1 //===-- TargetLibraryInfo.cpp - Runtime library information ----------------==//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This file implements the TargetLibraryInfo class.
10 //
11 //===----------------------------------------------------------------------===//
12
13 #include "llvm/Analysis/TargetLibraryInfo.h"
14 #include "llvm/ADT/Triple.h"
15 #include "llvm/IR/Constants.h"
16 #include "llvm/InitializePasses.h"
17 #include "llvm/Support/CommandLine.h"
18 using namespace llvm;
19
20 static cl::opt<TargetLibraryInfoImpl::VectorLibrary> ClVectorLibrary(
21 "vector-library", cl::Hidden, cl::desc("Vector functions library"),
22 cl::init(TargetLibraryInfoImpl::NoLibrary),
23 cl::values(clEnumValN(TargetLibraryInfoImpl::NoLibrary, "none",
24 "No vector functions library"),
25 clEnumValN(TargetLibraryInfoImpl::Accelerate, "Accelerate",
26 "Accelerate framework"),
27 clEnumValN(TargetLibraryInfoImpl::DarwinLibSystemM,
28 "Darwin_libsystem_m", "Darwin libsystem_m"),
29 clEnumValN(TargetLibraryInfoImpl::LIBMVEC_X86, "LIBMVEC-X86",
30 "GLIBC Vector Math library"),
31 clEnumValN(TargetLibraryInfoImpl::MASSV, "MASSV",
32 "IBM MASS vector library"),
33 clEnumValN(TargetLibraryInfoImpl::SVML, "SVML",
34 "Intel SVML library")));
35
36 StringLiteral const TargetLibraryInfoImpl::StandardNames[LibFunc::NumLibFuncs] =
37 {
38 #define TLI_DEFINE_STRING
39 #include "llvm/Analysis/TargetLibraryInfo.def"
40 };
41
42 static bool hasSinCosPiStret(const Triple &T) {
43 // Only Darwin variants have _stret versions of combined trig functions.
44 if (!T.isOSDarwin())
45 return false;
46
47 // The ABI is rather complicated on x86, so don't do anything special there.
48 if (T.getArch() == Triple::x86)
49 return false;
TFInitializer__anonb68daa340111::TFInitializer50
51 if (T.isMacOSX() && T.isMacOSXVersionLT(10, 9))
52 return false;
53
54 if (T.isiOS() && T.isOSVersionLT(7, 0))
55 return false;
56
57 return true;
58 }
59
60 static bool hasBcmp(const Triple &TT) {
61 // Posix removed support from bcmp() in 2001, but the glibc and several
62 // implementations of the libc still have it.
ensureInitTF()63 if (TT.isOSLinux())
64 return TT.isGNUEnvironment() || TT.isMusl();
createTFGraph()65 // Both NetBSD and OpenBSD are planning to remove the function. Windows does
66 // not have it.
67 return TT.isOSFreeBSD() || TT.isOSSolaris();
68 }
createTFStatus()69
70 static bool isCallingConvCCompatible(CallingConv::ID CC, StringRef TT,
71 FunctionType *FuncTy) {
72 switch (CC) {
73 default:
74 return false;
75 case llvm::CallingConv::C:
76 return true;
77 case llvm::CallingConv::ARM_APCS:
78 case llvm::CallingConv::ARM_AAPCS:
79 case llvm::CallingConv::ARM_AAPCS_VFP: {
80
81 // The iOS ABI diverges from the standard in some cases, so for now don't
82 // try to simplify those calls.
83 if (Triple(TT).isiOS())
84 return false;
85
86 if (!FuncTy->getReturnType()->isPointerTy() &&
87 !FuncTy->getReturnType()->isIntegerTy() &&
88 !FuncTy->getReturnType()->isVoidTy())
89 return false;
90
91 for (auto *Param : FuncTy->params()) {
92 if (!Param->isPointerTy() && !Param->isIntegerTy())
93 return false;
94 }
95 return true;
96 }
97 }
98 return false;
99 }
100
101 bool TargetLibraryInfoImpl::isCallingConvCCompatible(CallBase *CI) {
102 return ::isCallingConvCCompatible(CI->getCallingConv(),
TensorSpec(const std::string & Name,int Port,int TypeIndex,const std::vector<int64_t> & Shape)103 CI->getModule()->getTargetTriple(),
104 CI->getFunctionType());
105 }
106
107 bool TargetLibraryInfoImpl::isCallingConvCCompatible(Function *F) {
108 return ::isCallingConvCCompatible(F->getCallingConv(),
getTensorSpecFromJSON(LLVMContext & Ctx,const json::Value & Value)109 F->getParent()->getTargetTriple(),
110 F->getFunctionType());
__anonb68daa340202(const llvm::Twine &Message) 111 }
112
113 /// Initialize the set of available library functions based on the specified
114 /// target triple. This should be carefully written so that a missing target
115 /// triple gets a sane set of defaults.
116 static void initialize(TargetLibraryInfoImpl &TLI, const Triple &T,
117 ArrayRef<StringLiteral> StandardNames) {
118 // Verify that the StandardNames array is in alphabetical order.
119 assert(
120 llvm::is_sorted(StandardNames,
121 [](StringRef LHS, StringRef RHS) { return LHS < RHS; }) &&
122 "TargetLibraryInfoImpl function names must be sorted");
123
124 // Set IO unlocked variants as unavailable
125 // Set them as available per system below
126 TLI.setUnavailable(LibFunc_getchar_unlocked);
127 TLI.setUnavailable(LibFunc_putc_unlocked);
128 TLI.setUnavailable(LibFunc_putchar_unlocked);
129 TLI.setUnavailable(LibFunc_fputc_unlocked);
130 TLI.setUnavailable(LibFunc_fgetc_unlocked);
131 TLI.setUnavailable(LibFunc_fread_unlocked);
132 TLI.setUnavailable(LibFunc_fwrite_unlocked);
133 TLI.setUnavailable(LibFunc_fputs_unlocked);
134 TLI.setUnavailable(LibFunc_fgets_unlocked);
135
136 bool ShouldExtI32Param = false, ShouldExtI32Return = false,
137 ShouldSignExtI32Param = false;
138 // PowerPC64, Sparc64, SystemZ need signext/zeroext on i32 parameters and
139 // returns corresponding to C-level ints and unsigned ints.
140 if (T.isPPC64() || T.getArch() == Triple::sparcv9 ||
141 T.getArch() == Triple::systemz) {
142 ShouldExtI32Param = true;
143 ShouldExtI32Return = true;
144 }
145 // Mips, on the other hand, needs signext on i32 parameters corresponding
146 // to both signed and unsigned ints.
147 if (T.isMIPS()) {
148 ShouldSignExtI32Param = true;
149 }
150 TLI.setShouldExtI32Param(ShouldExtI32Param);
151 TLI.setShouldExtI32Return(ShouldExtI32Return);
152 TLI.setShouldSignExtI32Param(ShouldSignExtI32Param);
153
154 // Let's assume by default that the size of int is 32 bits, unless the target
155 // is a 16-bit architecture because then it most likely is 16 bits. If that
156 // isn't true for a target those defaults should be overridden below.
157 TLI.setIntSize(T.isArch16Bit() ? 16 : 32);
158
159 if (T.isAMDGPU())
160 TLI.disableAllFunctions();
161
162 // There are no library implementations of memcpy and memset for AMD gpus and
163 // these can be difficult to lower in the backend.
164 if (T.isAMDGPU()) {
165 TLI.setUnavailable(LibFunc_memcpy);
166 TLI.setUnavailable(LibFunc_memset);
167 TLI.setUnavailable(LibFunc_memset_pattern16);
168 TLI.setAvailable(llvm::LibFunc___kmpc_alloc_shared);
169 TLI.setAvailable(llvm::LibFunc___kmpc_free_shared);
170 return;
171 }
172
173 // memset_pattern16 is only available on iOS 3.0 and Mac OS X 10.5 and later.
174 // All versions of watchOS support it.
175 if (T.isMacOSX()) {
176 // available IO unlocked variants on Mac OS X
177 TLI.setAvailable(LibFunc_getc_unlocked);
178 TLI.setAvailable(LibFunc_getchar_unlocked);
179 TLI.setAvailable(LibFunc_putc_unlocked);
180 TLI.setAvailable(LibFunc_putchar_unlocked);
181
182 if (T.isMacOSXVersionLT(10, 5))
183 TLI.setUnavailable(LibFunc_memset_pattern16);
184 } else if (T.isiOS()) {
185 if (T.isOSVersionLT(3, 0))
186 TLI.setUnavailable(LibFunc_memset_pattern16);
187 } else if (!T.isWatchOS()) {
188 TLI.setUnavailable(LibFunc_memset_pattern16);
189 }
190
191 if (!hasSinCosPiStret(T)) {
192 TLI.setUnavailable(LibFunc_sinpi);
193 TLI.setUnavailable(LibFunc_sinpif);
194 TLI.setUnavailable(LibFunc_cospi);
195 TLI.setUnavailable(LibFunc_cospif);
196 TLI.setUnavailable(LibFunc_sincospi_stret);
197 TLI.setUnavailable(LibFunc_sincospif_stret);
198 }
199
200 if (!hasBcmp(T))
201 TLI.setUnavailable(LibFunc_bcmp);
202
203 if (T.isMacOSX() && T.getArch() == Triple::x86 &&
204 !T.isMacOSXVersionLT(10, 7)) {
205 // x86-32 OSX has a scheme where fwrite and fputs (and some other functions
206 // we don't care about) have two versions; on recent OSX, the one we want
207 // has a $UNIX2003 suffix. The two implementations are identical except
208 // for the return value in some edge cases. However, we don't want to
209 // generate code that depends on the old symbols.
210 TLI.setAvailableWithName(LibFunc_fwrite, "fwrite$UNIX2003");
211 TLI.setAvailableWithName(LibFunc_fputs, "fputs$UNIX2003");
212 }
213
214 // iprintf and friends are only available on XCore, TCE, and Emscripten.
215 if (T.getArch() != Triple::xcore && T.getArch() != Triple::tce &&
216 T.getOS() != Triple::Emscripten) {
217 TLI.setUnavailable(LibFunc_iprintf);
218 TLI.setUnavailable(LibFunc_siprintf);
219 TLI.setUnavailable(LibFunc_fiprintf);
220 }
221
222 // __small_printf and friends are only available on Emscripten.
