1 Commits
Author SHA1 Message Date
RandyTheSilly d384854b49 Apply patch 2025-12-26 19:25:23 -05:00
11 changed files with 19 additions and 179 deletions
+1 -1
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@@ -47,7 +47,7 @@ func archInit() {
switch runtime.GOOS {
case "freebsd":
readARM64Registers()
case "linux", "netbsd", "openbsd", "windows":
case "linux", "netbsd", "openbsd":
doinit()
default:
// Many platforms don't seem to allow reading these registers.
+1 -1
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@@ -2,7 +2,7 @@
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
//go:build !linux && !netbsd && !openbsd && !windows && arm64
//go:build !linux && !netbsd && !openbsd && arm64
package cpu
-42
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@@ -1,42 +0,0 @@
// Copyright 2026 The Go Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
package cpu
import (
"golang.org/x/sys/windows"
)
func doinit() {
// set HasASIMD and HasFP to true as per
// https://learn.microsoft.com/en-us/cpp/build/arm64-windows-abi-conventions?view=msvc-170#base-requirements
//
// The ARM64 version of Windows always presupposes that it's running on an ARMv8 or later architecture.
// Both floating-point and NEON support are presumed to be present in hardware.
//
ARM64.HasASIMD = true
ARM64.HasFP = true
if windows.IsProcessorFeaturePresent(windows.PF_ARM_V8_CRYPTO_INSTRUCTIONS_AVAILABLE) {
ARM64.HasAES = true
ARM64.HasPMULL = true
ARM64.HasSHA1 = true
ARM64.HasSHA2 = true
}
ARM64.HasSHA3 = windows.IsProcessorFeaturePresent(windows.PF_ARM_SHA3_INSTRUCTIONS_AVAILABLE)
ARM64.HasCRC32 = windows.IsProcessorFeaturePresent(windows.PF_ARM_V8_CRC32_INSTRUCTIONS_AVAILABLE)
ARM64.HasSHA512 = windows.IsProcessorFeaturePresent(windows.PF_ARM_SHA512_INSTRUCTIONS_AVAILABLE)
ARM64.HasATOMICS = windows.IsProcessorFeaturePresent(windows.PF_ARM_V81_ATOMIC_INSTRUCTIONS_AVAILABLE)
if windows.IsProcessorFeaturePresent(windows.PF_ARM_V82_DP_INSTRUCTIONS_AVAILABLE) {
ARM64.HasASIMDDP = true
ARM64.HasASIMDRDM = true
}
if windows.IsProcessorFeaturePresent(windows.PF_ARM_V83_LRCPC_INSTRUCTIONS_AVAILABLE) {
ARM64.HasLRCPC = true
ARM64.HasSM3 = true
}
ARM64.HasSVE = windows.IsProcessorFeaturePresent(windows.PF_ARM_SVE_INSTRUCTIONS_AVAILABLE)
ARM64.HasSVE2 = windows.IsProcessorFeaturePresent(windows.PF_ARM_SVE2_INSTRUCTIONS_AVAILABLE)
ARM64.HasJSCVT = windows.IsProcessorFeaturePresent(windows.PF_ARM_V83_JSCVT_INSTRUCTIONS_AVAILABLE)
}
+3 -8
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@@ -6,7 +6,9 @@
package unix
import "unsafe"
import (
"unsafe"
)
// ioctl itself should not be exposed directly, but additional get/set
// functions for specific types are permissible.
@@ -26,13 +28,6 @@ func IoctlSetPointerInt(fd int, req int, value int) error {
return ioctlPtr(fd, req, unsafe.Pointer(&v))
}
// IoctlSetString performs an ioctl operation which sets a string value
// on fd, using the specified request number.
func IoctlSetString(fd int, req int, value string) error {
bs := append([]byte(value), 0)
return ioctlPtr(fd, req, unsafe.Pointer(&bs[0]))
}
// IoctlSetWinsize performs an ioctl on fd with a *Winsize argument.
//
// To change fd's window size, the req argument should be TIOCSWINSZ.
+3 -8
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@@ -6,7 +6,9 @@
package unix
import "unsafe"
import (
"unsafe"
)
// ioctl itself should not be exposed directly, but additional get/set
// functions for specific types are permissible.
