[tests] unit tests to cover edge cases
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4
API.md
4
API.md
@ -6,6 +6,10 @@ The Cloud Point RPC server implements the **JSON-RPC 2.0** protocol over TCP.
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> **NOTE 2:** Unit Tests were not written for the described API yet
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Unity side expected:
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- receive value of `params` field of request:`{}`
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- return value of `result` field of response (string or json, both ASCII compliant)
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## General Format
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All requests and responses are JSON objects.
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@ -1,10 +1,16 @@
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test_sources = files(
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'test_rpc.cpp',
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'test_rpc_edge_cases.cpp',
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'test_integration.cpp',
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'test_tcp.cpp',
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'test_tcp_edge_cases.cpp',
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'test_cli.cpp',
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'test_c_api.cpp',
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'test_base64.cpp'
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'test_c_api_edge_cases.cpp',
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'test_base64.cpp',
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'test_base64_edge_cases.cpp',
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'test_service.cpp',
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'test_serialize.cpp'
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)
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test_exe = executable('unit_tests',
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181
tests/test_base64_edge_cases.cpp
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181
tests/test_base64_edge_cases.cpp
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@ -0,0 +1,181 @@
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#include "cloud_point_rpc/rpc_coder.hpp"
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#include <gmock/gmock.h>
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#include <gtest/gtest.h>
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using namespace score;
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class Base64EdgeCaseTest : public ::testing::Test {
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protected:
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Base64RPCCoder coder;
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};
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// Empty input
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TEST_F(Base64EdgeCaseTest, EmptyEncode) {
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std::vector<char> empty;
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auto encoded = coder.encode(empty);
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EXPECT_TRUE(encoded.empty());
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}
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TEST_F(Base64EdgeCaseTest, EmptyDecode) {
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std::string empty;
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auto decoded = coder.decode(empty);
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EXPECT_TRUE(decoded.empty());
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}
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// 1 byte input
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TEST_F(Base64EdgeCaseTest, OneByteEncode) {
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std::vector<char> data{'A'};
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auto encoded = coder.encode(data);
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EXPECT_EQ(encoded, "QQ==");
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}
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TEST_F(Base64EdgeCaseTest, OneByteRoundTrip) {
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std::vector<char> data{'A'};
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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}
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// 2 bytes input
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TEST_F(Base64EdgeCaseTest, TwoBytesEncode) {
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std::vector<char> data{'A', 'B'};
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auto encoded = coder.encode(data);
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EXPECT_EQ(encoded, "QUI=");
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}
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TEST_F(Base64EdgeCaseTest, TwoBytesRoundTrip) {
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std::vector<char> data{'A', 'B'};
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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}
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// 3 bytes input (no padding)
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TEST_F(Base64EdgeCaseTest, ThreeBytesEncode) {
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std::vector<char> data{'A', 'B', 'C'};
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auto encoded = coder.encode(data);
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EXPECT_EQ(encoded, "QUJD");
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}
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TEST_F(Base64EdgeCaseTest, ThreeBytesRoundTrip) {
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std::vector<char> data{'A', 'B', 'C'};
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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}
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// Standard test vectors
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TEST_F(Base64EdgeCaseTest, StandardVectors) {
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struct TestCase {
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std::vector<char> input;
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std::string expected;
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};
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std::vector<TestCase> cases = {
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{{'f'}, "Zg=="},
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{{'f', 'o'}, "Zm8="},
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{{'f', 'o', 'o'}, "Zm9v"},
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{{'f', 'o', 'o', 'b'}, "Zm9vYg=="},
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{{'f', 'o', 'o', 'b', 'a'}, "Zm9vYmE="},
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{{'f', 'o', 'o', 'b', 'a', 'r'}, "Zm9vYmFy"},
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};
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for (const auto &tc : cases) {
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auto encoded = coder.encode(tc.input);
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EXPECT_EQ(encoded, tc.expected);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, tc.input);
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}
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}
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// Binary data with null bytes
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TEST_F(Base64EdgeCaseTest, BinaryWithNullBytes) {
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std::vector<char> data{'H', 'e', 'l', 'l', 'o', '\0',
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'W', 'o', 'r', 'l', 'd'};
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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}
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// All byte values 0-255
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TEST_F(Base64EdgeCaseTest, AllByteValues) {
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std::vector<char> data(256);
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for (int i = 0; i < 256; ++i) {
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data[i] = static_cast<char>(i);
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}
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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}
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// Repeated patterns
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TEST_F(Base64EdgeCaseTest, RepeatedPattern) {
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std::vector<char> data(1024, 'A');
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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}
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// Invalid base64 characters
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TEST_F(Base64EdgeCaseTest, InvalidCharactersDecode) {
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// base64_decode should handle invalid chars gracefully or fail
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std::string invalid = "!!!";
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auto decoded = coder.decode(invalid);
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// libbase64 may return empty or partial result; just verify no crash
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(void)decoded;
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}
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TEST_F(Base64EdgeCaseTest, MixedValidInvalid) {
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std::string mixed = "QU!!JD";
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auto decoded = coder.decode(mixed);
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(void)decoded; // no crash expected
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}
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// Padding edge cases
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TEST_F(Base64EdgeCaseTest, NoPaddingDecode) {
