Files
ECAP_Server/module/Local_Server/Data_Source/Data_Source.h
T
2026-07-14 18:10:23 +08:00

409 lines
14 KiB
C++

#pragma once
#include <string_view>
#include "Data_Source_Handler.h"
namespace Psc {
class SM_RingBuffer;
}
class Data_Source;
std::shared_ptr<Data_Source> create_from_json(const Psc::JSON* that_json);
class Input_Format {
public:
Input_Format() {
test_v.resize(static_cast<size_t>(SSR::Downlink_Format::Unknown));
}
Psc::JSON to_json() {
std::lock_guard g(mtx);
Psc::JSON ret = Psc::JSON::object();
for (auto e : magic_enum::enum_values<SSR::Downlink_Format>()) {
std::string_view value_view = magic_enum::enum_name(e);
std::string value(value_view.begin(), value_view.end());
if (value == Psc::to_string(SSR::Downlink_Format::Unknown)) continue;
auto ev = static_cast<std::uint8_t>(e);
bool it = test_v[ev];
ret.append({value, it});
}
return ret;
}
void from_json(const Psc::JSON* json) {
std::lock_guard g(mtx);
for (auto e : magic_enum::enum_values<SSR::Downlink_Format>()) {
std::string_view value_view = magic_enum::enum_name(e);
std::string value(value_view.begin(), value_view.end());
if (value == Psc::to_string(SSR::Downlink_Format::Unknown)) continue;
auto use = json->get_bool(value);
auto ev = static_cast<std::uint8_t>(e);
test_v[ev] = use;
}
}
bool test(SSR::Downlink_Format df) {
std::lock_guard g(mtx);
auto dfv = static_cast<std::uint8_t>(df);
if (dfv >= static_cast<std::uint8_t>(SSR::Downlink_Format::Unknown)) return false;
return test_v[dfv];
}
bool test(std::uint8_t dfv) {
std::lock_guard g(mtx);
if (dfv >= static_cast<std::uint8_t>(SSR::Downlink_Format::Unknown)) return false;
return test_v[dfv];
}
protected:
std::mutex mtx;
std::vector<bool> test_v;
};
class Data_Source_Data {
public:
Psc::Copyable_Atomic<bool> base_station_show{};
Psc::Copyable_Atomic<bool> aircraft_show{};
std::string color = "#1677ff";
int aircraft_pixel_size{};
double lat{};
double lon{};
double alt{};
Psc::Copyable_Atomic<bool> update_form_gps{};
Psc::Copyable_Atomic<bool> show_icao = true;
Psc::Copyable_Atomic<bool> show_call_sign = false;
Psc::Copyable_Atomic<bool> show_fly_status = false;
Psc::Copyable_Atomic<bool> keep_mode = true;
PSC_USE_JSON
};
class Data_Source : public std::enable_shared_from_this<Data_Source>,
public Data_Source_Handler, public Data_Source_Data {
public:
std::shared_ptr<Data_Source> that();
virtual asio::awaitable<std::string> read_coro() {
co_return "";
}
bool registered() const;
virtual Psc::JSON get_custom_state_json() = 0;
Psc::JSON get_state();
std::string last_char; // 用于处理奇数字节
Data_Source();
asio::awaitable<void> loop_coro() final;
std::shared_ptr<SSR::Mode_Msg> last_prase_msg = nullptr;
virtual asio::awaitable<void> handle_in_loop_coro() {
co_return;
}
Frequency_Limit statistic_fl;
std::string thread_key() const;
Psc::JSON statistic_json() {
Psc::JSON ret = With_Loop_Coro::to_base_json();
ret.append({"aircraft_total", get_aircraft_num()});
ret.append({"aircraft_with_position", have_pos_aircraft_num});
ret.append({"mode_ac_statistic", mode_ac_statistic.to_json()});
ret.append({"mode_s_statistic", mode_s_statistic.to_json()});
ret.append({"all_connect_feed", get_all_connect_feed_status()});
return ret;
}
virtual Psc::JSON to_json() {
return With_Loop_Coro::to_base_json() += Data_Source_Data::to_base_json();
}
virtual void from_json(const Psc::JSON* that_json) {
With_Loop_Coro::from_base_json(that_json);
Data_Source_Data::from_base_json(that_json);
}
std::string buffer;
std::atomic_bool ask_sleep = false;
};
class TCP_Client_Data_Source_Data {
public:
std::string ip;
std::uint16_t port{};
PSC_USE_JSON
};
class TCP_Client_Data_Source : public Data_Source, public TCP_Client_Data_Source_Data {
public:
asio::awaitable<void> handle_in_loop_coro() override {
co_await cli.tick_coro();
co_return;
}
Psc::JSON get_custom_state_json() override {
auto& state = cli.state;
return VAR_JSON_1(state);
}
Psc::asio_socket::TCP_Client_Coro cli;
~TCP_Client_Data_Source() override = default;
TCP_Client_Data_Source() {
type = "TCP_Client_Data_Source";
}
asio::awaitable<void> _open() override {
Psc::asio_socket::Sockaddr_In addr;
addr.ip = ip;