@@ -26,13 +28,6 @@ func IoctlSetPointerInt(fd int, req uint, value int) error {
return ioctlPtr(fd, req, unsafe.Pointer(&v))
}
// IoctlSetString performs an ioctl operation which sets a string value
// on fd, using the specified request number.
func IoctlSetString(fd int, req uint, value string) error {
bs := append([]byte(value), 0)
return ioctlPtr(fd, req, unsafe.Pointer(&bs[0]))
}
// IoctlSetWinsize performs an ioctl on fd with a *Winsize argument.
//
// To change fd's window size, the req argument should be TIOCSWINSZ.
+8
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@@ -1052,6 +1052,14 @@ func IoctlSetIntRetInt(fd int, req int, arg int) (int, error) {
return ioctlRet(fd, req, uintptr(arg))
}
func IoctlSetString(fd int, req int, val string) error {
bs := make([]byte, len(val)+1)
copy(bs[:len(bs)-1], val)
err := ioctlPtr(fd, req, unsafe.Pointer(&bs[0]))
runtime.KeepAlive(&bs[0])
return err
}
// Lifreq Helpers
func (l *Lifreq) SetName(name string) error {
+3 -7
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@@ -367,9 +367,7 @@ func Recvmsg(fd int, p, oob []byte, flags int) (n, oobn int, recvflags int, from
iov[0].SetLen(len(p))
}
var rsa RawSockaddrAny
if n, oobn, recvflags, err = recvmsgRaw(fd, iov[:], oob, flags, &rsa); err != nil {
return
}
n, oobn, recvflags, err = recvmsgRaw(fd, iov[:], oob, flags, &rsa)
// source address is only specified if the socket is unconnected
if rsa.Addr.Family != AF_UNSPEC {
from, err = anyToSockaddr(fd, &rsa)
@@ -391,10 +389,8 @@ func RecvmsgBuffers(fd int, buffers [][]byte, oob []byte, flags int) (n, oobn in
}
}
var rsa RawSockaddrAny
if n, oobn, recvflags, err = recvmsgRaw(fd, iov, oob, flags, &rsa); err != nil {
return
}
if rsa.Addr.Family != AF_UNSPEC {
n, oobn, recvflags, err = recvmsgRaw(fd, iov, oob, flags, &rsa)
if err == nil && rsa.Addr.Family != AF_UNSPEC {
from, err = anyToSockaddr(fd, &rsa)
}
return
-1
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@@ -900,7 +900,6 @@ const socket_error = uintptr(^uint32(0))
//sys NotifyRouteChange2(family uint16, callback uintptr, callerContext unsafe.Pointer, initialNotification bool, notificationHandle *Handle) (errcode error) = iphlpapi.NotifyRouteChange2
//sys NotifyUnicastIpAddressChange(family uint16, callback uintptr, callerContext unsafe.Pointer, initialNotification bool, notificationHandle *Handle) (errcode error) = iphlpapi.NotifyUnicastIpAddressChange
//sys CancelMibChangeNotify2(notificationHandle Handle) (errcode error) = iphlpapi.CancelMibChangeNotify2
//sys IsProcessorFeaturePresent(ProcessorFeature uint32) (ret bool) = kernel32.IsProcessorFeaturePresent
// For testing: clients can set this flag to force
// creation of IPv6 sockets to return EAFNOSUPPORT.
-19
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@@ -1493,22 +1493,3 @@ func TestRoundtripNTUnicodeString(t *testing.T) {
}
}
}
func TestIsProcessorFeaturePresent(t *testing.T) {
// according to
// https://learn.microsoft.com/en-us/windows/win32/api/processthreadsapi/nf-processthreadsapi-isprocessorfeaturepresent
// if PF_PAE_ENABLED returns nonzero value, then
// ...
// The processor is PAE-enabled. For more information, see Physical Address Extension.
// All x64 processors always return a nonzero value for this feature.
