AsmMatcherEmitter.cpp revision be480ff607285157361a100e72ac5ed84ccce328
1d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//===- AsmMatcherEmitter.cpp - Generate an assembly matcher ---------------===//
2d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//
3d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//                     The LLVM Compiler Infrastructure
4d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//
5d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar// This file is distributed under the University of Illinois Open Source
6d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar// License. See LICENSE.TXT for details.
7d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//
8d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//===----------------------------------------------------------------------===//
9d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//
10d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar// This tablegen backend emits a target specifier matcher for converting parsed
11e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes// assembly operands in the MCInst structures. It also emits a matcher for
12e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes// custom operand parsing.
13e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//
14e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes// Converting assembly operands into MCInst structures
15e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes// ---------------------------------------------------
16d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//
1720927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// The input to the target specific matcher is a list of literal tokens and
1820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// operands. The target specific parser should generally eliminate any syntax
1920927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// which is not relevant for matching; for example, comma tokens should have
2020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// already been consumed and eliminated by the parser. Most instructions will
2120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// end up with a single literal token (the instruction name) and some number of
2220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// operands.
2320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
2420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// Some example inputs, for X86:
2520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//   'addl' (immediate ...) (register ...)
2620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//   'add' (immediate ...) (memory ...)
27a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach//   'call' '*' %epc
2820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
2920927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// The assembly matcher is responsible for converting this input into a precise
3020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// machine instruction (i.e., an instruction with a well defined encoding). This
3120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// mapping has several properties which complicate matching:
3220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
3320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//  - It may be ambiguous; many architectures can legally encode particular
3420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    variants of an instruction in different ways (for example, using a smaller
3520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    encoding for small immediates). Such ambiguities should never be
3620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    arbitrarily resolved by the assembler, the assembler is always responsible
3720927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    for choosing the "best" available instruction.
3820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
3920927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//  - It may depend on the subtarget or the assembler context. Instructions
4020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    which are invalid for the current mode, but otherwise unambiguous (e.g.,
4120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    an SSE instruction in a file being assembled for i486) should be accepted
4220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    and rejected by the assembler front end. However, if the proper encoding
4320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    for an instruction is dependent on the assembler context then the matcher
4420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    is responsible for selecting the correct machine instruction for the
4520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//    current mode.
4620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
4720927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// The core matching algorithm attempts to exploit the regularity in most
4820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// instruction sets to quickly determine the set of possibly matching
4920927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// instructions, and the simplify the generated code. Additionally, this helps
5020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// to ensure that the ambiguities are intentionally resolved by the user.
5120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
5220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar// The matching is divided into two distinct phases:
5320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
5420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//   1. Classification: Each operand is mapped to the unique set which (a)
5520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      contains it, and (b) is the largest such subset for which a single
5620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      instruction could match all members.
5720927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
5820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      For register classes, we can generate these subgroups automatically. For
5920927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      arbitrary operands, we expect the user to define the classes and their
6020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      relations to one another (for example, 8-bit signed immediates as a
6120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      subset of 32-bit immediates).
6220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
6320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      By partitioning the operands in this way, we guarantee that for any
6420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      tuple of classes, any single instruction must match either all or none
6520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      of the sets of operands which could classify to that tuple.
6620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
6720927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      In addition, the subset relation amongst classes induces a partial order
6820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      on such tuples, which we use to resolve ambiguities.
6920927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
7020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//   2. The input can now be treated as a tuple of classes (static tokens are
7120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      simple singleton sets). Each such tuple should generally map to a single
7220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      instruction (we currently ignore cases where this isn't true, whee!!!),
7320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//      which we can emit a simple matcher for.
7420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar//
75e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes// Custom Operand Parsing
76e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes// ----------------------
77e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//
78e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//  Some targets need a custom way to parse operands, some specific instructions
79e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//  can contain arguments that can represent processor flags and other kinds of
80be480ff607285157361a100e72ac5ed84ccce328Craig Topper//  identifiers that need to be mapped to specific values in the final encoded
81e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//  instructions. The target specific custom operand parsing works in the
82e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//  following way:
83e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//
84e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//   1. A operand match table is built, each entry contains a mnemonic, an
85e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//      operand class, a mask for all operand positions for that same
86e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//      class/mnemonic and target features to be checked while trying to match.
87e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//
88e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//   2. The operand matcher will try every possible entry with the same
89e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//      mnemonic and will check if the target feature for this mnemonic also
90e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//      matches. After that, if the operand to be matched has its index
917a2bdde0a0eebcd2125055e0eacaca040f0b766cChris Lattner//      present in the mask, a successful match occurs. Otherwise, fallback
92e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//      to the regular operand parsing.
93e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//
94e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//   3. For a match success, each operand class that has a 'ParserMethod'
95e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//      becomes part of a switch from where the custom method is called.
96e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes//
97d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar//===----------------------------------------------------------------------===//
98d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar
99d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar#include "CodeGenTarget.h"
100a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer#include "StringToOffsetTable.h"
10120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar#include "llvm/ADT/OwningPtr.h"
102c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner#include "llvm/ADT/PointerUnion.h"
1031de88235781c45c0afc0c7500d65b59775196c4cChris Lattner#include "llvm/ADT/SmallPtrSet.h"
104a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar#include "llvm/ADT/SmallVector.h"
105606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar#include "llvm/ADT/STLExtras.h"
10620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar#include "llvm/ADT/StringExtras.h"
10720927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar#include "llvm/Support/CommandLine.h"
108a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar#include "llvm/Support/Debug.h"
109655b8de7b2ab773a977e0c524307e71354d8af29Craig Topper#include "llvm/Support/ErrorHandling.h"
1107c788888872233748da10a8177a9a1eb176c1bc8Peter Collingbourne#include "llvm/TableGen/Error.h"
1117c788888872233748da10a8177a9a1eb176c1bc8Peter Collingbourne#include "llvm/TableGen/Record.h"
112f657da2e4896732f306a9e62261418112e7337ceDouglas Gregor#include "llvm/TableGen/StringMatcher.h"
1136f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen#include "llvm/TableGen/TableGenBackend.h"
1146f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen#include <cassert>
115b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar#include <map>
116b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar#include <set>
117d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbarusing namespace llvm;
118d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar
1192724915c171b08fa9f7f9e54a46ea81708d9c5b2Daniel Dunbarstatic cl::opt<std::string>
120606e8ad796f72824f5509e2657c44eca025d4bafDaniel DunbarMatchPrefix("match-prefix", cl::init(""),
121606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar            cl::desc("Only match instructions with the given prefix"));
12220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
12320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbarnamespace {
124828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilsonclass AsmMatcherInfo;
12554074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbarstruct SubtargetFeatureInfo;
12654074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
1276f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesenclass AsmMatcherEmitter {
1286f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen  RecordKeeper &Records;
1296f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesenpublic:
1306f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen  AsmMatcherEmitter(RecordKeeper &R) : Records(R) {}
1316f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen
1326f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen  void run(raw_ostream &o);
1336f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen};
1346f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen
135a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar/// ClassInfo - Helper class for storing the information about a particular
136a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar/// class of operands which can be matched.
137a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbarstruct ClassInfo {
138606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  enum ClassInfoKind {
139ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    /// Invalid kind, for use as a sentinel value.
140ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    Invalid = 0,
141ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
142ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    /// The class for a particular token.
143ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    Token,
144ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
145ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    /// The (first) register class, subsequent register classes are
146ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    /// RegisterClass0+1, and so on.
147ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    RegisterClass0,
148ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
149ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    /// The (first) user defined class, subsequent user defined classes are
150ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    /// UserClass0+1, and so on.
151ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    UserClass0 = 1<<16
152606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  };
153606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
154606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  /// Kind - The class kind, which is either a predefined kind, or (UserClass0 +
155606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  /// N) for the Nth user defined class.
156606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  unsigned Kind;
157a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
158ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// SuperClasses - The super classes of this class. Note that for simplicities
159ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// sake user operands only record their immediate super class, while register
160ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// operands include all superclasses.
161ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  std::vector<ClassInfo*> SuperClasses;
1625fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar
1636745d42e8e51ba6b9546d6fa62e0c1b1e0f3982aDaniel Dunbar  /// Name - The full class name, suitable for use in an enum.
164a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  std::string Name;
165a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
1666745d42e8e51ba6b9546d6fa62e0c1b1e0f3982aDaniel Dunbar  /// ClassName - The unadorned generic name for this class (e.g., Token).
1676745d42e8e51ba6b9546d6fa62e0c1b1e0f3982aDaniel Dunbar  std::string ClassName;
1686745d42e8e51ba6b9546d6fa62e0c1b1e0f3982aDaniel Dunbar
169a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// ValueName - The name of the value this class represents; for a token this
170a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// is the literal token string, for an operand it is the TableGen class (or
171a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// empty if this is a derived class).
172a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  std::string ValueName;
173a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
174a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// PredicateMethod - The name of the operand method to test whether the
175ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// operand matches this class; this is not valid for Token or register kinds.
176a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  std::string PredicateMethod;
177a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
178a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// RenderMethod - The name of the operand method to add this operand to an
179ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// MCInst; this is not valid for Token or register kinds.
180a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  std::string RenderMethod;
181606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
182e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  /// ParserMethod - The name of the operand method to do a target specific
183e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  /// parsing on the operand.
184e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  std::string ParserMethod;
185e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
1868409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar  /// For register classes, the records for all the registers in this class.
1878409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar  std::set<Record*> Registers;
1888409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar
1894dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  /// For custom match classes, he diagnostic kind for when the predicate fails.
1904dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  std::string DiagnosticType;
1918409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbarpublic:
192ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// isRegisterClass() - Check if this is a register class.
193ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  bool isRegisterClass() const {
194ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    return Kind >= RegisterClass0 && Kind < UserClass0;
195ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  }
196ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1975fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar  /// isUserClass() - Check if this is a user defined class.
1985fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar  bool isUserClass() const {
1995fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar    return Kind >= UserClass0;
2005fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar  }
2015fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar
2024e0ae44b3a1b5f7157351764fd125c7c85959797Dmitri Gribenko  /// isRelatedTo - Check whether this class is "related" to \p RHS. Classes
203ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// are related if they are in the same class hierarchy.
204ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  bool isRelatedTo(const ClassInfo &RHS) const {
205ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    // Tokens are only related to tokens.
206ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    if (Kind == Token || RHS.Kind == Token)
207ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      return Kind == Token && RHS.Kind == Token;
208ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
2098409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    // Registers classes are only related to registers classes, and only if
2108409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    // their intersection is non-empty.
2118409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    if (isRegisterClass() || RHS.isRegisterClass()) {
2128409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar      if (!isRegisterClass() || !RHS.isRegisterClass())
2138409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar        return false;
2148409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar
2158409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar      std::set<Record*> Tmp;
2168409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar      std::insert_iterator< std::set<Record*> > II(Tmp, Tmp.begin());
217a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach      std::set_intersection(Registers.begin(), Registers.end(),
2188409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar                            RHS.Registers.begin(), RHS.Registers.end(),
2198409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar                            II);
2208409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar
2218409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar      return !Tmp.empty();
2228409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    }
223ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
224ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    // Otherwise we have two users operands; they are related if they are in the
225ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    // same class hierarchy.
2268409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    //
2278409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    // FIXME: This is an oversimplification, they should only be related if they
2288409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    // intersect, however we don't have that information.
229ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    assert(isUserClass() && RHS.isUserClass() && "Unexpected class!");
230ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    const ClassInfo *Root = this;
231ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    while (!Root->SuperClasses.empty())
232ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      Root = Root->SuperClasses.front();
233ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
2348409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    const ClassInfo *RHSRoot = &RHS;
235ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    while (!RHSRoot->SuperClasses.empty())
236ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      RHSRoot = RHSRoot->SuperClasses.front();
237a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
238ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    return Root == RHSRoot;
239ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  }
240ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
2414e0ae44b3a1b5f7157351764fd125c7c85959797Dmitri Gribenko  /// isSubsetOf - Test whether this class is a subset of \p RHS.
242ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  bool isSubsetOf(const ClassInfo &RHS) const {
243ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    // This is a subset of RHS if it is the same class...
244ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    if (this == &RHS)
245ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      return true;
246ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
247ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    // ... or if any of its super classes are a subset of RHS.
248ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    for (std::vector<ClassInfo*>::const_iterator it = SuperClasses.begin(),
249ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar           ie = SuperClasses.end(); it != ie; ++it)
250ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      if ((*it)->isSubsetOf(RHS))
251ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar        return true;
252ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
253ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    return false;
2545fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar  }
2555fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar
256606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  /// operator< - Compare two classes.
257606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  bool operator<(const ClassInfo &RHS) const {
258368a4565034b907943f5c0173574eb47939b74bfDaniel Dunbar    if (this == &RHS)
259368a4565034b907943f5c0173574eb47939b74bfDaniel Dunbar      return false;
260368a4565034b907943f5c0173574eb47939b74bfDaniel Dunbar
261ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    // Unrelated classes can be ordered by kind.
262ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    if (!isRelatedTo(RHS))
263606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar      return Kind < RHS.Kind;
264606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
265606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar    switch (Kind) {
2666745d42e8e51ba6b9546d6fa62e0c1b1e0f3982aDaniel Dunbar    case Invalid:
267655b8de7b2ab773a977e0c524307e71354d8af29Craig Topper      llvm_unreachable("Invalid kind!");
268606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
269606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar    default:
2707a2bdde0a0eebcd2125055e0eacaca040f0b766cChris Lattner      // This class precedes the RHS if it is a proper subset of the RHS.
271368a4565034b907943f5c0173574eb47939b74bfDaniel Dunbar      if (isSubsetOf(RHS))
2723472766f9eb7d66f234c390ce1b3a8b76f0ee9ceDuncan Sands        return true;
273368a4565034b907943f5c0173574eb47939b74bfDaniel Dunbar      if (RHS.isSubsetOf(*this))
2743472766f9eb7d66f234c390ce1b3a8b76f0ee9ceDuncan Sands        return false;
275368a4565034b907943f5c0173574eb47939b74bfDaniel Dunbar
276368a4565034b907943f5c0173574eb47939b74bfDaniel Dunbar      // Otherwise, order by name to ensure we have a total ordering.
277368a4565034b907943f5c0173574eb47939b74bfDaniel Dunbar      return ValueName < RHS.ValueName;
278606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar    }
279606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  }
280a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar};
281a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
28222bc5c4184a497353e33195dd12541a4f08b008aChris Lattner/// MatchableInfo - Helper class for storing the necessary information for an
28322bc5c4184a497353e33195dd12541a4f08b008aChris Lattner/// instruction or alias which is capable of being matched.
28422bc5c4184a497353e33195dd12541a4f08b008aChris Lattnerstruct MatchableInfo {
285c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner  struct AsmOperand {
286d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    /// Token - This is the token that the operand came from.
287d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    StringRef Token;
288828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
289a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    /// The unique class instance this operand should match.
290a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    ClassInfo *Class;
291a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
292567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner    /// The operand name this is, if anything.
293567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner    StringRef SrcOpName;
294a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson
295a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    /// The suboperand index within SrcOpName, or -1 for the entire operand.
296a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    int SubOpIdx;
297828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
29863faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel    /// Register record if this token is singleton register.
29963faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel    Record *SingletonReg;
30063faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel
301f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach    explicit AsmOperand(StringRef T) : Token(T), Class(0), SubOpIdx(-1),
30211fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach                                       SingletonReg(0) {}
30320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar  };
304828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
3051d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  /// ResOperand - This represents a single operand in the result instruction
3061d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  /// generated by the match.  In cases (like addressing modes) where a single
3071d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  /// assembler operand expands to multiple MCOperands, this represents the
3081d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  /// single assembler operand, not the MCOperand.
3091d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  struct ResOperand {
3101d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    enum {
3111d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// RenderAsmOperand - This represents an operand result that is
3121d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// generated by calling the render method on the assembly operand.  The
3131d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// corresponding AsmOperand is specified by AsmOperandNum.
3141d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      RenderAsmOperand,
315828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
3161d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// TiedOperand - This represents a result operand that is a duplicate of
3171d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// a previous result operand.
31898c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      TiedOperand,
319828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
32098c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      /// ImmOperand - This represents an immediate value that is dumped into
32198c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      /// the operand.
32290fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      ImmOperand,
323828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
32490fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      /// RegOperand - This represents a fixed register that is dumped in.
32590fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      RegOperand
3261d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    } Kind;
327828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
3281d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    union {
3291d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// This is the operand # in the AsmOperands list that this should be
3301d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// copied from.
3311d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      unsigned AsmOperandNum;
332828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
3331d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// TiedOperandNum - This is the (earlier) result operand that should be
3341d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      /// copied from.
3351d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      unsigned TiedOperandNum;
336828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
33798c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      /// ImmVal - This is the immediate value added to the instruction.
33898c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      int64_t ImmVal;
339828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
34090fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      /// Register - This is the register record.
34190fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      Record *Register;
3421d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    };
343828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
344a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    /// MINumOperands - The number of MCInst operands populated by this
345a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    /// operand.
346a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    unsigned MINumOperands;
347828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
348a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    static ResOperand getRenderedOp(unsigned AsmOpNum, unsigned NumOperands) {
3491d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      ResOperand X;
3501d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      X.Kind = RenderAsmOperand;
3511d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      X.AsmOperandNum = AsmOpNum;
352a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      X.MINumOperands = NumOperands;
3531d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      return X;
3541d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    }
355828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
356a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    static ResOperand getTiedOp(unsigned TiedOperandNum) {
3571d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      ResOperand X;
3581d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      X.Kind = TiedOperand;
3591d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      X.TiedOperandNum = TiedOperandNum;
360a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      X.MINumOperands = 1;
3611d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      return X;
3621d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    }
363828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
364a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    static ResOperand getImmOp(int64_t Val) {
36598c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      ResOperand X;
36698c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      X.Kind = ImmOperand;
36798c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      X.ImmVal = Val;
368a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      X.MINumOperands = 1;
36998c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      return X;
37098c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner    }
371828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
372a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    static ResOperand getRegOp(Record *Reg) {
37390fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      ResOperand X;
37490fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      X.Kind = RegOperand;
37590fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      X.Register = Reg;
376a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      X.MINumOperands = 1;
37790fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      return X;
37890fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner    }
3791d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  };
38020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
38156315d319c104dc96187444e1e19711a1c801166Devang Patel  /// AsmVariantID - Target's assembly syntax variant no.
38256315d319c104dc96187444e1e19711a1c801166Devang Patel  int AsmVariantID;
38356315d319c104dc96187444e1e19711a1c801166Devang Patel
3843b5aec67ef174c74ff6620ddd71ad3b0cb39030cChris Lattner  /// TheDef - This is the definition of the instruction or InstAlias that this
3853b5aec67ef174c74ff6620ddd71ad3b0cb39030cChris Lattner  /// matchable came from.
3865bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  Record *const TheDef;
387828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
388c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  /// DefRec - This is the definition that it came from.
389c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  PointerUnion<const CodeGenInstruction*, const CodeGenInstAlias*> DefRec;
390828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
391662e5a30e864e71111b885d3da3cdd184772035dChris Lattner  const CodeGenInstruction *getResultInst() const {
392662e5a30e864e71111b885d3da3cdd184772035dChris Lattner    if (DefRec.is<const CodeGenInstruction*>())
393662e5a30e864e71111b885d3da3cdd184772035dChris Lattner      return DefRec.get<const CodeGenInstruction*>();
394662e5a30e864e71111b885d3da3cdd184772035dChris Lattner    return DefRec.get<const CodeGenInstAlias*>()->ResultInst;
395662e5a30e864e71111b885d3da3cdd184772035dChris Lattner  }
396828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
3971d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  /// ResOperands - This is the operand list that should be built for the result
3981d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  /// MCInst.
399b423d18a00eed4968d6df7415449259b09b7d67eJim Grosbach  SmallVector<ResOperand, 8> ResOperands;
40020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
40120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar  /// AsmString - The assembly string for this instruction (with variants
4023b5aec67ef174c74ff6620ddd71ad3b0cb39030cChris Lattner  /// removed), e.g. "movsx $src, $dst".
40320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar  std::string AsmString;
40420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
405d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  /// Mnemonic - This is the first token of the matched instruction, its
406d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  /// mnemonic.
407d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  StringRef Mnemonic;
408828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
4093116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner  /// AsmOperands - The textual operands that this instruction matches,
4103b5aec67ef174c74ff6620ddd71ad3b0cb39030cChris Lattner  /// annotated with a class and where in the OperandList they were defined.
4113b5aec67ef174c74ff6620ddd71ad3b0cb39030cChris Lattner  /// This directly corresponds to the tokenized AsmString after the mnemonic is
4123b5aec67ef174c74ff6620ddd71ad3b0cb39030cChris Lattner  /// removed.
413b423d18a00eed4968d6df7415449259b09b7d67eJim Grosbach  SmallVector<AsmOperand, 8> AsmOperands;
41420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
41554074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  /// Predicates - The required subtarget features to match this instruction.
41654074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  SmallVector<SubtargetFeatureInfo*, 4> RequiredFeatures;
41754074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
418b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  /// ConversionFnKind - The enum value which is passed to the generated
41990e11f8c95146c2d3718e9b3de71ee6628347b05Chad Rosier  /// convertToMCInst to convert parsed operands into an MCInst for this
420b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  /// function.
421b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  std::string ConversionFnKind;
422828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
42322bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  MatchableInfo(const CodeGenInstruction &CGI)
424f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach    : AsmVariantID(0), TheDef(CGI.TheDef), DefRec(&CGI),
42556315d319c104dc96187444e1e19711a1c801166Devang Patel      AsmString(CGI.AsmString) {
4265bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  }
4275bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner
42822bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  MatchableInfo(const CodeGenInstAlias *Alias)
429f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach    : AsmVariantID(0), TheDef(Alias->TheDef), DefRec(Alias),
43056315d319c104dc96187444e1e19711a1c801166Devang Patel      AsmString(Alias->AsmString) {
431c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner  }
432828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
433c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Two-operand aliases clone from the main matchable, but mark the second
434c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // operand as a tied operand of the first for purposes of the assembler.
435c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  void formTwoOperandAlias(StringRef Constraint);
436c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach
4378caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void initialize(const AsmMatcherInfo &Info,
438f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach                  SmallPtrSet<Record*, 16> &SingletonRegisters,
43911fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach                  int AsmVariantNo, std::string &RegisterPrefix);
440828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
4418caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  /// validate - Return true if this matchable is a valid thing to match against
44222bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  /// and perform a bunch of validity checking.
4438caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  bool validate(StringRef CommentDelimiter, bool Hack) const;
444828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
445f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach  /// extractSingletonRegisterForAsmOperand - Extract singleton register,
44663faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  /// if present, from specified token.
44763faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  void
44863faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  extractSingletonRegisterForAsmOperand(unsigned i, const AsmMatcherInfo &Info,
44963faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel                                        std::string &RegisterPrefix);
45020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
4518caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  /// findAsmOperand - Find the AsmOperand with the specified name and
452a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  /// suboperand index.
4538caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  int findAsmOperand(StringRef N, int SubOpIdx) const {
454a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    for (unsigned i = 0, e = AsmOperands.size(); i != e; ++i)
455a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      if (N == AsmOperands[i].SrcOpName &&
456a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson          SubOpIdx == AsmOperands[i].SubOpIdx)
457a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        return i;
458a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    return -1;
459a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  }
460828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
4618caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  /// findAsmOperandNamed - Find the first AsmOperand with the specified name.
