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Chris Lattnere7fb3602001-08-27 16:00:15 +00001//===-- TargetData.cpp - Data size & alignment routines --------------------==//
Misha Brukmanf976c852005-04-21 22:55:34 +00002//
John Criswellb576c942003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
Misha Brukmanf976c852005-04-21 22:55:34 +00007//
John Criswellb576c942003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattnere7fb3602001-08-27 16:00:15 +00009//
10// This file defines target properties related to datatype size/offset/alignment
Chris Lattner0e7ac162004-02-26 08:02:17 +000011// information.
Chris Lattnere7fb3602001-08-27 16:00:15 +000012//
13// This structure should be created once, filled in if the defaults are not
14// correct and then passed around by const&. None of the members functions
15// require modification to the object.
16//
17//===----------------------------------------------------------------------===//
18
Vikram S. Adve0799fc42001-09-18 12:58:33 +000019#include "llvm/Target/TargetData.h"
Chris Lattner53a0c382003-04-24 19:09:05 +000020#include "llvm/Module.h"
Chris Lattnere7fb3602001-08-27 16:00:15 +000021#include "llvm/DerivedTypes.h"
Chris Lattner31bcdb82002-04-28 19:55:58 +000022#include "llvm/Constants.h"
Chris Lattner28977af2004-04-05 01:30:19 +000023#include "llvm/Support/GetElementPtrTypeIterator.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000024#include "llvm/Support/MathExtras.h"
Chris Lattnerec6478b2007-02-10 19:43:18 +000025#include "llvm/Support/ManagedStatic.h"
Chris Lattnerf6ca09a2007-02-10 20:26:17 +000026#include "llvm/ADT/DenseMap.h"
Owen Anderson8f60c562006-05-12 05:49:47 +000027#include "llvm/ADT/StringExtras.h"
Chris Lattnere7ea48c2005-03-13 19:04:41 +000028#include <algorithm>
Owen Anderson8f60c562006-05-12 05:49:47 +000029#include <cstdlib>
Owen Anderson2577c222006-05-12 07:01:44 +000030#include <sstream>
Chris Lattnerf0453282003-12-22 05:01:15 +000031using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000032
Misha Brukman5560c9d2003-08-18 14:43:39 +000033// Handle the Pass registration stuff necessary to use TargetData's.
Chris Lattneraa31ad02002-09-25 23:46:55 +000034namespace {
35 // Register the default SparcV9 implementation...
36 RegisterPass<TargetData> X("targetdata", "Target Data Layout");
37}
38
Chris Lattnere7fb3602001-08-27 16:00:15 +000039//===----------------------------------------------------------------------===//
Chris Lattner0e7ac162004-02-26 08:02:17 +000040// Support for StructLayout
Chris Lattnere7fb3602001-08-27 16:00:15 +000041//===----------------------------------------------------------------------===//
42
Chris Lattner0e7ac162004-02-26 08:02:17 +000043StructLayout::StructLayout(const StructType *ST, const TargetData &TD) {
Chris Lattnere7fb3602001-08-27 16:00:15 +000044 StructAlignment = 0;
45 StructSize = 0;
Chris Lattner9182e3f2007-02-10 20:15:41 +000046 NumElements = ST->getNumElements();
Chris Lattnere7fb3602001-08-27 16:00:15 +000047
48 // Loop over each of the elements, placing them in memory...
Chris Lattner9182e3f2007-02-10 20:15:41 +000049 for (unsigned i = 0, e = NumElements; i != e; ++i) {
50 const Type *Ty = ST->getElementType(i);
Vikram S. Advef66723f2002-05-19 15:28:02 +000051 unsigned TyAlign;
52 uint64_t TySize;
Reid Spencerb7d61102007-02-15 02:11:06 +000053 TyAlign = (ST->isPacked() ? 1 : TD.getABITypeAlignment(Ty));
54 TySize = TD.getTypeSize(Ty);
Chris Lattnere7fb3602001-08-27 16:00:15 +000055
Misha Brukman5560c9d2003-08-18 14:43:39 +000056 // Add padding if necessary to make the data element aligned properly...
Chris Lattnere7fb3602001-08-27 16:00:15 +000057 if (StructSize % TyAlign != 0)
58 StructSize = (StructSize/TyAlign + 1) * TyAlign; // Add padding...
59
60 // Keep track of maximum alignment constraint
Chris Lattner697954c2002-01-20 22:54:45 +000061 StructAlignment = std::max(TyAlign, StructAlignment);
Chris Lattnere7fb3602001-08-27 16:00:15 +000062
Chris Lattner9182e3f2007-02-10 20:15:41 +000063 MemberOffsets[i] = StructSize;
Vikram S. Advef66723f2002-05-19 15:28:02 +000064 StructSize += TySize; // Consume space for this data item
Chris Lattnere7fb3602001-08-27 16:00:15 +000065 }
66
Chris Lattner4e840d42003-05-21 18:08:44 +000067 // Empty structures have alignment of 1 byte.