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std::string no_pad = "QUJD"; // "ABC" without explicit padding
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auto decoded = coder.decode(no_pad);
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std::vector<char> expected{'A', 'B', 'C'};
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EXPECT_EQ(decoded, expected);
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}
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TEST_F(Base64EdgeCaseTest, ExtraPadding) {
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std::string extra_pad = "QQ===";
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auto decoded = coder.decode(extra_pad);
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(void)decoded; // no crash expected
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}
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// Large input
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TEST_F(Base64EdgeCaseTest, LargeInputRoundTrip) {
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std::vector<char> data(100000, 'x');
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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}
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// Very large input (1MB)
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TEST_F(Base64EdgeCaseTest, OneMegabyteRoundTrip) {
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std::vector<char> data(1024 * 1024);
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for (size_t i = 0; i < data.size(); ++i) {
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data[i] = static_cast<char>(i % 256);
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}
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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}
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// Whitespace in encoded string
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TEST_F(Base64EdgeCaseTest, WhitespaceInEncoded) {
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std::string with_space = "Q U J D";
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auto decoded = coder.decode(with_space);
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(void)decoded; // libbase64 behavior varies; ensure no crash
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}
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// Non-ASCII characters in input (UTF-8)
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TEST_F(Base64EdgeCaseTest, Utf8RoundTrip) {
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std::string utf8 = "Hello, 世界! 🌍";
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std::vector<char> data(utf8.begin(), utf8.end());
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auto encoded = coder.encode(data);
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auto decoded = coder.decode(encoded);
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EXPECT_EQ(decoded, data);
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std::string decoded_str(decoded.begin(), decoded.end());
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EXPECT_EQ(decoded_str, utf8);
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}
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213
tests/test_c_api_edge_cases.cpp
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213
tests/test_c_api_edge_cases.cpp
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#include "cloud_point_rpc/rpc_server.hpp"
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#include "server_api.h"
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#include "test_api.h"
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#include <fstream>
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#include <glog/logging.h>
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#include <gmock/gmock.h>
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#include <gtest/gtest.h>
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class CApiEdgeCaseTest : public ::testing::Test {
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protected:
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void SetUp() override {
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FLAGS_logtostderr = true;
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if (!google::IsGoogleLoggingInitialized())
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google::InitGoogleLogging("TestRPC");
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}
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};
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// Null pointer tests for string functions
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TEST_F(CApiEdgeCaseTest, StrGetDataNullptr) {
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EXPECT_EQ(crpc_str_get_data(nullptr), nullptr);
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}
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TEST_F(CApiEdgeCaseTest, StrGetSizeNullptr) {
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EXPECT_EQ(crpc_str_get_size(nullptr), 0);
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}
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TEST_F(CApiEdgeCaseTest, StrCreateNullptrData) {
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EXPECT_EQ(crpc_str_create(nullptr, 10), nullptr);
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}
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TEST_F(CApiEdgeCaseTest, StrCreateEmptyString) {
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auto str = crpc_str_create("", 0);
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EXPECT_NE(str, nullptr);
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EXPECT_EQ(crpc_str_get_size(str), 0);
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EXPECT_EQ(std::string_view(crpc_str_get_data(str)), "");
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crpc_str_destroy(str);
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}
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TEST_F(CApiEdgeCaseTest, StrDestroyNullptr) {
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// Should not crash
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EXPECT_NO_THROW(crpc_str_destroy(nullptr));
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}
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// Double destroy should be safe-ish (will just not find it)
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TEST_F(CApiEdgeCaseTest, StrDoubleDestroy) {
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auto str = crpc_str_create("test", 4);
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ASSERT_NE(str, nullptr);
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crpc_str_destroy(str);
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// Second destroy should not crash (pointer not in gc anymore)
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EXPECT_NO_THROW(crpc_str_destroy(str));
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}
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// Create and destroy many strings
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TEST_F(CApiEdgeCaseTest, StrCreateDestroyMany) {
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constexpr int N = 1000;
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std::vector<rpc_string *> ptrs;
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ptrs.reserve(N);
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for (int i = 0; i < N; ++i) {
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auto str = crpc_str_create("x", 1);
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ASSERT_NE(str, nullptr);
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ptrs.push_back(str);
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}
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// Destroy half
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for (int i = 0; i < N / 2; ++i) {
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crpc_str_destroy(ptrs[i]);
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}
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// Create more
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for (int i = 0; i < N / 2; ++i) {
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auto str = crpc_str_create("y", 1);
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ASSERT_NE(str, nullptr);
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}
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// Destroy remaining original
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for (int i = N / 2; i < N; ++i) {
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crpc_str_destroy(ptrs[i]);
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}
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}
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// Null pointer tests for add_method
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TEST_F(CApiEdgeCaseTest, AddMethodNullName) {
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auto cb =
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+[](rpc_string *) -> rpc_string * { return crpc_str_create("res", 3); };
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// Should not crash, just log and return
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EXPECT_NO_THROW(crpc_add_method(cb, nullptr));
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}
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TEST_F(CApiEdgeCaseTest, AddMethodNullCallback) {
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rpc_string name{"test", 4};
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EXPECT_NO_THROW(crpc_add_method(nullptr, &name));
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}
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TEST_F(CApiEdgeCaseTest, AddMethodBothNull) {
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EXPECT_NO_THROW(crpc_add_method(nullptr, nullptr));
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}
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// crpc_init edge cases
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TEST_F(CApiEdgeCaseTest, InitWithNullptr) {
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// Should not crash, just log error and return
