github.com/peggyl/go@v0.0.0-20151008231540-ae315999c2d5/src/runtime/atomic_arm.go (about)

     1  // Copyright 2009 The Go Authors. All rights reserved.
     2  // Use of this source code is governed by a BSD-style
     3  // license that can be found in the LICENSE file.
     4  
     5  package runtime
     6  
     7  import "unsafe"
     8  
     9  var locktab [57]struct {
    10  	l   mutex
    11  	pad [_CacheLineSize - unsafe.Sizeof(mutex{})]byte
    12  }
    13  
    14  func addrLock(addr *uint64) *mutex {
    15  	return &locktab[(uintptr(unsafe.Pointer(addr))>>3)%uintptr(len(locktab))].l
    16  }
    17  
    18  // Atomic add and return new value.
    19  //go:nosplit
    20  func xadd(val *uint32, delta int32) uint32 {
    21  	for {
    22  		oval := *val
    23  		nval := oval + uint32(delta)
    24  		if cas(val, oval, nval) {
    25  			return nval
    26  		}
    27  	}
    28  }
    29  
    30  //go:noescape
    31  //go:linkname xadduintptr runtime.xadd
    32  func xadduintptr(ptr *uintptr, delta uintptr) uintptr
    33  
    34  //go:nosplit
    35  func xchg(addr *uint32, v uint32) uint32 {
    36  	for {
    37  		old := *addr
    38  		if cas(addr, old, v) {
    39  			return old
    40  		}
    41  	}
    42  }
    43  
    44  //go:nosplit
    45  func xchguintptr(addr *uintptr, v uintptr) uintptr {
    46  	return uintptr(xchg((*uint32)(unsafe.Pointer(addr)), uint32(v)))
    47  }
    48  
    49  //go:nosplit
    50  func atomicload(addr *uint32) uint32 {
    51  	return xadd(addr, 0)
    52  }
    53  
    54  //go:nosplit
    55  func atomicloadp(addr unsafe.Pointer) unsafe.Pointer {
    56  	return unsafe.Pointer(uintptr(xadd((*uint32)(addr), 0)))
    57  }
    58  
    59  //go:nosplit
    60  func atomicstorep1(addr unsafe.Pointer, v unsafe.Pointer) {
    61  	for {
    62  		old := *(*unsafe.Pointer)(addr)
    63  		if casp1((*unsafe.Pointer)(addr), old, v) {
    64  			return
    65  		}
    66  	}
    67  }
    68  
    69  //go:nosplit
    70  func atomicstore(addr *uint32, v uint32) {
    71  	for {
    72  		old := *addr
    73  		if cas(addr, old, v) {
    74  			return
    75  		}
    76  	}
    77  }
    78  
    79  //go:nosplit
    80  func cas64(addr *uint64, old, new uint64) bool {
    81  	var ok bool
    82  	systemstack(func() {
    83  		lock(addrLock(addr))
    84  		if *addr == old {
    85  			*addr = new
    86  			ok = true
    87  		}
    88  		unlock(addrLock(addr))
    89  	})
    90  	return ok
    91  }
    92  
    93  //go:nosplit
    94  func xadd64(addr *uint64, delta int64) uint64 {
    95  	var r uint64
    96  	systemstack(func() {
    97  		lock(addrLock(addr))
    98  		r = *addr + uint64(delta)
    99  		*addr = r
   100  		unlock(addrLock(addr))
   101  	})
   102  	return r
   103  }
   104  
   105  //go:nosplit
   106  func xchg64(addr *uint64, v uint64) uint64 {
   107  	var r uint64
   108  	systemstack(func() {
   109  		lock(addrLock(addr))
   110  		r = *addr
   111  		*addr = v
   112  		unlock(addrLock(addr))
   113  	})
   114  	return r
   115  }
   116  
   117  //go:nosplit
   118  func atomicload64(addr *uint64) uint64 {
   119  	var r uint64
   120  	systemstack(func() {
   121  		lock(addrLock(addr))
   122  		r = *addr
   123  		unlock(addrLock(addr))
   124  	})
   125  	return r
   126  }
   127  
   128  //go:nosplit
   129  func atomicstore64(addr *uint64, v uint64) {
   130  	systemstack(func() {
   131  		lock(addrLock(addr))
   132  		*addr = v
   133  		unlock(addrLock(addr))
   134  	})
   135  }
   136  
   137  //go:nosplit
   138  func atomicor8(addr *uint8, v uint8) {
   139  	// Align down to 4 bytes and use 32-bit CAS.
   140  	uaddr := uintptr(unsafe.Pointer(addr))
   141  	addr32 := (*uint32)(unsafe.Pointer(uaddr &^ 3))
   142  	word := uint32(v) << ((uaddr & 3) * 8) // little endian
   143  	for {
   144  		old := *addr32
   145  		if cas(addr32, old, old|word) {
   146  			return
   147  		}
   148  	}
   149  }
   150  
   151  //go:nosplit
   152  func atomicand8(addr *uint8, v uint8) {
   153  	// Align down to 4 bytes and use 32-bit CAS.
   154  	uaddr := uintptr(unsafe.Pointer(addr))
   155  	addr32 := (*uint32)(unsafe.Pointer(uaddr &^ 3))
   156  	word := uint32(v) << ((uaddr & 3) * 8)    // little endian
   157  	mask := uint32(0xFF) << ((uaddr & 3) * 8) // little endian
   158  	word |= ^mask
   159  	for {
   160  		old := *addr32
   161  		if cas(addr32, old, old&word) {
   162  			return
   163  		}
   164  	}
   165  }