// ...
switch runtime.GOARCH {
case "amd64", "386":
default:
t.Skipf("the test is no supported by %q processor type", runtime.GOARCH)
}
if !windows.IsProcessorFeaturePresent(windows.PF_PAE_ENABLED) {
t.Fatal("IsProcessorFeaturePresent failed, but should succeed")
}
}
-85
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@@ -3938,88 +3938,3 @@ const (
MOUSE_EVENT = 0x0002
WINDOW_BUFFER_SIZE_EVENT = 0x0004
)
// The processor features to be tested for IsProcessorFeaturePresent, see
// https://learn.microsoft.com/en-us/windows/win32/api/processthreadsapi/nf-processthreadsapi-isprocessorfeaturepresent
const (
PF_ARM_64BIT_LOADSTORE_ATOMIC = 25
PF_ARM_DIVIDE_INSTRUCTION_AVAILABLE = 24
PF_ARM_EXTERNAL_CACHE_AVAILABLE = 26
PF_ARM_FMAC_INSTRUCTIONS_AVAILABLE = 27
PF_ARM_VFP_32_REGISTERS_AVAILABLE = 18
PF_3DNOW_INSTRUCTIONS_AVAILABLE = 7
PF_CHANNELS_ENABLED = 16
PF_COMPARE_EXCHANGE_DOUBLE = 2
PF_COMPARE_EXCHANGE128 = 14
PF_COMPARE64_EXCHANGE128 = 15
PF_FASTFAIL_AVAILABLE = 23
PF_FLOATING_POINT_EMULATED = 1
PF_FLOATING_POINT_PRECISION_ERRATA = 0
PF_MMX_INSTRUCTIONS_AVAILABLE = 3
PF_NX_ENABLED = 12
PF_PAE_ENABLED = 9
PF_RDTSC_INSTRUCTION_AVAILABLE = 8
PF_RDWRFSGSBASE_AVAILABLE = 22
PF_SECOND_LEVEL_ADDRESS_TRANSLATION = 20
PF_SSE3_INSTRUCTIONS_AVAILABLE = 13
PF_SSSE3_INSTRUCTIONS_AVAILABLE = 36
PF_SSE4_1_INSTRUCTIONS_AVAILABLE = 37
PF_SSE4_2_INSTRUCTIONS_AVAILABLE = 38
PF_AVX_INSTRUCTIONS_AVAILABLE = 39
PF_AVX2_INSTRUCTIONS_AVAILABLE = 40
PF_AVX512F_INSTRUCTIONS_AVAILABLE = 41
PF_VIRT_FIRMWARE_ENABLED = 21
PF_XMMI_INSTRUCTIONS_AVAILABLE = 6
PF_XMMI64_INSTRUCTIONS_AVAILABLE = 10
PF_XSAVE_ENABLED = 17
PF_ARM_V8_INSTRUCTIONS_AVAILABLE = 29
PF_ARM_V8_CRYPTO_INSTRUCTIONS_AVAILABLE = 30
PF_ARM_V8_CRC32_INSTRUCTIONS_AVAILABLE = 31
PF_ARM_V81_ATOMIC_INSTRUCTIONS_AVAILABLE = 34
PF_ARM_V82_DP_INSTRUCTIONS_AVAILABLE = 43
PF_ARM_V83_JSCVT_INSTRUCTIONS_AVAILABLE = 44
PF_ARM_V83_LRCPC_INSTRUCTIONS_AVAILABLE = 45
PF_ARM_SVE_INSTRUCTIONS_AVAILABLE = 46
PF_ARM_SVE2_INSTRUCTIONS_AVAILABLE = 47
PF_ARM_SVE2_1_INSTRUCTIONS_AVAILABLE = 48
PF_ARM_SVE_AES_INSTRUCTIONS_AVAILABLE = 49
PF_ARM_SVE_PMULL128_INSTRUCTIONS_AVAILABLE = 50
PF_ARM_SVE_BITPERM_INSTRUCTIONS_AVAILABLE = 51
PF_ARM_SVE_BF16_INSTRUCTIONS_AVAILABLE = 52
PF_ARM_SVE_EBF16_INSTRUCTIONS_AVAILABLE = 53
PF_ARM_SVE_B16B16_INSTRUCTIONS_AVAILABLE = 54
PF_ARM_SVE_SHA3_INSTRUCTIONS_AVAILABLE = 55
PF_ARM_SVE_SM4_INSTRUCTIONS_AVAILABLE = 56
