CallExpr.X -> CallExpr.Fun
This consistent with go/ast and cmd/compile/internal/syntax.
OPRINTN -> OPRINTLN
This op represents the "println" builtin; might as well spell it the
same way.
Change-Id: Iead1b007776658c717879cf0997b3c48028428f4
Reviewed-on: https://go-review.googlesource.com/c/go/+/532795
Reviewed-by: Cuong Manh Le <cuong.manhle.vn@gmail.com>
Reviewed-by: Keith Randall <khr@golang.org>
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The "eface" in OEFACE suggests it's only for empty interfaces, and the
documentation suggests that too. But it's actually used for both empty
and non-empty interfaces, so rename to OMAKEFACE and adjust docs
accordingly.
Also, remove OCONVIDATA. This was used by the 1.18 frontend for
constructing interfaces containing derived types, but the unified
frontend always uses OCONVIFACE instead, so this is unused now.
Change-Id: I6ec5c62f909b26027f2804e5b3373b7a00029246
Reviewed-on: https://go-review.googlesource.com/c/go/+/527336
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These are no longer needed after the previous CL, which moved handling
of unsafe.Sizeof, etc. directly into the unified frontend.
Change-Id: Ieb35ffca0bc25319e58132fb5d035c5b441acea7
Reviewed-on: https://go-review.googlesource.com/c/go/+/527098
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These were only ever used by the pre-unified generics frontend. I
initially kept them because I thought they'd be useful for the unified
frontend eventually too, but that hasn't manifested.
Change-Id: Iaa31a76ac4d62533ec269d2a7141442b8e344180
Reviewed-on: https://go-review.googlesource.com/c/go/+/520608
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These aren't constructed by the unified frontend.
Change-Id: Ied87baa9656920bd11055464bc605933ff448e21
Reviewed-on: https://go-review.googlesource.com/c/go/+/520264
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To clear map, and zero content of slice.
Updates #56351
Change-Id: I5f81dfbc465500f5acadaf2c6beb9b5f0d2c4045
Reviewed-on: https://go-review.googlesource.com/c/go/+/453395
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The conversion T(x) is implemented as *(*T)(x). Accordingly, runtime
panic messages for (*T)(x) are made more general.
Fixes#46505.
Change-Id: I76317c0878b6a5908299506d392eed50d7ef6523
Reviewed-on: https://go-review.googlesource.com/c/go/+/430415
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Neither are currently used. These concepts only need to exist
in the ssa backend (as ssa.OpVarDef and ssa.OpVarLive).
Change-Id: I8d6bd14aa7967b2156e5e9a103b95146e5552f36
Reviewed-on: https://go-review.googlesource.com/c/go/+/419319
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Not used any more.
Fixes#53860
Change-Id: Id0b1c3ed30b576d6c5f08f064d1262de337262b3
Reviewed-on: https://go-review.googlesource.com/c/go/+/418374
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No longer needed. We now always directly construct TFUNC types when
needed.
Change-Id: I1bb286c08539cbf97e331824f0f5464b5fd9c873
Reviewed-on: https://go-review.googlesource.com/c/go/+/403936
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Performance is kind of hard to exactly quantify.
One big difference between jump tables and the old binary search
scheme is that there's only 1 branch statement instead of O(n) of
them. That can be both a blessing and a curse, and can make evaluating
jump tables very hard to do.
The single branch can become a choke point for the hardware branch
predictor. A branch table jump must fit all of its state in a single
branch predictor entry (technically, a branch target predictor entry).
With binary search that predictor state can be spread among lots of
entries. In cases where the case selection is repetitive and thus
predictable, binary search can perform better.
The big win for a jump table is that it doesn't consume so much of the
branch predictor's resources. But that benefit is essentially never
observed in microbenchmarks, because the branch predictor can easily
keep state for all the binary search branches in a microbenchmark. So
that benefit is really hard to measure.
So predictable switch microbenchmarks are ~useless - they will almost
always favor the binary search scheme. Fully unpredictable switch
microbenchmarks are better, as they aren't lying to us quite so
much. In a perfectly unpredictable situation, a jump table will expect
to incur 1-1/N branch mispredicts, where a binary search would incur
lg(N)/2 of them. That makes the crossover point at about N=4. But of
course switches in real programs are seldom fully unpredictable, so
we'll use a higher crossover point.
