[2] | 1 | /* $Id: kProfileR3.cpp 2 2007-11-16 16:07:14Z bird $ */
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| 2 | /** @file
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| 3 | * kProfiler Mark 2 - The Ring-3 Implementation.
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| 4 | */
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| 5 |
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| 6 | /*
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| 7 | * Copyright (c) 2006-2007 knut st. osmundsen <bird-src-spam@anduin.net>
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| 8 | *
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| 9 | * This file is part of kProfiler.
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| 10 | *
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| 11 | * kProfiler is free software; you can redistribute it and/or
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| 12 | * modify it under the terms of the GNU Lesser General Public
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| 13 | * License as published by the Free Software Foundation; either
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| 14 | * version 2.1 of the License, or (at your option) any later version.
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| 15 | *
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| 16 | * kProfiler is distributed in the hope that it will be useful,
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| 17 | * but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 18 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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| 19 | * Lesser General Public License for more details.
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| 20 | *
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| 21 | * You should have received a copy of the GNU Lesser General Public
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| 22 | * License along with kProfiler; if not, write to the Free Software
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| 23 | * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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| 24 | *
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| 25 | */
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| 26 |
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| 27 |
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| 28 | /*******************************************************************************
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| 29 | * Header Files *
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| 30 | *******************************************************************************/
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| 31 | #if defined(KPRF_OS_WINDOWS)
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| 32 | # include <windows.h>
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| 33 | # include <psapi.h>
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| 34 | # include <malloc.h>
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| 35 | # if _MSC_VER >= 1400
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| 36 | # include <intrin.h>
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| 37 | # define HAVE_INTRIN
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| 38 | # endif
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| 39 |
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| 40 | #elif defined(KPRF_OS_LINUX) || defined(KPRF_OS_FREEBSD)
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| 41 | # define KPRF_USE_PTHREAD
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| 42 | # include <pthread.h>
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| 43 | # include <stdint.h>
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| 44 | # define KPRF_USE_MMAN
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| 45 | # include <sys/mman.h>
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| 46 | # include <sys/fcntl.h>
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| 47 | # include <unistd.h>
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| 48 | # include <stdlib.h>
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| 49 | # ifndef O_BINARY
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| 50 | # define O_BINARY 0
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| 51 | # endif
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| 52 |
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| 53 | #elif defined(KPRF_OS_OS2)
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| 54 | # define INCL_BASE
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| 55 | # include <os2.h>
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| 56 | # include <stdint.h>
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| 57 | # include <sys/fmutex.h>
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| 58 |
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| 59 | #else
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| 60 | # error "not ported to this OS..."
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| 61 | #endif
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| 62 |
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| 63 | #include <k/kDefs.h>
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| 64 | #include <k/kTypes.h>
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| 65 |
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| 66 | /*
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| 67 | * Instantiate the header.
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| 68 | */
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| 69 | #define KPRF_NAME(Suffix) KPrf##Suffix
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| 70 | #define KPRF_TYPE(Prefix,Suffix) Prefix##KPRF##Suffix
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| 71 | #if defined(KPRF_OS_WINDOWS) || defined(KPRF_OS_OS2)
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| 72 | # define KPRF_DECL_FUNC(type, name) extern "C" __declspec(dllexport) type __cdecl KPRF_NAME(name)
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| 73 | #else
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| 74 | # define KPRF_DECL_FUNC(type, name) extern "C" type KPRF_NAME(name)
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| 75 | #endif
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| 76 | #if 1
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| 77 | # ifdef __GNUC__
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| 78 | # define KPRF_ASSERT(expr) do { if (!(expr)) { __asm__ __volatile__("int3\n\tnop\n\t");} } while (0)
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| 79 | # else
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| 80 | # define KPRF_ASSERT(expr) do { if (!(expr)) { __debugbreak(); } } while (0)
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| 81 | # endif
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| 82 | #else
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| 83 | # define KPRF_ASSERT(expr) do { } while (0)
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| 84 | #endif
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| 85 |
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| 86 | #include "prfcore.h.h"
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| 87 |
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| 88 |
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| 89 |
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| 90 | /*******************************************************************************
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| 91 | * Structures and Typedefs *
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| 92 | *******************************************************************************/
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| 93 | /** Mutex lock type. */
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| 94 | #if defined(KPRF_USE_PTHREAD)
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| 95 | typedef pthread_mutex_t KPRF_TYPE(,MUTEX);
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| 96 | #elif defined(KPRF_OS_WINDOWS)
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| 97 | typedef CRITICAL_SECTION KPRF_TYPE(,MUTEX);
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| 98 | #elif defined(KPRF_OS_OS2)
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| 99 | typedef struct _fmutex KPRF_TYPE(,MUTEX);
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| 100 | #endif
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| 101 | /** Pointer to a mutex lock. */
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| 102 | typedef KPRF_TYPE(,MUTEX) *KPRF_TYPE(P,MUTEX);
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| 103 |
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| 104 |
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| 105 | #if defined(KPRF_USE_PTHREAD)
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| 106 | /** Read/Write lock type. */
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| 107 | typedef pthread_rwlock_t KPRF_TYPE(,RWLOCK);
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| 108 | #elif defined(KPRF_OS_WINDOWS) || defined(KPRF_OS_OS2)
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| 109 | /** Read/Write lock state. */
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| 110 | typedef enum KPRF_TYPE(,RWLOCKSTATE)
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| 111 | {
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| 112 | RWLOCK_STATE_UNINITIALIZED = 0,
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| 113 | RWLOCK_STATE_SHARED,
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| 114 | RWLOCK_STATE_LOCKING,
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| 115 | RWLOCK_STATE_EXCLUSIVE,
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| 116 | RWLOCK_STATE_32BIT_HACK = 0x7fffffff
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| 117 | } KPRF_TYPE(,RWLOCKSTATE);
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| 118 | /** Update the state. */
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| 119 | #define KPRF_RWLOCK_SETSTATE(pRWLock, enmNewState) \
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| 120 | kPrfAtomicSet32((volatile KU32 *)&(pRWLock)->enmState, (KU32)(enmNewState))
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| 121 |
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| 122 | /** Read/Write lock type. */
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| 123 | typedef struct KPRF_TYPE(,RWLOCK)
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| 124 | {
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| 125 | /** This mutex serialize the access and updating of the members
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| 126 | * of this structure. */
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| 127 | KPRF_TYPE(,MUTEX) Mutex;
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| 128 | /** The current number of readers. */
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| 129 | KU32 cReaders;
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| 130 | /** The number of readers waiting. */
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| 131 | KU32 cReadersWaiting;
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| 132 | /** The current number of waiting writers. */
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| 133 | KU32 cWritersWaiting;
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| 134 | # if defined(KPRF_OS_WINDOWS)
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| 135 | /** The handle of the event object on which the waiting readers block. (manual reset). */
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| 136 | HANDLE hevReaders;
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| 137 | /** The handle of the event object on which the waiting writers block. (manual reset). */
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| 138 | HANDLE hevWriters;
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| 139 | # elif defined(KPRF_OS_OS2)
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| 140 | /** The handle of the event semaphore on which the waiting readers block. */
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| 141 | HEV hevReaders;
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| 142 | /** The handle of the event semaphore on which the waiting writers block. */
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| 143 | HEV hevWriters;
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| 144 | # endif
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| 145 | /** The current state of the read-write lock. */
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| 146 | KPRF_TYPE(,RWLOCKSTATE) enmState;
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| 147 | } KPRF_TYPE(,RWLOCK);
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| 148 | #endif
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| 149 | /** Pointer to a Read/Write lock. */
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| 150 | typedef KPRF_TYPE(,RWLOCK) *KPRF_TYPE(P,RWLOCK);
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| 151 |
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| 152 |
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| 153 |
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| 154 | /*******************************************************************************
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| 155 | * Global Variables *
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| 156 | *******************************************************************************/
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| 157 | /** The TLS index / key. */
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| 158 | #if defined(KPRF_OS_WINDOWS)
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| 159 | static DWORD g_dwThreadTLS = TLS_OUT_OF_INDEXES;
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| 160 |
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| 161 | #elif defined(KPRF_USE_PTHREAD)
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| 162 | static pthread_key_t g_ThreadKey = (pthread_key_t)-1;
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| 163 |
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| 164 | #elif defined(KPRF_OS_OS2)
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| 165 | static KPRF_TYPE(P,THREAD) *g_ppThread = NULL;
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| 166 |
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| 167 | #else
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| 168 | # error "Not ported to your OS - or you're missing the OS define(s)."
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| 169 | #endif
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| 170 |
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| 171 | /** Pointer to the profiler header. */
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| 172 | static KPRF_TYPE(P,HDR) g_pHdr = NULL;
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| 173 | #define KPRF_GET_HDR() g_pHdr
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| 174 |
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| 175 | /** Whether the profiler is enabled or not. */
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| 176 | static bool g_fEnabled = false;
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| 177 | #define KPRF_IS_ACTIVE() g_fEnabled
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| 178 |
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| 179 |
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| 180 | /** The mutex protecting the threads in g_pHdr. */
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| 181 | static KPRF_TYPE(,MUTEX) g_ThreadsMutex;
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| 182 |
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| 183 | /** The mutex protecting the module segments in g_pHdr. */
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| 184 | static KPRF_TYPE(,MUTEX) g_ModSegsMutex;
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| 185 |
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| 186 | /** The read-write lock protecting the functions in g_pHdr. */
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| 187 | static KPRF_TYPE(,RWLOCK) g_FunctionsRWLock;
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| 188 |
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| 189 |
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| 190 |
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| 191 | /*******************************************************************************
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| 192 | * Internal Functions *
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| 193 | *******************************************************************************/
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| 194 | static KPRF_TYPE(P,THREAD) kPrfGetThreadAutoReg(void);
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| 195 | #ifdef KPRF_USE_PTHREAD
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| 196 | static void kPrfPThreadKeyDtor(void *pvThread);
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| 197 | #endif
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| 198 |
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| 199 |
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| 200 | /**
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| 201 | * Gets the pointer to the profiler data for the current thread.
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| 202 | *
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| 203 | * This implementation automatically adds unknown threads.
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| 204 | *
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| 205 | * @returns Pointer to the profiler thread data.
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| 206 | * @returns NULL if we're out of thread space.
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| 207 | */
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| 208 | static inline KPRF_TYPE(P,THREAD) kPrfGetThread(void)
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| 209 | {
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| 210 | KPRF_TYPE(P,THREAD) pThread;
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| 211 |
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| 212 | /* Win32/64 */
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| 213 | #if defined(KPRF_OS_WINDOWS)
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| 214 | pThread = (KPRF_TYPE(P,THREAD))TlsGetValue(g_dwThreadTLS);
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| 215 |
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| 216 | /* Posix Threads */
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| 217 | #elif defined(KPRF_USE_PTHREAD)
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| 218 | pThread = (KPRF_TYPE(P,THREAD))pthread_getspecific(g_ThreadKey);
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| 219 |
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| 220 | #elif defined(KPRF_OS_OS2)
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| 221 | pThread = *g_ppThread;
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| 222 |
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| 223 | #else
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| 224 | # error not implemented
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| 225 | #endif
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| 226 | if (!pThread)
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| 227 | pThread = kPrfGetThreadAutoReg();
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| 228 | return pThread;
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| 229 | }
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| 230 | #define KPRF_GET_THREAD() kPrfGetThread()
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| 231 |
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| 232 |
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| 233 | /**
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| 234 | * The the ID of the current thread.
