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c9ddc5af51
When the context is reinitialized, i.e. the same key should be used we must properly reinitialize the underlying implementation. However in POLY1305 case it does not make sense as this special MAC should not reuse keys. We fail with this provided implementation when reinitialization happens. Fixes #17811 Reviewed-by: Matt Caswell <matt@openssl.org> Reviewed-by: Paul Dale <pauli@openssl.org> (Merged from https://github.com/openssl/openssl/pull/18100)
357 lines
11 KiB
C
357 lines
11 KiB
C
/*
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* Copyright 2018-2021 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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/*
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* HMAC low level APIs are deprecated for public use, but still ok for internal
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* use.
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*/
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#include "internal/deprecated.h"
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#include <string.h>
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#include <openssl/core_dispatch.h>
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#include <openssl/core_names.h>
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#include <openssl/params.h>
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#include <openssl/evp.h>
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#include <openssl/hmac.h>
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#include "prov/implementations.h"
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#include "prov/provider_ctx.h"
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#include "prov/provider_util.h"
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#include "prov/providercommon.h"
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/*
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* Forward declaration of everything implemented here. This is not strictly
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* necessary for the compiler, but provides an assurance that the signatures
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* of the functions in the dispatch table are correct.
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*/
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static OSSL_FUNC_mac_newctx_fn hmac_new;
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static OSSL_FUNC_mac_dupctx_fn hmac_dup;
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static OSSL_FUNC_mac_freectx_fn hmac_free;
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static OSSL_FUNC_mac_gettable_ctx_params_fn hmac_gettable_ctx_params;
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static OSSL_FUNC_mac_get_ctx_params_fn hmac_get_ctx_params;
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static OSSL_FUNC_mac_settable_ctx_params_fn hmac_settable_ctx_params;
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static OSSL_FUNC_mac_set_ctx_params_fn hmac_set_ctx_params;
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static OSSL_FUNC_mac_init_fn hmac_init;
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static OSSL_FUNC_mac_update_fn hmac_update;
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static OSSL_FUNC_mac_final_fn hmac_final;
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/* local HMAC context structure */
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/* typedef EVP_MAC_IMPL */
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struct hmac_data_st {
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void *provctx;
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HMAC_CTX *ctx; /* HMAC context */
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PROV_DIGEST digest;
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unsigned char *key;
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size_t keylen;
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/* Length of full TLS record including the MAC and any padding */
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size_t tls_data_size;
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unsigned char tls_header[13];
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int tls_header_set;
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unsigned char tls_mac_out[EVP_MAX_MD_SIZE];
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size_t tls_mac_out_size;
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};
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/* Defined in ssl/s3_cbc.c */
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int ssl3_cbc_digest_record(const EVP_MD *md,
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unsigned char *md_out,
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size_t *md_out_size,
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const unsigned char header[13],
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const unsigned char *data,
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size_t data_size,
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size_t data_plus_mac_plus_padding_size,
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const unsigned char *mac_secret,
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size_t mac_secret_length, char is_sslv3);
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static void *hmac_new(void *provctx)
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{
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struct hmac_data_st *macctx;
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if (!ossl_prov_is_running())
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return NULL;
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if ((macctx = OPENSSL_zalloc(sizeof(*macctx))) == NULL
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|| (macctx->ctx = HMAC_CTX_new()) == NULL) {
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OPENSSL_free(macctx);
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return NULL;
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}
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macctx->provctx = provctx;
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return macctx;
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}
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static void hmac_free(void *vmacctx)
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{
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struct hmac_data_st *macctx = vmacctx;
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if (macctx != NULL) {
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HMAC_CTX_free(macctx->ctx);
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ossl_prov_digest_reset(&macctx->digest);
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OPENSSL_secure_clear_free(macctx->key, macctx->keylen);
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OPENSSL_free(macctx);
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}
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}
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static void *hmac_dup(void *vsrc)
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{
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struct hmac_data_st *src = vsrc;
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struct hmac_data_st *dst;
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HMAC_CTX *ctx;
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if (!ossl_prov_is_running())
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return NULL;
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dst = hmac_new(src->provctx);
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if (dst == NULL)
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return NULL;
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ctx = dst->ctx;
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*dst = *src;
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dst->ctx = ctx;
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dst->key = NULL;
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if (!HMAC_CTX_copy(dst->ctx, src->ctx)
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|| !ossl_prov_digest_copy(&dst->digest, &src->digest)) {