462a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  /// This does not check the suboperand index.
4638caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  int findAsmOperandNamed(StringRef N) const {
464ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner    for (unsigned i = 0, e = AsmOperands.size(); i != e; ++i)
465ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner      if (N == AsmOperands[i].SrcOpName)
466ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner        return i;
467ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner    return -1;
468ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner  }
469828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
4708caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void buildInstructionResultOperands();
4718caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void buildAliasResultOperands();
4721d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner
47322bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  /// operator< - Compare two matchables.
47422bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  bool operator<(const MatchableInfo &RHS) const {
475e206fcf0e9c7e79c7f42ff2151f3fb58cba70674Chris Lattner    // The primary comparator is the instruction mnemonic.
476d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    if (Mnemonic != RHS.Mnemonic)
477d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      return Mnemonic < RHS.Mnemonic;
478a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
4793116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner    if (AsmOperands.size() != RHS.AsmOperands.size())
4803116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner      return AsmOperands.size() < RHS.AsmOperands.size();
4812b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar
482db2ddb5dc57319eff249144f1d9a553a3278d2e0Daniel Dunbar    // Compare lexicographically by operand. The matcher validates that other
4838caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach    // orderings wouldn't be ambiguous using \see couldMatchAmbiguouslyWith().
4843116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner    for (unsigned i = 0, e = AsmOperands.size(); i != e; ++i) {
4853116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner      if (*AsmOperands[i].Class < *RHS.AsmOperands[i].Class)
4862b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar        return true;
4873116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner      if (*RHS.AsmOperands[i].Class < *AsmOperands[i].Class)
488db2ddb5dc57319eff249144f1d9a553a3278d2e0Daniel Dunbar        return false;
489db2ddb5dc57319eff249144f1d9a553a3278d2e0Daniel Dunbar    }
490db2ddb5dc57319eff249144f1d9a553a3278d2e0Daniel Dunbar
4912b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick    // Give matches that require more features higher precedence. This is useful
4922b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick    // because we cannot define AssemblerPredicates with the negation of
4932b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick    // processor features. For example, ARM v6 "nop" may be either a HINT or
4942b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick    // MOV. With v6, we want to match HINT. The assembler has no way to
4952b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick    // predicate MOV under "NoV6", but HINT will always match first because it
4962b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick    // requires V6 while MOV does not.
4972b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick    if (RequiredFeatures.size() != RHS.RequiredFeatures.size())
4982b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick      return RequiredFeatures.size() > RHS.RequiredFeatures.size();
4992b70dfaaebcc436c53b2c86cd8a9574baba47253Andrew Trick
5002b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    return false;
5012b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar  }
502606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
5038caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  /// couldMatchAmbiguouslyWith - Check whether this matchable could
5044e0ae44b3a1b5f7157351764fd125c7c85959797Dmitri Gribenko  /// ambiguously match the same set of operands as \p RHS (without being a
5052b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar  /// strictly superior match).
5068caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  bool couldMatchAmbiguouslyWith(const MatchableInfo &RHS) {
507e66b7ebfb426c7ed9bc911e9708321e2d8510b41Chris Lattner    // The primary comparator is the instruction mnemonic.
508d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    if (Mnemonic != RHS.Mnemonic)
509e66b7ebfb426c7ed9bc911e9708321e2d8510b41Chris Lattner      return false;
510828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
5112b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    // The number of operands is unambiguous.
5123116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner    if (AsmOperands.size() != RHS.AsmOperands.size())
5132b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar      return false;
514606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
5151402f0b2cac017ab997f71ab4909a2ccfea7be4bDaniel Dunbar    // Otherwise, make sure the ordering of the two instructions is unambiguous
5161402f0b2cac017ab997f71ab4909a2ccfea7be4bDaniel Dunbar    // by checking that either (a) a token or operand kind discriminates them,
5171402f0b2cac017ab997f71ab4909a2ccfea7be4bDaniel Dunbar    // or (b) the ordering among equivalent kinds is consistent.
5181402f0b2cac017ab997f71ab4909a2ccfea7be4bDaniel Dunbar
5192b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    // Tokens and operand kinds are unambiguous (assuming a correct target
5202b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    // specific parser).
5213116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner    for (unsigned i = 0, e = AsmOperands.size(); i != e; ++i)
5223116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner      if (AsmOperands[i].Class->Kind != RHS.AsmOperands[i].Class->Kind ||
5233116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner          AsmOperands[i].Class->Kind == ClassInfo::Token)
5243116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner        if (*AsmOperands[i].Class < *RHS.AsmOperands[i].Class ||
5253116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner            *RHS.AsmOperands[i].Class < *AsmOperands[i].Class)
5262b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar          return false;
527a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
5282b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    // Otherwise, this operand could commute if all operands are equivalent, or
5292b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    // there is a pair of operands that compare less than and a pair that
5302b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    // compare greater than.
5312b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    bool HasLT = false, HasGT = false;
5323116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner    for (unsigned i = 0, e = AsmOperands.size(); i != e; ++i) {
5333116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner      if (*AsmOperands[i].Class < *RHS.AsmOperands[i].Class)
5342b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar        HasLT = true;
5353116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner      if (*RHS.AsmOperands[i].Class < *AsmOperands[i].Class)
5362b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar        HasGT = true;
5372b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    }
538606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
5392b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar    return !(HasLT ^ HasGT);
540606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  }
541606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
54220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar  void dump();
543828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
544d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattnerprivate:
5458caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void tokenizeAsmString(const AsmMatcherInfo &Info);
54620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar};
54720927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
54854074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar/// SubtargetFeatureInfo - Helper class for storing information on a subtarget
54954074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar/// feature which participates in instruction matching.
55054074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbarstruct SubtargetFeatureInfo {
55154074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  /// \brief The predicate record for this feature.
55254074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  Record *TheDef;
55354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
55454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  /// \brief An unique index assigned to represent this feature.
55554074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  unsigned Index;
55654074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
5570aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner  SubtargetFeatureInfo(Record *D, unsigned Idx) : TheDef(D), Index(Idx) {}
558828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
55954074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  /// \brief The name of the enumerated constant identifying this feature.
5600aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner  std::string getEnumName() const {
5610aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    return "Feature_" + TheDef->getName();
5620aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner  }
56354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar};
56454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
565e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopesstruct OperandMatchEntry {
566e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  unsigned OperandMask;
567e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  MatchableInfo* MI;
568e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  ClassInfo *CI;
569e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
5708caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  static OperandMatchEntry create(MatchableInfo* mi, ClassInfo *ci,
571e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes                                  unsigned opMask) {
572e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OperandMatchEntry X;
573e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    X.OperandMask = opMask;
574e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    X.CI = ci;
575e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    X.MI = mi;
576e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    return X;
577e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  }
578e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes};
579e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
580e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
581a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbarclass AsmMatcherInfo {
582a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbarpublic:
58367db883487fca3472fdde51e931657e22d4d0495Chris Lattner  /// Tracked Records
5849c6b60eb28d2717008f8d6ff52f7666ebc81113dChris Lattner  RecordKeeper &Records;
58567db883487fca3472fdde51e931657e22d4d0495Chris Lattner
58659fc42debd571bbafc52c20bc418fdc3f4d00188Daniel Dunbar  /// The tablegen AsmParser record.
58759fc42debd571bbafc52c20bc418fdc3f4d00188Daniel Dunbar  Record *AsmParser;
58859fc42debd571bbafc52c20bc418fdc3f4d00188Daniel Dunbar
58902bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner  /// Target - The target information.
59002bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner  CodeGenTarget &Target;
59102bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner
592a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// The classes which are needed for matching.
593a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  std::vector<ClassInfo*> Classes;
594a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
59522bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  /// The information on the matchables to match.
59622bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  std::vector<MatchableInfo*> Matchables;
597a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
598e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  /// Info for custom matching operands by user defined methods.
599e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  std::vector<OperandMatchEntry> OperandMatchInfo;
600e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
601ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// Map of Register records to their class information.
602ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  std::map<Record*, ClassInfo*> RegisterClasses;
603ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
60454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  /// Map of Predicate records to their subtarget information.
60554074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  std::map<Record*, SubtargetFeatureInfo*> SubtargetFeatures;
606828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
6074dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  /// Map of AsmOperandClass records to their class information.
6084dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  std::map<Record*, ClassInfo*> AsmOperandClasses;
6094dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach
610a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbarprivate:
611a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// Map of token to class information which has already been constructed.
612a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  std::map<std::string, ClassInfo*> TokenClasses;
613a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
614ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// Map of RegisterClass records to their class information.
615ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  std::map<Record*, ClassInfo*> RegisterClassClasses;
616a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
617a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbarprivate:
618a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// getTokenClass - Lookup or create the class for the given token.
619b8d6e98e566724f58344d275a4bd675249bb713aChris Lattner  ClassInfo *getTokenClass(StringRef Token);
620a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
621a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  /// getOperandClass - Lookup or create the class for the given operand.
622a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  ClassInfo *getOperandClass(const CGIOperandList::OperandInfo &OI,
62348c1f84b104fd32109d809a56f5ebbf461c0910cJim Grosbach                             int SubOpIdx);
62448c1f84b104fd32109d809a56f5ebbf461c0910cJim Grosbach  ClassInfo *getOperandClass(Record *Rec, int SubOpIdx);
625a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
6268caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  /// buildRegisterClasses - Build the ClassInfo* instances for register
627ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// classes.
6288caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void buildRegisterClasses(SmallPtrSet<Record*, 16> &SingletonRegisters);
629ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
6308caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  /// buildOperandClasses - Build the ClassInfo* instances for user defined
631ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  /// operand classes.
6328caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void buildOperandClasses();
633ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
6348caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void buildInstructionOperandReference(MatchableInfo *II, StringRef OpName,
635a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                                        unsigned AsmOpIdx);
6368caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void buildAliasOperandReference(MatchableInfo *II, StringRef OpName,
637c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner                                  MatchableInfo::AsmOperand &Op);
638828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
639a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbarpublic:
640828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson  AsmMatcherInfo(Record *AsmParser,
641828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson                 CodeGenTarget &Target,
6429c6b60eb28d2717008f8d6ff52f7666ebc81113dChris Lattner                 RecordKeeper &Records);
64359fc42debd571bbafc52c20bc418fdc3f4d00188Daniel Dunbar
6448caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  /// buildInfo - Construct the various tables used during matching.
6458caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void buildInfo();
646828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
6478caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  /// buildOperandMatchInfo - Build the necessary information to handle user
648e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  /// defined operand parsing methods.
6498caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  void buildOperandMatchInfo();
650e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
6516fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner  /// getSubtargetFeature - Lookup or create the subtarget feature info for the
6526fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner  /// given operand.
6536fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner  SubtargetFeatureInfo *getSubtargetFeature(Record *Def) const {
6546fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner    assert(Def->isSubClassOf("Predicate") && "Invalid predicate type!");
6556fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner    std::map<Record*, SubtargetFeatureInfo*>::const_iterator I =
6566fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner      SubtargetFeatures.find(Def);
6576fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner    return I == SubtargetFeatures.end() ? 0 : I->second;
6586fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner  }
65967db883487fca3472fdde51e931657e22d4d0495Chris Lattner
6609c6b60eb28d2717008f8d6ff52f7666ebc81113dChris Lattner  RecordKeeper &getRecords() const {
6619c6b60eb28d2717008f8d6ff52f7666ebc81113dChris Lattner    return Records;
66267db883487fca3472fdde51e931657e22d4d0495Chris Lattner  }
663a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar};
664a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
6656f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen} // End anonymous namespace
66620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
66722bc5c4184a497353e33195dd12541a4f08b008aChris Lattnervoid MatchableInfo::dump() {
6685abd1ebcb380664ae5010395b217e01f7190046cChris Lattner  errs() << TheDef->getName() << " -- " << "flattened:\"" << AsmString <<"\"\n";
669a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar
6703116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner  for (unsigned i = 0, e = AsmOperands.size(); i != e; ++i) {
671c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner    AsmOperand &Op = AsmOperands[i];
6726745d42e8e51ba6b9546d6fa62e0c1b1e0f3982aDaniel Dunbar    errs() << "  op[" << i << "] = " << Op.Class->ClassName << " - ";
6730bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner    errs() << '\"' << Op.Token << "\"\n";
67420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar  }
67520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar}
676a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar
677c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbachstatic std::pair<StringRef, StringRef>
678376a8a773e38fdcd9102a40e08ab1e0661d645d9Jakob Stoklund OlesenparseTwoOperandConstraint(StringRef S, ArrayRef<SMLoc> Loc) {
679c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Split via the '='.
680c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  std::pair<StringRef, StringRef> Ops = S.split('=');
681c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  if (Ops.second == "")
682c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    throw TGError(Loc, "missing '=' in two-operand alias constraint");
683c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Trim whitespace and the leading '$' on the operand names.
684c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  size_t start = Ops.first.find_first_of('$');
685c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  if (start == std::string::npos)
686c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    throw TGError(Loc, "expected '$' prefix on asm operand name");
687c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  Ops.first = Ops.first.slice(start + 1, std::string::npos);
688c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  size_t end = Ops.first.find_last_of(" \t");
689c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  Ops.first = Ops.first.slice(0, end);
690c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Now the second operand.
691c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  start = Ops.second.find_first_of('$');
692c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  if (start == std::string::npos)
693c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    throw TGError(Loc, "expected '$' prefix on asm operand name");
694c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  Ops.second = Ops.second.slice(start + 1, std::string::npos);
695c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  end = Ops.second.find_last_of(" \t");
696c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  Ops.first = Ops.first.slice(0, end);
697c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  return Ops;
698c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach}
699c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach
700c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbachvoid MatchableInfo::formTwoOperandAlias(StringRef Constraint) {
701c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Figure out which operands are aliased and mark them as tied.
702c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  std::pair<StringRef, StringRef> Ops =
703c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    parseTwoOperandConstraint(Constraint, TheDef->getLoc());
704c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach
705c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Find the AsmOperands that refer to the operands we're aliasing.
706c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  int SrcAsmOperand = findAsmOperandNamed(Ops.first);
707c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  int DstAsmOperand = findAsmOperandNamed(Ops.second);
708c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  if (SrcAsmOperand == -1)
709c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    throw TGError(TheDef->getLoc(),
710c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach                  "unknown source two-operand alias operand '" +
711c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach                  Ops.first.str() + "'.");
712c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  if (DstAsmOperand == -1)
713c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    throw TGError(TheDef->getLoc(),
714c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach                  "unknown destination two-operand alias operand '" +
715c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach                  Ops.second.str() + "'.");
716c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach
717c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Find the ResOperand that refers to the operand we're aliasing away
718c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // and update it to refer to the combined operand instead.
719c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  for (unsigned i = 0, e = ResOperands.size(); i != e; ++i) {
720c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    ResOperand &Op = ResOperands[i];
721c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    if (Op.Kind == ResOperand::RenderAsmOperand &&
722c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        Op.AsmOperandNum == (unsigned)SrcAsmOperand) {
723c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      Op.AsmOperandNum = DstAsmOperand;
724c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      break;
725c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    }
726c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  }
727c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Remove the AsmOperand for the alias operand.
728c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  AsmOperands.erase(AsmOperands.begin() + SrcAsmOperand);
729c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // Adjust the ResOperand references to any AsmOperands that followed
730c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  // the one we just deleted.
731c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  for (unsigned i = 0, e = ResOperands.size(); i != e; ++i) {
732c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    ResOperand &Op = ResOperands[i];
733c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    switch(Op.Kind) {
734c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    default:
735c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      // Nothing to do for operands that don't reference AsmOperands.
736c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      break;
737c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    case ResOperand::RenderAsmOperand:
738c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      if (Op.AsmOperandNum > (unsigned)SrcAsmOperand)
739c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        --Op.AsmOperandNum;
740c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      break;
741c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    case ResOperand::TiedOperand:
742c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      if (Op.TiedOperandNum > (unsigned)SrcAsmOperand)
743c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        --Op.TiedOperandNum;
744c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      break;
745c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    }
746c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  }
747c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach}
748c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach
7498caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachvoid MatchableInfo::initialize(const AsmMatcherInfo &Info,
75063faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel                               SmallPtrSet<Record*, 16> &SingletonRegisters,
75163faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel                               int AsmVariantNo, std::string &RegisterPrefix) {
75256315d319c104dc96187444e1e19711a1c801166Devang Patel  AsmVariantID = AsmVariantNo;
753f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach  AsmString =
75463faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel    CodeGenInstruction::FlattenAsmStringVariants(AsmString, AsmVariantNo);
755828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
7568caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  tokenizeAsmString(Info);
757828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
758c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner  // Compute the require features.
759c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner  std::vector<Record*> Predicates =TheDef->getValueAsListOfDefs("Predicates");
760c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner  for (unsigned i = 0, e = Predicates.size(); i != e; ++i)
761c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner    if (SubtargetFeatureInfo *Feature =
762c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner        Info.getSubtargetFeature(Predicates[i]))
763c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner      RequiredFeatures.push_back(Feature);
764828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
765c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner  // Collect singleton registers, if used.
766d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  for (unsigned i = 0, e = AsmOperands.size(); i != e; ++i) {
76763faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel    extractSingletonRegisterForAsmOperand(i, Info, RegisterPrefix);
76863faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel    if (Record *Reg = AsmOperands[i].SingletonReg)
769c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner      SingletonRegisters.insert(Reg);
770c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner  }
771c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner}
772c2d67bbf806486984d4c9551abfd66c7f766c45bChris Lattner
7738caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// tokenizeAsmString - Tokenize a simplified assembly string.
7748caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachvoid MatchableInfo::tokenizeAsmString(const AsmMatcherInfo &Info) {
775d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  StringRef String = AsmString;
776d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  unsigned Prev = 0;
777d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  bool InTok = true;
778d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  for (unsigned i = 0, e = String.size(); i != e; ++i) {
779d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    switch (String[i]) {
780d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case '[':
781d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case ']':
782d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case '*':
783d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case '!':
784d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case ' ':
785d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case '\t':
786d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case ',':
787d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      if (InTok) {
788c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner        AsmOperands.push_back(AsmOperand(String.slice(Prev, i)));
789d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner        InTok = false;
790d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      }
791d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      if (!isspace(String[i]) && String[i] != ',')
792c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner        AsmOperands.push_back(AsmOperand(String.substr(i, 1)));
793d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      Prev = i + 1;
794d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      break;
795d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner
796d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case '\\':
797d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      if (InTok) {
798c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner        AsmOperands.push_back(AsmOperand(String.slice(Prev, i)));
799d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner        InTok = false;
800d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      }
801d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      ++i;
802d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      assert(i != String.size() && "Invalid quoted character");
803c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner      AsmOperands.push_back(AsmOperand(String.substr(i, 1)));
804d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      Prev = i + 1;
805d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      break;
806d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner
807d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case '$': {
8087ad3147f98eb4e84c24629e88a7d8bb1e04df3d4Chris Lattner      if (InTok) {
8097ad3147f98eb4e84c24629e88a7d8bb1e04df3d4Chris Lattner        AsmOperands.push_back(AsmOperand(String.slice(Prev, i)));
8107ad3147f98eb4e84c24629e88a7d8bb1e04df3d4Chris Lattner        InTok = false;
8117ad3147f98eb4e84c24629e88a7d8bb1e04df3d4Chris Lattner      }
812828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
813d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      // If this isn't "${", treat like a normal token.
814d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      if (i + 1 == String.size() || String[i + 1] != '{') {
815d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner        Prev = i;
816d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner        break;
817d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      }
818d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner
819d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      StringRef::iterator End = std::find(String.begin() + i, String.end(),'}');
820d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      assert(End != String.end() && "Missing brace in operand reference!");
821d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      size_t EndPos = End - String.begin();
822c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner      AsmOperands.push_back(AsmOperand(String.slice(i, EndPos+1)));
823d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      Prev = EndPos + 1;
824d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      i = EndPos;
825d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      break;
826d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    }
827d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner
828d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    case '.':
829d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      if (InTok)
830c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner        AsmOperands.push_back(AsmOperand(String.slice(Prev, i)));
831d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      Prev = i;
832d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      InTok = true;
833d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      break;
834d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner
835d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    default:
836d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      InTok = true;
837d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    }
838d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  }
839d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  if (InTok && Prev != String.size())
840c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner    AsmOperands.push_back(AsmOperand(String.substr(Prev)));
841828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
842d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  // The first token of the instruction is the mnemonic, which must be a
843d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  // simple string, not a $foo variable or a singleton register.
8444a2242cea0e9fdb36276807b1d4ddd7cd1a15bd4Jim Grosbach  if (AsmOperands.empty())
8454a2242cea0e9fdb36276807b1d4ddd7cd1a15bd4Jim Grosbach    throw TGError(TheDef->getLoc(),
8464a2242cea0e9fdb36276807b1d4ddd7cd1a15bd4Jim Grosbach                  "Instruction '" + TheDef->getName() + "' has no tokens");
847d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  Mnemonic = AsmOperands[0].Token;
8488e27c9615938298bd03a7884964a0f5e0e80542dJim Grosbach  if (Mnemonic.empty())
8498e27c9615938298bd03a7884964a0f5e0e80542dJim Grosbach    throw TGError(TheDef->getLoc(),
8508e27c9615938298bd03a7884964a0f5e0e80542dJim Grosbach                  "Missing instruction mnemonic");
85163faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  // FIXME : Check and raise an error if it is a register.
852b78307fc58025713fd98c8414fa8f29720f37a76Devang Patel  if (Mnemonic[0] == '$')
853d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    throw TGError(TheDef->getLoc(),
854d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner                  "Invalid instruction mnemonic '" + Mnemonic.str() + "'!");
855828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
856d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  // Remove the first operand, it is tracked in the mnemonic field.
857d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  AsmOperands.erase(AsmOperands.begin());
858d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner}
859d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner
8608caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachbool MatchableInfo::validate(StringRef CommentDelimiter, bool Hack) const {
86122bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  // Reject matchables with no .s string.
8625bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  if (AsmString.empty())
8635bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner    throw TGError(TheDef->getLoc(), "instruction with empty asm string");
864828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
86522bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  // Reject any matchables with a newline in them, they should be marked
8665bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  // isCodeGenOnly if they are pseudo instructions.
8675bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  if (AsmString.find('\n') != std::string::npos)
8685bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner    throw TGError(TheDef->getLoc(),
8695bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner                  "multiline instruction is not valid for the asmparser, "
8705bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner                  "mark it isCodeGenOnly");
871828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
8724164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner  // Remove comments from the asm string.  We know that the asmstring only
8734164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner  // has one line.
8744164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner  if (!CommentDelimiter.empty() &&
8754164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner      StringRef(AsmString).find(CommentDelimiter) != StringRef::npos)
8764164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner    throw TGError(TheDef->getLoc(),
8774164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner                  "asmstring for instruction has comment character in it, "
8784164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner                  "mark it isCodeGenOnly");
879828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
88022bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  // Reject matchables with operand modifiers, these aren't something we can
881906bc368bc0fe18682edc0743ada41f62e436383Bob Wilson  // handle, the target should be refactored to use operands instead of
882906bc368bc0fe18682edc0743ada41f62e436383Bob Wilson  // modifiers.
