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executables
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for System related Operations
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Since Java8 (or even earlier), JRE on OSX uses *.dylib native library suffix
instead of *.jnilib when automatically searching and loading them.
This is not easily being recognized by JogAmp, since we explicitly name
the native libraries with full path when testing with our TempJarCache.
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Minimum supported Debian version is now Debian 9 or Stretch to minimize maintenance.
Note: No other GNU/Linux version has been validated so far.
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Use system property to detect Android
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Bug 682: Rename com.sun.gluegen -> com.jogamp.gluegen in doc/**
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adding support for android x86 targets - revised
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Re-adding executable test by execution is required for 'blocker technology'
like Windows's 'Software Restriction Policies (SRP)',
which only gets activated by the actual execution attempt.
Merely testing the file's (ACL) execution flags via NIO's isExecutable is not sufficient.
Implementation first tests the file's (ACL) execution flags via NIO's isExecutable.
If the NIO test was successful or not available, the actual execution test is performed.
To mitigate the virus scanner's false positive, we use an executable shell script
per default now, which may be overriden by the new environment 'jogamp.gluegen.UseNativeExeFile=true'
Tested on GNU/Linux with one temp folder having mount options 'noexec'
and on Windows using Software Restriction Policies (SRP) disallowing one temp folder.
Both temp folder were first in line via environment 'java.io.tmpdir'.
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java.nio.file.Files.isExecutable(Path)
Attempt to resolved virus scanner false positive detection on Windows
while deflating the native code test-exe file in the temporary folder.
As Julien Gouesse suggested, using Java 1.7's java.nio.file.Files.isExecutable(Path)
_may_ resolve the issue, this has to be thorougly tested.
This patch favors the nio's isExecutable file's ACL test
over the more intrusive execution itself using a simple shell script file w/ set executable flag.
Mind that previous tests allowed the shell script's execution,
even if the temp folder did not allow execution of native code.
We have to see how our testing results will be on this attempt.
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testing executable of temp dir
This also avoids trying to unpack the test executable on Windows,
which may cause a virus scanner to halt the process or otherwise cause issues.
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save mapped ByteBuffer memory
Also:
- fix dbgDump(..) FileChannel access, test if openend.
- add DEBUG dumps on CTOR, Close and notifyLengthChangeImpl
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make/lib/gluegen-cpptasks-linux-aarch64.xml:
Add missing -DisLinux=true required when crosscompiling
Remove -marm -mfloat-abi=hard flags unrecognisable by aarch64 crosscompile toolchain
make/lib/toolchain/aarch64-linux-gnueabi/bin/*:
Symlink to /usr/local/x-tools/aarch64-unknown-linux-gnueabi/bin/aarch64-unknown-linux-gnueabi-*
make/scripts/make.gluegen.all.linux-aarch64-cross.sh:
New crosscompile script
make/stub_includes/platform/glibc-compat-symbols.h:
glibc 2.17 is the first glibc version that support aarch64
however memcpy is not versioned for aarch64
Disable versioning for linux glibc/aarch64
Signed-off-by: Xerxes Rånby <[email protected]>
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make/build.xml: New target declare.linux.aarch64
Update target declare.linux to depend on declare.linux.aarch64
make/gluegen-cpp-tasks-base.xml: Fix aarch64 jre/lib/arm -> jre/lib/aarch64
make/lib/gluegen-cpptasks-linux-aarch64.xml: Added
make/scripts/make.gluegen.all.linux-aarch64.sh: Added
Tested on DragonBoard 410c running Linaro Debian
Platform: LINUX / Linux 4.4.8-linaro-lt-qcom (4.4.8), aarch64 (ARM64, EABI_AARCH64), 4 cores, littleEndian true
MachineDataInfo: runtimeValidated true, 32Bit false, primitive size / alignment:
int8 1 / 1, int16 2 / 2
int 4 / 4, long 8 / 8
int32 4 / 4, int64 8 / 8
float 4 / 4, double 8 / 8, ldouble 16 / 16
pointer 8 / 8, page 4096
Platform: Java Version: 1.8.0_91 (1.8.0u91), VM: OpenJDK 64-Bit Server VM, Runtime: OpenJDK Runtime Environment
Platform: Java Vendor: Oracle Corporation, http://java.oracle.com/, JavaSE: true, Java6: true, AWT enabled: true
Signed-off-by: Xerxes Ranby <[email protected]>
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x86-64 linux systems.
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and 'searchSystemPathFirst' attributes
NativeLibrary can be instantiate by defining
'searchSystemPath' and 'searchSystemPathFirst' arguments,
allowing to specify the system path role while looking up the library.
Since NativeLibrary is utilized via DynamicLibraryBundleInfo upstream,
the latter interface shall allow users to specify those attributes.
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+ Fix JLS Binary Compat: Moving methods and fields upwards for classes _and_ interfaces is OK
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+ - We shall also travers all interfaces upwards
+ - All methods and fields found upwards must be tested for compatibility as well!
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+ Further:
+ - Add class-name to Field- and MethodInfo via new intermediate AbstractMemberInfo.
+ The class-name is used to have allow differs to find a class move upwards!
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+ - Pretty printing of class move binary-compatible change
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and API doc)
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Uri to handle relative path
Fix IOUtil.cleanPathString(..) special case:
Special case '/a/./../b' -> '/b'
requires to resolve './' before '../'.
Allow IOUtil and Uri to handle relative path:
- IOUtil.getParentOf(..)
- IOUtil.cleanPathString(..)
