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git-svn-id: https://svn.apache.org/repos/asf/httpd/httpd/trunk@556931 13f79535-47bb-0310-9956-ffa450edef68
1101 lines
40 KiB
C
1101 lines
40 KiB
C
/* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed with
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* this work for additional information regarding copyright ownership.
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* The ASF licenses this file to You under the Apache License, Version 2.0
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* (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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/* Load balancer module for Apache proxy */
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#define CORE_PRIVATE
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#include "mod_proxy.h"
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#include "ap_mpm.h"
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#include "apr_version.h"
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#include "apr_hooks.h"
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#if APR_HAVE_UNISTD_H
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#include <unistd.h> /* for getpid() */
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#endif
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module AP_MODULE_DECLARE_DATA proxy_balancer_module;
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static int proxy_balancer_canon(request_rec *r, char *url)
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{
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char *host, *path, *search;
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const char *err;
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apr_port_t port = 0;
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if (strncasecmp(url, "balancer:", 9) == 0) {
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url += 9;
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}
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else {
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return DECLINED;
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}
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ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
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"proxy: BALANCER: canonicalising URL %s", url);
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/* do syntatic check.
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* We break the URL into host, port, path, search
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*/
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err = ap_proxy_canon_netloc(r->pool, &url, NULL, NULL, &host, &port);
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if (err) {
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ap_log_rerror(APLOG_MARK, APLOG_ERR, 0, r,
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"error parsing URL %s: %s",
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url, err);
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return HTTP_BAD_REQUEST;
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}
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/* now parse path/search args, according to rfc1738 */
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/* N.B. if this isn't a true proxy request, then the URL _path_
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* has already been decoded. True proxy requests have r->uri
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* == r->unparsed_uri, and no others have that property.
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*/
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if (r->uri == r->unparsed_uri) {
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search = strchr(url, '?');
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if (search != NULL)
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*(search++) = '\0';
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}
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else
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search = r->args;
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/* process path */
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path = ap_proxy_canonenc(r->pool, url, strlen(url), enc_path, 0, r->proxyreq);
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if (path == NULL)
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return HTTP_BAD_REQUEST;
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r->filename = apr_pstrcat(r->pool, "proxy:balancer://", host,
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"/", path, (search) ? "?" : "", (search) ? search : "", NULL);
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r->path_info = apr_pstrcat(r->pool, "/", path, NULL);
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return OK;
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}
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static int init_balancer_members(proxy_server_conf *conf, server_rec *s,
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proxy_balancer *balancer)
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{
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int i;
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proxy_worker *workers;
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workers = (proxy_worker *)balancer->workers->elts;
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for (i = 0; i < balancer->workers->nelts; i++) {
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ap_proxy_initialize_worker_share(conf, workers, s);
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ap_proxy_initialize_worker(workers, s);
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++workers;
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}
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workers = (proxy_worker *)balancer->workers->elts;
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for (i = 0; i < balancer->workers->nelts; i++) {
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/* Set to the original configuration */
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workers[i].s->lbstatus = workers[i].s->lbfactor =
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(workers[i].lbfactor ? workers[i].lbfactor : 1);
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workers[i].s->lbset = workers[i].lbset;
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}
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/* Set default number of attempts to the number of
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* workers.
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*/
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if (!balancer->max_attempts_set && balancer->workers->nelts > 1) {
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balancer->max_attempts = balancer->workers->nelts - 1;
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balancer->max_attempts_set = 1;
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}
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return 0;
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}
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/* Retrieve the parameter with the given name
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* Something like 'JSESSIONID=12345...N'
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*/
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static char *get_path_param(apr_pool_t *pool, char *url,
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const char *name)
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{
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char *path = NULL;
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for (path = strstr(url, name); path; path = strstr(path + 1, name)) {
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path += strlen(name);
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if (*path == '=') {
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/*
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* Session path was found, get it's value
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*/
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++path;
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if (strlen(path)) {
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char *q;
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path = apr_strtok(apr_pstrdup(pool, path), "?&", &q);
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return path;
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}
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}
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}
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return NULL;
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}
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static char *get_cookie_param(request_rec *r, const char *name)
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{
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const char *cookies;
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const char *start_cookie;
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if ((cookies = apr_table_get(r->headers_in, "Cookie"))) {
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for (start_cookie = ap_strstr_c(cookies, name); start_cookie;
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start_cookie = ap_strstr_c(start_cookie + 1, name)) {
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if (start_cookie == cookies ||
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start_cookie[-1] == ';' ||
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start_cookie[-1] == ',' ||
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isspace(start_cookie[-1])) {
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start_cookie += strlen(name);
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while(*start_cookie && isspace(*start_cookie))
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++start_cookie;
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if (*start_cookie == '=' && start_cookie[1]) {
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/*
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* Session cookie was found, get it's value
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*/
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char *end_cookie, *cookie;
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++start_cookie;
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cookie = apr_pstrdup(r->pool, start_cookie);
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if ((end_cookie = strchr(cookie, ';')) != NULL)
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*end_cookie = '\0';
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if((end_cookie = strchr(cookie, ',')) != NULL)
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*end_cookie = '\0';
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return cookie;
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}
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}
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}
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}
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return NULL;
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}
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/* Find the worker that has the 'route' defined
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*/
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static proxy_worker *find_route_worker(proxy_balancer *balancer,
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const char *route, request_rec *r)
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{
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int i;
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int checking_standby;
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int checked_standby;
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proxy_worker *worker;
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checking_standby = checked_standby = 0;
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while (!checked_standby) {
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worker = (proxy_worker *)balancer->workers->elts;
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for (i = 0; i < balancer->workers->nelts; i++, worker++) {
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if ( (checking_standby ? !PROXY_WORKER_IS_STANDBY(worker) : PROXY_WORKER_IS_STANDBY(worker)) )
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continue;
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if (*(worker->s->route) && strcmp(worker->s->route, route) == 0) {
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if (worker && PROXY_WORKER_IS_USABLE(worker)) {
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return worker;
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} else {
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/*
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* If the worker is in error state run
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* retry on that worker. It will be marked as
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* operational if the retry timeout is elapsed.
