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-rw-r--r--libopie/odevice.cpp120
1 files changed, 101 insertions, 19 deletions
diff --git a/libopie/odevice.cpp b/libopie/odevice.cpp
index a134810..3ff029e 100644
--- a/libopie/odevice.cpp
+++ b/libopie/odevice.cpp
@@ -106,52 +106,55 @@ protected:
OLedState m_leds [2];
};
class Zaurus : public ODevice {
protected:
virtual void init ( );
virtual void initButtons ( );
public:
virtual bool setSoftSuspend ( bool soft );
virtual bool setDisplayBrightness ( int b );
virtual int displayBrightnessResolution ( ) const;
virtual void alarmSound ( );
virtual void keySound ( );
virtual void touchSound ( );
virtual QValueList <OLed> ledList ( ) const;
virtual QValueList <OLedState> ledStateList ( OLed led ) const;
virtual OLedState ledState ( OLed led ) const;
virtual bool setLedState ( OLed led, OLedState st );
+ static bool isZaurus();
+
protected:
virtual void buzzer ( int snd );
OLedState m_leds [1];
+ bool m_embedix;
};
class SIMpad : public ODevice, public QWSServer::KeyboardFilter {
protected:
virtual void init ( );
virtual void initButtons ( );
public:
virtual bool setSoftSuspend ( bool soft );
virtual bool suspend();
virtual bool setDisplayStatus( bool on );
virtual bool setDisplayBrightness ( int b );
virtual int displayBrightnessResolution ( ) const;
virtual void alarmSound ( );
virtual QValueList <OLed> ledList ( ) const;
virtual QValueList <OLedState> ledStateList ( OLed led ) const;
virtual OLedState ledState ( OLed led ) const;
virtual bool setLedState ( OLed led, OLedState st );
protected:
virtual bool filter ( int unicode, int keycode, int modifiers, bool isPress, bool autoRepeat );
@@ -365,49 +368,49 @@ struct r_button {
"QPE/Launcher", "home()",
"buttonsettings", "raise()" },
};
static QCString makeChannel ( const char *str )
{
if ( str && !::strchr ( str, '/' ))
return QCString ( "QPE/Application/" ) + str;
else
return str;
}
static inline bool isQWS()
{
return qApp ? ( qApp-> type ( ) == QApplication::GuiServer ) : false;
}
ODevice *ODevice::inst ( )
{
static ODevice *dev = 0;
if ( !dev ) {
if ( QFile::exists ( "/proc/hal/model" ))
dev = new iPAQ ( );
- else if ( QFile::exists ( "/dev/sharp_buz" ) || QFile::exists ( "/dev/sharp_led" ))
+ else if ( Zaurus::isZaurus() )
dev = new Zaurus ( );
else if ( QFile::exists ( "/proc/ucb1x00" ) && QFile::exists ( "/proc/cs3" ))
dev = new SIMpad ( );
else if ( QFile::exists ( "/proc/sys/board/name" ))
dev = new Ramses ( );
else
dev = new ODevice ( );
dev-> init ( );
}
return dev;
}
/**************************************************
*
* common
*
**************************************************/
ODevice::ODevice ( )
{
d = new ODeviceData;
@@ -1299,107 +1302,158 @@ int iPAQ::readLightSensor ( )
buffer [4] = 0;
val = ::strtol ( buffer + 2, &endptr, 16 );
if ( *endptr != 0 )
val = -1;
}
::close ( fd );
}
return val;
}
int iPAQ::lightSensorResolution ( ) const
{
return 256;
}
/**************************************************
*
* Zaurus
*
**************************************************/
+// Check whether this device is the sharp zaurus..
+bool Zaurus::isZaurus()
+{
+
+ // If the special devices by embedix exist, it is quite simple: it is a Zaurus !
+ if ( QFile::exists ( "/dev/sharp_buz" ) || QFile::exists ( "/dev/sharp_led" ) ){
+ return true;
+ }
+
+ // On non-embedix kenrnels, we have too look closer.
