mirror of
https://github.com/hajimehoshi/ebiten.git
synced 2024-12-25 19:28:57 +01:00
283 lines
5.5 KiB
Go
283 lines
5.5 KiB
Go
// Copyright 2022 The Ebiten Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package gamepad
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import (
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"sync"
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"time"
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"github.com/hajimehoshi/ebiten/v2/internal/gamepaddb"
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)
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type ID int
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const (
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hatCentered = 0
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hatUp = 1
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hatRight = 2
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hatDown = 4
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hatLeft = 8
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hatRightUp = hatRight | hatUp
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hatRightDown = hatRight | hatDown
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hatLeftUp = hatLeft | hatUp
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hatLeftDown = hatLeft | hatDown
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)
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type gamepads struct {
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inited bool
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gamepads []*Gamepad
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m sync.Mutex
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nativeGamepads
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}
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var theGamepads gamepads
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// AppendGamepadIDs is concurrent-safe.
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func AppendGamepadIDs(ids []ID) []ID {
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return theGamepads.appendGamepadIDs(ids)
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}
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// Update is concurrent-safe.
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func Update() error {
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return theGamepads.update()
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}
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// Get is concurrent-safe.
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func Get(id ID) *Gamepad {
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return theGamepads.get(id)
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}
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func (g *gamepads) appendGamepadIDs(ids []ID) []ID {
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g.m.Lock()
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defer g.m.Unlock()
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for i, gp := range g.gamepads {
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if gp != nil {
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ids = append(ids, ID(i))
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}
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}
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return ids
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}
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func (g *gamepads) update() error {
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g.m.Lock()
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defer g.m.Unlock()
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if !g.inited {
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if err := g.nativeGamepads.init(g); err != nil {
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return err
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}
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g.inited = true
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}
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if err := g.nativeGamepads.update(g); err != nil {
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return err
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}
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for _, gp := range g.gamepads {
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if gp == nil {
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continue
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}
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if err := gp.update(g); err != nil {
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return err
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}
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}
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return nil
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}
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func (g *gamepads) get(id ID) *Gamepad {
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g.m.Lock()
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defer g.m.Unlock()
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if id < 0 || int(id) >= len(g.gamepads) {
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return nil
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}
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return g.gamepads[id]
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}
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func (g *gamepads) find(cond func(*Gamepad) bool) *Gamepad {
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for _, gp := range g.gamepads {
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if gp == nil {
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continue
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}
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if cond(gp) {
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return gp
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}
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}
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return nil
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}
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func (g *gamepads) add(name, sdlID string) *Gamepad {
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for i, gp := range g.gamepads {
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if gp == nil {
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gp := &Gamepad{
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name: name,
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sdlID: sdlID,
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}
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g.gamepads[i] = gp
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return gp
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}
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}
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gp := &Gamepad{
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name: name,
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sdlID: sdlID,
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}
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g.gamepads = append(g.gamepads, gp)
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return gp
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}
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func (g *gamepads) remove(cond func(*Gamepad) bool) {
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for i, gp := range g.gamepads {
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if gp == nil {
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continue
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}
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if cond(gp) {
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g.gamepads[i] = nil
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}
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}
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}
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type Gamepad struct {
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name string
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sdlID string
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m sync.Mutex
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nativeGamepad
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}
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func (g *Gamepad) update(gamepads *gamepads) error {
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g.m.Lock()
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defer g.m.Unlock()
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return g.nativeGamepad.update(gamepads)
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}
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// Name is concurrent-safe.
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func (g *Gamepad) Name() string {
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// This is immutable and doesn't have to be protected by a mutex.
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if name := gamepaddb.Name(g.sdlID); name != "" {
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return name
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}
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return g.name
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}
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// SDLID is concurrent-safe.
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func (g *Gamepad) SDLID() string {
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// This is immutable and doesn't have to be protected by a mutex.
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return g.sdlID
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}
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// AxisCount is concurrent-safe.
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func (g *Gamepad) AxisCount() int {
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g.m.Lock()
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defer g.m.Unlock()
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return g.nativeGamepad.axisCount()
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}
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// ButtonCount is concurrent-safe.
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func (g *Gamepad) ButtonCount() int {
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g.m.Lock()
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defer g.m.Unlock()
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return g.nativeGamepad.buttonCount()
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}
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// HatCount is concurrent-safe.
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func (g *Gamepad) HatCount() int {
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g.m.Lock()
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defer g.m.Unlock()
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return g.nativeGamepad.hatCount()
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}
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// Axis is concurrent-safe.
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func (g *Gamepad) Axis(axis int) float64 {
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g.m.Lock()
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defer g.m.Unlock()
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return g.nativeGamepad.axisValue(axis)
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}
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// Button is concurrent-safe.
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func (g *Gamepad) Button(button int) bool {
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g.m.Lock()
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defer g.m.Unlock()
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return g.nativeGamepad.isButtonPressed(button)
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}
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// Hat is concurrent-safe.
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func (g *Gamepad) Hat(hat int) int {
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g.m.Lock()
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defer g.m.Unlock()
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return g.nativeGamepad.hatState(hat)
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}
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// IsStandardLayoutAvailable is concurrent-safe.
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func (g *Gamepad) IsStandardLayoutAvailable() bool {
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g.m.Lock()
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defer g.m.Unlock()
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if gamepaddb.HasStandardLayoutMapping(g.sdlID) {
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return true
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}
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return g.hasOwnStandardLayoutMapping()
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}
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// StandardAxisValue is concurrent-safe.
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func (g *Gamepad) StandardAxisValue(axis gamepaddb.StandardAxis) float64 {
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if gamepaddb.HasStandardLayoutMapping(g.sdlID) {
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return gamepaddb.AxisValue(g.sdlID, axis, g)
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}
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if g.hasOwnStandardLayoutMapping() {
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return g.nativeGamepad.axisValue(int(axis))
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}
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return 0
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}
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// StandardButtonValue is concurrent-safe.
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func (g *Gamepad) StandardButtonValue(button gamepaddb.StandardButton) float64 {
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if gamepaddb.HasStandardLayoutMapping(g.sdlID) {
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return gamepaddb.ButtonValue(g.sdlID, button, g)
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}
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if g.hasOwnStandardLayoutMapping() {
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return g.nativeGamepad.buttonValue(int(button))
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}
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return 0
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}
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// IsStandardButtonPressed is concurrent-safe.
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func (g *Gamepad) IsStandardButtonPressed(button gamepaddb.StandardButton) bool {
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if gamepaddb.HasStandardLayoutMapping(g.sdlID) {
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return gamepaddb.IsButtonPressed(g.sdlID, button, g)
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}
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if g.hasOwnStandardLayoutMapping() {
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return g.nativeGamepad.isButtonPressed(int(button))
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}
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return false
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}
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// Vibrate is concurrent-safe.
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func (g *Gamepad) Vibrate(duration time.Duration, strongMagnitude float64, weakMagnitude float64) {
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g.m.Lock()
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defer g.m.Unlock()
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g.nativeGamepad.vibrate(duration, strongMagnitude, weakMagnitude)
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}
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