8835bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  //
8845bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  // Also, check for instructions which reference the operand multiple times;
8855bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  // this implies a constraint we would not honor.
8865bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  std::set<std::string> OperandNames;
887d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner  for (unsigned i = 0, e = AsmOperands.size(); i != e; ++i) {
888d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    StringRef Tok = AsmOperands[i].Token;
889d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    if (Tok[0] == '$' && Tok.find(':') != StringRef::npos)
8905bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner      throw TGError(TheDef->getLoc(),
891d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner                    "matchable with operand modifier '" + Tok.str() +
8925bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner                    "' not supported by asm matcher.  Mark isCodeGenOnly!");
893828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
89422bc5c4184a497353e33195dd12541a4f08b008aChris Lattner    // Verify that any operand is only mentioned once.
895d51257a4368d52e2340073bc7ccd83f3c3f1c04dChris Lattner    // We reject aliases and ignore instructions for now.
896d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner    if (Tok[0] == '$' && !OperandNames.insert(Tok).second) {
89722bc5c4184a497353e33195dd12541a4f08b008aChris Lattner      if (!Hack)
89822bc5c4184a497353e33195dd12541a4f08b008aChris Lattner        throw TGError(TheDef->getLoc(),
899d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner                      "ERROR: matchable with tied operand '" + Tok.str() +
90022bc5c4184a497353e33195dd12541a4f08b008aChris Lattner                      "' can never be matched!");
90122bc5c4184a497353e33195dd12541a4f08b008aChris Lattner      // FIXME: Should reject these.  The ARM backend hits this with $lane in a
90222bc5c4184a497353e33195dd12541a4f08b008aChris Lattner      // bunch of instructions.  It is unclear what the right answer is.
9035bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner      DEBUG({
9045abd1ebcb380664ae5010395b217e01f7190046cChris Lattner        errs() << "warning: '" << TheDef->getName() << "': "
90522bc5c4184a497353e33195dd12541a4f08b008aChris Lattner               << "ignoring instruction with tied operand '"
906d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner               << Tok.str() << "'\n";
9075bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner      });
9085bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner      return false;
9095bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner    }
9105bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  }
911828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
9125bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner  return true;
9135bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner}
9145bc93878069b7d9c567c8a04ebfa329636822c5eChris Lattner
915f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach/// extractSingletonRegisterForAsmOperand - Extract singleton register,
916d06b01c038e00f6af50a1b6d4c71389037e00212Devang Patel/// if present, from specified token.
91763faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patelvoid MatchableInfo::
918f35307ceac57194094f207f0920fbd22231f5331Jim GrosbachextractSingletonRegisterForAsmOperand(unsigned OperandNo,
919d06b01c038e00f6af50a1b6d4c71389037e00212Devang Patel                                      const AsmMatcherInfo &Info,
92011fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach                                      std::string &RegisterPrefix) {
921d06b01c038e00f6af50a1b6d4c71389037e00212Devang Patel  StringRef Tok = AsmOperands[OperandNo].Token;
92263faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  if (RegisterPrefix.empty()) {
923d06b01c038e00f6af50a1b6d4c71389037e00212Devang Patel    std::string LoweredTok = Tok.lower();
924d06b01c038e00f6af50a1b6d4c71389037e00212Devang Patel    if (const CodeGenRegister *Reg = Info.Target.getRegisterByName(LoweredTok))
925d06b01c038e00f6af50a1b6d4c71389037e00212Devang Patel      AsmOperands[OperandNo].SingletonReg = Reg->TheDef;
92663faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel    return;
927f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach  }
92863faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel
92963faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  if (!Tok.startswith(RegisterPrefix))
93063faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel    return;
931828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
93263faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  StringRef RegName = Tok.substr(RegisterPrefix.size());
933ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner  if (const CodeGenRegister *Reg = Info.Target.getRegisterByName(RegName))
934d06b01c038e00f6af50a1b6d4c71389037e00212Devang Patel    AsmOperands[OperandNo].SingletonReg = Reg->TheDef;
935828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
9361de88235781c45c0afc0c7500d65b59775196c4cChris Lattner  // If there is no register prefix (i.e. "%" in "%eax"), then this may
9371de88235781c45c0afc0c7500d65b59775196c4cChris Lattner  // be some random non-register token, just ignore it.
93863faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  return;
93902bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner}
94002bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner
941b8d6e98e566724f58344d275a4bd675249bb713aChris Lattnerstatic std::string getEnumNameForToken(StringRef Str) {
942a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  std::string Res;
943a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
944a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  for (StringRef::iterator it = Str.begin(), ie = Str.end(); it != ie; ++it) {
945a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    switch (*it) {
946a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    case '*': Res += "_STAR_"; break;
947a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    case '%': Res += "_PCT_"; break;
948a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    case ':': Res += "_COLON_"; break;
949bd9c77bc9ad384d046a7967d160ad96f61916d9dBill Wendling    case '!': Res += "_EXCLAIM_"; break;
9500ef755d9051a79680326d6144a2401660fc93e57Bill Wendling    case '.': Res += "_DOT_"; break;
951a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    default:
95239ee036f407bd0c94cb993cf9b97348843cfafa4Chris Lattner      if (isalnum(*it))
953a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar        Res += *it;
95439ee036f407bd0c94cb993cf9b97348843cfafa4Chris Lattner      else
955a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar        Res += "_" + utostr((unsigned) *it) + "_";
956a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    }
957a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  }
95820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
959a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  return Res;
960a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar}
961a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
962b8d6e98e566724f58344d275a4bd675249bb713aChris LattnerClassInfo *AsmMatcherInfo::getTokenClass(StringRef Token) {
963a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  ClassInfo *&Entry = TokenClasses[Token];
964a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
965a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  if (!Entry) {
966a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    Entry = new ClassInfo();
967a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    Entry->Kind = ClassInfo::Token;
9686745d42e8e51ba6b9546d6fa62e0c1b1e0f3982aDaniel Dunbar    Entry->ClassName = "Token";
969a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    Entry->Name = "MCK_" + getEnumNameForToken(Token);
970a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    Entry->ValueName = Token;
971a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    Entry->PredicateMethod = "<invalid>";
972a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    Entry->RenderMethod = "<invalid>";
973e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    Entry->ParserMethod = "";
9744dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    Entry->DiagnosticType = "";
975a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    Classes.push_back(Entry);
976a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  }
977a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
978a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  return Entry;
979a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar}
980a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
981a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel DunbarClassInfo *
982a49c7dfb360154070c08b8eb94ad31711d1babaeBob WilsonAsmMatcherInfo::getOperandClass(const CGIOperandList::OperandInfo &OI,
983a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                                int SubOpIdx) {
984a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  Record *Rec = OI.Rec;
985a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  if (SubOpIdx != -1)
98605bce0beee87512e52428d4b80f5a8e79a949576David Greene    Rec = dynamic_cast<DefInit*>(OI.MIOperandInfo->getArg(SubOpIdx))->getDef();
98748c1f84b104fd32109d809a56f5ebbf461c0910cJim Grosbach  return getOperandClass(Rec, SubOpIdx);
98848c1f84b104fd32109d809a56f5ebbf461c0910cJim Grosbach}
989a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson
99048c1f84b104fd32109d809a56f5ebbf461c0910cJim GrosbachClassInfo *
99148c1f84b104fd32109d809a56f5ebbf461c0910cJim GrosbachAsmMatcherInfo::getOperandClass(Record *Rec, int SubOpIdx) {
992bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson  if (Rec->isSubClassOf("RegisterOperand")) {
993bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    // RegisterOperand may have an associated ParserMatchClass. If it does,
994bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    // use it, else just fall back to the underlying register class.
995bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    const RecordVal *R = Rec->getValue("ParserMatchClass");
996bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    if (R == 0 || R->getValue() == 0)
997bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson      throw "Record `" + Rec->getName() +
998bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson        "' does not have a ParserMatchClass!\n";
999bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson
100005bce0beee87512e52428d4b80f5a8e79a949576David Greene    if (DefInit *DI= dynamic_cast<DefInit*>(R->getValue())) {
1001bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson      Record *MatchClass = DI->getDef();
1002bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson      if (ClassInfo *CI = AsmOperandClasses[MatchClass])
1003bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson        return CI;
1004bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    }
1005bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson
1006bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    // No custom match class. Just use the register class.
1007bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    Record *ClassRec = Rec->getValueAsDef("RegClass");
1008bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    if (!ClassRec)
1009bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson      throw TGError(Rec->getLoc(), "RegisterOperand `" + Rec->getName() +
1010bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson                    "' has no associated register class!\n");
1011bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    if (ClassInfo *CI = RegisterClassClasses[ClassRec])
1012bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson      return CI;
1013bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson    throw TGError(Rec->getLoc(), "register class has no class info!");
1014bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson  }
1015bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson
1016bea6f615eefae279e53bbb63a31d2c3c67274c45Owen Anderson
1017a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  if (Rec->isSubClassOf("RegisterClass")) {
1018a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    if (ClassInfo *CI = RegisterClassClasses[Rec])
1019ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner      return CI;
1020a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    throw TGError(Rec->getLoc(), "register class has no class info!");
1021ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  }
1022338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar
1023a562dc7228990797a259f4fef4acb95a83b23e0dJim Grosbach  if (!Rec->isSubClassOf("Operand"))
1024a562dc7228990797a259f4fef4acb95a83b23e0dJim Grosbach    throw TGError(Rec->getLoc(), "Operand `" + Rec->getName() +
1025a562dc7228990797a259f4fef4acb95a83b23e0dJim Grosbach                  "' does not derive from class Operand!\n");
1026a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  Record *MatchClass = Rec->getValueAsDef("ParserMatchClass");
1027ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner  if (ClassInfo *CI = AsmOperandClasses[MatchClass])
1028ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner    return CI;
1029a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
1030a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  throw TGError(Rec->getLoc(), "operand has no match class!");
1031338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar}
1032338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar
10331de88235781c45c0afc0c7500d65b59775196c4cChris Lattnervoid AsmMatcherInfo::
10348caecdea56c830f3fc80ed67fff121c83de0e364Jim GrosbachbuildRegisterClasses(SmallPtrSet<Record*, 16> &SingletonRegisters) {
1035abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen  const std::vector<CodeGenRegister*> &Registers =
1036abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen    Target.getRegBank().getRegisters();
103729f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen  ArrayRef<CodeGenRegisterClass*> RegClassList =
103829f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen    Target.getRegBank().getRegClasses();
1039338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar
1040ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // The register sets used for matching.
1041ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  std::set< std::set<Record*> > RegisterSets;
1042ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1043a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach  // Gather the defined sets.
104429f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen  for (ArrayRef<CodeGenRegisterClass*>::const_iterator it =
1045ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner       RegClassList.begin(), ie = RegClassList.end(); it != ie; ++it)
104629f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen    RegisterSets.insert(std::set<Record*>(
104729f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen        (*it)->getOrder().begin(), (*it)->getOrder().end()));
10481095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar
10491095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar  // Add any required singleton sets.
10501de88235781c45c0afc0c7500d65b59775196c4cChris Lattner  for (SmallPtrSet<Record*, 16>::iterator it = SingletonRegisters.begin(),
10511de88235781c45c0afc0c7500d65b59775196c4cChris Lattner       ie = SingletonRegisters.end(); it != ie; ++it) {
10521de88235781c45c0afc0c7500d65b59775196c4cChris Lattner    Record *Rec = *it;
10531de88235781c45c0afc0c7500d65b59775196c4cChris Lattner    RegisterSets.insert(std::set<Record*>(&Rec, &Rec + 1));
10541de88235781c45c0afc0c7500d65b59775196c4cChris Lattner  }
1055a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
1056ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // Introduce derived sets where necessary (when a register does not determine
1057ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // a unique register set class), and build the mapping of registers to the set
1058ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // they should classify to.
1059ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  std::map<Record*, std::set<Record*> > RegisterMap;
1060abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen  for (std::vector<CodeGenRegister*>::const_iterator it = Registers.begin(),
1061ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar         ie = Registers.end(); it != ie; ++it) {
1062abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen    const CodeGenRegister &CGR = **it;
1063ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    // Compute the intersection of all sets containing this register.
1064ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    std::set<Record*> ContainingSet;
1065a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
1066ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    for (std::set< std::set<Record*> >::iterator it = RegisterSets.begin(),
1067ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar           ie = RegisterSets.end(); it != ie; ++it) {
1068ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      if (!it->count(CGR.TheDef))
1069ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar        continue;
1070ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1071ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      if (ContainingSet.empty()) {
1072ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar        ContainingSet = *it;
1073ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner        continue;
1074ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      }
1075828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1076ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner      std::set<Record*> Tmp;
1077ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner      std::swap(Tmp, ContainingSet);
1078ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner      std::insert_iterator< std::set<Record*> > II(ContainingSet,
1079ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner                                                   ContainingSet.begin());
1080ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner      std::set_intersection(Tmp.begin(), Tmp.end(), it->begin(), it->end(), II);
1081ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    }
1082ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1083ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    if (!ContainingSet.empty()) {
1084ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      RegisterSets.insert(ContainingSet);
1085ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      RegisterMap.insert(std::make_pair(CGR.TheDef, ContainingSet));
1086ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    }
1087ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  }
1088ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1089ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // Construct the register classes.
1090ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  std::map<std::set<Record*>, ClassInfo*> RegisterSetClasses;
1091ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  unsigned Index = 0;
1092ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  for (std::set< std::set<Record*> >::iterator it = RegisterSets.begin(),
1093ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar         ie = RegisterSets.end(); it != ie; ++it, ++Index) {
1094ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    ClassInfo *CI = new ClassInfo();
1095ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    CI->Kind = ClassInfo::RegisterClass0 + Index;
1096ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    CI->ClassName = "Reg" + utostr(Index);
1097ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    CI->Name = "MCK_Reg" + utostr(Index);
1098ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    CI->ValueName = "";
1099ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    CI->PredicateMethod = ""; // unused
1100ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    CI->RenderMethod = "addRegOperands";
11018409bfbbc306bc051fbd8b049804103ca7df2f63Daniel Dunbar    CI->Registers = *it;
11024dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    // FIXME: diagnostic type.
11034dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    CI->DiagnosticType = "";
1104ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    Classes.push_back(CI);
1105ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    RegisterSetClasses.insert(std::make_pair(*it, CI));
1106ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  }
1107ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1108ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // Find the superclasses; we could compute only the subgroup lattice edges,
1109ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // but there isn't really a point.
1110ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  for (std::set< std::set<Record*> >::iterator it = RegisterSets.begin(),
1111ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar         ie = RegisterSets.end(); it != ie; ++it) {
1112ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    ClassInfo *CI = RegisterSetClasses[*it];
1113ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    for (std::set< std::set<Record*> >::iterator it2 = RegisterSets.begin(),
1114ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar           ie2 = RegisterSets.end(); it2 != ie2; ++it2)
1115a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach      if (*it != *it2 &&
1116ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar          std::includes(it2->begin(), it2->end(), it->begin(), it->end()))
1117ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar        CI->SuperClasses.push_back(RegisterSetClasses[*it2]);
1118ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  }
1119ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1120ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // Name the register classes which correspond to a user defined RegisterClass.
112129f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen  for (ArrayRef<CodeGenRegisterClass*>::const_iterator
1122ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner       it = RegClassList.begin(), ie = RegClassList.end(); it != ie; ++it) {
112329f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen    const CodeGenRegisterClass &RC = **it;
11246fea31e7300fe012b0b2984d6bc0338d02b054d3Jakob Stoklund Olesen    // Def will be NULL for non-user defined register classes.
11256fea31e7300fe012b0b2984d6bc0338d02b054d3Jakob Stoklund Olesen    Record *Def = RC.getDef();
11266fea31e7300fe012b0b2984d6bc0338d02b054d3Jakob Stoklund Olesen    if (!Def)
11276fea31e7300fe012b0b2984d6bc0338d02b054d3Jakob Stoklund Olesen      continue;
112829f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen    ClassInfo *CI = RegisterSetClasses[std::set<Record*>(RC.getOrder().begin(),
112929f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen                                                         RC.getOrder().end())];
1130ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    if (CI->ValueName.empty()) {
113129f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen      CI->ClassName = RC.getName();
113229f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen      CI->Name = "MCK_" + RC.getName();
113329f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen      CI->ValueName = RC.getName();
1134ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    } else
113529f018cee616e4082e5005bc9adee4dc777e621cJakob Stoklund Olesen      CI->ValueName = CI->ValueName + "," + RC.getName();
1136ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
11376fea31e7300fe012b0b2984d6bc0338d02b054d3Jakob Stoklund Olesen    RegisterClassClasses.insert(std::make_pair(Def, CI));
1138ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  }
1139ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1140ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  // Populate the map for individual registers.
1141ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar  for (std::map<Record*, std::set<Record*> >::iterator it = RegisterMap.begin(),
1142ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar         ie = RegisterMap.end(); it != ie; ++it)
1143ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner    RegisterClasses[it->first] = RegisterSetClasses[it->second];
11441095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar
11451095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar  // Name the register classes which correspond to singleton registers.
11461de88235781c45c0afc0c7500d65b59775196c4cChris Lattner  for (SmallPtrSet<Record*, 16>::iterator it = SingletonRegisters.begin(),
11471de88235781c45c0afc0c7500d65b59775196c4cChris Lattner         ie = SingletonRegisters.end(); it != ie; ++it) {
11481de88235781c45c0afc0c7500d65b59775196c4cChris Lattner    Record *Rec = *it;
1149ec6f096c36f4144ff9b3b24c2939720cdcbb7bccChris Lattner    ClassInfo *CI = RegisterClasses[Rec];
11501de88235781c45c0afc0c7500d65b59775196c4cChris Lattner    assert(CI && "Missing singleton register class info!");
11511de88235781c45c0afc0c7500d65b59775196c4cChris Lattner
11521de88235781c45c0afc0c7500d65b59775196c4cChris Lattner    if (CI->ValueName.empty()) {
11531de88235781c45c0afc0c7500d65b59775196c4cChris Lattner      CI->ClassName = Rec->getName();
11541de88235781c45c0afc0c7500d65b59775196c4cChris Lattner      CI->Name = "MCK_" + Rec->getName();
11551de88235781c45c0afc0c7500d65b59775196c4cChris Lattner      CI->ValueName = Rec->getName();
11561de88235781c45c0afc0c7500d65b59775196c4cChris Lattner    } else
11571de88235781c45c0afc0c7500d65b59775196c4cChris Lattner      CI->ValueName = CI->ValueName + "," + Rec->getName();
11581095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar  }
1159ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar}
1160ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
11618caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachvoid AsmMatcherInfo::buildOperandClasses() {
1162e66b7ebfb426c7ed9bc911e9708321e2d8510b41Chris Lattner  std::vector<Record*> AsmOperands =
1163e66b7ebfb426c7ed9bc911e9708321e2d8510b41Chris Lattner    Records.getAllDerivedDefinitions("AsmOperandClass");
1164a2f5e00347641d1b46ce4f65bf9378fecce9be14Daniel Dunbar
1165a2f5e00347641d1b46ce4f65bf9378fecce9be14Daniel Dunbar  // Pre-populate AsmOperandClasses map.
1166a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach  for (std::vector<Record*>::iterator it = AsmOperands.begin(),
1167a2f5e00347641d1b46ce4f65bf9378fecce9be14Daniel Dunbar         ie = AsmOperands.end(); it != ie; ++it)
1168a2f5e00347641d1b46ce4f65bf9378fecce9be14Daniel Dunbar    AsmOperandClasses[*it] = new ClassInfo();
1169a2f5e00347641d1b46ce4f65bf9378fecce9be14Daniel Dunbar
1170338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar  unsigned Index = 0;
1171a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach  for (std::vector<Record*>::iterator it = AsmOperands.begin(),
1172338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar         ie = AsmOperands.end(); it != ie; ++it, ++Index) {
1173a2f5e00347641d1b46ce4f65bf9378fecce9be14Daniel Dunbar    ClassInfo *CI = AsmOperandClasses[*it];
1174338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar    CI->Kind = ClassInfo::UserClass0 + Index;
1175338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar
117605bce0beee87512e52428d4b80f5a8e79a949576David Greene    ListInit *Supers = (*it)->getValueAsListInit("SuperClasses");
117754ddf3d9c756881021afcb869a6ec892a21aef5bDaniel Dunbar    for (unsigned i = 0, e = Supers->getSize(); i != e; ++i) {
117805bce0beee87512e52428d4b80f5a8e79a949576David Greene      DefInit *DI = dynamic_cast<DefInit*>(Supers->getElement(i));
117954ddf3d9c756881021afcb869a6ec892a21aef5bDaniel Dunbar      if (!DI) {
118054ddf3d9c756881021afcb869a6ec892a21aef5bDaniel Dunbar        PrintError((*it)->getLoc(), "Invalid super class reference!");
118154ddf3d9c756881021afcb869a6ec892a21aef5bDaniel Dunbar        continue;
118254ddf3d9c756881021afcb869a6ec892a21aef5bDaniel Dunbar      }
118354ddf3d9c756881021afcb869a6ec892a21aef5bDaniel Dunbar
1184ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      ClassInfo *SC = AsmOperandClasses[DI->getDef()];
1185ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      if (!SC)
1186338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar        PrintError((*it)->getLoc(), "Invalid super class reference!");
1187ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      else
1188ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar        CI->SuperClasses.push_back(SC);
1189a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    }
1190338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar    CI->ClassName = (*it)->getValueAsString("Name");
1191338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar    CI->Name = "MCK_" + CI->ClassName;
1192338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar    CI->ValueName = (*it)->getName();
11935c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar
11945c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar    // Get or construct the predicate method name.
119505bce0beee87512e52428d4b80f5a8e79a949576David Greene    Init *PMName = (*it)->getValueInit("PredicateMethod");
119605bce0beee87512e52428d4b80f5a8e79a949576David Greene    if (StringInit *SI = dynamic_cast<StringInit*>(PMName)) {
11975c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar      CI->PredicateMethod = SI->getValue();
11985c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar    } else {
119905bce0beee87512e52428d4b80f5a8e79a949576David Greene      assert(dynamic_cast<UnsetInit*>(PMName) &&
12005c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar             "Unexpected PredicateMethod field!");
12015c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar      CI->PredicateMethod = "is" + CI->ClassName;
12025c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar    }
12035c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar
12045c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar    // Get or construct the render method name.
120505bce0beee87512e52428d4b80f5a8e79a949576David Greene    Init *RMName = (*it)->getValueInit("RenderMethod");
120605bce0beee87512e52428d4b80f5a8e79a949576David Greene    if (StringInit *SI = dynamic_cast<StringInit*>(RMName)) {
12075c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar      CI->RenderMethod = SI->getValue();
12085c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar    } else {
120905bce0beee87512e52428d4b80f5a8e79a949576David Greene      assert(dynamic_cast<UnsetInit*>(RMName) &&
12105c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar             "Unexpected RenderMethod field!");
12115c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar      CI->RenderMethod = "add" + CI->ClassName + "Operands";
12125c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar    }
12135c468e3d7006e854fd41b29d5539a7adcee53904Daniel Dunbar
1214e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    // Get the parse method name or leave it as empty.
121505bce0beee87512e52428d4b80f5a8e79a949576David Greene    Init *PRMName = (*it)->getValueInit("ParserMethod");
121605bce0beee87512e52428d4b80f5a8e79a949576David Greene    if (StringInit *SI = dynamic_cast<StringInit*>(PRMName))
1217e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      CI->ParserMethod = SI->getValue();
1218e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
12194dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    // Get the diagnostic type or leave it as empty.