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* The worker might still be unusable, but we try
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* anyway.
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*/
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ap_proxy_retry_worker("BALANCER", worker, r->server);
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if (PROXY_WORKER_IS_USABLE(worker)) {
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return worker;
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} else {
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/*
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* We have a worker that is unusable.
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* It can be in error or disabled, but in case
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* it has a redirection set use that redirection worker.
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* This enables to safely remove the member from the
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* balancer. Of course you will need some kind of
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* session replication between those two remote.
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*/
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if (*worker->s->redirect) {
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proxy_worker *rworker = NULL;
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rworker = find_route_worker(balancer, worker->s->redirect, r);
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/* Check if the redirect worker is usable */
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if (rworker && !PROXY_WORKER_IS_USABLE(rworker)) {
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/*
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* If the worker is in error state run
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* retry on that worker. It will be marked as
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* operational if the retry timeout is elapsed.
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* The worker might still be unusable, but we try
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* anyway.
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*/
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ap_proxy_retry_worker("BALANCER", rworker, r->server);
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}
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if (rworker && PROXY_WORKER_IS_USABLE(rworker))
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return rworker;
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}
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}
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}
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}
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}
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checked_standby = checking_standby++;
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}
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return NULL;
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}
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static proxy_worker *find_session_route(proxy_balancer *balancer,
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request_rec *r,
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char **route,
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const char **sticky_used,
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char **url)
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{
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proxy_worker *worker = NULL;
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if (!balancer->sticky)
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return NULL;
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/* Try to find the sticky route inside url */
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*route = get_path_param(r->pool, *url, balancer->sticky_path);
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if (*route) {
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ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
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"proxy: BALANCER: Found value %s for "
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"stickysession %s", *route, balancer->sticky_path);
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*sticky_used = balancer->sticky_path;
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}
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else {
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*route = get_cookie_param(r, balancer->sticky);
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if (*route) {
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*sticky_used = balancer->sticky;
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ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
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"proxy: BALANCER: Found value %s for "
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"stickysession %s", *route, balancer->sticky);
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}
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}
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/*
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* If we found a value for sticksession, find the first '.' within.
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* Everything after '.' (if present) is our route.
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*/
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if ((*route) && ((*route = strchr(*route, '.')) != NULL ))
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(*route)++;
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if ((*route) && (**route)) {
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ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
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"proxy: BALANCER: Found route %s", *route);
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/* We have a route in path or in cookie
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* Find the worker that has this route defined.
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*/
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worker = find_route_worker(balancer, *route, r);
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if (worker && strcmp(*route, worker->s->route)) {
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/*
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* Notice that the route of the worker chosen is different from
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* the route supplied by the client.
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*/
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apr_table_setn(r->subprocess_env, "BALANCER_ROUTE_CHANGED", "1");
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ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
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"proxy: BALANCER: Route changed from %s to %s",
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*route, worker->s->route);
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}
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return worker;
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}
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else
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return NULL;
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}
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static proxy_worker *find_best_worker(proxy_balancer *balancer,
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request_rec *r)
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{
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proxy_worker *candidate = NULL;
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apr_status_t rv;
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if ((rv = PROXY_THREAD_LOCK(balancer)) != APR_SUCCESS) {
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ap_log_error(APLOG_MARK, APLOG_ERR, rv, r->server,
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"proxy: BALANCER: (%s). Lock failed for find_best_worker()", balancer->name);
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return NULL;
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}
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candidate = (*balancer->lbmethod->finder)(balancer, r);
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if (candidate)
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candidate->s->elected++;
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/*
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PROXY_THREAD_UNLOCK(balancer);
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return NULL;
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*/
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if ((rv = PROXY_THREAD_UNLOCK(balancer)) != APR_SUCCESS) {
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ap_log_error(APLOG_MARK, APLOG_ERR, rv, r->server,
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"proxy: BALANCER: (%s). Unlock failed for find_best_worker()", balancer->name);
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}
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if (candidate == NULL) {
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/* All the workers are in error state or disabled.
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* If the balancer has a timeout sleep for a while
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* and try again to find the worker. The chances are
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* that some other thread will release a connection.
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* By default the timeout is not set, and the server
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* returns SERVER_BUSY.
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*/
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#if APR_HAS_THREADS
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if (balancer->timeout) {
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/* XXX: This can perhaps be build using some
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* smarter mechanism, like tread_cond.
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* But since the statuses can came from
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* different childs, use the provided algo.
