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2003-03-01 Ranjit Mathew <rmathew@hotmail.com> * java/io/File.java (normalizePath): Remove trailing separator on Windows only if path is not of the form "x:\". * java/io/natFileWin32.cc (WIN32_EPOCH_MILLIS): New constant. (java::io::File::attr): Change formatting a bit and use WIN32_EPOCH_MILLIS instead of magic numbers. (java::io::File::isAbsolute): Path must have at least 3 characters for a UNC network path. (java::io::File::init_native): Define. (java::io::File::performCreate): Likewise. (java::io::File::performSetReadOnly): Likewise. (java::io::File::performSetLastModified): Likewise. (java::io::File::performListRoots): Likewise. From-SVN: r63646
368 lines
10 KiB
C++
368 lines
10 KiB
C++
// natFileWin32.cc - Native part of File class.
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/* Copyright (C) 1998, 1999, 2002, 2003 Red Hat, Inc.
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This file is part of libgcj.
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This software is copyrighted work licensed under the terms of the
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Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
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details. */
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#include <config.h>
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#include <stdio.h>
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#include <string.h>
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#include <windows.h>
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#undef STRICT
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#include <gcj/cni.h>
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#include <jvm.h>
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#include <java/io/File.h>
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#include <java/io/IOException.h>
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#include <java/util/Vector.h>
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#include <java/lang/String.h>
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#include <java/io/FilenameFilter.h>
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#include <java/io/FileFilter.h>
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#include <java/lang/System.h>
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// Java timestamps are milliseconds since the UNIX epoch (00:00:00 UTC on
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// January 1, 1970) while Win32 file-times are 100-nanosecond intervals
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// since the Win32 epoch (00:00:00 UTC on January 1, 1601). The following
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// constant represents the number of milliseconds to be added to a
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// Java timestamp to base it on the Win32 epoch.
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//
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// There were 369 years between 1601 and 1970, including 89 leap years
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// (since 1700, 1800 and 1900 were not leap years):
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//
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// (89*366 + 280*365) days * 86400 seconds/day = 11644473600 seconds
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//
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#define WIN32_EPOCH_MILLIS 11644473600000LL
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jboolean
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java::io::File::_access (jint query)
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{
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jstring canon = getCanonicalPath();
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if (! canon)
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return false;
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (canon) + 1);
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jsize total = JvGetStringUTFRegion (canon, 0, canon->length(), buf);
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buf[total] = '\0';
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JvAssert (query == READ || query == WRITE || query == EXISTS);
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// FIXME: Is it possible to differentiate between existing and reading?
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// If the file exists but cannot be read because of the secuirty attributes
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// on an NTFS disk this wont work (it reports it can be read but cant)
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// Could we use something from the security API?
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DWORD attributes = GetFileAttributes (buf);
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if ((query == EXISTS) || (query == READ))
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return (attributes == 0xffffffff) ? false : true;
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else
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return ((attributes != 0xffffffff) && ((attributes & FILE_ATTRIBUTE_READONLY) == 0)) ? true : false;
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}
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jboolean
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java::io::File::_stat (jint query)
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{
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jstring canon = getCanonicalPath();
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if (! canon)
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return false;
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (canon) + 1);
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jsize total = JvGetStringUTFRegion (canon, 0, canon->length(), buf);
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buf[total] = '\0';
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JvAssert (query == DIRECTORY || query == ISFILE);
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DWORD attributes = GetFileAttributes (buf);
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if (attributes == 0xffffffff)
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return false;
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if (query == DIRECTORY)
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return attributes & FILE_ATTRIBUTE_DIRECTORY ? true : false;
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else
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return attributes & FILE_ATTRIBUTE_DIRECTORY ? false : true;
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}
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jlong
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java::io::File::attr (jint query)
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{
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jstring canon = getCanonicalPath();
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if (! canon)
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return false;
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (canon) + 1);
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jsize total = JvGetStringUTFRegion (canon, 0, canon->length(), buf);
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buf[total] = '\0';
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JvAssert (query == MODIFIED || query == LENGTH);
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WIN32_FIND_DATA info;
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HANDLE sHandle;
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if ( ( sHandle = FindFirstFile( buf, &info)) == INVALID_HANDLE_VALUE)
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return 0;
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FindClose( sHandle);
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if (query == LENGTH)
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return ((long long)info.nFileSizeHigh) << 32
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| (unsigned long long)info.nFileSizeLow;
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else
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{
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// The file time as returned by Windows is in terms of the number
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// of 100-nanosecond intervals since 00:00:00 UTC, January 1, 1601.
