mirror of
https://github.com/c64scene-ar/llvm-6502.git
synced 2024-12-13 20:32:21 +00:00
d04a8d4b33
Sooooo many of these had incorrect or strange main module includes. I have manually inspected all of these, and fixed the main module include to be the nearest plausible thing I could find. If you own or care about any of these source files, I encourage you to take some time and check that these edits were sensible. I can't have broken anything (I strictly added headers, and reordered them, never removed), but they may not be the headers you'd really like to identify as containing the API being implemented. Many forward declarations and missing includes were added to a header files to allow them to parse cleanly when included first. The main module rule does in fact have its merits. =] git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@169131 91177308-0d34-0410-b5e6-96231b3b80d8
499 lines
16 KiB
C++
499 lines
16 KiB
C++
//===- COFFAsmParser.cpp - COFF Assembly Parser ---------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/MC/MCParser/MCAsmParserExtension.h"
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#include "llvm/ADT/StringSwitch.h"
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#include "llvm/ADT/Twine.h"
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#include "llvm/MC/MCAsmInfo.h"
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#include "llvm/MC/MCContext.h"
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#include "llvm/MC/MCExpr.h"
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#include "llvm/MC/MCParser/MCAsmLexer.h"
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#include "llvm/MC/MCRegisterInfo.h"
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#include "llvm/MC/MCSectionCOFF.h"
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#include "llvm/MC/MCStreamer.h"
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#include "llvm/MC/MCTargetAsmParser.h"
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#include "llvm/Support/COFF.h"
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using namespace llvm;
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namespace {
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class COFFAsmParser : public MCAsmParserExtension {
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template<bool (COFFAsmParser::*Handler)(StringRef, SMLoc)>
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void AddDirectiveHandler(StringRef Directive) {
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getParser().AddDirectiveHandler(this, Directive,
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HandleDirective<COFFAsmParser, Handler>);
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}
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bool ParseSectionSwitch(StringRef Section,
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unsigned Characteristics,
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SectionKind Kind);
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virtual void Initialize(MCAsmParser &Parser) {
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// Call the base implementation.
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MCAsmParserExtension::Initialize(Parser);
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AddDirectiveHandler<&COFFAsmParser::ParseSectionDirectiveText>(".text");
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AddDirectiveHandler<&COFFAsmParser::ParseSectionDirectiveData>(".data");
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AddDirectiveHandler<&COFFAsmParser::ParseSectionDirectiveBSS>(".bss");
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AddDirectiveHandler<&COFFAsmParser::ParseDirectiveDef>(".def");
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AddDirectiveHandler<&COFFAsmParser::ParseDirectiveScl>(".scl");
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AddDirectiveHandler<&COFFAsmParser::ParseDirectiveType>(".type");
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AddDirectiveHandler<&COFFAsmParser::ParseDirectiveEndef>(".endef");
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AddDirectiveHandler<&COFFAsmParser::ParseDirectiveSecRel32>(".secrel32");
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// Win64 EH directives.
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveStartProc>(
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".seh_proc");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveEndProc>(
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".seh_endproc");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveStartChained>(
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".seh_startchained");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveEndChained>(
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".seh_endchained");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveHandler>(
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".seh_handler");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveHandlerData>(
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".seh_handlerdata");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectivePushReg>(
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".seh_pushreg");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveSetFrame>(
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".seh_setframe");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveAllocStack>(
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".seh_stackalloc");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveSaveReg>(
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".seh_savereg");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveSaveXMM>(
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".seh_savexmm");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectivePushFrame>(
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".seh_pushframe");
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AddDirectiveHandler<&COFFAsmParser::ParseSEHDirectiveEndProlog>(
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".seh_endprologue");
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AddDirectiveHandler<&COFFAsmParser::ParseDirectiveSymbolAttribute>(".weak");
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}
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bool ParseSectionDirectiveText(StringRef, SMLoc) {
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return ParseSectionSwitch(".text",
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COFF::IMAGE_SCN_CNT_CODE
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| COFF::IMAGE_SCN_MEM_EXECUTE
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| COFF::IMAGE_SCN_MEM_READ,
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SectionKind::getText());
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}
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bool ParseSectionDirectiveData(StringRef, SMLoc) {
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return ParseSectionSwitch(".data",
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COFF::IMAGE_SCN_CNT_INITIALIZED_DATA
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| COFF::IMAGE_SCN_MEM_READ
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| COFF::IMAGE_SCN_MEM_WRITE,
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SectionKind::getDataRel());
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}
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bool ParseSectionDirectiveBSS(StringRef, SMLoc) {
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return ParseSectionSwitch(".bss",
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COFF::IMAGE_SCN_CNT_UNINITIALIZED_DATA
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| COFF::IMAGE_SCN_MEM_READ
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| COFF::IMAGE_SCN_MEM_WRITE,
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SectionKind::getBSS());
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}
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bool ParseDirectiveDef(StringRef, SMLoc);
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bool ParseDirectiveScl(StringRef, SMLoc);
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bool ParseDirectiveType(StringRef, SMLoc);
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bool ParseDirectiveEndef(StringRef, SMLoc);
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bool ParseDirectiveSecRel32(StringRef, SMLoc);
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// Win64 EH directives.