223 if (T.getOS() != Triple::Emscripten) {
224 TLI.setUnavailable(LibFunc_small_printf);
225 TLI.setUnavailable(LibFunc_small_sprintf);
226 TLI.setUnavailable(LibFunc_small_fprintf);
227 }
228
229 if (T.isOSWindows() && !T.isOSCygMing()) {
230 // XXX: The earliest documentation available at the moment is for VS2015/VC19:
231 // https://docs.microsoft.com/en-us/cpp/c-runtime-library/floating-point-support?view=vs-2015
232 // XXX: In order to use an MSVCRT older than VC19,
233 // the specific library version must be explicit in the target triple,
234 // e.g., x86_64-pc-windows-msvc18.
235 bool hasPartialC99 = true;
236 if (T.isKnownWindowsMSVCEnvironment()) {
237 unsigned Major, Minor, Micro;
238 T.getEnvironmentVersion(Major, Minor, Micro);
239 hasPartialC99 = (Major == 0 || Major >= 19);
240 }
241
242 // Latest targets support C89 math functions, in part.
243 bool isARM = (T.getArch() == Triple::aarch64 ||
244 T.getArch() == Triple::arm);
245 bool hasPartialFloat = (isARM ||
246 T.getArch() == Triple::x86_64);
247
248 // Win32 does not support float C89 math functions, in general.
249 if (!hasPartialFloat) {
250 TLI.setUnavailable(LibFunc_acosf);
251 TLI.setUnavailable(LibFunc_asinf);
252 TLI.setUnavailable(LibFunc_atan2f);
253 TLI.setUnavailable(LibFunc_atanf);
254 TLI.setUnavailable(LibFunc_ceilf);
255 TLI.setUnavailable(LibFunc_cosf);
256 TLI.setUnavailable(LibFunc_coshf);
257 TLI.setUnavailable(LibFunc_expf);
258 TLI.setUnavailable(LibFunc_floorf);
259 TLI.setUnavailable(LibFunc_fmodf);
260 TLI.setUnavailable(LibFunc_log10f);
261 TLI.setUnavailable(LibFunc_logf);
262 TLI.setUnavailable(LibFunc_modff);
263 TLI.setUnavailable(LibFunc_powf);
264 TLI.setUnavailable(LibFunc_remainderf);
265 TLI.setUnavailable(LibFunc_sinf);
266 TLI.setUnavailable(LibFunc_sinhf);
267 TLI.setUnavailable(LibFunc_sqrtf);
268 TLI.setUnavailable(LibFunc_tanf);
269 TLI.setUnavailable(LibFunc_tanhf);
270 }
271 if (!isARM)
272 TLI.setUnavailable(LibFunc_fabsf);
273 TLI.setUnavailable(LibFunc_frexpf);
274 TLI.setUnavailable(LibFunc_ldexpf);
275
276 // Win32 does not support long double C89 math functions.
277 TLI.setUnavailable(LibFunc_acosl);
278 TLI.setUnavailable(LibFunc_asinl);
279 TLI.setUnavailable(LibFunc_atan2l);
280 TLI.setUnavailable(LibFunc_atanl);
281 TLI.setUnavailable(LibFunc_ceill);
282 TLI.setUnavailable(LibFunc_cosl);
283 TLI.setUnavailable(LibFunc_coshl);
284 TLI.setUnavailable(LibFunc_expl);
285 TLI.setUnavailable(LibFunc_fabsl);
286 TLI.setUnavailable(LibFunc_floorl);
287 TLI.setUnavailable(LibFunc_fmodl);
288 TLI.setUnavailable(LibFunc_frexpl);
289 TLI.setUnavailable(LibFunc_ldexpl);
290 TLI.setUnavailable(LibFunc_log10l);
291 TLI.setUnavailable(LibFunc_logl);
292 TLI.setUnavailable(LibFunc_modfl);
293 TLI.setUnavailable(LibFunc_powl);
294 TLI.setUnavailable(LibFunc_remainderl);
295 TLI.setUnavailable(LibFunc_sinl);
296 TLI.setUnavailable(LibFunc_sinhl);
297 TLI.setUnavailable(LibFunc_sqrtl);
298 TLI.setUnavailable(LibFunc_tanl);
299 TLI.setUnavailable(LibFunc_tanhl);
300
301 // Win32 does not fully support C99 math functions.
302 if (!hasPartialC99) {
303 TLI.setUnavailable(LibFunc_acosh);
304 TLI.setUnavailable(LibFunc_acoshf);
305 TLI.setUnavailable(LibFunc_asinh);
306 TLI.setUnavailable(LibFunc_asinhf);
307 TLI.setUnavailable(LibFunc_atanh);
308 TLI.setUnavailable(LibFunc_atanhf);
309 TLI.setAvailableWithName(LibFunc_cabs, "_cabs");
310 TLI.setUnavailable(LibFunc_cabsf);
311 TLI.setUnavailable(LibFunc_cbrt);
312 TLI.setUnavailable(LibFunc_cbrtf);
313 TLI.setAvailableWithName(LibFunc_copysign, "_copysign");
314 TLI.setAvailableWithName(LibFunc_copysignf, "_copysignf");
315 TLI.setUnavailable(LibFunc_exp2);
316 TLI.setUnavailable(LibFunc_exp2f);
317 TLI.setUnavailable(LibFunc_expm1);
318 TLI.setUnavailable(LibFunc_expm1f);
319 TLI.setUnavailable(LibFunc_fmax);
320 TLI.setUnavailable(LibFunc_fmaxf);
321 TLI.setUnavailable(LibFunc_fmin);
322 TLI.setUnavailable(LibFunc_fminf);
323 TLI.setUnavailable(LibFunc_log1p);
324 TLI.setUnavailable(LibFunc_log1pf);
325 TLI.setUnavailable(LibFunc_log2);
326 TLI.setUnavailable(LibFunc_log2f);
327 TLI.setAvailableWithName(LibFunc_logb, "_logb");
328 if (hasPartialFloat)
329 TLI.setAvailableWithName(LibFunc_logbf, "_logbf");
330 else
331 TLI.setUnavailable(LibFunc_logbf);
332 TLI.setUnavailable(LibFunc_rint);
333 TLI.setUnavailable(LibFunc_rintf);
334 TLI.setUnavailable(LibFunc_round);
335 TLI.setUnavailable(LibFunc_roundf);
336 TLI.setUnavailable(LibFunc_trunc);
337 TLI.setUnavailable(LibFunc_truncf);
338 }
339
340 // Win32 does not support long double C99 math functions.
341 TLI.setUnavailable(LibFunc_acoshl);
342 TLI.setUnavailable(LibFunc_asinhl);
343 TLI.setUnavailable(LibFunc_atanhl);
344 TLI.setUnavailable(LibFunc_cabsl);
345 TLI.setUnavailable(LibFunc_cbrtl);
346 TLI.setUnavailable(LibFunc_copysignl);
347 TLI.setUnavailable(LibFunc_exp2l);
348 TLI.setUnavailable(LibFunc_expm1l);
349 TLI.setUnavailable(LibFunc_fmaxl);
350 TLI.setUnavailable(LibFunc_fminl);
351 TLI.setUnavailable(LibFunc_log1pl);
352 TLI.setUnavailable(LibFunc_log2l);
353 TLI.setUnavailable(LibFunc_logbl);
354 TLI.setUnavailable(LibFunc_nearbyintl);
355 TLI.setUnavailable(LibFunc_rintl);
356 TLI.setUnavailable(LibFunc_roundl);
357 TLI.setUnavailable(LibFunc_truncl);
358
359 // Win32 does not support these functions, but
360 // they are generally available on POSIX-compliant systems.
361 TLI.setUnavailable(LibFunc_access);
362 TLI.setUnavailable(LibFunc_chmod);
363 TLI.setUnavailable(LibFunc_closedir);
364 TLI.setUnavailable(LibFunc_fdopen);
365 TLI.setUnavailable(LibFunc_fileno);
366 TLI.setUnavailable(LibFunc_fseeko);
367 TLI.setUnavailable(LibFunc_fstat);
368 TLI.setUnavailable(LibFunc_ftello);
369 TLI.setUnavailable(LibFunc_gettimeofday);
370 TLI.setUnavailable(LibFunc_memccpy);
371 TLI.setUnavailable(LibFunc_mkdir);
372 TLI.setUnavailable(LibFunc_open);
373 TLI.setUnavailable(LibFunc_opendir);
374 TLI.setUnavailable(LibFunc_pclose);
375 TLI.setUnavailable(LibFunc_popen);
376 TLI.setUnavailable(LibFunc_read);
377 TLI.setUnavailable(LibFunc_rmdir);
378 TLI.setUnavailable(LibFunc_stat);
379 TLI.setUnavailable(LibFunc_strcasecmp);
380 TLI.setUnavailable(LibFunc_strncasecmp);
381 TLI.setUnavailable(LibFunc_unlink);
382 TLI.setUnavailable(LibFunc_utime);
383 TLI.setUnavailable(LibFunc_write);
384 }
385
386 if (T.isOSWindows() && !T.isWindowsCygwinEnvironment()) {
387 // These functions aren't available in either MSVC or MinGW environments.
388 TLI.setUnavailable(LibFunc_bcmp);
389 TLI.setUnavailable(LibFunc_bcopy);
390 TLI.setUnavailable(LibFunc_bzero);
391 TLI.setUnavailable(LibFunc_chown);
392 TLI.setUnavailable(LibFunc_ctermid);
393 TLI.setUnavailable(LibFunc_ffs);
394 TLI.setUnavailable(LibFunc_flockfile);
395 TLI.setUnavailable(LibFunc_fstatvfs);
396 TLI.setUnavailable(LibFunc_ftrylockfile);
397 TLI.setUnavailable(LibFunc_funlockfile);
398 TLI.setUnavailable(LibFunc_getitimer);
399 TLI.setUnavailable(LibFunc_getlogin_r);
400 TLI.setUnavailable(LibFunc_getpwnam);
401 TLI.setUnavailable(LibFunc_htonl);
402 TLI.setUnavailable(LibFunc_htons);
403 TLI.setUnavailable(LibFunc_lchown);
404 TLI.setUnavailable(LibFunc_lstat);
405 TLI.setUnavailable(LibFunc_ntohl);
406 TLI.setUnavailable(LibFunc_ntohs);
407 TLI.setUnavailable(LibFunc_pread);
408 TLI.setUnavailable(LibFunc_pwrite);
409 TLI.setUnavailable(LibFunc_readlink);
410 TLI.setUnavailable(LibFunc_realpath);
411 TLI.setUnavailable(LibFunc_setitimer);
412 TLI.setUnavailable(LibFunc_statvfs);
413 TLI.setUnavailable(LibFunc_stpcpy);
414 TLI.setUnavailable(LibFunc_stpncpy);
415 TLI.setUnavailable(LibFunc_times);
416 TLI.setUnavailable(LibFunc_uname);
417 TLI.setUnavailable(LibFunc_unsetenv);
418 TLI.setUnavailable(LibFunc_utimes);
419 }
420
421 switch (T.getOS()) {
422 case Triple::MacOSX:
423 // exp10 and exp10f are not available on OS X until 10.9 and iOS until 7.0
424 // and their names are __exp10 and __exp10f. exp10l is not available on
425 // OS X or iOS.
