Make rand_pool buffers more dynamic in their sizing.
Reviewed-by: Bernd Edlinger <bernd.edlinger@hotmail.de> (Merged from https://github.com/openssl/openssl/pull/9428)
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5 changed files with 67 additions and 5 deletions
3
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3
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@ -19,6 +19,9 @@
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The macro SYSerr() is deprecated.
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[Rich Salz]
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*) Significantly reduce secure memory usage by the randomness pools.
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[Paul Dale]
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*) {CRYPTO,OPENSSL}_mem_debug_{push,pop} are now no-ops and have been
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deprecated.
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[Rich Salz]
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@ -1177,6 +1177,7 @@ RAND_F_RAND_POOL_ADD_BEGIN:113:rand_pool_add_begin
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RAND_F_RAND_POOL_ADD_END:114:rand_pool_add_end
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RAND_F_RAND_POOL_ATTACH:124:rand_pool_attach
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RAND_F_RAND_POOL_BYTES_NEEDED:115:rand_pool_bytes_needed
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RAND_F_RAND_POOL_GROW:127:
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RAND_F_RAND_POOL_NEW:116:rand_pool_new
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RAND_F_RAND_WRITE_FILE:112:RAND_write_file
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RSA_F_CHECK_PADDING_MD:140:check_padding_md
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@ -82,6 +82,24 @@
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* 1.5 * (RAND_DRBG_STRENGTH / 8))
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*/
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/*
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* Initial allocation minimum.
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*
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* There is a distinction between the secure and normal allocation minimums.
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* Ideally, the secure allocation size should be a power of two. The normal
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* allocation size doesn't have any such restriction.
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*
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* The secure value is based on 128 bits of secure material, which is 16 bytes.
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* Typically, the DRBGs will set a minimum larger than this so optimal
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* allocation ought to take place (for full quality seed material).
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*
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* The normal value has been chosed by noticing that the rand_drbg_get_nonce
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* function is usually the largest of the built in allocation (twenty four
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* bytes and then appending another sixteen bytes). This means the buffer ends
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* with 40 bytes. The value of forty eight is comfortably above this which
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* allows some slack in the platform specific values used.
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*/
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# define RAND_POOL_MIN_ALLOCATION(secure) ((secure) ? 16 : 48)
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/* DRBG status values */
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typedef enum drbg_status_e {
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@ -184,6 +202,7 @@ struct rand_pool_st {
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size_t min_len; /* minimum number of random bytes requested */
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size_t max_len; /* maximum number of random bytes (allocated buffer size) */
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size_t alloc_len; /* current number of bytes allocated */
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size_t entropy; /* current entropy count in bits */
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size_t entropy_requested; /* requested entropy count in bits */
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};
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@ -368,6 +368,7 @@ RAND_POOL *rand_pool_new(int entropy_requested, int secure,
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size_t min_len, size_t max_len)
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{
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RAND_POOL *pool = OPENSSL_zalloc(sizeof(*pool));
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size_t min_alloc_size = RAND_POOL_MIN_ALLOCATION(secure);
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if (pool == NULL) {
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RANDerr(RAND_F_RAND_POOL_NEW, ERR_R_MALLOC_FAILURE);
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@ -377,11 +378,14 @@ RAND_POOL *rand_pool_new(int entropy_requested, int secure,
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pool->min_len = min_len;
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pool->max_len = (max_len > RAND_POOL_MAX_LENGTH) ?
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RAND_POOL_MAX_LENGTH : max_len;
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pool->alloc_len = min_len < min_alloc_size ? min_alloc_size : min_len;
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if (pool->alloc_len > pool->max_len)
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pool->alloc_len = pool->max_len;
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if (secure)
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pool->buffer = OPENSSL_secure_zalloc(pool->max_len);
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pool->buffer = OPENSSL_secure_zalloc(pool->alloc_len);
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else
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pool->buffer = OPENSSL_zalloc(pool->max_len);
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pool->buffer = OPENSSL_zalloc(pool->alloc_len);
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if (pool->buffer == NULL) {
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RANDerr(RAND_F_RAND_POOL_NEW, ERR_R_MALLOC_FAILURE);
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@ -424,7 +428,7 @@ RAND_POOL *rand_pool_attach(const unsigned char *buffer, size_t len,
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pool->attached = 1;
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pool->min_len = pool->max_len = pool->len;
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pool->min_len = pool->max_len = pool->alloc_len = pool->len;
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pool->entropy = entropy;
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return pool;
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@ -446,9 +450,9 @@ void rand_pool_free(RAND_POOL *pool)
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*/
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if (!pool->attached) {
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if (pool->secure)
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OPENSSL_secure_clear_free(pool->buffer, pool->max_len);
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OPENSSL_secure_clear_free(pool->buffer, pool->alloc_len);
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else
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OPENSSL_clear_free(pool->buffer, pool->max_len);
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OPENSSL_clear_free(pool->buffer, pool->alloc_len);
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}
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OPENSSL_free(pool);
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@ -581,6 +585,36 @@ size_t rand_pool_bytes_remaining(RAND_POOL *pool)
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return pool->max_len - pool->len;
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}
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static int rand_pool_grow(RAND_POOL *pool, size_t len)
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{
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if (len > pool->alloc_len - pool->len) {
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unsigned char *p;
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const size_t limit = pool->max_len / 2;
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size_t newlen = pool->alloc_len;
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do
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newlen = newlen < limit ? newlen * 2 : pool->max_len;
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while (len > newlen - pool->len);
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if (pool->secure)
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p = OPENSSL_secure_zalloc(newlen);
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else
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p = OPENSSL_zalloc(newlen);
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if (p == NULL) {
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RANDerr(RAND_F_RAND_POOL_GROW, ERR_R_MALLOC_FAILURE);
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return 0;
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}
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memcpy(p, pool->buffer, pool->len);
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if (pool->secure)
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OPENSSL_secure_clear_free(pool->buffer, pool->alloc_len);
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else
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OPENSSL_clear_free(pool->buffer, pool->alloc_len);
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pool->buffer = p;
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pool->alloc_len = newlen;
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}
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return 1;
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}
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/*
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* Add random bytes to the random pool.
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*
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@ -604,6 +638,8 @@ int rand_pool_add(RAND_POOL *pool,
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}
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if (len > 0) {
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if (!rand_pool_grow(pool, len))
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return 0;
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memcpy(pool->buffer + pool->len, buffer, len);
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pool->len += len;
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pool->entropy += entropy;
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@ -639,6 +675,8 @@ unsigned char *rand_pool_add_begin(RAND_POOL *pool, size_t len)
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return NULL;
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}
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if (!rand_pool_grow(pool, len))
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return NULL;
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return pool->buffer + pool->len;
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}
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@ -49,6 +49,7 @@ int ERR_load_RAND_strings(void);
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# define RAND_F_RAND_POOL_ADD_END 0
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# define RAND_F_RAND_POOL_ATTACH 0
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# define RAND_F_RAND_POOL_BYTES_NEEDED 0
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# define RAND_F_RAND_POOL_GROW 0
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# define RAND_F_RAND_POOL_NEW 0
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# define RAND_F_RAND_WRITE_FILE 0
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# endif
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