mirror of
https://github.com/rwinkhart/sys.git
synced 2026-09-02 15:17:31 -04:00
unix: replace "mksyscall_aix_ppc.pl" script with a Go program
Port mksyscall_aix_ppc.pl Perl script to mksyscall_aix_ppc.go. mkall.sh script is modified to run mksyscall.go. Running mkall.sh does not generate any git diff besides the command name in comments of generated files. Updates golang/go#27779 Change-Id: I57b0e5f9fe44dadd96d0e512046bb63e8e1b9f66 Reviewed-on: https://go-review.googlesource.com/c/156778 Reviewed-by: Clément Chigot <clement.chigot@atos.net> Reviewed-by: Tobias Klauser <tobias.klauser@gmail.com> Run-TryBot: Tobias Klauser <tobias.klauser@gmail.com> TryBot-Result: Gobot Gobot <gobot@golang.org>
This commit is contained in:
committed by
Tobias Klauser
parent
20be8e55dc
commit
7fbe1cd0fc
@@ -0,0 +1,404 @@
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// Copyright 2019 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// +build ignore
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/*
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This program reads a file containing function prototypes
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(like syscall_aix.go) and generates system call bodies.
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The prototypes are marked by lines beginning with "//sys"
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and read like func declarations if //sys is replaced by func, but:
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* The parameter lists must give a name for each argument.
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This includes return parameters.
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* The parameter lists must give a type for each argument:
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the (x, y, z int) shorthand is not allowed.
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* If the return parameter is an error number, it must be named err.
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* If go func name needs to be different than its libc name,
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* or the function is not in libc, name could be specified
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* at the end, after "=" sign, like
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//sys getsockopt(s int, level int, name int, val uintptr, vallen *_Socklen) (err error) = libsocket.getsockopt
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*/
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package main
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import (
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"bufio"
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"flag"
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"fmt"
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"os"
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"regexp"
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"strings"
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)
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var (
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b32 = flag.Bool("b32", false, "32bit big-endian")
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l32 = flag.Bool("l32", false, "32bit little-endian")
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aix = flag.Bool("aix", false, "aix")
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tags = flag.String("tags", "", "build tags")
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)
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// cmdLine returns this programs's commandline arguments
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func cmdLine() string {
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return "go run mksyscall_aix_ppc.go " + strings.Join(os.Args[1:], " ")
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}
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// buildTags returns build tags
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func buildTags() string {
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return *tags
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}
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// Param is function parameter
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type Param struct {
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Name string
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Type string
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}
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// usage prints the program usage
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func usage() {
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fmt.Fprintf(os.Stderr, "usage: go run mksyscall_aix_ppc.go [-b32 | -l32] [-tags x,y] [file ...]\n")
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os.Exit(1)
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}
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// parseParamList parses parameter list and returns a slice of parameters
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func parseParamList(list string) []string {
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list = strings.TrimSpace(list)
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if list == "" {
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return []string{}
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}
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return regexp.MustCompile(`\s*,\s*`).Split(list, -1)
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}
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// parseParam splits a parameter into name and type
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func parseParam(p string) Param {
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ps := regexp.MustCompile(`^(\S*) (\S*)$`).FindStringSubmatch(p)
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if ps == nil {
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fmt.Fprintf(os.Stderr, "malformed parameter: %s\n", p)
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os.Exit(1)
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}
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return Param{ps[1], ps[2]}
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}
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func main() {
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flag.Usage = usage
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flag.Parse()
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if len(flag.Args()) <= 0 {
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fmt.Fprintf(os.Stderr, "no files to parse provided\n")
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usage()
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}
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endianness := ""
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if *b32 {
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endianness = "big-endian"
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} else if *l32 {
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endianness = "little-endian"
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}
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pack := ""
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text := ""
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cExtern := "/*\n#include <stdint.h>\n#include <stddef.h>\n"
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for _, path := range flag.Args() {
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file, err := os.Open(path)
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if err != nil {
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fmt.Fprintf(os.Stderr, err.Error())
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os.Exit(1)
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}
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s := bufio.NewScanner(file)
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for s.Scan() {
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t := s.Text()
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t = strings.TrimSpace(t)
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t = regexp.MustCompile(`\s+`).ReplaceAllString(t, ` `)
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if p := regexp.MustCompile(`^package (\S+)$`).FindStringSubmatch(t); p != nil && pack == "" {
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pack = p[1]
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}
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nonblock := regexp.MustCompile(`^\/\/sysnb `).FindStringSubmatch(t)
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if regexp.MustCompile(`^\/\/sys `).FindStringSubmatch(t) == nil && nonblock == nil {
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continue
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}
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// Line must be of the form
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// func Open(path string, mode int, perm int) (fd int, err error)
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// Split into name, in params, out params.
