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Reid Spencerf89143c2004-06-29 23:31:01 +00001//===-- Reader.h - Interface To Bytecode Reading ----------------*- C++ -*-===//
Misha Brukman8a96c532005-04-21 21:44:41 +00002//
Reid Spencerf89143c2004-06-29 23:31:01 +00003// The LLVM Compiler Infrastructure
4//
Misha Brukman8a96c532005-04-21 21:44:41 +00005// This file was developed by Reid Spencer and is distributed under the
Reid Spencerf89143c2004-06-29 23:31:01 +00006// University of Illinois Open Source License. See LICENSE.TXT for details.
Misha Brukman8a96c532005-04-21 21:44:41 +00007//
Reid Spencerf89143c2004-06-29 23:31:01 +00008//===----------------------------------------------------------------------===//
9//
Misha Brukman8a96c532005-04-21 21:44:41 +000010// This header file defines the interface to the Bytecode Reader which is
Reid Spencerf89143c2004-06-29 23:31:01 +000011// responsible for correctly interpreting bytecode files (backwards compatible)
12// and materializing a module from the bytecode read.
13//
14//===----------------------------------------------------------------------===//
15
16#ifndef BYTECODE_PARSER_H
17#define BYTECODE_PARSER_H
18
19#include "llvm/Constants.h"
20#include "llvm/DerivedTypes.h"
21#include "llvm/GlobalValue.h"
22#include "llvm/Function.h"
23#include "llvm/ModuleProvider.h"
Reid Spencera86159c2004-07-04 11:04:56 +000024#include "llvm/Bytecode/Analyzer.h"
Reid Spencerf89143c2004-06-29 23:31:01 +000025#include <utility>
26#include <map>
Reid Spencer233fe722006-08-22 16:09:19 +000027#include <setjmp.h>
Reid Spencerf89143c2004-06-29 23:31:01 +000028
29namespace llvm {
30
31class BytecodeHandler; ///< Forward declare the handler interface
Reid Spencer78d033e2007-01-06 07:24:44 +000032class TypeSymbolTable; ///< Forward declare
Reid Spencerf89143c2004-06-29 23:31:01 +000033
34/// This class defines the interface for parsing a buffer of bytecode. The
35/// parser itself takes no action except to call the various functions of
36/// the handler interface. The parser's sole responsibility is the correct
Misha Brukman8a96c532005-04-21 21:44:41 +000037/// interpretation of the bytecode buffer. The handler is responsible for
38/// instantiating and keeping track of all values. As a convenience, the parser
Reid Spencerf89143c2004-06-29 23:31:01 +000039/// is responsible for materializing types and will pass them through the
40/// handler interface as necessary.
41/// @see BytecodeHandler
42/// @brief Bytecode Reader interface
43class BytecodeReader : public ModuleProvider {
44
45/// @name Constructors
46/// @{
47public:
48 /// @brief Default constructor. By default, no handler is used.
Misha Brukman8a96c532005-04-21 21:44:41 +000049 BytecodeReader(BytecodeHandler* h = 0) {
Reid Spencerd3539b82004-11-14 22:00:09 +000050 decompressedBlock = 0;
Reid Spencer17f52c52004-11-06 23:17:23 +000051 Handler = h;
Reid Spencerf89143c2004-06-29 23:31:01 +000052 }
53
Misha Brukman8a96c532005-04-21 21:44:41 +000054 ~BytecodeReader() {
55 freeState();
Chris Lattner19925222004-11-15 21:55:06 +000056 if (decompressedBlock) {
Reid Spencerd3539b82004-11-14 22:00:09 +000057 ::free(decompressedBlock);
Chris Lattner19925222004-11-15 21:55:06 +000058 decompressedBlock = 0;
59 }
Reid Spencer17f52c52004-11-06 23:17:23 +000060 }
Reid Spencerf89143c2004-06-29 23:31:01 +000061
62/// @}
63/// @name Types
64/// @{
65public:
Reid Spencerad89bd62004-07-25 18:07:36 +000066
Reid Spencerf89143c2004-06-29 23:31:01 +000067 /// @brief A convenience type for the buffer pointer
68 typedef const unsigned char* BufPtr;
69
70 /// @brief The type used for a vector of potentially abstract types
71 typedef std::vector<PATypeHolder> TypeListTy;
72
73 /// This type provides a vector of Value* via the User class for
74 /// storage of Values that have been constructed when reading the
75 /// bytecode. Because of forward referencing, constant replacement
76 /// can occur so we ensure that our list of Value* is updated
77 /// properly through those transitions. This ensures that the
78 /// correct Value* is in our list when it comes time to associate
79 /// constants with global variables at the end of reading the
80 /// globals section.