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*/
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apr_interval_time_t timeout = balancer->timeout;
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apr_interval_time_t step, tval = 0;
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/* Set the timeout to 0 so that we don't
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* end in infinite loop
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*/
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balancer->timeout = 0;
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step = timeout / 100;
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while (tval < timeout) {
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apr_sleep(step);
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/* Try again */
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if ((candidate = find_best_worker(balancer, r)))
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break;
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tval += step;
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}
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/* restore the timeout */
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balancer->timeout = timeout;
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}
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#endif
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}
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return candidate;
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}
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static int rewrite_url(request_rec *r, proxy_worker *worker,
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char **url)
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{
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const char *scheme = strstr(*url, "://");
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const char *path = NULL;
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if (scheme)
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path = ap_strchr_c(scheme + 3, '/');
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/* we break the URL into host, port, uri */
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if (!worker) {
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return ap_proxyerror(r, HTTP_BAD_REQUEST, apr_pstrcat(r->pool,
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"missing worker. URI cannot be parsed: ", *url,
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NULL));
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}
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*url = apr_pstrcat(r->pool, worker->name, path, NULL);
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return OK;
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}
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static void force_recovery(proxy_balancer *balancer, server_rec *s)
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{
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int i;
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int ok = 0;
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proxy_worker *worker;
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worker = (proxy_worker *)balancer->workers->elts;
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for (i = 0; i < balancer->workers->nelts; i++, worker++) {
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if (!(worker->s->status & PROXY_WORKER_IN_ERROR)) {
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ok = 1;
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break;
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}
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}
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if (!ok) {
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/* If all workers are in error state force the recovery.
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*/
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worker = (proxy_worker *)balancer->workers->elts;
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for (i = 0; i < balancer->workers->nelts; i++, worker++) {
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++worker->s->retries;
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worker->s->status &= ~PROXY_WORKER_IN_ERROR;
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ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, s,
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"proxy: BALANCER: (%s). Forcing recovery for worker (%s)",
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balancer->name, worker->hostname);
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}
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}
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}
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static int proxy_balancer_pre_request(proxy_worker **worker,
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proxy_balancer **balancer,
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request_rec *r,
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proxy_server_conf *conf, char **url)
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{
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int access_status;
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proxy_worker *runtime;
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char *route = NULL;
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const char *sticky = NULL;
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apr_status_t rv;
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*worker = NULL;
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/* Step 1: check if the url is for us
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* The url we can handle starts with 'balancer://'
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* If balancer is already provided skip the search
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* for balancer, because this is failover attempt.
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*/
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if (!*balancer &&
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!(*balancer = ap_proxy_get_balancer(r->pool, conf, *url)))
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return DECLINED;
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/* Step 2: Lock the LoadBalancer
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* XXX: perhaps we need the process lock here
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*/
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if ((rv = PROXY_THREAD_LOCK(*balancer)) != APR_SUCCESS) {
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ap_log_error(APLOG_MARK, APLOG_ERR, rv, r->server,
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"proxy: BALANCER: (%s). Lock failed for pre_request",
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(*balancer)->name);
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return DECLINED;
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}
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/* Step 3: force recovery */
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force_recovery(*balancer, r->server);
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/* Step 4: find the session route */
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runtime = find_session_route(*balancer, r, &route, &sticky, url);
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if (runtime) {
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int i, total_factor = 0;
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proxy_worker *workers;
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/* We have a sticky load balancer
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* Update the workers status
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* so that even session routes get
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* into account.
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*/
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workers = (proxy_worker *)(*balancer)->workers->elts;
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for (i = 0; i < (*balancer)->workers->nelts; i++) {
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/* Take into calculation only the workers that are
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* not in error state or not disabled.
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*
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* TODO: Abstract the below, since this is dependent
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* on the LB implementation
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*/
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if (PROXY_WORKER_IS_USABLE(workers)) {
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workers->s->lbstatus += workers->s->lbfactor;
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total_factor += workers->s->lbfactor;
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}
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workers++;
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}
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runtime->s->lbstatus -= total_factor;
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runtime->s->elected++;
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*worker = runtime;
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}
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else if (route && (*balancer)->sticky_force) {
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int i, member_of = 0;
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proxy_worker *workers;
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/*
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* We have a route provided that doesn't match the
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* balancer name. See if the provider route is the
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* member of the same balancer in which case return 503
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*/
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workers = (proxy_worker *)(*balancer)->workers->elts;
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for (i = 0; i < (*balancer)->workers->nelts; i++) {
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if (*(workers->s->route) && strcmp(workers->s->route, route) == 0) {
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member_of = 1;
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break;
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}
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workers++;
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}
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if (member_of) {
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ap_log_error(APLOG_MARK, APLOG_ERR, 0, r->server,
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"proxy: BALANCER: (%s). All workers are in error state for route (%s)",
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(*balancer)->name, route);
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if ((rv = PROXY_THREAD_UNLOCK(*balancer)) != APR_SUCCESS) {
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ap_log_error(APLOG_MARK, APLOG_ERR, rv, r->server,
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"proxy: BALANCER: (%s). Unlock failed for pre_request",
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(*balancer)->name);
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}
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return HTTP_SERVICE_UNAVAILABLE;
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}
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}
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|
if ((rv = PROXY_THREAD_UNLOCK(*balancer)) != APR_SUCCESS) {
|
|
ap_log_error(APLOG_MARK, APLOG_ERR, rv, r->server,
|
|
"proxy: BALANCER: (%s). Unlock failed for pre_request",
|
|
(*balancer)->name);
|
|
}
|
|
if (!*worker) {
|
|
runtime = find_best_worker(*balancer, r);
|
|
if (!runtime) {
|
|
ap_log_error(APLOG_MARK, APLOG_ERR, 0, r->server,
|
|
"proxy: BALANCER: (%s). All workers are in error state",
|
|
(*balancer)->name);
|
|
|
|
return HTTP_SERVICE_UNAVAILABLE;
|
|
}
|
|
if ((*balancer)->sticky && runtime) {
|
|
/*
|
|
* This balancer has sticky sessions and the client either has not
|
|
* supplied any routing information or all workers for this route
|
|
* including possible redirect and hotstandby workers are in error
|
|
* state, but we have found another working worker for this
|
|
* balancer where we can send the request. Thus notice that we have
|
|
* changed the route to the backend.