426 TLI.setUnavailable(LibFunc_exp10l);
427 if (T.isMacOSXVersionLT(10, 9)) {
428 TLI.setUnavailable(LibFunc_exp10);
429 TLI.setUnavailable(LibFunc_exp10f);
430 } else {
431 TLI.setAvailableWithName(LibFunc_exp10, "__exp10");
432 TLI.setAvailableWithName(LibFunc_exp10f, "__exp10f");
433 }
434 break;
435 case Triple::IOS:
436 case Triple::TvOS:
437 case Triple::WatchOS:
438 TLI.setUnavailable(LibFunc_exp10l);
439 if (!T.isWatchOS() &&
440 (T.isOSVersionLT(7, 0) || (T.isOSVersionLT(9, 0) && T.isX86()))) {
441 TLI.setUnavailable(LibFunc_exp10);
442 TLI.setUnavailable(LibFunc_exp10f);
443 } else {
444 TLI.setAvailableWithName(LibFunc_exp10, "__exp10");
445 TLI.setAvailableWithName(LibFunc_exp10f, "__exp10f");
446 }
447 break;
448 case Triple::Linux:
449 // exp10, exp10f, exp10l is available on Linux (GLIBC) but are extremely
450 // buggy prior to glibc version 2.18. Until this version is widely deployed
451 // or we have a reasonable detection strategy, we cannot use exp10 reliably
452 // on Linux.
453 //
454 // Fall through to disable all of them.
455 LLVM_FALLTHROUGH;
456 default:
457 TLI.setUnavailable(LibFunc_exp10);
458 TLI.setUnavailable(LibFunc_exp10f);
459 TLI.setUnavailable(LibFunc_exp10l);
460 }
461
462 // ffsl is available on at least Darwin, Mac OS X, iOS, FreeBSD, and
463 // Linux (GLIBC):
464 // http://developer.apple.com/library/mac/#documentation/Darwin/Reference/ManPages/man3/ffsl.3.html
465 // http://svn.freebsd.org/base/head/lib/libc/string/ffsl.c
466 // http://www.gnu.org/software/gnulib/manual/html_node/ffsl.html
467 switch (T.getOS()) {
468 case Triple::Darwin:
469 case Triple::MacOSX:
470 case Triple::IOS:
471 case Triple::TvOS:
472 case Triple::WatchOS:
473 case Triple::FreeBSD:
474 case Triple::Linux:
475 break;
476 default:
477 TLI.setUnavailable(LibFunc_ffsl);
478 }
479
480 // ffsll is available on at least FreeBSD and Linux (GLIBC):
481 // http://svn.freebsd.org/base/head/lib/libc/string/ffsll.c
482 // http://www.gnu.org/software/gnulib/manual/html_node/ffsll.html
483 switch (T.getOS()) {
484 case Triple::Darwin:
485 case Triple::MacOSX:
486 case Triple::IOS:
487 case Triple::TvOS:
488 case Triple::WatchOS:
489 case Triple::FreeBSD:
490 case Triple::Linux:
491 break;
492 default:
493 TLI.setUnavailable(LibFunc_ffsll);
494 }
495
496 // The following functions are available on at least FreeBSD:
497 // http://svn.freebsd.org/base/head/lib/libc/string/fls.c
498 // http://svn.freebsd.org/base/head/lib/libc/string/flsl.c
499 // http://svn.freebsd.org/base/head/lib/libc/string/flsll.c
500 if (!T.isOSFreeBSD()) {
501 TLI.setUnavailable(LibFunc_fls);
502 TLI.setUnavailable(LibFunc_flsl);
503 TLI.setUnavailable(LibFunc_flsll);
504 }
505
506 // The following functions are only available on GNU/Linux (using glibc).
507 // Linux variants without glibc (eg: bionic, musl) may have some subset.
508 if (!T.isOSLinux() || !T.isGNUEnvironment()) {
509 TLI.setUnavailable(LibFunc_dunder_strdup);
510 TLI.setUnavailable(LibFunc_dunder_strtok_r);
511 TLI.setUnavailable(LibFunc_dunder_isoc99_scanf);
512 TLI.setUnavailable(LibFunc_dunder_isoc99_sscanf);
513 TLI.setUnavailable(LibFunc_under_IO_getc);
514 TLI.setUnavailable(LibFunc_under_IO_putc);
515 // But, Android and musl have memalign.
516 if (!T.isAndroid() && !T.isMusl())
517 TLI.setUnavailable(LibFunc_memalign);
518 TLI.setUnavailable(LibFunc_fopen64);
519 TLI.setUnavailable(LibFunc_fseeko64);
520 TLI.setUnavailable(LibFunc_fstat64);
521 TLI.setUnavailable(LibFunc_fstatvfs64);
522 TLI.setUnavailable(LibFunc_ftello64);
523 TLI.setUnavailable(LibFunc_lstat64);
524 TLI.setUnavailable(LibFunc_open64);
525 TLI.setUnavailable(LibFunc_stat64);
526 TLI.setUnavailable(LibFunc_statvfs64);
527 TLI.setUnavailable(LibFunc_tmpfile64);
528
529 // Relaxed math functions are included in math-finite.h on Linux (GLIBC).
530 // Note that math-finite.h is no longer supported by top-of-tree GLIBC,
531 // so we keep these functions around just so that they're recognized by
532 // the ConstantFolder.
533 TLI.setUnavailable(LibFunc_acos_finite);
534 TLI.setUnavailable(LibFunc_acosf_finite);
535 TLI.setUnavailable(LibFunc_acosl_finite);
536 TLI.setUnavailable(LibFunc_acosh_finite);
537 TLI.setUnavailable(LibFunc_acoshf_finite);
538 TLI.setUnavailable(LibFunc_acoshl_finite);
539 TLI.setUnavailable(LibFunc_asin_finite);
540 TLI.setUnavailable(LibFunc_asinf_finite);
541 TLI.setUnavailable(LibFunc_asinl_finite);
542 TLI.setUnavailable(LibFunc_atan2_finite);
543 TLI.setUnavailable(LibFunc_atan2f_finite);
544 TLI.setUnavailable(LibFunc_atan2l_finite);
545 TLI.setUnavailable(LibFunc_atanh_finite);
546 TLI.setUnavailable(LibFunc_atanhf_finite);
547 TLI.setUnavailable(LibFunc_atanhl_finite);
548 TLI.setUnavailable(LibFunc_cosh_finite);
549 TLI.setUnavailable(LibFunc_coshf_finite);
550 TLI.setUnavailable(LibFunc_coshl_finite);
551 TLI.setUnavailable(LibFunc_exp10_finite);
552 TLI.setUnavailable(LibFunc_exp10f_finite);
553 TLI.setUnavailable(LibFunc_exp10l_finite);
554 TLI.setUnavailable(LibFunc_exp2_finite);
555 TLI.setUnavailable(LibFunc_exp2f_finite);
556 TLI.setUnavailable(LibFunc_exp2l_finite);
557 TLI.setUnavailable(LibFunc_exp_finite);
558 TLI.setUnavailable(LibFunc_expf_finite);
559 TLI.setUnavailable(LibFunc_expl_finite);
560 TLI.setUnavailable(LibFunc_log10_finite);
561 TLI.setUnavailable(LibFunc_log10f_finite);
562 TLI.setUnavailable(LibFunc_log10l_finite);
563 TLI.setUnavailable(LibFunc_log2_finite);
564 TLI.setUnavailable(LibFunc_log2f_finite);
565 TLI.setUnavailable(LibFunc_log2l_finite);
566 TLI.setUnavailable(LibFunc_log_finite);
567 TLI.setUnavailable(LibFunc_logf_finite);
568 TLI.setUnavailable(LibFunc_logl_finite);
569 TLI.setUnavailable(LibFunc_pow_finite);
570 TLI.setUnavailable(LibFunc_powf_finite);
571 TLI.setUnavailable(LibFunc_powl_finite);
572 TLI.setUnavailable(LibFunc_sinh_finite);
573 TLI.setUnavailable(LibFunc_sinhf_finite);
574 TLI.setUnavailable(LibFunc_sinhl_finite);
575 }
576
577 if ((T.isOSLinux() && T.isGNUEnvironment()) ||
578 (T.isAndroid() && !T.isAndroidVersionLT(28))) {
579 // available IO unlocked variants on GNU/Linux and Android P or later
580 TLI.setAvailable(LibFunc_getc_unlocked);
581 TLI.setAvailable(LibFunc_getchar_unlocked);
582 TLI.setAvailable(LibFunc_putc_unlocked);
583 TLI.setAvailable(LibFunc_putchar_unlocked);
584 TLI.setAvailable(LibFunc_fputc_unlocked);
585 TLI.setAvailable(LibFunc_fgetc_unlocked);
586 TLI.setAvailable(LibFunc_fread_unlocked);
587 TLI.setAvailable(LibFunc_fwrite_unlocked);
588 TLI.setAvailable(LibFunc_fputs_unlocked);
589 TLI.setAvailable(LibFunc_fgets_unlocked);
590 }
591
592 // As currently implemented in clang, NVPTX code has no standard library to
593 // speak of. Headers provide a standard-ish library implementation, but many
594 // of the signatures are wrong -- for example, many libm functions are not
595 // extern "C".
596 //
597 // libdevice, an IR library provided by nvidia, is linked in by the front-end,
598 // but only used functions are provided to llvm. Moreover, most of the
599 // functions in libdevice don't map precisely to standard library functions.
600 //
601 // FIXME: Having no standard library prevents e.g. many fastmath
602 // optimizations, so this situation should be fixed.
603 if (T.isNVPTX()) {
604 TLI.disableAllFunctions();
605 TLI.setAvailable(LibFunc_nvvm_reflect);
606 TLI.setAvailable(llvm::LibFunc_malloc);
607 TLI.setAvailable(llvm::LibFunc_free);
608
609 // TODO: We could enable the following two according to [0] but we haven't
610 // done an evaluation wrt. the performance implications.