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bool ParseSEHDirectiveStartProc(StringRef, SMLoc);
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bool ParseSEHDirectiveEndProc(StringRef, SMLoc);
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bool ParseSEHDirectiveStartChained(StringRef, SMLoc);
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bool ParseSEHDirectiveEndChained(StringRef, SMLoc);
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bool ParseSEHDirectiveHandler(StringRef, SMLoc);
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bool ParseSEHDirectiveHandlerData(StringRef, SMLoc);
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bool ParseSEHDirectivePushReg(StringRef, SMLoc);
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bool ParseSEHDirectiveSetFrame(StringRef, SMLoc);
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bool ParseSEHDirectiveAllocStack(StringRef, SMLoc);
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bool ParseSEHDirectiveSaveReg(StringRef, SMLoc);
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bool ParseSEHDirectiveSaveXMM(StringRef, SMLoc);
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bool ParseSEHDirectivePushFrame(StringRef, SMLoc);
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bool ParseSEHDirectiveEndProlog(StringRef, SMLoc);
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bool ParseAtUnwindOrAtExcept(bool &unwind, bool &except);
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bool ParseSEHRegisterNumber(unsigned &RegNo);
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bool ParseDirectiveSymbolAttribute(StringRef Directive, SMLoc);
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public:
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COFFAsmParser() {}
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};
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} // end annonomous namespace.
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/// ParseDirectiveSymbolAttribute
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/// ::= { ".weak", ... } [ identifier ( , identifier )* ]
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bool COFFAsmParser::ParseDirectiveSymbolAttribute(StringRef Directive, SMLoc) {
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MCSymbolAttr Attr = StringSwitch<MCSymbolAttr>(Directive)
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.Case(".weak", MCSA_Weak)
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.Default(MCSA_Invalid);
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assert(Attr != MCSA_Invalid && "unexpected symbol attribute directive!");
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if (getLexer().isNot(AsmToken::EndOfStatement)) {
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for (;;) {
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StringRef Name;
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if (getParser().ParseIdentifier(Name))
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return TokError("expected identifier in directive");
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MCSymbol *Sym = getContext().GetOrCreateSymbol(Name);
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getStreamer().EmitSymbolAttribute(Sym, Attr);
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if (getLexer().is(AsmToken::EndOfStatement))
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break;
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if (getLexer().isNot(AsmToken::Comma))
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return TokError("unexpected token in directive");
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Lex();
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}
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}
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Lex();
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return false;
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}
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bool COFFAsmParser::ParseSectionSwitch(StringRef Section,
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unsigned Characteristics,
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SectionKind Kind) {
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in section switching directive");
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Lex();
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getStreamer().SwitchSection(getContext().getCOFFSection(
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Section, Characteristics, Kind));
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return false;
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}
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bool COFFAsmParser::ParseDirectiveDef(StringRef, SMLoc) {
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StringRef SymbolName;
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if (getParser().ParseIdentifier(SymbolName))
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return TokError("expected identifier in directive");
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MCSymbol *Sym = getContext().GetOrCreateSymbol(SymbolName);
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getStreamer().BeginCOFFSymbolDef(Sym);
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Lex();
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return false;
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}
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bool COFFAsmParser::ParseDirectiveScl(StringRef, SMLoc) {
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int64_t SymbolStorageClass;
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if (getParser().ParseAbsoluteExpression(SymbolStorageClass))
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return true;
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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Lex();
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getStreamer().EmitCOFFSymbolStorageClass(SymbolStorageClass);
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return false;
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}
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bool COFFAsmParser::ParseDirectiveType(StringRef, SMLoc) {
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int64_t Type;
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if (getParser().ParseAbsoluteExpression(Type))
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return true;
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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Lex();
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getStreamer().EmitCOFFSymbolType(Type);
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return false;
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}
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bool COFFAsmParser::ParseDirectiveEndef(StringRef, SMLoc) {
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Lex();
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getStreamer().EndCOFFSymbolDef();
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return false;
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}
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bool COFFAsmParser::ParseDirectiveSecRel32(StringRef, SMLoc) {
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StringRef SymbolID;
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if (getParser().ParseIdentifier(SymbolID))
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return true;
