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git-svn-id: https://svn.apache.org/repos/asf/httpd/httpd/trunk@420983 13f79535-47bb-0310-9956-ffa450edef68
180 lines
5.7 KiB
C
180 lines
5.7 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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/* _ _
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* _ __ ___ ___ __| | ___ ___| | mod_ssl
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* | '_ ` _ \ / _ \ / _` | / __/ __| | Apache Interface to OpenSSL
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* | | | | | | (_) | (_| | \__ \__ \ |
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* |_| |_| |_|\___/ \__,_|___|___/___/_|
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* |_____|
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* ssl_engine_rand.c
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* Random Number Generator Seeding
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*/
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/* ``The generation of random
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numbers is too important
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to be left to chance.'' */
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#include "ssl_private.h"
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/* _________________________________________________________________
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**
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** Support for better seeding of SSL library's RNG
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** _________________________________________________________________
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*/
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static int ssl_rand_choosenum(int, int);
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static int ssl_rand_feedfp(apr_pool_t *, apr_file_t *, int);
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int ssl_rand_seed(server_rec *s, apr_pool_t *p, ssl_rsctx_t nCtx, char *prefix)
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{
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SSLModConfigRec *mc;
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apr_array_header_t *apRandSeed;
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ssl_randseed_t *pRandSeeds;
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ssl_randseed_t *pRandSeed;
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unsigned char stackdata[256];
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int nReq, nDone;
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apr_file_t *fp;
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int i, n, l;
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mc = myModConfig(s);
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nReq = 0;
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nDone = 0;
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apRandSeed = mc->aRandSeed;
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pRandSeeds = (ssl_randseed_t *)apRandSeed->elts;
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for (i = 0; i < apRandSeed->nelts; i++) {
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pRandSeed = &pRandSeeds[i];
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if (pRandSeed->nCtx == nCtx) {
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nReq += pRandSeed->nBytes;
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if (pRandSeed->nSrc == SSL_RSSRC_FILE) {
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/*
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* seed in contents of an external file
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*/
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if (apr_file_open(&fp, pRandSeed->cpPath,
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APR_READ, APR_OS_DEFAULT, p) != APR_SUCCESS)
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continue;
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nDone += ssl_rand_feedfp(p, fp, pRandSeed->nBytes);
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apr_file_close(fp);
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}
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else if (pRandSeed->nSrc == SSL_RSSRC_EXEC) {
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const char *cmd = pRandSeed->cpPath;
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const char **argv = apr_palloc(p, sizeof(char *) * 3);
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/*
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* seed in contents generated by an external program
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*/
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argv[0] = cmd;
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argv[1] = apr_itoa(p, pRandSeed->nBytes);
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argv[2] = NULL;
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if ((fp = ssl_util_ppopen(s, p, cmd, argv)) == NULL)
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continue;
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nDone += ssl_rand_feedfp(p, fp, pRandSeed->nBytes);
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ssl_util_ppclose(s, p, fp);
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}
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#ifdef HAVE_SSL_RAND_EGD
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else if (pRandSeed->nSrc == SSL_RSSRC_EGD) {
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/*
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* seed in contents provided by the external
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* Entropy Gathering Daemon (EGD)
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*/
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if ((n = RAND_egd(pRandSeed->cpPath)) == -1)
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continue;
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nDone += n;
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}
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#endif
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else if (pRandSeed->nSrc == SSL_RSSRC_BUILTIN) {
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struct {
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time_t t;
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pid_t pid;
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} my_seed;
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/*
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* seed in the current time (usually just 4 bytes)
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*/
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my_seed.t = time(NULL);
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/*
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* seed in the current process id (usually just 4 bytes)
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*/
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my_seed.pid = mc->pid;
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l = sizeof(my_seed);
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RAND_seed((unsigned char *)&my_seed, l);
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nDone += l;
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/*
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* seed in some current state of the run-time stack (128 bytes)
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*/
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n = ssl_rand_choosenum(0, sizeof(stackdata)-128-1);
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RAND_seed(stackdata+n, 128);
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nDone += 128;
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}
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}
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}
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ap_log_error(APLOG_MARK, APLOG_INFO, 0, s,
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"%sSeeding PRNG with %d bytes of entropy", prefix, nDone);
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if (RAND_status() == 0)
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ap_log_error(APLOG_MARK, APLOG_WARNING, 0, s,
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"%sPRNG still contains insufficient entropy!", prefix);
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return nDone;
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}
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#define BUFSIZE 8192
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static int ssl_rand_feedfp(apr_pool_t *p, apr_file_t *fp, int nReq)
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{
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apr_size_t nDone;
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unsigned char caBuf[BUFSIZE];
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apr_size_t nBuf;
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apr_size_t nRead;
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apr_size_t nTodo;
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nDone = 0;
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nRead = BUFSIZE;
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nTodo = nReq;
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while (1) {
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if (nReq > 0)
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nRead = (nTodo < BUFSIZE ? nTodo : BUFSIZE);
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nBuf = nRead;
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if (apr_file_read(fp, caBuf, &nBuf) != APR_SUCCESS)
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break;
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RAND_seed(caBuf, nBuf);
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nDone += nBuf;
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if (nReq > 0) {
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nTodo -= nBuf;
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if (nTodo <= 0)
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break;
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}
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}
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return nDone;
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}
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static int ssl_rand_choosenum(int l, int h)
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{
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int i;
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char buf[50];
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apr_snprintf(buf, sizeof(buf), "%.0f",
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(((double)(rand()%RAND_MAX)/RAND_MAX)*(h-l)));
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i = atoi(buf)+1;
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if (i < l) i = l;
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if (i > h) i = h;
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return i;
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}
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