611 // [0]
612 // https://docs.nvidia.com/cuda/cuda-c-programming-guide/index.html#dynamic-global-memory-allocation-and-operations
613 //
614 // TLI.setAvailable(llvm::LibFunc_memcpy);
615 // TLI.setAvailable(llvm::LibFunc_memset);
616
617 TLI.setAvailable(llvm::LibFunc___kmpc_alloc_shared);
618 TLI.setAvailable(llvm::LibFunc___kmpc_free_shared);
619 } else {
620 TLI.setUnavailable(LibFunc_nvvm_reflect);
621 }
622
623 // These vec_malloc/free routines are only available on AIX.
624 if (!T.isOSAIX()) {
625 TLI.setUnavailable(LibFunc_vec_calloc);
626 TLI.setUnavailable(LibFunc_vec_malloc);
627 TLI.setUnavailable(LibFunc_vec_realloc);
628 TLI.setUnavailable(LibFunc_vec_free);
629 }
630
631 TLI.addVectorizableFunctionsFromVecLib(ClVectorLibrary);
632 }
633
634 TargetLibraryInfoImpl::TargetLibraryInfoImpl() {
635 // Default to everything being available.
636 memset(AvailableArray, -1, sizeof(AvailableArray));
637
638 initialize(*this, Triple(), StandardNames);
639 }
640
641 TargetLibraryInfoImpl::TargetLibraryInfoImpl(const Triple &T) {
642 // Default to everything being available.
643 memset(AvailableArray, -1, sizeof(AvailableArray));
644
645 initialize(*this, T, StandardNames);
646 }
647
648 TargetLibraryInfoImpl::TargetLibraryInfoImpl(const TargetLibraryInfoImpl &TLI)
649 : CustomNames(TLI.CustomNames), ShouldExtI32Param(TLI.ShouldExtI32Param),
650 ShouldExtI32Return(TLI.ShouldExtI32Return),
651 ShouldSignExtI32Param(TLI.ShouldSignExtI32Param),
652 SizeOfInt(TLI.SizeOfInt) {
653 memcpy(AvailableArray, TLI.AvailableArray, sizeof(AvailableArray));
654 VectorDescs = TLI.VectorDescs;
655 ScalarDescs = TLI.ScalarDescs;
656 }
657
658 TargetLibraryInfoImpl::TargetLibraryInfoImpl(TargetLibraryInfoImpl &&TLI)
659 : CustomNames(std::move(TLI.CustomNames)),
660 ShouldExtI32Param(TLI.ShouldExtI32Param),
661 ShouldExtI32Return(TLI.ShouldExtI32Return),
662 ShouldSignExtI32Param(TLI.ShouldSignExtI32Param),
663 SizeOfInt(TLI.SizeOfInt) {
664 std::move(std::begin(TLI.AvailableArray), std::end(TLI.AvailableArray),
665 AvailableArray);
666 VectorDescs = TLI.VectorDescs;
667 ScalarDescs = TLI.ScalarDescs;
668 }
669
670 TargetLibraryInfoImpl &TargetLibraryInfoImpl::operator=(const TargetLibraryInfoImpl &TLI) {
671 CustomNames = TLI.CustomNames;
672 ShouldExtI32Param = TLI.ShouldExtI32Param;
673 ShouldExtI32Return = TLI.ShouldExtI32Return;
674 ShouldSignExtI32Param = TLI.ShouldSignExtI32Param;
675 SizeOfInt = TLI.SizeOfInt;
676 memcpy(AvailableArray, TLI.AvailableArray, sizeof(AvailableArray));
677 return *this;
678 }
679
680 TargetLibraryInfoImpl &TargetLibraryInfoImpl::operator=(TargetLibraryInfoImpl &&TLI) {
681 CustomNames = std::move(TLI.CustomNames);
682 ShouldExtI32Param = TLI.ShouldExtI32Param;
683 ShouldExtI32Return = TLI.ShouldExtI32Return;
684 ShouldSignExtI32Param = TLI.ShouldSignExtI32Param;
685 SizeOfInt = TLI.SizeOfInt;
686 std::move(std::begin(TLI.AvailableArray), std::end(TLI.AvailableArray),
687 AvailableArray);
688 return *this;
689 }
690
691 static StringRef sanitizeFunctionName(StringRef funcName) {
692 // Filter out empty names and names containing null bytes, those can't be in
693 // our table.
694 if (funcName.empty() || funcName.find('\0') != StringRef::npos)
695 return StringRef();
696
697 // Check for \01 prefix that is used to mangle __asm declarations and
698 // strip it if present.
699 return GlobalValue::dropLLVMManglingEscape(funcName);
700 }
701
702 bool TargetLibraryInfoImpl::getLibFunc(StringRef funcName, LibFunc &F) const {
703 funcName = sanitizeFunctionName(funcName);
704 if (funcName.empty())
705 return false;
706
707 const auto *Start = std::begin(StandardNames);
708 const auto *End = std::end(StandardNames);
709 const auto *I = std::lower_bound(Start, End, funcName);
710 if (I != End && *I == funcName) {
711 F = (LibFunc)(I - Start);
712 return true;
713 }
714 return false;
715 }
716
717 bool TargetLibraryInfoImpl::isValidProtoForLibFunc(const FunctionType &FTy,
718 LibFunc F,
719 const DataLayout *DL) const {
720 LLVMContext &Ctx = FTy.getContext();
721 Type *SizeTTy = DL ? DL->getIntPtrType(Ctx, /*AddressSpace=*/0) : nullptr;
722 auto IsSizeTTy = [SizeTTy](Type *Ty) {
723 return SizeTTy ? Ty == SizeTTy : Ty->isIntegerTy();
724 };
725 unsigned NumParams = FTy.getNumParams();
726
727 switch (F) {
728 case LibFunc_execl:
729 case LibFunc_execlp:
730 case LibFunc_execle:
731 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() &&
732 FTy.getParamType(1)->isPointerTy() &&
733 FTy.getReturnType()->isIntegerTy(32));
734 case LibFunc_execv:
735 case LibFunc_execvp:
736 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() &&
737 FTy.getParamType(1)->isPointerTy() &&
738 FTy.getReturnType()->isIntegerTy(32));
739 case LibFunc_execvP:
740 case LibFunc_execvpe:
741 case LibFunc_execve:
742 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() &&
743 FTy.getParamType(1)->isPointerTy() &&
744 FTy.getParamType(2)->isPointerTy() &&
745 FTy.getReturnType()->isIntegerTy(32));
746 case LibFunc_strlen_chk:
747 --NumParams;
748 if (!IsSizeTTy(FTy.getParamType(NumParams)))
749 return false;
750 LLVM_FALLTHROUGH;
751 case LibFunc_strlen:
752 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy() &&
753 FTy.getReturnType()->isIntegerTy());
754
755 case LibFunc_strchr:
756 case LibFunc_strrchr:
757 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
758 FTy.getParamType(0) == FTy.getReturnType() &&
759 FTy.getParamType(1)->isIntegerTy());
760
761 case LibFunc_strtol:
762 case LibFunc_strtod:
763 case LibFunc_strtof:
764 case LibFunc_strtoul:
765 case LibFunc_strtoll:
766 case LibFunc_strtold:
767 case LibFunc_strtoull:
768 return ((NumParams == 2 || NumParams == 3) &&
769 FTy.getParamType(0)->isPointerTy() &&
770 FTy.getParamType(1)->isPointerTy());
771 case LibFunc_strcat_chk:
772 --NumParams;
773 if (!IsSizeTTy(FTy.getParamType(NumParams)))
774 return false;
775 LLVM_FALLTHROUGH;
776 case LibFunc_strcat:
777 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
778 FTy.getParamType(0) == FTy.getReturnType() &&
779 FTy.getParamType(1) == FTy.getReturnType());
780
781 case LibFunc_strncat_chk:
782 --NumParams;
783 if (!IsSizeTTy(FTy.getParamType(NumParams)))
784 return false;
785 LLVM_FALLTHROUGH;
786 case LibFunc_strncat:
787 return (NumParams == 3 && FTy.getReturnType()->isPointerTy() &&
788 FTy.getParamType(0) == FTy.getReturnType() &&
789 FTy.getParamType(1) == FTy.getReturnType() &&
790 IsSizeTTy(FTy.getParamType(2)));
791
792 case LibFunc_strcpy_chk:
793 case LibFunc_stpcpy_chk:
794 --NumParams;
795 if (!IsSizeTTy(FTy.getParamType(NumParams)))
796 return false;
797 LLVM_FALLTHROUGH;
798 case LibFunc_strcpy:
799 case LibFunc_stpcpy:
800 return (NumParams == 2 && FTy.getReturnType() == FTy.getParamType(0) &&
801 FTy.getParamType(0) == FTy.getParamType(1) &&
802 FTy.getParamType(0)->isPointerTy());
803
804 case LibFunc_strlcat_chk:
805 case LibFunc_strlcpy_chk:
806 --NumParams;
807 if (!IsSizeTTy(FTy.getParamType(NumParams)))
808 return false;
809 LLVM_FALLTHROUGH;
810 case LibFunc_strlcat:
811 case LibFunc_strlcpy:
812 return NumParams == 3 && IsSizeTTy(FTy.getReturnType()) &&
813 FTy.getParamType(0)->isPointerTy() &&
814 FTy.getParamType(1)->isPointerTy() &&
815 IsSizeTTy(FTy.getParamType(2));
816
817 case LibFunc_strncpy_chk:
818 case LibFunc_stpncpy_chk:
819 --NumParams;
820 if (!IsSizeTTy(FTy.getParamType(NumParams)))
821 return false;
822 LLVM_FALLTHROUGH;
823 case LibFunc_strncpy:
824 case LibFunc_stpncpy:
825 return (NumParams == 3 && FTy.getReturnType() == FTy.getParamType(0) &&
826 FTy.getParamType(0) == FTy.getParamType(1) &&
827 FTy.getParamType(0)->isPointerTy() &&
828 IsSizeTTy(FTy.getParamType(2)));
829
830 case LibFunc_strxfrm:
831 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() &&
832 FTy.getParamType(1)->isPointerTy());
833
834 case LibFunc_strcmp:
835 return (NumParams == 2 && FTy.getReturnType()->isIntegerTy(32) &&
836 FTy.getParamType(0)->isPointerTy() &&
837 FTy.getParamType(0) == FTy.getParamType(1));
838
839 case LibFunc_strncmp:
840 return (NumParams == 3 && FTy.getReturnType()->isIntegerTy(32) &&
841 FTy.getParamType(0)->isPointerTy() &&
842 FTy.getParamType(0) == FTy.getParamType(1) &&
843 IsSizeTTy(FTy.getParamType(2)));
844
845 case LibFunc_strspn:
846 case LibFunc_strcspn:
847 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() &&
848 FTy.getParamType(0) == FTy.getParamType(1) &&
849 FTy.getReturnType()->isIntegerTy());
850
851 case LibFunc_strcoll:
852 case LibFunc_strcasecmp:
853 case LibFunc_strncasecmp:
854 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() &&
855 FTy.getParamType(1)->isPointerTy());
856
857 case LibFunc_strstr:
858 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
