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report: fix network queries in getReport libuv with exclude-network
PR-URL: https://github.com/nodejs/node/pull/55602 Reviewed-By: Ethan Arrowood <ethan@arrowood.dev> Reviewed-By: Gireesh Punathil <gpunathi@in.ibm.com> Reviewed-By: Chengzhong Wu <legendecas@gmail.com> Reviewed-By: Vinícius Lourenço Claro Cardoso <contact@viniciusl.com.br>
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@ -35,7 +35,7 @@ is provided below for reference.
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```json
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{
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"header": {
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"reportVersion": 3,
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"reportVersion": 4,
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"event": "exception",
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"trigger": "Exception",
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"filename": "report.20181221.005011.8974.0.001.json",
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@ -325,6 +325,50 @@ is provided below for reference.
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"is_active": true,
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"address": "0x000055fc7b2cb180",
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"loopIdleTimeSeconds": 22644.8
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},
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{
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"type": "tcp",
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"is_active": true,
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"is_referenced": true,
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"address": "0x000055e70fcb85d8",
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"localEndpoint": {
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"host": "localhost",
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"ip4": "127.0.0.1",
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"port": 48986
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},
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"remoteEndpoint": {
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"host": "localhost",
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"ip4": "127.0.0.1",
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"port": 38573
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},
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"sendBufferSize": 2626560,
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"recvBufferSize": 131072,
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"fd": 24,
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"writeQueueSize": 0,
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"readable": true,
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"writable": true
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},
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{
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"type": "tcp",
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"is_active": true,
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"is_referenced": true,
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"address": "0x000055e70fcd68c8",
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"localEndpoint": {
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"host": "ip6-localhost",
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"ip6": "::1",
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"port": 52266
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},
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"remoteEndpoint": {
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"host": "ip6-localhost",
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"ip6": "::1",
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"port": 38573
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},
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"sendBufferSize": 2626560,
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"recvBufferSize": 131072,
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"fd": 25,
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"writeQueueSize": 0,
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"readable": false,
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"writable": false
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}
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],
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"workers": [],
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@ -464,9 +508,9 @@ meaning of `SIGUSR2` for the said purposes.
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* `--report-signal` Sets or resets the signal for report generation
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(not supported on Windows). Default signal is `SIGUSR2`.
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* `--report-exclude-network` Exclude `header.networkInterfaces` from the
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diagnostic report. By default this is not set and the network interfaces
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are included.
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* `--report-exclude-network` Exclude `header.networkInterfaces` and disable the reverse DNS queries
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in `libuv.*.(remote|local)Endpoint.host` from the diagnostic report.
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By default this is not set and the network interfaces are included.
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* `--report-exclude-env` Exclude `environmentVariables` from the
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diagnostic report. By default this is not set and the environment
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@ -23,7 +23,7 @@
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#include <cwctype>
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#include <fstream>
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constexpr int NODE_REPORT_VERSION = 3;
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constexpr int NODE_REPORT_VERSION = 4;
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constexpr int NANOS_PER_SEC = 1000 * 1000 * 1000;
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constexpr double SEC_PER_MICROS = 1e-6;
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constexpr int MAX_FRAME_COUNT = node::kMaxFrameCountForLogging;
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@ -205,7 +205,9 @@ static void WriteNodeReport(Isolate* isolate,
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writer.json_arraystart("libuv");
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if (env != nullptr) {
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uv_walk(env->event_loop(), WalkHandle, static_cast<void*>(&writer));
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uv_walk(env->event_loop(),
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exclude_network ? WalkHandleNoNetwork : WalkHandleNetwork,
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static_cast<void*>(&writer));
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writer.json_start();
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writer.json_keyvalue("type", "loop");
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@ -19,7 +19,8 @@
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namespace node {
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namespace report {
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// Function declarations - utility functions in src/node_report_utils.cc
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void WalkHandle(uv_handle_t* h, void* arg);
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void WalkHandleNetwork(uv_handle_t* h, void* arg);
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void WalkHandleNoNetwork(uv_handle_t* h, void* arg);
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template <typename T>
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std::string ValueToHexString(T value) {
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@ -12,7 +12,8 @@ static constexpr auto null = JSONWriter::Null{};
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static void ReportEndpoint(uv_handle_t* h,
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struct sockaddr* addr,
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const char* name,
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JSONWriter* writer) {
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JSONWriter* writer,
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bool exclude_network) {
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if (addr == nullptr) {
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writer->json_keyvalue(name, null);
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return;
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@ -20,35 +21,42 @@ static void ReportEndpoint(uv_handle_t* h,
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uv_getnameinfo_t endpoint;
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char* host = nullptr;
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char hostbuf[INET6_ADDRSTRLEN];
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const int family = addr->sa_family;
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const int port = ntohs(family == AF_INET ?