Handle cases:
'a/./../b' -> 'b'
'.././b' -> '../b'
- Uri: Handle null scheme
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Messages
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caller to skip relative futile lookup
IOUtil.getResource(..) and IOUtil.ClassResources, needs more clarity.
ClassLoader shall be passed explicitly next to the optional
relative context Class instance.
This allows better efficiency, i.e. caller can pass ClassLoader
but skip a possible relative lookup, if not existing.
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deflated files w/ zip-level 9
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test-executable ; Use CustomInflate for Performance
- Use 'WinMain' for Windows test-executable
This may have little difference than using std 'main' entry
- Add Windows x86_64 test executable
Since the reporter claims the test executable works well
on Windows i386, maybe utilizing a x86_64 test executable
on same VM fixes the issue
- Use CustomInflate for Performance
- Skips GZIP header
- Adds own custom header [magic, deflate-size, inflate-size]
- Own header allows simplified I/O read and deflation
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ensure launched native exe process terminates.
See Bug 1219 comment 58: It seems that on some Windows platforms
the launched native process using our test-exe keeps running
even though we issued Process.waitFor().
Hence we issue Process.destroy() in the finalize block
to at least attempt to terminate it.
Note: The Process implementation is platform specific and may vary.
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hardcoded 'DEBUG_EXE_EXISTING_FILE = false'
This is required for security, i.e. not allowing to execute any pre-existing files!
In case we need to manually debug this issue,
we can re-enable it manually and locally, but not in public builds!
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- Make StreamMonitor a daemon thread, i.e. not hindering VM from exit
- Earmark each InputStream's EOS state
and only attempt to readByte if !eos
- End loop and hence the thread if all InputStream
have reached EOS.
- Don't close the InputStream.
Closing the InputStream is expected to be done
by the owner, otherwise no EOS could even be reached!
- Flush the output PrintStream at thread exit
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IOUtil.testDirExe():
- Satisfactory when executed
Failure to execute produce an IOException right at ProcessBuilder.start().
Hence we can allow an unexpected process exit value,
since we only want to learn whether executable files are allowed.
- More debug options
DEBUG_EXE: 'jogamp.debug.IOUtil.Exe'
DEBUG_EXE_NOSTREAM: 'jogamp.debug.IOUtil.Exe.NoStream'
- if DEBUG_EXE
- a pre-existing 'jogamp_exe_tst'+<SUFFIX> will be used as-is.
- the test-exe will not be deleted
- StreamMonitor is being used to dump stdout/stderr
if !DEBUG_EXE_NOSTREAM.
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Previous test PE exe, commit 0ebc5398fa20d23214a37dc4930a1fa1617293c7,
was a console exe. A console exe opens a new console window
if not being launched from one.
New test PE exe is produced w/ '-mwindows', i.e. for Win32 API
w/o a console.
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Windows using 'exe-windows-i586-268b.bin' (Fix attempt #1)
Replacing the tiny 268 byte sized 'exe-windows-i586-268b.bin' PE file
w/ a regular 2048 byte sized PE file 'exe-windows-i386-2048b.bin'.
File is produced via:
c:\mingw\bin\gcc -nodefaultlibs -nostdlib -s -Os -o tiny.exe tiny.c
Adding the 305 byte sized gzipped version 'exe-windows-i386-2048b.bin.305b.gz'
to the gluegen-rt jar file to reduce the payload for non Windows platforms.
Adding special property 'jogamp.debug.IOUtil.Exe' to debug testing the exe file,
enable via '-Djogamp.debug.IOUtil.Exe'.
Passes here on all Windows machines, however, the prev. one worked here as well.
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GlueGen'w runtime dependency com.jogamp.common.util.InterruptSource
was introduced in commit 1c4e2d3ea379fe6578dfb84e10f22729b71b1ae5
but the launcher loads the same ..
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- Use InterruptSource.Thread.create(..),
while reducing InterruptSource.Thread ctors to 3 variants.
- Use InterruptSource.Thread instead of java.lang.Thread where possible
- Use SourcedInterruptedException where possible
- SingletonInstanceServerSocket: start(), stop() and run()
- Persistent-Wait and Cancelable
- Add @since 2.3.2
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implementation and semantics
- TaskBase
- requires 'volatile boolean isExecuted' for atomic query of same semantics
- fix isInQueue(): condition was reverse in regars to 'isExecuted'
- expose 'Thread getExecutionThread()' as learned within run() method.
- RunnableTask
- deprecate: 'static invoke(final boolean waitUntilDone, final Runnable runnable)',
since it's nonsense, use runnable.run() instead.
- 'static RunnableTask invokeOnNewThread(..)'
- uses InterruptSource.Thread
- Persistent-Wait
- Cancelable using InterruptedRuntimeException
- FunctionTask
- deprecate 'static <U,V> U invoke(final boolean waitUntilDone, final Function<U,V> func, final V... args)',
since it's nonsense, use func.eval(args) instead.
- 'static FunctionTask<U,V> invokeOnNewThread(..)'
- uses InterruptSource.Thread
- Persistent-Wait
- Cancelable using InterruptedRuntimeException
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InterruptedRuntimeException
- InterruptSource interface declares methods to retrieve
the source of a Thread.interrupt() call.
- InterruptSource.Thread implements InterruptSource,
i.e. allows code running within such thread to learn about
the interrupt source (stack trace).
- SourcedInterruptedException is a InterruptedException specialization
which may include the source of the causing Thread.interrupt() call.
- InterruptedRuntimeException
An unchecked RuntimeException propagating an InterruptedException
where handling of the latter is not desired.
The causing InterruptedException may be of type SourcedInterruptedException,
hence a detailed stack trace analysis might be possible.
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test cases to run concurrently
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