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876 lines
28 KiB
876 lines
28 KiB
#include "rsCpuExecutable.h" |
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#include "rsCppUtils.h" |
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|
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#include <fstream> |
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#include <set> |
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#include <memory> |
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|
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#include <sys/stat.h> |
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|
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#ifdef RS_COMPATIBILITY_LIB |
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#include <stdio.h> |
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#else |
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#include "bcc/Config.h" |
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#endif |
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|
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#include <unistd.h> |
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#include <dlfcn.h> |
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#include <android/dlext.h> |
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#include <sys/stat.h> |
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|
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namespace android { |
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namespace renderscript { |
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|
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namespace { |
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|
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// Check if a path exists and attempt to create it if it doesn't. |
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[[maybe_unused]] |
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static bool ensureCacheDirExists(const char *path) { |
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if (access(path, R_OK | W_OK | X_OK) == 0) { |
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// Done if we can rwx the directory |
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return true; |
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} |
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if (mkdir(path, 0700) == 0) { |
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return true; |
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} |
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return false; |
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} |
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|
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// Copy the file named \p srcFile to \p dstFile. |
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// Return 0 on success and -1 if anything wasn't copied. |
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[[maybe_unused]] |
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static int copyFile(const char *dstFile, const char *srcFile) { |
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std::ifstream srcStream(srcFile); |
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if (!srcStream) { |
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ALOGE("Could not verify or read source file: %s", srcFile); |
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return -1; |
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} |
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std::ofstream dstStream(dstFile); |
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if (!dstStream) { |
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ALOGE("Could not verify or write destination file: %s", dstFile); |
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return -1; |
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} |
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dstStream << srcStream.rdbuf(); |
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if (!dstStream) { |
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ALOGE("Could not write destination file: %s", dstFile); |
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return -1; |
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} |
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srcStream.close(); |
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dstStream.close(); |
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return 0; |
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} |
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static std::string findSharedObjectName(const char *cacheDir, |
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const char *resName, |
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const bool reuse = true) { |
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std::string scriptSOName(cacheDir); |
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#if defined(RS_COMPATIBILITY_LIB) && !defined(__LP64__) |
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size_t cutPos = scriptSOName.rfind("cache"); |
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if (cutPos != std::string::npos) { |
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scriptSOName.erase(cutPos); |
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} else { |
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ALOGE("Found peculiar cacheDir (missing \"cache\"): %s", cacheDir); |
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} |
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scriptSOName.append("/lib/librs."); |
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#else |
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scriptSOName.append("/librs."); |
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#endif // RS_COMPATIBILITY_LIB |
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scriptSOName.append(resName); |
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if (!reuse) { |
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// If the generated shared library is not reused, e.g., with a debug |
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// context or forced by a system property, multiple threads may read |
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// and write the shared library at the same time. To avoid the race |
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// on the generated shared library, delete it before finishing script |