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EXPECT_NO_THROW(crpc_init(nullptr));
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}
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TEST_F(CApiEdgeCaseTest, InitWithInvalidPath) {
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// Should catch exception and log, not crash
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EXPECT_NO_THROW(crpc_init("/nonexistent/path/config.yaml"));
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}
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// Full lifecycle: init -> add method -> deinit
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TEST_F(CApiEdgeCaseTest, FullLifecycle) {
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std::ofstream config_file("test_config.yaml");
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config_file << "server:\n"
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<< " ip: \"127.0.0.1\"\n"
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<< " port: 19191\n";
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config_file.close();
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EXPECT_NO_THROW(crpc_init("test_config.yaml"));
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rpc_string name{"echo", 4};
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auto cb = +[](rpc_string *req) -> rpc_string * {
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return crpc_str_create(req->s.data(), req->s.size());
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};
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EXPECT_NO_THROW(crpc_add_method(cb, &name));
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EXPECT_NO_THROW(crpc_deinit());
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std::remove("test_config.yaml");
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}
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// Deinit without init should not crash
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TEST_F(CApiEdgeCaseTest, DeinitWithoutInit) { EXPECT_NO_THROW(crpc_deinit()); }
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// Multiple init/deinit cycles
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TEST_F(CApiEdgeCaseTest, MultipleInitDeinitCycles) {
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std::ofstream config_file("test_config.yaml");
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config_file << "server:\n"
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<< " ip: \"127.0.0.1\"\n"
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<< " port: 19192\n";
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config_file.close();
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for (int i = 0; i < 3; ++i) {
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EXPECT_NO_THROW(crpc_init("test_config.yaml"));
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EXPECT_NO_THROW(crpc_deinit());
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}
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std::remove("test_config.yaml");
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}
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// GC cleanup on deinit
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TEST_F(CApiEdgeCaseTest, GcCleanupOnDeinit) {
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auto str1 = crpc_str_create("one", 3);
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auto str2 = crpc_str_create("two", 3);
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ASSERT_NE(str1, nullptr);
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ASSERT_NE(str2, nullptr);
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// Destroy one, leave one
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crpc_str_destroy(str1);
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// deinit should clear gc including str2
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EXPECT_NO_THROW(crpc_deinit());
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}
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// Large string creation
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TEST_F(CApiEdgeCaseTest, LargeStringCreate) {
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std::string large(1000000, 'x');
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auto str = crpc_str_create(large.data(), large.size());
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ASSERT_NE(str, nullptr);
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EXPECT_EQ(crpc_str_get_size(str), large.size());
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EXPECT_EQ(std::string(crpc_str_get_data(str), large.size()), large);
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crpc_str_destroy(str);
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}
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// String with embedded null bytes
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TEST_F(CApiEdgeCaseTest, StringWithNullBytes) {
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std::string data("Hello\0World", 11);
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auto str = crpc_str_create(data.data(), data.size());
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ASSERT_NE(str, nullptr);
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EXPECT_EQ(crpc_str_get_size(str), 11);
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EXPECT_EQ(std::string(crpc_str_get_data(str), 11), data);
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crpc_str_destroy(str);
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}
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// Test API edge cases
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TEST_F(CApiEdgeCaseTest, TestInitDeinit) {
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EXPECT_NO_THROW(crpc_test_init());
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EXPECT_NO_THROW(crpc_test_deinit());
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}
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TEST_F(CApiEdgeCaseTest, TestRemoveNonexistentMethod) {
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crpc_test_init();
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rpc_string name{"nonexistent", 11};
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EXPECT_EQ(crpc_test_remove_method(&name), -1);
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crpc_test_deinit();
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}
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TEST_F(CApiEdgeCaseTest, TestAutoCallToggle) {
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crpc_test_init();
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EXPECT_NO_THROW(crpc_test_auto_call(0));
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EXPECT_NO_THROW(crpc_test_auto_call(1));
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EXPECT_NO_THROW(crpc_test_auto_call(0));
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crpc_test_deinit();
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}
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TEST_F(CApiEdgeCaseTest, TestChangeDuration) {
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crpc_test_init();
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EXPECT_NO_THROW(crpc_test_change_duration(100));
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EXPECT_EQ(crpc_test_duration(), 100);
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EXPECT_NO_THROW(crpc_test_change_duration(500));
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EXPECT_EQ(crpc_test_duration(), 500);
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crpc_test_deinit();
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}
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TEST_F(CApiEdgeCaseTest, TestScheduleCallNonexistent) {
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crpc_test_init();
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rpc_string name{"nonexistent", 11};
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EXPECT_NO_THROW(crpc_test_schedule_call(&name));
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crpc_test_deinit();
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}
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253
tests/test_rpc_edge_cases.cpp
Normal file
253
tests/test_rpc_edge_cases.cpp
Normal file
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#include "cloud_point_rpc/rpc_server.hpp"
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#include "server_api.h"
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#include <gmock/gmock.h>
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#include <gtest/gtest.h>
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#include <nlohmann/json.hpp>
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#include <string>
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#include <thread>
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#include <vector>
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using json = nlohmann::json;
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using namespace score;
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class RpcServerEdgeCaseTest : public ::testing::Test {
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protected:
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RpcServer server;
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void SetUp() override {
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server.register_method(
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"echo", [&](const json &j) { return j.get<std::string>(); });
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server.register_method("thrower", [&](const json &) -> std::string {
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throw std::runtime_error("intentional error");
|
||||
});
|
||||
}
|
||||
};
|
||||
|
||||
// Empty request string
|
||||
TEST_F(RpcServerEdgeCaseTest, EmptyRequestReturnsParseError) {
|
||||
std::string response_str = server.process("");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32700);
|
||||
}
|
||||
|
||||
// Valid JSON but primitive types (not object)
|
||||
// NOTE: These currently throw nlohmann::json::type_error instead of returning
|
||||
// Invalid Request. This documents a known bug in type validation.
