mirror of
https://github.com/cesanta/mongoose.git
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721 lines
26 KiB
C
721 lines
26 KiB
C
#include "dns.h"
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#include "log.h"
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#include "printf.h"
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#include "str.h"
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#include "timer.h"
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#include "url.h"
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#include "util.h"
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struct dns_data {
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struct dns_data *next;
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struct mg_connection *c;
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uint64_t expire;
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uint16_t txnid;
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};
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static void sendnsreq(struct mg_connection *, struct mg_str *, int,
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struct mg_dns *, bool);
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struct mdns_data {
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struct mdns_data *next;
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struct mg_connection *c;
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uint64_t expire;
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struct mg_str name;
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};
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static void sendmdnsreq(struct mg_connection *, struct mg_str *, int,
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struct mg_connection *, bool);
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static void dns_free(struct dns_data **head, struct dns_data *d) {
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LIST_DELETE(struct dns_data, head, d);
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mg_free(d);
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}
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static void mdns_free(struct mdns_data **head, struct mdns_data *d) {
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LIST_DELETE(struct mdns_data, head, d);
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mg_free((void *) d->name.buf);
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mg_free(d);
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}
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void mg_resolve_cancel(struct mg_connection *c) {
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struct dns_data *tmp, *d;
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struct mdns_data *mtmp, *md;
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struct dns_data **head = (struct dns_data **) &c->mgr->active_dns_requests;
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struct mdns_data **mhead =
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(struct mdns_data **) &c->mgr->active_mdns_requests;
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for (d = *head; d != NULL; d = tmp) {
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tmp = d->next;
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if (d->c == c) dns_free(head, d);
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}
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for (md = *mhead; md != NULL; md = mtmp) {
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mtmp = md->next;
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if (md->c == c) mdns_free(mhead, md);
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}
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}
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static size_t mg_dns_parse_name_depth(const uint8_t *s, size_t len, size_t ofs,
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char *to, size_t tolen, size_t j,
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int depth) {
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size_t i = 0;
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if (tolen > 0 && depth == 0) to[0] = '\0';
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if (depth > 5) return 0;
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// MG_INFO(("ofs %lx %x %x", (unsigned long) ofs, s[ofs], s[ofs + 1]));
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while (ofs + i + 1 < len) {
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size_t n = s[ofs + i];
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if (n == 0) {
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i++;
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break;
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}
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if (n & 0xc0) {
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size_t ptr = (((n & 0x3f) << 8) | s[ofs + i + 1]); // 12 is hdr len
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// MG_INFO(("PTR %lx", (unsigned long) ptr));
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if (ptr + 1 < len && (s[ptr] & 0xc0) == 0 &&
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mg_dns_parse_name_depth(s, len, ptr, to, tolen, j, depth + 1) == 0)
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return 0;
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i += 2;
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break;
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}
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if (ofs + i + n + 1 >= len) return 0;
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if (j > 0) {
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if (j < tolen) to[j] = '.';
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j++;
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}
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if (j + n < tolen) memcpy(&to[j], &s[ofs + i + 1], n);
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j += n;
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i += n + 1;
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if (j < tolen) to[j] = '\0'; // Zero-terminate this chunk
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// MG_INFO(("--> [%s]", to));
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}
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if (tolen > 0) to[tolen - 1] = '\0'; // Make sure it is nul-term
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return i;
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}
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static size_t mg_dns_parse_name(const uint8_t *s, size_t n, size_t ofs,
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char *dst, size_t dstlen) {
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return mg_dns_parse_name_depth(s, n, ofs, dst, dstlen, 0, 0);
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}