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// initialization. To avoid deleting a file generated by a regular |
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// context, use a special suffix here. |
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// Because the script initialization is guarded by a lock from the Java |
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// API, it is safe to name this file with a consistent name and suffix |
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// and delete it after loading. The same lock has also prevented write- |
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// write races on the .so during script initialization even if reuse is |
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// true. |
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scriptSOName.append("#delete_after_load"); |
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} |
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scriptSOName.append(".so"); |
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return scriptSOName; |
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} |
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#ifndef RS_COMPATIBILITY_LIB |
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static bool isRunningInVndkNamespace() { |
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static bool result = []() { |
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Dl_info info; |
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if (dladdr(reinterpret_cast<const void*>(&isRunningInVndkNamespace), &info) != 0) { |
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std::string filename = std::string(info.dli_fname); |
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return filename.find("/vndk-sp") != std::string::npos; |
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} else { |
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ALOGW("Can't determine whether this lib is running in vndk namespace or not. Assuming it is in vndk namespace."); |
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} |
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return true; |
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}(); |
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return result; |
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} |
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#endif |
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} // anonymous namespace |
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const char* SharedLibraryUtils::LD_EXE_PATH = "/system/bin/ld.mc"; |
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const char* SharedLibraryUtils::RS_CACHE_DIR = "com.android.renderscript.cache"; |
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#ifndef RS_COMPATIBILITY_LIB |
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bool SharedLibraryUtils::createSharedLibrary(const char *driverName, |
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const char *cacheDir, |
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const char *resName, |
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const bool reuse, |
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std::string *fullPath) { |
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std::string sharedLibName = findSharedObjectName(cacheDir, resName, reuse); |
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if (fullPath) { |
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*fullPath = sharedLibName; |
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} |
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std::string objFileName = cacheDir; |
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objFileName.append("/"); |
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objFileName.append(resName); |
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objFileName.append(".o"); |
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// Should be something like "libRSDriver.so". |
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std::string linkDriverName = driverName; |
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// Remove ".so" and replace "lib" with "-l". |
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// This will leave us with "-lRSDriver" instead. |
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linkDriverName.erase(linkDriverName.length() - 3); |
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linkDriverName.replace(0, 3, "-l"); |
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static const std::string vndkLibCompilerRt = |
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getVndkSysLibPath() + "/libcompiler_rt.so"; |
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const char *compiler_rt = isRunningInVndkNamespace() ? |
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vndkLibCompilerRt.c_str() : SYSLIBPATH "/libcompiler_rt.so"; |
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const char *mTriple = "-mtriple=" DEFAULT_TARGET_TRIPLE_STRING; |
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const char *libPath = "--library-path=" SYSLIBPATH; |
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// vndk path is only added when RS framework is running in vndk namespace. |
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// If we unconditionally add the vndk path to the library path, then RS |
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// driver in the vndk-sp directory will always be used even for CPU fallback |
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// case, where RS framework is loaded from the default namespace. |
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static const std::string vndkLibPathString = |
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"--library-path=" + getVndkSysLibPath(); |
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const char *vndkLibPath = isRunningInVndkNamespace() ? |
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vndkLibPathString.c_str() : ""; |
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const char *vendorLibPath = "--library-path=" SYSLIBPATH_VENDOR; |
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// The search path order should be vendor -> vndk -> system |
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std::vector<const char *> args = { |
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LD_EXE_PATH, |
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"-shared", |
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"-nostdlib", |