addr.port = port;
cli.set_dest_address(addr);
cli.create();
co_await cli.connect_coro();
co_return;
}
asio::awaitable<void> _close() override {
co_await cli.close_coro();
co_return;
}
Psc::JSON to_json() override {
return Data_Source::to_json() += TCP_Client_Data_Source_Data::to_base_json();
}
void from_json(const Psc::JSON* that_json) override {
Data_Source::from_json(that_json);
TCP_Client_Data_Source_Data::from_base_json(that_json);
}
asio::awaitable<std::string> read_coro() override {
co_return co_await cli.read_coro();
}
};
class Serial_Data_Source_Data {
public:
std::string port_name;
Baud_Rate_Type baud_rate{};
PSC_USE_JSON
};
class Serial_Data_Source : public Data_Source, public Serial_Data_Source_Data {
public:
Psc::JSON get_custom_state_json() override {
return Psc::JSON::object();
}
Serial_Data_Source() {
this->type = "Serial_Data_Source";
}
asio::awaitable<void> _open() override {
serial = std::make_unique<Psc::serial::Serial_Coro>();
serial->set_serial_name(port_name);
serial->set_baud_rate(baud_rate);
serial->set_parity(Psc::serial::Parity::NoParity);
serial->set_data_bits(Psc::serial::DataBits::Data8);
serial->set_stop_bits(Psc::serial::StopBits::OneStop);
serial->set_flow_control(Psc::serial::FlowControl::HardwareControl);
serial->set_buffer_byte_size(10 * 1024);
bool ok = serial->open();
if (!ok) {
std::cerr << "createSerial " + port_name + ":" +
std::to_string(baud_rate) + " 打开串口失败!\n";
}
else {
// std::cerr << "createSerial " + serial_name + ":" +
// std::to_string(baud_rate) + " 打开串口成功!\n";
}
co_return;
}
asio::awaitable<void> _close() override {
if (serial) serial->close();
co_return;
}
asio::awaitable<void> handle_in_loop_coro() override {
if (serial) {
co_await serial->tick_coro();
}
co_return;
}
asio::awaitable<std::string> read_coro() override {
if (!serial) {
co_return "";
}
co_return co_await serial->read_coro();
}
Psc::JSON to_json() override {
return Data_Source::to_json() += Serial_Data_Source_Data::to_base_json();
}
void from_json(const Psc::JSON* that_json) override {
Data_Source::from_json(that_json);
Serial_Data_Source_Data::from_base_json(that_json);
}
std::unique_ptr<Psc::serial::Serial_Coro> serial{};
~Serial_Data_Source() override {
if (serial) {
serial->close();
}
}
};
enum class File_Data_Type {
SIMPLE_BIN_Blank, // 没有1a转义?
BIN_Blank_Text,
AVR,
BIN_Text,
BIN_Blank_One_Line_With_Escape,
BIN_Blank_One_Line_No_Escape,
BIN,
Unknown
// 纯粹的二进制
};
enum Play_Mode { one, loop, analysis, time_batch };
class File_Data_Source_Data {
public:
std::string file_path;
File_Data_Type data_type = File_Data_Type::BIN_Blank_Text;
Play_Mode play_mode = Play_Mode::one;
PSC_USE_JSON
};
class File_Data_Source : public Data_Source, public File_Data_Source_Data {
public:
bool have_report_play_back_all_success = false;
std::string state = "null";
Psc::JSON get_custom_state_json() override {
auto cur_virtual_time = player_clock.get_cur_time_point();
auto playback_speed_rate = player_clock.playback_speed_rate;
return VAR_JSON_5(cur_virtual_time, playback_speed_rate, state, index,
part_infos.size());
}
File_Data_Source() {
this->type = "File_Data_Source";
}
~File_Data_Source() override = default;
void before_handle_msg(std::shared_ptr<SSR::Mode_Msg>& msg) override;
struct Cache_Msg {
explicit Cache_Msg(std::shared_ptr<SSR::Mode_S_Msg> msg) : msg(std::move(msg)) {}
SSR::Play_Back_Time_Point time() const {
return SSR::Play_Back_Time_Point{day_num, msg->mlat_timestamp.daysec};
}
std::uint64_t day_num = 0;
std::shared_ptr<SSR::Mode_S_Msg> msg;
};
Player_Clock player_clock;
std::shared_ptr<Cache_Msg> pre_cache = nullptr;
std::deque<std::shared_ptr<Cache_Msg>> cache_list;
std::string get_true_file_path() const {
return Psc::get_abs_path(file_path);
}
asio::awaitable<void> _close() override;
asio::awaitable<void> _open() override;
std::vector<std::string> readBinaryFileAsString(std::string_view filepath,
size_t part_size);
void from_json(const Psc::JSON* that_json) override {
Data_Source::from_json(that_json);
File_Data_Source_Data::from_base_json(that_json);
}
Psc::JSON to_json() override {
return Data_Source::to_json() += File_Data_Source_Data::to_base_json();
