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Chris Lattner2fbfdcf2002-04-07 20:49:59 +00001//===-- ExternalFunctions.cpp - Implement External Functions --------------===//
Chris Lattner7720c8e2001-09-10 04:50:17 +00002//
Chris Lattner2fbfdcf2002-04-07 20:49:59 +00003// This file contains both code to deal with invoking "external" functions, but
4// also contains code that implements "exported" external functions.
Chris Lattner7720c8e2001-09-10 04:50:17 +00005//
Chris Lattner2fbfdcf2002-04-07 20:49:59 +00006// External functions in LLI are implemented by dlopen'ing the lli executable
7// and using dlsym to look op the functions that we want to invoke. If a
8// function is found, then the arguments are mangled and passed in to the
9// function call.
Chris Lattner7720c8e2001-09-10 04:50:17 +000010//
11//===----------------------------------------------------------------------===//
12
13#include "Interpreter.h"
Chris Lattner005cbce2002-10-02 21:12:13 +000014#include "ExecutionAnnotations.h"
Chris Lattnerfe11a972002-12-23 23:59:41 +000015#include "llvm/Module.h"
Chris Lattner7720c8e2001-09-10 04:50:17 +000016#include "llvm/DerivedTypes.h"
Chris Lattner005cbce2002-10-02 21:12:13 +000017#include "llvm/SymbolTable.h"
18#include "llvm/Target/TargetData.h"
Chris Lattner7720c8e2001-09-10 04:50:17 +000019#include <map>
20#include <dlfcn.h>
21#include <link.h>
Chris Lattnerc2593162001-10-27 08:28:11 +000022#include <math.h>
Chris Lattnerc063d382001-11-06 21:52:18 +000023#include <stdio.h>
Chris Lattner697954c2002-01-20 22:54:45 +000024using std::vector;
Chris Lattner7720c8e2001-09-10 04:50:17 +000025
Chris Lattnerb408b122002-03-29 03:57:15 +000026typedef GenericValue (*ExFunc)(FunctionType *, const vector<GenericValue> &);
27static std::map<const Function *, ExFunc> Functions;
Chris Lattner697954c2002-01-20 22:54:45 +000028static std::map<std::string, ExFunc> FuncNames;
Chris Lattner7720c8e2001-09-10 04:50:17 +000029
Chris Lattnere43db882001-10-27 04:15:57 +000030static Interpreter *TheInterpreter;
31
32// getCurrentExecutablePath() - Return the directory that the lli executable
33// lives in.
34//
Chris Lattner697954c2002-01-20 22:54:45 +000035std::string Interpreter::getCurrentExecutablePath() const {
Chris Lattnere43db882001-10-27 04:15:57 +000036 Dl_info Info;
37 if (dladdr(&TheInterpreter, &Info) == 0) return "";
38
Chris Lattner697954c2002-01-20 22:54:45 +000039 std::string LinkAddr(Info.dli_fname);
Chris Lattnere43db882001-10-27 04:15:57 +000040 unsigned SlashPos = LinkAddr.rfind('/');
Chris Lattner697954c2002-01-20 22:54:45 +000041 if (SlashPos != std::string::npos)
Chris Lattnere43db882001-10-27 04:15:57 +000042 LinkAddr.resize(SlashPos); // Trim the executable name off...
43
44 return LinkAddr;
45}
46
47
Chris Lattner7720c8e2001-09-10 04:50:17 +000048static char getTypeID(const Type *Ty) {
49 switch (Ty->getPrimitiveID()) {
50 case Type::VoidTyID: return 'V';
51 case Type::BoolTyID: return 'o';
52 case Type::UByteTyID: return 'B';
53 case Type::SByteTyID: return 'b';
54 case Type::UShortTyID: return 'S';
55 case Type::ShortTyID: return 's';
56 case Type::UIntTyID: return 'I';
57 case Type::IntTyID: return 'i';
58 case Type::ULongTyID: return 'L';
59 case Type::LongTyID: return 'l';
60 case Type::FloatTyID: return 'F';
61 case Type::DoubleTyID: return 'D';
62 case Type::PointerTyID: return 'P';
Chris Lattnerb408b122002-03-29 03:57:15 +000063 case Type::FunctionTyID: return 'M';
Chris Lattner7720c8e2001-09-10 04:50:17 +000064 case Type::StructTyID: return 'T';
65 case Type::ArrayTyID: return 'A';
66 case Type::OpaqueTyID: return 'O';
67 default: return 'U';
68 }
69}
70
Chris Lattnerb408b122002-03-29 03:57:15 +000071static ExFunc lookupFunction(const Function *M) {
Chris Lattner7720c8e2001-09-10 04:50:17 +000072 // Function not found, look it up... start by figuring out what the
73 // composite function name should be.
Chris Lattner697954c2002-01-20 22:54:45 +000074 std::string ExtName = "lle_";
Chris Lattnerb408b122002-03-29 03:57:15 +000075 const FunctionType *MT = M->getFunctionType();
Chris Lattner7720c8e2001-09-10 04:50:17 +000076 for (unsigned i = 0; const Type *Ty = MT->getContainedType(i); ++i)
77 ExtName += getTypeID(Ty);
78 ExtName += "_" + M->getName();
79
Chris Lattnerda82ed52003-05-08 16:18:31 +000080 //std::cout << "Tried: '" << ExtName << "'\n";
Chris Lattner4721f132001-10-30 20:28:00 +000081 ExFunc FnPtr = FuncNames[ExtName];
82 if (FnPtr == 0)
83 FnPtr = (ExFunc)dlsym(RTLD_DEFAULT, ExtName.c_str());
84 if (FnPtr == 0)
85 FnPtr = FuncNames["lle_X_"+M->getName()];
Chris Lattner7720c8e2001-09-10 04:50:17 +000086 if (FnPtr == 0) // Try calling a generic function... if it exists...