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compiler_rt, mTriple, vendorLibPath, vndkLibPath, libPath, |
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linkDriverName.c_str(), "-lm", "-lc", |
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objFileName.c_str(), |
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"-o", sharedLibName.c_str(), |
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nullptr |
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}; |
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return rsuExecuteCommand(LD_EXE_PATH, args.size()-1, args.data()); |
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} |
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#endif // RS_COMPATIBILITY_LIB |
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const char* RsdCpuScriptImpl::BCC_EXE_PATH = "/system/bin/bcc"; |
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void* SharedLibraryUtils::loadAndDeleteSharedLibrary(const char *fullPath) { |
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void *loaded = dlopen(fullPath, RTLD_NOW | RTLD_LOCAL); |
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if (loaded == nullptr) { |
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ALOGE("Unable to open shared library (%s): %s", fullPath, dlerror()); |
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return nullptr; |
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} |
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int r = unlink(fullPath); |
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if (r != 0) { |
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ALOGE("Could not unlink copy %s", fullPath); |
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return nullptr; |
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} |
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return loaded; |
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} |
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void* SharedLibraryUtils::loadSharedLibrary(const char *cacheDir, |
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const char *resName, |
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const char *nativeLibDir, |
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bool* alreadyLoaded) { |
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void *loaded = nullptr; |
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#if defined(RS_COMPATIBILITY_LIB) && defined(__LP64__) |
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std::string scriptSOName = findSharedObjectName(nativeLibDir, resName); |
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#else |
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std::string scriptSOName = findSharedObjectName(cacheDir, resName); |
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#endif |
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// We should check if we can load the library from the standard app |
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// location for shared libraries first. |
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loaded = loadSOHelper(scriptSOName.c_str(), cacheDir, resName, alreadyLoaded); |
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|
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if (loaded == nullptr) { |
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ALOGE("Unable to open shared library (%s): %s", |
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scriptSOName.c_str(), dlerror()); |
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#ifdef RS_COMPATIBILITY_LIB |
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// One final attempt to find the library in "/system/lib". |
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// We do this to allow bundled applications to use the compatibility |
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// library fallback path. Those applications don't have a private |
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// library path, so they need to install to the system directly. |
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// Note that this is really just a testing path. |
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std::string scriptSONameSystem("/system/lib/librs."); |
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scriptSONameSystem.append(resName); |
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scriptSONameSystem.append(".so"); |
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loaded = loadSOHelper(scriptSONameSystem.c_str(), cacheDir, |
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resName); |
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if (loaded == nullptr) { |
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ALOGE("Unable to open system shared library (%s): %s", |
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scriptSONameSystem.c_str(), dlerror()); |
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} |
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#endif |
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} |
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return loaded; |
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} |
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std::string SharedLibraryUtils::getRandomString(size_t len) { |
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char buf[len + 1]; |
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for (size_t i = 0; i < len; i++) { |
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uint32_t r = arc4random() & 0xffff; |
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r %= 62; |
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if (r < 26) { |
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// lowercase |
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buf[i] = 'a' + r; |
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} else if (r < 52) { |
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// uppercase |
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buf[i] = 'A' + (r - 26); |
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} else { |
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// Use a number |
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buf[i] = '0' + (r - 52); |
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} |
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} |
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buf[len] = '\0'; |
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return std::string(buf); |
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} |