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| 235 | *
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| 236 | * @returns The thread id.
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| 237 | */
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| 238 | static inline KUPTR kPrfGetThreadId(void)
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| 239 | {
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| 240 | /* Win32/64 */
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| 241 | #if defined(KPRF_OS_WINDOWS)
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| 242 | KUPTR ThreadId = (KUPTR)GetCurrentThreadId();
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| 243 |
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| 244 | /* Posix Threads */
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| 245 | #elif defined(KPRF_USE_PTHREAD)
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| 246 | KUPTR ThreadId = (KUPTR)pthread_self();
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| 247 |
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| 248 | #elif defined(KPRF_OS_OS2)
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| 249 | PTIB pTib;
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| 250 | PPIB pPib;
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| 251 | DosGetInfoBlocks(&pTib, &pPib);
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| 252 | ThreadId = pTib->tib_ptib2->tib2_ultid;
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| 253 |
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| 254 | #else
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| 255 | # error not implemented
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| 256 | #endif
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| 257 |
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| 258 | return ThreadId;
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| 259 | }
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| 260 | #define KPRF_GET_THREADID() kPrfGetThreadId()
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| 261 |
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| 262 |
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| 263 | /**
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| 264 | * The the ID of the current process.
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| 265 | *
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| 266 | * @returns The process id.
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| 267 | */
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| 268 | static inline KUPTR kPrfGetProcessId(void)
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| 269 | {
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| 270 | /* Win32/64 */
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| 271 | #if defined(KPRF_OS_WINDOWS)
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| 272 | KUPTR ThreadId = (KUPTR)GetProcessId(GetCurrentProcess());
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| 273 |
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| 274 | #elif defined(KPRF_OS_OS2)
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| 275 | PTIB pTib;
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| 276 | PPIB pPib;
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| 277 | DosGetInfoBlocks(&pTib, &pPib);
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| 278 | ThreadId = pPib->pib_pid;
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| 279 |
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| 280 | #else
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| 281 | KUPTR ThreadId = (KUPTR)getpid();
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| 282 | #endif
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| 283 |
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| 284 | return ThreadId;
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| 285 | }
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| 286 | #define KPRF_GET_PROCESSID() kPrfGetProcessId()
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| 287 |
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| 288 |
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| 289 | /**
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| 290 | * Sets the pointer to the profiler data for the current thread.
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| 291 | *
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| 292 | * We require fast access to the profiler thread data, so we store
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| 293 | * it in a TLS (thread local storage) item/key where the implementation
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| 294 | * allows that.
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| 295 | *
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| 296 | * @param pThread The pointer to the profiler thread data for the current thread.
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| 297 | */
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| 298 | static inline void kPrfSetThread(KPRF_TYPE(P,THREAD) pThread)
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| 299 | {
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| 300 | /* Win32/64 */
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| 301 | #if defined(KPRF_OS_WINDOWS)
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| 302 | BOOL fRc = TlsSetValue(g_dwThreadTLS, pThread);
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| 303 |
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| 304 | /* Posix Threads */
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| 305 | #elif defined(KPRF_USE_PTHREAD)
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| 306 | int rc = pthread_setspecific(g_ThreadKey, pThread);
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| 307 |
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| 308 | #elif defined(KPRF_OS_OS2)
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| 309 | *g_ppThread = pThread;
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| 310 |
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| 311 | #else
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| 312 | # error not implemented
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| 313 | #endif
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| 314 | }
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| 315 | #define KPRF_SET_THREAD(pThread) kPrfSetThread(pThread)
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| 316 |
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| 317 |
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| 318 | /**
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| 319 | * Get the now timestamp.
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| 320 | * This must correspond to what the assembly code are doing.
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| 321 | */
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| 322 | static inline KU64 kPrfNow(void)
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| 323 | {
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| 324 | #if defined(HAVE_INTRIN)
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| 325 | return __rdtsc();
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| 326 | # else
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| 327 | union
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| 328 | {
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| 329 | KU64 u64;
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| 330 | struct
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| 331 | {
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| 332 | KU32 u32Lo;
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| 333 | KU32 u32Hi;
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| 334 | } s;
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| 335 | } u;
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| 336 | # if defined(__GNUC__)
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| 337 | __asm__ __volatile__ ("rdtsc\n\t" : "=a" (u.s.u32Lo), "=d" (u.s.u32Hi));
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| 338 | # else
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| 339 | __asm
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| 340 | {
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| 341 | rdtsc
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| 342 | mov [u.s.u32Lo], eax
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| 343 | mov [u.s.u32Hi], edx
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| 344 | }
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| 345 |
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| 346 | # endif
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| 347 | return u.u64;
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| 348 | #endif
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| 349 | }
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| 350 | #define KPRF_NOW() kPrfNow()
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| 351 |
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| 352 |
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| 353 | /**
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| 354 | * Atomically set a 32-bit value.
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| 355 | */
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| 356 | static inline void kPrfAtomicSet32(volatile KU32 *pu32, const KU32 u32)
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| 357 | {
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| 358 | #if defined(HAVE_INTRIN)
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| 359 | _InterlockedExchange((long volatile *)pu32, (const long)u32);
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| 360 |
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| 361 | #elif defined(__GNUC__)
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| 362 | __asm__ __volatile__("xchgl %0, %1\n\t"
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| 363 | : "=m" (*pu32)
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| 364 | : "r" (u32));
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| 365 |
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| 366 | #elif _MSC_VER
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| 367 | __asm
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| 368 | {
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| 369 | mov edx, [pu32]
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| 370 | mov eax, [u32]
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| 371 | xchg [edx], eax
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| 372 | }
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| 373 |
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| 374 | #else
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| 375 | *pu32 = u32;
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| 376 | #endif
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| 377 | }
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| 378 | #define KPRF_ATOMIC_SET32(a,b) kPrfAtomicSet32(a, b)
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| 379 |
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| 380 |
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| 381 |
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| 382 | /**
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| 383 | * Atomically set a 64-bit value.
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| 384 | */
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| 385 | static inline void kPrfAtomicSet64(volatile KU64 *pu64, KU64 u64)
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| 386 | {
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| 387 | #if defined(HAVE_INTRIN) && KPRF_BITS == 64
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| 388 | _InterlockedExchange64((KI64 *)pu64, (const KI64)u64);
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| 389 |
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| 390 | #elif defined(__GNUC__) && KPRF_BITS == 64
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| 391 | __asm__ __volatile__("xchgq %0, %1\n\t"
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| 392 | : "=m" (*pu64)
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| 393 | : "r" (u64));
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| 394 |
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| 395 | #elif defined(__GNUC__) && KPRF_BITS == 32
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| 396 | __asm__ __volatile__("1:\n\t"
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| 397 | "lock; cmpxchg8b %1\n\t"
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| 398 | "jnz 1b\n\t"
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| 399 | : "=A" (u64),
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| 400 | "=m" (*pu64)
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| 401 | : "0" (*pu64),
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| 402 | "b" ( (KU32)u64 ),
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| 403 | "c" ( (KU32)(u64 >> 32) ));
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| 404 |
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| 405 | #elif _MSC_VER
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| 406 | __asm
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| 407 | {
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| 408 | mov ebx, dword ptr [u64]
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| 409 | mov ecx, dword ptr [u64 + 4]
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| 410 | mov esi, pu64
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| 411 | mov eax, dword ptr [esi]
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| 412 | mov edx, dword ptr [esi + 4]
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| 413 | retry:
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| 414 | lock cmpxchg8b [esi]
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| 415 | jnz retry
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| 416 | }
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| 417 | #else
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| 418 | *pu64 = u64;
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| 419 | #endif
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| 420 | }
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| 421 | #define KPRF_ATOMIC_SET64(a,b) kPrfAtomicSet64(a, b)
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| 422 |
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| 423 |
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| 424 | /**
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| 425 | * Atomically add a 32-bit integer to another.
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| 426 | */
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| 427 | static inline void kPrfAtomicAdd32(volatile KU32 *pu32, const KU32 u32)
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| 428 | {
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| 429 | #if defined(HAVE_INTRIN)
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| 430 | _InterlockedExchangeAdd((volatile long *)pu32, (const long)u32);
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| 431 |
|
---|
| 432 | #elif defined(__GNUC__)
|
---|
| 433 | __asm__ __volatile__("lock; addl %0, %1\n\t"
|
---|
| 434 | : "=m" (*pu32)
|
---|
| 435 | : "r" (u32));
|
---|
| 436 |
|
---|
| 437 | #elif _MSC_VER
|
---|
| 438 | __asm
|
---|
| 439 | {
|
---|
| 440 | mov edx, [pu32]
|
---|
| 441 | mov eax, dword ptr [u32]
|
---|
| 442 | lock add [edx], eax
|
---|
| 443 | }
|
---|
| 444 |
|
---|
| 445 | #else
|
---|
| 446 | *pu32 += u32;
|
---|
| 447 | #endif
|
---|
| 448 | }
|
---|
| 449 | #define KPRF_ATOMIC_ADD32(a,b) kPrfAtomicAdd32(a, b)
|
---|
| 450 | #define KPRF_ATOMIC_INC32(a) kPrfAtomicAdd32(a, 1);
|
---|
| 451 | #define KPRF_ATOMIC_DEC32(a) kPrfAtomicAdd32(a, (KU32)-1);
|
---|
| 452 |
|
---|
| 453 |
|
---|
| 454 | /**
|
---|
| 455 | * Atomically add a 64-bit integer to another.
|
---|
| 456 | * Atomically isn't quite required, just a non-corruptive manner, assuming all updates are adds.
