Files
simplex-chat/packages/simplex-chat-nodejs/cpp/simplex.cc
T
2026-01-10 12:57:01 +00:00

569 lines
18 KiB
C++

#include <napi.h>
#include <sstream>
#include <string>
#include <functional>
#include <cstdlib>
#include "simplex.h"
namespace simplex
{
using namespace Napi;
void haskell_init()
{
int argc = 5;
const char *argv[] = {
"simplex",
"+RTS", // requires `hs_init_with_rtsopts`
"-A64m", // chunk size for new allocations
"-H64m", // initial heap size
"-xn", // non-moving GC
nullptr};
char **pargv = const_cast<char **>(argv);
hs_init_with_rtsopts(&argc, &pargv);
}
Napi::Value ParseJson(Env env, const std::string& json_str) {
Object global = env.Global();
Object json = global.Get("JSON").As<Object>();
Function parse = json.Get("parse").As<Function>();
return parse.Call(json, {String::New(env, json_str)});
}
class GenericAsyncWorker : public AsyncWorker
{
public:
GenericAsyncWorker(Function& callback, std::function<void(GenericAsyncWorker*)> execute_lambda)
: AsyncWorker(callback), execute_lambda_(std::move(execute_lambda)) {}
void Execute() override {
execute_lambda_(this);
}
void OnOK() override {
HandleScope scope(Env());
std::vector<napi_value> args = { Env().Null() };
auto res = GetResult(Env());
args.insert(args.end(), res.begin(), res.end());
Callback().Call(args);
}
void OnError(const Error& e) override {
HandleScope scope(Env());
Callback().Call({e.Value(), Env().Undefined()});
}
virtual std::vector<napi_value> GetResult(Napi::Env env) override {
return { String::New(env, result_) };
}
void SetResult(std::string result) {
result_ = std::move(result);
}
void SetWorkerError(const std::string& msg) {
SetError(msg);
}
protected:
std::string result_;
private:
std::function<void(GenericAsyncWorker*)> execute_lambda_;
};
class JsonAsyncWorker : public GenericAsyncWorker
{
public:
JsonAsyncWorker(Function& callback, std::function<void(GenericAsyncWorker*)> execute_lambda)
: GenericAsyncWorker(callback, std::move(execute_lambda)) {}
void OnOK() override {
HandleScope scope(Env());
Value parsed = ParseJson(Env(), result_);
if (Env().IsExceptionPending()) {
Error exception = Env().GetAndClearPendingException();
Callback().Call({exception.Value(), Env().Undefined()});
return;
}
Callback().Call({Env().Null(), parsed});
}
};
class ResultUnwrapAsyncWorker : public GenericAsyncWorker
{
public:
ResultUnwrapAsyncWorker(Function& callback, std::function<void(GenericAsyncWorker*)> execute_lambda)
: GenericAsyncWorker(callback, std::move(execute_lambda)) {}
void OnOK() override {
HandleScope scope(Env());
Value parsed = ParseJson(Env(), result_);
if (Env().IsExceptionPending()) {
Error exception = Env().GetAndClearPendingException();
Callback().Call({exception.Value(), Env().Undefined()});
return;
}
Object parsed_obj = parsed.As<Object>();
Value type_val = parsed_obj.Get("type");
if (!type_val.IsString()) {
Error err = Error::New(Env(), "Invalid response type");
Callback().Call({err.Value(), Env().Undefined()});
return;
}
std::string type = type_val.As<String>().Utf8Value();
if (type == "error") {
Value err_val = parsed_obj.Get("writeError");
std::string err_msg = err_val.IsString() ? err_val.As<String>().Utf8Value() : "Unknown error";
Error err = Error::New(Env(), err_msg);
Callback().Call({err.Value(), Env().Undefined()});
} else {
Value cryptoArgs = parsed_obj.Get("cryptoArgs");
if (cryptoArgs.IsUndefined()) {
Error err = Error::New(Env(), "Missing cryptoArgs");
Callback().Call({err.Value(), Env().Undefined()});
return;
}
Callback().Call({Env().Null(), cryptoArgs});
}
}
};
class MigrateAsyncWorker : public GenericAsyncWorker
{
public:
MigrateAsyncWorker(Function& callback, std::function<void(GenericAsyncWorker*)> execute_lambda)
: GenericAsyncWorker(callback, execute_lambda) {}
void SetCtrl(uintptr_t ctrl) {
ctrl_ = ctrl;
}
void OnOK() override {
HandleScope scope(Env());
Value parsed = ParseJson(Env(), result_);
if (Env().IsExceptionPending()) {
Error exception = Env().GetAndClearPendingException();
