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[tablegen] Add !listconcat operator with the similar semantics as !strconcat

Summary:
It concatenates two or more lists. In addition to the !strconcat semantics
the lists must have the same element type.

My overall aim is to make it easy to append to Instruction.Predicates
rather than override it. This can be done by concatenating lists passed as
arguments, or by concatenating lists passed in additional fields.

Reviewers: dsanders

Reviewed By: dsanders

Subscribers: hfinkel, llvm-commits

Differential Revision: http://reviews.llvm.org/D3506

llvm-svn: 208183
This commit is contained in:
Daniel Sanders 2014-05-07 10:13:19 +00:00
parent dc36787564
commit ed9c2dd966
8 changed files with 63 additions and 4 deletions

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@ -160,6 +160,12 @@ supported include:
remaining elements in the list may be arbitrary other values, including
nested ```dag``' values.
``!listconcat(a, b, ...)``
A list value that is the result of concatenating the 'a' and 'b' lists.
The lists must have the same element type.
More than two arguments are accepted with the result being the concatenation
of all the lists given.
``!strconcat(a, b, ...)``
A string value that is the result of concatenating the 'a' and 'b' strings.
More than two arguments are accepted with the result being the concatenation

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@ -93,7 +93,7 @@ wide variety of meanings:
BangOperator: one of
:!eq !if !head !tail !con
:!add !shl !sra !srl
:!cast !empty !subst !foreach !strconcat
:!cast !empty !subst !foreach !listconcat !strconcat
Syntax
======

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@ -929,7 +929,8 @@ public:
///
class BinOpInit : public OpInit {
public:
enum BinaryOp { ADD, SHL, SRA, SRL, STRCONCAT, CONCAT, EQ };
enum BinaryOp { ADD, SHL, SRA, SRL, LISTCONCAT, STRCONCAT, CONCAT, EQ };
private:
BinaryOp Opc;
Init *LHS, *RHS;

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@ -918,6 +918,18 @@ Init *BinOpInit::Fold(Record *CurRec, MultiClass *CurMultiClass) const {
}
break;
}
case LISTCONCAT: {
ListInit *LHSs = dyn_cast<ListInit>(LHS);
ListInit *RHSs = dyn_cast<ListInit>(RHS);
if (LHSs && RHSs) {
std::vector<Init *> Args;
Args.insert(Args.end(), LHSs->begin(), LHSs->end());
Args.insert(Args.end(), RHSs->begin(), RHSs->end());
return ListInit::get(
Args, static_cast<ListRecTy *>(LHSs->getType())->getElementType());
}
break;
}
case STRCONCAT: {
StringInit *LHSs = dyn_cast<StringInit>(LHS);
StringInit *RHSs = dyn_cast<StringInit>(RHS);
@ -987,6 +999,7 @@ std::string BinOpInit::getAsString() const {
case SRA: Result = "!sra"; break;
case SRL: Result = "!srl"; break;
case EQ: Result = "!eq"; break;
case LISTCONCAT: Result = "!listconcat"; break;
case STRCONCAT: Result = "!strconcat"; break;
}
return Result + "(" + LHS->getAsString() + ", " + RHS->getAsString() + ")";

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@ -478,6 +478,7 @@ tgtok::TokKind TGLexer::LexExclaim() {
.Case("empty", tgtok::XEmpty)
.Case("subst", tgtok::XSubst)
.Case("foreach", tgtok::XForEach)
.Case("listconcat", tgtok::XListConcat)
.Case("strconcat", tgtok::XStrConcat)
.Default(tgtok::Error);

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@ -47,7 +47,7 @@ namespace tgtok {
MultiClass, String,
// !keywords.
XConcat, XADD, XSRA, XSRL, XSHL, XStrConcat, XCast, XSubst,
XConcat, XADD, XSRA, XSRL, XSHL, XListConcat, XStrConcat, XCast, XSubst,
XForEach, XHead, XTail, XEmpty, XIf, XEq,
// Integer value.

