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log format expressions are broadly used within the code: once they are parsed from input string, they are converted to a linked list of logformat nodes. We're starting to face some limitations because we're simply storing the converted expression as a generic logformat_node list. The first issue we're facing is that storing logformat expressions that way doesn't allow us to add metadata alongside the list, which is part of the prerequites for implementing log-profiles. Another issue with storing logformat expressions as generic lists of logformat_node elements is that it's starting to become really hard to tell when we rely on logformat expressions or not in the code given that there isn't always a comment near the list declaration or manipulation to indicate that it's relying on logformat expressions under the hood, so this adds some complexity for code maintenance. This patch looks quite impressive due to changes in a lot of header and source files (since logformat expressions are broadly used), but it does a simple thing: it defines the lf_expr structure which itself holds a generic list of logformat nodes, and then declares some helpers to manipulate lf_expr elements and fixes the code so that we now exclusively manipulate logformat_node lists as lf_expr elements outside of log.c. For now, lf_expr struct only contains the list of logformat nodes (no additional metadata), but now that we have dedicated type and helpers, doing so in the future won't be problematic at all and won't require extensive code changes.
340 lines
9.8 KiB
C
340 lines
9.8 KiB
C
/*
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* Frontend variables and functions.
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*
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* Copyright 2000-2013 Willy Tarreau <w@1wt.eu>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version
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* 2 of the License, or (at your option) any later version.
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*
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*/
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#include <errno.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <netinet/tcp.h>
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#include <haproxy/acl.h>
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#include <haproxy/api.h>
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#include <haproxy/arg.h>
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#include <haproxy/chunk.h>
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#include <haproxy/connection.h>
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#include <haproxy/fd.h>
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#include <haproxy/frontend.h>
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#include <haproxy/global.h>
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#include <haproxy/http_ana.h>
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#include <haproxy/log.h>
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#include <haproxy/proto_tcp.h>
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#include <haproxy/proxy.h>
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#include <haproxy/sample.h>
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#include <haproxy/sc_strm.h>
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#include <haproxy/stream.h>
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#include <haproxy/task.h>
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#include <haproxy/ticks.h>
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#include <haproxy/tools.h>
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/* Finish a stream accept() for a proxy (TCP or HTTP). It returns a negative
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* value in case of a critical failure which must cause the listener to be
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* disabled, a positive or null value in case of success.
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*/
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int frontend_accept(struct stream *s)
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{
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const struct sockaddr_storage *src, *dst;
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struct session *sess = s->sess;
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struct connection *conn = objt_conn(sess->origin);
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struct listener *l = sess->listener;
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struct proxy *fe = sess->fe;
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if ((fe->mode == PR_MODE_TCP || fe->mode == PR_MODE_HTTP)
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&& (!LIST_ISEMPTY(&fe->loggers))) {
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if (likely(!lf_expr_isempty(&fe->logformat))) {
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/* we have the client ip */
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if (s->logs.logwait & LW_CLIP)
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if (!(s->logs.logwait &= ~(LW_CLIP|LW_INIT)))
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s->do_log(s);
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}
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else if (conn) {
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src = sc_src(s->scf);
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if (!src)
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send_log(fe, LOG_INFO, "Connect from unknown source to listener %d (%s/%s)\n",
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l->luid, fe->id, (fe->mode == PR_MODE_HTTP) ? "HTTP" : "TCP");
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else {
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char pn[INET6_ADDRSTRLEN], sn[INET6_ADDRSTRLEN];
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int port;
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switch (addr_to_str(src, pn, sizeof(pn))) {
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case AF_INET:
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case AF_INET6:
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dst = sc_dst(s->scf);
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if (dst) {
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addr_to_str(dst, sn, sizeof(sn));
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port = get_host_port(dst);
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} else {
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strlcpy2(sn, "undetermined address", sizeof(sn));
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port = 0;
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}
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send_log(fe, LOG_INFO, "Connect from %s:%d to %s:%d (%s/%s)\n",
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pn, get_host_port(src),
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sn, port,
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fe->id, (fe->mode == PR_MODE_HTTP) ? "HTTP" : "TCP");
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break;
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case AF_UNIX:
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/* UNIX socket, only the destination is known */
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send_log(fe, LOG_INFO, "Connect to unix:%d (%s/%s)\n",
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l->luid,
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fe->id, (fe->mode == PR_MODE_HTTP) ? "HTTP" : "TCP");
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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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if (unlikely((global.mode & MODE_DEBUG) && conn &&
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(!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE)))) {
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char pn[INET6_ADDRSTRLEN];
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char alpn[16] = "<none>";
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const char *alpn_str = NULL;
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int alpn_len;
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/* try to report the ALPN value when available (also works for NPN) */
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if (conn == sc_conn(s->scf)) {
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if (conn_get_alpn(conn, &alpn_str, &alpn_len) && alpn_str) {
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int len = MIN(alpn_len, sizeof(alpn) - 1);
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memcpy(alpn, alpn_str, len);
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alpn[len] = 0;
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}