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reinterpret_cast<sockaddr_in*>(addr)->sin_port :
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reinterpret_cast<sockaddr_in6*>(addr)->sin6_port);
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if (uv_getnameinfo(h->loop, &endpoint, nullptr, addr, NI_NUMERICSERV) == 0) {
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writer->json_objectstart(name);
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if (!exclude_network &&
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uv_getnameinfo(h->loop, &endpoint, nullptr, addr, NI_NUMERICSERV) == 0) {
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host = endpoint.host;
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DCHECK_EQ(port, std::stoi(endpoint.service));
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} else {
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const void* src = family == AF_INET ?
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static_cast<void*>(
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&(reinterpret_cast<sockaddr_in*>(addr)->sin_addr)) :
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static_cast<void*>(
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&(reinterpret_cast<sockaddr_in6*>(addr)->sin6_addr));
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if (uv_inet_ntop(family, src, hostbuf, sizeof(hostbuf)) == 0) {
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host = hostbuf;
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}
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}
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writer->json_objectstart(name);
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if (host != nullptr) {
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writer->json_keyvalue("host", host);
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}
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if (family == AF_INET) {
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char ipbuf[INET_ADDRSTRLEN];
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if (uv_ip4_name(
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reinterpret_cast<sockaddr_in*>(addr), ipbuf, sizeof(ipbuf)) == 0) {
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writer->json_keyvalue("ip4", ipbuf);
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if (host == nullptr) writer->json_keyvalue("host", ipbuf);
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}
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} else {
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char ipbuf[INET6_ADDRSTRLEN];
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if (uv_ip6_name(
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reinterpret_cast<sockaddr_in6*>(addr), ipbuf, sizeof(ipbuf)) == 0) {
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writer->json_keyvalue("ip6", ipbuf);
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if (host == nullptr) writer->json_keyvalue("host", ipbuf);
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}
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}
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writer->json_keyvalue("port", port);
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writer->json_objectend();
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}
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// Utility function to format libuv socket information.
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static void ReportEndpoints(uv_handle_t* h, JSONWriter* writer) {
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static void ReportEndpoints(uv_handle_t* h,
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JSONWriter* writer,
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bool exclude_network) {
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struct sockaddr_storage addr_storage;
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struct sockaddr* addr = reinterpret_cast<sockaddr*>(&addr_storage);
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uv_any_handle* handle = reinterpret_cast<uv_any_handle*>(h);
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@ -65,7 +73,8 @@ static void ReportEndpoints(uv_handle_t* h, JSONWriter* writer) {
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default:
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break;
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}
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ReportEndpoint(h, rc == 0 ? addr : nullptr, "localEndpoint", writer);
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ReportEndpoint(
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h, rc == 0 ? addr : nullptr, "localEndpoint", writer, exclude_network);
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switch (h->type) {
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case UV_UDP:
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@ -77,7 +86,8 @@ static void ReportEndpoints(uv_handle_t* h, JSONWriter* writer) {
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default:
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break;
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}
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ReportEndpoint(h, rc == 0 ? addr : nullptr, "remoteEndpoint", writer);
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ReportEndpoint(
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h, rc == 0 ? addr : nullptr, "remoteEndpoint", writer, exclude_network);
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}
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// Utility function to format libuv pipe information.
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@ -155,7 +165,7 @@ static void ReportPath(uv_handle_t* h, JSONWriter* writer) {
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}
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// Utility function to walk libuv handles.
