610 lines
15 KiB
C
610 lines
15 KiB
C
/*
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* $Id$
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*
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Copyright (c) 2015-2016 Chung, Hyung-Hwan. All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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1. Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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2. Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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THIS SOFTWARE IS PROVIDED BY THE AUTHOR "AS IS" AND ANY EXPRESS OR
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IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WAfRRANTIES
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OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <mio-dns.h>
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#include <mio-sck.h>
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#include "mio-prv.h"
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typedef struct mio_dns_t mio_dns_t;
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struct mio_dns_t
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{
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MIO_SVC_HEADERS;
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/*MIO_DNS_SVC_HEADERS;*/
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};
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struct mio_dnss_t
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{
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MIO_SVC_HEADERS;
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/*MIO_DNS_SVC_HEADERS;*/
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};
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struct mio_dnsc_t
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{
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MIO_SVC_HEADERS;
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/*MIO_DNS_SVC_HEADERS;*/
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mio_dev_sck_t* sck;
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mio_sckaddr_t serveraddr;
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mio_oow_t seq;
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mio_dns_msg_t* pending_req;
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};
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struct dnsc_sck_xtn_t
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{
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mio_dnsc_t* dnsc;
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};
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typedef struct dnsc_sck_xtn_t dnsc_sck_xtn_t;
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/* ----------------------------------------------------------------------- */
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#define DN_AT_END(ptr) (ptr[0] == '\0' || (ptr[0] == '.' && ptr[1] == '\0'))
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static mio_oow_t to_dn (mio_dns_t* dns, const mio_bch_t* str, mio_uint8_t* buf, mio_oow_t bufsz)
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{
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mio_uint8_t* bp = buf, * be = buf + bufsz;
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/*MIO_ASSERT (MIO_SIZEOF(mio_uint8_t) == MIO_SIZEOF(mio_bch_t));*/
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if (str && !DN_AT_END(str))
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{
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mio_uint8_t* lp;
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mio_oow_t len;
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const mio_bch_t* seg;
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const mio_bch_t* cur = str - 1;
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do
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{
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if (bp < be) lp = bp++;
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else lp = MIO_NULL;
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seg = ++cur;
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while (*cur != '\0' && *cur != '.')
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{
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if (bp < be) *bp++ = *cur;
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cur++;
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}
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len = cur - seg;
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if (len <= 0 || len > 63) return 0;
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if (lp) *lp = (mio_uint8_t)len;
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}
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while (!DN_AT_END(cur));
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}
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if (bp < be) *bp++ = 0;
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/* the length includes the terminating zero. */
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return bp - buf;
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}
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static mio_oow_t dn_length (mio_uint8_t* ptr, mio_oow_t len)
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{
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mio_uint8_t* curptr;
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mio_oow_t curlen, seglen;
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curptr = ptr;
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curlen = len;
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do
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{
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if (curlen <= 0) return 0;
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seglen = *curptr++;
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curlen = curlen - 1;
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if (seglen == 0) break;
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else if (seglen > curlen || seglen > 63) return 0;
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curptr += seglen;
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curlen -= seglen;
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}
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while (1);
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return curptr - ptr;
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}
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/* ----------------------------------------------------------------------- */
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static void release_dns_msg (mio_dnsc_t* dnsc, mio_dns_msg_t* msg)
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{
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mio_t* mio = dnsc->mio;
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MIO_DEBUG1 (mio, "releasing dns msg %d\n", (int)mio_ntoh16(((mio_dns_pkt_t*)(msg + 1))->id));
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if (msg == dnsc->pending_req || msg->next || msg->prev)
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{
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/* it's chained in the pending request. unchain it */
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if (msg->next) msg->next->prev = msg->prev;
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if (msg->prev) msg->prev->next = msg->next;
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else dnsc->pending_req = msg->next;
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}
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/* TODO: add it to the free msg list instead of just freeing it. */
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if (msg->rtmridx != MIO_TMRIDX_INVALID)
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{
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mio_deltmrjob (mio, msg->rtmridx);
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MIO_ASSERT (mio, msg->rtmridx == MIO_TMRIDX_INVALID);
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}
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mio_freemem (mio, msg);
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}
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static mio_dns_msg_t* build_dns_msg (mio_dnsc_t* dnsc, mio_dns_bdns_t* bdns, mio_dns_bqr_t* qr, mio_oow_t qr_count, mio_dns_brr_t* rr, mio_oow_t rr_count, mio_dns_bedns_t* edns)
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{
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mio_t* mio = dnsc->mio;
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mio_oow_t dnlen, msgbufsz, i;
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mio_dns_msg_t* msg;
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mio_dns_pkt_t* pkt;
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mio_uint8_t* dn;
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mio_dns_qrtr_t* qrtr;
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mio_dns_rrtr_t* rrtr;
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int rr_sect;
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mio_uint32_t edns_dlen;
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msgbufsz = MIO_SIZEOF(*msg) + MIO_SIZEOF(*pkt);
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for (i = 0; i < qr_count; i++)
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{
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/* <length>segmnet<length>segment<zero>.
