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19 Commits

Author SHA1 Message Date
Peter Hutterer
4f05afd495 evdev 2.3.1
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-11-20 11:18:03 +10:00
Bartosz Brachaczek
c6964dd28a Set all valuators for relative motion events (#24737)
We should process all the deltas reported by a relative motion device,
otherwise some devices such as A4Tech X-750F or similar may trigger a
situation when the `v` array contains random values (it isn't
initialized anywhere) and later we process them and in effect the mouse
cursor "jumps" on the screen.
I'm not sure why, but we also must be sure that the `first` and `last`
variables reflect the axis map, otherwise the mouse cursor "jumps" on
the screen when clicking mouse buttons in some rare cases reported by
Bartek Iwaniec on Bugzilla. That's why a simple initialization of the
`v` array with zeros isn't sufficient.

X.Org Bug 24737 <http://bugs.freedesktop.org/show_bug.cgi?id=24737>

Signed-off-by: Bartosz Brachaczek <b.brachaczek@gmail.com>
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
(cherry picked from commit c1f16a4f59)
2009-11-20 11:17:44 +10:00
Dmitry Torokhov
175af93bdb Relax checks when reopening devices
When checking whether we are dealing with the same device as before
when we try to reopen it evdev should not require exact match of
entire keymap. Users should be allowed to adjust keymaps to better
match their hardware even after X starts. However we don't expect
changes in [BTN_MISC, KEY_OK) range since these codes are reserved for
mice, joysticks, tablets and so forth, so we will limit the check to
this range.

The same goes for absinfo - limits can change and it should not result
in device being disabled.

Also check the length of the data returned by ioctl and don't try to
compare more than we were given.

[peter: moved the key comparison below the led+abs comparison]

Signed-off-by: Dmitry Torokhov <dtor@mail.ru>
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
(cherry picked from commit a0f7f34dc5)
2009-11-20 11:17:42 +10:00
Peter Hutterer
7c3c7f83d0 Fix drag-lock property handler for multiple draglock buttons.
Parsing of the values was wrong. Given an input of 1 2 3 4, button 1 sets
the lock for button 2 and button 3 sets the lock for button 4.

This also means we need to return BadMatch if the property isn't a multiple
of 2.

Red Hat Bug 524428 <https://bugzilla.redhat.com/show_bug.cgi?id=524428>

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
(cherry picked from commit 11669d8279)
2009-11-20 11:17:41 +10:00
Peter Hutterer
aa6399fdb9 evdev 2.3.0
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-10-19 11:40:24 +10:00
Peter Hutterer
1d86f5dec1 Convert IgnoreAbsolute/RelativeAxes options into trinary state.
The Xen Virtual Pointer device exports both absolute and relative axes from
the kernel device. Which coordinates are used is a run-time decision and
depends on the host-specific configuration.
0a3657d2ee broke these devices, and they are
now unusable out-of-the-box as there is no configuration to cover them.

This patch converts the IgnoreAbsoluteAxes and the IgnoreRelativeAxes
configuration options into a trinary state.
1. If unset, configure the device as normal by trying to guess the right
   axis setup.
2. If set to true, ignore the specific axis type completely (except for
   wheel events).
3. If set to false, explicitly 'unignore' the axis type, alwas configuring
   it if it is present on the device. This setting introduces seemingly
   buggy behaviour (see Bug 21832)

1. and 2. replicate the current driver behaviour.
The result of 3. is that is that if a device has absolute axes and the
options set to false, both axes will be initialized (absolute last to get
clipping right). This requires axis labelling priorty to switch from
relative first to absolute first.

Relative events are forwarded into the server through the absolute axes,
the server scales this into the device absolute range and everyone is happy.

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-10-15 11:36:49 +10:00
Peter Hutterer
fbd86e2530 Fix copy/paste typo in comment. 2009-10-15 10:52:27 +10:00
Peter Hutterer
9ea1f9a695 Fix typo, use uppercase like the other messages
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-10-13 18:30:44 +10:00
Oliver McFadden
57b54ee399 evdev: Support the "Calibration" string option.
Originally based on a patch from Daniel Stone, this commit allows for
the calibration factors to be set either from Xorg.conf or via HAL.

Previously the only way was via the properties interface.

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-10-13 18:30:43 +10:00
Peter Hutterer
f2dc0681fe Finalize the middle button emulation when a read error occurs (#23048)
If a read error occurs, remove the block and wakeup handlers for middle
mouse button emulation. Otherwise, they'll still be around after the device
has been reopened and overwritten with the new ones created by EvdevOn. Once
this happened, future removal of the device can lead to a server crash.

