Mercurial > hg > nginx-vendor-current
view src/os/unix/ngx_user.c @ 632:5b73504dd4ba NGINX_1_1_0
nginx 1.1.0
*) Feature: cache loader run time decrease.
*) Feature: "loader_files", "loader_sleep", and "loader_threshold"
options of the "proxy/fastcgi/scgi/uwsgi_cache_path" directives.
*) Feature: loading time decrease of configuration with large number of
HTTPS sites.
*) Feature: now nginx supports ECDHE key exchange ciphers.
Thanks to Adrian Kotelba.
*) Feature: the "lingering_close" directive.
Thanks to Maxim Dounin.
*) Bugfix: in closing connection for pipelined requests.
Thanks to Maxim Dounin.
*) Bugfix: nginx did not disable gzipping if client sent "gzip;q=0" in
"Accept-Encoding" request header line.
*) Bugfix: in timeout in unbuffered proxied mode.
Thanks to Maxim Dounin.
*) Bugfix: memory leaks when a "proxy_pass" directive contains
variables and proxies to an HTTPS backend.
Thanks to Maxim Dounin.
*) Bugfix: in parameter validaiton of a "proxy_pass" directive with
variables.
Thanks to Lanshun Zhou.
*) Bugfix: SSL did not work on QNX.
Thanks to Maxim Dounin.
*) Bugfix: SSL modules could not be built by gcc 4.6 without
--with-debug option.
author | Igor Sysoev <http://sysoev.ru> |
---|---|
date | Mon, 01 Aug 2011 00:00:00 +0400 |
parents | a7a5fa2e395b |
children | d0f7a625f27c |
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/* * Copyright (C) Igor Sysoev */ #include <ngx_config.h> #include <ngx_core.h> /* * Solaris has thread-safe crypt() * Linux has crypt_r(); "struct crypt_data" is more than 128K * FreeBSD needs the mutex to protect crypt() * * TODO: * ngx_crypt_init() to init mutex */ #if (NGX_CRYPT) #if (NGX_HAVE_GNU_CRYPT_R) ngx_int_t ngx_libc_crypt(ngx_pool_t *pool, u_char *key, u_char *salt, u_char **encrypted) { char *value; size_t len; ngx_err_t err; struct crypt_data cd; ngx_set_errno(0); cd.initialized = 0; /* work around the glibc bug */ cd.current_salt[0] = ~salt[0]; value = crypt_r((char *) key, (char *) salt, &cd); err = ngx_errno; if (err == 0) { len = ngx_strlen(value) + 1; *encrypted = ngx_pnalloc(pool, len); if (*encrypted) { ngx_memcpy(*encrypted, value, len); return NGX_OK; } } ngx_log_error(NGX_LOG_CRIT, pool->log, err, "crypt_r() failed"); return NGX_ERROR; } #else ngx_int_t ngx_libc_crypt(ngx_pool_t *pool, u_char *key, u_char *salt, u_char **encrypted) { char *value; size_t len; ngx_err_t err; #if (NGX_THREADS && NGX_NONREENTRANT_CRYPT) /* crypt() is a time consuming funtion, so we only try to lock */ if (ngx_mutex_trylock(ngx_crypt_mutex) != NGX_OK) { return NGX_AGAIN; } #endif ngx_set_errno(0); value = crypt((char *) key, (char *) salt); if (value) { len = ngx_strlen(value) + 1; *encrypted = ngx_pnalloc(pool, len); if (*encrypted) { ngx_memcpy(*encrypted, value, len); } #if (NGX_THREADS && NGX_NONREENTRANT_CRYPT) ngx_mutex_unlock(ngx_crypt_mutex); #endif return NGX_OK; } err = ngx_errno; #if (NGX_THREADS && NGX_NONREENTRANT_CRYPT) ngx_mutex_unlock(ngx_crypt_mutex); #endif ngx_log_error(NGX_LOG_CRIT, pool->log, err, "crypt() failed"); return NGX_ERROR; } #endif #endif /* NGX_CRYPT */