|
---|
| 457 | */
|
---|
| 458 | static inline void kPrfAtomicAdd64(volatile KU64 *pu64, const KU64 u64)
|
---|
| 459 | {
|
---|
| 460 | #if defined(HAVE_INTRIN) && KPRF_BITS == 64
|
---|
| 461 | _InterlockedExchangeAdd64((volatile KI64 *)pu64, (const KI64)u64);
|
---|
| 462 |
|
---|
| 463 | #elif defined(__GNUC__) && KPRF_BITS == 64
|
---|
| 464 | __asm__ __volatile__("lock; addq %0, %1\n\t"
|
---|
| 465 | : "=m" (*pu64)
|
---|
| 466 | : "r" (u64));
|
---|
| 467 |
|
---|
| 468 | #elif defined(__GNUC__) && KPRF_BITS == 32
|
---|
| 469 | __asm__ __volatile__("lock; addl %0, %2\n\t"
|
---|
| 470 | "lock; adcl %1, %3\n\t"
|
---|
| 471 | : "=m" (*(volatile KU32 *)pu64),
|
---|
| 472 | "=m" (*((volatile KU32 *)pu64 + 1))
|
---|
| 473 | : "r" ((KU32)u64),
|
---|
| 474 | "r" ((KU32)(u64 >> 32)));
|
---|
| 475 |
|
---|
| 476 | #elif _MSC_VER
|
---|
| 477 | __asm
|
---|
| 478 | {
|
---|
| 479 | mov edx, [pu64]
|
---|
| 480 | mov eax, dword ptr [u64]
|
---|
| 481 | mov ecx, dword ptr [u64 + 4]
|
---|
| 482 | lock add [edx], eax
|
---|
| 483 | lock adc [edx + 4], ecx
|
---|
| 484 | }
|
---|
| 485 |
|
---|
| 486 | #else
|
---|
| 487 | *pu64 += u64;
|
---|
| 488 | #endif
|
---|
| 489 | }
|
---|
| 490 | #define KPRF_ATOMIC_ADD64(a,b) kPrfAtomicAdd64(a, b)
|
---|
| 491 | #define KPRF_ATOMIC_INC64(a) kPrfAtomicAdd64(a, 1);
|
---|
| 492 |
|
---|
| 493 |
|
---|
| 494 | /**
|
---|
| 495 | * Initializes a mutex.
|
---|
| 496 | *
|
---|
| 497 | * @returns 0 on success.
|
---|
| 498 | * @returns -1 on failure.
|
---|
| 499 | * @param pMutex The mutex to init.
|
---|
| 500 | */
|
---|
| 501 | static int kPrfMutexInit(KPRF_TYPE(P,MUTEX) pMutex)
|
---|
| 502 | {
|
---|
| 503 | #if defined(KPRF_USE_PTHREAD)
|
---|
| 504 | if (!pthread_mutex_init(pMutex, NULL));
|
---|
| 505 | return 0;
|
---|
| 506 | return -1;
|
---|
| 507 |
|
---|
| 508 | #elif defined(KPRF_OS_WINDOWS)
|
---|
| 509 | InitializeCriticalSection(pMutex);
|
---|
| 510 | return 0;
|
---|
| 511 |
|
---|
| 512 | #elif defined(KPRF_OS_OS2)
|
---|
| 513 | if (!_fmutex_create(pMutex, 0))
|
---|
| 514 | return 0;
|
---|
| 515 | return -1;
|
---|
| 516 | #endif
|
---|
| 517 | }
|
---|
| 518 |
|
---|
| 519 | /**
|
---|
| 520 | * Deletes a mutex.
|
---|
| 521 | *
|
---|
| 522 | * @param pMutex The mutex to delete.
|
---|
| 523 | */
|
---|
| 524 | static void kPrfMutexDelete(KPRF_TYPE(P,MUTEX) pMutex)
|
---|
| 525 | {
|
---|
| 526 | #if defined(KPRF_USE_PTHREAD)
|
---|
| 527 | pthread_mutex_destroy(pMutex);
|
---|
| 528 |
|
---|
| 529 | #elif defined(KPRF_OS_WINDOWS)
|
---|
| 530 | DeleteCriticalSection(pMutex);
|
---|
| 531 |
|
---|
| 532 | #elif defined(KPRF_OS_OS2)
|
---|
| 533 | _fmutex_close(pMutex);
|
---|
| 534 | #endif
|
---|
| 535 | }
|
---|
| 536 |
|
---|
| 537 | /**
|
---|
| 538 | * Locks a mutex.
|
---|
| 539 | * @param pMutex The mutex lock.
|
---|
| 540 | */
|
---|
| 541 | static inline void kPrfMutexAcquire(KPRF_TYPE(P,MUTEX) pMutex)
|
---|
| 542 | {
|
---|
| 543 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 544 | EnterCriticalSection(pMutex);
|
---|
| 545 |
|
---|
| 546 | #elif defined(KPRF_USE_PTHREAD)
|
---|
| 547 | pthread_mutex_lock(pMutex);
|
---|
| 548 |
|
---|
| 549 | #elif defined(KPRF_OS_OS2)
|
---|
| 550 | fmutex_request(pMutex);
|
---|
| 551 | #endif
|
---|
| 552 | }
|
---|
| 553 |
|
---|
| 554 |
|
---|
| 555 | /**
|
---|
| 556 | * Unlocks a mutex.
|
---|
| 557 | * @param pMutex The mutex lock.
|
---|
| 558 | */
|
---|
| 559 | static inline void kPrfMutexRelease(KPRF_TYPE(P,MUTEX) pMutex)
|
---|
| 560 | {
|
---|
| 561 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 562 | LeaveCriticalSection(pMutex);
|
---|
| 563 |
|
---|
| 564 | #elif defined(KPRF_USE_PTHREAD)
|
---|
| 565 | pthread_mutex_lock(pMutex);
|
---|
| 566 |
|
---|
| 567 | #elif defined(KPRF_OS_OS2)
|
---|
| 568 | fmutex_request(pMutex);
|
---|
| 569 | #endif
|
---|
| 570 | }
|
---|
| 571 |
|
---|
| 572 |
|
---|
| 573 | #define KPRF_THREADS_LOCK() kPrfMutexAcquire(&g_ThreadsMutex)
|
---|
| 574 | #define KPRF_THREADS_UNLOCK() kPrfMutexRelease(&g_ThreadsMutex)
|
---|
| 575 |
|
---|
| 576 | #define KPRF_MODSEGS_LOCK() kPrfMutexAcquire(&g_ModSegsMutex)
|
---|
| 577 | #define KPRF_MODSEGS_UNLOCK() kPrfMutexRelease(&g_ModSegsMutex)
|
---|
| 578 |
|
---|
| 579 |
|
---|
| 580 | /**
|
---|
| 581 | * Initializes a read-write lock.
|
---|
| 582 | *
|
---|
| 583 | * @returns 0 on success.
|
---|
| 584 | * @returns -1 on failure.
|
---|
| 585 | * @param pRWLock The read-write lock to initialize.
|
---|
| 586 | */
|
---|
| 587 | static inline int kPrfRWLockInit(KPRF_TYPE(P,RWLOCK) pRWLock)
|
---|
| 588 | {
|
---|
| 589 | #if defined(KPRF_USE_PTHREAD)
|
---|
| 590 | if (!pthread_rwlock_init(pRWLock, NULL))
|
---|
| 591 | return 0;
|
---|
| 592 | return -1;
|
---|
| 593 |
|
---|
| 594 | #elif defined(KPRF_OS_WINDOWS) || defined(KPRF_OS_OS2)
|
---|
| 595 | if (kPrfMutexInit(&pRWLock->Mutex))
|
---|
| 596 | return -1;
|
---|
| 597 | pRWLock->cReaders = 0;
|
---|
| 598 | pRWLock->cReadersWaiting = 0;
|
---|
| 599 | pRWLock->cWritersWaiting = 0;
|
---|
| 600 | pRWLock->enmState = RWLOCK_STATE_SHARED;
|
---|
| 601 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 602 | pRWLock->hevReaders = CreateEvent(NULL, TRUE, TRUE, NULL);
|
---|
| 603 | pRWLock->hevWriters = CreateEvent(NULL, FALSE, FALSE, NULL);
|
---|
| 604 | if ( pRWLock->hevReaders != INVALID_HANDLE_VALUE
|
---|
| 605 | && pRWLock->hevWriters != INVALID_HANDLE_VALUE)
|
---|
| 606 | return 0;
|
---|
| 607 | CloseHandle(pRWLock->hevReaders);
|
---|
| 608 | CloseHandle(pRWLock->hevWriters);
|
---|
| 609 |
|
---|
| 610 | # elif defined(KPRF_OS_OS2)
|
---|
| 611 | APIRET rc = DosCreateEventSem(NULL, &pRWLock->hevReaders, 0, TRUE);
|
---|
| 612 | if (!rc)
|
---|
| 613 | {
|
---|
| 614 | rc = DosCreateEventSem(NULL, &pRWLock->hevWriters, 0, TRUE);
|
---|
| 615 | if (!rc)
|
---|
| 616 | return 0;
|
---|
| 617 | pRWLock->hevWriters = NULLHANDLE;
|
---|
| 618 | DosCloseEventSem(pRWLock->hevReaders);
|
---|
| 619 | }
|
---|
| 620 | pRWLock->hevReaders = NULLHANDLE;
|
---|
| 621 | # endif
|
---|
| 622 |
|
---|
| 623 | pRWLock->enmState = RWLOCK_STATE_UNINITIALIZED;
|
---|
| 624 | kPrfMutexDelete(&pRWLock->Mutex);
|
---|
| 625 | return -1;
|
---|
| 626 | #endif
|
---|
| 627 | }
|
---|
| 628 |
|
---|
| 629 |
|
---|
| 630 | /**
|
---|
| 631 | * Deleters a read-write lock.
|
---|
| 632 | *
|
---|
| 633 | * @param pRWLock The read-write lock to delete.
|
---|
| 634 | */
|
---|
| 635 | static inline void kPrfRWLockDelete(KPRF_TYPE(P,RWLOCK) pRWLock)
|
---|
| 636 | {
|
---|
| 637 | #if defined(KPRF_USE_PTHREAD)
|
---|
| 638 | pthread_rwlock_destroy(pRWLock);
|
---|
| 639 |
|
---|
| 640 | #elif defined(KPRF_OS_WINDOWS) || defined(KPRF_OS_OS2)
|
---|
| 641 | if (pRWLock->enmState == RWLOCK_STATE_UNINITIALIZED)
|
---|
| 642 | return;
|
---|
| 643 |
|
---|
| 644 | pRWLock->enmState = RWLOCK_STATE_UNINITIALIZED;
|
---|
| 645 | kPrfMutexDelete(&pRWLock->Mutex);
|
---|
| 646 | pRWLock->cReaders = 0;
|
---|
| 647 | pRWLock->cReadersWaiting = 0;
|
---|
| 648 | pRWLock->cWritersWaiting = 0;
|
---|
| 649 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 650 | CloseHandle(pRWLock->hevReaders);
|
---|
| 651 | pRWLock->hevReaders = INVALID_HANDLE_VALUE;
|
---|
| 652 | CloseHandle(pRWLock->hevWriters);
|
---|
| 653 | pRWLock->hevWriters = INVALID_HANDLE_VALUE;
|
---|
| 654 |
|
---|
| 655 | # elif defined(KPRF_OS_OS2)
|
---|
| 656 | DosCloseEventSem(pRWLock->hevReaders);
|
---|
| 657 | pRWLock->hevReaders = NULLHANDLE;
|
---|
| 658 | DosCloseEventSem(pRWLock->hevWriters);
|
---|
| 659 | pRWLock->hevWriters = NULLHANDLE;
|
---|
| 660 | # endif
|
---|
| 661 | #endif
|
---|
| 662 | }
|
---|
| 663 |
|
---|
| 664 |
|
---|
| 665 | /**
|
---|
| 666 | * Acquires read access to the read-write lock.
|
---|
| 667 | * @param pRWLock The read-write lock.
