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@ -124,7 +124,7 @@ typedef struct {
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// Gamepad data
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int gamepadStreamFd[MAX_GAMEPADS]; // Gamepad device file descriptor
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int gamepadAbsAxisRange[MAX_GAMEPADS][MAX_GAMEPAD_AXES][2]; // [0] = min, [1] = range value of the axis
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int gamepadAbsAxisRange[MAX_GAMEPADS][MAX_GAMEPAD_AXES][2]; // [0] = min, [1] = range value of the axes
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int gamepadAbsAxisMap[MAX_GAMEPADS][ABS_CNT]; // Maps the axes gamepads from the evdev api to a sequential one
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int gamepadCount; // The number of gamepads registered
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} PlatformData;
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@ -1460,7 +1460,7 @@ static void ConfigureEvdevDevice(char *device)
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// matter if we support them
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else if (hasAbsXY && TEST_BIT(keyBits, BTN_MOUSE)) isMouse = true;
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// If any of the common joystick axis is present, we assume it's a gamepad
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// If any of the common joystick axes are present, we assume it's a gamepad
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else
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{
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for (int axis = (hasAbsXY? ABS_Z : ABS_X); axis < ABS_PRESSURE; axis++)
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@ -1546,7 +1546,7 @@ static void ConfigureEvdevDevice(char *device)
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if (absAxisCount > 0)
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{
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// TODO / NOTE
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// So gamepad axis (as in the actual linux joydev.c) are just simply enumerated
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// So gamepad axes (as in the actual linux joydev.c) are just simply enumerated
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// and (at least for some input drivers like xpat) it's convention to use
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// ABS_X, ABX_Y for one joystick ABS_RX, ABS_RY for the other and the Z axes for the
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// shoulder buttons
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