532 lines
15 KiB
C++
532 lines
15 KiB
C++
/*
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* This file Copyright (C) 2010-2014 Mnemosyne LLC
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*
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* It may be used under the GNU GPL versions 2 or 3
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* or any future license endorsed by Mnemosyne LLC.
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*
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*/
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#include <climits> /* USHRT_MAX */
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#include <cstdio> /* fprintf() */
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#include <cstring> /* strchr(), memcmp(), memcpy() */
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#include <event2/buffer.h>
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#include <event2/http.h> /* for HTTP_OK */
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#define LIBTRANSMISSION_ANNOUNCER_MODULE
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#include "transmission.h"
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#include "announcer-common.h"
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#include "log.h"
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#include "net.h" /* tr_globalIPv6() */
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#include "peer-mgr.h" /* pex */
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#include "torrent.h"
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#include "trevent.h" /* tr_runInEventThread() */
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#include "utils.h"
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#include "variant.h"
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#include "web.h" /* tr_http_escape() */
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#define dbgmsg(name, ...) tr_logAddDeepNamed(name, __VA_ARGS__)
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/****
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*****
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***** ANNOUNCE
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*****
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****/
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static char const* get_event_string(tr_announce_request const* req)
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{
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return req->partial_seed && (req->event != TR_ANNOUNCE_EVENT_STOPPED) ? "paused" : tr_announce_event_get_string(req->event);
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}
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static char* announce_url_new(tr_session const* session, tr_announce_request const* req)
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{
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evbuffer* const buf = evbuffer_new();
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char escaped_info_hash[SHA_DIGEST_LENGTH * 3 + 1];
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tr_http_escape_sha1(escaped_info_hash, req->info_hash);
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evbuffer_expand(buf, 1024);
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evbuffer_add_printf(
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buf,
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"%s"
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"%c"
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"info_hash=%s"
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"&peer_id=%*.*s"
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"&port=%d"
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"&uploaded=%" PRIu64 //
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"&downloaded=%" PRIu64 //
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"&left=%" PRIu64
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"&numwant=%d"
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"&key=%x"
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"&compact=1"
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"&supportcrypto=1",
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req->url,
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strchr(req->url, '?') != nullptr ? '&' : '?',
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escaped_info_hash,
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TR_ARG_TUPLE(int(std::size(req->peer_id)), int(std::size(req->peer_id)), std::data(req->peer_id)),
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req->port,
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req->up,
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req->down,
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req->leftUntilComplete,
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req->numwant,
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req->key);
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if (session->encryptionMode == TR_ENCRYPTION_REQUIRED)
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{
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evbuffer_add_printf(buf, "&requirecrypto=1");
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}
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if (req->corrupt != 0)
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{
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evbuffer_add_printf(buf, "&corrupt=%" PRIu64, req->corrupt);
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}
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char const* str = get_event_string(req);
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if (!tr_str_is_empty(str))
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{
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evbuffer_add_printf(buf, "&event=%s", str);
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}
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str = req->tracker_id_str;
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if (!tr_str_is_empty(str))
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{
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evbuffer_add_printf(buf, "&trackerid=%s", str);
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}
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/* There are two incompatible techniques for announcing an IPv6 address.
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BEP-7 suggests adding an "ipv6=" parameter to the announce URL,
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while OpenTracker requires that peers announce twice, once over IPv4
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and once over IPv6.
