mirror of
https://github.com/golang/go.git
synced 2025-12-08 06:10:04 +00:00
For struct fields and methods, Field.Nname was only used to store position information, which means we're allocating an entire ONAME Node+Name+Param structure just for one field. We can optimize away these ONAME allocations by instead adding a Field.Pos field. Unfortunately, we can't get rid of Field.Nname, because it's needed for function parameters, so Field grows a little bit and now has more redundant information in those cases. However, that was already the case (e.g., Field.Sym and Field.Nname.Sym), and it's still a net win for allocations as demonstrated by the benchmarks below. Additionally, by moving the ONAME allocation for function parameters to funcargs, we can avoid allocating them for function parameters that aren't used in corresponding function bodies (e.g., interface methods, function-typed variables, and imported functions/methods without inline bodies). name old time/op new time/op delta Template 254ms ± 6% 251ms ± 6% -1.04% (p=0.000 n=487+488) Unicode 128ms ± 7% 128ms ± 7% ~ (p=0.294 n=482+467) GoTypes 862ms ± 5% 860ms ± 4% ~ (p=0.075 n=488+471) Compiler 3.91s ± 4% 3.90s ± 4% -0.39% (p=0.000 n=468+473) name old user-time/op new user-time/op delta Template 339ms ±14% 336ms ±14% -1.02% (p=0.001 n=498+494) Unicode 176ms ±18% 176ms ±25% ~ (p=0.940 n=491+499) GoTypes 1.13s ± 8% 1.13s ± 9% ~ (p=0.157 n=496+493) Compiler 5.24s ± 6% 5.21s ± 6% -0.57% (p=0.000 n=485+489) name old alloc/op new alloc/op delta Template 38.3MB ± 0% 37.3MB ± 0% -2.58% (p=0.000 n=499+497) Unicode 29.1MB ± 0% 29.1MB ± 0% -0.03% (p=0.000 n=500+493) GoTypes 116MB ± 0% 115MB ± 0% -0.65% (p=0.000 n=498+499) Compiler 492MB ± 0% 487MB ± 0% -1.00% (p=0.000 n=497+498) name old allocs/op new allocs/op delta Template 364k ± 0% 360k ± 0% -1.15% (p=0.000 n=499+499) Unicode 336k ± 0% 336k ± 0% -0.01% (p=0.000 n=500+493) GoTypes 1.16M ± 0% 1.16M ± 0% -0.30% (p=0.000 n=499+499) Compiler 4.54M ± 0% 4.51M ± 0% -0.58% (p=0.000 n=494+495) Passes toolstash-check -gcflags=-dwarf=false. Changes DWARF output because position information is now tracked more precisely for function parameters. Change-Id: Ib8077d70d564cc448c5e4290baceab3a4396d712 Reviewed-on: https://go-review.googlesource.com/108217 Run-TryBot: Matthew Dempsky <mdempsky@google.com> TryBot-Result: Gobot Gobot <gobot@golang.org> Reviewed-by: Robert Griesemer <gri@golang.org>
1849 lines
41 KiB
Go
1849 lines
41 KiB
Go
// Copyright 2011 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 gc
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import (
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"cmd/compile/internal/types"
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"fmt"
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"strconv"
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"strings"
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"unicode/utf8"
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)
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// A FmtFlag value is a set of flags (or 0).
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// They control how the Xconv functions format their values.
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// See the respective function's documentation for details.
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type FmtFlag int
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const ( // fmt.Format flag/prec or verb
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FmtLeft FmtFlag = 1 << iota // '-'
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FmtSharp // '#'
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FmtSign // '+'
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FmtUnsigned // internal use only (historic: u flag)
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FmtShort // verb == 'S' (historic: h flag)
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FmtLong // verb == 'L' (historic: l flag)
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FmtComma // '.' (== hasPrec) (historic: , flag)
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FmtByte // '0' (historic: hh flag)
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)
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// fmtFlag computes the (internal) FmtFlag
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// value given the fmt.State and format verb.
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func fmtFlag(s fmt.State, verb rune) FmtFlag {
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var flag FmtFlag
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if s.Flag('-') {
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flag |= FmtLeft
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}
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if s.Flag('#') {
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flag |= FmtSharp
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}
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if s.Flag('+') {
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flag |= FmtSign
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}
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if s.Flag(' ') {
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Fatalf("FmtUnsigned in format string")
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}
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if _, ok := s.Precision(); ok {
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flag |= FmtComma
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}
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if s.Flag('0') {
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flag |= FmtByte
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}
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switch verb {
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case 'S':
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flag |= FmtShort
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case 'L':
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flag |= FmtLong
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}
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return flag
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}
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// Format conversions:
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// TODO(gri) verify these; eliminate those not used anymore
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//
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// %v Op Node opcodes
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// Flags: #: print Go syntax (automatic unless mode == FDbg)
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//
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// %j *Node Node details
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// Flags: 0: suppresses things not relevant until walk
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//
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// %v *Val Constant values
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//
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// %v *types.Sym Symbols
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// %S unqualified identifier in any mode
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// Flags: +,- #: mode (see below)
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// 0: in export mode: unqualified identifier if exported, qualified if not
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//
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// %v *types.Type Types
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// %S omit "func" and receiver in function types
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// %L definition instead of name.
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// Flags: +,- #: mode (see below)
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// ' ' (only in -/Sym mode) print type identifiers wit package name instead of prefix.
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//
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// %v *Node Nodes
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// %S (only in +/debug mode) suppress recursion
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// %L (only in Error mode) print "foo (type Bar)"
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// Flags: +,- #: mode (see below)
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//
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// %v Nodes Node lists
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// Flags: those of *Node
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// .: separate items with ',' instead of ';'
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// *types.Sym, *types.Type, and *Node types use the flags below to set the format mode
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const (
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FErr = iota
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FDbg
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FTypeId
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FTypeIdName // same as FTypeId, but use package name instead of prefix
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)
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// The mode flags '+', '-', and '#' are sticky; they persist through
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// recursions of *Node, *types.Type, and *types.Sym values. The ' ' flag is
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// sticky only on *types.Type recursions and only used in %-/*types.Sym mode.
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//
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// Example: given a *types.Sym: %+v %#v %-v print an identifier properly qualified for debug/export/internal mode
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// Useful format combinations:
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// TODO(gri): verify these
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//
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// *Node, Nodes:
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// %+v multiline recursive debug dump of *Node/Nodes
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// %+S non-recursive debug dump
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//
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// *Node:
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// %#v Go format
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// %L "foo (type Bar)" for error messages
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//
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// *types.Type:
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// %#v Go format
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// %#L type definition instead of name
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// %#S omit"func" and receiver in function signature
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//
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// %-v type identifiers
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// %-S type identifiers without "func" and arg names in type signatures (methodsym)
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// %- v type identifiers with package name instead of prefix (typesym, dcommontype, typehash)
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// update returns the results of applying f to mode.