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size_t mg_dns_parse_rr(const uint8_t *buf, size_t len, size_t ofs,
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bool is_question, struct mg_dns_rr *rr) {
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const uint8_t *s = buf + ofs, *e = &buf[len];
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memset(rr, 0, sizeof(*rr));
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if (len < sizeof(struct mg_dns_header)) return 0; // Too small
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if (len > 512) return 0; // Too large, we don't expect that
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if (s >= e) return 0; // Overflow
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if ((rr->nlen = (uint16_t) mg_dns_parse_name(buf, len, ofs, NULL, 0)) == 0)
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return 0;
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s += rr->nlen + 4;
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if (s > e) return 0;
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rr->atype = (uint16_t) (((uint16_t) s[-4] << 8) | s[-3]);
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rr->aclass = (uint16_t) (((uint16_t) s[-2] << 8) | s[-1]);
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if (is_question) return (size_t) (rr->nlen + 4);
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s += 6;
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if (s > e) return 0;
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rr->alen = (uint16_t) (((uint16_t) s[-2] << 8) | s[-1]);
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if (s + rr->alen > e) return 0;
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return (size_t) (rr->nlen + rr->alen + 10);
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}
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bool mg_dns_parse(const uint8_t *buf, size_t len, struct mg_dns_message *dm) {
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const struct mg_dns_header *h = (struct mg_dns_header *) buf;
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struct mg_dns_rr rr;
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size_t i, n, num_answers, ofs = sizeof(*h);
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bool is_response;
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memset(dm, 0, sizeof(*dm));
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if (len < sizeof(*h)) return 0; // Too small, headers dont fit
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if (mg_ntohs(h->num_questions) > 1) return 0; // Sanity
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num_answers = mg_ntohs(h->num_answers);
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if (num_answers > 10) {
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MG_DEBUG(("Got %u answers, ignoring beyond 10th one", num_answers));
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num_answers = 10; // Sanity cap
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}
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dm->txnid = mg_ntohs(h->txnid);
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is_response = mg_ntohs(h->flags) & 0x8000;
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for (i = 0; i < mg_ntohs(h->num_questions); i++) {
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if ((n = mg_dns_parse_rr(buf, len, ofs, true, &rr)) == 0) return false;
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// MG_INFO(("Q %lu %lu %hu/%hu", ofs, n, rr.atype, rr.aclass));
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mg_dns_parse_name(buf, len, ofs, dm->name, sizeof(dm->name));
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ofs += n;
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}
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if (!is_response) {
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// For queries, there is no need to parse the answers. In this way,
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// we also ensure the domain name (dm->name) is parsed from
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// the question field.
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return true;
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}
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for (i = 0; i < num_answers; i++) {
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if ((n = mg_dns_parse_rr(buf, len, ofs, false, &rr)) == 0) return false;
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// MG_INFO(("A -- %lu %lu %hu/%hu %s", ofs, n, rr.atype, rr.aclass,
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// dm->name));
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mg_dns_parse_name(buf, len, ofs, dm->name, sizeof(dm->name));
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ofs += n;
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if (rr.alen == 4 && rr.atype == MG_DNS_RTYPE_A && rr.aclass == 1) {
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dm->addr.is_ip6 = false;
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memcpy(&dm->addr.addr.ip, &buf[ofs - 4], 4);
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dm->resolved = true;
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break; // Return success
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} else if (rr.alen == 16 && rr.atype == MG_DNS_RTYPE_AAAA &&
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rr.aclass == 1) {
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dm->addr.is_ip6 = true;
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memcpy(&dm->addr.addr.ip, &buf[ofs - 16], 16);
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dm->resolved = true;
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break; // Return success
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}
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}
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return true;
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}
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static void dns_cb(struct mg_connection *c, int ev, void *ev_data) {
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struct dns_data *d, *tmp;
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struct dns_data **head = (struct dns_data **) &c->mgr->active_dns_requests;
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if (ev == MG_EV_POLL) {
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uint64_t now = *(uint64_t *) ev_data;
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for (d = *head; d != NULL; d = tmp) {
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tmp = d->next;
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// MG_DEBUG(("%lu %lu dns poll", d->expire, now));
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if (now > d->expire) mg_error(d->c, "DNS timeout"); // will remove entry
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}
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} else if (ev == MG_EV_READ) {
