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SDL_sysjoystick.c

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/*
SDL - Simple DirectMedia Layer
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Copyright (C) 1997-2009 Sam Lantinga
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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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
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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Sam Lantinga
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slouken@libsdl.org
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*/
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#include "SDL_config.h"
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#ifdef SDL_JOYSTICK_LINUX
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/* This is the system specific header for the SDL joystick API */
#include <sys/stat.h>
#include <unistd.h>
#include <fcntl.h>
#include <sys/ioctl.h>
#include <limits.h> /* For the definition of PATH_MAX */
#include <linux/joystick.h>
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#if SDL_INPUT_LINUXEV
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#include <linux/input.h>
#endif
#include "SDL_joystick.h"
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#include "../SDL_sysjoystick.h"
#include "../SDL_joystick_c.h"
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/* Special joystick configurations */
static struct {
const char *name;
int naxes;
int nhats;
int nballs;
} special_joysticks[] = {
{ "MadCatz Panther XL", 3, 2, 1 }, /* We don't handle rudder (axis 8) */
{ "SideWinder Precision Pro", 4, 1, 0 },
{ "SideWinder 3D Pro", 4, 1, 0 },
{ "Microsoft SideWinder 3D Pro", 4, 1, 0 },
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{ "Microsoft SideWinder Precision Pro", 4, 1, 0 },
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{ "Microsoft SideWinder Dual Strike USB version 1.0", 2, 1, 0 },
{ "WingMan Interceptor", 3, 3, 0 },
{ "WingMan Extreme Digital 3D", 4, 1, 0 },
{ "Microsoft SideWinder Precision 2 Joystick", 4, 1, 0 },
{ "Logitech Inc. WingMan Extreme Digital 3D", 4, 1, 0 },
{ "Saitek Saitek X45", 6, 1, 0 }
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};
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/* It looks like newer kernels have the logical mapping at the driver level */
#define NO_LOGICAL_JOYSTICKS
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#ifndef NO_LOGICAL_JOYSTICKS
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/*
Some USB HIDs show up as a single joystick even though they actually
control 2 or more joysticks.
*/
/*
This code handles the MP-8800 (Quad) and MP-8866 (Dual), which can
be identified by their transparent blue design. It's quite trivial
to add other joysticks with similar quirky behavior.
-id
*/
struct joystick_logical_mapping {
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int njoy;
int nthing;
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};
/*
{logical joy, logical axis},
{logical joy, logical hat},
{logical joy, logical ball},
{logical joy, logical button}
*/
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static struct joystick_logical_mapping mp88xx_1_logical_axismap[] = {
{0,0},{0,1},{0,2},{0,3},{0,4},{0,5}
};
static struct joystick_logical_mapping mp88xx_1_logical_buttonmap[] = {
{0,0},{0,1},{0,2},{0,3},{0,4},{0,5},{0,6},{0,7},{0,8},{0,9},{0,10},{0,11}
};
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static struct joystick_logical_mapping mp88xx_2_logical_axismap[] = {
{0,0},{0,1},{0,2},{1,0},{1,1},{0,3},
{1,2},{1,3},{0,4},{0,5},{1,4},{1,5}
};
static struct joystick_logical_mapping mp88xx_2_logical_buttonmap[] = {
{0,0},{0,1},{0,2},{0,3},{0,4},{0,5},{0,6},{0,7},{0,8},{0,9},{0,10},{0,11},
{1,0},{1,1},{1,2},{1,3},{1,4},{1,5},{1,6},{1,7},{1,8},{1,9},{1,10},{1,11}
};
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static struct joystick_logical_mapping mp88xx_3_logical_axismap[] = {
{0,0},{0,1},{0,2},{1,0},{1,1},{0,3},
{1,2},{1,3},{2,0},{2,1},{2,2},{2,3},
{0,4},{0,5},{1,4},{1,5},{2,4},{2,5}
};
static struct joystick_logical_mapping mp88xx_3_logical_buttonmap[] = {
{0,0},{0,1},{0,2},{0,3},{0,4},{0,5},{0,6},{0,7},{0,8},{0,9},{0,10},{0,11},
{1,0},{1,1},{1,2},{1,3},{1,4},{1,5},{1,6},{1,7},{1,8},{1,9},{1,10},{1,11},
{2,0},{2,1},{2,2},{2,3},{2,4},{2,5},{2,6},{2,7},{2,8},{2,9},{2,10},{2,11}
};
static struct joystick_logical_mapping mp88xx_4_logical_axismap[] = {
{0,0},{0,1},{0,2},{1,0},{1,1},{0,3},
{1,2},{1,3},{2,0},{2,1},{2,2},{2,3},
{3,0},{3,1},{3,2},{3,3},{0,4},{0,5},
{1,4},{1,5},{2,4},{2,5},{3,4},{3,5}
};
static struct joystick_logical_mapping mp88xx_4_logical_buttonmap[] = {
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{0,0},{0,1},{0,2},{0,3},{0,4},{0,5},{0,6},{0,7},{0,8},{0,9},{0,10},{0,11},
{1,0},{1,1},{1,2},{1,3},{1,4},{1,5},{1,6},{1,7},{1,8},{1,9},{1,10},{1,11},
{2,0},{2,1},{2,2},{2,3},{2,4},{2,5},{2,6},{2,7},{2,8},{2,9},{2,10},{2,11},
