mirror of
https://github.com/mpv-player/mpv
synced 2024-12-30 11:02:10 +00:00
4d190ca5fc
git-svn-id: svn://svn.mplayerhq.hu/mplayer/trunk@24663 b3059339-0415-0410-9bf9-f77b7e298cf2
470 lines
16 KiB
C
470 lines
16 KiB
C
/*
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* Apple Remote input interface
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*
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* Copyright (C) 2007 Zoltan Ponekker <pontscho at kac.poliod.hu>
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*
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* (modified a bit by Ulion <ulion2002 at gmail.com>)
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*
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* This file is part of MPlayer.
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*
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* MPlayer is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* MPlayer is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with MPlayer; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include <IOKit/IOCFPlugIn.h>
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#include <IOKit/hid/IOHIDLib.h>
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#include <Carbon/Carbon.h>
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#include <sys/types.h>
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#include <unistd.h>
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#include "input.h"
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#include "ar.h"
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extern int slave_mode;
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extern const double NSAppKitVersionNumber;
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typedef struct cookie_keycode_map {
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char *cookies;
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int seq_len;
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int keycode;
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} cookie_keycode_map_t;
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/* On tiger, 5 always follows 6; on leopard, 18 always follows 19.
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* On leopard, there seems to be no cookie value of 5 or 6.
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* Following is the shortened cookie sequence list
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* keycode cookies_on_tiger cookies_on_leopard *down_state
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* AR_PREV_HOLD 14+6+3+2 31+19+3+2 yes
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* AR_NEXT_HOLD 14+6+4+2 31+19+4+2 yes
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* AR_MENU_HOLD 14+6+14+6 31+19+31+19
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* AR_VUP 14+12+11+6 31+29+28+19 yes
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* AR_VDOWN 14+13+11+6 31+30+28+19 yes
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* AR_MENU 14+7+6+14+7+6 31+20+19+31+20+19
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* AR_PLAY 14+8+6+14+8+6 31+21+19+31+21+19
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* AR_NEXT 14+9+6+14+9+6 31+22+19+31+22+19
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* AR_PREV 14+10+6+14+10+6 31+23+19+31+23+19
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* AR_PLAY_HOLD 18+14+6+18+14+6 35+31+19+35+31+19
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*
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* *down_state: A button with this feature has a pressed event and
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* a released event, with which we can trace the state of the button.
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* A button without this feature will only return one release event.
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*
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* hidden keys currently not implemented:
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* hold for 5 secs
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* MENU_NEXT_HOLD 15+14+6+15+14+6
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* MENU_PREV_HOLD 16+14+6+16+14+6
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* MENU_VUP_HOLD 20+14+6+20+14+6
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* MENU_VDOWN_HOLD 19+14+6+19+14+6
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*
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* It seems that pressing 'menu' and 'play' on the Apple Remote for
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* 5 seconds will trigger the make-pair function of the remote.
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* MENU_PLAY_HOLD 21+15+14+6+15+14+6
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*/
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static const cookie_keycode_map_t ar_codes_tiger[] = {
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{ "\x0E\x06\x03\x02", 4, AR_PREV_HOLD },
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{ "\x0E\x06\x04\x02", 4, AR_NEXT_HOLD },
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{ "\x0E\x06\x0E\x06", 4, AR_MENU_HOLD },
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{ "\x0E\x0C\x0B\x06", 4, AR_VUP },
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{ "\x0E\x0D\x0B\x06", 4, AR_VDOWN },
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{ "\x0E\x07\x06\x0E\x07\x06", 6, AR_MENU },
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{ "\x0E\x08\x06\x0E\x08\x06", 6, AR_PLAY },
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{ "\x0E\x09\x06\x0E\x09\x06", 6, AR_NEXT },
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{ "\x0E\x0A\x06\x0E\x0A\x06", 6, AR_PREV },
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{ "\x12\x0E\x06\x12\x0E\x06", 6, AR_PLAY_HOLD },
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{ NULL, 0, MP_INPUT_NOTHING },
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};
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static const cookie_keycode_map_t ar_codes_leopard[] = {
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{ "\x1F\x13\x03\x02", 4, AR_PREV_HOLD },
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{ "\x1F\x13\x04\x02", 4, AR_NEXT_HOLD },
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{ "\x1F\x13\x1F\x13", 4, AR_MENU_HOLD },
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{ "\x1F\x1D\x1C\x13", 4, AR_VUP },
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{ "\x1F\x1E\x1C\x13", 4, AR_VDOWN },
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{ "\x1F\x14\x13\x1F\x14\x13", 6, AR_MENU },
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{ "\x1F\x15\x13\x1F\x15\x13", 6, AR_PLAY },
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{ "\x1F\x16\x13\x1F\x16\x13", 6, AR_NEXT },
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{ "\x1F\x17\x13\x1F\x17\x13", 6, AR_PREV },
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{ "\x23\x1F\x13\x23\x1F\x13", 6, AR_PLAY_HOLD },
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{ NULL, 0, MP_INPUT_NOTHING },
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};
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static int is_leopard;
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static const cookie_keycode_map_t *ar_codes;
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static IOHIDQueueInterface **queue;
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static IOHIDDeviceInterface **hidDeviceInterface = NULL;
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static int inited = 0;
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static int hidDeviceIsOpen;
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/* Maximum number of elements in queue before oldest elements
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in queue begin to be lost. Set to 16 to hold at least 2 events. */
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static const int MAX_QUEUE_SIZE = 16;
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static int FindHIDDevices(mach_port_t masterPort,