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* if the input has the ending period(e.g. mio.lib.), the dn length is namelen + 1.
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* if the input doesn't have the ending period(e.g. mio.lib) . the dn length is namelen + 2. */
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msgbufsz += mio_count_bcstr(qr[i].qname) + 2 + MIO_SIZEOF(*qrtr);
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}
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for (i = 0; i < rr_count; i++)
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{
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msgbufsz += mio_count_bcstr(rr[i].qname) + 2 + MIO_SIZEOF(*rrtr) + rr[i].dlen;
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}
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edns_dlen = 0;
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if (edns)
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{
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mio_dns_beopt_t* beopt;
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msgbufsz += 1 + MIO_SIZEOF(*rrtr); /* edns0 OPT RR - 1 for the root name */
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beopt = edns->beoptr;
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for (i = 0; i < edns->beonum; i++)
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{
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edns_dlen += MIO_SIZEOF(mio_dns_eopt_t) + beopt->dlen;
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if (edns_dlen > MIO_TYPE_MAX(mio_uint16_t))
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{
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mio_seterrbfmt (mio, MIO_EINVAL, "edns options too large");
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return MIO_NULL;
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}
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beopt++;
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}
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msgbufsz += edns_dlen;
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}
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else
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{
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if (bdns->rcode > 0x0F)
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{
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/* rcode is larger than 4 bits. but edns info is not provided */
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mio_seterrbfmt (mio, MIO_EINVAL, "rcode too large without edns - %d", bdns->rcode);
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return MIO_NULL;
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}
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}
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msgbufsz = MIO_ALIGN_POW2(msgbufsz, 64);
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/* TODO: msg buffer reuse */
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msg = mio_callocmem(mio, msgbufsz);
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if (!msg) return MIO_NULL;
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msg->buflen = msgbufsz; /* record the buffer size in the preamble */
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msg->rtmridx = MIO_TMRIDX_INVALID;
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msg->dev = (mio_dev_t*)dnsc->sck;
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pkt = (mio_dns_pkt_t*)(msg + 1); /* actual message begins after the size word */
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dn = (mio_uint8_t*)(pkt + 1);
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for (i = 0; i < qr_count; i++)
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{
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/* dnlen includes the ending <zero> */
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dnlen = to_dn((mio_dns_t*)dnsc, qr[i].qname, dn, mio_count_bcstr(qr[i].qname) + 2);
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if (dnlen <= 0)
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{
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release_dns_msg (dnsc, msg);
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mio_seterrbfmt (mio, MIO_EINVAL, "invalid domain name - %hs", qr[i].qname);
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return MIO_NULL;
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}
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qrtr = (mio_dns_qrtr_t*)(dn + dnlen);
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qrtr->qtype = mio_hton16(qr[i].qtype);
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qrtr->qclass = mio_hton16(qr[i].qclass);