Beyond the branch predictor, jump tables tend to execute more
instructions per switch but have no additional instructions per case,
which also argues for a larger crossover.
As far as code size goes, with this CL cmd/go has a slightly smaller
code segment and a slightly larger overall size (from the jump tables
themselves which live in the data segment).
This is a case where some FDO (feedback-directed optimization) would
be really nice to have. #28262
Some large-program benchmarks might help make the case for this
CL. Especially if we can turn on branch mispredict counters so we can
see how much using jump tables can free up branch prediction resources
that can be gainfully used elsewhere in the program.
name old time/op new time/op delta
Switch8Predictable 1.89ns ± 2% 1.27ns ± 3% -32.58% (p=0.000 n=9+10)
Switch8Unpredictable 9.33ns ± 1% 7.50ns ± 1% -19.60% (p=0.000 n=10+9)
Switch32Predictable 2.20ns ± 2% 1.64ns ± 1% -25.39% (p=0.000 n=10+9)
Switch32Unpredictable 10.0ns ± 2% 7.6ns ± 2% -24.04% (p=0.000 n=10+10)
Fixes#5496
Update #34381
Change-Id: I3ff56011d02be53f605ca5fd3fb96b905517c34f
Reviewed-on: https://go-review.googlesource.com/c/go/+/357330
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OIOTA used to be used to represent "iota" in the pre-typechecked IR,
before we knew whether it was safe to replace it with a constant
(because it could be redefined as a global symbol later).
However, now types2 handles constant folding, including handling of
"iota". So this can go away.
Updates #51691.
Change-Id: I3cec45b22c4c8f1c357dcc4003292c21ae32aa90
Reviewed-on: https://go-review.googlesource.com/c/go/+/393255
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ir.PkgName was only used by the old -G=0 frontend for representing
identifiers that refer to a package name. The new types2-based
frontends directly resolve the qualified identifier to the respective
object during IR construction.
Similarly, most of the ir.*Type nodes were only needed for
representing types in the IR prior to type checking. The new
types2-based frontends directly construct the corresponding types.Type
instead.
Exception: The internal typecheck.DeclFunc API used for
compiler-generated functions still depends on ir.FuncType, so that IR
node type is retained for now. (Eventually, we should update
typecheck.DeclFunc and callers to not depend on it, but it's not
urgent.)
Change-Id: I982f1bbd41eef5b42ce0f32676c7dc4a8ab6d0ee
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Add a new dynamicType node, which is used as a case entry when
the type being switched to is generic.
Change-Id: Ice77c6f224b8fdd3ff574fdf4a8ea5f6c7ddbe75
Reviewed-on: https://go-review.googlesource.com/c/go/+/339429
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Introduce new dynamic dottype operations which take a dynamic
instead of static type to convert to.
Change-Id: I5824a1fea056fe811b1226ce059e1e8da1baa335
Reviewed-on: https://go-review.googlesource.com/c/go/+/337609
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This operation computes just the data field needed to put its argument
into an interface. Used by generics because we produce the type field
of an interface using dictionaries (instead of statically).
With this operation defined, we can now assert that shape types
are never marked as used in interfaces (the only previous use
was IDATA(CONVIFACE(t))).
Change-Id: Idb1eb5f3b238285cb99413d382599c0621b7681a
Reviewed-on: https://go-review.googlesource.com/c/go/+/337109
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Go spec call them "method values", not "partial calls". Note that
we use "OMETHVALUE" (as opposed to "OMETHODVALUE") to be consistent
with "OMETHEXPR".
Change-Id: I1efd985d4b567a1b4b20aeb603eb82db579edbd5
Reviewed-on: https://go-review.googlesource.com/c/go/+/330837
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This CLs adds new frontend ops that will be used in the next CL. Split
out separately so generated code is less distracting in the main CL.
Change-Id: I66125e0ec2217bfa05f7b0ea0bc99ada13f563f7
Reviewed-on: https://go-review.googlesource.com/c/go/+/330191
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It is not used anywhere.