}
void origin_data_transform_mode_data(std::string& data) override;
void handle_mode_s(std::shared_ptr<SSR::Mode_S_Msg> msg) override;
protected:
std::optional<std::string> get_raw_line(int& ret_index);
long long index = 0;
std::vector<std::string> part_infos;
std::mutex mtx;
};
class Dll_Data_Source_Data {
public:
std::string library_path;
std::string function_name;
File_Data_Type data_type = File_Data_Type::BIN_Blank_Text;
std::size_t buffer_size{};
PSC_USE_JSON
};
class Dll_Data_Source : public Data_Source, public Dll_Data_Source_Data {
public:
Psc::JSON get_custom_state_json() override {
auto ret = VAR_JSON_1(state);
ret.append({"read_vaild_len", vs.to_string()});
return ret;
}
Psc::Value_Statistics vs;
Dll_Data_Source() {
this->type = "Dll_Data_Source";
}
~Dll_Data_Source() override = default;
std::vector<std::uint8_t> buffer;
void from_json(const Psc::JSON* that_json) override {
Data_Source::from_json(that_json);
Dll_Data_Source_Data::from_base_json(that_json);
buffer.resize(buffer_size);
}
Psc::JSON to_json() override {
return Data_Source::to_json() += Dll_Data_Source_Data::to_base_json();
}
void* lib{};
using Func_Type = size_t (*)(char* buf, std::size_t max_len);
// using Func_Type = std::uint16_t (*)(char *buf, std::uint16_t max_len);
Func_Type read_func_ptr{};
using Call_Back = void (*)(char* buf, std::size_t len);
using set_Call_back = void (*)(Call_Back);
std::string state;
asio::awaitable<void> _close() override {
Psc::free_library(lib);
co_return;
}
asio::awaitable<void> _open() override {
{
auto r = Psc::try_load_library(Psc::get_abs_path(library_path));
if (!r) {
state = r.error().message();
co_return;
}
lib = r.value();
}
{
auto r = Psc::try_load_function(lib, function_name);
if (!r) {
state = r.error().message();
std::cout << LOG_POS << " [" << function_name << "] 函数指针加载失败!"
<< std::endl;
co_return;
}
read_func_ptr = (Func_Type)r.value();
}
state = "加载成功";
co_return;
}
void origin_data_transform_mode_data(std::string& data) override;
};
class Shared_Memory_Data_Source_Data {
public:
std::string shared_memory_name;
std::uint64_t shared_memory_size{};
File_Data_Type data_type = File_Data_Type::BIN_Blank_Text;
PSC_USE_JSON
};
class Shared_Memory_Data_Source : public Data_Source, public Shared_Memory_Data_Source_Data {
public:
Psc::JSON get_custom_state_json() override {
return Psc::JSON::object();
}
void from_json(const Psc::JSON* that_json) override {
Data_Source::from_json(that_json);
Shared_Memory_Data_Source_Data::from_base_json(that_json);
}
Psc::JSON to_json() override {
return Data_Source::to_json() += Shared_Memory_Data_Source_Data::to_base_json();
}
asio::awaitable<void> _open() override;
asio::awaitable<void> _close() override;
void origin_data_transform_mode_data(std::string& data) override;
protected:
std::unique_ptr<Psc::SM_RingBuffer> sm;
};
inline std::shared_ptr<Data_Source> create_data_source_from_type(std::string_view t) {
std::shared_ptr<Data_Source> ret{};
if (t == "Serial_Data_Source") ret = std::make_shared<Serial_Data_Source>();
else if (t == "TCP_Client_Data_Source") ret = std::make_shared<TCP_Client_Data_Source>();
else if (t == "File_Data_Source") ret = std::make_shared<File_Data_Source>();
else if (t == "Dll_Data_Source") ret = std::make_shared<Dll_Data_Source>();
else if (t == "Shared_Memory_Data_Source") ret = std::make_shared<Shared_Memory_Data_Source>();
else {
std::cout << "未知?Data_Source type类型!" << std::endl;
throw std::invalid_argument("unknown Data_Source type: " + std::string(t));
}
return ret;
}
struct Data_Source_Config {
Ordered_Map<std::string, std::shared_ptr<Data_Source>> map;
Data_Source_Config() = default;
void init(const Psc::JSON* that_json) {
auto list = that_json->get("list");
for (auto& it : list->children) {
auto ds = create_from_json(&it);
map.push_back(ds);
}
}
Psc::JSON list() {
auto connect_json = Psc::JSON::array();
for (auto& it : map.list()) {
connect_json.children.emplace_back(it->to_json());
}
return connect_json;
}
Psc::JSON to_json() {
Psc::JSON ret = Psc::JSON::object();
ret.append({"list", list()});
return ret;
}
void server(Global* g);
};