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func (f FmtFlag) update(mode fmtMode) (FmtFlag, fmtMode) {
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switch {
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case f&FmtSign != 0:
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mode = FDbg
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case f&FmtSharp != 0:
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// ignore (textual export format no longer supported)
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case f&FmtUnsigned != 0:
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mode = FTypeIdName
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case f&FmtLeft != 0:
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mode = FTypeId
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}
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f &^= FmtSharp | FmtLeft | FmtSign
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return f, mode
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}
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var goopnames = []string{
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OADDR: "&",
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OADD: "+",
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OADDSTR: "+",
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OALIGNOF: "unsafe.Alignof",
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OANDAND: "&&",
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OANDNOT: "&^",
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OAND: "&",
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OAPPEND: "append",
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OAS: "=",
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OAS2: "=",
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OBREAK: "break",
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OCALL: "function call", // not actual syntax
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OCAP: "cap",
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OCASE: "case",
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OCLOSE: "close",
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OCOMPLEX: "complex",
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OCOM: "^",
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OCONTINUE: "continue",
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OCOPY: "copy",
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ODELETE: "delete",
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ODEFER: "defer",
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ODIV: "/",
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OEQ: "==",
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OFALL: "fallthrough",
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OFOR: "for",
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OFORUNTIL: "foruntil", // not actual syntax; used to avoid off-end pointer live on backedge.892
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OGE: ">=",
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OGOTO: "goto",
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OGT: ">",
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OIF: "if",
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OIMAG: "imag",
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OIND: "*",
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OLEN: "len",
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OLE: "<=",
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OLSH: "<<",
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OLT: "<",
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OMAKE: "make",
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OMINUS: "-",
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OMOD: "%",
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OMUL: "*",
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ONEW: "new",
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ONE: "!=",
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ONOT: "!",
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OOFFSETOF: "unsafe.Offsetof",
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OOROR: "||",
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OOR: "|",
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OPANIC: "panic",
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OPLUS: "+",
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OPRINTN: "println",
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OPRINT: "print",
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ORANGE: "range",
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OREAL: "real",
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ORECV: "<-",
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ORECOVER: "recover",
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ORETURN: "return",
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ORSH: ">>",
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OSELECT: "select",
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OSEND: "<-",
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OSIZEOF: "unsafe.Sizeof",
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OSUB: "-",
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OSWITCH: "switch",
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OXOR: "^",
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}
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func (o Op) GoString() string {
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return fmt.Sprintf("%#v", o)
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}
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func (o Op) format(s fmt.State, verb rune, mode fmtMode) {
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switch verb {
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case 'v':
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o.oconv(s, fmtFlag(s, verb), mode)
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default:
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fmt.Fprintf(s, "%%!%c(Op=%d)", verb, int(o))
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}
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}
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func (o Op) oconv(s fmt.State, flag FmtFlag, mode fmtMode) {
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if flag&FmtSharp != 0 || mode != FDbg {
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if int(o) < len(goopnames) && goopnames[o] != "" {
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fmt.Fprint(s, goopnames[o])
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return
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}
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}
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// 'o.String()' instead of just 'o' to avoid infinite recursion
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fmt.Fprint(s, o.String())
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}
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type (
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fmtMode int
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fmtNodeErr Node
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fmtNodeDbg Node
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fmtNodeTypeId Node
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fmtNodeTypeIdName Node
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fmtOpErr Op
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fmtOpDbg Op
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fmtOpTypeId Op
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fmtOpTypeIdName Op
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fmtTypeErr types.Type
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fmtTypeDbg types.Type
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fmtTypeTypeId types.Type
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fmtTypeTypeIdName types.Type
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fmtSymErr types.Sym
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fmtSymDbg types.Sym
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fmtSymTypeId types.Sym
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fmtSymTypeIdName types.Sym
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fmtNodesErr Nodes
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fmtNodesDbg Nodes
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fmtNodesTypeId Nodes
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fmtNodesTypeIdName Nodes
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)
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func (n *fmtNodeErr) Format(s fmt.State, verb rune) { (*Node)(n).format(s, verb, FErr) }
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func (n *fmtNodeDbg) Format(s fmt.State, verb rune) { (*Node)(n).format(s, verb, FDbg) }
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func (n *fmtNodeTypeId) Format(s fmt.State, verb rune) { (*Node)(n).format(s, verb, FTypeId) }
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func (n *fmtNodeTypeIdName) Format(s fmt.State, verb rune) { (*Node)(n).format(s, verb, FTypeIdName) }
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func (n *Node) Format(s fmt.State, verb rune) { n.format(s, verb, FErr) }
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func (o fmtOpErr) Format(s fmt.State, verb rune) { Op(o).format(s, verb, FErr) }
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func (o fmtOpDbg) Format(s fmt.State, verb rune) { Op(o).format(s, verb, FDbg) }
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func (o fmtOpTypeId) Format(s fmt.State, verb rune) { Op(o).format(s, verb, FTypeId) }
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func (o fmtOpTypeIdName) Format(s fmt.State, verb rune) { Op(o).format(s, verb, FTypeIdName) }
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func (o Op) Format(s fmt.State, verb rune) { o.format(s, verb, FErr) }
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func (t *fmtTypeErr) Format(s fmt.State, verb rune) { typeFormat((*types.Type)(t), s, verb, FErr) }
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func (t *fmtTypeDbg) Format(s fmt.State, verb rune) { typeFormat((*types.Type)(t), s, verb, FDbg) }
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func (t *fmtTypeTypeId) Format(s fmt.State, verb rune) { typeFormat((*types.Type)(t), s, verb, FTypeId) }
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func (t *fmtTypeTypeIdName) Format(s fmt.State, verb rune) {
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typeFormat((*types.Type)(t), s, verb, FTypeIdName)
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}
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// func (t *types.Type) Format(s fmt.State, verb rune) // in package types
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func (y *fmtSymErr) Format(s fmt.State, verb rune) { symFormat((*types.Sym)(y), s, verb, FErr) }
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func (y *fmtSymDbg) Format(s fmt.State, verb rune) { symFormat((*types.Sym)(y), s, verb, FDbg) }
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func (y *fmtSymTypeId) Format(s fmt.State, verb rune) { symFormat((*types.Sym)(y), s, verb, FTypeId) }
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func (y *fmtSymTypeIdName) Format(s fmt.State, verb rune) {
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symFormat((*types.Sym)(y), s, verb, FTypeIdName)
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}
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// func (y *types.Sym) Format(s fmt.State, verb rune) // in package types { y.format(s, verb, FErr) }
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func (n fmtNodesErr) Format(s fmt.State, verb rune) { (Nodes)(n).format(s, verb, FErr) }
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func (n fmtNodesDbg) Format(s fmt.State, verb rune) { (Nodes)(n).format(s, verb, FDbg) }
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func (n fmtNodesTypeId) Format(s fmt.State, verb rune) { (Nodes)(n).format(s, verb, FTypeId) }
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func (n fmtNodesTypeIdName) Format(s fmt.State, verb rune) { (Nodes)(n).format(s, verb, FTypeIdName) }
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func (n Nodes) Format(s fmt.State, verb rune) { n.format(s, verb, FErr) }
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func (m fmtMode) Fprintf(s fmt.State, format string, args ...interface{}) {
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m.prepareArgs(args)
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fmt.Fprintf(s, format, args...)
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}
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func (m fmtMode) Sprintf(format string, args ...interface{}) string {
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m.prepareArgs(args)
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return fmt.Sprintf(format, args...)
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}
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func (m fmtMode) Sprint(args ...interface{}) string {
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m.prepareArgs(args)
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return fmt.Sprint(args...)
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}
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func (m fmtMode) prepareArgs(args []interface{}) {
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switch m {
