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go/src/runtime/os_solaris.go
Aram Hăvărneanu e088e16256 [dev.cc] runtime: convert Solaris port to Go
Memory management was consolitated with the BSD ports, since
it was almost identical.

Assembly thunks are gone, being replaced by the new //go:linkname
feature.

This change supersedes CL 138390043 (runtime: convert solaris
netpoll to Go), which was previously reviewed and tested.

This change is only the first step, the port now builds,
but doesn't run. Binaries fail to exec:

    ld.so.1: 6.out: fatal: 6.out: TLS requirement failure : TLS support is unavailable
    Killed

This seems to happen because binaries don't link with libc.so
anymore. We will have to solve that in a different CL.

Also this change is just a rough translation of the original
C code, cleanup will come in a different CL.

[This CL is part of the removal of C code from package runtime.
See golang.org/s/dev.cc for an overview.]

LGTM=rsc
R=rsc, dave
CC=golang-codereviews, iant, khr, minux, r, rlh
https://golang.org/cl/174960043
2014-11-13 16:07:10 +01:00

83 lines
2.3 KiB
Go

// Copyright 2014 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 runtime
import "unsafe"
type libcFunc uintptr
var asmsysvicall6 libcFunc
//go:nosplit
func sysvicall0(fn libcFunc) uintptr {
libcall := &getg().m.libcall
libcall.fn = uintptr(fn)
libcall.n = 0
libcall.args = uintptr(fn) // it's unused but must be non-nil, otherwise crashes
asmcgocall(unsafe.Pointer(&asmsysvicall6), unsafe.Pointer(libcall))
return libcall.r1
}
//go:nosplit
func sysvicall1(fn libcFunc, a1 uintptr) uintptr {
libcall := &getg().m.libcall
libcall.fn = uintptr(fn)
libcall.n = 1
// TODO(rsc): Why is noescape necessary here and below?
libcall.args = uintptr(noescape(unsafe.Pointer(&a1)))
asmcgocall(unsafe.Pointer(&asmsysvicall6), unsafe.Pointer(libcall))
return libcall.r1
}
//go:nosplit
func sysvicall2(fn libcFunc, a1, a2 uintptr) uintptr {
libcall := &getg().m.libcall
libcall.fn = uintptr(fn)
libcall.n = 2
libcall.args = uintptr(noescape(unsafe.Pointer(&a1)))
asmcgocall(unsafe.Pointer(&asmsysvicall6), unsafe.Pointer(libcall))
return libcall.r1
}
//go:nosplit
func sysvicall3(fn libcFunc, a1, a2, a3 uintptr) uintptr {
libcall := &getg().m.libcall
libcall.fn = uintptr(fn)
libcall.n = 3
libcall.args = uintptr(noescape(unsafe.Pointer(&a1)))
asmcgocall(unsafe.Pointer(&asmsysvicall6), unsafe.Pointer(libcall))
return libcall.r1
}
//go:nosplit
func sysvicall4(fn libcFunc, a1, a2, a3, a4 uintptr) uintptr {
libcall := &getg().m.libcall
libcall.fn = uintptr(fn)
libcall.n = 4
libcall.args = uintptr(noescape(unsafe.Pointer(&a1)))
asmcgocall(unsafe.Pointer(&asmsysvicall6), unsafe.Pointer(libcall))
return libcall.r1
}
//go:nosplit
func sysvicall5(fn libcFunc, a1, a2, a3, a4, a5 uintptr) uintptr {
libcall := &getg().m.libcall
libcall.fn = uintptr(fn)
libcall.n = 5
libcall.args = uintptr(noescape(unsafe.Pointer(&a1)))
asmcgocall(unsafe.Pointer(&asmsysvicall6), unsafe.Pointer(libcall))
return libcall.r1
}
//go:nosplit
func sysvicall6(fn libcFunc, a1, a2, a3, a4, a5, a6 uintptr) uintptr {
libcall := &getg().m.libcall
libcall.fn = uintptr(fn)
libcall.n = 6
libcall.args = uintptr(noescape(unsafe.Pointer(&a1)))
asmcgocall(unsafe.Pointer(&asmsysvicall6), unsafe.Pointer(libcall))
return libcall.r1
}