nginx/src/event/ngx_event_openssl.c

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#include <ngx_config.h>
#include <ngx_core.h>
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#include <ngx_event.h>
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static ngx_int_t ngx_ssl_write(ngx_connection_t *c, u_char *data, size_t size);
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ngx_int_t ngx_ssl_init(ngx_log_t *log)
{
SSL_library_init();
SSL_load_error_strings();
return NGX_OK;
}
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ngx_int_t ngx_ssl_create_session(ngx_ssl_ctx_t *ssl_ctx, ngx_connection_t *c,
ngx_uint_t flags)
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{
ngx_ssl_t *ssl;
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if (!(ssl = ngx_pcalloc(c->pool, sizeof(ngx_ssl_t)))) {
return NGX_ERROR;
}
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if (!(ssl->buf = ngx_create_temp_buf(c->pool, NGX_SSL_BUFSIZE))) {
return NGX_ERROR;
}
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if (flags & NGX_SSL_BUFFER) {
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ssl->buffer = 1;
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}
ssl->ssl = SSL_new(ssl_ctx);
if (ssl->ssl == NULL) {
ngx_ssl_error(NGX_LOG_ALERT, c->log, 0, "SSL_new() failed");
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return NGX_ERROR;
}
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if (SSL_set_fd(ssl->ssl, c->fd) == 0) {
ngx_ssl_error(NGX_LOG_ALERT, c->log, 0, "SSL_set_fd() failed");
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return NGX_ERROR;
}
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SSL_set_accept_state(ssl->ssl);
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c->ssl = ssl;
return NGX_OK;
}
ngx_int_t ngx_ssl_recv(ngx_connection_t *c, u_char *buf, size_t size)
{
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int n, sslerr;
ngx_err_t err;
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char *handshake;
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n = SSL_read(c->ssl->ssl, buf, size);
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ngx_log_debug1(NGX_LOG_DEBUG_EVENT, c->log, 0, "SSL_read: %d", n);
if (n > 0) {
return n;
}
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sslerr = SSL_get_error(c->ssl->ssl, n);
err = (sslerr == SSL_ERROR_SYSCALL) ? ngx_errno : 0;
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ngx_log_debug1(NGX_LOG_DEBUG_EVENT, c->log, 0, "SSL_get_error: %d", sslerr);
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if (sslerr == SSL_ERROR_WANT_READ) {
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return NGX_AGAIN;
}
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#if 0
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if (sslerr == SSL_ERROR_WANT_WRITE) {
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return NGX_AGAIN;
}
#endif
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if (!SSL_is_init_finished(c->ssl->ssl)) {
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handshake = "in SSL handshake";
} else {
handshake = "";
}
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c->ssl->no_rcv_shut = 1;
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if (sslerr == SSL_ERROR_ZERO_RETURN || ERR_peek_error() == 0) {
ngx_log_error(NGX_LOG_INFO, c->log, err,
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"client closed connection%s", handshake);
return NGX_ERROR;
}
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ngx_ssl_error(NGX_LOG_ALERT, c->log, err,
"SSL_read() failed%s", handshake);
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return NGX_ERROR;
}
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/*
* OpenSSL has no SSL_writev() so we copy several bufs into our 16K buffer
* before SSL_write() call to decrease a SSL overhead.
*
* Besides for protocols such as HTTP it is possible to always buffer
* the output to decrease a SSL overhead some more.
*/
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ngx_chain_t *ngx_ssl_send_chain(ngx_connection_t *c, ngx_chain_t *in,
off_t limit)
{
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int n;
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ngx_uint_t flush, last;
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ssize_t send, size;
ngx_buf_t *buf;
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buf = c->ssl->buf;
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if (in && in->next == NULL && buf->pos == buf->last && !c->ssl->buffer) {
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/*
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* we avoid a buffer copy if the incoming buf is a single,
* our buffer is empty, and we do not need to buffer the output
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*/
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n = ngx_ssl_write(c, in->buf->pos, in->buf->last - in->buf->pos);
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if (n == NGX_ERROR) {
return NGX_CHAIN_ERROR;
}
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if (n < 0) {
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n = 0;
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}
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in->buf->pos += n;
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return in;
}
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send = 0;
flush = (in == NULL) ? 1 : 0;
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last = (in == NULL) ? 1 : 0;
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for ( ;; ) {
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while (in && buf->last < buf->end) {
if (in->buf->last_buf) {
flush = 1;
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last = 1;
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}
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if (ngx_buf_special(in->buf)) {
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in = in->next;
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continue;
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}
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size = in->buf->last - in->buf->pos;
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if (size > buf->end - buf->last) {
size = buf->end - buf->last;
}
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/*
* TODO: the taking in->buf->flush into account can be
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* implemented using the limit on the higher level