|
---|
| 668 | */
|
---|
| 669 | static inline void kPrfRWLockAcquireRead(KPRF_TYPE(P,RWLOCK) pRWLock)
|
---|
| 670 | {
|
---|
| 671 | #if defined(KPRF_USE_PTHREAD)
|
---|
| 672 | pthread_rwlock_rdlock(pRWLock);
|
---|
| 673 |
|
---|
| 674 | #elif defined(KPRF_OS_WINDOWS) || defined(KPRF_OS_OS2)
|
---|
| 675 | if (pRWLock->enmState == RWLOCK_STATE_UNINITIALIZED)
|
---|
| 676 | return;
|
---|
| 677 |
|
---|
| 678 | kPrfMutexAcquire(&pRWLock->Mutex);
|
---|
| 679 | if (pRWLock->enmState == RWLOCK_STATE_SHARED)
|
---|
| 680 | {
|
---|
| 681 | KPRF_ATOMIC_INC32(&pRWLock->cReaders);
|
---|
| 682 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 683 | return;
|
---|
| 684 | }
|
---|
| 685 |
|
---|
| 686 | for (;;)
|
---|
| 687 | {
|
---|
| 688 | /* have to wait */
|
---|
| 689 | KPRF_ATOMIC_INC32(&pRWLock->cReadersWaiting);
|
---|
| 690 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 691 | HANDLE hev = pRWLock->hevReaders;
|
---|
| 692 | ResetEvent(hev);
|
---|
| 693 |
|
---|
| 694 | # elif defined(KPRF_OS_OS2)
|
---|
| 695 | HEV hev = pRWLock->hevReaders;
|
---|
| 696 | ULONG cIgnored;
|
---|
| 697 | DosResetEventSem(hev, &cIgnored);
|
---|
| 698 |
|
---|
| 699 | # endif
|
---|
| 700 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 701 |
|
---|
| 702 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 703 | switch (WaitForSingleObject(hev, INFINITE))
|
---|
| 704 | {
|
---|
| 705 | case WAIT_IO_COMPLETION:
|
---|
| 706 | case WAIT_TIMEOUT:
|
---|
| 707 | case WAIT_OBJECT_0:
|
---|
| 708 | break;
|
---|
| 709 | case WAIT_ABANDONED:
|
---|
| 710 | default:
|
---|
| 711 | return;
|
---|
| 712 | }
|
---|
| 713 |
|
---|
| 714 | # elif defined(KPRF_OS_OS2)
|
---|
| 715 | switch (DosWaitEventSem(hev, SEM_INDEFINITE_WAIT))
|
---|
| 716 | {
|
---|
| 717 | case NO_ERROR:
|
---|
| 718 | case ERROR_SEM_TIMEOUT:
|
---|
| 719 | case ERROR_TIMEOUT:
|
---|
| 720 | case ERROR_INTERRUPT:
|
---|
| 721 | break;
|
---|
| 722 | default:
|
---|
| 723 | return;
|
---|
| 724 | }
|
---|
| 725 | # endif
|
---|
| 726 |
|
---|
| 727 | kPrfMutexAcquire(&pRWLock->Mutex);
|
---|
| 728 | if (pRWLock->enmState == RWLOCK_STATE_SHARED)
|
---|
| 729 | {
|
---|
| 730 | KPRF_ATOMIC_INC32(&pRWLock->cReaders);
|
---|
| 731 | KPRF_ATOMIC_DEC32(&pRWLock->cReadersWaiting);
|
---|
| 732 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 733 | return;
|
---|
| 734 | }
|
---|
| 735 | }
|
---|
| 736 | #endif
|
---|
| 737 | }
|
---|
| 738 |
|
---|
| 739 |
|
---|
| 740 | /**
|
---|
| 741 | * Releases read access to the read-write lock.
|
---|
| 742 | * @param pRWLock The read-write lock.
|
---|
| 743 | */
|
---|
| 744 | static inline void kPrfRWLockReleaseRead(KPRF_TYPE(P,RWLOCK) pRWLock)
|
---|
| 745 | {
|
---|
| 746 | #if defined(KPRF_USE_PTHREAD)
|
---|
| 747 | pthread_rwlock_unlock(pRWLock);
|
---|
| 748 |
|
---|
| 749 | #elif defined(KPRF_OS_WINDOWS) || defined(KPRF_OS_OS2)
|
---|
| 750 | if (pRWLock->enmState == RWLOCK_STATE_UNINITIALIZED)
|
---|
| 751 | return;
|
---|
| 752 |
|
---|
| 753 | /*
|
---|
| 754 | * If we're still in the shared state, or if there
|
---|
| 755 | * are more readers out there, or if there are no
|
---|
| 756 | * waiting writers, all we have to do is decrement an leave.
|
---|
| 757 | *
|
---|
| 758 | * That's the most frequent, thing and should be fast.
|
---|
| 759 | */
|
---|
| 760 | kPrfMutexAcquire(&pRWLock->Mutex);
|
---|
| 761 | KPRF_ATOMIC_DEC32(&pRWLock->cReaders);
|
---|
| 762 | if ( pRWLock->enmState == RWLOCK_STATE_SHARED
|
---|
| 763 | || pRWLock->cReaders
|
---|
| 764 | || !pRWLock->cWritersWaiting)
|
---|
| 765 | {
|
---|
| 766 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 767 | return;
|
---|
| 768 | }
|
---|
| 769 |
|
---|
| 770 | /*
|
---|
| 771 | * Wake up one (or more on OS/2) waiting writers.
|
---|
| 772 | */
|
---|
| 773 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 774 | SetEvent(pRWLock->hevWriters);
|
---|
| 775 | # elif defined(KPRF_OS_OS2)
|
---|
| 776 | DosPostEvent(pRWLock->hevwriters);
|
---|
| 777 | # endif
|
---|
| 778 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 779 |
|
---|
| 780 | #endif
|
---|
| 781 | }
|
---|
| 782 |
|
---|
| 783 |
|
---|
| 784 | /**
|
---|
| 785 | * Acquires write access to the read-write lock.
|
---|
| 786 | * @param pRWLock The read-write lock.
|
---|
| 787 | */
|
---|
| 788 | static inline void kPrfRWLockAcquireWrite(KPRF_TYPE(P,RWLOCK) pRWLock)
|
---|
| 789 | {
|
---|
| 790 | #if defined(KPRF_USE_PTHREAD)
|
---|
| 791 | pthread_rwlock_wrlock(pRWLock);
|
---|
| 792 |
|
---|
| 793 | #elif defined(KPRF_OS_WINDOWS) || defined(KPRF_OS_OS2)
|
---|
| 794 | if (pRWLock->enmState == RWLOCK_STATE_UNINITIALIZED)
|
---|
| 795 | return;
|
---|
| 796 |
|
---|
| 797 | kPrfMutexAcquire(&pRWLock->Mutex);
|
---|
| 798 | if ( !pRWLock->cReaders
|
---|
| 799 | && ( pRWLock->enmState == RWLOCK_STATE_SHARED
|
---|
| 800 | || pRWLock->enmState == RWLOCK_STATE_LOCKING)
|
---|
| 801 | )
|
---|
| 802 | {
|
---|
| 803 | KPRF_RWLOCK_SETSTATE(pRWLock, RWLOCK_STATE_EXCLUSIVE);
|
---|
| 804 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 805 | return;
|
---|
| 806 | }
|
---|
| 807 |
|
---|
| 808 | /*
|
---|
| 809 | * We'll have to wait.
|
---|
| 810 | */
|
---|
| 811 | if (pRWLock->enmState == RWLOCK_STATE_SHARED)
|
---|
| 812 | KPRF_RWLOCK_SETSTATE(pRWLock, RWLOCK_STATE_LOCKING);
|
---|
| 813 | KPRF_ATOMIC_INC32(&pRWLock->cWritersWaiting);
|
---|
| 814 | for (;;)
|
---|
| 815 | {
|
---|
| 816 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 817 | HANDLE hev = pRWLock->hevWriters;
|
---|
| 818 | # elif defined(KPRF_OS_OS2)
|
---|
| 819 | HEV hev = pRWLock->hevWriters;
|
---|
| 820 | # endif
|
---|
| 821 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 822 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 823 | switch (WaitForSingleObject(hev, INFINITE))
|
---|
| 824 | {
|
---|
| 825 | case WAIT_IO_COMPLETION:
|
---|
| 826 | case WAIT_TIMEOUT:
|
---|
| 827 | case WAIT_OBJECT_0:
|
---|
| 828 | break;
|
---|
| 829 | case WAIT_ABANDONED:
|
---|
| 830 | default:
|
---|
| 831 | KPRF_ATOMIC_DEC32(&pRWLock->cWritersWaiting);
|
---|
| 832 | return;
|
---|
| 833 | }
|
---|
| 834 |
|
---|
| 835 | # elif defined(KPRF_OS_OS2)
|
---|
| 836 | switch (DosWaitEventSem(hev, SEM_INDEFINITE_WAIT))
|
---|
| 837 | {
|
---|
| 838 | case NO_ERROR:
|
---|
| 839 | case ERROR_SEM_TIMEOUT:
|
---|
| 840 | case ERROR_TIMEOUT:
|
---|
| 841 | case ERROR_INTERRUPT:
|
---|
| 842 | break;
|
---|
| 843 | default:
|
---|
| 844 | KPRF_ATOMIC_DEC32(&pRWLock->cWritersWaiting);
|
---|
| 845 | return;
|
---|
| 846 | }
|
---|
| 847 | ULONG cIgnored;
|
---|
| 848 | DosResetEventSem(hev, &cIgnored);
|
---|
| 849 | # endif
|
---|
| 850 |
|
---|
| 851 | /*
|
---|
| 852 | * Try acquire the lock.
|
---|
| 853 | */
|
---|
| 854 | kPrfMutexAcquire(&pRWLock->Mutex);
|
---|
| 855 | if ( !pRWLock->cReaders
|
---|
| 856 | && ( pRWLock->enmState == RWLOCK_STATE_SHARED
|
---|
| 857 | || pRWLock->enmState == RWLOCK_STATE_LOCKING)
|
---|
| 858 | )
|
---|
| 859 | {
|
---|
| 860 | KPRF_RWLOCK_SETSTATE(pRWLock, RWLOCK_STATE_EXCLUSIVE);
|
---|
| 861 | KPRF_ATOMIC_DEC32(&pRWLock->cWritersWaiting);
|
---|
| 862 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 863 | return;
|
---|
| 864 | }
|
---|
| 865 | }
|
---|
| 866 | #endif
|
---|
| 867 | }
|
---|
| 868 |
|
---|
| 869 |
|
---|
| 870 | /**
|
---|
| 871 | * Releases write access to the read-write lock.
|
---|
| 872 | * @param pRWLock The read-write lock.
|
---|
| 873 | */
|
---|
| 874 | static inline void kPrfRWLockReleaseWrite(KPRF_TYPE(P,RWLOCK) pRWLock)
|
---|
| 875 | {
|
---|
| 876 | #if defined(KPRF_USE_PTHREAD)
|
---|
| 877 | pthread_rwlock_unlock(pRWLock);
|
---|
| 878 |
|
---|
| 879 | #elif defined(KPRF_OS_WINDOWS) || defined(KPRF_OS_OS2)
|
---|
| 880 | if (pRWLock->enmState == RWLOCK_STATE_UNINITIALIZED)
|
---|
| 881 | return;
|
---|
| 882 |
|
---|
| 883 | /*
|
---|
| 884 | * The common thing is that there are noone waiting.