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struct mg_dns_message dm;
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int resolved = 0;
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if (mg_dns_parse(c->recv.buf, c->recv.len, &dm) == false) {
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MG_ERROR(("Unexpected DNS response:"));
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mg_hexdump(c->recv.buf, c->recv.len);
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} else {
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// MG_VERBOSE(("%s %d", dm.name, dm.resolved));
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for (d = *head; d != NULL; d = tmp) {
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tmp = d->next;
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// MG_INFO(("d %p %hu %hu", d, d->txnid, dm.txnid));
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if (dm.txnid != d->txnid) continue;
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if (d->c->is_resolving) {
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if (dm.resolved) {
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dm.addr.port = d->c->rem.port; // Save port
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d->c->rem = dm.addr; // Copy resolved address
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MG_DEBUG(
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("%lu %s is %M", d->c->id, dm.name, mg_print_ip, &d->c->rem));
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mg_connect_resolved(d->c);
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#if MG_ENABLE_IPV6
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} else if (dm.addr.is_ip6 == false && dm.name[0] != '\0' &&
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c->mgr->use_dns6 == false) {
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struct mg_str x = mg_str(dm.name);
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sendnsreq(d->c, &x, c->mgr->dnstimeout, &c->mgr->dns6, true);
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#endif
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} else {
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mg_error(d->c, "%s DNS lookup failed", dm.name);
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}
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} else {
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MG_ERROR(("%lu already resolved", d->c->id));
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}
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dns_free(head, d);
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resolved = 1;
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}
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}
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if (!resolved) MG_ERROR(("stray DNS reply"));
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c->recv.len = 0;
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} else if (ev == MG_EV_CLOSE) {
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for (d = *head; d != NULL; d = tmp) {
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tmp = d->next;
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mg_error(d->c, "DNS error"); // will remove entry
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}
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}
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}
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static bool mg_dns_send(struct mg_connection *c, const struct mg_str *name,
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uint16_t txnid, bool ipv6) {
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struct {
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struct mg_dns_header header;
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uint8_t data[256];
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} pkt;
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size_t i, n;
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memset(&pkt, 0, sizeof(pkt));
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pkt.header.txnid = mg_htons(txnid);
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pkt.header.flags = mg_htons(0x100);
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pkt.header.num_questions = mg_htons(1);
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for (i = n = 0; i < sizeof(pkt.data) - 5; i++) {
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if (name->buf[i] == '.' || i >= name->len) {
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pkt.data[n] = (uint8_t) (i - n);
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memcpy(&pkt.data[n + 1], name->buf + n, i - n);
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n = i + 1;
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}
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if (i >= name->len) break;
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}
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memcpy(&pkt.data[n], "\x00\x00\x01\x00\x01", 5); // A query
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n += 5;
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if (ipv6) pkt.data[n - 3] = 0x1c; // AAAA query
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// memcpy(&pkt.data[n], "\xc0\x0c\x00\x1c\x00\x01", 6); // AAAA query
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// n += 6;
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return mg_send(c, &pkt, sizeof(pkt.header) + n);
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}
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bool mg_dnsc_init(struct mg_mgr *mgr, struct mg_dns *dnsc);
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bool mg_dnsc_init(struct mg_mgr *mgr, struct mg_dns *dnsc) {
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if (dnsc->url == NULL) {
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mg_error(0, "DNS server URL is NULL. Call mg_mgr_init()");
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return false;
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}
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if (dnsc->c == NULL) {
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dnsc->c = mg_connect(mgr, dnsc->url, NULL, NULL);
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if (dnsc->c == NULL) return false;
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dnsc->c->pfn = dns_cb;
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}
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return true;
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}
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static void sendnsreq(struct mg_connection *c, struct mg_str *name, int ms,
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struct mg_dns *dnsc, bool ipv6) {
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struct dns_data *d = NULL;
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if (!mg_dnsc_init(c->mgr, dnsc)) {
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mg_error(c, "resolver");
