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Shih-wei Liao77ed6142010-04-07 12:21:42 -07001/*
Zonr Chang932648d2010-10-13 22:23:56 +08002 * Copyright 2010, The Android Open Source Project
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003 *
Zonr Chang932648d2010-10-13 22:23:56 +08004 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
Shih-wei Liao77ed6142010-04-07 12:21:42 -070015 */
16
Zonr Chang932648d2010-10-13 22:23:56 +080017// Bitcode compiler (bcc) for Android:
18// This is an eager-compilation JIT running on Android.
19
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -080020//#define BCC_CODE_ADDR 0x7e00000
21
Shih-wei Liao77ed6142010-04-07 12:21:42 -070022#define LOG_TAG "bcc"
23#include <cutils/log.h>
24
25#include <ctype.h>
26#include <errno.h>
27#include <limits.h>
28#include <stdarg.h>
29#include <stdint.h>
30#include <stdio.h>
31#include <stdlib.h>
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -080032#include <stddef.h>
Shih-wei Liao77ed6142010-04-07 12:21:42 -070033#include <string.h>
34#include <unistd.h>
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -070035#include <sys/mman.h>
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -080036#include <sys/file.h>
37#include <sys/stat.h>
38#include <sys/types.h>
Shih-wei Liao77ed6142010-04-07 12:21:42 -070039
40#include <cutils/hashmap.h>
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -080041#include <utils/StopWatch.h>
Shih-wei Liao77ed6142010-04-07 12:21:42 -070042
Shih-wei Liao77ed6142010-04-07 12:21:42 -070043#if defined(__arm__)
Zonr Chang932648d2010-10-13 22:23:56 +080044# define DEFAULT_ARM_CODEGEN
45# define PROVIDE_ARM_CODEGEN
Shih-wei Liao77ed6142010-04-07 12:21:42 -070046#elif defined(__i386__)
Zonr Chang932648d2010-10-13 22:23:56 +080047# define DEFAULT_X86_CODEGEN
48# define PROVIDE_X86_CODEGEN
Shih-wei Liao77ed6142010-04-07 12:21:42 -070049#elif defined(__x86_64__)
Zonr Chang932648d2010-10-13 22:23:56 +080050# define DEFAULT_X64_CODEGEN
51# define PROVIDE_X64_CODEGEN
Shih-wei Liao77ed6142010-04-07 12:21:42 -070052#endif
53
54#if defined(FORCE_ARM_CODEGEN)
Zonr Chang932648d2010-10-13 22:23:56 +080055# define DEFAULT_ARM_CODEGEN
56# undef DEFAULT_X86_CODEGEN
57# undef DEFAULT_X64_CODEGEN
58# define PROVIDE_ARM_CODEGEN
59# undef PROVIDE_X86_CODEGEN
60# undef PROVIDE_X64_CODEGEN
Shih-wei Liao77ed6142010-04-07 12:21:42 -070061#elif defined(FORCE_X86_CODEGEN)
Zonr Chang932648d2010-10-13 22:23:56 +080062# undef DEFAULT_ARM_CODEGEN
63# define DEFAULT_X86_CODEGEN
64# undef DEFAULT_X64_CODEGEN
65# undef PROVIDE_ARM_CODEGEN
66# define PROVIDE_X86_CODEGEN
67# undef PROVIDE_X64_CODEGEN
Shih-wei Liao77ed6142010-04-07 12:21:42 -070068#elif defined(FORCE_X64_CODEGEN)
Zonr Chang932648d2010-10-13 22:23:56 +080069# undef DEFAULT_ARM_CODEGEN
70# undef DEFAULT_X86_CODEGEN
71# define DEFAULT_X64_CODEGEN
72# undef PROVIDE_ARM_CODEGEN
73# undef PROVIDE_X86_CODEGEN
74# define PROVIDE_X64_CODEGEN
Shih-wei Liao77ed6142010-04-07 12:21:42 -070075#endif
76
77#if defined(DEFAULT_ARM_CODEGEN)
Zonr Chang932648d2010-10-13 22:23:56 +080078# define TARGET_TRIPLE_STRING "armv7-none-linux-gnueabi"
Shih-wei Liao77ed6142010-04-07 12:21:42 -070079#elif defined(DEFAULT_X86_CODEGEN)
Zonr Chang932648d2010-10-13 22:23:56 +080080# define TARGET_TRIPLE_STRING "i686-unknown-linux"
Shih-wei Liao77ed6142010-04-07 12:21:42 -070081#elif defined(DEFAULT_X64_CODEGEN)
Zonr Chang932648d2010-10-13 22:23:56 +080082# define TARGET_TRIPLE_STRING "x86_64-unknown-linux"
Shih-wei Liao77ed6142010-04-07 12:21:42 -070083#endif
84
85#if (defined(__VFP_FP__) && !defined(__SOFTFP__))
Zonr Chang932648d2010-10-13 22:23:56 +080086# define ARM_USE_VFP
Shih-wei Liao77ed6142010-04-07 12:21:42 -070087#endif
88
89#include <bcc/bcc.h>
90#include "bcc_runtime.h"
91
Zonr Chang932648d2010-10-13 22:23:56 +080092#define LOG_API(...) do {} while (0)
Shih-wei Liao77ed6142010-04-07 12:21:42 -070093// #define LOG_API(...) fprintf (stderr, __VA_ARGS__)
94
Zonr Chang932648d2010-10-13 22:23:56 +080095#define LOG_STACK(...) do {} while (0)
Shih-wei Liao77ed6142010-04-07 12:21:42 -070096// #define LOG_STACK(...) fprintf (stderr, __VA_ARGS__)
97
98// #define PROVIDE_TRACE_CODEGEN
99
100#if defined(USE_DISASSEMBLER)
Zonr Chang932648d2010-10-13 22:23:56 +0800101# include "llvm/MC/MCInst.h"
102# include "llvm/MC/MCAsmInfo.h"
103# include "llvm/MC/MCInstPrinter.h"
104# include "llvm/MC/MCDisassembler.h"
Shih-wei Liao3cf39d12010-04-29 19:30:51 -0700105// If you want the disassemble results written to file, define this:
106# define USE_DISASSEMBLER_FILE
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700107#endif
108
109#include <set>
110#include <map>
111#include <list>
112#include <cmath>
113#include <string>
114#include <cstring>
Zonr Chang932648d2010-10-13 22:23:56 +0800115#include <algorithm> // for std::reverse
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700116
Zonr Chang932648d2010-10-13 22:23:56 +0800117// VMCore
118#include "llvm/Use.h"
119#include "llvm/User.h"
Zonr Chang97f5e612010-10-22 20:38:26 +0800120#include "llvm/Linker.h"
Zonr Chang932648d2010-10-13 22:23:56 +0800121#include "llvm/Module.h"
122#include "llvm/Function.h"
123#include "llvm/Constant.h"
124#include "llvm/Constants.h"
125#include "llvm/Instruction.h"
126#include "llvm/PassManager.h"
127#include "llvm/LLVMContext.h"
128#include "llvm/GlobalValue.h"
129#include "llvm/Instructions.h"
130#include "llvm/OperandTraits.h"
131#include "llvm/TypeSymbolTable.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700132
133// System
Zonr Chang932648d2010-10-13 22:23:56 +0800134#include "llvm/System/Host.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700135
136// ADT
Zonr Chang932648d2010-10-13 22:23:56 +0800137#include "llvm/ADT/APInt.h"
138#include "llvm/ADT/APFloat.h"
139#include "llvm/ADT/DenseMap.h"
140#include "llvm/ADT/ValueMap.h"
141#include "llvm/ADT/StringMap.h"
142#include "llvm/ADT/OwningPtr.h"
143#include "llvm/ADT/SmallString.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700144
145// Target
Zonr Chang932648d2010-10-13 22:23:56 +0800146#include "llvm/Target/TargetData.h"
147#include "llvm/Target/TargetSelect.h"
148#include "llvm/Target/TargetOptions.h"
149#include "llvm/Target/TargetMachine.h"
150#include "llvm/Target/TargetJITInfo.h"
151#include "llvm/Target/TargetRegistry.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700152#include "llvm/Target/SubtargetFeature.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700153
154// Support
Zonr Chang932648d2010-10-13 22:23:56 +0800155#include "llvm/Support/Casting.h"
156#include "llvm/Support/raw_ostream.h"
157#include "llvm/Support/ValueHandle.h"
158#include "llvm/Support/MemoryBuffer.h"
159#include "llvm/Support/MemoryObject.h"
160#include "llvm/Support/ManagedStatic.h"
161#include "llvm/Support/ErrorHandling.h"
162#include "llvm/Support/StandardPasses.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700163#include "llvm/Support/FormattedStream.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700164
165// Bitcode
Zonr Chang932648d2010-10-13 22:23:56 +0800166#include "llvm/Bitcode/ReaderWriter.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700167
168// CodeGen
Zonr Chang932648d2010-10-13 22:23:56 +0800169#include "llvm/CodeGen/Passes.h"
170#include "llvm/CodeGen/JITCodeEmitter.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700171#include "llvm/CodeGen/MachineFunction.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700172#include "llvm/CodeGen/RegAllocRegistry.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700173#include "llvm/CodeGen/SchedulerRegistry.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700174#include "llvm/CodeGen/MachineRelocation.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700175#include "llvm/CodeGen/MachineModuleInfo.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700176#include "llvm/CodeGen/MachineCodeEmitter.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700177#include "llvm/CodeGen/MachineConstantPool.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700178#include "llvm/CodeGen/MachineJumpTableInfo.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700179
180// ExecutionEngine
181#include "llvm/ExecutionEngine/GenericValue.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700182#include "llvm/ExecutionEngine/JITMemoryManager.h"
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700183
Shih-wei Liaoe64c2872010-10-25 13:44:53 -0700184extern "C" void LLVMInitializeARMDisassembler();
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700185
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800186// For caching
187struct oBCCHeader {
188 uint8_t magic[4]; // includes version number
189 uint8_t magicVersion[4];
190
191 uint32_t sourceWhen;
192 uint32_t rslibWhen;
193 uint32_t libRSWhen;
194 uint32_t libbccWhen;
195
196 uint32_t cachedCodeDataAddr;
197 uint32_t rootAddr;
198 uint32_t initAddr;
199
200 uint32_t relocOffset; // offset of reloc table.
201 uint32_t relocCount;
202 uint32_t exportVarsOffset; // offset of export var table
203 uint32_t exportVarsCount;
204 uint32_t exportFuncsOffset; // offset of export func table
205 uint32_t exportFuncsCount;
206 uint32_t exportPragmasOffset; // offset of export pragma table
207 uint32_t exportPragmasCount;
208
209 uint32_t codeOffset; // offset of code: 64-bit alignment
210 uint32_t codeSize;
211 uint32_t dataOffset; // offset of data section
212 uint32_t dataSize;
213
214 // uint32_t flags; // some info flags
215 uint32_t checksum; // adler32 checksum covering deps/opt
216};
217
Logan824dd0a2010-11-20 01:45:54 +0800218struct oBCCRelocEntry {
219 uint32_t relocType; // target instruction relocation type
220 uint32_t relocOffset; // offset of hole (holeAddr - codeAddr)
221 uint32_t cachedResultAddr; // address resolved at compile time
222
Logan634bd832010-11-20 09:00:36 +0800223 oBCCRelocEntry(uint32_t ty, uintptr_t off, void *addr)
Logan824dd0a2010-11-20 01:45:54 +0800224 : relocType(ty),
225 relocOffset(static_cast<uint32_t>(off)),
226 cachedResultAddr(reinterpret_cast<uint32_t>(addr)) {
227 }
228};
229
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800230/* oBCCHeader Offset Table */
231#define k_magic offsetof(oBCCHeader, magic)
232#define k_magicVersion offsetof(oBCCHeader, magicVersion)
233#define k_sourceWhen offsetof(oBCCHeader, sourceWhen)
234#define k_rslibWhen offsetof(oBCCHeader, rslibWhen)
235#define k_libRSWhen offsetof(oBCCHeader, libRSWhen)
236#define k_libbccWhen offsetof(oBCCHeader, libbccWhen)
237#define k_cachedCodeDataAddr offsetof(oBCCHeader, cachedCodeDataAddr)
238#define k_rootAddr offsetof(oBCCHeader, rootAddr)
239#define k_initAddr offsetof(oBCCHeader, initAddr)
240#define k_relocOffset offsetof(oBCCHeader, relocOffset)
241#define k_relocCount offsetof(oBCCHeader, relocCount)
242#define k_exportVarsOffset offsetof(oBCCHeader, exportVarsOffset)
243#define k_exportVarsCount offsetof(oBCCHeader, exportVarsCount)
244#define k_exportFuncsOffset offsetof(oBCCHeader, exportFuncsOffset)
245#define k_exportFuncsCount offsetof(oBCCHeader, exportFuncsCount)
246#define k_exportPragmasOffset offsetof(oBCCHeader, exportPragmasOffset)
247#define k_exportPragmasCount offsetof(oBCCHeader, exportPragmasCount)
248#define k_codeOffset offsetof(oBCCHeader, codeOffset)
249#define k_codeSize offsetof(oBCCHeader, codeSize)
250#define k_dataOffset offsetof(oBCCHeader, dataOffset)
251#define k_dataSize offsetof(oBCCHeader, dataSize)
252#define k_checksum offsetof(oBCCHeader, checksum)
253
254/* oBCC file magic number */
255#define OBCC_MAGIC "bcc\n"
256/* version, encoded in 4 bytes of ASCII */
257#define OBCC_MAGIC_VERS "001\0"
258
259#define TEMP_FAILURE_RETRY1(exp) ({ \
260 typeof (exp) _rc; \
261 do { \
262 _rc = (exp); \
263 } while (_rc == -1 && errno == EINTR); \
264 _rc; })
265
266static int sysWriteFully(int fd, const void* buf, size_t count, const char* logMsg)
267{
268 while (count != 0) {
269 ssize_t actual = TEMP_FAILURE_RETRY1(write(fd, buf, count));
270 if (actual < 0) {
271 int err = errno;
272 LOGE("%s: write failed: %s\n", logMsg, strerror(err));
273 return err;
274 } else if (actual != (ssize_t) count) {
275 LOGD("%s: partial write (will retry): (%d of %zd)\n",
276 logMsg, (int) actual, count);
277 buf = (const void*) (((const uint8_t*) buf) + actual);
278 }
279 count -= actual;
280 }
281
282 return 0;
283}
284
Zonr Chang932648d2010-10-13 22:23:56 +0800285//
286// Compilation class that suits Android's needs.
287// (Support: no argument passed, ...)
288//
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700289namespace bcc {
290
291class Compiler {
Zonr Chang932648d2010-10-13 22:23:56 +0800292 // This part is designed to be orthogonal to those exported bcc*() functions
293 // implementation and internal struct BCCscript.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700294
Zonr Chang932648d2010-10-13 22:23:56 +0800295 //////////////////////////////////////////////////////////////////////////////
296 // The variable section below (e.g., Triple, CodeGenOptLevel)
297 // is initialized in GlobalInitialization()
298 //
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700299 static bool GlobalInitialized;
300
Zonr Chang932648d2010-10-13 22:23:56 +0800301 // If given, this will be the name of the target triple to compile for.
302 // If not given, the initial values defined in this file will be used.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700303 static std::string Triple;
304
305 static llvm::CodeGenOpt::Level CodeGenOptLevel;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700306
Zonr Chang932648d2010-10-13 22:23:56 +0800307 // End of section of GlobalInitializing variables
308 //////////////////////////////////////////////////////////////////////////////
309
310 // If given, the name of the target CPU to generate code for.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700311 static std::string CPU;
312
Zonr Chang932648d2010-10-13 22:23:56 +0800313 // The list of target specific features to enable or disable -- this should
314 // be a list of strings starting with '+' (enable) or '-' (disable).
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700315 static std::vector<std::string> Features;
316
317 struct Runtime {
Zonr Chang932648d2010-10-13 22:23:56 +0800318 const char *mName;
319 void *mPtr;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700320 };
321 static struct Runtime Runtimes[];
322
323 static void GlobalInitialization() {
Zonr Chang932648d2010-10-13 22:23:56 +0800324 if (GlobalInitialized)
325 return;
Shih-wei Liaobe5c5312010-05-09 05:30:09 -0700326
Zonr Chang932648d2010-10-13 22:23:56 +0800327 // if (!llvm::llvm_is_multithreaded())
328 // llvm::llvm_start_multithreaded();
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700329
Zonr Chang932648d2010-10-13 22:23:56 +0800330 // Set Triple, CPU and Features here
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700331 Triple = TARGET_TRIPLE_STRING;
332
Zonr Chang932648d2010-10-13 22:23:56 +0800333 // TODO(zonr): NEON for JIT
334 // Features.push_back("+neon");
335 // Features.push_back("+vmlx");
336 // Features.push_back("+neonfp");
Shih-wei Liao3cf39d12010-04-29 19:30:51 -0700337 Features.push_back("+vfp3");
Shih-wei Liao21ef3072010-10-23 22:33:12 -0700338 Features.push_back("+d16");
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -0700339
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700340#if defined(DEFAULT_ARM_CODEGEN) || defined(PROVIDE_ARM_CODEGEN)
341 LLVMInitializeARMTargetInfo();
342 LLVMInitializeARMTarget();
Shih-wei Liaocd61af32010-04-29 00:02:57 -0700343#if defined(USE_DISASSEMBLER)
344 LLVMInitializeARMDisassembler();
345 LLVMInitializeARMAsmPrinter();
346#endif
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700347#endif
348
349#if defined(DEFAULT_X86_CODEGEN) || defined(PROVIDE_X86_CODEGEN)
350 LLVMInitializeX86TargetInfo();
351 LLVMInitializeX86Target();
Shih-wei Liaocd61af32010-04-29 00:02:57 -0700352#if defined(USE_DISASSEMBLER)
353 LLVMInitializeX86Disassembler();
354 LLVMInitializeX86AsmPrinter();
355#endif
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700356#endif
357
358#if defined(DEFAULT_X64_CODEGEN) || defined(PROVIDE_X64_CODEGEN)
359 LLVMInitializeX86TargetInfo();
360 LLVMInitializeX86Target();
Shih-wei Liaocd61af32010-04-29 00:02:57 -0700361#if defined(USE_DISASSEMBLER)
362 LLVMInitializeX86Disassembler();
363 LLVMInitializeX86AsmPrinter();
364#endif
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700365#endif
366
Zonr Chang932648d2010-10-13 22:23:56 +0800367 // -O0: llvm::CodeGenOpt::None
368 // -O1: llvm::CodeGenOpt::Less
369 // -O2: llvm::CodeGenOpt::Default
370 // -O3: llvm::CodeGenOpt::Aggressive
Shih-wei Liaobfda6c92010-10-24 02:43:04 -0700371 CodeGenOptLevel = llvm::CodeGenOpt::None;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700372
Zonr Chang932648d2010-10-13 22:23:56 +0800373 // Below are the global settings to LLVM
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700374
Zonr Chang932648d2010-10-13 22:23:56 +0800375 // Disable frame pointer elimination optimization
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700376 llvm::NoFramePointerElim = false;
377
Zonr Chang932648d2010-10-13 22:23:56 +0800378 // Use hardfloat ABI
379 //
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800380 // TODO(all): Need to detect the CPU capability and decide whether to use
Zonr Chang932648d2010-10-13 22:23:56 +0800381 // softfp. To use softfp, change following 2 lines to
382 //
383 // llvm::FloatABIType = llvm::FloatABI::Soft;
384 // llvm::UseSoftFloat = true;
385 //
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -0700386 llvm::FloatABIType = llvm::FloatABI::Soft;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700387 llvm::UseSoftFloat = false;
388
Zonr Chang932648d2010-10-13 22:23:56 +0800389 // BCC needs all unknown symbols resolved at JIT/compilation time.
390 // So we don't need any dynamic relocation model.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700391 llvm::TargetMachine::setRelocationModel(llvm::Reloc::Static);
392
Shih-wei Liaocd61af32010-04-29 00:02:57 -0700393#if defined(DEFAULT_X64_CODEGEN)
Zonr Chang932648d2010-10-13 22:23:56 +0800394 // Data address in X86_64 architecture may reside in a far-away place
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700395 llvm::TargetMachine::setCodeModel(llvm::CodeModel::Medium);
396#else
Zonr Chang932648d2010-10-13 22:23:56 +0800397 // This is set for the linker (specify how large of the virtual addresses
398 // we can access for all unknown symbols.)
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700399 llvm::TargetMachine::setCodeModel(llvm::CodeModel::Small);
400#endif
401
Zonr Chang932648d2010-10-13 22:23:56 +0800402 // Register the scheduler
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700403 llvm::RegisterScheduler::setDefault(llvm::createDefaultScheduler);
404
Zonr Chang932648d2010-10-13 22:23:56 +0800405 // Register allocation policy:
406 // createFastRegisterAllocator: fast but bad quality
407 // createLinearScanRegisterAllocator: not so fast but good quality
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700408 llvm::RegisterRegAlloc::setDefault
409 ((CodeGenOptLevel == llvm::CodeGenOpt::None) ?
Shih-wei Liao16016012010-09-10 17:55:03 -0700410 llvm::createFastRegisterAllocator :
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700411 llvm::createLinearScanRegisterAllocator);
412
413 GlobalInitialized = true;
414 return;
415 }
416
417 static void LLVMErrorHandler(void *UserData, const std::string &Message) {
Zonr Chang932648d2010-10-13 22:23:56 +0800418 std::string *Error = static_cast<std::string*>(UserData);
Shih-wei Liao066d5ef2010-05-11 03:28:39 -0700419 Error->assign(Message);
Nick Kralevichfc97e9f2010-05-17 14:59:16 -0700420 LOGE("%s", Message.c_str());
Zonr Chang932648d2010-10-13 22:23:56 +0800421 exit(1);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700422 }
423
424 static const llvm::StringRef PragmaMetadataName;
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -0700425 static const llvm::StringRef ExportVarMetadataName;
Shih-wei Liao6bfd5422010-05-07 05:20:22 -0700426 static const llvm::StringRef ExportFuncMetadataName;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700427
428 private:
Shih-wei Liaoc5611992010-05-09 06:37:55 -0700429 std::string mError;
430
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700431 inline bool hasError() const {
432 return !mError.empty();
433 }
Zonr Chang932648d2010-10-13 22:23:56 +0800434 inline void setError(const char *Error) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700435 mError.assign(Error); // Copying
436 return;
437 }
Zonr Chang932648d2010-10-13 22:23:56 +0800438 inline void setError(const std::string &Error) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700439 mError = Error;
440 return;
441 }
442
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800443 bool mNeverCache; // Set by readBC()
444 bool mCacheNew; // Set by readBC()
445 int mCacheFd; // Set by readBC()
446 char *mCacheMapAddr; // Set by loader() if mCacheNew is false
447 oBCCHeader *mCacheHdr; // Set by loader()
Shih-wei Liao7f941bb2010-11-19 01:40:16 -0800448 size_t mCacheSize; // Set by loader()
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800449 ptrdiff_t mCacheDiff; // Set by loader()
450 char *mCodeDataAddr; // Set by CodeMemoryManager if mCacheNew is true.
451 // Used by genCacheFile() for dumping
452
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700453 typedef std::list< std::pair<std::string, std::string> > PragmaList;
454 PragmaList mPragmas;
455
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -0700456 typedef std::list<void*> ExportVarList;
457 ExportVarList mExportVars;
458
Shih-wei Liao6bfd5422010-05-07 05:20:22 -0700459 typedef std::list<void*> ExportFuncList;
460 ExportFuncList mExportFuncs;
461
Zonr Chang932648d2010-10-13 22:23:56 +0800462 //////////////////////////////////////////////////////////////////////////////
463 // Memory manager for the code reside in memory
464 //
465 // The memory for our code emitter is very simple and is conforming to the
466 // design decisions of Android RenderScript's Exection Environment:
467 // The code, data, and symbol sizes are limited (currently 100KB.)
