Fixed
Status Update
Comments
ma...@google.com <ma...@google.com>
jo...@veeva.com <jo...@veeva.com> #2
Thanks for filing the issue.
This is a particularly hard device to come by - do you happen to have access to the device? If so could you provide us with the output of: adb shell dumpsys media.camera > info.txt
Thanks!
This is a particularly hard device to come by - do you happen to have access to the device? If so could you provide us with the output of: adb shell dumpsys media.camera > info.txt
Thanks!
ar...@physitrack.com <ar...@physitrack.com> #3
Similar stacktrace reported to the email group
Stacktrace:
Caused by: java.lang.IllegalArgumentException: Can not get supported output size under supported maximum for the format: 34
at androidx.camera.camera2.internal.SupportedSurfaceCombination.getSupportedOutputSizes(SupportedSurfaceCombination.java:355)
at androidx.camera.camera2.internal.SupportedSurfaceCombination.getSuggestedResolutions(SupportedSurfaceCombination.java:197)
at androidx.camera.camera2.internal.Camera2DeviceSurfaceManager.getSuggestedResolutions(Camera2DeviceSurfaceManager.java:198)
at androidx.camera.core.CameraX.calculateSuggestedResolutions(CameraX.java:943)
at androidx.camera.core.CameraX.bindToLifecycle(CameraX.java:293)
at androidx.camera.lifecycle.ProcessCameraProvider.bindToLifecycle(ProcessCameraProvider.java:227)
Below are some findings based on our debugging
When Dex is connected
previewConfig.getMaxResolution() is returning "731x411" as maxSize.
Inside Preview.Builder.build() -> Default_MAX_resolution is set to "CameraX.getSurfaceManager().getPreviewSize()" which is 731x411
this is being picked as maxSize.
While rendering maxSize is 731x411 and minSize is 640x480 and below are available outputSizes
0 = {Size@11860} "4032x3024"
1 = {Size@11861} "3984x2988"
2 = {Size@11862} "4032x2268"
3 = {Size@11863} "3024x3024"
4 = {Size@11864} "2976x2976"
5 = {Size@11865} "3840x2160"
6 = {Size@11866} "3264x2448"
7 = {Size@11867} "4032x1960"
8 = {Size@11868} "2880x2160"
9 = {Size@11869} "3264x1836"
10 = {Size@11870} "2160x2160"
11 = {Size@11871} "2560x1440"
12 = {Size@11872} "2224x1080"
13 = {Size@11873} "2048x1152"
14 = {Size@11874} "1920x1080"
15 = {Size@11875} "1440x1080"
16 = {Size@11876} "1088x1088"
17 = {Size@11877} "1280x720"
18 = {Size@11878} "1024x768"
19 = {Size@11879} "1056x704"
20 = {Size@11880} "960x720"
21 = {Size@11881} "960x540"
22 = {Size@11882} "720x720"
23 = {Size@11883} "800x450"
24 = {Size@11884} "720x480"
25 = {Size@11885} "640x480"
26 = {Size@11886} "352x288"
27 = {Size@11887} "320x240"
28 = {Size@11888} "256x144"
29 = {Size@11889} "176x144"
and couldn't find any size in this range.
