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input: log hid_get_feature_report return values
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e5793acd78
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7df7ac57cc
@ -279,25 +279,24 @@ void ds3_pad_handler::check_add_device(hid_device* hidDevice, std::string_view p
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u8 buf[0xFF];
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buf[0] = 0xF2;
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bool got_report = hid_get_feature_report(hidDevice, buf, 0xFF) >= 0;
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if (!got_report)
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int res = hid_get_feature_report(hidDevice, buf, 0xFF);
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if (res < 0)
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{
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ds3_log.warning("check_add_device: hid_get_feature_report 0xF2 failed! Trying again with 0x0. (result=%d, error=%s)", res, hid_error(hidDevice));
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buf[0] = 0;
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got_report = hid_get_feature_report(hidDevice, buf, 0xFF) >= 0;
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res = hid_get_feature_report(hidDevice, buf, 0xFF);
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}
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if (!got_report)
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if (res < 0)
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{
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ds3_log.error("check_add_device: hid_get_feature_report failed! Reason: %s", hid_error(hidDevice));
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ds3_log.error("check_add_device: hid_get_feature_report 0x0 failed! result=%d, error=%s", res, hid_error(hidDevice));
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hid_close(hidDevice);
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return;
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}
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device->report_id = buf[0];
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#endif
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{
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for (wchar_t ch : wide_serial)
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serial += static_cast<uchar>(ch);
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}
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if (hid_set_nonblocking(hidDevice, 1) == -1)
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{
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@ -382,9 +382,9 @@ bool ds4_pad_handler::GetCalibrationData(DS4Device* ds4Dev) const
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{
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buf[0] = 0x05;
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if (hid_get_feature_report(ds4Dev->hidDevice, buf.data(), DS4_FEATURE_REPORT_0x05_SIZE) <= 0)
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if (int res = hid_get_feature_report(ds4Dev->hidDevice, buf.data(), DS4_FEATURE_REPORT_0x05_SIZE); res <= 0)
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{
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ds4_log.error("GetCalibrationData: hid_get_feature_report 0x05 failed! Reason: %s", hid_error(ds4Dev->hidDevice));
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ds4_log.error("GetCalibrationData: hid_get_feature_report 0x05 for bluetooth controller failed! result=%d, error=%s", res, hid_error(ds4Dev->hidDevice));
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return false;
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}
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@ -408,9 +408,9 @@ bool ds4_pad_handler::GetCalibrationData(DS4Device* ds4Dev) const
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else
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{
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buf[0] = 0x02;
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if (hid_get_feature_report(ds4Dev->hidDevice, buf.data(), DS4_FEATURE_REPORT_0x02_SIZE) <= 0)
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if (int res = hid_get_feature_report(ds4Dev->hidDevice, buf.data(), DS4_FEATURE_REPORT_0x02_SIZE); res <= 0)
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{
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ds4_log.error("GetCalibrationData: hid_get_feature_report 0x02 failed! Reason: %s", hid_error(ds4Dev->hidDevice));
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ds4_log.error("GetCalibrationData: hid_get_feature_report 0x02 for wired controller failed! result=%d, error=%s", res, hid_error(ds4Dev->hidDevice));
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return false;
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}
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}
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@ -527,12 +527,13 @@ void ds4_pad_handler::check_add_device(hid_device* hidDevice, std::string_view p
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std::string serial;
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// There isnt a nice 'portable' way with hidapi to detect bt vs wired as the pid/vid's are the same
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// Let's try getting 0x81 feature report, which should will return mac address on wired, and should error on bluetooth
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// Let's try getting 0x81 feature report, which should return the mac address on wired, and should an error on bluetooth
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std::array<u8, 64> buf{};
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buf[0] = 0x81;
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if (const auto bytes_read = hid_get_feature_report(hidDevice, buf.data(), DS4_FEATURE_REPORT_0x81_SIZE); bytes_read > 0)
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int res = hid_get_feature_report(hidDevice, buf.data(), DS4_FEATURE_REPORT_0x81_SIZE);
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if (res > 0)
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{
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if (bytes_read != DS4_FEATURE_REPORT_0x81_SIZE)
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if (res != DS4_FEATURE_REPORT_0x81_SIZE)
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{
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// Controller may not be genuine. These controllers do not have feature 0x81 implemented and calibration data is in bluetooth format even in USB mode!
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ds4_log.warning("check_add_device: DS4 controller may not be genuine. Workaround enabled.");
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@ -540,9 +541,9 @@ void ds4_pad_handler::check_add_device(hid_device* hidDevice, std::string_view p
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// Read feature report 0x12 instead which is what the console uses.
