📄 sdl_sysjoystick.c
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/*
SDL - Simple DirectMedia Layer
Copyright (C) 1997, 1998, 1999, 2000, 2001, 2002 Sam Lantinga
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Library General Public
License as published by the Free Software Foundation; either
version 2 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Library General Public License for more details.
You should have received a copy of the GNU Library General Public
License along with this library; if not, write to the Free
Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
Sam Lantinga
slouken@libsdl.org
*/
/* SDL joystick driver for Darwin / MacOS X, based on the IOKit HID API */
/* Written 2001 by Max Horn */
#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
#include <ctype.h>
#include <sys/errno.h>
#include <sysexits.h>
#include <mach/mach.h>
#include <mach/mach_error.h>
#include <IOKit/IOKitLib.h>
#include <IOKit/IOCFPlugIn.h>
#ifdef MACOS_10_0_4
#include <IOKit/hidsystem/IOHIDUsageTables.h>
#else
/* The header was moved here in MacOS X 10.1 */
#include <Kernel/IOKit/hidsystem/IOHIDUsageTables.h>
#endif
#include <IOKit/hid/IOHIDLib.h>
#include <IOKit/hid/IOHIDKeys.h>
#include <CoreFoundation/CoreFoundation.h>
#include "SDL_error.h"
#include "SDL_joystick.h"
#include "SDL_sysjoystick.h"
#include "SDL_joystick_c.h"
struct recElement
{
IOHIDElementCookie cookie; // unique value which identifies element, will NOT change
long min; // reported min value possible
long max; // reported max value possible
/*
TODO: maybe should handle the following stuff somehow?
long scaledMin; // reported scaled min value possible
long scaledMax; // reported scaled max value possible
long size; // size in bits of data return from element
Boolean relative; // are reports relative to last report (deltas)
Boolean wrapping; // does element wrap around (one value higher than max is min)
Boolean nonLinear; // are the values reported non-linear relative to element movement
Boolean preferredState; // does element have a preferred state (such as a button)
Boolean nullState; // does element have null state
*/
/* runtime variables used for auto-calibration */
long minReport; // min returned value
long maxReport; // max returned value
struct recElement * pNext; // next element in list
};
typedef struct recElement recElement;
struct joystick_hwdata
{
IOHIDDeviceInterface ** interface; // interface to device, NULL = no interface
char product[256]; // name of product
long usage; // usage page from IOUSBHID Parser.h which defines general usage
long usagePage; // usage within above page from IOUSBHID Parser.h which defines specific usage
long axes; // number of axis (calculated, not reported by device)
long buttons; // number of buttons (calculated, not reported by device)
long hats; // number of hat switches (calculated, not reported by device)
long elements; // number of total elements (shouldbe total of above) (calculated, not reported by device)
recElement* firstAxis;
recElement* firstButton;
recElement* firstHat;
struct joystick_hwdata* pNext; // next device
};
typedef struct joystick_hwdata recDevice;
/* Linked list of all available devices */
static recDevice *gpDeviceList = NULL;
void HIDReportErrorNum (char * strError, long numError)
{
SDL_SetError(strError);
}
static void HIDGetCollectionElements (CFMutableDictionaryRef deviceProperties, recDevice *pDevice);
/* returns current value for element, polling element
* will return 0 on error conditions which should be accounted for by application
*/
SInt32 HIDGetElementValue (recDevice *pDevice, recElement *pElement)
{
IOReturn result = kIOReturnSuccess;
IOHIDEventStruct hidEvent;
hidEvent.value = 0;
if (NULL != pDevice && NULL != pElement && NULL != pDevice->interface)
{
result = (*(pDevice->interface))->getElementValue(pDevice->interface, pElement->cookie, &hidEvent);
if (kIOReturnSuccess == result)
{
/* record min and max for auto calibration */
if (hidEvent.value < pElement->minReport)
pElement->minReport = hidEvent.value;
if (hidEvent.value > pElement->maxReport)
pElement->maxReport = hidEvent.value;
}
}
// auto user scale
return hidEvent.value;
}
/* similiar to HIDGetElementValue, but auto-calibrates the value before returning it */
SInt32 HIDCalibratedValue (recDevice *pDevice, recElement *pElement)
{
float deviceScale = pElement->max - pElement->min;
float readScale = pElement->maxReport - pElement->minReport;
SInt32 value = HIDGetElementValue(pDevice, pElement);
if (readScale == 0)
return value; // no scaling at all
else
return ((value - pElement->minReport) * deviceScale / readScale) + pElement->min;
}
/* similiar to HIDCalibratedValue but calibrates to an arbitrary scale instead of the elements default scale */
SInt32 HIDScaledCalibratedValue (recDevice *pDevice, recElement *pElement, long min, long max)
{
float deviceScale = max - min;
float readScale = pElement->maxReport - pElement->minReport;
SInt32 value = HIDGetElementValue(pDevice, pElement);
if (readScale == 0)
return value; // no scaling at all
else
return ((value - pElement->minReport) * deviceScale / readScale) + min;
}
/* Create and open an interface to device, required prior to extracting values or building queues.