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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MCSymbol *Symbol = getContext().GetOrCreateSymbol(SymbolID);
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Lex();
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getStreamer().EmitCOFFSecRel32(Symbol);
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveStartProc(StringRef, SMLoc) {
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StringRef SymbolID;
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if (getParser().ParseIdentifier(SymbolID))
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return true;
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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MCSymbol *Symbol = getContext().GetOrCreateSymbol(SymbolID);
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Lex();
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getStreamer().EmitWin64EHStartProc(Symbol);
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveEndProc(StringRef, SMLoc) {
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Lex();
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getStreamer().EmitWin64EHEndProc();
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveStartChained(StringRef, SMLoc) {
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Lex();
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getStreamer().EmitWin64EHStartChained();
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveEndChained(StringRef, SMLoc) {
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Lex();
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getStreamer().EmitWin64EHEndChained();
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveHandler(StringRef, SMLoc) {
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StringRef SymbolID;
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if (getParser().ParseIdentifier(SymbolID))
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return true;
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if (getLexer().isNot(AsmToken::Comma))
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return TokError("you must specify one or both of @unwind or @except");
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Lex();
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bool unwind = false, except = false;
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if (ParseAtUnwindOrAtExcept(unwind, except))
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return true;
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if (getLexer().is(AsmToken::Comma)) {
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Lex();
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if (ParseAtUnwindOrAtExcept(unwind, except))
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return true;
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}
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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MCSymbol *handler = getContext().GetOrCreateSymbol(SymbolID);
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Lex();
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getStreamer().EmitWin64EHHandler(handler, unwind, except);
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveHandlerData(StringRef, SMLoc) {
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Lex();
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getStreamer().EmitWin64EHHandlerData();
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectivePushReg(StringRef, SMLoc L) {
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unsigned Reg;
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if (ParseSEHRegisterNumber(Reg))
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return true;
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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Lex();
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getStreamer().EmitWin64EHPushReg(Reg);
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveSetFrame(StringRef, SMLoc L) {
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unsigned Reg;
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int64_t Off;
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if (ParseSEHRegisterNumber(Reg))
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return true;
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if (getLexer().isNot(AsmToken::Comma))
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return TokError("you must specify a stack pointer offset");
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Lex();
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SMLoc startLoc = getLexer().getLoc();
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if (getParser().ParseAbsoluteExpression(Off))
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return true;
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if (Off & 0x0F)
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return Error(startLoc, "offset is not a multiple of 16");
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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Lex();
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getStreamer().EmitWin64EHSetFrame(Reg, Off);
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveAllocStack(StringRef, SMLoc) {
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int64_t Size;
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SMLoc startLoc = getLexer().getLoc();
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if (getParser().ParseAbsoluteExpression(Size))
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return true;
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if (Size & 7)
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return Error(startLoc, "size is not a multiple of 8");
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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Lex();
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getStreamer().EmitWin64EHAllocStack(Size);
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveSaveReg(StringRef, SMLoc L) {
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unsigned Reg;
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int64_t Off;
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if (ParseSEHRegisterNumber(Reg))
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return true;
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if (getLexer().isNot(AsmToken::Comma))
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return TokError("you must specify an offset on the stack");
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Lex();
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SMLoc startLoc = getLexer().getLoc();
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if (getParser().ParseAbsoluteExpression(Off))
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return true;
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if (Off & 7)
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return Error(startLoc, "size is not a multiple of 8");
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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Lex();
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// FIXME: Err on %xmm* registers
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getStreamer().EmitWin64EHSaveReg(Reg, Off);
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return false;
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}
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// FIXME: This method is inherently x86-specific. It should really be in the
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// x86 backend.