|
||||
TEST_F(RpcServerEdgeCaseTest, JsonArrayThrowsTypeError) {
|
||||
EXPECT_THROW(server.process(R"([1, 2, 3])"), nlohmann::json::type_error);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, JsonStringThrowsTypeError) {
|
||||
EXPECT_THROW(server.process(R"("just a string")"),
|
||||
nlohmann::json::type_error);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, JsonNumberThrowsTypeError) {
|
||||
EXPECT_THROW(server.process("42"), nlohmann::json::type_error);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, JsonNullThrowsTypeError) {
|
||||
EXPECT_THROW(server.process("null"), nlohmann::json::type_error);
|
||||
}
|
||||
|
||||
// Missing required fields
|
||||
TEST_F(RpcServerEdgeCaseTest, MissingJsonrpcField) {
|
||||
std::string response_str = server.process(R"({"method": "echo", "id": 1})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32600);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, WrongJsonrpcVersion) {
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "1.0", "method": "echo", "id": 1})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32600);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, MissingMethodField) {
|
||||
std::string response_str = server.process(R"({"jsonrpc": "2.0", "id": 1})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32600);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, MissingIdField) {
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "echo"})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32600);
|
||||
}
|
||||
|
||||
// Method field type validation
|
||||
// NOTE: These currently throw nlohmann::json::type_error instead of returning
|
||||
// Invalid Request. This documents a known bug in type validation.
|
||||
TEST_F(RpcServerEdgeCaseTest, MethodIsNumberThrowsTypeError) {
|
||||
EXPECT_THROW(
|
||||
server.process(R"({"jsonrpc": "2.0", "method": 123, "id": 1})"),
|
||||
nlohmann::json::type_error);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, MethodIsNullThrowsTypeError) {
|
||||
EXPECT_THROW(
|
||||
server.process(R"({"jsonrpc": "2.0", "method": null, "id": 1})"),
|
||||
nlohmann::json::type_error);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, MethodIsArrayThrowsTypeError) {
|
||||
EXPECT_THROW(
|
||||
server.process(R"({"jsonrpc": "2.0", "method": ["echo"], "id": 1})"),
|
||||
nlohmann::json::type_error);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, MethodIsObjectThrowsTypeError) {
|
||||
EXPECT_THROW(
|
||||
server.process(
|
||||
R"({"jsonrpc": "2.0", "method": {"name": "echo"}, "id": 1})"),
|
||||
nlohmann::json::type_error);
|
||||
}
|
||||
|
||||
// Handler exceptions
|
||||
TEST_F(RpcServerEdgeCaseTest, HandlerThrowsReturnsServerError) {
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "thrower", "id": 42})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32000);
|
||||
// Should not leak internal details ideally, but current impl does
|
||||
EXPECT_EQ(response["error"]["message"], "intentional error");
|
||||
}
|
||||
|
||||
// Valid request with params
|
||||
TEST_F(RpcServerEdgeCaseTest, RequestWithParams) {
|
||||
server.register_method("add", [&](const json &j) {
|
||||
return j.at("a").get<int>() + j.at("b").get<int>();
|
||||
});
|
||||
std::string response_str = server.process(
|
||||
R"({"jsonrpc": "2.0", "method": "add", "id": 1, "params": {"a": 2, "b": 3}})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("result"));
|
||||
EXPECT_EQ(response["result"], 5);
|
||||
}
|
||||
|
||||
// Request with empty params object
|
||||
// The echo handler expects a string but gets an empty object, so it throws.
|
||||
TEST_F(RpcServerEdgeCaseTest, RequestWithEmptyParamsHandlerThrows) {
|
||||
std::string response_str = server.process(
|
||||
R"({"jsonrpc": "2.0", "method": "echo", "id": 1, "params": {}})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32000);
|
||||
}
|
||||
|
||||
// C callback edge cases
|
||||
// NOTE: When the C callback returns nullptr, the wrapper returns {} which
|
||||
// value-initializes the variant's first alternative (json null). This is a
|
||||
// bug: it should throw to trigger a proper error response.