* Note: appliction now owns the device and must close and release it prior to exiting
*/
IOReturn HIDCreateOpenDeviceInterface (io_object_t hidDevice, recDevice *pDevice)
{
IOReturn result = kIOReturnSuccess;
HRESULT plugInResult = S_OK;
SInt32 score = 0;
IOCFPlugInInterface ** ppPlugInInterface = NULL;
if (NULL == pDevice->interface)
{
result = IOCreatePlugInInterfaceForService (hidDevice, kIOHIDDeviceUserClientTypeID,
kIOCFPlugInInterfaceID, &ppPlugInInterface, &score);
if (kIOReturnSuccess == result)
{
// Call a method of the intermediate plug-in to create the device interface
plugInResult = (*ppPlugInInterface)->QueryInterface (ppPlugInInterface,
CFUUIDGetUUIDBytes (kIOHIDDeviceInterfaceID), (void *) &(pDevice->interface));
if (S_OK != plugInResult)
HIDReportErrorNum ("Couldn誸 query HID class device interface from plugInInterface", plugInResult);
(*ppPlugInInterface)->Release (ppPlugInInterface);
}
else
HIDReportErrorNum ("Failed to create **plugInInterface via IOCreatePlugInInterfaceForService.", result);
}
if (NULL != pDevice->interface)
{
result = (*(pDevice->interface))->open (pDevice->interface, 0);
if (kIOReturnSuccess != result)
HIDReportErrorNum ("Failed to open pDevice->interface via open.", result);
}
return result;
}
/* Closes and releases interface to device, should be done prior to exting application
* Note: will have no affect if device or interface do not exist
* application will "own" the device if interface is not closed
* (device may have to be plug and re-plugged in different location to get it working again without a restart)
*/
IOReturn HIDCloseReleaseInterface (recDevice *pDevice)
{
IOReturn result = kIOReturnSuccess;
if ((NULL != pDevice) && (NULL != pDevice->interface))
{
// close the interface
result = (*(pDevice->interface))->close (pDevice->interface);
if (kIOReturnNotOpen == result)
{
// do nothing as device was not opened, thus can't be closed
}
else if (kIOReturnSuccess != result)
HIDReportErrorNum ("Failed to close IOHIDDeviceInterface.", result);
//release the interface
result = (*(pDevice->interface))->Release (pDevice->interface);
if (kIOReturnSuccess != result)
HIDReportErrorNum ("Failed to release IOHIDDeviceInterface.", result);
pDevice->interface = NULL;
}
return result;
}
/* extracts actual specific element information from each element CF dictionary entry */
static void HIDGetElementInfo (CFTypeRef refElement, recElement *pElement)
{
long number;
CFTypeRef refType;
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementCookieKey));
if (refType && CFNumberGetValue (refType, kCFNumberLongType, &number))
pElement->cookie = (IOHIDElementCookie) number;
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementMinKey));
if (refType && CFNumberGetValue (refType, kCFNumberLongType, &number))
pElement->min = number;
pElement->maxReport = pElement->min;
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementMaxKey));
if (refType && CFNumberGetValue (refType, kCFNumberLongType, &number))
pElement->max = number;
pElement->minReport = pElement->max;
/*
TODO: maybe should handle the following stuff somehow?