468 //
469 // It's very different from typical compiler, which has no limitation
470 // on the code size. How does code emitter know the size of the code
471 // it is about to emit? It does not know beforehand. We want to solve
472 // this without complicating the code emitter too much.
473 //
474 // We solve this by pre-allocating a certain amount of memory,
475 // and then start the code emission. Once the buffer overflows, the emitter
476 // simply discards all the subsequent emission but still has a counter
477 // on how many bytes have been emitted.
478 //
479 // So once the whole emission is done, if there's a buffer overflow,
480 // it re-allocates the buffer with enough size (based on the
481 // counter from previous emission) and re-emit again.
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800482
483 // 128 KiB for code
484 static const unsigned int MaxCodeSize = 128 * 1024;
485 // 1 KiB for global offset table (GOT)
486 static const unsigned int MaxGOTSize = 1 * 1024;
487 // 128 KiB for global variable
488 static const unsigned int MaxGlobalVarSize = 128 * 1024;
489
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700490 class CodeMemoryManager : public llvm::JITMemoryManager {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700491 private:
Zonr Chang932648d2010-10-13 22:23:56 +0800492 //
493 // Our memory layout is as follows:
494 //
495 // The direction of arrows (-> and <-) shows memory's growth direction
496 // when more space is needed.
497 //
498 // @mpCodeMem:
499 // +--------------------------------------------------------------+
500 // | Function Memory ... -> <- ... Stub/GOT |
501 // +--------------------------------------------------------------+
502 // |<------------------ Total: @MaxCodeSize KiB ----------------->|
503 //
504 // Where size of GOT is @MaxGOTSize KiB.
505 //
506 // @mpGVMem:
507 // +--------------------------------------------------------------+
508 // | Global variable ... -> |
509 // +--------------------------------------------------------------+
510 // |<--------------- Total: @MaxGlobalVarSize KiB --------------->|
511 //
512 //
513 // @mCurFuncMemIdx: The current index (starting from 0) of the last byte
514 // of function code's memory usage
515 // @mCurSGMemIdx: The current index (starting from tail) of the last byte
516 // of stub/GOT's memory usage
517 // @mCurGVMemIdx: The current index (starting from tail) of the last byte
518 // of global variable's memory usage
519 //
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -0700520 uintptr_t mCurFuncMemIdx;
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700521 uintptr_t mCurSGMemIdx;
522 uintptr_t mCurGVMemIdx;
Zonr Chang932648d2010-10-13 22:23:56 +0800523 void *mpCodeMem;
524 void *mpGVMem;
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700525
Zonr Chang932648d2010-10-13 22:23:56 +0800526 // GOT Base
527 uint8_t *mpGOTBase;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700528
529 typedef std::map<const llvm::Function*, pair<void* /* start address */,
530 void* /* end address */>
531 > FunctionMapTy;
532 FunctionMapTy mFunctionMap;
533
Zonr Chang932648d2010-10-13 22:23:56 +0800534 inline intptr_t getFreeCodeMemSize() const {
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700535 return mCurSGMemIdx - mCurFuncMemIdx;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700536 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700537
Zonr Chang932648d2010-10-13 22:23:56 +0800538 uint8_t *allocateSGMemory(uintptr_t Size,
539 unsigned Alignment = 1 /* no alignment */) {
540 intptr_t FreeMemSize = getFreeCodeMemSize();
541 if ((FreeMemSize < 0) || (static_cast<uintptr_t>(FreeMemSize) < Size))
542 // The code size excesses our limit
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700543 return NULL;
544
Zonr Chang932648d2010-10-13 22:23:56 +0800545 if (Alignment == 0)
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700546 Alignment = 1;
547
Zonr Chang932648d2010-10-13 22:23:56 +0800548 uint8_t *result = getCodeMemBase() + mCurSGMemIdx - Size;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700549 result = (uint8_t*) (((intptr_t) result) & ~(intptr_t) (Alignment - 1));
550
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700551 mCurSGMemIdx = result - getCodeMemBase();
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700552
553 return result;
554 }
555
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700556 inline uintptr_t getFreeGVMemSize() const {
557 return MaxGlobalVarSize - mCurGVMemIdx;
558 }
Zonr Chang932648d2010-10-13 22:23:56 +0800559 inline uint8_t *getGVMemBase() const {
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700560 return reinterpret_cast<uint8_t*>(mpGVMem);
561 }
562
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700563 public:
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700564 CodeMemoryManager() : mpCodeMem(NULL), mpGVMem(NULL), mpGOTBase(NULL) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700565 reset();
566 std::string ErrMsg;
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700567
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800568#ifdef BCC_CODE_ADDR
569 mpCodeMem = mmap(reinterpret_cast<void*>(BCC_CODE_ADDR),
570 MaxCodeSize + MaxGlobalVarSize,
571 PROT_READ | PROT_EXEC | PROT_WRITE,
572 MAP_PRIVATE | MAP_ANON | MAP_FIXED,
573 -1,
574 0);
575#else
576 mpCodeMem = mmap(NULL,
577 MaxCodeSize + MaxGlobalVarSize,
578 PROT_READ | PROT_EXEC | PROT_WRITE,
579 MAP_PRIVATE | MAP_ANON,
580 -1,
581 0);
582#endif
583
584 if (mpCodeMem == MAP_FAILED) {
585 llvm::report_fatal_error("Failed to allocate memory for emitting "
586 "codes\n" + ErrMsg);
587 }
588 mpGVMem = (void *) ((int) mpCodeMem + MaxCodeSize);
589
590 /* mpCodeMem = mmap(NULL, MaxCodeSize, PROT_READ | PROT_EXEC,
Ying Wang78db12e2010-09-25 17:48:59 -0700591 MAP_PRIVATE | MAP_ANON, -1, 0);
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700592 if (mpCodeMem == MAP_FAILED)
Zonr Chang932648d2010-10-13 22:23:56 +0800593 llvm::report_fatal_error("Failed to allocate memory for emitting "
594 "function codes\n" + ErrMsg);
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700595
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800596 mpGVMem = mmap(mpCodeMem, MaxGlobalVarSize,
597 PROT_READ | PROT_WRITE,
598 MAP_PRIVATE | MAP_ANON, -1, 0);
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700599 if (mpGVMem == MAP_FAILED)
Zonr Chang932648d2010-10-13 22:23:56 +0800600 llvm::report_fatal_error("Failed to allocate memory for emitting "
601 "global variables\n" + ErrMsg);
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800602 */
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700603 return;
604 }
605
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800606 inline uint8_t *getCodeMemBase() const {
607 return reinterpret_cast<uint8_t*>(mpCodeMem);
608 }
609
Zonr Chang932648d2010-10-13 22:23:56 +0800610 // setMemoryWritable - When code generation is in progress, the code pages
611 // may need permissions changed.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700612 void setMemoryWritable() {
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700613 ::mprotect(mpCodeMem, MaxCodeSize, PROT_READ | PROT_WRITE | PROT_EXEC);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700614 return;
615 }
616
Zonr Chang932648d2010-10-13 22:23:56 +0800617 // When code generation is done and we're ready to start execution, the
618 // code pages may need permissions changed.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700619 void setMemoryExecutable() {
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700620 ::mprotect(mpCodeMem, MaxCodeSize, PROT_READ | PROT_EXEC);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700621 return;
622 }
623
Zonr Chang932648d2010-10-13 22:23:56 +0800624 // Setting this flag to true makes the memory manager garbage values over
625 // freed memory. This is useful for testing and debugging, and is to be
626 // turned on by default in debug mode.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700627 void setPoisonMemory(bool poison) {
Zonr Chang932648d2010-10-13 22:23:56 +0800628 // no effect
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700629 return;
630 }
631
Zonr Chang932648d2010-10-13 22:23:56 +0800632 // Global Offset Table Management
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700633
Zonr Chang932648d2010-10-13 22:23:56 +0800634 // If the current table requires a Global Offset Table, this method is
635 // invoked to allocate it. This method is required to set HasGOT to true.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700636 void AllocateGOT() {
637 assert(mpGOTBase != NULL && "Cannot allocate the GOT multiple times");
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700638 mpGOTBase = allocateSGMemory(MaxGOTSize);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700639 HasGOT = true;
640 return;
641 }
642
Zonr Chang932648d2010-10-13 22:23:56 +0800643 // If this is managing a Global Offset Table, this method should return a
644 // pointer to its base.
645 uint8_t *getGOTBase() const {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700646 return mpGOTBase;
647 }
648
Zonr Chang932648d2010-10-13 22:23:56 +0800649 // Main Allocation Functions
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700650
Zonr Chang932648d2010-10-13 22:23:56 +0800651 // When we start JITing a function, the JIT calls this method to allocate a
652 // block of free RWX memory, which returns a pointer to it. If the JIT wants
653 // to request a block of memory of at least a certain size, it passes that
654 // value as ActualSize, and this method returns a block with at least that
655 // much space. If the JIT doesn't know ahead of time how much space it will
656 // need to emit the function, it passes 0 for the ActualSize. In either
657 // case, this method is required to pass back the size of the allocated
658 // block through ActualSize. The JIT will be careful to not write more than
659 // the returned ActualSize bytes of memory.
660 uint8_t *startFunctionBody(const llvm::Function *F, uintptr_t &ActualSize) {
661 intptr_t FreeMemSize = getFreeCodeMemSize();
662 if ((FreeMemSize < 0) ||
663 (static_cast<uintptr_t>(FreeMemSize) < ActualSize))
664 // The code size excesses our limit
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700665 return NULL;
666
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700667 ActualSize = getFreeCodeMemSize();
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700668 return (getCodeMemBase() + mCurFuncMemIdx);
669 }
670
Zonr Chang932648d2010-10-13 22:23:56 +0800671 // This method is called by the JIT to allocate space for a function stub
672 // (used to handle limited branch displacements) while it is JIT compiling a
673 // function. For example, if foo calls bar, and if bar either needs to be
674 // lazily compiled or is a native function that exists too far away from the
675 // call site to work, this method will be used to make a thunk for it. The
676 // stub should be "close" to the current function body, but should not be
677 // included in the 'actualsize' returned by startFunctionBody.
678 uint8_t *allocateStub(const llvm::GlobalValue *F, unsigned StubSize,
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700679 unsigned Alignment) {
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700680 return allocateSGMemory(StubSize, Alignment);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700681 }
682
Zonr Chang932648d2010-10-13 22:23:56 +0800683 // This method is called when the JIT is done codegen'ing the specified
684 // function. At this point we know the size of the JIT compiled function.
685 // This passes in FunctionStart (which was returned by the startFunctionBody
686 // method) and FunctionEnd which is a pointer to the actual end of the
687 // function. This method should mark the space allocated and remember where
688 // it is in case the client wants to deallocate it.
689 void endFunctionBody(const llvm::Function *F, uint8_t *FunctionStart,
690 uint8_t *FunctionEnd) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700691 assert(FunctionEnd > FunctionStart);
692 assert(FunctionStart == (getCodeMemBase() + mCurFuncMemIdx) &&
693 "Mismatched function start/end!");
694
Zonr Chang932648d2010-10-13 22:23:56 +0800695 // Advance the pointer
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700696 intptr_t FunctionCodeSize = FunctionEnd - FunctionStart;
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700697 assert(FunctionCodeSize <= getFreeCodeMemSize() &&
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700698 "Code size excess the limitation!");
699 mCurFuncMemIdx += FunctionCodeSize;
700
Zonr Chang932648d2010-10-13 22:23:56 +0800701 // Record there's a function in our memory start from @FunctionStart
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700702 assert(mFunctionMap.find(F) == mFunctionMap.end() &&
703 "Function already emitted!");
Zonr Chang932648d2010-10-13 22:23:56 +0800704 mFunctionMap.insert(
705 std::make_pair<const llvm::Function*, std::pair<void*, void*> >(
706 F, std::make_pair(FunctionStart, FunctionEnd)));
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700707
708 return;
709 }
710
Zonr Chang932648d2010-10-13 22:23:56 +0800711 // Allocate a (function code) memory block of the given size. This method
712 // cannot be called between calls to startFunctionBody and endFunctionBody.
713 uint8_t *allocateSpace(intptr_t Size, unsigned Alignment) {
714 if (getFreeCodeMemSize() < Size)
715 // The code size excesses our limit
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700716 return NULL;
717
Zonr Chang932648d2010-10-13 22:23:56 +0800718 if (Alignment == 0)
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700719 Alignment = 1;
720
Zonr Chang932648d2010-10-13 22:23:56 +0800721 uint8_t *result = getCodeMemBase() + mCurFuncMemIdx;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700722 result = (uint8_t*) (((intptr_t) result + Alignment - 1) &
Zonr Chang932648d2010-10-13 22:23:56 +0800723 ~(intptr_t) (Alignment - 1));
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700724
725 mCurFuncMemIdx = (result + Size) - getCodeMemBase();
726
727 return result;
728 }
729
Zonr Chang932648d2010-10-13 22:23:56 +0800730 // Allocate memory for a global variable.
731 uint8_t *allocateGlobal(uintptr_t Size, unsigned Alignment) {
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700732 if (getFreeGVMemSize() < Size) {
Zonr Chang932648d2010-10-13 22:23:56 +0800733 // The code size excesses our limit
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700734 LOGE("No Global Memory");
735 return NULL;
736 }
737
Zonr Chang932648d2010-10-13 22:23:56 +0800738 if (Alignment == 0)
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700739 Alignment = 1;
740
Zonr Chang932648d2010-10-13 22:23:56 +0800741 uint8_t *result = getGVMemBase() + mCurGVMemIdx;
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700742 result = (uint8_t*) (((intptr_t) result + Alignment - 1) &
Zonr Chang932648d2010-10-13 22:23:56 +0800743 ~(intptr_t) (Alignment - 1));
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700744
745 mCurGVMemIdx = (result + Size) - getGVMemBase();
746
747 return result;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700748 }
749
Zonr Chang932648d2010-10-13 22:23:56 +0800750 // Free the specified function body. The argument must be the return value
751 // from a call to startFunctionBody() that hasn't been deallocated yet. This
752 // is never called when the JIT is currently emitting a function.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700753 void deallocateFunctionBody(void *Body) {
Zonr Chang932648d2010-10-13 22:23:56 +0800754 // linear search
755 uint8_t *FunctionStart = NULL, *FunctionEnd = NULL;
756 for (FunctionMapTy::iterator I = mFunctionMap.begin(),
757 E = mFunctionMap.end();
758 I != E;
759 I++)
760 if (I->second.first == Body) {
761 FunctionStart = reinterpret_cast<uint8_t*>(I->second.first);
762 FunctionEnd = reinterpret_cast<uint8_t*>(I->second.second);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700763 break;
Zonr Chang932648d2010-10-13 22:23:56 +0800764 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700765
Zonr Chang932648d2010-10-13 22:23:56 +0800766 assert((FunctionStart == NULL) && "Memory is never allocated!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700767
Zonr Chang932648d2010-10-13 22:23:56 +0800768 // free the memory
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700769 intptr_t SizeNeedMove = (getCodeMemBase() + mCurFuncMemIdx) - FunctionEnd;
770
771 assert(SizeNeedMove >= 0 &&
772 "Internal error: CodeMemoryManager::mCurFuncMemIdx may not"
773 " be correctly calculated!");
774
Zonr Chang932648d2010-10-13 22:23:56 +0800775 if (SizeNeedMove > 0)
776 // there's data behind deallocating function
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700777 ::memmove(FunctionStart, FunctionEnd, SizeNeedMove);
778 mCurFuncMemIdx -= (FunctionEnd - FunctionStart);
779
780 return;
781 }
782
Zonr Chang932648d2010-10-13 22:23:56 +0800783 // When we finished JITing the function, if exception handling is set, we
784 // emit the exception table.
785 uint8_t *startExceptionTable(const llvm::Function *F,
786 uintptr_t &ActualSize) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700787 assert(false && "Exception is not allowed in our language specification");
788 return NULL;
789 }
790
Zonr Chang932648d2010-10-13 22:23:56 +0800791 // This method is called when the JIT is done emitting the exception table.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700792 void endExceptionTable(const llvm::Function *F, uint8_t *TableStart,
Zonr Chang932648d2010-10-13 22:23:56 +0800793 uint8_t *TableEnd, uint8_t *FrameRegister) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700794 assert(false && "Exception is not allowed in our language specification");
795 return;
796 }
797
Zonr Chang932648d2010-10-13 22:23:56 +0800798 // Free the specified exception table's memory. The argument must be the
799 // return value from a call to startExceptionTable() that hasn't been
800 // deallocated yet. This is never called when the JIT is currently emitting
801 // an exception table.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700802 void deallocateExceptionTable(void *ET) {
803 assert(false && "Exception is not allowed in our language specification");
804 return;
805 }
806
Zonr Chang932648d2010-10-13 22:23:56 +0800807 // Below are the methods we create
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700808 void reset() {
809 mpGOTBase = NULL;
810 HasGOT = false;
811
812 mCurFuncMemIdx = 0;
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700813 mCurSGMemIdx = MaxCodeSize - 1;
814 mCurGVMemIdx = 0;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700815
816 mFunctionMap.clear();
817
818 return;
819 }
820
821 ~CodeMemoryManager() {
Zonr Chang932648d2010-10-13 22:23:56 +0800822 if (mpCodeMem != NULL)
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700823 ::munmap(mpCodeMem, MaxCodeSize);
Zonr Chang932648d2010-10-13 22:23:56 +0800824 if (mpGVMem != NULL)
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -0700825 ::munmap(mpGVMem, MaxGlobalVarSize);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700826 return;
827 }
Zonr Chang932648d2010-10-13 22:23:56 +0800828 };
829 // End of class CodeMemoryManager
830 //////////////////////////////////////////////////////////////////////////////
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700831
Zonr Chang932648d2010-10-13 22:23:56 +0800832 // The memory manager for code emitter
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700833 llvm::OwningPtr<CodeMemoryManager> mCodeMemMgr;
Zonr Chang932648d2010-10-13 22:23:56 +0800834 CodeMemoryManager *createCodeMemoryManager() {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700835 mCodeMemMgr.reset(new CodeMemoryManager());
836 return mCodeMemMgr.get();
837 }
838
Zonr Chang932648d2010-10-13 22:23:56 +0800839 //////////////////////////////////////////////////////////////////////////////
840 // Code emitter
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700841 class CodeEmitter : public llvm::JITCodeEmitter {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700842 public:
843 typedef llvm::DenseMap<const llvm::GlobalValue*, void*> GlobalAddressMapTy;
844 typedef GlobalAddressMapTy::const_iterator global_addresses_const_iterator;
845
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -0800846 GlobalAddressMapTy mGlobalAddressMap;
847
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700848 private:
Zonr Chang932648d2010-10-13 22:23:56 +0800849 CodeMemoryManager *mpMemMgr;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700850
Zonr Chang932648d2010-10-13 22:23:56 +0800851 // The JITInfo for the target we are compiling to
852 const llvm::Target *mpTarget;
Shih-wei Liaocd61af32010-04-29 00:02:57 -0700853
Zonr Chang932648d2010-10-13 22:23:56 +0800854 llvm::TargetJITInfo *mpTJI;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700855
Zonr Chang932648d2010-10-13 22:23:56 +0800856 const llvm::TargetData *mpTD;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700857
858 class EmittedFunctionCode {
859 public:
Zonr Chang932648d2010-10-13 22:23:56 +0800860 // Beginning of the function's allocation.
861 void *FunctionBody;
862
863 // The address the function's code actually starts at.
864 void *Code;
865
866 // The size of the function code
867 int Size;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700868
869 EmittedFunctionCode() : FunctionBody(NULL), Code(NULL) { return; }
870 };
Zonr Chang932648d2010-10-13 22:23:56 +0800871 EmittedFunctionCode *mpCurEmitFunction;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700872
Zonr Chang932648d2010-10-13 22:23:56 +0800873 typedef std::map<const std::string,
874 EmittedFunctionCode*> EmittedFunctionsMapTy;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700875 EmittedFunctionsMapTy mEmittedFunctions;
876
Zonr Chang932648d2010-10-13 22:23:56 +0800877 // This vector is a mapping from MBB ID's to their address. It is filled in
878 // by the StartMachineBasicBlock callback and queried by the
879 // getMachineBasicBlockAddress callback.
880 std::vector<uintptr_t> mMBBLocations;
881
882 // The constant pool for the current function.
883 llvm::MachineConstantPool *mpConstantPool;
884
885 // A pointer to the first entry in the constant pool.
886 void *mpConstantPoolBase;
887
888 // Addresses of individual constant pool entries.
889 llvm::SmallVector<uintptr_t, 8> mConstPoolAddresses;
890
891 // The jump tables for the current function.
892 llvm::MachineJumpTableInfo *mpJumpTable;
893
894 // A pointer to the first entry in the jump table.
895 void *mpJumpTableBase;
896
897 // When outputting a function stub in the context of some other function, we
898 // save BufferBegin/BufferEnd/CurBufferPtr here.
899 uint8_t *mpSavedBufferBegin, *mpSavedBufferEnd, *mpSavedCurBufferPtr;
900
901 // These are the relocations that the function needs, as emitted.
902 std::vector<llvm::MachineRelocation> mRelocations;
903
Logan824dd0a2010-11-20 01:45:54 +0800904 std::vector<oBCCRelocEntry> mCachingRelocations;
905
Zonr Chang932648d2010-10-13 22:23:56 +0800906 // This vector is a mapping from Label ID's to their address.
907 llvm::DenseMap<llvm::MCSymbol*, uintptr_t> mLabelLocations;
908
909 // Machine module info for exception informations
910 llvm::MachineModuleInfo *mpMMI;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700911
Zonr Chang932648d2010-10-13 22:23:56 +0800912 // Replace an existing mapping for GV with a new address. This updates both
913 // maps as required. If Addr is null, the entry for the global is removed
914 // from the mappings.
915 void *UpdateGlobalMapping(const llvm::GlobalValue *GV, void *Addr) {
916 if (Addr == NULL) {
917 // Removing mapping
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700918 GlobalAddressMapTy::iterator I = mGlobalAddressMap.find(GV);
919 void *OldVal;
920
Zonr Chang932648d2010-10-13 22:23:56 +0800921 if (I == mGlobalAddressMap.end()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700922 OldVal = NULL;
Zonr Chang932648d2010-10-13 22:23:56 +0800923 } else {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700924 OldVal = I->second;
925 mGlobalAddressMap.erase(I);
926 }
927
928 return OldVal;
929 }
930
Zonr Chang932648d2010-10-13 22:23:56 +0800931 void *&CurVal = mGlobalAddressMap[GV];
932 void *OldVal = CurVal;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700933
934 CurVal = Addr;
935
936 return OldVal;
937 }
938
Zonr Chang932648d2010-10-13 22:23:56 +0800939 // Tell the execution engine that the specified global is at the specified
940 // location. This is used internally as functions are JIT'd and as global
941 // variables are laid out in memory.
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700942 void AddGlobalMapping(const llvm::GlobalValue *GV, void *Addr) {
Zonr Chang932648d2010-10-13 22:23:56 +0800943 void *&CurVal = mGlobalAddressMap[GV];
944 assert((CurVal == 0 || Addr == 0) &&
945 "GlobalMapping already established!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700946 CurVal = Addr;
947 return;
948 }
949
Zonr Chang932648d2010-10-13 22:23:56 +0800950 // This returns the address of the specified global value if it is has
951 // already been codegen'd, otherwise it returns null.
