* Like standards, there are a lot of atomic ops to choose from!
*/
-#if !defined(__ppc__) && !defined(__i386__) && !defined(__x86_64__)
-/* Implemented in assembly for ppc and i386 and x86_64 */
-#undef OSAddAtomic
-SInt32
-OSAddAtomic(SInt32 amount, volatile SInt32 * value)
-{
- SInt32 oldValue;
- SInt32 newValue;
-
- do {
- oldValue = *value;
- newValue = oldValue + amount;
- } while (!OSCompareAndSwap((UInt32)oldValue,
- (UInt32)newValue,
- (volatile UInt32 *) value));
- return oldValue;
-}
-
-long
-OSAddAtomicLong(long theAmount, volatile long *address)
-{
-#if __LP64__
-#error Unimplemented
+#if defined(__i386__) || defined(__x86_64__)
+/* Implemented in assembly for i386 and x86_64 */
#else
- return (long)OSAddAtomic((SInt32)theAmount, address);
+#error Unsupported arch
#endif
-}
-
-/* Implemented as an assembly alias for i386 and linker alias for ppc */
-#undef OSCompareAndSwapPtr
-Boolean OSCompareAndSwapPtr(void *oldValue, void *newValue,
- void * volatile *address)
-{
-#if __LP64__
- return OSCompareAndSwap64((UInt64)oldValue, (UInt64)newValue,
- (volatile UInt64 *)address);
-#else
- return OSCompareAndSwap((UInt32)oldValue, (UInt32)newValue,
- (volatile UInt32 *)address);
-#endif
-}
-#endif
-
-#ifndef __ppc__
-/* Implemented as assembly for ppc */
#undef OSIncrementAtomic
SInt32 OSIncrementAtomic(volatile SInt32 * value)
{
return OSAddAtomic(-1, value);
}
-#endif /* !__ppc__ */
static UInt32 OSBitwiseAtomic(UInt32 and_mask, UInt32 or_mask, UInt32 xor_mask, volatile UInt32 * value)
{
return OSBitwiseAtomic((UInt32) -1, 0, mask, value);
}
+#if defined(__i386__) || defined(__x86_64__)
static Boolean OSCompareAndSwap8(UInt8 oldValue8, UInt8 newValue8, volatile UInt8 * value8)
{
UInt32 mask = 0x000000ff;
return OSCompareAndSwap(oldValue, newValue, value32);
}
+#endif
static Boolean OSTestAndSetClear(UInt32 bit, Boolean wantSet, volatile UInt8 * startAddress)
{
return OSAddAtomic8(-1, value);
}
+#if defined(__i386__) || defined(__x86_64__)
SInt8 OSAddAtomic8(SInt32 amount, volatile SInt8 * value)
{
SInt8 oldValue;
return oldValue;
}
+#endif
static UInt8 OSBitwiseAtomic8(UInt32 and_mask, UInt32 or_mask, UInt32 xor_mask, volatile UInt8 * value)
{
return OSBitwiseAtomic8((UInt32) -1, 0, mask, value);
}
+#if defined(__i386__) || defined(__x86_64__)
static Boolean OSCompareAndSwap16(UInt16 oldValue16, UInt16 newValue16, volatile UInt16 * value16)
{
UInt32 mask = 0x0000ffff;
return OSCompareAndSwap(oldValue, newValue, value32);
}
+#endif
SInt16 OSIncrementAtomic16(volatile SInt16 * value)
{
return OSAddAtomic16(-1, value);
}
+#if defined(__i386__) || defined(__x86_64__)
SInt16 OSAddAtomic16(SInt32 amount, volatile SInt16 * value)
{
SInt16 oldValue;
return oldValue;
}
+#endif
static UInt16 OSBitwiseAtomic16(UInt32 and_mask, UInt32 or_mask, UInt32 xor_mask, volatile UInt16 * value)
{