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}
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src = sc_src(s->scf);
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if (!src) {
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chunk_printf(&trash, "%08x:%s.accept(%04x)=%04x from [listener:%d] ALPN=%s\n",
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s->uniq_id, fe->id, (unsigned short)l->rx.fd, (unsigned short)conn->handle.fd,
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l->luid, alpn);
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}
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else switch (addr_to_str(src, pn, sizeof(pn))) {
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case AF_INET:
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case AF_INET6:
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chunk_printf(&trash, "%08x:%s.accept(%04x)=%04x from [%s:%d] ALPN=%s\n",
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s->uniq_id, fe->id, (unsigned short)l->rx.fd, (unsigned short)conn->handle.fd,
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pn, get_host_port(src), alpn);
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break;
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case AF_UNIX:
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/* UNIX socket, only the destination is known */
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chunk_printf(&trash, "%08x:%s.accept(%04x)=%04x from [unix:%d] ALPN=%s\n",
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s->uniq_id, fe->id, (unsigned short)l->rx.fd, (unsigned short)conn->handle.fd,
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l->luid, alpn);
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break;
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}
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DISGUISE(write(1, trash.area, trash.data));
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}
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if (fe->mode == PR_MODE_HTTP)
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s->scf->flags |= SC_FL_RCV_ONCE; /* one read is usually enough */
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if (unlikely(fe->nb_req_cap > 0)) {
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if ((s->req_cap = pool_zalloc(fe->req_cap_pool)) == NULL)
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goto out_return; /* no memory */
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}
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if (unlikely(fe->nb_rsp_cap > 0)) {
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if ((s->res_cap = pool_zalloc(fe->rsp_cap_pool)) == NULL)
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goto out_free_reqcap; /* no memory */
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}
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if ((fe->http_needed || IS_HTX_STRM(s)) && !http_create_txn(s))
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goto out_free_rspcap;
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/* everything's OK, let's go on */
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return 1;
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/* Error unrolling */
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out_free_rspcap:
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pool_free(fe->rsp_cap_pool, s->res_cap);
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out_free_reqcap:
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pool_free(fe->req_cap_pool, s->req_cap);
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out_return:
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return -1;
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}
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/* Increment current active connection counter. This ensures that global
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* maxconn is not reached or exceeded. This must be done for every new frontend
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* connection allocation.
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*
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* Returns the new actconn global value. If maxconn reached or exceeded, 0 is
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* returned : the connection allocation should be cancelled.
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*/
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int increment_actconn()
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{
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unsigned int count, next_actconn;
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do {
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count = actconn;
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if (unlikely(count >= global.maxconn)) {
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/* maxconn reached */
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next_actconn = 0;
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goto end;
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}
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/* try to increment actconn */
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next_actconn = count + 1;
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} while (!_HA_ATOMIC_CAS(&actconn, (int *)(&count), next_actconn) && __ha_cpu_relax());
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end:
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return next_actconn;
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}
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/************************************************************************/
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/* All supported sample and ACL keywords must be declared here. */
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/************************************************************************/
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/* set temp integer to the id of the frontend */
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static int
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smp_fetch_fe_id(const struct arg *args, struct sample *smp, const char *kw, void *private)
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{
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smp->flags = SMP_F_VOL_SESS;
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smp->data.type = SMP_T_SINT;
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smp->data.u.sint = smp->sess->fe->uuid;
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return 1;
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}
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/* set string to the name of the frontend */
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static int
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smp_fetch_fe_name(const struct arg *args, struct sample *smp, const char *kw, void *private)
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{
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smp->data.u.str.area = (char *)smp->sess->fe->id;
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if (!smp->data.u.str.area)
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return 0;
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smp->data.type = SMP_T_STR;
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smp->flags = SMP_F_CONST;
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smp->data.u.str.data = strlen(smp->data.u.str.area);
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return 1;
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}
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/* set string to the name of the default backend */
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static int
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smp_fetch_fe_defbe(const struct arg *args, struct sample *smp, const char *kw, void *private)
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{
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if (!smp->sess->fe->defbe.be)
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return 0;
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smp->data.u.str.area = (char *)smp->sess->fe->defbe.be->id;
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if (!smp->data.u.str.area)
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return 0;
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smp->data.type = SMP_T_STR;
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smp->flags = SMP_F_CONST;
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smp->data.u.str.data = strlen(smp->data.u.str.area);
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return 1;
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}
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/* set temp integer to the number of HTTP requests per second reaching the frontend.