952 void *GetPointerToGlobalIfAvailable(const llvm::GlobalValue *GV) {
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -0700953 GlobalAddressMapTy::iterator I = mGlobalAddressMap.find(GV);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700954 return ((I != mGlobalAddressMap.end()) ? I->second : NULL);
955 }
956
Zonr Chang932648d2010-10-13 22:23:56 +0800957 unsigned int GetConstantPoolSizeInBytes(llvm::MachineConstantPool *MCP) {
958 const std::vector<llvm::MachineConstantPoolEntry> &Constants =
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700959 MCP->getConstants();
960
Zonr Chang932648d2010-10-13 22:23:56 +0800961 if (Constants.empty())
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700962 return 0;
963
964 unsigned int Size = 0;
Zonr Chang932648d2010-10-13 22:23:56 +0800965 for (int i = 0, e = Constants.size(); i != e; i++) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700966 llvm::MachineConstantPoolEntry CPE = Constants[i];
967 unsigned int AlignMask = CPE.getAlignment() - 1;
968 Size = (Size + AlignMask) & ~AlignMask;
Zonr Chang932648d2010-10-13 22:23:56 +0800969 const llvm::Type *Ty = CPE.getType();
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700970 Size += mpTD->getTypeAllocSize(Ty);
971 }
972
973 return Size;
974 }
975
Zonr Chang932648d2010-10-13 22:23:56 +0800976 // This function converts a Constant* into a GenericValue. The interesting
977 // part is if C is a ConstantExpr.
978 void GetConstantValue(const llvm::Constant *C, llvm::GenericValue &Result) {
979 if (C->getValueID() == llvm::Value::UndefValueVal)
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700980 return;
Zonr Chang932648d2010-10-13 22:23:56 +0800981 else if (C->getValueID() == llvm::Value::ConstantExprVal) {
982 const llvm::ConstantExpr *CE = (llvm::ConstantExpr*) C;
983 const llvm::Constant *Op0 = CE->getOperand(0);
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700984
Zonr Chang932648d2010-10-13 22:23:56 +0800985 switch (CE->getOpcode()) {
986 case llvm::Instruction::GetElementPtr: {
987 // Compute the index
988 llvm::SmallVector<llvm::Value*, 8> Indices(CE->op_begin() + 1,
989 CE->op_end());
990 uint64_t Offset = mpTD->getIndexedOffset(Op0->getType(),
991 &Indices[0],
992 Indices.size());
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700993
Zonr Chang932648d2010-10-13 22:23:56 +0800994 GetConstantValue(Op0, Result);
995 Result.PointerVal =
996 static_cast<uint8_t*>(Result.PointerVal) + Offset;
Shih-wei Liao77ed6142010-04-07 12:21:42 -0700997
Zonr Chang932648d2010-10-13 22:23:56 +0800998 return;
999 }
1000 case llvm::Instruction::Trunc: {
1001 uint32_t BitWidth =
1002 llvm::cast<llvm::IntegerType>(CE->getType())->getBitWidth();
1003
1004 GetConstantValue(Op0, Result);
1005 Result.IntVal = Result.IntVal.trunc(BitWidth);
1006
1007 return;
1008 }
1009 case llvm::Instruction::ZExt: {
1010 uint32_t BitWidth =
1011 llvm::cast<llvm::IntegerType>(CE->getType())->getBitWidth();
1012
1013 GetConstantValue(Op0, Result);
1014 Result.IntVal = Result.IntVal.zext(BitWidth);
1015
1016 return;
1017 }
1018 case llvm::Instruction::SExt: {
1019 uint32_t BitWidth =
1020 llvm::cast<llvm::IntegerType>(CE->getType())->getBitWidth();
1021
1022 GetConstantValue(Op0, Result);
1023 Result.IntVal = Result.IntVal.sext(BitWidth);
1024
1025 return;
1026 }
1027 case llvm::Instruction::FPTrunc: {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08001028 // TODO(all): fixme: long double
Zonr Chang932648d2010-10-13 22:23:56 +08001029 GetConstantValue(Op0, Result);
1030 Result.FloatVal = static_cast<float>(Result.DoubleVal);
1031 return;
1032 }
1033 case llvm::Instruction::FPExt: {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08001034 // TODO(all): fixme: long double
Zonr Chang932648d2010-10-13 22:23:56 +08001035 GetConstantValue(Op0, Result);
1036 Result.DoubleVal = static_cast<double>(Result.FloatVal);
1037 return;
1038 }
1039 case llvm::Instruction::UIToFP: {
1040 GetConstantValue(Op0, Result);
1041 if (CE->getType()->isFloatTy())
1042 Result.FloatVal =
1043 static_cast<float>(Result.IntVal.roundToDouble());
1044 else if (CE->getType()->isDoubleTy())
1045 Result.DoubleVal = Result.IntVal.roundToDouble();
1046 else if (CE->getType()->isX86_FP80Ty()) {
1047 const uint64_t zero[] = { 0, 0 };
1048 llvm::APFloat apf(llvm::APInt(80, 2, zero));
1049 apf.convertFromAPInt(Result.IntVal,
1050 false,
1051 llvm::APFloat::rmNearestTiesToEven);
1052 Result.IntVal = apf.bitcastToAPInt();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001053 }
Zonr Chang932648d2010-10-13 22:23:56 +08001054 return;
1055 }
1056 case llvm::Instruction::SIToFP: {
1057 GetConstantValue(Op0, Result);
1058 if (CE->getType()->isFloatTy())
1059 Result.FloatVal =
1060 static_cast<float>(Result.IntVal.signedRoundToDouble());
1061 else if (CE->getType()->isDoubleTy())
1062 Result.DoubleVal = Result.IntVal.signedRoundToDouble();
1063 else if (CE->getType()->isX86_FP80Ty()) {
1064 const uint64_t zero[] = { 0, 0 };
1065 llvm::APFloat apf = llvm::APFloat(llvm::APInt(80, 2, zero));
1066 apf.convertFromAPInt(Result.IntVal,
1067 true,
1068 llvm::APFloat::rmNearestTiesToEven);
1069 Result.IntVal = apf.bitcastToAPInt();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001070 }
Zonr Chang932648d2010-10-13 22:23:56 +08001071 return;
1072 }
1073 // double->APInt conversion handles sign
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001074 case llvm::Instruction::FPToUI:
Zonr Chang932648d2010-10-13 22:23:56 +08001075 case llvm::Instruction::FPToSI: {
1076 uint32_t BitWidth =
1077 llvm::cast<llvm::IntegerType>(CE->getType())->getBitWidth();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001078
Zonr Chang932648d2010-10-13 22:23:56 +08001079 GetConstantValue(Op0, Result);
1080 if (Op0->getType()->isFloatTy())
1081 Result.IntVal =
1082 llvm::APIntOps::RoundFloatToAPInt(Result.FloatVal, BitWidth);
1083 else if (Op0->getType()->isDoubleTy())
1084 Result.IntVal =
1085 llvm::APIntOps::RoundDoubleToAPInt(Result.DoubleVal,
1086 BitWidth);
1087 else if (Op0->getType()->isX86_FP80Ty()) {
1088 llvm::APFloat apf = llvm::APFloat(Result.IntVal);
1089 uint64_t V;
1090 bool Ignored;
1091 apf.convertToInteger(&V,
1092 BitWidth,
1093 CE->getOpcode() == llvm::Instruction::FPToSI,
1094 llvm::APFloat::rmTowardZero,
1095 &Ignored);
1096 Result.IntVal = V; // endian?
1097 }
1098 return;
1099 }
1100 case llvm::Instruction::PtrToInt: {
1101 uint32_t PtrWidth = mpTD->getPointerSizeInBits();
1102
1103 GetConstantValue(Op0, Result);
1104 Result.IntVal = llvm::APInt(PtrWidth, uintptr_t
1105 (Result.PointerVal));
1106
1107 return;
1108 }
1109 case llvm::Instruction::IntToPtr: {
1110 uint32_t PtrWidth = mpTD->getPointerSizeInBits();
1111
1112 GetConstantValue(Op0, Result);
1113 if (PtrWidth != Result.IntVal.getBitWidth())
1114 Result.IntVal = Result.IntVal.zextOrTrunc(PtrWidth);
1115 assert(Result.IntVal.getBitWidth() <= 64 && "Bad pointer width");
1116
1117 Result.PointerVal =
1118 llvm::PointerTy(
1119 static_cast<uintptr_t>(Result.IntVal.getZExtValue()));
1120
1121 return;
1122 }
1123 case llvm::Instruction::BitCast: {
1124 GetConstantValue(Op0, Result);
1125 const llvm::Type *DestTy = CE->getType();
1126
1127 switch (Op0->getType()->getTypeID()) {
1128 case llvm::Type::IntegerTyID: {
1129 assert(DestTy->isFloatingPointTy() && "invalid bitcast");
1130 if (DestTy->isFloatTy())
1131 Result.FloatVal = Result.IntVal.bitsToFloat();
1132 else if (DestTy->isDoubleTy())
1133 Result.DoubleVal = Result.IntVal.bitsToDouble();
1134 break;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001135 }
Zonr Chang932648d2010-10-13 22:23:56 +08001136 case llvm::Type::FloatTyID: {
1137 assert(DestTy->isIntegerTy(32) && "Invalid bitcast");
1138 Result.IntVal.floatToBits(Result.FloatVal);
1139 break;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001140 }
Zonr Chang932648d2010-10-13 22:23:56 +08001141 case llvm::Type::DoubleTyID: {
1142 assert(DestTy->isIntegerTy(64) && "Invalid bitcast");
1143 Result.IntVal.doubleToBits(Result.DoubleVal);
1144 break;
1145 }
1146 case llvm::Type::PointerTyID: {
1147 assert(DestTy->isPointerTy() && "Invalid bitcast");
1148 break; // getConstantValue(Op0) above already converted it
1149 }
1150 default: {
1151 llvm_unreachable("Invalid bitcast operand");
1152 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001153 }
Zonr Chang932648d2010-10-13 22:23:56 +08001154 return;
1155 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001156 case llvm::Instruction::Add:
1157 case llvm::Instruction::FAdd:
1158 case llvm::Instruction::Sub:
1159 case llvm::Instruction::FSub:
1160 case llvm::Instruction::Mul:
1161 case llvm::Instruction::FMul:
1162 case llvm::Instruction::UDiv:
1163 case llvm::Instruction::SDiv:
1164 case llvm::Instruction::URem:
1165 case llvm::Instruction::SRem:
1166 case llvm::Instruction::And:
1167 case llvm::Instruction::Or:
Zonr Chang932648d2010-10-13 22:23:56 +08001168 case llvm::Instruction::Xor: {
1169 llvm::GenericValue LHS, RHS;
1170 GetConstantValue(Op0, LHS);
1171 GetConstantValue(CE->getOperand(1), RHS);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001172
Zonr Chang932648d2010-10-13 22:23:56 +08001173 switch (Op0->getType()->getTypeID()) {
1174 case llvm::Type::IntegerTyID: {
1175 switch (CE->getOpcode()) {
1176 case llvm::Instruction::Add: {
1177 Result.IntVal = LHS.IntVal + RHS.IntVal;
1178 break;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001179 }
Zonr Chang932648d2010-10-13 22:23:56 +08001180 case llvm::Instruction::Sub: {
1181 Result.IntVal = LHS.IntVal - RHS.IntVal;
1182 break;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001183 }
Zonr Chang932648d2010-10-13 22:23:56 +08001184 case llvm::Instruction::Mul: {
1185 Result.IntVal = LHS.IntVal * RHS.IntVal;
1186 break;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001187 }
Zonr Chang932648d2010-10-13 22:23:56 +08001188 case llvm::Instruction::UDiv: {
1189 Result.IntVal = LHS.IntVal.udiv(RHS.IntVal);
1190 break;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001191 }
Zonr Chang932648d2010-10-13 22:23:56 +08001192 case llvm::Instruction::SDiv: {
1193 Result.IntVal = LHS.IntVal.sdiv(RHS.IntVal);
1194 break;
1195 }
1196 case llvm::Instruction::URem: {
1197 Result.IntVal = LHS.IntVal.urem(RHS.IntVal);
1198 break;
1199 }
1200 case llvm::Instruction::SRem: {
1201 Result.IntVal = LHS.IntVal.srem(RHS.IntVal);
1202 break;
1203 }
1204 case llvm::Instruction::And: {
1205 Result.IntVal = LHS.IntVal & RHS.IntVal;
1206 break;
1207 }
1208 case llvm::Instruction::Or: {
1209 Result.IntVal = LHS.IntVal | RHS.IntVal;
1210 break;
1211 }
1212 case llvm::Instruction::Xor: {
1213 Result.IntVal = LHS.IntVal ^ RHS.IntVal;
1214 break;
1215 }
1216 default: {
1217 llvm_unreachable("Invalid integer opcode");
1218 }
1219 }
1220 break;
1221 }
1222 case llvm::Type::FloatTyID: {
1223 switch (CE->getOpcode()) {
1224 case llvm::Instruction::FAdd: {
1225 Result.FloatVal = LHS.FloatVal + RHS.FloatVal;
1226 break;
1227 }
1228 case llvm::Instruction::FSub: {
1229 Result.FloatVal = LHS.FloatVal - RHS.FloatVal;
1230 break;
1231 }
1232 case llvm::Instruction::FMul: {
1233 Result.FloatVal = LHS.FloatVal * RHS.FloatVal;
1234 break;
1235 }
1236 case llvm::Instruction::FDiv: {
1237 Result.FloatVal = LHS.FloatVal / RHS.FloatVal;
1238 break;
1239 }
1240 case llvm::Instruction::FRem: {
1241 Result.FloatVal = ::fmodf(LHS.FloatVal, RHS.FloatVal);
1242 break;
1243 }
1244 default: {
1245 llvm_unreachable("Invalid float opcode");
1246 }
1247 }
1248 break;
1249 }
1250 case llvm::Type::DoubleTyID: {
1251 switch (CE->getOpcode()) {
1252 case llvm::Instruction::FAdd: {
1253 Result.DoubleVal = LHS.DoubleVal + RHS.DoubleVal;
1254 break;
1255 }
1256 case llvm::Instruction::FSub: {
1257 Result.DoubleVal = LHS.DoubleVal - RHS.DoubleVal;
1258 break;
1259 }
1260 case llvm::Instruction::FMul: {
1261 Result.DoubleVal = LHS.DoubleVal * RHS.DoubleVal;
1262 break;
1263 }
1264 case llvm::Instruction::FDiv: {
1265 Result.DoubleVal = LHS.DoubleVal / RHS.DoubleVal;
1266 break;
1267 }
1268 case llvm::Instruction::FRem: {
1269 Result.DoubleVal = ::fmod(LHS.DoubleVal, RHS.DoubleVal);
1270 break;
1271 }
1272 default: {
1273 llvm_unreachable("Invalid double opcode");
1274 }
1275 }
1276 break;
1277 }
1278 case llvm::Type::X86_FP80TyID:
1279 case llvm::Type::PPC_FP128TyID:
1280 case llvm::Type::FP128TyID: {
1281 llvm::APFloat apfLHS = llvm::APFloat(LHS.IntVal);
1282 switch (CE->getOpcode()) {
1283 case llvm::Instruction::FAdd: {
1284 apfLHS.add(llvm::APFloat(RHS.IntVal),
1285 llvm::APFloat::rmNearestTiesToEven);
1286 break;
1287 }
1288 case llvm::Instruction::FSub: {
1289 apfLHS.subtract(llvm::APFloat(RHS.IntVal),
1290 llvm::APFloat::rmNearestTiesToEven);
1291 break;
1292 }
1293 case llvm::Instruction::FMul: {
1294 apfLHS.multiply(llvm::APFloat(RHS.IntVal),
1295 llvm::APFloat::rmNearestTiesToEven);
1296 break;
1297 }
1298 case llvm::Instruction::FDiv: {
1299 apfLHS.divide(llvm::APFloat(RHS.IntVal),
1300 llvm::APFloat::rmNearestTiesToEven);
1301 break;
1302 }
1303 case llvm::Instruction::FRem: {
1304 apfLHS.mod(llvm::APFloat(RHS.IntVal),
1305 llvm::APFloat::rmNearestTiesToEven);
1306 break;
1307 }
1308 default: {
1309 llvm_unreachable("Invalid long double opcode");
1310 }
1311 }
1312 Result.IntVal = apfLHS.bitcastToAPInt();
1313 break;
1314 }
1315 default: {
1316 llvm_unreachable("Bad add type!");
1317 }
1318 } // End switch (Op0->getType()->getTypeID())
1319 return;
1320 }
1321 default: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001322 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001323 }
1324 } // End switch (CE->getOpcode())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001325
1326 std::string msg;
1327 llvm::raw_string_ostream Msg(msg);
1328 Msg << "ConstantExpr not handled: " << *CE;
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07001329 llvm::report_fatal_error(Msg.str());
Zonr Chang932648d2010-10-13 22:23:56 +08001330 } // C->getValueID() == llvm::Value::ConstantExprVal
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001331
1332 switch (C->getType()->getTypeID()) {
Zonr Chang932648d2010-10-13 22:23:56 +08001333 case llvm::Type::FloatTyID: {
1334 Result.FloatVal =
1335 llvm::cast<llvm::ConstantFP>(C)->getValueAPF().convertToFloat();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001336 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001337 }
1338 case llvm::Type::DoubleTyID: {
1339 Result.DoubleVal =
1340 llvm::cast<llvm::ConstantFP>(C)->getValueAPF().convertToDouble();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001341 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001342 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001343 case llvm::Type::X86_FP80TyID:
1344 case llvm::Type::FP128TyID:
Zonr Chang932648d2010-10-13 22:23:56 +08001345 case llvm::Type::PPC_FP128TyID: {
1346 Result.IntVal =
1347 llvm::cast<llvm::ConstantFP>(C)->getValueAPF().bitcastToAPInt();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001348 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001349 }
1350 case llvm::Type::IntegerTyID: {
1351 Result.IntVal =
1352 llvm::cast<llvm::ConstantInt>(C)->getValue();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001353 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001354 }
1355 case llvm::Type::PointerTyID: {
1356 switch (C->getValueID()) {
1357 case llvm::Value::ConstantPointerNullVal: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001358 Result.PointerVal = NULL;
1359 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001360 }
1361 case llvm::Value::FunctionVal: {
1362 const llvm::Function *F = static_cast<const llvm::Function*>(C);
1363 Result.PointerVal =
1364 GetPointerToFunctionOrStub(const_cast<llvm::Function*>(F));
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001365 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001366 }
1367 case llvm::Value::GlobalVariableVal: {
1368 const llvm::GlobalVariable *GV =
1369 static_cast<const llvm::GlobalVariable*>(C);
1370 Result.PointerVal =
1371 GetOrEmitGlobalVariable(const_cast<llvm::GlobalVariable*>(GV));
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001372 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001373 }
1374 case llvm::Value::BlockAddressVal: {
1375 assert(false && "JIT does not support address-of-label yet!");
1376 }
1377 default: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001378 llvm_unreachable("Unknown constant pointer type!");
Zonr Chang932648d2010-10-13 22:23:56 +08001379 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001380 }
1381 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001382 }
1383 default: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001384 std::string msg;
1385 llvm::raw_string_ostream Msg(msg);
1386 Msg << "ERROR: Constant unimplemented for type: " << *C->getType();
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07001387 llvm::report_fatal_error(Msg.str());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001388 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001389 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001390 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001391 return;
1392 }
1393
Zonr Chang932648d2010-10-13 22:23:56 +08001394 // Stores the data in @Val of type @Ty at address @Addr.
1395 void StoreValueToMemory(const llvm::GenericValue &Val, void *Addr,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001396 const llvm::Type *Ty) {
1397 const unsigned int StoreBytes = mpTD->getTypeStoreSize(Ty);
1398
Zonr Chang932648d2010-10-13 22:23:56 +08001399 switch (Ty->getTypeID()) {
1400 case llvm::Type::IntegerTyID: {
1401 const llvm::APInt &IntVal = Val.IntVal;
1402 assert(((IntVal.getBitWidth() + 7) / 8 >= StoreBytes) &&
1403 "Integer too small!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001404
Zonr Chang932648d2010-10-13 22:23:56 +08001405 const uint8_t *Src =
1406 reinterpret_cast<const uint8_t*>(IntVal.getRawData());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001407
Zonr Chang932648d2010-10-13 22:23:56 +08001408 if (llvm::sys::isLittleEndianHost()) {
1409 // Little-endian host - the source is ordered from LSB to MSB.
1410 // Order the destination from LSB to MSB: Do a straight copy.
1411 memcpy(Addr, Src, StoreBytes);
1412 } else {
1413 // Big-endian host - the source is an array of 64 bit words
1414 // ordered from LSW to MSW.
1415 //
1416 // Each word is ordered from MSB to LSB.
1417 //
1418 // Order the destination from MSB to LSB:
1419 // Reverse the word order, but not the bytes in a word.
1420 unsigned int i = StoreBytes;
1421 while (i > sizeof(uint64_t)) {
1422 i -= sizeof(uint64_t);
1423 ::memcpy(reinterpret_cast<uint8_t*>(Addr) + i,
1424 Src,
1425 sizeof(uint64_t));
1426 Src += sizeof(uint64_t);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001427 }
Zonr Chang932648d2010-10-13 22:23:56 +08001428 ::memcpy(Addr, Src + sizeof(uint64_t) - i, i);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001429 }
1430 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001431 }
1432 case llvm::Type::FloatTyID: {
1433 *reinterpret_cast<float*>(Addr) = Val.FloatVal;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001434 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001435 }
1436 case llvm::Type::DoubleTyID: {
1437 *reinterpret_cast<double*>(Addr) = Val.DoubleVal;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001438 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001439 }
1440 case llvm::Type::X86_FP80TyID: {
1441 memcpy(Addr, Val.IntVal.getRawData(), 10);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001442 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001443 }
1444 case llvm::Type::PointerTyID: {
1445 // Ensure 64 bit target pointers are fully initialized on 32 bit
1446 // hosts.