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bool COFFAsmParser::ParseSEHDirectiveSaveXMM(StringRef, SMLoc L) {
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unsigned Reg;
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int64_t Off;
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if (ParseSEHRegisterNumber(Reg))
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return true;
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if (getLexer().isNot(AsmToken::Comma))
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return TokError("you must specify an offset on the stack");
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Lex();
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SMLoc startLoc = getLexer().getLoc();
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if (getParser().ParseAbsoluteExpression(Off))
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return true;
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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if (Off & 0x0F)
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return Error(startLoc, "offset is not a multiple of 16");
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Lex();
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// FIXME: Err on non-%xmm* registers
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getStreamer().EmitWin64EHSaveXMM(Reg, Off);
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectivePushFrame(StringRef, SMLoc) {
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bool Code = false;
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StringRef CodeID;
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if (getLexer().is(AsmToken::At)) {
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SMLoc startLoc = getLexer().getLoc();
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Lex();
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if (!getParser().ParseIdentifier(CodeID)) {
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if (CodeID != "code")
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return Error(startLoc, "expected @code");
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Code = true;
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}
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}
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if (getLexer().isNot(AsmToken::EndOfStatement))
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return TokError("unexpected token in directive");
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Lex();
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getStreamer().EmitWin64EHPushFrame(Code);
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return false;
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}
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bool COFFAsmParser::ParseSEHDirectiveEndProlog(StringRef, SMLoc) {
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Lex();
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getStreamer().EmitWin64EHEndProlog();
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return false;
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}
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bool COFFAsmParser::ParseAtUnwindOrAtExcept(bool &unwind, bool &except) {
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StringRef identifier;
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if (getLexer().isNot(AsmToken::At))
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return TokError("a handler attribute must begin with '@'");
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SMLoc startLoc = getLexer().getLoc();
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Lex();
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if (getParser().ParseIdentifier(identifier))
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return Error(startLoc, "expected @unwind or @except");
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if (identifier == "unwind")
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unwind = true;
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else if (identifier == "except")
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except = true;
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else
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return Error(startLoc, "expected @unwind or @except");
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return false;
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}
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bool COFFAsmParser::ParseSEHRegisterNumber(unsigned &RegNo) {
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SMLoc startLoc = getLexer().getLoc();
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if (getLexer().is(AsmToken::Percent)) {
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const MCRegisterInfo &MRI = getContext().getRegisterInfo();
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SMLoc endLoc;
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unsigned LLVMRegNo;
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if (getParser().getTargetParser().ParseRegister(LLVMRegNo,startLoc,endLoc))
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return true;
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#if 0
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// FIXME: TargetAsmInfo::getCalleeSavedRegs() commits a serious layering
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// violation so this validation code is disabled.
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// Check that this is a non-volatile register.
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const unsigned *NVRegs = TAI.getCalleeSavedRegs();
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unsigned i;
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for (i = 0; NVRegs[i] != 0; ++i)
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if (NVRegs[i] == LLVMRegNo)
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break;
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if (NVRegs[i] == 0)
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return Error(startLoc, "expected non-volatile register");
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#endif
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int SEHRegNo = MRI.getSEHRegNum(LLVMRegNo);
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if (SEHRegNo < 0)
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return Error(startLoc,"register can't be represented in SEH unwind info");
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RegNo = SEHRegNo;
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}
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else {
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int64_t n;
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if (getParser().ParseAbsoluteExpression(n))
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return true;
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if (n > 15)
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return Error(startLoc, "register number is too high");
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RegNo = n;
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}
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return false;
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}
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namespace llvm {
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MCAsmParserExtension *createCOFFAsmParser() {
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return new COFFAsmParser;
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}
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}
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