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} else if ((d = (struct dns_data *) mg_calloc(1, sizeof(*d))) == NULL) {
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mg_error(c, "resolve OOM");
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} else {
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struct dns_data *reqs = (struct dns_data *) c->mgr->active_dns_requests;
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uint16_t id;
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mg_random(&id, sizeof(uint16_t));
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// TODO(): traverse reqs and check id != reqs->txnid; repeat otherwise
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if (reqs != NULL) id = (uint16_t) (reqs->txnid + 1); // no collision
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d->txnid = id;
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d->next = reqs;
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c->mgr->active_dns_requests = d;
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d->expire = mg_millis() + (uint64_t) ms;
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d->c = c;
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c->is_resolving = 1;
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MG_VERBOSE(("%lu resolving %.*s @ %s, txnid %hu", c->id, (int) name->len,
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name->buf, dnsc->url, d->txnid));
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if (!mg_dns_send(dnsc->c, name, d->txnid, ipv6)) {
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mg_error(dnsc->c, "DNS send");
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}
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}
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}
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void mg_resolve(struct mg_connection *c, const char *url) {
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struct mg_str host = mg_url_host(url);
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c->rem.port = mg_htons(mg_url_port(url));
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if (mg_aton(host, &c->rem)) {
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// host is an IP address, do not fire name resolution
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mg_connect_resolved(c);
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} else if (host.len > 6 &&
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strncmp(".local", &host.buf[host.len - 6], 6) == 0) {
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// this is a request for a .local name (mDNS)
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sendmdnsreq(c, &host, 500, c->mgr->mdns, c->mgr->use_dns6); // 500ms tmout
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} else {
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// host is not an IP nor a .local, send DNS resolution request
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struct mg_dns *dns = c->mgr->use_dns6 ? &c->mgr->dns6 : &c->mgr->dns4;
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sendnsreq(c, &host, c->mgr->dnstimeout, dns, c->mgr->use_dns6);
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}
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}
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// Response header length is 10 bytes
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static const uint8_t mdns_answer[] = {
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0, 1, // 2 bytes - record type, A
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0, 1, // 2 bytes - address class, INET
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0, 0, 0, 120, // 4 bytes - TTL
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0, 4 // 2 bytes - address length
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};
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// A name length is name->len + '.local' + 2 = name->len + 8
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static uint8_t *build_name(struct mg_str *name, uint8_t *p) {
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*p++ = (uint8_t) name->len; // label 1
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memcpy(p, name->buf, name->len), p += name->len;
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*p++ = 5; // label 2
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memcpy(p, "local", 5), p += 5;
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*p++ = 0; // no more labels
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return p;
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}
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void mg_getlocaddr(struct mg_connection *, struct mg_addr *, struct mg_addr *);
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// An A record length is 10 + 4 = 14 bytes
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static uint8_t *build_a_record(struct mg_connection *c, uint8_t *p,
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struct mg_addr *addr) {
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memcpy(p, mdns_answer, sizeof(mdns_answer)), p += sizeof(mdns_answer);
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if (addr != NULL && !addr->is_ip6) {
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memcpy(p, &addr->addr.ip4, 4), p += 4;
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} else {
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#if MG_ENABLE_TCPIP
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memcpy(p, &c->mgr->ifp->ip, 4), p += 4;
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#else
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struct mg_addr loc, to;
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memset(&loc, 0, sizeof(loc));
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to.is_ip6 = false;
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to.port = mg_htons(5353);
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to.addr.ip4 = MG_IPV4(224, 0, 0, 51);
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mg_getlocaddr(c, &to, &loc);
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memcpy(p, &loc.addr.ip4, 4), p += 4;
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#endif
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}
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return p;
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}
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// A srv name length is r->srvcproto.len + '.local' + 2 = r->srvcproto.len + 8
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static uint8_t *build_srv_name(uint8_t *p, struct mg_dnssd_record *r) {
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*p++ = (uint8_t) r->srvcproto.len - 5; // label 1, up to '._tcp'
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memcpy(p, r->srvcproto.buf, r->srvcproto.len), p += r->srvcproto.len;
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p[-5] = 4; // label 2, '_tcp', overwrite '.'