1447 if (StoreBytes != sizeof(llvm::PointerTy))
1448 memset(Addr, 0, StoreBytes);
1449 *((llvm::PointerTy*) Addr) = Val.PointerVal;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001450 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001451 }
1452 default: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001453 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001454 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001455 }
1456
Zonr Chang932648d2010-10-13 22:23:56 +08001457 if (llvm::sys::isLittleEndianHost() != mpTD->isLittleEndian())
1458 std::reverse(reinterpret_cast<uint8_t*>(Addr),
1459 reinterpret_cast<uint8_t*>(Addr) + StoreBytes);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001460
1461 return;
1462 }
1463
Zonr Chang932648d2010-10-13 22:23:56 +08001464 // Recursive function to apply a @Constant value into the specified memory
1465 // location @Addr.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001466 void InitializeConstantToMemory(const llvm::Constant *C, void *Addr) {
Zonr Chang932648d2010-10-13 22:23:56 +08001467 switch (C->getValueID()) {
1468 case llvm::Value::UndefValueVal: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001469 // Nothing to do
1470 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001471 }
1472 case llvm::Value::ConstantVectorVal: {
1473 // dynamic cast may hurt performance
1474 const llvm::ConstantVector *CP = (llvm::ConstantVector*) C;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001475
Zonr Chang932648d2010-10-13 22:23:56 +08001476 unsigned int ElementSize = mpTD->getTypeAllocSize
1477 (CP->getType()->getElementType());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001478
Zonr Chang932648d2010-10-13 22:23:56 +08001479 for (int i = 0, e = CP->getNumOperands(); i != e;i++)
1480 InitializeConstantToMemory(
1481 CP->getOperand(i),
1482 reinterpret_cast<uint8_t*>(Addr) + i * ElementSize);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001483 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001484 }
1485 case llvm::Value::ConstantAggregateZeroVal: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001486 memset(Addr, 0, (size_t) mpTD->getTypeAllocSize(C->getType()));
1487 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001488 }
1489 case llvm::Value::ConstantArrayVal: {
1490 const llvm::ConstantArray *CPA = (llvm::ConstantArray*) C;
1491 unsigned int ElementSize = mpTD->getTypeAllocSize
1492 (CPA->getType()->getElementType());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001493
Zonr Chang932648d2010-10-13 22:23:56 +08001494 for (int i = 0, e = CPA->getNumOperands(); i != e; i++)
1495 InitializeConstantToMemory(
1496 CPA->getOperand(i),
1497 reinterpret_cast<uint8_t*>(Addr) + i * ElementSize);
1498 break;
1499 }
1500 case llvm::Value::ConstantStructVal: {
1501 const llvm::ConstantStruct *CPS =
1502 static_cast<const llvm::ConstantStruct*>(C);
1503 const llvm::StructLayout *SL = mpTD->getStructLayout
1504 (llvm::cast<llvm::StructType>(CPS->getType()));
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001505
Zonr Chang932648d2010-10-13 22:23:56 +08001506 for (int i = 0, e = CPS->getNumOperands(); i != e; i++)
1507 InitializeConstantToMemory(
1508 CPS->getOperand(i),
1509 reinterpret_cast<uint8_t*>(Addr) + SL->getElementOffset(i));
1510 break;
1511 }
1512 default: {
1513 if (C->getType()->isFirstClassType()) {
1514 llvm::GenericValue Val;
1515 GetConstantValue(C, Val);
1516 StoreValueToMemory(Val, Addr, C->getType());
1517 } else {
1518 llvm_unreachable("Unknown constant type to initialize memory "
1519 "with!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001520 }
1521 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001522 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001523 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001524 return;
1525 }
1526
1527 void emitConstantPool(llvm::MachineConstantPool *MCP) {
Zonr Chang932648d2010-10-13 22:23:56 +08001528 if (mpTJI->hasCustomConstantPool())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001529 return;
1530
Zonr Chang932648d2010-10-13 22:23:56 +08001531 // Constant pool address resolution is handled by the target itself in ARM
1532 // (TargetJITInfo::hasCustomConstantPool() returns true).
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001533#if !defined(PROVIDE_ARM_CODEGEN)
Zonr Chang932648d2010-10-13 22:23:56 +08001534 const std::vector<llvm::MachineConstantPoolEntry> &Constants =
1535 MCP->getConstants();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001536
Zonr Chang932648d2010-10-13 22:23:56 +08001537 if (Constants.empty())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001538 return;
1539
1540 unsigned Size = GetConstantPoolSizeInBytes(MCP);
1541 unsigned Align = MCP->getConstantPoolAlignment();
1542
1543 mpConstantPoolBase = allocateSpace(Size, Align);
1544 mpConstantPool = MCP;
1545
Zonr Chang932648d2010-10-13 22:23:56 +08001546 if (mpConstantPoolBase == NULL)
1547 return; // out of memory
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001548
1549 unsigned Offset = 0;
Zonr Chang932648d2010-10-13 22:23:56 +08001550 for (int i = 0, e = Constants.size(); i != e; i++) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001551 llvm::MachineConstantPoolEntry CPE = Constants[i];
1552 unsigned AlignMask = CPE.getAlignment() - 1;
1553 Offset = (Offset + AlignMask) & ~AlignMask;
1554
1555 uintptr_t CAddr = (uintptr_t) mpConstantPoolBase + Offset;
1556 mConstPoolAddresses.push_back(CAddr);
1557
Zonr Chang932648d2010-10-13 22:23:56 +08001558 if (CPE.isMachineConstantPoolEntry())
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07001559 llvm::report_fatal_error
Zonr Chang932648d2010-10-13 22:23:56 +08001560 ("Initialize memory with machine specific constant pool"
1561 " entry has not been implemented!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001562
1563 InitializeConstantToMemory(CPE.Val.ConstVal, (void*) CAddr);
1564
1565 const llvm::Type *Ty = CPE.Val.ConstVal->getType();
1566 Offset += mpTD->getTypeAllocSize(Ty);
1567 }
1568#endif
1569 return;
1570 }
1571
1572 void initJumpTableInfo(llvm::MachineJumpTableInfo *MJTI) {
Zonr Chang932648d2010-10-13 22:23:56 +08001573 if (mpTJI->hasCustomJumpTables())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001574 return;
1575
Zonr Chang932648d2010-10-13 22:23:56 +08001576 const std::vector<llvm::MachineJumpTableEntry> &JT =
1577 MJTI->getJumpTables();
1578 if (JT.empty())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001579 return;
1580
1581 unsigned NumEntries = 0;
Zonr Chang932648d2010-10-13 22:23:56 +08001582 for (int i = 0, e = JT.size(); i != e; i++)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001583 NumEntries += JT[i].MBBs.size();
1584
1585 unsigned EntrySize = MJTI->getEntrySize(*mpTD);
1586
Zonr Chang932648d2010-10-13 22:23:56 +08001587 mpJumpTable = MJTI;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001588 mpJumpTableBase = allocateSpace(NumEntries * EntrySize,
Zonr Chang932648d2010-10-13 22:23:56 +08001589 MJTI->getEntryAlignment(*mpTD));
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001590
1591 return;
1592 }
1593
1594 void emitJumpTableInfo(llvm::MachineJumpTableInfo *MJTI) {
Zonr Chang932648d2010-10-13 22:23:56 +08001595 if (mpTJI->hasCustomJumpTables())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001596 return;
1597
Zonr Chang932648d2010-10-13 22:23:56 +08001598 const std::vector<llvm::MachineJumpTableEntry> &JT =
1599 MJTI->getJumpTables();
1600 if (JT.empty() || mpJumpTableBase == 0)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001601 return;
1602
Zonr Chang932648d2010-10-13 22:23:56 +08001603 assert(llvm::TargetMachine::getRelocationModel() == llvm::Reloc::Static &&
1604 (MJTI->getEntrySize(*mpTD) == sizeof(mpTD /* a pointer type */)) &&
1605 "Cross JIT'ing?");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001606
Zonr Chang932648d2010-10-13 22:23:56 +08001607 // For each jump table, map each target in the jump table to the
1608 // address of an emitted MachineBasicBlock.
1609 intptr_t *SlotPtr = reinterpret_cast<intptr_t*>(mpJumpTableBase);
1610 for (int i = 0, ie = JT.size(); i != ie; i++) {
1611 const std::vector<llvm::MachineBasicBlock*> &MBBs = JT[i].MBBs;
1612 // Store the address of the basic block for this jump table slot in the
1613 // memory we allocated for the jump table in 'initJumpTableInfo'
1614 for (int j = 0, je = MBBs.size(); j != je; j++)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001615 *SlotPtr++ = getMachineBasicBlockAddress(MBBs[j]);
1616 }
1617 }
1618
Zonr Chang932648d2010-10-13 22:23:56 +08001619 void *GetPointerToGlobal(llvm::GlobalValue *V, void *Reference,
1620 bool MayNeedFarStub) {
1621 switch (V->getValueID()) {
1622 case llvm::Value::FunctionVal: {
1623 llvm::Function *F = (llvm::Function*) V;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001624
Zonr Chang932648d2010-10-13 22:23:56 +08001625 // If we have code, go ahead and return that.
1626 if (void *ResultPtr = GetPointerToGlobalIfAvailable(F))
1627 return ResultPtr;
Shih-wei Liao800e9c22010-04-18 16:08:16 -07001628
Zonr Chang932648d2010-10-13 22:23:56 +08001629 if (void *FnStub = GetLazyFunctionStubIfAvailable(F))
1630 // Return the function stub if it's already created.
1631 // We do this first so that:
1632 // we're returning the same address for the function as any
1633 // previous call.
1634 //
1635 // TODO(llvm.org): Yes, this is wrong. The lazy stub isn't
1636 // guaranteed to be close enough to call.
1637 return FnStub;
Shih-wei Liao800e9c22010-04-18 16:08:16 -07001638
Zonr Chang932648d2010-10-13 22:23:56 +08001639 // If we know the target can handle arbitrary-distance calls, try to
1640 // return a direct pointer.
1641 if (!MayNeedFarStub) {
1642 //
1643 // x86_64 architecture may encounter the bug:
1644 // http://llvm.org/bugs/show_bug.cgi?id=5201
1645 // which generate instruction "call" instead of "callq".
1646 //
1647 // And once the real address of stub is greater than 64-bit
1648 // long, the replacement will truncate to 32-bit resulting a
1649 // serious problem.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001650#if !defined(__x86_64__)
Zonr Chang932648d2010-10-13 22:23:56 +08001651 // If this is an external function pointer, we can force the JIT
1652 // to 'compile' it, which really just adds it to the map.
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08001653 if (F->isDeclaration() || F->hasAvailableExternallyLinkage()) {
1654 return GetPointerToFunction(F, /* AbortOnFailure = */false);
1655 // Changing to false because wanting to allow later calls to
1656 // mpTJI->relocate() without aborting. For caching purpose
1657 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001658#endif
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001659 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001660
Zonr Chang932648d2010-10-13 22:23:56 +08001661 // Otherwise, we may need a to emit a stub, and, conservatively, we
1662 // always do so.
1663 return GetLazyFunctionStub(F);
1664 break;
1665 }
1666 case llvm::Value::GlobalVariableVal: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001667 return GetOrEmitGlobalVariable((llvm::GlobalVariable*) V);
1668 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001669 }
1670 case llvm::Value::GlobalAliasVal: {
1671 llvm::GlobalAlias *GA = (llvm::GlobalAlias*) V;
1672 const llvm::GlobalValue *GV = GA->resolveAliasedGlobal(false);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001673
Zonr Chang932648d2010-10-13 22:23:56 +08001674 switch (GV->getValueID()) {
1675 case llvm::Value::FunctionVal: {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08001676 // TODO(all): is there's any possibility that the function is not
Zonr Chang932648d2010-10-13 22:23:56 +08001677 // code-gen'd?
1678 return GetPointerToFunction(
1679 static_cast<const llvm::Function*>(GV),
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08001680 /* AbortOnFailure = */false);
1681 // Changing to false because wanting to allow later calls to
1682 // mpTJI->relocate() without aborting. For caching purpose
Zonr Chang932648d2010-10-13 22:23:56 +08001683 break;
1684 }
1685 case llvm::Value::GlobalVariableVal: {
1686 if (void *P = mGlobalAddressMap[GV])
1687 return P;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001688
Zonr Chang932648d2010-10-13 22:23:56 +08001689 llvm::GlobalVariable *GVar = (llvm::GlobalVariable*) GV;
1690 EmitGlobalVariable(GVar);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001691
Zonr Chang932648d2010-10-13 22:23:56 +08001692 return mGlobalAddressMap[GV];
1693 break;
1694 }
1695 case llvm::Value::GlobalAliasVal: {
1696 assert(false && "Alias should be resolved ultimately!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001697 }
1698 }
1699 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001700 }
1701 default: {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001702 break;
Zonr Chang932648d2010-10-13 22:23:56 +08001703 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001704 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001705 llvm_unreachable("Unknown type of global value!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001706 }
1707
Zonr Chang932648d2010-10-13 22:23:56 +08001708 // If the specified function has been code-gen'd, return a pointer to the
1709 // function. If not, compile it, or use a stub to implement lazy compilation
1710 // if available.
1711 void *GetPointerToFunctionOrStub(llvm::Function *F) {
1712 // If we have already code generated the function, just return the
1713 // address.
1714 if (void *Addr = GetPointerToGlobalIfAvailable(F))
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001715 return Addr;
1716
Zonr Chang932648d2010-10-13 22:23:56 +08001717 // Get a stub if the target supports it.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001718 return GetLazyFunctionStub(F);
1719 }
1720
Zonr Chang932648d2010-10-13 22:23:56 +08001721 typedef llvm::DenseMap<const llvm::Function*,
1722 void*> FunctionToLazyStubMapTy;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001723 FunctionToLazyStubMapTy mFunctionToLazyStubMap;
1724
Zonr Chang932648d2010-10-13 22:23:56 +08001725 void *GetLazyFunctionStubIfAvailable(llvm::Function *F) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001726 return mFunctionToLazyStubMap.lookup(F);
1727 }
1728
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07001729 std::set<const llvm::Function*> PendingFunctions;
Zonr Chang932648d2010-10-13 22:23:56 +08001730 void *GetLazyFunctionStub(llvm::Function *F) {
1731 // If we already have a lazy stub for this function, recycle it.
1732 void *&Stub = mFunctionToLazyStubMap[F];
1733 if (Stub)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001734 return Stub;
1735
Zonr Chang932648d2010-10-13 22:23:56 +08001736 // In any cases, we should NOT resolve function at runtime (though we are
1737 // able to). We resolve this right now.
1738 void *Actual = NULL;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08001739 if (F->isDeclaration() || F->hasAvailableExternallyLinkage()) {
1740 Actual = GetPointerToFunction(F, /* AbortOnFailure = */false);
1741 // Changing to false because wanting to allow later calls to
1742 // mpTJI->relocate() without aborting. For caching purpose
1743 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001744
Zonr Chang932648d2010-10-13 22:23:56 +08001745 // Codegen a new stub, calling the actual address of the external
1746 // function, if it was resolved.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001747 llvm::TargetJITInfo::StubLayout SL = mpTJI->getStubLayout();
1748 startGVStub(F, SL.Size, SL.Alignment);
1749 Stub = mpTJI->emitFunctionStub(F, Actual, *this);
1750 finishGVStub();
1751
Zonr Chang932648d2010-10-13 22:23:56 +08001752 // We really want the address of the stub in the GlobalAddressMap for the
1753 // JIT, not the address of the external function.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001754 UpdateGlobalMapping(F, Stub);
1755
Zonr Chang932648d2010-10-13 22:23:56 +08001756 if (!Actual)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001757 PendingFunctions.insert(F);
1758 else
Zonr Chang932648d2010-10-13 22:23:56 +08001759 Disassemble(F->getName(), reinterpret_cast<uint8_t*>(Stub),
1760 SL.Size, true);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001761
1762 return Stub;
1763 }
1764
Zonr Chang932648d2010-10-13 22:23:56 +08001765 void *GetPointerToFunction(const llvm::Function *F, bool AbortOnFailure) {
1766 void *Addr = GetPointerToGlobalIfAvailable(F);
1767 if (Addr)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001768 return Addr;
1769
1770 assert((F->isDeclaration() || F->hasAvailableExternallyLinkage()) &&
1771 "Internal error: only external defined function routes here!");
1772
Zonr Chang932648d2010-10-13 22:23:56 +08001773 // Handle the failure resolution by ourselves.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001774 Addr = GetPointerToNamedSymbol(F->getName().str().c_str(),
Zonr Chang932648d2010-10-13 22:23:56 +08001775 /* AbortOnFailure = */ false);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001776
Zonr Chang932648d2010-10-13 22:23:56 +08001777 // If we resolved the symbol to a null address (eg. a weak external)
1778 // return a null pointer let the application handle it.
1779 if (Addr == NULL) {
1780 if (AbortOnFailure)
1781 llvm::report_fatal_error("Could not resolve external function "
1782 "address: " + F->getName());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001783 else
1784 return NULL;
Zonr Chang932648d2010-10-13 22:23:56 +08001785 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001786
1787 AddGlobalMapping(F, Addr);
1788
1789 return Addr;
1790 }
1791
Zonr Chang932648d2010-10-13 22:23:56 +08001792 void *GetPointerToNamedSymbol(const std::string &Name,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001793 bool AbortOnFailure) {
Zonr Chang932648d2010-10-13 22:23:56 +08001794 if (void *Addr = FindRuntimeFunction(Name.c_str()))
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001795 return Addr;
1796
Zonr Chang932648d2010-10-13 22:23:56 +08001797 if (mpSymbolLookupFn)
1798 if (void *Addr = mpSymbolLookupFn(mpSymbolLookupContext, Name.c_str()))
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001799 return Addr;
1800
Zonr Chang932648d2010-10-13 22:23:56 +08001801 if (AbortOnFailure)
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07001802 llvm::report_fatal_error("Program used external symbol '" + Name +
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001803 "' which could not be resolved!");
1804
1805 return NULL;
1806 }
1807
Zonr Chang932648d2010-10-13 22:23:56 +08001808 // Return the address of the specified global variable, possibly emitting it
1809 // to memory if needed. This is used by the Emitter.
1810 void *GetOrEmitGlobalVariable(const llvm::GlobalVariable *GV) {
1811 void *Ptr = GetPointerToGlobalIfAvailable(GV);
1812 if (Ptr)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001813 return Ptr;
1814
Zonr Chang932648d2010-10-13 22:23:56 +08001815 if (GV->isDeclaration() || GV->hasAvailableExternallyLinkage()) {
1816 // If the global is external, just remember the address.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001817 Ptr = GetPointerToNamedSymbol(GV->getName().str(), true);
1818 AddGlobalMapping(GV, Ptr);
1819 } else {
Zonr Chang932648d2010-10-13 22:23:56 +08001820 // If the global hasn't been emitted to memory yet, allocate space and
1821 // emit it into memory.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001822 Ptr = GetMemoryForGV(GV);
1823 AddGlobalMapping(GV, Ptr);
1824 EmitGlobalVariable(GV);
1825 }
1826
1827 return Ptr;
1828 }
1829
Zonr Chang932648d2010-10-13 22:23:56 +08001830 // This method abstracts memory allocation of global variable so that the
1831 // JIT can allocate thread local variables depending on the target.
1832 void *GetMemoryForGV(const llvm::GlobalVariable *GV) {
1833 void *Ptr;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001834
Zonr Chang932648d2010-10-13 22:23:56 +08001835 const llvm::Type *GlobalType = GV->getType()->getElementType();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001836 size_t S = mpTD->getTypeAllocSize(GlobalType);
1837 size_t A = mpTD->getPreferredAlignment(GV);
1838
Zonr Chang932648d2010-10-13 22:23:56 +08001839 if (GV->isThreadLocal()) {
1840 // We can support TLS by
1841 //
1842 // Ptr = TJI.allocateThreadLocalMemory(S);
1843 //
1844 // But I tend not to.
1845 // (should we disable this in the front-end (i.e., slang)?).
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07001846 llvm::report_fatal_error
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001847 ("Compilation of Thread Local Storage (TLS) is disabled!");
1848
Zonr Chang932648d2010-10-13 22:23:56 +08001849 } else if (mpTJI->allocateSeparateGVMemory()) {
1850 if (A <= 8) {
1851 Ptr = malloc(S);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001852 } else {
Zonr Chang932648d2010-10-13 22:23:56 +08001853 // Allocate (S + A) bytes of memory, then use an aligned pointer
1854 // within that space.
1855 Ptr = malloc(S + A);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001856 unsigned int MisAligned = ((intptr_t) Ptr & (A - 1));
Zonr Chang932648d2010-10-13 22:23:56 +08001857 Ptr = reinterpret_cast<uint8_t*>(Ptr) +
1858 (MisAligned ? (A - MisAligned) : 0);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001859 }
1860 } else {
Zonr Chang932648d2010-10-13 22:23:56 +08001861 Ptr = allocateGlobal(S, A);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001862 }
1863
1864 return Ptr;
1865 }
1866
1867 void EmitGlobalVariable(const llvm::GlobalVariable *GV) {
Zonr Chang932648d2010-10-13 22:23:56 +08001868 void *GA = GetPointerToGlobalIfAvailable(GV);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001869
Zonr Chang932648d2010-10-13 22:23:56 +08001870 if (GV->isThreadLocal())
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07001871 llvm::report_fatal_error
1872 ("We don't support Thread Local Storage (TLS)!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001873
Zonr Chang932648d2010-10-13 22:23:56 +08001874 if (GA == NULL) {
1875 // If it's not already specified, allocate memory for the global.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001876 GA = GetMemoryForGV(GV);
1877 AddGlobalMapping(GV, GA);
1878 }
1879
1880 InitializeConstantToMemory(GV->getInitializer(), GA);
1881
Zonr Chang932648d2010-10-13 22:23:56 +08001882 // You can do some statistics on global variable here.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001883 return;
1884 }
1885
1886 typedef std::map<llvm::AssertingVH<llvm::GlobalValue>, void*
1887 > GlobalToIndirectSymMapTy;
1888 GlobalToIndirectSymMapTy GlobalToIndirectSymMap;
1889
Zonr Chang932648d2010-10-13 22:23:56 +08001890 void *GetPointerToGVIndirectSym(llvm::GlobalValue *V, void *Reference) {
1891 // Make sure GV is emitted first, and create a stub containing the fully
1892 // resolved address.
1893 void *GVAddress = GetPointerToGlobal(V, Reference, false);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001894
Zonr Chang932648d2010-10-13 22:23:56 +08001895 // If we already have a stub for this global variable, recycle it.
1896 void *&IndirectSym = GlobalToIndirectSymMap[V];
1897 // Otherwise, codegen a new indirect symbol.
1898 if (!IndirectSym)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001899 IndirectSym = mpTJI->emitGlobalValueIndirectSym(V, GVAddress, *this);
1900
1901 return IndirectSym;
1902 }
1903
Zonr Chang932648d2010-10-13 22:23:56 +08001904 // This is the equivalent of FunctionToLazyStubMap for external functions.
1905 //
1906 // TODO(llvm.org): Of course, external functions don't need a lazy stub.
1907 // It's actually here to make it more likely that far calls
1908 // succeed, but no single stub can guarantee that. I'll
1909 // remove this in a subsequent checkin when I actually fix
1910 // far calls.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001911 std::map<void*, void*> ExternalFnToStubMap;
1912
Zonr Chang932648d2010-10-13 22:23:56 +08001913 // Return a stub for the function at the specified address.