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{3,0},{3,1},{3,2},{3,3},{3,4},{3,5},{3,6},{3,7},{3,8},{3,9},{3,10},{3,11}
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};
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struct joystick_logical_layout {
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int naxes;
int nhats;
int nballs;
int nbuttons;
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};
static struct joystick_logical_layout mp88xx_1_logical_layout[] = {
{6, 0, 0, 12}
};
static struct joystick_logical_layout mp88xx_2_logical_layout[] = {
{6, 0, 0, 12},
{6, 0, 0, 12}
};
static struct joystick_logical_layout mp88xx_3_logical_layout[] = {
{6, 0, 0, 12},
{6, 0, 0, 12},
{6, 0, 0, 12}
};
static struct joystick_logical_layout mp88xx_4_logical_layout[] = {
{6, 0, 0, 12},
{6, 0, 0, 12},
{6, 0, 0, 12},
{6, 0, 0, 12}
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};
/*
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This array sets up a means of mapping a single physical joystick to
multiple logical joysticks. (djm)
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njoys
the number of logical joysticks
layouts
an array of layout structures, one to describe each logical joystick
axes, hats, balls, buttons
arrays that map a physical thingy to a logical thingy
*/
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struct joystick_logicalmap {
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const char *name;
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int nbuttons;
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int njoys;
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struct joystick_logical_layout *layout;
struct joystick_logical_mapping *axismap;
struct joystick_logical_mapping *hatmap;
struct joystick_logical_mapping *ballmap;
struct joystick_logical_mapping *buttonmap;
};
static struct joystick_logicalmap joystick_logicalmap[] = {
{
"WiseGroup.,Ltd MP-8866 Dual USB Joypad",
12,
1,
mp88xx_1_logical_layout,
mp88xx_1_logical_axismap,
NULL,
NULL,
mp88xx_1_logical_buttonmap
},
{
"WiseGroup.,Ltd MP-8866 Dual USB Joypad",
24,
2,
mp88xx_2_logical_layout,
mp88xx_2_logical_axismap,
NULL,
NULL,
mp88xx_2_logical_buttonmap
},
{
"WiseGroup.,Ltd MP-8800 Quad USB Joypad",
12,
1,
mp88xx_1_logical_layout,
mp88xx_1_logical_axismap,
NULL,
NULL,
mp88xx_1_logical_buttonmap
},
{
"WiseGroup.,Ltd MP-8800 Quad USB Joypad",
24,
2,
mp88xx_2_logical_layout,
mp88xx_2_logical_axismap,
NULL,
NULL,
mp88xx_2_logical_buttonmap
},
{
"WiseGroup.,Ltd MP-8800 Quad USB Joypad",
36,
3,
mp88xx_3_logical_layout,
mp88xx_3_logical_axismap,
NULL,
NULL,
mp88xx_3_logical_buttonmap
},
{
"WiseGroup.,Ltd MP-8800 Quad USB Joypad",
48,
4,
mp88xx_4_logical_layout,
mp88xx_4_logical_axismap,
NULL,
NULL,
mp88xx_4_logical_buttonmap
}
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};
/* find the head of a linked list, given a point in it
*/
#define SDL_joylist_head(i, start)\
for(i = start; SDL_joylist[i].fname == NULL;) i = SDL_joylist[i].prev;
#define SDL_logical_joydecl(d) d
#else
#define SDL_logical_joydecl(d)
#endif /* USE_LOGICAL_JOYSTICKS */
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/* The maximum number of joysticks we'll detect */
#define MAX_JOYSTICKS 32
/* A list of available joysticks */
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static struct
{
char* fname;
#ifndef NO_LOGICAL_JOYSTICKS
SDL_Joystick* joy;
struct joystick_logicalmap* map;
int prev;
int next;
int logicalno;
#endif /* USE_LOGICAL_JOYSTICKS */
} SDL_joylist[MAX_JOYSTICKS];
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/* The private structure used to keep track of a joystick */
struct joystick_hwdata {
int fd;
/* The current linux joystick driver maps hats to two axes */
struct hwdata_hat {
int axis[2];
} *hats;
/* The current linux joystick driver maps balls to two axes */
struct hwdata_ball {
int axis[2];
} *balls;
/* Support for the Linux 2.4 unified input interface */
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#if SDL_INPUT_LINUXEV
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SDL_bool is_hid;
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Uint8 key_map[KEY_MAX-BTN_MISC];
Uint8 abs_map[ABS_MAX];
struct axis_correct {
int used;
int coef[3];
} abs_correct[ABS_MAX];
#endif
};
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#ifndef NO_LOGICAL_JOYSTICKS
static int CountLogicalJoysticks(int max)
{
register int i, j, k, ret, prev;
const char* name;
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int nbuttons, fd;
unsigned char n;
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ret = 0;
for(i = 0; i < max; i++) {
name = SDL_SYS_JoystickName(i);
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fd = open(SDL_joylist[i].fname, O_RDONLY, 0);
if ( fd >= 0 ) {
if ( ioctl(fd, JSIOCGBUTTONS, &n) < 0 ) {
nbuttons = -1;
} else {
nbuttons = n;
}
close(fd);
}
else {
nbuttons=-1;
}
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if (name) {
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for(j = 0; j < SDL_arraysize(joystick_logicalmap); j++) {