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return (((((long long)info.ftLastWriteTime.dwHighDateTime) << 32)
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| ((unsigned long long)info.ftLastWriteTime.dwLowDateTime))
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- WIN32_EPOCH_MILLIS*10000LL) / 10000LL;
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}
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}
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jstring
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java::io::File::getCanonicalPath (void)
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{
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (path) + 1);
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jsize total = JvGetStringUTFRegion (path, 0, path->length(), buf);
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buf[total] = '\0';
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LPTSTR unused;
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char buf2[MAX_PATH];
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if(!GetFullPathName(buf, MAX_PATH, buf2, &unused))
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throw new IOException (JvNewStringLatin1 ("GetFullPathName failed"));
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// FIXME: what encoding to assume for file names? This affects many
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// calls.
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return JvNewStringUTF(buf2);
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}
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jboolean
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java::io::File::isAbsolute (void)
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{
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// See if the path represents a Windows UNC network path.
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if (path->length () > 2
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&& (path->charAt (0) == '\\') && (path->charAt (1) == '\\'))
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return true;
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// Note that the path is not an absolute path even if it starts with
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// a '/' or a '\' because it lacks a drive specifier.
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if (path->length() < 3)
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return false;
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// Hard-code A-Za-z because Windows (I think) can't use non-ASCII
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// letters as drive names.
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if ((path->charAt(0) < 'a' || path->charAt(0) > 'z')
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&& (path->charAt(0) < 'A' || path->charAt(0) > 'Z'))
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return false;
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return (path->charAt(1) == ':'
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&& (path->charAt(2) == '/' || path->charAt(2) == '\\'));
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}
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void java::io::File::init_native ()
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{
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maxPathLen = MAX_PATH;
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caseSensitive = false;
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}
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jobjectArray
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java::io::File::performList (java::io::FilenameFilter *filter,
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java::io::FileFilter *fileFilter,
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java::lang::Class *clazz)
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{
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jstring canon = getCanonicalPath();
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if (! canon)
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return NULL;
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (canon) + 5);
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jsize total = JvGetStringUTFRegion (canon, 0, canon->length(), buf);
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if (buf[total-1] == '\\')
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strcpy (&buf[total], "*.*");
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else
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strcpy (&buf[total], "\\*.*");
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WIN32_FIND_DATA data;
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HANDLE handle = FindFirstFile (buf, &data);
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if (handle == INVALID_HANDLE_VALUE)
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return NULL;
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java::util::Vector *vec = new java::util::Vector ();
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do
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{
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if (strcmp (data.cFileName, ".") && strcmp (data.cFileName, ".."))
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{
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jstring name = JvNewStringUTF (data.cFileName);
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if (filter && !filter->accept(this, name))
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continue;
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if (clazz == &java::io::File::class$)
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{
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java::io::File *file = new java::io::File (this, name);
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if (fileFilter && !fileFilter->accept(file))
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continue;
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vec->addElement (file);
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}
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else
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vec->addElement (name);
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}
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}
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while (FindNextFile (handle, &data));
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if (GetLastError () != ERROR_NO_MORE_FILES)
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return NULL;
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FindClose (handle);
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jobjectArray ret = JvNewObjectArray (vec->size(), clazz, NULL);
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vec->copyInto (ret);
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return ret;
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}
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jboolean
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java::io::File::performMkdir (void)
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{
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (path) + 1);
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jsize total = JvGetStringUTFRegion(path, 0, path->length(), buf);
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buf[total] = '\0';
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return (CreateDirectory(buf, NULL)) ? true : false;
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}
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jboolean
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java::io::File::performRenameTo (File *dest)
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{
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (path) + 1);
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jsize total = JvGetStringUTFRegion(path, 0, path->length(), buf);
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buf[total] = '\0';
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char *buf2 = (char *) __builtin_alloca (JvGetStringUTFLength (dest->path)
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+ 1);
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total = JvGetStringUTFRegion(dest->path, 0, dest->path->length(), buf2);
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buf2[total] = '\0';
