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https://github.com/c64scene-ar/llvm-6502.git
synced 2024-11-02 07:11:49 +00:00
start implementing some simple operand parsing.
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@73867 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -26,7 +26,6 @@ bool AsmParser::TokError(const char *Msg) {
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return true;
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}
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bool AsmParser::Run() {
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// Prime the lexer.
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Lexer.Lex();
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@ -38,10 +37,86 @@ bool AsmParser::Run() {
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return false;
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}
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/// EatToEndOfStatement - Throw away the rest of the line for testing purposes.
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void AsmParser::EatToEndOfStatement() {
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while (Lexer.isNot(asmtok::EndOfStatement) &&
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Lexer.isNot(asmtok::Eof))
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Lexer.Lex();
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// Eat EOL.
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if (Lexer.is(asmtok::EndOfStatement))
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Lexer.Lex();
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}
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struct AsmParser::X86Operand {
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enum {
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Register,
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Immediate
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} Kind;
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union {
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struct {
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unsigned RegNo;
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} Reg;
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struct {
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// FIXME: Should be a general expression.
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int64_t Val;
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} Imm;
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};
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static X86Operand CreateReg(unsigned RegNo) {
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X86Operand Res;
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Res.Kind = Register;
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Res.Reg.RegNo = RegNo;
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return Res;
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}
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static X86Operand CreateImm(int64_t Val) {
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X86Operand Res;
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Res.Kind = Immediate;
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Res.Imm.Val = Val;
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return Res;
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}
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};
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bool AsmParser::ParseX86Operand(X86Operand &Op) {
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switch (Lexer.getKind()) {
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default:
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return TokError("unknown token at start of instruction operand");
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case asmtok::Register:
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// FIXME: Decode reg #.
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Op = X86Operand::CreateReg(0);
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Lexer.Lex(); // Eat register.
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return false;
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case asmtok::Dollar:
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// $42 -> immediate.
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Lexer.Lex();
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// FIXME: Parse an arbitrary expression here, like $(4+5)
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if (Lexer.isNot(asmtok::IntVal))
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return TokError("expected integer constant");
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Op = X86Operand::CreateReg(Lexer.getCurIntVal());
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Lexer.Lex(); // Eat register.
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return false;
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case asmtok::Identifier:
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// This is a label, this should be parsed as part of an expression, to
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// handle things like LFOO+4
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Op = X86Operand::CreateImm(0); // FIXME.
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Lexer.Lex(); // Eat identifier.
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return false;
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//case asmtok::Star:
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// * %eax
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// * <memaddress>
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// Note that these are both "dereferenced".
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}
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}
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/// ParseStatement:
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/// ::= EndOfStatement
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/// ::= Label* Identifier Operands* EndOfStatement
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/// ::= Label* Directive ...Operands... EndOfStatement
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/// ::= Label* Identifier OperandList* EndOfStatement
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bool AsmParser::ParseStatement() {
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switch (Lexer.getKind()) {
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default:
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@ -55,7 +130,7 @@ bool AsmParser::ParseStatement() {
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}
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// If we have an identifier, handle it as the key symbol.
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//SMLoc IDLoc = Lexer.getLoc();
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SMLoc IDLoc = Lexer.getLoc();
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std::string IDVal = Lexer.getCurStrVal();
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// Consume the identifier, see what is after it.
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@ -66,18 +141,44 @@ bool AsmParser::ParseStatement() {
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}
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// Otherwise, we have a normal instruction or directive.
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if (IDVal[0] == '.')
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outs() << "Found directive: " << IDVal << "\n";
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else
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outs() << "Found instruction: " << IDVal << "\n";
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if (IDVal[0] == '.') {
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Lexer.PrintMessage(IDLoc, "warning: ignoring directive for now");
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EatToEndOfStatement();
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return false;
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}
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// Skip to end of line for now.
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while (Lexer.isNot(asmtok::EndOfStatement) &&
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Lexer.isNot(asmtok::Eof))
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Lexer.Lex();
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// If it's an instruction, parse an operand list.
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std::vector<X86Operand> Operands;
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// Eat EOL.
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if (Lexer.is(asmtok::EndOfStatement))
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Lexer.Lex();
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// Read the first operand, if present. Note that we require a newline at the
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// end of file, so we don't have to worry about Eof here.
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if (Lexer.isNot(asmtok::EndOfStatement)) {
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X86Operand Op;
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if (ParseX86Operand(Op))
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return true;
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Operands.push_back(Op);
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}
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while (Lexer.is(asmtok::Comma)) {
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Lexer.Lex(); // Eat the comma.
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// Parse and remember the operand.
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X86Operand Op;
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if (ParseX86Operand(Op))
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return true;
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Operands.push_back(Op);
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}
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if (Lexer.isNot(asmtok::EndOfStatement))
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return TokError("unexpected token in operand list");
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// Eat the end of statement marker.
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Lexer.Lex();
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// Instruction is good, process it.
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outs() << "Found instruction: " << IDVal << " with " << Operands.size()
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<< " operands.\n";
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// Skip to end of line for now.
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return false;
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}
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@ -17,9 +17,10 @@
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#include "AsmLexer.h"
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namespace llvm {
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class AsmParser {
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AsmLexer Lexer;
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struct X86Operand;
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public:
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AsmParser(SourceMgr &SM) : Lexer(SM) {}
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@ -32,6 +33,10 @@ private:
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bool Error(SMLoc L, const char *Msg);
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bool TokError(const char *Msg);
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void EatToEndOfStatement();
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bool ParseX86Operand(X86Operand &Op);
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};
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} // end namespace llvm
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