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| 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. | |
| 2 // Use of this source code is governed by a BSD-style license that can be | |
| 3 // found in the LICENSE file. | |
| 4 | |
| 5 #include "ui/events/x/touch_factory_x11.h" | |
| 6 | |
| 7 #include <X11/Xatom.h> | |
| 8 #include <X11/cursorfont.h> | |
| 9 #include <X11/extensions/XInput.h> | |
| 10 #include <X11/extensions/XInput2.h> | |
| 11 #include <X11/extensions/XIproto.h> | |
| 12 | |
| 13 #include "base/basictypes.h" | |
| 14 #include "base/command_line.h" | |
| 15 #include "base/compiler_specific.h" | |
| 16 #include "base/logging.h" | |
| 17 #include "base/memory/singleton.h" | |
| 18 #include "base/message_loop/message_loop.h" | |
| 19 #include "base/strings/string_number_conversions.h" | |
| 20 #include "base/strings/string_split.h" | |
| 21 #include "base/sys_info.h" | |
| 22 #include "ui/events/event_switches.h" | |
| 23 #include "ui/events/x/device_data_manager_x11.h" | |
| 24 #include "ui/events/x/device_list_cache_x.h" | |
| 25 #include "ui/gfx/x/x11_types.h" | |
| 26 | |
| 27 namespace ui { | |
| 28 | |
| 29 TouchFactory::TouchFactory() | |
| 30 : pointer_device_lookup_(), | |
| 31 touch_events_disabled_(false), | |
| 32 touch_device_list_(), | |
| 33 max_touch_points_(-1), | |
| 34 virtual_core_keyboard_device_(-1), | |
| 35 id_generator_(0) { | |
| 36 if (!DeviceDataManagerX11::GetInstance()->IsXInput2Available()) | |
| 37 return; | |
| 38 | |
| 39 XDisplay* display = gfx::GetXDisplay(); | |
| 40 UpdateDeviceList(display); | |
| 41 | |
| 42 CommandLine* cmdline = CommandLine::ForCurrentProcess(); | |
| 43 touch_events_disabled_ = cmdline->HasSwitch(switches::kTouchEvents) && | |
| 44 cmdline->GetSwitchValueASCII(switches::kTouchEvents) == | |
| 45 switches::kTouchEventsDisabled; | |
| 46 } | |
| 47 | |
| 48 TouchFactory::~TouchFactory() { | |
| 49 } | |
| 50 | |
| 51 // static | |
| 52 TouchFactory* TouchFactory::GetInstance() { | |
| 53 return Singleton<TouchFactory>::get(); | |
| 54 } | |
| 55 | |
| 56 // static | |
| 57 void TouchFactory::SetTouchDeviceListFromCommandLine() { | |
| 58 // Get a list of pointer-devices that should be treated as touch-devices. | |
| 59 // This is primarily used for testing/debugging touch-event processing when a | |
| 60 // touch-device isn't available. | |
| 61 std::string touch_devices = | |
| 62 CommandLine::ForCurrentProcess()->GetSwitchValueASCII( | |
| 63 switches::kTouchDevices); | |
| 64 | |
| 65 if (!touch_devices.empty()) { | |
| 66 std::vector<std::string> devs; | |
| 67 std::vector<unsigned int> device_ids; | |
| 68 unsigned int devid; | |
| 69 base::SplitString(touch_devices, ',', &devs); | |
| 70 for (std::vector<std::string>::iterator iter = devs.begin(); | |
| 71 iter != devs.end(); ++iter) { | |
| 72 if (base::StringToInt(*iter, reinterpret_cast<int*>(&devid))) | |
| 73 device_ids.push_back(devid); | |
| 74 else | |
| 75 DLOG(WARNING) << "Invalid touch-device id: " << *iter; | |
| 76 } | |
| 77 ui::TouchFactory::GetInstance()->SetTouchDeviceList(device_ids); | |
| 78 } | |
| 79 } | |
| 80 | |
| 81 void TouchFactory::UpdateDeviceList(Display* display) { | |
| 82 // Detect touch devices. | |
| 83 touch_device_lookup_.reset(); | |
| 84 touch_device_list_.clear(); | |
| 85 touchscreen_ids_.clear(); | |
| 86 max_touch_points_ = -1; | |
| 87 | |
| 88 #if !defined(USE_XI2_MT) | |
| 89 // NOTE: The new API for retrieving the list of devices (XIQueryDevice) does | |
| 90 // not provide enough information to detect a touch device. As a result, the | |
| 91 // old version of query function (XListInputDevices) is used instead. | |
| 92 // If XInput2 is not supported, this will return null (with count of -1) so | |