68 if (StructAlignment == 0) StructAlignment = 1;
69
Chris Lattnere7fb3602001-08-27 16:00:15 +000070 // Add padding to the end of the struct so that it could be put in an array
71 // and all array elements would be aligned correctly.
72 if (StructSize % StructAlignment != 0)
73 StructSize = (StructSize/StructAlignment + 1) * StructAlignment;
Chris Lattnere7fb3602001-08-27 16:00:15 +000074}
75
Chris Lattnere7ea48c2005-03-13 19:04:41 +000076
77/// getElementContainingOffset - Given a valid offset into the structure,
78/// return the structure index that contains it.
79unsigned StructLayout::getElementContainingOffset(uint64_t Offset) const {
Chris Lattner9182e3f2007-02-10 20:15:41 +000080 const uint64_t *SI =
81 std::upper_bound(&MemberOffsets[0], &MemberOffsets[NumElements], Offset);
82 assert(SI != &MemberOffsets[0] && "Offset not in structure type!");
Chris Lattnere7ea48c2005-03-13 19:04:41 +000083 --SI;
84 assert(*SI <= Offset && "upper_bound didn't work");
Chris Lattner9182e3f2007-02-10 20:15:41 +000085 assert((SI == &MemberOffsets[0] || *(SI-1) < Offset) &&
86 (SI+1 == &MemberOffsets[NumElements] || *(SI+1) > Offset) &&
Chris Lattnere7ea48c2005-03-13 19:04:41 +000087 "Upper bound didn't work!");
Chris Lattner9182e3f2007-02-10 20:15:41 +000088 return SI-&MemberOffsets[0];
Chris Lattnere7ea48c2005-03-13 19:04:41 +000089}
90
Chris Lattnere7fb3602001-08-27 16:00:15 +000091//===----------------------------------------------------------------------===//
Chris Lattnerd2b7cec2007-02-14 05:52:17 +000092// TargetAlignElem, TargetAlign support
93//===----------------------------------------------------------------------===//
94
95TargetAlignElem
96TargetAlignElem::get(AlignTypeEnum align_type, unsigned char abi_align,
Reid Spencerf734ea22007-02-19 22:35:00 +000097 unsigned char pref_align, uint32_t bit_width) {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +000098 TargetAlignElem retval;
99 retval.AlignType = align_type;
100 retval.ABIAlign = abi_align;
101 retval.PrefAlign = pref_align;
102 retval.TypeBitWidth = bit_width;
103 return retval;
104}
105
106bool
Reid Spencerb7d61102007-02-15 02:11:06 +0000107TargetAlignElem::operator==(const TargetAlignElem &rhs) const {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000108 return (AlignType == rhs.AlignType
109 && ABIAlign == rhs.ABIAlign
110 && PrefAlign == rhs.PrefAlign
111 && TypeBitWidth == rhs.TypeBitWidth);
112}
113
114std::ostream &
Reid Spencerb7d61102007-02-15 02:11:06 +0000115TargetAlignElem::dump(std::ostream &os) const {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000116 return os << AlignType
117 << TypeBitWidth
118 << ":" << (int) (ABIAlign * 8)
119 << ":" << (int) (PrefAlign * 8);
120}
121
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000122const TargetAlignElem TargetData::InvalidAlignmentElem =
123 TargetAlignElem::get((AlignTypeEnum) -1, 0, 0, 0);
124
125//===----------------------------------------------------------------------===//
Chris Lattnere7fb3602001-08-27 16:00:15 +0000126// TargetData Class Implementation
127//===----------------------------------------------------------------------===//
128
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000129/*!
130 A TargetDescription string consists of a sequence of hyphen-delimited
131 specifiers for target endianness, pointer size and alignments, and various
132 primitive type sizes and alignments. A typical string looks something like:
Reid Spencerb7d61102007-02-15 02:11:06 +0000133 <br><br>
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000134 "E-p:32:32:32-i1:8:8-i8:8:8-i32:32:32-i64:32:64-f32:32:32-f64:32:64"
Reid Spencerb7d61102007-02-15 02:11:06 +0000135 <br><br>
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000136 (note: this string is not fully specified and is only an example.)
137 \p
138 Alignments come in two flavors: ABI and preferred. ABI alignment (abi_align,
139 below) dictates how a type will be aligned within an aggregate and when used
140 as an argument. Preferred alignment (pref_align, below) determines a type's
141 alignment when emitted as a global.
142 \p
143 Specifier string details:
144 <br><br>
145 <i>[E|e]</i>: Endianness. "E" specifies a big-endian target data model, "e"
146 specifies a little-endian target data model.