Change-Id: I2b8d64902e16893ab5e1b84943f6d865c6e9c7bd
Reviewed-on: https://go-review.googlesource.com/c/go/+/311950
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Changed RParams in types.Type to be a pointer to a slice, rather than a
slice itself, in order to reduce it from three words to one words, since
the large majority of types will not be generic or instantiated from a
generic type.
Additional cleanup: remove operation OTYPEINST, which we don't have need
of, since all type instantiations are either handled by types2 or happen
automatically during some form of stenciling.
Both of these are useful cleanups before the Go 1.17 freeze.
Change-Id: I61ad56b3c698b30d2cb5a2cdd12263202c54f49c
Reviewed-on: https://go-review.googlesource.com/c/go/+/308770
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Expresses things more clearly, especially in cases like 'f := min[int]'
where we create a xsgeneric function instantiation, but don't immediately
call it.
min[int](2, 3) now looks like:
. CALLFUNC tc(1) Use:1 int # min1.go:11 int
. . FUNCINST tc(1) FUNC-func(int, int) int # min1.go:11 FUNC-func(int, int) int
. . . NAME-main.min tc(1) Class:PFUNC Offset:0 Used FUNC-func[T](T, T) T # min1.go:3
. . FUNCINST-Targs
. . . TYPE .int Offset:0 type int
. CALLFUNC-Args
. . LITERAL-2 tc(1) int # min1.go:11
. . LITERAL-3 tc(1) int # min1.go:11
Remove the targs parameter from ir.NewCallExpr(), not needed anymore,
since type arguments are included in the FUNCINST.
Change-Id: I23438b75288330475294d7ace239ba64acfa641e
Reviewed-on: https://go-review.googlesource.com/c/go/+/288951
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Will now run "go tool compile -G=2 -W=2" on a simple generic function
with multiple type parameters and a call to that function with multiple
explicit type arguments.
We will likely move to have a separate function/type instantiation node,
in order distinguish these cases from normal index expressions.
Change-Id: I0a571902d63785cc06240ed4ba0495923403b511
Reviewed-on: https://go-review.googlesource.com/c/go/+/288433
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This CL splits out ORETJMP as a new TailCallStmt node, separate from
the other BranchStmt nodes. In doing so, this allows us to change it
from identifying a function by *types.Sym to identifying one by
directly pointing to the *ir.Func.
While here, also rename the operation to OTAILCALL.
Passes toolstash -cmp.
Change-Id: I273e6ea5d92bf3005ae02fb59b3240a190a6cf1b
Reviewed-on: https://go-review.googlesource.com/c/go/+/284227
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After CL 283233, SSA can now handle new(typ) without the frontend to
generate the type address, so we can remove ONEWOBJ in favor of ONEW
only.
This is also not save for toolstash, the same reason with CL 284115.
Change-Id: Ie03ea36b3b6f95fc7ce080376c6f7afc402d51a3
Reviewed-on: https://go-review.googlesource.com/c/go/+/284117
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After the previous CLs, all closure reads are handled during SSA
construction.
Change-Id: Iad67b01fa2d3798f50ea647be7ccf8195f189c27
Reviewed-on: https://go-review.googlesource.com/c/go/+/281512
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During recent refactoring, we moved mkbuiltin.go to package typecheck,
but accidentally duplicated its //go:generate directive into a bunch
of other files/directories. This CL cleans up the unnecessary
duplicates.
Also, update all of the stringer invocations to use an explicit file
name, and regenerate their files.
Updates #43369.
Change-Id: I4e493c1fff103d742de0a839d7a3375659270b50
Reviewed-on: https://go-review.googlesource.com/c/go/+/280635
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Previous CL uses OSELRECV2 instead of OSELRECV, this CL removes it.
Make this a separated CL as it's not safe for toolstash.
Change-Id: I530ba33fd9311904545e40fe147829af629cf4a8
Reviewed-on: https://go-review.googlesource.com/c/go/+/275459
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Not toolstash -cmp safe, so split into its own CL.
Change-Id: I523227514a95e19c9afe17556d754a03164bce76
Reviewed-on: https://go-review.googlesource.com/c/go/+/274595
Trust: Russ Cox <rsc@golang.org>
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This CL only adds the new constant, which is not safe for toolstash -cmp.