87 FnPtr = (ExFunc)dlsym(RTLD_DEFAULT, ("lle_X_"+M->getName()).c_str());
88 if (FnPtr != 0)
Chris Lattner697954c2002-01-20 22:54:45 +000089 Functions.insert(std::make_pair(M, FnPtr)); // Cache for later
Chris Lattner7720c8e2001-09-10 04:50:17 +000090 return FnPtr;
91}
92
Chris Lattnerda82ed52003-05-08 16:18:31 +000093GenericValue Interpreter::callExternalFunction(Function *M,
Chris Lattner44edb6b2003-05-14 14:21:30 +000094 const std::vector<GenericValue> &ArgVals) {
Chris Lattnere43db882001-10-27 04:15:57 +000095 TheInterpreter = this;
96
Chris Lattner2fbfdcf2002-04-07 20:49:59 +000097 // Do a lookup to see if the function is in our cache... this should just be a
Chris Lattner7720c8e2001-09-10 04:50:17 +000098 // defered annotation!
Chris Lattnerb408b122002-03-29 03:57:15 +000099 std::map<const Function *, ExFunc>::iterator FI = Functions.find(M);
100 ExFunc Fn = (FI == Functions.end()) ? lookupFunction(M) : FI->second;
Chris Lattner7720c8e2001-09-10 04:50:17 +0000101 if (Fn == 0) {
Chris Lattnerda82ed52003-05-08 16:18:31 +0000102 std::cout << "Tried to execute an unknown external function: "
103 << M->getType()->getDescription() << " " << M->getName() << "\n";
Chris Lattner4721f132001-10-30 20:28:00 +0000104 return GenericValue();
Chris Lattner7720c8e2001-09-10 04:50:17 +0000105 }
106
107 // TODO: FIXME when types are not const!
Chris Lattner2fbfdcf2002-04-07 20:49:59 +0000108 GenericValue Result = Fn(const_cast<FunctionType*>(M->getFunctionType()),
109 ArgVals);
Chris Lattner4721f132001-10-30 20:28:00 +0000110 return Result;
Chris Lattner7720c8e2001-09-10 04:50:17 +0000111}
112
113
114//===----------------------------------------------------------------------===//
Chris Lattnerb408b122002-03-29 03:57:15 +0000115// Functions "exported" to the running application...
Chris Lattner7720c8e2001-09-10 04:50:17 +0000116//
117extern "C" { // Don't add C++ manglings to llvm mangling :)
118
Chris Lattner005cbce2002-10-02 21:12:13 +0000119// void putchar(sbyte)
Chris Lattnerb408b122002-03-29 03:57:15 +0000120GenericValue lle_Vb_putchar(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnerda82ed52003-05-08 16:18:31 +0000121 std::cout << Args[0].SByteVal;
Chris Lattner7720c8e2001-09-10 04:50:17 +0000122 return GenericValue();
123}
124
Chris Lattner005cbce2002-10-02 21:12:13 +0000125// int putchar(int)
Chris Lattnerb408b122002-03-29 03:57:15 +0000126GenericValue lle_ii_putchar(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnerda82ed52003-05-08 16:18:31 +0000127 std::cout << ((char)Args[0].IntVal) << std::flush;
Chris Lattnere43db882001-10-27 04:15:57 +0000128 return Args[0];
129}
130
Chris Lattner005cbce2002-10-02 21:12:13 +0000131// void putchar(ubyte)
Chris Lattnerb408b122002-03-29 03:57:15 +0000132GenericValue lle_VB_putchar(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnerda82ed52003-05-08 16:18:31 +0000133 std::cout << Args[0].SByteVal << std::flush;
Chris Lattnere43db882001-10-27 04:15:57 +0000134 return Args[0];
Chris Lattner2e42d3a2001-10-15 05:51:48 +0000135}
136
Chris Lattner44edb6b2003-05-14 14:21:30 +0000137// void atexit(Function*)
138GenericValue lle_X_atexit(FunctionType *M, const vector<GenericValue> &Args) {
139 assert(Args.size() == 1);
140 TheInterpreter->addAtExitHandler((Function*)GVTOP(Args[0]));
141 GenericValue GV;
142 GV.IntVal = 0;
143 return GV;
Chris Lattnerf8f2afb2001-10-18 21:55:32 +0000144}
145
Chris Lattner005cbce2002-10-02 21:12:13 +0000146// void exit(int)
Chris Lattnerb408b122002-03-29 03:57:15 +0000147GenericValue lle_X_exit(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnere43db882001-10-27 04:15:57 +0000148 TheInterpreter->exitCalled(Args[0]);
149 return GenericValue();
150}
151
Chris Lattner005cbce2002-10-02 21:12:13 +0000152// void abort(void)
Chris Lattner1ee34a52002-05-20 21:17:16 +0000153GenericValue lle_X_abort(FunctionType *M, const vector<GenericValue> &Args) {
154 std::cerr << "***PROGRAM ABORTED***!\n";
155 GenericValue GV;
156 GV.IntVal = 1;
157 TheInterpreter->exitCalled(GV);
158 return GenericValue();
159}
160
Chris Lattnerc2593162001-10-27 08:28:11 +0000161// void *malloc(uint)
Chris Lattnerb408b122002-03-29 03:57:15 +0000162GenericValue lle_X_malloc(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner4721f132001-10-30 20:28:00 +0000163 assert(Args.size() == 1 && "Malloc expects one argument!");
Chris Lattnerb1118742003-01-13 00:59:47 +0000164 return PTOGV(malloc(Args[0].UIntVal));
Chris Lattnerc2593162001-10-27 08:28:11 +0000165}
166
Chris Lattner957d62a2003-04-23 19:55:24 +0000167// void *calloc(uint, uint)
168GenericValue lle_X_calloc(FunctionType *M, const vector<GenericValue> &Args) {
169 assert(Args.size() == 2 && "calloc expects two arguments!");
170 return PTOGV(calloc(Args[0].UIntVal, Args[1].UIntVal));
171}
172
Chris Lattnerc2593162001-10-27 08:28:11 +0000173// void free(void *)
Chris Lattnerb408b122002-03-29 03:57:15 +0000174GenericValue lle_X_free(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnerc063d382001-11-06 21:52:18 +0000175 assert(Args.size() == 1);
Chris Lattnerb1118742003-01-13 00:59:47 +0000176 free(GVTOP(Args[0]));
