mirror of
https://github.com/jkcoxson/idevice.git
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115 lines
3.7 KiB
C++
115 lines
3.7 KiB
C++
// Jackson Coxson
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#include <cstdlib>
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#include <iostream>
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#include <string>
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#include <thread>
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#include <idevice++/core_device_proxy.hpp>
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#include <idevice++/ffi.hpp>
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#include <idevice++/location_simulation.hpp>
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#include <idevice++/provider.hpp>
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#include <idevice++/readwrite.hpp>
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#include <idevice++/remote_server.hpp>
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#include <idevice++/rsd.hpp>
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#include <idevice++/usbmuxd.hpp>
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using namespace IdeviceFFI;
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[[noreturn]]
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static void die(const char* msg, const FfiError& e) {
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std::cerr << msg << ": " << e.message << "\n";
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std::exit(1);
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}
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int main(int argc, char** argv) {
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// Usage:
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// simulate_location clear
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// simulate_location set <lat> <lon>
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bool do_clear = false;
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Option<double> lat, lon;
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if (argc == 2 && std::string(argv[1]) == "clear") {
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do_clear = true;
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} else if (argc == 4 && std::string(argv[1]) == "set") {
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lat = std::stod(argv[2]);
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lon = std::stod(argv[3]);
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} else {
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std::cerr << "Usage:\n"
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<< " " << argv[0] << " clear\n"
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<< " " << argv[0] << " set <latitude> <longitude>\n";
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return 2;
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}
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// 1) Connect to usbmuxd and pick first device
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auto mux = UsbmuxdConnection::default_new(/*tag*/ 0).expect("failed to connect to usbmuxd");
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auto devices = mux.get_devices().expect("failed to list devices");
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if (devices.empty()) {
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std::cerr << "no devices connected\n";
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return 1;
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}
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auto& dev = (devices)[0];
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auto udid = dev.get_udid();
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if (udid.is_none()) {
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std::cerr << "device has no UDID\n";
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return 1;
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}
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auto mux_id = dev.get_id();
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if (mux_id.is_none()) {
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std::cerr << "device has no mux id\n";
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return 1;
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}
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// 2) Provider via default usbmuxd addr
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auto addr = UsbmuxdAddr::default_new();
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const uint32_t tag = 0;
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const std::string label = "app_service-jkcoxson";
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auto provider =
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Provider::usbmuxd_new(std::move(addr), tag, udid.unwrap(), mux_id.unwrap(), label)
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.expect("failed to create provider");
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// 3) CoreDeviceProxy
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auto cdp = CoreDeviceProxy::connect(provider).unwrap_or_else(
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[](FfiError e) -> CoreDeviceProxy { die("failed to connect CoreDeviceProxy", e); });
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auto rsd_port = cdp.get_server_rsd_port().unwrap_or_else(
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[](FfiError err) -> uint16_t { die("failed to get server RSD port", err); });
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// 4) Create software tunnel adapter (consumes proxy)
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auto adapter =
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std::move(cdp).create_tcp_adapter().expect("failed to create software tunnel adapter");
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// 5) Connect adapter to RSD → ReadWrite stream
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auto stream = adapter.connect(rsd_port).expect("failed to connect RSD stream");
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// 6) RSD handshake (consumes stream)
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auto rsd = RsdHandshake::from_socket(std::move(stream)).expect("failed RSD handshake");
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// 8) RemoteServer over RSD (borrows adapter + handshake)
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auto rs = RemoteServer::connect_rsd(adapter, rsd).expect("failed to connect to RemoteServer");
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// 9) LocationSimulation client (borrows RemoteServer)
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auto sim = LocationSimulation::create(rs).expect("failed to create LocationSimulation client");
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if (do_clear) {
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sim.clear().expect("clear failed");
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std::cout << "Location cleared!\n";
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return 0;
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}
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// set path
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sim.set(lat.unwrap(), lon.unwrap()).expect("set failed");
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std::cout << "Location set to (" << lat.unwrap() << ", " << lon.unwrap() << ")\n";
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std::cout << "Press Ctrl-C to stop\n";
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// keep process alive like the Rust example
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for (;;) {
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sim.set(lat.unwrap(), lon.unwrap()).expect("set failed");
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std::this_thread::sleep_for(std::chrono::seconds(3));
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}
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}
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