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case FErr:
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for i, arg := range args {
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switch arg := arg.(type) {
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case Op:
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args[i] = fmtOpErr(arg)
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case *Node:
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args[i] = (*fmtNodeErr)(arg)
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case *types.Type:
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args[i] = (*fmtTypeErr)(arg)
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case *types.Sym:
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args[i] = (*fmtSymErr)(arg)
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case Nodes:
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args[i] = fmtNodesErr(arg)
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case Val, int32, int64, string, types.EType:
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// OK: printing these types doesn't depend on mode
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default:
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Fatalf("mode.prepareArgs type %T", arg)
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}
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}
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case FDbg:
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for i, arg := range args {
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switch arg := arg.(type) {
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case Op:
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args[i] = fmtOpDbg(arg)
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case *Node:
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args[i] = (*fmtNodeDbg)(arg)
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case *types.Type:
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args[i] = (*fmtTypeDbg)(arg)
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case *types.Sym:
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args[i] = (*fmtSymDbg)(arg)
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case Nodes:
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args[i] = fmtNodesDbg(arg)
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case Val, int32, int64, string, types.EType:
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// OK: printing these types doesn't depend on mode
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default:
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Fatalf("mode.prepareArgs type %T", arg)
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}
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}
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case FTypeId:
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for i, arg := range args {
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switch arg := arg.(type) {
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case Op:
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args[i] = fmtOpTypeId(arg)
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case *Node:
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args[i] = (*fmtNodeTypeId)(arg)
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case *types.Type:
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args[i] = (*fmtTypeTypeId)(arg)
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case *types.Sym:
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args[i] = (*fmtSymTypeId)(arg)
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case Nodes:
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args[i] = fmtNodesTypeId(arg)
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case Val, int32, int64, string, types.EType:
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// OK: printing these types doesn't depend on mode
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default:
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Fatalf("mode.prepareArgs type %T", arg)
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}
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}
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case FTypeIdName:
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for i, arg := range args {
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switch arg := arg.(type) {
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case Op:
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args[i] = fmtOpTypeIdName(arg)
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case *Node:
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args[i] = (*fmtNodeTypeIdName)(arg)
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case *types.Type:
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args[i] = (*fmtTypeTypeIdName)(arg)
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case *types.Sym:
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args[i] = (*fmtSymTypeIdName)(arg)
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case Nodes:
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args[i] = fmtNodesTypeIdName(arg)
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case Val, int32, int64, string, types.EType:
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// OK: printing these types doesn't depend on mode
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default:
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Fatalf("mode.prepareArgs type %T", arg)
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}
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}
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default:
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Fatalf("mode.prepareArgs mode %d", m)
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}
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}
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func (n *Node) format(s fmt.State, verb rune, mode fmtMode) {
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switch verb {
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case 'v', 'S', 'L':
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n.nconv(s, fmtFlag(s, verb), mode)
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case 'j':
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n.jconv(s, fmtFlag(s, verb))
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default:
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fmt.Fprintf(s, "%%!%c(*Node=%p)", verb, n)
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}
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}
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// *Node details
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func (n *Node) jconv(s fmt.State, flag FmtFlag) {
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c := flag & FmtShort
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if c == 0 && n.Addable() {
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fmt.Fprintf(s, " a(%v)", n.Addable())
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}
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if c == 0 && n.Name != nil && n.Name.Vargen != 0 {
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fmt.Fprintf(s, " g(%d)", n.Name.Vargen)
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}
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if n.Pos.IsKnown() {
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fmt.Fprintf(s, " l(%d)", n.Pos.Line())
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}
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if c == 0 && n.Xoffset != BADWIDTH {
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fmt.Fprintf(s, " x(%d)", n.Xoffset)
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}
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if n.Class() != 0 {
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fmt.Fprintf(s, " class(%v)", n.Class())
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}
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if n.Colas() {
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fmt.Fprintf(s, " colas(%v)", n.Colas())
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}
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switch n.Esc {
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case EscUnknown:
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break
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case EscHeap:
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fmt.Fprint(s, " esc(h)")
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case EscNone:
|
|
fmt.Fprint(s, " esc(no)")
|
|
|
|
case EscNever:
|
|
if c == 0 {
|
|
fmt.Fprint(s, " esc(N)")
|
|
}
|
|
|
|
default:
|
|
fmt.Fprintf(s, " esc(%d)", n.Esc)
|
|
}
|
|
|
|
if e, ok := n.Opt().(*NodeEscState); ok && e.Loopdepth != 0 {
|
|
fmt.Fprintf(s, " ld(%d)", e.Loopdepth)
|
|
}
|
|
|
|
if c == 0 && n.Typecheck() != 0 {
|
|
fmt.Fprintf(s, " tc(%d)", n.Typecheck())
|
|
}
|
|
|
|
if n.Isddd() {
|
|
fmt.Fprintf(s, " isddd(%v)", n.Isddd())
|
|
}
|
|
|
|
if n.Implicit() {
|
|
fmt.Fprintf(s, " implicit(%v)", n.Implicit())
|
|
}
|
|
|
|
if n.Embedded() {
|
|
fmt.Fprintf(s, " embedded")
|
|
}
|
|
|
|
if n.Addrtaken() {
|
|
fmt.Fprint(s, " addrtaken")
|
|
}
|
|
|
|
if n.Assigned() {
|
|
fmt.Fprint(s, " assigned")
|
|
}
|
|
if n.Bounded() {
|
|
fmt.Fprint(s, " bounded")
|
|
}
|
|
if n.NonNil() {
|
|
fmt.Fprint(s, " nonnil")
|
|
}
|
|
|
|
if c == 0 && n.HasCall() {
|
|
fmt.Fprint(s, " hascall")
|
|
}
|
|
|
|
if c == 0 && n.Name != nil && n.Name.Used() {
|
|
fmt.Fprint(s, " used")
|
|
}
|
|
}
|
|
|
|
func (v Val) Format(s fmt.State, verb rune) {
|
|
switch verb {
|
|
case 'v':
|
|
v.vconv(s, fmtFlag(s, verb))
|
|
|
|
default:
|
|
fmt.Fprintf(s, "%%!%c(Val=%T)", verb, v)
|
|
}
|
|
}
|
|
|
|
func (v Val) vconv(s fmt.State, flag FmtFlag) {
|
|
switch u := v.U.(type) {
|
|
case *Mpint:
|
|
if !u.Rune {
|
|
if flag&FmtSharp != 0 {
|
|
fmt.Fprint(s, bconv(u, FmtSharp))
|
|
return
|
|
}
|
|
fmt.Fprint(s, bconv(u, 0))
|
|
return
|
|
}
|
|
|
|
switch x := u.Int64(); {
|
|
case ' ' <= x && x < utf8.RuneSelf && x != '\\' && x != '\'':
|
|
fmt.Fprintf(s, "'%c'", int(x))
|
|
|
|
case 0 <= x && x < 1<<16:
|
|
fmt.Fprintf(s, "'\\u%04x'", uint(int(x)))
|
|
|
|
case 0 <= x && x <= utf8.MaxRune:
|
|
fmt.Fprintf(s, "'\\U%08x'", uint64(x))
|
|
|
|
default:
|
|
fmt.Fprintf(s, "('\\x00' + %v)", u)
|
|
}
|
|
|
|
case *Mpflt:
|
|
if flag&FmtSharp != 0 {
|
|
fmt.Fprint(s, fconv(u, 0))
|
|
return
|
|
}
|
|
fmt.Fprint(s, fconv(u, FmtSharp))
|
|
return
|
|
|
|
case *Mpcplx:
|
|
switch {
|
|
case flag&FmtSharp != 0:
|
|
fmt.Fprintf(s, "(%v+%vi)", &u.Real, &u.Imag)
|
|
|
|
case v.U.(*Mpcplx).Real.CmpFloat64(0) == 0:
|
|
fmt.Fprintf(s, "%vi", fconv(&u.Imag, FmtSharp))
|
|
|
|
case v.U.(*Mpcplx).Imag.CmpFloat64(0) == 0:
|
|
fmt.Fprint(s, fconv(&u.Real, FmtSharp))
|
|
|
|
case v.U.(*Mpcplx).Imag.CmpFloat64(0) < 0:
|
|
fmt.Fprintf(s, "(%v%vi)", fconv(&u.Real, FmtSharp), fconv(&u.Imag, FmtSharp))
|
|
|
|
default:
|
|
fmt.Fprintf(s, "(%v+%vi)", fconv(&u.Real, FmtSharp), fconv(&u.Imag, FmtSharp))
|
|
}
|
|
|
|
case string:
|
|
fmt.Fprint(s, strconv.Quote(u))
|
|
|
|
case bool:
|
|
fmt.Fprint(s, u)
|
|
|
|
case *NilVal:
|
|
fmt.Fprint(s, "nil")
|
|
|
|
default:
|
|
fmt.Fprintf(s, "<ctype=%d>", v.Ctype())
|
|
}
|
|
}
|
|
|
|
/*
|
|
s%,%,\n%g
|
|
s%\n+%\n%g
|
|
s%^[ ]*T%%g
|
|
s%,.*%%g
|
|
s%.+% [T&] = "&",%g
|
|
s%^ ........*\]%&~%g
|
|
s%~ %%g
|
|
*/
|
|
|
|
func symfmt(s *types.Sym, flag FmtFlag, mode fmtMode) string {
|
|
if s.Pkg != nil && flag&FmtShort == 0 {
|
|
switch mode {
|
|
case FErr: // This is for the user
|
|
if s.Pkg == builtinpkg || s.Pkg == localpkg {
|
|
return s.Name
|
|
}
|
|
|
|
// If the name was used by multiple packages, display the full path,
|
|
if s.Pkg.Name != "" && numImport[s.Pkg.Name] > 1 {
|
|
return fmt.Sprintf("%q.%s", s.Pkg.Path, s.Name)
|
|
}
|
|
return s.Pkg.Name + "." + s.Name
|
|
|
|
case FDbg:
|
|
return s.Pkg.Name + "." + s.Name
|
|
|
|
case FTypeIdName:
|
|
return s.Pkg.Name + "." + s.Name // dcommontype, typehash
|
|
|
|
case FTypeId:
|
|
return s.Pkg.Prefix + "." + s.Name // (methodsym), typesym, weaksym
|
|
}
|
|
}
|
|
|
|
if flag&FmtByte != 0 {
|
|
// FmtByte (hh) implies FmtShort (h)
|
|
// skip leading "type." in method name
|
|
name := s.Name
|
|
if i := strings.LastIndex(name, "."); i >= 0 {
|
|
name = name[i+1:]
|
|
}
|
|
|
|
if mode == FDbg {
|
|
return fmt.Sprintf("@%q.%s", s.Pkg.Path, name)
|
|
}
|
|
|
|
return name
|
|
}
|
|
|
|
return s.Name
|
|
}
|
|
|
|
var basicnames = []string{
|
|
TINT: "int",
|
|
TUINT: "uint",
|
|
TINT8: "int8",
|
|
TUINT8: "uint8",
|
|
TINT16: "int16",
|
|
TUINT16: "uint16",
|
|
TINT32: "int32",
|
|
TUINT32: "uint32",
|
|
TINT64: "int64",
|
|
TUINT64: "uint64",
|
|
TUINTPTR: "uintptr",
|
|
TFLOAT32: "float32",
|
|
TFLOAT64: "float64",
|
|
TCOMPLEX64: "complex64",
|
|
TCOMPLEX128: "complex128",
|
|
TBOOL: "bool",
|
|
TANY: "any",
|
|
TSTRING: "string",
|
|
TNIL: "nil",
|
|
TIDEAL: "untyped number",
|
|
TBLANK: "blank",
|
|
}
|
|
|
|
func typefmt(t *types.Type, flag FmtFlag, mode fmtMode, depth int) string {
|
|
if t == nil {
|
|
return "<T>"
|
|
}
|
|
|
|
if t == types.Bytetype || t == types.Runetype {
|
|
// in %-T mode collapse rune and byte with their originals.
|
|
switch mode {
|
|
case FTypeIdName, FTypeId:
|
|
t = types.Types[t.Etype]
|
|
default:
|
|
return sconv(t.Sym, FmtShort, mode)
|
|
}
|
|
}
|
|
|
|
if t == types.Errortype {
|
|
return "error"
|
|
}
|
|
|
|
// Unless the 'l' flag was specified, if the type has a name, just print that name.