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dn = (mio_uint8_t*)(qrtr + 1);
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}
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for (rr_sect = MIO_DNS_RR_PART_ANSWER; rr_sect <= MIO_DNS_RR_PART_ADDITIONAL;)
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{
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mio_oow_t match_count = 0;
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for (i = 0; i < rr_count; i++)
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{
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if (rr[i].part == rr_sect)
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{
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dnlen = to_dn((mio_dns_t*)dnsc, rr[i].qname, dn, mio_count_bcstr(rr[i].qname) + 2);
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if (dnlen <= 0)
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{
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release_dns_msg (dnsc, msg);
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mio_seterrbfmt (mio, MIO_EINVAL, "invalid domain name - %hs", rr[i].qname);
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return MIO_NULL;
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}
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rrtr = (mio_dns_rrtr_t*)(dn + dnlen);
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rrtr->qtype = mio_hton16(rr[i].qtype);
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rrtr->qclass = mio_hton16(rr[i].qclass);
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rrtr->ttl = mio_hton32(rr[i].ttl);
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rrtr->dlen = mio_hton16(rr[i].dlen);
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if (rr[i].dlen > 0) MIO_MEMCPY (rrtr + 1, rr[i].dptr, rr[i].dlen);
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dn = (mio_uint8_t*)(rrtr + 1) + rr[i].dlen;
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match_count++;
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}
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}
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rr_sect = rr_sect + 1;
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((mio_dns_pkt_alt_t*)pkt)->rrcount[rr_sect] = mio_hton16(match_count);
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}
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if (edns)
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{
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mio_dns_eopt_t* eopt;
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mio_dns_beopt_t* beopt;
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/* add EDNS0 OPT RR */
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*dn = 0; /* root domain. as if to_dn("") is called */
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rrtr = (mio_dns_rrtr_t*)(dn + 1);
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rrtr->qtype = MIO_CONST_HTON16(MIO_DNS_QTYPE_OPT);
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rrtr->qclass = mio_hton16(edns->uplen);
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rrtr->ttl = mio_hton32(MIO_DNS_EDNS_MAKE_TTL(bdns->rcode, edns->version, edns->dnssecok));
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rrtr->dlen = mio_hton16((mio_uint16_t)edns_dlen);
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dn = (mio_uint8_t*)(rrtr + 1);
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beopt = edns->beoptr;
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eopt = (mio_dns_eopt_t*)dn;
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for (i = 0; i < edns->beonum; i++)
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{
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eopt->code = mio_hton16(beopt->code);
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eopt->dlen = mio_hton16(beopt->dlen);
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MIO_MEMCPY (++eopt, beopt->dptr, beopt->dlen);
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eopt = (mio_dns_eopt_t*)((mio_uint8_t*)eopt + beopt->dlen);
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beopt++;
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}
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pkt->arcount = mio_hton16((mio_ntoh16(pkt->arcount) + 1));
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dn += edns_dlen;
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}
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pkt->qdcount = mio_hton16(qr_count);
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if (bdns->id < 0)
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{