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f := regexp.MustCompile(`^\/\/sys(nb)? (\w+)\(([^()]*)\)\s*(?:\(([^()]+)\))?\s*(?:=\s*(?:(\w*)\.)?(\w*))?$`).FindStringSubmatch(t)
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if f == nil {
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fmt.Fprintf(os.Stderr, "%s:%s\nmalformed //sys declaration\n", path, t)
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os.Exit(1)
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}
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funct, inps, outps, modname, sysname := f[2], f[3], f[4], f[5], f[6]
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// Split argument lists on comma.
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in := parseParamList(inps)
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out := parseParamList(outps)
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inps = strings.Join(in, ", ")
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outps = strings.Join(out, ", ")
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// Try in vain to keep people from editing this file.
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// The theory is that they jump into the middle of the file
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// without reading the header.
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text += "// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT\n\n"
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// Check if value return, err return available
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errvar := ""
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retvar := ""
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rettype := ""
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for _, param := range out {
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p := parseParam(param)
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if p.Type == "error" {
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errvar = p.Name
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} else {
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retvar = p.Name
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rettype = p.Type
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}
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}
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// System call name.
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if sysname == "" {
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sysname = funct
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}
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sysname = regexp.MustCompile(`([a-z])([A-Z])`).ReplaceAllString(sysname, `${1}_$2`)
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sysname = strings.ToLower(sysname) // All libc functions are lowercase.
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cRettype := ""
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if rettype == "unsafe.Pointer" {
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cRettype = "uintptr_t"
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} else if rettype == "uintptr" {
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cRettype = "uintptr_t"
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} else if regexp.MustCompile(`^_`).FindStringSubmatch(rettype) != nil {
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cRettype = "uintptr_t"
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} else if rettype == "int" {
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cRettype = "int"
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} else if rettype == "int32" {
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cRettype = "int"
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} else if rettype == "int64" {
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cRettype = "long long"
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} else if rettype == "uint32" {
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cRettype = "unsigned int"
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} else if rettype == "uint64" {
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cRettype = "unsigned long long"
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} else {
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cRettype = "int"
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}
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if sysname == "exit" {
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cRettype = "void"
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}
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// Change p.Types to c
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var cIn []string
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for _, param := range in {
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p := parseParam(param)
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if regexp.MustCompile(`^\*`).FindStringSubmatch(p.Type) != nil {
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cIn = append(cIn, "uintptr_t")
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} else if p.Type == "string" {
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cIn = append(cIn, "uintptr_t")
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} else if regexp.MustCompile(`^\[\](.*)`).FindStringSubmatch(p.Type) != nil {
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cIn = append(cIn, "uintptr_t", "size_t")
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} else if p.Type == "unsafe.Pointer" {
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cIn = append(cIn, "uintptr_t")
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} else if p.Type == "uintptr" {
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cIn = append(cIn, "uintptr_t")
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} else if regexp.MustCompile(`^_`).FindStringSubmatch(p.Type) != nil {
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cIn = append(cIn, "uintptr_t")
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} else if p.Type == "int" {
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cIn = append(cIn, "int")
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} else if p.Type == "int32" {
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cIn = append(cIn, "int")
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} else if p.Type == "int64" {
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cIn = append(cIn, "long long")
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} else if p.Type == "uint32" {
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cIn = append(cIn, "unsigned int")
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} else if p.Type == "uint64" {
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cIn = append(cIn, "unsigned long long")
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} else {
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cIn = append(cIn, "int")
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}
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}
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if funct != "fcntl" && funct != "FcntlInt" && funct != "readlen" && funct != "writelen" {
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// Imports of system calls from libc
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cExtern += fmt.Sprintf("%s %s", cRettype, sysname)
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cIn := strings.Join(cIn, ", ")
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cExtern += fmt.Sprintf("(%s);\n", cIn)
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}
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// So file name.