147 <br><br>
148 <i>p:<size>:<abi_align>:<pref_align></i>: Pointer size, ABI and preferred
149 alignment.
150 <br><br>
151 <i><type><size>:<abi_align>:<pref_align></i>: Numeric type alignment. Type is
152 one of <i>i|f|v|a</i>, corresponding to integer, floating point, vector (aka
153 packed) or aggregate. Size indicates the size, e.g., 32 or 64 bits.
154 \p
155 The default string, fully specified is:
156 <br><br>
157 "E-p:64:64:64-a0:0:0-f32:32:32-f64:0:64"
158 "-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:0:64"
159 "-v64:64:64-v128:128:128"
160 <br><br>
161 Note that in the case of aggregates, 0 is the default ABI and preferred
162 alignment. This is a special case, where the aggregate's computed worst-case
163 alignment will be used.
164 */
Chris Lattneracbc07a2006-06-16 18:11:26 +0000165void TargetData::init(const std::string &TargetDescription) {
Owen Anderson8f60c562006-05-12 05:49:47 +0000166 std::string temp = TargetDescription;
167
168 LittleEndian = false;
Chris Lattner58092e32007-01-20 22:35:55 +0000169 PointerMemSize = 8;
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000170 PointerABIAlign = 8;
171 PointerPrefAlign = PointerABIAlign;
172
173 // Default alignments
Reid Spencerb7d61102007-02-15 02:11:06 +0000174 setAlignment(INTEGER_ALIGN, 1, 1, 1); // Bool
175 setAlignment(INTEGER_ALIGN, 1, 1, 8); // Byte
176 setAlignment(INTEGER_ALIGN, 2, 2, 16); // short
177 setAlignment(INTEGER_ALIGN, 4, 4, 32); // int
178 setAlignment(INTEGER_ALIGN, 4, 8, 64); // long
179 setAlignment(FLOAT_ALIGN, 4, 4, 32); // float
180 setAlignment(FLOAT_ALIGN, 8, 8, 64); // double
Reid Spencer1f437872007-02-15 22:07:05 +0000181 setAlignment(VECTOR_ALIGN, 8, 8, 64); // v2i32
182 setAlignment(VECTOR_ALIGN, 16, 16, 128); // v16i8, v8i16, v4i32, ...
Chris Lattner3ebb2e02007-02-16 23:11:51 +0000183 setAlignment(AGGREGATE_ALIGN, 0, 8, 0); // struct, union, class, ...
Owen Anderson8f60c562006-05-12 05:49:47 +0000184
Owen Andersond988b322006-05-20 00:24:56 +0000185 while (!temp.empty()) {
Owen Anderson8f60c562006-05-12 05:49:47 +0000186 std::string token = getToken(temp, "-");
187
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000188 std::string arg0 = getToken(token, ":");
189 const char *p = arg0.c_str();
190 AlignTypeEnum align_type;
Reid Spencerf734ea22007-02-19 22:35:00 +0000191 uint32_t size;
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000192 unsigned char abi_align;
193 unsigned char pref_align;
194
195 switch(*p) {
Owen Anderson8f60c562006-05-12 05:49:47 +0000196 case 'E':
Owen Anderson571a13f2006-05-12 06:06:55 +0000197 LittleEndian = false;
198 break;
Owen Anderson8f60c562006-05-12 05:49:47 +0000199 case 'e':
Owen Anderson571a13f2006-05-12 06:06:55 +0000200 LittleEndian = true;
201 break;
Owen Anderson8f60c562006-05-12 05:49:47 +0000202 case 'p':
Chris Lattner58092e32007-01-20 22:35:55 +0000203 PointerMemSize = atoi(getToken(token,":").c_str()) / 8;
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000204 PointerABIAlign = atoi(getToken(token,":").c_str()) / 8;
205 PointerPrefAlign = atoi(getToken(token,":").c_str()) / 8;
206 if (PointerPrefAlign == 0)
207 PointerPrefAlign = PointerABIAlign;
Owen Anderson571a13f2006-05-12 06:06:55 +0000208 break;
Owen Anderson8f60c562006-05-12 05:49:47 +0000209 case 'i':
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000210 case 'v':
211 case 'f':
212 case 'a': {
213 align_type = (*p == 'i' ? INTEGER_ALIGN :
214 (*p == 'f' ? FLOAT_ALIGN :
Reid Spencer1f437872007-02-15 22:07:05 +0000215 (*p == 'v' ? VECTOR_ALIGN : AGGREGATE_ALIGN)));
Reid Spencerf734ea22007-02-19 22:35:00 +0000216 size = (uint32_t) atoi(++p);
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000217 abi_align = atoi(getToken(token, ":").c_str()) / 8;
218 pref_align = atoi(getToken(token, ":").c_str()) / 8;
219 if (pref_align == 0)
220 pref_align = abi_align;