1914 void *GetExternalFunctionStub(void *FnAddr) {
1915 void *&Stub = ExternalFnToStubMap[FnAddr];
1916 if (Stub)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001917 return Stub;
1918
1919 llvm::TargetJITInfo::StubLayout SL = mpTJI->getStubLayout();
1920 startGVStub(0, SL.Size, SL.Alignment);
1921 Stub = mpTJI->emitFunctionStub(0, FnAddr, *this);
1922 finishGVStub();
1923
1924 return Stub;
1925 }
1926
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001927#if defined(USE_DISASSEMBLER)
Zonr Chang932648d2010-10-13 22:23:56 +08001928 const llvm::MCAsmInfo *mpAsmInfo;
1929 const llvm::MCDisassembler *mpDisassmbler;
1930 llvm::MCInstPrinter *mpIP;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001931
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001932 class BufferMemoryObject : public llvm::MemoryObject {
1933 private:
Zonr Chang932648d2010-10-13 22:23:56 +08001934 const uint8_t *mBytes;
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001935 uint64_t mLength;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001936
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001937 public:
1938 BufferMemoryObject(const uint8_t *Bytes, uint64_t Length) :
1939 mBytes(Bytes), mLength(Length) { }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001940
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001941 uint64_t getBase() const { return 0; }
1942 uint64_t getExtent() const { return mLength; }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001943
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001944 int readByte(uint64_t Addr, uint8_t *Byte) const {
Zonr Chang932648d2010-10-13 22:23:56 +08001945 if (Addr > getExtent())
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001946 return -1;
1947 *Byte = mBytes[Addr];
1948 return 0;
1949 }
1950 };
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001951
Shih-wei Liaofdc568d2010-11-19 15:51:13 -08001952 public:
Zonr Chang932648d2010-10-13 22:23:56 +08001953 void Disassemble(const llvm::StringRef &Name, uint8_t *Start,
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001954 size_t Length, bool IsStub) {
Zonr Chang932648d2010-10-13 22:23:56 +08001955 llvm::raw_fd_ostream *OS;
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07001956#if defined(USE_DISASSEMBLER_FILE)
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001957 std::string ErrorInfo;
Zonr Chang932648d2010-10-13 22:23:56 +08001958 OS = new llvm::raw_fd_ostream("/data/local/tmp/out.S",
1959 ErrorInfo,
1960 llvm::raw_fd_ostream::F_Append);
1961 if (!ErrorInfo.empty()) { // some errors occurred
1962 // LOGE("Error in creating disassembly file");
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001963 delete OS;
1964 return;
1965 }
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07001966#else
1967 OS = &llvm::outs();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001968#endif
Zonr Chang932648d2010-10-13 22:23:56 +08001969 *OS << "JIT: Disassembled code: " << Name << ((IsStub) ? " (stub)" : "")
1970 << "\n";
Shih-wei Liao77ed6142010-04-07 12:21:42 -07001971
Zonr Chang932648d2010-10-13 22:23:56 +08001972 if (mpAsmInfo == NULL)
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001973 mpAsmInfo = mpTarget->createAsmInfo(Triple);
Zonr Chang932648d2010-10-13 22:23:56 +08001974 if (mpDisassmbler == NULL)
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001975 mpDisassmbler = mpTarget->createMCDisassembler();
Zonr Chang932648d2010-10-13 22:23:56 +08001976 if (mpIP == NULL)
1977 mpIP = mpTarget->createMCInstPrinter(mpAsmInfo->getAssemblerDialect(),
1978 *mpAsmInfo);
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001979
Zonr Chang932648d2010-10-13 22:23:56 +08001980 const BufferMemoryObject *BufferMObj = new BufferMemoryObject(Start,
1981 Length);
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001982 uint64_t Size;
1983 uint64_t Index;
1984
Zonr Chang932648d2010-10-13 22:23:56 +08001985 for (Index = 0; Index < Length; Index += Size) {
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001986 llvm::MCInst Inst;
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07001987
Zonr Chang932648d2010-10-13 22:23:56 +08001988 if (mpDisassmbler->getInstruction(Inst, Size, *BufferMObj, Index,
1989 /* REMOVED */ llvm::nulls())) {
1990 (*OS).indent(4)
1991 .write("0x", 2)
1992 .write_hex((uint32_t) Start + Index)
1993 .write(':');
Shih-wei Liaocd61af32010-04-29 00:02:57 -07001994 mpIP->printInst(&Inst, *OS);
1995 *OS << "\n";
1996 } else {
1997 if (Size == 0)
Zonr Chang932648d2010-10-13 22:23:56 +08001998 Size = 1; // skip illegible bytes
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07001999 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002000 }
2001
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002002 *OS << "\n";
2003 delete BufferMObj;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002004
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07002005#if defined(USE_DISASSEMBLER_FILE)
Zonr Chang932648d2010-10-13 22:23:56 +08002006 // If you want the disassemble results write to file, uncomment this.
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002007 OS->close();
2008 delete OS;
2009#endif
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002010 return;
2011 }
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002012#else
Zonr Chang932648d2010-10-13 22:23:56 +08002013 inline void Disassemble(const std::string &Name, uint8_t *Start,
2014 size_t Length, bool IsStub) {
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002015 return;
2016 }
Zonr Chang932648d2010-10-13 22:23:56 +08002017#endif // defined(USE_DISASSEMBLER)
2018
Shih-wei Liaofdc568d2010-11-19 15:51:13 -08002019 private:
Zonr Chang932648d2010-10-13 22:23:56 +08002020 // Resolver to undefined symbol in CodeEmitter
2021 BCCSymbolLookupFn mpSymbolLookupFn;
2022 void *mpSymbolLookupContext;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002023
2024 public:
Zonr Chang932648d2010-10-13 22:23:56 +08002025 // Will take the ownership of @MemMgr
2026 explicit CodeEmitter(CodeMemoryManager *pMemMgr)
2027 : mpMemMgr(pMemMgr),
2028 mpTarget(NULL),
2029 mpTJI(NULL),
2030 mpTD(NULL),
2031 mpCurEmitFunction(NULL),
2032 mpConstantPool(NULL),
2033 mpJumpTable(NULL),
2034 mpMMI(NULL),
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002035#if defined(USE_DISASSEMBLER)
Zonr Chang932648d2010-10-13 22:23:56 +08002036 mpAsmInfo(NULL),
2037 mpDisassmbler(NULL),
2038 mpIP(NULL),
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002039#endif
Zonr Chang932648d2010-10-13 22:23:56 +08002040 mpSymbolLookupFn(NULL),
2041 mpSymbolLookupContext(NULL) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002042 return;
2043 }
2044
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07002045 inline global_addresses_const_iterator global_address_begin() const {
2046 return mGlobalAddressMap.begin();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002047 }
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07002048 inline global_addresses_const_iterator global_address_end() const {
2049 return mGlobalAddressMap.end();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002050 }
2051
Logan824dd0a2010-11-20 01:45:54 +08002052 std::vector<oBCCRelocEntry> const &getCachingRelocations() const {
2053 return mCachingRelocations;
2054 }
2055
Zonr Chang932648d2010-10-13 22:23:56 +08002056 void registerSymbolCallback(BCCSymbolLookupFn pFn, BCCvoid *pContext) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002057 mpSymbolLookupFn = pFn;
2058 mpSymbolLookupContext = pContext;
2059 return;
2060 }
2061
Zonr Chang932648d2010-10-13 22:23:56 +08002062 void setTargetMachine(llvm::TargetMachine &TM) {
2063 // Set Target
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002064 mpTarget = &TM.getTarget();
Zonr Chang932648d2010-10-13 22:23:56 +08002065 // Set TargetJITInfo
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002066 mpTJI = TM.getJITInfo();
Zonr Chang932648d2010-10-13 22:23:56 +08002067 // set TargetData
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002068 mpTD = TM.getTargetData();
2069
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002070 assert(!mpTJI->needsGOT() && "We don't support GOT needed target!");
2071
2072 return;
2073 }
2074
Zonr Chang932648d2010-10-13 22:23:56 +08002075 // This callback is invoked when the specified function is about to be code
2076 // generated. This initializes the BufferBegin/End/Ptr fields.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002077 void startFunction(llvm::MachineFunction &F) {
2078 uintptr_t ActualSize = 0;
2079
2080 mpMemMgr->setMemoryWritable();
Zonr Chang932648d2010-10-13 22:23:56 +08002081
2082 // BufferBegin, BufferEnd and CurBufferPtr are all inherited from class
2083 // MachineCodeEmitter, which is the super class of the class
2084 // JITCodeEmitter.
2085 //
2086 // BufferBegin/BufferEnd - Pointers to the start and end of the memory
2087 // allocated for this code buffer.
2088 //
2089 // CurBufferPtr - Pointer to the next byte of memory to fill when emitting
2090 // code. This is guranteed to be in the range
2091 // [BufferBegin, BufferEnd]. If this pointer is at
2092 // BufferEnd, it will never move due to code emission, and
2093 // all code emission requests will be ignored (this is the
2094 // buffer overflow condition).
2095 BufferBegin = CurBufferPtr =
2096 mpMemMgr->startFunctionBody(F.getFunction(), ActualSize);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002097 BufferEnd = BufferBegin + ActualSize;
2098
Zonr Chang932648d2010-10-13 22:23:56 +08002099 if (mpCurEmitFunction == NULL)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002100 mpCurEmitFunction = new EmittedFunctionCode();
2101 mpCurEmitFunction->FunctionBody = BufferBegin;
2102
Zonr Chang932648d2010-10-13 22:23:56 +08002103 // Ensure the constant pool/jump table info is at least 4-byte aligned.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002104 emitAlignment(16);
2105
2106 emitConstantPool(F.getConstantPool());
Zonr Chang932648d2010-10-13 22:23:56 +08002107 if (llvm::MachineJumpTableInfo *MJTI = F.getJumpTableInfo())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002108 initJumpTableInfo(MJTI);
2109
Zonr Chang932648d2010-10-13 22:23:56 +08002110 // About to start emitting the machine code for the function.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002111 emitAlignment(std::max(F.getFunction()->getAlignment(), 8U));
2112
2113 UpdateGlobalMapping(F.getFunction(), CurBufferPtr);
2114
2115 mpCurEmitFunction->Code = CurBufferPtr;
2116
2117 mMBBLocations.clear();
2118
2119 return;
2120 }
2121
Zonr Chang932648d2010-10-13 22:23:56 +08002122 // This callback is invoked when the specified function has finished code
2123 // generation. If a buffer overflow has occurred, this method returns true
2124 // (the callee is required to try again).
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002125 bool finishFunction(llvm::MachineFunction &F) {
Zonr Chang932648d2010-10-13 22:23:56 +08002126 if (CurBufferPtr == BufferEnd) {
2127 // No enough memory
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002128 mpMemMgr->endFunctionBody(F.getFunction(), BufferBegin, CurBufferPtr);
2129 return false;
2130 }
2131
Zonr Chang932648d2010-10-13 22:23:56 +08002132 if (llvm::MachineJumpTableInfo *MJTI = F.getJumpTableInfo())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002133 emitJumpTableInfo(MJTI);
2134
Zonr Chang932648d2010-10-13 22:23:56 +08002135 // FnStart is the start of the text, not the start of the constant pool
2136 // and other per-function data.
2137 uint8_t *FnStart =
2138 reinterpret_cast<uint8_t*>(
2139 GetPointerToGlobalIfAvailable(F.getFunction()));
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002140
Zonr Chang932648d2010-10-13 22:23:56 +08002141 // FnEnd is the end of the function's machine code.
2142 uint8_t *FnEnd = CurBufferPtr;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002143
Zonr Chang932648d2010-10-13 22:23:56 +08002144 if (!mRelocations.empty()) {
Logan824dd0a2010-11-20 01:45:54 +08002145 ptrdiff_t BufferOffset = BufferBegin - mpMemMgr->getCodeMemBase();
2146
Zonr Chang932648d2010-10-13 22:23:56 +08002147 // Resolve the relocations to concrete pointers.
2148 for (int i = 0, e = mRelocations.size(); i != e; i++) {
2149 llvm::MachineRelocation &MR = mRelocations[i];
2150 void *ResultPtr = NULL;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002151
Zonr Chang932648d2010-10-13 22:23:56 +08002152 if (!MR.letTargetResolve()) {
2153 if (MR.isExternalSymbol()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002154 ResultPtr = GetPointerToNamedSymbol(MR.getExternalSymbol(), true);
Logan824dd0a2010-11-20 01:45:54 +08002155
2156 if (MR.mayNeedFarStub()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002157 ResultPtr = GetExternalFunctionStub(ResultPtr);
Logan824dd0a2010-11-20 01:45:54 +08002158 }
2159
Zonr Chang932648d2010-10-13 22:23:56 +08002160 } else if (MR.isGlobalValue()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002161 ResultPtr = GetPointerToGlobal(MR.getGlobalValue(),
2162 BufferBegin
2163 + MR.getMachineCodeOffset(),
2164 MR.mayNeedFarStub());
Zonr Chang932648d2010-10-13 22:23:56 +08002165 } else if (MR.isIndirectSymbol()) {
2166 ResultPtr =
2167 GetPointerToGVIndirectSym(
2168 MR.getGlobalValue(),
2169 BufferBegin + MR.getMachineCodeOffset());
2170 } else if (MR.isBasicBlock()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002171 ResultPtr =
2172 (void*) getMachineBasicBlockAddress(MR.getBasicBlock());
Zonr Chang932648d2010-10-13 22:23:56 +08002173 } else if (MR.isConstantPoolIndex()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002174 ResultPtr =
Zonr Chang932648d2010-10-13 22:23:56 +08002175 (void*) getConstantPoolEntryAddress(MR.getConstantPoolIndex());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002176 } else {
2177 assert(MR.isJumpTableIndex() && "Unknown type of relocation");
2178 ResultPtr =
2179 (void*) getJumpTableEntryAddress(MR.getJumpTableIndex());
2180 }
2181
Logan824dd0a2010-11-20 01:45:54 +08002182 if (!MR.isExternalSymbol() || MR.mayNeedFarStub()) {
2183 // TODO(logan): Cache external symbol relocation entry.
2184 // Currently, we are not caching them. But since Android
2185 // system is using prelink, it is not a problem.
2186
2187 // Cache the relocation result address
2188 mCachingRelocations.push_back(
Logan634bd832010-11-20 09:00:36 +08002189 oBCCRelocEntry(MR.getRelocationType(),
2190 MR.getMachineCodeOffset() + BufferOffset,
Logan824dd0a2010-11-20 01:45:54 +08002191 ResultPtr));
2192 }
2193
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002194 MR.setResultPointer(ResultPtr);
2195 }
2196 }
2197
2198 mpTJI->relocate(BufferBegin, &mRelocations[0], mRelocations.size(),
2199 mpMemMgr->getGOTBase());
2200 }
2201
2202 mpMemMgr->endFunctionBody(F.getFunction(), BufferBegin, CurBufferPtr);
Zonr Chang932648d2010-10-13 22:23:56 +08002203 // CurBufferPtr may have moved beyond FnEnd, due to memory allocation for
2204 // global variables that were referenced in the relocations.
2205 if (CurBufferPtr == BufferEnd)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002206 return false;
2207
Zonr Chang932648d2010-10-13 22:23:56 +08002208 // Now that we've succeeded in emitting the function.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002209 mpCurEmitFunction->Size = CurBufferPtr - BufferBegin;
2210 BufferBegin = CurBufferPtr = 0;
2211
Zonr Chang932648d2010-10-13 22:23:56 +08002212 if (F.getFunction()->hasName())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002213 mEmittedFunctions[F.getFunction()->getNameStr()] = mpCurEmitFunction;
2214 mpCurEmitFunction = NULL;
2215
2216 mRelocations.clear();
2217 mConstPoolAddresses.clear();
2218
Zonr Chang932648d2010-10-13 22:23:56 +08002219 if (mpMMI)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002220 mpMMI->EndFunction();
2221
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07002222 updateFunctionStub(F.getFunction());
2223
Zonr Chang932648d2010-10-13 22:23:56 +08002224 // Mark code region readable and executable if it's not so already.
Shih-wei Liaoc4e4ddf2010-09-24 14:50:26 -07002225 mpMemMgr->setMemoryExecutable();
2226
2227 Disassemble(F.getFunction()->getName(), FnStart, FnEnd - FnStart, false);
2228
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002229 return false;
2230 }
2231
Zonr Chang932648d2010-10-13 22:23:56 +08002232 void startGVStub(const llvm::GlobalValue *GV, unsigned StubSize,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002233 unsigned Alignment) {
2234 mpSavedBufferBegin = BufferBegin;
2235 mpSavedBufferEnd = BufferEnd;
2236 mpSavedCurBufferPtr = CurBufferPtr;
2237
2238 BufferBegin = CurBufferPtr = mpMemMgr->allocateStub(GV, StubSize,
2239 Alignment);
2240 BufferEnd = BufferBegin + StubSize + 1;
2241
2242 return;
2243 }
2244
Zonr Chang932648d2010-10-13 22:23:56 +08002245 void startGVStub(void *Buffer, unsigned StubSize) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002246 mpSavedBufferBegin = BufferBegin;
2247 mpSavedBufferEnd = BufferEnd;
2248 mpSavedCurBufferPtr = CurBufferPtr;
2249
Zonr Chang932648d2010-10-13 22:23:56 +08002250 BufferBegin = CurBufferPtr = reinterpret_cast<uint8_t *>(Buffer);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002251 BufferEnd = BufferBegin + StubSize + 1;
2252
2253 return;
2254 }
2255
2256 void finishGVStub() {
2257 assert(CurBufferPtr != BufferEnd && "Stub overflowed allocated space.");
2258
Zonr Chang932648d2010-10-13 22:23:56 +08002259 // restore
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002260 BufferBegin = mpSavedBufferBegin;
2261 BufferEnd = mpSavedBufferEnd;
2262 CurBufferPtr = mpSavedCurBufferPtr;
2263
2264 return;
2265 }
2266
Zonr Chang932648d2010-10-13 22:23:56 +08002267 // Allocates and fills storage for an indirect GlobalValue, and returns the
2268 // address.
2269 void *allocIndirectGV(const llvm::GlobalValue *GV,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002270 const uint8_t *Buffer, size_t Size,
2271 unsigned Alignment) {
Zonr Chang932648d2010-10-13 22:23:56 +08002272 uint8_t *IndGV = mpMemMgr->allocateStub(GV, Size, Alignment);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002273 memcpy(IndGV, Buffer, Size);
2274 return IndGV;
2275 }
2276
Zonr Chang932648d2010-10-13 22:23:56 +08002277 // Emits a label
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07002278 void emitLabel(llvm::MCSymbol *Label) {
2279 mLabelLocations[Label] = getCurrentPCValue();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002280 return;
2281 }
2282
Zonr Chang932648d2010-10-13 22:23:56 +08002283 // Allocate memory for a global. Unlike allocateSpace, this method does not
2284 // allocate memory in the current output buffer, because a global may live
2285 // longer than the current function.
2286 void *allocateGlobal(uintptr_t Size, unsigned Alignment) {
2287 // Delegate this call through the memory manager.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002288 return mpMemMgr->allocateGlobal(Size, Alignment);
2289 }
2290
Zonr Chang932648d2010-10-13 22:23:56 +08002291 // This should be called by the target when a new basic block is about to be
2292 // emitted. This way the MCE knows where the start of the block is, and can
2293 // implement getMachineBasicBlockAddress.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002294 void StartMachineBasicBlock(llvm::MachineBasicBlock *MBB) {
Zonr Chang932648d2010-10-13 22:23:56 +08002295 if (mMBBLocations.size() <= (unsigned) MBB->getNumber())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002296 mMBBLocations.resize((MBB->getNumber() + 1) * 2);
2297 mMBBLocations[MBB->getNumber()] = getCurrentPCValue();
2298 return;
2299 }
2300
Zonr Chang932648d2010-10-13 22:23:56 +08002301 // Whenever a relocatable address is needed, it should be noted with this
2302 // interface.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002303 void addRelocation(const llvm::MachineRelocation &MR) {
2304 mRelocations.push_back(MR);
2305 return;
2306 }
2307
Zonr Chang932648d2010-10-13 22:23:56 +08002308 // Return the address of the @Index entry in the constant pool that was
2309 // last emitted with the emitConstantPool method.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002310 uintptr_t getConstantPoolEntryAddress(unsigned Index) const {
2311 assert(Index < mpConstantPool->getConstants().size() &&
2312 "Invalid constant pool index!");
2313 return mConstPoolAddresses[Index];
2314 }
2315
Zonr Chang932648d2010-10-13 22:23:56 +08002316 // Return the address of the jump table with index @Index in the function
2317 // that last called initJumpTableInfo.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002318 uintptr_t getJumpTableEntryAddress(unsigned Index) const {
Zonr Chang932648d2010-10-13 22:23:56 +08002319 const std::vector<llvm::MachineJumpTableEntry> &JT =
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002320 mpJumpTable->getJumpTables();
2321
Zonr Chang932648d2010-10-13 22:23:56 +08002322 assert((Index < JT.size()) && "Invalid jump table index!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002323
2324 unsigned int Offset = 0;
2325 unsigned int EntrySize = mpJumpTable->getEntrySize(*mpTD);
2326
Zonr Chang932648d2010-10-13 22:23:56 +08002327 for (unsigned i = 0; i < Index; i++)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002328 Offset += JT[i].MBBs.size();
2329 Offset *= EntrySize;
2330
Zonr Chang932648d2010-10-13 22:23:56 +08002331 return (uintptr_t)(reinterpret_cast<uint8_t*>(mpJumpTableBase) + Offset);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002332 }
2333
Zonr Chang932648d2010-10-13 22:23:56 +08002334 // Return the address of the specified MachineBasicBlock, only usable after
2335 // the label for the MBB has been emitted.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002336 uintptr_t getMachineBasicBlockAddress(llvm::MachineBasicBlock *MBB) const {
2337 assert(mMBBLocations.size() > (unsigned) MBB->getNumber() &&
Zonr Chang932648d2010-10-13 22:23:56 +08002338 mMBBLocations[MBB->getNumber()] &&
2339 "MBB not emitted!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002340 return mMBBLocations[MBB->getNumber()];
2341 }
2342
Zonr Chang932648d2010-10-13 22:23:56 +08002343 // Return the address of the specified LabelID, only usable after the
2344 // LabelID has been emitted.
2345 uintptr_t getLabelAddress(llvm::MCSymbol *Label) const {
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07002346 assert(mLabelLocations.count(Label) && "Label not emitted!");
2347 return mLabelLocations.find(Label)->second;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002348 }
2349
Zonr Chang932648d2010-10-13 22:23:56 +08002350 // Specifies the MachineModuleInfo object. This is used for exception
2351 // handling purposes.
2352 void setModuleInfo(llvm::MachineModuleInfo *Info) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002353 mpMMI = Info;
2354 return;
2355 }
2356
Zonr Chang932648d2010-10-13 22:23:56 +08002357 void updateFunctionStub(const llvm::Function *F) {
2358 // Get the empty stub we generated earlier.
2359 void *Stub;
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07002360 std::set<const llvm::Function*>::iterator I = PendingFunctions.find(F);
Zonr Chang932648d2010-10-13 22:23:56 +08002361 if (I != PendingFunctions.end())
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07002362 Stub = mFunctionToLazyStubMap[F];
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002363 else
2364 return;
2365
Zonr Chang932648d2010-10-13 22:23:56 +08002366 void *Addr = GetPointerToGlobalIfAvailable(F);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002367
2368 assert(Addr != Stub &&
2369 "Function must have non-stub address to be updated.");
2370
Zonr Chang932648d2010-10-13 22:23:56 +08002371 // Tell the target jit info to rewrite the stub at the specified address,
2372 // rather than creating a new one.
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002373 llvm::TargetJITInfo::StubLayout SL = mpTJI->getStubLayout();
2374 startGVStub(Stub, SL.Size);
2375 mpTJI->emitFunctionStub(F, Addr, *this);
2376 finishGVStub();
2377
Zonr Chang932648d2010-10-13 22:23:56 +08002378 Disassemble(F->getName(), reinterpret_cast<uint8_t*>(Stub),
2379 SL.Size, true);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002380
2381 PendingFunctions.erase(I);
2382
2383 return;
2384 }
2385
Zonr Chang932648d2010-10-13 22:23:56 +08002386 // Once you finish the compilation on a translation unit, you can call this
2387 // function to recycle the memory (which is used at compilation time and not
2388 // needed for runtime).
2389 //
2390 // NOTE: You should not call this funtion until the code-gen passes for a
2391 // given module is done. Otherwise, the results is undefined and may
2392 // cause the system crash!