When Dex not connected
minsize = 640x480
maxsize = 1920x1080
0 = {Size@11836} "4032x3024"
1 = {Size@11837} "3984x2988"
2 = {Size@11838} "4032x2268"
3 = {Size@11839} "3024x3024"
4 = {Size@11840} "2976x2976"
5 = {Size@11841} "3840x2160"
6 = {Size@11842} "3264x2448"
7 = {Size@11843} "4032x1960"
8 = {Size@11844} "2880x2160"
9 = {Size@11845} "3264x1836"
10 = {Size@11846} "2160x2160"
11 = {Size@11847} "2560x1440"
12 = {Size@11848} "2224x1080"
13 = {Size@11849} "2048x1152"
14 = {Size@11850} "1920x1080"
15 = {Size@11851} "1440x1080"
16 = {Size@11852} "1088x1088"
17 = {Size@11853} "1280x720"
18 = {Size@11854} "1024x768"
19 = {Size@11855} "1056x704"
20 = {Size@11856} "960x720"
21 = {Size@11857} "960x540"
22 = {Size@11858} "720x720"
23 = {Size@11859} "800x450"
24 = {Size@11860} "720x480"
25 = {Size@11861} "640x480"
26 = {Size@11862} "352x288"
27 = {Size@11863} "320x240"
28 = {Size@11864} "256x144"
29 = {Size@11865} "176x144"
and we have 12 available sizes in this range
Camera2DeviceSurfaceManager.java:: getPreviewSize()
mCameraSupportedSurfaceCombinationMap.get(cameraId).getSurfaceDefinition().getPreviewSize() = "1920x1080"
cameraId=0
Stacktrace:
Caused by: java.lang.IllegalArgumentException: Can not get supported output size under supported maximum for the format: 34
at androidx.camera.camera2.internal.SupportedSurfaceCombination.getSupportedOutputSizes(SupportedSurfaceCombination.java:355)
at androidx.camera.camera2.internal.SupportedSurfaceCombination.getSuggestedResolutions(SupportedSurfaceCombination.java:197)
at androidx.camera.camera2.internal.Camera2DeviceSurfaceManager.getSuggestedResolutions(Camera2DeviceSurfaceManager.java:198)
at androidx.camera.core.CameraX.calculateSuggestedResolutions(CameraX.java:943)
at androidx.camera.core.CameraX.bindToLifecycle(CameraX.java:293)
at androidx.camera.lifecycle.ProcessCameraProvider.bindToLifecycle(ProcessCameraProvider.java:227)
Below are some findings based on our debugging
When Dex is connected
previewConfig.getMaxResolution() is returning "731x411" as maxSize.
Inside Preview.Builder.build() -> Default_MAX_resolution is set to "CameraX.getSurfaceManager().getPreviewSize()" which is 731x411
this is being picked as maxSize.
While rendering maxSize is 731x411 and minSize is 640x480 and below are available outputSizes
0 = {Size@11860} "4032x3024"
1 = {Size@11861} "3984x2988"
2 = {Size@11862} "4032x2268"
3 = {Size@11863} "3024x3024"
4 = {Size@11864} "2976x2976"
5 = {Size@11865} "3840x2160"
6 = {Size@11866} "3264x2448"
7 = {Size@11867} "4032x1960"
8 = {Size@11868} "2880x2160"
9 = {Size@11869} "3264x1836"
10 = {Size@11870} "2160x2160"
11 = {Size@11871} "2560x1440"
12 = {Size@11872} "2224x1080"
13 = {Size@11873} "2048x1152"
14 = {Size@11874} "1920x1080"
15 = {Size@11875} "1440x1080"
16 = {Size@11876} "1088x1088"
17 = {Size@11877} "1280x720"
18 = {Size@11878} "1024x768"
19 = {Size@11879} "1056x704"
20 = {Size@11880} "960x720"
21 = {Size@11881} "960x540"
22 = {Size@11882} "720x720"
23 = {Size@11883} "800x450"
24 = {Size@11884} "720x480"
25 = {Size@11885} "640x480"
26 = {Size@11886} "352x288"
27 = {Size@11887} "320x240"
28 = {Size@11888} "256x144"
29 = {Size@11889} "176x144"
and couldn't find any size in this range.