221 setAlignment(align_type, abi_align, pref_align, size);
Owen Anderson571a13f2006-05-12 06:06:55 +0000222 break;
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000223 }
Owen Anderson8f60c562006-05-12 05:49:47 +0000224 default:
Owen Anderson571a13f2006-05-12 06:06:55 +0000225 break;
Owen Anderson8f60c562006-05-12 05:49:47 +0000226 }
227 }
228}
229
Chris Lattner1790d442006-06-16 18:22:52 +0000230TargetData::TargetData(const Module *M) {
Reid Spencer26f23852007-01-26 08:11:39 +0000231 init(M->getDataLayout());
Chris Lattner53a0c382003-04-24 19:09:05 +0000232}
233
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000234void
235TargetData::setAlignment(AlignTypeEnum align_type, unsigned char abi_align,
Reid Spencerf734ea22007-02-19 22:35:00 +0000236 unsigned char pref_align, uint32_t bit_width) {
Chris Lattneraffeb562007-02-17 00:41:42 +0000237 for (unsigned i = 0, e = Alignments.size(); i != e; ++i) {
238 if (Alignments[i].AlignType == align_type &&
239 Alignments[i].TypeBitWidth == bit_width) {
240 // Update the abi, preferred alignments.
241 Alignments[i].ABIAlign = abi_align;
242 Alignments[i].PrefAlign = pref_align;
243 return;
244 }
245 }
246
247 Alignments.push_back(TargetAlignElem::get(align_type, abi_align,
248 pref_align, bit_width));
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000249}
250
Chris Lattneraffeb562007-02-17 00:41:42 +0000251/// getAlignmentInfo - Return the alignment (either ABI if ABIInfo = true or
252/// preferred if ABIInfo = false) the target wants for the specified datatype.
Reid Spencerf734ea22007-02-19 22:35:00 +0000253unsigned TargetData::getAlignmentInfo(AlignTypeEnum AlignType,
254 uint32_t BitWidth, bool ABIInfo) const {
Chris Lattneraffeb562007-02-17 00:41:42 +0000255 // Check to see if we have an exact match and remember the best match we see.
256 int BestMatchIdx = -1;
Reid Spencerf734ea22007-02-19 22:35:00 +0000257 int LargestInt = -1;
Chris Lattneraffeb562007-02-17 00:41:42 +0000258 for (unsigned i = 0, e = Alignments.size(); i != e; ++i) {
259 if (Alignments[i].AlignType == AlignType &&
260 Alignments[i].TypeBitWidth == BitWidth)
261 return ABIInfo ? Alignments[i].ABIAlign : Alignments[i].PrefAlign;
262
263 // The best match so far depends on what we're looking for.
264 if (AlignType == VECTOR_ALIGN) {
265 // If this is a specification for a smaller vector type, we will fall back
266 // to it. This happens because <128 x double> can be implemented in terms
267 // of 64 <2 x double>.
268 if (Alignments[i].AlignType == VECTOR_ALIGN &&
269 Alignments[i].TypeBitWidth < BitWidth) {
270 // Verify that we pick the biggest of the fallbacks.
271 if (BestMatchIdx == -1 ||
272 Alignments[BestMatchIdx].TypeBitWidth < BitWidth)
273 BestMatchIdx = i;
274 }
Reid Spencerf734ea22007-02-19 22:35:00 +0000275 } else if (AlignType == INTEGER_ALIGN &&
276 Alignments[i].AlignType == INTEGER_ALIGN) {
277 // The "best match" for integers is the smallest size that is larger than
278 // the BitWidth requested.
279 if (Alignments[i].TypeBitWidth > BitWidth && (BestMatchIdx == -1 ||
280 Alignments[i].TypeBitWidth < Alignments[BestMatchIdx].TypeBitWidth))
281 BestMatchIdx = i;
282 // However, if there isn't one that's larger, then we must use the
283 // largest one we have (see below)
284 if (LargestInt == -1 ||
285 Alignments[i].TypeBitWidth > Alignments[LargestInt].TypeBitWidth)
286 LargestInt = i;
Chris Lattneraffeb562007-02-17 00:41:42 +0000287 }
Chris Lattneraffeb562007-02-17 00:41:42 +0000288 }
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000289
Reid Spencerf734ea22007-02-19 22:35:00 +0000290 // For integers, if we didn't find a best match, use the largest one found.
291 if (BestMatchIdx == -1)
292 BestMatchIdx = LargestInt;
293
Chris Lattneraffeb562007-02-17 00:41:42 +0000294 // Okay, we didn't find an exact solution. Fall back here depending on what
295 // is being looked for.