12204dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    // Get the parse method name or leave it as empty.
12214dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    Init *DiagnosticType = (*it)->getValueInit("DiagnosticType");
12224dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    if (StringInit *SI = dynamic_cast<StringInit*>(DiagnosticType))
12234dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach      CI->DiagnosticType = SI->getValue();
12244dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach
1225338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar    AsmOperandClasses[*it] = CI;
1226338825c1928b956b2cbcc2c165a60afddd100398Daniel Dunbar    Classes.push_back(CI);
1227a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  }
1228ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar}
1229ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
1230828295bb301d6cd3683751c2da1c2dd22ec6423fBob WilsonAsmMatcherInfo::AsmMatcherInfo(Record *asmParser,
1231828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson                               CodeGenTarget &target,
12329c6b60eb28d2717008f8d6ff52f7666ebc81113dChris Lattner                               RecordKeeper &records)
123363faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel  : Records(records), AsmParser(asmParser), Target(target) {
123459fc42debd571bbafc52c20bc418fdc3f4d00188Daniel Dunbar}
123559fc42debd571bbafc52c20bc418fdc3f4d00188Daniel Dunbar
12368caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// buildOperandMatchInfo - Build the necessary information to handle user
1237e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes/// defined operand parsing methods.
12388caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachvoid AsmMatcherInfo::buildOperandMatchInfo() {
1239e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
1240d4824fc8aa1df5501600dd2a73c6da823f3b02dbJim Grosbach  /// Map containing a mask with all operands indices that can be found for
1241e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  /// that class inside a instruction.
1242e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  std::map<ClassInfo*, unsigned> OpClassMask;
1243e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
1244e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  for (std::vector<MatchableInfo*>::const_iterator it =
1245e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes       Matchables.begin(), ie = Matchables.end();
1246e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes       it != ie; ++it) {
1247e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    MatchableInfo &II = **it;
1248e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OpClassMask.clear();
1249e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
1250e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    // Keep track of all operands of this instructions which belong to the
1251e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    // same class.
1252e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    for (unsigned i = 0, e = II.AsmOperands.size(); i != e; ++i) {
1253e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      MatchableInfo::AsmOperand &Op = II.AsmOperands[i];
1254e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      if (Op.Class->ParserMethod.empty())
1255e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes        continue;
1256e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      unsigned &OperandMask = OpClassMask[Op.Class];
1257e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      OperandMask |= (1 << i);
1258e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    }
1259e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
1260e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    // Generate operand match info for each mnemonic/operand class pair.
1261e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    for (std::map<ClassInfo*, unsigned>::iterator iit = OpClassMask.begin(),
1262e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes         iie = OpClassMask.end(); iit != iie; ++iit) {
1263e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      unsigned OpMask = iit->second;
1264e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      ClassInfo *CI = iit->first;
12658caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach      OperandMatchInfo.push_back(OperandMatchEntry::create(&II, CI, OpMask));
1266e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    }
1267e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  }
1268e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes}
1269e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
12708caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachvoid AsmMatcherInfo::buildInfo() {
12710aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner  // Build information about all of the AssemblerPredicates.
12720aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner  std::vector<Record*> AllPredicates =
12730aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    Records.getAllDerivedDefinitions("Predicate");
12740aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner  for (unsigned i = 0, e = AllPredicates.size(); i != e; ++i) {
12750aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    Record *Pred = AllPredicates[i];
12760aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    // Ignore predicates that are not intended for the assembler.
12770aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    if (!Pred->getValueAsBit("AssemblerMatcherPredicate"))
12780aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner      continue;
1279828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
12804164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner    if (Pred->getName().empty())
12814164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner      throw TGError(Pred->getLoc(), "Predicate has no name!");
1282828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
12830aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    unsigned FeatureNo = SubtargetFeatures.size();
12840aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    SubtargetFeatures[Pred] = new SubtargetFeatureInfo(Pred, FeatureNo);
12850aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    assert(FeatureNo < 32 && "Too many subtarget features!");
12860aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner  }
1287a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
128839ee036f407bd0c94cb993cf9b97348843cfafa4Chris Lattner  // Parse the instructions; we need to do this first so that we can gather the
128939ee036f407bd0c94cb993cf9b97348843cfafa4Chris Lattner  // singleton register classes.
12901de88235781c45c0afc0c7500d65b59775196c4cChris Lattner  SmallPtrSet<Record*, 16> SingletonRegisters;
12910dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel  unsigned VariantCount = Target.getAsmParserVariantCount();
12920dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel  for (unsigned VC = 0; VC != VariantCount; ++VC) {
12930dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    Record *AsmVariant = Target.getAsmParserVariant(VC);
129465da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach    std::string CommentDelimiter =
129565da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach      AsmVariant->getValueAsString("CommentDelimiter");
12960dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    std::string RegisterPrefix = AsmVariant->getValueAsString("RegisterPrefix");
12970dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    int AsmVariantNo = AsmVariant->getValueAsInt("Variant");
1298f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
12990dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    for (CodeGenTarget::inst_iterator I = Target.inst_begin(),
130011fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach           E = Target.inst_end(); I != E; ++I) {
13010dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      const CodeGenInstruction &CGI = **I;
1302f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13030dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // If the tblgen -match-prefix option is specified (for tblgen hackers),
13040dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // filter the set of instructions we consider.
13050dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      if (!StringRef(CGI.TheDef->getName()).startswith(MatchPrefix))
130611fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        continue;
1307f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13080dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // Ignore "codegen only" instructions.
13090dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      if (CGI.TheDef->getValueAsBit("isCodeGenOnly"))
131011fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        continue;
1311f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13120dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // Validate the operand list to ensure we can handle this instruction.
13130dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      for (unsigned i = 0, e = CGI.Operands.size(); i != e; ++i) {
131411fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        const CGIOperandList::OperandInfo &OI = CGI.Operands[i];
131511fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach
131611fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        // Validate tied operands.
131711fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        if (OI.getTiedRegister() != -1) {
131811fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach          // If we have a tied operand that consists of multiple MCOperands,
131911fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach          // reject it.  We reject aliases and ignore instructions for now.
132011fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach          if (OI.MINumOperands != 1) {
132111fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach            // FIXME: Should reject these.  The ARM backend hits this with $lane
132265da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach            // in a bunch of instructions. The right answer is unclear.
132311fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach            DEBUG({
132411fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach                errs() << "warning: '" << CGI.TheDef->getName() << "': "
132565da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach                     << "ignoring instruction with multi-operand tied operand '"
132665da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach                     << OI.Name << "'\n";
132711fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach              });
132811fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach            continue;
132911fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach          }
133011fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        }
13311d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      }
1332f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13330dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      OwningPtr<MatchableInfo> II(new MatchableInfo(CGI));
1334f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13358caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach      II->initialize(*this, SingletonRegisters, AsmVariantNo, RegisterPrefix);
1336f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13370dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // Ignore instructions which shouldn't be matched and diagnose invalid
13380dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // instruction definitions with an error.
13398caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach      if (!II->validate(CommentDelimiter, true))
134011fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        continue;
1341f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13420dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // Ignore "Int_*" and "*_Int" instructions, which are internal aliases.
13430dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      //
13440dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // FIXME: This is a total hack.
13450dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      if (StringRef(II->TheDef->getName()).startswith("Int_") ||
134611fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach          StringRef(II->TheDef->getName()).endswith("_Int"))
134711fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        continue;
1348f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13490dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      Matchables.push_back(II.take());
13500dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    }
1351f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13520dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    // Parse all of the InstAlias definitions and stick them in the list of
13530dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    // matchables.
13540dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    std::vector<Record*> AllInstAliases =
13550dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      Records.getAllDerivedDefinitions("InstAlias");
13560dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel    for (unsigned i = 0, e = AllInstAliases.size(); i != e; ++i) {
13570dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      CodeGenInstAlias *Alias = new CodeGenInstAlias(AllInstAliases[i], Target);
1358f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13590dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // If the tblgen -match-prefix option is specified (for tblgen hackers),
13600dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // filter the set of instruction aliases we consider, based on the target
13610dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // instruction.
136265da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach      if (!StringRef(Alias->ResultInst->TheDef->getName())
136365da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach            .startswith( MatchPrefix))
136411fc6467e6a7bbd39037ec488d1138c5518fd17eJim Grosbach        continue;
1365f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13660dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      OwningPtr<MatchableInfo> II(new MatchableInfo(Alias));
1367f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13688caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach      II->initialize(*this, SingletonRegisters, AsmVariantNo, RegisterPrefix);
1369f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13700dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      // Validate the alias definitions.
13718caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach      II->validate(CommentDelimiter, false);
1372f35307ceac57194094f207f0920fbd22231f5331Jim Grosbach
13730dbcadaa2fdf7038431931bab090f4467d8e308fDevang Patel      Matchables.push_back(II.take());
13741d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    }
1375c76e80ded753b78a72be0db40fcdba543435d818Chris Lattner  }
1376c240bb0ede0541426254d0e0dc81d891beda4b22Chris Lattner
13771095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar  // Build info for the register classes.
13788caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  buildRegisterClasses(SingletonRegisters);
13791095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar
13801095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar  // Build info for the user defined assembly operand classes.
13818caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  buildOperandClasses();
13821095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar
13830bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner  // Build the information about matchables, now that we have fully formed
13840bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner  // classes.
1385c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  std::vector<MatchableInfo*> NewMatchables;
138622bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  for (std::vector<MatchableInfo*>::iterator it = Matchables.begin(),
138722bc5c4184a497353e33195dd12541a4f08b008aChris Lattner         ie = Matchables.end(); it != ie; ++it) {
138822bc5c4184a497353e33195dd12541a4f08b008aChris Lattner    MatchableInfo *II = *it;
1389a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
1390e206fcf0e9c7e79c7f42ff2151f3fb58cba70674Chris Lattner    // Parse the tokens after the mnemonic.
13918caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach    // Note: buildInstructionOperandReference may insert new AsmOperands, so
1392a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    // don't precompute the loop bound.
1393a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    for (unsigned i = 0; i != II->AsmOperands.size(); ++i) {
1394c0b14a250b61beb78d75d10c3124bbfd5355905cChris Lattner      MatchableInfo::AsmOperand &Op = II->AsmOperands[i];
1395d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner      StringRef Token = Op.Token;
139620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
13971095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar      // Check for singleton registers.
139863faf82d0377f0a878d643ca2aacc02c35811b3eDevang Patel      if (Record *RegRecord = II->AsmOperands[i].SingletonReg) {
1399d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner        Op.Class = RegisterClasses[RegRecord];
140002bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner        assert(Op.Class && Op.Class->Registers.size() == 1 &&
140102bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner               "Unexpected class for singleton register");
140202bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner        continue;
14031095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar      }
14041095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar
140520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar      // Check for simple tokens.
140620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar      if (Token[0] != '$') {
1407d19ec05e0785152e7a520ffd4a88da4459a380aaChris Lattner        Op.Class = getTokenClass(Token);
140820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar        continue;
140920927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar      }
1410a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar
14117ad3147f98eb4e84c24629e88a7d8bb1e04df3d4Chris Lattner      if (Token.size() > 1 && isdigit(Token[1])) {
14127ad3147f98eb4e84c24629e88a7d8bb1e04df3d4Chris Lattner        Op.Class = getTokenClass(Token);
14137ad3147f98eb4e84c24629e88a7d8bb1e04df3d4Chris Lattner        continue;
14147ad3147f98eb4e84c24629e88a7d8bb1e04df3d4Chris Lattner      }
1415828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1416c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner      // Otherwise this is an operand reference.
14175f4280cd2d2d1aeb527c8b161acaa1870cf6ee82Chris Lattner      StringRef OperandName;
14185f4280cd2d2d1aeb527c8b161acaa1870cf6ee82Chris Lattner      if (Token[1] == '{')
14195f4280cd2d2d1aeb527c8b161acaa1870cf6ee82Chris Lattner        OperandName = Token.substr(2, Token.size() - 3);
14205f4280cd2d2d1aeb527c8b161acaa1870cf6ee82Chris Lattner      else
14215f4280cd2d2d1aeb527c8b161acaa1870cf6ee82Chris Lattner        OperandName = Token.substr(1);
1422828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1423c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner      if (II->DefRec.is<const CodeGenInstruction*>())
14248caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach        buildInstructionOperandReference(II, OperandName, i);
1425c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner      else
14268caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach        buildAliasOperandReference(II, OperandName, Op);
142753a7f16dcc96de71fa46f641c59470586548081eDaniel Dunbar    }
1428828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1429c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    if (II->DefRec.is<const CodeGenInstruction*>()) {
14308caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach      II->buildInstructionResultOperands();
1431c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      // If the instruction has a two-operand alias, build up the
1432c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      // matchable here. We'll add them in bulk at the end to avoid
1433c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      // confusing this loop.
1434c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      std::string Constraint =
1435c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        II->TheDef->getValueAsString("TwoOperandAliasConstraint");
1436c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      if (Constraint != "") {
1437c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        // Start by making a copy of the original matchable.
1438c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        OwningPtr<MatchableInfo> AliasII(new MatchableInfo(*II));
1439c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach
1440c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        // Adjust it to be a two-operand alias.
1441c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        AliasII->formTwoOperandAlias(Constraint);
1442c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach
1443c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        // Add the alias to the matchables list.
1444c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach        NewMatchables.push_back(AliasII.take());
1445c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach      }
1446c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    } else
14478caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach      II->buildAliasResultOperands();
144820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar  }
1449c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach  if (!NewMatchables.empty())
1450c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach    Matchables.insert(Matchables.end(), NewMatchables.begin(),
1451c1922c72adedadb414a3d19c3f150bfe1bc755a5Jim Grosbach                      NewMatchables.end());
14525fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar
1453a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach  // Process token alias definitions and set up the associated superclass
1454a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach  // information.
1455a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach  std::vector<Record*> AllTokenAliases =
1456a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    Records.getAllDerivedDefinitions("TokenAlias");
1457a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach  for (unsigned i = 0, e = AllTokenAliases.size(); i != e; ++i) {
1458a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    Record *Rec = AllTokenAliases[i];
1459a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    ClassInfo *FromClass = getTokenClass(Rec->getValueAsString("FromToken"));
1460a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    ClassInfo *ToClass = getTokenClass(Rec->getValueAsString("ToToken"));
146167cd20d0396a68e61858736b7943dd352f1b0d0bJim Grosbach    if (FromClass == ToClass)
146267cd20d0396a68e61858736b7943dd352f1b0d0bJim Grosbach      throw TGError(Rec->getLoc(),
146367cd20d0396a68e61858736b7943dd352f1b0d0bJim Grosbach                    "error: Destination value identical to source value.");
1464a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    FromClass->SuperClasses.push_back(ToClass);
1465a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach  }
1466a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach
14677a2bdde0a0eebcd2125055e0eacaca040f0b766cChris Lattner  // Reorder classes so that classes precede super classes.
14685fe6338ac859707f797bf6db6d043bb5f4d944a1Daniel Dunbar  std::sort(Classes.begin(), Classes.end(), less_ptr<ClassInfo>());
146920927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar}
1470a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar
14718caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// buildInstructionOperandReference - The specified operand is a reference to a
14720bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner/// named operand such as $src.  Resolve the Class and OperandInfo pointers.
14730bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattnervoid AsmMatcherInfo::
14748caecdea56c830f3fc80ed67fff121c83de0e364Jim GrosbachbuildInstructionOperandReference(MatchableInfo *II,
14755f4280cd2d2d1aeb527c8b161acaa1870cf6ee82Chris Lattner                                 StringRef OperandName,
1476a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                                 unsigned AsmOpIdx) {
1477c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  const CodeGenInstruction &CGI = *II->DefRec.get<const CodeGenInstruction*>();
1478c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  const CGIOperandList &Operands = CGI.Operands;
1479a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  MatchableInfo::AsmOperand *Op = &II->AsmOperands[AsmOpIdx];
1480828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1481662e5a30e864e71111b885d3da3cdd184772035dChris Lattner  // Map this token to an operand.
14820bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner  unsigned Idx;
14830bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner  if (!Operands.hasOperandNamed(OperandName, Idx))
14840bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner    throw TGError(II->TheDef->getLoc(), "error: unable to find operand: '" +
14850bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner                  OperandName.str() + "'");
1486ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner
1487a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  // If the instruction operand has multiple suboperands, but the parser
1488a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  // match class for the asm operand is still the default "ImmAsmOperand",
1489a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  // then handle each suboperand separately.
1490a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  if (Op->SubOpIdx == -1 && Operands[Idx].MINumOperands > 1) {
1491a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    Record *Rec = Operands[Idx].Rec;
1492a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    assert(Rec->isSubClassOf("Operand") && "Unexpected operand!");
1493a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    Record *MatchClass = Rec->getValueAsDef("ParserMatchClass");
1494a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    if (MatchClass && MatchClass->getValueAsString("Name") == "Imm") {
1495a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      // Insert remaining suboperands after AsmOpIdx in II->AsmOperands.
1496a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      StringRef Token = Op->Token; // save this in case Op gets moved
1497a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      for (unsigned SI = 1, SE = Operands[Idx].MINumOperands; SI != SE; ++SI) {
1498a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        MatchableInfo::AsmOperand NewAsmOp(Token);
1499a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        NewAsmOp.SubOpIdx = SI;
1500a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        II->AsmOperands.insert(II->AsmOperands.begin()+AsmOpIdx+SI, NewAsmOp);
1501a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      }
1502a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      // Replace Op with first suboperand.
1503a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      Op = &II->AsmOperands[AsmOpIdx]; // update the pointer in case it moved
1504a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      Op->SubOpIdx = 0;
1505a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    }
1506a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  }
1507a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson
1508ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner  // Set up the operand class.
1509a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  Op->Class = getOperandClass(Operands[Idx], Op->SubOpIdx);
1510ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner
1511ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner  // If the named operand is tied, canonicalize it to the untied operand.
1512ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner  // For example, something like:
1513ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner  //   (outs GPR:$dst), (ins GPR:$src)
1514ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner  // with an asmstring of
1515ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner  //   "inc $src"
1516ba3b5b638287e374d0c98fc5efdf866a3cee33b6Chris Lattner  // we want to canonicalize to:
1517c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  //   "inc $dst"
1518c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  // so that we know how to provide the $dst operand when filling in the result.
1519c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  int OITied = Operands[Idx].getTiedRegister();
1520c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  if (OITied != -1) {
1521c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner    // The tied operand index is an MIOperand index, find the operand that
1522c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner    // contains it.
1523a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    std::pair<unsigned, unsigned> Idx = Operands.getSubOperandNumber(OITied);
1524a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    OperandName = Operands[Idx.first].Name;
1525a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    Op->SubOpIdx = Idx.second;
1526c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  }
1527828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1528a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  Op->SrcOpName = OperandName;
1529c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner}
1530c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner
15318caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// buildAliasOperandReference - When parsing an operand reference out of the
15323f2c8e474b8775aa1f3c2c0cb817b7f9f564e068Chris Lattner/// matching string (e.g. "movsx $src, $dst"), determine what the class of the
15333f2c8e474b8775aa1f3c2c0cb817b7f9f564e068Chris Lattner/// operand reference is by looking it up in the result pattern definition.
15348caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachvoid AsmMatcherInfo::buildAliasOperandReference(MatchableInfo *II,
1535c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner                                                StringRef OperandName,
1536c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner                                                MatchableInfo::AsmOperand &Op) {
1537c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  const CodeGenInstAlias &CGA = *II->DefRec.get<const CodeGenInstAlias*>();
1538828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1539c07bd40a649991d46c95cf6afe2c4ada4ac49f13Chris Lattner  // Set up the operand class.
15403f2c8e474b8775aa1f3c2c0cb817b7f9f564e068Chris Lattner  for (unsigned i = 0, e = CGA.ResultOperands.size(); i != e; ++i)
154198c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner    if (CGA.ResultOperands[i].isRecord() &&
154298c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner        CGA.ResultOperands[i].getName() == OperandName) {
1543662e5a30e864e71111b885d3da3cdd184772035dChris Lattner      // It's safe to go with the first one we find, because CodeGenInstAlias
1544662e5a30e864e71111b885d3da3cdd184772035dChris Lattner      // validates that all operands with the same name have the same record.
1545a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      Op.SubOpIdx = CGA.ResultInstOperandIndex[i].second;
154648c1f84b104fd32109d809a56f5ebbf461c0910cJim Grosbach      // Use the match class from the Alias definition, not the
154748c1f84b104fd32109d809a56f5ebbf461c0910cJim Grosbach      // destination instruction, as we may have an immediate that's
154848c1f84b104fd32109d809a56f5ebbf461c0910cJim Grosbach      // being munged by the match class.
154948c1f84b104fd32109d809a56f5ebbf461c0910cJim Grosbach      Op.Class = getOperandClass(CGA.ResultOperands[i].getRecord(),
1550a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                                 Op.SubOpIdx);
15513f2c8e474b8775aa1f3c2c0cb817b7f9f564e068Chris Lattner      Op.SrcOpName = OperandName;
15523f2c8e474b8775aa1f3c2c0cb817b7f9f564e068Chris Lattner      return;
15530bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner    }
15543f2c8e474b8775aa1f3c2c0cb817b7f9f564e068Chris Lattner
15553f2c8e474b8775aa1f3c2c0cb817b7f9f564e068Chris Lattner  throw TGError(II->TheDef->getLoc(), "error: unable to find operand: '" +
15563f2c8e474b8775aa1f3c2c0cb817b7f9f564e068Chris Lattner                OperandName.str() + "'");
15570bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner}
15580bb780c0e0cea50e6076fcb44c08caa50b7ecba7Chris Lattner
15598caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachvoid MatchableInfo::buildInstructionResultOperands() {
1560662e5a30e864e71111b885d3da3cdd184772035dChris Lattner  const CodeGenInstruction *ResultInst = getResultInst();
1561828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1562662e5a30e864e71111b885d3da3cdd184772035dChris Lattner  // Loop over all operands of the result instruction, determining how to
1563662e5a30e864e71111b885d3da3cdd184772035dChris Lattner  // populate them.
1564662e5a30e864e71111b885d3da3cdd184772035dChris Lattner  for (unsigned i = 0, e = ResultInst->Operands.size(); i != e; ++i) {
1565662e5a30e864e71111b885d3da3cdd184772035dChris Lattner    const CGIOperandList::OperandInfo &OpInfo = ResultInst->Operands[i];
1566567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner
1567567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner    // If this is a tied operand, just copy from the previously handled operand.
1568567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner    int TiedOp = OpInfo.getTiedRegister();
1569567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner    if (TiedOp != -1) {
1570a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      ResOperands.push_back(ResOperand::getTiedOp(TiedOp));
1571567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner      continue;
1572567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner    }
1573828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1574a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    // Find out what operand from the asmparser this MCInst operand comes from.
15758caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach    int SrcOperand = findAsmOperandNamed(OpInfo.Name);
1576a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    if (OpInfo.Name.empty() || SrcOperand == -1)
1577a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      throw TGError(TheDef->getLoc(), "Instruction '" +
1578a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                    TheDef->getName() + "' has operand '" + OpInfo.Name +
1579a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                    "' that doesn't appear in asm string!");
1580567820c1e0454935ca5415ed419da63b84684cb7Chris Lattner
1581a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    // Check if the one AsmOperand populates the entire operand.