81 /// @brief A list of values as a User of those Values.
Chris Lattnercad28bd2005-01-29 00:36:19 +000082 class ValueList : public User {
83 std::vector<Use> Uses;
84 public:
Chris Lattnerfea49302005-08-16 21:59:52 +000085 ValueList() : User(Type::VoidTy, Value::ArgumentVal, 0, 0) {}
Reid Spencerf89143c2004-06-29 23:31:01 +000086
87 // vector compatibility methods
88 unsigned size() const { return getNumOperands(); }
Chris Lattnercad28bd2005-01-29 00:36:19 +000089 void push_back(Value *V) {
90 Uses.push_back(Use(V, this));
91 OperandList = &Uses[0];
92 ++NumOperands;
93 }
94 Value *back() const { return Uses.back(); }
95 void pop_back() { Uses.pop_back(); --NumOperands; }
96 bool empty() const { return NumOperands == 0; }
Reid Spencerf89143c2004-06-29 23:31:01 +000097 virtual void print(std::ostream& os) const {
Chris Lattnercad28bd2005-01-29 00:36:19 +000098 for (unsigned i = 0; i < size(); ++i) {
Reid Spencera86159c2004-07-04 11:04:56 +000099 os << i << " ";
100 getOperand(i)->print(os);
101 os << "\n";
Reid Spencerf89143c2004-06-29 23:31:01 +0000102 }
103 }
104 };
105
106 /// @brief A 2 dimensional table of values
107 typedef std::vector<ValueList*> ValueTable;
108
Misha Brukman8a96c532005-04-21 21:44:41 +0000109 /// This map is needed so that forward references to constants can be looked
Reid Spencerf89143c2004-06-29 23:31:01 +0000110 /// up by Type and slot number when resolving those references.
111 /// @brief A mapping of a Type/slot pair to a Constant*.
Chris Lattner389bd042004-12-09 06:19:44 +0000112 typedef std::map<std::pair<unsigned,unsigned>, Constant*> ConstantRefsType;
Reid Spencerf89143c2004-06-29 23:31:01 +0000113
114 /// For lazy read-in of functions, we need to save the location in the
115 /// data stream where the function is located. This structure provides that
116 /// information. Lazy read-in is used mostly by the JIT which only wants to
Misha Brukman8a96c532005-04-21 21:44:41 +0000117 /// resolve functions as it needs them.
Reid Spencerf89143c2004-06-29 23:31:01 +0000118 /// @brief Keeps pointers to function contents for later use.
119 struct LazyFunctionInfo {
120 const unsigned char *Buf, *EndBuf;
121 LazyFunctionInfo(const unsigned char *B = 0, const unsigned char *EB = 0)
122 : Buf(B), EndBuf(EB) {}
123 };
124
125 /// @brief A mapping of functions to their LazyFunctionInfo for lazy reading.
126 typedef std::map<Function*, LazyFunctionInfo> LazyFunctionMap;
127
128 /// @brief A list of global variables and the slot number that initializes
129 /// them.
130 typedef std::vector<std::pair<GlobalVariable*, unsigned> > GlobalInitsList;
131
132 /// This type maps a typeslot/valueslot pair to the corresponding Value*.
133 /// It is used for dealing with forward references as values are read in.
134 /// @brief A map for dealing with forward references of values.