859 FTy.getParamType(0)->isPointerTy() &&
860 FTy.getParamType(1)->isPointerTy());
861
862 case LibFunc_strpbrk:
863 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() &&
864 FTy.getReturnType() == FTy.getParamType(0) &&
865 FTy.getParamType(0) == FTy.getParamType(1));
866
867 case LibFunc_strtok:
868 case LibFunc_strtok_r:
869 return (NumParams >= 2 && FTy.getParamType(1)->isPointerTy());
870 case LibFunc_scanf:
871 case LibFunc_setbuf:
872 case LibFunc_setvbuf:
873 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy());
874 case LibFunc_strdup:
875 case LibFunc_strndup:
876 return (NumParams >= 1 && FTy.getReturnType()->isPointerTy() &&
877 FTy.getParamType(0)->isPointerTy());
878 case LibFunc_sscanf:
879 case LibFunc_stat:
880 case LibFunc_statvfs:
881 case LibFunc_siprintf:
882 case LibFunc_small_sprintf:
883 case LibFunc_sprintf:
884 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() &&
885 FTy.getParamType(1)->isPointerTy() &&
886 FTy.getReturnType()->isIntegerTy(32));
887
888 case LibFunc_sprintf_chk:
889 return NumParams == 4 && FTy.getParamType(0)->isPointerTy() &&
890 FTy.getParamType(1)->isIntegerTy(32) &&
891 IsSizeTTy(FTy.getParamType(2)) &&
892 FTy.getParamType(3)->isPointerTy() &&
893 FTy.getReturnType()->isIntegerTy(32);
894
895 case LibFunc_snprintf:
896 return NumParams == 3 && FTy.getParamType(0)->isPointerTy() &&
897 IsSizeTTy(FTy.getParamType(1)) &&
898 FTy.getParamType(2)->isPointerTy() &&
899 FTy.getReturnType()->isIntegerTy(32);
900
901 case LibFunc_snprintf_chk:
902 return NumParams == 5 && FTy.getParamType(0)->isPointerTy() &&
903 IsSizeTTy(FTy.getParamType(1)) &&
904 FTy.getParamType(2)->isIntegerTy(32) &&
905 IsSizeTTy(FTy.getParamType(3)) &&
906 FTy.getParamType(4)->isPointerTy() &&
907 FTy.getReturnType()->isIntegerTy(32);
908
909 case LibFunc_setitimer:
910 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy() &&
911 FTy.getParamType(2)->isPointerTy());
912 case LibFunc_system:
913 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy());
914 case LibFunc___kmpc_alloc_shared:
915 case LibFunc_malloc:
916 case LibFunc_vec_malloc:
917 return (NumParams == 1 && FTy.getReturnType()->isPointerTy());
918 case LibFunc_memcmp:
919 return (NumParams == 3 && FTy.getReturnType()->isIntegerTy(32) &&
920 FTy.getParamType(0)->isPointerTy() &&
921 FTy.getParamType(1)->isPointerTy());
922
923 case LibFunc_memchr:
924 case LibFunc_memrchr:
925 return (NumParams == 3 && FTy.getReturnType()->isPointerTy() &&
926 FTy.getReturnType() == FTy.getParamType(0) &&
927 FTy.getParamType(1)->isIntegerTy(32) &&
928 IsSizeTTy(FTy.getParamType(2)));
929 case LibFunc_modf:
930 case LibFunc_modff:
931 case LibFunc_modfl:
932 return (NumParams >= 2 && FTy.getParamType(1)->isPointerTy());
933
934 case LibFunc_memcpy_chk:
935 case LibFunc_mempcpy_chk:
936 case LibFunc_memmove_chk:
937 --NumParams;
938 if (!IsSizeTTy(FTy.getParamType(NumParams)))
939 return false;
940 LLVM_FALLTHROUGH;
941 case LibFunc_memcpy:
942 case LibFunc_mempcpy:
943 case LibFunc_memmove:
944 return (NumParams == 3 && FTy.getReturnType() == FTy.getParamType(0) &&
945 FTy.getParamType(0)->isPointerTy() &&
946 FTy.getParamType(1)->isPointerTy() &&
947 IsSizeTTy(FTy.getParamType(2)));
948
949 case LibFunc_memset_chk:
950 --NumParams;
951 if (!IsSizeTTy(FTy.getParamType(NumParams)))
952 return false;
953 LLVM_FALLTHROUGH;
954 case LibFunc_memset:
955 return (NumParams == 3 && FTy.getReturnType() == FTy.getParamType(0) &&
956 FTy.getParamType(0)->isPointerTy() &&
957 FTy.getParamType(1)->isIntegerTy() &&
958 IsSizeTTy(FTy.getParamType(2)));
959
960 case LibFunc_memccpy_chk:
961 --NumParams;
962 if (!IsSizeTTy(FTy.getParamType(NumParams)))
963 return false;
964 LLVM_FALLTHROUGH;
965 case LibFunc_memccpy:
966 return (NumParams >= 2 && FTy.getParamType(1)->isPointerTy());
967 case LibFunc_memalign:
968 return (FTy.getReturnType()->isPointerTy());
969 case LibFunc_realloc:
970 case LibFunc_reallocf:
971 case LibFunc_vec_realloc:
972 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
973 FTy.getParamType(0) == FTy.getReturnType() &&
974 IsSizeTTy(FTy.getParamType(1)));
975 case LibFunc_read:
976 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy());
977 case LibFunc_rewind:
978 case LibFunc_rmdir:
979 case LibFunc_remove:
980 case LibFunc_realpath:
981 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy());
982 case LibFunc_rename:
983 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() &&
984 FTy.getParamType(1)->isPointerTy());
985 case LibFunc_readlink:
986 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() &&
987 FTy.getParamType(1)->isPointerTy());
988 case LibFunc_write:
989 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy());
990 case LibFunc_aligned_alloc:
991 return (NumParams == 2 && FTy.getReturnType()->isPointerTy());
992 case LibFunc_bcopy:
993 case LibFunc_bcmp:
994 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() &&
995 FTy.getParamType(1)->isPointerTy());
996 case LibFunc_bzero:
997 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy());
998 case LibFunc_calloc:
999 case LibFunc_vec_calloc:
1000 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
1001 FTy.getParamType(0) == FTy.getParamType(1));
1002
1003 case LibFunc_atof:
1004 case LibFunc_atoi:
1005 case LibFunc_atol:
1006 case LibFunc_atoll:
1007 case LibFunc_ferror:
1008 case LibFunc_getenv:
1009 case LibFunc_getpwnam:
1010 case LibFunc_iprintf:
1011 case LibFunc_small_printf:
1012 case LibFunc_pclose:
1013 case LibFunc_perror:
1014 case LibFunc_printf:
1015 case LibFunc_puts:
1016 case LibFunc_uname:
1017 case LibFunc_under_IO_getc:
1018 case LibFunc_unlink:
1019 case LibFunc_unsetenv:
1020 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy());
1021
1022 case LibFunc_access:
1023 case LibFunc_chmod:
1024 case LibFunc_chown:
1025 case LibFunc_clearerr:
1026 case LibFunc_closedir:
1027 case LibFunc_ctermid:
1028 case LibFunc_fclose:
1029 case LibFunc_feof:
1030 case LibFunc_fflush:
1031 case LibFunc_fgetc:
1032 case LibFunc_fgetc_unlocked:
1033 case LibFunc_fileno:
1034 case LibFunc_flockfile:
1035 case LibFunc_free:
1036 case LibFunc_fseek:
1037 case LibFunc_fseeko64:
1038 case LibFunc_fseeko:
1039 case LibFunc_fsetpos:
1040 case LibFunc_ftell:
1041 case LibFunc_ftello64:
1042 case LibFunc_ftello:
1043 case LibFunc_ftrylockfile:
1044 case LibFunc_funlockfile:
1045 case LibFunc_getc:
1046 case LibFunc_getc_unlocked:
1047 case LibFunc_getlogin_r:
1048 case LibFunc_mkdir:
1049 case LibFunc_mktime:
1050 case LibFunc_times:
1051 case LibFunc_vec_free:
1052 return (NumParams != 0 && FTy.getParamType(0)->isPointerTy());
1053 case LibFunc___kmpc_free_shared:
1054 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() &&
1055 IsSizeTTy(FTy.getParamType(1)));
1056
1057 case LibFunc_fopen:
1058 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
1059 FTy.getParamType(0)->isPointerTy() &&
1060 FTy.getParamType(1)->isPointerTy());
1061 case LibFunc_fork:
1062 return (NumParams == 0 && FTy.getReturnType()->isIntegerTy(32));
1063 case LibFunc_fdopen:
1064 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
1065 FTy.getParamType(1)->isPointerTy());
1066 case LibFunc_fputc:
1067 case LibFunc_fputc_unlocked:
1068 case LibFunc_fstat:
1069 case LibFunc_frexp:
1070 case LibFunc_frexpf:
1071 case LibFunc_frexpl:
1072 case LibFunc_fstatvfs:
1073 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy());
1074 case LibFunc_fgets:
1075 case LibFunc_fgets_unlocked:
1076 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() &&
1077 FTy.getParamType(2)->isPointerTy());
1078 case LibFunc_fread:
1079 case LibFunc_fread_unlocked:
1080 return (NumParams == 4 && FTy.getParamType(0)->isPointerTy() &&
1081 FTy.getParamType(3)->isPointerTy());
1082 case LibFunc_fwrite:
1083 case LibFunc_fwrite_unlocked:
1084 return (NumParams == 4 && FTy.getReturnType()->isIntegerTy() &&
1085 FTy.getParamType(0)->isPointerTy() &&
1086 FTy.getParamType(1)->isIntegerTy() &&
1087 FTy.getParamType(2)->isIntegerTy() &&
1088 FTy.getParamType(3)->isPointerTy());
1089 case LibFunc_fputs:
1090 case LibFunc_fputs_unlocked:
1091 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() &&
1092 FTy.getParamType(1)->isPointerTy());
1093 case LibFunc_fscanf:
1094 case LibFunc_fiprintf:
1095 case LibFunc_small_fprintf:
1096 case LibFunc_fprintf:
1097 return (NumParams >= 2 && FTy.getReturnType()->isIntegerTy() &&
1098 FTy.getParamType(0)->isPointerTy() &&
1099 FTy.getParamType(1)->isPointerTy());
1100 case LibFunc_fgetpos:
1101 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() &&
1102 FTy.getParamType(1)->isPointerTy());
1103 case LibFunc_getchar:
1104 case LibFunc_getchar_unlocked:
1105 return (NumParams == 0 && FTy.getReturnType()->isIntegerTy());
1106 case LibFunc_gets:
1107 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy());
1108 case LibFunc_getitimer:
1109 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy());
1110 case LibFunc_ungetc:
1111 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy());
1112 case LibFunc_utime:
1113 case LibFunc_utimes:
1114 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() &&
1115 FTy.getParamType(1)->isPointerTy());
1116 case LibFunc_putc:
1117 case LibFunc_putc_unlocked:
1118 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy());
1119 case LibFunc_pread:
1120 case LibFunc_pwrite:
1121 return (NumParams == 4 && FTy.getParamType(1)->isPointerTy());
1122 case LibFunc_popen:
1123 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
1124 FTy.getParamType(0)->isPointerTy() &&
1125 FTy.getParamType(1)->isPointerTy());
1126 case LibFunc_vscanf:
1127 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy());
1128 case LibFunc_vsscanf:
1129 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy() &&
1130 FTy.getParamType(2)->isPointerTy());
1131 case LibFunc_vfscanf:
1132 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy() &&
1133 FTy.getParamType(2)->isPointerTy());
1134 case LibFunc_valloc:
1135 return (FTy.getReturnType()->isPointerTy());
1136 case LibFunc_vprintf:
1137 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy());
1138 case LibFunc_vfprintf:
1139 case LibFunc_vsprintf:
1140 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() &&
1141 FTy.getParamType(1)->isPointerTy());
1142 case LibFunc_vsprintf_chk:
1143 return NumParams == 5 && FTy.getParamType(0)->isPointerTy() &&
1144 FTy.getParamType(1)->isIntegerTy(32) &&
1145 IsSizeTTy(FTy.getParamType(2)) && FTy.getParamType(3)->isPointerTy();
1146 case LibFunc_vsnprintf:
1147 return (NumParams == 4 && FTy.getParamType(0)->isPointerTy() &&
1148 FTy.getParamType(2)->isPointerTy());
1149 case LibFunc_vsnprintf_chk:
1150 return NumParams == 6 && FTy.getParamType(0)->isPointerTy() &&
1151 FTy.getParamType(2)->isIntegerTy(32) &&
1152 IsSizeTTy(FTy.getParamType(3)) && FTy.getParamType(4)->isPointerTy();
1153 case LibFunc_open:
1154 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy());
1155 case LibFunc_opendir:
1156 return (NumParams == 1 && FTy.getReturnType()->isPointerTy() &&
1157 FTy.getParamType(0)->isPointerTy());
1158 case LibFunc_tmpfile:
1159 return (FTy.getReturnType()->isPointerTy());
1160 case LibFunc_htonl:
1161 case LibFunc_ntohl:
1162 return (NumParams == 1 && FTy.getReturnType()->isIntegerTy(32) &&
1163 FTy.getReturnType() == FTy.getParamType(0));
1164 case LibFunc_htons:
1165 case LibFunc_ntohs:
1166 return (NumParams == 1 && FTy.getReturnType()->isIntegerTy(16) &&
1167 FTy.getReturnType() == FTy.getParamType(0));
1168 case LibFunc_lstat:
1169 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() &&
1170 FTy.getParamType(1)->isPointerTy());
1171 case LibFunc_lchown:
1172 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy());
1173 case LibFunc_qsort:
1174 return (NumParams == 4 && FTy.getParamType(3)->isPointerTy());
1175 case LibFunc_dunder_strdup:
1176 case LibFunc_dunder_strndup:
1177 return (NumParams >= 1 && FTy.getReturnType()->isPointerTy() &&
1178 FTy.getParamType(0)->isPointerTy());
1179 case LibFunc_dunder_strtok_r:
1180 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy());
1181 case LibFunc_under_IO_putc:
1182 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy());
1183 case LibFunc_dunder_isoc99_scanf:
1184 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy());
1185 case LibFunc_stat64:
1186 case LibFunc_lstat64:
1187 case LibFunc_statvfs64:
1188 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() &&
1189 FTy.getParamType(1)->isPointerTy());
1190 case LibFunc_dunder_isoc99_sscanf:
1191 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() &&
1192 FTy.getParamType(1)->isPointerTy());
1193 case LibFunc_fopen64:
1194 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() &&
1195 FTy.getParamType(0)->isPointerTy() &&
1196 FTy.getParamType(1)->isPointerTy());
1197 case LibFunc_tmpfile64:
1198 return (FTy.getReturnType()->isPointerTy());
1199 case LibFunc_fstat64:
1200 case LibFunc_fstatvfs64:
1201 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy());
1202 case LibFunc_open64:
1203 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy());
1204 case LibFunc_gettimeofday:
1205 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() &&
1206 FTy.getParamType(1)->isPointerTy());
1207
1208 // new(unsigned int);
1209 case LibFunc_Znwj:
1210 // new(unsigned long);
1211 case LibFunc_Znwm:
1212 // new[](unsigned int);
1213 case LibFunc_Znaj:
1214 // new[](unsigned long);
1215 case LibFunc_Znam:
1216 // new(unsigned int);
1217 case LibFunc_msvc_new_int:
1218 // new(unsigned long long);
1219 case LibFunc_msvc_new_longlong:
1220 // new[](unsigned int);
1221 case LibFunc_msvc_new_array_int:
1222 // new[](unsigned long long);
1223 case LibFunc_msvc_new_array_longlong:
1224 return (NumParams == 1 && FTy.getReturnType()->isPointerTy());
1225
1226 // new(unsigned int, nothrow);
1227 case LibFunc_ZnwjRKSt9nothrow_t:
1228 // new(unsigned long, nothrow);
1229 case LibFunc_ZnwmRKSt9nothrow_t:
1230 // new[](unsigned int, nothrow);
1231 case LibFunc_ZnajRKSt9nothrow_t:
1232 // new[](unsigned long, nothrow);
1233 case LibFunc_ZnamRKSt9nothrow_t:
1234 // new(unsigned int, nothrow);
1235 case LibFunc_msvc_new_int_nothrow:
1236 // new(unsigned long long, nothrow);
1237 case LibFunc_msvc_new_longlong_nothrow:
1238 // new[](unsigned int, nothrow);
1239 case LibFunc_msvc_new_array_int_nothrow:
1240 // new[](unsigned long long, nothrow);
1241 case LibFunc_msvc_new_array_longlong_nothrow:
1242 // new(unsigned int, align_val_t)
1243 case LibFunc_ZnwjSt11align_val_t:
1244 // new(unsigned long, align_val_t)
1245 case LibFunc_ZnwmSt11align_val_t:
1246 // new[](unsigned int, align_val_t)
1247 case LibFunc_ZnajSt11align_val_t:
1248 // new[](unsigned long, align_val_t)
1249 case LibFunc_ZnamSt11align_val_t:
1250 return (NumParams == 2 && FTy.getReturnType()->isPointerTy());
1251
1252 // new(unsigned int, align_val_t, nothrow)
1253 case LibFunc_ZnwjSt11align_val_tRKSt9nothrow_t:
1254 // new(unsigned long, align_val_t, nothrow)
1255 case LibFunc_ZnwmSt11align_val_tRKSt9nothrow_t:
1256 // new[](unsigned int, align_val_t, nothrow)
1257 case LibFunc_ZnajSt11align_val_tRKSt9nothrow_t:
1258 // new[](unsigned long, align_val_t, nothrow)
1259 case LibFunc_ZnamSt11align_val_tRKSt9nothrow_t:
1260 return (NumParams == 3 && FTy.getReturnType()->isPointerTy());
1261
1262 // void operator delete[](void*);
1263 case LibFunc_ZdaPv:
1264 // void operator delete(void*);
1265 case LibFunc_ZdlPv:
1266 // void operator delete[](void*);
1267 case LibFunc_msvc_delete_array_ptr32:
1268 // void operator delete[](void*);
1269 case LibFunc_msvc_delete_array_ptr64:
1270 // void operator delete(void*);
1271 case LibFunc_msvc_delete_ptr32:
1272 // void operator delete(void*);
1273 case LibFunc_msvc_delete_ptr64:
1274 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy());
1275
1276 // void operator delete[](void*, nothrow);
1277 case LibFunc_ZdaPvRKSt9nothrow_t:
1278 // void operator delete[](void*, unsigned int);
1279 case LibFunc_ZdaPvj:
1280 // void operator delete[](void*, unsigned long);
1281 case LibFunc_ZdaPvm:
1282 // void operator delete(void*, nothrow);
1283 case LibFunc_ZdlPvRKSt9nothrow_t:
1284 // void operator delete(void*, unsigned int);
1285 case LibFunc_ZdlPvj:
1286 // void operator delete(void*, unsigned long);
1287 case LibFunc_ZdlPvm:
1288 // void operator delete(void*, align_val_t)
1289 case LibFunc_ZdlPvSt11align_val_t:
1290 // void operator delete[](void*, align_val_t)
1291 case LibFunc_ZdaPvSt11align_val_t:
1292 // void operator delete[](void*, unsigned int);
1293 case LibFunc_msvc_delete_array_ptr32_int:
1294 // void operator delete[](void*, nothrow);
1295 case LibFunc_msvc_delete_array_ptr32_nothrow:
1296 // void operator delete[](void*, unsigned long long);
1297 case LibFunc_msvc_delete_array_ptr64_longlong:
1298 // void operator delete[](void*, nothrow);
1299 case LibFunc_msvc_delete_array_ptr64_nothrow:
1300 // void operator delete(void*, unsigned int);
1301 case LibFunc_msvc_delete_ptr32_int:
1302 // void operator delete(void*, nothrow);
1303 case LibFunc_msvc_delete_ptr32_nothrow:
1304 // void operator delete(void*, unsigned long long);
1305 case LibFunc_msvc_delete_ptr64_longlong:
1306 // void operator delete(void*, nothrow);
1307 case LibFunc_msvc_delete_ptr64_nothrow:
1308 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy());
1309
1310 // void operator delete(void*, align_val_t, nothrow)