Change-Id: I774463a0ab5f57113d67a8888b6ac787be68510c
Reviewed-on: https://go-review.googlesource.com/c/go/+/274110
Trust: Russ Cox <rsc@golang.org>
Reviewed-by: Matthew Dempsky <mdempsky@google.com>
These are plain data now, not nodes (see previous CL).
The opcode deletions are not safe for toolstash -cmp,
so they are split into a separate CL.
Change-Id: Icef8a01e190195a7539a35b92f42835d823e314a
Reviewed-on: https://go-review.googlesource.com/c/go/+/274104
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This is not safe for toolstash -cmp and so is split into its own CL.
Change-Id: Ic3254e68fb84a90a11ac5f0b59ef252135c23658
Reviewed-on: https://go-review.googlesource.com/c/go/+/274101
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Closures are another reference to Funcs,
and it cleans up the code quite a bit to be clear about types.
OCLOSUREVAR is renamed to OCLOSUREREAD to make
clearer that it is unrelated to the list Func.ClosureVars.
Passes buildall w/ toolstash -cmp.
Change-Id: Id0d28df2d4d6e9954e34df7a39ea226995eee937
Reviewed-on: https://go-review.googlesource.com/c/go/+/274098
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If we want to break up package gc at all, we will need to move
the compiler IR it defines into a separate package that can be
imported by packages that gc itself imports. This CL does that.
It also removes the TINT8 etc aliases so that all code is clear
about which package things are coming from.
This CL is automatically generated by the script below.
See the comments in the script for details about the changes.
[git-generate]
cd src/cmd/compile/internal/gc
rf '