296 assert(BestMatchIdx != -1 && "Didn't find alignment info for this datatype!");
Reid Spencerf734ea22007-02-19 22:35:00 +0000297
298 // Since we got a "best match" index, just return it.
Chris Lattneraffeb562007-02-17 00:41:42 +0000299 return ABIInfo ? Alignments[BestMatchIdx].ABIAlign
300 : Alignments[BestMatchIdx].PrefAlign;
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000301}
302
Chris Lattnerec6478b2007-02-10 19:43:18 +0000303/// LayoutInfo - The lazy cache of structure layout information maintained by
Chris Lattner9182e3f2007-02-10 20:15:41 +0000304/// TargetData. Note that the struct types must have been free'd before
305/// llvm_shutdown is called (and thus this is deallocated) because all the
306/// targets with cached elements should have been destroyed.
Chris Lattner8dff24f2006-01-14 00:07:34 +0000307///
Chris Lattnerec6478b2007-02-10 19:43:18 +0000308typedef std::pair<const TargetData*,const StructType*> LayoutKey;
Chris Lattnerf6ca09a2007-02-10 20:26:17 +0000309
310struct DenseMapLayoutKeyInfo {
311 static inline LayoutKey getEmptyKey() { return LayoutKey(0, 0); }
312 static inline LayoutKey getTombstoneKey() {
313 return LayoutKey((TargetData*)(intptr_t)-1, 0);
314 }
315 static unsigned getHashValue(const LayoutKey &Val) {
316 return DenseMapKeyInfo<void*>::getHashValue(Val.first) ^
317 DenseMapKeyInfo<void*>::getHashValue(Val.second);
318 }
319 static bool isPod() { return true; }
320};
321
322typedef DenseMap<LayoutKey, StructLayout*, DenseMapLayoutKeyInfo> LayoutInfoTy;
Chris Lattnera12bd032007-02-10 20:18:06 +0000323static ManagedStatic<LayoutInfoTy> LayoutInfo;
Chris Lattner0e7ac162004-02-26 08:02:17 +0000324
325
Chris Lattnere7fb3602001-08-27 16:00:15 +0000326TargetData::~TargetData() {
Chris Lattnerec6478b2007-02-10 19:43:18 +0000327 if (LayoutInfo.isConstructed()) {
Chris Lattner0e7ac162004-02-26 08:02:17 +0000328 // Remove any layouts for this TD.
Chris Lattnera12bd032007-02-10 20:18:06 +0000329 LayoutInfoTy &TheMap = *LayoutInfo;
Chris Lattnerf6ca09a2007-02-10 20:26:17 +0000330 for (LayoutInfoTy::iterator I = TheMap.begin(), E = TheMap.end();
331 I != E; ) {
332 if (I->first.first == this) {
333 I->second->~StructLayout();
334 free(I->second);
335 TheMap.erase(I++);
336 } else {
337 ++I;
338 }
Chris Lattner9182e3f2007-02-10 20:15:41 +0000339 }
Chris Lattner0e7ac162004-02-26 08:02:17 +0000340 }
341}
342
Chris Lattner9182e3f2007-02-10 20:15:41 +0000343const StructLayout *TargetData::getStructLayout(const StructType *Ty) const {
Chris Lattnera12bd032007-02-10 20:18:06 +0000344 LayoutInfoTy &TheMap = *LayoutInfo;
Chris Lattner9182e3f2007-02-10 20:15:41 +0000345
Chris Lattnerf6ca09a2007-02-10 20:26:17 +0000346 StructLayout *&SL = TheMap[LayoutKey(this, Ty)];
347 if (SL) return SL;
Chris Lattner9182e3f2007-02-10 20:15:41 +0000348
349 // Otherwise, create the struct layout. Because it is variable length, we
350 // malloc it, then use placement new.
351 unsigned NumElts = Ty->getNumElements();
352 StructLayout *L =
353 (StructLayout *)malloc(sizeof(StructLayout)+(NumElts-1)*sizeof(uint64_t));
Chris Lattnerf6ca09a2007-02-10 20:26:17 +0000354
355 // Set SL before calling StructLayout's ctor. The ctor could cause other
356 // entries to be added to TheMap, invalidating our reference.
357 SL = L;
358
Chris Lattner9182e3f2007-02-10 20:15:41 +0000359 new (L) StructLayout(Ty, *this);
Chris Lattner9182e3f2007-02-10 20:15:41 +0000360 return L;
361}
362
363/// InvalidateStructLayoutInfo - TargetData speculatively caches StructLayout
364/// objects. If a TargetData object is alive when types are being refined and
365/// removed, this method must be called whenever a StructType is removed to
366/// avoid a dangling pointer in this cache.