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static void* loadAsCopy(const char *origName, std::string newName) { |
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void *loaded = nullptr; |
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#ifndef RS_COMPATIBILITY_LIB |
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int fd = TEMP_FAILURE_RETRY(open(origName, O_RDONLY | O_CLOEXEC)); |
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if (fd == -1) { |
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ALOGE("Unable to open original file %s: %s", origName, strerror(errno)); |
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return nullptr; |
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} |
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android_dlextinfo extinfo; |
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memset(&extinfo, 0, sizeof(extinfo)); |
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extinfo.flags = ANDROID_DLEXT_USE_LIBRARY_FD | ANDROID_DLEXT_FORCE_LOAD; |
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extinfo.library_fd = fd; |
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loaded = android_dlopen_ext(newName.c_str(), RTLD_NOW | RTLD_LOCAL, &extinfo); |
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close(fd); |
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#else |
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int r = copyFile(newName.c_str(), origName); |
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if (r != 0) { |
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ALOGE("Could not create copy %s -> %s", origName, newName.c_str()); |
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return nullptr; |
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} |
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loaded = dlopen(newName.c_str(), RTLD_NOW | RTLD_LOCAL); |
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r = unlink(newName.c_str()); |
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if (r != 0) { |
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ALOGE("Could not unlink copy %s", newName.c_str()); |
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} |
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#endif // RS_COMPATIBILITY_LIB |
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return loaded; |
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} |
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void* SharedLibraryUtils::loadSOHelper(const char *origName, const char *cacheDir, |
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const char *resName, bool *alreadyLoaded) { |
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// Keep track of which .so libraries have been loaded. Once a library is |
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// in the set (per-process granularity), we must instead make a copy of |
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// the original shared object (randomly named .so file) and load that one |
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// instead. If we don't do this, we end up aliasing global data between |
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// the various Script instances (which are supposed to be completely |
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// independent). |
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static std::set<std::string> LoadedLibraries; |
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void *loaded = nullptr; |
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|
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// Skip everything if we don't even have the original library available. |
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if (access(origName, F_OK) != 0) { |
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return nullptr; |
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} |
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// Common path is that we have not loaded this Script/library before. |
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if (LoadedLibraries.find(origName) == LoadedLibraries.end()) { |
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if (alreadyLoaded != nullptr) { |
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*alreadyLoaded = false; |
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} |
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loaded = dlopen(origName, RTLD_NOW | RTLD_LOCAL); |
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if (loaded) { |
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LoadedLibraries.insert(origName); |
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} |
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return loaded; |
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} |
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if (alreadyLoaded != nullptr) { |
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*alreadyLoaded = true; |
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} |
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std::string newName(cacheDir); |
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// Append RS_CACHE_DIR only if it is not found in cacheDir |
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// In driver mode, RS_CACHE_DIR is already appended to cacheDir. |
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if (newName.find(RS_CACHE_DIR) == std::string::npos) { |
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newName.append("/"); |
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newName.append(RS_CACHE_DIR); |
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newName.append("/"); |
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} |
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if (!ensureCacheDirExists(newName.c_str())) { |
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ALOGE("Could not verify or create cache dir: %s", cacheDir); |
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return nullptr; |
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} |
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// Construct an appropriately randomized filename for the copy. |
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newName.append("librs."); |
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newName.append(resName); |
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newName.append("#"); |
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newName.append(getRandomString(6).c_str()); // 62^6 potential filename variants. |