When Dex not connected
minsize = 640x480
maxsize = 1920x1080
0 = {Size@11836} "4032x3024"
1 = {Size@11837} "3984x2988"
2 = {Size@11838} "4032x2268"
3 = {Size@11839} "3024x3024"
4 = {Size@11840} "2976x2976"
5 = {Size@11841} "3840x2160"
6 = {Size@11842} "3264x2448"
7 = {Size@11843} "4032x1960"
8 = {Size@11844} "2880x2160"
9 = {Size@11845} "3264x1836"
10 = {Size@11846} "2160x2160"
11 = {Size@11847} "2560x1440"
12 = {Size@11848} "2224x1080"
13 = {Size@11849} "2048x1152"
14 = {Size@11850} "1920x1080"
15 = {Size@11851} "1440x1080"
16 = {Size@11852} "1088x1088"
17 = {Size@11853} "1280x720"
18 = {Size@11854} "1024x768"
19 = {Size@11855} "1056x704"
20 = {Size@11856} "960x720"
21 = {Size@11857} "960x540"
22 = {Size@11858} "720x720"
23 = {Size@11859} "800x450"
24 = {Size@11860} "720x480"
25 = {Size@11861} "640x480"
26 = {Size@11862} "352x288"
27 = {Size@11863} "320x240"
28 = {Size@11864} "256x144"
29 = {Size@11865} "176x144"
and we have 12 available sizes in this range
Camera2DeviceSurfaceManager.java:: getPreviewSize()
mCameraSupportedSurfaceCombinationMap.get(cameraId).getSurfaceDefinition().getPreviewSize() = "1920x1080"
cameraId=0
ha...@gmail.com <ha...@gmail.com> #4
Hi virifi129,
The issue root cause is that CameraX will default filter out sizes smaller than 640x480. For Preview, the max size will be limited to under display size. I checked the HW spec info for the issue related devices. Display size of FUJITSU F-04J/F-05J is 360x640. That will result int that no size exists in the conditions that is larger or equal to 640x480 and smaller or equal to 360x640.
A temporary workaround for this situation is to use Preview.Builder#setTargetResolution() to set a size smaller than 640x480 to bypass the problem.
For device FUJITSU arrowsM04, I checked its HW spec info and its display size I found is 1280x720. It seems that the problem should not exist in the device.
Could you confirm that the problem exist on arrowsM04 device? What will be the returned value when using Display#getRealSize to obtain the display size?
The issue root cause is that CameraX will default filter out sizes smaller than 640x480. For Preview, the max size will be limited to under display size. I checked the HW spec info for the issue related devices. Display size of FUJITSU F-04J/F-05J is 360x640. That will result int that no size exists in the conditions that is larger or equal to 640x480 and smaller or equal to 360x640.
A temporary workaround for this situation is to use Preview.Builder#setTargetResolution() to set a size smaller than 640x480 to bypass the problem.
For device FUJITSU arrowsM04, I checked its HW spec info and its display size I found is 1280x720. It seems that the problem should not exist in the device.
Could you confirm that the problem exist on arrowsM04 device? What will be the returned value when using Display#getRealSize to obtain the display size?
an...@sigma.software <an...@sigma.software> #5
Sorry for the late reply.
> A temporary workaround for this situation is to use Preview.Builder#setTargetResolution() to set a size smaller than 640x480 to bypass the problem.
OK. I will try it.
> Could you confirm that the problem exist on arrowsM04 device?
We receive the crash report (Crashlytics) that this crash has occurred on arrowsM04.
We don't have this device so we can't confirm that the problem really exist on arrowsM04.
> What will be the returned value when using Display#getRealSize to obtain the display size?
We can't investigate it for the same reason.
Thank you.
> A temporary workaround for this situation is to use Preview.Builder#setTargetResolution() to set a size smaller than 640x480 to bypass the problem.
OK. I will try it.
> Could you confirm that the problem exist on arrowsM04 device?
We receive the crash report (Crashlytics) that this crash has occurred on arrowsM04.
We don't have this device so we can't confirm that the problem really exist on arrowsM04.
> What will be the returned value when using Display#getRealSize to obtain the display size?
We can't investigate it for the same reason.