367void TargetData::InvalidateStructLayoutInfo(const StructType *Ty) const {
368 if (!LayoutInfo.isConstructed()) return; // No cache.
369
Chris Lattnera12bd032007-02-10 20:18:06 +0000370 LayoutInfoTy::iterator I = LayoutInfo->find(LayoutKey(this, Ty));
Chris Lattner9182e3f2007-02-10 20:15:41 +0000371 if (I != LayoutInfo->end()) {
372 I->second->~StructLayout();
373 free(I->second);
374 LayoutInfo->erase(I);
375 }
376}
377
378
Owen Anderson2577c222006-05-12 07:01:44 +0000379std::string TargetData::getStringRepresentation() const {
Reid Spencerb7d61102007-02-15 02:11:06 +0000380 std::string repr;
381 repr.append(LittleEndian ? "e" : "E");
382 repr.append("-p:").append(itostr((int64_t) (PointerMemSize * 8))).
383 append(":").append(itostr((int64_t) (PointerABIAlign * 8))).
384 append(":").append(itostr((int64_t) (PointerPrefAlign * 8)));
385 for (align_const_iterator I = Alignments.begin();
386 I != Alignments.end();
387 ++I) {
388 repr.append("-").append(1, (char) I->AlignType).
389 append(utostr((int64_t) I->TypeBitWidth)).
390 append(":").append(utostr((uint64_t) (I->ABIAlign * 8))).
391 append(":").append(utostr((uint64_t) (I->PrefAlign * 8)));
392 }
393 return repr;
Owen Anderson2577c222006-05-12 07:01:44 +0000394}
395
Chris Lattner8dff24f2006-01-14 00:07:34 +0000396
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000397uint64_t TargetData::getTypeSize(const Type *Ty) const {
Chris Lattnerf59ce922001-12-13 00:46:11 +0000398 assert(Ty->isSized() && "Cannot getTypeInfo() on a type that is unsized!");
Chris Lattnerf70c22b2004-06-17 18:19:28 +0000399 switch (Ty->getTypeID()) {
Chris Lattnere7fb3602001-08-27 16:00:15 +0000400 case Type::LabelTyID:
401 case Type::PointerTyID:
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000402 return getPointerSize();
Chris Lattnere7fb3602001-08-27 16:00:15 +0000403 case Type::ArrayTyID: {
Chris Lattner59b00672004-07-01 17:32:59 +0000404 const ArrayType *ATy = cast<ArrayType>(Ty);
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000405 uint64_t Size;
406 unsigned char Alignment;
407 Size = getTypeSize(ATy->getElementType());
408 Alignment = getABITypeAlignment(ATy->getElementType());
Brian Gaekee0e35892004-07-02 07:01:31 +0000409 unsigned AlignedSize = (Size + Alignment - 1)/Alignment*Alignment;
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000410 return AlignedSize*ATy->getNumElements();
Chris Lattner527efc62004-12-01 17:14:28 +0000411 }
Chris Lattnere7fb3602001-08-27 16:00:15 +0000412 case Type::StructTyID: {
413 // Get the layout annotation... which is lazily created on demand.
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000414 const StructLayout *Layout = getStructLayout(cast<StructType>(Ty));
415 return Layout->getSizeInBytes();
Chris Lattnere7fb3602001-08-27 16:00:15 +0000416 }
Chris Lattner58092e32007-01-20 22:35:55 +0000417 case Type::IntegerTyID: {
418 unsigned BitWidth = cast<IntegerType>(Ty)->getBitWidth();
419 if (BitWidth <= 8) {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000420 return 1;
Chris Lattner58092e32007-01-20 22:35:55 +0000421 } else if (BitWidth <= 16) {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000422 return 2;
Chris Lattner58092e32007-01-20 22:35:55 +0000423 } else if (BitWidth <= 32) {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000424 return 4;
Chris Lattner58092e32007-01-20 22:35:55 +0000425 } else if (BitWidth <= 64) {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000426 return 8;
Reid Spencerf734ea22007-02-19 22:35:00 +0000427 } else {
428 // The size of this > 64 bit type is chosen as a multiple of the
429 // preferred alignment of the largest "native" size the target supports.
430 // We first obtain the the alignment info for this type and then compute
431 // the next largest multiple of that size.