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To be safe, we should do both: add the "ipv6=" parameter and
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announce twice. At any rate, we're already computing our IPv6
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address (for the LTEP handshake), so this comes for free. */
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unsigned char const* const ipv6 = tr_globalIPv6();
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if (ipv6 != nullptr)
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{
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char ipv6_readable[INET6_ADDRSTRLEN];
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evutil_inet_ntop(AF_INET6, ipv6, ipv6_readable, INET6_ADDRSTRLEN);
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evbuffer_add_printf(buf, "&ipv6=");
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tr_http_escape(buf, ipv6_readable, true);
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}
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return evbuffer_free_to_str(buf, nullptr);
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}
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static tr_pex* listToPex(tr_variant* peerList, size_t* setme_len)
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{
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size_t n = 0;
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size_t const len = tr_variantListSize(peerList);
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tr_pex* pex = tr_new0(tr_pex, len);
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for (size_t i = 0; i < len; ++i)
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{
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tr_variant* const peer = tr_variantListChild(peerList, i);
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if (peer == nullptr)
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{
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continue;
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}
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char const* ip = nullptr;
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if (!tr_variantDictFindStr(peer, TR_KEY_ip, &ip, nullptr))
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{
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continue;
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}
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auto addr = tr_address{};
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if (!tr_address_from_string(&addr, ip))
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{
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continue;
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}
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auto port = int64_t{};
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if (!tr_variantDictFindInt(peer, TR_KEY_port, &port))
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{
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continue;
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}
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if (port < 0 || port > USHRT_MAX)
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{
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continue;
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}
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if (!tr_address_is_valid_for_peers(&addr, port))
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{
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continue;
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}
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pex[n].addr = addr;
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pex[n].port = htons((uint16_t)port);
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++n;
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}
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*setme_len = n;
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return pex;
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}
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struct announce_data
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{
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tr_announce_response response;
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tr_announce_response_func response_func;
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void* response_func_user_data;
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char log_name[128];
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};
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static void on_announce_done_eventthread(void* vdata)
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{
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auto* data = static_cast<struct announce_data*>(vdata);
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if (data->response_func != nullptr)
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{
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data->response_func(&data->response, data->response_func_user_data);
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}
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tr_free(data->response.pex6);
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tr_free(data->response.pex);
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tr_free(data->response.tracker_id_str);
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tr_free(data->response.warning);
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tr_free(data->response.errmsg);
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tr_free(data);
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}
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static void on_announce_done(
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tr_session* session,
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bool did_connect,
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bool did_timeout,
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long response_code,
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void const* msg,
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size_t msglen,
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void* vdata)
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{
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auto* data = static_cast<struct announce_data*>(vdata);
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tr_announce_response* const response = &data->response;
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response->did_connect = did_connect;
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response->did_timeout = did_timeout;
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dbgmsg(data->log_name, "Got announce response");
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if (response_code != HTTP_OK)
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{
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char const* fmt = _("Tracker gave HTTP response code %1$ld (%2$s)");
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char const* response_str = tr_webGetResponseStr(response_code);
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response->errmsg = tr_strdup_printf(fmt, response_code, response_str);
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}
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else
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{
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tr_variant benc;
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bool const variant_loaded = tr_variantFromBenc(&benc, msg, msglen) == 0;
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if (tr_env_key_exists("TR_CURL_VERBOSE"))
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{
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if (!variant_loaded)
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{
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fprintf(stderr, "%s", "Announce response was not in benc format\n");
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}
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else
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{
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auto len = size_t{};
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char* str = tr_variantToStr(&benc, TR_VARIANT_FMT_JSON, &len);
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fprintf(stderr, "%s", "Announce response:\n< ");
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for (size_t i = 0; i < len; ++i)
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{
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fputc(str[i], stderr);
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}
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fputc('\n', stderr);
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tr_free(str);
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}
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}
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if (variant_loaded && tr_variantIsDict(&benc))
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{
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auto i = int64_t{};
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auto len = size_t{};