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newName.append(".so"); |
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loaded = loadAsCopy(origName, newName); |
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if (loaded) { |
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LoadedLibraries.insert(newName.c_str()); |
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} |
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return loaded; |
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} |
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// MAXLINESTR must be compatible with operator '#' in C macro. |
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#define MAXLINESTR 499 |
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// MAXLINE must be (MAXLINESTR + 1), representing the size of a C string |
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// containing MAXLINESTR non-null chars plus a null. |
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#define MAXLINE (MAXLINESTR + 1) |
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#define MAKE_STR_HELPER(S) #S |
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#define MAKE_STR(S) MAKE_STR_HELPER(S) |
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#define EXPORT_VAR_STR "exportVarCount: " |
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#define EXPORT_FUNC_STR "exportFuncCount: " |
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#define EXPORT_FOREACH_STR "exportForEachCount: " |
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#define EXPORT_REDUCE_STR "exportReduceCount: " |
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#define OBJECT_SLOT_STR "objectSlotCount: " |
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#define PRAGMA_STR "pragmaCount: " |
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#define THREADABLE_STR "isThreadable: " |
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#define CHECKSUM_STR "buildChecksum: " |
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#define VERSIONINFO_STR "versionInfo: " |
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|
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// Copy up to a newline or size chars from str -> s, updating str |
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// Returns s when successful and nullptr when '\0' is finally reached. |
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static char* strgets(char *s, int size, const char **ppstr) { |
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if (!ppstr || !*ppstr || **ppstr == '\0' || size < 1) { |
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return nullptr; |
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} |
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int i; |
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for (i = 0; i < (size - 1); i++) { |
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s[i] = **ppstr; |
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(*ppstr)++; |
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if (s[i] == '\0') { |
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return s; |
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} else if (s[i] == '\n') { |
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s[i+1] = '\0'; |
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return s; |
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} |
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} |
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// size has been exceeded. |
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s[i] = '\0'; |
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return s; |
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} |
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// Creates a duplicate of a string. The new string is as small as possible, |
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// only including characters up to and including the first null-terminator; |
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// otherwise, the new string will be the same size as the input string. |
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// The code that calls duplicateString is responsible for the new string's |
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// lifetime, and is responsible for freeing it when it is no longer needed. |
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static char* duplicateString(const char *str, size_t length) { |
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const size_t newLen = strnlen(str, length-1) + 1; |
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char *newStr = new char[newLen]; |
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strlcpy(newStr, str, newLen); |
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return newStr; |
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} |
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ScriptExecutable* ScriptExecutable::createFromSharedObject( |
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void* sharedObj, uint32_t expectedChecksum) { |
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char line[MAXLINE]; |
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size_t varCount = 0; |
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size_t funcCount = 0; |
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size_t forEachCount = 0; |
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size_t reduceCount = 0; |
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size_t objectSlotCount = 0; |
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size_t pragmaCount = 0; |
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bool isThreadable = true; |
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void** fieldAddress = nullptr; |
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bool* fieldIsObject = nullptr; |
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char** fieldName = nullptr; |
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InvokeFunc_t* invokeFunctions = nullptr; |
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ForEachFunc_t* forEachFunctions = nullptr; |
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uint32_t* forEachSignatures = nullptr; |
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ReduceDescription* reduceDescriptions = nullptr; |
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const char ** pragmaKeys = nullptr; |
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const char ** pragmaValues = nullptr; |
