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e077455e9e
Since OPENSSL_malloc() and friends report ERR_R_MALLOC_FAILURE, and at least handle the file name and line number they are called from, there's no need to report ERR_R_MALLOC_FAILURE where they are called directly, or when SSLfatal() and RLAYERfatal() is used, the reason `ERR_R_MALLOC_FAILURE` is changed to `ERR_R_CRYPTO_LIB`. There were a number of places where `ERR_R_MALLOC_FAILURE` was reported even though it was a function from a different sub-system that was called. Those places are changed to report ERR_R_{lib}_LIB, where {lib} is the name of that sub-system. Some of them are tricky to get right, as we have a lot of functions that belong in the ASN1 sub-system, and all the `sk_` calls or from the CRYPTO sub-system. Some extra adaptation was necessary where there were custom OPENSSL_malloc() wrappers, and some bugs are fixed alongside these changes. Reviewed-by: Tomas Mraz <tomas@openssl.org> Reviewed-by: Hugo Landau <hlandau@openssl.org> (Merged from https://github.com/openssl/openssl/pull/19301)
154 lines
2.8 KiB
C
154 lines
2.8 KiB
C
/*
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* Copyright 2005-2020 The OpenSSL Project Authors. All Rights Reserved.
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*
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* Licensed under the Apache License 2.0 (the "License"). You may not use
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* this file except in compliance with the License. You can obtain a copy
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* in the file LICENSE in the source distribution or at
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* https://www.openssl.org/source/license.html
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*/
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#include "ssl_local.h"
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#include <openssl/bn.h>
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struct pqueue_st {
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pitem *items;
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int count;
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};
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pitem *pitem_new(unsigned char *prio64be, void *data)
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{
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pitem *item = OPENSSL_malloc(sizeof(*item));
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if (item == NULL)
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return NULL;
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memcpy(item->priority, prio64be, sizeof(item->priority));
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item->data = data;
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item->next = NULL;
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return item;
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}
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void pitem_free(pitem *item)
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{
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OPENSSL_free(item);
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}
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pqueue *pqueue_new(void)
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{
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pqueue *pq = OPENSSL_zalloc(sizeof(*pq));
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return pq;
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}
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void pqueue_free(pqueue *pq)
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{
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OPENSSL_free(pq);
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}
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pitem *pqueue_insert(pqueue *pq, pitem *item)
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{
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pitem *curr, *next;
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if (pq->items == NULL) {
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pq->items = item;
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return item;
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}
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for (curr = NULL, next = pq->items;
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next != NULL; curr = next, next = next->next) {
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/*
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* we can compare 64-bit value in big-endian encoding with memcmp:-)
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*/
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int cmp = memcmp(next->priority, item->priority, 8);
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if (cmp > 0) { /* next > item */
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item->next = next;
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if (curr == NULL)
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pq->items = item;
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else
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curr->next = item;
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return item;
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}
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else if (cmp == 0) /* duplicates not allowed */
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return NULL;
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}
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item->next = NULL;
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curr->next = item;
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return item;
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}
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pitem *pqueue_peek(pqueue *pq)
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{
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return pq->items;
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}
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pitem *pqueue_pop(pqueue *pq)
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{
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pitem *item = pq->items;
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if (pq->items != NULL)
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pq->items = pq->items->next;
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return item;
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}
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pitem *pqueue_find(pqueue *pq, unsigned char *prio64be)
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{
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pitem *next;
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pitem *found = NULL;
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if (pq->items == NULL)
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return NULL;
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for (next = pq->items; next->next != NULL; next = next->next) {
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if (memcmp(next->priority, prio64be, 8) == 0) {
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found = next;
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break;
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}
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}
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/* check the one last node */
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if (memcmp(next->priority, prio64be, 8) == 0)
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found = next;
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if (!found)
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return NULL;
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return found;
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}
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pitem *pqueue_iterator(pqueue *pq)
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{
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return pqueue_peek(pq);
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}
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pitem *pqueue_next(piterator *item)
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{
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pitem *ret;
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if (item == NULL || *item == NULL)
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return NULL;
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/* *item != NULL */
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ret = *item;
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*item = (*item)->next;
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return ret;
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}
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size_t pqueue_size(pqueue *pq)
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{
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pitem *item = pq->items;
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size_t count = 0;
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while (item != NULL) {
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count++;
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item = item->next;
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}
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return count;
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}
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