135 typedef std::map<std::pair<unsigned,unsigned>,Value*> ForwardReferenceMap;
136
137/// @}
138/// @name Methods
139/// @{
140public:
Reid Spencer233fe722006-08-22 16:09:19 +0000141 /// @returns true if an error occurred
Reid Spencerf89143c2004-06-29 23:31:01 +0000142 /// @brief Main interface to parsing a bytecode buffer.
Reid Spencer233fe722006-08-22 16:09:19 +0000143 bool ParseBytecode(
Anton Korobeynikov7d515442006-09-01 20:35:17 +0000144 volatile BufPtr Buf, ///< Beginning of the bytecode buffer
Reid Spencer5c15fe52004-07-05 00:57:50 +0000145 unsigned Length, ///< Length of the bytecode buffer
Reid Spencer233fe722006-08-22 16:09:19 +0000146 const std::string &ModuleID, ///< An identifier for the module constructed.
147 std::string* ErrMsg = 0 ///< Optional place for error message
Reid Spencerf89143c2004-06-29 23:31:01 +0000148 );
149
Reid Spencerf89143c2004-06-29 23:31:01 +0000150 /// @brief Parse all function bodies
Reid Spencer99655e12006-08-25 19:54:53 +0000151 bool ParseAllFunctionBodies(std::string* ErrMsg);
Reid Spencerf89143c2004-06-29 23:31:01 +0000152
Reid Spencerf89143c2004-06-29 23:31:01 +0000153 /// @brief Parse the next function of specific type
Reid Spencer99655e12006-08-25 19:54:53 +0000154 bool ParseFunction(Function* Func, std::string* ErrMsg) ;
Reid Spencerf89143c2004-06-29 23:31:01 +0000155
156 /// This method is abstract in the parent ModuleProvider class. Its
157 /// implementation is identical to the ParseFunction method.
158 /// @see ParseFunction
159 /// @brief Make a specific function materialize.
Reid Spencer99655e12006-08-25 19:54:53 +0000160 virtual bool materializeFunction(Function *F, std::string *ErrMsg = 0) {
Reid Spencerf89143c2004-06-29 23:31:01 +0000161 LazyFunctionMap::iterator Fi = LazyFunctionLoadMap.find(F);
Reid Spencer99655e12006-08-25 19:54:53 +0000162 if (Fi == LazyFunctionLoadMap.end())
163 return false;
164 if (ParseFunction(F,ErrMsg))
Chris Lattner0300f3e2006-07-06 21:35:01 +0000165 return true;
Chris Lattner0300f3e2006-07-06 21:35:01 +0000166 return false;
Reid Spencerf89143c2004-06-29 23:31:01 +0000167 }
168
169 /// This method is abstract in the parent ModuleProvider class. Its
Misha Brukman8a96c532005-04-21 21:44:41 +0000170 /// implementation is identical to ParseAllFunctionBodies.
Reid Spencerf89143c2004-06-29 23:31:01 +0000171 /// @see ParseAllFunctionBodies
172 /// @brief Make the whole module materialize
Reid Spencer99655e12006-08-25 19:54:53 +0000173 virtual Module* materializeModule(std::string *ErrMsg = 0) {
174 if (ParseAllFunctionBodies(ErrMsg))
Chris Lattner0300f3e2006-07-06 21:35:01 +0000175 return 0;
Reid Spencerf89143c2004-06-29 23:31:01 +0000176 return TheModule;
177 }
178
179 /// This method is provided by the parent ModuleProvde class and overriden
180 /// here. It simply releases the module from its provided and frees up our
181 /// state.