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if *aix {
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if modname == "" {
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modname = "libc.a/shr_64.o"
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} else {
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fmt.Fprintf(os.Stderr, "%s: only syscall using libc are available\n", funct)
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os.Exit(1)
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}
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}
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strconvfunc := "C.CString"
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// Go function header.
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if outps != "" {
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outps = fmt.Sprintf(" (%s)", outps)
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}
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if text != "" {
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text += "\n"
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}
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text += fmt.Sprintf("func %s(%s)%s {\n", funct, strings.Join(in, ", "), outps)
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// Prepare arguments to Syscall.
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var args []string
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n := 0
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argN := 0
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for _, param := range in {
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p := parseParam(param)
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if regexp.MustCompile(`^\*`).FindStringSubmatch(p.Type) != nil {
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args = append(args, "C.uintptr_t(uintptr(unsafe.Pointer("+p.Name+")))")
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} else if p.Type == "string" && errvar != "" {
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text += fmt.Sprintf("\t_p%d := uintptr(unsafe.Pointer(%s(%s)))\n", n, strconvfunc, p.Name)
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args = append(args, fmt.Sprintf("C.uintptr_t(_p%d)", n))
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n++
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} else if p.Type == "string" {
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fmt.Fprintf(os.Stderr, path+":"+funct+" uses string arguments, but has no error return\n")
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text += fmt.Sprintf("\t_p%d := uintptr(unsafe.Pointer(%s(%s)))\n", n, strconvfunc, p.Name)
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args = append(args, fmt.Sprintf("C.uintptr_t(_p%d)", n))
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n++
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} else if m := regexp.MustCompile(`^\[\](.*)`).FindStringSubmatch(p.Type); m != nil {
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// Convert slice into pointer, length.
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// Have to be careful not to take address of &a[0] if len == 0:
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// pass nil in that case.
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text += fmt.Sprintf("\tvar _p%d *%s\n", n, m[1])
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text += fmt.Sprintf("\tif len(%s) > 0 {\n\t\t_p%d = &%s[0]\n\t}\n", p.Name, n, p.Name)
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args = append(args, fmt.Sprintf("C.uintptr_t(uintptr(unsafe.Pointer(_p%d)))", n))
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n++
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text += fmt.Sprintf("\tvar _p%d int\n", n)
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text += fmt.Sprintf("\t_p%d = len(%s)\n", n, p.Name)
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args = append(args, fmt.Sprintf("C.size_t(_p%d)", n))
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n++
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} else if p.Type == "int64" && endianness != "" {
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if endianness == "big-endian" {
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args = append(args, fmt.Sprintf("uintptr(%s>>32)", p.Name), fmt.Sprintf("uintptr(%s)", p.Name))
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} else {
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args = append(args, fmt.Sprintf("uintptr(%s)", p.Name), fmt.Sprintf("uintptr(%s>>32)", p.Name))
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}
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n++
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} else if p.Type == "bool" {
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text += fmt.Sprintf("\tvar _p%d uint32\n", n)
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text += fmt.Sprintf("\tif %s {\n\t\t_p%d = 1\n\t} else {\n\t\t_p%d = 0\n\t}\n", p.Name, n, n)
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args = append(args, fmt.Sprintf("_p%d", n))
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} else if regexp.MustCompile(`^_`).FindStringSubmatch(p.Type) != nil {
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args = append(args, fmt.Sprintf("C.uintptr_t(uintptr(%s))", p.Name))
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} else if p.Type == "unsafe.Pointer" {
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args = append(args, fmt.Sprintf("C.uintptr_t(uintptr(%s))", p.Name))
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} else if p.Type == "int" {
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if (argN == 2) && ((funct == "readlen") || (funct == "writelen")) {
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args = append(args, fmt.Sprintf("C.size_t(%s)", p.Name))
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} else if argN == 0 && funct == "fcntl" {
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args = append(args, fmt.Sprintf("C.uintptr_t(%s)", p.Name))
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} else if (argN == 2) && ((funct == "fcntl") || (funct == "FcntlInt")) {
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args = append(args, fmt.Sprintf("C.uintptr_t(%s)", p.Name))
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} else {
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args = append(args, fmt.Sprintf("C.int(%s)", p.Name))
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}
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} else if p.Type == "int32" {
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args = append(args, fmt.Sprintf("C.int(%s)", p.Name))