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return (MoveFile(buf, buf2)) ? true : false;
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}
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jboolean
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java::io::File::performDelete ()
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{
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jstring canon = getCanonicalPath();
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (canon) + 1);
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jsize total = JvGetStringUTFRegion(canon, 0, canon->length(), buf);
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buf[total] = '\0';
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DWORD attributes = GetFileAttributes (buf);
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if (attributes == 0xffffffff)
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return false;
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if (attributes & FILE_ATTRIBUTE_DIRECTORY)
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return (RemoveDirectory (buf)) ? true : false;
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else
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return (DeleteFile (buf)) ? true : false;
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}
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jboolean java::io::File::performCreate (void)
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{
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jstring canon = getCanonicalPath ();
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (canon) + 1);
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jsize total = JvGetStringUTFRegion (canon, 0, canon->length (), buf);
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buf[total] = '\0';
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HANDLE h = CreateFile (buf, 0, 0, NULL, CREATE_NEW,
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FILE_ATTRIBUTE_NORMAL, NULL);
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if (h != INVALID_HANDLE_VALUE)
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{
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CloseHandle (h);
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return true;
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}
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else
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{
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if (GetLastError () == ERROR_ALREADY_EXISTS)
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return false;
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else
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throw new IOException (JvNewStringLatin1 ("CreateFile failed"));
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}
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}
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jboolean java::io::File::performSetReadOnly ()
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{
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jstring canon = getCanonicalPath ();
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (canon) + 1);
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jsize total = JvGetStringUTFRegion (canon, 0, canon->length (), buf);
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buf[total] = '\0';
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DWORD attrs = GetFileAttributes (buf);
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if (attrs != INVALID_FILE_ATTRIBUTES)
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{
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if (SetFileAttributes (buf, attrs | FILE_ATTRIBUTE_READONLY) != 0)
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return true;
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else
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return false;
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}
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else
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return false;
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}
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jboolean java::io::File::performSetLastModified (jlong time)
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{
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jstring canon = getCanonicalPath ();
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char *buf = (char *) __builtin_alloca (JvGetStringUTFLength (canon) + 1);
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jsize total = JvGetStringUTFRegion (canon, 0, canon->length (), buf);
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buf[total] = '\0';
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FILETIME modTime;
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long long mTime100ns = ((long long) time /* Ha! */
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+ WIN32_EPOCH_MILLIS) * 10000LL;
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modTime.dwLowDateTime = (DWORD) mTime100ns;
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modTime.dwHighDateTime = (DWORD) (mTime100ns >> 32);
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jboolean retVal = false;
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HANDLE h = CreateFile (buf, FILE_WRITE_ATTRIBUTES,
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FILE_SHARE_READ | FILE_SHARE_WRITE,
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NULL, OPEN_EXISTING, 0, NULL);
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if (h != INVALID_HANDLE_VALUE)
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{
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if (SetFileTime (h, NULL, &modTime, &modTime) != 0)
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retVal = true;
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CloseHandle (h);
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}
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return retVal;
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}
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JArray<java::io::File*>* java::io::File::performListRoots ()
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{
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DWORD drivesBitmap = GetLogicalDrives ();
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DWORD mask;
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// Possible drive letters are from ASCII 'A'-'Z'.
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int numDrives = 0;
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mask = 1;
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for (int i = 0; i < 26; i++)
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{
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if ((drivesBitmap & mask) != 0)
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numDrives++;
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mask <<= 1;
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}
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JArray<java::io::File *> *roots
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= reinterpret_cast <JArray<java::io::File *>*>
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(JvNewObjectArray (numDrives, &java::io::File::class$, NULL));
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::java::io::File **rootsArray = elements (roots);
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char aDriveRoot[] = {'A', ':', '\\', '\0'};
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mask = 1;
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for (int i = 0, j = 0; i < 26; i++)
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{
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if ((drivesBitmap & mask) != 0)
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{
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rootsArray[j]
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= new ::java::io::File (JvNewStringLatin1 (aDriveRoot));
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j++;
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}
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mask <<= 1;
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aDriveRoot[0]++;
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}
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return roots;
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}
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