view src/os/unix/ngx_darwin_init.c @ 6982:ac9b1df5b246

SSL: disabled renegotiation detection in client mode. CVE-2009-3555 is no longer relevant and mitigated by the renegotiation info extension (secure renegotiation). On the other hand, unexpected renegotiation still introduces potential security risks, and hence we do not allow renegotiation on the server side, as we never request renegotiation. On the client side the situation is different though. There are backends which explicitly request renegotiation, and disabled renegotiation introduces interoperability problems. This change allows renegotiation on the client side, and fixes interoperability problems as observed with such backends (ticket #872). Additionally, with TLSv1.3 the SSL_CB_HANDSHAKE_START flag is currently set by OpenSSL when receiving a NewSessionTicket message, and was detected by nginx as a renegotiation attempt. This looks like a bug in OpenSSL, though this change also allows better interoperability till the problem is fixed.
author Sergey Kandaurov <pluknet@nginx.com>
date Tue, 18 Apr 2017 16:08:44 +0300
parents 56fc55e32f23
children
line wrap: on
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/*
 * Copyright (C) Igor Sysoev
 * Copyright (C) Nginx, Inc.
 */


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


char    ngx_darwin_kern_ostype[16];
char    ngx_darwin_kern_osrelease[128];
int     ngx_darwin_hw_ncpu;
int     ngx_darwin_kern_ipc_somaxconn;
u_long  ngx_darwin_net_inet_tcp_sendspace;

ngx_uint_t  ngx_debug_malloc;


static ngx_os_io_t ngx_darwin_io = {
    ngx_unix_recv,
    ngx_readv_chain,
    ngx_udp_unix_recv,
    ngx_unix_send,
    ngx_udp_unix_send,
    ngx_udp_unix_sendmsg_chain,
#if (NGX_HAVE_SENDFILE)
    ngx_darwin_sendfile_chain,
    NGX_IO_SENDFILE
#else
    ngx_writev_chain,
    0
#endif
};


typedef struct {
    char        *name;
    void        *value;
    size_t       size;
    ngx_uint_t   exists;
} sysctl_t;


sysctl_t sysctls[] = {
    { "hw.ncpu",
      &ngx_darwin_hw_ncpu,
      sizeof(ngx_darwin_hw_ncpu), 0 },

    { "net.inet.tcp.sendspace",
      &ngx_darwin_net_inet_tcp_sendspace,
      sizeof(ngx_darwin_net_inet_tcp_sendspace), 0 },

    { "kern.ipc.somaxconn",
      &ngx_darwin_kern_ipc_somaxconn,
      sizeof(ngx_darwin_kern_ipc_somaxconn), 0 },

    { NULL, NULL, 0, 0 }
};


void
ngx_debug_init(void)
{
#if (NGX_DEBUG_MALLOC)

    /*
     * MacOSX 10.6, 10.7:  MallocScribble fills freed memory with 0x55
     *                     and fills allocated memory with 0xAA.
     * MacOSX 10.4, 10.5:  MallocScribble fills freed memory with 0x55,
     *                     MallocPreScribble fills allocated memory with 0xAA.
     * MacOSX 10.3:        MallocScribble fills freed memory with 0x55,
     *                     and no way to fill allocated memory.
     */

    setenv("MallocScribble", "1", 0);

    ngx_debug_malloc = 1;

#else

    if (getenv("MallocScribble")) {
        ngx_debug_malloc = 1;
    }

#endif
}


ngx_int_t
ngx_os_specific_init(ngx_log_t *log)
{
    size_t      size;
    ngx_err_t   err;
    ngx_uint_t  i;

    size = sizeof(ngx_darwin_kern_ostype);
    if (sysctlbyname("kern.ostype", ngx_darwin_kern_ostype, &size, NULL, 0)
        == -1)
    {
        err = ngx_errno;

        if (err != NGX_ENOENT) {

            ngx_log_error(NGX_LOG_ALERT, log, err,
                          "sysctlbyname(kern.ostype) failed");

            if (err != NGX_ENOMEM) {
                return NGX_ERROR;
            }

            ngx_darwin_kern_ostype[size - 1] = '\0';
        }
    }

    size = sizeof(ngx_darwin_kern_osrelease);
    if (sysctlbyname("kern.osrelease", ngx_darwin_kern_osrelease, &size,
                     NULL, 0)
        == -1)
    {
        err = ngx_errno;

        if (err != NGX_ENOENT) {

            ngx_log_error(NGX_LOG_ALERT, log, err,
                          "sysctlbyname(kern.osrelease) failed");

            if (err != NGX_ENOMEM) {
                return NGX_ERROR;
            }

            ngx_darwin_kern_osrelease[size - 1] = '\0';
        }
    }

    for (i = 0; sysctls[i].name; i++) {
        size = sysctls[i].size;

        if (sysctlbyname(sysctls[i].name, sysctls[i].value, &size, NULL, 0)
            == 0)
        {
            sysctls[i].exists = 1;
            continue;
        }

        err = ngx_errno;

        if (err == NGX_ENOENT) {
            continue;
        }

        ngx_log_error(NGX_LOG_ALERT, log, err,
                      "sysctlbyname(%s) failed", sysctls[i].name);
        return NGX_ERROR;
    }

    ngx_ncpu = ngx_darwin_hw_ncpu;

    if (ngx_darwin_kern_ipc_somaxconn > 32767) {
        ngx_log_error(NGX_LOG_ALERT, log, 0,
                      "sysctl kern.ipc.somaxconn must be less than 32768");
        return NGX_ERROR;
    }

    ngx_tcp_nodelay_and_tcp_nopush = 1;

    ngx_os_io = ngx_darwin_io;

    return NGX_OK;
}


void
ngx_os_specific_status(ngx_log_t *log)
{
    u_long      value;
    ngx_uint_t  i;

    if (ngx_darwin_kern_ostype[0]) {
        ngx_log_error(NGX_LOG_NOTICE, log, 0, "OS: %s %s",
                      ngx_darwin_kern_ostype, ngx_darwin_kern_osrelease);
    }

    for (i = 0; sysctls[i].name; i++) {
        if (sysctls[i].exists) {
            if (sysctls[i].size == sizeof(long)) {
                value = *(long *) sysctls[i].value;

            } else {
                value = *(int *) sysctls[i].value;
            }

            ngx_log_error(NGX_LOG_NOTICE, log, 0, "%s: %l",
                          sysctls[i].name, value);
        }
    }
}