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pkt->id = mio_hton16(dnsc->seq);
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dnsc->seq++;
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}
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else
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{
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pkt->id = mio_hton16((mio_uint16_t)bdns->id);
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}
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/*pkt->qr = (rr_count > 0);
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pkt->opcode = MIO_DNS_OPCODE_QUERY;*/
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pkt->qr = bdns->qr & 0x01;
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pkt->opcode = bdns->opcode & 0x0F;
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pkt->aa = bdns->aa & 0x01;
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pkt->tc = bdns->tc & 0x01;
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pkt->rd = bdns->rd & 0x01;
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pkt->ra = bdns->ra & 0x01;
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pkt->ad = bdns->ad & 0x01;
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pkt->cd = bdns->cd & 0x01;
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pkt->rcode = bdns->rcode & 0x0F;
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msg->pktlen = dn - (mio_uint8_t*)pkt;
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return msg;
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}
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static void parse_dns_pkt (mio_dnsc_t* dnsc, mio_dns_pkt_t* pkt, mio_oow_t len)
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{
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mio_t* mio = dnsc->mio;
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mio_dns_bdns_t* bdns;
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mio_uint16_t i;
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mio_uint8_t* dn;
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MIO_ASSERT (mio, len >= MIO_SIZEOF(*pkt));
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/* TODO: */
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bdns->id = mio_ntoh16(pkt->id);
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bdns->qr = pkt->qr & 0x01;
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bdns->opcode = pkt->opcode & 0x0F;
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bdns->aa = pkt->aa & 0x01;
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bdns->tc = pkt->tc & 0x01;
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bdns->rd = pkt->rd & 0x01;
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bdns->ra = pkt->ra & 0x01;
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bdns->ad = pkt->ad & 0x01;
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bdns->cd = pkt->cd & 0x01;
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bdns->rcode = pkt->rcode & 0x0F;
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/*
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bdns->qdcount = mio_ntoh16(pkt->qdcount);
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bdns->ancount = mio_ntoh16(pkt->ancount);
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bdns->nscount = mio_ntoh16(pkt->nscount);
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bdns->arcount = mio_ntoh16(pkt->arcount);
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*/
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dn = (mio_uint8_t*)(pkt + 1);
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#if 0
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for (i = 0; i < bdns->qrcount; i++)
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{
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}
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for (i = 0; i < bdns->ancount; i++)
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{
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}
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for (i = 0; i < bdns->nscount; i++)
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{
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}
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for (i = 0; i < bdns->arcount; i++)
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{
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#if 0
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if (*dn == 0)
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{
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rrtr = (mio_dns_rrtr_t*)(dn + 1);