182 /// @brief Release our hold on the generated module
Chris Lattner94aa7f32006-07-07 06:06:06 +0000183 Module* releaseModule(std::string *ErrInfo = 0) {
Reid Spencerf89143c2004-06-29 23:31:01 +0000184 // Since we're losing control of this Module, we must hand it back complete
Reid Spencer49521432006-11-11 11:54:25 +0000185 Module *M = ModuleProvider::releaseModule(ErrInfo);
Reid Spencerf89143c2004-06-29 23:31:01 +0000186 freeState();
187 return M;
188 }
189
190/// @}
191/// @name Parsing Units For Subclasses
192/// @{
193protected:
194 /// @brief Parse whole module scope
195 void ParseModule();
196
197 /// @brief Parse the version information block
198 void ParseVersionInfo();
199
200 /// @brief Parse the ModuleGlobalInfo block
201 void ParseModuleGlobalInfo();
202
Reid Spencer78d033e2007-01-06 07:24:44 +0000203 /// @brief Parse a value symbol table
204 void ParseTypeSymbolTable(TypeSymbolTable *ST);
205
206 /// @brief Parse a value symbol table
207 void ParseValueSymbolTable(Function* Func, SymbolTable *ST);
Reid Spencerf89143c2004-06-29 23:31:01 +0000208
Reid Spencerf89143c2004-06-29 23:31:01 +0000209 /// @brief Parse functions lazily.
210 void ParseFunctionLazily();
211
212 /// @brief Parse a function body
213 void ParseFunctionBody(Function* Func);
214
Reid Spencera86159c2004-07-04 11:04:56 +0000215 /// @brief Parse the type list portion of a compaction table
Chris Lattner45b5dd22004-08-03 23:41:28 +0000216 void ParseCompactionTypes(unsigned NumEntries);
Reid Spencera86159c2004-07-04 11:04:56 +0000217
Reid Spencerf89143c2004-06-29 23:31:01 +0000218 /// @brief Parse a compaction table
219 void ParseCompactionTable();
220
221 /// @brief Parse global types
222 void ParseGlobalTypes();
223
Reid Spencerf89143c2004-06-29 23:31:01 +0000224 /// @brief Parse a basic block (for LLVM 1.0 basic block blocks)
225 BasicBlock* ParseBasicBlock(unsigned BlockNo);
226
Reid Spencerf89143c2004-06-29 23:31:01 +0000227 /// @brief parse an instruction list (for post LLVM 1.0 instruction lists
228 /// with blocks differentiated by terminating instructions.
229 unsigned ParseInstructionList(
230 Function* F ///< The function into which BBs will be inserted
231 );
Misha Brukman8a96c532005-04-21 21:44:41 +0000232
Reid Spencerf89143c2004-06-29 23:31:01 +0000233 /// @brief Parse a single instruction.
234 void ParseInstruction(
235 std::vector<unsigned>& Args, ///< The arguments to be filled in
236 BasicBlock* BB ///< The BB the instruction goes in
237 );
238
239 /// @brief Parse the whole constant pool
Misha Brukman8a96c532005-04-21 21:44:41 +0000240 void ParseConstantPool(ValueTable& Values, TypeListTy& Types,
Reid Spencera86159c2004-07-04 11:04:56 +0000241 bool isFunction);
Reid Spencerf89143c2004-06-29 23:31:01 +0000242
Chris Lattner3bc5a602006-01-25 23:08:15 +0000243 /// @brief Parse a single constant pool value
244 Value *ParseConstantPoolValue(unsigned TypeID);
Reid Spencerf89143c2004-06-29 23:31:01 +0000245
246 /// @brief Parse a block of types constants
Reid Spencer66906512004-07-11 17:24:05 +0000247 void ParseTypes(TypeListTy &Tab, unsigned NumEntries);
Reid Spencerf89143c2004-06-29 23:31:01 +0000248
249 /// @brief Parse a single type constant
Reid Spencer66906512004-07-11 17:24:05 +0000250 const Type *ParseType();
Reid Spencerf89143c2004-06-29 23:31:01 +0000251
252 /// @brief Parse a string constants block
253 void ParseStringConstants(unsigned NumEntries, ValueTable &Tab);
254
Chris Lattnerf0edc6c2006-10-12 18:32:30 +0000255 /// @brief Release our memory.