Chris Lattnerc2593162001-10-27 08:28:11 +0000177 return GenericValue();
178}
179
Chris Lattner782b9392001-11-26 18:18:18 +0000180// int atoi(char *)
Chris Lattnerb408b122002-03-29 03:57:15 +0000181GenericValue lle_X_atoi(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner782b9392001-11-26 18:18:18 +0000182 assert(Args.size() == 1);
183 GenericValue GV;
Chris Lattnerb1118742003-01-13 00:59:47 +0000184 GV.IntVal = atoi((char*)GVTOP(Args[0]));
Chris Lattner782b9392001-11-26 18:18:18 +0000185 return GV;
186}
187
Chris Lattnerc2593162001-10-27 08:28:11 +0000188// double pow(double, double)
Chris Lattnerb408b122002-03-29 03:57:15 +0000189GenericValue lle_X_pow(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnerc063d382001-11-06 21:52:18 +0000190 assert(Args.size() == 2);
Chris Lattnerc2593162001-10-27 08:28:11 +0000191 GenericValue GV;
Chris Lattner08845a22001-10-29 20:27:45 +0000192 GV.DoubleVal = pow(Args[0].DoubleVal, Args[1].DoubleVal);
Chris Lattnerc2593162001-10-27 08:28:11 +0000193 return GV;
194}
195
Chris Lattner34dd24b2002-02-18 19:06:25 +0000196// double exp(double)
Chris Lattnerb408b122002-03-29 03:57:15 +0000197GenericValue lle_X_exp(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner34dd24b2002-02-18 19:06:25 +0000198 assert(Args.size() == 1);
199 GenericValue GV;
200 GV.DoubleVal = exp(Args[0].DoubleVal);
201 return GV;
202}
203
Chris Lattnerc063d382001-11-06 21:52:18 +0000204// double sqrt(double)
Chris Lattnerb408b122002-03-29 03:57:15 +0000205GenericValue lle_X_sqrt(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnerc063d382001-11-06 21:52:18 +0000206 assert(Args.size() == 1);
207 GenericValue GV;
208 GV.DoubleVal = sqrt(Args[0].DoubleVal);
209 return GV;
210}
Chris Lattnerc2593162001-10-27 08:28:11 +0000211
Chris Lattner86790052001-11-06 22:53:25 +0000212// double log(double)
Chris Lattnerb408b122002-03-29 03:57:15 +0000213GenericValue lle_X_log(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner86790052001-11-06 22:53:25 +0000214 assert(Args.size() == 1);
215 GenericValue GV;
216 GV.DoubleVal = log(Args[0].DoubleVal);
217 return GV;
218}
219
Chris Lattnerdbcda222002-12-20 04:18:13 +0000220// int isnan(double value);
221GenericValue lle_X_isnan(FunctionType *F, const vector<GenericValue> &Args) {
222 assert(Args.size() == 1);
223 GenericValue GV;
224 GV.IntVal = isnan(Args[0].DoubleVal);
225 return GV;
226}
227
Chris Lattner782b9392001-11-26 18:18:18 +0000228// double floor(double)
Chris Lattnerb408b122002-03-29 03:57:15 +0000229GenericValue lle_X_floor(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner782b9392001-11-26 18:18:18 +0000230 assert(Args.size() == 1);
231 GenericValue GV;
232 GV.DoubleVal = floor(Args[0].DoubleVal);
233 return GV;
234}
235
Chris Lattner86790052001-11-06 22:53:25 +0000236// double drand48()
Chris Lattnerb408b122002-03-29 03:57:15 +0000237GenericValue lle_X_drand48(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner86790052001-11-06 22:53:25 +0000238 assert(Args.size() == 0);
239 GenericValue GV;
240 GV.DoubleVal = drand48();
241 return GV;
242}
243
Chris Lattner1b600142001-11-13 05:46:08 +0000244// long lrand48()
Chris Lattnerb408b122002-03-29 03:57:15 +0000245GenericValue lle_X_lrand48(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner1b600142001-11-13 05:46:08 +0000246 assert(Args.size() == 0);
247 GenericValue GV;
248 GV.IntVal = lrand48();
249 return GV;
250}
251
252// void srand48(long)
Chris Lattnerb408b122002-03-29 03:57:15 +0000253GenericValue lle_X_srand48(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner1b600142001-11-13 05:46:08 +0000254 assert(Args.size() == 1);
255 srand48(Args[0].IntVal);
256 return GenericValue();
257}
258
Chris Lattner782b9392001-11-26 18:18:18 +0000259// void srand(uint)
Chris Lattnerb408b122002-03-29 03:57:15 +0000260GenericValue lle_X_srand(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner782b9392001-11-26 18:18:18 +0000261 assert(Args.size() == 1);
262 srand(Args[0].UIntVal);
263 return GenericValue();
264}
Chris Lattner86790052001-11-06 22:53:25 +0000265
Chris Lattnerb1118742003-01-13 00:59:47 +0000266// int puts(const char*)
267GenericValue lle_X_puts(FunctionType *M, const vector<GenericValue> &Args) {
268 assert(Args.size() == 1);
269 GenericValue GV;
270 GV.IntVal = puts((char*)GVTOP(Args[0]));
271 return GV;
272}
273
Chris Lattnere7c6f722001-12-13 00:43:47 +0000274// int sprintf(sbyte *, sbyte *, ...) - a very rough implementation to make
275// output useful.
Chris Lattnerb408b122002-03-29 03:57:15 +0000276GenericValue lle_X_sprintf(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnerb1118742003-01-13 00:59:47 +0000277 char *OutputBuffer = (char *)GVTOP(Args[0]);
278 const char *FmtStr = (const char *)GVTOP(Args[1]);
Chris Lattnere7c6f722001-12-13 00:43:47 +0000279 unsigned ArgNo = 2;
Chris Lattner08845a22001-10-29 20:27:45 +0000280
281 // printf should return # chars printed. This is completely incorrect, but
282 // close enough for now.
283 GenericValue GV; GV.IntVal = strlen(FmtStr);
284 while (1) {
285 switch (*FmtStr) {
286 case 0: return GV; // Null terminator...
