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ziti-sdk-c/tests/message_tests.cpp
2026-06-09 06:32:22 -04:00

205 lines
7.1 KiB
C++

// Copyright (c) 2023. NetFoundry Inc.
//
// 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 "catch2_includes.hpp"
#include <cstdlib>
#include <cstring>
#include "message.h"
#include "edge_protocol.h"
#include "ziti/errors.h"
// Regression for SIGBUS on armeabi-v7a inside parse_hdrs (library/message.c).
// Wire format per header: id(4 LE) || length(4 LE) || value(length bytes).
// A header with length=1 advances the cursor by 9, leaving the next header's
// id at a 4-byte-misaligned address. read_int32 used to do `*(uint32_t*)p`
// from a uint8_t*, which is UB and faults on ARMv7 strict-alignment cores.
// With -fsanitize=alignment this trips even on x86_64 / arm64-macOS.
TEST_CASE("parse_hdrs handles misaligned subsequent headers", "[model][alignment]") {
alignas(uint32_t) uint8_t buf[] = {
// header[0]: id=1, length=1, value=[0x42] -> consumes 9 bytes
0x01, 0x00, 0x00, 0x00,
0x01, 0x00, 0x00, 0x00,
0x42,
// header[1]: id=2, length=4, value=[0xDE,0xAD,0xBE,0xEF]
// starts at offset 9 - deliberately not 4-byte aligned.
0x02, 0x00, 0x00, 0x00,
0x04, 0x00, 0x00, 0x00,
0xDE, 0xAD, 0xBE, 0xEF,
};
constexpr uint32_t buf_len = sizeof(buf);
hdr_t *hdrs = nullptr;
int n = parse_hdrs(buf, buf_len, &hdrs);
REQUIRE(n == 2);
REQUIRE(hdrs != nullptr);
CHECK(hdrs[0].header_id == 1);
CHECK(hdrs[0].length == 1);
CHECK(hdrs[0].value[0] == 0x42);
CHECK(hdrs[1].header_id == 2);
CHECK(hdrs[1].length == 4);
CHECK(hdrs[1].value[0] == 0xDE);
CHECK(hdrs[1].value[1] == 0xAD);
CHECK(hdrs[1].value[2] == 0xBE);
CHECK(hdrs[1].value[3] == 0xEF);
free(hdrs);
}
TEST_CASE("simple", "[model]") {
auto p = pool_new(sizeof(message) + 200, 3, (void (*)(void *)) message_free);
hdr_t headers[] = {
{
.header_id = 1,
.length = 3,
.value = (uint8_t *) "foo"
},
{
.header_id = 2,
.length = 3,
.value = (uint8_t *) "bar"
},
{
.header_id = 3,
.length = 0,
.value = nullptr,
}
};
auto content1 = "this is a message";
uint32_t s1 = 3333;
auto m1 = message_new(p, ContentTypeData, headers, sizeof(headers)/sizeof(headers[0]), strlen(content1));
strncpy(reinterpret_cast<char *>(m1->body), content1, strlen(content1));
message_set_seq(m1, &s1);
message *m2;
REQUIRE(message_new_from_header(p, m1->msgbufp, &m2) == ZITI_OK);
CHECK(m2->header.seq == 3334);
CHECK(m2->msgbuflen == m1->msgbuflen);
memcpy(m2->msgbufp, m1->msgbufp, m1->msgbuflen);
hdr_t *tmp;
CHECK(parse_hdrs(m2->headers, m2->header.headers_len - 1, &tmp) == ZITI_INVALID_STATE);
CHECK(parse_hdrs(m2->headers, m2->header.headers_len + 1, &tmp) == ZITI_INVALID_STATE);
m2->nhdrs = parse_hdrs(m2->headers, m2->header.headers_len, &m2->hdrs);
CHECK(m2->nhdrs == 3);
const uint8_t *hdrval;
size_t hdrlen;
CHECK(message_get_bytes_header(m2, 1, &hdrval, &hdrlen));
CHECK(strncmp((const char *) headers[0].value, (const char *) hdrval, hdrlen) == 0);
