUT;
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hdr.id = fcgi_id;
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size += b_size;
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int offset = 0;
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while (offset < size) {
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int sz = size - offset;
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if (sz > 0xffff)
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sz = 0xffff;
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hdr.content_len = htons(sz);
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fwrite(&hdr, sizeof(hdr), 1, f);
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fwrite(out + offset, 1, sz, f);
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offset += sz;
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}
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/* final STDOUT packet with 0 size */
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hdr.content_len = 0;
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fwrite(&hdr, sizeof(hdr), 1, f);
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/* complete the connection */
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ereq.app_status = 0;
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ereq.protocol_status = FCGI_REQUEST_COMPLETE;
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hdr.type = FCGI_END_REQUEST;
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hdr.content_len = htons(sizeof(ereq));
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fwrite(&hdr, sizeof(hdr), 1, f);
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fwrite(&ereq, sizeof(ereq), 1, f);
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}
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#endif /* XS_IMPLEMENTATION */
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#endif /* XS_URL_H */
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