|
||||
TEST_F(RpcServerEdgeCaseTest, CCallbackReturnsNullProducesNullResult) {
|
||||
server.register_method(
|
||||
"null_cb", [](rpc_string *) -> rpc_string * { return nullptr; });
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "null_cb", "id": 1})");
|
||||
json response = json::parse(response_str);
|
||||
// Current behavior: returns success with null result due to variant
|
||||
// value-initialization bug
|
||||
ASSERT_TRUE(response.contains("result"));
|
||||
EXPECT_TRUE(response["result"].is_null());
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, CCallbackReturnsNonJsonString) {
|
||||
server.register_method("raw_cb", [](rpc_string *) -> rpc_string * {
|
||||
return crpc_str_create("hello world", 11);
|
||||
});
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "raw_cb", "id": 1})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("result"));
|
||||
EXPECT_EQ(response["result"], "hello world");
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, CCallbackReturnsValidJson) {
|
||||
server.register_method("json_cb", [](rpc_string *) -> rpc_string * {
|
||||
return crpc_str_create(R"({"key": "value"})", 16);
|
||||
});
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "json_cb", "id": 1})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("result"));
|
||||
EXPECT_EQ(response["result"]["key"], "value");
|
||||
}
|
||||
|
||||
// Thread safety: concurrent register and process
|
||||
TEST_F(RpcServerEdgeCaseTest, ConcurrentRegisterAndProcess) {
|
||||
constexpr int kIterations = 100;
|
||||
std::atomic<int> success_count{0};
|
||||
|
||||
std::thread registrar([&]() {
|
||||
for (int i = 0; i < kIterations; ++i) {
|
||||
server.register_method("dyn_" + std::to_string(i),
|
||||
[&](const json &j) { return j.get<int>(); });
|
||||
}
|
||||
});
|
||||
|
||||
std::thread processor([&]() {
|
||||
for (int i = 0; i < kIterations; ++i) {
|
||||
std::string req = R"({"jsonrpc": "2.0", "method": "echo", "id": )" +
|
||||
std::to_string(i) + "}";
|
||||
try {
|
||||
auto res = server.process(req);
|
||||
if (!res.empty())
|
||||
++success_count;
|
||||
} catch (...) {
|
||||
// ignore races
|
||||
}
|
||||
}
|
||||
});
|
||||
|
||||
registrar.join();
|
||||
processor.join();
|
||||
|
||||
EXPECT_EQ(success_count, kIterations);
|
||||
}
|
||||
|
||||
// Unicode and special characters in method name
|
||||
TEST_F(RpcServerEdgeCaseTest, UnicodeMethodNameNotFound) {
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "метод", "id": 1})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32601);
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, MethodWithNewlineNotFound) {
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "echo\n", "id": 1})");
|
||||
json response = json::parse(response_str);
|
||||
ASSERT_TRUE(response.contains("error"));
|
||||
EXPECT_EQ(response["error"]["code"], -32601);
|
||||
}
|
||||
|
||||
// Id edge cases
|
||||
TEST_F(RpcServerEdgeCaseTest, StringIdPreserved) {
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "echo", "id": "abc"})");
|
||||
json response = json::parse(response_str);
|
||||
EXPECT_EQ(response["id"], "abc");
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, NullIdPreserved) {
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "echo", "id": null})");
|
||||
json response = json::parse(response_str);
|
||||
EXPECT_TRUE(response["id"].is_null());
|
||||
}
|
||||
|
||||
TEST_F(RpcServerEdgeCaseTest, ZeroIdPreserved) {
|
||||
std::string response_str =
|
||||
server.process(R"({"jsonrpc": "2.0", "method": "echo", "id": 0})");
|
||||
json response = json::parse(response_str);
|
||||
EXPECT_EQ(response["id"], 0);
|
||||
}
|
||||
96
tests/test_serialize.cpp
Normal file
96
tests/test_serialize.cpp
Normal file
@ -0,0 +1,96 @@
|
||||
#include "cloud_point_rpc/serialize.hpp"
|
||||
#include <gmock/gmock.h>
|
||||
#include <gtest/gtest.h>
|
||||
#include <limits>
|
||||
|
||||
using namespace score;
|
||||
|
||||
class SerializeEdgeCaseTest : public ::testing::Test {};
|
||||
|
||||
// uint8_t round-trip
|
||||
TEST_F(SerializeEdgeCaseTest, Uint8RoundTrip) {
|
||||
uint8_t value = 42;
|
||||
auto buf = serialize(value);
|
||||
EXPECT_EQ(buf.size(), sizeof(uint8_t));
|
||||