| 93 // we assume there cannot be any touch devices. | |
| 94 // With XI2.1 or older, we allow only single touch devices. | |
| 95 XDeviceList dev_list = | |
| 96 DeviceListCacheX::GetInstance()->GetXDeviceList(display); | |
| 97 Atom xi_touchscreen = XInternAtom(display, XI_TOUCHSCREEN, false); | |
| 98 for (int i = 0; i < dev_list.count; i++) { | |
| 99 if (dev_list[i].type == xi_touchscreen) { | |
| 100 touch_device_lookup_[dev_list[i].id] = true; | |
| 101 touch_device_list_[dev_list[i].id] = false; | |
| 102 } | |
| 103 } | |
| 104 #endif | |
| 105 | |
| 106 if (!DeviceDataManagerX11::GetInstance()->IsXInput2Available()) | |
| 107 return; | |
| 108 | |
| 109 // Instead of asking X for the list of devices all the time, let's maintain a | |
| 110 // list of pointer devices we care about. | |
| 111 // It should not be necessary to select for slave devices. XInput2 provides | |
| 112 // enough information to the event callback to decide which slave device | |
| 113 // triggered the event, thus decide whether the 'pointer event' is a | |
| 114 // 'mouse event' or a 'touch event'. | |
| 115 // However, on some desktops, some events from a master pointer are | |
| 116 // not delivered to the client. So we select for slave devices instead. | |
| 117 // If the touch device has 'GrabDevice' set and 'SendCoreEvents' unset (which | |
| 118 // is possible), then the device is detected as a floating device, and a | |
| 119 // floating device is not connected to a master device. So it is necessary to | |
| 120 // also select on the floating devices. | |
| 121 pointer_device_lookup_.reset(); | |
| 122 XIDeviceList xi_dev_list = | |
| 123 DeviceListCacheX::GetInstance()->GetXI2DeviceList(display); | |
| 124 for (int i = 0; i < xi_dev_list.count; i++) { | |
| 125 XIDeviceInfo* devinfo = xi_dev_list.devices + i; | |
| 126 if (devinfo->use == XIFloatingSlave || devinfo->use == XIMasterPointer) { | |
| 127 #if defined(USE_XI2_MT) | |
| 128 for (int k = 0; k < devinfo->num_classes; ++k) { | |
| 129 XIAnyClassInfo* xiclassinfo = devinfo->classes[k]; | |
| 130 if (xiclassinfo->type == XITouchClass) { | |
| 131 XITouchClassInfo* tci = | |
| 132 reinterpret_cast<XITouchClassInfo*>(xiclassinfo); | |
| 133 // Only care direct touch device (such as touch screen) right now | |
| 134 if (tci->mode == XIDirectTouch) { | |
| 135 touch_device_lookup_[devinfo->deviceid] = true; | |
| 136 touch_device_list_[devinfo->deviceid] = true; | |
| 137 if (tci->num_touches > 0 && tci->num_touches > max_touch_points_) | |
| 138 max_touch_points_ = tci->num_touches; | |
| 139 } | |
| 140 } | |
| 141 } | |
| 142 #endif | |
| 143 pointer_device_lookup_[devinfo->deviceid] = true; | |
| 144 } else if (devinfo->use == XIMasterKeyboard) { | |
| 145 virtual_core_keyboard_device_ = devinfo->deviceid; | |
| 146 } | |
| 147 | |
| 148 #if defined(USE_XI2_MT) | |
| 149 if (devinfo->use == XIFloatingSlave || devinfo->use == XISlavePointer) { | |
| 150 for (int k = 0; k < devinfo->num_classes; ++k) { | |
| 151 XIAnyClassInfo* xiclassinfo = devinfo->classes[k]; | |
| 152 if (xiclassinfo->type == XITouchClass) { | |
| 153 XITouchClassInfo* tci = | |
| 154 reinterpret_cast<XITouchClassInfo*>(xiclassinfo); | |
| 155 // Only care direct touch device (such as touch screen) right now | |
| 156 if (tci->mode == XIDirectTouch) | |
| 157 CacheTouchscreenIds(display, devinfo->deviceid); | |
| 158 } | |
| 159 } | |
| 160 } | |
| 161 #endif | |
| 162 } | |
| 163 } | |
| 164 | |
| 165 bool TouchFactory::ShouldProcessXI2Event(XEvent* xev) { | |
| 166 DCHECK_EQ(GenericEvent, xev->type); | |
| 167 XIEvent* event = static_cast<XIEvent*>(xev->xcookie.data); | |
| 168 XIDeviceEvent* xiev = reinterpret_cast<XIDeviceEvent*>(event); | |