|
|
*/
|
|
apr_table_setn(r->subprocess_env, "BALANCER_ROUTE_CHANGED", "1");
|
|
}
|
|
*worker = runtime;
|
|
}
|
|
|
|
/* Add balancer/worker info to env. */
|
|
apr_table_setn(r->subprocess_env,
|
|
"BALANCER_NAME", (*balancer)->name);
|
|
apr_table_setn(r->subprocess_env,
|
|
"BALANCER_WORKER_NAME", (*worker)->name);
|
|
apr_table_setn(r->subprocess_env,
|
|
"BALANCER_WORKER_ROUTE", (*worker)->s->route);
|
|
|
|
/* Rewrite the url from 'balancer://url'
|
|
* to the 'worker_scheme://worker_hostname[:worker_port]/url'
|
|
* This replaces the balancers fictional name with the
|
|
* real hostname of the elected worker.
|
|
*/
|
|
access_status = rewrite_url(r, *worker, url);
|
|
/* Add the session route to request notes if present */
|
|
if (route) {
|
|
apr_table_setn(r->notes, "session-sticky", sticky);
|
|
apr_table_setn(r->notes, "session-route", route);
|
|
|
|
/* Add session info to env. */
|
|
apr_table_setn(r->subprocess_env,
|
|
"BALANCER_SESSION_STICKY", sticky);
|
|
apr_table_setn(r->subprocess_env,
|
|
"BALANCER_SESSION_ROUTE", route);
|
|
}
|
|
ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
|
|
"proxy: BALANCER (%s) worker (%s) rewritten to %s",
|
|
(*balancer)->name, (*worker)->name, *url);
|
|
|
|
return access_status;
|
|
}
|
|
|
|
static int proxy_balancer_post_request(proxy_worker *worker,
|
|
proxy_balancer *balancer,
|
|
request_rec *r,
|
|
proxy_server_conf *conf)
|
|
{
|
|
|
|
#if 0
|
|
apr_status_t rv;
|
|
|
|
if ((rv = PROXY_THREAD_LOCK(balancer)) != APR_SUCCESS) {
|
|
ap_log_error(APLOG_MARK, APLOG_ERR, rv, r->server,
|
|
"proxy: BALANCER: (%s). Lock failed for post_request",
|
|
balancer->name);
|
|
return HTTP_INTERNAL_SERVER_ERROR;
|
|
}
|
|
/* TODO: placeholder for post_request actions
|
|
*/
|
|
|
|
if ((rv = PROXY_THREAD_UNLOCK(balancer)) != APR_SUCCESS) {
|
|
ap_log_error(APLOG_MARK, APLOG_ERR, rv, r->server,
|
|
"proxy: BALANCER: (%s). Unlock failed for post_request",
|
|
balancer->name);
|
|
}
|
|
ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
|
|
"proxy_balancer_post_request for (%s)", balancer->name);
|
|
|
|
#endif
|
|
|
|
return OK;
|
|
}
|
|
|
|
static void recalc_factors(proxy_balancer *balancer)
|
|
{
|
|
int i;
|
|
proxy_worker *workers;
|
|
|
|
|
|
/* Recalculate lbfactors */
|
|
workers = (proxy_worker *)balancer->workers->elts;
|
|
/* Special case if there is only one worker it's
|
|
* load factor will always be 1
|
|
*/
|
|
if (balancer->workers->nelts == 1) {
|
|
workers->s->lbstatus = workers->s->lbfactor = 1;
|
|
return;
|
|
}
|
|
for (i = 0; i < balancer->workers->nelts; i++) {
|
|
/* Update the status entries */
|
|
workers[i].s->lbstatus = workers[i].s->lbfactor;
|
|
}
|
|
}
|
|
|
|
/* Manages the loadfactors and member status
|
|
*/
|
|
static int balancer_handler(request_rec *r)
|
|
{
|
|
void *sconf = r->server->module_config;
|
|
proxy_server_conf *conf = (proxy_server_conf *)
|
|
ap_get_module_config(sconf, &proxy_module);
|
|
proxy_balancer *balancer, *bsel = NULL;
|
|
proxy_worker *worker, *wsel = NULL;
|
|
apr_table_t *params = apr_table_make(r->pool, 10);
|
|
int access_status;
|
|
int i, n;
|
|
const char *name;
|
|
|
|
/* is this for us? */
|
|
if (strcmp(r->handler, "balancer-manager"))
|
|
return DECLINED;
|
|
r->allowed = (AP_METHOD_BIT << M_GET);
|
|
if (r->method_number != M_GET)
|
|
return DECLINED;
|
|
|
|
if (r->args) {
|
|
char *args = apr_pstrdup(r->pool, r->args);
|
|
char *tok, *val;
|
|
while (args && *args) {
|
|
if ((val = ap_strchr(args, '='))) {
|
|
*val++ = '\0';
|
|
if ((tok = ap_strchr(val, '&')))
|
|
*tok++ = '\0';
|
|
/*
|
|
* Special case: workers are allowed path information
|
|
*/
|
|
if ((access_status = ap_unescape_url(val)) != OK)
|
|
if (strcmp(args, "w") || (access_status != HTTP_NOT_FOUND))
|
|
return access_status;
|
|
apr_table_setn(params, args, val);
|
|
args = tok;
|
|
}
|
|
else
|
|
return HTTP_BAD_REQUEST;
|
|
}
|
|
}
|
|
if ((name = apr_table_get(params, "b")))
|
|
bsel = ap_proxy_get_balancer(r->pool, conf,
|
|
apr_pstrcat(r->pool, "balancer://", name, NULL));
|
|
if ((name = apr_table_get(params, "w"))) {
|
|
proxy_worker *ws;
|
|
|
|
ws = ap_proxy_get_worker(r->pool, conf, name);
|
|
if (ws) {
|
|
worker = (proxy_worker *)bsel->workers->elts;
|
|
for (n = 0; n < bsel->workers->nelts; n++) {
|
|
if (strcasecmp(worker->name, ws->name) == 0) {
|
|
wsel = worker;
|
|
break;
|
|
}
|
|
++worker;
|
|
}
|
|
}
|
|
}
|
|
/* First set the params */
|
|
/*
|
|
* Note that it is not possible set the proxy_balancer because it is not
|
|
* in shared memory.