EXPECT_EQ(deserialize<uint8_t>(buf), value);
|
||||
}
|
||||
|
||||
// int32_t round-trip
|
||||
TEST_F(SerializeEdgeCaseTest, Int32RoundTrip) {
|
||||
int32_t value = -12345;
|
||||
auto buf = serialize(value);
|
||||
EXPECT_EQ(buf.size(), sizeof(int32_t));
|
||||
EXPECT_EQ(deserialize<int32_t>(buf), value);
|
||||
}
|
||||
|
||||
// uint64_t round-trip with max value
|
||||
TEST_F(SerializeEdgeCaseTest, Uint64MaxRoundTrip) {
|
||||
uint64_t value = std::numeric_limits<uint64_t>::max();
|
||||
auto buf = serialize(value);
|
||||
EXPECT_EQ(buf.size(), sizeof(uint64_t));
|
||||
EXPECT_EQ(deserialize<uint64_t>(buf), value);
|
||||
}
|
||||
|
||||
// int64_t round-trip with min value
|
||||
TEST_F(SerializeEdgeCaseTest, Int64MinRoundTrip) {
|
||||
int64_t value = std::numeric_limits<int64_t>::min();
|
||||
auto buf = serialize(value);
|
||||
EXPECT_EQ(buf.size(), sizeof(int64_t));
|
||||
EXPECT_EQ(deserialize<int64_t>(buf), value);
|
||||
}
|
||||
|
||||
// float round-trip
|
||||
TEST_F(SerializeEdgeCaseTest, FloatRoundTrip) {
|
||||
float value = 3.14159f;
|
||||
auto buf = serialize(value);
|
||||
EXPECT_EQ(buf.size(), sizeof(float));
|
||||
EXPECT_FLOAT_EQ(deserialize<float>(buf), value);
|
||||
}
|
||||
|
||||
// double round-trip
|
||||
TEST_F(SerializeEdgeCaseTest, DoubleRoundTrip) {
|
||||
double value = 2.718281828459045;
|
||||
auto buf = serialize(value);
|
||||
EXPECT_EQ(buf.size(), sizeof(double));
|
||||
EXPECT_DOUBLE_EQ(deserialize<double>(buf), value);
|
||||
}
|
||||
|
||||
// zero values
|
||||
TEST_F(SerializeEdgeCaseTest, ZeroValues) {
|
||||
EXPECT_EQ(deserialize<uint64_t>(serialize<uint64_t>(0)), 0);
|
||||
EXPECT_EQ(deserialize<int32_t>(serialize<int32_t>(0)), 0);
|
||||
EXPECT_FLOAT_EQ(deserialize<float>(serialize<float>(0.0f)), 0.0f);
|
||||
EXPECT_DOUBLE_EQ(deserialize<double>(serialize<double>(0.0)), 0.0);
|
||||
}
|
||||
|
||||
// inplace_size_embedding
|
||||
TEST_F(SerializeEdgeCaseTest, InplaceSizeEmbedding) {
|
||||
std::string msg = "Hello";
|
||||
inplace_size_embedding(msg);
|
||||
EXPECT_EQ(msg.size(), 5 + sizeof(uint64_t));
|
||||
// First 8 bytes should be the size (5)
|
||||
uint64_t size = deserialize<uint64_t>(
|
||||
std::vector<uint8_t>(msg.begin(), msg.begin() + sizeof(uint64_t)));
|
||||
EXPECT_EQ(size, 5);
|
||||
// Remaining bytes should be the message
|
||||
EXPECT_EQ(msg.substr(sizeof(uint64_t)), "Hello");
|
||||
}
|
||||
|
||||
TEST_F(SerializeEdgeCaseTest, InplaceSizeEmbeddingEmpty) {
|
||||
std::string msg;
|
||||
inplace_size_embedding(msg);
|
||||
EXPECT_EQ(msg.size(), sizeof(uint64_t));
|
||||
uint64_t size = deserialize<uint64_t>(
|
||||
std::vector<uint8_t>(msg.begin(), msg.begin() + sizeof(uint64_t)));
|
||||
EXPECT_EQ(size, 0);
|
||||
}
|
||||
|
||||
// Buffer too small for deserialize (unsafe but should not crash in test)
|
||||
TEST_F(SerializeEdgeCaseTest, DeserializeSmallBuffer) {
|
||||
std::vector<uint8_t> small_buf{0x01, 0x02};
|
||||
// This is undefined behavior in current implementation, but we document it
|
||||
// In a hardened implementation, this should throw
|
||||
// For now, just verify it compiles and runs (it's unsafe API usage)
|
||||
// EXPECT_THROW(deserialize<uint64_t>(small_buf), std::runtime_error);
|
||||
(void)small_buf;
|
||||
}
|
||||
114
tests/test_service.cpp
Normal file
114
tests/test_service.cpp
Normal file
@ -0,0 +1,114 @@
|
||||
#include "cloud_point_rpc/service.hpp"
|
||||
#include <gmock/gmock.h>
|
||||
#include <gtest/gtest.h>
|
||||
|
||||
using namespace score;
|
||||
|
||||
class ServiceEdgeCaseTest : public ::testing::Test {};
|
||||
|
||||
// Default constructor (no data)
|
||||
TEST_F(ServiceEdgeCaseTest, DefaultConstructorFallbacks) {
|
||||
Service service;
|
||||
|
||||
auto intrinsic = service.get_intrinsic_params();
|
||||
EXPECT_EQ(intrinsic.size(), 9);
|
||||
EXPECT_EQ(intrinsic[0], 1.0);
|
||||
EXPECT_EQ(intrinsic[4], 1.0);
|
||||
EXPECT_EQ(intrinsic[8], 1.0);
|
||||
|
||||
auto extrinsic = service.get_extrinsic_params();
|
||||
EXPECT_EQ(extrinsic.size(), 16);
|
||||
EXPECT_EQ(extrinsic[0], 1.0);
|
||||
EXPECT_EQ(extrinsic[5], 1.0);
|
||||
EXPECT_EQ(extrinsic[10], 1.0);
|
||||
EXPECT_EQ(extrinsic[15], 1.0);
|
||||
|
||||
auto cloud = service.get_cloud_point();
|
||||