Callback().Call({exception.Value(), Env().Undefined()});
return;
}
Object parsed_obj = parsed.As<Object>();
Value type_val = parsed_obj.Get("type");
if (type_val.IsString() && type_val.As<String>().Utf8Value() == "ok") {
Callback().Call({Env().Null(), BigInt::New(Env(), static_cast<uint64_t>(ctrl_))});
} else {
Error err = Error::New(Env(), "Database or migration error (see dbMigrationError property)");
err.Set("dbMigrationError", parsed_obj);
Callback().Call({err.Value(), Env().Undefined()});
}
}
private:
uintptr_t ctrl_ = 0;
};
class BinaryAsyncWorker : public AsyncWorker
{
public:
BinaryAsyncWorker(Function& callback, std::function<void(BinaryAsyncWorker*)> execute_lambda)
: AsyncWorker(callback), execute_lambda_(std::move(execute_lambda)) {}
void Execute() override {
execute_lambda_(this);
}
void OnOK() override {
HandleScope scope(Env());
char* data_ptr = original_buf + 5;
auto finalizer = [](Napi::Env env, char* finalize_data, char* orig) {
free(orig);
};
Napi::Buffer<char> buffer = Napi::Buffer<char>::New(Env(), data_ptr, binary_len, finalizer, original_buf);
Callback().Call({Env().Null(), buffer});
}
void OnError(const Error& e) override {
HandleScope scope(Env());
Callback().Call({e.Value(), Env().Undefined()});
}
void SetWorkerError(const std::string& msg) {
SetError(msg);
}
public:
char* original_buf = nullptr;
size_t binary_len = 0;
private:
std::function<void(BinaryAsyncWorker*)> execute_lambda_;
};
class WriteAsyncWorker : public ResultUnwrapAsyncWorker
{
public:
WriteAsyncWorker(Function& callback, std::function<void(GenericAsyncWorker*)> execute_lambda, ArrayBuffer ab)
: ResultUnwrapAsyncWorker(callback, std::move(execute_lambda)), ab_ref(Reference<ArrayBuffer>::New(ab, 1)) {}
Reference<ArrayBuffer> ab_ref;
};
Napi::Promise CreatePromiseAndCallback(Env env, Function& cb_out) {
Promise::Deferred deferred = Promise::Deferred::New(env);
cb_out = Function::New(env, [deferred](const CallbackInfo& args) {
if (!args[0].IsNull() && !args[0].IsUndefined()) {
deferred.Reject(args[0]);
} else {
deferred.Resolve(args[1]);
}
});
return deferred.Promise();
}
Value ChatMigrateInit(const CallbackInfo& args)
{
Env env = args.Env();
if (args.Length() < 3 || !args[0].IsString() || !args[1].IsString() || !args[2].IsString()) {
TypeError::New(env, "Expected three string arguments").ThrowAsJavaScriptException();
return env.Undefined();
}
std::string path = args[0].As<String>().Utf8Value();
std::string key = args[1].As<String>().Utf8Value();
std::string confirm = args[2].As<String>().Utf8Value();
Function cb;
Promise promise = CreatePromiseAndCallback(env, cb);
auto execute_lambda = [path, key, confirm](GenericAsyncWorker* worker) {
chat_ctrl ctrl = nullptr;
char* c_res = chat_migrate_init(path.c_str(), key.c_str(), confirm.c_str(), &ctrl);
if (c_res == nullptr) {
worker->SetWorkerError("chat_migrate_init failed");
return;
}
std::string res = c_res;
free(c_res);
auto mworker = static_cast<MigrateAsyncWorker*>(worker);
mworker->SetCtrl(reinterpret_cast<uintptr_t>(ctrl));
worker->SetResult(res);
};
MigrateAsyncWorker* worker = new MigrateAsyncWorker(cb, std::move(execute_lambda));
worker->Queue();
return promise;
}
class CloseStoreAsyncWorker : public GenericAsyncWorker
{
public:
CloseStoreAsyncWorker(Function& callback, std::function<void(GenericAsyncWorker*)> execute_lambda)
: GenericAsyncWorker(callback, std::move(execute_lambda)) {}
void OnOK() override {
HandleScope scope(Env());
if (result_.empty()) {
Callback().Call({Env().Null(), Env().Undefined()});
} else {
Error err = Error::New(Env(), result_);
Callback().Call({err.Value(), Env().Undefined()});
}
}
};
Value ChatCloseStore(const CallbackInfo& args)
{
Env env = args.Env();
if (args.Length() < 1 || !args[0].IsBigInt()) {
TypeError::New(env, "Expected bigint (ctrl)").ThrowAsJavaScriptException();
return env.Undefined();
}
bool lossless;
chat_ctrl ctrl = reinterpret_cast<chat_ctrl>(args[0].As<BigInt>().Int64Value(&lossless));
if (!lossless) {