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} else if p.Type == "int64" {
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args = append(args, fmt.Sprintf("C.longlong(%s)", p.Name))
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} else if p.Type == "uint32" {
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args = append(args, fmt.Sprintf("C.uint(%s)", p.Name))
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} else if p.Type == "uint64" {
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args = append(args, fmt.Sprintf("C.ulonglong(%s)", p.Name))
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} else if p.Type == "uintptr" {
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args = append(args, fmt.Sprintf("C.uintptr_t(%s)", p.Name))
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} else {
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args = append(args, fmt.Sprintf("C.int(%s)", p.Name))
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}
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argN++
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}
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// Actual call.
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arglist := strings.Join(args, ", ")
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call := ""
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if sysname == "exit" {
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if errvar != "" {
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call += "er :="
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} else {
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call += ""
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}
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} else if errvar != "" {
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call += "r0,er :="
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} else if retvar != "" {
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call += "r0,_ :="
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} else {
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call += ""
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}
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call += fmt.Sprintf("C.%s(%s)", sysname, arglist)
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// Assign return values.
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body := ""
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for i := 0; i < len(out); i++ {
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p := parseParam(out[i])
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reg := ""
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if p.Name == "err" {
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reg = "e1"
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} else {
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reg = "r0"
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}
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if reg != "e1" {
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body += fmt.Sprintf("\t%s = %s(%s)\n", p.Name, p.Type, reg)
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}
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}
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// verify return
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if sysname != "exit" && errvar != "" {
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if regexp.MustCompile(`^uintptr`).FindStringSubmatch(cRettype) != nil {
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body += "\tif (uintptr(r0) ==^uintptr(0) && er != nil) {\n"
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body += fmt.Sprintf("\t\t%s = er\n", errvar)
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body += "\t}\n"
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} else {
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body += "\tif (r0 ==-1 && er != nil) {\n"
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body += fmt.Sprintf("\t\t%s = er\n", errvar)
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body += "\t}\n"
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}
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} else if errvar != "" {
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body += "\tif (er != nil) {\n"
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body += fmt.Sprintf("\t\t%s = er\n", errvar)
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body += "\t}\n"
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}
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text += fmt.Sprintf("\t%s\n", call)
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text += body
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text += "\treturn\n"
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text += "}\n"
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}
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if err := s.Err(); err != nil {
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fmt.Fprintf(os.Stderr, err.Error())
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os.Exit(1)
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}
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file.Close()
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}
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imp := ""
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if pack != "unix" {
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imp = "import \"golang.org/x/sys/unix\"\n"
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}
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fmt.Printf(srcTemplate, cmdLine(), buildTags(), pack, cExtern, imp, text)
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}
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const srcTemplate = `// %s
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// Code generated by the command above; see README.md. DO NOT EDIT.
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// +build %s
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package %s
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%s
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*/
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import "C"
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import (
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"unsafe"
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)
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%s
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|
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%s
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`
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Reference in New Issue
Block a user