Coverage Report

Created: 2025-06-13 06:57

/src/openssl/crypto/buffer/buffer.c
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Count
Source (jump to first uncovered line)
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/*
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 * Copyright 1995-2020 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 <stdio.h>
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#include "internal/cryptlib.h"
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#include <openssl/buffer.h>
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/*
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 * LIMIT_BEFORE_EXPANSION is the maximum n such that (n+3)/3*4 < 2**31. That
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 * function is applied in several functions in this file and this limit
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 * ensures that the result fits in an int.
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 */
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1.26M
#define LIMIT_BEFORE_EXPANSION 0x5ffffffc
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BUF_MEM *BUF_MEM_new_ex(unsigned long flags)
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26.1k
{
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26.1k
    BUF_MEM *ret;
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26.1k
    ret = BUF_MEM_new();
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26.1k
    if (ret != NULL)
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26.1k
        ret->flags = flags;
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26.1k
    return ret;
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26.1k
}
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BUF_MEM *BUF_MEM_new(void)
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470k
{
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470k
    BUF_MEM *ret;
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470k
    ret = OPENSSL_zalloc(sizeof(*ret));
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470k
    if (ret == NULL)
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0
        return NULL;
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470k
    return ret;
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470k
}
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void BUF_MEM_free(BUF_MEM *a)
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82.3k
{
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82.3k
    if (a == NULL)
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16
        return;
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82.3k
    if (a->data != NULL) {
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57.2k
        if (a->flags & BUF_MEM_FLAG_SECURE)
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0
            OPENSSL_secure_clear_free(a->data, a->max);
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57.2k
        else
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57.2k
            OPENSSL_clear_free(a->data, a->max);
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57.2k
    }
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82.3k
    OPENSSL_free(a);
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82.3k
}
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/* Allocate a block of secure memory; copy over old data if there
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 * was any, and then free it. */
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static char *sec_alloc_realloc(BUF_MEM *str, size_t len)
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0
{
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0
    char *ret;
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0
    ret = OPENSSL_secure_malloc(len);
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0
    if (str->data != NULL) {
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0
        if (ret != NULL) {
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0
            memcpy(ret, str->data, str->length);
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0
            OPENSSL_secure_clear_free(str->data, str->length);
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0
            str->data = NULL;
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0
        }
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0
    }
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0
    return ret;
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0
}
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size_t BUF_MEM_grow(BUF_MEM *str, size_t len)
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0
{
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0
    char *ret;
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0
    size_t n;
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0
    if (str->length >= len) {
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0
        str->length = len;
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0
        return len;
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0
    }
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0
    if (str->max >= len) {
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0
        if (str->data != NULL)
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0
            memset(&str->data[str->length], 0, len - str->length);
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0
        str->length = len;
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0
        return len;
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0
    }
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    /* This limit is sufficient to ensure (len+3)/3*4 < 2**31 */
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0
    if (len > LIMIT_BEFORE_EXPANSION) {
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0
        ERR_raise(ERR_LIB_BUF, ERR_R_PASSED_INVALID_ARGUMENT);
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0
        return 0;
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0
    }
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0
    n = (len + 3) / 3 * 4;
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0
    if ((str->flags & BUF_MEM_FLAG_SECURE))
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0
        ret = sec_alloc_realloc(str, n);
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0
    else
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0
        ret = OPENSSL_realloc(str->data, n);
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0
    if (ret == NULL) {
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0
        len = 0;
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0
    } else {
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0
        str->data = ret;
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0
        str->max = n;
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0
        memset(&str->data[str->length], 0, len - str->length);
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0
        str->length = len;
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0
    }
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0
    return len;
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0
}
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size_t BUF_MEM_grow_clean(BUF_MEM *str, size_t len)
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284M
{
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284M
    char *ret;
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284M
    size_t n;
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284M
    if (str->length >= len) {
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100k
        if (str->data != NULL)
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100k
            memset(&str->data[len], 0, str->length - len);
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100k
        str->length = len;
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100k
        return len;
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100k
    }
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284M
    if (str->max >= len) {
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282M
        memset(&str->data[str->length], 0, len - str->length);
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282M
        str->length = len;
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282M
        return len;
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282M
    }
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    /* This limit is sufficient to ensure (len+3)/3*4 < 2**31 */
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1.26M
    if (len > LIMIT_BEFORE_EXPANSION) {
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0
        ERR_raise(ERR_LIB_BUF, ERR_R_PASSED_INVALID_ARGUMENT);
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0
        return 0;
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0
    }
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1.26M
    n = (len + 3) / 3 * 4;
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1.26M
    if ((str->flags & BUF_MEM_FLAG_SECURE))
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0
        ret = sec_alloc_realloc(str, n);
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1.26M
    else
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1.26M
        ret = OPENSSL_clear_realloc(str->data, str->max, n);
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1.26M
    if (ret == NULL) {
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0
        len = 0;
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1.26M
    } else {
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1.26M
        str->data = ret;
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1.26M
        str->max = n;
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1.26M
        memset(&str->data[str->length], 0, len - str->length);
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1.26M
        str->length = len;
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1.26M
    }
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1.26M
    return len;
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1.26M
}
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void BUF_reverse(unsigned char *out, const unsigned char *in, size_t size)
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0
{
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0
    size_t i;
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0
    if (in) {
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0
        out += size - 1;
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0
        for (i = 0; i < size; i++)
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0
            *out-- = *in++;
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0
    } else {
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0
        unsigned char *q;
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0
        char c;
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0
        q = out + size - 1;
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0
        for (i = 0; i < size / 2; i++) {
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0
            c = *q;
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0
            *q-- = *out;
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0
            *out++ = c;
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0
        }
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0
    }
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0
}