+ bool is_zaurus = false;
+ QFile f ( "/proc/cpuinfo" );
+ if ( f. open ( IO_ReadOnly ) ) {
+ QString model;
+ QFile f ( "/proc/cpuinfo" );
+
+ QTextStream ts ( &f );
+ QString line;
+ while( line = ts. readLine ( ) ) {
+ if ( line. left ( 8 ) == "Hardware" )
+ break;
+ }
+ int loc = line. find ( ":" );
+ if ( loc != -1 )
+ model = line. mid ( loc + 2 ). simplifyWhiteSpace( );
+
+ if ( model == "Sharp-Collie"
+ || model == "Collie"
+ || model == "SHARP Corgi"
+ || model == "SHARP Shepherd"
+ || model == "SHARP Poodle"
+ )
+ is_zaurus = true;
+
+ }
+ return is_zaurus;
+}
void Zaurus::init ( )
{
d-> m_vendorstr = "Sharp";
d-> m_vendor = Vendor_Sharp;
+ m_embedix = true; // Not openzaurus means: It has an embedix kernel !
// QFile f ( "/proc/filesystems" );
QString model;
// It isn't a good idea to check the system configuration to
// detect the distribution !
// Otherwise it may happen that any other distribution is detected as openzaurus, just
// because it uses a jffs2 filesystem..
// (eilers)
// if ( f. open ( IO_ReadOnly ) && ( QTextStream ( &f ). read ( ). find ( "\tjffs2\n" ) >= 0 )) {
QFile f ("/etc/oz_version");
if ( f.exists() ){
d-> m_vendorstr = "OpenZaurus Team";
d-> m_systemstr = "OpenZaurus";
d-> m_system = System_OpenZaurus;
- // f. close ( );
-
- // f. setName ( "/etc/oz_version" );
if ( f. open ( IO_ReadOnly )) {
QTextStream ts ( &f );
d-> m_sysverstr = ts. readLine ( );//. mid ( 10 );
f. close ( );
}
+
+ // Openzaurus sometimes uses the embedix kernel!
+ // => Check whether this is an embedix kernel
+ FILE *uname = popen("uname -r", "r");
+ QString line;
+ if ( f.open(IO_ReadOnly, uname) ) {
+ QTextStream ts ( &f );
+ line = ts. readLine ( );
+ int loc = line. find ( "embedix" );
+ if ( loc != -1 )
+ m_embedix = true;
+ else
+ m_embedix = false;
+ f. close ( );
+ }
+ pclose(uname);
}
else {
d-> m_systemstr = "Zaurus";
d-> m_system = System_Zaurus;
}
f. setName ( "/proc/cpuinfo" );
if ( f. open ( IO_ReadOnly ) ) {
QTextStream ts ( &f );
QString line;
while( line = ts. readLine ( ) ) {
if ( line. left ( 8 ) == "Hardware" )
break;
}
int loc = line. find ( ":" );
if ( loc != -1 )
model = line. mid ( loc + 2 ). simplifyWhiteSpace( );
}
if ( model == "SHARP Corgi" ) {
d-> m_model = Model_Zaurus_SLC700;
d-> m_modelstr = "Zaurus SL-C700";
} else if ( model == "SHARP Shepherd" ) {
d-> m_model = Model_Zaurus_SLC700; // Do we need a special type for the C750 ? (eilers)
d-> m_modelstr = "Zaurus SL-C750";
}else if ( model == "SHARP Poodle" ) {
d-> m_model = Model_Zaurus_SLB600;
d-> m_modelstr = "Zaurus SL-B500 or SL-5600";
- } else if ( model = "Sharp-Collie" ) {
+ } else if ( model == "Sharp-Collie" || model == "Collie" ) {
d-> m_model = Model_Zaurus_SL5500;
d-> m_modelstr = "Zaurus SL-5500 or SL-5000d";
} else {
d-> m_model = Model_Zaurus_SL5500;
d-> m_modelstr = "Zaurus (Model unknown)";
}
bool flipstate = false;
switch ( d-> m_model ) {
case Model_Zaurus_SLA300:
d-> m_rotation = Rot0;
break;
case Model_Zaurus_SLC700:
// Note: need to 1) set flipstate based on physical screen orientation
// and 2) check to see if the user overrode the rotation direction
// using appearance, and if so, remove that item from the Config to
// ensure the rotate applet flips us back to the previous state.