287 default: // Normal nonspecial character
Chris Lattnere7c6f722001-12-13 00:43:47 +0000288 sprintf(OutputBuffer++, "%c", *FmtStr++);
Chris Lattner08845a22001-10-29 20:27:45 +0000289 break;
290 case '\\': { // Handle escape codes
Chris Lattnere7c6f722001-12-13 00:43:47 +0000291 sprintf(OutputBuffer, "%c%c", *FmtStr, *(FmtStr+1));
292 FmtStr += 2; OutputBuffer += 2;
Chris Lattner08845a22001-10-29 20:27:45 +0000293 break;
294 }
295 case '%': { // Handle format specifiers
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000296 char FmtBuf[100] = "", Buffer[1000] = "";
297 char *FB = FmtBuf;
298 *FB++ = *FmtStr++;
299 char Last = *FB++ = *FmtStr++;
300 unsigned HowLong = 0;
301 while (Last != 'c' && Last != 'd' && Last != 'i' && Last != 'u' &&
302 Last != 'o' && Last != 'x' && Last != 'X' && Last != 'e' &&
303 Last != 'E' && Last != 'g' && Last != 'G' && Last != 'f' &&
304 Last != 'p' && Last != 's' && Last != '%') {
305 if (Last == 'l' || Last == 'L') HowLong++; // Keep track of l's
306 Last = *FB++ = *FmtStr++;
Chris Lattner08845a22001-10-29 20:27:45 +0000307 }
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000308 *FB = 0;
309
310 switch (Last) {
311 case '%':
312 sprintf(Buffer, FmtBuf); break;
313 case 'c':
Chris Lattner2012d5e2002-04-17 17:43:01 +0000314 sprintf(Buffer, FmtBuf, Args[ArgNo++].IntVal); break;
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000315 case 'd': case 'i':
316 case 'u': case 'o':
317 case 'x': case 'X':
Chris Lattner69ab7a82002-08-02 23:08:32 +0000318 if (HowLong >= 1) {
Chris Lattner7471c482003-04-25 18:28:44 +0000319 if (HowLong == 1 && TheInterpreter->getModule().has64BitPointers() &&
320 sizeof(long) < sizeof(long long)) {
Chris Lattner69ab7a82002-08-02 23:08:32 +0000321 // Make sure we use %lld with a 64 bit argument because we might be
322 // compiling LLI on a 32 bit compiler.
323 unsigned Size = strlen(FmtBuf);
324 FmtBuf[Size] = FmtBuf[Size-1];
325 FmtBuf[Size+1] = 0;
326 FmtBuf[Size-1] = 'l';
327 }
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000328 sprintf(Buffer, FmtBuf, Args[ArgNo++].ULongVal);
Chris Lattner69ab7a82002-08-02 23:08:32 +0000329 } else
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000330 sprintf(Buffer, FmtBuf, Args[ArgNo++].IntVal); break;
331 case 'e': case 'E': case 'g': case 'G': case 'f':
332 sprintf(Buffer, FmtBuf, Args[ArgNo++].DoubleVal); break;
333 case 'p':
Chris Lattnerb1118742003-01-13 00:59:47 +0000334 sprintf(Buffer, FmtBuf, (void*)GVTOP(Args[ArgNo++])); break;
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000335 case 's':
Chris Lattnerb1118742003-01-13 00:59:47 +0000336 sprintf(Buffer, FmtBuf, (char*)GVTOP(Args[ArgNo++])); break;
Chris Lattnerda82ed52003-05-08 16:18:31 +0000337 default: std::cout << "<unknown printf code '" << *FmtStr << "'!>";
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000338 ArgNo++; break;
Chris Lattner08845a22001-10-29 20:27:45 +0000339 }
Chris Lattnere7c6f722001-12-13 00:43:47 +0000340 strcpy(OutputBuffer, Buffer);
341 OutputBuffer += strlen(Buffer);
Chris Lattnerea38c0e2001-11-07 19:46:27 +0000342 }
Chris Lattner08845a22001-10-29 20:27:45 +0000343 break;
344 }
Chris Lattner08845a22001-10-29 20:27:45 +0000345 }
346}
347
Chris Lattnere7c6f722001-12-13 00:43:47 +0000348// int printf(sbyte *, ...) - a very rough implementation to make output useful.
Chris Lattnerb408b122002-03-29 03:57:15 +0000349GenericValue lle_X_printf(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattnere7c6f722001-12-13 00:43:47 +0000350 char Buffer[10000];
351 vector<GenericValue> NewArgs;
Chris Lattnerb1118742003-01-13 00:59:47 +0000352 NewArgs.push_back(PTOGV(Buffer));
Chris Lattnere7c6f722001-12-13 00:43:47 +0000353 NewArgs.insert(NewArgs.end(), Args.begin(), Args.end());
Chris Lattnerb1118742003-01-13 00:59:47 +0000354 GenericValue GV = lle_X_sprintf(M, NewArgs);
Chris Lattnerda82ed52003-05-08 16:18:31 +0000355 std::cout << Buffer;
Chris Lattnere7c6f722001-12-13 00:43:47 +0000356 return GV;
357}
358
Chris Lattnerf9a88b62003-03-31 22:12:37 +0000359static void ByteswapSCANFResults(const char *Fmt, void *Arg0, void *Arg1,
360 void *Arg2, void *Arg3, void *Arg4, void *Arg5,
361 void *Arg6, void *Arg7, void *Arg8) {
362 void *Args[] = { Arg0, Arg1, Arg2, Arg3, Arg4, Arg5, Arg6, Arg7, Arg8, 0 };
363
364 // Loop over the format string, munging read values as appropriate (performs
365 // byteswaps as neccesary).
366 unsigned ArgNo = 0;
367 while (*Fmt) {
368 if (*Fmt++ == '%') {
369 // Read any flag characters that may be present...
370 bool Suppress = false;
371 bool Half = false;
372 bool Long = false;
373 bool LongLong = false; // long long or long double
374
375 while (1) {
376 switch (*Fmt++) {
377 case '*': Suppress = true; break;
378 case 'a': /*Allocate = true;*/ break; // We don't need to track this
379 case 'h': Half = true; break;
380 case 'l': Long = true; break;
381 case 'q':
382 case 'L': LongLong = true; break;
383 default:
384 if (Fmt[-1] > '9' || Fmt[-1] < '0') // Ignore field width specs
385 goto Out;
386 }
387 }
388 Out:
389
390 // Read the conversion character
391 if (!Suppress && Fmt[-1] != '%') { // Nothing to do?
