view src/os/unix/ngx_pthread_thread.c @ 509:9b8c906f6e63 release-0.1.29

nginx-0.1.29-RELEASE import *) Feature: the ngx_http_ssi_module supports "include virtual" command. *) Feature: the ngx_http_ssi_module supports the condition command like 'if expr="$NAME"' and "else" and "endif" commands. Only one nested level is supported. *) Feature: the ngx_http_ssi_module supports the DATE_LOCAL and DATE_GMT variables and "config timefmt" command. *) Feature: the "ssi_ignore_recycled_buffers" directive. *) Bugfix: the "echo" command did not show the default value for the empty QUERY_STRING variable. *) Change: the ngx_http_proxy_module was rewritten. *) Feature: the "proxy_redirect", "proxy_pass_request_headers", "proxy_pass_request_body", and "proxy_method" directives. *) Feature: the "proxy_set_header" directive. The "proxy_x_var" was canceled and must be replaced with the proxy_set_header directive. *) Change: the "proxy_preserve_host" is canceled and must be replaced with the "proxy_set_header Host $host" and the "proxy_redirect off" directives, the "proxy_set_header Host $host:$proxy_port" directive and the appropriate proxy_redirect directives. *) Change: the "proxy_set_x_real_ip" is canceled and must be replaced with the "proxy_set_header X-Real-IP $remote_addr" directive. *) Change: the "proxy_add_x_forwarded_for" is canceled and must be replaced with the "proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for" directive. *) Change: the "proxy_set_x_url" is canceled and must be replaced with the "proxy_set_header X-URL http://$host:$server_port$request_uri" directive. *) Feature: the "fastcgi_param" directive. *) Change: the "fastcgi_root", "fastcgi_set_var" and "fastcgi_params" directive are canceled and must be replaced with the fastcgi_param directives. *) Feature: the "index" directive can use the variables. *) Feature: the "index" directive can be used at http and server levels. *) Change: the last index only in the "index" directive can be absolute. *) Feature: the "rewrite" directive can use the variables. *) Feature: the "internal" directive. *) Feature: the CONTENT_LENGTH, CONTENT_TYPE, REMOTE_PORT, SERVER_ADDR, SERVER_PORT, SERVER_PROTOCOL, DOCUMENT_ROOT, SERVER_NAME, REQUEST_METHOD, REQUEST_URI, and REMOTE_USER variables. *) Change: nginx now passes the invalid lines in a client request headers or a backend response header. *) Bugfix: if the backend did not transfer response for a long time and the "send_timeout" was less than "proxy_read_timeout", then nginx returned the 408 response. *) Bugfix: the segmentation fault was occurred if the backend sent an invalid line in response header; the bug had appeared in 0.1.26. *) Bugfix: the segmentation fault may occurred in FastCGI fault tolerance configuration. *) Bugfix: the "expires" directive did not remove the previous "Expires" and "Cache-Control" headers. *) Bugfix: nginx did not take into account trailing dot in "Host" header line. *) Bugfix: the ngx_http_auth_module did not work under Linux. *) Bugfix: the rewrite directive worked incorrectly, if the arguments were in a request. *) Bugfix: nginx could not be built on MacOS X.
author Igor Sysoev <igor@sysoev.ru>
date Thu, 12 May 2005 14:58:06 +0000
parents d4ea69372b94
children 9c2f3ed7a247
line wrap: on
line source


/*
 * Copyright (C) Igor Sysoev
 */


#include <ngx_config.h>
#include <ngx_core.h>


static ngx_uint_t   nthreads;
static ngx_uint_t   max_threads;


static pthread_attr_t  thr_attr;


ngx_err_t ngx_create_thread(ngx_tid_t *tid, void* (*func)(void *arg), void *arg,
                            ngx_log_t *log)
{
    int  err;

    if (nthreads >= max_threads) {
        ngx_log_error(NGX_LOG_CRIT, log, 0,
                      "no more than %ui threads can be created", max_threads);
        return NGX_ERROR;
    }

    err = pthread_create(tid, &thr_attr, func, arg);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, log, err, "pthread_create() failed");
        return err;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_CORE, log, 0,
                   "thread is created: " NGX_TID_T_FMT, *tid);

    nthreads++;

    return err;
}


ngx_int_t ngx_init_threads(int n, size_t size, ngx_cycle_t *cycle)
{   
    int  err;

    max_threads = n;

    err = pthread_attr_init(&thr_attr);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, cycle->log, err,
                      "pthread_attr_init() failed");
        return NGX_ERROR;
    }