if ( flipstate ) {
// 480x640
d-> m_rotation = Rot0;
d-> m_direction = CW;
} else {
// 640x480
d-> m_rotation = Rot270;
@@ -1422,58 +1476,61 @@ void Zaurus::initButtons ( )
return;
d-> m_buttons = new QValueList <ODeviceButton>;
struct z_button * pz_buttons;
int buttoncount;
switch ( d-> m_model ) {
case Model_Zaurus_SLC700:
pz_buttons = z_buttons_c700;
buttoncount = ARRAY_SIZE(z_buttons_c700);
break;
default:
pz_buttons = z_buttons;
buttoncount = ARRAY_SIZE(z_buttons);
break;
}
for ( int i = 0; i < buttoncount; i++ ) {
struct z_button *zb = pz_buttons + i;
ODeviceButton b;
b. setKeycode ( zb-> code );
b. setUserText ( QObject::tr ( "Button", zb-> utext ));
b. setPixmap ( Resource::loadPixmap ( zb-> pix ));
- b. setFactoryPresetPressedAction ( OQCopMessage ( makeChannel ( zb-> fpressedservice ), zb-> fpressedaction ));
- b. setFactoryPresetHeldAction ( OQCopMessage ( makeChannel ( zb-> fheldservice ), zb-> fheldaction ));
+ b. setFactoryPresetPressedAction ( OQCopMessage ( makeChannel ( zb-> fpressedservice ),
+ zb-> fpressedaction ));
+ b. setFactoryPresetHeldAction ( OQCopMessage ( makeChannel ( zb-> fheldservice ),
+ zb-> fheldaction ));
d-> m_buttons-> append ( b );
}
reloadButtonMapping ( );
QCopChannel *sysch = new QCopChannel ( "QPE/System", this );
- connect ( sysch, SIGNAL( received( const QCString &, const QByteArray & )), this, SLOT( systemMessage ( const QCString &, const QByteArray & )));
+ connect ( sysch, SIGNAL( received( const QCString &, const QByteArray & )),
+ this, SLOT( systemMessage ( const QCString &, const QByteArray & )));
}
#include <unistd.h>
#include <fcntl.h>
#include <sys/ioctl.h>
//#include <asm/sharp_char.h> // including kernel headers is evil ...
#define SHARP_DEV_IOCTL_COMMAND_START 0x5680
#define SHARP_BUZZER_IOCTL_START (SHARP_DEV_IOCTL_COMMAND_START)
#define SHARP_BUZZER_MAKESOUND (SHARP_BUZZER_IOCTL_START)
#define SHARP_BUZ_TOUCHSOUND 1 /* touch panel sound */
#define SHARP_BUZ_KEYSOUND 2 /* key sound */
#define SHARP_BUZ_SCHEDULE_ALARM 11 /* schedule alarm */
/* --- for SHARP_BUZZER device --- */
//#define SHARP_BUZZER_IOCTL_START (SHARP_DEV_IOCTL_COMMAND_START)
//#define SHARP_BUZZER_MAKESOUND (SHARP_BUZZER_IOCTL_START)
#define SHARP_BUZZER_SETVOLUME (SHARP_BUZZER_IOCTL_START+1)
#define SHARP_BUZZER_GETVOLUME (SHARP_BUZZER_IOCTL_START+2)
@@ -1503,240 +1560,265 @@ void Zaurus::initButtons ( )
#define SHARP_LED_SETSTATUS (SHARP_LED_IOCTL_START+1)
typedef struct sharp_led_status {
int which; /* select which LED status is wanted. */
int status; /* set new led status if you call SHARP_LED_SETSTATUS */
} sharp_led_status;
#define SHARP_LED_MAIL_EXISTS 9 /* mail status (exists or not) */
#define LED_MAIL_NO_UNREAD_MAIL 0 /* for SHARP_LED_MAIL_EXISTS */
#define LED_MAIL_NEWMAIL_EXISTS 1 /* for SHARP_LED_MAIL_EXISTS */
#define LED_MAIL_UNREAD_MAIL_EX 2 /* for SHARP_LED_MAIL_EXISTS */
// #include <asm/sharp_apm.h> // including kernel headers is evil ...