|
---|
| 885 | * But, before that usual paranoia.
|
---|
| 886 | */
|
---|
| 887 | kPrfMutexAcquire(&pRWLock->Mutex);
|
---|
| 888 | if (pRWLock->enmState != RWLOCK_STATE_EXCLUSIVE)
|
---|
| 889 | {
|
---|
| 890 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 891 | return;
|
---|
| 892 | }
|
---|
| 893 | if ( !pRWLock->cReadersWaiting
|
---|
| 894 | && !pRWLock->cWritersWaiting)
|
---|
| 895 | {
|
---|
| 896 | KPRF_RWLOCK_SETSTATE(pRWLock, RWLOCK_STATE_SHARED);
|
---|
| 897 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 898 | return;
|
---|
| 899 | }
|
---|
| 900 |
|
---|
| 901 | /*
|
---|
| 902 | * Someone is waiting, wake them up as we change the state.
|
---|
| 903 | */
|
---|
| 904 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 905 | HANDLE hev = INVALID_HANDLE_VALUE;
|
---|
| 906 | # elif defined(KPRF_OS_OS2)
|
---|
| 907 | HEV hev = NULLHANDLE;
|
---|
| 908 | # endif
|
---|
| 909 |
|
---|
| 910 | if (pRWLock->cWritersWaiting)
|
---|
| 911 | {
|
---|
| 912 | KPRF_RWLOCK_SETSTATE(pRWLock, RWLOCK_STATE_LOCKING);
|
---|
| 913 | hev = pRWLock->hevWriters;
|
---|
| 914 | }
|
---|
| 915 | else
|
---|
| 916 | {
|
---|
| 917 | KPRF_RWLOCK_SETSTATE(pRWLock, RWLOCK_STATE_SHARED);
|
---|
| 918 | hev = pRWLock->hevReaders;
|
---|
| 919 | }
|
---|
| 920 | # if defined(KPRF_OS_WINDOWS)
|
---|
| 921 | SetEvent(hev);
|
---|
| 922 | # elif defined(KPRF_OS_OS2)
|
---|
| 923 | DosPostEvent(pRWLock->hevwriters);
|
---|
| 924 | # endif
|
---|
| 925 | kPrfMutexRelease(&pRWLock->Mutex);
|
---|
| 926 |
|
---|
| 927 | #endif
|
---|
| 928 | }
|
---|
| 929 |
|
---|
| 930 | #define KPRF_FUNCS_WRITE_LOCK() kPrfRWLockAcquireWrite(&g_FunctionsRWLock)
|
---|
| 931 | #define KPRF_FUNCS_WRITE_UNLOCK() kPrfRWLockReleaseWrite(&g_FunctionsRWLock)
|
---|
| 932 | #define KPRF_FUNCS_READ_LOCK() kPrfRWLockAcquireRead(&g_FunctionsRWLock)
|
---|
| 933 | #define KPRF_FUNCS_READ_UNLOCK() kPrfRWLockReleaseRead(&g_FunctionsRWLock)
|
---|
| 934 |
|
---|
| 935 |
|
---|
| 936 |
|
---|
| 937 |
|
---|
| 938 | /**
|
---|
| 939 | * Finds the module segment which the address belongs to.
|
---|
| 940 | *
|
---|
| 941 | */
|
---|
| 942 | static int kPrfGetModSeg(KPRF_TYPE(,UPTR) uAddress, char *pszPath, KU32 cchPath, KU32 *piSegment,
|
---|
| 943 | KPRF_TYPE(P,UPTR) puBasePtr, KPRF_TYPE(P,UPTR) pcbSegmentMinusOne)
|
---|
| 944 | {
|
---|
| 945 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 946 | /*
|
---|
| 947 | * Enumerate the module handles.
|
---|
| 948 | */
|
---|
| 949 | HANDLE hProcess = GetCurrentProcess();
|
---|
| 950 | DWORD cbNeeded = 0;
|
---|
| 951 | HMODULE hModIgnored;
|
---|
| 952 | if ( !EnumProcessModules(hProcess, &hModIgnored, sizeof(hModIgnored), &cbNeeded)
|
---|
| 953 | && GetLastError() != ERROR_BUFFER_OVERFLOW) /** figure out what this actually returns */
|
---|
| 954 | cbNeeded = 256 * sizeof(HMODULE);
|
---|
| 955 |
|
---|
| 956 | cbNeeded += sizeof(HMODULE) * 32;
|
---|
| 957 | HMODULE *pahModules = (HMODULE *)alloca(cbNeeded);
|
---|
| 958 | if (EnumProcessModules(hProcess, pahModules, cbNeeded, &cbNeeded))
|
---|
| 959 | {
|
---|
| 960 | const unsigned cModules = cbNeeded / sizeof(HMODULE);
|
---|
| 961 | for (unsigned i = 0; i < cModules; i++)
|
---|
| 962 | {
|
---|
| 963 | __try
|
---|
| 964 | {
|
---|
| 965 | const KUPTR uImageBase = (KUPTR)pahModules[i];
|
---|
| 966 | union
|
---|
| 967 | {
|
---|
| 968 | KU8 *pu8;
|
---|
| 969 | PIMAGE_DOS_HEADER pDos;
|
---|
| 970 | PIMAGE_NT_HEADERS pNt;
|
---|
| 971 | PIMAGE_NT_HEADERS32 pNt32;
|
---|
| 972 | PIMAGE_NT_HEADERS64 pNt64;
|
---|
| 973 | KUPTR u;
|
---|
| 974 | } u;
|
---|
| 975 | u.u = uImageBase;
|
---|
| 976 |
|
---|
| 977 | /* reject modules higher than the address. */
|
---|
| 978 | if (uAddress < u.u)
|
---|
| 979 | continue;
|
---|
| 980 |
|
---|
| 981 | /* Skip past the MZ header */
|
---|
| 982 | if (u.pDos->e_magic == IMAGE_DOS_SIGNATURE)
|
---|
| 983 | u.pu8 += u.pDos->e_lfanew;
|
---|
| 984 |
|
---|
| 985 | /* Ignore anything which isn't an NT header. */
|
---|
| 986 | if (u.pNt->Signature != IMAGE_NT_SIGNATURE)
|
---|
| 987 | continue;
|
---|
| 988 |
|
---|
| 989 | /* Extract necessary info from the optional header (comes in 32-bit and 64-bit variations, we simplify a bit). */
|
---|
| 990 | KU32 cbImage;
|
---|
| 991 | PIMAGE_SECTION_HEADER paSHs;
|
---|
| 992 | if (u.pNt->FileHeader.SizeOfOptionalHeader == sizeof(IMAGE_OPTIONAL_HEADER32))
|
---|
| 993 | {
|
---|
| 994 | paSHs = (PIMAGE_SECTION_HEADER)(u.pNt32 + 1);
|
---|
| 995 | cbImage = u.pNt32->OptionalHeader.SizeOfImage;
|
---|
| 996 | }
|
---|
| 997 | else if (u.pNt->FileHeader.SizeOfOptionalHeader == sizeof(IMAGE_OPTIONAL_HEADER64))
|
---|
| 998 | {
|
---|
| 999 | paSHs = (PIMAGE_SECTION_HEADER)(u.pNt64 + 1);
|
---|
| 1000 | cbImage = u.pNt64->OptionalHeader.SizeOfImage;
|
---|
| 1001 | }
|
---|
| 1002 | else
|
---|
| 1003 | continue;
|
---|
| 1004 |
|
---|
| 1005 | /* Is our address within the image size */
|
---|
| 1006 | KUPTR uRVA = uAddress - (KUPTR)pahModules[i];
|
---|
| 1007 | if (uRVA >= cbImage)
|
---|
| 1008 | continue;
|
---|
| 1009 |
|
---|
| 1010 | /*
|
---|
| 1011 | * Iterate the section headers and figure which section we're in.
|
---|
| 1012 | * (segment == section + 1)
|
---|
| 1013 | */
|
---|
| 1014 | const KU32 cSHs = u.pNt->FileHeader.NumberOfSections;
|
---|
| 1015 | if (uRVA < paSHs[0].VirtualAddress)
|
---|
| 1016 | {
|
---|
| 1017 | /* the implicit header section */
|
---|
| 1018 | *puBasePtr = uImageBase;
|
---|
| 1019 | *pcbSegmentMinusOne = paSHs[0].VirtualAddress - 1;
|
---|
| 1020 | *piSegment = 0;
|
---|
| 1021 | }
|
---|
| 1022 | else
|
---|
| 1023 | {
|
---|
| 1024 | KU32 iSH = 0;
|
---|
| 1025 | for (;;)
|
---|
| 1026 | {
|
---|
| 1027 | if (iSH >= cSHs)
|
---|
| 1028 | {
|
---|
| 1029 | /* this shouldn't happen, but in case it does simply deal with it. */
|
---|
| 1030 | *puBasePtr = paSHs[iSH - 1].VirtualAddress + paSHs[iSH - 1].Misc.VirtualSize + uImageBase;
|
---|
| 1031 | *pcbSegmentMinusOne = cbImage - *puBasePtr;
|
---|
| 1032 | *piSegment = iSH + 1;
|
---|
| 1033 | break;
|
---|
| 1034 | }
|
---|
| 1035 | if (uRVA - paSHs[iSH].VirtualAddress < paSHs[iSH].Misc.VirtualSize)
|
---|
| 1036 | {
|
---|
| 1037 | *puBasePtr = paSHs[iSH].VirtualAddress + uImageBase;
|
---|
| 1038 | *pcbSegmentMinusOne = paSHs[iSH].Misc.VirtualSize;
|
---|
| 1039 | *piSegment = iSH + 1;
|
---|
| 1040 | break;
|
---|
| 1041 | }
|
---|
| 1042 | iSH++;
|
---|
| 1043 | }
|
---|
| 1044 | }
|
---|
| 1045 |
|
---|
| 1046 | /*
|
---|
| 1047 | * Finally, get the module name.
|
---|
| 1048 | * There are multiple ways, try them all before giving up.
|
---|
| 1049 | */
|
---|
| 1050 | if ( !GetModuleFileNameEx(hProcess, pahModules[i], pszPath, cchPath)
|
---|
| 1051 | && !GetModuleFileName(pahModules[i], pszPath, cchPath)
|
---|
| 1052 | && !GetMappedFileName(hProcess, (PVOID)uAddress, pszPath, cchPath)
|
---|
| 1053 | && !GetModuleBaseName(hProcess, pahModules[i], pszPath, cchPath))
|
---|
| 1054 | *pszPath = '\0';
|
---|
| 1055 | return 0;
|
---|
| 1056 | }
|
---|
| 1057 | __except (EXCEPTION_EXECUTE_HANDLER)
|
---|
| 1058 | {
|
---|
| 1059 | }
|
---|
| 1060 | }
|
---|
| 1061 | }
|
---|
| 1062 |
|
---|
| 1063 | #elif defined(KPRF_OS_OS2)
|
---|
| 1064 | /*
|
---|
| 1065 | * Just ask the loader.