256 void freeState() {
257 freeTable(FunctionValues);
258 freeTable(ModuleValues);
259 }
260
Reid Spencerf89143c2004-06-29 23:31:01 +0000261/// @}
262/// @name Data
263/// @{
264private:
Reid Spencer233fe722006-08-22 16:09:19 +0000265 std::string ErrorMsg; ///< A place to hold an error message through longjmp
266 jmp_buf context; ///< Where to return to if an error occurs.
Misha Brukman8a96c532005-04-21 21:44:41 +0000267 char* decompressedBlock; ///< Result of decompression
Reid Spencerf89143c2004-06-29 23:31:01 +0000268 BufPtr MemStart; ///< Start of the memory buffer
269 BufPtr MemEnd; ///< End of the memory buffer
270 BufPtr BlockStart; ///< Start of current block being parsed
271 BufPtr BlockEnd; ///< End of current block being parsed
272 BufPtr At; ///< Where we're currently parsing at
273
Reid Spencera86159c2004-07-04 11:04:56 +0000274 /// Information about the module, extracted from the bytecode revision number.
Chris Lattner45b5dd22004-08-03 23:41:28 +0000275 ///
Reid Spencerf89143c2004-06-29 23:31:01 +0000276 unsigned char RevisionNum; // The rev # itself
277
Chris Lattner45b5dd22004-08-03 23:41:28 +0000278 /// CompactionTypes - If a compaction table is active in the current function,
279 /// this is the mapping that it contains. We keep track of what resolved type
280 /// it is as well as what global type entry it is.
281 std::vector<std::pair<const Type*, unsigned> > CompactionTypes;
Reid Spencerf89143c2004-06-29 23:31:01 +0000282
283 /// @brief If a compaction table is active in the current function,
284 /// this is the mapping that it contains.
285 std::vector<std::vector<Value*> > CompactionValues;
286
287 /// @brief This vector is used to deal with forward references to types in
288 /// a module.
289 TypeListTy ModuleTypes;
Chris Lattnereebac5f2005-10-03 21:26:53 +0000290
291 /// @brief This is an inverse mapping of ModuleTypes from the type to an
292 /// index. Because refining types causes the index of this map to be
293 /// invalidated, any time we refine a type, we clear this cache and recompute
294 /// it next time we need it. These entries are ordered by the pointer value.
295 std::vector<std::pair<const Type*, unsigned> > ModuleTypeIDCache;
Reid Spencerf89143c2004-06-29 23:31:01 +0000296
297 /// @brief This vector is used to deal with forward references to types in
298 /// a function.
299 TypeListTy FunctionTypes;
300
301 /// When the ModuleGlobalInfo section is read, we create a Function object
302 /// for each function in the module. When the function is loaded, after the
303 /// module global info is read, this Function is populated. Until then, the
304 /// functions in this vector just hold the function signature.
305 std::vector<Function*> FunctionSignatureList;
306
307 /// @brief This is the table of values belonging to the current function
308 ValueTable FunctionValues;
309
310 /// @brief This is the table of values belonging to the module (global)
311 ValueTable ModuleValues;
312
313 /// @brief This keeps track of function level forward references.
314 ForwardReferenceMap ForwardReferences;
315
316 /// @brief The basic blocks we've parsed, while parsing a function.
317 std::vector<BasicBlock*> ParsedBasicBlocks;
318
Chris Lattner1c765b02004-10-14 01:49:34 +0000319 /// This maintains a mapping between <Type, Slot #>'s and forward references
320 /// to constants. Such values may be referenced before they are defined, and
321 /// if so, the temporary object that they represent is held here. @brief
322 /// Temporary place for forward references to constants.
Reid Spencerf89143c2004-06-29 23:31:01 +0000323 ConstantRefsType ConstantFwdRefs;
324
325 /// Constant values are read in after global variables. Because of this, we
326 /// must defer setting the initializers on global variables until after module
Chris Lattner1c765b02004-10-14 01:49:34 +0000327 /// level constants have been read. In the mean time, this list keeps track
328 /// of what we must do.
Reid Spencerf89143c2004-06-29 23:31:01 +0000329 GlobalInitsList GlobalInits;
330
331 // For lazy reading-in of functions, we need to save away several pieces of
332 // information about each function: its begin and end pointer in the buffer
333 // and its FunctionSlot.