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* Accepts exactly 1 argument. Argument is a frontend, other types will cause
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* an undefined behaviour.
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*/
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static int
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smp_fetch_fe_req_rate(const struct arg *args, struct sample *smp, const char *kw, void *private)
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{
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struct proxy *px = args->data.prx;
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if (px == NULL)
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return 0;
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if (px->cap & PR_CAP_DEF)
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px = smp->px;
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smp->flags = SMP_F_VOL_TEST;
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smp->data.type = SMP_T_SINT;
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smp->data.u.sint = read_freq_ctr(&px->fe_req_per_sec);
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return 1;
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}
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/* set temp integer to the number of connections per second reaching the frontend.
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* Accepts exactly 1 argument. Argument is a frontend, other types will cause
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* an undefined behaviour.
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*/
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static int
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smp_fetch_fe_sess_rate(const struct arg *args, struct sample *smp, const char *kw, void *private)
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{
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struct proxy *px = args->data.prx;
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if (px == NULL)
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return 0;
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if (px->cap & PR_CAP_DEF)
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px = smp->px;
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smp->flags = SMP_F_VOL_TEST;
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smp->data.type = SMP_T_SINT;
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smp->data.u.sint = read_freq_ctr(&px->fe_sess_per_sec);
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return 1;
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}
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/* set temp integer to the number of concurrent connections on the frontend
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* Accepts exactly 1 argument. Argument is a frontend, other types will cause
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* an undefined behaviour.
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*/
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static int
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smp_fetch_fe_conn(const struct arg *args, struct sample *smp, const char *kw, void *private)
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{
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struct proxy *px = args->data.prx;
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if (px == NULL)
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return 0;
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if (px->cap & PR_CAP_DEF)
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px = smp->px;
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smp->flags = SMP_F_VOL_TEST;
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smp->data.type = SMP_T_SINT;
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smp->data.u.sint = px->feconn;
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return 1;
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}
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static int
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smp_fetch_fe_client_timeout(const struct arg *args, struct sample *smp, const char *km, void *private)
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{
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smp->flags = SMP_F_VOL_TXN;
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smp->data.type = SMP_T_SINT;
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smp->data.u.sint = TICKS_TO_MS(smp->sess->fe->timeout.client);
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return 1;
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}
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/* Note: must not be declared <const> as its list will be overwritten.
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* Please take care of keeping this list alphabetically sorted.
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*/
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static struct sample_fetch_kw_list smp_kws = {ILH, {
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{ "fe_client_timeout", smp_fetch_fe_client_timeout, 0, NULL, SMP_T_SINT, SMP_USE_FTEND, },
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{ "fe_conn", smp_fetch_fe_conn, ARG1(1,FE), NULL, SMP_T_SINT, SMP_USE_INTRN, },
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{ "fe_defbe", smp_fetch_fe_defbe, 0, NULL, SMP_T_STR, SMP_USE_FTEND, },
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{ "fe_id", smp_fetch_fe_id, 0, NULL, SMP_T_SINT, SMP_USE_FTEND, },
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{ "fe_name", smp_fetch_fe_name, 0, NULL, SMP_T_STR, SMP_USE_FTEND, },
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{ "fe_req_rate", smp_fetch_fe_req_rate, ARG1(1,FE), NULL, SMP_T_SINT, SMP_USE_INTRN, },
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{ "fe_sess_rate", smp_fetch_fe_sess_rate, ARG1(1,FE), NULL, SMP_T_SINT, SMP_USE_INTRN, },
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{ /* END */ },
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}};
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INITCALL1(STG_REGISTER, sample_register_fetches, &smp_kws);
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/* Note: must not be declared <const> as its list will be overwritten.
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* Please take care of keeping this list alphabetically sorted.
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*/
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static struct acl_kw_list acl_kws = {ILH, {
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{ /* END */ },
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}};
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INITCALL1(STG_REGISTER, acl_register_keywords, &acl_kws);
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/*
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* Local variables:
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* c-indent-level: 8
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* c-basic-offset: 8
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* End:
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*/
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