#include "SDL_internal.h"
#ifdef SDL_JOYSTICK_HIDAPI
#include "../SDL_sysjoystick.h"
#include "SDL_hidapijoystick_c.h"
#include "SDL_hidapi_rumble.h"
#ifdef SDL_JOYSTICK_HIDAPI_8BITDO
#if 0#endif
enum
{
SDL_GAMEPAD_BUTTON_8BITDO_L4 = 11,
SDL_GAMEPAD_BUTTON_8BITDO_R4,
SDL_GAMEPAD_BUTTON_8BITDO_PL,
SDL_GAMEPAD_BUTTON_8BITDO_PR,
SDL_GAMEPAD_NUM_8BITDO_BUTTONS,
};
#define SDL_8BITDO_FEATURE_REPORTID_ENABLE_SDL_REPORTID 0x06
#define SDL_8BITDO_REPORTID_SDL_REPORTID 0x04
#define SDL_8BITDO_REPORTID_NOT_SUPPORTED_SDL_REPORTID 0x03
#define SDL_8BITDO_BT_REPORTID_SDL_REPORTID 0x01
#define SDL_8BITDO_SENSOR_TIMESTAMP_ENABLE 0xAA
#define ABITDO_ACCEL_SCALE 4096.f
#define ABITDO_GYRO_MAX_DEGREES_PER_SECOND 2000.f
#define LOAD32(A, B, C, D) ((((Uint32)(A)) << 0) | \
(((Uint32)(B)) << 8) | \
(((Uint32)(C)) << 16) | \
(((Uint32)(D)) << 24))
typedef struct
{
bool sensors_supported;
bool sensors_enabled;
bool touchpad_01_supported;
bool touchpad_02_supported;
bool rumble_supported;
bool rumble_type;
bool rgb_supported;
bool player_led_supported;
bool powerstate_supported;
bool sensor_timestamp_supported;
Uint8 serial[6];
Uint16 version;
Uint16 version_beta;
float accelScale;
float gyroScale;
Uint8 last_state[USB_PACKET_LENGTH];
Uint64 sensor_timestamp; Uint64 sensor_timestamp_interval;
Uint32 last_tick;
} SDL_Driver8BitDo_Context;
#pragma pack(push,1)
typedef struct
{
bool sensors_supported;
bool touchpad_01_supported;
bool touchpad_02_supported;
bool rumble_supported;
bool rumble_type;
bool rgb_supported;
Uint8 device_type;
Uint8 serial[6];
Uint16 version;
Uint16 version_beta;
Uint16 pid;
} ABITDO_DEVICE_INFO;
typedef struct
{
short sAccelX;
short sAccelY;
short sAccelZ;
short sGyroX;
short sGyroY;
short sGyroZ;
} ABITDO_SENSORS;
#pragma pack(pop)
static void HIDAPI_Driver8BitDo_RegisterHints(SDL_HintCallback callback, void *userdata)
{
SDL_AddHintCallback(SDL_HINT_JOYSTICK_HIDAPI_8BITDO, callback, userdata);
}
static void HIDAPI_Driver8BitDo_UnregisterHints(SDL_HintCallback callback, void *userdata)
{
SDL_RemoveHintCallback(SDL_HINT_JOYSTICK_HIDAPI_8BITDO, callback, userdata);
}
static bool HIDAPI_Driver8BitDo_IsEnabled(void)
{
return SDL_GetHintBoolean(SDL_HINT_JOYSTICK_HIDAPI_8BITDO, SDL_GetHintBoolean(SDL_HINT_JOYSTICK_HIDAPI, SDL_HIDAPI_DEFAULT));
}
static int ReadFeatureReport(SDL_hid_device *dev, Uint8 report_id, Uint8 *report, size_t length)
{
SDL_memset(report, 0, length);
report[0] = report_id;
return SDL_hid_get_feature_report(dev, report, length);
}
static bool HIDAPI_Driver8BitDo_IsSupportedDevice(SDL_HIDAPI_Device *device, const char *name, SDL_GamepadType type, Uint16 vendor_id, Uint16 product_id, Uint16 version, int interface_number, int interface_class, int interface_subclass, int interface_protocol)
{
if (vendor_id == USB_VENDOR_8BITDO) {
switch (product_id) {
case USB_PRODUCT_8BITDO_SF30_PRO:
case USB_PRODUCT_8BITDO_SF30_PRO_BT:
case USB_PRODUCT_8BITDO_SN30_PRO:
case USB_PRODUCT_8BITDO_SN30_PRO_BT:
case USB_PRODUCT_8BITDO_PRO_2:
case USB_PRODUCT_8BITDO_PRO_2_BT:
case USB_PRODUCT_8BITDO_PRO_3:
case USB_PRODUCT_8BITDO_ULTIMATE2_WIRELESS:
return true;
default:
break;
}
}
return false;
}
static bool HIDAPI_Driver8BitDo_InitDevice(SDL_HIDAPI_Device *device)
{
SDL_Driver8BitDo_Context *ctx = (SDL_Driver8BitDo_Context *)SDL_calloc(1, sizeof(*ctx));
if (!ctx) {
return false;
}
device->context = ctx;
if (device->product_id == USB_PRODUCT_8BITDO_ULTIMATE2_WIRELESS) {
const int ULTIMATE2_WIRELESS_V103_REPORT_SIZE = 34;
const int MAX_ATTEMPTS = 3;
for (int attempt = 0; attempt < MAX_ATTEMPTS; ++attempt) {
Uint8 data[USB_PACKET_LENGTH];
int size = SDL_hid_read_timeout(device->dev, data, sizeof(data), 80);
if (size == 0) {
continue;
}
if (size >= ULTIMATE2_WIRELESS_V103_REPORT_SIZE) {
ctx->sensors_supported = true;
ctx->rumble_supported = true;
ctx->powerstate_supported = true;
}
break;
}
} else {
Uint8 data[USB_PACKET_LENGTH];
const int MAX_ATTEMPTS = 5;
for (int attempt = 0; attempt < MAX_ATTEMPTS; ++attempt) {
int size = ReadFeatureReport(device->dev, SDL_8BITDO_FEATURE_REPORTID_ENABLE_SDL_REPORTID, data, sizeof(data));
if (size > 0) {
#ifdef DEBUG_8BITDO_PROTOCOL
HIDAPI_DumpPacket("8BitDo features packet: size = %d", data, size);
#endif
ctx->sensors_supported = true;
ctx->rumble_supported = true;
ctx->powerstate_supported = true;
if (size >= 14 && data[13] == SDL_8BITDO_SENSOR_TIMESTAMP_ENABLE) {
ctx->sensor_timestamp_supported = true;
}
if (size >= 12 && data[10] != 0) {
char serial[18];
(void)SDL_snprintf(serial, sizeof(serial), "%.2x-%.2x-%.2x-%.2x-%.2x-%.2x",
data[10], data[9], data[8], data[7], data[6], data[5]);
HIDAPI_SetDeviceSerial(device, serial);
}
break;
}
SDL_Delay(10);
}
}
if (device->product_id == USB_PRODUCT_8BITDO_SF30_PRO || device->product_id == USB_PRODUCT_8BITDO_SF30_PRO_BT) {
HIDAPI_SetDeviceName(device, "8BitDo SF30 Pro");
} else if (device->product_id == USB_PRODUCT_8BITDO_SN30_PRO || device->product_id == USB_PRODUCT_8BITDO_SN30_PRO_BT) {
HIDAPI_SetDeviceName(device, "8BitDo SN30 Pro");
} else if (device->product_id == USB_PRODUCT_8BITDO_PRO_2 || device->product_id == USB_PRODUCT_8BITDO_PRO_2_BT) {
HIDAPI_SetDeviceName(device, "8BitDo Pro 2");
} else if (device->product_id == USB_PRODUCT_8BITDO_PRO_3) {
HIDAPI_SetDeviceName(device, "8BitDo Pro 3");
}
return HIDAPI_JoystickConnected(device, NULL);
}
static int HIDAPI_Driver8BitDo_GetDevicePlayerIndex(SDL_HIDAPI_Device *device, SDL_JoystickID instance_id)
{
return -1;
}
static void HIDAPI_Driver8BitDo_SetDevicePlayerIndex(SDL_HIDAPI_Device *device, SDL_JoystickID instance_id, int player_index)
{
}
static Uint64 HIDAPI_Driver8BitDo_GetIMURateForProductID(SDL_HIDAPI_Device *device)
{
SDL_Driver8BitDo_Context *ctx = (SDL_Driver8BitDo_Context *)device->context;
switch (device->product_id) {
case USB_PRODUCT_8BITDO_SF30_PRO:
case USB_PRODUCT_8BITDO_SF30_PRO_BT:
case USB_PRODUCT_8BITDO_SN30_PRO:
case USB_PRODUCT_8BITDO_SN30_PRO_BT:
if (device->is_bluetooth) {
return 70; } else if (ctx->sensor_timestamp_supported) {
return 200;
} else {
return 100;
}
case USB_PRODUCT_8BITDO_PRO_2:
case USB_PRODUCT_8BITDO_PRO_2_BT: case USB_PRODUCT_8BITDO_PRO_3:
if (device->is_bluetooth) {
return 85; } else if (ctx->sensor_timestamp_supported) {
return 200;
} else {
return 100;
}
case USB_PRODUCT_8BITDO_ULTIMATE2_WIRELESS:
if (device->is_bluetooth) {
return 120; } else {
return 1000;
}
default:
return 120;
}
}
#ifndef DEG2RAD
#define DEG2RAD(x) ((float)(x) * (float)(SDL_PI_F / 180.f))
#endif
static bool HIDAPI_Driver8BitDo_OpenJoystick(SDL_HIDAPI_Device *device, SDL_Joystick *joystick)
{
SDL_Driver8BitDo_Context *ctx = (SDL_Driver8BitDo_Context *)device->context;
SDL_AssertJoysticksLocked();
SDL_zeroa(ctx->last_state);
if (device->product_id == USB_PRODUCT_8BITDO_PRO_2 ||
device->product_id == USB_PRODUCT_8BITDO_PRO_2_BT ||
device->product_id == USB_PRODUCT_8BITDO_PRO_3 ||
device->product_id == USB_PRODUCT_8BITDO_ULTIMATE2_WIRELESS) {
joystick->nbuttons = SDL_GAMEPAD_NUM_8BITDO_BUTTONS;
} else {
joystick->nbuttons = 11;
}
joystick->naxes = SDL_GAMEPAD_AXIS_COUNT;
joystick->nhats = 1;
if (ctx->sensors_supported) {
const Uint64 imu_polling_rate = HIDAPI_Driver8BitDo_GetIMURateForProductID(device);
ctx->sensor_timestamp_interval = SDL_NS_PER_SECOND / imu_polling_rate;
SDL_PrivateJoystickAddSensor(joystick, SDL_SENSOR_GYRO, (float)imu_polling_rate);
SDL_PrivateJoystickAddSensor(joystick, SDL_SENSOR_ACCEL, (float)imu_polling_rate);
ctx->accelScale = SDL_STANDARD_GRAVITY / ABITDO_ACCEL_SCALE;
ctx->gyroScale = DEG2RAD(ABITDO_GYRO_MAX_DEGREES_PER_SECOND) / INT16_MAX;
}
return true;
}
static bool HIDAPI_Driver8BitDo_RumbleJoystick(SDL_HIDAPI_Device *device, SDL_Joystick *joystick, Uint16 low_frequency_rumble, Uint16 high_frequency_rumble)
{
SDL_Driver8BitDo_Context *ctx = (SDL_Driver8BitDo_Context *)device->context;
if (ctx->rumble_supported) {
Uint8 rumble_packet[5] = { 0x05, 0x00, 0x00, 0x00, 0x00 };
rumble_packet[1] = low_frequency_rumble >> 8;
rumble_packet[2] = high_frequency_rumble >> 8;
if (SDL_HIDAPI_SendRumble(device, rumble_packet, sizeof(rumble_packet)) != sizeof(rumble_packet)) {
return SDL_SetError("Couldn't send rumble packet");
}
return true;
} else {
return SDL_Unsupported();
}
}
static bool HIDAPI_Driver8BitDo_RumbleJoystickTriggers(SDL_HIDAPI_Device *device, SDL_Joystick *joystick, Uint16 left_rumble, Uint16 right_rumble)
{
return SDL_Unsupported();
}
static Uint32 HIDAPI_Driver8BitDo_GetJoystickCapabilities(SDL_HIDAPI_Device *device, SDL_Joystick *joystick)
{
SDL_Driver8BitDo_Context *ctx = (SDL_Driver8BitDo_Context *)device->context;
Uint32 caps = 0;
if (ctx->rumble_supported) {
caps |= SDL_JOYSTICK_CAP_RUMBLE;
}
if (ctx->rgb_supported) {
caps |= SDL_JOYSTICK_CAP_RGB_LED;
}
return caps;
}
static bool HIDAPI_Driver8BitDo_SetJoystickLED(SDL_HIDAPI_Device *device, SDL_Joystick *joystick, Uint8 red, Uint8 green, Uint8 blue)
{
return SDL_Unsupported();
}
static bool HIDAPI_Driver8BitDo_SendJoystickEffect(SDL_HIDAPI_Device *device, SDL_Joystick *joystick, const void *data, int size)
{
return SDL_Unsupported();
}
static bool HIDAPI_Driver8BitDo_SetJoystickSensorsEnabled(SDL_HIDAPI_Device *device, SDL_Joystick *joystick, bool enabled)
{