EXPECT_EQ(cloud.size(), 3);
|
||||
EXPECT_EQ(cloud[0], std::vector<double>({0.1, 0.2, 0.3}));
|
||||
}
|
||||
|
||||
// Empty TestData explicitly
|
||||
TEST_F(ServiceEdgeCaseTest, ExplicitEmptyData) {
|
||||
TestData empty_data;
|
||||
Service service(empty_data);
|
||||
|
||||
auto intrinsic = service.get_intrinsic_params();
|
||||
EXPECT_EQ(intrinsic.size(), 9);
|
||||
|
||||
auto extrinsic = service.get_extrinsic_params();
|
||||
EXPECT_EQ(extrinsic.size(), 16);
|
||||
|
||||
auto cloud = service.get_cloud_point();
|
||||
EXPECT_EQ(cloud.size(), 3);
|
||||
}
|
||||
|
||||
// Custom intrinsic params
|
||||
TEST_F(ServiceEdgeCaseTest, CustomIntrinsicParams) {
|
||||
TestData data;
|
||||
data.intrinsic_params = {100.0, 0.0, 50.0, 0.0, 100.0, 50.0, 0.0, 0.0, 1.0};
|
||||
Service service(data);
|
||||
|
||||
auto intrinsic = service.get_intrinsic_params();
|
||||
EXPECT_EQ(intrinsic, data.intrinsic_params);
|
||||
}
|
||||
|
||||
// Custom extrinsic params
|
||||
TEST_F(ServiceEdgeCaseTest, CustomExtrinsicParams) {
|
||||
TestData data;
|
||||
data.extrinsic_params = {1, 0, 0, 1, 0, 1, 0, 2, 0, 0, 1, 3, 0, 0, 0, 1};
|
||||
Service service(data);
|
||||
|
||||
auto extrinsic = service.get_extrinsic_params();
|
||||
EXPECT_EQ(extrinsic, data.extrinsic_params);
|
||||
}
|
||||
|
||||
// Custom cloud point
|
||||
TEST_F(ServiceEdgeCaseTest, CustomCloudPoint) {
|
||||
TestData data;
|
||||
data.cloud_point = {{1.0, 2.0, 3.0}, {4.0, 5.0, 6.0}};
|
||||
Service service(data);
|
||||
|
||||
auto cloud = service.get_cloud_point();
|
||||
EXPECT_EQ(cloud.size(), 2);
|
||||
EXPECT_EQ(cloud[0], std::vector<double>({1.0, 2.0, 3.0}));
|
||||
EXPECT_EQ(cloud[1], std::vector<double>({4.0, 5.0, 6.0}));
|
||||
}
|
||||
|
||||
// Large point cloud
|
||||
TEST_F(ServiceEdgeCaseTest, LargePointCloud) {
|
||||
TestData data;
|
||||
for (int i = 0; i < 10000; ++i) {
|
||||
data.cloud_point.push_back({static_cast<double>(i),
|
||||
static_cast<double>(i + 1),
|
||||
static_cast<double>(i + 2)});
|
||||
}
|
||||
Service service(data);
|
||||
|
||||
auto cloud = service.get_cloud_point();
|
||||
EXPECT_EQ(cloud.size(), 10000);
|
||||
EXPECT_EQ(cloud[9999], std::vector<double>({9999.0, 10000.0, 10001.0}));
|
||||
}
|
||||
|
||||
// Single point cloud
|
||||
TEST_F(ServiceEdgeCaseTest, SinglePointCloud) {
|
||||
TestData data;
|
||||
data.cloud_point = {{0.0, 0.0, 0.0}};
|
||||
Service service(data);
|
||||
|
||||
auto cloud = service.get_cloud_point();
|
||||
EXPECT_EQ(cloud.size(), 1);
|
||||
EXPECT_EQ(cloud[0], std::vector<double>({0.0, 0.0, 0.0}));
|
||||
}
|
||||
|
||||
// Negative values
|
||||
TEST_F(ServiceEdgeCaseTest, NegativeValues) {
|
||||
TestData data;
|
||||
data.intrinsic_params = {-100.0, 0.0, -50.0, 0.0, -100.0,
|
||||
-50.0, 0.0, 0.0, -1.0};
|
||||
Service service(data);
|
||||
|
||||
auto intrinsic = service.get_intrinsic_params();
|
||||
EXPECT_EQ(intrinsic[0], -100.0);
|
||||
EXPECT_EQ(intrinsic[8], -1.0);
|
||||
}
|
||||
187
tests/test_tcp_edge_cases.cpp
Normal file
187
tests/test_tcp_edge_cases.cpp
Normal file
@ -0,0 +1,187 @@
|
||||
#include "cloud_point_rpc/tcp_connector.hpp"
|
||||
#include "cloud_point_rpc/tcp_server.hpp"
|
||||
#include <asio.hpp>
|
||||
#include <chrono>
|
||||
#include <gmock/gmock.h>
|
||||
#include <gtest/gtest.h>
|
||||
#include <thread>
|
||||
|
||||
using namespace score;
|
||||
|
||||
class TcpEdgeCaseTest : public ::testing::Test {
|
||||
protected:
|
||||
std::unique_ptr<TcpServer> server_;
|
||||
std::thread server_thread_;
|
||||
|
||||
void StartServer(int port, TcpServer::RequestProcessor processor) {
|
||||
server_ = std::make_unique<TcpServer>("127.0.0.1", port, processor);
|
||||
server_thread_ = std::thread([this]() { server_->start(); });
|
||||
std::this_thread::sleep_for(std::chrono::milliseconds(100));
|
||||
}
|
||||
|
||||
void StopServer() {
|
||||
if (server_) {
|
||||
server_->stop();
|
||||
}
|
||||
if (server_thread_.joinable()) {
|
||||
server_thread_.join();
|
||||
}
|
||||
}
|
||||
|
||||
void TearDown() override { StopServer(); }
|
||||
};
|
||||
|
||||
// Empty payload
|
||||
// NOTE: The server silently ignores empty payloads (payload_length == 0)
|
||||
// and closes the connection without sending a response.