#define APM_IOCGEVTSRC OD_IOR( 'A', 203, int )
#define APM_IOCSEVTSRC OD_IORW( 'A', 204, int )
#define APM_EVT_POWER_BUTTON (1 << 0)
#define FL_IOCTL_STEP_CONTRAST 100
void Zaurus::buzzer ( int sound )
{
- // Not all devices have real sound.
#ifndef QT_NO_SOUND
- switch ( d-> m_model ) {
- case Model_Zaurus_SLC700:{
- int fd;
- int vol;
- bool vol_reset = false;
-
QString soundname;
+ // Not all devices have real sound. But I expect
+ // that Openzaurus now has a sound driver which
+ // I will use instead the buzzer...
+ if ( ( d->m_model == Model_Zaurus_SLC700 )
+ || d->m_system == System_OpenZaurus ){
+
switch ( sound ){
case SHARP_BUZ_SCHEDULE_ALARM:
soundname = "alarm";
break;
case SHARP_BUZ_TOUCHSOUND:
soundname = "touchsound";
break;
case SHARP_BUZ_KEYSOUND:
soundname = "keysound";
break;
default:
soundname = "alarm";
}
+ }
+
+ // If a soundname is defined, we expect that this device has
+ // sound capabilities.. Otherwise we expect to have the buzzer
+ // device..
+ if ( !soundname.isEmpty() ){
+ int fd;
+ int vol;
+ bool vol_reset = false;
Sound snd ( soundname );
if (( fd = ::open ( "/dev/sound/mixer", O_RDWR )) >= 0 ) {
if ( ::ioctl ( fd, MIXER_READ( 0 ), &vol ) >= 0 ) {
Config cfg ( "qpe" );
cfg. setGroup ( "Volume" );
int volalarm = cfg. readNumEntry ( "AlarmPercent", 50 );
if ( volalarm < 0 )
volalarm = 0;
else if ( volalarm > 100 )
volalarm = 100;
volalarm |= ( volalarm << 8 );
if ( ::ioctl ( fd, MIXER_WRITE( 0 ), &volalarm ) >= 0 )
vol_reset = true;
}
}
snd. play ( );
while ( !snd. isFinished ( ))
qApp-> processEvents ( );
if ( fd >= 0 ) {
if ( vol_reset )
::ioctl ( fd, MIXER_WRITE( 0 ), &vol );
::close ( fd );
}
- break;
- }
- default:{ // Devices with buzzer
+ } else {
int fd = ::open ( "/dev/sharp_buz", O_WRONLY|O_NONBLOCK );
if ( fd >= 0 ) {
::ioctl ( fd, SHARP_BUZZER_MAKESOUND, sound );
::close ( fd );
}
- }
+
}
#endif
}
void Zaurus::alarmSound ( )
{
buzzer ( SHARP_BUZ_SCHEDULE_ALARM );
}
void Zaurus::touchSound ( )
{
buzzer ( SHARP_BUZ_TOUCHSOUND );
}
void Zaurus::keySound ( )
{
buzzer ( SHARP_BUZ_KEYSOUND );
}
QValueList <OLed> Zaurus::ledList ( ) const
{
QValueList <OLed> vl;
vl << Led_Mail;
return vl;
}
QValueList <OLedState> Zaurus::ledStateList ( OLed l ) const
{
QValueList <OLedState> vl;
if ( l == Led_Mail )
vl << Led_Off << Led_On << Led_BlinkSlow;
return vl;
}
OLedState Zaurus::ledState ( OLed which ) const
{
if ( which == Led_Mail )
return m_leds [0];
else
return Led_Off;
}
bool Zaurus::setLedState ( OLed which, OLedState st )
{