334 LazyFunctionMap LazyFunctionLoadMap;
335
Misha Brukman8a96c532005-04-21 21:44:41 +0000336 /// This stores the parser's handler which is used for handling tasks other
337 /// just than reading bytecode into the IR. If this is non-null, calls on
338 /// the (polymorphic) BytecodeHandler interface (see llvm/Bytecode/Handler.h)
339 /// will be made to report the logical structure of the bytecode file. What
340 /// the handler does with the events it receives is completely orthogonal to
Reid Spencerf89143c2004-06-29 23:31:01 +0000341 /// the business of parsing the bytecode and building the IR. This is used,
342 /// for example, by the llvm-abcd tool for analysis of byte code.
343 /// @brief Handler for parsing events.
344 BytecodeHandler* Handler;
345
Reid Spencer3e595462006-01-19 06:57:58 +0000346
Reid Spencerf89143c2004-06-29 23:31:01 +0000347/// @}
348/// @name Implementation Details
349/// @{
350private:
351 /// @brief Determines if this module has a function or not.
352 bool hasFunctions() { return ! FunctionSignatureList.empty(); }
353
354 /// @brief Determines if the type id has an implicit null value.
355 bool hasImplicitNull(unsigned TyID );
356
357 /// @brief Converts a type slot number to its Type*
358 const Type *getType(unsigned ID);
359
Reid Spencerd798a512006-11-14 04:47:22 +0000360 /// @brief Read in a type id and turn it into a Type*
361 inline const Type* readType();
Reid Spencera86159c2004-07-04 11:04:56 +0000362
Reid Spencerf89143c2004-06-29 23:31:01 +0000363 /// @brief Converts a Type* to its type slot number
364 unsigned getTypeSlot(const Type *Ty);
365
366 /// @brief Converts a normal type slot number to a compacted type slot num.
367 unsigned getCompactionTypeSlot(unsigned type);
368
Reid Spencera86159c2004-07-04 11:04:56 +0000369 /// @brief Gets the global type corresponding to the TypeId
370 const Type *getGlobalTableType(unsigned TypeId);
Reid Spencerf89143c2004-06-29 23:31:01 +0000371
372 /// This is just like getTypeSlot, but when a compaction table is in use,
Misha Brukman8a96c532005-04-21 21:44:41 +0000373 /// it is ignored.
Reid Spencerf89143c2004-06-29 23:31:01 +0000374 unsigned getGlobalTableTypeSlot(const Type *Ty);
Misha Brukman8a96c532005-04-21 21:44:41 +0000375
Reid Spencera86159c2004-07-04 11:04:56 +0000376 /// @brief Get a value from its typeid and slot number
Reid Spencerf89143c2004-06-29 23:31:01 +0000377 Value* getValue(unsigned TypeID, unsigned num, bool Create = true);
378
Chris Lattner2c6c14d2004-08-04 00:19:23 +0000379 /// @brief Get a value from its type and slot number, ignoring compaction
380 /// tables.
381 Value *getGlobalTableValue(unsigned TyID, unsigned SlotNo);
Reid Spencerf89143c2004-06-29 23:31:01 +0000382
Reid Spencerf89143c2004-06-29 23:31:01 +0000383 /// @brief Get a basic block for current function
384 BasicBlock *getBasicBlock(unsigned ID);
385
Reid Spencera86159c2004-07-04 11:04:56 +0000386 /// @brief Get a constant value from its typeid and value slot.
Reid Spencerf89143c2004-06-29 23:31:01 +0000387 Constant* getConstantValue(unsigned typeSlot, unsigned valSlot);
388
389 /// @brief Convenience function for getting a constant value when
390 /// the Type has already been resolved.
391 Constant* getConstantValue(const Type *Ty, unsigned valSlot) {
392 return getConstantValue(getTypeSlot(Ty), valSlot);
393 }
394
Reid Spencerf89143c2004-06-29 23:31:01 +0000395 /// @brief Insert a newly created value
396 unsigned insertValue(Value *V, unsigned Type, ValueTable &Table);
397
398 /// @brief Insert the arguments of a function.