|
||||
TEST_F(TcpEdgeCaseTest, EmptyPayloadGetsNoResponse) {
|
||||
StartServer(19001, [](const std::string &req) {
|
||||
if (req.empty()) {
|
||||
return std::string("empty");
|
||||
}
|
||||
return req;
|
||||
});
|
||||
|
||||
TCPConnector connector("127.0.0.1", 19001);
|
||||
auto res = connector.Send("");
|
||||
EXPECT_EQ(res, "");
|
||||
}
|
||||
|
||||
// Very small payload (1 byte)
|
||||
TEST_F(TcpEdgeCaseTest, SingleBytePayload) {
|
||||
StartServer(19002, [](const std::string &req) { return req; });
|
||||
|
||||
TCPConnector connector("127.0.0.1", 19002);
|
||||
auto res = connector.Send("x");
|
||||
EXPECT_EQ(res, "x\n");
|
||||
}
|
||||
|
||||
// Multiple sequential connections
|
||||
TEST_F(TcpEdgeCaseTest, MultipleSequentialConnections) {
|
||||
StartServer(19003, [](const std::string &req) { return req; });
|
||||
|
||||
for (int i = 0; i < 10; ++i) {
|
||||
TCPConnector connector("127.0.0.1", 19003);
|
||||
auto msg = "msg_" + std::to_string(i);
|
||||
auto res = connector.Send(msg);
|
||||
EXPECT_EQ(res, msg + "\n");
|
||||
}
|
||||
}
|
||||
|
||||
// Multiple concurrent connections
|
||||
TEST_F(TcpEdgeCaseTest, MultipleConcurrentConnections) {
|
||||
std::atomic<int> counter{0};
|
||||
StartServer(19004, [&counter](const std::string &req) {
|
||||
++counter;
|
||||
return req;
|
||||
});
|
||||
|
||||
constexpr int N = 10;
|
||||
std::vector<std::thread> threads;
|
||||
threads.reserve(N);
|
||||
|
||||
for (int i = 0; i < N; ++i) {
|
||||
threads.emplace_back([i]() {
|
||||
TCPConnector connector("127.0.0.1", 19004);
|
||||
auto msg = "concurrent_" + std::to_string(i);
|
||||
auto res = connector.Send(msg);
|
||||
EXPECT_EQ(res, msg + "\n");
|
||||
});
|
||||
}
|
||||
|
||||
for (auto &t : threads) {
|
||||
t.join();
|
||||
}
|
||||
|
||||
EXPECT_EQ(counter, N);
|
||||
}
|
||||
|
||||
// Server stop and restart on same port
|
||||
TEST_F(TcpEdgeCaseTest, StopRestartSamePort) {
|
||||
StartServer(19005, [](const std::string &req) { return req; });
|
||||
|
||||
{
|
||||
TCPConnector connector("127.0.0.1", 19005);
|
||||
auto res = connector.Send("first");
|
||||
EXPECT_EQ(res, "first\n");
|
||||
}
|
||||
|
||||
StopServer();
|
||||
|
||||
// Restart on same port
|
||||
StartServer(19005, [](const std::string &req) { return req + "_v2"; });
|
||||
|
||||
{
|
||||
TCPConnector connector("127.0.0.1", 19005);
|
||||
auto res = connector.Send("second");
|
||||
EXPECT_EQ(res, "second_v2\n");
|
||||
}
|
||||
}
|
||||
|
||||
// Connection to wrong port fails
|
||||
TEST_F(TcpEdgeCaseTest, ConnectionToWrongPortFails) {
|
||||
StartServer(19006, [](const std::string &req) { return req; });
|
||||
|
||||
EXPECT_THROW(TCPConnector connector("127.0.0.1", 19007),
|
||||
std::runtime_error);
|
||||
}
|
||||
|
||||
// Large payload
|
||||
TEST_F(TcpEdgeCaseTest, LargePayload) {
|
||||
std::string large_data(100000, 'L');
|
||||
StartServer(19008, [&large_data](const std::string &req) {
|
||||
if (req == large_data) {
|
||||
return std::string("OK");
|
||||
}
|
||||
return std::string("MISMATCH");
|
||||
});
|
||||
|
||||
TCPConnector connector("127.0.0.1", 19008);
|
||||
auto res = connector.Send(large_data);
|
||||
EXPECT_EQ(res, "OK\n");
|
||||
}
|
||||
|
||||
// Server processor throws exception
|
||||
TEST_F(TcpEdgeCaseTest, ProcessorThrowsException) {
|
||||
StartServer(19009, [](const std::string &) -> std::string {
|
||||
throw std::runtime_error("processor error");
|
||||
});
|
||||
|
||||
TCPConnector connector("127.0.0.1", 19009);
|
||||
// Should not crash, client may get partial or no response
|
||||
EXPECT_NO_THROW(connector.Send("trigger"));
|
||||
}
|
||||
|
||||
// Server start failure (port already in use)
|
||||
TEST_F(TcpEdgeCaseTest, PortAlreadyInUse) {
|
||||
StartServer(19010, [](const std::string &req) { return req; });
|
||||
|
||||
EXPECT_THROW(
|
||||
{
|
||||
TcpServer duplicate("127.0.0.1", 19010,
|
||||
[](const std::string &req) { return req; });
|
||||
duplicate.start();
|
||||
},
|
||||
std::exception);
|
||||
}
|
||||
|
||||
// Explicit join after stop
|
||||
TEST_F(TcpEdgeCaseTest, ExplicitJoinAfterStop) {
|
||||
StartServer(19011, [](const std::string &req) { return req; });
|
||||
|
||||
server_->stop();
|
||||
EXPECT_NO_THROW(server_->join());
|
||||
}
|
||||
|
||||
// Destructor cleanup without explicit stop
|
||||
TEST_F(TcpEdgeCaseTest, DestructorCleanup) {
|
||||
{
|
||||
TcpServer local_server("127.0.0.1", 19012,
|
||||
[](const std::string &req) { return req; });
|
||||
local_server.start();
|
||||
std::this_thread::sleep_for(std::chrono::milliseconds(50));
|
||||
// destructor should clean up without explicit stop
|
||||
}
|
||||
// If we get here without hanging, destructor works
|
||||
EXPECT_TRUE(true);
|
||||
}
|
||||
Loading…
x
Reference in New Issue
Block a user