432 uint64_t size = getAlignmentInfo(INTEGER_ALIGN, BitWidth, false) * 8;
433 return (((BitWidth / (size)) + (BitWidth % size != 0)) * size) / 8;
434 }
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000435 break;
Chris Lattner58092e32007-01-20 22:35:55 +0000436 }
437 case Type::VoidTyID:
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000438 return 1;
Chris Lattner58092e32007-01-20 22:35:55 +0000439 case Type::FloatTyID:
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000440 return 4;
Chris Lattner58092e32007-01-20 22:35:55 +0000441 case Type::DoubleTyID:
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000442 return 8;
Reid Spencer9d6565a2007-02-15 02:26:10 +0000443 case Type::VectorTyID: {
444 const VectorType *PTy = cast<VectorType>(Ty);
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000445 return PTy->getBitWidth() / 8;
Chris Lattner58092e32007-01-20 22:35:55 +0000446 }
Chris Lattner58092e32007-01-20 22:35:55 +0000447 default:
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000448 assert(0 && "TargetData::getTypeSize(): Unsupported type");
449 break;
Chris Lattner58092e32007-01-20 22:35:55 +0000450 }
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000451 return 0;
Chris Lattnere7fb3602001-08-27 16:00:15 +0000452}
453
Reid Spencer7c292432007-01-20 23:32:04 +0000454uint64_t TargetData::getTypeSizeInBits(const Type *Ty) const {
455 if (Ty->isInteger())
456 return cast<IntegerType>(Ty)->getBitWidth();
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000457 else
458 return getTypeSize(Ty) * 8;
Reid Spencer7c292432007-01-20 23:32:04 +0000459}
460
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000461
462/*!
463 \param abi_or_pref Flag that determines which alignment is returned. true
464 returns the ABI alignment, false returns the preferred alignment.
465 \param Ty The underlying type for which alignment is determined.
466
467 Get the ABI (\a abi_or_pref == true) or preferred alignment (\a abi_or_pref
468 == false) for the requested type \a Ty.
469 */
Chris Lattnerae6f1fa2007-02-16 22:25:34 +0000470unsigned char TargetData::getAlignment(const Type *Ty, bool abi_or_pref) const {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000471 int AlignType = -1;
472
473 assert(Ty->isSized() && "Cannot getTypeInfo() on a type that is unsized!");
474 switch (Ty->getTypeID()) {
475 /* Early escape for the non-numeric types */
476 case Type::LabelTyID:
477 case Type::PointerTyID:
478 return (abi_or_pref
479 ? getPointerABIAlignment()
480 : getPointerPrefAlignment());
Chris Lattnerae6f1fa2007-02-16 22:25:34 +0000481 case Type::ArrayTyID:
482 return getAlignment(cast<ArrayType>(Ty)->getElementType(), abi_or_pref);
483
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000484 case Type::StructTyID: {
Chris Lattnerae6f1fa2007-02-16 22:25:34 +0000485 // Packed structure types always have an ABI alignment of one.
Chris Lattner3ebb2e02007-02-16 23:11:51 +0000486 if (cast<StructType>(Ty)->isPacked() && abi_or_pref)
Chris Lattnerae6f1fa2007-02-16 22:25:34 +0000487 return 1;
488
489 // Get the layout annotation... which is lazily created on demand.
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000490 const StructLayout *Layout = getStructLayout(cast<StructType>(Ty));
Chris Lattneraffeb562007-02-17 00:41:42 +0000491 unsigned Align = getAlignmentInfo(AGGREGATE_ALIGN, 0, abi_or_pref);
492 return std::max(Align, (unsigned)Layout->getAlignment());
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000493 }
494 case Type::IntegerTyID:
495 case Type::VoidTyID:
496 AlignType = INTEGER_ALIGN;
497 break;
498 case Type::FloatTyID:
499 case Type::DoubleTyID:
500 AlignType = FLOAT_ALIGN;
501 break;
Reid Spencer9d6565a2007-02-15 02:26:10 +0000502 case Type::VectorTyID:
Reid Spencer1f437872007-02-15 22:07:05 +0000503 AlignType = VECTOR_ALIGN;
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000504 break;
505 default:
506 assert(0 && "Bad type for getAlignment!!!");
507 break;
508 }
509
Chris Lattneraffeb562007-02-17 00:41:42 +0000510 return getAlignmentInfo((AlignTypeEnum)AlignType, getTypeSize(Ty) * 8,
511 abi_or_pref);
Chris Lattner58092e32007-01-20 22:35:55 +0000512}
513
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000514unsigned char TargetData::getABITypeAlignment(const Type *Ty) const {
515 return getAlignment(Ty, true);
516}
517
518unsigned char TargetData::getPrefTypeAlignment(const Type *Ty) const {
519 return getAlignment(Ty, false);
Chris Lattnere7fb3602001-08-27 16:00:15 +0000520}
521
Evan Chengde268f72007-01-24 07:03:39 +0000522unsigned char TargetData::getPreferredTypeAlignmentShift(const Type *Ty) const {
Chris Lattnerd2b7cec2007-02-14 05:52:17 +0000523 unsigned Align = (unsigned) getPrefTypeAlignment(Ty);
Chris Lattnerd2b0bb42004-08-17 19:13:00 +0000524 assert(!(Align & (Align-1)) && "Alignment is not a power of two!");
Chris Lattner0561b3f2005-08-02 19:26:06 +0000525 return Log2_32(Align);
Chris Lattnerd2b0bb42004-08-17 19:13:00 +0000526}
527
Chris Lattnerf0453282003-12-22 05:01:15 +0000528/// getIntPtrType - Return an unsigned integer type that is the same size or
529/// greater to the host pointer size.