|
|
*/
|
|
if (wsel) {
|
|
const char *val;
|
|
if ((val = apr_table_get(params, "lf"))) {
|
|
int ival = atoi(val);
|
|
if (ival >= 1 && ival <= 100) {
|
|
wsel->s->lbfactor = ival;
|
|
if (bsel)
|
|
recalc_factors(bsel);
|
|
}
|
|
}
|
|
if ((val = apr_table_get(params, "wr"))) {
|
|
if (strlen(val) && strlen(val) < PROXY_WORKER_MAX_ROUTE_SIZ)
|
|
strcpy(wsel->s->route, val);
|
|
else
|
|
*wsel->s->route = '\0';
|
|
}
|
|
if ((val = apr_table_get(params, "rr"))) {
|
|
if (strlen(val) && strlen(val) < PROXY_WORKER_MAX_ROUTE_SIZ)
|
|
strcpy(wsel->s->redirect, val);
|
|
else
|
|
*wsel->s->redirect = '\0';
|
|
}
|
|
if ((val = apr_table_get(params, "dw"))) {
|
|
if (!strcasecmp(val, "Disable"))
|
|
wsel->s->status |= PROXY_WORKER_DISABLED;
|
|
else if (!strcasecmp(val, "Enable"))
|
|
wsel->s->status &= ~PROXY_WORKER_DISABLED;
|
|
}
|
|
if ((val = apr_table_get(params, "ls"))) {
|
|
int ival = atoi(val);
|
|
if (ival >= 0 && ival <= 99) {
|
|
wsel->s->lbset = ival;
|
|
}
|
|
}
|
|
|
|
}
|
|
if (apr_table_get(params, "xml")) {
|
|
ap_set_content_type(r, "text/xml");
|
|
ap_rputs("<?xml version=\"1.0\" encoding=\"UTF-8\" ?>\n", r);
|
|
ap_rputs("<httpd:manager xmlns:httpd=\"http://httpd.apache.org\">\n", r);
|
|
ap_rputs(" <httpd:balancers>\n", r);
|
|
balancer = (proxy_balancer *)conf->balancers->elts;
|
|
for (i = 0; i < conf->balancers->nelts; i++) {
|
|
ap_rputs(" <httpd:balancer>\n", r);
|
|
ap_rvputs(r, " <httpd:name>", balancer->name, "</httpd:name>\n", NULL);
|
|
ap_rputs(" <httpd:workers>\n", r);
|
|
worker = (proxy_worker *)balancer->workers->elts;
|
|
for (n = 0; n < balancer->workers->nelts; n++) {
|
|
ap_rputs(" <httpd:worker>\n", r);
|
|
ap_rvputs(r, " <httpd:scheme>", worker->scheme,
|
|
"</httpd:scheme>\n", NULL);
|
|
ap_rvputs(r, " <httpd:hostname>", worker->hostname,
|
|
"</httpd:hostname>\n", NULL);
|
|
ap_rprintf(r, " <httpd:loadfactor>%d</httpd:loadfactor>\n",
|
|
worker->s->lbfactor);
|
|
ap_rputs(" </httpd:worker>\n", r);
|
|
++worker;
|
|
}
|
|
ap_rputs(" </httpd:workers>\n", r);
|
|
ap_rputs(" </httpd:balancer>\n", r);
|
|
++balancer;
|
|
}
|
|
ap_rputs(" </httpd:balancers>\n", r);
|
|
ap_rputs("</httpd:manager>", r);
|
|
}
|
|
else {
|
|
ap_set_content_type(r, "text/html");
|
|
ap_rputs(DOCTYPE_HTML_3_2
|
|
"<html><head><title>Balancer Manager</title></head>\n", r);
|
|
ap_rputs("<body><h1>Load Balancer Manager for ", r);
|
|
ap_rvputs(r, ap_get_server_name(r), "</h1>\n\n", NULL);
|
|
ap_rvputs(r, "<dl><dt>Server Version: ",
|
|
ap_get_server_description(), "</dt>\n", NULL);
|
|
ap_rvputs(r, "<dt>Server Built: ",
|
|
ap_get_server_built(), "\n</dt></dl>\n", NULL);
|
|
balancer = (proxy_balancer *)conf->balancers->elts;
|
|
for (i = 0; i < conf->balancers->nelts; i++) {
|
|
|
|
ap_rputs("<hr />\n<h3>LoadBalancer Status for ", r);
|
|
ap_rvputs(r, balancer->name, "</h3>\n\n", NULL);
|
|
ap_rputs("\n\n<table border=\"0\" style=\"text-align: left;\"><tr>"
|
|
"<th>StickySession</th><th>Timeout</th><th>FailoverAttempts</th><th>Method</th>"
|
|
"</tr>\n<tr>", r);
|
|
if (strcmp(balancer->sticky, balancer->sticky_path)) {
|
|
ap_rvputs(r, "<td>", balancer->sticky, " | ", balancer->sticky_path, NULL);
|
|
}
|
|
else {
|
|
ap_rvputs(r, "<td>", balancer->sticky, NULL);
|
|
}
|
|
ap_rprintf(r, "</td><td>%" APR_TIME_T_FMT "</td>",
|
|
apr_time_sec(balancer->timeout));
|
|
ap_rprintf(r, "<td>%d</td>\n", balancer->max_attempts);
|
|
ap_rprintf(r, "<td>%s</td>\n",
|
|
balancer->lbmethod->name);
|
|
ap_rputs("</table>\n<br />", r);
|
|
ap_rputs("\n\n<table border=\"0\" style=\"text-align: left;\"><tr>"
|
|
"<th>Worker URL</th>"
|
|
"<th>Route</th><th>RouteRedir</th>"
|
|
"<th>Factor</th><th>Set</th><th>Status</th>"
|
|
"<th>Elected</th><th>To</th><th>From</th>"
|
|
"</tr>\n", r);
|
|
|
|
worker = (proxy_worker *)balancer->workers->elts;
|