|
---|
| 1066 | */
|
---|
| 1067 | ULONG offObj = 0;
|
---|
| 1068 | ULONG iObj = 0;
|
---|
| 1069 | HMODULE hmod = NULLHANDLE;
|
---|
| 1070 | APIRET rc = DosQueryModFromEIP(&hmod, &iObj, cchPath, pszPath, &offObj, uAddress);
|
---|
| 1071 | if (!rc)
|
---|
| 1072 | {
|
---|
| 1073 | *piSegment = iObj;
|
---|
| 1074 | *puBasePtr = uAddress - offObj;
|
---|
| 1075 | *pcbSegmentMinusOne = KPRF_ALIGN(offObj, 0x1000) - 1; /* minimum size */
|
---|
| 1076 |
|
---|
| 1077 | /*
|
---|
| 1078 | * Query the page attributes starting at the current page. The query will not enter
|
---|
| 1079 | * into the next object since PAG_BASE is requested.
|
---|
| 1080 | */
|
---|
| 1081 | ULONG cb = ~0UL;
|
---|
| 1082 | ULONG fFlags = ~0UL;
|
---|
| 1083 | uAddress &= ~(KUPTR)0xfff;
|
---|
| 1084 | rc = DosQueryMem((PVOID)(uAddress, &cb, &fFlags);
|
---|
| 1085 | if (!rc)
|
---|
| 1086 | {
|
---|
| 1087 | *pcbSegmentMinusOne = (offObj & ~(KUPTR)0xfff) + KPRF_ALIGN(cb, 0x1000) - 1;
|
---|
| 1088 | if ((fFlags & PAG_BASE) && cb <= 0x1000) /* don't quite remember if PAG_BASE returns one page or not */
|
---|
| 1089 | {
|
---|
| 1090 | cb = ~0UL;
|
---|
| 1091 | fFlags = ~0UL;
|
---|
| 1092 | rc = DosQueryMem((PVOID)(uAddress + 0x1000), &cb, &fFlags);
|
---|
| 1093 | if (!rc & !(fFlags & (PAG_BASE | PAG_FREE)))
|
---|
| 1094 | *pcbSegmentMinusOne += KPRF_ALIGN(cb, 0x1000);
|
---|
| 1095 | }
|
---|
| 1096 | }
|
---|
| 1097 | return 0;
|
---|
| 1098 | }
|
---|
| 1099 |
|
---|
| 1100 | #endif
|
---|
| 1101 | /* The common fallback */
|
---|
| 1102 | *pszPath = '\0';
|
---|
| 1103 | *piSegment = 0;
|
---|
| 1104 | *puBasePtr = 0;
|
---|
| 1105 | *pcbSegmentMinusOne = ~(KPRF_TYPE(,UPTR))0;
|
---|
| 1106 | return -1;
|
---|
| 1107 | }
|
---|
| 1108 | #define KPRF_GET_MODSEG(uAddress, pszPath, cchPath, piSegment, puBasePtr, pcbSegmentMinusOne) \
|
---|
| 1109 | kPrfGetModSeg(uAddress, pszPath, cchPath, piSegment, puBasePtr, pcbSegmentMinusOne)
|
---|
| 1110 |
|
---|
| 1111 |
|
---|
| 1112 |
|
---|
| 1113 |
|
---|
| 1114 | /*
|
---|
| 1115 | * Instantiate the implementation
|
---|
| 1116 | */
|
---|
| 1117 | #include "prfcorepre.cpp.h"
|
---|
| 1118 |
|
---|
| 1119 | #include "prfcoremodseg.cpp.h"
|
---|
| 1120 | #include "prfcorefunction.cpp.h"
|
---|
| 1121 | #include "prfcore.cpp.h"
|
---|
| 1122 | #include "prfcoreinit.cpp.h"
|
---|
| 1123 | #include "prfcoreterm.cpp.h"
|
---|
| 1124 |
|
---|
| 1125 | #include "prfcorepost.cpp.h"
|
---|
| 1126 |
|
---|
| 1127 |
|
---|
| 1128 |
|
---|
| 1129 |
|
---|
| 1130 |
|
---|
| 1131 | /**
|
---|
| 1132 | * Registers an unknown thread.
|
---|
| 1133 | *
|
---|
| 1134 | * @returns Pointer to the registered thread.
|
---|
| 1135 | */
|
---|
| 1136 | static KPRF_TYPE(P,THREAD) kPrfGetThreadAutoReg(void)
|
---|
| 1137 | {
|
---|
| 1138 | KUPTR uStackBasePtr;
|
---|
| 1139 |
|
---|
| 1140 | #if 0
|
---|
| 1141 | /** @todo I'm sure Win32 has a way of obtaining the top and bottom of the stack, OS/2 did...
|
---|
| 1142 | * Some limit stuff in posix / ansi also comes to mind... */
|
---|
| 1143 |
|
---|
| 1144 | #elif defined(KPRF_OS_OS2)
|
---|
| 1145 | PTIB pTib;
|
---|
| 1146 | PPIB pPib;
|
---|
| 1147 | DosGetInfoBlocks(&pTib, &pPib); /* never fails except if you give it bad input, thus 'Get' not 'Query'. */
|
---|
| 1148 | /* I never recall which of these is the right one... */
|
---|
| 1149 | uStackBasePtr = (KUPTR)pTib->tib_pstack < (KUPTR)pTib->tib_pstack_limit
|
---|
| 1150 | ? (KUPTR)pTib->tib_pstack
|
---|
| 1151 | : (KUPTR)pTib->tib_pstack_limit;
|
---|
| 1152 |
|
---|
| 1153 | #else
|
---|
| 1154 | /* the default is top of the current stack page (assuming a page to be 4KB) */
|
---|
| 1155 | uStackBasePtr = (KUPTR)&uStackBasePtr;
|
---|
| 1156 | uStackBasePtr = (uStackBasePtr + 0xfff) & ~(KUPTR)0xfff;
|
---|
| 1157 | #endif
|
---|
| 1158 |
|
---|
| 1159 | return KPRF_NAME(RegisterThread)(uStackBasePtr, "");
|
---|
| 1160 | }
|
---|
| 1161 |
|
---|
| 1162 |
|
---|
| 1163 | /**
|
---|
| 1164 | * Get a env.var. variable.
|
---|
| 1165 | *
|
---|
| 1166 | * @returns pszValue.
|
---|
| 1167 | * @param pszVar The variable name.
|
---|
| 1168 | * @param pszValue Where to store the value.
|
---|
| 1169 | * @param cchValue The size of the value buffer.
|
---|
| 1170 | * @param pszDefault The default value.
|
---|
| 1171 | */
|
---|
| 1172 | static char *kPrfGetEnvString(const char *pszVar, char *pszValue, KU32 cchValue, const char *pszDefault)
|
---|
| 1173 | {
|
---|
| 1174 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1175 | if (GetEnvironmentVariable(pszVar, pszValue, cchValue))
|
---|
| 1176 | return pszValue;
|
---|
| 1177 |
|
---|
| 1178 | #elif defined(KPRF_OS_OS2)
|
---|
| 1179 | PSZ pszValue;
|
---|
| 1180 | if ( !DosScanEnv((PCSZ)pszVar, &pszValue)
|
---|
| 1181 | && !*pszValue)
|
---|
| 1182 | pszDefault = pszValue;
|
---|
| 1183 |
|
---|
| 1184 | #else
|
---|
| 1185 | const char *pszTmp = getenv(pszVar);
|
---|
| 1186 | if (pszTmp)
|
---|
| 1187 | pszDefault = pszTmp;
|
---|
| 1188 |
|
---|
| 1189 | #endif
|
---|
| 1190 |
|
---|
| 1191 | /*
|
---|
| 1192 | * Copy the result into the buffer.
|
---|
| 1193 | */
|
---|
| 1194 | char *psz = pszValue;
|
---|
| 1195 | while (*pszDefault && cchValue-- > 1)
|
---|
| 1196 | *psz++ = *pszDefault++;
|
---|
| 1197 | *psz = '\0';
|
---|
| 1198 |
|
---|
| 1199 | return pszValue;
|
---|
| 1200 | }
|
---|
| 1201 |
|
---|
| 1202 |
|
---|
| 1203 | /**
|
---|
| 1204 | * The the value of an env.var.
|
---|
| 1205 | *
|
---|
| 1206 | * @returns The value of the env.var.
|
---|
| 1207 | * @returns The default if the value was not found.
|
---|
| 1208 | * @param pszVar The variable name.
|
---|
| 1209 | * @param uDefault The default value.
|
---|
| 1210 | */
|
---|
| 1211 | static KU32 kPrfGetEnvValue(const char *pszVar, KU32 uDefault)
|
---|
| 1212 | {
|
---|
| 1213 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1214 | char szBuf[128];
|
---|
| 1215 | const char *pszValue = szBuf;
|
---|
| 1216 | if (!GetEnvironmentVariable(pszVar, szBuf, sizeof(szBuf)))
|
---|
| 1217 | pszValue = NULL;
|
---|
| 1218 |
|
---|
| 1219 | #elif defined(KPRF_OS_OS2)
|
---|
| 1220 | PSZ pszValue;
|
---|
| 1221 | if (DosScanEnv((PCSZ)pszVar, &pszValue))
|
---|
| 1222 | pszValue = NULL;
|
---|
| 1223 |
|
---|
| 1224 | #else
|
---|
| 1225 | const char *pszValue = getenv(pszVar);
|
---|
| 1226 |
|
---|
| 1227 | #endif
|
---|
| 1228 |
|
---|
| 1229 | /*
|
---|
| 1230 | * Discard the obvious stuff.
|
---|
| 1231 | */
|
---|
| 1232 | if (!pszValue)
|
---|
| 1233 | return uDefault;
|
---|
| 1234 | while (*pszValue == ' ' || *pszValue == '\t')
|
---|
| 1235 | pszValue++;
|
---|
| 1236 | if (!*pszValue)
|
---|
| 1237 | return uDefault;
|
---|
| 1238 |
|
---|
| 1239 | /*
|
---|
| 1240 | * Interpret the value.