1582a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    unsigned NumOperands = OpInfo.MINumOperands;
1583a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    if (AsmOperands[SrcOperand].SubOpIdx == -1) {
1584a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      ResOperands.push_back(ResOperand::getRenderedOp(SrcOperand, NumOperands));
15851d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      continue;
15861d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    }
1587a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson
1588a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    // Add a separate ResOperand for each suboperand.
1589a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    for (unsigned AI = 0; AI < NumOperands; ++AI) {
1590a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      assert(AsmOperands[SrcOperand+AI].SubOpIdx == (int)AI &&
1591a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson             AsmOperands[SrcOperand+AI].SrcOpName == OpInfo.Name &&
1592a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson             "unexpected AsmOperands for suboperands");
1593a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      ResOperands.push_back(ResOperand::getRenderedOp(SrcOperand + AI, 1));
1594a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    }
15951d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner  }
15961d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner}
15971d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner
15988caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachvoid MatchableInfo::buildAliasResultOperands() {
1599414098571b19fc248fda2be194082cfd012d2729Chris Lattner  const CodeGenInstAlias &CGA = *DefRec.get<const CodeGenInstAlias*>();
1600414098571b19fc248fda2be194082cfd012d2729Chris Lattner  const CodeGenInstruction *ResultInst = getResultInst();
1601828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1602414098571b19fc248fda2be194082cfd012d2729Chris Lattner  // Loop over all operands of the result instruction, determining how to
1603414098571b19fc248fda2be194082cfd012d2729Chris Lattner  // populate them.
1604414098571b19fc248fda2be194082cfd012d2729Chris Lattner  unsigned AliasOpNo = 0;
1605a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson  unsigned LastOpNo = CGA.ResultInstOperandIndex.size();
1606414098571b19fc248fda2be194082cfd012d2729Chris Lattner  for (unsigned i = 0, e = ResultInst->Operands.size(); i != e; ++i) {
1607a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    const CGIOperandList::OperandInfo *OpInfo = &ResultInst->Operands[i];
1608828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1609414098571b19fc248fda2be194082cfd012d2729Chris Lattner    // If this is a tied operand, just copy from the previously handled operand.
1610a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    int TiedOp = OpInfo->getTiedRegister();
1611414098571b19fc248fda2be194082cfd012d2729Chris Lattner    if (TiedOp != -1) {
1612a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      ResOperands.push_back(ResOperand::getTiedOp(TiedOp));
161390fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      continue;
161490fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner    }
161590fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner
1616a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    // Handle all the suboperands for this operand.
1617a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    const std::string &OpName = OpInfo->Name;
1618a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson    for ( ; AliasOpNo <  LastOpNo &&
1619a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson            CGA.ResultInstOperandIndex[AliasOpNo].first == i; ++AliasOpNo) {
1620a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      int SubIdx = CGA.ResultInstOperandIndex[AliasOpNo].second;
1621a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson
1622a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      // Find out what operand from the asmparser that this MCInst operand
1623a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      // comes from.
1624a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      switch (CGA.ResultOperands[AliasOpNo].Kind) {
1625a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      case CodeGenInstAlias::ResultOperand::K_Record: {
1626a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        StringRef Name = CGA.ResultOperands[AliasOpNo].getName();
16278caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach        int SrcOperand = findAsmOperand(Name, SubIdx);
1628a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        if (SrcOperand == -1)
1629a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson          throw TGError(TheDef->getLoc(), "Instruction '" +
1630a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                        TheDef->getName() + "' has operand '" + OpName +
1631a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                        "' that doesn't appear in asm string!");
1632a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        unsigned NumOperands = (SubIdx == -1 ? OpInfo->MINumOperands : 1);
1633a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        ResOperands.push_back(ResOperand::getRenderedOp(SrcOperand,
1634a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson                                                        NumOperands));
1635a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        break;
1636a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      }
1637a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      case CodeGenInstAlias::ResultOperand::K_Imm: {
1638a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        int64_t ImmVal = CGA.ResultOperands[AliasOpNo].getImm();
1639a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        ResOperands.push_back(ResOperand::getImmOp(ImmVal));
1640a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        break;
1641a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      }
1642a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      case CodeGenInstAlias::ResultOperand::K_Reg: {
1643a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        Record *Reg = CGA.ResultOperands[AliasOpNo].getRegister();
1644a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        ResOperands.push_back(ResOperand::getRegOp(Reg));
1645a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        break;
1646a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      }
1647a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson      }
164890fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner    }
1649414098571b19fc248fda2be194082cfd012d2729Chris Lattner  }
1650414098571b19fc248fda2be194082cfd012d2729Chris Lattner}
16511d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner
1652c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbachstatic unsigned getConverterOperandID(const std::string &Name,
1653c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach                                      SetVector<std::string> &Table,
1654c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach                                      bool &IsNew) {
1655c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  IsNew = Table.insert(Name);
1656c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1657c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  unsigned ID = IsNew ? Table.size() - 1 :
1658c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    std::find(Table.begin(), Table.end(), Name) - Table.begin();
1659c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1660c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  assert(ID < Table.size());
1661c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1662c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  return ID;
1663c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach}
1664c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1665c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
16668caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitConvertToMCInst(CodeGenTarget &Target, StringRef ClassName,
166722bc5c4184a497353e33195dd12541a4f08b008aChris Lattner                                std::vector<MatchableInfo*> &Infos,
1668606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar                                raw_ostream &OS) {
1669c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  SetVector<std::string> OperandConversionKinds;
1670c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  SetVector<std::string> InstructionConversionKinds;
1671c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  std::vector<std::vector<uint8_t> > ConversionTable;
1672c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  size_t MaxRowLength = 2; // minimum is custom converter plus terminator.
1673c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1674c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // TargetOperandClass - This is the target's operand class, like X86Operand.
1675c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  std::string TargetOperandClass = Target.getName() + "Operand";
1676c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1677b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  // Write the convert function to a separate stream, so we can drop it after
1678c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // the enum. We'll build up the conversion handlers for the individual
1679c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // operand types opportunistically as we encounter them.
1680b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  std::string ConvertFnBody;
1681b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  raw_string_ostream CvtOS(ConvertFnBody);
1682b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  // Start the unified conversion function.
1683359956dc1be35df4f8179eb14cea617c3ef10dd7Chad Rosier  CvtOS << "void " << Target.getName() << ClassName << "::\n"
168490e11f8c95146c2d3718e9b3de71ee6628347b05Chad Rosier        << "convertToMCInst(unsigned Kind, MCInst &Inst, "
1685b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar        << "unsigned Opcode,\n"
168604508c6cb734ab1119a076f94b1c9fe8c4240b7dChad Rosier        << "                const SmallVectorImpl<MCParsedAsmOperand*"
1687c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "> &Operands) {\n"
1688359956dc1be35df4f8179eb14cea617c3ef10dd7Chad Rosier        << "  assert(Kind < CVT_NUM_SIGNATURES && \"Invalid signature!\");\n"
1689c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "  uint8_t *Converter = ConversionTable[Kind];\n"
1690c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "  Inst.setOpcode(Opcode);\n"
1691c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "  for (uint8_t *p = Converter; *p; p+= 2) {\n"
1692c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "    switch (*p) {\n"
1693c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "    default: llvm_unreachable(\"invalid conversion entry!\");\n"
1694c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "    case CVT_Reg:\n"
1695c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "      static_cast<" << TargetOperandClass
1696c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "*>(Operands[*(p + 1)])->addRegOperands(Inst, 1);\n"
1697c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "      break;\n"
1698c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "    case CVT_Tied:\n"
1699c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "      Inst.addOperand(Inst.getOperand(*(p + 1)));\n"
1700c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        << "      break;\n";
1701c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
170262316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier  std::string OperandFnBody;
170362316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier  raw_string_ostream OpOS(OperandFnBody);
170462316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier  // Start the operand number lookup function.
170587d910efc676d6d249dcfb054a9e3b8d97843bfcChad Rosier  OpOS << "unsigned " << Target.getName() << ClassName << "::\n"
17065d637d7e93c1f6058c16b41b8ac7dd36c61b4a5cChad Rosier       << "getMCInstOperandNumImpl(unsigned Kind, MCInst &Inst,\n"
1707038f3e31276f8cc86d91d0e4513e1a3ddb8509baChad Rosier       << "                        const SmallVectorImpl<MCParsedAsmOperand*> "
17082cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier       << "&Operands,\n                        unsigned OperandNum, unsigned "
17092cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier       << "&NumMCOperands) {\n"
1710359956dc1be35df4f8179eb14cea617c3ef10dd7Chad Rosier       << "  assert(Kind < CVT_NUM_SIGNATURES && \"Invalid signature!\");\n"
17112cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier       << "  NumMCOperands = 0;\n"
171287d910efc676d6d249dcfb054a9e3b8d97843bfcChad Rosier       << "  unsigned MCOperandNum = 0;\n"
171362316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "  uint8_t *Converter = ConversionTable[Kind];\n"
171462316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "  for (uint8_t *p = Converter; *p; p+= 2) {\n"
171562316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "    if (*(p + 1) > OperandNum) continue;\n"
171662316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "    switch (*p) {\n"
171762316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "    default: llvm_unreachable(\"invalid conversion entry!\");\n"
171862316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "    case CVT_Reg:\n"
17192cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier       << "      if (*(p + 1) == OperandNum) {\n"
17202cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier       << "        NumMCOperands = 1;\n"
17212cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier       << "        break;\n"
17222cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier       << "      }\n"
172362316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "      ++MCOperandNum;\n"
172462316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "      break;\n"
172562316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "    case CVT_Tied:\n"
17262dc88d94c34294184368ef0d9663342be2d42811Chad Rosier       << "      // FIXME: Tied operand calculation not supported.\n"
17275d637d7e93c1f6058c16b41b8ac7dd36c61b4a5cChad Rosier       << "      assert (0 && \"getMCInstOperandNumImpl() doesn't support tied operands, yet!\");\n"
172862316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier       << "      break;\n";
1729c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1730c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // Pre-populate the operand conversion kinds with the standard always
1731c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // available entries.
1732c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OperandConversionKinds.insert("CVT_Done");
1733c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OperandConversionKinds.insert("CVT_Reg");
1734c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OperandConversionKinds.insert("CVT_Tied");
1735c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  enum { CVT_Done, CVT_Reg, CVT_Tied };
1736a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
173722bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  for (std::vector<MatchableInfo*>::const_iterator it = Infos.begin(),
173820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar         ie = Infos.end(); it != ie; ++it) {
173922bc5c4184a497353e33195dd12541a4f08b008aChris Lattner    MatchableInfo &II = **it;
174020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
1741cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar    // Check if we have a custom match function.
174227b83d4ff2264d9a0e2367d92543efe4c0148931Daniel Dunbar    std::string AsmMatchConverter =
174327b83d4ff2264d9a0e2367d92543efe4c0148931Daniel Dunbar      II.getResultInst()->TheDef->getValueAsString("AsmMatchConverter");
1744cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar    if (!AsmMatchConverter.empty()) {
174527b83d4ff2264d9a0e2367d92543efe4c0148931Daniel Dunbar      std::string Signature = "ConvertCustom_" + AsmMatchConverter;
1746cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar      II.ConversionFnKind = Signature;
1747cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar
1748cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar      // Check if we have already generated this signature.
1749c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      if (!InstructionConversionKinds.insert(Signature))
1750cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar        continue;
1751cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar
1752c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      // Remember this converter for the kind enum.
1753c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      unsigned KindID = OperandConversionKinds.size();
1754c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      OperandConversionKinds.insert("CVT_" + AsmMatchConverter);
1755c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1756c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      // Add the converter row for this instruction.
1757c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      ConversionTable.push_back(std::vector<uint8_t>());
1758c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      ConversionTable.back().push_back(KindID);
1759c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      ConversionTable.back().push_back(CVT_Done);
1760cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar
1761c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      // Add the handler to the conversion driver function.
1762c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      CvtOS << "    case CVT_" << AsmMatchConverter << ":\n"
1763756d2cc2f7f6745603fdc0ec1ed4476d06385845Chad Rosier            << "      " << AsmMatchConverter << "(Inst, Operands);\n"
1764359956dc1be35df4f8179eb14cea617c3ef10dd7Chad Rosier            << "      break;\n";
1765c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
176662316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier      // FIXME: Handle the operand number lookup for custom match functions.
1767cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar      continue;
1768cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar    }
1769cf12067ae08dc7911c860070eaf2830dc1dc4ff7Daniel Dunbar
177020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar    // Build the conversion function signature.
177120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar    std::string Signature = "Convert";
1772c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1773c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    std::vector<uint8_t> ConversionRow;
1774828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1775dda855de8b3c60bce5d1d0d9eb11470c9710e30fChris Lattner    // Compute the convert enum and the case body.
1776c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    MaxRowLength = std::max(MaxRowLength, II.ResOperands.size()*2 + 1 );
1777c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
17781d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner    for (unsigned i = 0, e = II.ResOperands.size(); i != e; ++i) {
17791d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      const MatchableInfo::ResOperand &OpInfo = II.ResOperands[i];
17801d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner
17811d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      // Generate code to populate each result operand.
17821d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      switch (OpInfo.Kind) {
17831d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      case MatchableInfo::ResOperand::RenderAsmOperand: {
17841d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        // This comes from something we parsed.
17851d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        MatchableInfo::AsmOperand &Op = II.AsmOperands[OpInfo.AsmOperandNum];
1786828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
17879b0d4bfca0f23d39f5f2aef6b6740267a26ee17cChris Lattner        // Registers are always converted the same, don't duplicate the
17889b0d4bfca0f23d39f5f2aef6b6740267a26ee17cChris Lattner        // conversion function based on them.
17899b0d4bfca0f23d39f5f2aef6b6740267a26ee17cChris Lattner        Signature += "__";
1790c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        std::string Class;
1791c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        Class = Op.Class->isRegisterClass() ? "Reg" : Op.Class->ClassName;
1792c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        Signature += Class;
1793a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        Signature += utostr(OpInfo.MINumOperands);
17941d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        Signature += "_" + itostr(OpInfo.AsmOperandNum);
1795828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1796c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        // Add the conversion kind, if necessary, and get the associated ID
1797c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        // the index of its entry in the vector).
1798c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        std::string Name = "CVT_" + (Op.Class->isRegisterClass() ? "Reg" :
1799c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach                                     Op.Class->RenderMethod);
1800c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1801c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        bool IsNewConverter = false;
1802c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        unsigned ID = getConverterOperandID(Name, OperandConversionKinds,
1803c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach                                            IsNewConverter);
1804c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1805c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        // Add the operand entry to the instruction kind conversion row.
1806c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        ConversionRow.push_back(ID);
1807c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        ConversionRow.push_back(OpInfo.AsmOperandNum + 1);
1808c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1809c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        if (!IsNewConverter)
1810c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach          break;
1811c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1812c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        // This is a new operand kind. Add a handler for it to the
1813c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        // converter driver.
1814c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        CvtOS << "    case " << Name << ":\n"
1815c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << "      static_cast<" << TargetOperandClass
1816c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << "*>(Operands[*(p + 1)])->"
1817c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << Op.Class->RenderMethod << "(Inst, " << OpInfo.MINumOperands
1818c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << ");\n"
1819c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << "      break;\n";
182062316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier
182162316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier        // Add a handler for the operand number lookup.
182262316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier        OpOS << "    case " << Name << ":\n"
18232cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "      if (*(p + 1) == OperandNum) {\n"
18242cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "        NumMCOperands = " << OpInfo.MINumOperands << ";\n"
18252cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "        break;\n"
18262cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "      }\n"
182762316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier             << "      MCOperandNum += " << OpInfo.MINumOperands << ";\n"
182862316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier             << "      break;\n";
18291d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        break;
18301d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      }
18311d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      case MatchableInfo::ResOperand::TiedOperand: {
18321d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        // If this operand is tied to a previous one, just copy the MCInst
18331d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        // operand from the earlier one.We can only tie single MCOperand values.
1834a49c7dfb360154070c08b8eb94ad31711d1babaeBob Wilson        //assert(OpInfo.MINumOperands == 1 && "Not a singular MCOperand");
18351d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        unsigned TiedOp = OpInfo.TiedOperandNum;
18367a2bdde0a0eebcd2125055e0eacaca040f0b766cChris Lattner        assert(i > TiedOp && "Tied operand precedes its target!");
18371d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        Signature += "__Tie" + utostr(TiedOp);
1838c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        ConversionRow.push_back(CVT_Tied);
1839c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        ConversionRow.push_back(TiedOp);
184062316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier        // FIXME: Handle the operand number lookup for tied operands.
18411d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner        break;
18421d13bda737bad3e0cea28cbd65a221ab27abdb9bChris Lattner      }
184398c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      case MatchableInfo::ResOperand::ImmOperand: {
184498c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner        int64_t Val = OpInfo.ImmVal;
1845c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        std::string Ty = "imm_" + itostr(Val);
1846c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        Signature += "__" + Ty;
1847c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1848c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        std::string Name = "CVT_" + Ty;
1849c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        bool IsNewConverter = false;
1850c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        unsigned ID = getConverterOperandID(Name, OperandConversionKinds,
1851c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach                                            IsNewConverter);
1852c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        // Add the operand entry to the instruction kind conversion row.
1853c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        ConversionRow.push_back(ID);
1854c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        ConversionRow.push_back(0);
1855c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1856c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        if (!IsNewConverter)
1857c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach          break;
1858c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1859c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        CvtOS << "    case " << Name << ":\n"
1860c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << "      Inst.addOperand(MCOperand::CreateImm(" << Val << "));\n"
1861c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << "      break;\n";
1862c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
186362316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier        OpOS << "    case " << Name << ":\n"
18642cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "      if (*(p + 1) == OperandNum) {\n"
18652cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "        NumMCOperands = 1;\n"
18662cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "        break;\n"
18672cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "      }\n"
186862316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier             << "      ++MCOperandNum;\n"
186962316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier             << "      break;\n";
187098c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner        break;
187198c870f87b7f0c996a9ba67003d88d434d6dbcd0Chris Lattner      }
187290fd797dc739319347861d4f3984bc8952ae9a29Chris Lattner      case MatchableInfo::ResOperand::RegOperand: {
1873c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        std::string Reg, Name;
1874dc1a2bd3aa199693413f39dd723cc14a77e9f131Bob Wilson        if (OpInfo.Register == 0) {
1875c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach          Name = "reg0";
1876c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach          Reg = "0";
1877dc1a2bd3aa199693413f39dd723cc14a77e9f131Bob Wilson        } else {
1878c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach          Reg = getQualifiedName(OpInfo.Register);
1879c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach          Name = "reg" + OpInfo.Register->getName();
1880dc1a2bd3aa199693413f39dd723cc14a77e9f131Bob Wilson        }
1881c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        Signature += "__" + Name;
1882c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        Name = "CVT_" + Name;
1883c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        bool IsNewConverter = false;
1884c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        unsigned ID = getConverterOperandID(Name, OperandConversionKinds,
1885c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach                                            IsNewConverter);
1886c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        // Add the operand entry to the instruction kind conversion row.
1887c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        ConversionRow.push_back(ID);
1888c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        ConversionRow.push_back(0);
1889c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1890c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        if (!IsNewConverter)
1891c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach          break;
1892c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach        CvtOS << "    case " << Name << ":\n"
1893c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << "      Inst.addOperand(MCOperand::CreateReg(" << Reg << "));\n"
1894c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach              << "      break;\n";
189562316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier
189662316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier        OpOS << "    case " << Name << ":\n"
18972cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "      if (*(p + 1) == OperandNum) {\n"
18982cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "        NumMCOperands = 1;\n"
18992cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "        break;\n"
19002cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier             << "      }\n"
190162316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier             << "      ++MCOperandNum;\n"
190262316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier             << "      break;\n";
1903828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson      }
1904af61681cedb42a0e9f84560316d74f4ddeb2d2b6Daniel Dunbar      }
19059b0d4bfca0f23d39f5f2aef6b6740267a26ee17cChris Lattner    }
1906828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
1907c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    // If there were no operands, add to the signature to that effect
1908c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    if (Signature == "Convert")
1909c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      Signature += "_NoOperands";
1910c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1911b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar    II.ConversionFnKind = Signature;
1912a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar
1913c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    // Save the signature. If we already have it, don't add a new row
1914c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    // to the table.
1915c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    if (!InstructionConversionKinds.insert(Signature))
191620927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar      continue;
1917a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar
1918c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    // Add the row to the table.
1919c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    ConversionTable.push_back(ConversionRow);
1920a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar  }
1921b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar
1922c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // Finish up the converter driver function.
1923ad2d3e637a3a9eb368e71a1672331ee5e7809fe8Chad Rosier  CvtOS << "    }\n  }\n}\n\n";
1924b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar
192562316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier  // Finish up the operand number lookup function.
192687d910efc676d6d249dcfb054a9e3b8d97843bfcChad Rosier  OpOS << "    }\n  }\n  return MCOperandNum;\n}\n\n";
192762316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier
1928c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "namespace {\n";
1929b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar
1930c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // Output the operand conversion kind enum.
1931c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "enum OperatorConversionKind {\n";
1932c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  for (unsigned i = 0, e = OperandConversionKinds.size(); i != e; ++i)
1933c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    OS << "  " << OperandConversionKinds[i] << ",\n";
1934c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "  CVT_NUM_CONVERTERS\n";
1935c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "};\n\n";
1936b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar
1937c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // Output the instruction conversion kind enum.
1938c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "enum InstructionConversionKind {\n";
1939c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  for (SetVector<std::string>::const_iterator
1940c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach         i = InstructionConversionKinds.begin(),
1941c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach         e = InstructionConversionKinds.end(); i != e; ++i)
1942c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    OS << "  " << *i << ",\n";
1943c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "  CVT_NUM_SIGNATURES\n";
1944b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  OS << "};\n\n";
1945a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
1946c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1947c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "} // end anonymous namespace\n\n";
1948c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1949c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // Output the conversion table.
1950c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "static uint8_t ConversionTable[CVT_NUM_SIGNATURES]["
1951c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach     << MaxRowLength << "] = {\n";
1952c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1953c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  for (unsigned Row = 0, ERow = ConversionTable.size(); Row != ERow; ++Row) {
1954c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    assert(ConversionTable[Row].size() % 2 == 0 && "bad conversion row!");
1955c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    OS << "  // " << InstructionConversionKinds[Row] << "\n";
1956c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    OS << "  { ";
1957c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    for (unsigned i = 0, e = ConversionTable[Row].size(); i != e; i += 2)
1958c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach      OS << OperandConversionKinds[ConversionTable[Row][i]] << ", "
1959c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach         << (unsigned)(ConversionTable[Row][i + 1]) << ", ";
1960c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach    OS << "CVT_Done },\n";
1961c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  }
1962c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1963c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  OS << "};\n\n";
1964c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
1965c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach  // Spit out the conversion driver function.
1966b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  OS << CvtOS.str();
1967c8f267f66931c4358f11a2934e8b6234d9b7f0bdJim Grosbach
196862316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier  // Spit out the operand number lookup function.