TypeError::New(env, "BigInt too large for ctrl").ThrowAsJavaScriptException();
return env.Undefined();
}
Function cb;
Promise promise = CreatePromiseAndCallback(env, cb);
auto execute_lambda = [ctrl](GenericAsyncWorker* worker) {
char* c_res = chat_close_store(ctrl);
if (c_res == nullptr) {
worker->SetWorkerError("chat_close_store failed");
return;
}
std::string res = c_res;
free(c_res);
worker->SetResult(res);
};
CloseStoreAsyncWorker* worker = new CloseStoreAsyncWorker(cb, std::move(execute_lambda));
worker->Queue();
return promise;
}
Value ChatSendCmd(const CallbackInfo& args)
{
Env env = args.Env();
if (args.Length() < 2 || !args[0].IsBigInt() || !args[1].IsString()) {
TypeError::New(env, "Expected bigint (ctrl) and string (cmd)").ThrowAsJavaScriptException();
return env.Undefined();
}
bool lossless;
chat_ctrl ctrl = reinterpret_cast<chat_ctrl>(args[0].As<BigInt>().Int64Value(&lossless));
if (!lossless) {
TypeError::New(env, "BigInt too large for ctrl").ThrowAsJavaScriptException();
return env.Undefined();
}
std::string cmd = args[1].As<String>().Utf8Value();
Function cb;
Promise promise = CreatePromiseAndCallback(env, cb);
auto execute_lambda = [ctrl, cmd](GenericAsyncWorker* worker) {
char* c_res = chat_send_cmd(ctrl, cmd.c_str());
if (c_res == nullptr) {
worker->SetWorkerError("chat_send_cmd failed");
return;
}
std::string res = c_res;
free(c_res);
if (res.empty()) {
worker->SetWorkerError("chat_send_cmd failed");
return;
}
worker->SetResult(res);
};
JsonAsyncWorker* worker = new JsonAsyncWorker(cb, std::move(execute_lambda));
worker->Queue();
return promise;
}
Value ChatRecvMsgWait(const CallbackInfo& args)
{
Env env = args.Env();
if (args.Length() < 2 || !args[0].IsBigInt() || !args[1].IsNumber()) {
TypeError::New(env, "Expected bigint (ctrl), number (wait)").ThrowAsJavaScriptException();
return env.Undefined();
}
bool lossless;
chat_ctrl ctrl = reinterpret_cast<chat_ctrl>(args[0].As<BigInt>().Int64Value(&lossless));
if (!lossless) {
TypeError::New(env, "BigInt too large for ctrl").ThrowAsJavaScriptException();
return env.Undefined();
}
int wait = static_cast<int>(args[1].As<Number>().Int32Value());
Function cb;
Promise promise = CreatePromiseAndCallback(env, cb);
auto execute_lambda = [ctrl, wait](GenericAsyncWorker* worker) {
char* c_res = chat_recv_msg_wait(ctrl, wait);
if (c_res == nullptr) {
worker->SetWorkerError("chat_recv_msg_wait failed");
return;
}
std::string res = c_res;
free(c_res);
if (res.empty()) {
worker->SetWorkerError("chat_recv_msg_wait failed");
return;
}
worker->SetResult(res);
};
JsonAsyncWorker* worker = new JsonAsyncWorker(cb, std::move(execute_lambda));
worker->Queue();
return promise;
}
Value ChatWriteFile(const CallbackInfo& args)
{
Env env = args.Env();
if (args.Length() < 3 || !args[0].IsBigInt() || !args[1].IsString() || !args[2].IsArrayBuffer()) {
TypeError::New(env, "Expected bigint (ctrl), string (path), ArrayBuffer").ThrowAsJavaScriptException();
return env.Undefined();
}
bool lossless;
chat_ctrl ctrl = reinterpret_cast<chat_ctrl>(args[0].As<BigInt>().Int64Value(&lossless));
if (!lossless) {
TypeError::New(env, "BigInt too large for ctrl").ThrowAsJavaScriptException();
return env.Undefined();
}
std::string path = args[1].As<String>().Utf8Value();
ArrayBuffer ab = args[2].As<ArrayBuffer>();
char* data = static_cast<char*>(ab.Data());
int len = static_cast<int>(ab.ByteLength());
Function cb;
Promise promise = CreatePromiseAndCallback(env, cb);
auto execute_lambda = [ctrl, path, data, len](GenericAsyncWorker* worker) {
char* c_res = chat_write_file(ctrl, path.c_str(), data, len);
if (c_res == nullptr) {
worker->SetWorkerError("chat_write_file failed");
return;
}
std::string res = c_res;
free(c_res);
if (res.empty()) {
worker->SetWorkerError("chat_write_file failed");
return;
}
worker->SetResult(res);
};
WriteAsyncWorker* worker = new WriteAsyncWorker(cb, std::move(execute_lambda), ab);
worker->Queue();
return promise;
}
Value ChatReadFile(const CallbackInfo& args)
{
Env env = args.Env();