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tr_variant* tmp = nullptr;
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char const* str = nullptr;
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uint8_t const* raw = nullptr;
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if (tr_variantDictFindStr(&benc, TR_KEY_failure_reason, &str, &len))
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{
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response->errmsg = tr_strndup(str, len);
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}
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if (tr_variantDictFindStr(&benc, TR_KEY_warning_message, &str, &len))
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{
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response->warning = tr_strndup(str, len);
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}
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if (tr_variantDictFindInt(&benc, TR_KEY_interval, &i))
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{
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response->interval = i;
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}
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if (tr_variantDictFindInt(&benc, TR_KEY_min_interval, &i))
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{
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response->min_interval = i;
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}
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if (tr_variantDictFindStr(&benc, TR_KEY_tracker_id, &str, &len))
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{
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response->tracker_id_str = tr_strndup(str, len);
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}
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if (tr_variantDictFindInt(&benc, TR_KEY_complete, &i))
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{
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response->seeders = i;
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}
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if (tr_variantDictFindInt(&benc, TR_KEY_incomplete, &i))
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{
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response->leechers = i;
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}
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if (tr_variantDictFindInt(&benc, TR_KEY_downloaded, &i))
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{
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response->downloads = i;
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}
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if (tr_variantDictFindRaw(&benc, TR_KEY_peers6, &raw, &len))
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{
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dbgmsg(data->log_name, "got a peers6 length of %zu", len);
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response->pex6 = tr_peerMgrCompact6ToPex(raw, len, nullptr, 0, &response->pex6_count);
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}
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if (tr_variantDictFindRaw(&benc, TR_KEY_peers, &raw, &len))
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{
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dbgmsg(data->log_name, "got a compact peers length of %zu", len);
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response->pex = tr_peerMgrCompactToPex(raw, len, nullptr, 0, &response->pex_count);
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}
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else if (tr_variantDictFindList(&benc, TR_KEY_peers, &tmp))
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{
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response->pex = listToPex(tmp, &response->pex_count);
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dbgmsg(data->log_name, "got a peers list with %zu entries", response->pex_count);
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}
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}
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if (variant_loaded)
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{
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tr_variantFree(&benc);
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}
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}
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tr_runInEventThread(session, on_announce_done_eventthread, data);
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}
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void tr_tracker_http_announce(
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tr_session* session,
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tr_announce_request const* request,
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tr_announce_response_func response_func,
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void* response_func_user_data)
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{
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char* const url = announce_url_new(session, request);
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auto* const d = tr_new0(announce_data, 1);
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d->response.seeders = -1;
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d->response.leechers = -1;
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d->response.downloads = -1;
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d->response_func = response_func;
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d->response_func_user_data = response_func_user_data;
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memcpy(d->response.info_hash, request->info_hash, SHA_DIGEST_LENGTH);
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tr_strlcpy(d->log_name, request->log_name, sizeof(d->log_name));
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dbgmsg(request->log_name, "Sending announce to libcurl: \"%s\"", url);
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tr_webRun(session, url, on_announce_done, d);
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tr_free(url);
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}
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/****
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*****
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***** SCRAPE
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*****
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****/
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struct scrape_data
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{
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tr_scrape_response response;
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tr_scrape_response_func response_func;
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void* response_func_user_data;
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char log_name[128];
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};
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static void on_scrape_done_eventthread(void* vdata)
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{
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auto* data = static_cast<struct scrape_data*>(vdata);
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if (data->response_func != nullptr)
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{
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data->response_func(&data->response, data->response_func_user_data);
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}
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delete data;
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}
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static void on_scrape_done(
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tr_session* session,
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bool did_connect,
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bool did_timeout,
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long response_code,
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void const* msg,
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size_t msglen,
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void* vdata)
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{
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auto* data = static_cast<struct scrape_data*>(vdata);
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tr_scrape_response* response = &data->response;
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response->did_connect = did_connect;
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response->did_timeout = did_timeout;
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dbgmsg(data->log_name, "Got scrape response for \"%s\"", response->url.c_str());
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if (response_code != HTTP_OK)
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{
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char const* fmt = _("Tracker gave HTTP response code %1$ld (%2$s)");
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char const* response_str = tr_webGetResponseStr(response_code);