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*/
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if (send + size > limit) {
size = limit - send;
flush = 1;
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}
ngx_log_debug1(NGX_LOG_DEBUG_EVENT, c->log, 0,
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"SSL buf copy: %d", size);
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ngx_memcpy(buf->last, in->buf->pos, size);
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buf->last += size;
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in->buf->pos += size;
if (in->buf->pos == in->buf->last) {
in = in->next;
}
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}
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size = buf->last - buf->pos;
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if (!flush && buf->last < buf->end && c->ssl->buffer) {
break;
}
n = ngx_ssl_write(c, buf->pos, size);
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if (n == NGX_ERROR) {
return NGX_CHAIN_ERROR;
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}
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if (n < 0) {
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n = 0;
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}
buf->pos += n;
send += n;
c->sent += n;
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if (n < size) {
break;
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}
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if (buf->pos == buf->last) {
buf->pos = buf->start;
buf->last = buf->start;
}
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if (in == NULL || send == limit) {
break;
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}
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}
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if (in) {
return in;
}
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if (buf->pos == buf->last || !last) {
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return NULL;
}
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return NGX_CHAIN_AGAIN;
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}
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static ngx_int_t ngx_ssl_write(ngx_connection_t *c, u_char *data, size_t size)
{
int n, sslerr;
ngx_err_t err;
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ngx_log_debug1(NGX_LOG_DEBUG_EVENT, c->log, 0, "SSL to write: %d", size);
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n = SSL_write(c->ssl->ssl, data, size);
ngx_log_debug1(NGX_LOG_DEBUG_EVENT, c->log, 0, "SSL_write: %d", n);
if (n > 0) {
return n;
}
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sslerr = SSL_get_error(c->ssl->ssl, n);
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err = (sslerr == SSL_ERROR_SYSCALL) ? ngx_errno : 0;
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ngx_log_debug1(NGX_LOG_DEBUG_EVENT, c->log, 0, "SSL_get_error: %d", sslerr);
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if (sslerr == SSL_ERROR_WANT_WRITE) {
c->write->ready = 0;
return NGX_AGAIN;
}
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#if 0
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if (sslerr == SSL_ERROR_WANT_READ) {
return NGX_AGAIN;
}
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#endif
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c->ssl->no_rcv_shut = 1;
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ngx_ssl_error(NGX_LOG_ALERT, c->log, err, "SSL_write() failed");
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return NGX_ERROR;
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}
ngx_int_t ngx_ssl_shutdown(ngx_connection_t *c)
{
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int n, sslerr;
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ngx_uint_t again;
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if (c->timedout) {
SSL_set_shutdown(c->ssl->ssl, SSL_RECEIVED_SHUTDOWN|SSL_SENT_SHUTDOWN);
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} else {
if (c->ssl->no_rcv_shut) {
SSL_set_shutdown(c->ssl->ssl, SSL_RECEIVED_SHUTDOWN);
}
if (c->ssl->no_send_shut) {
SSL_set_shutdown(c->ssl->ssl, SSL_SENT_SHUTDOWN);
}
}
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again = 0;
for ( ;; ) {
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n = SSL_shutdown(c->ssl->ssl);
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ngx_log_debug1(NGX_LOG_DEBUG_EVENT, c->log, 0, "SSL_shutdown: %d", n);
if (n == 0) {
again = 1;
break;
}
if (n == 1) {
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SSL_free(c->ssl->ssl);
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c->ssl = NULL;
return NGX_OK;
}
break;
}
if (!again) {
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sslerr = SSL_get_error(c->ssl->ssl, n);
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ngx_log_debug1(NGX_LOG_DEBUG_EVENT, c->log, 0,
"SSL_get_error: %d", sslerr);
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}
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if (again || sslerr == SSL_ERROR_WANT_READ) {
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ngx_add_timer(c->read, 10000);
if (ngx_handle_read_event(c->read, 0) == NGX_ERROR) {
return NGX_ERROR;
}
return NGX_AGAIN;
}
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if (sslerr == SSL_ERROR_WANT_WRITE) {
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if (ngx_handle_write_event(c->write, 0) == NGX_ERROR) {
return NGX_ERROR;
}
return NGX_AGAIN;
}
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ngx_ssl_error(NGX_LOG_ALERT, c->log, 0, "SSL_shutdown() failed");
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return NGX_ERROR;
}
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void ngx_ssl_error(ngx_uint_t level, ngx_log_t *log, ngx_err_t err,
char *fmt, ...)
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{
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int len;
char errstr[NGX_MAX_CONF_ERRSTR];
va_list args;
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va_start(args, fmt);
len = ngx_vsnprintf(errstr, sizeof(errstr) - 1, fmt, args);
va_end(args);
errstr[len++] = ' ';
errstr[len++] = '(';
errstr[len++] = 'S';
errstr[len++] = 'S';
errstr[len++] = 'L';
errstr[len++] = ':';
errstr[len++] = ' ';
ERR_error_string_n(ERR_get_error(), errstr + len, sizeof(errstr) - len - 1);
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ngx_log_error(level, log, err, "%s)", errstr);
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}