|
|
if flag&FmtLong == 0 && t.Sym != nil && t != types.Types[t.Etype] {
|
|
switch mode {
|
|
case FTypeId, FTypeIdName:
|
|
if flag&FmtShort != 0 {
|
|
if t.Vargen != 0 {
|
|
return mode.Sprintf("%v·%d", sconv(t.Sym, FmtShort, mode), t.Vargen)
|
|
}
|
|
return sconv(t.Sym, FmtShort, mode)
|
|
}
|
|
|
|
if mode == FTypeIdName {
|
|
return sconv(t.Sym, FmtUnsigned, mode)
|
|
}
|
|
|
|
if t.Sym.Pkg == localpkg && t.Vargen != 0 {
|
|
return mode.Sprintf("%v·%d", t.Sym, t.Vargen)
|
|
}
|
|
}
|
|
|
|
return smodeString(t.Sym, mode)
|
|
}
|
|
|
|
if int(t.Etype) < len(basicnames) && basicnames[t.Etype] != "" {
|
|
name := basicnames[t.Etype]
|
|
if t == types.Idealbool || t == types.Idealstring {
|
|
name = "untyped " + name
|
|
}
|
|
return name
|
|
}
|
|
|
|
if mode == FDbg {
|
|
return t.Etype.String() + "-" + typefmt(t, flag, FErr, depth)
|
|
}
|
|
|
|
switch t.Etype {
|
|
case TPTR32, TPTR64:
|
|
switch mode {
|
|
case FTypeId, FTypeIdName:
|
|
if flag&FmtShort != 0 {
|
|
return "*" + tconv(t.Elem(), FmtShort, mode, depth)
|
|
}
|
|
}
|
|
return "*" + tmodeString(t.Elem(), mode, depth)
|
|
|
|
case TARRAY:
|
|
if t.IsDDDArray() {
|
|
return "[...]" + tmodeString(t.Elem(), mode, depth)
|
|
}
|
|
return "[" + strconv.FormatInt(t.NumElem(), 10) + "]" + tmodeString(t.Elem(), mode, depth)
|
|
|
|
case TSLICE:
|
|
return "[]" + tmodeString(t.Elem(), mode, depth)
|
|
|
|
case TCHAN:
|
|
switch t.ChanDir() {
|
|
case types.Crecv:
|
|
return "<-chan " + tmodeString(t.Elem(), mode, depth)
|
|
|
|
case types.Csend:
|
|
return "chan<- " + tmodeString(t.Elem(), mode, depth)
|
|
}
|
|
|
|
if t.Elem() != nil && t.Elem().IsChan() && t.Elem().Sym == nil && t.Elem().ChanDir() == types.Crecv {
|
|
return "chan (" + tmodeString(t.Elem(), mode, depth) + ")"
|
|
}
|
|
return "chan " + tmodeString(t.Elem(), mode, depth)
|
|
|
|
case TMAP:
|
|
return "map[" + tmodeString(t.Key(), mode, depth) + "]" + tmodeString(t.Val(), mode, depth)
|
|
|
|
case TINTER:
|
|
if t.IsEmptyInterface() {
|
|
return "interface {}"
|
|
}
|
|
buf := make([]byte, 0, 64)
|
|
buf = append(buf, "interface {"...)
|
|
for i, f := range t.Fields().Slice() {
|
|
if i != 0 {
|
|
buf = append(buf, ';')
|
|
}
|
|
buf = append(buf, ' ')
|
|
switch {
|
|
case f.Sym == nil:
|
|
// Check first that a symbol is defined for this type.
|
|
// Wrong interface definitions may have types lacking a symbol.
|
|
break
|
|
case types.IsExported(f.Sym.Name):
|
|
buf = append(buf, sconv(f.Sym, FmtShort, mode)...)
|
|
default:
|
|
buf = append(buf, sconv(f.Sym, FmtUnsigned, mode)...)
|
|
}
|
|
buf = append(buf, tconv(f.Type, FmtShort, mode, depth)...)
|
|
}
|
|
if t.NumFields() != 0 {
|
|
buf = append(buf, ' ')
|
|
}
|
|
buf = append(buf, '}')
|
|
return string(buf)
|
|
|
|
case TFUNC:
|
|
buf := make([]byte, 0, 64)
|
|
if flag&FmtShort != 0 {
|
|
// no leading func
|
|
} else {
|
|
if t.Recv() != nil {
|
|
buf = append(buf, "method"...)
|
|
buf = append(buf, tmodeString(t.Recvs(), mode, depth)...)
|
|
buf = append(buf, ' ')
|
|
}
|
|
buf = append(buf, "func"...)
|
|
}
|
|
buf = append(buf, tmodeString(t.Params(), mode, depth)...)
|
|
|
|
switch t.NumResults() {
|
|
case 0:
|
|
// nothing to do
|
|
|
|
case 1:
|
|
buf = append(buf, ' ')
|
|
buf = append(buf, tmodeString(t.Results().Field(0).Type, mode, depth)...) // struct->field->field's type
|
|
|
|
default:
|
|
buf = append(buf, ' ')
|
|
buf = append(buf, tmodeString(t.Results(), mode, depth)...)
|
|
}
|
|
return string(buf)
|
|
|
|
case TSTRUCT:
|
|
if m := t.StructType().Map; m != nil {
|
|
mt := m.MapType()
|
|
// Format the bucket struct for map[x]y as map.bucket[x]y.
|
|
// This avoids a recursive print that generates very long names.
|
|
if mt.Bucket == t {
|
|
return "map.bucket[" + tmodeString(m.Key(), mode, depth) + "]" + tmodeString(m.Val(), mode, depth)
|
|
}
|
|
|
|
if mt.Hmap == t {
|
|
return "map.hdr[" + tmodeString(m.Key(), mode, depth) + "]" + tmodeString(m.Val(), mode, depth)
|
|
}
|
|
|
|
if mt.Hiter == t {
|
|
return "map.iter[" + tmodeString(m.Key(), mode, depth) + "]" + tmodeString(m.Val(), mode, depth)
|
|
}
|
|
|
|
Fatalf("unknown internal map type")
|
|
}
|
|
|
|
buf := make([]byte, 0, 64)
|
|
if t.IsFuncArgStruct() {
|
|
buf = append(buf, '(')
|
|
var flag1 FmtFlag
|
|
switch mode {
|
|
case FTypeId, FTypeIdName, FErr:
|
|
// no argument names on function signature, and no "noescape"/"nosplit" tags
|
|
flag1 = FmtShort
|
|
}
|
|
for i, f := range t.Fields().Slice() {
|
|
if i != 0 {
|
|
buf = append(buf, ", "...)
|
|
}
|
|
buf = append(buf, fldconv(f, flag1, mode, depth)...)
|
|
}
|
|
buf = append(buf, ')')
|
|
} else {
|
|
buf = append(buf, "struct {"...)
|
|
for i, f := range t.Fields().Slice() {
|
|
if i != 0 {
|
|
buf = append(buf, ';')
|
|
}
|
|
buf = append(buf, ' ')
|
|
buf = append(buf, fldconv(f, FmtLong, mode, depth)...)
|
|
}
|
|
if t.NumFields() != 0 {
|
|
buf = append(buf, ' ')
|
|
}
|
|
buf = append(buf, '}')
|
|
}
|
|
return string(buf)
|
|
|
|
case TFORW:
|
|
if t.Sym != nil {
|
|
return "undefined " + smodeString(t.Sym, mode)
|
|
}
|
|
return "undefined"
|
|
|
|
case TUNSAFEPTR:
|
|
return "unsafe.Pointer"
|
|
|
|
case TDDDFIELD:
|
|
return mode.Sprintf("%v <%v> %v", t.Etype, t.Sym, t.DDDField())
|
|
|
|
case Txxx:
|
|
return "Txxx"
|
|
}
|
|
|
|
// Don't know how to handle - fall back to detailed prints.
|
|
return mode.Sprintf("%v <%v>", t.Etype, t.Sym)
|
|
}
|
|
|
|
// Statements which may be rendered with a simplestmt as init.
|
|
func stmtwithinit(op Op) bool {
|
|
switch op {
|
|
case OIF, OFOR, OFORUNTIL, OSWITCH:
|
|
return true
|
|
}
|
|
|
|
return false
|
|
}
|
|
|
|
func (n *Node) stmtfmt(s fmt.State, mode fmtMode) {
|
|
// some statements allow for an init, but at most one,
|
|
// but we may have an arbitrary number added, eg by typecheck
|
|
// and inlining. If it doesn't fit the syntax, emit an enclosing
|
|
// block starting with the init statements.
