mirror of
https://github.com/openssl/openssl.git
synced 2024-12-21 06:09:35 +08:00
3ebcb2fff5
It shouldn't be. This moves the reset to the init function instead and only does the reset on a key change. Reviewed-by: Hugo Landau <hlandau@openssl.org> Reviewed-by: Tomas Mraz <tomas@openssl.org> (Merged from https://github.com/openssl/openssl/pull/18860)
569 lines
17 KiB
C
569 lines
17 KiB
C
/*
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* Copyright 2019-2021 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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/* Dispatch functions for gcm mode */
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#include <openssl/rand.h>
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#include <openssl/proverr.h>
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#include "prov/ciphercommon.h"
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#include "prov/ciphercommon_gcm.h"
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#include "prov/providercommon.h"
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#include "prov/provider_ctx.h"
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static int gcm_tls_init(PROV_GCM_CTX *dat, unsigned char *aad, size_t aad_len);
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static int gcm_tls_iv_set_fixed(PROV_GCM_CTX *ctx, unsigned char *iv,
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size_t len);
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static int gcm_tls_cipher(PROV_GCM_CTX *ctx, unsigned char *out, size_t *padlen,
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const unsigned char *in, size_t len);
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static int gcm_cipher_internal(PROV_GCM_CTX *ctx, unsigned char *out,
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size_t *padlen, const unsigned char *in,
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size_t len);
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/*
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* Called from EVP_CipherInit when there is currently no context via
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* the new_ctx() function
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*/
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void ossl_gcm_initctx(void *provctx, PROV_GCM_CTX *ctx, size_t keybits,
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const PROV_GCM_HW *hw)
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{
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ctx->pad = 1;
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ctx->mode = EVP_CIPH_GCM_MODE;
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ctx->taglen = UNINITIALISED_SIZET;
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ctx->tls_aad_len = UNINITIALISED_SIZET;
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ctx->ivlen = (EVP_GCM_TLS_FIXED_IV_LEN + EVP_GCM_TLS_EXPLICIT_IV_LEN);
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ctx->keylen = keybits / 8;
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ctx->hw = hw;
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ctx->libctx = PROV_LIBCTX_OF(provctx);
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}
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/*
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* Called by EVP_CipherInit via the _einit and _dinit functions
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*/
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static int gcm_init(void *vctx, const unsigned char *key, size_t keylen,
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const unsigned char *iv, size_t ivlen,
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const OSSL_PARAM params[], int enc)
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{
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PROV_GCM_CTX *ctx = (PROV_GCM_CTX *)vctx;
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if (!ossl_prov_is_running())
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return 0;
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ctx->enc = enc;
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if (iv != NULL) {
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if (ivlen == 0 || ivlen > sizeof(ctx->iv)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_IV_LENGTH);
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return 0;
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}
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ctx->ivlen = ivlen;
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memcpy(ctx->iv, iv, ivlen);
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ctx->iv_state = IV_STATE_BUFFERED;
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}
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if (key != NULL) {
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if (keylen != ctx->keylen) {
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ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH);
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return 0;
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}
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if (!ctx->hw->setkey(ctx, key, ctx->keylen))
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return 0;
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ctx->tls_enc_records = 0;
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}
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return ossl_gcm_set_ctx_params(ctx, params);
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}
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int ossl_gcm_einit(void *vctx, const unsigned char *key, size_t keylen,
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const unsigned char *iv, size_t ivlen,
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const OSSL_PARAM params[])
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{
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return gcm_init(vctx, key, keylen, iv, ivlen, params, 1);
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}
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int ossl_gcm_dinit(void *vctx, const unsigned char *key, size_t keylen,
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const unsigned char *iv, size_t ivlen,
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const OSSL_PARAM params[])
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{
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return gcm_init(vctx, key, keylen, iv, ivlen, params, 0);
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}
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/* increment counter (64-bit int) by 1 */
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static void ctr64_inc(unsigned char *counter)
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{
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int n = 8;
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unsigned char c;
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do {
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--n;
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c = counter[n];
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++c;
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counter[n] = c;
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if (c > 0)
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return;
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} while (n > 0);
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}
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static int getivgen(PROV_GCM_CTX *ctx, unsigned char *out, size_t olen)
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{
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if (!ctx->iv_gen
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|| !ctx->key_set
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|| !ctx->hw->setiv(ctx, ctx->iv, ctx->ivlen))
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return 0;
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if (olen == 0 || olen > ctx->ivlen)
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olen = ctx->ivlen;
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memcpy(out, ctx->iv + ctx->ivlen - olen, olen);
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/*
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* Invocation field will be at least 8 bytes in size and so no need
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* to check wrap around or increment more than last 8 bytes.
