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Is it possible to read binary stdout from an adb shell command? For example, all examples of how to use screencap include two steps:

adb shell screencap -p /sdcard/foo.png
adb pull /sdcard/foo.png

However, the service supports writing to stdout. You can for instance, do the following:

adb shell "screencap -p > /sdcard/foo2.png"
adb pull /sdcard/foo2.png

And this works equally well. But, what about reading the output across ADB? What I want to do is the following:

adb shell screencap -p > foo3.png

And avoid the intermediate write to the SD card. This generates something that looks like a PNG file (running strings foo3.png generates something with an IHDR, IEND, etc.) and is approximately the same size, but the file is corrupted as far as image readers are concerned.

I have also attempted to do this using ddmlib in java and the results are the same. I would be happy to use any library necessary. My goal is to reduce total time to get the capture. On my device, using the two-command solution, it takes about 3 seconds to get the image. Using ddmlib and capturing stdout takes less than 900ms, but it doesn't work!

Is it possible to do this?

EDIT: Here is the hexdump of two files. The first one, screen.png came from stdout and is corrupted. The second one, xscreen is from the two-command solution and works. The images should be visually identical.

$ hexdump -C screen.png | head
00000000  89 50 4e 47 0d 0d 0a 1a  0d 0a 00 00 00 0d 49 48  |.PNG..........IH|
00000010  44 52 00 00 02 d0 00 00  05 00 08 06 00 00 00 6e  |DR.............n|
00000020  ce 65 3d 00 00 00 04 73  42 49 54 08 08 08 08 7c  |.e=....sBIT....||
00000030  08 64 88 00 00 20 00 49  44 41 54 78 9c ec bd 79  |.d... .IDATx...y|
00000040  9c 1d 55 9d f7 ff 3e 55  75 f7 de b7 74 77 d2 d9  |..U...>Uu...tw..|
00000050  bb b3 27 10 48 42 16 c0  20 01 86 5d 14 04 11 dc  |..'.HB.. ..]....|
00000060  78 44 9d c7 d1 d1 11 78  70 7e 23 33 8e 1b 38 33  |xD.....xp~#3..83|
00000070  ea 2c 8c 8e 0d 0a 08 a8  23 2a 0e 10 82 ac c1 40  |.,......#*.....@|
00000080  12 02 81 24 64 ef ec 5b  ef fb 5d 6b 3b bf 3f ea  |...$d..[..]k;.?.|
00000090  de db dd 49 27 e9 ee 74  77 3a e3 79 bf 5e 37 e7  |...I'..tw:.y.^7.|

$ hexdump -C xscreen.png | head
00000000  89 50 4e 47 0d 0a 1a 0a  00 00 00 0d 49 48 44 52  |.PNG........IHDR|
00000010  00 00 02 d0 00 00 05 00  08 06 00 00 00 6e ce 65  |.............n.e|
00000020  3d 00 00 00 04 73 42 49  54 08 08 08 08 7c 08 64  |=....sBIT....|.d|
00000030  88 00 00 20 00 49 44 41  54 78 9c ec 9d 77 98 1c  |... .IDATx...w..|
00000040  c5 99 ff 3f d5 dd 93 37  27 69 57 5a e5 55 4e 08  |...?...7'iWZ.UN.|
00000050  24 a1 00 58 18 04 26 08  8c 01 83 31 38 c0 19 9f  |$..X..&....18...|
00000060  ef 7c c6 3e 1f 70 f8 7e  67 ee 71 e2 b0 ef ce f6  |.|.>.p.~g.q.....|
00000070  f9 ec 73 04 1b 1c 31 60  23 84 30 22 88 a0 40 10  |..s...1`#.0"..@.|
00000080  08 65 69 95 d3 4a 9b c3  c4 4e f5 fb a3 67 66 77  |.ei..J...N...gfw|
00000090  a5 95 b4 bb da a4 73 7d  9e 67 55 f3 ed 50 5d dd  |......s}.gU..P].|

Just at quick glance it seems like a couple of extra 0x0d (13) bytes get added. Carriage return?? Does that ring any bells? Is it mixing in some blank lines?

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I'm guessing that you're combining the stdout of the program with the stdout of the command. I'm not set up to try this myself but have you looked at the file it creates in detail? If you open it up in a text editor, you might see a bad string that you can just remove. And at the very least you can compare it with the correct version to see what the difference is. –  spatulamania Nov 27 '12 at 6:27
    
Updated my question to add hexdumps of the two files. I don't see any weird strings getting mixed in, but random bytes do seem to. –  Eric Lange Nov 27 '12 at 6:48
    
I wouldn't be surprised at all if you're getting a couple extra cr's in there. You can probable run just "adb shell screencap -p" and see what the output is. Remember that you're not piping the output of screencap -p across adb but the the output of adb shell. –  spatulamania Nov 27 '12 at 6:53
    
I used a hex editor to scrape out the two obvious wayward crs and tried to view the image again. This time, it was recognized as a PNG by Preview (it was not before), but the image was blank. Imagemagick still claims it is corrupted, so there may be more garbage in there. Sigh. –  Eric Lange Nov 27 '12 at 7:04