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hmac_free(dst);
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return NULL;
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}
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if (src->key != NULL) {
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/* There is no "secure" OPENSSL_memdup */
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dst->key = OPENSSL_secure_malloc(src->keylen > 0 ? src->keylen : 1);
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if (dst->key == NULL) {
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hmac_free(dst);
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return 0;
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}
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memcpy(dst->key, src->key, src->keylen);
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}
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return dst;
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}
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static size_t hmac_size(struct hmac_data_st *macctx)
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{
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return HMAC_size(macctx->ctx);
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}
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static int hmac_block_size(struct hmac_data_st *macctx)
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{
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const EVP_MD *md = ossl_prov_digest_md(&macctx->digest);
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if (md == NULL)
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return 0;
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return EVP_MD_block_size(md);
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}
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static int hmac_setkey(struct hmac_data_st *macctx,
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const unsigned char *key, size_t keylen)
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{
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const EVP_MD *digest;
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if (macctx->key != NULL)
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OPENSSL_secure_clear_free(macctx->key, macctx->keylen);
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/* Keep a copy of the key in case we need it for TLS HMAC */
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macctx->key = OPENSSL_secure_malloc(keylen > 0 ? keylen : 1);
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if (macctx->key == NULL)
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return 0;
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memcpy(macctx->key, key, keylen);
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macctx->keylen = keylen;
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digest = ossl_prov_digest_md(&macctx->digest);
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/* HMAC_Init_ex doesn't tolerate all zero params, so we must be careful */
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if (key != NULL || (macctx->tls_data_size == 0 && digest != NULL))
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return HMAC_Init_ex(macctx->ctx, key, keylen, digest,
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ossl_prov_digest_engine(&macctx->digest));
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return 1;
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}
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static int hmac_init(void *vmacctx, const unsigned char *key,
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size_t keylen, const OSSL_PARAM params[])
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{
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struct hmac_data_st *macctx = vmacctx;
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if (!ossl_prov_is_running() || !hmac_set_ctx_params(macctx, params))
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return 0;
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if (key != NULL)
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return hmac_setkey(macctx, key, keylen);
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/* Just reinit the HMAC context */
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return HMAC_Init_ex(macctx->ctx, NULL, 0, NULL, NULL);
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}
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static int hmac_update(void *vmacctx, const unsigned char *data,
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size_t datalen)
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{
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struct hmac_data_st *macctx = vmacctx;
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if (macctx->tls_data_size > 0) {
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/* We're doing a TLS HMAC */
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if (!macctx->tls_header_set) {
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/* We expect the first update call to contain the TLS header */
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if (datalen != sizeof(macctx->tls_header))
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return 0;
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memcpy(macctx->tls_header, data, datalen);
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macctx->tls_header_set = 1;
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return 1;
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}
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/* macctx->tls_data_size is datalen plus the padding length */
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if (macctx->tls_data_size < datalen)
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return 0;
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return ssl3_cbc_digest_record(ossl_prov_digest_md(&macctx->digest),
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macctx->tls_mac_out,
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&macctx->tls_mac_out_size,
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macctx->tls_header,
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data,
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datalen,
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macctx->tls_data_size,
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macctx->key,
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macctx->keylen,
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0);
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}
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return HMAC_Update(macctx->ctx, data, datalen);
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}
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static int hmac_final(void *vmacctx, unsigned char *out, size_t *outl,
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size_t outsize)
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{
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unsigned int hlen;
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struct hmac_data_st *macctx = vmacctx;
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if (!ossl_prov_is_running())
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return 0;
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if (macctx->tls_data_size > 0) {
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if (macctx->tls_mac_out_size == 0)
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return 0;
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if (outl != NULL)
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*outl = macctx->tls_mac_out_size;
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memcpy(out, macctx->tls_mac_out, macctx->tls_mac_out_size);
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return 1;
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}
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if (!HMAC_Final(macctx->ctx, out, &hlen))
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return 0;
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*outl = hlen;
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return 1;
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}
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static const OSSL_PARAM known_gettable_ctx_params[] = {