|
for (n = 0; n < balancer->workers->nelts; n++) {
|
|
char fbuf[50];
|
|
ap_rvputs(r, "<tr>\n<td><a href=\"", r->uri, "?b=",
|
|
balancer->name + sizeof("balancer://") - 1, "&w=",
|
|
ap_escape_uri(r->pool, worker->name),
|
|
"\">", NULL);
|
|
ap_rvputs(r, worker->name, "</a></td>", NULL);
|
|
ap_rvputs(r, "<td>", worker->s->route, NULL);
|
|
ap_rvputs(r, "</td><td>", worker->s->redirect, NULL);
|
|
ap_rprintf(r, "</td><td>%d</td>", worker->s->lbfactor);
|
|
ap_rprintf(r, "<td>%d</td><td>", worker->s->lbset);
|
|
if (worker->s->status & PROXY_WORKER_DISABLED)
|
|
ap_rputs("Dis ", r);
|
|
if (worker->s->status & PROXY_WORKER_IN_ERROR)
|
|
ap_rputs("Err ", r);
|
|
if (worker->s->status & PROXY_WORKER_STOPPED)
|
|
ap_rputs("Stop ", r);
|
|
if (worker->s->status & PROXY_WORKER_HOT_STANDBY)
|
|
ap_rputs("Stby ", r);
|
|
if (PROXY_WORKER_IS_USABLE(worker))
|
|
ap_rputs("Ok", r);
|
|
if (!PROXY_WORKER_IS_INITIALIZED(worker))
|
|
ap_rputs("-", r);
|
|
ap_rputs("</td>", r);
|
|
ap_rprintf(r, "<td>%" APR_SIZE_T_FMT "</td><td>", worker->s->elected);
|
|
ap_rputs(apr_strfsize(worker->s->transferred, fbuf), r);
|
|
ap_rputs("</td><td>", r);
|
|
ap_rputs(apr_strfsize(worker->s->read, fbuf), r);
|
|
ap_rputs("</td></tr>\n", r);
|
|
|
|
++worker;
|
|
}
|
|
ap_rputs("</table>\n", r);
|
|
++balancer;
|
|
}
|
|
ap_rputs("<hr />\n", r);
|
|
if (wsel && bsel) {
|
|
ap_rputs("<h3>Edit worker settings for ", r);
|
|
ap_rvputs(r, wsel->name, "</h3>\n", NULL);
|
|
ap_rvputs(r, "<form method=\"GET\" action=\"", NULL);
|
|
ap_rvputs(r, r->uri, "\">\n<dl>", NULL);
|
|
ap_rputs("<table><tr><td>Load factor:</td><td><input name=\"lf\" type=text ", r);
|
|
ap_rprintf(r, "value=\"%d\"></td></tr>\n", wsel->s->lbfactor);
|
|
ap_rputs("<tr><td>LB Set:</td><td><input name=\"ls\" type=text ", r);
|
|
ap_rprintf(r, "value=\"%d\"></td></tr>\n", wsel->s->lbset);
|
|
ap_rputs("<tr><td>Route:</td><td><input name=\"wr\" type=text ", r);
|
|
ap_rvputs(r, "value=\"", wsel->s->route, NULL);
|
|
ap_rputs("\"></td></tr>\n", r);
|
|
ap_rputs("<tr><td>Route Redirect:</td><td><input name=\"rr\" type=text ", r);
|
|
ap_rvputs(r, "value=\"", wsel->s->redirect, NULL);
|
|
ap_rputs("\"></td></tr>\n", r);
|
|
ap_rputs("<tr><td>Status:</td><td>Disabled: <input name=\"dw\" value=\"Disable\" type=radio", r);
|
|
if (wsel->s->status & PROXY_WORKER_DISABLED)
|
|
ap_rputs(" checked", r);
|
|
ap_rputs("> | Enabled: <input name=\"dw\" value=\"Enable\" type=radio", r);
|
|
if (!(wsel->s->status & PROXY_WORKER_DISABLED))
|
|
ap_rputs(" checked", r);
|
|
ap_rputs("></td></tr>\n", r);
|
|
ap_rputs("<tr><td colspan=2><input type=submit value=\"Submit\"></td></tr>\n", r);
|
|
ap_rvputs(r, "</table>\n<input type=hidden name=\"w\" ", NULL);
|
|
ap_rvputs(r, "value=\"", ap_escape_uri(r->pool, wsel->name), "\">\n", NULL);
|
|
ap_rvputs(r, "<input type=hidden name=\"b\" ", NULL);
|
|
ap_rvputs(r, "value=\"", bsel->name + sizeof("balancer://") - 1,
|
|
"\">\n</form>\n", NULL);
|
|
ap_rputs("<hr />\n", r);
|
|
}
|
|
ap_rputs(ap_psignature("",r), r);
|
|
ap_rputs("</body></html>\n", r);
|
|
}
|
|
return OK;
|
|
}
|
|
|
|
static void child_init(apr_pool_t *p, server_rec *s)
|
|
{
|
|
while (s) {
|
|
void *sconf = s->module_config;
|
|
proxy_server_conf *conf;
|
|
proxy_balancer *balancer;
|
|
int i;
|
|
conf = (proxy_server_conf *)ap_get_module_config(sconf, &proxy_module);
|
|
|
|
/* Initialize shared scoreboard data */
|
|
balancer = (proxy_balancer *)conf->balancers->elts;
|
|
for (i = 0; i < conf->balancers->nelts; i++) {
|
|
init_balancer_members(conf, s, balancer);
|
|
balancer++;
|
|
}
|
|
s = s->next;
|
|
}
|
|
|
|
}
|
|
|
|
/*
|
|
* The idea behind the find_best_byrequests scheduler is the following:
|
|
*
|
|
* lbfactor is "how much we expect this worker to work", or "the worker's
|
|
* normalized work quota".