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*p++ = 5; // label 3
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memcpy(p, "local", 5), p += 5;
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*p++ = 0; // no more labels
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return p;
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}
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#if 0
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// TODO(): for listing
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static uint8_t *build_mysrv_name(struct mg_str *name, uint8_t *p,
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struct mg_dnssd_record *r) {
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*p++ = name->len; // label 1
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memcpy(p, name->buf, name->len), p += name->len;
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return build_srv_name(p, r);
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}
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#endif
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// A PTR record length is 10 + name->len + 3 = name->len + 13
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static uint8_t *build_ptr_record(struct mg_str *name, uint8_t *p, uint16_t o) {
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uint16_t offset = mg_htons(o);
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memcpy(p, mdns_answer, sizeof(mdns_answer));
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p[1] = MG_DNS_RTYPE_PTR; // overwrite record type
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p += sizeof(mdns_answer);
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p[-1] = (uint8_t) name->len +
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3; // overwrite response length, label length + label + offset
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*p++ = (uint8_t) name->len; // response: label 1
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memcpy(p, name->buf, name->len), p += name->len; // copy label
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memcpy(p, &offset, 2);
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*p |= 0xC0, p += 2;
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return p;
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}
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// An SRV record length is 10 + name->len + 9 = name->len + 19
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static uint8_t *build_srv_record(struct mg_str *name, uint8_t *p,
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struct mg_dnssd_record *r, uint16_t o) {
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uint16_t port = mg_htons(r->port);
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uint16_t offset = mg_htons(o);
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memcpy(p, mdns_answer, sizeof(mdns_answer));
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p[1] = MG_DNS_RTYPE_SRV; // overwrite record type
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p += sizeof(mdns_answer);
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p[-1] = (uint8_t) name->len + 9; // overwrite response length (4+2+1+2)
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*p++ = 0; // priority
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*p++ = 0;
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*p++ = 0; // weight
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*p++ = 0;
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memcpy(p, &port, 2), p += 2; // port
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*p++ = (uint8_t) name->len; // label 1
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memcpy(p, name->buf, name->len), p += name->len;
|
|
memcpy(p, &offset, 2);
|
|
*p |= 0xC0, p += 2;
|
|
return p;
|
|
}
|
|
|
|
// A TXT record length is r->txt.len (txt contents) + 10
|
|
static uint8_t *build_txt_record(uint8_t *p, struct mg_dnssd_record *r) {
|
|
uint16_t len = mg_htons((uint16_t) r->txt.len);
|
|
memcpy(p, mdns_answer, sizeof(mdns_answer));
|
|
p[1] = MG_DNS_RTYPE_TXT; // overwrite record type
|
|
p += sizeof(mdns_answer);
|
|
memcpy(p - 2, &len, 2); // overwrite response length
|
|
memcpy(p, r->txt.buf, r->txt.len), p += r->txt.len; // copy record verbatim
|
|
return p;
|
|
}
|
|
|
|
// Each additional record has a 2-byte field pointing to the name label
|
|
|
|
// RFC-6762 16: case-insensitivity --> RFC-1034, 1035
|
|
|
|
static void handle_mdns_query(struct mg_connection *c) {
|
|
struct mg_dns_header *qh = (struct mg_dns_header *) c->recv.buf;
|
|
struct mg_dns_rr rr;
|
|
size_t n;
|
|
// Parse first question, offset 12 is header size
|
|
n = mg_dns_parse_rr(c->recv.buf, c->recv.len, 12, true, &rr);
|
|
MG_VERBOSE(("mDNS request parsed, result=%d", (int) n));
|
|
if (n > 0) {
|
|
// RFC-6762 Appendix C, RFC2181 11: m(n + 1-63), max 255 + 0x0
|
|
uint8_t buf[sizeof(struct mg_dns_header) + 256 + sizeof(mdns_answer) + 4];
|
|
struct mg_dns_header *h = (struct mg_dns_header *) buf;
|
|
uint8_t *p = &buf[sizeof(*h)];
|
|
char name[256];
|
|
uint8_t name_len;
|
|
// uint16_t q = mg_ntohs(qh->num_questions);
|
|
struct mg_str defname = mg_str((const char *) c->fn_data);
|
|
struct mg_str *respname;
|
|
struct mg_mdns_req req;
|
|
memset(&req, 0, sizeof(req));
|
|
req.is_unicast = (rr.aclass & MG_BIT(15)) != 0; // QU
|
|
rr.aclass &= (uint16_t) ~MG_BIT(15); // remove "QU" (unicast response)
|
|
qh->num_questions = mg_htons(1); // parser sanity
|
|
mg_dns_parse_name(c->recv.buf, c->recv.len, 12, name, sizeof(name));
|
|
name_len = (uint8_t) strlen(name); // verify it ends in .local
|
|
if (name_len <= 6 || strcmp(".local", &name[name_len - 6]) != 0 ||
|
|
(rr.aclass != 1 && rr.aclass != 0xff))
|
|
return;
|
|
name[name_len -= 6] = '\0'; // remove .local
|
|
MG_VERBOSE(("RR %u %u %s", (unsigned int) rr.atype,
|
|
(unsigned int) rr.aclass, name));
|
|
if (rr.atype == MG_DNS_RTYPE_A) {
|
|
// TODO(): ensure c->fn_data ends in \0
|
|
// if we have a name to match, go; otherwise users will match and fill
|
|
// req.r.name and set req.is_resp
|
|
if (c->fn_data != NULL && mg_casecmp((char *) c->fn_data, name) != 0)
|
|
return;
|
|
req.is_resp = (c->fn_data != NULL);
|
|
req.reqname = mg_str_n(name, name_len);
|
|
} else // users have to match the request to something in their db, then
|
|
// fill req.r and set req.is_resp
|
|
if (rr.atype == MG_DNS_RTYPE_PTR) {
|
|
if (strcmp("_services._dns-sd._udp", name) == 0) req.is_listing = true;
|
|
MG_DEBUG(
|
|
("PTR request for %s", req.is_listing ? "services listing" : name));
|
|
req.reqname = mg_str_n(name, name_len);
|
|
} else if (rr.atype == MG_DNS_RTYPE_SRV || rr.atype == MG_DNS_RTYPE_TXT) {
|
|
MG_DEBUG(("%s request for %s",
|
|
rr.atype == MG_DNS_RTYPE_SRV ? "SRV" : "TXT", name));
|
|
// if possible, check it starts with our name, users will check it ends
|
|
// in a service name they handle
|
|
if (c->fn_data != NULL) {
|
|
if (mg_strcasecmp(defname, mg_str_n(name, defname.len)) != 0 ||
|
|
name[defname.len] != '.')