|
|
|
|
// if we can just say "for" n->ninit; ... then do so
|
|
simpleinit := n.Ninit.Len() == 1 && n.Ninit.First().Ninit.Len() == 0 && stmtwithinit(n.Op)
|
|
|
|
// otherwise, print the inits as separate statements
|
|
complexinit := n.Ninit.Len() != 0 && !simpleinit && (mode != FErr)
|
|
|
|
// but if it was for if/for/switch, put in an extra surrounding block to limit the scope
|
|
extrablock := complexinit && stmtwithinit(n.Op)
|
|
|
|
if extrablock {
|
|
fmt.Fprint(s, "{")
|
|
}
|
|
|
|
if complexinit {
|
|
mode.Fprintf(s, " %v; ", n.Ninit)
|
|
}
|
|
|
|
switch n.Op {
|
|
case ODCL:
|
|
mode.Fprintf(s, "var %v %v", n.Left.Sym, n.Left.Type)
|
|
|
|
case ODCLFIELD:
|
|
if n.Sym != nil {
|
|
mode.Fprintf(s, "%v %v", n.Sym, n.Left)
|
|
} else {
|
|
mode.Fprintf(s, "%v", n.Left)
|
|
}
|
|
|
|
// Don't export "v = <N>" initializing statements, hope they're always
|
|
// preceded by the DCL which will be re-parsed and typechecked to reproduce
|
|
// the "v = <N>" again.
|
|
case OAS:
|
|
if n.Colas() && !complexinit {
|
|
mode.Fprintf(s, "%v := %v", n.Left, n.Right)
|
|
} else {
|
|
mode.Fprintf(s, "%v = %v", n.Left, n.Right)
|
|
}
|
|
|
|
case OASOP:
|
|
if n.Implicit() {
|
|
if n.SubOp() == OADD {
|
|
mode.Fprintf(s, "%v++", n.Left)
|
|
} else {
|
|
mode.Fprintf(s, "%v--", n.Left)
|
|
}
|
|
break
|
|
}
|
|
|
|
mode.Fprintf(s, "%v %#v= %v", n.Left, n.SubOp(), n.Right)
|
|
|
|
case OAS2:
|
|
if n.Colas() && !complexinit {
|
|
mode.Fprintf(s, "%.v := %.v", n.List, n.Rlist)
|
|
break
|
|
}
|
|
fallthrough
|
|
|
|
case OAS2DOTTYPE, OAS2FUNC, OAS2MAPR, OAS2RECV:
|
|
mode.Fprintf(s, "%.v = %.v", n.List, n.Rlist)
|
|
|
|
case ORETURN:
|
|
mode.Fprintf(s, "return %.v", n.List)
|
|
|
|
case ORETJMP:
|
|
mode.Fprintf(s, "retjmp %v", n.Sym)
|
|
|
|
case OPROC:
|
|
mode.Fprintf(s, "go %v", n.Left)
|
|
|
|
case ODEFER:
|
|
mode.Fprintf(s, "defer %v", n.Left)
|
|
|
|
case OIF:
|
|
if simpleinit {
|
|
mode.Fprintf(s, "if %v; %v { %v }", n.Ninit.First(), n.Left, n.Nbody)
|
|
} else {
|
|
mode.Fprintf(s, "if %v { %v }", n.Left, n.Nbody)
|
|
}
|
|
if n.Rlist.Len() != 0 {
|
|
mode.Fprintf(s, " else { %v }", n.Rlist)
|
|
}
|
|
|
|
case OFOR, OFORUNTIL:
|
|
opname := "for"
|
|
if n.Op == OFORUNTIL {
|
|
opname = "foruntil"
|
|
}
|
|
if mode == FErr { // TODO maybe only if FmtShort, same below
|
|
fmt.Fprintf(s, "%s loop", opname)
|
|
break
|
|
}
|
|
|
|
fmt.Fprint(s, opname)
|
|
if simpleinit {
|
|
mode.Fprintf(s, " %v;", n.Ninit.First())
|
|
} else if n.Right != nil {
|
|
fmt.Fprint(s, " ;")
|
|
}
|
|
|
|
if n.Left != nil {
|
|
mode.Fprintf(s, " %v", n.Left)
|
|
}
|
|
|
|
if n.Right != nil {
|
|
mode.Fprintf(s, "; %v", n.Right)
|
|
} else if simpleinit {
|
|
fmt.Fprint(s, ";")
|
|
}
|
|
|
|
mode.Fprintf(s, " { %v }", n.Nbody)
|
|
|
|
case ORANGE:
|
|
if mode == FErr {
|
|
fmt.Fprint(s, "for loop")
|
|
break
|
|
}
|
|
|
|
if n.List.Len() == 0 {
|
|
mode.Fprintf(s, "for range %v { %v }", n.Right, n.Nbody)
|
|
break
|
|
}
|
|
|
|
mode.Fprintf(s, "for %.v = range %v { %v }", n.List, n.Right, n.Nbody)
|
|
|
|
case OSELECT, OSWITCH:
|
|
if mode == FErr {
|
|
mode.Fprintf(s, "%v statement", n.Op)
|
|
break
|
|
}
|
|
|
|
mode.Fprintf(s, "%#v", n.Op)
|
|
if simpleinit {
|
|
mode.Fprintf(s, " %v;", n.Ninit.First())
|
|
}
|
|
if n.Left != nil {
|
|
mode.Fprintf(s, " %v ", n.Left)
|
|
}
|
|
|
|
mode.Fprintf(s, " { %v }", n.List)
|
|
|
|
case OXCASE:
|
|
if n.List.Len() != 0 {
|
|
mode.Fprintf(s, "case %.v", n.List)
|
|
} else {
|
|
fmt.Fprint(s, "default")
|
|
}
|
|
mode.Fprintf(s, ": %v", n.Nbody)
|
|
|
|
case OCASE:
|
|
switch {
|
|
case n.Left != nil:
|
|
// single element
|
|
mode.Fprintf(s, "case %v", n.Left)
|
|
case n.List.Len() > 0:
|
|
// range
|
|
if n.List.Len() != 2 {
|
|
Fatalf("bad OCASE list length %d", n.List.Len())
|
|
}
|
|
mode.Fprintf(s, "case %v..%v", n.List.First(), n.List.Second())
|
|
default:
|
|
fmt.Fprint(s, "default")
|
|
}
|
|
mode.Fprintf(s, ": %v", n.Nbody)
|
|
|
|
case OBREAK, OCONTINUE, OGOTO, OFALL:
|
|
if n.Left != nil {
|
|
mode.Fprintf(s, "%#v %v", n.Op, n.Left)
|
|
} else {
|
|
mode.Fprintf(s, "%#v", n.Op)
|
|
}
|
|
|
|
case OEMPTY:
|
|
break
|
|
|
|
case OLABEL:
|
|
mode.Fprintf(s, "%v: ", n.Left)
|
|
}
|
|
|
|
if extrablock {
|
|
fmt.Fprint(s, "}")
|
|
}
|
|
}
|
|
|
|
var opprec = []int{
|
|
OALIGNOF: 8,
|
|
OAPPEND: 8,
|
|
OARRAYBYTESTR: 8,
|
|
OARRAYLIT: 8,
|
|
OSLICELIT: 8,
|
|
OARRAYRUNESTR: 8,
|
|
OCALLFUNC: 8,
|
|
OCALLINTER: 8,
|
|
OCALLMETH: 8,
|
|
OCALL: 8,
|
|
OCAP: 8,
|
|
OCLOSE: 8,
|
|
OCONVIFACE: 8,
|
|
OCONVNOP: 8,
|
|
OCONV: 8,
|
|
OCOPY: 8,
|
|
ODELETE: 8,
|
|
OGETG: 8,
|
|
OLEN: 8,
|
|
OLITERAL: 8,
|
|
OMAKESLICE: 8,
|
|
OMAKE: 8,
|
|
OMAPLIT: 8,
|
|
ONAME: 8,
|
|
ONEW: 8,
|
|
ONONAME: 8,
|
|
OOFFSETOF: 8,
|
|
OPACK: 8,
|
|
OPANIC: 8,
|
|
OPAREN: 8,
|
|
OPRINTN: 8,
|
|
OPRINT: 8,
|
|
ORUNESTR: 8,
|
|
OSIZEOF: 8,
|
|
OSTRARRAYBYTE: 8,
|
|
OSTRARRAYRUNE: 8,
|
|
OSTRUCTLIT: 8,
|