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002393 void releaseUnnecessary() {
2394 mMBBLocations.clear();
2395 mLabelLocations.clear();
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07002396 mGlobalAddressMap.clear();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002397 mFunctionToLazyStubMap.clear();
2398 GlobalToIndirectSymMap.clear();
2399 ExternalFnToStubMap.clear();
2400 PendingFunctions.clear();
2401
2402 return;
2403 }
2404
2405 void reset() {
2406 releaseUnnecessary();
2407
2408 mpSymbolLookupFn = NULL;
2409 mpSymbolLookupContext = NULL;
2410
2411 mpTJI = NULL;
2412 mpTD = NULL;
2413
Zonr Chang932648d2010-10-13 22:23:56 +08002414 for (EmittedFunctionsMapTy::iterator I = mEmittedFunctions.begin(),
2415 E = mEmittedFunctions.end();
2416 I != E;
2417 I++)
2418 if (I->second != NULL)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002419 delete I->second;
2420 mEmittedFunctions.clear();
2421
2422 mpMemMgr->reset();
2423
2424 return;
2425 }
2426
Zonr Chang932648d2010-10-13 22:23:56 +08002427 void *lookup(const char *Name) {
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07002428 return lookup( llvm::StringRef(Name) );
2429 }
2430
Zonr Chang932648d2010-10-13 22:23:56 +08002431 void *lookup(const llvm::StringRef &Name) {
2432 EmittedFunctionsMapTy::const_iterator I =
2433 mEmittedFunctions.find(Name.str());
2434 if (I == mEmittedFunctions.end())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002435 return NULL;
2436 else
2437 return I->second->Code;
2438 }
2439
Zonr Chang932648d2010-10-13 22:23:56 +08002440 void getFunctionNames(BCCsizei *actualFunctionCount,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002441 BCCsizei maxFunctionCount,
Zonr Chang932648d2010-10-13 22:23:56 +08002442 BCCchar **functions) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002443 int functionCount = mEmittedFunctions.size();
2444
Zonr Chang932648d2010-10-13 22:23:56 +08002445 if (actualFunctionCount)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002446 *actualFunctionCount = functionCount;
Zonr Chang932648d2010-10-13 22:23:56 +08002447 if (functionCount > maxFunctionCount)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002448 functionCount = maxFunctionCount;
Zonr Chang932648d2010-10-13 22:23:56 +08002449 if (functions)
2450 for (EmittedFunctionsMapTy::const_iterator
2451 I = mEmittedFunctions.begin(), E = mEmittedFunctions.end();
2452 (I != E) && (functionCount > 0);
2453 I++, functionCount--)
2454 *functions++ = const_cast<BCCchar*>(I->first.c_str());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002455
2456 return;
2457 }
2458
Zonr Chang932648d2010-10-13 22:23:56 +08002459 void getFunctionBinary(BCCchar *label,
2460 BCCvoid **base,
2461 BCCsizei *length) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002462 EmittedFunctionsMapTy::const_iterator I = mEmittedFunctions.find(label);
Zonr Chang932648d2010-10-13 22:23:56 +08002463 if (I == mEmittedFunctions.end()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002464 *base = NULL;
2465 *length = 0;
2466 } else {
2467 *base = I->second->Code;
2468 *length = I->second->Size;
2469 }
2470 return;
2471 }
2472
2473 ~CodeEmitter() {
Zonr Chang932648d2010-10-13 22:23:56 +08002474 delete mpMemMgr;
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002475#if defined(USE_DISASSEMBLER)
Zonr Chang932648d2010-10-13 22:23:56 +08002476 delete mpAsmInfo;
2477 delete mpDisassmbler;
2478 delete mpIP;
Shih-wei Liaocd61af32010-04-29 00:02:57 -07002479#endif
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002480 return;
2481 }
Zonr Chang932648d2010-10-13 22:23:56 +08002482 };
2483 // End of Class CodeEmitter
2484 //////////////////////////////////////////////////////////////////////////////
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002485
Zonr Chang932648d2010-10-13 22:23:56 +08002486 // The CodeEmitter
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002487 llvm::OwningPtr<CodeEmitter> mCodeEmitter;
Zonr Chang932648d2010-10-13 22:23:56 +08002488 CodeEmitter *createCodeEmitter() {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002489 mCodeEmitter.reset(new CodeEmitter(mCodeMemMgr.take()));
2490 return mCodeEmitter.get();
2491 }
2492
2493 BCCSymbolLookupFn mpSymbolLookupFn;
Zonr Chang932648d2010-10-13 22:23:56 +08002494 void *mpSymbolLookupContext;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002495
Zonr Chang932648d2010-10-13 22:23:56 +08002496 llvm::LLVMContext *mContext;
2497 llvm::Module *mModule;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002498
Zonr Chang6e1d6c32010-10-23 11:57:16 +08002499 bool mHasLinked;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002500
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002501 public:
Zonr Chang932648d2010-10-13 22:23:56 +08002502 Compiler()
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002503 : mNeverCache(true),
2504 mCacheNew(false),
2505 mCacheFd(-1),
2506 mCacheMapAddr(NULL),
2507 mCacheHdr(NULL),
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002508 mCacheSize(0),
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002509 mCacheDiff(0),
2510 mCodeDataAddr(NULL),
2511 mpSymbolLookupFn(NULL),
Zonr Chang932648d2010-10-13 22:23:56 +08002512 mpSymbolLookupContext(NULL),
2513 mContext(NULL),
Zonr Chang6e1d6c32010-10-23 11:57:16 +08002514 mModule(NULL),
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002515 mHasLinked(false) /* Turn off linker */ {
Shih-wei Liaoc5611992010-05-09 06:37:55 -07002516 llvm::remove_fatal_error_handler();
2517 llvm::install_fatal_error_handler(LLVMErrorHandler, &mError);
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07002518 mContext = new llvm::LLVMContext();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002519 return;
2520 }
2521
Zonr Chang932648d2010-10-13 22:23:56 +08002522 // interface for BCCscript::registerSymbolCallback()
2523 void registerSymbolCallback(BCCSymbolLookupFn pFn, BCCvoid *pContext) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002524 mpSymbolLookupFn = pFn;
2525 mpSymbolLookupContext = pContext;
2526 return;
2527 }
2528
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002529 int readModule(llvm::Module *module) {
Zonr Changdbee68b2010-10-22 05:02:16 +08002530 GlobalInitialization();
2531 mModule = module;
2532 return hasError();
2533 }
2534
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002535 int readBC(const char *bitcode,
2536 size_t bitcodeSize,
2537 const BCCchar *resName) {
2538 GlobalInitialization();
2539
2540 if (resName) {
2541 // Turn off the default NeverCaching mode
2542 mNeverCache = false;
2543
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002544 mCacheFd = openCacheFile(resName, true /* createIfMissing */);
2545 if (mCacheFd >= 0 && !mCacheNew) { // Just use cache file
2546 return -mCacheFd;
2547 }
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002548 }
2549
2550 llvm::OwningPtr<llvm::MemoryBuffer> MEM;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002551
Zonr Chang932648d2010-10-13 22:23:56 +08002552 if (bitcode == NULL || bitcodeSize <= 0)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002553 return 0;
Shih-wei Liaoc5611992010-05-09 06:37:55 -07002554
Zonr Chang932648d2010-10-13 22:23:56 +08002555 // Package input to object MemoryBuffer
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002556 MEM.reset(llvm::MemoryBuffer::getMemBuffer(
Zonr Chang97f5e612010-10-22 20:38:26 +08002557 llvm::StringRef(bitcode, bitcodeSize)));
2558
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002559 if (MEM.get() == NULL) {
Zonr Chang97f5e612010-10-22 20:38:26 +08002560 setError("Error reading input program bitcode into memory");
2561 return hasError();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002562 }
2563
Zonr Chang932648d2010-10-13 22:23:56 +08002564 // Read the input Bitcode as a Module
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002565 mModule = llvm::ParseBitcodeFile(MEM.get(), *mContext, &mError);
2566 MEM.reset();
Zonr Chang97f5e612010-10-22 20:38:26 +08002567 return hasError();
2568 }
Shih-wei Liaoc5611992010-05-09 06:37:55 -07002569
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002570 int linkBC(const char *bitcode, size_t bitcodeSize) {
2571 llvm::OwningPtr<llvm::MemoryBuffer> MEM;
Zonr Chang97f5e612010-10-22 20:38:26 +08002572
2573 if (bitcode == NULL || bitcodeSize <= 0)
2574 return 0;
2575
2576 if (mModule == NULL) {
2577 setError("No module presents for linking");
2578 return hasError();
2579 }
2580
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002581 MEM.reset(llvm::MemoryBuffer::getMemBuffer(
Zonr Chang97f5e612010-10-22 20:38:26 +08002582 llvm::StringRef(bitcode, bitcodeSize)));
2583
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002584 if (MEM.get() == NULL) {
Zonr Chang97f5e612010-10-22 20:38:26 +08002585 setError("Error reading input library bitcode into memory");
2586 return hasError();
2587 }
2588
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002589 llvm::OwningPtr<llvm::Module> Lib(llvm::ParseBitcodeFile(MEM.get(),
Zonr Chang97f5e612010-10-22 20:38:26 +08002590 *mContext,
2591 &mError));
2592 if (Lib.get() == NULL)
2593 return hasError();
2594
2595 if (llvm::Linker::LinkModules(mModule, Lib.take(), &mError))
2596 return hasError();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002597
Zonr Chang6e1d6c32010-10-23 11:57:16 +08002598 // Everything for linking should be settled down here with no error occurs
2599 mHasLinked = true;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002600 return hasError();
2601 }
2602
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002603
2604 // interface for bccLoadBinary()
2605 int loader() {
2606 // Check File Descriptor
2607 if (mCacheFd < 0) {
2608 LOGE("loading cache from invalid mCacheFd = %d\n", (int)mCacheFd);
2609 goto giveup;
2610 }
2611
2612
2613 // Check File Size
2614 struct stat statCacheFd;
2615 if (fstat(mCacheFd, &statCacheFd) < 0) {
2616 LOGE("unable to stat mCacheFd = %d\n", (int)mCacheFd);
2617 goto giveup;
2618 }
2619
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002620 mCacheSize = statCacheFd.st_size;
2621
2622 if (mCacheSize < sizeof(oBCCHeader) ||
2623 mCacheSize <= MaxCodeSize + MaxGlobalVarSize) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002624 LOGE("mCacheFd %d is too small to be correct\n", (int)mCacheFd);
2625 goto giveup;
2626 }
2627
2628
2629 // Read File Content
2630 {
2631#ifdef BCC_CODE_ADDR
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002632 off_t heuristicCodeOffset = mCacheSize - MaxCodeSize - MaxGlobalVarSize;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002633
2634 mCodeDataAddr = (char *) mmap(reinterpret_cast<void*>(BCC_CODE_ADDR),
2635 MaxCodeSize + MaxGlobalVarSize,
2636 PROT_READ | PROT_EXEC | PROT_WRITE,
2637 MAP_PRIVATE | MAP_FIXED,
2638 mCacheFd, heuristicCodeOffset);
2639
2640 if (mCodeDataAddr == MAP_FAILED) {
2641 LOGE("unable to mmap .oBBC cache code/data: %s\n", strerror(errno));
2642 flock(mCacheFd, LOCK_UN);
2643 goto giveup;
2644 }
2645
2646 mCacheMapAddr = (char *)malloc(heuristicCodeOffset);
2647
2648 if (!mCacheMapAddr) {
2649 flock(mCacheFd, LOCK_UN);
2650 LOGE("allocation failed.\n");
2651 // TODO(all)
2652 goto bail;
2653 }
2654
2655 size_t nread = TEMP_FAILURE_RETRY1(read(mCacheFd, mCacheMapAddr,
2656 heuristicCodeOffset));
2657
2658 flock(mCacheFd, LOCK_UN);
2659
2660 if (nread != (size_t)heuristicCodeOffset) {
2661 LOGE("read(mCacheFd) failed\n");
2662 free(mCacheMapAddr);
2663 goto bail;
2664 }
2665
2666 mCacheHdr = reinterpret_cast<oBCCHeader *>(mCacheMapAddr);
2667
2668 if (mCacheHdr->codeOffset != (uint32_t)heuristicCodeOffset) {
2669 LOGE("assertion failed: heuristic code offset is not correct.\n");
2670 goto bail;
2671 }
2672#else
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002673 mCacheMapAddr = (char *) mmap(0, mCacheSize,
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002674 PROT_READ | PROT_EXEC | PROT_WRITE,
2675 MAP_PRIVATE, mCacheFd, 0);
2676
Logan798280d2010-11-20 04:06:16 +08002677 if (mCacheMapAddr == MAP_FAILED) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002678 LOGE("unable to mmap .oBBC cache: %s\n", strerror(errno));
2679 flock(mCacheFd, LOCK_UN);
2680 goto giveup;
2681 }
2682
2683 flock(mCacheFd, LOCK_UN);
2684
2685 mCacheHdr = reinterpret_cast<oBCCHeader *>(mCacheMapAddr);
2686
2687 mCodeDataAddr = mCacheMapAddr + mCacheHdr->codeOffset;
2688#endif
2689 }
2690
2691
2692 // Verify the Cache File
2693 if (memcmp(mCacheHdr->magic, OBCC_MAGIC, 4) != 0) {
2694 LOGE("bad magic word\n");
2695 goto bail;
2696 }
2697
2698 if (memcmp(mCacheHdr->magicVersion, OBCC_MAGIC_VERS, 4) != 0) {
2699 LOGE("bad oBCC version 0x%08x\n",
2700 *reinterpret_cast<uint32_t *>(mCacheHdr->magicVersion));
2701 goto bail;
2702 }
2703
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002704 if (mCacheSize < mCacheHdr->relocOffset +
Logan824dd0a2010-11-20 01:45:54 +08002705 mCacheHdr->relocCount * sizeof(oBCCRelocEntry)) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002706 LOGE("relocate table overflow\n");
2707 goto bail;
2708 }
2709
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002710 if (mCacheSize < mCacheHdr->exportVarsOffset +
2711 mCacheHdr->exportVarsCount * sizeof(uint32_t)) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002712 LOGE("export variables table overflow\n");
2713 goto bail;
2714 }
2715
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002716 if (mCacheSize < mCacheHdr->exportFuncsOffset +
2717 mCacheHdr->exportFuncsCount * sizeof(uint32_t)) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002718 LOGE("export functions table overflow\n");
2719 goto bail;
2720 }
2721
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002722 if (mCacheSize < mCacheHdr->exportPragmasOffset +
2723 mCacheHdr->exportPragmasCount * sizeof(uint32_t)) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002724 LOGE("export pragmas table overflow\n");
2725 goto bail;
2726 }
2727
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002728 if (mCacheSize < mCacheHdr->codeOffset + mCacheHdr->codeSize) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002729 LOGE("code cache overflow\n");
2730 goto bail;
2731 }
2732
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002733 if (mCacheSize < mCacheHdr->dataOffset + mCacheHdr->dataSize) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002734 LOGE("data (global variable) cache overflow\n");
2735 goto bail;
2736 }
2737
2738
2739 // Relocate
2740 {
2741 mCacheDiff = mCodeDataAddr -
2742 reinterpret_cast<char *>(mCacheHdr->cachedCodeDataAddr);
2743
2744#ifdef BCC_CODE_ADDR
2745 if (mCacheDiff != 0) {
2746 LOGE("mCacheDiff should be zero but mCacheDiff = %d\n", mCacheDiff);
2747 goto bail;
2748 }
2749#else
Logan7f00bef2010-11-20 02:01:48 +08002750 if (mCacheHdr->rootAddr) {
2751 mCacheHdr->rootAddr += mCacheDiff;
2752 }
2753
2754 if (mCacheHdr->initAddr) {
2755 mCacheHdr->initAddr += mCacheDiff;
2756 }
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002757
Logan824dd0a2010-11-20 01:45:54 +08002758 oBCCRelocEntry *cachedRelocTable =
2759 reinterpret_cast<oBCCRelocEntry *>(mCacheMapAddr +
2760 mCacheHdr->relocOffset);
2761
2762 std::vector<llvm::MachineRelocation> relocations;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002763
2764 // Read in the relocs
2765 for (size_t i = 0; i < mCacheHdr->relocCount; i++) {
Logan824dd0a2010-11-20 01:45:54 +08002766 oBCCRelocEntry *entry = &cachedRelocTable[i];
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002767
Logan824dd0a2010-11-20 01:45:54 +08002768 llvm::MachineRelocation reloc =
2769 llvm::MachineRelocation::getGV((uintptr_t)entry->relocOffset,
2770 (unsigned)entry->relocType, 0, 0);
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002771
Logan824dd0a2010-11-20 01:45:54 +08002772 reloc.setResultPointer(
2773 reinterpret_cast<char *>(entry->cachedResultAddr) + mCacheDiff);
2774
2775 relocations.push_back(reloc);
2776 }
2777
2778 // Rewrite machine code using llvm::TargetJITInfo relocate
2779 {
2780 llvm::TargetMachine *TM = NULL;
2781 const llvm::Target *Target;
2782 std::string FeaturesStr;
2783
2784 // Create TargetMachine
2785 Target = llvm::TargetRegistry::lookupTarget(Triple, mError);
2786 if (hasError())
2787 goto bail;
2788
2789 if (!CPU.empty() || !Features.empty()) {
2790 llvm::SubtargetFeatures F;
2791 F.setCPU(CPU);
2792 for (std::vector<std::string>::const_iterator I = Features.begin(),
2793 E = Features.end(); I != E; I++)
2794 F.AddFeature(*I);
2795 FeaturesStr = F.getString();
2796 }
2797
2798 TM = Target->createTargetMachine(Triple, FeaturesStr);
2799 if (TM == NULL) {
2800 setError("Failed to create target machine implementation for the"
2801 " specified triple '" + Triple + "'");
2802 goto bail;
2803 }
2804
2805 TM->getJITInfo()->relocate(mCodeDataAddr,
2806 &relocations[0], relocations.size(),
2807 (unsigned char *)mCodeDataAddr+MaxCodeSize);
2808
Shih-wei Liaofdc568d2010-11-19 15:51:13 -08002809 if (mCodeEmitter.get()) {
2810 mCodeEmitter->Disassemble(llvm::StringRef("cache"),
2811 reinterpret_cast<uint8_t*>(mCodeDataAddr),
2812 2 * 1024 /*MaxCodeSize*/,
2813 false);
2814 }
2815
Logan824dd0a2010-11-20 01:45:54 +08002816 delete TM;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002817 }
2818#endif
2819 }
2820
2821 return 0;
2822
2823 bail:
2824#ifdef BCC_CODE_ADDR
2825 if (munmap(mCodeDataAddr, MaxCodeSize + MaxGlobalVarSize) != 0) {
2826 LOGE("munmap failed: %s\n", strerror(errno));
2827 }
2828
2829 if (mCacheMapAddr) {
2830 free(mCacheMapAddr);
2831 }
2832#else
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08002833 if (munmap(mCacheMapAddr, mCacheSize) != 0) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002834 LOGE("munmap failed: %s\n", strerror(errno));
2835 }
2836#endif
2837
2838 giveup:
2839 return 1;
2840 }
2841
2842 // interace for bccCompileBC()
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002843 int compile() {
Zonr Chang932648d2010-10-13 22:23:56 +08002844 llvm::TargetData *TD = NULL;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002845
Zonr Chang932648d2010-10-13 22:23:56 +08002846 llvm::TargetMachine *TM = NULL;
2847 const llvm::Target *Target;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002848 std::string FeaturesStr;
2849
Zonr Chang932648d2010-10-13 22:23:56 +08002850 llvm::FunctionPassManager *CodeGenPasses = NULL;
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07002851
Zonr Chang932648d2010-10-13 22:23:56 +08002852 const llvm::NamedMDNode *PragmaMetadata;
2853 const llvm::NamedMDNode *ExportVarMetadata;
2854 const llvm::NamedMDNode *ExportFuncMetadata;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002855
Zonr Chang932648d2010-10-13 22:23:56 +08002856 if (mModule == NULL) // No module was loaded
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002857 return 0;
2858
Zonr Chang932648d2010-10-13 22:23:56 +08002859 // Create TargetMachine
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002860 Target = llvm::TargetRegistry::lookupTarget(Triple, mError);
Zonr Chang932648d2010-10-13 22:23:56 +08002861 if (hasError())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002862 goto on_bcc_compile_error;
2863
Zonr Chang932648d2010-10-13 22:23:56 +08002864 if (!CPU.empty() || !Features.empty()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002865 llvm::SubtargetFeatures F;
2866 F.setCPU(CPU);
Zonr Chang932648d2010-10-13 22:23:56 +08002867 for (std::vector<std::string>::const_iterator I = Features.begin(),
2868 E = Features.end();
2869 I != E;
2870 I++)
2871 F.AddFeature(*I);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002872 FeaturesStr = F.getString();
2873 }
2874
2875 TM = Target->createTargetMachine(Triple, FeaturesStr);
Zonr Chang932648d2010-10-13 22:23:56 +08002876 if (TM == NULL) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002877 setError("Failed to create target machine implementation for the"
2878 " specified triple '" + Triple + "'");
2879 goto on_bcc_compile_error;
2880 }
2881
Zonr Chang932648d2010-10-13 22:23:56 +08002882 // Create memory manager for creation of code emitter later.
2883 if (!mCodeMemMgr.get() && !createCodeMemoryManager()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002884 setError("Failed to startup memory management for further compilation");
2885 goto on_bcc_compile_error;
2886 }
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002887 mCodeDataAddr = (char *) (mCodeMemMgr.get()->getCodeMemBase());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002888
Zonr Chang932648d2010-10-13 22:23:56 +08002889 // Create code emitter
2890 if (!mCodeEmitter.get()) {
2891 if (!createCodeEmitter()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002892 setError("Failed to create machine code emitter to complete"
2893 " the compilation");
2894 goto on_bcc_compile_error;
2895 }
2896 } else {
Zonr Chang932648d2010-10-13 22:23:56 +08002897 // Reuse the code emitter
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002898 mCodeEmitter->reset();
2899 }
2900
2901 mCodeEmitter->setTargetMachine(*TM);
2902 mCodeEmitter->registerSymbolCallback(mpSymbolLookupFn,
2903 mpSymbolLookupContext);
2904
Zonr Chang932648d2010-10-13 22:23:56 +08002905 // Get target data from Module
Shih-wei Liao77ed6142010-04-07 12:21:42 -07002906 TD = new llvm::TargetData(mModule);
Zonr Chang6e1d6c32010-10-23 11:57:16 +08002907
Zonr Chang5d35b972010-10-23 14:36:47 +08002908 // Load named metadata
2909 ExportVarMetadata = mModule->getNamedMetadata(ExportVarMetadataName);
2910 ExportFuncMetadata = mModule->getNamedMetadata(ExportFuncMetadataName);
2911 PragmaMetadata = mModule->getNamedMetadata(PragmaMetadataName);
2912
Zonr Chang6e1d6c32010-10-23 11:57:16 +08002913 // Create LTO passes and run them on the mModule
2914 if (mHasLinked) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08002915 llvm::TimePassesIsEnabled = true; // TODO(all)
Zonr Chang6e1d6c32010-10-23 11:57:16 +08002916 llvm::PassManager LTOPasses;
Zonr Chang5d35b972010-10-23 14:36:47 +08002917 LTOPasses.add(new llvm::TargetData(*TD));
2918
2919 std::vector<const char*> ExportSymbols;
2920
2921 // A workaround for getting export variable and function name. Will refine
2922 // it soon.