|
|
*
|
|
* lbstatus is "how urgent this worker has to work to fulfill its quota
|
|
* of work".
|
|
*
|
|
* We distribute each worker's work quota to the worker, and then look
|
|
* which of them needs to work most urgently (biggest lbstatus). This
|
|
* worker is then selected for work, and its lbstatus reduced by the
|
|
* total work quota we distributed to all workers. Thus the sum of all
|
|
* lbstatus does not change.(*)
|
|
*
|
|
* If some workers are disabled, the others will
|
|
* still be scheduled correctly.
|
|
*
|
|
* If a balancer is configured as follows:
|
|
*
|
|
* worker a b c d
|
|
* lbfactor 25 25 25 25
|
|
*
|
|
* And b gets disabled, the following schedule is produced:
|
|
*
|
|
* a c d a c d a c d ...
|
|
*
|
|
* Note that the above lbfactor setting is the *exact* same as:
|
|
*
|
|
* worker a b c d
|
|
* lbfactor 1 1 1 1
|
|
*
|
|
* Asymmetric configurations work as one would expect. For
|
|
* example:
|
|
*
|
|
* worker a b c d
|
|
* lbfactor 1 1 1 2
|
|
*
|
|
* would have a, b and c all handling about the same
|
|
* amount of load with d handling twice what a or b
|
|
* or c handles individually. So we could see:
|
|
*
|
|
* b a d c d a c d b d ...
|
|
*
|
|
*/
|
|
|
|
static proxy_worker *find_best_byrequests(proxy_balancer *balancer,
|
|
request_rec *r)
|
|
{
|
|
int i;
|
|
int total_factor = 0;
|
|
proxy_worker *worker;
|
|
proxy_worker *mycandidate = NULL;
|
|
int cur_lbset = 0;
|
|
int max_lbset = 0;
|
|
int checking_standby;
|
|
int checked_standby;
|
|
|
|
ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
|
|
"proxy: Entering byrequests for BALANCER (%s)",
|
|
balancer->name);
|
|
|
|
/* First try to see if we have available candidate */
|
|
do {
|
|
checking_standby = checked_standby = 0;
|
|
while (!mycandidate && !checked_standby) {
|
|
worker = (proxy_worker *)balancer->workers->elts;
|
|
for (i = 0; i < balancer->workers->nelts; i++, worker++) {
|
|
if (!checking_standby) { /* first time through */
|
|
if (worker->s->lbset > max_lbset)
|
|
max_lbset = worker->s->lbset;
|
|
}
|
|
if (worker->s->lbset > cur_lbset)
|
|
continue;
|
|
if ( (checking_standby ? !PROXY_WORKER_IS_STANDBY(worker) : PROXY_WORKER_IS_STANDBY(worker)) )
|
|
continue;
|
|
/* If the worker is in error state run
|
|
* retry on that worker. It will be marked as
|
|
* operational if the retry timeout is elapsed.
|
|
* The worker might still be unusable, but we try
|
|
* anyway.
|
|
*/
|
|
if (!PROXY_WORKER_IS_USABLE(worker))
|
|
ap_proxy_retry_worker("BALANCER", worker, r->server);
|
|
/* Take into calculation only the workers that are
|
|
* not in error state or not disabled.
|
|
*/
|
|
if (PROXY_WORKER_IS_USABLE(worker)) {
|
|
worker->s->lbstatus += worker->s->lbfactor;
|
|
total_factor += worker->s->lbfactor;
|
|
if (!mycandidate || worker->s->lbstatus > mycandidate->s->lbstatus)
|
|
mycandidate = worker;
|
|
}
|
|
}
|
|
checked_standby = checking_standby++;
|
|
}
|
|
cur_lbset++;
|
|
} while (cur_lbset <= max_lbset && !mycandidate);
|
|
|
|
if (mycandidate) {
|
|
mycandidate->s->lbstatus -= total_factor;
|
|
}
|
|
|
|
return mycandidate;
|
|
}
|
|
|
|
/*
|
|
* The idea behind the find_best_bytraffic scheduler is the following:
|
|
*
|
|
* We know the amount of traffic (bytes in and out) handled by each
|
|
* worker. We normalize that traffic by each workers' weight. So assuming
|
|
* a setup as below:
|
|
*
|
|
* worker a b c
|
|
* lbfactor 1 1 3
|
|
*
|
|
* the scheduler will allow worker c to handle 3 times the
|
|
* traffic of a and b. If each request/response results in the
|
|
* same amount of traffic, then c would be accessed 3 times as
|
|
* often as a or b. If, for example, a handled a request that
|
|
* resulted in a large i/o bytecount, then b and c would be
|
|
* chosen more often, to even things out.