SDL_Driver8BitDo_Context *ctx = (SDL_Driver8BitDo_Context *)device->context;
if (ctx->sensors_supported) {
ctx->sensors_enabled = enabled;
return true;
}
return SDL_Unsupported();
}
static void HIDAPI_Driver8BitDo_HandleOldStatePacket(SDL_Joystick *joystick, SDL_Driver8BitDo_Context *ctx, Uint8 *data, int size)
{
Sint16 axis;
Uint64 timestamp = SDL_GetTicksNS();
if (ctx->last_state[2] != data[2]) {
Uint8 hat;
switch (data[2]) {
case 0:
hat = SDL_HAT_UP;
break;
case 1:
hat = SDL_HAT_RIGHTUP;
break;
case 2:
hat = SDL_HAT_RIGHT;
break;
case 3:
hat = SDL_HAT_RIGHTDOWN;
break;
case 4:
hat = SDL_HAT_DOWN;
break;
case 5:
hat = SDL_HAT_LEFTDOWN;
break;
case 6:
hat = SDL_HAT_LEFT;
break;
case 7:
hat = SDL_HAT_LEFTUP;
break;
default:
hat = SDL_HAT_CENTERED;
break;
}
SDL_SendJoystickHat(timestamp, joystick, 0, hat);
}
if (ctx->last_state[0] != data[0]) {
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_SOUTH, ((data[0] & 0x01) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_EAST, ((data[0] & 0x02) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_WEST, ((data[0] & 0x08) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_NORTH, ((data[0] & 0x10) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_LEFT_SHOULDER, ((data[0] & 0x40) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_RIGHT_SHOULDER, ((data[0] & 0x80) != 0));
}
if (ctx->last_state[1] != data[1]) {
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_GUIDE, ((data[1] & 0x10) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_BACK, ((data[1] & 0x04) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_START, ((data[1] & 0x08) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_LEFT_STICK, ((data[1] & 0x20) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_RIGHT_STICK, ((data[1] & 0x40) != 0));
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_LEFT_TRIGGER, (data[1] & 0x01) ? SDL_MAX_SINT16 : SDL_MIN_SINT16);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_RIGHT_TRIGGER, (data[1] & 0x02) ? SDL_MAX_SINT16 : SDL_MIN_SINT16);
}
#define READ_STICK_AXIS(offset) \
(data[offset] == 0x7f ? 0 : (Sint16)HIDAPI_RemapVal((float)((int)data[offset] - 0x7f), -0x7f, 0xff - 0x7f, SDL_MIN_SINT16, SDL_MAX_SINT16))
{
axis = READ_STICK_AXIS(3);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_LEFTX, axis);
axis = READ_STICK_AXIS(4);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_LEFTY, axis);
axis = READ_STICK_AXIS(5);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_RIGHTX, axis);
axis = READ_STICK_AXIS(6);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_RIGHTY, axis);
}
#undef READ_STICK_AXIS
SDL_memcpy(ctx->last_state, data, SDL_min(size, sizeof(ctx->last_state)));
}
static void HIDAPI_Driver8BitDo_HandleStatePacket(SDL_Joystick *joystick, SDL_Driver8BitDo_Context *ctx, Uint8 *data, int size)
{
Sint16 axis;
Uint64 timestamp = SDL_GetTicksNS();
switch (data[0]) {
case SDL_8BITDO_REPORTID_NOT_SUPPORTED_SDL_REPORTID: case SDL_8BITDO_REPORTID_SDL_REPORTID: case SDL_8BITDO_BT_REPORTID_SDL_REPORTID: break;
default:
return;
}