2923 if (ExportVarMetadata) {
2924 for (int i = 0, e = ExportVarMetadata->getNumOperands(); i != e; i++) {
2925 llvm::MDNode *ExportVar = ExportVarMetadata->getOperand(i);
2926 if (ExportVar != NULL && ExportVar->getNumOperands() > 1) {
2927 llvm::Value *ExportVarNameMDS = ExportVar->getOperand(0);
2928 if (ExportVarNameMDS->getValueID() == llvm::Value::MDStringVal) {
2929 llvm::StringRef ExportVarName =
2930 static_cast<llvm::MDString*>(ExportVarNameMDS)->getString();
2931 ExportSymbols.push_back(ExportVarName.data());
2932 }
2933 }
2934 }
2935 }
2936
2937 if (ExportFuncMetadata) {
2938 for (int i = 0, e = ExportFuncMetadata->getNumOperands(); i != e; i++) {
2939 llvm::MDNode *ExportFunc = ExportFuncMetadata->getOperand(i);
2940 if (ExportFunc != NULL && ExportFunc->getNumOperands() > 0) {
2941 llvm::Value *ExportFuncNameMDS = ExportFunc->getOperand(0);
2942 if (ExportFuncNameMDS->getValueID() == llvm::Value::MDStringVal) {
2943 llvm::StringRef ExportFuncName =
2944 static_cast<llvm::MDString*>(ExportFuncNameMDS)->getString();
2945 ExportSymbols.push_back(ExportFuncName.data());
2946 }
2947 }
2948 }
2949 }
2950 // root() and init() are born to be exported
2951 ExportSymbols.push_back("root");
2952 ExportSymbols.push_back("init");
2953
Zonr Change5c7a542010-10-24 01:07:27 +08002954 // We now create passes list performing LTO. These are copied from
2955 // (including comments) llvm::createStandardLTOPasses().
2956
2957 // Internalize all other symbols not listed in ExportSymbols
Zonr Chang5d35b972010-10-23 14:36:47 +08002958 LTOPasses.add(llvm::createInternalizePass(ExportSymbols));
Zonr Chang6e1d6c32010-10-23 11:57:16 +08002959
Zonr Change5c7a542010-10-24 01:07:27 +08002960 // Propagate constants at call sites into the functions they call. This
2961 // opens opportunities for globalopt (and inlining) by substituting
2962 // function pointers passed as arguments to direct uses of functions.
2963 LTOPasses.add(llvm::createIPSCCPPass());
2964
2965 // Now that we internalized some globals, see if we can hack on them!
2966 LTOPasses.add(llvm::createGlobalOptimizerPass());
2967
2968 // Linking modules together can lead to duplicated global constants, only
2969 // keep one copy of each constant...
2970 LTOPasses.add(llvm::createConstantMergePass());
2971
2972 // Remove unused arguments from functions...
2973 LTOPasses.add(llvm::createDeadArgEliminationPass());
2974
2975 // Reduce the code after globalopt and ipsccp. Both can open up
2976 // significant simplification opportunities, and both can propagate
2977 // functions through function pointers. When this happens, we often have
2978 // to resolve varargs calls, etc, so let instcombine do this.
2979 LTOPasses.add(llvm::createInstructionCombiningPass());
2980
2981 // Inline small functions
2982 LTOPasses.add(llvm::createFunctionInliningPass());
2983
2984 // Remove dead EH info.
2985 LTOPasses.add(llvm::createPruneEHPass());
2986
2987 // Internalize the globals again after inlining
2988 LTOPasses.add(llvm::createGlobalOptimizerPass());
2989
2990 // Remove dead functions.
2991 LTOPasses.add(llvm::createGlobalDCEPass());
2992
2993 // If we didn't decide to inline a function, check to see if we can
2994 // transform it to pass arguments by value instead of by reference.
2995 LTOPasses.add(llvm::createArgumentPromotionPass());
2996
2997 // The IPO passes may leave cruft around. Clean up after them.
2998 LTOPasses.add(llvm::createInstructionCombiningPass());
2999 LTOPasses.add(llvm::createJumpThreadingPass());
3000
3001 // Break up allocas
3002 LTOPasses.add(llvm::createScalarReplAggregatesPass());
3003
3004 // Run a few AA driven optimizations here and now, to cleanup the code.
3005 LTOPasses.add(llvm::createFunctionAttrsPass()); // Add nocapture.
3006 LTOPasses.add(llvm::createGlobalsModRefPass()); // IP alias analysis.
3007
3008 // Hoist loop invariants.
3009 LTOPasses.add(llvm::createLICMPass());
3010
3011 // Remove redundancies.
3012 LTOPasses.add(llvm::createGVNPass());
3013
3014 // Remove dead memcpys.
3015 LTOPasses.add(llvm::createMemCpyOptPass());
3016
3017 // Nuke dead stores.
3018 LTOPasses.add(llvm::createDeadStoreEliminationPass());
3019
3020 // Cleanup and simplify the code after the scalar optimizations.
3021 LTOPasses.add(llvm::createInstructionCombiningPass());
3022
3023 LTOPasses.add(llvm::createJumpThreadingPass());
3024
3025 // Delete basic blocks, which optimization passes may have killed.
3026 LTOPasses.add(llvm::createCFGSimplificationPass());
3027
3028 // Now that we have optimized the program, discard unreachable functions.
3029 LTOPasses.add(llvm::createGlobalDCEPass());
3030
Zonr Chang6e1d6c32010-10-23 11:57:16 +08003031 LTOPasses.run(*mModule);
3032 }
3033
Zonr Chang932648d2010-10-13 22:23:56 +08003034 // Create code-gen pass to run the code emitter
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003035 CodeGenPasses = new llvm::FunctionPassManager(mModule);
Zonr Chang932648d2010-10-13 22:23:56 +08003036 CodeGenPasses->add(TD); // Will take the ownership of TD
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003037
Zonr Chang932648d2010-10-13 22:23:56 +08003038 if (TM->addPassesToEmitMachineCode(*CodeGenPasses,
3039 *mCodeEmitter,
3040 CodeGenOptLevel)) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003041 setError("The machine code emission is not supported by BCC on target '"
3042 + Triple + "'");
3043 goto on_bcc_compile_error;
3044 }
3045
Zonr Chang932648d2010-10-13 22:23:56 +08003046 // Run the pass (the code emitter) on every non-declaration function in the
3047 // module
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003048 CodeGenPasses->doInitialization();
Zonr Chang932648d2010-10-13 22:23:56 +08003049 for (llvm::Module::iterator I = mModule->begin(), E = mModule->end();
3050 I != E;
3051 I++)
3052 if (!I->isDeclaration())
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003053 CodeGenPasses->run(*I);
Shih-wei Liao066d5ef2010-05-11 03:28:39 -07003054
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003055 CodeGenPasses->doFinalization();
3056
Zonr Chang932648d2010-10-13 22:23:56 +08003057 // Copy the global address mapping from code emitter and remapping
Zonr Chang932648d2010-10-13 22:23:56 +08003058 if (ExportVarMetadata) {
3059 for (int i = 0, e = ExportVarMetadata->getNumOperands(); i != e; i++) {
3060 llvm::MDNode *ExportVar = ExportVarMetadata->getOperand(i);
3061 if (ExportVar != NULL && ExportVar->getNumOperands() > 1) {
3062 llvm::Value *ExportVarNameMDS = ExportVar->getOperand(0);
3063 if (ExportVarNameMDS->getValueID() == llvm::Value::MDStringVal) {
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003064 llvm::StringRef ExportVarName =
3065 static_cast<llvm::MDString*>(ExportVarNameMDS)->getString();
Zonr Chang932648d2010-10-13 22:23:56 +08003066 CodeEmitter::global_addresses_const_iterator I, E;
3067 for (I = mCodeEmitter->global_address_begin(),
3068 E = mCodeEmitter->global_address_end();
3069 I != E;
3070 I++) {
3071 if (I->first->getValueID() != llvm::Value::GlobalVariableVal)
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003072 continue;
Zonr Chang932648d2010-10-13 22:23:56 +08003073 if (ExportVarName == I->first->getName()) {
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003074 mExportVars.push_back(I->second);
3075 break;
3076 }
3077 }
Zonr Chang932648d2010-10-13 22:23:56 +08003078 if (I != mCodeEmitter->global_address_end())
3079 continue; // found
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003080 }
3081 }
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003082 // if reaching here, we know the global variable record in metadata is
3083 // not found. So we make an empty slot
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003084 mExportVars.push_back(NULL);
3085 }
3086 assert((mExportVars.size() == ExportVarMetadata->getNumOperands()) &&
3087 "Number of slots doesn't match the number of export variables!");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003088 }
3089
Zonr Chang932648d2010-10-13 22:23:56 +08003090 if (ExportFuncMetadata) {
3091 for (int i = 0, e = ExportFuncMetadata->getNumOperands(); i != e; i++) {
3092 llvm::MDNode *ExportFunc = ExportFuncMetadata->getOperand(i);
3093 if (ExportFunc != NULL && ExportFunc->getNumOperands() > 0) {
3094 llvm::Value *ExportFuncNameMDS = ExportFunc->getOperand(0);
3095 if (ExportFuncNameMDS->getValueID() == llvm::Value::MDStringVal) {
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07003096 llvm::StringRef ExportFuncName =
3097 static_cast<llvm::MDString*>(ExportFuncNameMDS)->getString();
3098 mExportFuncs.push_back(mCodeEmitter->lookup(ExportFuncName));
3099 }
3100 }
3101 }
3102 }
3103
Zonr Chang932648d2010-10-13 22:23:56 +08003104 // Tell code emitter now can release the memory using during the JIT since
3105 // we have done the code emission
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003106 mCodeEmitter->releaseUnnecessary();
3107
Zonr Chang932648d2010-10-13 22:23:56 +08003108 // Finally, read pragma information from the metadata node of the @Module if
3109 // any.
Zonr Chang932648d2010-10-13 22:23:56 +08003110 if (PragmaMetadata)
3111 for (int i = 0, e = PragmaMetadata->getNumOperands(); i != e; i++) {
3112 llvm::MDNode *Pragma = PragmaMetadata->getOperand(i);
3113 if (Pragma != NULL &&
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003114 Pragma->getNumOperands() == 2 /* should have exactly 2 operands */) {
Zonr Chang932648d2010-10-13 22:23:56 +08003115 llvm::Value *PragmaNameMDS = Pragma->getOperand(0);
3116 llvm::Value *PragmaValueMDS = Pragma->getOperand(1);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003117
Zonr Chang932648d2010-10-13 22:23:56 +08003118 if ((PragmaNameMDS->getValueID() == llvm::Value::MDStringVal) &&
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003119 (PragmaValueMDS->getValueID() == llvm::Value::MDStringVal)) {
3120 llvm::StringRef PragmaName =
3121 static_cast<llvm::MDString*>(PragmaNameMDS)->getString();
3122 llvm::StringRef PragmaValue =
3123 static_cast<llvm::MDString*>(PragmaValueMDS)->getString();
3124
Zonr Chang932648d2010-10-13 22:23:56 +08003125 mPragmas.push_back(
3126 std::make_pair(std::string(PragmaName.data(),
3127 PragmaName.size()),
3128 std::string(PragmaValue.data(),
3129 PragmaValue.size())));
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003130 }
3131 }
3132 }
3133
3134 on_bcc_compile_error:
Zonr Chang932648d2010-10-13 22:23:56 +08003135 // LOGE("on_bcc_compiler_error");
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003136 if (CodeGenPasses) {
3137 delete CodeGenPasses;
3138 } else if (TD) {
3139 delete TD;
3140 }
3141 if (TM)
3142 delete TM;
3143
Shih-wei Liao066d5ef2010-05-11 03:28:39 -07003144 if (mError.empty()) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003145 if (!mNeverCache && mCacheFd >= 0 && mCacheNew) {
3146 genCacheFile();
3147 flock(mCacheFd, LOCK_UN);
3148 }
3149
Shih-wei Liao066d5ef2010-05-11 03:28:39 -07003150 return false;
3151 }
3152
Zonr Chang932648d2010-10-13 22:23:56 +08003153 // LOGE(getErrorMessage());
Shih-wei Liao066d5ef2010-05-11 03:28:39 -07003154 return true;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003155 }
3156
Zonr Chang932648d2010-10-13 22:23:56 +08003157 // interface for bccGetScriptInfoLog()
3158 char *getErrorMessage() {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003159 return const_cast<char*>(mError.c_str());
3160 }
3161
Zonr Chang932648d2010-10-13 22:23:56 +08003162 // interface for bccGetScriptLabel()
3163 void *lookup(const char *name) {
3164 void *addr = NULL;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003165 if (!mNeverCache && mCacheFd >= 0 && !mCacheNew) {
3166 if (!strcmp(name, "root")) {
3167 addr = reinterpret_cast<void *>(mCacheHdr->rootAddr);
3168 } else if (!strcmp(name, "init")) {
3169 addr = reinterpret_cast<void *>(mCacheHdr->initAddr);
3170 }
3171 return addr;
3172 }
3173
Zonr Chang932648d2010-10-13 22:23:56 +08003174 if (mCodeEmitter.get())
3175 // Find function pointer
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003176 addr = mCodeEmitter->lookup(name);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003177 return addr;
3178 }
3179
Zonr Chang932648d2010-10-13 22:23:56 +08003180 // Interface for bccGetExportVars()
3181 void getExportVars(BCCsizei *actualVarCount,
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003182 BCCsizei maxVarCount,
Zonr Chang932648d2010-10-13 22:23:56 +08003183 BCCvoid **vars) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003184 int varCount;
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003185
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003186 if (!mNeverCache && mCacheFd >= 0 && !mCacheNew) {
3187 varCount = static_cast<int>(mCacheHdr->exportVarsCount);
3188 if (actualVarCount)
3189 *actualVarCount = varCount;
3190 if (varCount > maxVarCount)
3191 varCount = maxVarCount;
3192 if (vars) {
3193 uint32_t *cachedVars = (uint32_t *)(mCacheMapAddr +
3194 mCacheHdr->exportVarsOffset);
3195
3196 for (int i = 0; i < varCount; i++) {
3197 *vars++ = (BCCvoid *)(reinterpret_cast<char *>(*cachedVars) +
3198 mCacheDiff);
3199 cachedVars++;
3200 }
3201 }
3202 return;
3203 }
3204
3205 varCount = mExportVars.size();
Zonr Chang932648d2010-10-13 22:23:56 +08003206 if (actualVarCount)
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003207 *actualVarCount = varCount;
Zonr Chang932648d2010-10-13 22:23:56 +08003208 if (varCount > maxVarCount)
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003209 varCount = maxVarCount;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003210 if (vars) {
Zonr Chang932648d2010-10-13 22:23:56 +08003211 for (ExportVarList::const_iterator I = mExportVars.begin(),
3212 E = mExportVars.end();
3213 I != E;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003214 I++) {
Zonr Chang932648d2010-10-13 22:23:56 +08003215 *vars++ = *I;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003216 }
3217 }
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003218
3219 return;
3220 }
3221
Zonr Chang932648d2010-10-13 22:23:56 +08003222 // Interface for bccGetExportFuncs()
3223 void getExportFuncs(BCCsizei *actualFuncCount,
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07003224 BCCsizei maxFuncCount,
Zonr Chang932648d2010-10-13 22:23:56 +08003225 BCCvoid **funcs) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003226 int funcCount;
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07003227
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003228 if (!mNeverCache && mCacheFd >= 0 && !mCacheNew) {
3229 funcCount = static_cast<int>(mCacheHdr->exportFuncsCount);
3230 if (actualFuncCount)
3231 *actualFuncCount = funcCount;
3232 if (funcCount > maxFuncCount)
3233 funcCount = maxFuncCount;
3234 if (funcs) {
3235 uint32_t *cachedFuncs = (uint32_t *)(mCacheMapAddr +
3236 mCacheHdr->exportFuncsOffset);
3237
3238 for (int i = 0; i < funcCount; i++) {
3239 *funcs++ = (BCCvoid *)(reinterpret_cast<char *>(*cachedFuncs) +
3240 mCacheDiff);
3241 cachedFuncs++;
3242 }
3243 }
3244 return;
3245 }
3246
3247 funcCount = mExportFuncs.size();
Zonr Chang932648d2010-10-13 22:23:56 +08003248 if (actualFuncCount)
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07003249 *actualFuncCount = funcCount;
Zonr Chang932648d2010-10-13 22:23:56 +08003250 if (funcCount > maxFuncCount)
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07003251 funcCount = maxFuncCount;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003252 if (funcs) {
Zonr Chang932648d2010-10-13 22:23:56 +08003253 for (ExportFuncList::const_iterator I = mExportFuncs.begin(),
3254 E = mExportFuncs.end();
3255 I != E;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003256 I++) {
Zonr Chang932648d2010-10-13 22:23:56 +08003257 *funcs++ = *I;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003258 }
3259 }
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07003260
3261 return;
3262 }
3263
Zonr Chang932648d2010-10-13 22:23:56 +08003264 // Interface for bccGetPragmas()
3265 void getPragmas(BCCsizei *actualStringCount,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003266 BCCsizei maxStringCount,
Zonr Chang932648d2010-10-13 22:23:56 +08003267 BCCchar **strings) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003268 int stringCount;
3269 if (!mNeverCache && mCacheFd >= 0 && !mCacheNew) {
3270 if (actualStringCount)
3271 *actualStringCount = 0; // XXX
3272 return;
3273 }
3274
3275 stringCount = mPragmas.size() * 2;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003276
Zonr Chang932648d2010-10-13 22:23:56 +08003277 if (actualStringCount)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003278 *actualStringCount = stringCount;
Zonr Chang932648d2010-10-13 22:23:56 +08003279 if (stringCount > maxStringCount)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003280 stringCount = maxStringCount;
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003281 if (strings) {
Zonr Chang932648d2010-10-13 22:23:56 +08003282 for (PragmaList::const_iterator it = mPragmas.begin();
3283 stringCount > 0;
3284 stringCount -= 2, it++) {
3285 *strings++ = const_cast<BCCchar*>(it->first.c_str());
3286 *strings++ = const_cast<BCCchar*>(it->second.c_str());
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003287 }
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003288 }
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003289
3290 return;
3291 }
3292
Zonr Chang932648d2010-10-13 22:23:56 +08003293 // Interface for bccGetFunctions()
3294 void getFunctions(BCCsizei *actualFunctionCount,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003295 BCCsizei maxFunctionCount,
Zonr Chang932648d2010-10-13 22:23:56 +08003296 BCCchar **functions) {
3297 if (mCodeEmitter.get())
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07003298 mCodeEmitter->getFunctionNames(actualFunctionCount,
3299 maxFunctionCount,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003300 functions);
3301 else
3302 *actualFunctionCount = 0;
3303
3304 return;
3305 }
3306
Zonr Chang932648d2010-10-13 22:23:56 +08003307 // Interface for bccGetFunctionBinary()
3308 void getFunctionBinary(BCCchar *function,
3309 BCCvoid **base,
3310 BCCsizei *length) {
3311 if (mCodeEmitter.get()) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003312 mCodeEmitter->getFunctionBinary(function, base, length);
3313 } else {
3314 *base = NULL;
3315 *length = 0;
3316 }
3317 return;
3318 }
3319
Zonr Chang932648d2010-10-13 22:23:56 +08003320 inline const llvm::Module *getModule() const {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003321 return mModule;
3322 }
3323
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003324 ~Compiler() {
Shih-wei Liao7f941bb2010-11-19 01:40:16 -08003325#ifdef BCC_CODE_ADDR
3326 if (mCodeDataAddr != 0 && mCodeDataAddr != MAP_FAILED) {
3327 if (munmap(mCodeDataAddr, MaxCodeSize + MaxGlobalVarSize) < 0) {
3328 LOGE("munmap failed while releasing mCodeDataAddr\n");
3329 }
3330 }
3331
3332 if (mCacheMapAddr) {
3333 free(mCacheMapAddr);
3334 }
3335#else
3336 if (mCacheMapAddr != 0 && mCacheMapAddr != MAP_FAILED) {
3337 if (munmap(mCacheMapAddr, mCacheSize) < 0) {
3338 LOGE("munmap failed while releasing mCacheMapAddr\n");
3339 }
3340 }
3341#endif
3342
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003343 delete mModule;
Zonr Chang932648d2010-10-13 22:23:56 +08003344 // llvm::llvm_shutdown();
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07003345 delete mContext;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003346 return;
3347 }
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003348
3349 private:
3350 // Note: loader() and genCacheFile() go hand in hand
3351 void genCacheFile() {
3352 if (lseek(mCacheFd, 0, SEEK_SET) != 0) {
3353 LOGE("Unable to seek to 0: %s\n", strerror(errno));
3354 return;
3355 }
3356
3357 bool codeOffsetNeedPadding = false;
3358
3359 uint32_t offset = sizeof(oBCCHeader);
3360
3361 // BCC Cache File Header
3362 oBCCHeader *hdr = (oBCCHeader *)malloc(sizeof(oBCCHeader));
3363
3364 if (!hdr) {
3365 LOGE("Unable to allocate oBCCHeader.\n");
3366 return;
3367 }
3368
3369 // Magic Words
3370 memcpy(hdr->magic, OBCC_MAGIC, 4);
3371 memcpy(hdr->magicVersion, OBCC_MAGIC_VERS, 4);
3372
3373 // Timestamp
3374 hdr->sourceWhen = 0; // TODO(all)
3375 hdr->rslibWhen = 0; // TODO(all)
3376 hdr->libRSWhen = 0; // TODO(all)
3377 hdr->libbccWhen = 0; // TODO(all)
3378
3379 // Current Memory Address (Saved for Recalculation)
3380 hdr->cachedCodeDataAddr = reinterpret_cast<uint32_t>(mCodeDataAddr);
3381 hdr->rootAddr = reinterpret_cast<uint32_t>(lookup("root"));
3382 hdr->initAddr = reinterpret_cast<uint32_t>(lookup("init"));
3383
3384 // Relocation Table Offset and Entry Count
3385 hdr->relocOffset = sizeof(oBCCHeader);
Logan824dd0a2010-11-20 01:45:54 +08003386 hdr->relocCount = mCodeEmitter->getCachingRelocations().size();
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003387
Logan824dd0a2010-11-20 01:45:54 +08003388 offset += hdr->relocCount * (sizeof(oBCCRelocEntry));
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003389
3390 // Export Variable Table Offset and Entry Count
3391 hdr->exportVarsOffset = offset;
3392 hdr->exportVarsCount = mExportVars.size();
3393
3394 offset += hdr->exportVarsCount * sizeof(uint32_t);
3395
3396 // Export Function Table Offset and Entry Count
3397 hdr->exportFuncsOffset = offset;
3398 hdr->exportFuncsCount = mExportFuncs.size();
3399
3400 offset += hdr->exportFuncsCount * sizeof(uint32_t);
3401
3402 // Export Pragmas Table Offset and Entry Count
3403 hdr->exportPragmasOffset = offset;
3404 hdr->exportPragmasCount = 0; // TODO(all): mPragmas.size();
3405
3406 offset += hdr->exportPragmasCount * sizeof(uint32_t);
3407
3408 // Code Offset and Size
3409
3410#ifdef BCC_CODE_ADDR
3411 {
3412 long pagesize = sysconf(_SC_PAGESIZE);
3413
3414 if (offset % pagesize > 0) {
3415 codeOffsetNeedPadding = true;
3416 offset += pagesize - (offset % pagesize);
3417 }
3418 }
3419#else
3420 if (offset & 0x07) { // Ensure that offset aligned to 64-bit (8 byte).
