Based on Nekogram. Key additions: - Rebrand to FoxiGram (app name, APK name, applicationId com.foxigram.app) - Embedded Xray (VLESS+Reality) proxy client via JNI libxray.so - Bundled hidden one-tap proxies (LTE + WiFi), read-only in UI - Auto-restore proxy on restart, rebind to active network (LTE/WiFi) - Server credentials externalized to git-ignored XrayServers.java (+ template) - libxray Go source included; compiled .so, keystore, google-services.json ignored
379 lines
10 KiB
C++
379 lines
10 KiB
C++
// Copyright 1995-2016 The OpenSSL Project Authors. All Rights Reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// https://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include <openssl/evp.h>
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#include <assert.h>
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#include <string.h>
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#include <openssl/err.h>
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#include <openssl/mem.h>
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#include <openssl/nid.h>
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#include <openssl/thread.h>
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#include "../internal.h"
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#include "internal.h"
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// Node depends on |EVP_R_NOT_XOF_OR_INVALID_LENGTH|.
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//
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// TODO(davidben): Fix Node to not touch the error queue itself and remove this.
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OPENSSL_DECLARE_ERROR_REASON(EVP, NOT_XOF_OR_INVALID_LENGTH)
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// The HPKE module uses the EVP error namespace, but it lives in another
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// directory.
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OPENSSL_DECLARE_ERROR_REASON(EVP, EMPTY_PSK)
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EVP_PKEY *EVP_PKEY_new(void) {
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EVP_PKEY *ret =
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reinterpret_cast<EVP_PKEY *>(OPENSSL_zalloc(sizeof(EVP_PKEY)));
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if (ret == NULL) {
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return NULL;
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}
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ret->type = EVP_PKEY_NONE;
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ret->references = 1;
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return ret;
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}
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static void free_it(EVP_PKEY *pkey) {
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if (pkey->ameth && pkey->ameth->pkey_free) {
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pkey->ameth->pkey_free(pkey);
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pkey->pkey = NULL;
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pkey->type = EVP_PKEY_NONE;
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}
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}
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void EVP_PKEY_free(EVP_PKEY *pkey) {
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if (pkey == NULL) {
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return;
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}
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if (!CRYPTO_refcount_dec_and_test_zero(&pkey->references)) {
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return;
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}
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free_it(pkey);
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OPENSSL_free(pkey);
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}
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int EVP_PKEY_up_ref(EVP_PKEY *pkey) {
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CRYPTO_refcount_inc(&pkey->references);
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return 1;
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}
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int EVP_PKEY_is_opaque(const EVP_PKEY *pkey) {
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if (pkey->ameth && pkey->ameth->pkey_opaque) {
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return pkey->ameth->pkey_opaque(pkey);
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}
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return 0;
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}
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int EVP_PKEY_cmp(const EVP_PKEY *a, const EVP_PKEY *b) {
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if (a->type != b->type) {
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return -1;
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}
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if (a->ameth) {
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int ret;
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// Compare parameters if the algorithm has them
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if (a->ameth->param_cmp) {
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ret = a->ameth->param_cmp(a, b);
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if (ret <= 0) {
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return ret;
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}
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}
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if (a->ameth->pub_cmp) {
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return a->ameth->pub_cmp(a, b);
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}
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}
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return -2;
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}
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int EVP_PKEY_copy_parameters(EVP_PKEY *to, const EVP_PKEY *from) {
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if (to->type == EVP_PKEY_NONE) {
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evp_pkey_set_method(to, from->ameth);
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} else if (to->type != from->type) {
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OPENSSL_PUT_ERROR(EVP, EVP_R_DIFFERENT_KEY_TYPES);
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return 0;
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}
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if (EVP_PKEY_missing_parameters(from)) {
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OPENSSL_PUT_ERROR(EVP, EVP_R_MISSING_PARAMETERS);
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return 0;
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}
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// Once set, parameters may not change.
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if (!EVP_PKEY_missing_parameters(to)) {
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if (EVP_PKEY_cmp_parameters(to, from) == 1) {
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return 1;
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}
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OPENSSL_PUT_ERROR(EVP, EVP_R_DIFFERENT_PARAMETERS);
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return 0;
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}
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if (from->ameth && from->ameth->param_copy) {
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return from->ameth->param_copy(to, from);
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}
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// TODO(https://crbug.com/boringssl/536): If the algorithm takes no
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// parameters, copying them should vacuously succeed.