1311 case LibFunc_ZdlPvSt11align_val_tRKSt9nothrow_t:
1312 // void operator delete[](void*, align_val_t, nothrow)
1313 case LibFunc_ZdaPvSt11align_val_tRKSt9nothrow_t:
1314 // void operator delete(void*, unsigned int, align_val_t)
1315 case LibFunc_ZdlPvjSt11align_val_t:
1316 // void operator delete(void*, unsigned long, align_val_t)
1317 case LibFunc_ZdlPvmSt11align_val_t:
1318 // void operator delete[](void*, unsigned int, align_val_t);
1319 case LibFunc_ZdaPvjSt11align_val_t:
1320 // void operator delete[](void*, unsigned long, align_val_t);
1321 case LibFunc_ZdaPvmSt11align_val_t:
1322 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy());
1323
1324 // void __atomic_load(size_t, void *, void *, int)
1325 case LibFunc_atomic_load:
1326 // void __atomic_store(size_t, void *, void *, int)
1327 case LibFunc_atomic_store:
1328 return (NumParams == 4 && FTy.getParamType(0)->isIntegerTy() &&
1329 FTy.getParamType(1)->isPointerTy() &&
1330 FTy.getParamType(2)->isPointerTy() &&
1331 FTy.getParamType(3)->isIntegerTy());
1332
1333 case LibFunc_memset_pattern16:
1334 return (!FTy.isVarArg() && NumParams == 3 &&
1335 FTy.getParamType(0)->isPointerTy() &&
1336 FTy.getParamType(1)->isPointerTy() &&
1337 FTy.getParamType(2)->isIntegerTy());
1338
1339 case LibFunc_cxa_guard_abort:
1340 case LibFunc_cxa_guard_acquire:
1341 case LibFunc_cxa_guard_release:
1342 case LibFunc_nvvm_reflect:
1343 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy());
1344
1345 case LibFunc_sincospi_stret:
1346 case LibFunc_sincospif_stret:
1347 return (NumParams == 1 && FTy.getParamType(0)->isFloatingPointTy());
1348
1349 case LibFunc_acos:
1350 case LibFunc_acos_finite:
1351 case LibFunc_acosf:
1352 case LibFunc_acosf_finite:
1353 case LibFunc_acosh:
1354 case LibFunc_acosh_finite:
1355 case LibFunc_acoshf:
1356 case LibFunc_acoshf_finite:
1357 case LibFunc_acoshl:
1358 case LibFunc_acoshl_finite:
1359 case LibFunc_acosl:
1360 case LibFunc_acosl_finite:
1361 case LibFunc_asin:
1362 case LibFunc_asin_finite:
1363 case LibFunc_asinf:
1364 case LibFunc_asinf_finite:
1365 case LibFunc_asinh:
1366 case LibFunc_asinhf:
1367 case LibFunc_asinhl:
1368 case LibFunc_asinl:
1369 case LibFunc_asinl_finite:
1370 case LibFunc_atan:
1371 case LibFunc_atanf:
1372 case LibFunc_atanh:
1373 case LibFunc_atanh_finite:
1374 case LibFunc_atanhf:
1375 case LibFunc_atanhf_finite:
1376 case LibFunc_atanhl:
1377 case LibFunc_atanhl_finite:
1378 case LibFunc_atanl:
1379 case LibFunc_cbrt:
1380 case LibFunc_cbrtf:
1381 case LibFunc_cbrtl:
1382 case LibFunc_ceil:
1383 case LibFunc_ceilf:
1384 case LibFunc_ceill:
1385 case LibFunc_cos:
1386 case LibFunc_cosf:
1387 case LibFunc_cosh:
1388 case LibFunc_cosh_finite:
1389 case LibFunc_coshf:
1390 case LibFunc_coshf_finite:
1391 case LibFunc_coshl:
1392 case LibFunc_coshl_finite:
1393 case LibFunc_cosl:
1394 case LibFunc_exp10:
1395 case LibFunc_exp10_finite:
1396 case LibFunc_exp10f:
1397 case LibFunc_exp10f_finite:
1398 case LibFunc_exp10l:
1399 case LibFunc_exp10l_finite:
1400 case LibFunc_exp2:
1401 case LibFunc_exp2_finite:
1402 case LibFunc_exp2f:
1403 case LibFunc_exp2f_finite:
1404 case LibFunc_exp2l:
1405 case LibFunc_exp2l_finite:
1406 case LibFunc_exp:
1407 case LibFunc_exp_finite:
1408 case LibFunc_expf:
1409 case LibFunc_expf_finite:
1410 case LibFunc_expl:
1411 case LibFunc_expl_finite:
1412 case LibFunc_expm1:
1413 case LibFunc_expm1f:
1414 case LibFunc_expm1l:
1415 case LibFunc_fabs:
1416 case LibFunc_fabsf:
1417 case LibFunc_fabsl:
1418 case LibFunc_floor:
1419 case LibFunc_floorf:
1420 case LibFunc_floorl:
1421 case LibFunc_log10:
1422 case LibFunc_log10_finite:
1423 case LibFunc_log10f:
1424 case LibFunc_log10f_finite:
1425 case LibFunc_log10l:
1426 case LibFunc_log10l_finite:
1427 case LibFunc_log1p:
1428 case LibFunc_log1pf:
1429 case LibFunc_log1pl:
1430 case LibFunc_log2:
1431 case LibFunc_log2_finite:
1432 case LibFunc_log2f:
1433 case LibFunc_log2f_finite:
1434 case LibFunc_log2l:
1435 case LibFunc_log2l_finite:
1436 case LibFunc_log:
1437 case LibFunc_log_finite:
1438 case LibFunc_logb:
1439 case LibFunc_logbf:
1440 case LibFunc_logbl:
1441 case LibFunc_logf:
1442 case LibFunc_logf_finite:
1443 case LibFunc_logl:
1444 case LibFunc_logl_finite:
1445 case LibFunc_nearbyint:
1446 case LibFunc_nearbyintf:
1447 case LibFunc_nearbyintl:
1448 case LibFunc_rint:
1449 case LibFunc_rintf:
1450 case LibFunc_rintl:
1451 case LibFunc_round:
1452 case LibFunc_roundf:
1453 case LibFunc_roundl:
1454 case LibFunc_roundeven:
1455 case LibFunc_roundevenf:
1456 case LibFunc_roundevenl:
1457 case LibFunc_sin:
1458 case LibFunc_sinf:
1459 case LibFunc_sinh:
1460 case LibFunc_sinh_finite:
1461 case LibFunc_sinhf:
1462 case LibFunc_sinhf_finite:
1463 case LibFunc_sinhl:
1464 case LibFunc_sinhl_finite:
1465 case LibFunc_sinl:
1466 case LibFunc_sqrt:
1467 case LibFunc_sqrt_finite:
1468 case LibFunc_sqrtf:
1469 case LibFunc_sqrtf_finite:
1470 case LibFunc_sqrtl:
1471 case LibFunc_sqrtl_finite:
1472 case LibFunc_tan:
1473 case LibFunc_tanf:
1474 case LibFunc_tanh:
1475 case LibFunc_tanhf:
1476 case LibFunc_tanhl:
1477 case LibFunc_tanl:
1478 case LibFunc_trunc:
1479 case LibFunc_truncf:
1480 case LibFunc_truncl:
1481 return (NumParams == 1 && FTy.getReturnType()->isFloatingPointTy() &&
1482 FTy.getReturnType() == FTy.getParamType(0));
1483
1484 case LibFunc_atan2:
1485 case LibFunc_atan2_finite:
1486 case LibFunc_atan2f:
1487 case LibFunc_atan2f_finite:
1488 case LibFunc_atan2l:
1489 case LibFunc_atan2l_finite:
1490 case LibFunc_fmin:
1491 case LibFunc_fminf:
1492 case LibFunc_fminl:
1493 case LibFunc_fmax:
1494 case LibFunc_fmaxf:
1495 case LibFunc_fmaxl:
1496 case LibFunc_fmod:
1497 case LibFunc_fmodf:
1498 case LibFunc_fmodl:
1499 case LibFunc_remainder:
1500 case LibFunc_remainderf:
1501 case LibFunc_remainderl:
1502 case LibFunc_copysign:
1503 case LibFunc_copysignf:
1504 case LibFunc_copysignl:
1505 case LibFunc_pow:
1506 case LibFunc_pow_finite:
1507 case LibFunc_powf:
1508 case LibFunc_powf_finite:
1509 case LibFunc_powl:
1510 case LibFunc_powl_finite:
1511 return (NumParams == 2 && FTy.getReturnType()->isFloatingPointTy() &&
1512 FTy.getReturnType() == FTy.getParamType(0) &&
1513 FTy.getReturnType() == FTy.getParamType(1));
1514
1515 case LibFunc_ldexp:
1516 case LibFunc_ldexpf:
1517 case LibFunc_ldexpl:
1518 return (NumParams == 2 && FTy.getReturnType()->isFloatingPointTy() &&
1519 FTy.getReturnType() == FTy.getParamType(0) &&
1520 FTy.getParamType(1)->isIntegerTy(getIntSize()));
1521
1522 case LibFunc_ffs:
1523 case LibFunc_ffsl:
1524 case LibFunc_ffsll:
1525 case LibFunc_fls:
1526 case LibFunc_flsl:
1527 case LibFunc_flsll:
1528 return (NumParams == 1 && FTy.getReturnType()->isIntegerTy(32) &&
1529 FTy.getParamType(0)->isIntegerTy());
1530
1531 case LibFunc_isdigit:
1532 case LibFunc_isascii:
1533 case LibFunc_toascii:
1534 case LibFunc_putchar:
1535 case LibFunc_putchar_unlocked:
1536 return (NumParams == 1 && FTy.getReturnType()->isIntegerTy(32) &&
1537 FTy.getReturnType() == FTy.getParamType(0));
1538
1539 case LibFunc_abs:
1540 case LibFunc_labs:
1541 case LibFunc_llabs:
1542 return (NumParams == 1 && FTy.getReturnType()->isIntegerTy() &&
1543 FTy.getReturnType() == FTy.getParamType(0));
1544
1545 case LibFunc_cxa_atexit:
1546 return (NumParams == 3 && FTy.getReturnType()->isIntegerTy() &&
1547 FTy.getParamType(0)->isPointerTy() &&
1548 FTy.getParamType(1)->isPointerTy() &&
1549 FTy.getParamType(2)->isPointerTy());
1550
1551 case LibFunc_sinpi:
1552 case LibFunc_cospi:
1553 return (NumParams == 1 && FTy.getReturnType()->isDoubleTy() &&
1554 FTy.getReturnType() == FTy.getParamType(0));
1555
1556 case LibFunc_sinpif:
1557 case LibFunc_cospif:
1558 return (NumParams == 1 && FTy.getReturnType()->isFloatTy() &&
1559 FTy.getReturnType() == FTy.getParamType(0));
1560
1561 case LibFunc_strnlen:
1562 return (NumParams == 2 && FTy.getReturnType() == FTy.getParamType(1) &&
1563 FTy.getParamType(0)->isPointerTy() &&
1564 IsSizeTTy(FTy.getParamType(1)));
1565
1566 case LibFunc_posix_memalign:
1567 return (NumParams == 3 && FTy.getReturnType()->isIntegerTy(32) &&
1568 FTy.getParamType(0)->isPointerTy() &&
1569 IsSizeTTy(FTy.getParamType(1)) && IsSizeTTy(FTy.getParamType(2)));
1570
1571 case LibFunc_wcslen:
1572 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy() &&
1573 FTy.getReturnType()->isIntegerTy());
1574
1575 case LibFunc_cabs:
1576 case LibFunc_cabsf:
1577 case LibFunc_cabsl: {
1578 Type* RetTy = FTy.getReturnType();
1579 if (!RetTy->isFloatingPointTy())
1580 return false;
1581
1582 // NOTE: These prototypes are target specific and currently support
1583 // "complex" passed as an array or discrete real & imaginary parameters.