| 169 | |
| 170 #if defined(USE_XI2_MT) | |
| 171 if (event->evtype == XI_TouchBegin || | |
| 172 event->evtype == XI_TouchUpdate || | |
| 173 event->evtype == XI_TouchEnd) { | |
| 174 return !touch_events_disabled_ && IsTouchDevice(xiev->deviceid); | |
| 175 } | |
| 176 #endif | |
| 177 // Make sure only key-events from the virtual core keyboard are processed. | |
| 178 if (event->evtype == XI_KeyPress || event->evtype == XI_KeyRelease) { | |
| 179 return (virtual_core_keyboard_device_ < 0) || | |
| 180 (virtual_core_keyboard_device_ == xiev->deviceid); | |
| 181 } | |
| 182 | |
| 183 if (event->evtype != XI_ButtonPress && | |
| 184 event->evtype != XI_ButtonRelease && | |
| 185 event->evtype != XI_Motion) | |
| 186 return true; | |
| 187 | |
| 188 if (!pointer_device_lookup_[xiev->deviceid]) | |
| 189 return false; | |
| 190 | |
| 191 return IsTouchDevice(xiev->deviceid) ? !touch_events_disabled_ : true; | |
| 192 } | |
| 193 | |
| 194 void TouchFactory::SetupXI2ForXWindow(Window window) { | |
| 195 // Setup mask for mouse events. It is possible that a device is loaded/plugged | |
| 196 // in after we have setup XInput2 on a window. In such cases, we need to | |
| 197 // either resetup XInput2 for the window, so that we get events from the new | |
| 198 // device, or we need to listen to events from all devices, and then filter | |
| 199 // the events from uninteresting devices. We do the latter because that's | |
| 200 // simpler. | |
| 201 | |
| 202 XDisplay* display = gfx::GetXDisplay(); | |
| 203 | |
| 204 unsigned char mask[XIMaskLen(XI_LASTEVENT)]; | |
| 205 memset(mask, 0, sizeof(mask)); | |
| 206 | |
| 207 #if defined(USE_XI2_MT) | |
| 208 XISetMask(mask, XI_TouchBegin); | |
| 209 XISetMask(mask, XI_TouchUpdate); | |
| 210 XISetMask(mask, XI_TouchEnd); | |
| 211 #endif | |
| 212 XISetMask(mask, XI_ButtonPress); | |
| 213 XISetMask(mask, XI_ButtonRelease); | |
| 214 XISetMask(mask, XI_Motion); | |
| 215 #if defined(OS_CHROMEOS) | |
| 216 if (base::SysInfo::IsRunningOnChromeOS()) { | |
| 217 XISetMask(mask, XI_KeyPress); | |
| 218 XISetMask(mask, XI_KeyRelease); | |
| 219 } | |
| 220 #endif | |
| 221 | |
| 222 XIEventMask evmask; | |
| 223 evmask.deviceid = XIAllDevices; | |
| 224 evmask.mask_len = sizeof(mask); | |
| 225 evmask.mask = mask; | |
| 226 XISelectEvents(display, window, &evmask, 1); | |
| 227 XFlush(display); | |
| 228 } | |
| 229 | |
| 230 void TouchFactory::SetTouchDeviceList( | |
| 231 const std::vector<unsigned int>& devices) { | |
| 232 touch_device_lookup_.reset(); | |
| 233 touch_device_list_.clear(); | |
| 234 for (std::vector<unsigned int>::const_iterator iter = devices.begin(); | |
| 235 iter != devices.end(); ++iter) { | |
| 236 DCHECK(*iter < touch_device_lookup_.size()); | |
| 237 touch_device_lookup_[*iter] = true; | |
| 238 touch_device_list_[*iter] = false; | |
| 239 } | |
| 240 } | |
| 241 | |
| 242 bool TouchFactory::IsTouchDevice(unsigned deviceid) const { | |
| 243 return deviceid < touch_device_lookup_.size() ? | |
| 244 touch_device_lookup_[deviceid] : false; | |
| 245 } | |
| 246 | |
| 247 bool TouchFactory::IsMultiTouchDevice(unsigned int deviceid) const { | |
| 248 return (deviceid < touch_device_lookup_.size() && | |
| 249 touch_device_lookup_[deviceid]) ? | |
| 250 touch_device_list_.find(deviceid)->second : | |
| 251 false; | |
| 252 } | |
| 253 | |
| 254 bool TouchFactory::QuerySlotForTrackingID(uint32 tracking_id, int* slot) { | |
| 255 if (!id_generator_.HasGeneratedIDFor(tracking_id)) | |
| 256 return false; | |
| 257 *slot = static_cast<int>(id_generator_.GetGeneratedID(tracking_id)); | |
| 258 return true; | |
| 259 } | |
| 260 | |
| 261 int TouchFactory::GetSlotForTrackingID(uint32 tracking_id) { | |