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return 0;
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}
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int EVP_PKEY_missing_parameters(const EVP_PKEY *pkey) {
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if (pkey->ameth && pkey->ameth->param_missing) {
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return pkey->ameth->param_missing(pkey);
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}
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return 0;
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}
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int EVP_PKEY_size(const EVP_PKEY *pkey) {
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if (pkey && pkey->ameth && pkey->ameth->pkey_size) {
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return pkey->ameth->pkey_size(pkey);
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}
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return 0;
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}
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int EVP_PKEY_bits(const EVP_PKEY *pkey) {
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if (pkey && pkey->ameth && pkey->ameth->pkey_bits) {
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return pkey->ameth->pkey_bits(pkey);
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}
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return 0;
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}
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int EVP_PKEY_id(const EVP_PKEY *pkey) { return pkey->type; }
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// evp_pkey_asn1_find returns the ASN.1 method table for the given |nid|, which
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// should be one of the |EVP_PKEY_*| values. It returns NULL if |nid| is
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// unknown.
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static const EVP_PKEY_ASN1_METHOD *evp_pkey_asn1_find(int nid) {
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switch (nid) {
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case EVP_PKEY_RSA:
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return &rsa_asn1_meth;
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case EVP_PKEY_EC:
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return &ec_asn1_meth;
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case EVP_PKEY_DSA:
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return &dsa_asn1_meth;
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case EVP_PKEY_ED25519:
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return &ed25519_asn1_meth;
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case EVP_PKEY_X25519:
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return &x25519_asn1_meth;
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default:
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return NULL;
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}
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}
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void evp_pkey_set_method(EVP_PKEY *pkey, const EVP_PKEY_ASN1_METHOD *method) {
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free_it(pkey);
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pkey->ameth = method;
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pkey->type = pkey->ameth->pkey_id;
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}
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int EVP_PKEY_type(int nid) {
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// In OpenSSL, this was used to map between type aliases. BoringSSL supports
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// no type aliases, so this function is just the identity.
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return nid;
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}
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int EVP_PKEY_assign(EVP_PKEY *pkey, int type, void *key) {
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// This function can only be used to assign RSA, DSA, EC, and DH keys. Other
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// key types have internal representations which are not exposed through the
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// public API.
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switch (type) {
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case EVP_PKEY_RSA:
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return EVP_PKEY_assign_RSA(pkey, reinterpret_cast<RSA *>(key));
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case EVP_PKEY_DSA:
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return EVP_PKEY_assign_DSA(pkey, reinterpret_cast<DSA *>(key));
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case EVP_PKEY_EC:
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return EVP_PKEY_assign_EC_KEY(pkey, reinterpret_cast<EC_KEY *>(key));
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case EVP_PKEY_DH:
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return EVP_PKEY_assign_DH(pkey, reinterpret_cast<DH *>(key));
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}
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OPENSSL_PUT_ERROR(EVP, EVP_R_UNSUPPORTED_ALGORITHM);
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ERR_add_error_dataf("algorithm %d", type);
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return 0;
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}
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int EVP_PKEY_set_type(EVP_PKEY *pkey, int type) {
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if (pkey && pkey->pkey) {
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// This isn't strictly necessary, but historically |EVP_PKEY_set_type| would
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// clear |pkey| even if |evp_pkey_asn1_find| failed, so we preserve that
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// behavior.
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free_it(pkey);
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}
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const EVP_PKEY_ASN1_METHOD *ameth = evp_pkey_asn1_find(type);
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if (ameth == NULL) {
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OPENSSL_PUT_ERROR(EVP, EVP_R_UNSUPPORTED_ALGORITHM);
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ERR_add_error_dataf("algorithm %d", type);
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return 0;
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}
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if (pkey) {
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evp_pkey_set_method(pkey, ameth);
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}
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return 1;
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}
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EVP_PKEY *EVP_PKEY_new_raw_private_key(int type, ENGINE *unused,
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const uint8_t *in, size_t len) {
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// To avoid pulling in all key types, look for specifically the key types that
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// support |set_priv_raw|.
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const EVP_PKEY_ASN1_METHOD *method;
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switch (type) {
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case EVP_PKEY_X25519:
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method = &x25519_asn1_meth;
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break;
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case EVP_PKEY_ED25519:
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method = &ed25519_asn1_meth;
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break;
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default:
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OPENSSL_PUT_ERROR(EVP, EVP_R_UNSUPPORTED_ALGORITHM);
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return nullptr;
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}
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bssl::UniquePtr<EVP_PKEY> ret(EVP_PKEY_new());
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if (ret == nullptr) {
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return nullptr;
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}
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evp_pkey_set_method(ret.get(), method);
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if (!ret->ameth->set_priv_raw(ret.get(), in, len)) {
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return nullptr;
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}
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return ret.release();
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}
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EVP_PKEY *EVP_PKEY_new_raw_public_key(int type, ENGINE *unused,
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const uint8_t *in, size_t len) {
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// To avoid pulling in all key types, look for specifically the key types that
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// support |set_pub_raw|.