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if (!SDL_strcmp(name, joystick_logicalmap[j].name) && (nbuttons==-1 || nbuttons==joystick_logicalmap[j].nbuttons)) {
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prev = i;
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SDL_joylist[prev].map = &(joystick_logicalmap[j]);
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for(k = 1; k < joystick_logicalmap[j].njoys; k++) {
SDL_joylist[prev].next = max + ret;
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SDL_joylist[max+ret].prev = prev;
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prev = max + ret;
SDL_joylist[prev].logicalno = k;
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SDL_joylist[prev].map = &(joystick_logicalmap[j]);
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ret++;
}
break;
}
}
}
}
return ret;
}
static void LogicalSuffix(int logicalno, char* namebuf, int len)
{
register int slen;
const static char suffixs[] =
"01020304050607080910111213141516171819"
"20212223242526272829303132";
const char* suffix;
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slen = SDL_strlen(namebuf);
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suffix = NULL;
if (logicalno*2<sizeof(suffixs))
suffix = suffixs + (logicalno*2);
if (slen + 4 < len && suffix) {
namebuf[slen++] = ' ';
namebuf[slen++] = '#';
namebuf[slen++] = suffix[0];
namebuf[slen++] = suffix[1];
namebuf[slen++] = 0;
}
}
#endif /* USE_LOGICAL_JOYSTICKS */
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#if SDL_INPUT_LINUXEV
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#define test_bit(nr, addr) \
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(((1UL << ((nr) % (sizeof(long) * 8))) & ((addr)[(nr) / (sizeof(long) * 8)])) != 0)
#define NBITS(x) ((((x)-1)/(sizeof(long) * 8))+1)
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static int EV_IsJoystick(int fd)
{
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unsigned long evbit[NBITS(EV_MAX)] = { 0 };
unsigned long keybit[NBITS(KEY_MAX)] = { 0 };
unsigned long absbit[NBITS(ABS_MAX)] = { 0 };
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if ( (ioctl(fd, EVIOCGBIT(0, sizeof(evbit)), evbit) < 0) ||
(ioctl(fd, EVIOCGBIT(EV_KEY, sizeof(keybit)), keybit) < 0) ||
(ioctl(fd, EVIOCGBIT(EV_ABS, sizeof(absbit)), absbit) < 0) ) {
return(0);
}
if (!(test_bit(EV_KEY, evbit) && test_bit(EV_ABS, evbit) &&
test_bit(ABS_X, absbit) && test_bit(ABS_Y, absbit) &&
(test_bit(BTN_TRIGGER, keybit) || test_bit(BTN_A, keybit) || test_bit(BTN_1, keybit)))) return 0;
return(1);
}
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#endif /* SDL_INPUT_LINUXEV */
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/* Function to scan the system for joysticks */
int SDL_SYS_JoystickInit(void)
{
/* The base path of the joystick devices */
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const char *joydev_pattern[] = {
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#if SDL_INPUT_LINUXEV
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"/dev/input/event%d",
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#endif
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"/dev/input/js%d",
"/dev/js%d"
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};
int numjoysticks;
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int i, j;
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int fd;
char path[PATH_MAX];
dev_t dev_nums[MAX_JOYSTICKS]; /* major/minor device numbers */
struct stat sb;
int n, duplicate;
numjoysticks = 0;
/* First see if the user specified a joystick to use */
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if ( SDL_getenv("SDL_JOYSTICK_DEVICE") != NULL ) {
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SDL_strlcpy(path, SDL_getenv("SDL_JOYSTICK_DEVICE"), sizeof(path));
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if ( stat(path, &sb) == 0 ) {
fd = open(path, O_RDONLY, 0);
if ( fd >= 0 ) {
/* Assume the user knows what they're doing. */
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SDL_joylist[numjoysticks].fname = SDL_strdup(path);
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if ( SDL_joylist[numjoysticks].fname ) {
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dev_nums[numjoysticks] = sb.st_rdev;
++numjoysticks;
}
close(fd);
}
}
}
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for ( i=0; i<SDL_arraysize(joydev_pattern); ++i ) {
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for ( j=0; j < MAX_JOYSTICKS; ++j ) {
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SDL_snprintf(path, SDL_arraysize(path), joydev_pattern[i], j);
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/* rcg06302000 replaced access(F_OK) call with stat().
* stat() will fail if the file doesn't exist, so it's
* equivalent behaviour.
*/
if ( stat(path, &sb) == 0 ) {
/* Check to make sure it's not already in list.
* This happens when we see a stick via symlink.