X.Org Bug 23048 <http://bugs.freedesktop.org/show_bug.cgi?id=23048>

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-10-10 11:12:42 +10:00
Peter Hutterer
3fa49dfcab evdev 2.2.99.2
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-10-08 14:26:41 +10:00
Peter Hutterer
941391ca34 Add explicit options to ignore relative or absolute axes.
The X server cannot deal with devices that have both relative and absolute
axes. Evdev tries to guess wich axes to ignore given the device type and
disables absolute axes for mice and relative axes for tablets, touchscreens
and touchpad. This guess is sometimes wrong and causes exitus felis
domesticae parvulae.

Two new configuration options are provided to explicitly allow ignoring an
axis. Mouse wheel axes are exempt and will work even if relative axes are
ignored.  No property, this option must be set in the configuration.

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
Acked-by: Daniel Stone <daniel@fooishbar.org>
2009-10-07 12:55:22 +10:00
Peter Hutterer
2144f7d834 Remove unused has_xy.
has_xy is only ever set, but not used for anything else.

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-09-30 12:30:59 +10:00
Peter Hutterer
61b4e88e01 emuWheel: fix signed/unsigned screwup
This patch fixes wheel emulation on buttons other than 0.

Reported-by: Andy Neitzke
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-09-23 19:29:41 +10:00
Peter Hutterer
9ee70943ec Require xorg-macros 1.3 and XORG_DEFAULT_OPTIONS
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-09-11 09:57:22 +10:00
Peter Hutterer
415b6ffa95 Only take the driver-internal button mapping to count buttons (#23405)
Regression:
    If a user has multiple buttons mapped to the same button number, the
    number of buttons counted is set to a wrong value.  e.g. a button
    mapping of 1 1 1 for a mouse with three buttons would only initialize 1
    button to the X server.

    In the future, the user cannot change this button mapping as the server
    only knows about one button.

The user-supplied button map (option ButtonMapping) shouldn't matter when
counting the buttons. Only the driver-internal mapping (BTN_0 -> button 1,
etc.) matters.

X.Org Bug 23405 <http://bugs.freedesktop.org/show_bug.cgi?id=23405>

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-08-20 11:09:12 +10:00
Dima Kogan
f4ba2bd785 Allow 0 as wheel emulation button for unconditional scrolling (#20529)
If wheel emulation is on and the emulation button is 0, then any x/y motion
of the device is converted into wheel events. The devices becomes a
scrolling-only device.

Signed-off-by: Dima Kogan <dkogan@cds.caltech.edu>
Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-08-18 13:09:33 +10:00
Peter Hutterer
2e5f68754f Restrict wheel emulation to a single axis at a time.
Wheel emulation works for both horizontal and vertical axes. Thus, if a
device doesn't move in perfect straight line, scroll events build up on the
respective other axis.

In some clients, scroll wheel events have specific meanings other than
scrolling (e.g. mplayer). In these clients, erroneous scrolling events come
at a high cost.

Thus, if a scroll wheel event is generated for one axis, reset the inertia
of the other axis to 0, avoiding the buildup of these erroneous scrolling
events.

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-08-18 13:07:13 +10:00
Peter Hutterer
8fdb2abb6f man: fix documentation for EVDEV_PROP_WHEEL_BUTTON
0 doesn't disable it, it's still treated like a button number. copy/paste
error.

Signed-off-by: Peter Hutterer <peter.hutterer@who-t.net>
2009-08-14 13:00:09 +10:00
6 changed files with 246 additions and 130 deletions

View File

@@ -22,7 +22,7 @@
AC_PREREQ(2.57)
AC_INIT([xf86-input-evdev],
2.2.99.1,
2.3.1,
[https://bugs.freedesktop.org/enter_bug.cgi?product=xorg],
xf86-input-evdev)
@@ -32,16 +32,16 @@ AM_INIT_AUTOMAKE([dist-bzip2])
AM_MAINTAINER_MODE
# Require xorg-macros: XORG_CWARNFLAGS, XORG_CHANGELOG
m4_ifndef([XORG_MACROS_VERSION], [AC_FATAL([must install xorg-macros 1.2 or later before running autoconf/autogen])])
XORG_MACROS_VERSION(1.2)
# Require xorg-macros: XORG_DEFAULT_OPTIONS
m4_ifndef([XORG_MACROS_VERSION], [AC_FATAL([must install xorg-macros 1.3 or later before running autoconf/autogen])])
XORG_MACROS_VERSION(1.3)
AM_CONFIG_HEADER([config.h])
# Checks for programs.
AC_DISABLE_STATIC
AC_PROG_LIBTOOL
AC_PROG_CC
XORG_CWARNFLAGS
XORG_DEFAULT_OPTIONS
AH_TOP([#include "xorg-server.h"])
@@ -70,10 +70,6 @@ AC_HEADER_STDC
DRIVER_NAME=evdev
AC_SUBST([DRIVER_NAME])
XORG_MANPAGE_SECTIONS
XORG_RELEASE_VERSION
XORG_CHANGELOG
AC_OUTPUT([Makefile
src/Makefile
man/Makefile