CHECK(message_get_bytes_header(m2, 2, &hdrval, &hdrlen));
CHECK(strncmp((const char *) headers[1].value, (const char *) hdrval, hdrlen) == 0);
CHECK(strncmp(content1, (const char *) m2->body, m2->header.body_len) == 0);
CHECK(message_get_bytes_header(m2, 3, &hdrval, &hdrlen));
CHECK(hdrlen == 0);
pool_return_obj(m1);
pool_return_obj(m2);
pool_destroy(p);
}
TEST_CASE("large", "[model]") {
auto p = pool_new(sizeof(message) + 20, 3, (void (*)(void *)) message_free);
hdr_t headers[] = {
{
.header_id = 1,
.length = 3,
.value = (uint8_t *) "foo"
},
{
.header_id = 2,
.length = 3,
.value = (uint8_t *) "bar"
},
};
uint32_t seq = 3333;
auto content1 = "this is a very long message, it won't fint into the pooled message structure";
auto m1 = message_new(p, ContentTypeData, headers, 2, strlen(content1));
strncpy(reinterpret_cast<char *>(m1->body), content1, strlen(content1));
message_set_seq(m1, &seq);
message *m2;
REQUIRE(message_new_from_header(p, m1->msgbufp, &m2) == ZITI_OK);
CHECK(m2->header.seq == 3334);
CHECK(seq == 3334);
CHECK(m2->msgbuflen == m1->msgbuflen);
memcpy(m2->msgbufp, m1->msgbufp, m1->msgbuflen);
m2->nhdrs = parse_hdrs(m2->headers, m2->header.headers_len, &m2->hdrs);
CHECK(m2->nhdrs == 2);
const uint8_t *hdrval;
size_t hdrlen;
CHECK(message_get_bytes_header(m2, 1, &hdrval, &hdrlen));
CHECK(strncmp((const char *) headers[0].value, (const char *) hdrval, hdrlen) == 0);
CHECK(message_get_bytes_header(m2, 2, &hdrval, &hdrlen));
CHECK(strncmp((const char *) headers[1].value, (const char *) hdrval, hdrlen) == 0);
pool_return_obj(m1);
pool_return_obj(m2);
pool_destroy(p);
}
TEST_CASE("large unpooled", "[model]") {
auto p = pool_new(sizeof(message) + 20, 3, (void (*)(void *)) message_free);
hdr_t headers[] = {
{
.header_id = 1,
.length = 3,
.value = (uint8_t *) "foo"
},
{
.header_id = 2,
.length = 3,
.value = (uint8_t *) "bar"
},
};
uint32_t seq = 3333;
auto content1 = "this is a very long message, it won't fint into the pooled message structure";
auto m1 = message_new(p, ContentTypeData, headers, 2, strlen(content1));
strncpy(reinterpret_cast<char *>(m1->body), content1, strlen(content1));
message_set_seq(m1, &seq);
message *m2;
REQUIRE(message_new_from_header(nullptr, m1->msgbufp, &m2) == ZITI_OK);
CHECK(m2->header.seq == 3334);
CHECK(seq == 3334);
CHECK(m2->msgbuflen == m1->msgbuflen);
memcpy(m2->msgbufp, m1->msgbufp, m1->msgbuflen);
m2->nhdrs = parse_hdrs(m2->headers, m2->header.headers_len, &m2->hdrs);
CHECK(m2->nhdrs == 2);
const uint8_t *hdrval;
size_t hdrlen;
CHECK(message_get_bytes_header(m2, 1, &hdrval, &hdrlen));
CHECK(strncmp((const char *) headers[0].value, (const char *) hdrval, hdrlen) == 0);
CHECK(message_get_bytes_header(m2, 2, &hdrval, &hdrlen));
CHECK(strncmp((const char *) headers[1].value, (const char *) hdrval, hdrlen) == 0);
pool_return_obj(m1);
pool_return_obj(m2);
pool_destroy(p);
}