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io_iterator_t *hidObjectIterator)
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{
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CFMutableDictionaryRef hidMatchDictionary;
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IOReturn ioReturnValue;
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// Set up a matching dictionary to search the I/O Registry
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// by class name for all HID class devices.
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hidMatchDictionary = IOServiceMatching("AppleIRController");
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// Now search I/O Registry for matching devices.
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ioReturnValue = IOServiceGetMatchingServices(masterPort,
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hidMatchDictionary,
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hidObjectIterator);
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// If search is unsuccessful, print message and hang.
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if (ioReturnValue != kIOReturnSuccess ||
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!IOIteratorIsValid(*hidObjectIterator)) {
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return -1;
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}
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return 0;
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}
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static int getHIDCookies(IOHIDDeviceInterface122 **handle,
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IOHIDElementCookie **cookies,
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int *nr_cookies)
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{
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CFTypeRef object;
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long number;
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CFArrayRef elements;
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CFDictionaryRef element;
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CFIndex i;
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*nr_cookies = 0;
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if (!handle || !(*handle))
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return -1;
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// Copy all elements, since we're grabbing most of the elements
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// for this device anyway, and thus, it's faster to iterate them
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// ourselves. When grabbing only one or two elements, a matching
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// dictionary should be passed in here instead of NULL.
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if (((*handle)->copyMatchingElements(handle, NULL, &elements)) != kIOReturnSuccess)
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return -1;
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// No elements, still a valid result.
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if (CFArrayGetCount(elements)==0)
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return 0;
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*cookies = calloc(CFArrayGetCount(elements), sizeof(IOHIDElementCookie));
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if (*cookies == NULL)
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return -1;
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for (i=0; i<CFArrayGetCount(elements); i++) {
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element = CFArrayGetValueAtIndex(elements, i);
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// Get cookie.
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object = CFDictionaryGetValue(element, CFSTR(kIOHIDElementCookieKey));
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if (object == 0 || CFGetTypeID(object) != CFNumberGetTypeID())
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continue;
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if (!CFNumberGetValue((CFNumberRef)object, kCFNumberLongType, &number))
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continue;
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(*cookies)[(*nr_cookies)++] = (IOHIDElementCookie)number;
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}
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return 0;
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}
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static int CreateHIDDeviceInterface(io_object_t hidDevice,
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IOHIDDeviceInterface ***hidDeviceInterface)
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{
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io_name_t className;
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IOCFPlugInInterface **plugInInterface = NULL;
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SInt32 score = 0;
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if (IOObjectGetClass(hidDevice, className) != kIOReturnSuccess)
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return -1;
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if (IOCreatePlugInInterfaceForService(hidDevice,
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kIOHIDDeviceUserClientTypeID,
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kIOCFPlugInInterfaceID,
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&plugInInterface,
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&score) != kIOReturnSuccess)
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return -1;
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// Call a method of the intermediate plugin to create the device interface
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if ((*plugInInterface)->QueryInterface(plugInInterface,
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CFUUIDGetUUIDBytes(kIOHIDDeviceInterfaceID),
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(LPVOID)hidDeviceInterface) != S_OK
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|| *hidDeviceInterface == NULL || **hidDeviceInterface == NULL) {
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(*plugInInterface)->Release(plugInInterface);
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return -1;
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}
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(*plugInInterface)->Release(plugInInterface);
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return 0;
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}
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int mp_input_ar_init(void)
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{
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io_iterator_t hidObjectIterator;
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io_object_t hidDevice;
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int i;
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IOHIDElementCookie *cookies = NULL;
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int nr_cookies = 0;
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if (inited)
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mp_input_ar_close(-1);
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if (floor(NSAppKitVersionNumber) <= 824 /* NSAppKitVersionNumber10_4 */) {
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ar_codes = &ar_codes_tiger[0];
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is_leopard = 0;
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}
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else {
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ar_codes = &ar_codes_leopard[0];
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is_leopard = 1;
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}
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if (FindHIDDevices(kIOMasterPortDefault, &hidObjectIterator))
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return -1;
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// Multiple controls could be found, we only use the first usable one.