# These names were never fully qualified
# when the types package was added.
# Do it now, to avoid confusion about where they live.
inline -rm \
Txxx \
TINT8 \
TUINT8 \
TINT16 \
TUINT16 \
TINT32 \
TUINT32 \
TINT64 \
TUINT64 \
TINT \
TUINT \
TUINTPTR \
TCOMPLEX64 \
TCOMPLEX128 \
TFLOAT32 \
TFLOAT64 \
TBOOL \
TPTR \
TFUNC \
TSLICE \
TARRAY \
TSTRUCT \
TCHAN \
TMAP \
TINTER \
TFORW \
TANY \
TSTRING \
TUNSAFEPTR \
TIDEAL \
TNIL \
TBLANK \
TFUNCARGS \
TCHANARGS \
NTYPE \
BADWIDTH
# esc.go and escape.go do not need to be split.
# Append esc.go onto the end of escape.go.
mv esc.go escape.go
# Pull out the type format installation from func Main,
# so it can be carried into package ir.
mv Main:/Sconv.=/-0,/TypeLinkSym/-1 InstallTypeFormats
# Names that need to be exported for use by code left in gc.
mv Isconst IsConst
mv asNode AsNode
mv asNodes AsNodes
mv asTypesNode AsTypesNode
mv basicnames BasicTypeNames
mv builtinpkg BuiltinPkg
mv consttype ConstType
mv dumplist DumpList
mv fdumplist FDumpList
mv fmtMode FmtMode
mv goopnames OpNames
mv inspect Inspect
mv inspectList InspectList
mv localpkg LocalPkg
mv nblank BlankNode
mv numImport NumImport
mv opprec OpPrec
mv origSym OrigSym
mv stmtwithinit StmtWithInit
mv dump DumpAny
mv fdump FDumpAny
mv nod Nod
mv nodl NodAt
mv newname NewName
mv newnamel NewNameAt
mv assertRepresents AssertValidTypeForConst
mv represents ValidTypeForConst
mv nodlit NewLiteral
# Types and fields that need to be exported for use by gc.
mv nowritebarrierrecCallSym SymAndPos
mv SymAndPos.lineno SymAndPos.Pos
mv SymAndPos.target SymAndPos.Sym
mv Func.lsym Func.LSym
mv Func.setWBPos Func.SetWBPos
mv Func.numReturns Func.NumReturns
mv Func.numDefers Func.NumDefers
mv Func.nwbrCalls Func.NWBRCalls
# initLSym is an algorithm left behind in gc,
# not an operation on Func itself.
mv Func.initLSym initLSym
mv nodeQueue NodeQueue
mv NodeQueue.empty NodeQueue.Empty
mv NodeQueue.popLeft NodeQueue.PopLeft
mv NodeQueue.pushRight NodeQueue.PushRight
# Many methods on Node are actually algorithms that
# would apply to any node implementation.
# Those become plain functions.
mv Node.funcname FuncName
mv Node.isBlank IsBlank
mv Node.isGoConst isGoConst
mv Node.isNil IsNil
mv Node.isParamHeapCopy isParamHeapCopy
mv Node.isParamStackCopy isParamStackCopy
mv Node.isSimpleName isSimpleName
mv Node.mayBeShared MayBeShared
mv Node.pkgFuncName PkgFuncName
mv Node.backingArrayPtrLen backingArrayPtrLen
mv Node.isterminating isTermNode
mv Node.labeledControl labeledControl
mv Nodes.isterminating isTermNodes
mv Nodes.sigerr fmtSignature
mv Node.MethodName methodExprName
mv Node.MethodFunc methodExprFunc
mv Node.IsMethod IsMethod
# Every node will need to implement RawCopy;
# Copy and SepCopy algorithms will use it.
mv Node.rawcopy Node.RawCopy
mv Node.copy Copy
mv Node.sepcopy SepCopy
# Extract Node.Format method body into func FmtNode,
# but leave method wrapper behind.
mv Node.Format:0,$ FmtNode
# Formatting helpers that will apply to all node implementations.
mv Node.Line Line
mv Node.exprfmt exprFmt
mv Node.jconv jconvFmt
mv Node.modeString modeString
mv Node.nconv nconvFmt
mv Node.nodedump nodeDumpFmt
mv Node.nodefmt nodeFmt
mv Node.stmtfmt stmtFmt
# Constant support needed for code moving to ir.
mv okforconst OKForConst
mv vconv FmtConst
mv int64Val Int64Val
mv float64Val Float64Val
mv Node.ValueInterface ConstValue
# Organize code into files.
mv LocalPkg BuiltinPkg ir.go
mv NumImport InstallTypeFormats Line fmt.go
mv syntax.go Nod NodAt NewNameAt Class Pxxx PragmaFlag Nointerface SymAndPos \
AsNode AsTypesNode BlankNode OrigSym \
Node.SliceBounds Node.SetSliceBounds Op.IsSlice3 \
IsConst Node.Int64Val Node.CanInt64 Node.Uint64Val Node.BoolVal Node.StringVal \
Node.RawCopy SepCopy Copy \
IsNil IsBlank IsMethod \
Node.Typ Node.StorageClass node.go
mv ConstType ConstValue Int64Val Float64Val AssertValidTypeForConst ValidTypeForConst NewLiteral idealType OKForConst val.go
# Move files to new ir package.
mv bitset.go class_string.go dump.go fmt.go \
ir.go node.go op_string.go val.go \
sizeof_test.go cmd/compile/internal/ir
'
: # fix mkbuiltin.go to generate the changes made to builtin.go during rf
sed -i '' '
s/\[T/[types.T/g
s/\*Node/*ir.Node/g
/internal\/types/c \
fmt.Fprintln(&b, `import (`) \
fmt.Fprintln(&b, ` "cmd/compile/internal/ir"`) \
fmt.Fprintln(&b, ` "cmd/compile/internal/types"`) \
fmt.Fprintln(&b, `)`)
' mkbuiltin.go
gofmt -w mkbuiltin.go
: # update cmd/dist to add internal/ir
cd ../../../dist
sed -i '' '/compile.internal.gc/a\
"cmd/compile/internal/ir",
' buildtool.go
gofmt -w buildtool.go
: # update cmd/compile TestFormats
cd ../..
go install std cmd
cd cmd/compile
go test -u || go test # first one updates but fails; second passes
Change-Id: I5f7caf6b20629b51970279e81231a3574d5b51db
Reviewed-on: https://go-review.googlesource.com/c/go/+/273008
Trust: Russ Cox <rsc@golang.org>
Reviewed-by: Matthew Dempsky <mdempsky@google.com>
2020-11-25 16:53:33 +00:00
Renamed from src/cmd/compile/internal/gc/op_string.go (Browse further)