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uint32_t checksum = 0; |
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const char *rsInfo = (const char *) dlsym(sharedObj, kRsInfo); |
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int numEntries = 0; |
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const int *rsGlobalEntries = (const int *) dlsym(sharedObj, kRsGlobalEntries); |
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const char **rsGlobalNames = (const char **) dlsym(sharedObj, kRsGlobalNames); |
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const void **rsGlobalAddresses = (const void **) dlsym(sharedObj, kRsGlobalAddresses); |
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const size_t *rsGlobalSizes = (const size_t *) dlsym(sharedObj, kRsGlobalSizes); |
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const uint32_t *rsGlobalProperties = (const uint32_t *) dlsym(sharedObj, kRsGlobalProperties); |
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|
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if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
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return nullptr; |
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} |
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if (sscanf(line, EXPORT_VAR_STR "%zu", &varCount) != 1) { |
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ALOGE("Invalid export var count!: %s", line); |
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return nullptr; |
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} |
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fieldAddress = new void*[varCount]; |
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if (fieldAddress == nullptr) { |
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return nullptr; |
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} |
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|
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fieldIsObject = new bool[varCount]; |
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if (fieldIsObject == nullptr) { |
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goto error; |
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} |
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fieldName = new char*[varCount]; |
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if (fieldName == nullptr) { |
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goto error; |
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} |
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|
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for (size_t i = 0; i < varCount; ++i) { |
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if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
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goto error; |
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} |
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char *c = strrchr(line, '\n'); |
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if (c) { |
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*c = '\0'; |
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} |
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void* addr = dlsym(sharedObj, line); |
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if (addr == nullptr) { |
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ALOGE("Failed to find variable address for %s: %s", |
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line, dlerror()); |
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// Not a critical error if we don't find a global variable. |
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} |
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fieldAddress[i] = addr; |
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fieldIsObject[i] = false; |
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fieldName[i] = duplicateString(line, sizeof(line)); |
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} |
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|
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if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
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goto error; |
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} |
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if (sscanf(line, EXPORT_FUNC_STR "%zu", &funcCount) != 1) { |
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ALOGE("Invalid export func count!: %s", line); |
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goto error; |
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} |
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|
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invokeFunctions = new InvokeFunc_t[funcCount]; |
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if (invokeFunctions == nullptr) { |
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goto error; |
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} |
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|
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for (size_t i = 0; i < funcCount; ++i) { |
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if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
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goto error; |
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} |
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char *c = strrchr(line, '\n'); |
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if (c) { |
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*c = '\0'; |
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} |
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|
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invokeFunctions[i] = (InvokeFunc_t) dlsym(sharedObj, line); |
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if (invokeFunctions[i] == nullptr) { |
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ALOGE("Failed to get function address for %s(): %s", |
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line, dlerror()); |
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goto error; |
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} |
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} |
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|
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if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
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goto error; |
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} |