3421 codeOffsetNeedPadding = true;
3422 offset += 0x08 - (offset & 0x07);
3423 }
3424#endif
3425
3426 hdr->codeOffset = offset;
3427 hdr->codeSize = MaxCodeSize;
3428
3429 offset += hdr->codeSize;
3430
3431 // Data (Global Variable) Offset and Size
3432 hdr->dataOffset = offset;
3433 hdr->dataSize = MaxGlobalVarSize;
3434
3435 offset += hdr->dataSize;
3436
3437 // Checksum
3438 hdr->checksum = 0; // Set Field checksum. TODO(all)
3439
3440 // Write Header
3441 sysWriteFully(mCacheFd, reinterpret_cast<char const *>(hdr),
3442 sizeof(oBCCHeader), "Write oBCC header");
3443
Logan824dd0a2010-11-20 01:45:54 +08003444 // Write Relocation Entry Table
3445 {
3446 size_t allocSize = hdr->relocCount * sizeof(oBCCRelocEntry);
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003447
Logan824dd0a2010-11-20 01:45:54 +08003448 oBCCRelocEntry const*records = &mCodeEmitter->getCachingRelocations()[0];
3449
3450 sysWriteFully(mCacheFd, reinterpret_cast<char const *>(records),
3451 allocSize, "Write Relocation Entries");
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003452 }
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003453
3454 // Write Export Variables Table
3455 {
3456 uint32_t *record, *ptr;
3457
3458 record = (uint32_t *)calloc(hdr->exportVarsCount, sizeof(uint32_t));
3459 ptr = record;
3460
3461 if (!record) {
3462 goto bail;
3463 }
3464
3465 for (ExportVarList::const_iterator I = mExportVars.begin(),
3466 E = mExportVars.end(); I != E; I++) {
3467 *ptr++ = reinterpret_cast<uint32_t>(*I);
3468 }
3469
3470 sysWriteFully(mCacheFd, reinterpret_cast<char const *>(record),
3471 hdr->exportVarsCount * sizeof(uint32_t),
3472 "Write ExportVars");
3473
3474 free(record);
3475 }
3476
3477 // Write Export Functions Table
3478 {
3479 uint32_t *record, *ptr;
3480
3481 record = (uint32_t *)calloc(hdr->exportFuncsCount, sizeof(uint32_t));
3482 ptr = record;
3483
3484 if (!record) {
3485 goto bail;
3486 }
3487
3488 for (ExportFuncList::const_iterator I = mExportFuncs.begin(),
3489 E = mExportFuncs.end(); I != E; I++) {
3490 *ptr++ = reinterpret_cast<uint32_t>(*I);
3491 }
3492
3493 sysWriteFully(mCacheFd, reinterpret_cast<char const *>(record),
3494 hdr->exportFuncsCount * sizeof(uint32_t),
3495 "Write ExportFuncs");
3496
3497 free(record);
3498 }
3499
3500
3501 // TODO(all): Write Export Pragmas Table
3502#if 0
3503#else
3504 // Note: As long as we have comment out export pragmas table code,
3505 // we have to seek the position to correct offset.
3506
3507 lseek(mCacheFd, hdr->codeOffset, SEEK_SET);
3508#endif
3509
3510 if (codeOffsetNeedPadding) {
3511 // requires additional padding
3512 lseek(mCacheFd, hdr->codeOffset, SEEK_SET);
3513 }
3514
3515 // Write Generated Code and Global Variable
3516 sysWriteFully(mCacheFd, mCodeDataAddr, MaxCodeSize + MaxGlobalVarSize,
3517 "Write code and global variable");
3518
3519 goto close_return;
3520
3521 bail:
3522 if (ftruncate(mCacheFd, 0) != 0) {
3523 LOGW("Warning: unable to truncate cache file: %s\n", strerror(errno));
3524 }
3525
3526 close_return:
3527 free(hdr);
3528 close(mCacheFd);
3529 mCacheFd = -1;
3530 return;
3531 }
3532
3533 // OpenCacheFile() returns fd of the cache file.
3534 // Input:
3535 // BCCchar *resName: Used to genCacheFileName()
3536 // bool createIfMissing: If false, turn off caching
3537 // Output:
3538 // returns fd: If -1: Failed
3539 // mCacheNew: If true, the returned fd is new. Otherwise, the fd is the
3540 // cache file's file descriptor
3541 // Note: openCacheFile() will check the cache file's validity,
3542 // such as Magic number, sourceWhen... dependencies.
3543 int openCacheFile(const BCCchar *resName, bool createIfMissing) {
3544 int fd, cc;
3545 struct stat fdStat, fileStat;
3546 bool readOnly = false;
3547
3548 char *cacheFileName = genCacheFileName(resName, ".oBCC");
3549
3550 mCacheNew = false;
3551
3552 retry:
3553 /*
3554 * Try to open the cache file. If we've been asked to,
3555 * create it if it doesn't exist.
3556 */
3557 fd = createIfMissing ? open(cacheFileName, O_CREAT|O_RDWR, 0644) : -1;
3558 if (fd < 0) {
3559 fd = open(cacheFileName, O_RDONLY, 0);
3560 if (fd < 0) {
3561 if (createIfMissing) {
3562 LOGE("Can't open bcc-cache '%s': %s\n",
3563 cacheFileName, strerror(errno));
3564 mCacheNew = true;
3565 }
3566 return fd;
3567 }
3568 readOnly = true;
3569 }
3570
3571 /*
3572 * Grab an exclusive lock on the cache file. If somebody else is
3573 * working on it, we'll block here until they complete.
3574 */
3575 LOGV("bcc: locking cache file %s (fd=%d, boot=%d)\n",
3576 cacheFileName, fd);
3577
3578 cc = flock(fd, LOCK_EX | LOCK_NB);
3579 if (cc != 0) {
3580 LOGD("bcc: sleeping on flock(%s)\n", cacheFileName);
3581 cc = flock(fd, LOCK_EX);
3582 }
3583
3584 if (cc != 0) {
3585 LOGE("Can't lock bcc cache '%s': %d\n", cacheFileName, cc);
3586 close(fd);
3587 return -1;
3588 }
3589 LOGV("bcc: locked cache file\n");
3590
3591 /*
3592 * Check to see if the fd we opened and locked matches the file in
3593 * the filesystem. If they don't, then somebody else unlinked ours
3594 * and created a new file, and we need to use that one instead. (If
3595 * we caught them between the unlink and the create, we'll get an
3596 * ENOENT from the file stat.)
3597 */
3598 cc = fstat(fd, &fdStat);
3599 if (cc != 0) {
3600 LOGE("Can't stat open file '%s'\n", cacheFileName);
3601 LOGV("bcc: unlocking cache file %s\n", cacheFileName);
3602 goto close_fail;
3603 }
3604 cc = stat(cacheFileName, &fileStat);
3605 if (cc != 0 ||
3606 fdStat.st_dev != fileStat.st_dev || fdStat.st_ino != fileStat.st_ino) {
3607 LOGD("bcc: our open cache file is stale; sleeping and retrying\n");
3608 LOGV("bcc: unlocking cache file %s\n", cacheFileName);
3609 flock(fd, LOCK_UN);
3610 close(fd);
3611 usleep(250 * 1000); // if something is hosed, don't peg machine
3612 goto retry;
3613 }
3614
3615 /*
3616 * We have the correct file open and locked. If the file size is zero,
3617 * then it was just created by us, and we want to fill in some fields
3618 * in the "bcc" header and set "mCacheNew". Otherwise, we want to
3619 * verify that the fields in the header match our expectations, and
3620 * reset the file if they don't.
3621 */
3622 if (fdStat.st_size == 0) {
3623 if (readOnly) { // The device is readOnly --> close_fail
3624 LOGW("bcc: file has zero length and isn't writable\n");
3625 goto close_fail;
3626 }
3627 /*cc = createEmptyHeader(fd);
3628 if (cc != 0)
3629 goto close_fail;
3630 */
3631 mCacheNew = true;
3632 LOGV("bcc: successfully initialized new cache file\n");
3633 } else {
3634 // Calculate sourceWhen
3635 // XXX
3636 uint32_t sourceWhen = 0;
3637 uint32_t rslibWhen = 0;
3638 uint32_t libRSWhen = 0;
3639 uint32_t libbccWhen = 0;
3640 if (!checkHeaderAndDependencies(fd,
3641 sourceWhen,
3642 rslibWhen,
3643 libRSWhen,
3644 libbccWhen)) {
3645 // If checkHeaderAndDependencies returns 0: FAILED
3646 // Will truncate the file and retry to createIfMissing the file
3647
3648 if (readOnly) { // Shouldn't be readonly.
3649 /*
3650 * We could unlink and rewrite the file if we own it or
3651 * the "sticky" bit isn't set on the directory. However,
3652 * we're not able to truncate it, which spoils things. So,
3653 * give up now.
3654 */
3655 if (createIfMissing) {
3656 LOGW("Cached file %s is stale and not writable\n",
3657 cacheFileName);
3658 }
3659 goto close_fail;
3660 }
3661
3662 /*
3663 * If we truncate the existing file before unlinking it, any
3664 * process that has it mapped will fail when it tries to touch
3665 * the pages? Probably OK because we use MAP_PRIVATE.
3666 */
3667 LOGD("oBCC file is stale or bad; removing and retrying (%s)\n",
3668 cacheFileName);
3669 if (ftruncate(fd, 0) != 0) {
3670 LOGW("Warning: unable to truncate cache file '%s': %s\n",
3671 cacheFileName, strerror(errno));
3672 /* keep going */
3673 }
3674 if (unlink(cacheFileName) != 0) {
3675 LOGW("Warning: unable to remove cache file '%s': %d %s\n",
3676 cacheFileName, errno, strerror(errno));
3677 /* keep going; permission failure should probably be fatal */
3678 }
3679 LOGV("bcc: unlocking cache file %s\n", cacheFileName);
3680 flock(fd, LOCK_UN);
3681 close(fd);
3682 goto retry;
3683 } else {
3684 // Got cacheFile! Good to go.
3685 LOGV("Good cache file\n");
3686 }
3687 }
3688
3689 assert(fd >= 0);
3690 return fd;
3691
3692 close_fail:
3693 flock(fd, LOCK_UN);
3694 close(fd);
3695 return -1;
3696 } // End of openCacheFile()
3697
3698 char *genCacheFileName(const char *fileName, const char *subFileName) {
3699 char nameBuf[512];
3700 static const char kCachePath[] = "bcc-cache";
3701 char absoluteFile[sizeof(nameBuf)];
3702 const size_t kBufLen = sizeof(nameBuf) - 1;
3703 const char *dataRoot;
3704 char *cp;
3705
3706 // Get the absolute path of the raw/***.bc file.
3707 absoluteFile[0] = '\0';
3708 if (fileName[0] != '/') {
3709 /*
3710 * Generate the absolute path. This doesn't do everything it
3711 * should, e.g. if filename is "./out/whatever" it doesn't crunch
3712 * the leading "./" out, but it'll do.
3713 */
3714 if (getcwd(absoluteFile, kBufLen) == NULL) {
3715 LOGE("Can't get CWD while opening raw/***.bc file\n");
3716 return NULL;
3717 }
3718 // TODO(srhines): strncat() is a bit dangerous
3719 strncat(absoluteFile, "/", kBufLen);
3720 }
3721 strncat(absoluteFile, fileName, kBufLen);
3722
3723 if (subFileName != NULL) {
3724 strncat(absoluteFile, "/", kBufLen);
3725 strncat(absoluteFile, subFileName, kBufLen);
3726 }
3727
3728 /* Turn the path into a flat filename by replacing
3729 * any slashes after the first one with '@' characters.
3730 */
3731 cp = absoluteFile + 1;
3732 while (*cp != '\0') {
3733 if (*cp == '/') {
3734 *cp = '@';
3735 }
3736 cp++;
3737 }
3738
3739 /* Build the name of the cache directory.
3740 */
3741 dataRoot = getenv("ANDROID_DATA");
3742 if (dataRoot == NULL)
3743 dataRoot = "/data";
3744 snprintf(nameBuf, kBufLen, "%s/%s", dataRoot, kCachePath);
3745
3746 /* Tack on the file name for the actual cache file path.
3747 */
3748 strncat(nameBuf, absoluteFile, kBufLen);
3749
3750 LOGV("Cache file for '%s' '%s' is '%s'\n", fileName, subFileName, nameBuf);
3751 return strdup(nameBuf);
3752 }
3753
3754 /*
3755 * Read the oBCC header, verify it, then read the dependent section
3756 * and verify that data as well.
3757 *
3758 * On successful return, the file will be seeked immediately past the
3759 * oBCC header.
3760 */
3761 bool checkHeaderAndDependencies(int fd,
3762 uint32_t sourceWhen,
3763 uint32_t rslibWhen,
3764 uint32_t libRSWhen,
3765 uint32_t libbccWhen) {
3766 ssize_t actual;
3767 oBCCHeader optHdr;
3768 uint32_t val;
3769 uint8_t const *magic, *magicVer;
3770
3771 /*
3772 * Start at the start. The "bcc" header, when present, will always be
3773 * the first thing in the file.
3774 */
3775 if (lseek(fd, 0, SEEK_SET) != 0) {
3776 LOGE("bcc: failed to seek to start of file: %s\n", strerror(errno));
3777 goto bail;
3778 }
3779
3780 /*
3781 * Read and do trivial verification on the bcc header. The header is
3782 * always in host byte order.
3783 */
3784 actual = read(fd, &optHdr, sizeof(optHdr));
3785 if (actual < 0) {
3786 LOGE("bcc: failed reading bcc header: %s\n", strerror(errno));
3787 goto bail;
3788 } else if (actual != sizeof(optHdr)) {
3789 LOGE("bcc: failed reading bcc header (got %d of %zd)\n",
3790 (int) actual, sizeof(optHdr));
3791 goto bail;
3792 }
3793
3794 magic = optHdr.magic;
3795 if (memcmp(magic, OBCC_MAGIC, 4) != 0) {
3796 /* not an oBCC file, or previous attempt was interrupted */
3797 LOGD("bcc: incorrect opt magic number (0x%02x %02x %02x %02x)\n",
3798 magic[0], magic[1], magic[2], magic[3]);
3799 goto bail;
3800 }
3801
3802 magicVer = optHdr.magicVersion;
3803 if (memcmp(magic+4, OBCC_MAGIC_VERS, 4) != 0) {
3804 LOGW("bcc: stale oBCC version (0x%02x %02x %02x %02x)\n",
3805 magicVer[0], magicVer[1], magicVer[2], magicVer[3]);
3806 goto bail;
3807 }
3808
3809 /*
3810 * Do the header flags match up with what we want?
3811 *
3812 * This is useful because it allows us to automatically regenerate
3813 * a file when settings change (e.g. verification is now mandatory),
3814 * but can cause difficulties if the thing we depend upon
3815 * were handled differently than the current options specify.
3816 *
3817 * So, for now, we essentially ignore "expectVerify" and "expectOpt"
3818 * by limiting the match mask.
3819 *
3820 * The only thing we really can't handle is incorrect byte-ordering.
3821 */
3822
3823 val = optHdr.sourceWhen;
3824 if (val && (val != sourceWhen)) {
3825 LOGI("bcc: source file mod time mismatch (%08x vs %08x)\n",
3826 val, sourceWhen);
3827 goto bail;
3828 }
3829 val = optHdr.rslibWhen;
3830 if (val && (val != rslibWhen)) {
3831 LOGI("bcc: rslib file mod time mismatch (%08x vs %08x)\n",
3832 val, rslibWhen);
3833 goto bail;
3834 }
3835 val = optHdr.libRSWhen;
3836 if (val && (val != libRSWhen)) {
3837 LOGI("bcc: libRS file mod time mismatch (%08x vs %08x)\n",
3838 val, libRSWhen);
3839 goto bail;
3840 }
3841 val = optHdr.libbccWhen;
3842 if (val && (val != libbccWhen)) {
3843 LOGI("bcc: libbcc file mod time mismatch (%08x vs %08x)\n",
3844 val, libbccWhen);
3845 goto bail;
3846 }
3847
3848 return true;
3849
3850 bail:
3851 return false;
3852 }
3853
Zonr Chang932648d2010-10-13 22:23:56 +08003854};
3855// End of Class Compiler
3856////////////////////////////////////////////////////////////////////////////////
3857
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003858
3859bool Compiler::GlobalInitialized = false;
3860
Zonr Chang932648d2010-10-13 22:23:56 +08003861// Code generation optimization level for the compiler
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003862llvm::CodeGenOpt::Level Compiler::CodeGenOptLevel;
3863
3864std::string Compiler::Triple;
3865
3866std::string Compiler::CPU;
3867
3868std::vector<std::string> Compiler::Features;
3869
Zonr Chang932648d2010-10-13 22:23:56 +08003870// The named of metadata node that pragma resides (should be synced with
3871// slang.cpp)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003872const llvm::StringRef Compiler::PragmaMetadataName = "#pragma";
3873
Zonr Chang932648d2010-10-13 22:23:56 +08003874// The named of metadata node that export variable name resides (should be
3875// synced with slang_rs_metadata.h)
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07003876const llvm::StringRef Compiler::ExportVarMetadataName = "#rs_export_var";
3877
Zonr Chang932648d2010-10-13 22:23:56 +08003878// The named of metadata node that export function name resides (should be
3879// synced with slang_rs_metadata.h)
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07003880const llvm::StringRef Compiler::ExportFuncMetadataName = "#rs_export_func";
3881
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003882struct BCCscript {
Zonr Chang932648d2010-10-13 22:23:56 +08003883 //////////////////////////////////////////////////////////////////////////////
3884 // Part I. Compiler
3885 //////////////////////////////////////////////////////////////////////////////
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003886 Compiler compiler;
3887
Zonr Chang932648d2010-10-13 22:23:56 +08003888 void registerSymbolCallback(BCCSymbolLookupFn pFn, BCCvoid *pContext) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003889 compiler.registerSymbolCallback(pFn, pContext);
3890 }
3891
Zonr Chang932648d2010-10-13 22:23:56 +08003892 //////////////////////////////////////////////////////////////////////////////
3893 // Part II. Logistics & Error handling
3894 //////////////////////////////////////////////////////////////////////////////
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003895 BCCscript() {
3896 bccError = BCC_NO_ERROR;
3897 }
3898
3899 ~BCCscript() {
3900 }
3901
3902 void setError(BCCenum error) {
3903 if (bccError == BCC_NO_ERROR && error != BCC_NO_ERROR) {
3904 bccError = error;
3905 }
3906 }
3907
3908 BCCenum getError() {
3909 BCCenum result = bccError;
3910 bccError = BCC_NO_ERROR;
3911 return result;
3912 }
3913
3914 BCCenum bccError;
3915};
3916
3917
3918extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08003919BCCscript *bccCreateScript() {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003920 return new BCCscript();
3921}
3922
3923extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08003924BCCenum bccGetError(BCCscript *script) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003925 return script->getError();
3926}
3927
3928extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08003929void bccDeleteScript(BCCscript *script) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003930 delete script;
3931}
3932
3933extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08003934void bccRegisterSymbolCallback(BCCscript *script,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003935 BCCSymbolLookupFn pFn,
Zonr Chang932648d2010-10-13 22:23:56 +08003936 BCCvoid *pContext) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003937 script->registerSymbolCallback(pFn, pContext);
3938}
3939
3940extern "C"
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003941int bccReadModule(BCCscript *script,
Zonr Changdbee68b2010-10-22 05:02:16 +08003942 BCCvoid *module) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003943 return script->compiler.readModule(reinterpret_cast<llvm::Module*>(module));
Zonr Changdbee68b2010-10-22 05:02:16 +08003944}
3945
3946extern "C"
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003947int bccReadBC(BCCscript *script,
3948 const BCCchar *bitcode,
3949 BCCint size,
3950 const BCCchar *resName) {
3951 return script->compiler.readBC(bitcode, size, resName);
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003952}
3953
3954extern "C"
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003955void bccLinkBC(BCCscript *script,
Zonr Chang97f5e612010-10-22 20:38:26 +08003956 const BCCchar *bitcode,
3957 BCCint size) {
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003958 script->compiler.linkBC(bitcode, size);
Zonr Chang97f5e612010-10-22 20:38:26 +08003959}
3960
3961extern "C"
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003962void bccLoadBinary(BCCscript *script) {
3963 int result = script->compiler.loader();
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07003964 if (result)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003965 script->setError(BCC_INVALID_OPERATION);
3966}
3967
3968extern "C"
Shih-wei Liao7c5a5f72010-11-08 01:59:13 -08003969void bccCompileBC(BCCscript *script) {
3970 {
3971#if defined(__arm__)
3972 android::StopWatch compileTimer("RenderScript compile time");
3973#endif
3974 int result = script->compiler.compile();
3975 if (result)
3976 script->setError(BCC_INVALID_OPERATION);
3977 }
3978}
3979
3980extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08003981void bccGetScriptInfoLog(BCCscript *script,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003982 BCCsizei maxLength,
Zonr Chang932648d2010-10-13 22:23:56 +08003983 BCCsizei *length,
3984 BCCchar *infoLog) {
3985 char *message = script->compiler.getErrorMessage();
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003986 int messageLength = strlen(message) + 1;
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07003987 if (length)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07003988 *length = messageLength;
3989
3990 if (infoLog && maxLength > 0) {
3991 int trimmedLength = maxLength < messageLength ? maxLength : messageLength;
3992 memcpy(infoLog, message, trimmedLength);
3993 infoLog[trimmedLength] = 0;
3994 }
3995}
3996
3997extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08003998void bccGetScriptLabel(BCCscript *script,
3999 const BCCchar *name,
4000 BCCvoid **address) {
4001 void *value = script->compiler.lookup(name);
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07004002 if (value)
Shih-wei Liao77ed6142010-04-07 12:21:42 -07004003 *address = value;
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07004004 else
Shih-wei Liao77ed6142010-04-07 12:21:42 -07004005 script->setError(BCC_INVALID_VALUE);
4006}
4007
4008extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08004009void bccGetExportVars(BCCscript *script,
4010 BCCsizei *actualVarCount,
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07004011 BCCsizei maxVarCount,
Zonr Chang932648d2010-10-13 22:23:56 +08004012 BCCvoid **vars) {
Shih-wei Liaoabd1e3d2010-04-28 01:47:00 -07004013 script->compiler.getExportVars(actualVarCount, maxVarCount, vars);
4014}
4015
4016extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08004017void bccGetExportFuncs(BCCscript *script,
4018 BCCsizei *actualFuncCount,
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07004019 BCCsizei maxFuncCount,
Zonr Chang932648d2010-10-13 22:23:56 +08004020 BCCvoid **funcs) {
Shih-wei Liao6bfd5422010-05-07 05:20:22 -07004021 script->compiler.getExportFuncs(actualFuncCount, maxFuncCount, funcs);
4022}
4023
4024extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08004025void bccGetPragmas(BCCscript *script,
4026 BCCsizei *actualStringCount,
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07004027 BCCsizei maxStringCount,
Zonr Chang932648d2010-10-13 22:23:56 +08004028 BCCchar **strings) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07004029 script->compiler.getPragmas(actualStringCount, maxStringCount, strings);
4030}
4031
4032extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08004033void bccGetFunctions(BCCscript *script,
4034 BCCsizei *actualFunctionCount,
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07004035 BCCsizei maxFunctionCount,
Zonr Chang932648d2010-10-13 22:23:56 +08004036 BCCchar **functions) {
Shih-wei Liao3cf39d12010-04-29 19:30:51 -07004037 script->compiler.getFunctions(actualFunctionCount,
4038 maxFunctionCount,
Shih-wei Liao77ed6142010-04-07 12:21:42 -07004039 functions);
4040}
4041
4042extern "C"
Zonr Chang932648d2010-10-13 22:23:56 +08004043void bccGetFunctionBinary(BCCscript *script,
4044 BCCchar *function,
4045 BCCvoid **base,
4046 BCCsizei *length) {
Shih-wei Liao77ed6142010-04-07 12:21:42 -07004047 script->compiler.getFunctionBinary(function, base, length);
4048}
4049
4050struct BCCtype {
Zonr Chang932648d2010-10-13 22:23:56 +08004051 const Compiler *compiler;
4052 const llvm::Type *t;
Shih-wei Liao77ed6142010-04-07 12:21:42 -07004053};
4054
Zonr Chang932648d2010-10-13 22:23:56 +08004055} // namespace bcc