196962316fa00a342bdb618e4c020c8e8606f541db92Chad Rosier  OS << OpOS.str();
197020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar}
197120927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
19728caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// emitMatchClassEnumeration - Emit the enumeration for match class kinds.
19738caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitMatchClassEnumeration(CodeGenTarget &Target,
1974a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar                                      std::vector<ClassInfo*> &Infos,
1975a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar                                      raw_ostream &OS) {
1976a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "namespace {\n\n";
1977a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
1978a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "/// MatchClassKind - The kinds of classes which participate in\n"
1979a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar     << "/// instruction matching.\n";
1980a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "enum MatchClassKind {\n";
1981a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "  InvalidMatchClass = 0,\n";
1982a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach  for (std::vector<ClassInfo*>::iterator it = Infos.begin(),
1983a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar         ie = Infos.end(); it != ie; ++it) {
1984a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    ClassInfo &CI = **it;
1985a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    OS << "  " << CI.Name << ", // ";
1986a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    if (CI.Kind == ClassInfo::Token) {
1987a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar      OS << "'" << CI.ValueName << "'\n";
1988ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    } else if (CI.isRegisterClass()) {
1989a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar      if (!CI.ValueName.empty())
1990a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar        OS << "register class '" << CI.ValueName << "'\n";
1991a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar      else
1992a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar        OS << "derived register class\n";
1993a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    } else {
1994a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar      OS << "user defined class '" << CI.ValueName << "'\n";
1995a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    }
1996a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  }
1997a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "  NumMatchClassKinds\n";
1998a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "};\n\n";
1999a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
2000a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "}\n\n";
2001a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar}
2002a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
20038caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// emitValidateOperandClass - Emit the function to validate an operand class.
20048caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitValidateOperandClass(AsmMatcherInfo &Info,
2005b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach                                     raw_ostream &OS) {
20064dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "static unsigned validateOperandClass(MCParsedAsmOperand *GOp, "
2007b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach     << "MatchClassKind Kind) {\n";
2008b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach  OS << "  " << Info.Target.getName() << "Operand &Operand = *("
200902bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner     << Info.Target.getName() << "Operand*)GOp;\n";
2010ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
2011893818347e9d7b34ea99ae9c984934c9b6bf92daKevin Enderby  // The InvalidMatchClass is not to match any operand.
2012893818347e9d7b34ea99ae9c984934c9b6bf92daKevin Enderby  OS << "  if (Kind == InvalidMatchClass)\n";
20134dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "    return MCTargetAsmParser::Match_InvalidOperand;\n\n";
2014893818347e9d7b34ea99ae9c984934c9b6bf92daKevin Enderby
2015b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach  // Check for Token operands first.
20164dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  // FIXME: Use a more specific diagnostic type.
2017a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "  if (Operand.isToken())\n";
20184dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "    return isSubclass(matchTokenString(Operand.getToken()), Kind) ?\n"
20194dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach     << "             MCTargetAsmParser::Match_Success :\n"
20204dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach     << "             MCTargetAsmParser::Match_InvalidOperand;\n\n";
2021ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar
2022b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach  // Check the user classes. We don't care what order since we're only
2023b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach  // actually matching against one of them.
2024a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach  for (std::vector<ClassInfo*>::iterator it = Info.Classes.begin(),
2025ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar         ie = Info.Classes.end(); it != ie; ++it) {
2026a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar    ClassInfo &CI = **it;
2027a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
2028ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    if (!CI.isUserClass())
2029ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar      continue;
2030828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2031b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach    OS << "  // '" << CI.ClassName << "' class\n";
20324dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    OS << "  if (Kind == " << CI.Name << ") {\n";
20334dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    OS << "    if (Operand." << CI.PredicateMethod << "())\n";
20344dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    OS << "      return MCTargetAsmParser::Match_Success;\n";
20354dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    if (!CI.DiagnosticType.empty())
20364dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach      OS << "    return " << Info.Target.getName() << "AsmParser::Match_"
20374dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach         << CI.DiagnosticType << ";\n";
2038ea6408f8cd17b065e414611e01a7133d118429e9Daniel Dunbar    OS << "  }\n\n";
2039a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  }
2040828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2041b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson  // Check for register operands, including sub-classes.
2042b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson  OS << "  if (Operand.isReg()) {\n";
2043b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson  OS << "    MatchClassKind OpKind;\n";
2044b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson  OS << "    switch (Operand.getReg()) {\n";
2045b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson  OS << "    default: OpKind = InvalidMatchClass; break;\n";
2046b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson  for (std::map<Record*, ClassInfo*>::iterator
2047b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson         it = Info.RegisterClasses.begin(), ie = Info.RegisterClasses.end();
2048b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson       it != ie; ++it)
2049b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson    OS << "    case " << Info.Target.getName() << "::"
2050b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson       << it->first->getName() << ": OpKind = " << it->second->Name
2051b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson       << "; break;\n";
2052b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson  OS << "    }\n";
2053b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson  OS << "    return isSubclass(OpKind, Kind) ? "
2054b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson     << "MCTargetAsmParser::Match_Success :\n                             "
2055b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson     << "         MCTargetAsmParser::Match_InvalidOperand;\n  }\n\n";
2056b885dc8d39fd5ffe4be01059ca6d8977374db02fOwen Anderson
20574dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  // Generic fallthrough match failure case for operands that don't have
20584dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  // specialized diagnostic types.
20594dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "  return MCTargetAsmParser::Match_InvalidOperand;\n";
2060a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "}\n\n";
2061a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar}
2062a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
20638caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// emitIsSubclass - Emit the subclass predicate function.
20648caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitIsSubclass(CodeGenTarget &Target,
2065fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar                           std::vector<ClassInfo*> &Infos,
2066fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar                           raw_ostream &OS) {
20674e0ae44b3a1b5f7157351764fd125c7c85959797Dmitri Gribenko  OS << "/// isSubclass - Compute whether \\p A is a subclass of \\p B.\n";
20683d5d8f6b768619ed65f79606d5c981c1e056c7e8Jim Grosbach  OS << "static bool isSubclass(MatchClassKind A, MatchClassKind B) {\n";
2069fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  OS << "  if (A == B)\n";
2070fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  OS << "    return true;\n\n";
2071fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar
2072fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  OS << "  switch (A) {\n";
2073fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  OS << "  default:\n";
2074fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  OS << "    return false;\n";
2075a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach  for (std::vector<ClassInfo*>::iterator it = Infos.begin(),
2076fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar         ie = Infos.end(); it != ie; ++it) {
2077fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar    ClassInfo &A = **it;
2078fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar
2079a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    std::vector<StringRef> SuperClasses;
2080a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    for (std::vector<ClassInfo*>::iterator it = Infos.begin(),
2081a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach         ie = Infos.end(); it != ie; ++it) {
2082a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach      ClassInfo &B = **it;
2083fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar
2084a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach      if (&A != &B && A.isSubsetOf(B))
2085a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach        SuperClasses.push_back(B.Name);
2086a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    }
2087fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar
2088a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    if (SuperClasses.empty())
2089a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach      continue;
2090fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar
2091a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    OS << "\n  case " << A.Name << ":\n";
2092fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar
2093a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    if (SuperClasses.size() == 1) {
2094a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach      OS << "    return B == " << SuperClasses.back() << ";\n";
2095a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach      continue;
2096fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar    }
2097a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach
2098a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    OS << "    switch (B) {\n";
2099a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    OS << "    default: return false;\n";
2100a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    for (unsigned i = 0, e = SuperClasses.size(); i != e; ++i)
2101a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach      OS << "    case " << SuperClasses[i] << ": return true;\n";
2102a66512e59142f36ae653460891c058d5e78e07e3Jim Grosbach    OS << "    }\n";
2103fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  }
2104fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  OS << "  }\n";
2105fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  OS << "}\n\n";
2106fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar}
2107fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar
21088caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// emitMatchTokenString - Emit the function to match a token string to the
2109245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar/// appropriate match class value.
21108caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitMatchTokenString(CodeGenTarget &Target,
2111245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar                                 std::vector<ClassInfo*> &Infos,
2112245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar                                 raw_ostream &OS) {
2113245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar  // Construct the match list.
21145845e5c62b42d025557765006515156691a6a8b1Chris Lattner  std::vector<StringMatcher::StringPair> Matches;
2115a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach  for (std::vector<ClassInfo*>::iterator it = Infos.begin(),
2116245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar         ie = Infos.end(); it != ie; ++it) {
2117245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar    ClassInfo &CI = **it;
2118245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar
2119245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar    if (CI.Kind == ClassInfo::Token)
21205845e5c62b42d025557765006515156691a6a8b1Chris Lattner      Matches.push_back(StringMatcher::StringPair(CI.ValueName,
21215845e5c62b42d025557765006515156691a6a8b1Chris Lattner                                                  "return " + CI.Name + ";"));
2122245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar  }
2123245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar
21243d5d8f6b768619ed65f79606d5c981c1e056c7e8Jim Grosbach  OS << "static MatchClassKind matchTokenString(StringRef Name) {\n";
2125245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar
21265845e5c62b42d025557765006515156691a6a8b1Chris Lattner  StringMatcher("Name", Matches, OS).Emit();
2127245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar
2128245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar  OS << "  return InvalidMatchClass;\n";
2129245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar  OS << "}\n\n";
2130245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar}
213170add884e4967f511e2cbb35c61534186b9b418aChris Lattner
21328caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// emitMatchRegisterName - Emit the function to match a string to the target
21332234e5eee6d196594d42e6f2be51e176bf5e5f6eDaniel Dunbar/// specific register enum.
21348caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitMatchRegisterName(CodeGenTarget &Target, Record *AsmParser,
21352234e5eee6d196594d42e6f2be51e176bf5e5f6eDaniel Dunbar                                  raw_ostream &OS) {
2136245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar  // Construct the match list.
21375845e5c62b42d025557765006515156691a6a8b1Chris Lattner  std::vector<StringMatcher::StringPair> Matches;
2138abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen  const std::vector<CodeGenRegister*> &Regs =
2139abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen    Target.getRegBank().getRegisters();
2140abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen  for (unsigned i = 0, e = Regs.size(); i != e; ++i) {
2141abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen    const CodeGenRegister *Reg = Regs[i];
2142abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen    if (Reg->TheDef->getValueAsString("AsmName").empty())
214320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar      continue;
214420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
21455845e5c62b42d025557765006515156691a6a8b1Chris Lattner    Matches.push_back(StringMatcher::StringPair(
2146abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen                                     Reg->TheDef->getValueAsString("AsmName"),
2147abdbc84b4ed4276ed3def50f554e3ba156325717Jakob Stoklund Olesen                                     "return " + utostr(Reg->EnumValue) + ";"));
214820927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar  }
2149a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2150b8d6e98e566724f58344d275a4bd675249bb713aChris Lattner  OS << "static unsigned MatchRegisterName(StringRef Name) {\n";
2151245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar
21525845e5c62b42d025557765006515156691a6a8b1Chris Lattner  StringMatcher("Name", Matches, OS).Emit();
2153a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2154245f05843f7f17406f394696e7330950e6d88e6dDaniel Dunbar  OS << "  return 0;\n";
215520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar  OS << "}\n\n";
21562234e5eee6d196594d42e6f2be51e176bf5e5f6eDaniel Dunbar}
21572234e5eee6d196594d42e6f2be51e176bf5e5f6eDaniel Dunbar
21588caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// emitSubtargetFeatureFlagEnumeration - Emit the subtarget feature flag
215954074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar/// definitions.
21608caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitSubtargetFeatureFlagEnumeration(AsmMatcherInfo &Info,
216154074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar                                                raw_ostream &OS) {
216254074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "// Flags for subtarget features that participate in "
216354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar     << "instruction matching.\n";
216454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "enum SubtargetFeatureFlag {\n";
216554074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  for (std::map<Record*, SubtargetFeatureInfo*>::const_iterator
216654074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar         it = Info.SubtargetFeatures.begin(),
216754074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar         ie = Info.SubtargetFeatures.end(); it != ie; ++it) {
216854074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar    SubtargetFeatureInfo &SFI = *it->second;
21690aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    OS << "  " << SFI.getEnumName() << " = (1 << " << SFI.Index << "),\n";
217054074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  }
217154074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "  Feature_None = 0\n";
217254074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "};\n\n";
217354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar}
217454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
21754dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach/// emitOperandDiagnosticTypes - Emit the operand matching diagnostic types.
21764dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbachstatic void emitOperandDiagnosticTypes(AsmMatcherInfo &Info, raw_ostream &OS) {
21774dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  // Get the set of diagnostic types from all of the operand classes.
21784dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  std::set<StringRef> Types;
21794dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  for (std::map<Record*, ClassInfo*>::const_iterator
21804dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach       I = Info.AsmOperandClasses.begin(),
21814dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach       E = Info.AsmOperandClasses.end(); I != E; ++I) {
21824dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    if (!I->second->DiagnosticType.empty())
21834dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach      Types.insert(I->second->DiagnosticType);
21844dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  }
21854dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach
21864dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  if (Types.empty()) return;
21874dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach
21884dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  // Now emit the enum entries.
21894dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  for (std::set<StringRef>::const_iterator I = Types.begin(), E = Types.end();
21904dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach       I != E; ++I)
21914dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach    OS << "  Match_" << *I << ",\n";
21924dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "  END_OPERAND_DIAGNOSTIC_TYPES\n";
21934dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach}
21944dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach
219514ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach/// emitGetSubtargetFeatureName - Emit the helper function to get the
219614ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach/// user-level name for a subtarget feature.
219714ce6fac242228dacc5c08040e544141a96880e5Jim Grosbachstatic void emitGetSubtargetFeatureName(AsmMatcherInfo &Info, raw_ostream &OS) {
219814ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach  OS << "// User-level names for subtarget features that participate in\n"
219914ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach     << "// instruction matching.\n"
220014ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach     << "static const char *getSubtargetFeatureName(unsigned Val) {\n"
220114ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach     << "  switch(Val) {\n";
220214ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach  for (std::map<Record*, SubtargetFeatureInfo*>::const_iterator
220314ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach         it = Info.SubtargetFeatures.begin(),
220414ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach         ie = Info.SubtargetFeatures.end(); it != ie; ++it) {
220514ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach    SubtargetFeatureInfo &SFI = *it->second;
220614ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach    // FIXME: Totally just a placeholder name to get the algorithm working.
220714ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach    OS << "  case " << SFI.getEnumName() << ": return \""
220814ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach       << SFI.TheDef->getValueAsString("PredicateName") << "\";\n";
220914ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach  }
221014ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach  OS << "  default: return \"(unknown)\";\n";
221114ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach  OS << "  }\n}\n\n";
221214ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach}
221314ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach
22148caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// emitComputeAvailableFeatures - Emit the function to compute the list of
221554074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar/// available features given a subtarget.
22168caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitComputeAvailableFeatures(AsmMatcherInfo &Info,
221754074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar                                         raw_ostream &OS) {
221854074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  std::string ClassName =
221954074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar    Info.AsmParser->getValueAsString("AsmParserClassName");
222054074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
222102bcbc97fbf55803c660729aa9d2c154a2101331Chris Lattner  OS << "unsigned " << Info.Target.getName() << ClassName << "::\n"
2222ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng     << "ComputeAvailableFeatures(uint64_t FB) const {\n";
222354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "  unsigned Features = 0;\n";
222454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  for (std::map<Record*, SubtargetFeatureInfo*>::const_iterator
222554074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar         it = Info.SubtargetFeatures.begin(),
222654074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar         ie = Info.SubtargetFeatures.end(); it != ie; ++it) {
222754074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar    SubtargetFeatureInfo &SFI = *it->second;
2228ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng
2229ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng    OS << "  if (";
223065da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach    std::string CondStorage =
223165da6fc8af561e77620bd86b83be8ca50acfdd30Jim Grosbach      SFI.TheDef->getValueAsString("AssemblerCondString");
2232fbc38d2c16bc2fb923efdbbd6035ec8233fb4856Evan Cheng    StringRef Conds = CondStorage;
2233ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng    std::pair<StringRef,StringRef> Comma = Conds.split(',');
2234ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng    bool First = true;
2235ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng    do {
2236ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      if (!First)
2237ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng        OS << " && ";
2238ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng
2239ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      bool Neg = false;
2240ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      StringRef Cond = Comma.first;
2241ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      if (Cond[0] == '!') {
2242ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng        Neg = true;
2243ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng        Cond = Cond.substr(1);
2244ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      }
2245ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng
2246ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      OS << "((FB & " << Info.Target.getName() << "::" << Cond << ")";
2247ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      if (Neg)
2248ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng        OS << " == 0";
2249ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      else
2250ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng        OS << " != 0";
2251ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      OS << ")";
2252ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng
2253ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      if (Comma.second.empty())
2254ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng        break;
2255ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng
2256ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      First = false;
2257ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng      Comma = Comma.second.split(',');
2258ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng    } while (true);
2259ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng
2260ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng    OS << ")\n";
22610aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner    OS << "    Features |= " << SFI.getEnumName() << ";\n";
226254074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  }
226354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "  return Features;\n";
226454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "}\n\n";
226554074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar}
226654074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
22676fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattnerstatic std::string GetAliasRequiredFeatures(Record *R,
22686fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner                                            const AsmMatcherInfo &Info) {
2269693173feefaa326fad0e386470846fb3199ba381Chris Lattner  std::vector<Record*> ReqFeatures = R->getValueAsListOfDefs("Predicates");
2270693173feefaa326fad0e386470846fb3199ba381Chris Lattner  std::string Result;
2271693173feefaa326fad0e386470846fb3199ba381Chris Lattner  unsigned NumFeatures = 0;
2272693173feefaa326fad0e386470846fb3199ba381Chris Lattner  for (unsigned i = 0, e = ReqFeatures.size(); i != e; ++i) {
22734a74ee7203d119232d9c6df33946c01611e433f8Chris Lattner    SubtargetFeatureInfo *F = Info.getSubtargetFeature(ReqFeatures[i]);
2274828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
22754a74ee7203d119232d9c6df33946c01611e433f8Chris Lattner    if (F == 0)
22764a74ee7203d119232d9c6df33946c01611e433f8Chris Lattner      throw TGError(R->getLoc(), "Predicate '" + ReqFeatures[i]->getName() +
22774a74ee7203d119232d9c6df33946c01611e433f8Chris Lattner                    "' is not marked as an AssemblerPredicate!");
2278828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
22794a74ee7203d119232d9c6df33946c01611e433f8Chris Lattner    if (NumFeatures)
22804a74ee7203d119232d9c6df33946c01611e433f8Chris Lattner      Result += '|';
2281828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
22824a74ee7203d119232d9c6df33946c01611e433f8Chris Lattner    Result += F->getEnumName();
22834a74ee7203d119232d9c6df33946c01611e433f8Chris Lattner    ++NumFeatures;
2284693173feefaa326fad0e386470846fb3199ba381Chris Lattner  }
2285828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2286693173feefaa326fad0e386470846fb3199ba381Chris Lattner  if (NumFeatures > 1)
2287693173feefaa326fad0e386470846fb3199ba381Chris Lattner    Result = '(' + Result + ')';
2288693173feefaa326fad0e386470846fb3199ba381Chris Lattner  return Result;
2289693173feefaa326fad0e386470846fb3199ba381Chris Lattner}
2290693173feefaa326fad0e386470846fb3199ba381Chris Lattner
22918caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach/// emitMnemonicAliases - If the target has any MnemonicAlias<> definitions,
22927fd4489de11bdf06f6c852d42abafea013b76f28Chris Lattner/// emit a function for them and return true, otherwise return false.
22938caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic bool emitMnemonicAliases(raw_ostream &OS, const AsmMatcherInfo &Info) {
2294c0a7007d3a6a7bb31eec568b9dfdb8fb137702e5Daniel Dunbar  // Ignore aliases when match-prefix is set.
2295c0a7007d3a6a7bb31eec568b9dfdb8fb137702e5Daniel Dunbar  if (!MatchPrefix.empty())
2296c0a7007d3a6a7bb31eec568b9dfdb8fb137702e5Daniel Dunbar    return false;
2297c0a7007d3a6a7bb31eec568b9dfdb8fb137702e5Daniel Dunbar
2298674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner  std::vector<Record*> Aliases =
229967db883487fca3472fdde51e931657e22d4d0495Chris Lattner    Info.getRecords().getAllDerivedDefinitions("MnemonicAlias");
23007fd4489de11bdf06f6c852d42abafea013b76f28Chris Lattner  if (Aliases.empty()) return false;
2301674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner
23023d5d8f6b768619ed65f79606d5c981c1e056c7e8Jim Grosbach  OS << "static void applyMnemonicAliases(StringRef &Mnemonic, "
23038cc0a6b788a17b3afc779e9da90f5203c8b78436Chris Lattner        "unsigned Features) {\n";
2304828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
23054fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner  // Keep track of all the aliases from a mnemonic.  Use an std::map so that the
23064fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner  // iteration order of the map is stable.
23074fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner  std::map<std::string, std::vector<Record*> > AliasesFromMnemonic;
2308828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2309674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner  for (unsigned i = 0, e = Aliases.size(); i != e; ++i) {
2310674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner    Record *R = Aliases[i];
23114fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner    AliasesFromMnemonic[R->getValueAsString("FromMnemonic")].push_back(R);
23124fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner  }
23134fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner
23144fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner  // Process each alias a "from" mnemonic at a time, building the code executed
23154fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner  // by the string remapper.
23164fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner  std::vector<StringMatcher::StringPair> Cases;
23174fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner  for (std::map<std::string, std::vector<Record*> >::iterator
23184fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner       I = AliasesFromMnemonic.begin(), E = AliasesFromMnemonic.end();
23194fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner       I != E; ++I) {
23204fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner    const std::vector<Record*> &ToVec = I->second;
2321693173feefaa326fad0e386470846fb3199ba381Chris Lattner
2322693173feefaa326fad0e386470846fb3199ba381Chris Lattner    // Loop through each alias and emit code that handles each case.  If there
2323693173feefaa326fad0e386470846fb3199ba381Chris Lattner    // are two instructions without predicates, emit an error.  If there is one,
2324693173feefaa326fad0e386470846fb3199ba381Chris Lattner    // emit it last.
2325693173feefaa326fad0e386470846fb3199ba381Chris Lattner    std::string MatchCode;
2326693173feefaa326fad0e386470846fb3199ba381Chris Lattner    int AliasWithNoPredicate = -1;
2327828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2328693173feefaa326fad0e386470846fb3199ba381Chris Lattner    for (unsigned i = 0, e = ToVec.size(); i != e; ++i) {
2329693173feefaa326fad0e386470846fb3199ba381Chris Lattner      Record *R = ToVec[i];
23306fa152c8fb3f36456955fbdf9e95e365f3e21ec8Chris Lattner      std::string FeatureMask = GetAliasRequiredFeatures(R, Info);
2331828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2332693173feefaa326fad0e386470846fb3199ba381Chris Lattner      // If this unconditionally matches, remember it for later and diagnose
2333693173feefaa326fad0e386470846fb3199ba381Chris Lattner      // duplicates.
2334693173feefaa326fad0e386470846fb3199ba381Chris Lattner      if (FeatureMask.empty()) {
2335693173feefaa326fad0e386470846fb3199ba381Chris Lattner        if (AliasWithNoPredicate != -1) {
2336693173feefaa326fad0e386470846fb3199ba381Chris Lattner          // We can't have two aliases from the same mnemonic with no predicate.