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if (sscanf(line, EXPORT_FOREACH_STR "%zu", &forEachCount) != 1) { |
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ALOGE("Invalid export forEach count!: %s", line); |
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goto error; |
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} |
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|
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forEachFunctions = new ForEachFunc_t[forEachCount]; |
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if (forEachFunctions == nullptr) { |
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goto error; |
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} |
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|
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forEachSignatures = new uint32_t[forEachCount]; |
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if (forEachSignatures == nullptr) { |
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goto error; |
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} |
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|
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for (size_t i = 0; i < forEachCount; ++i) { |
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unsigned int tmpSig = 0; |
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char tmpName[MAXLINE]; |
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|
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if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
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goto error; |
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} |
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if (sscanf(line, "%u - %" MAKE_STR(MAXLINESTR) "s", |
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&tmpSig, tmpName) != 2) { |
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ALOGE("Invalid export forEach!: %s", line); |
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goto error; |
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} |
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|
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// Lookup the expanded ForEach kernel. |
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strncat(tmpName, ".expand", MAXLINESTR-strlen(tmpName)); |
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forEachSignatures[i] = tmpSig; |
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forEachFunctions[i] = |
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(ForEachFunc_t) dlsym(sharedObj, tmpName); |
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if (i != 0 && forEachFunctions[i] == nullptr && |
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strcmp(tmpName, "root.expand")) { |
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// Ignore missing root.expand functions. |
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// root() is always specified at location 0. |
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ALOGE("Failed to find forEach function address for %s(): %s", |
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tmpName, dlerror()); |
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goto error; |
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} |
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} |
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|
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// Read general reduce kernels |
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if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
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goto error; |
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} |
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if (sscanf(line, EXPORT_REDUCE_STR "%zu", &reduceCount) != 1) { |
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ALOGE("Invalid export reduce new count!: %s", line); |
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goto error; |
|
} |
|
|
|
reduceDescriptions = new ReduceDescription[reduceCount]; |
|
if (reduceDescriptions == nullptr) { |
|
goto error; |
|
} |
|
|
|
for (size_t i = 0; i < reduceCount; ++i) { |
|
static const char kNoName[] = "."; |
|
|
|
unsigned int tmpSig = 0; |
|
size_t tmpSize = 0; |
|
char tmpNameReduce[MAXLINE]; |
|
char tmpNameInitializer[MAXLINE]; |
|
char tmpNameAccumulator[MAXLINE]; |
|
char tmpNameCombiner[MAXLINE]; |
|
char tmpNameOutConverter[MAXLINE]; |
|
char tmpNameHalter[MAXLINE]; |
|
|
|
if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
|
goto error; |
|
} |
|
#define DELIMNAME " - %" MAKE_STR(MAXLINESTR) "s" |
|
if (sscanf(line, "%u - %zu" DELIMNAME DELIMNAME DELIMNAME DELIMNAME DELIMNAME DELIMNAME, |
|
&tmpSig, &tmpSize, tmpNameReduce, tmpNameInitializer, tmpNameAccumulator, |
|
tmpNameCombiner, tmpNameOutConverter, tmpNameHalter) != 8) { |
|
ALOGE("Invalid export reduce new!: %s", line); |
|
goto error; |
|
} |
|
#undef DELIMNAME |
|
|
|
// For now, we expect |
|
// - Reduce and Accumulator names |
|
// - optional Initializer, Combiner, and OutConverter name |
|
// - no Halter name |
|
if (!strcmp(tmpNameReduce, kNoName) || |
|
!strcmp(tmpNameAccumulator, kNoName)) { |
|
ALOGE("Expected reduce and accumulator names!: %s", line); |
|
goto error; |
|
} |
|
if (strcmp(tmpNameHalter, kNoName)) { |
|
ALOGE("Did not expect halter name!: %s", line); |
|
goto error; |
|
} |
|
|
|
// The current implementation does not use the signature |
|
// or reduce name. |
|
|
|
reduceDescriptions[i].accumSize = tmpSize; |
|
|
|
// Process the (optional) initializer. |
|
if (strcmp(tmpNameInitializer, kNoName)) { |
|
// Lookup the original user-written initializer. |
|
if (!(reduceDescriptions[i].initFunc = |
|
(ReduceInitializerFunc_t) dlsym(sharedObj, tmpNameInitializer))) { |
|
ALOGE("Failed to find initializer function address for %s(): %s", |
|
tmpNameInitializer, dlerror()); |
|
goto error; |
|
} |
|
} else { |
|
reduceDescriptions[i].initFunc = nullptr; |
|
} |
|
|
|
// Lookup the expanded accumulator. |
|
strncat(tmpNameAccumulator, ".expand", MAXLINESTR-strlen(tmpNameAccumulator)); |
|
if (!(reduceDescriptions[i].accumFunc = |
|
(ReduceAccumulatorFunc_t) dlsym(sharedObj, tmpNameAccumulator))) { |
|
ALOGE("Failed to find accumulator function address for %s(): %s", |
|
tmpNameAccumulator, dlerror()); |
|
goto error; |
|
} |
|
|
|
// Process the (optional) combiner. |
|
if (strcmp(tmpNameCombiner, kNoName)) { |
|
// Lookup the original user-written combiner. |
|
if (!(reduceDescriptions[i].combFunc = |
|
(ReduceCombinerFunc_t) dlsym(sharedObj, tmpNameCombiner))) { |