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*/
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ctr64_inc(ctx->iv + ctx->ivlen - 8);
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ctx->iv_state = IV_STATE_COPIED;
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return 1;
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}
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static int setivinv(PROV_GCM_CTX *ctx, unsigned char *in, size_t inl)
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{
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if (!ctx->iv_gen
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|| !ctx->key_set
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|| ctx->enc)
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return 0;
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memcpy(ctx->iv + ctx->ivlen - inl, in, inl);
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if (!ctx->hw->setiv(ctx, ctx->iv, ctx->ivlen))
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return 0;
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ctx->iv_state = IV_STATE_COPIED;
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return 1;
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}
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int ossl_gcm_get_ctx_params(void *vctx, OSSL_PARAM params[])
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{
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PROV_GCM_CTX *ctx = (PROV_GCM_CTX *)vctx;
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OSSL_PARAM *p;
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size_t sz;
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p = OSSL_PARAM_locate(params, OSSL_CIPHER_PARAM_IVLEN);
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if (p != NULL && !OSSL_PARAM_set_size_t(p, ctx->ivlen)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_SET_PARAMETER);
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return 0;
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}
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p = OSSL_PARAM_locate(params, OSSL_CIPHER_PARAM_KEYLEN);
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if (p != NULL && !OSSL_PARAM_set_size_t(p, ctx->keylen)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_SET_PARAMETER);
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return 0;
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}
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p = OSSL_PARAM_locate(params, OSSL_CIPHER_PARAM_AEAD_TAGLEN);
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if (p != NULL) {
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size_t taglen = (ctx->taglen != UNINITIALISED_SIZET) ? ctx->taglen :
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GCM_TAG_MAX_SIZE;
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if (!OSSL_PARAM_set_size_t(p, taglen)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_SET_PARAMETER);
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return 0;
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}
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}
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p = OSSL_PARAM_locate(params, OSSL_CIPHER_PARAM_IV);
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if (p != NULL) {
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if (ctx->iv_state == IV_STATE_UNINITIALISED)
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return 0;
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if (ctx->ivlen > p->data_size) {
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ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_IV_LENGTH);
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return 0;
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}
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if (!OSSL_PARAM_set_octet_string(p, ctx->iv, ctx->ivlen)
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&& !OSSL_PARAM_set_octet_ptr(p, &ctx->iv, ctx->ivlen)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_SET_PARAMETER);
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return 0;
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}
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}
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p = OSSL_PARAM_locate(params, OSSL_CIPHER_PARAM_UPDATED_IV);
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if (p != NULL) {
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if (ctx->iv_state == IV_STATE_UNINITIALISED)
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return 0;
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if (ctx->ivlen > p->data_size) {
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ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_IV_LENGTH);
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return 0;
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}
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if (!OSSL_PARAM_set_octet_string(p, ctx->iv, ctx->ivlen)
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&& !OSSL_PARAM_set_octet_ptr(p, &ctx->iv, ctx->ivlen)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_SET_PARAMETER);
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return 0;
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}
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}
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p = OSSL_PARAM_locate(params, OSSL_CIPHER_PARAM_AEAD_TLS1_AAD_PAD);
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if (p != NULL && !OSSL_PARAM_set_size_t(p, ctx->tls_aad_pad_sz)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_SET_PARAMETER);
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return 0;
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}
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p = OSSL_PARAM_locate(params, OSSL_CIPHER_PARAM_AEAD_TAG);
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if (p != NULL) {
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sz = p->data_size;
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if (sz == 0
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|| sz > EVP_GCM_TLS_TAG_LEN
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|| !ctx->enc
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|| ctx->taglen == UNINITIALISED_SIZET) {
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ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_TAG);
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return 0;
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}
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if (!OSSL_PARAM_set_octet_string(p, ctx->buf, sz)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_SET_PARAMETER);
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return 0;
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}
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}
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p = OSSL_PARAM_locate(params, OSSL_CIPHER_PARAM_AEAD_TLS1_GET_IV_GEN);
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if (p != NULL) {
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if (p->data == NULL
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|| p->data_type != OSSL_PARAM_OCTET_STRING
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|| !getivgen(ctx, p->data, p->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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int ossl_gcm_set_ctx_params(void *vctx, const OSSL_PARAM params[])
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{
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PROV_GCM_CTX *ctx = (PROV_GCM_CTX *)vctx;
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const OSSL_PARAM *p;
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size_t sz;
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void *vp;
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if (params == NULL)
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return 1;
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p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_AEAD_TAG);
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if (p != NULL) {
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vp = ctx->buf;