View File

@@ -43,7 +43,7 @@
#define EVDEV_PROP_WHEEL_INERTIA "Evdev Wheel Emulation Inertia"
/* CARD16 */
#define EVDEV_PROP_WHEEL_TIMEOUT "Evdev Wheel Emulation Timeout"
/* CARD8, value range 0-32, 0 to disable a value */
/* CARD8, value range 0-32, 0 to always scroll */
#define EVDEV_PROP_WHEEL_BUTTON "Evdev Wheel Emulation Button"
/* Drag lock */

View File

@@ -105,7 +105,10 @@ press/release events as specified for the
.B XAxisMapping
and
.B YAxisMapping
settings. Default: 4. Property: "Evdev Wheel Emulation Button".
settings. If the button is 0 and
.BR EmulateWheel
is on, any motion of the device is converted into wheel events. Default: 4.
Property: "Evdev Wheel Emulation Button".
.TP 7
.BI "Option \*qEmulateWheelInertia\*q \*q" integer \*q
Specifies how far (in pixels) the pointer must move to generate button
@@ -132,10 +135,34 @@ Default: disabled.
.BI "Option \*qInvertY\*q \*q" Bool \*q
Invert the given axis. Default: off. Property: "Evdev Axis Inversion".
.TP 7
.BI "Option \*qIgnoreRelativeAxes\*q \*q" Bool \*q
.TP 7
.BI "Option \*qIgnoreAbsoluteAxes\*q \*q" Bool \*q
Ignore the specified type of axis. Default: unset. The X server cannot deal
with devices that have both relative and absolute axes. Evdev tries to guess
wich axes to ignore given the device type and disables absolute axes for
mice and relative axes for tablets, touchscreens and touchpad. These options
allow to forcibly disable an axis type. Mouse wheel axes are exempt and will
work even if relative axes are ignored. No property, this configuration must
be set in the configuration.
.br
If either option is set to False, the driver will not ignore the specified
axes regardless of the presence of other axes. This may trigger buggy
behavior and events from this axis are always forwarded. Users are
discouraged from setting this option.
.TP 7
.BI "Option \*qReopenAttempts\*q \*q" integer \*q
Number of reopen attempts after a read error occurs on the device (e.g. after
waking up from suspend). In between each attempt is a 100ms wait. Default: 10.
.TP 7
.BI "Option \*qCalibration\*q \*q" "min-x max-x min-y max-y" \*q
Calibrates the X and Y axes for devices that need to scale to a different
coordinate system than reported to the X server. This feature is required
for devices that need to scale to a different coordinate system than
originally reported by the kernel (e.g. touchscreens). The scaling to the
custom coordinate system is done in-driver and the X server is unaware of
the transformation. Property: "Evdev Axis Calibration".
.TP 7
.BI "Option \*qSwapAxes\*q \*q" Bool \*q
Swap x/y axes. Default: off. Property: "Evdev Axes Swap".
.TP 7
@@ -164,9 +191,7 @@ driver.
.TP 7
.BI "Evdev Axis Calibration"
4 32-bit values, order min-x, max-x, min-y, max-y or 0 values to disable
run-time axis calibration. This feature is required for devices that need to
scale to a different coordinate system than originally reported to the X
server, such as touchscreens that require run-time calibration.
in-driver axis calibration.
.TP 7
.BI "Evdev Axis Inversion"
2 boolean values (8 bit, 0 or 1), order X, Y. 1 inverts the axis.

View File

@@ -256,7 +256,7 @@ EvdevDragLockSetProperty(DeviceIntPtr dev, Atom atom, XIPropertyValuePtr val,
pEvdev->dragLock.meta = meta;
memset(pEvdev->dragLock.lock_pair, 0, sizeof(pEvdev->dragLock.lock_pair));
}
} else
} else if ((val->size % 2) == 0)
{
CARD8* vals = (CARD8*)val->data;
@@ -269,10 +269,11 @@ EvdevDragLockSetProperty(DeviceIntPtr dev, Atom atom, XIPropertyValuePtr val,
pEvdev->dragLock.meta = 0;
memset(pEvdev->dragLock.lock_pair, 0, sizeof(pEvdev->dragLock.lock_pair));
for (i = 0; i < val->size && i < EVDEV_MAXBUTTONS; i++)
pEvdev->dragLock.lock_pair[i] = vals[i];
for (i = 0; i < val->size && i < EVDEV_MAXBUTTONS; i += 2)
pEvdev->dragLock.lock_pair[vals[i] - 1] = vals[i + 1];
}
}
} else
return BadMatch;
}
return Success;