392 unsigned Size = 0;
393 const Type *Ty = 0;
394
395 switch (Fmt[-1]) {
396 case 'i': case 'o': case 'u': case 'x': case 'X': case 'n': case 'p':
397 case 'd':
398 if (Long || LongLong) {
399 Size = 8; Ty = Type::ULongTy;
400 } else if (Half) {
401 Size = 4; Ty = Type::UShortTy;
402 } else {
403 Size = 4; Ty = Type::UIntTy;
404 }
405 break;
406
407 case 'e': case 'g': case 'E':
408 case 'f':
409 if (Long || LongLong) {
410 Size = 8; Ty = Type::DoubleTy;
411 } else {
412 Size = 4; Ty = Type::FloatTy;
413 }
414 break;
415
416 case 's': case 'c': case '[': // No byteswap needed
417 Size = 1;
418 Ty = Type::SByteTy;
419 break;
420
421 default: break;
422 }
423
424 if (Size) {
425 GenericValue GV;
426 void *Arg = Args[ArgNo++];
427 memcpy(&GV, Arg, Size);
428 TheInterpreter->StoreValueToMemory(GV, (GenericValue*)Arg, Ty);
429 }
430 }
431 }
432 }
433}
434
Chris Lattner665ee882002-03-08 22:51:07 +0000435// int sscanf(const char *format, ...);
Chris Lattnerb408b122002-03-29 03:57:15 +0000436GenericValue lle_X_sscanf(FunctionType *M, const vector<GenericValue> &args) {
Chris Lattner665ee882002-03-08 22:51:07 +0000437 assert(args.size() < 10 && "Only handle up to 10 args to sscanf right now!");
438
Chris Lattnerf9a88b62003-03-31 22:12:37 +0000439 char *Args[10];
Chris Lattner665ee882002-03-08 22:51:07 +0000440 for (unsigned i = 0; i < args.size(); ++i)
Chris Lattnerf9a88b62003-03-31 22:12:37 +0000441 Args[i] = (char*)GVTOP(args[i]);
Chris Lattner665ee882002-03-08 22:51:07 +0000442
443 GenericValue GV;
444 GV.IntVal = sscanf(Args[0], Args[1], Args[2], Args[3], Args[4],
445 Args[5], Args[6], Args[7], Args[8], Args[9]);
Chris Lattnerf9a88b62003-03-31 22:12:37 +0000446 ByteswapSCANFResults(Args[1], Args[2], Args[3], Args[4],
447 Args[5], Args[6], Args[7], Args[8], Args[9], 0);
448 return GV;
449}
450
451// int scanf(const char *format, ...);
452GenericValue lle_X_scanf(FunctionType *M, const vector<GenericValue> &args) {
453 assert(args.size() < 10 && "Only handle up to 10 args to scanf right now!");
454
455 char *Args[10];
456 for (unsigned i = 0; i < args.size(); ++i)
457 Args[i] = (char*)GVTOP(args[i]);
458
459 GenericValue GV;
460 GV.IntVal = scanf(Args[0], Args[1], Args[2], Args[3], Args[4],
461 Args[5], Args[6], Args[7], Args[8], Args[9]);
462 ByteswapSCANFResults(Args[0], Args[1], Args[2], Args[3], Args[4],
463 Args[5], Args[6], Args[7], Args[8], Args[9]);
Chris Lattner665ee882002-03-08 22:51:07 +0000464 return GV;
465}
466
467
Chris Lattner295fe672002-01-23 21:38:07 +0000468// int clock(void) - Profiling implementation
Chris Lattnerb408b122002-03-29 03:57:15 +0000469GenericValue lle_i_clock(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner295fe672002-01-23 21:38:07 +0000470 extern int clock(void);
471 GenericValue GV; GV.IntVal = clock();
472 return GV;
473}
Chris Lattnere7c6f722001-12-13 00:43:47 +0000474
Chris Lattner957d62a2003-04-23 19:55:24 +0000475
476//===----------------------------------------------------------------------===//
477// String Functions...
478//===----------------------------------------------------------------------===//
479
480// int strcmp(const char *S1, const char *S2);
481GenericValue lle_X_strcmp(FunctionType *M, const vector<GenericValue> &Args) {
482 assert(Args.size() == 2);
483 GenericValue Ret;
484 Ret.IntVal = strcmp((char*)GVTOP(Args[0]), (char*)GVTOP(Args[1]));
485 return Ret;
486}
487
488// char *strcat(char *Dest, const char *src);
489GenericValue lle_X_strcat(FunctionType *M, const vector<GenericValue> &Args) {
490 assert(Args.size() == 2);
491 return PTOGV(strcat((char*)GVTOP(Args[0]), (char*)GVTOP(Args[1])));
492}
493
494// char *strcpy(char *Dest, const char *src);
495GenericValue lle_X_strcpy(FunctionType *M, const vector<GenericValue> &Args) {
496 assert(Args.size() == 2);
497 return PTOGV(strcpy((char*)GVTOP(Args[0]), (char*)GVTOP(Args[1])));
498}
499
500// long strlen(const char *src);
501GenericValue lle_X_strlen(FunctionType *M, const vector<GenericValue> &Args) {
502 assert(Args.size() == 1);
503 GenericValue Ret;
504 Ret.LongVal = strlen((char*)GVTOP(Args[0]));
505 return Ret;
506}
507
Chris Lattnerc8cff9e2003-04-25 18:23:38 +0000508// char *__strdup(const char *src);
509GenericValue lle_X___strdup(FunctionType *M, const vector<GenericValue> &Args) {
510 assert(Args.size() == 1);
511 return PTOGV(strdup((char*)GVTOP(Args[0])));
512}
513
Chris Lattner957d62a2003-04-23 19:55:24 +0000514// void *memset(void *S, int C, size_t N)
515GenericValue lle_X_memset(FunctionType *M, const vector<GenericValue> &Args) {
516 assert(Args.size() == 3);
517 return PTOGV(memset(GVTOP(Args[0]), Args[1].IntVal, Args[2].UIntVal));
518}
519
Chris Lattner5f311a72003-04-23 20:23:16 +0000520// void *memcpy(void *Dest, void *src, size_t Size);
521GenericValue lle_X_memcpy(FunctionType *M, const vector<GenericValue> &Args) {
522 assert(Args.size() == 3);
523 return PTOGV(memcpy((char*)GVTOP(Args[0]), (char*)GVTOP(Args[1]),
524 Args[2].UIntVal));
525}
Chris Lattner957d62a2003-04-23 19:55:24 +0000526
Chris Lattner665ee882002-03-08 22:51:07 +0000527//===----------------------------------------------------------------------===//
528// IO Functions...
