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Simple HTTP client with HTTP/1.1, HTTP/2, and HTTP/3 support
Security advisory:
This version has known vulnerabilities.
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c_src/boringssl/crypto/asn1/a_object.cc
// Copyright 1995-2016 The OpenSSL Project Authors. All Rights Reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include <openssl/asn1.h>
#include <limits.h>
#include <string.h>
#include <openssl/bytestring.h>
#include <openssl/err.h>
#include <openssl/mem.h>
#include <openssl/obj.h>
#include "../bytestring/internal.h"
#include "../internal.h"
#include "internal.h"
int asn1_marshal_object(CBB *out, const ASN1_OBJECT *in, CBS_ASN1_TAG tag) {
if (in == nullptr) {
OPENSSL_PUT_ERROR(ASN1, ERR_R_PASSED_NULL_PARAMETER);
return 0;
}
if (in->length <= 0) {
OPENSSL_PUT_ERROR(ASN1, ASN1_R_ILLEGAL_OBJECT);
return 0;
}
tag = tag == 0 ? CBS_ASN1_OBJECT : tag;
return CBB_add_asn1_element(out, tag, in->data, in->length);
}
int i2d_ASN1_OBJECT(const ASN1_OBJECT *in, unsigned char **outp) {
return bssl::I2DFromCBB(
/*initial_capacity=*/static_cast<size_t>(in->length) + 2, outp,
[&](CBB *cbb) -> bool {
return asn1_marshal_object(cbb, in, /*tag=*/0);
});
}
int i2t_ASN1_OBJECT(char *buf, int buf_len, const ASN1_OBJECT *a) {
return OBJ_obj2txt(buf, buf_len, a, 0);
}
static int write_str(BIO *bp, const char *str) {
size_t len = strlen(str);
if (len > INT_MAX) {
OPENSSL_PUT_ERROR(ASN1, ERR_R_OVERFLOW);
return -1;
}
return BIO_write(bp, str, (int)len) == (int)len ? (int)len : -1;
}
int i2a_ASN1_OBJECT(BIO *bp, const ASN1_OBJECT *a) {
if (a == nullptr || a->data == nullptr) {
return write_str(bp, "NULL");
}
char buf[80], *allocated = nullptr;
const char *str = buf;
int len = i2t_ASN1_OBJECT(buf, sizeof(buf), a);
if (len > (int)sizeof(buf) - 1) {
// The input was truncated. Allocate a buffer that fits.
allocated = reinterpret_cast<char *>(OPENSSL_malloc(len + 1));
if (allocated == nullptr) {
return -1;
}
len = i2t_ASN1_OBJECT(allocated, len + 1, a);
str = allocated;
}
if (len <= 0) {
str = "<INVALID>";
}
int ret = write_str(bp, str);
OPENSSL_free(allocated);
return ret;
}
ASN1_OBJECT *d2i_ASN1_OBJECT(ASN1_OBJECT **out, const unsigned char **inp,
long len) {
return bssl::D2IFromCBS(out, inp, len, [](CBS *cbs) -> ASN1_OBJECT * {
CBS child;
if (!CBS_get_asn1(cbs, &child, CBS_ASN1_OBJECT)) {
OPENSSL_PUT_ERROR(ASN1, ASN1_R_DECODE_ERROR);
return nullptr;
}
const uint8_t *contents = CBS_data(&child);
return c2i_ASN1_OBJECT(nullptr, &contents, CBS_len(&child));
});
}
ASN1_OBJECT *c2i_ASN1_OBJECT(ASN1_OBJECT **out, const unsigned char **inp,
long len) {
return bssl::D2IFromCBS(out, inp, len, [](CBS *cbs) -> ASN1_OBJECT * {
if (!CBS_is_valid_asn1_oid(cbs)) {
OPENSSL_PUT_ERROR(ASN1, ASN1_R_INVALID_OBJECT_ENCODING);
return nullptr;
}
ASN1_OBJECT *ret =
ASN1_OBJECT_create(NID_undef, CBS_data(cbs), CBS_len(cbs),
/*sn=*/nullptr, /*ln=*/nullptr);
if (ret != nullptr) {
// |c2i_ASN1_OBJECT| consumes its whole input on success.
BSSL_CHECK(CBS_skip(cbs, CBS_len(cbs)));
}
return ret;
});
}
ASN1_OBJECT *asn1_parse_object(CBS *cbs, CBS_ASN1_TAG tag) {
tag = tag == 0 ? CBS_ASN1_OBJECT : tag;
CBS child;
if (!CBS_get_asn1(cbs, &child, tag)) {
OPENSSL_PUT_ERROR(ASN1, ASN1_R_DECODE_ERROR);
return nullptr;
}
if (!CBS_is_valid_asn1_oid(&child)) {
OPENSSL_PUT_ERROR(ASN1, ASN1_R_INVALID_OBJECT_ENCODING);
return nullptr;
}
return ASN1_OBJECT_create(NID_undef, CBS_data(&child), CBS_len(&child),
/*sn=*/nullptr, /*ln=*/nullptr);
}
ASN1_OBJECT *ASN1_OBJECT_new(void) {
ASN1_OBJECT *ret;
ret = (ASN1_OBJECT *)OPENSSL_malloc(sizeof(ASN1_OBJECT));
if (ret == nullptr) {
return nullptr;
}
ret->length = 0;
ret->data = nullptr;
ret->nid = 0;
ret->sn = nullptr;
ret->ln = nullptr;
ret->flags = ASN1_OBJECT_FLAG_DYNAMIC;
return ret;
}
void ASN1_OBJECT_free(ASN1_OBJECT *a) {
if (a == nullptr) {
return;
}
if (a->flags & ASN1_OBJECT_FLAG_DYNAMIC_STRINGS) {
OPENSSL_free((void *)a->sn);
OPENSSL_free((void *)a->ln);
a->sn = a->ln = nullptr;
}
if (a->flags & ASN1_OBJECT_FLAG_DYNAMIC_DATA) {
OPENSSL_free((void *)a->data);
a->data = nullptr;
a->length = 0;
}
if (a->flags & ASN1_OBJECT_FLAG_DYNAMIC) {
OPENSSL_free(a);
}
}
ASN1_OBJECT *ASN1_OBJECT_create(int nid, const unsigned char *data, size_t len,
const char *sn, const char *ln) {
if (len > INT_MAX) {
OPENSSL_PUT_ERROR(ASN1, ASN1_R_STRING_TOO_LONG);
return nullptr;
}
ASN1_OBJECT o;
o.sn = sn;
o.ln = ln;
o.data = data;
o.nid = nid;
o.length = (int)len;
o.flags = ASN1_OBJECT_FLAG_DYNAMIC | ASN1_OBJECT_FLAG_DYNAMIC_STRINGS |
ASN1_OBJECT_FLAG_DYNAMIC_DATA;
return OBJ_dup(&o);
}