View File

@@ -54,7 +54,7 @@ static Atom prop_wheel_button = 0;
/* Local Funciton Prototypes */
static BOOL EvdevWheelEmuHandleButtonMap(InputInfoPtr pInfo, WheelAxisPtr pAxis, char *axis_name);
static void EvdevWheelEmuInertia(InputInfoPtr pInfo, WheelAxisPtr axis, int value);
static int EvdevWheelEmuInertia(InputInfoPtr pInfo, WheelAxisPtr axis, int value);
/* Filter mouse button events */
BOOL
@@ -98,38 +98,51 @@ BOOL
EvdevWheelEmuFilterMotion(InputInfoPtr pInfo, struct input_event *pEv)
{
EvdevPtr pEvdev = (EvdevPtr)pInfo->private;
WheelAxisPtr pAxis = NULL;
WheelAxisPtr pAxis = NULL, pOtherAxis = NULL;
int value = pEv->value;
int ms;
/* Has wheel emulation been configured to be enabled? */
if (!pEvdev->emulateWheel.enabled)
return FALSE;
/* Handle our motion events if the emuWheel button is pressed*/
if (pEvdev->emulateWheel.button_state) {
/* Handle our motion events if the emuWheel button is pressed
* wheel button of 0 means always emulate wheel.
*/
if (pEvdev->emulateWheel.button_state || !pEvdev->emulateWheel.button) {
/* Just return if the timeout hasn't expired yet */
ms = pEvdev->emulateWheel.expires - GetTimeInMillis();
if (ms > 0)
return TRUE;
if (pEvdev->emulateWheel.button)
{
int ms = pEvdev->emulateWheel.expires - GetTimeInMillis();
if (ms > 0)
return TRUE;
}
/* We don't want to intercept real mouse wheel events */
switch(pEv->code) {
case REL_X:
pAxis = &(pEvdev->emulateWheel.X);
pOtherAxis = &(pEvdev->emulateWheel.Y);
break;
case REL_Y:
pAxis = &(pEvdev->emulateWheel.Y);
pOtherAxis = &(pEvdev->emulateWheel.X);
break;
default:
break;
}
/* If we found REL_X or REL_Y, emulate a mouse wheel */
/* If we found REL_X or REL_Y, emulate a mouse wheel.
Reset the inertia of the other axis when a scroll event was sent
to avoid the buildup of erroneous scroll events if the user
doesn't move in a perfectly straight line.
*/
if (pAxis)
EvdevWheelEmuInertia(pInfo, pAxis, value);
{
if (EvdevWheelEmuInertia(pInfo, pAxis, value))
pOtherAxis->traveled_distance = 0;
}
/* Eat motion events while emulateWheel button pressed. */
return TRUE;
@@ -138,17 +151,20 @@ EvdevWheelEmuFilterMotion(InputInfoPtr pInfo, struct input_event *pEv)
return FALSE;
}
/* Simulate inertia for our emulated mouse wheel */
static void
/* Simulate inertia for our emulated mouse wheel.
Returns the number of wheel events generated.
*/
static int
EvdevWheelEmuInertia(InputInfoPtr pInfo, WheelAxisPtr axis, int value)
{
EvdevPtr pEvdev = (EvdevPtr)pInfo->private;
int button;
int inertia;
int rc = 0;
/* if this axis has not been configured, just eat the motion */
if (!axis->up_button)
return;
return rc;
axis->traveled_distance += value;
@@ -164,7 +180,9 @@ EvdevWheelEmuInertia(InputInfoPtr pInfo, WheelAxisPtr axis, int value)
while(abs(axis->traveled_distance) > pEvdev->emulateWheel.inertia) {
axis->traveled_distance -= inertia;
EvdevQueueButtonClicks(pInfo, button, 1);
rc++;
}
return rc;
}
/* Handle button mapping here to avoid code duplication,