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if (!OSSL_PARAM_get_octet_string(p, &vp, EVP_GCM_TLS_TAG_LEN, &sz)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_GET_PARAMETER);
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return 0;
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}
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if (sz == 0 || ctx->enc) {
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ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_TAG);
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return 0;
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}
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ctx->taglen = sz;
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}
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p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_AEAD_IVLEN);
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if (p != NULL) {
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if (!OSSL_PARAM_get_size_t(p, &sz)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_GET_PARAMETER);
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return 0;
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}
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if (sz == 0 || sz > sizeof(ctx->iv)) {
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ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_IV_LENGTH);
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return 0;
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}
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ctx->ivlen = sz;
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}
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p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_AEAD_TLS1_AAD);
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if (p != NULL) {
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if (p->data_type != OSSL_PARAM_OCTET_STRING) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_GET_PARAMETER);
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return 0;
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}
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sz = gcm_tls_init(ctx, p->data, p->data_size);
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if (sz == 0) {
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ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_AAD);
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return 0;
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}
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ctx->tls_aad_pad_sz = sz;
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}
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p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_AEAD_TLS1_IV_FIXED);
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if (p != NULL) {
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if (p->data_type != OSSL_PARAM_OCTET_STRING) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_GET_PARAMETER);
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return 0;
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}
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if (gcm_tls_iv_set_fixed(ctx, p->data, p->data_size) == 0) {
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ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_TO_GET_PARAMETER);
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return 0;
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}
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}
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p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_AEAD_TLS1_SET_IV_INV);
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if (p != NULL) {
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if (p->data == NULL
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|| p->data_type != OSSL_PARAM_OCTET_STRING
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|| !setivinv(ctx, p->data, p->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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int ossl_gcm_stream_update(void *vctx, unsigned char *out, size_t *outl,
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size_t outsize, const unsigned char *in, size_t inl)
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{
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PROV_GCM_CTX *ctx = (PROV_GCM_CTX *)vctx;
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if (inl == 0) {
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*outl = 0;
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return 1;
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}
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if (outsize < inl) {
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ERR_raise(ERR_LIB_PROV, PROV_R_OUTPUT_BUFFER_TOO_SMALL);
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return 0;
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}
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if (gcm_cipher_internal(ctx, out, outl, in, inl) <= 0) {
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ERR_raise(ERR_LIB_PROV, PROV_R_CIPHER_OPERATION_FAILED);
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return 0;
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}
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return 1;
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}
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int ossl_gcm_stream_final(void *vctx, unsigned char *out, size_t *outl,
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size_t outsize)
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{
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PROV_GCM_CTX *ctx = (PROV_GCM_CTX *)vctx;
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int i;
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if (!ossl_prov_is_running())
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return 0;
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i = gcm_cipher_internal(ctx, out, outl, NULL, 0);
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if (i <= 0)
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return 0;
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*outl = 0;
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return 1;
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}
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int ossl_gcm_cipher(void *vctx,
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unsigned char *out, size_t *outl, size_t outsize,
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const unsigned char *in, size_t inl)
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{
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PROV_GCM_CTX *ctx = (PROV_GCM_CTX *)vctx;
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if (!ossl_prov_is_running())
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return 0;
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if (outsize < inl) {
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ERR_raise(ERR_LIB_PROV, PROV_R_OUTPUT_BUFFER_TOO_SMALL);
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return 0;
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}
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if (gcm_cipher_internal(ctx, out, outl, in, inl) <= 0)
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return 0;
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*outl = inl;
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return 1;
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}
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/*
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* See SP800-38D (GCM) Section 8 "Uniqueness requirement on IVS and keys"
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*
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* See also 8.2.2 RBG-based construction.
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* Random construction consists of a free field (which can be NULL) and a
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* random field which will use a DRBG that can return at least 96 bits of
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* entropy strength. (The DRBG must be seeded by the FIPS module).