529//===----------------------------------------------------------------------===//
530
Chris Lattner005cbce2002-10-02 21:12:13 +0000531// getFILE - Turn a pointer in the host address space into a legit pointer in
532// the interpreter address space. For the most part, this is an identity
533// transformation, but if the program refers to stdio, stderr, stdin then they
534// have pointers that are relative to the __iob array. If this is the case,
535// change the FILE into the REAL stdio stream.
536//
Chris Lattnerb1118742003-01-13 00:59:47 +0000537static FILE *getFILE(void *Ptr) {
Chris Lattner005cbce2002-10-02 21:12:13 +0000538 static Module *LastMod = 0;
539 static PointerTy IOBBase = 0;
540 static unsigned FILESize;
541
Chris Lattnerfe11a972002-12-23 23:59:41 +0000542 if (LastMod != &TheInterpreter->getModule()) { // Module change or initialize?
543 Module *M = LastMod = &TheInterpreter->getModule();
Chris Lattner005cbce2002-10-02 21:12:13 +0000544
545 // Check to see if the currently loaded module contains an __iob symbol...
546 GlobalVariable *IOB = 0;
Chris Lattner6e6026b2002-11-20 18:36:02 +0000547 SymbolTable &ST = M->getSymbolTable();
548 for (SymbolTable::iterator I = ST.begin(), E = ST.end(); I != E; ++I) {
549 SymbolTable::VarMap &M = I->second;
550 for (SymbolTable::VarMap::iterator J = M.begin(), E = M.end();
551 J != E; ++J)
552 if (J->first == "__iob")
553 if ((IOB = dyn_cast<GlobalVariable>(J->second)))
554 break;
555 if (IOB) break;
Chris Lattner005cbce2002-10-02 21:12:13 +0000556 }
557
Chris Lattnerfe11a972002-12-23 23:59:41 +0000558#if 0 /// FIXME! __iob support for LLI
Chris Lattner005cbce2002-10-02 21:12:13 +0000559 // If we found an __iob symbol now, find out what the actual address it's
560 // held in is...
561 if (IOB) {
562 // Get the address the array lives in...
563 GlobalAddress *Address =
564 (GlobalAddress*)IOB->getOrCreateAnnotation(GlobalAddressAID);
565 IOBBase = (PointerTy)(GenericValue*)Address->Ptr;
566
567 // Figure out how big each element of the array is...
568 const ArrayType *AT =
569 dyn_cast<ArrayType>(IOB->getType()->getElementType());
570 if (AT)
571 FILESize = TD.getTypeSize(AT->getElementType());
572 else
573 FILESize = 16*8; // Default size
574 }
Chris Lattnerfe11a972002-12-23 23:59:41 +0000575#endif
Chris Lattner005cbce2002-10-02 21:12:13 +0000576 }
577
578 // Check to see if this is a reference to __iob...
579 if (IOBBase) {
Chris Lattnerb1118742003-01-13 00:59:47 +0000580 unsigned FDNum = ((unsigned long)Ptr-IOBBase)/FILESize;
Chris Lattner005cbce2002-10-02 21:12:13 +0000581 if (FDNum == 0)
582 return stdin;
583 else if (FDNum == 1)
584 return stdout;
585 else if (FDNum == 2)
586 return stderr;
587 }
588
589 return (FILE*)Ptr;
590}
591
592
Chris Lattner665ee882002-03-08 22:51:07 +0000593// FILE *fopen(const char *filename, const char *mode);
Chris Lattnerb408b122002-03-29 03:57:15 +0000594GenericValue lle_X_fopen(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner665ee882002-03-08 22:51:07 +0000595 assert(Args.size() == 2);
Chris Lattnerb1118742003-01-13 00:59:47 +0000596 return PTOGV(fopen((const char *)GVTOP(Args[0]),
597 (const char *)GVTOP(Args[1])));
Chris Lattner665ee882002-03-08 22:51:07 +0000598}
599
600// int fclose(FILE *F);
Chris Lattnerb408b122002-03-29 03:57:15 +0000601GenericValue lle_X_fclose(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner665ee882002-03-08 22:51:07 +0000602 assert(Args.size() == 1);
603 GenericValue GV;
Chris Lattnerb1118742003-01-13 00:59:47 +0000604 GV.IntVal = fclose(getFILE(GVTOP(Args[0])));
Chris Lattner665ee882002-03-08 22:51:07 +0000605 return GV;
606}
607
Chris Lattner25f6f372002-11-08 19:10:26 +0000608// int feof(FILE *stream);
609GenericValue lle_X_feof(FunctionType *M, const vector<GenericValue> &Args) {
610 assert(Args.size() == 1);
611 GenericValue GV;
612
Chris Lattnerb1118742003-01-13 00:59:47 +0000613 GV.IntVal = feof(getFILE(GVTOP(Args[0])));
Chris Lattner25f6f372002-11-08 19:10:26 +0000614 return GV;
615}
616
Chris Lattner665ee882002-03-08 22:51:07 +0000617// size_t fread(void *ptr, size_t size, size_t nitems, FILE *stream);
Chris Lattnerb408b122002-03-29 03:57:15 +0000618GenericValue lle_X_fread(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner665ee882002-03-08 22:51:07 +0000619 assert(Args.size() == 4);
620 GenericValue GV;
621
Chris Lattnerb1118742003-01-13 00:59:47 +0000622 GV.UIntVal = fread((void*)GVTOP(Args[0]), Args[1].UIntVal,
623 Args[2].UIntVal, getFILE(GVTOP(Args[3])));
Chris Lattner665ee882002-03-08 22:51:07 +0000624 return GV;
625}
626
627// size_t fwrite(const void *ptr, size_t size, size_t nitems, FILE *stream);
Chris Lattnerb408b122002-03-29 03:57:15 +0000628GenericValue lle_X_fwrite(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner665ee882002-03-08 22:51:07 +0000629 assert(Args.size() == 4);