530const Type *TargetData::getIntPtrType() const {
531 switch (getPointerSize()) {
532 default: assert(0 && "Unknown pointer size!");
Reid Spencer47857812006-12-31 05:55:36 +0000533 case 2: return Type::Int16Ty;
534 case 4: return Type::Int32Ty;
535 case 8: return Type::Int64Ty;
Chris Lattnerf0453282003-12-22 05:01:15 +0000536 }
537}
538
539
Chris Lattnerddce8d22007-02-10 19:33:15 +0000540uint64_t TargetData::getIndexedOffset(const Type *ptrTy, Value* const* Indices,
541 unsigned NumIndices) const {
Vikram S. Adveed0030e2002-08-04 20:52:39 +0000542 const Type *Ty = ptrTy;
543 assert(isa<PointerType>(Ty) && "Illegal argument for getIndexedOffset()");
Vikram S. Advef66723f2002-05-19 15:28:02 +0000544 uint64_t Result = 0;
Chris Lattnere7fb3602001-08-27 16:00:15 +0000545
Chris Lattnerddce8d22007-02-10 19:33:15 +0000546 generic_gep_type_iterator<Value* const*>
547 TI = gep_type_begin(ptrTy, Indices, Indices+NumIndices);
548 for (unsigned CurIDX = 0; CurIDX != NumIndices; ++CurIDX, ++TI) {
Chris Lattner28977af2004-04-05 01:30:19 +0000549 if (const StructType *STy = dyn_cast<StructType>(*TI)) {
Chris Lattnerddce8d22007-02-10 19:33:15 +0000550 assert(Indices[CurIDX]->getType() == Type::Int32Ty &&"Illegal struct idx");
551 unsigned FieldNo = cast<ConstantInt>(Indices[CurIDX])->getZExtValue();
Chris Lattnere7fb3602001-08-27 16:00:15 +0000552
553 // Get structure layout information...
554 const StructLayout *Layout = getStructLayout(STy);
555
556 // Add in the offset, as calculated by the structure layout info...
Chris Lattnerb1919e22007-02-10 19:55:17 +0000557 Result += Layout->getElementOffset(FieldNo);
Vikram S. Adveed0030e2002-08-04 20:52:39 +0000558
Chris Lattnere7fb3602001-08-27 16:00:15 +0000559 // Update Ty to refer to current element
Chris Lattnerd21cd802004-02-09 04:37:31 +0000560 Ty = STy->getElementType(FieldNo);
Chris Lattner28977af2004-04-05 01:30:19 +0000561 } else {
562 // Update Ty to refer to current element
563 Ty = cast<SequentialType>(Ty)->getElementType();
564
565 // Get the array index and the size of each array element.
Chris Lattnerddce8d22007-02-10 19:33:15 +0000566 int64_t arrayIdx = cast<ConstantInt>(Indices[CurIDX])->getSExtValue();
Chris Lattner28977af2004-04-05 01:30:19 +0000567 Result += arrayIdx * (int64_t)getTypeSize(Ty);
Chris Lattnere7fb3602001-08-27 16:00:15 +0000568 }
569 }
570
571 return Result;
572}
Brian Gaeked0fde302003-11-11 22:41:34 +0000573
Devang Patelf9c197e2006-10-24 20:32:14 +0000574/// getPreferredAlignmentLog - Return the preferred alignment of the
575/// specified global, returned in log form. This includes an explicitly
576/// requested alignment (if the global has one).
577unsigned TargetData::getPreferredAlignmentLog(const GlobalVariable *GV) const {
578 const Type *ElemType = GV->getType()->getElementType();
Evan Chengde268f72007-01-24 07:03:39 +0000579 unsigned Alignment = getPreferredTypeAlignmentShift(ElemType);
Devang Patelf9c197e2006-10-24 20:32:14 +0000580 if (GV->getAlignment() > (1U << Alignment))
581 Alignment = Log2_32(GV->getAlignment());
582
583 if (GV->hasInitializer()) {
Devang Patelf9c197e2006-10-24 20:32:14 +0000584 if (Alignment < 4) {
585 // If the global is not external, see if it is large. If so, give it a
586 // larger alignment.
587 if (getTypeSize(ElemType) > 128)
588 Alignment = 4; // 16-byte alignment.
589 }
590 }
591 return Alignment;
592}