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buf[0] = 0x12;
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buf[1] = 0;
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if (hid_get_feature_report(hidDevice, buf.data(), DS4_FEATURE_REPORT_0x12_SIZE) == -1)
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if (res = hid_get_feature_report(hidDevice, buf.data(), DS4_FEATURE_REPORT_0x12_SIZE); res < 0)
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{
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ds4_log.error("check_add_device: hid_get_feature_report 0x12 failed! Reason: %s", hid_error(hidDevice));
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ds4_log.error("check_add_device: hid_get_feature_report 0x12 failed! result=%d, error=%s", res, hid_error(hidDevice));
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}
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}
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@ -550,6 +551,7 @@ void ds4_pad_handler::check_add_device(hid_device* hidDevice, std::string_view p
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}
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else
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{
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ds4_log.warning("check_add_device: DS4 Bluetooth controller detected. (hid_get_feature_report 0x81 failed, result=%d, error=%s)", res, hid_error(hidDevice));
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device->bt_controller = true;
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for (wchar_t ch : wide_serial)
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serial += static_cast<uchar>(ch);
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@ -676,9 +678,9 @@ ds4_pad_handler::DataStatus ds4_pad_handler::get_data(DS4Device* device)
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// tells controller to send 0x11 reports
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std::array<u8, 64> buf_error{};
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buf_error[0] = 0x2;
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if (hid_get_feature_report(device->hidDevice, buf_error.data(), buf_error.size()) == -1)
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if (int res = hid_get_feature_report(device->hidDevice, buf_error.data(), buf_error.size()); res < 0)
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{
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ds4_log.error("GetRawData: hid_get_feature_report 0x2 failed! Reason: %s", hid_error(device->hidDevice));
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ds4_log.error("GetRawData: hid_get_feature_report 0x2 failed! result=%d, error=%s", res, hid_error(device->hidDevice));
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}
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return DataStatus::NoNewData;
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}
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@ -182,7 +182,14 @@ void dualsense_pad_handler::check_add_device(hid_device* hidDevice, std::string_
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// This will give us the bluetooth mac address of the device, regardless if we are on wired or bluetooth.
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// So we can't use this to determine if it is a bluetooth device or not.
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// Will also enable enhanced feature reports for bluetooth.
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if (hid_get_feature_report(hidDevice, buf.data(), 64) == 21)
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int res = hid_get_feature_report(hidDevice, buf.data(), 64);
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if (res < 0)
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{
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dualsense_log.error("check_add_device: hid_get_feature_report 0x09 failed! result=%d, error=%s", res, hid_error(hidDevice));
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return;
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}
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if (res == 21)
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{
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serial = fmt::format("%x%x%x%x%x%x", buf[6], buf[5], buf[4], buf[3], buf[2], buf[1]);
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device->data_mode = DualSenseDevice::DualSenseDataMode::Enhanced;
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@ -191,6 +198,8 @@ void dualsense_pad_handler::check_add_device(hid_device* hidDevice, std::string_
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{
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// We're probably on Bluetooth in this case, but for whatever reason the feature report failed.
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// This will give us a less capable fallback.
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dualsense_log.warning("check_add_device: hid_get_feature_report returned wrong size! Falling back to simple mode. (result=%d)", res);
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device->data_mode = DualSenseDevice::DualSenseDataMode::Simple;
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for (wchar_t ch : wide_serial)
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serial += static_cast<uchar>(ch);
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@ -210,14 +219,16 @@ void dualsense_pad_handler::check_add_device(hid_device* hidDevice, std::string_
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u32 fw_version{};
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buf[0] = 0x20;
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if (hid_get_feature_report(hidDevice, buf.data(), 64) == 65)
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res = hid_get_feature_report(hidDevice, buf.data(), 64);
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if (res == 65)
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{
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hw_version = read_u32(&buf[24]);
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fw_version = read_u32(&buf[28]);
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}
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else
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{
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dualsense_log.error("Could not retrieve firmware version");
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dualsense_log.error("check_add_device: hid_get_feature_report 0x20 failed! Could not retrieve firmware version! result=%d, error=%s", res, hid_error(hidDevice));
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}
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if (hid_set_nonblocking(hidDevice, 1) == -1)
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@ -413,9 +424,9 @@ bool dualsense_pad_handler::get_calibration_data(DualSenseDevice* dualsense_devi
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{
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buf[0] = 0x05;
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if (hid_get_feature_report(dualsense_device->hidDevice, buf.data(), DUALSENSE_CALIBRATION_REPORT_SIZE) <= 0)
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if (int res = hid_get_feature_report(dualsense_device->hidDevice, buf.data(), DUALSENSE_CALIBRATION_REPORT_SIZE); res <= 0)
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{
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dualsense_log.error("get_calibration_data: hid_get_feature_report 0x05 failed! Reason: %s", hid_error(dualsense_device->hidDevice));
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dualsense_log.error("get_calibration_data: hid_get_feature_report 0x05 for bluetooth controller failed! result=%d, error=%s", res, hid_error(dualsense_device->hidDevice));
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return false;
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}
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@ -440,9 +451,9 @@ bool dualsense_pad_handler::get_calibration_data(DualSenseDevice* dualsense_devi
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{
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buf[0] = 0x05;
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if (hid_get_feature_report(dualsense_device->hidDevice, buf.data(), DUALSENSE_CALIBRATION_REPORT_SIZE) <= 0)
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if (int res = hid_get_feature_report(dualsense_device->hidDevice, buf.data(), DUALSENSE_CALIBRATION_REPORT_SIZE); res <= 0)
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{
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dualsense_log.error("get_calibration_data: hid_get_feature_report 0x05 failed! Reason: %s", hid_error(dualsense_device->hidDevice));
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dualsense_log.error("get_calibration_data: hid_get_feature_report 0x05 for wired controller failed! result=%d, error=%s", res, hid_error(dualsense_device->hidDevice));
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return false;
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}
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}
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