| Commit message (Collapse) | Author | Age | Files | Lines |
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whitespace tokenizer); String match: Store end-of-match and flag defined components.
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/proc/self/exe (Linux) or a found java/jvm native lib.
- PlatformPropsImpl.queryABITypeImpl: Check Elf Header for ARM + !ANDROID (i.e. add other OS than Linux, use native java/jmv lib)
- NativeLibrary.enumerateLibraryPaths: Add 'sun.boot.library.path' to enumeration!
- TestElfReader01: Add test for finding java/jvm native lib and parse it
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to distinguish ARM soft-float/hard-float (part-2)
+ /**
+ * Returns the {@link ABIType} of the current platform using given {@link CPUType cpuType}
+ * and {@link OSType osType} as a hint.
+ * <p>
+ * Note the following queries are performed:
+ * <ul>
+ * <li> not {@link CPUFamily#ARM} -> {@link ABIType#GENERIC_ABI} </li>
+ * <li> else
+ * <ul>
+ * <li> not {@link OSType#LINUX} -> {@link ABIType#EABI_GNU_ARMEL} </li>
+ * <li> else
+ * <ul>
+ * <li> Elf ARM Tags -> {@link ABIType#EABI_GNU_ARMEL}, {@link ABIType#EABI_GNU_ARMHF} </li>
+ * </ul></li>
+ * </ul></li>
+ * </ul>
+ * </p>
+ * <p>
+ * Elf ARM Tags are read using {@link ElfHeader}, .. and {@link SectionArmAttributes#abiVFPArgsAcceptsVFPVariant(byte)}.
+ * </p>
+ *
+ * @param cpuType
+ * @param osType
+ * @return
+ */
+ private static final ABIType queryABITypeImpl(CPUType cpuType, OSType osType) {
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May break GCJ/ECJ .. needs to be revised.
- Adding JAVA_6 in PlatformPropsImpl
- Buffers.isDirect() chooses fast-path iff JAVA_6, otherwise using reflection (GCJ/ECJ)
- Adding JAVA_6 info in VersionUtil
- API doc: Refine JAVA_SE and JAVA_6 spec.
TODO: In case GCJ etc is unable to compile the JAVA_6 code
even though it uses a static condition (probably not),
We have to wrap isStatic in an own class, one for JAVA_6 and one for <= 1.5.
This will be a good exercise for further issues we may have w/ Java <= 1.5.
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Signed-off-by: Xerxes Rånby <[email protected]>
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ARMv7hf -> ARMv6hf, ARMv7-soft -> ARMv5te/ARMV6 (soft)
platform build config files:
lib/gluegen-cpptasks-linux-armv7.xml -> lib/gluegen-cpptasks-linux-armv6.xml
lib/gluegen-cpptasks-linux-armv7hf.xml -> lib/gluegen-cpptasks-linux-armv6hf.xml
properties:
isLinuxARMv7 -> isLinuxARMv6
isLinuxARMv7Armel -> isLinuxARMv6Armel
isLinuxARMv7Armhf -> isLinuxARMv6Armhf
isAndroidARMv7 -> isAndroidARMv6
isAndroidARMv7Armel -> isAndroidARMv6Armel
isAndroidARMv7Armhf -> isAndroidARMv6Armhf
targets:
compiler.cfg.linux.armv7 -> compiler.cfg.linux.armv6
linker.cfg.linux.armv7 -> linker.cfg.linux.armv6
compiler.cfg.linux.armv6:
<compilerarg value="-fpic" />
<compilerarg value="-march=armv5te" />
<compilerarg value="-marm" />
<compilerarg value="-mfloat-abi=softfp" />
<linkerarg value="-fpic" />
<linkerarg value="-march=armv5te" />
<linkerarg value="-marm" />
<linkerarg value="-mfloat-abi=softfp" />
<linkerarg value="-nostdlib" />
<linkerarg value="-Bdynamic" />
compiler.cfg.linux.armv6hf:
<compilerarg value="-fpic" />
<compilerarg value="-march=armv6" />
<compilerarg value="-marm" />
<compilerarg value="-mfloat-abi=hard" />
<linkerarg value="-fpic" />
<linkerarg value="-march=armv6" />
<linkerarg value="-marm" />
<linkerarg value="-mfloat-abi=hard" />
<linkerarg value="-nostdlib" />
<linkerarg value="-Bdynamic" />
gluegen-cpptasks-android-armv6.xml:
<compilerarg value="-fpic" />
<compilerarg value="-march=armv6" />
<compilerarg value="-mfloat-abi=softfp" />
<compilerarg value="-marm" />
<linkerarg value="-march=armv6" />
<linkerarg value="-mfloat-abi=softfp" />
<linkerarg value="-marm" />
<linkerarg value="-nostdlib" />
<linkerarg value="-Bdynamic" />
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library loading
Some Platform field declarations and it's static initialization has been delegated
to it's new abstract super class PlatformPropsImpl to solve
static initialization interdependencies w/ the GlueGen native library loading
and it's derived information {@link #getMachineDescription()}, {@link #is32Bit()}, ..<br>
This mechanism is preferred in this case to avoid synchronization and locking
and allow better performance accessing the mentioned fields/methods.
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