|
---|
| 1241 | */
|
---|
| 1242 | unsigned uBase = 10;
|
---|
| 1243 | KU32 uValue = 0;
|
---|
| 1244 | const char *psz = pszValue;
|
---|
| 1245 |
|
---|
| 1246 | /* prefix - only hex */
|
---|
| 1247 | if (*psz == '0' && (psz[1] == 'x' || psz[1] == 'X'))
|
---|
| 1248 | {
|
---|
| 1249 | uBase = 16;
|
---|
| 1250 | psz += 2;
|
---|
| 1251 | }
|
---|
| 1252 |
|
---|
| 1253 | /* read the value */
|
---|
| 1254 | while (*psz)
|
---|
| 1255 | {
|
---|
| 1256 | unsigned char ch = (unsigned char)*psz;
|
---|
| 1257 | if (ch >= '0' && ch <= '9')
|
---|
| 1258 | ch -= '0';
|
---|
| 1259 | else if ( uBase > 10
|
---|
| 1260 | && ch >= 'a' && ch <= 'f')
|
---|
| 1261 | ch -= 'a' + 10;
|
---|
| 1262 | else if ( uBase > 10
|
---|
| 1263 | && ch >= 'a' && ch <= 'F')
|
---|
| 1264 | ch -= 'a' + 10;
|
---|
| 1265 | else
|
---|
| 1266 | break;
|
---|
| 1267 | uValue *= uBase;
|
---|
| 1268 | uValue += ch;
|
---|
| 1269 | psz++;
|
---|
| 1270 | }
|
---|
| 1271 |
|
---|
| 1272 | /* postfixes */
|
---|
| 1273 | switch (*psz)
|
---|
| 1274 | {
|
---|
| 1275 | case 'm':
|
---|
| 1276 | case 'M':
|
---|
| 1277 | uValue *= 1024*1024;
|
---|
| 1278 | break;
|
---|
| 1279 |
|
---|
| 1280 | case 'k':
|
---|
| 1281 | case 'K':
|
---|
| 1282 | uValue *= 1024;
|
---|
| 1283 | break;
|
---|
| 1284 | }
|
---|
| 1285 |
|
---|
| 1286 | /*
|
---|
| 1287 | * If the value is still 0, we return the default.
|
---|
| 1288 | */
|
---|
| 1289 | return uValue ? uValue : uDefault;
|
---|
| 1290 | }
|
---|
| 1291 |
|
---|
| 1292 |
|
---|
| 1293 | /**
|
---|
| 1294 | * Allocates memory.
|
---|
| 1295 | *
|
---|
| 1296 | * @returns Pointer to the allocated memory.
|
---|
| 1297 | * @returns NULL on failure.
|
---|
| 1298 | * @param cb The amount of memory (in bytes) to allocate.
|
---|
| 1299 | */
|
---|
| 1300 | static void *kPrfAllocMem(KU32 cb)
|
---|
| 1301 | {
|
---|
| 1302 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1303 | void *pv = VirtualAlloc(NULL, cb, MEM_COMMIT, PAGE_EXECUTE_READWRITE);
|
---|
| 1304 |
|
---|
| 1305 | #elif defined(KPRF_USE_MMAN)
|
---|
| 1306 | void *pv = mmap(NULL, cb, PROT_READ | PROT_WRITE | PROT_EXEC, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
|
---|
| 1307 |
|
---|
| 1308 | #elif defined(KPRF_OS_OS2)
|
---|
| 1309 | void *pv;
|
---|
| 1310 | # ifdef INCL_DOSEXAPIS
|
---|
| 1311 | if (DosAllocMemEx(&pv, cb, PAG_READ | PAG_WRITE | PAG_EXECUTE | PAG_COMMIT | OBJ_FORK))s
|
---|
| 1312 | # else
|
---|
| 1313 | if (DosAllocMem(&pv, cb, PAG_READ | PAG_WRITE | PAG_EXECUTE | PAG_COMMIT))
|
---|
| 1314 | # endif
|
---|
| 1315 | pvBuf = NULL;
|
---|
| 1316 |
|
---|
| 1317 | #else
|
---|
| 1318 | # error not implemented
|
---|
| 1319 | #endif
|
---|
| 1320 | return pv;
|
---|
| 1321 | }
|
---|
| 1322 |
|
---|
| 1323 |
|
---|
| 1324 | /**
|
---|
| 1325 | * Frees memory.
|
---|
| 1326 | *
|
---|
| 1327 | * @param pv The memory to free.
|
---|
| 1328 | */
|
---|
| 1329 | static void kPrfFreeMem(void *pv)
|
---|
| 1330 | {
|
---|
| 1331 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1332 | VirtualFree(pv, 0, MEM_RELEASE);
|
---|
| 1333 |
|
---|
| 1334 | #elif defined(KPRF_USE_MMAN)
|
---|
| 1335 | munmap(pv, 0); /** @todo check if 0 is allowed here.. */
|
---|
| 1336 |
|
---|
| 1337 | #elif defined(KPRF_OS_OS2)
|
---|
| 1338 | # ifdef INCL_DOSEXAPIS
|
---|
| 1339 | DosFreeMemEx(&pv);
|
---|
| 1340 | # else
|
---|
| 1341 | DosFreeMem(&pv);
|
---|
| 1342 | # endif
|
---|
| 1343 |
|
---|
| 1344 | #else
|
---|
| 1345 | # error not implemented
|
---|
| 1346 | #endif
|
---|
| 1347 | }
|
---|
| 1348 |
|
---|
| 1349 |
|
---|
| 1350 | /**
|
---|
| 1351 | * Writes a data buffer to a new file.
|
---|
| 1352 | *
|
---|
| 1353 | * Any existing file will be overwritten.
|
---|
| 1354 | *
|
---|
| 1355 | *
|
---|
| 1356 | * @returns 0 on success.
|
---|
| 1357 | * @returns -1 on failure.
|
---|
| 1358 | *
|
---|
| 1359 | * @param pszName The name of the file.
|
---|
| 1360 | * @param pvData The data to write.
|
---|
| 1361 | * @param cbData The amount of data to write.
|
---|
| 1362 | */
|
---|
| 1363 | static int kPrfWriteFile(const char *pszName, const void *pvData, KU32 cbData)
|
---|
| 1364 | {
|
---|
| 1365 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1366 | int rc = -1;
|
---|
| 1367 | HANDLE hFile = CreateFile(pszName,GENERIC_WRITE, FILE_SHARE_READ, NULL,
|
---|
| 1368 | CREATE_ALWAYS, FILE_ATTRIBUTE_NORMAL, INVALID_HANDLE_VALUE);
|
---|
| 1369 | if (hFile != INVALID_HANDLE_VALUE)
|
---|
| 1370 | {
|
---|
| 1371 | DWORD dwWritten;
|
---|
| 1372 | if ( WriteFile(hFile, pvData, cbData, &dwWritten, NULL)
|
---|
| 1373 | && dwWritten == cbData)
|
---|
| 1374 | rc = 0;
|
---|
| 1375 | CloseHandle(hFile);
|
---|
| 1376 | }
|
---|
| 1377 | return rc;
|
---|
| 1378 |
|
---|
| 1379 | #elif defined(KPRF_OS_OS2)
|
---|
| 1380 | HFILE hFile;
|
---|
| 1381 | ULONG ulAction = 0;
|
---|
| 1382 | APIRET rc = DosOpen(pszName, &hFile, &ulAction, cbData, FILE_NORMAL,
|
---|
| 1383 | OPEN_ACTION_REPLACE_IF_EXISTS | OPEN_ACTION_CREATE_IF_NEW,
|
---|
| 1384 | OPEN_ACCESS_WRITEONLY | OPEN_SHARE_DENYWRITE | OPEN_FLAGS_NOINHERIT | OPEN_FLAGS_SEQUENTIAL,
|
---|
| 1385 | NULL);
|
---|
| 1386 | if (!rc)
|
---|
| 1387 | {
|
---|
| 1388 | ULONG cbWritten;
|
---|
| 1389 | rc = DosWrite(hFile, pvData, cbData, &cbWritten);
|
---|
| 1390 | if (!rc && cbWritten != cbData)
|
---|
| 1391 | rc = -1;
|
---|
| 1392 | DosClose(hFile);
|
---|
| 1393 | }
|
---|
| 1394 | return rc ? -1 : 0;
|
---|
| 1395 |
|
---|
| 1396 | #else
|
---|
| 1397 | int rc = -1;
|
---|
| 1398 | int fd = open(pszName, O_WRONLY | O_CREAT | O_BINARY | O_TRUNC, 0666);
|
---|
| 1399 | if (fd >= 0)
|
---|
| 1400 | {
|
---|
| 1401 | if (write(fd, pvData, cbData) == cbData)
|
---|
| 1402 | rc = 0;
|
---|
| 1403 | close(fd);
|
---|
| 1404 | }
|
---|
| 1405 | return rc;
|
---|
| 1406 |
|
---|
| 1407 | #endif
|
---|
| 1408 | }
|
---|
| 1409 |
|
---|
| 1410 |
|
---|
| 1411 |
|
---|
| 1412 | /**
|
---|
| 1413 | * Initializes and start the profiling.
|
---|
| 1414 | *
|
---|
| 1415 | * This should typically be called from some kind of module init
|
---|
| 1416 | * function, so we can start profiling upon/before entering main().
|
---|
| 1417 | *
|
---|
| 1418 | * @returns 0 on success
|
---|
| 1419 | * @returns -1 on failure.
|
---|
| 1420 | *
|
---|
| 1421 | */
|
---|
| 1422 | int kPrfInitialize(void)
|
---|
| 1423 | {
|
---|
| 1424 | /*
|
---|
| 1425 | * Only initialize once.
|
---|
| 1426 | */
|
---|
| 1427 | if (KPRF_GET_HDR())
|
---|
| 1428 | return 0;
|
---|
| 1429 |
|
---|
| 1430 | /*
|
---|
| 1431 | * Initial suggestions.
|
---|
| 1432 | */
|
---|
| 1433 | KU32 cbModSegs = kPrfGetEnvValue("KPRF2_CBMODSEGS", 128*1024);
|
---|
| 1434 | KU32 cFunctions = kPrfGetEnvValue("KPRF2_CFUNCTIONS", 8192);
|
---|
| 1435 | KU32 cThreads = kPrfGetEnvValue("KPRF2_CTHREADS", 256);
|
---|
| 1436 | KU32 cStacks = kPrfGetEnvValue("KPRF2_CSTACKS", 48);
|
---|
| 1437 | KU32 cFrames = kPrfGetEnvValue("KPRF2_CFRAMES", 448);
|
---|
| 1438 | KU32 fAffinity = kPrfGetEnvValue("KPRF2_AFFINITY", 0);
|
---|
| 1439 |
|
---|
| 1440 | KU32 cb = KPRF_NAME(CalcSize)(cFunctions, cbModSegs, cThreads, cStacks, cFrames);
|
---|
| 1441 |
|
---|
| 1442 | /*
|
---|
| 1443 | * Allocate and initialize the data set.
|
---|
| 1444 | */
|
---|
| 1445 | void *pvBuf = kPrfAllocMem(cb);
|
---|
| 1446 | if (!pvBuf)
|
---|
| 1447 | return -1;
|
---|
| 1448 |
|
---|
| 1449 | KPRF_TYPE(P,HDR) pHdr = KPRF_NAME(Init)(pvBuf, cb, cFunctions, cbModSegs, cThreads, cStacks, cFrames);
|
---|
| 1450 | if (pHdr)
|
---|
| 1451 | {
|
---|
| 1452 | /*
|
---|
| 1453 | * Initialize semaphores.