5 Answers 5

you can always use uuencode/uudecode. the following command produces valid images:

 adb shell "screencap -p | busybox uuencode -" | uudecode >screencap.png

I also tried adding gzipping/ungzipping to the process - but it did not seem to help much.

share|improve this answer
    
Thanks. But I should have added that keeping the phone unrooted is a requirement, so I can't use busybox. However, it does give me some ideas to try different utilities that do exist. –  Eric Lange Nov 27 '12 at 19:28
    
Most Android versions have had an unofficial place where one can put a small binary such as an encoding tool, though where it can go depends on the version. –  Chris Stratton Nov 27 '12 at 22:32
up vote 4 down vote accepted

After digging deeper into the hex dumps it became clear that every time the character 0x0A was emitted, the shell would emit 0x0D 0x0A. I repaired the stream with the following code and now the binary data is correct. Now, of course, the question is why is adb shell doing this? But in any event, this fixes the problem.

static byte[] repair(byte[] encoded) {
    ByteArrayOutputStream baos = new ByteArrayOutputStream();
    for (int i=0; i<encoded.length; i++) {
        if (encoded.length > i+1 && encoded[i] == 0x0d && encoded[i+1] == 0x0a) {
            baos.write(0x0a);
            i++;
        } else {
            baos.write(encoded[i]);
        }
    }
    try {
        baos.close();
    } catch (IOException ioe) {

    }

    return baos.toByteArray();      
}

EDIT: It dawned on me why it is doing this. It is converting LF to CR/LF like old-school DOS. I wonder if there is a setting somewhere to turn that off?

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As noted, "adb shell" is performing a linefeed (0x0a) to carriage-return + linefeed (0x0d 0x0a) conversion. This is being performed by the pseudo-tty line discipline. As there is no "stty" command available to the shell, there is no easy way to mess with the terminal settings.

It's possible to do what you want with ddmlib. You'd need to write code that executed commands on the device, captured the output, and sent it over the wire. This is more or less what DDMS does for certain features. This may be more trouble than its worth.

The repair() solution -- converting all CRLF to LF -- feels shaky but is actually reliable since the "corrupting" LF-to-CRLF conversion is deterministic. I used to do the same thing to repair inadvertent ASCII-mode FTP transfers.

It's worth noting that the PNG file format is explicitly designed to catch exactly this (and related) problems. The magic number begins with 0x89 to catch anything that strips high bits, followed by "PNG" so you can easily tell what's in the file, followed by CR LF to catch various ASCII line converters, then 0x1a to trap old MS-DOS programs that used Ctrl-Z as a special end-of-file marker, and then a lone LF. By looking at the first few bytes of the file you can tell exactly what was done to it.

...which means that your repair() function can accept both "corrupted" and "pure" input, and reliably determine if it needs to do anything.

share|improve this answer
    
Yes, the repair() solution is solid because of the determinism. I optimized it a bit to reduce the number of write calls to the output stream and now there is no discernable increase in processing time. Works great. Thanks! –  Eric Lange Nov 28 '12 at 0:30
    
Re: "the 'corrupting' LF-to-CRLF conversion is deterministic": But is it reversible? If CRLF and LF are both converted to CRLF, then converting CRLF back to LF is not 100% reliable, since it will mess with cases where the original CRLF was correct. –  ruakh Sep 27 '13 at 1:17
1  
In this case, CRLF becomes CRCRLF. If CRLF were passed through unmodified then it wouldn't be reversible. –  fadden Sep 27 '13 at 4:41

Sorry to be posting an answer to an old question, but I just came across this problem myself and wanted to do it only through the shell. This worked well for me:

adb shell screencap -p | sed 's/^M$//' > screenshot.png

That ^M is a char I got by pressing ctrl+v -> ctrl+m, just noticed it doesn't work when copy-pasting.

adb shell screencap -p | sed 's/\r$//' > screenshot.png

did the trick for me as well.

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5  
While above approach works great on Ubuntu, it didn't work for me on Mac OS X. This variation which uses Perl in place of sed does: adb shell screencap -p | perl -pe 's/\x0D\x0A/\x0A/g' > screen.png –  Sergei Jan 9 at 10:12

Yes, on Unix/Linux/Mac OS X, you can receive binary output of adb shell by prepend "stty -onlcr;" to your command ( NO~~ need to be a rooted android).

1.Download "stty" executable file.
http://www.busybox.net/downloads/binaries/latest/
For old android, use busybox-armv5l, Others use busybox-armv7l.
rename file to "stty"

2.Uploda file "stty" to android and set proper permission.

adb push somelocaldir/stty /data/local/tmp/   
adb chmod 777 /data/local/tmp/stty 

3.Prepend "stty -onlcr;" to your command like this;

adb shell /data/local/tmp/stty -onlcr\; screencap -p  > somelocaldir/output.png
or:
adb shell "/data/local/tmp/stty -onlcr; screencap -p"  > somelocaldir/output.png
or (Only for Windows):
adb shell /data/local/tmp/stty -onlcr; screencap -p  > somelocaldir/output.png

Done!

But for Windows OS, by default, LF from android will be converted to CR CR LF.
Event you did above step, you still get CR LF.
This "seems" because local adb.exe use fwrite which cause CR be prepended.
I have no way about this except convert CR LF to LF manually on Windows OS.

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