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@ -903,6 +903,7 @@ Init *TGParser::ParseOperation(Record *CurRec) {
case tgtok::XSRL:
case tgtok::XSHL:
case tgtok::XEq:
case tgtok::XListConcat:
case tgtok::XStrConcat: { // Value ::= !binop '(' Value ',' Value ')'
tgtok::TokKind OpTok = Lex.getCode();
SMLoc OpLoc = Lex.getLoc();
@ -919,6 +920,10 @@ Init *TGParser::ParseOperation(Record *CurRec) {
case tgtok::XSRL: Code = BinOpInit::SRL; Type = IntRecTy::get(); break;
case tgtok::XSHL: Code = BinOpInit::SHL; Type = IntRecTy::get(); break;
case tgtok::XEq: Code = BinOpInit::EQ; Type = BitRecTy::get(); break;
case tgtok::XListConcat:
Code = BinOpInit::LISTCONCAT;
// We don't know the list type until we parse the first argument
break;
case tgtok::XStrConcat:
Code = BinOpInit::STRCONCAT;
Type = StringRecTy::get();
@ -949,9 +954,22 @@ Init *TGParser::ParseOperation(Record *CurRec) {
}
Lex.Lex(); // eat the ')'
// If we are doing !listconcat, we should know the type by now
if (OpTok == tgtok::XListConcat) {
if (VarInit *Arg0 = dyn_cast<VarInit>(InitList[0]))
Type = Arg0->getType();
else if (ListInit *Arg0 = dyn_cast<ListInit>(InitList[0]))
Type = Arg0->getType();
else {
InitList[0]->dump();
Error(OpLoc, "expected a list");
return nullptr;
}
}
// We allow multiple operands to associative operators like !strconcat as
// shorthand for nesting them.
if (Code == BinOpInit::STRCONCAT) {
if (Code == BinOpInit::STRCONCAT || Code == BinOpInit::LISTCONCAT) {
while (InitList.size() > 2) {
Init *RHS = InitList.pop_back_val();
RHS = (BinOpInit::get(Code, InitList.back(), RHS, Type))
@ -1134,6 +1152,7 @@ RecTy *TGParser::ParseOperatorType() {
/// SimpleValue ::= SHLTOK '(' Value ',' Value ')'
/// SimpleValue ::= SRATOK '(' Value ',' Value ')'
/// SimpleValue ::= SRLTOK '(' Value ',' Value ')'
/// SimpleValue ::= LISTCONCATTOK '(' Value ',' Value ')'
/// SimpleValue ::= STRCONCATTOK '(' Value ',' Value ')'
///
Init *TGParser::ParseSimpleValue(Record *CurRec, RecTy *ItemType,
@ -1417,6 +1436,7 @@ Init *TGParser::ParseSimpleValue(Record *CurRec, RecTy *ItemType,
case tgtok::XSRL:
case tgtok::XSHL:
case tgtok::XEq:
case tgtok::XListConcat:
case tgtok::XStrConcat: // Value ::= !binop '(' Value ',' Value ')'
case tgtok::XIf:
case tgtok::XForEach:

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@ -0,0 +1,18 @@
// RUN: llvm-tblgen %s | FileCheck %s
// CHECK: class Y<list<string> Y:S = ?> {
// CHECK: list<string> T1 = !listconcat(Y:S, ["foo"]);
// CHECK: list<string> T2 = !listconcat(Y:S, !listconcat(["foo"], !listconcat(Y:S, ["bar", "baz"])));
// CHECK: }
// CHECK: def Z {
// CHECK: list<string> T1 = ["fu", "foo"];
// CHECK: list<string> T2 = ["fu", "foo", "fu", "bar", "baz"];
// CHECK: }
class Y<list<string> S> {
list<string> T1 = !listconcat(S, ["foo"]);
list<string> T2 = !listconcat(S, ["foo"], S, ["bar", "baz"]);
}
def Z : Y<["fu"]>;