| 262 return id_generator_.GetGeneratedID(tracking_id); | |
| 263 } | |
| 264 | |
| 265 void TouchFactory::AcquireSlotForTrackingID(uint32 tracking_id) { | |
| 266 tracking_id_refcounts_[tracking_id]++; | |
| 267 } | |
| 268 | |
| 269 void TouchFactory::ReleaseSlotForTrackingID(uint32 tracking_id) { | |
| 270 tracking_id_refcounts_[tracking_id]--; | |
| 271 if (tracking_id_refcounts_[tracking_id] == 0) | |
| 272 id_generator_.ReleaseNumber(tracking_id); | |
| 273 } | |
| 274 | |
| 275 bool TouchFactory::IsTouchDevicePresent() { | |
| 276 return !touch_events_disabled_ && touch_device_lookup_.any(); | |
| 277 } | |
| 278 | |
| 279 int TouchFactory::GetMaxTouchPoints() const { | |
| 280 return max_touch_points_; | |
| 281 } | |
| 282 | |
| 283 void TouchFactory::ResetForTest() { | |
| 284 pointer_device_lookup_.reset(); | |
| 285 touch_device_lookup_.reset(); | |
| 286 touch_events_disabled_ = false; | |
| 287 touch_device_list_.clear(); | |
| 288 touchscreen_ids_.clear(); | |
| 289 tracking_id_refcounts_.clear(); | |
| 290 max_touch_points_ = -1; | |
| 291 id_generator_.ResetForTest(); | |
| 292 } | |
| 293 | |
| 294 void TouchFactory::SetTouchDeviceForTest( | |
| 295 const std::vector<unsigned int>& devices) { | |
| 296 touch_device_lookup_.reset(); | |
| 297 touch_device_list_.clear(); | |
| 298 for (std::vector<unsigned int>::const_iterator iter = devices.begin(); | |
| 299 iter != devices.end(); ++iter) { | |
| 300 DCHECK(*iter < touch_device_lookup_.size()); | |
| 301 touch_device_lookup_[*iter] = true; | |
| 302 touch_device_list_[*iter] = true; | |
| 303 } | |
| 304 touch_events_disabled_ = false; | |
| 305 } | |
| 306 | |
| 307 void TouchFactory::SetPointerDeviceForTest( | |
| 308 const std::vector<unsigned int>& devices) { | |
| 309 pointer_device_lookup_.reset(); | |
| 310 for (std::vector<unsigned int>::const_iterator iter = devices.begin(); | |
| 311 iter != devices.end(); ++iter) { | |
| 312 pointer_device_lookup_[*iter] = true; | |
| 313 } | |
| 314 } | |
| 315 | |
| 316 void TouchFactory::CacheTouchscreenIds(Display* display, int device_id) { | |
| 317 XDevice* device = XOpenDevice(display, device_id); | |
| 318 if (!device) | |
| 319 return; | |
| 320 | |
| 321 Atom actual_type_return; | |
| 322 int actual_format_return; | |
| 323 unsigned long nitems_return; | |
| 324 unsigned long bytes_after_return; | |
| 325 unsigned char *prop_return; | |
| 326 | |
| 327 const char kDeviceProductIdString[] = "Device Product ID"; | |
| 328 Atom device_product_id_atom = | |
| 329 XInternAtom(display, kDeviceProductIdString, false); | |
| 330 | |
| 331 if (device_product_id_atom != None && | |
| 332 XGetDeviceProperty(display, device, device_product_id_atom, 0, 2, | |
| 333 False, XA_INTEGER, &actual_type_return, | |
| 334 &actual_format_return, &nitems_return, | |
| 335 &bytes_after_return, &prop_return) == Success) { | |
| 336 if (actual_type_return == XA_INTEGER && | |
| 337 actual_format_return == 32 && | |
| 338 nitems_return == 2) { | |
| 339 // An actual_format_return of 32 implies that the returned data is an | |
| 340 // array of longs. See the description of |prop_return| in `man | |
| 341 // XGetDeviceProperty` for details. | |
| 342 long* ptr = reinterpret_cast<long*>(prop_return); | |
| 343 | |
| 344 // Internal displays will have a vid and pid of 0. Ignore them. | |
| 345 // ptr[0] is the vid, and ptr[1] is the pid. | |
| 346 if (ptr[0] || ptr[1]) | |
| 347 touchscreen_ids_.insert(std::make_pair(ptr[0], ptr[1])); | |
| 348 } | |
| 349 XFree(prop_return); | |
| 350 } | |
| 351 | |
| 352 XCloseDevice(display, device); | |
| 353 } | |
| 354 | |
| 355 } // namespace ui | |
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