if (args.Length() < 3 || !args[0].IsString() || !args[1].IsString() || !args[2].IsString()) {
TypeError::New(env, "Expected three strings (path, key, nonce)").ThrowAsJavaScriptException();
return env.Undefined();
}
std::string path = args[0].As<String>().Utf8Value();
std::string key = args[1].As<String>().Utf8Value();
std::string nonce = args[2].As<String>().Utf8Value();
Function cb;
Promise promise = CreatePromiseAndCallback(env, cb);
auto execute_lambda = [path, key, nonce](BinaryAsyncWorker* worker) {
char* buf = chat_read_file(path.c_str(), key.c_str(), nonce.c_str());
if (buf == nullptr) {
worker->SetWorkerError("chat_read_file failed");
return;
}
char status = buf[0];
if (status == 1) {
std::string err = buf + 1;
free(buf);
worker->SetWorkerError(err);
return;
} else if (status == 0) {
uint32_t len = *(uint32_t*)(buf + 1);
worker->original_buf = buf;
worker->binary_len = len;
} else {
free(buf);
worker->SetWorkerError("Unexpected status from chat_read_file");
return;
}
};
BinaryAsyncWorker* worker = new BinaryAsyncWorker(cb, std::move(execute_lambda));
worker->Queue();
return promise;
}
Value ChatEncryptFile(const CallbackInfo& args)
{
Env env = args.Env();
if (args.Length() < 3 || !args[0].IsBigInt() || !args[1].IsString() || !args[2].IsString()) {
TypeError::New(env, "Expected bigint (ctrl), two strings (fromPath, toPath)").ThrowAsJavaScriptException();
return env.Undefined();
}
bool lossless;
chat_ctrl ctrl = reinterpret_cast<chat_ctrl>(args[0].As<BigInt>().Int64Value(&lossless));
if (!lossless) {
TypeError::New(env, "BigInt too large for ctrl").ThrowAsJavaScriptException();
return env.Undefined();
}
std::string fromPath = args[1].As<String>().Utf8Value();
std::string toPath = args[2].As<String>().Utf8Value();
Function cb;
Promise promise = CreatePromiseAndCallback(env, cb);
auto execute_lambda = [ctrl, fromPath, toPath](GenericAsyncWorker* worker) {
char* c_res = chat_encrypt_file(ctrl, fromPath.c_str(), toPath.c_str());
if (c_res == nullptr) {
worker->SetWorkerError("chat_encrypt_file failed");
return;
}
std::string res = c_res;
free(c_res);
if (res.empty()) {
worker->SetWorkerError("chat_encrypt_file failed");
return;
}
worker->SetResult(res);
};
ResultUnwrapAsyncWorker* worker = new ResultUnwrapAsyncWorker(cb, std::move(execute_lambda));
worker->Queue();
return promise;
}
Value ChatDecryptFile(const CallbackInfo& args)
{
Env env = args.Env();
if (args.Length() < 4 || !args[0].IsString() || !args[1].IsString() || !args[2].IsString() || !args[3].IsString()) {
TypeError::New(env, "Expected four strings (fromPath, key, nonce, toPath)").ThrowAsJavaScriptException();
return env.Undefined();
}
std::string fromPath = args[0].As<String>().Utf8Value();
std::string key = args[1].As<String>().Utf8Value();
std::string nonce = args[2].As<String>().Utf8Value();
std::string toPath = args[3].As<String>().Utf8Value();
Function cb;
Promise promise = CreatePromiseAndCallback(env, cb);
auto execute_lambda = [fromPath, key, nonce, toPath](GenericAsyncWorker* worker) {
char* c_res = chat_decrypt_file(fromPath.c_str(), key.c_str(), nonce.c_str(), toPath.c_str());
std::string res = c_res ? c_res : "";
free(c_res);
if (!res.empty()) {
worker->SetWorkerError(res);
return;
}
worker->SetResult("ok");
};
GenericAsyncWorker* worker = new GenericAsyncWorker(cb, std::move(execute_lambda));
worker->Queue();
return promise;
}
Object Init(Env env, Object exports) {
haskell_init();
exports.Set("chatMigrateInit", Function::New(env, ChatMigrateInit));
exports.Set("chatCloseStore", Function::New(env, ChatCloseStore));
exports.Set("chatSendCmd", Function::New(env, ChatSendCmd));
exports.Set("chatRecvMsgWait", Function::New(env, ChatRecvMsgWait));
exports.Set("chatWriteFile", Function::New(env, ChatWriteFile));
exports.Set("chatReadFile", Function::New(env, ChatReadFile));
exports.Set("chatEncryptFile", Function::New(env, ChatEncryptFile));
exports.Set("chatDecryptFile", Function::New(env, ChatDecryptFile));
return exports;
}
NODE_API_MODULE(simplex, Init)
}