|
ALOGE("Failed to find combiner function address for %s(): %s", |
|
tmpNameCombiner, dlerror()); |
|
goto error; |
|
} |
|
} else { |
|
reduceDescriptions[i].combFunc = nullptr; |
|
} |
|
|
|
// Process the (optional) outconverter. |
|
if (strcmp(tmpNameOutConverter, kNoName)) { |
|
// Lookup the original user-written outconverter. |
|
if (!(reduceDescriptions[i].outFunc = |
|
(ReduceOutConverterFunc_t) dlsym(sharedObj, tmpNameOutConverter))) { |
|
ALOGE("Failed to find outconverter function address for %s(): %s", |
|
tmpNameOutConverter, dlerror()); |
|
goto error; |
|
} |
|
} else { |
|
reduceDescriptions[i].outFunc = nullptr; |
|
} |
|
} |
|
|
|
if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
|
goto error; |
|
} |
|
if (sscanf(line, OBJECT_SLOT_STR "%zu", &objectSlotCount) != 1) { |
|
ALOGE("Invalid object slot count!: %s", line); |
|
goto error; |
|
} |
|
|
|
for (size_t i = 0; i < objectSlotCount; ++i) { |
|
uint32_t varNum = 0; |
|
if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
|
goto error; |
|
} |
|
if (sscanf(line, "%u", &varNum) != 1) { |
|
ALOGE("Invalid object slot!: %s", line); |
|
goto error; |
|
} |
|
|
|
if (varNum < varCount) { |
|
fieldIsObject[varNum] = true; |
|
} |
|
} |
|
|
|
#ifndef RS_COMPATIBILITY_LIB |
|
// Do not attempt to read pragmas or isThreadable flag in compat lib path. |
|
// Neither is applicable for compat lib |
|
|
|
if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
|
goto error; |
|
} |
|
|
|
if (sscanf(line, PRAGMA_STR "%zu", &pragmaCount) != 1) { |
|
ALOGE("Invalid pragma count!: %s", line); |
|
goto error; |
|
} |
|
|
|
pragmaKeys = new const char*[pragmaCount]; |
|
if (pragmaKeys == nullptr) { |
|
goto error; |
|
} |
|
|
|
pragmaValues = new const char*[pragmaCount]; |
|
if (pragmaValues == nullptr) { |
|
goto error; |
|
} |
|
|
|
bzero(pragmaKeys, sizeof(char*) * pragmaCount); |
|
bzero(pragmaValues, sizeof(char*) * pragmaCount); |
|
|
|
for (size_t i = 0; i < pragmaCount; ++i) { |
|
if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
|
ALOGE("Unable to read pragma at index %zu!", i); |
|
goto error; |
|
} |
|
char key[MAXLINE]; |
|
char value[MAXLINE] = ""; // initialize in case value is empty |
|
|
|
// pragmas can just have a key and no value. Only check to make sure |
|
// that the key is not empty |
|
if (sscanf(line, "%" MAKE_STR(MAXLINESTR) "s - %" MAKE_STR(MAXLINESTR) "s", |
|
key, value) == 0 || |
|
strlen(key) == 0) |
|
{ |
|
ALOGE("Invalid pragma value!: %s", line); |
|
|
|
goto error; |
|
} |
|
|
|
pragmaKeys[i] = duplicateString(key, sizeof(key)); |
|
pragmaValues[i] = duplicateString(value, sizeof(value)); |
|
//ALOGE("Pragma %zu: Key: '%s' Value: '%s'", i, pKey, pValue); |
|
} |
|
|
|
if (strgets(line, MAXLINE, &rsInfo) == nullptr) { |
|
goto error; |
|
} |
|
|
|
char tmpFlag[4]; |
|
if (sscanf(line, THREADABLE_STR "%3s", tmpFlag) != 1) { |
|
ALOGE("Invalid threadable flag!: %s", line); |
|
goto error; |
|
} |
|
if (strcmp(tmpFlag, "yes") == 0) { |
|
isThreadable = true; |
|
} else if (strcmp(tmpFlag, "no") == 0) { |
|
isThreadable = false; |
|
} else { |
|
ALOGE("Invalid threadable flag!: %s", tmpFlag); |
|
goto error; |
|
} |
|
|
|
if (strgets(line, MAXLINE, &rsInfo) != nullptr) { |
|
if (sscanf(line, CHECKSUM_STR "%08x", &checksum) != 1) { |
|
ALOGE("Invalid checksum flag!: %s", line); |
|
goto error; |
|
} |
|
} else { |
|
ALOGE("Missing checksum in shared obj file"); |
|
goto error; |
|
} |
|
|
|
if (expectedChecksum != 0 && checksum != expectedChecksum) { |
|
ALOGE("Found invalid checksum. Expected %08x, got %08x\n", |
|
expectedChecksum, checksum); |
|
goto error; |
|
} |
|
|
|
{ |
|
// Parse the version info string, but ignore its contents as it's only |
|
// used by the debugger |
|
size_t nLines = 0; |
|
if (strgets(line, MAXLINE, &rsInfo) != nullptr) { |
|
if (sscanf(line, VERSIONINFO_STR "%zu", &nLines) != 1) { |
|
ALOGE("invalid versionInfo count"); |
|
goto error; |
|
} else { |
|
// skip the versionInfo packet as libRs doesn't use it |
|
while (nLines) { |
|
--nLines; |
|
if (strgets(line, MAXLINE, &rsInfo) == nullptr) |
|
goto error; |
|
} |
|
} |
|
} else { |
|
ALOGE(".rs.info is missing versionInfo section"); |
|
} |
|
} |
|
|
|
#endif // RS_COMPATIBILITY_LIB |
|
|
|
// Read in information about mutable global variables provided by bcc's |
|
// RSGlobalInfoPass |
|
if (rsGlobalEntries) { |
|
numEntries = *rsGlobalEntries; |
|
if (numEntries > 0) { |
|
rsAssert(rsGlobalNames); |
|
rsAssert(rsGlobalAddresses); |
|
rsAssert(rsGlobalSizes); |
|
rsAssert(rsGlobalProperties); |
|
} |
|
} |
|
|
|
return new ScriptExecutable( |
|
fieldAddress, fieldIsObject, fieldName, varCount, |
|
invokeFunctions, funcCount, |
|
forEachFunctions, forEachSignatures, forEachCount, |
|
reduceDescriptions, reduceCount, |
|
pragmaKeys, pragmaValues, pragmaCount, |
|
rsGlobalNames, rsGlobalAddresses, rsGlobalSizes, rsGlobalProperties, |
|
numEntries, isThreadable, checksum); |
|
|
|
error: |
|
|
|
#ifndef RS_COMPATIBILITY_LIB |
|
|
|
if (pragmaKeys) { |
|
for (size_t idx = 0; idx < pragmaCount; ++idx) { |
|
delete [] pragmaKeys[idx]; |
|
} |
|
} |
|
|
|
if (pragmaValues) { |
|
for (size_t idx = 0; idx < pragmaCount; ++idx) { |
|
delete [] pragmaValues[idx]; |
|
} |
|
} |
|
|
|
delete[] pragmaValues; |
|
delete[] pragmaKeys; |
|
#endif // RS_COMPATIBILITY_LIB |
|
|
|
delete[] reduceDescriptions; |
|
|
|
delete[] forEachSignatures; |
|
delete[] forEachFunctions; |
|
|
|
delete[] invokeFunctions; |
|
|
|
for (size_t i = 0; i < varCount; i++) { |
|
delete[] fieldName[i]; |
|
} |
|
delete[] fieldName; |
|
delete[] fieldIsObject; |
|
delete[] fieldAddress; |
|
|
|
return nullptr; |
|
} |
|
|
|
void* ScriptExecutable::getFieldAddress(const char* name) const { |
|
// TODO: improve this by using a hash map. |
|
for (size_t i = 0; i < mExportedVarCount; i++) { |
|
if (strcmp(name, mFieldName[i]) == 0) { |
|
return mFieldAddress[i]; |
|
} |
|
} |
|
return nullptr; |
|
} |
|
|
|
bool ScriptExecutable::dumpGlobalInfo() const { |
|
ALOGE("Globals: %p %p %p", mGlobalAddresses, mGlobalSizes, mGlobalNames); |
|
ALOGE("P - Pointer"); |
|
ALOGE(" C - Constant"); |
|
ALOGE(" S - Static"); |
|
for (int i = 0; i < mGlobalEntries; i++) { |
|
ALOGE("Global[%d]: %p %zu %s", i, mGlobalAddresses[i], mGlobalSizes[i], |
|
mGlobalNames[i]); |
|
uint32_t properties = mGlobalProperties[i]; |
|
ALOGE("%c%c%c Type: %u", |
|
isGlobalPointer(properties) ? 'P' : ' ', |
|
isGlobalConstant(properties) ? 'C' : ' ', |
|
isGlobalStatic(properties) ? 'S' : ' ', |
|
getGlobalRsType(properties)); |
|
} |
|
return true; |
|
} |
|
|
|
} // namespace renderscript |
|
} // namespace android
|
|
|