View File

@@ -89,7 +89,9 @@
#define EVDEV_INITIALIZED (1 << 5) /* WheelInit etc. called already? */
#define EVDEV_TOUCHSCREEN (1 << 6)
#define EVDEV_CALIBRATED (1 << 7) /* run-time calibrated? */
#define EVDEV_TABLET (1 << 8) /* run-time calibrated? */
#define EVDEV_TABLET (1 << 8) /* device looks like a tablet? */
#define EVDEV_UNIGNORE_ABSOLUTE (1 << 9) /* explicitly unignore abs axes */
#define EVDEV_UNIGNORE_RELATIVE (1 << 10) /* explicitly unignore rel axes */
#define MIN_KEYCODE 8
#define GLYPHS_PER_KEY 2
@@ -438,7 +440,7 @@ EvdevProcessValuators(InputInfoPtr pInfo, int v[MAX_VALUATORS], int *num_v,
for (i = 0; i < REL_CNT; i++)
{
int map = pEvdev->axis_map[i];
if (pEvdev->delta[i] && map != -1)
if (map != -1)
{
v[map] = pEvdev->delta[i];
if (map < first)
@@ -768,6 +770,7 @@ EvdevReadInput(InputInfoPtr pInfo)
{
if (errno == ENODEV) /* May happen after resume */
{
EvdevMBEmuFinalize(pInfo);
xf86RemoveEnabledDevice(pInfo);
close(pInfo->fd);
pInfo->fd = -1;
@@ -1421,6 +1424,17 @@ EvdevInitButtonMapping(InputInfoPtr pInfo)
}
static void
EvdevInitAnyClass(DeviceIntPtr device, EvdevPtr pEvdev)
{
if (pEvdev->flags & EVDEV_RELATIVE_EVENTS &&
EvdevAddRelClass(device) == Success)
xf86Msg(X_INFO, "%s: initialized for relative axes.\n", device->name);
if (pEvdev->flags & EVDEV_ABSOLUTE_EVENTS &&
EvdevAddAbsClass(device) == Success)
xf86Msg(X_INFO, "%s: initialized for absolute axes.\n", device->name);
}
static void
EvdevInitAbsClass(DeviceIntPtr device, EvdevPtr pEvdev)
{
@@ -1512,7 +1526,9 @@ EvdevInit(DeviceIntPtr device)
* used and relative axes are ignored.
*/
if (pEvdev->flags & (EVDEV_TOUCHPAD | EVDEV_TOUCHSCREEN | EVDEV_TABLET))
if (pEvdev->flags & (EVDEV_UNIGNORE_RELATIVE | EVDEV_UNIGNORE_ABSOLUTE))
EvdevInitAnyClass(device, pEvdev);
else if (pEvdev->flags & (EVDEV_TOUCHPAD | EVDEV_TOUCHSCREEN | EVDEV_TABLET))
EvdevInitTouchDevice(device, pEvdev);
else if (pEvdev->flags & EVDEV_RELATIVE_EVENTS)
EvdevInitRelClass(device, pEvdev);
@@ -1655,6 +1671,7 @@ static int
EvdevCacheCompare(InputInfoPtr pInfo, BOOL compare)
{
EvdevPtr pEvdev = pInfo->private;
size_t len;
int i;
char name[1024] = {0};
@@ -1663,107 +1680,122 @@ EvdevCacheCompare(InputInfoPtr pInfo, BOOL compare)
unsigned long rel_bitmask[NLONGS(REL_CNT)] = {0};
unsigned long abs_bitmask[NLONGS(ABS_CNT)] = {0};
unsigned long led_bitmask[NLONGS(LED_CNT)] = {0};
struct input_absinfo absinfo[ABS_CNT];
if (ioctl(pInfo->fd,
EVIOCGNAME(sizeof(name) - 1), name) < 0) {
if (ioctl(pInfo->fd, EVIOCGNAME(sizeof(name) - 1), name) < 0) {
xf86Msg(X_ERROR, "ioctl EVIOCGNAME failed: %s\n", strerror(errno));
goto error;
}
if (compare && strcmp(pEvdev->name, name)) {
xf86Msg(X_ERROR, "%s: device name changed: %s != %s\n", pInfo->name, pEvdev->name, name);
if (!compare) {
strcpy(pEvdev->name, name);
} else if (strcmp(pEvdev->name, name)) {
xf86Msg(X_ERROR, "%s: device name changed: %s != %s\n",
pInfo->name, pEvdev->name, name);
goto error;
}
if (ioctl(pInfo->fd,
EVIOCGBIT(0, sizeof(bitmask)), bitmask) < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n", pInfo->name, strerror(errno));
len = ioctl(pInfo->fd, EVIOCGBIT(0, sizeof(bitmask)), bitmask);
if (len < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n",
pInfo->name, strerror(errno));
goto error;
}
if (compare && memcmp(pEvdev->bitmask, bitmask, sizeof(bitmask))) {
if (!compare) {
memcpy(pEvdev->bitmask, bitmask, len);
} else if (memcmp(pEvdev->bitmask, bitmask, len)) {
xf86Msg(X_ERROR, "%s: device bitmask has changed\n", pInfo->name);
goto error;
}
if (ioctl(pInfo->fd,