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char buf[512];
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tr_snprintf(buf, sizeof(buf), fmt, response_code, response_str);
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response->errmsg = buf;
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}
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else
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{
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auto top = tr_variant{};
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auto const variant_loaded = tr_variantFromBenc(&top, msg, msglen) == 0;
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if (tr_env_key_exists("TR_CURL_VERBOSE"))
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{
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if (!variant_loaded)
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{
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fprintf(stderr, "%s", "Scrape response was not in benc format\n");
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}
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else
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{
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auto len = size_t{};
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char* str = tr_variantToStr(&top, TR_VARIANT_FMT_JSON, &len);
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fprintf(stderr, "%s", "Scrape response:\n< ");
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for (size_t i = 0; i < len; ++i)
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{
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fputc(str[i], stderr);
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}
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fputc('\n', stderr);
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tr_free(str);
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}
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}
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if (variant_loaded)
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{
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auto len = size_t{};
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char const* str = nullptr;
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if (tr_variantDictFindStr(&top, TR_KEY_failure_reason, &str, &len))
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{
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response->errmsg = std::string{ str, len };
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}
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tr_variant* flags = nullptr;
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auto intVal = int64_t{};
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if (tr_variantDictFindDict(&top, TR_KEY_flags, &flags) &&
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tr_variantDictFindInt(flags, TR_KEY_min_request_interval, &intVal))
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{
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response->min_request_interval = intVal;
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}
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tr_variant* files = nullptr;
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if (tr_variantDictFindDict(&top, TR_KEY_files, &files))
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{
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auto key = tr_quark{};
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tr_variant* val = nullptr;
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for (int i = 0; tr_variantDictChild(files, i, &key, &val); ++i)
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{
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/* populate the corresponding row in our response array */
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for (int j = 0; j < response->row_count; ++j)
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{
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struct tr_scrape_response_row* row = &response->rows[j];
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if (memcmp(tr_quark_get_string(key, nullptr), row->info_hash, SHA_DIGEST_LENGTH) == 0)
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{
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if (tr_variantDictFindInt(val, TR_KEY_complete, &intVal))
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{
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row->seeders = intVal;
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}
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if (tr_variantDictFindInt(val, TR_KEY_incomplete, &intVal))
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{
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row->leechers = intVal;
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}
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if (tr_variantDictFindInt(val, TR_KEY_downloaded, &intVal))
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{
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row->downloads = intVal;
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}
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if (tr_variantDictFindInt(val, TR_KEY_downloaders, &intVal))
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{
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row->downloaders = intVal;
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}
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break;
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}
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}
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}
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}
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tr_variantFree(&top);
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}
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}
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tr_runInEventThread(session, on_scrape_done_eventthread, data);
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}
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static char* scrape_url_new(tr_scrape_request const* req)
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{
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struct evbuffer* const buf = evbuffer_new();
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evbuffer_add_printf(buf, "%s", req->url);
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char delimiter = strchr(req->url, '?') != nullptr ? '&' : '?';
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for (int i = 0; i < req->info_hash_count; ++i)
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{
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char str[SHA_DIGEST_LENGTH * 3 + 1];
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tr_http_escape_sha1(str, req->info_hash[i]);
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evbuffer_add_printf(buf, "%cinfo_hash=%s", delimiter, str);
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delimiter = '&';
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}
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return evbuffer_free_to_str(buf, nullptr);
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}
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void tr_tracker_http_scrape(
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tr_session* session,
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tr_scrape_request const* request,
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tr_scrape_response_func response_func,
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void* response_func_user_data)
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{
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char* url = scrape_url_new(request);
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auto* d = new scrape_data{};
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d->response.url = request->url;
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d->response_func = response_func;
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d->response_func_user_data = response_func_user_data;
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d->response.row_count = request->info_hash_count;
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for (int i = 0; i < d->response.row_count; ++i)
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{
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memcpy(d->response.rows[i].info_hash, request->info_hash[i], SHA_DIGEST_LENGTH);
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d->response.rows[i].seeders = -1;
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d->response.rows[i].leechers = -1;
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d->response.rows[i].downloads = -1;
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}
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tr_strlcpy(d->log_name, request->log_name, sizeof(d->log_name));
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dbgmsg(request->log_name, "Sending scrape to libcurl: \"%s\"", url);
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tr_webRun(session, url, on_scrape_done, d);
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tr_free(url);
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|
}
|