*/
duplicate = 0;
for (n=0; (n<numjoysticks) && !duplicate; ++n) {
if ( sb.st_rdev == dev_nums[n] ) {
duplicate = 1;
}
}
if (duplicate) {
continue;
}
fd = open(path, O_RDONLY, 0);
if ( fd < 0 ) {
continue;
}
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#if SDL_INPUT_LINUXEV
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#ifdef DEBUG_INPUT_EVENTS
printf("Checking %s\n", path);
#endif
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if ( (i == 0) && ! EV_IsJoystick(fd) ) {
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close(fd);
continue;
}
#endif
close(fd);
/* We're fine, add this joystick */
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SDL_joylist[numjoysticks].fname = SDL_strdup(path);
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if ( SDL_joylist[numjoysticks].fname ) {
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dev_nums[numjoysticks] = sb.st_rdev;
++numjoysticks;
}
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}
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}
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#if SDL_INPUT_LINUXEV
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/* This is a special case...
If the event devices are valid then the joystick devices
will be duplicates but without extra information about their
hats or balls. Unfortunately, the event devices can't
currently be calibrated, so it's a win-lose situation.
So : /dev/input/eventX = /dev/input/jsY = /dev/jsY
*/
if ( (i == 0) && (numjoysticks > 0) )
break;
#endif
Apr 26, 2001
Apr 26, 2001
494
}
May 16, 2004
May 16, 2004
495
496
497
#ifndef NO_LOGICAL_JOYSTICKS
numjoysticks += CountLogicalJoysticks(numjoysticks);
#endif
Dec 2, 2002
Dec 2, 2002
498
Apr 26, 2001
Apr 26, 2001
499
500
501
502
503
504
505
506
507
return(numjoysticks);
}
/* Function to get the device-dependent name of a joystick */
const char *SDL_SYS_JoystickName(int index)
{
int fd;
static char namebuf[128];
char *name;
May 16, 2004
May 16, 2004
508
SDL_logical_joydecl(int oindex = index);
Apr 26, 2001
Apr 26, 2001
509
May 16, 2004
May 16, 2004
510
511
512
#ifndef NO_LOGICAL_JOYSTICKS
SDL_joylist_head(index, index);
#endif
Apr 26, 2001
Apr 26, 2001
513
name = NULL;
May 16, 2004
May 16, 2004
514
fd = open(SDL_joylist[index].fname, O_RDONLY, 0);
Apr 26, 2001
Apr 26, 2001
515
516
if ( fd >= 0 ) {
if (
Feb 16, 2006
Feb 16, 2006
517
#if SDL_INPUT_LINUXEV
Apr 26, 2001
Apr 26, 2001
518
519
520
(ioctl(fd, EVIOCGNAME(sizeof(namebuf)), namebuf) <= 0) &&
#endif
(ioctl(fd, JSIOCGNAME(sizeof(namebuf)), namebuf) <= 0) ) {
May 16, 2004
May 16, 2004
521
name = SDL_joylist[index].fname;
Apr 26, 2001
Apr 26, 2001
522
523
524
525
} else {
name = namebuf;
}
close(fd);
May 16, 2004
May 16, 2004
526
Mar 19, 2006
Mar 19, 2006
527
May 16, 2004
May 16, 2004
528
#ifndef NO_LOGICAL_JOYSTICKS
Mar 19, 2006
Mar 19, 2006
529
530
if (SDL_joylist[oindex].prev || SDL_joylist[oindex].next || index!=oindex)
{
May 16, 2004
May 16, 2004
531
LogicalSuffix(SDL_joylist[oindex].logicalno, namebuf, 128);
Mar 19, 2006
Mar 19, 2006
532
}
May 16, 2004
May 16, 2004
533
#endif
Apr 26, 2001
Apr 26, 2001
534
535
536
537
538
539
540
541
}
return name;
}
static int allocate_hatdata(SDL_Joystick *joystick)
{
int i;
Feb 7, 2006
Feb 7, 2006
542
joystick->hwdata->hats = (struct hwdata_hat *)SDL_malloc(
Apr 26, 2001
Apr 26, 2001
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
joystick->nhats * sizeof(struct hwdata_hat));
if ( joystick->hwdata->hats == NULL ) {
return(-1);
}
for ( i=0; i<joystick->nhats; ++i ) {
joystick->hwdata->hats[i].axis[0] = 1;
joystick->hwdata->hats[i].axis[1] = 1;
}
return(0);
}
static int allocate_balldata(SDL_Joystick *joystick)
{
int i;
Feb 7, 2006
Feb 7, 2006
558
joystick->hwdata->balls = (struct hwdata_ball *)SDL_malloc(
Apr 26, 2001