EVIOCGBIT(EV_REL, sizeof(rel_bitmask)), rel_bitmask) < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n", pInfo->name, strerror(errno));
len = ioctl(pInfo->fd, EVIOCGBIT(EV_REL, sizeof(rel_bitmask)), rel_bitmask);
if (len < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n",
pInfo->name, strerror(errno));
goto error;
}
if (compare && memcmp(pEvdev->rel_bitmask, rel_bitmask, sizeof(rel_bitmask))) {
if (!compare) {
memcpy(pEvdev->rel_bitmask, rel_bitmask, len);
} else if (memcmp(pEvdev->rel_bitmask, rel_bitmask, len)) {
xf86Msg(X_ERROR, "%s: device rel_bitmask has changed\n", pInfo->name);
goto error;
}
if (ioctl(pInfo->fd,
EVIOCGBIT(EV_ABS, sizeof(abs_bitmask)), abs_bitmask) < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n", pInfo->name, strerror(errno));
len = ioctl(pInfo->fd, EVIOCGBIT(EV_ABS, sizeof(abs_bitmask)), abs_bitmask);
if (len < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n",
pInfo->name, strerror(errno));
goto error;
}
if (compare && memcmp(pEvdev->abs_bitmask, abs_bitmask, sizeof(abs_bitmask))) {
if (!compare) {
memcpy(pEvdev->abs_bitmask, abs_bitmask, len);
} else if (memcmp(pEvdev->abs_bitmask, abs_bitmask, len)) {
xf86Msg(X_ERROR, "%s: device abs_bitmask has changed\n", pInfo->name);
goto error;
}
if (ioctl(pInfo->fd,
EVIOCGBIT(EV_KEY, sizeof(key_bitmask)), key_bitmask) < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n", pInfo->name, strerror(errno));
len = ioctl(pInfo->fd, EVIOCGBIT(EV_LED, sizeof(led_bitmask)), led_bitmask);
if (len < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n",
pInfo->name, strerror(errno));
goto error;
}
if (compare && memcmp(pEvdev->key_bitmask, key_bitmask, sizeof(key_bitmask))) {
xf86Msg(X_ERROR, "%s: device key_bitmask has changed\n", pInfo->name);
goto error;
}
if (ioctl(pInfo->fd,
EVIOCGBIT(EV_LED, sizeof(led_bitmask)), led_bitmask) < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n", pInfo->name, strerror(errno));
goto error;
}
if (compare && memcmp(pEvdev->led_bitmask, led_bitmask, sizeof(led_bitmask))) {
if (!compare) {
memcpy(pEvdev->led_bitmask, led_bitmask, len);
} else if (memcmp(pEvdev->led_bitmask, led_bitmask, len)) {
xf86Msg(X_ERROR, "%s: device led_bitmask has changed\n", pInfo->name);
goto error;
}
memset(absinfo, 0, sizeof(absinfo));
for (i = ABS_X; i <= ABS_MAX; i++)
{
if (TestBit(i, abs_bitmask))
{
if (ioctl(pInfo->fd, EVIOCGABS(i), &absinfo[i]) < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGABS failed: %s\n", pInfo->name, strerror(errno));
/*
* Do not try to validate absinfo data since it is not expected
* to be static, always refresh it in evdev structure.
*/
for (i = ABS_X; i <= ABS_MAX; i++) {
if (TestBit(i, abs_bitmask)) {
len = ioctl(pInfo->fd, EVIOCGABS(i), &pEvdev->absinfo[i]);
if (len < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGABSi(%d) failed: %s\n",
pInfo->name, i, strerror(errno));
goto error;
}
/* ignore current position (value) in comparison (bug #19819) */
absinfo[i].value = pEvdev->absinfo[i].value;
}
}
if (compare && memcmp(pEvdev->absinfo, absinfo, sizeof(absinfo))) {
xf86Msg(X_ERROR, "%s: device absinfo has changed\n", pInfo->name);
len = ioctl(pInfo->fd, EVIOCGBIT(EV_KEY, sizeof(key_bitmask)), key_bitmask);
if (len < 0) {
xf86Msg(X_ERROR, "%s: ioctl EVIOCGBIT failed: %s\n",
pInfo->name, strerror(errno));
goto error;
}
/* cache info */
if (!compare)
{
strcpy(pEvdev->name, name);
memcpy(pEvdev->bitmask, bitmask, sizeof(bitmask));
memcpy(pEvdev->key_bitmask, key_bitmask, sizeof(key_bitmask));
memcpy(pEvdev->rel_bitmask, rel_bitmask, sizeof(rel_bitmask));