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void WalkHandle(uv_handle_t* h, void* arg) {
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void WalkHandle(uv_handle_t* h, void* arg, bool exclude_network = false) {
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const char* type = uv_handle_type_name(h->type);
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JSONWriter* writer = static_cast<JSONWriter*>(arg);
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uv_any_handle* handle = reinterpret_cast<uv_any_handle*>(h);
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@ -177,7 +187,7 @@ void WalkHandle(uv_handle_t* h, void* arg) {
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break;
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case UV_TCP:
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case UV_UDP:
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ReportEndpoints(h, writer);
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ReportEndpoints(h, writer, exclude_network);
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break;
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case UV_NAMED_PIPE:
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ReportPipeEndpoints(h, writer);
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@ -267,6 +277,11 @@ void WalkHandle(uv_handle_t* h, void* arg) {
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}
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writer->json_end();
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}
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void WalkHandleNetwork(uv_handle_t* h, void* arg) {
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WalkHandle(h, arg, false);
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}
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void WalkHandleNoNetwork(uv_handle_t* h, void* arg) {
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WalkHandle(h, arg, true);
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}
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} // namespace report
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} // namespace node
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@ -110,7 +110,7 @@ function _validateContent(report, fields = []) {
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'glibcVersionRuntime', 'glibcVersionCompiler', 'cwd',
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'reportVersion', 'networkInterfaces', 'threadId'];
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checkForUnknownFields(header, headerFields);
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assert.strictEqual(header.reportVersion, 3); // Increment as needed.
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assert.strictEqual(header.reportVersion, 4); // Increment as needed.
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assert.strictEqual(typeof header.event, 'string');
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assert.strictEqual(typeof header.trigger, 'string');
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assert(typeof header.filename === 'string' || header.filename === null);
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@ -1,5 +1,6 @@
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'use strict';
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require('../common');
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const http = require('node:http');
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const assert = require('node:assert');
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const { spawnSync } = require('node:child_process');
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const tmpdir = require('../common/tmpdir');
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@ -38,4 +39,60 @@ describe('report exclude network option', () => {
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const report = process.report.getReport();
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assert.strictEqual(report.header.networkInterfaces, undefined);
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});
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it('should not do DNS queries in libuv if exclude network', async () => {
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const server = http.createServer(function(req, res) {
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res.writeHead(200, { 'Content-Type': 'text/plain' });
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res.end();
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});
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let ipv6Available = true;
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const port = await new Promise((resolve) => server.listen(0, async () => {
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await Promise.all([
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fetch('http://127.0.0.1:' + server.address().port),
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fetch('http://[::1]:' + server.address().port).catch(() => ipv6Available = false),
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]);
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resolve(server.address().port);
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server.close();
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}));
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process.report.excludeNetwork = false;
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let report = process.report.getReport();
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let tcp = report.libuv.filter((uv) => uv.type === 'tcp' && uv.remoteEndpoint?.port === port);
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assert.strictEqual(tcp.length, ipv6Available ? 2 : 1);
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const findHandle = (local, ip4 = true) => {
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return tcp.find(
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({ [local ? 'localEndpoint' : 'remoteEndpoint']: ep }) =>
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(ep[ip4 ? 'ip4' : 'ip6'] === (ip4 ? '127.0.0.1' : '::1')),
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)?.[local ? 'localEndpoint' : 'remoteEndpoint'];
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};
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try {
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// The reverse DNS of 127.0.0.1 can be a lot of things other than localhost
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// it could resolve to the server name for instance
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assert.notStrictEqual(findHandle(true)?.host, '127.0.0.1');
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assert.notStrictEqual(findHandle(false)?.host, '127.0.0.1');
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if (ipv6Available) {
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assert.notStrictEqual(findHandle(true, false)?.host, '::1');
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assert.notStrictEqual(findHandle(false, false)?.host, '::1');
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}
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} catch (e) {
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throw new Error(e?.message + ' in ' + JSON.stringify(tcp, null, 2), { cause: e });
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}
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process.report.excludeNetwork = true;
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report = process.report.getReport();
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tcp = report.libuv.filter((uv) => uv.type === 'tcp' && uv.remoteEndpoint?.port === port);
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try {
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assert.strictEqual(tcp.length, ipv6Available ? 2 : 1);
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assert.strictEqual(findHandle(true)?.host, '127.0.0.1');
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assert.strictEqual(findHandle(false)?.host, '127.0.0.1');
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if (ipv6Available) {
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assert.strictEqual(findHandle(true, false)?.host, '::1');
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assert.strictEqual(findHandle(false, false)?.host, '::1');
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}
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} catch (e) {
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throw new Error(e?.message + ' in ' + JSON.stringify(tcp, null, 2), { cause: e });
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}
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});
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});
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