2337693173feefaa326fad0e386470846fb3199ba381Chris Lattner          PrintError(ToVec[AliasWithNoPredicate]->getLoc(),
2338693173feefaa326fad0e386470846fb3199ba381Chris Lattner                     "two MnemonicAliases with the same 'from' mnemonic!");
23394164f6bbbf4ebce676e8a6c0a0cf7a78ef46a0f3Chris Lattner          throw TGError(R->getLoc(), "this is the other MnemonicAlias.");
2340693173feefaa326fad0e386470846fb3199ba381Chris Lattner        }
2341828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2342693173feefaa326fad0e386470846fb3199ba381Chris Lattner        AliasWithNoPredicate = i;
2343693173feefaa326fad0e386470846fb3199ba381Chris Lattner        continue;
2344693173feefaa326fad0e386470846fb3199ba381Chris Lattner      }
23456ef6ceda6883d0ee543d8da86d16b0fcdcecab96Joerg Sonnenberger      if (R->getValueAsString("ToMnemonic") == I->first)
23466ef6ceda6883d0ee543d8da86d16b0fcdcecab96Joerg Sonnenberger        throw TGError(R->getLoc(), "MnemonicAlias to the same string");
2347828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
23488cf8bcc40c977713e51fb85fb9f24a0ecfbde24bChris Lattner      if (!MatchCode.empty())
23498cf8bcc40c977713e51fb85fb9f24a0ecfbde24bChris Lattner        MatchCode += "else ";
2350693173feefaa326fad0e386470846fb3199ba381Chris Lattner      MatchCode += "if ((Features & " + FeatureMask + ") == "+FeatureMask+")\n";
2351693173feefaa326fad0e386470846fb3199ba381Chris Lattner      MatchCode += "  Mnemonic = \"" +R->getValueAsString("ToMnemonic")+"\";\n";
2352693173feefaa326fad0e386470846fb3199ba381Chris Lattner    }
2353828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2354693173feefaa326fad0e386470846fb3199ba381Chris Lattner    if (AliasWithNoPredicate != -1) {
2355693173feefaa326fad0e386470846fb3199ba381Chris Lattner      Record *R = ToVec[AliasWithNoPredicate];
23568cf8bcc40c977713e51fb85fb9f24a0ecfbde24bChris Lattner      if (!MatchCode.empty())
23578cf8bcc40c977713e51fb85fb9f24a0ecfbde24bChris Lattner        MatchCode += "else\n  ";
23588cf8bcc40c977713e51fb85fb9f24a0ecfbde24bChris Lattner      MatchCode += "Mnemonic = \"" + R->getValueAsString("ToMnemonic")+"\";\n";
23594fd32c66481c107a4f32cbec0c3017d9c6154a93Chris Lattner    }
2360828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2361693173feefaa326fad0e386470846fb3199ba381Chris Lattner    MatchCode += "return;";
2362693173feefaa326fad0e386470846fb3199ba381Chris Lattner
2363693173feefaa326fad0e386470846fb3199ba381Chris Lattner    Cases.push_back(std::make_pair(I->first, MatchCode));
2364674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner  }
2365828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2366674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner  StringMatcher("Mnemonic", Cases, OS).Emit();
236755b5e85643b189636758188f11b598c45178407fDaniel Dunbar  OS << "}\n\n";
2368828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
23697fd4489de11bdf06f6c852d42abafea013b76f28Chris Lattner  return true;
2370674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner}
2371674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner
2372194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbachstatic const char *getMinimalTypeForRange(uint64_t Range) {
2373194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbach  assert(Range < 0xFFFFFFFFULL && "Enum too large");
2374194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbach  if (Range > 0xFFFF)
2375194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbach    return "uint32_t";
2376194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbach  if (Range > 0xFF)
2377194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbach    return "uint16_t";
2378194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbach  return "uint8_t";
2379194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbach}
2380194f3fa9eadc7dfe9f1750c16e1c2a8ebe11c88cJim Grosbach
23818caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbachstatic void emitCustomOperandParsing(raw_ostream &OS, CodeGenTarget &Target,
2382e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes                              const AsmMatcherInfo &Info, StringRef ClassName) {
2383e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Emit the static custom operand parsing table;
2384e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "namespace {\n";
2385e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  struct OperandMatchEntry {\n";
23867044cce1a30539e2ec779f49546d13d7db5a33dfJakob Stoklund Olesen  OS << "    static const char *const MnemonicTable;\n";
2387fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper  OS << "    uint32_t OperandMask;\n";
2388fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper  OS << "    uint32_t Mnemonic;\n";
2389b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "    " << getMinimalTypeForRange(1ULL << Info.SubtargetFeatures.size())
2390fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper               << " RequiredFeatures;\n";
2391fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper  OS << "    " << getMinimalTypeForRange(Info.Classes.size())
2392fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper               << " Class;\n\n";
2393b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "    StringRef getMnemonic() const {\n";
2394b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "      return StringRef(MnemonicTable + Mnemonic + 1,\n";
2395b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "                       MnemonicTable[Mnemonic]);\n";
2396b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "    }\n";
2397e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  };\n\n";
2398e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2399e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  // Predicate for searching for an opcode.\n";
2400e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  struct LessOpcodeOperand {\n";
2401e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    bool operator()(const OperandMatchEntry &LHS, StringRef RHS) {\n";
2402b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "      return LHS.getMnemonic()  < RHS;\n";
2403e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    }\n";
2404e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    bool operator()(StringRef LHS, const OperandMatchEntry &RHS) {\n";
2405b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "      return LHS < RHS.getMnemonic();\n";
2406e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    }\n";
2407e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    bool operator()(const OperandMatchEntry &LHS,";
2408e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << " const OperandMatchEntry &RHS) {\n";
2409b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "      return LHS.getMnemonic() < RHS.getMnemonic();\n";
2410e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    }\n";
2411e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  };\n";
2412e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2413e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "} // end anonymous namespace.\n\n";
2414e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2415b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  StringToOffsetTable StringTable;
2416b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer
2417e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "static const OperandMatchEntry OperandMatchTable["
2418e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << Info.OperandMatchInfo.size() << "] = {\n";
2419e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2420b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "  /* Operand List Mask, Mnemonic, Operand Class, Features */\n";
2421e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  for (std::vector<OperandMatchEntry>::const_iterator it =
2422e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes       Info.OperandMatchInfo.begin(), ie = Info.OperandMatchInfo.end();
2423e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes       it != ie; ++it) {
2424e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    const OperandMatchEntry &OMI = *it;
2425e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    const MatchableInfo &II = *OMI.MI;
2426e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2427b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer    OS << "  { " << OMI.OperandMask;
2428e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2429e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OS << " /* ";
2430e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    bool printComma = false;
2431e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    for (int i = 0, e = 31; i !=e; ++i)
2432e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      if (OMI.OperandMask & (1 << i)) {
2433e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes        if (printComma)
2434e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes          OS << ", ";
2435e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes        OS << i;
2436e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes        printComma = true;
2437e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      }
2438e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OS << " */";
2439e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2440b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer    // Store a pascal-style length byte in the mnemonic.
2441b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer    std::string LenMnemonic = char(II.Mnemonic.size()) + II.Mnemonic.str();
2442bcfa982c4866fee5f86dca8c4bfc7425a9629f0dJakob Stoklund Olesen    OS << ", " << StringTable.GetOrAddStringOffset(LenMnemonic, false)
2443fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper       << " /* " << II.Mnemonic << " */, ";
2444e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2445e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    // Write the required features mask.
2446e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    if (!II.RequiredFeatures.empty()) {
2447e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      for (unsigned i = 0, e = II.RequiredFeatures.size(); i != e; ++i) {
2448e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes        if (i) OS << "|";
2449e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes        OS << II.RequiredFeatures[i]->getEnumName();
2450e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      }
2451e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    } else
2452e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      OS << "0";
2453fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper
2454fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper    OS << ", " << OMI.CI->Name;
2455fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper
2456e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OS << " },\n";
2457e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  }
2458e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "};\n\n";
2459e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
24607044cce1a30539e2ec779f49546d13d7db5a33dfJakob Stoklund Olesen  OS << "const char *const OperandMatchEntry::MnemonicTable =\n";
2461b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  StringTable.EmitString(OS);
2462b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << ";\n\n";
2463b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer
2464e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Emit the operand class switch to call the correct custom parser for
2465e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // the found operand class.
2466f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << Target.getName() << ClassName << "::OperandMatchResultTy "
2467f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach     << Target.getName() << ClassName << "::\n"
24683d5d8f6b768619ed65f79606d5c981c1e056c7e8Jim Grosbach     << "tryCustomParseOperand(SmallVectorImpl<MCParsedAsmOperand*>"
2469e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << " &Operands,\n                      unsigned MCK) {\n\n"
2470e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << "  switch(MCK) {\n";
2471e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2472e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  for (std::vector<ClassInfo*>::const_iterator it = Info.Classes.begin(),
2473e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes       ie = Info.Classes.end(); it != ie; ++it) {
2474e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    ClassInfo *CI = *it;
2475e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    if (CI->ParserMethod.empty())
2476e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes      continue;
2477e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OS << "  case " << CI->Name << ":\n"
2478e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes       << "    return " << CI->ParserMethod << "(Operands);\n";
2479e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  }
2480e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2481e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  default:\n";
2482f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << "    return MatchOperand_NoMatch;\n";
2483e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  }\n";
2484f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << "  return MatchOperand_NoMatch;\n";
2485e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "}\n\n";
2486e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2487e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Emit the static custom operand parser. This code is very similar with
2488e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // the other matcher. Also use MatchResultTy here just in case we go for
2489e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // a better error handling.
2490f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << Target.getName() << ClassName << "::OperandMatchResultTy "
2491e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << Target.getName() << ClassName << "::\n"
2492e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << "MatchOperandParserImpl(SmallVectorImpl<MCParsedAsmOperand*>"
2493e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << " &Operands,\n                       StringRef Mnemonic) {\n";
2494e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2495e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Emit code to get the available features.
2496e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  // Get the current feature set.\n";
2497e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  unsigned AvailableFeatures = getAvailableFeatures();\n\n";
2498e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2499e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  // Get the next operand index.\n";
2500e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  unsigned NextOpNum = Operands.size()-1;\n";
2501e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2502e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Emit code to search the table.
2503e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  // Search the table.\n";
2504e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  std::pair<const OperandMatchEntry*, const OperandMatchEntry*>";
2505e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << " MnemonicRange =\n";
2506e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    std::equal_range(OperandMatchTable, OperandMatchTable+"
2507e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << Info.OperandMatchInfo.size() << ", Mnemonic,\n"
2508e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << "                     LessOpcodeOperand());\n\n";
2509e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2510e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  if (MnemonicRange.first == MnemonicRange.second)\n";
2511f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << "    return MatchOperand_NoMatch;\n\n";
2512e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2513e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  for (const OperandMatchEntry *it = MnemonicRange.first,\n"
2514e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << "       *ie = MnemonicRange.second; it != ie; ++it) {\n";
2515e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2516e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    // equal_range guarantees that instruction mnemonic matches.\n";
2517b08bb34a6f49c79e963aac52030c0cbeb0526f86Benjamin Kramer  OS << "    assert(Mnemonic == it->getMnemonic());\n\n";
2518e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2519e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Emit check that the required features are available.
2520e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    // check if the available features match\n";
2521e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    if ((AvailableFeatures & it->RequiredFeatures) "
2522e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes     << "!= it->RequiredFeatures) {\n";
2523e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "      continue;\n";
2524e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    }\n\n";
2525e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2526e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Emit check to ensure the operand number matches.
2527e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    // check if the operand in question has a custom parser.\n";
2528e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    if (!(it->OperandMask & (1 << NextOpNum)))\n";
2529e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "      continue;\n\n";
2530e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2531e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Emit call to the custom parser method
2532e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "    // call custom parse method to handle the operand\n";
2533f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << "    OperandMatchResultTy Result = ";
25343d5d8f6b768619ed65f79606d5c981c1e056c7e8Jim Grosbach  OS << "tryCustomParseOperand(Operands, it->Class);\n";
2535f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << "    if (Result != MatchOperand_NoMatch)\n";
2536f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << "      return Result;\n";
2537e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  }\n\n";
2538e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2539f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << "  // Okay, we had no match.\n";
2540f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach  OS << "  return MatchOperand_NoMatch;\n";
2541e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "}\n\n";
2542e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes}
2543e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
25442234e5eee6d196594d42e6f2be51e176bf5e5f6eDaniel Dunbarvoid AsmMatcherEmitter::run(raw_ostream &OS) {
254567db883487fca3472fdde51e931657e22d4d0495Chris Lattner  CodeGenTarget Target(Records);
25462234e5eee6d196594d42e6f2be51e176bf5e5f6eDaniel Dunbar  Record *AsmParser = Target.getAsmParser();
25472234e5eee6d196594d42e6f2be51e176bf5e5f6eDaniel Dunbar  std::string ClassName = AsmParser->getValueAsString("AsmParserClassName");
25482234e5eee6d196594d42e6f2be51e176bf5e5f6eDaniel Dunbar
2549a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // Compute the information on the instructions to match.
255067db883487fca3472fdde51e931657e22d4d0495Chris Lattner  AsmMatcherInfo Info(AsmParser, Target, Records);
25518caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  Info.buildInfo();
255220927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
2553e1f6de3fbd892ea3f918a26912660cf316866fc1Daniel Dunbar  // Sort the instruction table using the partial order on classes. We use
2554e1f6de3fbd892ea3f918a26912660cf316866fc1Daniel Dunbar  // stable_sort to ensure that ambiguous instructions are still
2555e1f6de3fbd892ea3f918a26912660cf316866fc1Daniel Dunbar  // deterministically ordered.
255622bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  std::stable_sort(Info.Matchables.begin(), Info.Matchables.end(),
255722bc5c4184a497353e33195dd12541a4f08b008aChris Lattner                   less_ptr<MatchableInfo>());
2558a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2559b7479c035534b1c240117cd0aea8342393160da8Daniel Dunbar  DEBUG_WITH_TYPE("instruction_info", {
256022bc5c4184a497353e33195dd12541a4f08b008aChris Lattner      for (std::vector<MatchableInfo*>::iterator
256122bc5c4184a497353e33195dd12541a4f08b008aChris Lattner             it = Info.Matchables.begin(), ie = Info.Matchables.end();
2562a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar           it != ie; ++it)
256320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar        (*it)->dump();
256420927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar    });
256520927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
256622bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  // Check for ambiguous matchables.
2567fa0d74d58e6c70ef032afb5f83680276dc4d7370Chris Lattner  DEBUG_WITH_TYPE("ambiguous_instrs", {
2568fa0d74d58e6c70ef032afb5f83680276dc4d7370Chris Lattner    unsigned NumAmbiguous = 0;
256922bc5c4184a497353e33195dd12541a4f08b008aChris Lattner    for (unsigned i = 0, e = Info.Matchables.size(); i != e; ++i) {
257087410368e1bd50408e787f6ece0e58d94c53c1e1Chris Lattner      for (unsigned j = i + 1; j != e; ++j) {
257122bc5c4184a497353e33195dd12541a4f08b008aChris Lattner        MatchableInfo &A = *Info.Matchables[i];
257222bc5c4184a497353e33195dd12541a4f08b008aChris Lattner        MatchableInfo &B = *Info.Matchables[j];
2573a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
25748caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach        if (A.couldMatchAmbiguouslyWith(B)) {
257522bc5c4184a497353e33195dd12541a4f08b008aChris Lattner          errs() << "warning: ambiguous matchables:\n";
2576fa0d74d58e6c70ef032afb5f83680276dc4d7370Chris Lattner          A.dump();
2577fa0d74d58e6c70ef032afb5f83680276dc4d7370Chris Lattner          errs() << "\nis incomparable with:\n";
2578fa0d74d58e6c70ef032afb5f83680276dc4d7370Chris Lattner          B.dump();
2579fa0d74d58e6c70ef032afb5f83680276dc4d7370Chris Lattner          errs() << "\n\n";
258087410368e1bd50408e787f6ece0e58d94c53c1e1Chris Lattner          ++NumAmbiguous;
258187410368e1bd50408e787f6ece0e58d94c53c1e1Chris Lattner        }
25822b54481a77696d47dc9220cd7a36155599750904Daniel Dunbar      }
2583606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar    }
258487410368e1bd50408e787f6ece0e58d94c53c1e1Chris Lattner    if (NumAmbiguous)
2585a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach      errs() << "warning: " << NumAmbiguous
258622bc5c4184a497353e33195dd12541a4f08b008aChris Lattner             << " ambiguous matchables!\n";
2587fa0d74d58e6c70ef032afb5f83680276dc4d7370Chris Lattner  });
2588606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar
2589e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  // Compute the information on the custom operand parsing.
25908caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  Info.buildOperandMatchInfo();
2591e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
25921095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar  // Write the output.
25931095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar
25940692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner  // Information for the class declaration.
25950692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner  OS << "\n#ifdef GET_ASSEMBLER_HEADER\n";
25960692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner  OS << "#undef GET_ASSEMBLER_HEADER\n";
259784cb033bf30b6f93ae2fbea71513970147e08dc2Jim Grosbach  OS << "  // This should be included into the middle of the declaration of\n";
259894b9550a32d189704a8eae55505edf62662c0534Evan Cheng  OS << "  // your subclasses implementation of MCTargetAsmParser.\n";
2599ebdeeab812beec0385b445f3d4c41a114e0d972fEvan Cheng  OS << "  unsigned ComputeAvailableFeatures(uint64_t FeatureBits) const;\n";
260090e11f8c95146c2d3718e9b3de71ee6628347b05Chad Rosier  OS << "  void convertToMCInst(unsigned Kind, MCInst &Inst, "
26015c228a945fe3e25a12d0f7e2e9b26b548d6f29f5Daniel Dunbar     << "unsigned Opcode,\n"
260287d910efc676d6d249dcfb054a9e3b8d97843bfcChad Rosier     << "                          const SmallVectorImpl<MCParsedAsmOperand*> "
26035c228a945fe3e25a12d0f7e2e9b26b548d6f29f5Daniel Dunbar     << "&Operands);\n";
26045d637d7e93c1f6058c16b41b8ac7dd36c61b4a5cChad Rosier  OS << "  unsigned getMCInstOperandNumImpl(unsigned Kind, MCInst &Inst,\n     "
2605038f3e31276f8cc86d91d0e4513e1a3ddb8509baChad Rosier     << "                              const "
2606038f3e31276f8cc86d91d0e4513e1a3ddb8509baChad Rosier     << "SmallVectorImpl<MCParsedAsmOperand*> &Operands,\n                     "
26072cc97def7434345e399e4f5f3f2001d6d7a93c6fChad Rosier     << "          unsigned OperandNum, unsigned &NumMCOperands);\n";
26081fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson  OS << "  bool MnemonicIsValid(StringRef Mnemonic);\n";
26093a86e1396230748f17a521915bc802939a787eacChad Rosier  OS << "  unsigned MatchInstructionImpl(\n"
26103a86e1396230748f17a521915bc802939a787eacChad Rosier     << "    const SmallVectorImpl<MCParsedAsmOperand*> &Operands,\n"
2611c4d2560a2010456f4eea0007eb71829d5668e7ddChad Rosier     << "    unsigned &Kind, MCInst &Inst, "
2612c4d2560a2010456f4eea0007eb71829d5668e7ddChad Rosier     << "unsigned &ErrorInfo,\n    unsigned VariantID = 0);\n";
2613e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
2614e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  if (Info.OperandMatchInfo.size()) {
2615f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach    OS << "\n  enum OperandMatchResultTy {\n";
2616f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach    OS << "    MatchOperand_Success,    // operand matched successfully\n";
2617f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach    OS << "    MatchOperand_NoMatch,    // operand did not match\n";
2618f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach    OS << "    MatchOperand_ParseFail   // operand matched but had errors\n";
2619f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach    OS << "  };\n";
2620f922c47143d247cbae14b294a0bada139bcd35f6Jim Grosbach    OS << "  OperandMatchResultTy MatchOperandParserImpl(\n";
2621e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OS << "    SmallVectorImpl<MCParsedAsmOperand*> &Operands,\n";
2622e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OS << "    StringRef Mnemonic);\n";
2623e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
26243d5d8f6b768619ed65f79606d5c981c1e056c7e8Jim Grosbach    OS << "  OperandMatchResultTy tryCustomParseOperand(\n";
2625e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OS << "    SmallVectorImpl<MCParsedAsmOperand*> &Operands,\n";
2626e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes    OS << "    unsigned MCK);\n\n";
2627e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  }
2628e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
26290692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner  OS << "#endif // GET_ASSEMBLER_HEADER_INFO\n\n";
26300692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner
26314dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  // Emit the operand match diagnostic enum names.
26324dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "\n#ifdef GET_OPERAND_DIAGNOSTIC_TYPES\n";
26334dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "#undef GET_OPERAND_DIAGNOSTIC_TYPES\n\n";
26344dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  emitOperandDiagnosticTypes(Info, OS);
26354dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "#endif // GET_OPERAND_DIAGNOSTIC_TYPES\n\n";
26364dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach
26374dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach
26380692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner  OS << "\n#ifdef GET_REGISTER_MATCHER\n";
26390692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner  OS << "#undef GET_REGISTER_MATCHER\n\n";
26400692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner
264154074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  // Emit the subtarget feature enumeration.
26428caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  emitSubtargetFeatureFlagEnumeration(Info, OS);
264354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
26441095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar  // Emit the function to match a register name to number.
264572e9b6aeb48d9496bac9db8b02c88a618b464588Akira Hatanaka  // This should be omitted for Mips target
264672e9b6aeb48d9496bac9db8b02c88a618b464588Akira Hatanaka  if (AsmParser->getValueAsBit("ShouldEmitMatchRegisterName"))
264772e9b6aeb48d9496bac9db8b02c88a618b464588Akira Hatanaka    emitMatchRegisterName(Target, AsmParser, OS);
26480692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner
26490692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner  OS << "#endif // GET_REGISTER_MATCHER\n\n";
2650a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
26518030e1a0df630ec6ed1cd5ec673f6472558a4dbeCraig Topper  OS << "\n#ifdef GET_SUBTARGET_FEATURE_NAME\n";
26528030e1a0df630ec6ed1cd5ec673f6472558a4dbeCraig Topper  OS << "#undef GET_SUBTARGET_FEATURE_NAME\n\n";
26531095f2ae261d231a63d329b0ebbf6eaf566ff429Daniel Dunbar
265414ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach  // Generate the helper function to get the names for subtarget features.
265514ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach  emitGetSubtargetFeatureName(Info, OS);
265614ce6fac242228dacc5c08040e544141a96880e5Jim Grosbach
26578030e1a0df630ec6ed1cd5ec673f6472558a4dbeCraig Topper  OS << "#endif // GET_SUBTARGET_FEATURE_NAME\n\n";
26588030e1a0df630ec6ed1cd5ec673f6472558a4dbeCraig Topper
26598030e1a0df630ec6ed1cd5ec673f6472558a4dbeCraig Topper  OS << "\n#ifdef GET_MATCHER_IMPLEMENTATION\n";
26608030e1a0df630ec6ed1cd5ec673f6472558a4dbeCraig Topper  OS << "#undef GET_MATCHER_IMPLEMENTATION\n\n";
26618030e1a0df630ec6ed1cd5ec673f6472558a4dbeCraig Topper
26627fd4489de11bdf06f6c852d42abafea013b76f28Chris Lattner  // Generate the function that remaps for mnemonic aliases.
