Inform the falsing manager about UDFPS touches on down

Instead of up/cancel. The new UDFPS touch handling doesn't
receive the up/cancel events until after the falsing manager
has already evaluated the touch as a false vs valid touch,
so UDFPS touches were penalizing the falsing confidence
too much.

Test: atest UdfpsControllerTest
Test: manually enable falsing logs and see that UDFPS touches
don't greatly increase the falsing confidence of the FalsingManager
(adb shell setprop log.tag.FalsingManager DEBUG)
Fixes: 288235975

Change-Id: Ic4b8b0b52343d357e0c807bede64598836d159b0
This commit is contained in:
Beverly
2023-06-29 18:03:50 +00:00
committed by Beverly Tai
parent a11934f8a8
commit 061feddf43
2 changed files with 55 additions and 22 deletions

View File

@@ -595,6 +595,13 @@ public class UdfpsController implements DozeReceiver, Dumpable {
// Pilfer if valid overlap, don't allow following events to reach keyguard // Pilfer if valid overlap, don't allow following events to reach keyguard
shouldPilfer = true; shouldPilfer = true;
// Touch is a valid UDFPS touch. Inform the falsing manager so that the touch
// isn't counted against the falsing algorithm as an accidental touch.
// We do this on the DOWN event instead of CANCEL/UP because the CANCEL/UP events
// get sent too late to this receiver (after the actual cancel/up motions occur),
// and therefore wouldn't end up being used as part of the falsing algo.
mFalsingManager.isFalseTouch(UDFPS_AUTHENTICATION);
break; break;
case UP: case UP:
@@ -614,7 +621,6 @@ public class UdfpsController implements DozeReceiver, Dumpable {
data.getTime(), data.getTime(),
data.getGestureStart(), data.getGestureStart(),
mStatusBarStateController.isDozing()); mStatusBarStateController.isDozing());
mFalsingManager.isFalseTouch(UDFPS_AUTHENTICATION);
break; break;
case UNCHANGED: case UNCHANGED:

View File

@@ -22,6 +22,7 @@ import static android.view.MotionEvent.ACTION_MOVE;
import static android.view.MotionEvent.ACTION_UP; import static android.view.MotionEvent.ACTION_UP;
import static com.android.internal.util.FunctionalUtils.ThrowingConsumer; import static com.android.internal.util.FunctionalUtils.ThrowingConsumer;
import static com.android.systemui.classifier.Classifier.UDFPS_AUTHENTICATION;
import static junit.framework.Assert.assertEquals; import static junit.framework.Assert.assertEquals;
import static junit.framework.Assert.assertFalse; import static junit.framework.Assert.assertFalse;
@@ -59,6 +60,7 @@ import android.os.PowerManager;
import android.os.RemoteException; import android.os.RemoteException;
import android.os.VibrationAttributes; import android.os.VibrationAttributes;
import android.testing.TestableLooper.RunWithLooper; import android.testing.TestableLooper.RunWithLooper;
import android.util.Pair;
import android.view.LayoutInflater; import android.view.LayoutInflater;
import android.view.MotionEvent; import android.view.MotionEvent;
import android.view.Surface; import android.view.Surface;
@@ -1202,9 +1204,54 @@ public class UdfpsControllerTest extends SysuiTestCase {
verify(mFingerprintManager).onPointerUp(anyLong(), anyInt()); verify(mFingerprintManager).onPointerUp(anyLong(), anyInt());
} }
@Test
public void fingerDown_falsingManagerInformed() throws RemoteException {
final Pair<TouchProcessorResult, TouchProcessorResult> touchProcessorResult =
givenAcceptFingerDownEvent();
// WHEN ACTION_DOWN is received
when(mSinglePointerTouchProcessor.processTouch(any(), anyInt(), any())).thenReturn(
touchProcessorResult.first);
MotionEvent downEvent = MotionEvent.obtain(0, 0, ACTION_DOWN, 0, 0, 0);
mTouchListenerCaptor.getValue().onTouch(mUdfpsView, downEvent);
mBiometricExecutor.runAllReady();
downEvent.recycle();
// THEN falsing manager is informed of the touch
verify(mFalsingManager).isFalseTouch(UDFPS_AUTHENTICATION);
}
@Test @Test
public void onTouch_withNewTouchDetection_shouldCallNewFingerprintManagerPath() public void onTouch_withNewTouchDetection_shouldCallNewFingerprintManagerPath()
throws RemoteException { throws RemoteException {
final Pair<TouchProcessorResult, TouchProcessorResult> processorResultDownAndUp =
givenAcceptFingerDownEvent();
// WHEN ACTION_DOWN is received
when(mSinglePointerTouchProcessor.processTouch(any(), anyInt(), any())).thenReturn(
processorResultDownAndUp.first);
MotionEvent downEvent = MotionEvent.obtain(0, 0, ACTION_DOWN, 0, 0, 0);
mTouchListenerCaptor.getValue().onTouch(mUdfpsView, downEvent);
mBiometricExecutor.runAllReady();
downEvent.recycle();
// AND ACTION_UP is received
when(mSinglePointerTouchProcessor.processTouch(any(), anyInt(), any())).thenReturn(
processorResultDownAndUp.second);
MotionEvent upEvent = MotionEvent.obtain(0, 0, MotionEvent.ACTION_UP, 0, 0, 0);
mTouchListenerCaptor.getValue().onTouch(mUdfpsView, upEvent);
mBiometricExecutor.runAllReady();
upEvent.recycle();
// THEN the new FingerprintManager path is invoked.
verify(mFingerprintManager).onPointerDown(anyLong(), anyInt(), anyInt(), anyFloat(),
anyFloat(), anyFloat(), anyFloat(), anyFloat(), anyLong(), anyLong(), anyBoolean());
verify(mFingerprintManager).onPointerUp(anyLong(), anyInt(), anyInt(), anyFloat(),
anyFloat(), anyFloat(), anyFloat(), anyFloat(), anyLong(), anyLong(), anyBoolean());
}
private Pair<TouchProcessorResult, TouchProcessorResult> givenAcceptFingerDownEvent()
throws RemoteException {
final NormalizedTouchData touchData = new NormalizedTouchData(0, 0f, 0f, 0f, 0f, 0f, 0L, final NormalizedTouchData touchData = new NormalizedTouchData(0, 0f, 0f, 0f, 0f, 0f, 0L,
0L); 0L);
final TouchProcessorResult processorResultDown = new TouchProcessorResult.ProcessedTouch( final TouchProcessorResult processorResultDown = new TouchProcessorResult.ProcessedTouch(
@@ -1230,27 +1277,7 @@ public class UdfpsControllerTest extends SysuiTestCase {
verify(mUdfpsView).setOnTouchListener(mTouchListenerCaptor.capture()); verify(mUdfpsView).setOnTouchListener(mTouchListenerCaptor.capture());
// WHEN ACTION_DOWN is received return new Pair<>(processorResultDown, processorResultUp);
when(mSinglePointerTouchProcessor.processTouch(any(), anyInt(), any())).thenReturn(
processorResultDown);
MotionEvent downEvent = MotionEvent.obtain(0, 0, ACTION_DOWN, 0, 0, 0);
mTouchListenerCaptor.getValue().onTouch(mUdfpsView, downEvent);
mBiometricExecutor.runAllReady();
downEvent.recycle();
// AND ACTION_UP is received
when(mSinglePointerTouchProcessor.processTouch(any(), anyInt(), any())).thenReturn(
processorResultUp);
MotionEvent upEvent = MotionEvent.obtain(0, 0, MotionEvent.ACTION_UP, 0, 0, 0);
mTouchListenerCaptor.getValue().onTouch(mUdfpsView, upEvent);
mBiometricExecutor.runAllReady();
upEvent.recycle();
// THEN the new FingerprintManager path is invoked.
verify(mFingerprintManager).onPointerDown(anyLong(), anyInt(), anyInt(), anyFloat(),
anyFloat(), anyFloat(), anyFloat(), anyFloat(), anyLong(), anyLong(), anyBoolean());
verify(mFingerprintManager).onPointerUp(anyLong(), anyInt(), anyInt(), anyFloat(),
anyFloat(), anyFloat(), anyFloat(), anyFloat(), anyLong(), anyLong(), anyBoolean());
} }
@Test @Test