mirror of
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249 lines
6.9 KiB
C++
249 lines
6.9 KiB
C++
// SPDX-License-Identifier: MIT
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//
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// EmulationStation Desktop Edition
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// InputConfig.cpp
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//
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// Input device configuration functions.
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//
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#include "InputConfig.h"
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#include "Log.h"
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#include <pugixml.hpp>
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// Some utility functions.
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std::string inputTypeToString(InputType type)
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{
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switch (type) {
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case TYPE_AXIS:
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return "axis";
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case TYPE_BUTTON:
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return "button";
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case TYPE_HAT:
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return "hat";
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case TYPE_KEY:
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return "key";
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case TYPE_CEC_BUTTON:
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return "cec-button";
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default:
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return "error";
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}
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}
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InputType stringToInputType(const std::string& type)
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{
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if (type == "axis")
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return TYPE_AXIS;
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if (type == "button")
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return TYPE_BUTTON;
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if (type == "hat")
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return TYPE_HAT;
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if (type == "key")
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return TYPE_KEY;
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if (type == "cec-button")
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return TYPE_CEC_BUTTON;
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return TYPE_COUNT;
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}
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std::string toLower(std::string str)
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{
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for (unsigned int i = 0; i < str.length(); i++)
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str[i] = static_cast<char>(tolower(str[i]));
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return str;
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}
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// End of utility functions.
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InputConfig::InputConfig(
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int deviceId,
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const std::string& deviceName,
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const std::string& deviceGUID)
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: mDeviceId(deviceId),
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mDeviceName(deviceName),
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mDeviceGUID(deviceGUID),
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mDefaultConfigFlag(false)
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{
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}
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void InputConfig::clear()
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{
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mNameMap.clear();
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}
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bool InputConfig::isConfigured()
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{
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return mNameMap.size() > 0;
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}
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void InputConfig::mapInput(const std::string& name, Input input)
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{
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mNameMap[toLower(name)] = input;
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}
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void InputConfig::unmapInput(const std::string& name)
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{
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auto it = mNameMap.find(toLower(name));
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if (it != mNameMap.cend())
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mNameMap.erase(it);
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}
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bool InputConfig::getInputByName(const std::string& name, Input* result)
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{
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auto it = mNameMap.find(toLower(name));
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if (it != mNameMap.cend()) {
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*result = it->second;
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return true;
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}
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return false;
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}
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int InputConfig::getInputIDByName(const std::string& name)
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{
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auto it = mNameMap.find(toLower(name));
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if (it != mNameMap.cend()) {
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return it->second.id;
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}
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return -1;
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}
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bool InputConfig::isMappedTo(const std::string& name, Input input)
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{
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Input comp;
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if (!getInputByName(name, &comp))
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return false;
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if (comp.configured && comp.type == input.type && comp.id == input.id) {
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if (comp.type == TYPE_HAT)
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return (input.value == 0 || input.value & comp.value);
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if (comp.type == TYPE_AXIS)
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return input.value == 0 || comp.value == input.value;
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else
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return true;
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}
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return false;
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}
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bool InputConfig::isMappedLike(const std::string& name, Input input)
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{
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if (name == "left") {
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return isMappedTo("left", input) || isMappedTo("leftanalogleft", input) ||
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isMappedTo("rightanalogleft", input);
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}
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else if (name == "right") {
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return isMappedTo("right", input) || isMappedTo("leftanalogright", input) ||
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isMappedTo("rightanalogright", input);
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}
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else if (name == "up") {
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return isMappedTo("up", input) || isMappedTo("leftanalogup", input) ||
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isMappedTo("rightanalogup", input);
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}
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else if (name == "down") {
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return isMappedTo("down", input) || isMappedTo("leftanalogdown", input) ||
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isMappedTo("rightanalogdown", input);
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}
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else if (name == "leftshoulder") {
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return isMappedTo("leftshoulder", input) || isMappedTo("pageup", input);
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}
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else if (name == "rightshoulder") {
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return isMappedTo("rightshoulder", input) || isMappedTo("pagedown", input);
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}
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else if (name == "lefttrigger") {
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return isMappedTo("lefttrigger", input) || isMappedTo("home", input);
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}
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else if (name == "righttrigger") {
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return isMappedTo("righttrigger", input) || isMappedTo("end", input);
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}
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return isMappedTo(name, input);
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}
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std::vector<std::string> InputConfig::getMappedTo(Input input)
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{
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std::vector<std::string> maps;
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typedef std::map<std::string, Input>::const_iterator it_type;
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for (it_type iterator = mNameMap.cbegin(); iterator != mNameMap.cend(); iterator++) {
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Input chk = iterator->second;
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if (!chk.configured)
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continue;
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if (chk.device == input.device && chk.type == input.type && chk.id == input.id) {
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if (chk.type == TYPE_HAT) {
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if (input.value == 0 || input.value & chk.value)
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maps.push_back(iterator->first);
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continue;
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}
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if (input.type == TYPE_AXIS) {
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if (input.value == 0 || chk.value == input.value)
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maps.push_back(iterator->first);
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}
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else {
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maps.push_back(iterator->first);
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}
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}
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}
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return maps;
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}
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void InputConfig::loadFromXML(pugi::xml_node& node)
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{
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clear();
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for (pugi::xml_node input = node.child("input"); input; input = input.next_sibling("input")) {
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std::string name = input.attribute("name").as_string();
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std::string type = input.attribute("type").as_string();
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InputType typeEnum = stringToInputType(type);
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if (typeEnum == TYPE_COUNT) {
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LOG(LogError) << "InputConfig load error - input of type \"" << type <<
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"\" is invalid! Skipping input \"" << name << "\".\n";
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continue;
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}
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int id = input.attribute("id").as_int();
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int value = input.attribute("value").as_int();
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if (value == 0) {
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LOG(LogWarning) << "InputConfig value is 0 for " <<
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type << " " << id << "!\n";
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}
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mNameMap[toLower(name)] = Input(mDeviceId, typeEnum, id, value, true);
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}
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}
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void InputConfig::writeToXML(pugi::xml_node& parent)
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{
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pugi::xml_node cfg = parent.append_child("inputConfig");
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if (mDeviceId == DEVICE_KEYBOARD) {
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cfg.append_attribute("type") = "keyboard";
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cfg.append_attribute("deviceName") = "Keyboard";
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}
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else if (mDeviceId == DEVICE_CEC) {
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cfg.append_attribute("type") = "cec";
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cfg.append_attribute("deviceName") = "CEC";
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}
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else {
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cfg.append_attribute("type") = "joystick";
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cfg.append_attribute("deviceName") = mDeviceName.c_str();
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}
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cfg.append_attribute("deviceGUID") = mDeviceGUID.c_str();
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typedef std::map<std::string, Input>::const_iterator it_type;
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for (it_type iterator = mNameMap.cbegin(); iterator != mNameMap.cend(); iterator++) {
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if (!iterator->second.configured)
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continue;
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pugi::xml_node input = cfg.append_child("input");
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input.append_attribute("name") = iterator->first.c_str();
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input.append_attribute("type") = inputTypeToString(iterator->second.type).c_str();
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input.append_attribute("id").set_value(iterator->second.id);
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input.append_attribute("value").set_value(iterator->second.value);
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}
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}
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