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*/
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static int gcm_iv_generate(PROV_GCM_CTX *ctx, int offset)
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{
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int sz = ctx->ivlen - offset;
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/* Must be at least 96 bits */
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if (sz <= 0 || ctx->ivlen < GCM_IV_DEFAULT_SIZE)
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return 0;
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/* Use DRBG to generate random iv */
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if (RAND_bytes_ex(ctx->libctx, ctx->iv + offset, sz, 0) <= 0)
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return 0;
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ctx->iv_state = IV_STATE_BUFFERED;
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ctx->iv_gen_rand = 1;
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return 1;
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}
|
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|
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static int gcm_cipher_internal(PROV_GCM_CTX *ctx, unsigned char *out,
|
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size_t *padlen, const unsigned char *in,
|
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size_t len)
|
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{
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size_t olen = 0;
|
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int rv = 0;
|
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const PROV_GCM_HW *hw = ctx->hw;
|
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|
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if (ctx->tls_aad_len != UNINITIALISED_SIZET)
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return gcm_tls_cipher(ctx, out, padlen, in, len);
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|
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if (!ctx->key_set || ctx->iv_state == IV_STATE_FINISHED)
|
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goto err;
|
|
|
|
/*
|
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* FIPS requires generation of AES-GCM IV's inside the FIPS module.
|
|
* The IV can still be set externally (the security policy will state that
|
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* this is not FIPS compliant). There are some applications
|
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* where setting the IV externally is the only option available.
|
|
*/
|
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if (ctx->iv_state == IV_STATE_UNINITIALISED) {
|
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if (!ctx->enc || !gcm_iv_generate(ctx, 0))
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goto err;
|
|
}
|
|
|
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if (ctx->iv_state == IV_STATE_BUFFERED) {
|
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if (!hw->setiv(ctx, ctx->iv, ctx->ivlen))
|
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goto err;
|
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ctx->iv_state = IV_STATE_COPIED;
|
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}
|
|
|
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if (in != NULL) {
|
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/* The input is AAD if out is NULL */
|
|
if (out == NULL) {
|
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if (!hw->aadupdate(ctx, in, len))
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goto err;
|
|
} else {
|
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/* The input is ciphertext OR plaintext */
|
|
if (!hw->cipherupdate(ctx, in, len, out))
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goto err;
|
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}
|
|
} else {
|
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/* The tag must be set before actually decrypting data */
|
|
if (!ctx->enc && ctx->taglen == UNINITIALISED_SIZET)
|
|
goto err;
|
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if (!hw->cipherfinal(ctx, ctx->buf))
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goto err;
|
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ctx->iv_state = IV_STATE_FINISHED; /* Don't reuse the IV */
|
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goto finish;