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if (rrtr->qtype == MIO_CONST_HTON16(MIO_DNS_QTYPE_OPT)
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{
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/* edns */
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}
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}
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#endif
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}
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#endif
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}
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/* ----------------------------------------------------------------------- */
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static int dnsc_on_read (mio_dev_sck_t* dev, const void* data, mio_iolen_t dlen, const mio_sckaddr_t* srcaddr)
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{
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mio_t* mio = dev->mio;
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mio_dnsc_t* dnsc = ((dnsc_sck_xtn_t*)mio_dev_sck_getxtn(dev))->dnsc;
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mio_dns_pkt_t* pkt;
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mio_dns_msg_t* reqmsg;
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mio_uint16_t id;
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if (dlen < MIO_SIZEOF(*pkt))
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{
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MIO_DEBUG0 (mio, "dns packet too small from ....\n"); /* TODO: add source packet */
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return 0; /* drop */
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}
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pkt = (mio_dns_pkt_t*)data;
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if (!pkt->qr)
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{
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MIO_DEBUG0 (mio, "dropping dns request received ...\n"); /* TODO: add source info */
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return 0; /* drop request */
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}
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id = mio_ntoh16(pkt->id);
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/* if id doesn't matche one of the pending requests sent, drop */
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/* TODO: improve performance */
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reqmsg = dnsc->pending_req;
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while (reqmsg)
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{
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mio_dns_pkt_t* reqpkt = (mio_dns_pkt_t*)(reqmsg + 1);
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if (dev == (mio_dev_sck_t*)reqmsg->dev && pkt->id == reqpkt->id) /* TODO: check the source address against the target address */
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{
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MIO_DEBUG1 (mio, "received dns response...id %d\n", id);
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/* TODO: parse the response... perform actual work. pass the result back?? */
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parse_dns_pkt (dnsc, pkt, dlen);
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release_dns_msg (dnsc, reqmsg);
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return 0;
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}
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reqmsg = reqmsg->next;
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}
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/* the response id didn't match the ID of pending requests */
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MIO_DEBUG0 (mio, "unknown dns response... \n"); /* TODO: add source info */
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return 0;
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}
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static void dnsc_on_read_timeout (mio_t* mio, const mio_ntime_t* now, mio_tmrjob_t* job)
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{
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mio_dns_msg_t* msg = (mio_dns_msg_t*)job->ctx;
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mio_dev_sck_t* dev = (mio_dev_sck_t*)msg->dev;
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mio_dnsc_t* dnsc = ((dnsc_sck_xtn_t*)mio_dev_sck_getxtn(dev))->dnsc;
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MIO_ASSERT (mio, msg->rtmridx == MIO_TMRIDX_INVALID);
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MIO_DEBUG0 (mio, "unable to receive dns response in time...\n");