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementScaledMinKey));
if (refType && CFNumberGetValue (refType, kCFNumberLongType, &number))
pElement->scaledMin = number;
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementScaledMaxKey));
if (refType && CFNumberGetValue (refType, kCFNumberLongType, &number))
pElement->scaledMax = number;
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementSizeKey));
if (refType && CFNumberGetValue (refType, kCFNumberLongType, &number))
pElement->size = number;
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementIsRelativeKey));
if (refType)
pElement->relative = CFBooleanGetValue (refType);
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementIsWrappingKey));
if (refType)
pElement->wrapping = CFBooleanGetValue (refType);
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementIsNonLinearKey));
if (refType)
pElement->nonLinear = CFBooleanGetValue (refType);
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementHasPreferedStateKey));
if (refType)
pElement->preferredState = CFBooleanGetValue (refType);
refType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementHasNullStateKey));
if (refType)
pElement->nullState = CFBooleanGetValue (refType);
*/
}
/* examines CF dictionary vlaue in device element hierarchy to determine if it is element of interest or a collection of more elements
* if element of interest allocate storage, add to list and retrieve element specific info
* if collection then pass on to deconstruction collection into additional individual elements
*/
static void HIDAddElement (CFTypeRef refElement, recDevice* pDevice)
{
recElement* element = NULL;
recElement** headElement = NULL;
long elementType, usagePage, usage;
CFTypeRef refElementType = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementTypeKey));
CFTypeRef refUsagePage = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementUsagePageKey));
CFTypeRef refUsage = CFDictionaryGetValue (refElement, CFSTR(kIOHIDElementUsageKey));
if ((refElementType) && (CFNumberGetValue (refElementType, kCFNumberLongType, &elementType)))
{
/* look at types of interest */
if ((elementType == kIOHIDElementTypeInput_Misc) || (elementType == kIOHIDElementTypeInput_Button) ||
(elementType == kIOHIDElementTypeInput_Axis))
{
if (refUsagePage && CFNumberGetValue (refUsagePage, kCFNumberLongType, &usagePage) &&
refUsage && CFNumberGetValue (refUsage, kCFNumberLongType, &usage))
{
switch (usagePage) /* only interested in kHIDPage_GenericDesktop and kHIDPage_Button */
{
case kHIDPage_GenericDesktop:
{
switch (usage) /* look at usage to determine function */
{
case kHIDUsage_GD_X:
case kHIDUsage_GD_Y:
case kHIDUsage_GD_Z:
case kHIDUsage_GD_Rx:
case kHIDUsage_GD_Ry:
case kHIDUsage_GD_Rz:
element = (recElement *) NewPtrClear (sizeof (recElement));
if (element)
{
pDevice->axes++;
headElement = &(pDevice->firstAxis);
}
break;
case kHIDUsage_GD_Hatswitch:
element = (recElement *) NewPtrClear (sizeof (recElement));
if (element)
{
pDevice->hats++;
headElement = &(pDevice->firstHat);
}
break;
}
}
break;
case kHIDPage_Button:
element = (recElement *) NewPtrClear (sizeof (recElement));
if (element)
{
pDevice->buttons++;
headElement = &(pDevice->firstButton);
}
break;
default:
break;
}
}
}
else if (kIOHIDElementTypeCollection == elementType)
HIDGetCollectionElements ((CFMutableDictionaryRef) refElement, pDevice);
}
if (element && headElement) /* add to list */
{
pDevice->elements++;
if (NULL == *headElement)
*headElement = element;
else
{
recElement *elementPrevious, *elementCurrent;
elementCurrent = *headElement;
while (elementCurrent)
{
elementPrevious = elementCurrent;
elementCurrent = elementPrevious->pNext;
}
elementPrevious->pNext = element;
}
element->pNext = NULL;
HIDGetElementInfo (refElement, element);
}
}
/* collects information from each array member in device element list (each array memeber = element) */
static void HIDGetElementsCFArrayHandler (const void * value, void * parameter)
{
if (CFGetTypeID (value) == CFDictionaryGetTypeID ())
HIDAddElement ((CFTypeRef) value, (recDevice *) parameter);
}
/* handles retrieval of element information from arrays of elements in device IO registry information */
static void HIDGetElements (CFTypeRef refElementCurrent, recDevice *pDevice)
{
CFTypeID type = CFGetTypeID (refElementCurrent);
if (type == CFArrayGetTypeID()) /* if element is an array */
{
CFRange range = {0, CFArrayGetCount (refElementCurrent)};
/* CountElementsCFArrayHandler called for each array member */
CFArrayApplyFunction (refElementCurrent, range, HIDGetElementsCFArrayHandler, pDevice);
}
}
/* handles extracting element information from element collection CF types
* used from top level element decoding and hierarchy deconstruction to flatten device element list
*/
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