if (ctx->last_state[1] != data[1]) {
Uint8 hat;
switch (data[1]) {
case 0:
hat = SDL_HAT_UP;
break;
case 1:
hat = SDL_HAT_RIGHTUP;
break;
case 2:
hat = SDL_HAT_RIGHT;
break;
case 3:
hat = SDL_HAT_RIGHTDOWN;
break;
case 4:
hat = SDL_HAT_DOWN;
break;
case 5:
hat = SDL_HAT_LEFTDOWN;
break;
case 6:
hat = SDL_HAT_LEFT;
break;
case 7:
hat = SDL_HAT_LEFTUP;
break;
default:
hat = SDL_HAT_CENTERED;
break;
}
SDL_SendJoystickHat(timestamp, joystick, 0, hat);
}
if (ctx->last_state[8] != data[8]) {
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_SOUTH, ((data[8] & 0x01) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_EAST, ((data[8] & 0x02) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_WEST, ((data[8] & 0x08) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_NORTH, ((data[8] & 0x10) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_LEFT_SHOULDER, ((data[8] & 0x40) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_RIGHT_SHOULDER, ((data[8] & 0x80) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_8BITDO_PL, ((data[8] & 0x20) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_8BITDO_PR, ((data[8] & 0x04) != 0));
}
if (ctx->last_state[9] != data[9]) {
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_GUIDE, ((data[9] & 0x10) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_BACK, ((data[9] & 0x04) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_START, ((data[9] & 0x08) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_LEFT_STICK, ((data[9] & 0x20) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_RIGHT_STICK, ((data[9] & 0x40) != 0));
}
if (size > 10 && ctx->last_state[10] != data[10]) {
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_8BITDO_L4, ((data[10] & 0x01) != 0));
SDL_SendJoystickButton(timestamp, joystick, SDL_GAMEPAD_BUTTON_8BITDO_R4, ((data[10] & 0x02) != 0));
}
#define READ_STICK_AXIS(offset) \
(data[offset] == 0x7f ? 0 : (Sint16)HIDAPI_RemapVal((float)((int)data[offset] - 0x7f), -0x7f, 0xff - 0x7f, SDL_MIN_SINT16, SDL_MAX_SINT16))
{
axis = READ_STICK_AXIS(2);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_LEFTX, axis);
axis = READ_STICK_AXIS(3);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_LEFTY, axis);
axis = READ_STICK_AXIS(4);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_RIGHTX, axis);
axis = READ_STICK_AXIS(5);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_RIGHTY, axis);
}
#undef READ_STICK_AXIS
#define READ_TRIGGER_AXIS(offset) \
(Sint16)(((int)data[offset] * 257) - 32768)
{
axis = READ_TRIGGER_AXIS(7);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_LEFT_TRIGGER, axis);
axis = READ_TRIGGER_AXIS(6);
SDL_SendJoystickAxis(timestamp, joystick, SDL_GAMEPAD_AXIS_RIGHT_TRIGGER, axis);
}
#undef READ_TRIGGER_AXIS
if (ctx->powerstate_supported) {
SDL_PowerState state;
int percent;
Uint8 status = data[14] >> 7;
Uint8 level = (data[14] & 0x7f);
if (level == 100) {
status = 2;
}
switch (status) {
case 0:
state = SDL_POWERSTATE_ON_BATTERY;
percent = level;
break;
case 1:
state = SDL_POWERSTATE_CHARGING;
percent = level;
break;