|
|
return;
|
|
req.reqname =
|
|
mg_str_n(name + defname.len + 1, name_len - defname.len - 1);
|
|
MG_DEBUG(
|
|
("That's us, handing %.*s", req.reqname.len, req.reqname.buf));
|
|
} else {
|
|
req.reqname = mg_str_n(name, name_len);
|
|
}
|
|
} else { // unhandled record
|
|
return;
|
|
}
|
|
req.rr = &rr;
|
|
mg_call(c, MG_EV_MDNS_REQ, &req);
|
|
if (!req.is_resp) return;
|
|
respname = req.respname.buf != NULL ? &req.respname : &defname;
|
|
|
|
memset(h, 0, sizeof(*h)); // clear header
|
|
h->txnid = req.is_unicast ? qh->txnid : 0; // RFC-6762 18.1
|
|
h->num_answers = mg_htons(1); // RFC-6762 6: 0 questions, 1 Answer
|
|
h->flags = mg_htons(0x8400); // Authoritative response
|
|
if (req.is_listing) {
|
|
// TODO(): RFC-6762 6: each responder SHOULD delay its response by a
|
|
// random amount of time selected with uniform random distribution in the
|
|
// range 20-120 ms.
|
|
// TODO():
|
|
return;
|
|
} else if (rr.atype == MG_DNS_RTYPE_PTR) { // serve PTR + SRV + TXT + A
|
|
// TODO(): RFC-6762 6: each responder SHOULD delay its response by a
|
|
// random amount of time selected with uniform random distribution in the
|
|
// range 20-120 ms. Response to PTR is local_name._myservice._tcp.local
|
|
uint8_t *o = p, *aux;
|
|
uint16_t offset;
|
|
if (respname->buf == NULL || respname->len == 0) return;
|
|
if ((sizeof(*h) + req.r->srvcproto.len + 8 + respname->len + 13 + 2 +
|
|
respname->len + 19 + 2 + req.r->txt.len + 10 + 2 + 14) >
|
|
sizeof(buf)) // srv name + PTR + 2 + SRV + 2 + TXT + 2 + A
|
|
return;
|
|
h->num_other_prs = mg_htons(3); // 3 additional records
|
|
p = build_srv_name(p, req.r);
|
|
aux = build_ptr_record(respname, p, (uint16_t) (o - buf));
|
|
o = p + sizeof(mdns_answer); // point to PTR response (full srvc name)
|
|
offset = mg_htons((uint16_t) (o - buf));
|
|
o = p - 7; // point to '.local' label (\x05local\x00)
|
|
p = aux;
|
|
memcpy(p, &offset, 2); // point to full srvc name, in record
|
|
*p |= 0xC0, p += 2;
|
|
aux = p;
|
|
p = build_srv_record(respname, p, req.r, (uint16_t) (o - buf));
|
|
o = aux + sizeof(mdns_answer) + 6; // point to target in SRV
|
|
memcpy(p, &offset, 2); // point to full srvc name, in record
|
|
*p |= 0xC0, p += 2;
|
|
p = build_txt_record(p, req.r);
|
|
offset = mg_htons((uint16_t) (o - buf));
|
|
memcpy(p, &offset, 2); // point to target name, in record
|
|
*p |= 0xC0, p += 2;
|
|
p = build_a_record(c, p, req.addr);
|
|
} else if (rr.atype == MG_DNS_RTYPE_TXT) {
|
|
if ((sizeof(*h) + req.r->srvcproto.len + 8 + req.r->txt.len + 10) >
|
|
sizeof(buf)) // srv name + TXT
|
|
return;
|
|
p = build_srv_name(p, req.r);
|
|
p = build_txt_record(p, req.r);
|
|
} else if (rr.atype == MG_DNS_RTYPE_SRV) { // serve SRV + A
|
|
uint8_t *o, *aux;
|
|
uint16_t offset;
|
|
if (respname->buf == NULL || respname->len == 0) return;
|
|
if ((sizeof(*h) + req.r->srvcproto.len + 8 + respname->len + 19 + 2 +
|
|
14) > sizeof(buf)) // srv name + SRV + 2 + A
|
|
return;
|
|
h->num_other_prs = mg_htons(1); // 1 additional record
|
|
p = build_srv_name(p, req.r);
|
|
o = p - 7; // point to '.local' label (\x05local\x00)
|
|
aux = p;
|
|
p = build_srv_record(respname, p, req.r, (uint16_t) (o - buf));
|
|
o = aux + sizeof(mdns_answer) + 6; // point to target in SRV
|
|
offset = mg_htons((uint16_t) (o - buf));
|
|
memcpy(p, &offset, 2); // point to target name, in record
|
|
*p |= 0xC0, p += 2;
|
|
p = build_a_record(c, p, req.addr);
|
|
} else { // A requested
|
|
// RFC-6762 6: 0 Auth, 0 Additional RRs
|
|
if (respname->buf == NULL || respname->len == 0) return;
|
|
if ((sizeof(*h) + respname->len + 8 + 14) > sizeof(buf)) // name + A
|
|
return;
|
|
p = build_name(respname, p);
|
|
p = build_a_record(c, p, req.addr);
|
|
}
|
|
if (!req.is_unicast) mg_multicast_restore(c, (uint8_t *) &c->loc);
|
|
mg_send(c, buf, (size_t) (p - buf)); // And send it!