Apr 26, 2001
559
560
561
562
563
564
565
566
567
568
569
joystick->nballs * sizeof(struct hwdata_ball));
if ( joystick->hwdata->balls == NULL ) {
return(-1);
}
for ( i=0; i<joystick->nballs; ++i ) {
joystick->hwdata->balls[i].axis[0] = 0;
joystick->hwdata->balls[i].axis[1] = 0;
}
return(0);
}
Dec 2, 2002
Dec 2, 2002
570
static SDL_bool JS_ConfigJoystick(SDL_Joystick *joystick, int fd)
Apr 26, 2001
Apr 26, 2001
571
572
{
SDL_bool handled;
Dec 2, 2002
Dec 2, 2002
573
574
575
576
577
578
579
unsigned char n;
int old_axes, tmp_naxes, tmp_nhats, tmp_nballs;
const char *name;
char *env, env_name[128];
int i;
handled = SDL_FALSE;
Apr 26, 2001
Apr 26, 2001
580
Dec 2, 2002
Dec 2, 2002
581
582
583
584
585
/* Default joystick device settings */
if ( ioctl(fd, JSIOCGAXES, &n) < 0 ) {
joystick->naxes = 2;
} else {
joystick->naxes = n;
Apr 26, 2001
Apr 26, 2001
586
}
Dec 2, 2002
Dec 2, 2002
587
588
if ( ioctl(fd, JSIOCGBUTTONS, &n) < 0 ) {
joystick->nbuttons = 2;
Apr 26, 2001
Apr 26, 2001
589
} else {
Dec 2, 2002
Dec 2, 2002
590
joystick->nbuttons = n;
Apr 26, 2001
Apr 26, 2001
591
592
}
Dec 2, 2002
Dec 2, 2002
593
594
595
596
name = SDL_SYS_JoystickName(joystick->index);
old_axes = joystick->naxes;
/* Generic analog joystick support */
Feb 7, 2006
Feb 7, 2006
597
598
if ( SDL_strstr(name, "Analog") == name && SDL_strstr(name, "-hat") ) {
if ( SDL_sscanf(name,"Analog %d-axis %*d-button %d-hat",
Dec 2, 2002
Dec 2, 2002
599
600
601
602
603
604
605
606
607
608
&tmp_naxes, &tmp_nhats) == 2 ) {
joystick->naxes = tmp_naxes;
joystick->nhats = tmp_nhats;
handled = SDL_TRUE;
}
}
/* Special joystick support */
Feb 19, 2006
Feb 19, 2006
609
for ( i=0; i < SDL_arraysize(special_joysticks); ++i ) {
Feb 7, 2006
Feb 7, 2006
610
if ( SDL_strcmp(name, special_joysticks[i].name) == 0 ) {
Dec 2, 2002
Dec 2, 2002
611
612
613
614
615
616
617
618
619
620
621
joystick->naxes = special_joysticks[i].naxes;
joystick->nhats = special_joysticks[i].nhats;
joystick->nballs = special_joysticks[i].nballs;
handled = SDL_TRUE;
break;
}
}
/* User environment joystick support */
Feb 7, 2006
Feb 7, 2006
622
if ( (env = SDL_getenv("SDL_LINUX_JOYSTICK")) ) {
Feb 19, 2006
Feb 19, 2006
623
*env_name = '\0';
Feb 7, 2006
Feb 7, 2006
624
625
626
627
if ( *env == '\'' && SDL_sscanf(env, "'%[^']s'", env_name) == 1 )
env += SDL_strlen(env_name)+2;
else if ( SDL_sscanf(env, "%s", env_name) == 1 )
env += SDL_strlen(env_name);
Dec 2, 2002
Dec 2, 2002
628
Feb 7, 2006
Feb 7, 2006
629
if ( SDL_strcmp(name, env_name) == 0 ) {
Dec 2, 2002
Dec 2, 2002
630
Feb 7, 2006
Feb 7, 2006
631
if ( SDL_sscanf(env, "%d %d %d", &tmp_naxes, &tmp_nhats,
Dec 2, 2002
Dec 2, 2002
632
633
634
635
636
637
638
639
640
641
642
643
644
&tmp_nballs) == 3 ) {
joystick->naxes = tmp_naxes;
joystick->nhats = tmp_nhats;
joystick->nballs = tmp_nballs;
handled = SDL_TRUE;
}
}
}
/* Remap hats and balls */
if (handled) {
Apr 26, 2001
Apr 26, 2001
645
if ( joystick->nhats > 0 ) {
Feb 1, 2003
Feb 1, 2003
646
647
if ( allocate_hatdata(joystick) < 0 ) {
joystick->nhats = 0;
Apr 26, 2001
Apr 26, 2001
648
649
650
651
652
653
654
655
}
}
if ( joystick->nballs > 0 ) {
if ( allocate_balldata(joystick) < 0 ) {
joystick->nballs = 0;
}
}
}
Dec 2, 2002
Dec 2, 2002
656
Apr 26, 2001
Apr 26, 2001
657
658
659
return(handled);
}
Feb 16, 2006
Feb 16, 2006
660
#if SDL_INPUT_LINUXEV
Apr 26, 2001
Apr 26, 2001
661
662
663
static SDL_bool EV_ConfigJoystick(SDL_Joystick *joystick, int fd)
{
Mar 5, 2004
Mar 5, 2004
664
int i, t;
Oct 18, 2009
Oct 18, 2009
665
666
667
unsigned long keybit[NBITS(KEY_MAX)] = { 0 };
unsigned long absbit[NBITS(ABS_MAX)] = { 0 };
unsigned long relbit[NBITS(REL_MAX)] = { 0 };
Apr 26, 2001
Apr 26, 2001
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
684
685
686
687
688
689
690
691
692
693
694
695
696
697
698
699
700
701
702