Thank you.
ma...@google.com <ma...@google.com>
co...@google.com <co...@google.com>
ap...@google.com <ap...@google.com> #6
Root cause:
This issue happened on devices that the display size is smaller than 640x480. In original auto-resolution mechanism, supported sizes smaller than 640x480 will be default filter out.
The auto-resolution mechanism encodes the guaranteed configurations tables in CameraDevice#createCaptureSession(SessionConfiguration). It defines that the PREVIEW size is the small one of the device display size and 1080p. The PREVIEW size will be the maximal size limitation for Preview use case. The reason it limits the size to display size and 1080p is the stream output in display size or 1080p has been able to provide good enough preview quality. Therefore, auto-resolution mechanism will limit the selected size to be smaller than the small one of the device display size and 1080p.
With above two conditions, in this issue, all sizes smaller than 640x480 have been filter out, therefore, there is no size smaller than the display size 320x240 can be selected to use. And cause the exception.
Solution:
When the display size is smaller than 640x480, auto-resolution mechanism won't filter out those small sizes smaller than 640x480. This makes those small size be left and can be selected for the Preview use case on small display devices.
The solution has been merged and will be included in next CameraX release.
This issue happened on devices that the display size is smaller than 640x480. In original auto-resolution mechanism, supported sizes smaller than 640x480 will be default filter out.
The auto-resolution mechanism encodes the guaranteed configurations tables in CameraDevice#createCaptureSession(SessionConfiguration). It defines that the PREVIEW size is the small one of the device display size and 1080p. The PREVIEW size will be the maximal size limitation for Preview use case. The reason it limits the size to display size and 1080p is the stream output in display size or 1080p has been able to provide good enough preview quality. Therefore, auto-resolution mechanism will limit the selected size to be smaller than the small one of the device display size and 1080p.
With above two conditions, in this issue, all sizes smaller than 640x480 have been filter out, therefore, there is no size smaller than the display size 320x240 can be selected to use. And cause the exception.
Solution:
When the display size is smaller than 640x480, auto-resolution mechanism won't filter out those small sizes smaller than 640x480. This makes those small size be left and can be selected for the Preview use case on small display devices.
The solution has been merged and will be included in next CameraX release.
Description
I've been testing the new PullToRefresh implementation in M3 and finding a number of issues, both functional and API ergonomics.
1. No exit animation when
endRefresh()
is calledThis one is fairly straightforward and visible in the attached example. I would expect this to animate the progress indicator back to rest.
2. The indicator is always drawn above the content, including on top of other content
This is more serious bug, as it results in what looks like a floating artifact in the UI. The indicator implementation seems to assume that the container is always pushed up against the top of the display, and thus wouldn't worry about drawing the indicator. However, when used in even simple scaffolds with a top app bar of some sort, it will draw the indicator (even when not refreshing) on top of the app bar. This is visible in the attached examples as well.
3. The container intercepts upward scroll events in nested scrolling conditions
This is visible in the attachment as well. In a scaffold with a collapsing/moving top bar, the container will actively intercept upward scroll events in some cases and prevent expansion of the top app bar.
4. The API is awkward and a regression from the M2 implementation
The M2 implementation offered an
onRefresh: () -> Unit
callback that made using this dead simple. It also better aligned with what this UI ultimately is - a glorified refresh button implemented as a gesture. In the new M3 API, there is no such hook. Instead, one has to directly observe theisRefreshing
boolean state. In simple cases (such as the samples) where the UI is directly suspending/blocking on some refresh call to the data layer, this works ok. However, it quickly breaks down when interacting with more real-world cases where a refresh event is signaled to the data layer (such as viaLazyPagingItems.refresh()
) and awaiting an updated load state.The result is that the user has to manually implement this synchronization of states. If it's refreshing but the pager load state isn't loading, you now have to independently track if
I've attached a screenshot example of what this synchronization tedium looks like in practice