memcpy(pEvdev->abs_bitmask, abs_bitmask, sizeof(abs_bitmask));
memcpy(pEvdev->led_bitmask, led_bitmask, sizeof(led_bitmask));
memcpy(pEvdev->absinfo, absinfo, sizeof(absinfo));
if (compare) {
/*
* Keys are special as user can adjust keymap at any time (on
* devices that support EVIOCSKEYCODE. However we do not expect
* buttons reserved for mice/tablets/digitizers and so on to
* appear/disappear so we will check only those in
* [BTN_MISC, KEY_OK) range.
*/
size_t start_word = BTN_MISC / LONG_BITS;
size_t start_byte = start_word * sizeof(unsigned long);
size_t end_word = KEY_OK / LONG_BITS;
size_t end_byte = end_word * sizeof(unsigned long);
if (len >= start_byte &&
memcmp(&pEvdev->key_bitmask[start_word], &key_bitmask[start_word],
min(len, end_byte) - start_byte + 1)) {
xf86Msg(X_ERROR, "%s: device key_bitmask has changed\n", pInfo->name);
goto error;
}
}
/* Copy the data so we have reasonably up-to-date info */
memcpy(pEvdev->key_bitmask, key_bitmask, len);
return Success;
error:
@@ -1774,8 +1806,9 @@ error:
static int
EvdevProbe(InputInfoPtr pInfo)
{
int i, has_rel_axes, has_abs_axes, has_xy, has_keys, num_buttons, has_scroll;
int i, has_rel_axes, has_abs_axes, has_keys, num_buttons, has_scroll;
int kernel24 = 0;
int ignore_abs = 0, ignore_rel = 0;
EvdevPtr pEvdev = pInfo->private;
if (pEvdev->grabDevice && ioctl(pInfo->fd, EVIOCGRAB, (void *)1)) {
@@ -1791,9 +1824,29 @@ EvdevProbe(InputInfoPtr pInfo)
ioctl(pInfo->fd, EVIOCGRAB, (void *)0);
}
/* Trinary state for ignoring axes:
- unset: do the normal thing.
- TRUE: explicitly ignore them.
- FALSE: unignore axes, use them at all cost if they're present.
*/
if (xf86FindOption(pInfo->options, "IgnoreRelativeAxes"))
{
if (xf86SetBoolOption(pInfo->options, "IgnoreRelativeAxes", FALSE))
ignore_rel = TRUE;
else
pEvdev->flags |= EVDEV_UNIGNORE_RELATIVE;
}
if (xf86FindOption(pInfo->options, "IgnoreAbsoluteAxes"))
{
if (xf86SetBoolOption(pInfo->options, "IgnoreAbsoluteAxes", FALSE))
ignore_abs = TRUE;
else
pEvdev->flags |= EVDEV_UNIGNORE_ABSOLUTE;
}
has_rel_axes = FALSE;
has_abs_axes = FALSE;
has_xy = FALSE;
has_keys = FALSE;
has_scroll = FALSE;
num_buttons = 0;
@@ -1804,8 +1857,7 @@ EvdevProbe(InputInfoPtr pInfo)
int mapping = 0;
if (TestBit(i, pEvdev->key_bitmask))
{
mapping =
pEvdev->btnmap[EvdevUtilButtonEventToButtonNumber(pEvdev, i)];
mapping = EvdevUtilButtonEventToButtonNumber(pEvdev, i);
if (mapping > num_buttons)
num_buttons = mapping;
}
@@ -1827,14 +1879,6 @@ EvdevProbe(InputInfoPtr pInfo)
}
if (has_rel_axes) {
xf86Msg(X_INFO, "%s: found relative axes\n", pInfo->name);
pEvdev->flags |= EVDEV_RELATIVE_EVENTS;
if (TestBit(REL_X, pEvdev->rel_bitmask) &&
TestBit(REL_Y, pEvdev->rel_bitmask)) {
xf86Msg(X_INFO, "%s: Found x and y relative axes\n", pInfo->name);
has_xy = TRUE;
}
if (TestBit(REL_WHEEL, pEvdev->rel_bitmask) ||
TestBit(REL_HWHEEL, pEvdev->rel_bitmask) ||
TestBit(REL_DIAL, pEvdev->rel_bitmask)) {
@@ -1846,6 +1890,20 @@ EvdevProbe(InputInfoPtr pInfo)
num_buttons = (num_buttons < 3) ? 7 : num_buttons + 4;
pEvdev->num_buttons = num_buttons;
}
if (!ignore_rel)
{
xf86Msg(X_INFO, "%s: Found relative axes\n", pInfo->name);
pEvdev->flags |= EVDEV_RELATIVE_EVENTS;
if (TestBit(REL_X, pEvdev->rel_bitmask) &&
TestBit(REL_Y, pEvdev->rel_bitmask)) {
xf86Msg(X_INFO, "%s: Found x and y relative axes\n", pInfo->name);
}
} else {
xf86Msg(X_INFO, "%s: Relative axes present but ignored.\n", pInfo->name);
has_rel_axes = FALSE;
}
}
for (i = 0; i < ABS_MAX; i++) {
@@ -1855,8 +1913,12 @@ EvdevProbe(InputInfoPtr pInfo)
}
}
if (has_abs_axes) {