630 GenericValue GV;
631
Chris Lattnerb1118742003-01-13 00:59:47 +0000632 GV.UIntVal = fwrite((void*)GVTOP(Args[0]), Args[1].UIntVal,
633 Args[2].UIntVal, getFILE(GVTOP(Args[3])));
Chris Lattner665ee882002-03-08 22:51:07 +0000634 return GV;
635}
636
637// char *fgets(char *s, int n, FILE *stream);
Chris Lattnerb408b122002-03-29 03:57:15 +0000638GenericValue lle_X_fgets(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner665ee882002-03-08 22:51:07 +0000639 assert(Args.size() == 3);
Chris Lattnerb1118742003-01-13 00:59:47 +0000640 return GVTOP(fgets((char*)GVTOP(Args[0]), Args[1].IntVal,
641 getFILE(GVTOP(Args[2]))));
Chris Lattner665ee882002-03-08 22:51:07 +0000642}
643
Chris Lattnera4479cd2002-11-07 19:33:50 +0000644// FILE *freopen(const char *path, const char *mode, FILE *stream);
645GenericValue lle_X_freopen(FunctionType *M, const vector<GenericValue> &Args) {
646 assert(Args.size() == 3);
Chris Lattnerb1118742003-01-13 00:59:47 +0000647 return PTOGV(freopen((char*)GVTOP(Args[0]), (char*)GVTOP(Args[1]),
648 getFILE(GVTOP(Args[2]))));
Chris Lattnera4479cd2002-11-07 19:33:50 +0000649}
650
Chris Lattner665ee882002-03-08 22:51:07 +0000651// int fflush(FILE *stream);
Chris Lattnerb408b122002-03-29 03:57:15 +0000652GenericValue lle_X_fflush(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner665ee882002-03-08 22:51:07 +0000653 assert(Args.size() == 1);
654 GenericValue GV;
Chris Lattnerb1118742003-01-13 00:59:47 +0000655 GV.IntVal = fflush(getFILE(GVTOP(Args[0])));
Chris Lattner005cbce2002-10-02 21:12:13 +0000656 return GV;
657}
658
659// int getc(FILE *stream);
660GenericValue lle_X_getc(FunctionType *M, const vector<GenericValue> &Args) {
661 assert(Args.size() == 1);
662 GenericValue GV;
Chris Lattnerb1118742003-01-13 00:59:47 +0000663 GV.IntVal = getc(getFILE(GVTOP(Args[0])));
Chris Lattner665ee882002-03-08 22:51:07 +0000664 return GV;
665}
666
Chris Lattnerf87a1982003-04-23 19:20:50 +0000667// int _IO_getc(FILE *stream);
668GenericValue lle_X__IO_getc(FunctionType *F, const vector<GenericValue> &Args) {
669 return lle_X_getc(F, Args);
670}
671
Chris Lattnera5c0bfe2002-11-06 22:59:28 +0000672// int fputc(int C, FILE *stream);
673GenericValue lle_X_fputc(FunctionType *M, const vector<GenericValue> &Args) {
674 assert(Args.size() == 2);
675 GenericValue GV;
Chris Lattnerb1118742003-01-13 00:59:47 +0000676 GV.IntVal = fputc(Args[0].IntVal, getFILE(GVTOP(Args[1])));
Chris Lattnera5c0bfe2002-11-06 22:59:28 +0000677 return GV;
678}
679
680// int ungetc(int C, FILE *stream);
681GenericValue lle_X_ungetc(FunctionType *M, const vector<GenericValue> &Args) {
682 assert(Args.size() == 2);
683 GenericValue GV;
Chris Lattnerb1118742003-01-13 00:59:47 +0000684 GV.IntVal = ungetc(Args[0].IntVal, getFILE(GVTOP(Args[1])));
Chris Lattnera5c0bfe2002-11-06 22:59:28 +0000685 return GV;
686}
687
Chris Lattnercf9b4f02002-11-06 23:05:03 +0000688// int fprintf(FILE *,sbyte *, ...) - a very rough implementation to make output
689// useful.
690GenericValue lle_X_fprintf(FunctionType *M, const vector<GenericValue> &Args) {
Chris Lattner9dbf6dd2003-04-21 22:43:20 +0000691 assert(Args.size() >= 2);
Chris Lattnercf9b4f02002-11-06 23:05:03 +0000692 char Buffer[10000];
693 vector<GenericValue> NewArgs;
Chris Lattnerb1118742003-01-13 00:59:47 +0000694 NewArgs.push_back(PTOGV(Buffer));
Chris Lattnercf9b4f02002-11-06 23:05:03 +0000695 NewArgs.insert(NewArgs.end(), Args.begin()+1, Args.end());
Chris Lattnerb1118742003-01-13 00:59:47 +0000696 GenericValue GV = lle_X_sprintf(M, NewArgs);
Chris Lattnercf9b4f02002-11-06 23:05:03 +0000697
Chris Lattnerb1118742003-01-13 00:59:47 +0000698 fputs(Buffer, getFILE(GVTOP(Args[0])));
Chris Lattnercf9b4f02002-11-06 23:05:03 +0000699 return GV;
700}
701
Chris Lattner374344c2003-05-08 16:52:43 +0000702//===----------------------------------------------------------------------===//
703// LLVM Intrinsic Functions...
704//===----------------------------------------------------------------------===//
705
706// void llvm.va_start(<va_list> *) - Implement the va_start operation...
707GenericValue llvm_va_start(FunctionType *F, const vector<GenericValue> &Args) {
708 assert(Args.size() == 1);
709 GenericValue *VAListP = (GenericValue *)GVTOP(Args[0]);
710 GenericValue Val;
711 Val.UIntVal = 0; // Start at the first '...' argument...
712 TheInterpreter->StoreValueToMemory(Val, VAListP, Type::UIntTy);
713 return GenericValue();
714}
715
716// void llvm.va_end(<va_list> *) - Implement the va_end operation...
717GenericValue llvm_va_end(FunctionType *F, const vector<GenericValue> &Args) {
718 assert(Args.size() == 1);
719 return GenericValue(); // Noop!
720}
721
722// void llvm.va_copy(<va_list> *, <va_list>) - Implement the va_copy
723// operation...