|
|
MG_DEBUG(("%M > %M", mg_print_ip_port, &c->loc, mg_print_ip_port, &c->rem));
|
|
MG_DEBUG(("mDNS %s response sent", req.is_unicast ? "unicast" : "mcast"));
|
|
}
|
|
}
|
|
|
|
static void handle_mdns_response(struct mg_connection *c) {
|
|
struct mg_dns_header *rh = (struct mg_dns_header *) c->recv.buf;
|
|
struct mg_dns_rr rr;
|
|
size_t n;
|
|
// Parse first response, offset 12 is header size
|
|
n = mg_dns_parse_rr(c->recv.buf, c->recv.len, 12, false, &rr);
|
|
MG_VERBOSE(("mDNS response parsed, result=%d", (int) n));
|
|
if (n > 0) {
|
|
// RFC-6762 Appendix C, RFC2181 11: m(n + 1-63), max 255 + 0x0
|
|
char name[256];
|
|
uint8_t name_len;
|
|
struct mg_mdns_resp resp;
|
|
memset(&resp, 0, sizeof(resp));
|
|
if (rh->num_answers > mg_htons(1)) MG_DEBUG(("ignoring > 1 answers"));
|
|
mg_dns_parse_name(c->recv.buf, c->recv.len, 12, name, sizeof(name));
|
|
name_len = (uint8_t) strlen(name);
|
|
MG_VERBOSE(("RR %u %u %s", (unsigned int) rr.atype,
|
|
(unsigned int) rr.aclass, name));
|
|
if (rr.alen == 4 && rr.atype == MG_DNS_RTYPE_A &&
|
|
(rr.aclass & 0x7FFF) == 1) {
|
|
resp.addr.is_ip6 = false;
|
|
memcpy(resp.addr.addr.ip, (char *) (rh + 1) + n - 4, 4);
|
|
MG_DEBUG(("A response from %.*s = %M", name_len, name, mg_print_ip,
|
|
&resp.addr));
|
|
// } else if (rr.alen == 16 && rr.atype == MG_DNS_RTYPE_AAAA &&
|
|
// (rr.aclass & 0x7FFF) == 1) {
|
|
// resp.addr.is_ip6 = true;
|
|
// memcpy(resp.addr.addr.ip, (char *)(rh + 1) + n - 16], 16);
|
|
// MG_DEBUG(("AAAA response from %.*s = %M", name_len, name,
|
|
// mg_print_ip, &resp.addr));
|
|
} else {
|
|
return;
|
|
}
|
|
resp.name = mg_str_n(name, name_len);
|
|
resp.rr = &rr;
|
|
mg_call(c, MG_EV_MDNS_RESP, &resp);
|
|
}
|
|
}
|
|
|
|
static void handle_mdns_record(struct mg_connection *c) {
|
|
struct mg_dns_header *h = (struct mg_dns_header *) c->recv.buf;
|
|
if (c->recv.len <= 12) return;
|
|
if ((h->flags & mg_htons(0xF800)) == 0) {
|
|
// flags -> !resp, opcode=0 => query; ignore other opcodes
|
|
handle_mdns_query(c);
|
|
} else if ((h->flags & mg_htons(0xF800)) == mg_htons(0x8000)) {
|
|
// flags -> resp, opcode=0 => response; ignore other opcodes
|
|
handle_mdns_response(c);
|
|
}
|
|
}
|
|
|
|
static void mdns_cb(struct mg_connection *c, int ev, void *ev_data) {
|
|
struct mdns_data *d, *tmp;
|
|
struct mdns_data **head = (struct mdns_data **) &c->mgr->active_mdns_requests;
|
|
// mDNS resolver
|
|
if (ev == MG_EV_POLL) {
|
|
uint64_t now = *(uint64_t *) ev_data;
|
|
for (d = *head; d != NULL; d = tmp) {
|
|
tmp = d->next;
|
|
// MG_DEBUG(("%lu %lu mdns poll", d->expire, now));
|
|
if (now > d->expire) mg_error(d->c, "mDNS timeout"); // will remove entry
|
|
}
|
|
} else if (ev == MG_EV_CLOSE) {
|
|
for (d = *head; d != NULL; d = tmp) {
|
|
tmp = d->next;
|
|