26638caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  bool HasMnemonicAliases = emitMnemonicAliases(OS, Info);
2664828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2665606e8ad796f72824f5509e2657c44eca025d4bafDaniel Dunbar  // Generate the unified function to convert operands into an MCInst.
26668caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  emitConvertToMCInst(Target, ClassName, Info.Matchables, OS);
2667a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
2668a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // Emit the enumeration for classes which participate in matching.
26698caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  emitMatchClassEnumeration(Target, Info.Classes, OS);
267020927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
2671a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // Emit the routine to match token strings to their match class.
26728caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  emitMatchTokenString(Target, Info.Classes, OS);
267320927f26fcd7d0394bc60c58c61d879a83adac0dDaniel Dunbar
2674fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar  // Emit the subclass predicate routine.
26758caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  emitIsSubclass(Target, Info.Classes, OS);
2676fdb1f493ab6bcfb5603b9f497195492d92aceacbDaniel Dunbar
2677b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach  // Emit the routine to validate an operand against a match class.
26788caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  emitValidateOperandClass(Info, OS);
2679b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach
268054074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  // Emit the available features compute function.
26818caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach  emitComputeAvailableFeatures(Info, OS);
268254074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
2683a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
2684a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  size_t MaxNumOperands = 0;
268522bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  for (std::vector<MatchableInfo*>::const_iterator it =
268622bc5c4184a497353e33195dd12541a4f08b008aChris Lattner         Info.Matchables.begin(), ie = Info.Matchables.end();
2687a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar       it != ie; ++it)
26883116fef7b970eb7dbc2aa7daa9ea01e96c401bbfChris Lattner    MaxNumOperands = std::max(MaxNumOperands, (*it)->AsmOperands.size());
2689a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2690a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // Emit the static match table; unused classes get initalized to 0 which is
2691a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // guaranteed to be InvalidMatchClass.
2692a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  //
2693a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // FIXME: We can reduce the size of this table very easily. First, we change
2694a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // it so that store the kinds in separate bit-fields for each index, which
2695a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // only needs to be the max width used for classes at that index (we also need
2696a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // to reject based on this during classification). If we then make sure to
2697a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // order the match kinds appropriately (putting mnemonics last), then we
2698a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // should only end up using a few bits for each class, especially the ones
2699a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // following the mnemonic.
270096352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner  OS << "namespace {\n";
270196352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner  OS << "  struct MatchEntry {\n";
27027044cce1a30539e2ec779f49546d13d7db5a33dfJakob Stoklund Olesen  OS << "    static const char *const MnemonicTable;\n";
2703fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper  OS << "    uint32_t Mnemonic;\n";
2704a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "    uint16_t Opcode;\n";
2705af482cf301cf35eebb3a67a3540e16b102b92246Benjamin Kramer  OS << "    " << getMinimalTypeForRange(Info.Matchables.size())
2706af482cf301cf35eebb3a67a3540e16b102b92246Benjamin Kramer               << " ConvertFn;\n";
2707af482cf301cf35eebb3a67a3540e16b102b92246Benjamin Kramer  OS << "    " << getMinimalTypeForRange(1ULL << Info.SubtargetFeatures.size())
2708af482cf301cf35eebb3a67a3540e16b102b92246Benjamin Kramer               << " RequiredFeatures;\n";
2709fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper  OS << "    " << getMinimalTypeForRange(Info.Classes.size())
2710fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper               << " Classes[" << MaxNumOperands << "];\n";
2711a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "    uint8_t AsmVariantID;\n\n";
2712a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "    StringRef getMnemonic() const {\n";
2713a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "      return StringRef(MnemonicTable + Mnemonic + 1,\n";
2714a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "                       MnemonicTable[Mnemonic]);\n";
2715a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "    }\n";
27162b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "  };\n\n";
2717a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2718e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  OS << "  // Predicate for searching for an opcode.\n";
27192b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "  struct LessOpcode {\n";
27202b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "    bool operator()(const MatchEntry &LHS, StringRef RHS) {\n";
2721a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "      return LHS.getMnemonic() < RHS;\n";
27222b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "    }\n";
27232b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "    bool operator()(StringRef LHS, const MatchEntry &RHS) {\n";
2724a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "      return LHS < RHS.getMnemonic();\n";
27252b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "    }\n";
272632c685cb67ff7701f4970ef61765cae7a50f255cChris Lattner  OS << "    bool operator()(const MatchEntry &LHS, const MatchEntry &RHS) {\n";
2727a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "      return LHS.getMnemonic() < RHS.getMnemonic();\n";
272832c685cb67ff7701f4970ef61765cae7a50f255cChris Lattner  OS << "    }\n";
272996352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner  OS << "  };\n";
2730a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
273196352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner  OS << "} // end anonymous namespace.\n\n";
2732a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2733a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  StringToOffsetTable StringTable;
2734a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer
273596352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner  OS << "static const MatchEntry MatchTable["
273622bc5c4184a497353e33195dd12541a4f08b008aChris Lattner     << Info.Matchables.size() << "] = {\n";
2737a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
273822bc5c4184a497353e33195dd12541a4f08b008aChris Lattner  for (std::vector<MatchableInfo*>::const_iterator it =
273922bc5c4184a497353e33195dd12541a4f08b008aChris Lattner       Info.Matchables.begin(), ie = Info.Matchables.end();
2740a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar       it != ie; ++it) {
274122bc5c4184a497353e33195dd12541a4f08b008aChris Lattner    MatchableInfo &II = **it;
2742a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2743a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer    // Store a pascal-style length byte in the mnemonic.
2744a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer    std::string LenMnemonic = char(II.Mnemonic.size()) + II.Mnemonic.str();
2745fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper    OS << "  { " << StringTable.GetOrAddStringOffset(LenMnemonic, false)
2746fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper       << " /* " << II.Mnemonic << " */, "
2747fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper       << Target.getName() << "::"
2748a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer       << II.getResultInst()->TheDef->getName() << ", "
2749fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper       << II.ConversionFnKind << ", ";
2750a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
275154074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar    // Write the required features mask.
275254074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar    if (!II.RequiredFeatures.empty()) {
275354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar      for (unsigned i = 0, e = II.RequiredFeatures.size(); i != e; ++i) {
275454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar        if (i) OS << "|";
27550aed1e770149301af473ce05a83f73be01c06fe0Chris Lattner        OS << II.RequiredFeatures[i]->getEnumName();
275654074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar      }
275754074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar    } else
275854074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar      OS << "0";
2759fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper
2760fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper    OS << ", { ";
2761fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper    for (unsigned i = 0, e = II.AsmOperands.size(); i != e; ++i) {
2762fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper      MatchableInfo::AsmOperand &Op = II.AsmOperands[i];
2763fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper
2764fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper      if (i) OS << ", ";
2765fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper      OS << Op.Class->Name;
2766fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper    }
2767fab3f7ee6f2adca5037f597ce4f28c5acdcbd852Craig Topper    OS << " }, " << II.AsmVariantID;
276854074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar    OS << "},\n";
2769a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  }
2770a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
277196352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner  OS << "};\n\n";
2772a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar
27737044cce1a30539e2ec779f49546d13d7db5a33dfJakob Stoklund Olesen  OS << "const char *const MatchEntry::MnemonicTable =\n";
2774a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  StringTable.EmitString(OS);
2775a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << ";\n\n";
2776a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer
27771fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson  // A method to determine if a mnemonic is in the list.
27781fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson  OS << "bool " << Target.getName() << ClassName << "::\n"
27791fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson     << "MnemonicIsValid(StringRef Mnemonic) {\n";
27801fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson  OS << "  // Search the table.\n";
27811fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson  OS << "  std::pair<const MatchEntry*, const MatchEntry*> MnemonicRange =\n";
27821fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson  OS << "    std::equal_range(MatchTable, MatchTable+"
27831fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson     << Info.Matchables.size() << ", Mnemonic, LessOpcode());\n";
27841fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson  OS << "  return MnemonicRange.first != MnemonicRange.second;\n";
27851fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson  OS << "}\n\n";
27861fe3aa15e9cdc4981d7a125d87eaf257c1d75af1Bob Wilson
278796352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner  // Finally, build the match function.
278819cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach  OS << "unsigned "
278996352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner     << Target.getName() << ClassName << "::\n"
279096352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner     << "MatchInstructionImpl(const SmallVectorImpl<MCParsedAsmOperand*>"
279196352e5ceb9a2fee7b6e67384afd77493b5c6e5bChris Lattner     << " &Operands,\n";
2792c4d2560a2010456f4eea0007eb71829d5668e7ddChad Rosier  OS << "                     unsigned &Kind, MCInst &Inst, unsigned ";
2793c4d2560a2010456f4eea0007eb71829d5668e7ddChad Rosier  OS << "&ErrorInfo,\n                     unsigned VariantID) {\n";
279454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
27950bad086d6dd2ee2d4ab8269ace959f7fb9cb3b9dChad Rosier  OS << "  // Eliminate obvious mismatches.\n";
27960bad086d6dd2ee2d4ab8269ace959f7fb9cb3b9dChad Rosier  OS << "  if (Operands.size() > " << (MaxNumOperands+1) << ") {\n";
27970bad086d6dd2ee2d4ab8269ace959f7fb9cb3b9dChad Rosier  OS << "    ErrorInfo = " << (MaxNumOperands+1) << ";\n";
27980bad086d6dd2ee2d4ab8269ace959f7fb9cb3b9dChad Rosier  OS << "    return Match_InvalidOperand;\n";
27990bad086d6dd2ee2d4ab8269ace959f7fb9cb3b9dChad Rosier  OS << "  }\n\n";
28000bad086d6dd2ee2d4ab8269ace959f7fb9cb3b9dChad Rosier
280154074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  // Emit code to get the available features.
280254074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "  // Get the current feature set.\n";
280354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  OS << "  unsigned AvailableFeatures = getAvailableFeatures();\n\n";
280454074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
2805674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner  OS << "  // Get the instruction mnemonic, which is the first token.\n";
2806674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner  OS << "  StringRef Mnemonic = ((" << Target.getName()
2807674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner     << "Operand*)Operands[0])->getToken();\n\n";
2808674c1dcca21f5edf9f7380902971fc5471c0bd4aChris Lattner
28097fd4489de11bdf06f6c852d42abafea013b76f28Chris Lattner  if (HasMnemonicAliases) {
28107fd4489de11bdf06f6c852d42abafea013b76f28Chris Lattner    OS << "  // Process all MnemonicAliases to remap the mnemonic.\n";
281140bced0306e953c3d0fec19db4c4770b0e3c787eDevang Patel    OS << "  // FIXME : Add an entry in AsmParserVariant to check this.\n";
281240bced0306e953c3d0fec19db4c4770b0e3c787eDevang Patel    OS << "  if (!VariantID)\n";
281340bced0306e953c3d0fec19db4c4770b0e3c787eDevang Patel    OS << "    applyMnemonicAliases(Mnemonic, AvailableFeatures);\n\n";
28147fd4489de11bdf06f6c852d42abafea013b76f28Chris Lattner  }
2815828295bb301d6cd3683751c2da1c2dd22ec6423fBob Wilson
2816a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // Emit code to compute the class list for this operand vector.
28179bb9fa19a5e121b83866867ad1d8f7bf2618c1a0Chris Lattner  OS << "  // Some state to try to produce better error messages.\n";
281819cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach  OS << "  bool HadMatchOtherThanFeatures = false;\n";
2819578071a08734a4eb76484ba0a8d9f10b6e322184Jim Grosbach  OS << "  bool HadMatchOtherThanPredicate = false;\n";
282019cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach  OS << "  unsigned RetCode = Match_InvalidOperand;\n";
2821325bd661ff57787efddc6b302230f22e9c187655Jim Grosbach  OS << "  unsigned MissingFeatures = ~0U;\n";
282284cb033bf30b6f93ae2fbea71513970147e08dc2Jim Grosbach  OS << "  // Set ErrorInfo to the operand that mismatches if it is\n";
28239bb9fa19a5e121b83866867ad1d8f7bf2618c1a0Chris Lattner  OS << "  // wrong for all instances of the instruction.\n";
28249bb9fa19a5e121b83866867ad1d8f7bf2618c1a0Chris Lattner  OS << "  ErrorInfo = ~0U;\n";
28252b1f943444d1853204725c7b45b1e1032be39958Chris Lattner
2826a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  // Emit code to search the table.
2827a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "  // Search the table.\n";
28282b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "  std::pair<const MatchEntry*, const MatchEntry*> MnemonicRange =\n";
28292b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "    std::equal_range(MatchTable, MatchTable+"
283022bc5c4184a497353e33195dd12541a4f08b008aChris Lattner     << Info.Matchables.size() << ", Mnemonic, LessOpcode());\n\n";
2831a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2832a008e8ac73cb3cf2eaf006fbb1b62905c8626758Chris Lattner  OS << "  // Return a more specific error code if no mnemonics match.\n";
2833a008e8ac73cb3cf2eaf006fbb1b62905c8626758Chris Lattner  OS << "  if (MnemonicRange.first == MnemonicRange.second)\n";
2834a008e8ac73cb3cf2eaf006fbb1b62905c8626758Chris Lattner  OS << "    return Match_MnemonicFail;\n\n";
2835a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
28362b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "  for (const MatchEntry *it = MnemonicRange.first, "
283780db4e51d2a44bc623b5892bed2351406890b9aaChris Lattner     << "*ie = MnemonicRange.second;\n";
28382b1f943444d1853204725c7b45b1e1032be39958Chris Lattner  OS << "       it != ie; ++it) {\n";
283954074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar
2840e53ee3b112810068b8ca229aff211fc497069273Gabor Greif  OS << "    // equal_range guarantees that instruction mnemonic matches.\n";
2841a4c5ecfb1bc0101c1b42a4d81bb427482b52cecfBenjamin Kramer  OS << "    assert(Mnemonic == it->getMnemonic());\n";
2842a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
284354074b5f04f5affc77b5c6f3e5d8062b50384831Daniel Dunbar  // Emit check that the subclasses match.
284456315d319c104dc96187444e1e19711a1c801166Devang Patel  OS << "    if (VariantID != it->AsmVariantID) continue;\n";
2845ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "    bool OperandsValid = true;\n";
2846ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "    for (unsigned i = 0; i != " << MaxNumOperands << "; ++i) {\n";
2847b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach  OS << "      if (i + 1 >= Operands.size()) {\n";
2848b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach  OS << "        OperandsValid = (it->Classes[i] == " <<"InvalidMatchClass);\n";
2849087642f8638b08bf236b2cf8f0feb4df34c568f4Bill Wendling  OS << "        if (!OperandsValid) ErrorInfo = i + 1;\n";
2850b9d5af05fdc0867ed772c4bbfe3f3acc9fb3d628Jim Grosbach  OS << "        break;\n";
2851b9db0c50d84b06b4b567c29375b7db92b5dab077Jim Grosbach  OS << "      }\n";
28524dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "      unsigned Diag = validateOperandClass(Operands[i+1],\n";
28534dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS.indent(43);
28544dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "(MatchClassKind)it->Classes[i]);\n";
28554dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "      if (Diag == Match_Success)\n";
2856ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "        continue;\n";
28579bb9fa19a5e121b83866867ad1d8f7bf2618c1a0Chris Lattner  OS << "      // If this operand is broken for all of the instances of this\n";
28589bb9fa19a5e121b83866867ad1d8f7bf2618c1a0Chris Lattner  OS << "      // mnemonic, keep track of it so we can report loc info.\n";
28594dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "      // If we already had a match that only failed due to a\n";
28604dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "      // target predicate, that diagnostic is preferred.\n";
28614dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "      if (!HadMatchOtherThanPredicate &&\n";
28624dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "          (it == MnemonicRange.first || ErrorInfo <= i+1)) {\n";
2863ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "        ErrorInfo = i+1;\n";
2864ef970c10918dde1e84b8e14a28dc7cf0a93c7c95Jim Grosbach  OS << "        // InvalidOperand is the default. Prefer specificity.\n";
2865ef970c10918dde1e84b8e14a28dc7cf0a93c7c95Jim Grosbach  OS << "        if (Diag != Match_InvalidOperand)\n";
2866ef970c10918dde1e84b8e14a28dc7cf0a93c7c95Jim Grosbach  OS << "          RetCode = Diag;\n";
28674dbfdfba6c92b6224bf58364371569f5780844d3Jim Grosbach  OS << "      }\n";
2868ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "      // Otherwise, just reject this instance of the mnemonic.\n";
2869ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "      OperandsValid = false;\n";
2870ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "      break;\n";
2871ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "    }\n\n";
2872a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2873ce4a3355d96971e7edcbff3c1975f83e1ddcb8f2Chris Lattner  OS << "    if (!OperandsValid) continue;\n";
2874ec6789f4f97ca1701c163132b6e3388366463090Chris Lattner
2875ec6789f4f97ca1701c163132b6e3388366463090Chris Lattner  // Emit check that the required features are available.
2876ec6789f4f97ca1701c163132b6e3388366463090Chris Lattner  OS << "    if ((AvailableFeatures & it->RequiredFeatures) "
2877ec6789f4f97ca1701c163132b6e3388366463090Chris Lattner     << "!= it->RequiredFeatures) {\n";
2878ec6789f4f97ca1701c163132b6e3388366463090Chris Lattner  OS << "      HadMatchOtherThanFeatures = true;\n";
2879325bd661ff57787efddc6b302230f22e9c187655Jim Grosbach  OS << "      unsigned NewMissingFeatures = it->RequiredFeatures & "
2880325bd661ff57787efddc6b302230f22e9c187655Jim Grosbach        "~AvailableFeatures;\n";
28810bad086d6dd2ee2d4ab8269ace959f7fb9cb3b9dChad Rosier  OS << "      if (CountPopulation_32(NewMissingFeatures) <=\n"
28820bad086d6dd2ee2d4ab8269ace959f7fb9cb3b9dChad Rosier        "          CountPopulation_32(MissingFeatures))\n";
2883325bd661ff57787efddc6b302230f22e9c187655Jim Grosbach  OS << "        MissingFeatures = NewMissingFeatures;\n";
2884ec6789f4f97ca1701c163132b6e3388366463090Chris Lattner  OS << "      continue;\n";
2885ec6789f4f97ca1701c163132b6e3388366463090Chris Lattner  OS << "    }\n";
2886a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "\n";
2887b412915ff6229b3e2dffedcfb0f3fb7e85259841Daniel Dunbar  OS << "    // We have selected a definite instruction, convert the parsed\n"
2888b412915ff6229b3e2dffedcfb0f3fb7e85259841Daniel Dunbar     << "    // operands into the appropriate MCInst.\n";
288990e11f8c95146c2d3718e9b3de71ee6628347b05Chad Rosier  OS << "    convertToMCInst(it->ConvertFn, Inst, it->Opcode, Operands);\n";
2890b412915ff6229b3e2dffedcfb0f3fb7e85259841Daniel Dunbar  OS << "\n";
28918cc9c0c487128c4d675d45803a0711c3e43534afDaniel Dunbar
289219cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach  // Verify the instruction with the target-specific match predicate function.
289319cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach  OS << "    // We have a potential match. Check the target predicate to\n"
289419cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach     << "    // handle any context sensitive constraints.\n"
289519cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach     << "    unsigned MatchResult;\n"
289619cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach     << "    if ((MatchResult = checkTargetMatchPredicate(Inst)) !="
289719cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach     << " Match_Success) {\n"
289819cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach     << "      Inst.clear();\n"
289919cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach     << "      RetCode = MatchResult;\n"
2900578071a08734a4eb76484ba0a8d9f10b6e322184Jim Grosbach     << "      HadMatchOtherThanPredicate = true;\n"
290119cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach     << "      continue;\n"
290219cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach     << "    }\n\n";
290319cb7f491fbc7cb5d0bbd10e201f9d5093e6d4e5Jim Grosbach
29048cc9c0c487128c4d675d45803a0711c3e43534afDaniel Dunbar  // Call the post-processing function, if used.
29058cc9c0c487128c4d675d45803a0711c3e43534afDaniel Dunbar  std::string InsnCleanupFn =
29068cc9c0c487128c4d675d45803a0711c3e43534afDaniel Dunbar    AsmParser->getValueAsString("AsmParserInstCleanup");
29078cc9c0c487128c4d675d45803a0711c3e43534afDaniel Dunbar  if (!InsnCleanupFn.empty())
29088cc9c0c487128c4d675d45803a0711c3e43534afDaniel Dunbar    OS << "    " << InsnCleanupFn << "(Inst);\n";
29098cc9c0c487128c4d675d45803a0711c3e43534afDaniel Dunbar
29103a86e1396230748f17a521915bc802939a787eacChad Rosier  OS << "    Kind = it->ConvertFn;\n";
291179ed3f77e8b87615b80054ca6e4e3ba5e07445bdChris Lattner  OS << "    return Match_Success;\n";
2912a3741fa28b1a397ebfd623ef9d14e978df94ce47Daniel Dunbar  OS << "  }\n\n";
2913a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar
2914ec6789f4f97ca1701c163132b6e3388366463090Chris Lattner  OS << "  // Okay, we had no match.  Try to return a useful error code.\n";
29154c1d2baa7c3303302fec9a15ebc4021bd5d45002Chad Rosier  OS << "  if (HadMatchOtherThanPredicate || !HadMatchOtherThanFeatures)\n";
29164c1d2baa7c3303302fec9a15ebc4021bd5d45002Chad Rosier  OS << "    return RetCode;\n\n";
2917325bd661ff57787efddc6b302230f22e9c187655Jim Grosbach  OS << "  // Missing feature matches return which features were missing\n";
2918325bd661ff57787efddc6b302230f22e9c187655Jim Grosbach  OS << "  ErrorInfo = MissingFeatures;\n";
2919578071a08734a4eb76484ba0a8d9f10b6e322184Jim Grosbach  OS << "  return Match_MissingFeature;\n";
2920a027d222e18ea9028e9e12ae2f5cd566889b599aDaniel Dunbar  OS << "}\n\n";
2921a7c78220c4ce0c79801044774355b97b731bcedaJim Grosbach
2922e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes  if (Info.OperandMatchInfo.size())
29238caecdea56c830f3fc80ed67fff121c83de0e364Jim Grosbach    emitCustomOperandParsing(OS, Target, Info, ClassName);
2924e7a54520b3435c006c4f97c56fe970350981ea3cBruno Cardoso Lopes
29250692ee676f8cdad25ad09a868bf597af4115c9d9Chris Lattner  OS << "#endif // GET_MATCHER_IMPLEMENTATION\n\n";
2926d51ffcf303070b0a5aea7f365b85f6f969c384cbDaniel Dunbar}
29276f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen
29286f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesennamespace llvm {
29296f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen
29306f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesenvoid EmitAsmMatcher(RecordKeeper &RK, raw_ostream &OS) {
29316f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen  emitSourceFileHeader("Assembly Matcher Source Fragment", OS);
29326f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen  AsmMatcherEmitter(RK).run(OS);
29336f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen}
29346f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen
29356f36fa981a59461466e12e5056ba209d289b81b1Jakob Stoklund Olesen} // End llvm namespace
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