399 void insertArguments(Function* F );
400
Misha Brukman8a96c532005-04-21 21:44:41 +0000401 /// @brief Resolve all references to the placeholder (if any) for the
Reid Spencerf89143c2004-06-29 23:31:01 +0000402 /// given constant.
Chris Lattner389bd042004-12-09 06:19:44 +0000403 void ResolveReferencesToConstant(Constant *C, unsigned Typ, unsigned Slot);
Reid Spencerf89143c2004-06-29 23:31:01 +0000404
Reid Spencerf89143c2004-06-29 23:31:01 +0000405 /// @brief Free a table, making sure to free the ValueList in the table.
406 void freeTable(ValueTable &Tab) {
407 while (!Tab.empty()) {
408 delete Tab.back();
409 Tab.pop_back();
410 }
411 }
412
Reid Spencer233fe722006-08-22 16:09:19 +0000413 inline void error(const std::string& errmsg);
Reid Spencer24399722004-07-09 22:21:33 +0000414
Reid Spencerf89143c2004-06-29 23:31:01 +0000415 BytecodeReader(const BytecodeReader &); // DO NOT IMPLEMENT
416 void operator=(const BytecodeReader &); // DO NOT IMPLEMENT
417
418/// @}
419/// @name Reader Primitives
420/// @{
421private:
422
423 /// @brief Is there more to parse in the current block?
424 inline bool moreInBlock();
425
426 /// @brief Have we read past the end of the block
427 inline void checkPastBlockEnd(const char * block_name);
428
429 /// @brief Align to 32 bits
430 inline void align32();
431
432 /// @brief Read an unsigned integer as 32-bits
433 inline unsigned read_uint();
434
435 /// @brief Read an unsigned integer with variable bit rate encoding
436 inline unsigned read_vbr_uint();
437
Reid Spencerad89bd62004-07-25 18:07:36 +0000438 /// @brief Read an unsigned integer of no more than 24-bits with variable
439 /// bit rate encoding.
440 inline unsigned read_vbr_uint24();
441
Reid Spencerf89143c2004-06-29 23:31:01 +0000442 /// @brief Read an unsigned 64-bit integer with variable bit rate encoding.
443 inline uint64_t read_vbr_uint64();
444
445 /// @brief Read a signed 64-bit integer with variable bit rate encoding.
446 inline int64_t read_vbr_int64();
447
448 /// @brief Read a string
449 inline std::string read_str();
450
Reid Spencer66906512004-07-11 17:24:05 +0000451 /// @brief Read a float value
452 inline void read_float(float& FloatVal);
453
454 /// @brief Read a double value
455 inline void read_double(double& DoubleVal);
456
Reid Spencerf89143c2004-06-29 23:31:01 +0000457 /// @brief Read an arbitrary data chunk of fixed length
458 inline void read_data(void *Ptr, void *End);
459
Reid Spencera86159c2004-07-04 11:04:56 +0000460 /// @brief Read a bytecode block header
Reid Spencerf89143c2004-06-29 23:31:01 +0000461 inline void read_block(unsigned &Type, unsigned &Size);
Reid Spencerf89143c2004-06-29 23:31:01 +0000462/// @}
463};
464
Reid Spencera86159c2004-07-04 11:04:56 +0000465/// @brief A function for creating a BytecodeAnalzer as a handler
466/// for the Bytecode reader.
Misha Brukman8a96c532005-04-21 21:44:41 +0000467BytecodeHandler* createBytecodeAnalyzerHandler(BytecodeAnalysis& bca,
Reid Spencer572c2562004-08-21 20:50:49 +0000468 std::ostream* output );
Reid Spencera86159c2004-07-04 11:04:56 +0000469
470
Reid Spencerf89143c2004-06-29 23:31:01 +0000471} // End llvm namespace
472
473// vim: sw=2
474#endif