mg_error(d->c, "mDNS listener error"); // this will remove entry
|
|
}
|
|
} else if (ev == MG_EV_MDNS_RESP) {
|
|
struct mg_mdns_resp *resp = (struct mg_mdns_resp *) ev_data;
|
|
if (resp->rr->atype == MG_DNS_RTYPE_A) {
|
|
for (d = *head; d != NULL; d = tmp) {
|
|
tmp = d->next;
|
|
if (mg_strcasecmp(d->name, resp->name) != 0) continue;
|
|
if (d->c->is_resolving) {
|
|
resp->addr.port = d->c->rem.port; // Save port
|
|
d->c->rem = resp->addr; // Copy resolved address
|
|
MG_DEBUG(("%lu %.*s is %M", d->c->id, resp->name.len, resp->name.buf,
|
|
mg_print_ip, &d->c->rem));
|
|
mg_connect_resolved(d->c);
|
|
} else {
|
|
// this should not happen, unless above does not clear c->is_resolving
|
|
MG_ERROR(("%lu already resolved", d->c->id));
|
|
}
|
|
mdns_free(head, d);
|
|
}
|
|
}
|
|
} else if (ev == MG_EV_READ) {
|
|
// generic mDNS[-SD] handling
|
|
handle_mdns_record(c); // this will call us back with MG_EV_MDNS_RESP
|
|
mg_iobuf_del(&c->recv, 0, c->recv.len);
|
|
}
|
|
|
|
(void) ev_data;
|
|
}
|
|
|
|
void mg_multicast_add(struct mg_connection *c, char *ip);
|
|
struct mg_connection *mg_mdns_listen(struct mg_mgr *mgr, mg_event_handler_t fn,
|
|
void *fn_data) {
|
|
struct mg_connection *c =
|
|
mg_listen(mgr, "udp://224.0.0.251:5353", fn, fn_data);
|
|
if (c == NULL) return NULL;
|
|
c->mgr->mdns = c; // Add mDNS entry to enable resolver to use it
|
|
c->pfn = mdns_cb, c->pfn_data = fn_data;
|
|
mg_multicast_add(c, (char *) "224.0.0.251");
|
|
return c;
|
|
}
|
|
|
|
static bool mdns_query(struct mg_connection *c, struct mg_str *name,
|
|
unsigned int rtype) {
|
|
mg_multicast_restore(c, (uint8_t *) &c->loc);
|
|
(void) rtype;
|
|
return mg_dns_send(c, name, 0, false);
|
|
}
|
|
|
|
bool mg_mdns_query(struct mg_connection *c, const char *name,
|
|
unsigned int rtype) {
|
|
struct mg_str name_;
|
|
name_.buf = (char *) name, name_.len = strlen(name);
|
|
return mdns_query(c, &name_, rtype);
|
|
}
|
|
|
|
static void sendmdnsreq(struct mg_connection *c, struct mg_str *name, int ms,
|
|
struct mg_connection *mdnsc, bool ipv6) {
|
|
struct mdns_data *d = NULL;
|
|
if (mdnsc == NULL) {
|
|
mg_error(c, "no mDNS listener, see mg_mdns_listen()");
|
|
} else if ((d = (struct mdns_data *) mg_calloc(1, sizeof(*d))) == NULL) {
|
|
mg_error(c, "resolve OOM");
|
|
} else {
|
|
struct mdns_data *reqs = (struct mdns_data *) c->mgr->active_mdns_requests;
|
|
d->next = reqs;
|
|
c->mgr->active_mdns_requests = d;
|
|
d->expire = mg_millis() + (uint64_t) ms;
|
|
d->name = mg_strdup(*name);
|
|
d->c = c;
|
|
c->is_resolving = 1;
|
|
MG_VERBOSE(
|
|
("%lu resolving %.*s via mDNS", c->id, (int) name->len, name->buf));
|
|
if (!mdns_query(mdnsc, name, MG_DNS_RTYPE_A)) {
|
|
mg_error(c, "mDNS send"); // will remove newly created entry
|
|
}
|
|
}
|
|
(void) ipv6;
|
|
}
|