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const EVP_PKEY_ASN1_METHOD *method;
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switch (type) {
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case EVP_PKEY_X25519:
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method = &x25519_asn1_meth;
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break;
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case EVP_PKEY_ED25519:
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method = &ed25519_asn1_meth;
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break;
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default:
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OPENSSL_PUT_ERROR(EVP, EVP_R_UNSUPPORTED_ALGORITHM);
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return nullptr;
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}
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bssl::UniquePtr<EVP_PKEY> ret(EVP_PKEY_new());
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if (ret == nullptr) {
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return nullptr;
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}
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evp_pkey_set_method(ret.get(), method);
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if (!ret->ameth->set_pub_raw(ret.get(), in, len)) {
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return nullptr;
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}
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return ret.release();
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}
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int EVP_PKEY_get_raw_private_key(const EVP_PKEY *pkey, uint8_t *out,
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size_t *out_len) {
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if (pkey->ameth->get_priv_raw == NULL) {
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OPENSSL_PUT_ERROR(EVP, EVP_R_OPERATION_NOT_SUPPORTED_FOR_THIS_KEYTYPE);
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return 0;
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}
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return pkey->ameth->get_priv_raw(pkey, out, out_len);
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}
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int EVP_PKEY_get_raw_public_key(const EVP_PKEY *pkey, uint8_t *out,
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size_t *out_len) {
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if (pkey->ameth->get_pub_raw == NULL) {
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OPENSSL_PUT_ERROR(EVP, EVP_R_OPERATION_NOT_SUPPORTED_FOR_THIS_KEYTYPE);
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return 0;
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}
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return pkey->ameth->get_pub_raw(pkey, out, out_len);
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}
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int EVP_PKEY_cmp_parameters(const EVP_PKEY *a, const EVP_PKEY *b) {
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if (a->type != b->type) {
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return -1;
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}
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if (a->ameth && a->ameth->param_cmp) {
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return a->ameth->param_cmp(a, b);
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}
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// TODO(https://crbug.com/boringssl/536): If the algorithm doesn't use
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// parameters, they should compare as vacuously equal.
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return -2;
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}
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int EVP_PKEY_CTX_set_signature_md(EVP_PKEY_CTX *ctx, const EVP_MD *md) {
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return EVP_PKEY_CTX_ctrl(ctx, -1, EVP_PKEY_OP_TYPE_SIG, EVP_PKEY_CTRL_MD, 0,
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(void *)md);
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}
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int EVP_PKEY_CTX_get_signature_md(EVP_PKEY_CTX *ctx, const EVP_MD **out_md) {
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return EVP_PKEY_CTX_ctrl(ctx, -1, EVP_PKEY_OP_TYPE_SIG, EVP_PKEY_CTRL_GET_MD,
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0, (void *)out_md);
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}
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void *EVP_PKEY_get0(const EVP_PKEY *pkey) {
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// Node references, but never calls this function, so for now we return NULL.
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// If other projects require complete support, call |EVP_PKEY_get0_RSA|, etc.,
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// rather than reading |pkey->pkey| directly. This avoids problems if our
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// internal representation does not match the type the caller expects from
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// OpenSSL.
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return NULL;
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}
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void OpenSSL_add_all_algorithms(void) {}
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void OPENSSL_add_all_algorithms_conf(void) {}
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void OpenSSL_add_all_ciphers(void) {}
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void OpenSSL_add_all_digests(void) {}
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void EVP_cleanup(void) {}
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int EVP_PKEY_set1_tls_encodedpoint(EVP_PKEY *pkey, const uint8_t *in,
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size_t len) {
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if (pkey->ameth->set1_tls_encodedpoint == NULL) {
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OPENSSL_PUT_ERROR(EVP, EVP_R_OPERATION_NOT_SUPPORTED_FOR_THIS_KEYTYPE);
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return 0;
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}
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return pkey->ameth->set1_tls_encodedpoint(pkey, in, len);
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}
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size_t EVP_PKEY_get1_tls_encodedpoint(const EVP_PKEY *pkey, uint8_t **out_ptr) {
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if (pkey->ameth->get1_tls_encodedpoint == NULL) {
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OPENSSL_PUT_ERROR(EVP, EVP_R_OPERATION_NOT_SUPPORTED_FOR_THIS_KEYTYPE);
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return 0;
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}
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return pkey->ameth->get1_tls_encodedpoint(pkey, out_ptr);
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}
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int EVP_PKEY_base_id(const EVP_PKEY *pkey) {
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// OpenSSL has two notions of key type because it supports multiple OIDs for
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// the same algorithm: NID_rsa vs NID_rsaEncryption and five distinct spelling
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// of DSA. We do not support these, so the base ID is simply the ID.
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return EVP_PKEY_id(pkey);
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}
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