|
---|
| 1454 | */
|
---|
| 1455 | if (!kPrfMutexInit(&g_ThreadsMutex))
|
---|
| 1456 | {
|
---|
| 1457 | if (!kPrfMutexInit(&g_ModSegsMutex))
|
---|
| 1458 | {
|
---|
| 1459 | if (!kPrfRWLockInit(&g_FunctionsRWLock))
|
---|
| 1460 | {
|
---|
| 1461 | /*
|
---|
| 1462 | * Allocate the TLS entry.
|
---|
| 1463 | */
|
---|
| 1464 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1465 | g_dwThreadTLS = TlsAlloc();
|
---|
| 1466 | if (g_dwThreadTLS != TLS_OUT_OF_INDEXES)
|
---|
| 1467 |
|
---|
| 1468 | #elif defined(KPRF_USE_PTHREAD)
|
---|
| 1469 | int rc = pthread_key_create(&g_ThreadKey, kPrfPThreadKeyDtor);
|
---|
| 1470 | if (!rc)
|
---|
| 1471 |
|
---|
| 1472 | #elif defined(KPRF_OS_OS2)
|
---|
| 1473 | int rc = DosAllocThreadLocalMemory(sizeof(void *), (PULONG*)&g_ppThread); /** @todo check if this is a count or a size. */
|
---|
| 1474 | if (!rc)
|
---|
| 1475 |
|
---|
| 1476 | #endif
|
---|
| 1477 | {
|
---|
| 1478 | /*
|
---|
| 1479 | * Apply the affinity mask, if specified.
|
---|
| 1480 | */
|
---|
| 1481 | if (fAffinity)
|
---|
| 1482 | {
|
---|
| 1483 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1484 | SetProcessAffinityMask(GetCurrentProcess(), fAffinity);
|
---|
| 1485 | #endif
|
---|
| 1486 | }
|
---|
| 1487 |
|
---|
| 1488 | g_pHdr = pHdr;
|
---|
| 1489 | g_fEnabled = true;
|
---|
| 1490 | return 0;
|
---|
| 1491 | }
|
---|
| 1492 | kPrfRWLockDelete(&g_FunctionsRWLock);
|
---|
| 1493 | }
|
---|
| 1494 | kPrfMutexDelete(&g_ModSegsMutex);
|
---|
| 1495 | }
|
---|
| 1496 | kPrfMutexDelete(&g_ThreadsMutex);
|
---|
| 1497 | }
|
---|
| 1498 | }
|
---|
| 1499 | kPrfFreeMem(pvBuf);
|
---|
| 1500 | return -1;
|
---|
| 1501 | }
|
---|
| 1502 |
|
---|
| 1503 |
|
---|
| 1504 | /**
|
---|
| 1505 | * Stops, dumps, and terminates the profiling.
|
---|
| 1506 | *
|
---|
| 1507 | * This should typically be called from some kind of module destruction
|
---|
| 1508 | * function, so we can profile parts of the termination sequence too.
|
---|
| 1509 | *
|
---|
| 1510 | * @returns 0 on success
|
---|
| 1511 | * @returns -1 on failure.
|
---|
| 1512 | *
|
---|
| 1513 | */
|
---|
| 1514 | int kPrfTerminate(void)
|
---|
| 1515 | {
|
---|
| 1516 | /*
|
---|
| 1517 | * Stop the profiling.
|
---|
| 1518 | * As a safety precaution, sleep a little bit to allow threads
|
---|
| 1519 | * still at large inside profiler code some time to get out.
|
---|
| 1520 | */
|
---|
| 1521 | g_fEnabled = false;
|
---|
| 1522 | KPRF_TYPE(P,HDR) pHdr = g_pHdr;
|
---|
| 1523 | g_pHdr = NULL;
|
---|
| 1524 | if (!pHdr)
|
---|
| 1525 | return -1;
|
---|
| 1526 |
|
---|
| 1527 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1528 | Sleep(10);
|
---|
| 1529 | #elif defined(KPRF_OS_OS2)
|
---|
| 1530 | DosSleep(10);
|
---|
| 1531 | #else
|
---|
| 1532 | usleep(10000);
|
---|
| 1533 | #endif
|
---|
| 1534 |
|
---|
| 1535 | /*
|
---|
| 1536 | * Unwind all active threads and so forth.
|
---|
| 1537 | */
|
---|
| 1538 | KPRF_NAME(TerminateAll)(pHdr);
|
---|
| 1539 |
|
---|
| 1540 | /*
|
---|
| 1541 | * Use the stack space to fill in process details.
|
---|
| 1542 | */
|
---|
| 1543 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1544 | /* all is one single string */
|
---|
| 1545 | const char *pszCommandLine = GetCommandLine();
|
---|
| 1546 | if (pszCommandLine)
|
---|
| 1547 | KPRF_NAME(SetCommandLine)(pHdr, 1, &pszCommandLine);
|
---|
| 1548 |
|
---|
| 1549 | #elif defined(KPRF_OS_OS2) || defined(KPRF_OS_OS2)
|
---|
| 1550 | PTIB pTib;
|
---|
| 1551 | PPIB pPib;
|
---|
| 1552 | DosGetInfoBlocks(&pTib, &pPib);
|
---|
| 1553 | if (pPib->pib_pchcmd)
|
---|
| 1554 | {
|
---|
| 1555 | /* Tradition say that the commandline is made up of two zero terminate strings
|
---|
| 1556 | * - first the executable name, then the arguments. Similar to what unix does,
|
---|
| 1557 | * only completely mocked up because of the CMD.EXE tradition.
|
---|
| 1558 | */
|
---|
| 1559 | const char *apszArgs[2];
|
---|
| 1560 | apszArgs[0] = pPib->pib_pchcmd;
|
---|
| 1561 | apszArgs[1] = pPib->pib_pchcmd;
|
---|
| 1562 | while (apszArgs[1][0])
|
---|
| 1563 | apszArgs[1]++;
|
---|
| 1564 | apszArgs[1]++;
|
---|
| 1565 | KPRF_NAME(SetCommandLine)(pHdr, 2, apszArgs);
|
---|
| 1566 | }
|
---|
| 1567 |
|
---|
| 1568 | #else
|
---|
| 1569 | /* linux can read /proc/self/something I guess. Don't know about the rest... */
|
---|
| 1570 |
|
---|
| 1571 | #endif
|
---|
| 1572 |
|
---|
| 1573 | /*
|
---|
| 1574 | * Write the file to disk.
|
---|
| 1575 | */
|
---|
| 1576 | char szName[260 + 16];
|
---|
| 1577 | kPrfGetEnvString("KPRF2_FILE", szName, sizeof(szName) - 16, "kPrf2-");
|
---|
| 1578 |
|
---|
| 1579 | /* append the process id */
|
---|
| 1580 | KUPTR pid = kPrfGetProcessId();
|
---|
| 1581 | char *psz = szName;
|
---|
| 1582 | while (*psz)
|
---|
| 1583 | psz++;
|
---|
| 1584 |
|
---|
| 1585 | static char s_szDigits[0x11] = "0123456789abcdef";
|
---|
| 1586 | KU32 uShift = KPRF_BITS - 4;
|
---|
| 1587 | while ( uShift > 0
|
---|
| 1588 | && !(pid & (0xf << uShift)))
|
---|
| 1589 | uShift -= 4;
|
---|
| 1590 | *psz++ = s_szDigits[(pid >> uShift) & 0xf];
|
---|
| 1591 | while (uShift > 0)
|
---|
| 1592 | {
|
---|
| 1593 | uShift -= 4;
|
---|
| 1594 | *psz++ = s_szDigits[(pid >> uShift) & 0xf];
|
---|
| 1595 | }
|
---|
| 1596 |
|
---|
| 1597 | /* .kPrf2 */
|
---|
| 1598 | *psz++ = '.';
|
---|
| 1599 | *psz++ = 'k';
|
---|
| 1600 | *psz++ = 'P';
|
---|
| 1601 | *psz++ = 'r';
|
---|
| 1602 | *psz++ = 'f';
|
---|
| 1603 | *psz++ = '2';
|
---|
| 1604 | *psz++ = '\0';
|
---|
| 1605 |
|
---|
| 1606 | /* write the file. */
|
---|
| 1607 | int rc = kPrfWriteFile(szName, pHdr, pHdr->cb);
|
---|
| 1608 |
|
---|
| 1609 | /*
|
---|
| 1610 | * Free resources.
|
---|
| 1611 | */
|
---|
| 1612 | kPrfFreeMem(pHdr);
|
---|
| 1613 | #if defined(KPRF_OS_WINDOWS)
|
---|
| 1614 | TlsFree(g_dwThreadTLS);
|
---|
| 1615 | g_dwThreadTLS = TLS_OUT_OF_INDEXES;
|
---|
| 1616 |
|
---|
| 1617 | #elif defined(KPRF_USE_PTHREAD)
|
---|
| 1618 | pthread_key_delete(g_ThreadKey);
|
---|
| 1619 | g_ThreadKey = (pthread_key_t)-1;
|
---|
| 1620 |
|
---|
| 1621 | #elif defined(KPRF_OS_OS2)
|
---|
| 1622 | DosFreeThreadLocalMemory((PULONG)g_ppThread);
|
---|
| 1623 | g_ppThread = NULL;
|
---|
| 1624 |
|
---|
| 1625 | #else
|
---|
| 1626 | # error "port me!"
|
---|
| 1627 | #endif
|
---|
| 1628 |
|
---|
| 1629 | kPrfMutexDelete(&g_ThreadsMutex);
|
---|
| 1630 | kPrfMutexDelete(&g_ModSegsMutex);
|
---|
| 1631 | kPrfRWLockDelete(&g_FunctionsRWLock);
|
---|
| 1632 |
|
---|
| 1633 | return rc;
|
---|
| 1634 | }
|
---|
| 1635 |
|
---|
| 1636 |
|
---|
| 1637 | /**
|
---|
| 1638 | * Terminate the current thread.
|
---|
| 1639 | */
|
---|
| 1640 | void kPrfTerminateThread(void)
|
---|
| 1641 | {
|
---|
| 1642 | KPRF_NAME(DeregisterThread)();
|
---|
| 1643 | }
|
---|
| 1644 |
|
---|
| 1645 |
|
---|
| 1646 | #ifdef KPRF_USE_PTHREAD
|
---|
| 1647 | /**
|
---|
| 1648 | * TLS destructor.
|
---|
| 1649 | */
|
---|
| 1650 | static void kPrfPThreadKeyDtor(void *pvThread)
|
---|
| 1651 | {
|
---|
| 1652 | KPRF_TYPE(P,HDR) pHdr = KPRF_GET_HDR();
|
---|
| 1653 | if (pHdr)
|
---|
| 1654 | {
|
---|
| 1655 | KPRF_TYPE(P,THREAD) pThread = (KPRF_TYPE(P,THREAD))pvThread;
|
---|
| 1656 | pthread_setspecific(g_ThreadKey, pvThread);
|
---|
| 1657 | KPRF_NAME(TerminateThread)(pHdr, pThread, KPRF_NOW());
|
---|
| 1658 | pthread_setspecific(g_ThreadKey, NULL);
|
---|
| 1659 | }
|
---|
| 1660 | }
|
---|
| 1661 | #endif
|
---|
| 1662 |
|
---|