|
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}
|
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olen = len;
|
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finish:
|
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rv = 1;
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err:
|
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*padlen = olen;
|
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return rv;
|
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}
|
|
|
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static int gcm_tls_init(PROV_GCM_CTX *dat, unsigned char *aad, size_t aad_len)
|
|
{
|
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unsigned char *buf;
|
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size_t len;
|
|
|
|
if (!ossl_prov_is_running() || aad_len != EVP_AEAD_TLS1_AAD_LEN)
|
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return 0;
|
|
|
|
/* Save the aad for later use. */
|
|
buf = dat->buf;
|
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memcpy(buf, aad, aad_len);
|
|
dat->tls_aad_len = aad_len;
|
|
|
|
len = buf[aad_len - 2] << 8 | buf[aad_len - 1];
|
|
/* Correct length for explicit iv. */
|
|
if (len < EVP_GCM_TLS_EXPLICIT_IV_LEN)
|
|
return 0;
|
|
len -= EVP_GCM_TLS_EXPLICIT_IV_LEN;
|
|
|
|
/* If decrypting correct for tag too. */
|
|
if (!dat->enc) {
|
|
if (len < EVP_GCM_TLS_TAG_LEN)
|
|
return 0;
|
|
len -= EVP_GCM_TLS_TAG_LEN;
|
|
}
|
|
buf[aad_len - 2] = (unsigned char)(len >> 8);
|
|
buf[aad_len - 1] = (unsigned char)(len & 0xff);
|
|
/* Extra padding: tag appended to record. */
|
|
return EVP_GCM_TLS_TAG_LEN;
|
|
}
|
|
|
|
static int gcm_tls_iv_set_fixed(PROV_GCM_CTX *ctx, unsigned char *iv,
|
|
size_t len)
|
|
{
|
|
/* Special case: -1 length restores whole IV */
|
|
if (len == (size_t)-1) {
|
|
memcpy(ctx->iv, iv, ctx->ivlen);
|
|
ctx->iv_gen = 1;
|
|
ctx->iv_state = IV_STATE_BUFFERED;
|
|
return 1;
|
|
}
|
|
/* Fixed field must be at least 4 bytes and invocation field at least 8 */
|
|
if ((len < EVP_GCM_TLS_FIXED_IV_LEN)
|
|
|| (ctx->ivlen - (int)len) < EVP_GCM_TLS_EXPLICIT_IV_LEN)
|
|
return 0;
|
|
if (len > 0)
|
|
memcpy(ctx->iv, iv, len);
|
|
if (ctx->enc
|
|
&& RAND_bytes_ex(ctx->libctx, ctx->iv + len, ctx->ivlen - len, 0) <= 0)
|
|
return 0;
|
|
ctx->iv_gen = 1;
|
|
ctx->iv_state = IV_STATE_BUFFERED;
|
|
return 1;
|
|
}
|
|
|
|
/*
|
|
* Handle TLS GCM packet format. This consists of the last portion of the IV
|
|
* followed by the payload and finally the tag. On encrypt generate IV,
|
|
* encrypt payload and write the tag. On verify retrieve IV, decrypt payload
|
|
* and verify tag.
|
|
*/
|
|
static int gcm_tls_cipher(PROV_GCM_CTX *ctx, unsigned char *out, size_t *padlen,
|
|
const unsigned char *in, size_t len)
|
|
{
|
|
int rv = 0;
|
|
size_t arg = EVP_GCM_TLS_EXPLICIT_IV_LEN;
|
|
size_t plen = 0;
|
|
unsigned char *tag = NULL;
|
|
|
|
if (!ossl_prov_is_running() || !ctx->key_set)
|
|
goto err;
|
|
|
|
/* Encrypt/decrypt must be performed in place */
|
|
if (out != in || len < (EVP_GCM_TLS_EXPLICIT_IV_LEN + EVP_GCM_TLS_TAG_LEN))
|
|
goto err;
|
|
|
|
/*
|
|
* Check for too many keys as per FIPS 140-2 IG A.5 "Key/IV Pair Uniqueness
|
|
* Requirements from SP 800-38D". The requirements is for one party to the
|
|
* communication to fail after 2^64 - 1 keys. We do this on the encrypting
|
|
* side only.
|
|
*/
|
|
if (ctx->enc && ++ctx->tls_enc_records == 0) {
|
|
ERR_raise(ERR_LIB_PROV, PROV_R_TOO_MANY_RECORDS);
|
|
goto err;
|
|
}
|
|
|
|
/*
|
|
* Set IV from start of buffer or generate IV and write to start of
|
|
* buffer.
|
|
*/
|
|
if (ctx->enc) {
|
|
if (!getivgen(ctx, out, arg))
|
|
goto err;
|
|
} else {
|
|
if (!setivinv(ctx, out, arg))
|
|
goto err;
|
|
}
|
|
|
|
/* Fix buffer and length to point to payload */
|
|
in += EVP_GCM_TLS_EXPLICIT_IV_LEN;
|
|
out += EVP_GCM_TLS_EXPLICIT_IV_LEN;
|
|
len -= EVP_GCM_TLS_EXPLICIT_IV_LEN + EVP_GCM_TLS_TAG_LEN;
|
|
|
|
tag = ctx->enc ? out + len : (unsigned char *)in + len;
|
|
if (!ctx->hw->oneshot(ctx, ctx->buf, ctx->tls_aad_len, in, len, out, tag,
|
|
EVP_GCM_TLS_TAG_LEN)) {
|
|
if (!ctx->enc)
|
|
OPENSSL_cleanse(out, len);
|
|
goto err;
|
|
}
|
|
if (ctx->enc)
|
|
plen = len + EVP_GCM_TLS_EXPLICIT_IV_LEN + EVP_GCM_TLS_TAG_LEN;
|
|
else
|
|
plen = len;
|
|
|
|
rv = 1;
|
|
err:
|
|
ctx->iv_state = IV_STATE_FINISHED;
|
|
ctx->tls_aad_len = UNINITIALISED_SIZET;
|
|
*padlen = plen;
|
|
return rv;
|
|
}
|