|
|
*/
|
|
static proxy_worker *find_best_bytraffic(proxy_balancer *balancer,
|
|
request_rec *r)
|
|
{
|
|
int i;
|
|
apr_off_t mytraffic = 0;
|
|
apr_off_t curmin = 0;
|
|
proxy_worker *worker;
|
|
proxy_worker *mycandidate = NULL;
|
|
int cur_lbset = 0;
|
|
int max_lbset = 0;
|
|
int checking_standby;
|
|
int checked_standby;
|
|
|
|
ap_log_error(APLOG_MARK, APLOG_DEBUG, 0, r->server,
|
|
"proxy: Entering bytraffic for BALANCER (%s)",
|
|
balancer->name);
|
|
|
|
/* First try to see if we have available candidate */
|
|
do {
|
|
checking_standby = checked_standby = 0;
|
|
while (!mycandidate && !checked_standby) {
|
|
worker = (proxy_worker *)balancer->workers->elts;
|
|
for (i = 0; i < balancer->workers->nelts; i++, worker++) {
|
|
if (!checking_standby) { /* first time through */
|
|
if (worker->s->lbset > max_lbset)
|
|
max_lbset = worker->s->lbset;
|
|
}
|
|
if (worker->s->lbset > cur_lbset)
|
|
continue;
|
|
if ( (checking_standby ? !PROXY_WORKER_IS_STANDBY(worker) : PROXY_WORKER_IS_STANDBY(worker)) )
|
|
continue;
|
|
/* If the worker is in error state run
|
|
* retry on that worker. It will be marked as
|
|
* operational if the retry timeout is elapsed.
|
|
* The worker might still be unusable, but we try
|
|
* anyway.
|
|
*/
|
|
if (!PROXY_WORKER_IS_USABLE(worker))
|
|
ap_proxy_retry_worker("BALANCER", worker, r->server);
|
|
/* Take into calculation only the workers that are
|
|
* not in error state or not disabled.
|
|
*/
|
|
if (PROXY_WORKER_IS_USABLE(worker)) {
|
|
mytraffic = (worker->s->transferred/worker->s->lbfactor) +
|
|
(worker->s->read/worker->s->lbfactor);
|
|
if (!mycandidate || mytraffic < curmin) {
|
|
mycandidate = worker;
|
|
curmin = mytraffic;
|
|
}
|
|
}
|
|
}
|
|
checked_standby = checking_standby++;
|
|
}
|
|
cur_lbset++;
|
|
} while (cur_lbset <= max_lbset && !mycandidate);
|
|
|
|
return mycandidate;
|
|
}
|
|
|
|
/*
|
|
* How to add additional lbmethods:
|
|
* 1. Create func which determines "best" candidate worker
|
|
* (eg: find_best_bytraffic, above)
|
|
* 2. Register it as a provider.
|
|
*/
|
|
static const proxy_balancer_method byrequests =
|
|
{
|
|
"byrequests",
|
|
&find_best_byrequests,
|
|
NULL
|
|
};
|
|
|
|
static const proxy_balancer_method bytraffic =
|
|
{
|
|
"bytraffic",
|
|
&find_best_bytraffic,
|
|
NULL
|
|
};
|
|
|
|
static void ap_proxy_balancer_register_hook(apr_pool_t *p)
|
|
{
|
|
/* Only the mpm_winnt has child init hook handler.
|
|
* make sure that we are called after the mpm
|
|
* initializes and after the mod_proxy
|
|
*/
|
|
static const char *const aszPred[] = { "mpm_winnt.c", "mod_proxy.c", NULL};
|
|
/* manager handler */
|
|
ap_hook_handler(balancer_handler, NULL, NULL, APR_HOOK_FIRST);
|
|
ap_hook_child_init(child_init, aszPred, NULL, APR_HOOK_MIDDLE);
|
|
proxy_hook_pre_request(proxy_balancer_pre_request, NULL, NULL, APR_HOOK_FIRST);
|
|
proxy_hook_post_request(proxy_balancer_post_request, NULL, NULL, APR_HOOK_FIRST);
|
|
proxy_hook_canon_handler(proxy_balancer_canon, NULL, NULL, APR_HOOK_FIRST);
|
|
ap_register_provider(p, PROXY_LBMETHOD, "bytraffic", "0", &bytraffic);
|
|
ap_register_provider(p, PROXY_LBMETHOD, "byrequests", "0", &byrequests);
|
|
}
|
|
|
|
module AP_MODULE_DECLARE_DATA proxy_balancer_module = {
|
|
STANDARD20_MODULE_STUFF,
|
|
NULL, /* create per-directory config structure */
|
|
NULL, /* merge per-directory config structures */
|
|
NULL, /* create per-server config structure */
|
|
NULL, /* merge per-server config structures */
|
|
NULL, /* command apr_table_t */
|
|
ap_proxy_balancer_register_hook /* register hooks */
|
|
};
|