|
OTARRAY: 8,
|
|
OTCHAN: 8,
|
|
OTFUNC: 8,
|
|
OTINTER: 8,
|
|
OTMAP: 8,
|
|
OTSTRUCT: 8,
|
|
OINDEXMAP: 8,
|
|
OINDEX: 8,
|
|
OSLICE: 8,
|
|
OSLICESTR: 8,
|
|
OSLICEARR: 8,
|
|
OSLICE3: 8,
|
|
OSLICE3ARR: 8,
|
|
ODOTINTER: 8,
|
|
ODOTMETH: 8,
|
|
ODOTPTR: 8,
|
|
ODOTTYPE2: 8,
|
|
ODOTTYPE: 8,
|
|
ODOT: 8,
|
|
OXDOT: 8,
|
|
OCALLPART: 8,
|
|
OPLUS: 7,
|
|
ONOT: 7,
|
|
OCOM: 7,
|
|
OMINUS: 7,
|
|
OADDR: 7,
|
|
OIND: 7,
|
|
ORECV: 7,
|
|
OMUL: 6,
|
|
ODIV: 6,
|
|
OMOD: 6,
|
|
OLSH: 6,
|
|
ORSH: 6,
|
|
OAND: 6,
|
|
OANDNOT: 6,
|
|
OADD: 5,
|
|
OSUB: 5,
|
|
OOR: 5,
|
|
OXOR: 5,
|
|
OEQ: 4,
|
|
OLT: 4,
|
|
OLE: 4,
|
|
OGE: 4,
|
|
OGT: 4,
|
|
ONE: 4,
|
|
OCMPSTR: 4,
|
|
OCMPIFACE: 4,
|
|
OSEND: 3,
|
|
OANDAND: 2,
|
|
OOROR: 1,
|
|
|
|
// Statements handled by stmtfmt
|
|
OAS: -1,
|
|
OAS2: -1,
|
|
OAS2DOTTYPE: -1,
|
|
OAS2FUNC: -1,
|
|
OAS2MAPR: -1,
|
|
OAS2RECV: -1,
|
|
OASOP: -1,
|
|
OBREAK: -1,
|
|
OCASE: -1,
|
|
OCONTINUE: -1,
|
|
ODCL: -1,
|
|
ODCLFIELD: -1,
|
|
ODEFER: -1,
|
|
OEMPTY: -1,
|
|
OFALL: -1,
|
|
OFOR: -1,
|
|
OFORUNTIL: -1,
|
|
OGOTO: -1,
|
|
OIF: -1,
|
|
OLABEL: -1,
|
|
OPROC: -1,
|
|
ORANGE: -1,
|
|
ORETURN: -1,
|
|
OSELECT: -1,
|
|
OSWITCH: -1,
|
|
OXCASE: -1,
|
|
|
|
OEND: 0,
|
|
}
|
|
|
|
func (n *Node) exprfmt(s fmt.State, prec int, mode fmtMode) {
|
|
for n != nil && n.Implicit() && (n.Op == OIND || n.Op == OADDR) {
|
|
n = n.Left
|
|
}
|
|
|
|
if n == nil {
|
|
fmt.Fprint(s, "<N>")
|
|
return
|
|
}
|
|
|
|
nprec := opprec[n.Op]
|
|
if n.Op == OTYPE && n.Sym != nil {
|
|
nprec = 8
|
|
}
|
|
|
|
if prec > nprec {
|
|
mode.Fprintf(s, "(%v)", n)
|
|
return
|
|
}
|
|
|
|
switch n.Op {
|
|
case OPAREN:
|
|
mode.Fprintf(s, "(%v)", n.Left)
|
|
|
|
case ODDDARG:
|
|
fmt.Fprint(s, "... argument")
|
|
|
|
case OLITERAL: // this is a bit of a mess
|
|
if mode == FErr {
|
|
if n.Orig != nil && n.Orig != n {
|
|
n.Orig.exprfmt(s, prec, mode)
|
|
return
|
|
}
|
|
if n.Sym != nil {
|
|
fmt.Fprint(s, smodeString(n.Sym, mode))
|
|
return
|
|
}
|
|
}
|
|
if n.Val().Ctype() == CTNIL && n.Orig != nil && n.Orig != n {
|
|
n.Orig.exprfmt(s, prec, mode)
|
|
return
|
|
}
|
|
if n.Type != nil && n.Type.Etype != TIDEAL && n.Type.Etype != TNIL && n.Type != types.Idealbool && n.Type != types.Idealstring {
|
|
// Need parens when type begins with what might
|
|
// be misinterpreted as a unary operator: * or <-.
|
|
if n.Type.IsPtr() || (n.Type.IsChan() && n.Type.ChanDir() == types.Crecv) {
|
|
mode.Fprintf(s, "(%v)(%v)", n.Type, n.Val())
|
|
return
|
|
} else {
|
|
mode.Fprintf(s, "%v(%v)", n.Type, n.Val())
|
|
return
|
|
}
|
|
}
|
|
|
|
mode.Fprintf(s, "%v", n.Val())
|
|
|
|
// Special case: name used as local variable in export.
|
|
// _ becomes ~b%d internally; print as _ for export
|
|
case ONAME:
|
|
if mode == FErr && n.Sym != nil && n.Sym.Name[0] == '~' && n.Sym.Name[1] == 'b' {
|
|
fmt.Fprint(s, "_")
|
|
return
|
|
}
|
|
fallthrough
|
|
case OPACK, ONONAME:
|
|
fmt.Fprint(s, smodeString(n.Sym, mode))
|
|
|
|
case OTYPE:
|
|
if n.Type == nil && n.Sym != nil {
|
|
fmt.Fprint(s, smodeString(n.Sym, mode))
|
|
return
|
|
}
|
|
mode.Fprintf(s, "%v", n.Type)
|
|
|
|
case OTARRAY:
|
|
if n.Left != nil {
|
|
mode.Fprintf(s, "[]%v", n.Left)
|
|
return
|
|
}
|
|
mode.Fprintf(s, "[]%v", n.Right) // happens before typecheck
|
|
|
|
case OTMAP:
|
|
mode.Fprintf(s, "map[%v]%v", n.Left, n.Right)
|
|
|
|
case OTCHAN:
|
|
switch n.TChanDir() {
|
|
case types.Crecv:
|
|
mode.Fprintf(s, "<-chan %v", n.Left)
|
|
|
|
case types.Csend:
|
|
mode.Fprintf(s, "chan<- %v", n.Left)
|
|
|
|
default:
|
|
if n.Left != nil && n.Left.Op == OTCHAN && n.Left.Sym == nil && n.Left.TChanDir() == types.Crecv {
|
|
mode.Fprintf(s, "chan (%v)", n.Left)
|
|
} else {
|
|
mode.Fprintf(s, "chan %v", n.Left)
|
|
}
|
|
}
|
|
|
|
case OTSTRUCT:
|
|
fmt.Fprint(s, "<struct>")
|
|
|
|
case OTINTER:
|
|
fmt.Fprint(s, "<inter>")
|
|
|
|
case OTFUNC:
|
|
fmt.Fprint(s, "<func>")
|
|
|
|
case OCLOSURE:
|
|
if mode == FErr {
|
|
fmt.Fprint(s, "func literal")
|
|
return
|
|
}
|
|
if n.Nbody.Len() != 0 {
|
|
mode.Fprintf(s, "%v { %v }", n.Type, n.Nbody)
|
|
return
|
|
}
|
|
mode.Fprintf(s, "%v { %v }", n.Type, n.Func.Closure.Nbody)
|
|
|
|
case OCOMPLIT:
|
|
ptrlit := n.Right != nil && n.Right.Implicit() && n.Right.Type != nil && n.Right.Type.IsPtr()
|
|
if mode == FErr {
|
|
if n.Right != nil && n.Right.Type != nil && !n.Implicit() {
|
|
if ptrlit {
|
|
mode.Fprintf(s, "&%v literal", n.Right.Type.Elem())
|
|
return
|
|
} else {
|
|
mode.Fprintf(s, "%v literal", n.Right.Type)
|
|
return
|
|
}
|
|
}
|
|
|
|
fmt.Fprint(s, "composite literal")
|
|
return
|
|
}
|
|
mode.Fprintf(s, "(%v{ %.v })", n.Right, n.List)
|
|
|
|
case OPTRLIT:
|
|
mode.Fprintf(s, "&%v", n.Left)
|
|
|
|
case OSTRUCTLIT, OARRAYLIT, OSLICELIT, OMAPLIT:
|
|
if mode == FErr {
|
|
mode.Fprintf(s, "%v literal", n.Type)
|
|
return
|
|
}
|
|
mode.Fprintf(s, "(%v{ %.v })", n.Type, n.List)
|
|
|
|
case OKEY:
|
|
if n.Left != nil && n.Right != nil {
|
|
mode.Fprintf(s, "%v:%v", n.Left, n.Right)
|
|
return
|
|
}
|
|
|
|
if n.Left == nil && n.Right != nil {
|
|
mode.Fprintf(s, ":%v", n.Right)
|
|
return
|
|
}
|
|
if n.Left != nil && n.Right == nil {
|
|
mode.Fprintf(s, "%v:", n.Left)
|
|
return
|
|
}
|
|
fmt.Fprint(s, ":")
|
|
|
|
case OSTRUCTKEY:
|
|
mode.Fprintf(s, "%v:%v", n.Sym, n.Left)
|
|
|
|
case OCALLPART:
|
|
n.Left.exprfmt(s, nprec, mode)
|
|
if n.Right == nil || n.Right.Sym == nil {
|
|
fmt.Fprint(s, ".<nil>")
|
|
return
|
|
}
|
|
mode.Fprintf(s, ".%0S", n.Right.Sym)
|
|
|
|
case OXDOT, ODOT, ODOTPTR, ODOTINTER, ODOTMETH:
|
|
n.Left.exprfmt(s, nprec, mode)
|
|
if n.Sym == nil {
|
|
fmt.Fprint(s, ".<nil>")
|
|
return
|
|
}
|
|
mode.Fprintf(s, ".%0S", n.Sym)
|
|
|
|
case ODOTTYPE, ODOTTYPE2:
|
|
n.Left.exprfmt(s, nprec, mode)
|
|
if n.Right != nil {
|
|
mode.Fprintf(s, ".(%v)", n.Right)
|
|
return
|
|
}
|
|
mode.Fprintf(s, ".(%v)", n.Type)
|
|
|
|
case OINDEX, OINDEXMAP:
|
|
n.Left.exprfmt(s, nprec, mode)
|
|
mode.Fprintf(s, "[%v]", n.Right)
|
|
|
|
case OSLICE, OSLICESTR, OSLICEARR, OSLICE3, OSLICE3ARR:
|
|
n.Left.exprfmt(s, nprec, mode)
|
|
fmt.Fprint(s, "[")
|
|
low, high, max := n.SliceBounds()
|
|
if low != nil {
|
|
fmt.Fprint(s, low.modeString(mode))
|
|
}
|
|
fmt.Fprint(s, ":")
|
|
if high != nil {
|
|
fmt.Fprint(s, high.modeString(mode))
|
|
}
|
|
if n.Op.IsSlice3() {
|
|
fmt.Fprint(s, ":")
|
|
if max != nil {
|
|
fmt.Fprint(s, max.modeString(mode))
|
|
}
|
|
}
|
|
fmt.Fprint(s, "]")
|
|
|
|
case OCOPY, OCOMPLEX:
|
|
mode.Fprintf(s, "%#v(%v, %v)", n.Op, n.Left, n.Right)
|
|
|
|
case OCONV,
|
|
OCONVIFACE,
|
|
OCONVNOP,
|
|
OARRAYBYTESTR,
|
|
OARRAYRUNESTR,
|
|
OSTRARRAYBYTE,
|
|
OSTRARRAYRUNE,
|
|
ORUNESTR:
|
|
if n.Type == nil || n.Type.Sym == nil {
|
|
mode.Fprintf(s, "(%v)", n.Type)
|
|
} else {
|
|
mode.Fprintf(s, "%v", n.Type)
|
|
}
|
|
if n.Left != nil {
|
|
mode.Fprintf(s, "(%v)", n.Left)
|
|
} else {
|
|
mode.Fprintf(s, "(%.v)", n.List)
|
|
}
|
|
|
|
case OREAL,
|
|
OIMAG,
|
|
OAPPEND,
|
|
OCAP,
|
|
OCLOSE,
|
|
ODELETE,
|
|
OLEN,
|
|
OMAKE,
|
|
ONEW,
|
|
OPANIC,
|
|
ORECOVER,
|
|
OALIGNOF,
|
|
OOFFSETOF,
|
|
OSIZEOF,
|
|
OPRINT,
|
|
OPRINTN:
|
|
if n.Left != nil {
|
|
mode.Fprintf(s, "%#v(%v)", n.Op, n.Left)
|
|
return
|
|
}
|
|
if n.Isddd() {
|
|
mode.Fprintf(s, "%#v(%.v...)", n.Op, n.List)
|
|
return
|
|
}
|
|
mode.Fprintf(s, "%#v(%.v)", n.Op, n.List)
|
|
|
|
case OCALL, OCALLFUNC, OCALLINTER, OCALLMETH, OGETG:
|
|
n.Left.exprfmt(s, nprec, mode)
|
|
if n.Isddd() {
|
|
mode.Fprintf(s, "(%.v...)", n.List)
|
|
return
|
|
}
|
|
mode.Fprintf(s, "(%.v)", n.List)
|
|
|
|
case OMAKEMAP, OMAKECHAN, OMAKESLICE:
|
|
if n.List.Len() != 0 { // pre-typecheck
|
|
mode.Fprintf(s, "make(%v, %.v)", n.Type, n.List)
|
|
return
|
|
}
|
|
if n.Right != nil {
|
|
mode.Fprintf(s, "make(%v, %v, %v)", n.Type, n.Left, n.Right)
|
|
return
|
|
}
|
|
if n.Left != nil && (n.Op == OMAKESLICE || !n.Left.Type.IsUntyped()) {
|
|
mode.Fprintf(s, "make(%v, %v)", n.Type, n.Left)
|
|
return
|
|
}
|
|
mode.Fprintf(s, "make(%v)", n.Type)
|
|
|
|
case OPLUS, OMINUS, OADDR, OCOM, OIND, ONOT, ORECV:
|
|
// Unary
|
|
mode.Fprintf(s, "%#v", n.Op)
|
|
if n.Left != nil && n.Left.Op == n.Op {
|
|
fmt.Fprint(s, " ")
|
|
}
|
|
n.Left.exprfmt(s, nprec+1, mode)
|
|
|
|
// Binary
|
|
case OADD,
|
|
OAND,
|
|
OANDAND,
|
|
OANDNOT,
|
|
ODIV,
|
|
OEQ,
|
|
OGE,
|
|
OGT,
|
|
OLE,
|
|
OLT,
|
|
OLSH,
|
|
OMOD,
|
|
OMUL,
|
|
ONE,
|
|
OOR,
|
|
OOROR,
|
|
ORSH,
|
|
OSEND,
|
|
OSUB,
|
|
OXOR:
|
|
n.Left.exprfmt(s, nprec, mode)
|
|
mode.Fprintf(s, " %#v ", n.Op)
|
|
n.Right.exprfmt(s, nprec+1, mode)
|
|
|
|
case OADDSTR:
|
|
for i, n1 := range n.List.Slice() {
|
|
if i != 0 {
|
|
fmt.Fprint(s, " + ")
|
|
}
|
|
n1.exprfmt(s, nprec, mode)
|
|
}
|
|
|
|
case OCMPSTR, OCMPIFACE:
|
|
n.Left.exprfmt(s, nprec, mode)
|
|
mode.Fprintf(s, " %#v ", n.SubOp())
|
|
n.Right.exprfmt(s, nprec+1, mode)
|
|
|
|
default:
|
|
mode.Fprintf(s, "<node %v>", n.Op)
|
|
}
|
|
}
|
|
|
|
func (n *Node) nodefmt(s fmt.State, flag FmtFlag, mode fmtMode) {
|
|
t := n.Type
|
|
|
|
// We almost always want the original, except in export mode for literals.
|
|
// This saves the importer some work, and avoids us having to redo some
|
|
// special casing for package unsafe.
|
|
if n.Op != OLITERAL && n.Orig != nil {
|
|
n = n.Orig
|
|
}
|
|
|
|
if flag&FmtLong != 0 && t != nil {
|
|
if t.Etype == TNIL {
|
|
fmt.Fprint(s, "nil")
|
|
} else {
|
|
mode.Fprintf(s, "%v (type %v)", n, t)
|
|
}
|
|
return
|
|
}
|
|
|
|
// TODO inlining produces expressions with ninits. we can't print these yet.
|
|
|
|
if opprec[n.Op] < 0 {
|
|
n.stmtfmt(s, mode)
|
|
return
|
|
}
|
|
|
|
n.exprfmt(s, 0, mode)
|
|
}
|
|
|
|
func (n *Node) nodedump(s fmt.State, flag FmtFlag, mode fmtMode) {
|
|
recur := flag&FmtShort == 0
|
|
|
|
if recur {
|
|
indent(s)
|
|
if dumpdepth > 40 {
|
|
fmt.Fprint(s, "...")