1584 // Add other calling conventions to enable libcall optimizations.
1585 if (NumParams == 1)
1586 return (FTy.getParamType(0)->isArrayTy() &&
1587 FTy.getParamType(0)->getArrayNumElements() == 2 &&
1588 FTy.getParamType(0)->getArrayElementType() == RetTy);
1589 else if (NumParams == 2)
1590 return (FTy.getParamType(0) == RetTy && FTy.getParamType(1) == RetTy);
1591 else
1592 return false;
1593 }
1594 case LibFunc::NumLibFuncs:
1595 case LibFunc::NotLibFunc:
1596 break;
1597 }
1598
1599 llvm_unreachable("Invalid libfunc");
1600 }
1601
1602 bool TargetLibraryInfoImpl::getLibFunc(const Function &FDecl,
1603 LibFunc &F) const {
1604 // Intrinsics don't overlap w/libcalls; if our module has a large number of
1605 // intrinsics, this ends up being an interesting compile time win since we
1606 // avoid string normalization and comparison.
1607 if (FDecl.isIntrinsic()) return false;
1608
1609 const DataLayout *DL =
1610 FDecl.getParent() ? &FDecl.getParent()->getDataLayout() : nullptr;
1611 return getLibFunc(FDecl.getName(), F) &&
1612 isValidProtoForLibFunc(*FDecl.getFunctionType(), F, DL);
1613 }
1614
1615 void TargetLibraryInfoImpl::disableAllFunctions() {
1616 memset(AvailableArray, 0, sizeof(AvailableArray));
1617 }
1618
1619 static bool compareByScalarFnName(const VecDesc &LHS, const VecDesc &RHS) {
1620 return LHS.ScalarFnName < RHS.ScalarFnName;
1621 }
1622
1623 static bool compareByVectorFnName(const VecDesc &LHS, const VecDesc &RHS) {
1624 return LHS.VectorFnName < RHS.VectorFnName;
1625 }
1626
1627 static bool compareWithScalarFnName(const VecDesc &LHS, StringRef S) {
1628 return LHS.ScalarFnName < S;
1629 }
1630
1631 void TargetLibraryInfoImpl::addVectorizableFunctions(ArrayRef<VecDesc> Fns) {
1632 llvm::append_range(VectorDescs, Fns);
1633 llvm::sort(VectorDescs, compareByScalarFnName);
1634
1635 llvm::append_range(ScalarDescs, Fns);
1636 llvm::sort(ScalarDescs, compareByVectorFnName);
1637 }
1638
1639 void TargetLibraryInfoImpl::addVectorizableFunctionsFromVecLib(
1640 enum VectorLibrary VecLib) {
1641 switch (VecLib) {
1642 case Accelerate: {
1643 const VecDesc VecFuncs[] = {
1644 #define TLI_DEFINE_ACCELERATE_VECFUNCS
1645 #include "llvm/Analysis/VecFuncs.def"
1646 };
1647 addVectorizableFunctions(VecFuncs);
1648 break;
1649 }
1650 case DarwinLibSystemM: {
1651 const VecDesc VecFuncs[] = {
1652 #define TLI_DEFINE_DARWIN_LIBSYSTEM_M_VECFUNCS
1653 #include "llvm/Analysis/VecFuncs.def"
1654 };
1655 addVectorizableFunctions(VecFuncs);
1656 break;
1657 }
1658 case LIBMVEC_X86: {
1659 const VecDesc VecFuncs[] = {
1660 #define TLI_DEFINE_LIBMVEC_X86_VECFUNCS
1661 #include "llvm/Analysis/VecFuncs.def"
1662 };
1663 addVectorizableFunctions(VecFuncs);
1664 break;
1665 }
1666 case MASSV: {
1667 const VecDesc VecFuncs[] = {
1668 #define TLI_DEFINE_MASSV_VECFUNCS
1669 #include "llvm/Analysis/VecFuncs.def"
1670 };
1671 addVectorizableFunctions(VecFuncs);
1672 break;
1673 }
1674 case SVML: {
1675 const VecDesc VecFuncs[] = {
1676 #define TLI_DEFINE_SVML_VECFUNCS
1677 #include "llvm/Analysis/VecFuncs.def"
1678 };
1679 addVectorizableFunctions(VecFuncs);
1680 break;
1681 }
1682 case NoLibrary:
1683 break;
1684 }
1685 }
1686
1687 bool TargetLibraryInfoImpl::isFunctionVectorizable(StringRef funcName) const {
1688 funcName = sanitizeFunctionName(funcName);
1689 if (funcName.empty())
1690 return false;
1691
1692 std::vector<VecDesc>::const_iterator I =
1693 llvm::lower_bound(VectorDescs, funcName, compareWithScalarFnName);
1694 return I != VectorDescs.end() && StringRef(I->ScalarFnName) == funcName;
1695 }
1696
1697 StringRef
1698 TargetLibraryInfoImpl::getVectorizedFunction(StringRef F,
1699 const ElementCount &VF) const {
1700 F = sanitizeFunctionName(F);
1701 if (F.empty())
1702 return F;
1703 std::vector<VecDesc>::const_iterator I =
1704 llvm::lower_bound(VectorDescs, F, compareWithScalarFnName);
1705 while (I != VectorDescs.end() && StringRef(I->ScalarFnName) == F) {
1706 if (I->VectorizationFactor == VF)
1707 return I->VectorFnName;
1708 ++I;
1709 }
1710 return StringRef();
1711 }
1712
1713 TargetLibraryInfo TargetLibraryAnalysis::run(const Function &F,
1714 FunctionAnalysisManager &) {
1715 if (!BaselineInfoImpl)
1716 BaselineInfoImpl =
1717 TargetLibraryInfoImpl(Triple(F.getParent()->getTargetTriple()));
1718 return TargetLibraryInfo(*BaselineInfoImpl, &F);
1719 }
1720
1721 unsigned TargetLibraryInfoImpl::getWCharSize(const Module &M) const {
1722 if (auto *ShortWChar = cast_or_null<ConstantAsMetadata>(
1723 M.getModuleFlag("wchar_size")))
1724 return cast<ConstantInt>(ShortWChar->getValue())->getZExtValue();
1725 return 0;
1726 }
1727
1728 TargetLibraryInfoWrapperPass::TargetLibraryInfoWrapperPass()
1729 : ImmutablePass(ID), TLA(TargetLibraryInfoImpl()) {
1730 initializeTargetLibraryInfoWrapperPassPass(*PassRegistry::getPassRegistry());
1731 }
1732
1733 TargetLibraryInfoWrapperPass::TargetLibraryInfoWrapperPass(const Triple &T)
1734 : ImmutablePass(ID), TLA(TargetLibraryInfoImpl(T)) {
1735 initializeTargetLibraryInfoWrapperPassPass(*PassRegistry::getPassRegistry());
1736 }
1737
1738 TargetLibraryInfoWrapperPass::TargetLibraryInfoWrapperPass(
1739 const TargetLibraryInfoImpl &TLIImpl)
1740 : ImmutablePass(ID), TLA(TLIImpl) {
1741 initializeTargetLibraryInfoWrapperPassPass(*PassRegistry::getPassRegistry());
1742 }
1743
1744 AnalysisKey TargetLibraryAnalysis::Key;
1745
1746 // Register the basic pass.
1747 INITIALIZE_PASS(TargetLibraryInfoWrapperPass, "targetlibinfo",
1748 "Target Library Information", false, true)
1749 char TargetLibraryInfoWrapperPass::ID = 0;
1750
1751 void TargetLibraryInfoWrapperPass::anchor() {}
1752
1753 void TargetLibraryInfoImpl::getWidestVF(StringRef ScalarF,
1754 ElementCount &FixedVF,
1755 ElementCount &ScalableVF) const {
1756 ScalarF = sanitizeFunctionName(ScalarF);
1757 // Use '0' here because a type of the form <vscale x 1 x ElTy> is not the
1758 // same as a scalar.
1759 ScalableVF = ElementCount::getScalable(0);
1760 FixedVF = ElementCount::getFixed(1);
1761 if (ScalarF.empty())
1762 return;
1763
1764 std::vector<VecDesc>::const_iterator I =
1765 llvm::lower_bound(VectorDescs, ScalarF, compareWithScalarFnName);
1766 while (I != VectorDescs.end() && StringRef(I->ScalarFnName) == ScalarF) {
1767 ElementCount *VF =
1768 I->VectorizationFactor.isScalable() ? &ScalableVF : &FixedVF;
1769 if (ElementCount::isKnownGT(I->VectorizationFactor, *VF))
1770 *VF = I->VectorizationFactor;
1771 ++I;
1772 }
1773 }
1774