724GenericValue llvm_va_copy(FunctionType *F, const vector<GenericValue> &Args) {
725 assert(Args.size() == 2);
726 GenericValue *DestVAList = (GenericValue*)GVTOP(Args[0]);
727 TheInterpreter->StoreValueToMemory(Args[1], DestVAList, Type::UIntTy);
728 return GenericValue();
729}
730
Chris Lattner7720c8e2001-09-10 04:50:17 +0000731} // End extern "C"
Chris Lattner4721f132001-10-30 20:28:00 +0000732
733
Chris Lattnerda82ed52003-05-08 16:18:31 +0000734void Interpreter::initializeExternalFunctions() {
Chris Lattner0f279b22001-11-03 10:15:32 +0000735 FuncNames["lle_Vb_putchar"] = lle_Vb_putchar;
736 FuncNames["lle_ii_putchar"] = lle_ii_putchar;
737 FuncNames["lle_VB_putchar"] = lle_VB_putchar;
Chris Lattner0f279b22001-11-03 10:15:32 +0000738 FuncNames["lle_X_exit"] = lle_X_exit;
Chris Lattner1ee34a52002-05-20 21:17:16 +0000739 FuncNames["lle_X_abort"] = lle_X_abort;
Chris Lattner0f279b22001-11-03 10:15:32 +0000740 FuncNames["lle_X_malloc"] = lle_X_malloc;
Chris Lattner957d62a2003-04-23 19:55:24 +0000741 FuncNames["lle_X_calloc"] = lle_X_calloc;
Chris Lattner0f279b22001-11-03 10:15:32 +0000742 FuncNames["lle_X_free"] = lle_X_free;
Chris Lattner782b9392001-11-26 18:18:18 +0000743 FuncNames["lle_X_atoi"] = lle_X_atoi;
Chris Lattner0f279b22001-11-03 10:15:32 +0000744 FuncNames["lle_X_pow"] = lle_X_pow;
Chris Lattner34dd24b2002-02-18 19:06:25 +0000745 FuncNames["lle_X_exp"] = lle_X_exp;
Chris Lattner1b600142001-11-13 05:46:08 +0000746 FuncNames["lle_X_log"] = lle_X_log;
Chris Lattnerdbcda222002-12-20 04:18:13 +0000747 FuncNames["lle_X_isnan"] = lle_X_isnan;
Chris Lattner782b9392001-11-26 18:18:18 +0000748 FuncNames["lle_X_floor"] = lle_X_floor;
749 FuncNames["lle_X_srand"] = lle_X_srand;
Chris Lattner1b600142001-11-13 05:46:08 +0000750 FuncNames["lle_X_drand48"] = lle_X_drand48;
751 FuncNames["lle_X_srand48"] = lle_X_srand48;
752 FuncNames["lle_X_lrand48"] = lle_X_lrand48;
Chris Lattnerc063d382001-11-06 21:52:18 +0000753 FuncNames["lle_X_sqrt"] = lle_X_sqrt;
Chris Lattnerb1118742003-01-13 00:59:47 +0000754 FuncNames["lle_X_puts"] = lle_X_puts;
Chris Lattner0f279b22001-11-03 10:15:32 +0000755 FuncNames["lle_X_printf"] = lle_X_printf;
Chris Lattnere7c6f722001-12-13 00:43:47 +0000756 FuncNames["lle_X_sprintf"] = lle_X_sprintf;
Chris Lattner665ee882002-03-08 22:51:07 +0000757 FuncNames["lle_X_sscanf"] = lle_X_sscanf;
Chris Lattnerf9a88b62003-03-31 22:12:37 +0000758 FuncNames["lle_X_scanf"] = lle_X_scanf;
Chris Lattner295fe672002-01-23 21:38:07 +0000759 FuncNames["lle_i_clock"] = lle_i_clock;
Chris Lattner957d62a2003-04-23 19:55:24 +0000760
761 FuncNames["lle_X_strcmp"] = lle_X_strcmp;
762 FuncNames["lle_X_strcat"] = lle_X_strcat;
763 FuncNames["lle_X_strcpy"] = lle_X_strcpy;
764 FuncNames["lle_X_strlen"] = lle_X_strlen;
Chris Lattnerda82ed52003-05-08 16:18:31 +0000765 FuncNames["lle_X___strdup"] = lle_X___strdup;
Chris Lattner957d62a2003-04-23 19:55:24 +0000766 FuncNames["lle_X_memset"] = lle_X_memset;
Chris Lattner5f311a72003-04-23 20:23:16 +0000767 FuncNames["lle_X_memcpy"] = lle_X_memcpy;
Chris Lattner957d62a2003-04-23 19:55:24 +0000768
Chris Lattner665ee882002-03-08 22:51:07 +0000769 FuncNames["lle_X_fopen"] = lle_X_fopen;
770 FuncNames["lle_X_fclose"] = lle_X_fclose;
Chris Lattner25f6f372002-11-08 19:10:26 +0000771 FuncNames["lle_X_feof"] = lle_X_feof;
Chris Lattner665ee882002-03-08 22:51:07 +0000772 FuncNames["lle_X_fread"] = lle_X_fread;
773 FuncNames["lle_X_fwrite"] = lle_X_fwrite;
774 FuncNames["lle_X_fgets"] = lle_X_fgets;
775 FuncNames["lle_X_fflush"] = lle_X_fflush;
Chris Lattnera5c0bfe2002-11-06 22:59:28 +0000776 FuncNames["lle_X_fgetc"] = lle_X_getc;
Chris Lattner005cbce2002-10-02 21:12:13 +0000777 FuncNames["lle_X_getc"] = lle_X_getc;
Chris Lattnerf87a1982003-04-23 19:20:50 +0000778 FuncNames["lle_X__IO_getc"] = lle_X__IO_getc;
Chris Lattnera5c0bfe2002-11-06 22:59:28 +0000779 FuncNames["lle_X_fputc"] = lle_X_fputc;
780 FuncNames["lle_X_ungetc"] = lle_X_ungetc;
Chris Lattnercf9b4f02002-11-06 23:05:03 +0000781 FuncNames["lle_X_fprintf"] = lle_X_fprintf;
Chris Lattnera4479cd2002-11-07 19:33:50 +0000782 FuncNames["lle_X_freopen"] = lle_X_freopen;
Chris Lattner374344c2003-05-08 16:52:43 +0000783
784 FuncNames["lle_X_llvm.va_start"]= llvm_va_start;
785 FuncNames["lle_X_llvm.va_end"] = llvm_va_end;
786 FuncNames["lle_X_llvm.va_copy"] = llvm_va_copy;
Chris Lattner4721f132001-10-30 20:28:00 +0000787}