case 2:
state = SDL_POWERSTATE_CHARGED;
percent = 100;
break;
default:
state = SDL_POWERSTATE_UNKNOWN;
percent = 0;
break;
}
SDL_SendJoystickPowerInfo(joystick, state, percent);
}
if (ctx->sensors_enabled) {
Uint64 sensor_timestamp;
float values[3];
ABITDO_SENSORS *sensors = (ABITDO_SENSORS *)&data[15];
if (ctx->sensor_timestamp_supported) {
Uint32 delta;
Uint32 tick = LOAD32(data[27], data[28], data[29], data[30]);
if (ctx->last_tick) {
if (ctx->last_tick < tick) {
delta = (tick - ctx->last_tick);
} else {
delta = (SDL_MAX_UINT32 - ctx->last_tick + tick + 1);
}
if (delta < 100000) {
ctx->sensor_timestamp_interval = SDL_US_TO_NS(delta);
}
}
ctx->last_tick = tick;
}
sensor_timestamp = ctx->sensor_timestamp;
ctx->sensor_timestamp += ctx->sensor_timestamp_interval;
values[0] = -sensors->sGyroY * ctx->gyroScale; values[1] = sensors->sGyroZ * ctx->gyroScale; values[2] = -sensors->sGyroX * ctx->gyroScale; SDL_SendJoystickSensor(timestamp, joystick, SDL_SENSOR_GYRO, sensor_timestamp, values, 3);
values[0] = -sensors->sAccelY * ctx->accelScale; values[1] = sensors->sAccelZ * ctx->accelScale; values[2] = -sensors->sAccelX * ctx->accelScale; SDL_SendJoystickSensor(timestamp, joystick, SDL_SENSOR_ACCEL, sensor_timestamp, values, 3);
}
SDL_memcpy(ctx->last_state, data, SDL_min(size, sizeof(ctx->last_state)));
}
static bool HIDAPI_Driver8BitDo_UpdateDevice(SDL_HIDAPI_Device *device)
{
SDL_Driver8BitDo_Context *ctx = (SDL_Driver8BitDo_Context *)device->context;
SDL_Joystick *joystick = NULL;
Uint8 data[USB_PACKET_LENGTH];
int size = 0;
if (device->num_joysticks > 0) {
joystick = SDL_GetJoystickFromID(device->joysticks[0]);
} else {
return false;
}
while ((size = SDL_hid_read_timeout(device->dev, data, sizeof(data), 0)) > 0) {
#ifdef DEBUG_8BITDO_PROTOCOL
HIDAPI_DumpPacket("8BitDo packet: size = %d", data, size);
#endif
if (!joystick) {
continue;
}
if (size == 9) {
HIDAPI_Driver8BitDo_HandleOldStatePacket(joystick, ctx, data, size);
} else {
HIDAPI_Driver8BitDo_HandleStatePacket(joystick, ctx, data, size);
}
}
if (size < 0) {
HIDAPI_JoystickDisconnected(device, device->joysticks[0]);
}
return (size >= 0);
}
static void HIDAPI_Driver8BitDo_CloseJoystick(SDL_HIDAPI_Device *device, SDL_Joystick *joystick)
{
}
static void HIDAPI_Driver8BitDo_FreeDevice(SDL_HIDAPI_Device *device)
{
}
SDL_HIDAPI_DeviceDriver SDL_HIDAPI_Driver8BitDo = {
SDL_HINT_JOYSTICK_HIDAPI_8BITDO,
true,
HIDAPI_Driver8BitDo_RegisterHints,
HIDAPI_Driver8BitDo_UnregisterHints,
HIDAPI_Driver8BitDo_IsEnabled,
HIDAPI_Driver8BitDo_IsSupportedDevice,
HIDAPI_Driver8BitDo_InitDevice,
HIDAPI_Driver8BitDo_GetDevicePlayerIndex,
HIDAPI_Driver8BitDo_SetDevicePlayerIndex,
HIDAPI_Driver8BitDo_UpdateDevice,
HIDAPI_Driver8BitDo_OpenJoystick,
HIDAPI_Driver8BitDo_RumbleJoystick,
HIDAPI_Driver8BitDo_RumbleJoystickTriggers,
HIDAPI_Driver8BitDo_GetJoystickCapabilities,
HIDAPI_Driver8BitDo_SetJoystickLED,
HIDAPI_Driver8BitDo_SendJoystickEffect,
HIDAPI_Driver8BitDo_SetJoystickSensorsEnabled,
HIDAPI_Driver8BitDo_CloseJoystick,
HIDAPI_Driver8BitDo_FreeDevice,
};
#endif
#endif