/* See if this device uses the new unified event API */
if ( (ioctl(fd, EVIOCGBIT(EV_KEY, sizeof(keybit)), keybit) >= 0) &&
(ioctl(fd, EVIOCGBIT(EV_ABS, sizeof(absbit)), absbit) >= 0) &&
(ioctl(fd, EVIOCGBIT(EV_REL, sizeof(relbit)), relbit) >= 0) ) {
joystick->hwdata->is_hid = SDL_TRUE;
/* Get the number of buttons, axes, and other thingamajigs */
for ( i=BTN_JOYSTICK; i < KEY_MAX; ++i ) {
if ( test_bit(i, keybit) ) {
#ifdef DEBUG_INPUT_EVENTS
printf("Joystick has button: 0x%x\n", i);
#endif
joystick->hwdata->key_map[i-BTN_MISC] =
joystick->nbuttons;
++joystick->nbuttons;
}
}
for ( i=BTN_MISC; i < BTN_JOYSTICK; ++i ) {
if ( test_bit(i, keybit) ) {
#ifdef DEBUG_INPUT_EVENTS
printf("Joystick has button: 0x%x\n", i);
#endif
joystick->hwdata->key_map[i-BTN_MISC] =
joystick->nbuttons;
++joystick->nbuttons;
}
}
for ( i=0; i<ABS_MAX; ++i ) {
/* Skip hats */
if ( i == ABS_HAT0X ) {
i = ABS_HAT3Y;
continue;
}
if ( test_bit(i, absbit) ) {
Jan 24, 2011
Jan 24, 2011
703
struct input_absinfo absinfo;
Apr 26, 2001
Apr 26, 2001
704
Jan 24, 2011
Jan 24, 2011
705
if ( ioctl(fd, EVIOCGABS(i), &absinfo) < 0 )
May 16, 2004
May 16, 2004
706
continue;
Apr 26, 2001
Apr 26, 2001
707
708
709
#ifdef DEBUG_INPUT_EVENTS
printf("Joystick has absolute axis: %x\n", i);
printf("Values = { %d, %d, %d, %d, %d }\n",
Jan 24, 2011
Jan 24, 2011
710
711
absinfo.value, absinfo.minimum,
absinfo.maximum, absinfo.fuzz, absinfo.flat);
Apr 26, 2001
Apr 26, 2001
712
713
#endif /* DEBUG_INPUT_EVENTS */
joystick->hwdata->abs_map[i] = joystick->naxes;
Jan 24, 2011
Jan 24, 2011
714
if ( absinfo.minimum == absinfo.maximum ) {
Apr 26, 2001
Apr 26, 2001
715
716
717
joystick->hwdata->abs_correct[i].used = 0;
} else {
joystick->hwdata->abs_correct[i].used = 1;
Mar 6, 2004
Mar 6, 2004
718
joystick->hwdata->abs_correct[i].coef[0] =
Jan 24, 2011
Jan 24, 2011
719
(absinfo.maximum + absinfo.minimum) / 2 - absinfo.flat;
Mar 6, 2004
Mar 6, 2004
720
joystick->hwdata->abs_correct[i].coef[1] =
Jan 24, 2011
Jan 24, 2011
721
722
(absinfo.maximum + absinfo.minimum) / 2 + absinfo.flat;
t = ((absinfo.maximum - absinfo.minimum) / 2 - 2 * absinfo.flat);
Mar 5, 2004
Mar 5, 2004
723
724
if ( t != 0 ) {
joystick->hwdata->abs_correct[i].coef[2] = (1 << 29) / t;
Mar 6, 2004
Mar 6, 2004
725
726
} else {
joystick->hwdata->abs_correct[i].coef[2] = 0;
Mar 5, 2004
Mar 5, 2004
727
}
Apr 26, 2001
Apr 26, 2001
728
729
730
731
732
733
734
735
736
737
738
739
740
741
742
743
744
745
746
747
748
749
750
751
752
753
754
755
756
757
758
}
++joystick->naxes;
}
}
for ( i=ABS_HAT0X; i <= ABS_HAT3Y; i += 2 ) {
if ( test_bit(i, absbit) || test_bit(i+1, absbit) ) {
#ifdef DEBUG_INPUT_EVENTS
printf("Joystick has hat %d\n",(i-ABS_HAT0X)/2);
#endif
++joystick->nhats;
}
}
if ( test_bit(REL_X, relbit) || test_bit(REL_Y, relbit) ) {
++joystick->nballs;
}
/* Allocate data to keep track of these thingamajigs */
if ( joystick->nhats > 0 ) {
if ( allocate_hatdata(joystick) < 0 ) {
joystick->nhats = 0;
}
}
if ( joystick->nballs > 0 ) {
if ( allocate_balldata(joystick) < 0 ) {
joystick->nballs = 0;
}
}
}
return(joystick->hwdata->is_hid);
}
Feb 16, 2006
Feb 16, 2006
759
#endif /* SDL_INPUT_LINUXEV */
Apr 26, 2001
Apr 26, 2001
760
May 16, 2004
May 16, 2004
761
762
763
764
765
#ifndef NO_LOGICAL_JOYSTICKS
static void ConfigLogicalJoystick(SDL_Joystick *joystick)
{
struct joystick_logical_layout* layout;
Mar 19, 2006
Mar 19, 2006
766
layout = SDL_joylist[joystick->index].map->layout +
May 16, 2004
May 16, 2004
767
768
769
770
771
772
773
774
775
776
SDL_joylist[joystick->index].logicalno;
joystick->nbuttons = layout->nbuttons;
joystick->nhats = layout->nhats;
joystick->naxes = layout->naxes;
joystick->nballs = layout->nballs;
}
#endif
Apr 26, 2001
Apr 26, 2001
777
778
779
780
781
782
783
784
/* Function to open a joystick for use.