+ if (!m_embedix) // Currently not supported on non_embedix kernels
+ return false;
+
static int fd = ::open ( "/dev/sharp_led", O_RDWR|O_NONBLOCK );
if ( which == Led_Mail ) {
if ( fd >= 0 ) {
struct sharp_led_status leds;
::memset ( &leds, 0, sizeof( leds ));
leds. which = SHARP_LED_MAIL_EXISTS;
bool ok = true;
switch ( st ) {
case Led_Off : leds. status = LED_MAIL_NO_UNREAD_MAIL; break;
case Led_On : leds. status = LED_MAIL_NEWMAIL_EXISTS; break;
case Led_BlinkSlow: leds. status = LED_MAIL_UNREAD_MAIL_EX; break;
default : ok = false;
}
if ( ok && ( ::ioctl ( fd, SHARP_LED_SETSTATUS, &leds ) >= 0 )) {
m_leds [0] = st;
return true;
}
}
}
return false;
}
bool Zaurus::setSoftSuspend ( bool soft )
{
+ if (!m_embedix) {
+ /* non-Embedix kernels dont have kernel autosuspend */
+ return ODevice::setSoftSuspend( soft );
+ }
+
bool res = false;
int fd;
if ((( fd = ::open ( "/dev/apm_bios", O_RDWR )) >= 0 ) ||
(( fd = ::open ( "/dev/misc/apm_bios",O_RDWR )) >= 0 )) {
int sources = ::ioctl ( fd, APM_IOCGEVTSRC, 0 ); // get current event sources
if ( sources >= 0 ) {
if ( soft )
sources &= ~APM_EVT_POWER_BUTTON;
else
sources |= APM_EVT_POWER_BUTTON;
if ( ::ioctl ( fd, APM_IOCSEVTSRC, sources ) >= 0 ) // set new event sources
res = true;
else
perror ( "APM_IOCGEVTSRC" );
}
else
perror ( "APM_IOCGEVTSRC" );
::close ( fd );
}
else
perror ( "/dev/apm_bios or /dev/misc/apm_bios" );
return res;
}
bool Zaurus::setDisplayBrightness ( int bright )
{
bool res = false;
int fd;
if ( bright > 255 )
bright = 255;
if ( bright < 0 )
bright = 0;
+ if (m_embedix) {
if (( fd = ::open ( "/dev/fl", O_WRONLY )) >= 0 ) {
int bl = ( bright * 4 + 127 ) / 255; // only 4 steps on zaurus
if ( bright && !bl )
bl = 1;
res = ( ::ioctl ( fd, FL_IOCTL_STEP_CONTRAST, bl ) == 0 );
::close ( fd );
}
+ } else {
+#define FB_BACKLIGHT_SET_BRIGHTNESS _IOW('F', 1, u_int) /* set brightness */
+ if (( fd = ::open ( "/dev/fb0", O_WRONLY )) >= 0 ) {
+ res = ( ::ioctl ( fd , FB_BACKLIGHT_SET_BRIGHTNESS, bright ) == 0 );
+ ::close ( fd );
+ }
+ }
return res;
}
int Zaurus::displayBrightnessResolution ( ) const
{
+ if (m_embedix)
return 5;
+ else
+ return 256;
}
/**************************************************
*
* SIMpad
*
**************************************************/
void SIMpad::init ( )
{
d-> m_vendorstr = "SIEMENS";
d-> m_vendor = Vendor_SIEMENS;
QFile f ( "/proc/hal/model" );
//TODO Implement model checking
//FIXME For now we assume an SL4
d-> m_modelstr = "SL4";
d-> m_model = Model_SIMpad_SL4;
switch ( d-> m_model ) {
default:
d-> m_rotation = Rot0;