|
|
return
|
|
}
|
|
|
|
if n.Ninit.Len() != 0 {
|
|
mode.Fprintf(s, "%v-init%v", n.Op, n.Ninit)
|
|
indent(s)
|
|
}
|
|
}
|
|
|
|
switch n.Op {
|
|
default:
|
|
mode.Fprintf(s, "%v%j", n.Op, n)
|
|
|
|
case OINDREGSP:
|
|
mode.Fprintf(s, "%v-SP%j", n.Op, n)
|
|
|
|
case OLITERAL:
|
|
mode.Fprintf(s, "%v-%v%j", n.Op, n.Val(), n)
|
|
|
|
case ONAME, ONONAME:
|
|
if n.Sym != nil {
|
|
mode.Fprintf(s, "%v-%v%j", n.Op, n.Sym, n)
|
|
} else {
|
|
mode.Fprintf(s, "%v%j", n.Op, n)
|
|
}
|
|
if recur && n.Type == nil && n.Name != nil && n.Name.Param != nil && n.Name.Param.Ntype != nil {
|
|
indent(s)
|
|
mode.Fprintf(s, "%v-ntype%v", n.Op, n.Name.Param.Ntype)
|
|
}
|
|
|
|
case OASOP:
|
|
mode.Fprintf(s, "%v-%v%j", n.Op, n.SubOp(), n)
|
|
|
|
case OTYPE:
|
|
mode.Fprintf(s, "%v %v%j type=%v", n.Op, n.Sym, n, n.Type)
|
|
if recur && n.Type == nil && n.Name.Param.Ntype != nil {
|
|
indent(s)
|
|
mode.Fprintf(s, "%v-ntype%v", n.Op, n.Name.Param.Ntype)
|
|
}
|
|
}
|
|
|
|
if n.Sym != nil && n.Op != ONAME {
|
|
mode.Fprintf(s, " %v", n.Sym)
|
|
}
|
|
|
|
if n.Type != nil {
|
|
mode.Fprintf(s, " %v", n.Type)
|
|
}
|
|
|
|
if recur {
|
|
if n.Left != nil {
|
|
mode.Fprintf(s, "%v", n.Left)
|
|
}
|
|
if n.Right != nil {
|
|
mode.Fprintf(s, "%v", n.Right)
|
|
}
|
|
if n.List.Len() != 0 {
|
|
indent(s)
|
|
mode.Fprintf(s, "%v-list%v", n.Op, n.List)
|
|
}
|
|
|
|
if n.Rlist.Len() != 0 {
|
|
indent(s)
|
|
mode.Fprintf(s, "%v-rlist%v", n.Op, n.Rlist)
|
|
}
|
|
|
|
if n.Nbody.Len() != 0 {
|
|
indent(s)
|
|
mode.Fprintf(s, "%v-body%v", n.Op, n.Nbody)
|
|
}
|
|
}
|
|
}
|
|
|
|
// "%S" suppresses qualifying with package
|
|
func symFormat(s *types.Sym, f fmt.State, verb rune, mode fmtMode) {
|
|
switch verb {
|
|
case 'v', 'S':
|
|
fmt.Fprint(f, sconv(s, fmtFlag(f, verb), mode))
|
|
|
|
default:
|
|
fmt.Fprintf(f, "%%!%c(*types.Sym=%p)", verb, s)
|
|
}
|
|
}
|
|
|
|
func smodeString(s *types.Sym, mode fmtMode) string { return sconv(s, 0, mode) }
|
|
|
|
// See #16897 before changing the implementation of sconv.
|
|
func sconv(s *types.Sym, flag FmtFlag, mode fmtMode) string {
|
|
if flag&FmtLong != 0 {
|
|
panic("linksymfmt")
|
|
}
|
|
|
|
if s == nil {
|
|
return "<S>"
|
|
}
|
|
|
|
if s.Name == "_" {
|
|
return "_"
|
|
}
|
|
|
|
flag, mode = flag.update(mode)
|
|
return symfmt(s, flag, mode)
|
|
}
|
|
|
|
func tmodeString(t *types.Type, mode fmtMode, depth int) string {
|
|
return tconv(t, 0, mode, depth)
|
|
}
|
|
|
|
func fldconv(f *types.Field, flag FmtFlag, mode fmtMode, depth int) string {
|
|
if f == nil {
|
|
return "<T>"
|
|
}
|
|
|
|
flag, mode = flag.update(mode)
|
|
if mode == FTypeIdName {
|
|
flag |= FmtUnsigned
|
|
}
|
|
|
|
var name string
|
|
if flag&FmtShort == 0 {
|
|
s := f.Sym
|
|
|
|
// Take the name from the original.
|
|
if mode == FErr {
|
|
s = origSym(s)
|
|
}
|
|
|
|
if s != nil && f.Embedded == 0 {
|
|
if f.Funarg != types.FunargNone {
|
|
name = asNode(f.Nname).modeString(mode)
|
|
} else if flag&FmtLong != 0 {
|
|
name = mode.Sprintf("%0S", s)
|
|
if !types.IsExported(name) && flag&FmtUnsigned == 0 {
|
|
name = smodeString(s, mode) // qualify non-exported names (used on structs, not on funarg)
|
|
}
|
|
} else {
|
|
name = smodeString(s, mode)
|
|
}
|
|
}
|
|
}
|
|
|
|
var typ string
|
|
if f.Isddd() {
|
|
var et *types.Type
|
|
if f.Type != nil {
|
|
et = f.Type.Elem()
|
|
}
|
|
typ = "..." + tmodeString(et, mode, depth)
|
|
} else {
|
|
typ = tmodeString(f.Type, mode, depth)
|
|
}
|
|
|
|
str := typ
|
|
if name != "" {
|
|
str = name + " " + typ
|
|
}
|
|
|
|
if flag&FmtShort == 0 && f.Funarg == types.FunargNone && f.Note != "" {
|
|
str += " " + strconv.Quote(f.Note)
|
|
}
|
|
|
|
return str
|
|
}
|
|
|
|
// "%L" print definition, not name
|
|
// "%S" omit 'func' and receiver from function types, short type names
|
|
func typeFormat(t *types.Type, s fmt.State, verb rune, mode fmtMode) {
|
|
switch verb {
|
|
case 'v', 'S', 'L':
|
|
// This is an external entry point, so we pass depth 0 to tconv.
|
|
// See comments in Type.String.
|
|
fmt.Fprint(s, tconv(t, fmtFlag(s, verb), mode, 0))
|
|
|
|
default:
|
|
fmt.Fprintf(s, "%%!%c(*Type=%p)", verb, t)
|
|
}
|
|
}
|
|
|
|
// See #16897 before changing the implementation of tconv.
|
|
func tconv(t *types.Type, flag FmtFlag, mode fmtMode, depth int) string {
|
|
if t == nil {
|
|
return "<T>"
|
|
}
|
|
if t.Etype == types.TSSA {
|
|
return t.Extra.(string)
|
|
}
|
|
if t.Etype == types.TTUPLE {
|
|
return t.FieldType(0).String() + "," + t.FieldType(1).String()
|
|
}
|
|
|
|
if depth > 100 {
|
|
return "<...>"
|
|
}
|
|
|
|
flag, mode = flag.update(mode)
|
|
if mode == FTypeIdName {
|
|
flag |= FmtUnsigned
|
|
}
|
|
|
|
str := typefmt(t, flag, mode, depth+1)
|
|
|
|
return str
|
|
}
|
|
|
|
func (n *Node) String() string { return fmt.Sprint(n) }
|
|
func (n *Node) modeString(mode fmtMode) string { return mode.Sprint(n) }
|
|
|
|
// "%L" suffix with "(type %T)" where possible
|
|
// "%+S" in debug mode, don't recurse, no multiline output
|
|
func (n *Node) nconv(s fmt.State, flag FmtFlag, mode fmtMode) {
|
|
if n == nil {
|
|
fmt.Fprint(s, "<N>")
|
|
return
|
|
}
|
|
|
|
flag, mode = flag.update(mode)
|
|
|
|
switch mode {
|
|
case FErr:
|
|
n.nodefmt(s, flag, mode)
|
|
|
|
case FDbg:
|
|
dumpdepth++
|
|
n.nodedump(s, flag, mode)
|
|
dumpdepth--
|
|
|
|
default:
|
|
Fatalf("unhandled %%N mode: %d", mode)
|
|
}
|
|
}
|
|
|
|
func (l Nodes) format(s fmt.State, verb rune, mode fmtMode) {
|
|
switch verb {
|
|
case 'v':
|
|
l.hconv(s, fmtFlag(s, verb), mode)
|
|
|
|
default:
|
|
fmt.Fprintf(s, "%%!%c(Nodes)", verb)
|
|
}
|
|
}
|
|
|
|
func (n Nodes) String() string {
|
|
return fmt.Sprint(n)
|
|
}
|
|
|
|
// Flags: all those of %N plus '.': separate with comma's instead of semicolons.
|
|
func (l Nodes) hconv(s fmt.State, flag FmtFlag, mode fmtMode) {
|
|
if l.Len() == 0 && mode == FDbg {
|
|
fmt.Fprint(s, "<nil>")
|
|
return
|
|
}
|
|
|
|
flag, mode = flag.update(mode)
|
|
sep := "; "
|
|
if mode == FDbg {
|
|
sep = "\n"
|
|
} else if flag&FmtComma != 0 {
|
|
sep = ", "
|
|
}
|
|
|
|
for i, n := range l.Slice() {
|
|
fmt.Fprint(s, n.modeString(mode))
|
|
if i+1 < l.Len() {
|
|
fmt.Fprint(s, sep)
|
|
}
|
|
}
|
|
}
|
|
|
|
func dumplist(s string, l Nodes) {
|
|
fmt.Printf("%s%+v\n", s, l)
|
|
}
|
|
|
|
func Dump(s string, n *Node) {
|
|
fmt.Printf("%s [%p]%+v\n", s, n, n)
|
|
}
|
|
|
|
// TODO(gri) make variable local somehow
|
|
var dumpdepth int
|
|
|
|
// indent prints indentation to s.
|
|
func indent(s fmt.State) {
|
|
fmt.Fprint(s, "\n")
|
|
for i := 0; i < dumpdepth; i++ {
|
|
fmt.Fprint(s, ". ")
|
|
}
|
|
}
|