The joystick to open is specified by the index field of the joystick.
This should fill the nbuttons and naxes fields of the joystick structure.
It returns 0, or -1 if there is an error.
*/
int SDL_SYS_JoystickOpen(SDL_Joystick *joystick)
{
int fd;
May 16, 2004
May 16, 2004
785
786
SDL_logical_joydecl(int realindex);
SDL_logical_joydecl(SDL_Joystick *realjoy = NULL);
Apr 26, 2001
Apr 26, 2001
787
788
/* Open the joystick and set the joystick file descriptor */
May 16, 2004
May 16, 2004
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804
805
806
#ifndef NO_LOGICAL_JOYSTICKS
if (SDL_joylist[joystick->index].fname == NULL) {
SDL_joylist_head(realindex, joystick->index);
realjoy = SDL_JoystickOpen(realindex);
if (realjoy == NULL)
return(-1);
fd = realjoy->hwdata->fd;
} else {
fd = open(SDL_joylist[joystick->index].fname, O_RDONLY, 0);
}
SDL_joylist[joystick->index].joy = joystick;
#else
fd = open(SDL_joylist[joystick->index].fname, O_RDONLY, 0);
#endif
Apr 26, 2001
Apr 26, 2001
807
808
809
810
811
812
if ( fd < 0 ) {
SDL_SetError("Unable to open %s\n",
SDL_joylist[joystick->index]);
return(-1);
}
joystick->hwdata = (struct joystick_hwdata *)
Feb 7, 2006
Feb 7, 2006
813
SDL_malloc(sizeof(*joystick->hwdata));
Apr 26, 2001
Apr 26, 2001
814
815
816
817
818
if ( joystick->hwdata == NULL ) {
SDL_OutOfMemory();
close(fd);
return(-1);
}
Feb 7, 2006
Feb 7, 2006
819
SDL_memset(joystick->hwdata, 0, sizeof(*joystick->hwdata));
Apr 26, 2001
Apr 26, 2001
820
821
822
823
824
825
joystick->hwdata->fd = fd;
/* Set the joystick to non-blocking read mode */
fcntl(fd, F_SETFL, O_NONBLOCK);
/* Get the number of buttons and axes on the joystick */
May 16, 2004
May 16, 2004
826
827
828
829
830
#ifndef NO_LOGICAL_JOYSTICKS
if (realjoy)
ConfigLogicalJoystick(joystick);
else
#endif
Feb 16, 2006
Feb 16, 2006
831
#if SDL_INPUT_LINUXEV
Apr 26, 2001
Apr 26, 2001
832
833
if ( ! EV_ConfigJoystick(joystick, fd) )
#endif
Dec 2, 2002
Dec 2, 2002
834
835
JS_ConfigJoystick(joystick, fd);
Apr 26, 2001
Apr 26, 2001
836
837
838
return(0);
}
May 16, 2004
May 16, 2004
839
840
841
#ifndef NO_LOGICAL_JOYSTICKS
static SDL_Joystick* FindLogicalJoystick(
Mar 19, 2006
Mar 19, 2006
842
SDL_Joystick *joystick, struct joystick_logical_mapping* v)
May 16, 2004
May 16, 2004
843
844
845
846
847
848
849
850
851
852
853
854
855
856
857
858
859
860
861
862
863
864
865
866
867
868
869
870
{
SDL_Joystick *logicaljoy;
register int i;
i = joystick->index;
logicaljoy = NULL;
/* get the fake joystick that will receive the event
*/
for(;;) {
if (SDL_joylist[i].logicalno == v->njoy) {
logicaljoy = SDL_joylist[i].joy;
break;
}
if (SDL_joylist[i].next == 0)
break;
i = SDL_joylist[i].next;
}
return logicaljoy;
}
static int LogicalJoystickButton(
SDL_Joystick *joystick, Uint8 button, Uint8 state){
Mar 19, 2006
Mar 19, 2006
871
struct joystick_logical_mapping* buttons;
May 16, 2004
May 16, 2004
872
873
874
875
876
877
878
879
880
SDL_Joystick *logicaljoy = NULL;
/* if there's no map then this is just a regular joystick
*/
if (SDL_joylist[joystick->index].map == NULL)
return 0;
/* get the logical joystick that will receive the event
*/
Mar 19, 2006
Mar 19, 2006
881
buttons = SDL_joylist[joystick->index].map->buttonmap+button;
May 16, 2004
May 16, 2004
882
883
884
885
886
887
888
889
890
891
892
893
894
logicaljoy = FindLogicalJoystick(joystick, buttons);
if (logicaljoy == NULL)
return 1;
SDL_PrivateJoystickButton(logicaljoy, buttons->nthing, state);
return 1;
}
static int LogicalJoystickAxis(
SDL_Joystick *joystick, Uint8 axis, Sint16 value)
{
Mar 19, 2006
Mar 19, 2006