    err = pthread_attr_setstacksize(&thr_attr, size);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, cycle->log, err,
                      "pthread_attr_setstacksize() failed");
        return NGX_ERROR;
    }

    ngx_threaded = 1;

    return NGX_OK;
}


ngx_mutex_t *ngx_mutex_init(ngx_log_t *log, ngx_uint_t flags)
{
    int           err;
    ngx_mutex_t  *m;

    m = ngx_alloc(sizeof(ngx_mutex_t), log);
    if (m == NULL) {
        return NULL;
    }
    
    m->log = log;

    err = pthread_mutex_init(&m->mutex, NULL);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, m->log, err,
                      "pthread_mutex_init() failed");
        return NULL;
    }

    return m;
}


void ngx_mutex_destroy(ngx_mutex_t *m)
{
    int  err;

    err = pthread_mutex_destroy(&m->mutex);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, m->log, err,
                      "pthread_mutex_destroy(%p) failed", m);
    }

    ngx_free(m);
}


ngx_int_t ngx_mutex_lock(ngx_mutex_t *m)
{
    int  err;

    if (!ngx_threaded) {
        return NGX_OK;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_MUTEX, m->log, 0, "lock mutex %p", m);

    err = pthread_mutex_lock(&m->mutex);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, m->log, err,
                      "pthread_mutex_lock(%p) failed", m);
        return NGX_ERROR;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_MUTEX, m->log, 0, "mutex %p is locked", m);

    return NGX_OK;
}


ngx_int_t ngx_mutex_trylock(ngx_mutex_t *m)
{
    int  err;

    if (!ngx_threaded) {
        return NGX_OK;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_MUTEX, m->log, 0, "try lock mutex %p", m);

    err = pthread_mutex_trylock(&m->mutex);

    if (err == NGX_EBUSY) {
        return NGX_AGAIN;
    }

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, m->log, err,
                      "pthread_mutex_trylock(%p) failed", m);
        return NGX_ERROR;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_MUTEX, m->log, 0, "mutex %p is locked", m);

    return NGX_OK;
}


ngx_int_t ngx_mutex_unlock(ngx_mutex_t *m)
{
    int  err;

    if (!ngx_threaded) {
        return NGX_OK;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_MUTEX, m->log, 0, "unlock mutex %p", m);

    err = pthread_mutex_unlock(&m->mutex);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, m->log, err,
                      "pthread_mutex_unlock(%p) failed", m);
        return NGX_ERROR;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_MUTEX, m->log, 0, "mutex %p is unlocked", m);

    return NGX_OK;
}


ngx_cond_t *ngx_cond_init(ngx_log_t *log)
{
    int          err;
    ngx_cond_t  *cv;

    cv = ngx_alloc(sizeof(ngx_cond_t), log);
    if (cv == NULL) {
        return NULL;
    }
    
    cv->log = log;

    err = pthread_cond_init(&cv->cond, NULL);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, cv->log, err,
                      "pthread_cond_init() failed");
        return NULL;
    }

    return cv;
}


void ngx_cond_destroy(ngx_cond_t *cv)
{
    int  err;

    err = pthread_cond_destroy(&cv->cond);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, cv->log, err,
                      "pthread_cond_destroy(%p) failed", cv);
    }

    ngx_free(cv);
}


ngx_int_t ngx_cond_wait(ngx_cond_t *cv, ngx_mutex_t *m)
{
    int  err;

    ngx_log_debug1(NGX_LOG_DEBUG_CORE, cv->log, 0, "cv %p wait", cv);

    err = pthread_cond_wait(&cv->cond, &m->mutex);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, cv->log, err,
                      "pthread_cond_wait(%p) failed", cv);
        return NGX_ERROR;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_CORE, cv->log, 0, "cv %p is waked up", cv);

    ngx_log_debug1(NGX_LOG_DEBUG_MUTEX, m->log, 0, "mutex %p is locked", m);

    return NGX_OK;
}


ngx_int_t ngx_cond_signal(ngx_cond_t *cv)
{
    int  err;

    ngx_log_debug1(NGX_LOG_DEBUG_CORE, cv->log, 0, "cv %p to signal", cv);

    err = pthread_cond_signal(&cv->cond);

    if (err != 0) {
        ngx_log_error(NGX_LOG_ALERT, cv->log, err,
                      "pthread_cond_signal(%p) failed", cv);
        return NGX_ERROR;
    }

    ngx_log_debug1(NGX_LOG_DEBUG_CORE, cv->log, 0, "cv %p is signaled", cv);

    return NGX_OK;
}