PF_ARM_SVE_I8MM_INSTRUCTIONS_AVAILABLE = 57
PF_ARM_SVE_F32MM_INSTRUCTIONS_AVAILABLE = 58
PF_ARM_SVE_F64MM_INSTRUCTIONS_AVAILABLE = 59
PF_BMI2_INSTRUCTIONS_AVAILABLE = 60
PF_MOVDIR64B_INSTRUCTION_AVAILABLE = 61
PF_ARM_LSE2_AVAILABLE = 62
PF_ARM_SHA3_INSTRUCTIONS_AVAILABLE = 64
PF_ARM_SHA512_INSTRUCTIONS_AVAILABLE = 65
PF_ARM_V82_I8MM_INSTRUCTIONS_AVAILABLE = 66
PF_ARM_V82_FP16_INSTRUCTIONS_AVAILABLE = 67
PF_ARM_V86_BF16_INSTRUCTIONS_AVAILABLE = 68
PF_ARM_V86_EBF16_INSTRUCTIONS_AVAILABLE = 69
PF_ARM_SME_INSTRUCTIONS_AVAILABLE = 70
PF_ARM_SME2_INSTRUCTIONS_AVAILABLE = 71
PF_ARM_SME2_1_INSTRUCTIONS_AVAILABLE = 72
PF_ARM_SME2_2_INSTRUCTIONS_AVAILABLE = 73
PF_ARM_SME_AES_INSTRUCTIONS_AVAILABLE = 74
PF_ARM_SME_SBITPERM_INSTRUCTIONS_AVAILABLE = 75
PF_ARM_SME_SF8MM4_INSTRUCTIONS_AVAILABLE = 76
PF_ARM_SME_SF8MM8_INSTRUCTIONS_AVAILABLE = 77
PF_ARM_SME_SF8DP2_INSTRUCTIONS_AVAILABLE = 78
PF_ARM_SME_SF8DP4_INSTRUCTIONS_AVAILABLE = 79
PF_ARM_SME_SF8FMA_INSTRUCTIONS_AVAILABLE = 80
PF_ARM_SME_F8F32_INSTRUCTIONS_AVAILABLE = 81
PF_ARM_SME_F8F16_INSTRUCTIONS_AVAILABLE = 82
PF_ARM_SME_F16F16_INSTRUCTIONS_AVAILABLE = 83
PF_ARM_SME_B16B16_INSTRUCTIONS_AVAILABLE = 84
PF_ARM_SME_F64F64_INSTRUCTIONS_AVAILABLE = 85
PF_ARM_SME_I16I64_INSTRUCTIONS_AVAILABLE = 86
PF_ARM_SME_LUTv2_INSTRUCTIONS_AVAILABLE = 87
PF_ARM_SME_FA64_INSTRUCTIONS_AVAILABLE = 88
PF_UMONITOR_INSTRUCTION_AVAILABLE = 89
)
-7
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@@ -320,7 +320,6 @@ var (
procGetVolumePathNamesForVolumeNameW = modkernel32.NewProc("GetVolumePathNamesForVolumeNameW")
procGetWindowsDirectoryW = modkernel32.NewProc("GetWindowsDirectoryW")
procInitializeProcThreadAttributeList = modkernel32.NewProc("InitializeProcThreadAttributeList")
procIsProcessorFeaturePresent = modkernel32.NewProc("IsProcessorFeaturePresent")
procIsWow64Process = modkernel32.NewProc("IsWow64Process")
procIsWow64Process2 = modkernel32.NewProc("IsWow64Process2")
procLoadLibraryExW = modkernel32.NewProc("LoadLibraryExW")
@@ -2787,12 +2786,6 @@ func initializeProcThreadAttributeList(attrlist *ProcThreadAttributeList, attrco
return
}
func IsProcessorFeaturePresent(ProcessorFeature uint32) (ret bool) {
r0, _, _ := syscall.SyscallN(procIsProcessorFeaturePresent.Addr(), uintptr(ProcessorFeature))
ret = r0 != 0
return
}
func IsWow64Process(handle Handle, isWow64 *bool) (err error) {
var _p0 uint32
if *isWow64 {