895
struct joystick_logical_mapping* axes;
May 16, 2004
May 16, 2004
896
897
898
899
900
901
902
903
904
SDL_Joystick *logicaljoy = NULL;
/* if there's no map then this is just a regular joystick
*/
if (SDL_joylist[joystick->index].map == NULL)
return 0;
/* get the logical joystick that will receive the event
*/
Mar 19, 2006
Mar 19, 2006
905
axes = SDL_joylist[joystick->index].map->axismap+axis;
May 16, 2004
May 16, 2004
906
907
908
909
910
911
912
913
914
915
916
logicaljoy = FindLogicalJoystick(joystick, axes);
if (logicaljoy == NULL)
return 1;
SDL_PrivateJoystickAxis(logicaljoy, axes->nthing, value);
return 1;
}
#endif /* USE_LOGICAL_JOYSTICKS */
Apr 26, 2001
Apr 26, 2001
917
918
919
920
921
922
923
924
925
static __inline__
void HandleHat(SDL_Joystick *stick, Uint8 hat, int axis, int value)
{
struct hwdata_hat *the_hat;
const Uint8 position_map[3][3] = {
{ SDL_HAT_LEFTUP, SDL_HAT_UP, SDL_HAT_RIGHTUP },
{ SDL_HAT_LEFT, SDL_HAT_CENTERED, SDL_HAT_RIGHT },
{ SDL_HAT_LEFTDOWN, SDL_HAT_DOWN, SDL_HAT_RIGHTDOWN }
};
May 16, 2004
May 16, 2004
926
SDL_logical_joydecl(SDL_Joystick *logicaljoy = NULL);
Mar 19, 2006
Mar 19, 2006
927
SDL_logical_joydecl(struct joystick_logical_mapping* hats = NULL);
Apr 26, 2001
Apr 26, 2001
928
929
930
931
932
933
934
935
936
937
938
939
940
the_hat = &stick->hwdata->hats[hat];
if ( value < 0 ) {
value = 0;
} else
if ( value == 0 ) {
value = 1;
} else
if ( value > 0 ) {
value = 2;
}
if ( value != the_hat->axis[axis] ) {
the_hat->axis[axis] = value;
May 16, 2004
May 16, 2004
941
942
943
944
945
946
947
948
#ifndef NO_LOGICAL_JOYSTICKS
/* if there's no map then this is just a regular joystick
*/
if (SDL_joylist[stick->index].map != NULL) {
/* get the fake joystick that will receive the event
*/
Mar 19, 2006
Mar 19, 2006
949
hats = SDL_joylist[stick->index].map->hatmap+hat;
May 16, 2004
May 16, 2004
950
951
952
953
954
955
956
957
958
logicaljoy = FindLogicalJoystick(stick, hats);
}
if (logicaljoy) {
stick = logicaljoy;
hat = hats->nthing;
}
#endif /* USE_LOGICAL_JOYSTICKS */
Apr 26, 2001
Apr 26, 2001
959
960
961
962
963
964
965
966
967
968
969
970
971
972
973
974
975
976
977
978
979
980
SDL_PrivateJoystickHat(stick, hat,
position_map[the_hat->axis[1]][the_hat->axis[0]]);
}
}
static __inline__
void HandleBall(SDL_Joystick *stick, Uint8 ball, int axis, int value)
{
stick->hwdata->balls[ball].axis[axis] += value;
}
/* Function to update the state of a joystick - called as a device poll.
* This function shouldn't update the joystick structure directly,
* but instead should call SDL_PrivateJoystick*() to deliver events
* and update joystick device state.
*/
static __inline__ void JS_HandleEvents(SDL_Joystick *joystick)
{
struct js_event events[32];
int i, len;
Uint8 other_axis;
May 16, 2004
May 16, 2004
981
982
983
#ifndef NO_LOGICAL_JOYSTICKS
if (SDL_joylist[joystick->index].fname == NULL) {
SDL_joylist_head(i, joystick->index);
May 1, 2006
May 1, 2006
984
985
JS_HandleEvents(SDL_joylist[i].joy);
return;
May 16, 2004
May 16, 2004
986
987
988
}
#endif
Apr 26, 2001
Apr 26, 2001
989
990
991
992
993
994
while ((len=read(joystick->hwdata->fd, events, (sizeof events))) > 0) {
len /= sizeof(events[0]);
for ( i=0; i<len; ++i ) {
switch (events[i].type & ~JS_EVENT_INIT) {
case JS_EVENT_AXIS:
if ( events[i].number < joystick->naxes ) {
May 16, 2004
May 16, 2004
995
996
997
998
#ifndef NO_LOGICAL_JOYSTICKS
if (!LogicalJoystickAxis(joystick,
events[i].number, events[i].value))
#endif
Apr 26, 2001
Apr 26, 2001
999
1000
SDL_PrivateJoystickAxis(joystick,
events[i].number, events[i].value);