xf86Msg(X_INFO, "%s: found absolute axes\n", pInfo->name);
if (ignore_abs && has_abs_axes)
{
xf86Msg(X_INFO, "%s: Absolute axes present but ignored.\n", pInfo->name);
has_abs_axes = FALSE;
} else if (has_abs_axes) {
xf86Msg(X_INFO, "%s: Found absolute axes\n", pInfo->name);
pEvdev->flags |= EVDEV_ABSOLUTE_EVENTS;
if ((TestBit(ABS_X, pEvdev->abs_bitmask) &&
@@ -1878,7 +1940,6 @@ EvdevProbe(InputInfoPtr pInfo)
pEvdev->flags |= EVDEV_BUTTON_EVENTS;
}
}
has_xy = TRUE;
}
}
@@ -1938,12 +1999,32 @@ EvdevProbe(InputInfoPtr pInfo)
return 0;
}
static void
EvdevSetCalibration(InputInfoPtr pInfo, int num_calibration, int calibration[4])
{
EvdevPtr pEvdev = pInfo->private;
if (num_calibration == 0) {
pEvdev->flags &= ~EVDEV_CALIBRATED;
pEvdev->calibration.min_x = 0;
pEvdev->calibration.max_x = 0;
pEvdev->calibration.min_y = 0;
pEvdev->calibration.max_y = 0;
} else if (num_calibration == 4) {
pEvdev->flags |= EVDEV_CALIBRATED;
pEvdev->calibration.min_x = calibration[0];
pEvdev->calibration.max_x = calibration[1];
pEvdev->calibration.min_y = calibration[2];
pEvdev->calibration.max_y = calibration[3];
}
}
static InputInfoPtr
EvdevPreInit(InputDriverPtr drv, IDevPtr dev, int flags)
{
InputInfoPtr pInfo;
const char *device;
const char *device, *str;
int num_calibration = 0, calibration[4] = { 0, 0, 0, 0 };
EvdevPtr pEvdev;
if (!(pInfo = xf86AllocateInput(drv, 0)))
@@ -2016,6 +2097,19 @@ EvdevPreInit(InputDriverPtr drv, IDevPtr dev, int flags)
pEvdev->invert_y = xf86SetBoolOption(pInfo->options, "InvertY", FALSE);
pEvdev->swap_axes = xf86SetBoolOption(pInfo->options, "SwapAxes", FALSE);
str = xf86CheckStrOption(pInfo->options, "Calibration", NULL);
if (str) {
num_calibration = sscanf(str, "%d %d %d %d",
&calibration[0], &calibration[1],
&calibration[2], &calibration[3]);
if (num_calibration == 4)
EvdevSetCalibration(pInfo, num_calibration, calibration);
else
xf86Msg(X_ERROR,
"%s: Insufficient calibration factors (%d). Ignoring calibration\n",
pInfo->name, num_calibration);
}
/* Grabbing the event device stops in-kernel event forwarding. In other
words, it disables rfkill and the "Macintosh mouse button emulation".
Note that this needs a server that sets the console to RAW mode. */
@@ -2307,16 +2401,16 @@ static void EvdevInitAxesLabels(EvdevPtr pEvdev, int natoms, Atom *atoms)
int labels_len = 0;
char *misc_label;
if (pEvdev->flags & EVDEV_RELATIVE_EVENTS)
{
labels = rel_labels;
labels_len = ArrayLength(rel_labels);
misc_label = AXIS_LABEL_PROP_REL_MISC;
} else if ((pEvdev->flags & EVDEV_ABSOLUTE_EVENTS))
if (pEvdev->flags & EVDEV_ABSOLUTE_EVENTS)
{
labels = abs_labels;
labels_len = ArrayLength(abs_labels);
misc_label = AXIS_LABEL_PROP_ABS_MISC;
} else if ((pEvdev->flags & EVDEV_RELATIVE_EVENTS))
{
labels = rel_labels;
labels_len = ArrayLength(rel_labels);
misc_label = AXIS_LABEL_PROP_REL_MISC;
}
memset(atoms, 0, natoms * sizeof(Atom));
@@ -2491,25 +2585,7 @@ EvdevSetProperty(DeviceIntPtr dev, Atom atom, XIPropertyValuePtr val,
return BadMatch;
if (!checkonly)
{
if (val->size == 0)
{
pEvdev->flags &= ~EVDEV_CALIBRATED;
pEvdev->calibration.min_x = 0;
pEvdev->calibration.max_x = 0;
pEvdev->calibration.min_y = 0;
pEvdev->calibration.max_y = 0;
} else if (val->size == 4)
{
CARD32 *vals = (CARD32*)val->data;
pEvdev->flags |= EVDEV_CALIBRATED;
pEvdev->calibration.min_x = vals[0];
pEvdev->calibration.max_x = vals[1];
pEvdev->calibration.min_y = vals[2];
pEvdev->calibration.max_y = vals[3];
}
}
EvdevSetCalibration(pInfo, val->size, val->data);
} else if (atom == prop_swap)
{
if (val->format != 8 || val->type != XA_INTEGER || val->size != 1)