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while ((hidDevice = IOIteratorNext(hidObjectIterator))) {
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if (CreateHIDDeviceInterface(hidDevice, &hidDeviceInterface) < 0) {
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hidDeviceInterface = NULL;
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IOObjectRelease(hidDevice);
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continue;
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}
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if (getHIDCookies((IOHIDDeviceInterface122 **)hidDeviceInterface,
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&cookies,
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&nr_cookies) < 0) {
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(*hidDeviceInterface)->Release(hidDeviceInterface);
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hidDeviceInterface = NULL;
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IOObjectRelease(hidDevice);
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continue;
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}
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IOObjectRelease(hidDevice);
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break;
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}
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if (hidDeviceInterface == NULL)
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goto mp_input_ar_init_error;
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// Open the device.
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if ((*hidDeviceInterface)->open(hidDeviceInterface,
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kIOHIDOptionsTypeSeizeDevice) != kIOReturnSuccess)
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goto mp_input_ar_init_error;
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hidDeviceIsOpen = 1;
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if ((queue = (*hidDeviceInterface)->allocQueue(hidDeviceInterface)) == NULL
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|| *queue == NULL)
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goto mp_input_ar_init_error;
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// Create the queue.
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(*queue)->create(queue, 0, MAX_QUEUE_SIZE);
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// Add elements to the queue to make the queue work.
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// On tiger, it's a sequence from 1 to 21,
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// maybe it's the range of cookie values.
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for (i = 0;i < nr_cookies;i++)
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(*queue)->addElement(queue, cookies[i], 0);
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// not used anymore
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if (cookies != NULL)
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free(cookies);
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// Start data delivery to the queue.
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(*queue)->start(queue);
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// not useful anymore
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IOObjectRelease(hidObjectIterator);
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inited = 1;
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return 0;
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mp_input_ar_init_error:
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if (cookies != NULL)
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free(cookies);
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if (hidDeviceInterface != NULL) {
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if (*hidDeviceInterface != NULL) {
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(*hidDeviceInterface)->close(hidDeviceInterface);
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(*hidDeviceInterface)->Release(hidDeviceInterface);
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}
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hidDeviceInterface = NULL;
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}
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IOObjectRelease(hidObjectIterator);
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return -1;
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}
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int is_mplayer_front()
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{
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ProcessSerialNumber myProc, frProc;
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Boolean sameProc;
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pid_t parentPID;
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if (GetFrontProcess(&frProc) == noErr
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&& GetCurrentProcess(&myProc) == noErr
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&& SameProcess(&frProc, &myProc, &sameProc) == noErr) {
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if (sameProc)
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return 1;
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// If MPlayer is running in slave mode, also check parent process.
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if (slave_mode && GetProcessPID(&frProc, &parentPID) == noErr)
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return parentPID==getppid();
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}
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return 0;
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}
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int mp_input_ar_read(int fd)
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{
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int i, down = 0;
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int ret = MP_INPUT_NOTHING;
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AbsoluteTime zeroTime = {0,0};
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IOHIDEventStruct event;
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static int prev_event = 0;
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IOReturn result = kIOReturnSuccess;
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const cookie_keycode_map_t *ar_code;
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int cookie_nr = 0;
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char cookie_queue[MAX_QUEUE_SIZE];
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int value_queue[MAX_QUEUE_SIZE];
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if (inited == 0)
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return MP_INPUT_NOTHING;
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while ((result = (*queue)->getNextEvent(queue, &event, zeroTime, 0)) == kIOReturnSuccess) {
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#ifdef TEST
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printf(" - event cookie: %d, value: %d, long value: %d\n",
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(int)event.elementCookie, (int)event.value, (int)event.longValue);
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#endif
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// Shorten cookie sequence by removing cookies value 5 and 18,
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// since 5 always follows 6 (on tiger), 18 follows 19 (on leopard).
