mirror of
https://github.com/cwinfo/matterbridge.git
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345 lines
4.2 KiB
Go
345 lines
4.2 KiB
Go
// Copyright 2014 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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package ppc64asm
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import (
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"bytes"
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"fmt"
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)
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type Inst struct {
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Op Op // Opcode mnemonic
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Enc uint32 // Raw encoding bits
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Len int // Length of encoding in bytes.
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Args Args // Instruction arguments, in Power ISA manual order.
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}
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func (i Inst) String() string {
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var buf bytes.Buffer
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buf.WriteString(i.Op.String())
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for j, arg := range i.Args {
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if arg == nil {
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break
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}
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if j == 0 {
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buf.WriteString(" ")
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} else {
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buf.WriteString(", ")
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}
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buf.WriteString(arg.String())
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}
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return buf.String()
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}
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// An Op is an instruction operation.
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type Op uint16
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func (o Op) String() string {
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if int(o) >= len(opstr) || opstr[o] == "" {
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return fmt.Sprintf("Op(%d)", int(o))
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}
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return opstr[o]
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}
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// An Arg is a single instruction argument, one of these types: Reg, CondReg, SpReg, Imm, PCRel, Label, or Offset.
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type Arg interface {
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IsArg()
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String() string
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}
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// An Args holds the instruction arguments.
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// If an instruction has fewer than 4 arguments,
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// the final elements in the array are nil.
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type Args [5]Arg
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// A Reg is a single register. The zero value means R0, not the absence of a register.
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// It also includes special registers.
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type Reg uint16
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const (
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_ Reg = iota
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R0
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R1
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R2
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R3
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R4
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R5
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R6
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R7
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R8
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R9
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R10
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R11
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R12
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R13
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R14
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R15
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R16
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R17
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R18
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R19
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R20
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R21
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R22
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R23
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R24
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R25
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R26
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R27
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R28
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R29
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R30
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R31
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F0
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F1
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F2
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F3
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F4
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F5
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F6
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F7
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F8
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F9
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F10
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F11
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F12
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F13
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F14
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F15
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F16
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F17
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F18
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F19
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F20
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F21
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F22
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F23
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F24
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F25
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F26
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F27
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F28
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F29
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F30
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F31
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V0 // VSX extension, F0 is V0[0:63].
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V1
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V2
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V3
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V4
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V5
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V6
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V7
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V8
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V9
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V10
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V11
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V12
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V13
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V14
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V15
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V16
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V17
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V18
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V19
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V20
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V21
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V22
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V23
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V24
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V25
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V26
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V27
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V28
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V29
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V30
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V31
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VS0
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VS1
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VS2
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VS3
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VS4
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VS5
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VS6
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VS7
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VS8
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VS9
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VS10
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VS11
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VS12
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VS13
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VS14
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VS15
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VS16
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VS17
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VS18
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VS19
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VS20
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VS21
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VS22
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VS23
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VS24
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VS25
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VS26
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VS27
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VS28
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VS29
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VS30
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VS31
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VS32
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VS33
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VS34
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VS35
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VS36
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VS37
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VS38
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VS39
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VS40
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VS41
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VS42
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VS43
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VS44
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VS45
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VS46
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VS47
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VS48
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VS49
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VS50
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VS51
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VS52
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VS53
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VS54
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VS55
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VS56
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VS57
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VS58
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VS59
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VS60
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VS61
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VS62
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VS63
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)
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func (Reg) IsArg() {}
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func (r Reg) String() string {
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switch {
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case R0 <= r && r <= R31:
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return fmt.Sprintf("r%d", int(r-R0))
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case F0 <= r && r <= F31:
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return fmt.Sprintf("f%d", int(r-F0))
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case V0 <= r && r <= V31:
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return fmt.Sprintf("v%d", int(r-V0))
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case VS0 <= r && r <= VS63:
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return fmt.Sprintf("vs%d", int(r-VS0))
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default:
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return fmt.Sprintf("Reg(%d)", int(r))
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}
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}
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// CondReg is a bit or field in the conditon register.
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type CondReg int8
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const (
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_ CondReg = iota
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// Condition Regster bits
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Cond0LT
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Cond0GT
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Cond0EQ
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Cond0SO
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Cond1LT
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Cond1GT
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Cond1EQ
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Cond1SO
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Cond2LT
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Cond2GT
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Cond2EQ
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Cond2SO
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Cond3LT
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Cond3GT
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Cond3EQ
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Cond3SO
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Cond4LT
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Cond4GT
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Cond4EQ
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Cond4SO
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Cond5LT
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Cond5GT
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Cond5EQ
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Cond5SO
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Cond6LT
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Cond6GT
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Cond6EQ
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Cond6SO
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Cond7LT
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Cond7GT
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Cond7EQ
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Cond7SO
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// Condition Register Fields
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CR0
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CR1
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CR2
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CR3
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CR4
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CR5
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CR6
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CR7
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)
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func (CondReg) IsArg() {}
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func (c CondReg) String() string {
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switch {
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default:
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return fmt.Sprintf("CondReg(%d)", int(c))
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case c >= CR0:
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return fmt.Sprintf("CR%d", int(c-CR0))
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case c >= Cond0LT && c < CR0:
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return fmt.Sprintf("Cond%d%s", int((c-Cond0LT)/4), [4]string{"LT", "GT", "EQ", "SO"}[(c-Cond0LT)%4])
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}
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}
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// SpReg is a special register, its meaning depends on Op.
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type SpReg uint16
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const (
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SpRegZero SpReg = 0
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)
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func (SpReg) IsArg() {}
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func (s SpReg) String() string {
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return fmt.Sprintf("SpReg(%d)", int(s))
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}
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// PCRel is a PC-relative offset, used only in branch instructions.
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type PCRel int32
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func (PCRel) IsArg() {}
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func (r PCRel) String() string {
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return fmt.Sprintf("PC%+#x", int32(r))
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}
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// A Label is a code (text) address, used only in absolute branch instructions.
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type Label uint32
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func (Label) IsArg() {}
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func (l Label) String() string {
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return fmt.Sprintf("%#x", uint32(l))
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}
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// Imm represents an immediate number.
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type Imm int32
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func (Imm) IsArg() {}
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func (i Imm) String() string {
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return fmt.Sprintf("%d", int32(i))
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}
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// Offset represents a memory offset immediate.
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type Offset int32
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func (Offset) IsArg() {}
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func (o Offset) String() string {
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return fmt.Sprintf("%+d", int32(o))
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}
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