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OSSL_PARAM_size_t(OSSL_MAC_PARAM_SIZE, NULL),
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OSSL_PARAM_size_t(OSSL_MAC_PARAM_BLOCK_SIZE, NULL),
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OSSL_PARAM_END
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};
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static const OSSL_PARAM *hmac_gettable_ctx_params(ossl_unused void *ctx,
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ossl_unused void *provctx)
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{
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return known_gettable_ctx_params;
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}
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static int hmac_get_ctx_params(void *vmacctx, OSSL_PARAM params[])
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{
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struct hmac_data_st *macctx = vmacctx;
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OSSL_PARAM *p;
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if ((p = OSSL_PARAM_locate(params, OSSL_MAC_PARAM_SIZE)) != NULL
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&& !OSSL_PARAM_set_size_t(p, hmac_size(macctx)))
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return 0;
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if ((p = OSSL_PARAM_locate(params, OSSL_MAC_PARAM_BLOCK_SIZE)) != NULL
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&& !OSSL_PARAM_set_int(p, hmac_block_size(macctx)))
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return 0;
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return 1;
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}
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static const OSSL_PARAM known_settable_ctx_params[] = {
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OSSL_PARAM_utf8_string(OSSL_MAC_PARAM_DIGEST, NULL, 0),
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OSSL_PARAM_utf8_string(OSSL_MAC_PARAM_PROPERTIES, NULL, 0),
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OSSL_PARAM_octet_string(OSSL_MAC_PARAM_KEY, NULL, 0),
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OSSL_PARAM_int(OSSL_MAC_PARAM_DIGEST_NOINIT, NULL),
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OSSL_PARAM_int(OSSL_MAC_PARAM_DIGEST_ONESHOT, NULL),
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OSSL_PARAM_size_t(OSSL_MAC_PARAM_TLS_DATA_SIZE, NULL),
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OSSL_PARAM_END
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};
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static const OSSL_PARAM *hmac_settable_ctx_params(ossl_unused void *ctx,
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ossl_unused void *provctx)
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{
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return known_settable_ctx_params;
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}
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static int set_flag(const OSSL_PARAM params[], const char *key, int mask,
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int *flags)
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{
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const OSSL_PARAM *p = OSSL_PARAM_locate_const(params, key);
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int flag = 0;
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if (p != NULL) {
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if (!OSSL_PARAM_get_int(p, &flag))
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return 0;
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if (flag == 0)
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*flags &= ~mask;
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else
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*flags |= mask;
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}
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return 1;
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}
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/*
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* ALL parameters should be set before init().
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*/
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static int hmac_set_ctx_params(void *vmacctx, const OSSL_PARAM params[])
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{
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struct hmac_data_st *macctx = vmacctx;
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OSSL_LIB_CTX *ctx = PROV_LIBCTX_OF(macctx->provctx);
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const OSSL_PARAM *p;
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int flags = 0;
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if (params == NULL)
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return 1;
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if (!ossl_prov_digest_load_from_params(&macctx->digest, params, ctx))
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return 0;
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if (!set_flag(params, OSSL_MAC_PARAM_DIGEST_NOINIT, EVP_MD_CTX_FLAG_NO_INIT,
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&flags))
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return 0;
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if (!set_flag(params, OSSL_MAC_PARAM_DIGEST_ONESHOT, EVP_MD_CTX_FLAG_ONESHOT,
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&flags))
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return 0;
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if (flags)
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HMAC_CTX_set_flags(macctx->ctx, flags);
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if ((p = OSSL_PARAM_locate_const(params, OSSL_MAC_PARAM_KEY)) != NULL) {
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if (p->data_type != OSSL_PARAM_OCTET_STRING)
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return 0;
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if (!hmac_setkey(macctx, p->data, p->data_size))
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return 0;
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}
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if ((p = OSSL_PARAM_locate_const(params,
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OSSL_MAC_PARAM_TLS_DATA_SIZE)) != NULL) {
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if (!OSSL_PARAM_get_size_t(p, &macctx->tls_data_size))
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return 0;
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}
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return 1;
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}
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const OSSL_DISPATCH ossl_hmac_functions[] = {
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{ OSSL_FUNC_MAC_NEWCTX, (void (*)(void))hmac_new },
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{ OSSL_FUNC_MAC_DUPCTX, (void (*)(void))hmac_dup },
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{ OSSL_FUNC_MAC_FREECTX, (void (*)(void))hmac_free },
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{ OSSL_FUNC_MAC_INIT, (void (*)(void))hmac_init },
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{ OSSL_FUNC_MAC_UPDATE, (void (*)(void))hmac_update },
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{ OSSL_FUNC_MAC_FINAL, (void (*)(void))hmac_final },
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{ OSSL_FUNC_MAC_GETTABLE_CTX_PARAMS,
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(void (*)(void))hmac_gettable_ctx_params },
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{ OSSL_FUNC_MAC_GET_CTX_PARAMS, (void (*)(void))hmac_get_ctx_params },
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{ OSSL_FUNC_MAC_SETTABLE_CTX_PARAMS,
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(void (*)(void))hmac_settable_ctx_params },
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{ OSSL_FUNC_MAC_SET_CTX_PARAMS, (void (*)(void))hmac_set_ctx_params },
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{ 0, NULL }
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};
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