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if ((int)event.elementCookie == 5
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|| ((int)event.elementCookie == 18 && is_leopard))
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continue;
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// Check valid cookie range.
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if ((int)event.elementCookie > 35 || (int)event.elementCookie < 2) {
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cookie_nr = 0;
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continue;
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}
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cookie_queue[cookie_nr] = (char)(int)event.elementCookie;
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value_queue[cookie_nr++] = event.value;
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// 4 cookies are necessary to make up a valid sequence.
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if (cookie_nr>=4) {
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// Find matching sequence.
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ar_code = ar_codes;
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while (ar_code->cookies != NULL &&
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(cookie_nr < ar_code->seq_len ||
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0 != memcmp(ar_code->cookies,
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&cookie_queue[cookie_nr-ar_code->seq_len],
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ar_code->seq_len)))
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++ar_code;
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if (ar_code->cookies != NULL) {
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ret = ar_code->keycode;
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switch (ret) {
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// For these 4 keys, the remote can keep a hold state.
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case AR_VUP:
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case AR_VDOWN:
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case AR_NEXT_HOLD:
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case AR_PREV_HOLD:
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for (i = cookie_nr-ar_code->seq_len; i < cookie_nr; ++i) {
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if (value_queue[i]) {
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down = MP_KEY_DOWN;
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break;
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}
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}
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break;
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default:
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down = 0;
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}
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}
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}
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}
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if (!is_mplayer_front()) {
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if (hidDeviceIsOpen) {
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(*hidDeviceInterface)->close(hidDeviceInterface);
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hidDeviceIsOpen = 0;
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// Read out all pending events.
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while (result == kIOReturnSuccess)
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result = (*queue)->getNextEvent(queue, &event, zeroTime, 0);
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}
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return MP_INPUT_NOTHING;
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}
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// If we are switched from running as a foreground process to a
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// background process and back again, re-open the device to make
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// sure we are not affected by the system or other applications
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// using the Apple Remote.
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else if (!hidDeviceIsOpen) {
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if ((*hidDeviceInterface)->open(hidDeviceInterface,
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kIOHIDOptionsTypeSeizeDevice) == kIOReturnSuccess)
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hidDeviceIsOpen = 1;
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}
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if (ret > 0)
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prev_event = ret;
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return ret | down;
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}
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void mp_input_ar_close(int fd)
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{
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if (inited == 0)
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return;
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// Close the device.
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(*hidDeviceInterface)->close(hidDeviceInterface);
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// Stop data delivery to queue.
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(*queue)->stop(queue);
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// Dispose of queue.
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(*queue)->dispose(queue);
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// Release the queue we allocated.
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(*queue)->Release(queue);
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// Release the interface.
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(*hidDeviceInterface)->Release(hidDeviceInterface);
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inited = 0;
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}
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#ifdef TEST
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int main(void)
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{
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int ret;
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if (mp_input_ar_init() < 0) {
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printf("Unable to initialize Apple Remote.\n");
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return 1;
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}
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while (1) {
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switch ((ret = mp_input_ar_read(0)) & ~MP_KEY_DOWN) {
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case AR_PLAY: printf(" - AR_PLAY."); break;
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case AR_PLAY_HOLD: printf(" - AR_PLAY_HOLD."); break;
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case AR_NEXT: printf(" - AR_NEXT."); break;
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case AR_NEXT_HOLD: printf(" - AR_NEXT_HOLD."); break;
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case AR_PREV: printf(" - AR_PREV."); break;
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case AR_PREV_HOLD: printf(" - AR_PREV_HOLD."); break;
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case AR_MENU: printf(" - AR_MENU."); break;
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case AR_MENU_HOLD: printf(" - AR_MENU_HOLD."); break;
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case AR_VUP: printf(" - AR_VUP."); break;
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case AR_VDOWN: printf(" - AR_VDOWN."); break;
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}
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if ((ret > 0 )&&(ret & MP_KEY_DOWN))
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printf(" [hold]");
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if (ret > 0)
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printf("\n");
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}
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mp_input_ar_close(0);
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return 0;
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}
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#endif
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