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release_dns_msg (dnsc, msg);
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}
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static int dnsc_on_write (mio_dev_sck_t* dev, mio_iolen_t wrlen, void* wrctx, const mio_sckaddr_t* dstaddr)
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{
|
|
mio_t* mio = dev->mio;
|
|
mio_dns_msg_t* msg = (mio_dns_msg_t*)wrctx;
|
|
mio_dnsc_t* dnsc = ((dnsc_sck_xtn_t*)mio_dev_sck_getxtn(dev))->dnsc;
|
|
mio_tmrjob_t tmrjob;
|
|
mio_ntime_t tmout;
|
|
|
|
MIO_DEBUG0 (mio, "sent dns request...\n");
|
|
|
|
MIO_ASSERT (mio, dev == (mio_dev_sck_t*)msg->dev);
|
|
|
|
/* TODO: make this configurable. or accept dnsc->config.read_timeout... */
|
|
tmout.sec = 3;
|
|
tmout.nsec = 0;
|
|
|
|
MIO_MEMSET (&tmrjob, 0, MIO_SIZEOF(tmrjob));
|
|
tmrjob.ctx = msg;
|
|
mio_gettime (mio, &tmrjob.when);
|
|
MIO_ADD_NTIME (&tmrjob.when, &tmrjob.when, &tmout);
|
|
tmrjob.handler = dnsc_on_read_timeout;
|
|
tmrjob.idxptr = &msg->rtmridx;
|
|
msg->rtmridx = mio_instmrjob(mio, &tmrjob);
|
|
if (msg->rtmridx == MIO_TMRIDX_INVALID)
|
|
{
|
|
MIO_DEBUG0 (mio, "unable to schedule timeout...\n");
|
|
release_dns_msg (dnsc, msg);
|
|
return 0;
|
|
}
|
|
|
|
/* TODO: improve performance */
|
|
if (dnsc->pending_req)
|
|
{
|
|
dnsc->pending_req->prev = msg;
|
|
msg->next = dnsc->pending_req;
|
|
}
|
|
dnsc->pending_req = msg;
|
|
|
|
return 0;
|
|
}
|
|
|
|
static void dnsc_on_connect (mio_dev_sck_t* dev)
|
|
{
|
|
}
|
|
|
|
static void dnsc_on_disconnect (mio_dev_sck_t* dev)
|
|
{
|
|
}
|
|
|
|
mio_dnsc_t* mio_dnsc_start (mio_t* mio)
|
|
{
|
|
mio_dnsc_t* dnsc = MIO_NULL;
|
|
mio_dev_sck_make_t mkinfo;
|
|
dnsc_sck_xtn_t* xtn;
|
|
|
|
dnsc = (mio_dnsc_t*)mio_callocmem(mio, MIO_SIZEOF(*dnsc));
|
|
if (!dnsc) goto oops;
|
|
|
|
dnsc->mio = mio;
|
|
dnsc->stop = mio_dnsc_stop;
|
|
|
|
MIO_MEMSET (&mkinfo, 0, MIO_SIZEOF(mkinfo));
|
|
mkinfo.type = MIO_DEV_SCK_UDP4; /* or UDP6 depending on the binding address */
|
|
mkinfo.on_write = dnsc_on_write;
|
|
mkinfo.on_read = dnsc_on_read;
|
|
mkinfo.on_connect = dnsc_on_connect;
|
|
mkinfo.on_disconnect = dnsc_on_disconnect;
|
|
dnsc->sck = mio_dev_sck_make(mio, MIO_SIZEOF(*xtn), &mkinfo);
|
|
if (!dnsc->sck) goto oops;
|
|
|
|
xtn = (dnsc_sck_xtn_t*)mio_dev_sck_getxtn(dnsc->sck);
|
|
xtn->dnsc = dnsc;
|
|
|
|
/* bind if requested */
|
|
/*if (mio_dev_sck_bind(dev, ....) <= -1) goto oops;*/
|
|
{
|
|
mio_uint32_t ia = 0x01010101; /* 1.1.1.1 */
|
|
mio_sckaddr_initforip4 (&dnsc->serveraddr, 53, (mio_ip4addr_t*)&ia);
|
|
}
|
|
|
|
MIO_SVC_REGISTER (mio, (mio_svc_t*)dnsc);
|
|
return dnsc;
|
|
|
|
oops:
|
|
if (dnsc)
|
|
{
|
|
if (dnsc->sck) mio_dev_sck_kill (dnsc->sck);
|
|
mio_freemem (mio, dnsc);
|
|
}
|
|
return MIO_NULL;
|
|
}
|
|
|
|
void mio_dnsc_stop (mio_dnsc_t* dnsc)
|
|
{
|
|
mio_t* mio = dnsc->mio;
|
|
if (dnsc->sck) mio_dev_sck_kill (dnsc->sck);
|
|
MIO_SVC_UNREGISTER (mio, dnsc);
|
|
while (dnsc->pending_req) release_dns_msg (dnsc, dnsc->pending_req);
|
|
mio_freemem (mio, dnsc);
|
|
}
|
|
|
|
|
|
int mio_dnsc_sendmsg (mio_dnsc_t* dnsc, mio_dns_bdns_t* bdns, mio_dns_bqr_t* qr, mio_oow_t qr_count, mio_dns_brr_t* rr, mio_oow_t rr_count, mio_dns_bedns_t* edns)
|
|
{
|
|
/* send a request or a response */
|
|
mio_dns_msg_t* msg;
|
|
|
|
msg = build_dns_msg(dnsc, bdns, qr, qr_count, rr, rr_count, edns);
|
|
if (!msg) return -1;
|
|
|
|
/* TODO: optionally, override dnsc->serveraddr and use the target address passed as a parameter */
|
|
if (mio_dev_sck_write(dnsc->sck, msg + 1, msg->pktlen, msg, &dnsc->serveraddr) <= -1)
|
|
{
|
|
release_dns_msg (dnsc, msg);
|
|
return -1;
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
int mio_dnsc_sendreq (mio_dnsc_t* dnsc, mio_dns_bdns_t* bdns, mio_dns_bqr_t* qr, mio_oow_t qr_count, mio_dns_bedns_t* edns)
|
|
{
|
|
/* send requests without resource record */
|
|
mio_oow_t i;
|
|
for (i = 0; i < qr_count; i++)
|
|
{
|
|
if (mio_dnsc_sendmsg(dnsc, bdns, &qr[i], 1, MIO_NULL, 0, edns) <= -1) return -1;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
#if 0
|
|
static void dnss_on_request (mio_dnss_t* dnss, mio_dns_req_t* req)
|
|
{
|
|
mio_dnss_reply (dnss, rep); /* reply send timeout??? */
|
|
}
|
|
|
|
/* ----------------------------------------------------------------------- */
|
|
|
|
|
|
int main ()
|
|
{
|
|
mio = mio_open ();
|
|
|
|
dnss1 = mio_dnss_start(mio, "1.1.1.1:53,2.2.2.2:53", dnss_on_request);
|
|
mio_dnss_end (dnss1);
|
|
|
|
dnsc1 = mio_dnsc_start (mio, "8.8.8.8:53,1.1.1.1:53"); /* option - send to all, send one by one */
|
|
mio_dnsc_resolve (dnsc1, "A:www.google.com", dnsc_on_response);
|
|
mio_dnsc_end (dnsc1);
|
|
|
|
mio_close (mio);
|
|
return 0;
|
|
}
|
|
|
|
#endif
|