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Eric Christopher45731982013-08-08 23:45:55 +00001//===-- llvm/CodeGen/DIEHash.cpp - Dwarf Hashing Framework ----------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file contains support for DWARF4 hashing of DIEs.
11//
12//===----------------------------------------------------------------------===//
13
14#define DEBUG_TYPE "dwarfdebug"
15
Eric Christopher45731982013-08-08 23:45:55 +000016#include "DIEHash.h"
David Blaikie9208b5e2013-11-13 18:07:27 +000017#include "DIE.h"
Eric Christopher45731982013-08-08 23:45:55 +000018#include "llvm/ADT/ArrayRef.h"
19#include "llvm/ADT/StringRef.h"
Eric Christopher420569b2014-02-20 02:50:45 +000020#include "llvm/CodeGen/AsmPrinter.h"
Eric Christopher45731982013-08-08 23:45:55 +000021#include "llvm/Support/Debug.h"
22#include "llvm/Support/Dwarf.h"
23#include "llvm/Support/Endian.h"
24#include "llvm/Support/MD5.h"
25#include "llvm/Support/raw_ostream.h"
26
27using namespace llvm;
28
29/// \brief Grabs the string in whichever attribute is passed in and returns
30/// a reference to it.
David Blaikieafcb9652013-10-24 17:51:43 +000031static StringRef getDIEStringAttr(const DIE &Die, uint16_t Attr) {
32 const SmallVectorImpl<DIEValue *> &Values = Die.getValues();
33 const DIEAbbrev &Abbrevs = Die.getAbbrev();
Eric Christopher45731982013-08-08 23:45:55 +000034
35 // Iterate through all the attributes until we find the one we're
36 // looking for, if we can't find it return an empty string.
37 for (size_t i = 0; i < Values.size(); ++i) {
38 if (Abbrevs.getData()[i].getAttribute() == Attr) {
39 DIEValue *V = Values[i];
40 assert(isa<DIEString>(V) && "String requested. Not a string.");
41 DIEString *S = cast<DIEString>(V);
42 return S->getString();
43 }
44 }
45 return StringRef("");
46}
47
48/// \brief Adds the string in \p Str to the hash. This also hashes
49/// a trailing NULL with the string.
50void DIEHash::addString(StringRef Str) {
51 DEBUG(dbgs() << "Adding string " << Str << " to hash.\n");
52 Hash.update(Str);
53 Hash.update(makeArrayRef((uint8_t)'\0'));
54}
55
56// FIXME: The LEB128 routines are copied and only slightly modified out of
57// LEB128.h.
58
59/// \brief Adds the unsigned in \p Value to the hash encoded as a ULEB128.
60void DIEHash::addULEB128(uint64_t Value) {
61 DEBUG(dbgs() << "Adding ULEB128 " << Value << " to hash.\n");
62 do {
63 uint8_t Byte = Value & 0x7f;
64 Value >>= 7;
65 if (Value != 0)
66 Byte |= 0x80; // Mark this byte to show that more bytes will follow.
67 Hash.update(Byte);
68 } while (Value != 0);
69}
70
David Blaikie6316ca42013-10-16 23:36:20 +000071void DIEHash::addSLEB128(int64_t Value) {
72 DEBUG(dbgs() << "Adding ULEB128 " << Value << " to hash.\n");
73 bool More;
74 do {
75 uint8_t Byte = Value & 0x7f;
76 Value >>= 7;
Eric Christophera1b87fd2014-02-20 02:40:41 +000077 More = !((((Value == 0) && ((Byte & 0x40) == 0)) ||
David Blaikie6316ca42013-10-16 23:36:20 +000078 ((Value == -1) && ((Byte & 0x40) != 0))));
79 if (More)
80 Byte |= 0x80; // Mark this byte to show that more bytes will follow.
81 Hash.update(Byte);
82 } while (More);
83}
84
Eric Christopher45731982013-08-08 23:45:55 +000085/// \brief Including \p Parent adds the context of Parent to the hash..
David Blaikie2aee7be2013-10-24 18:29:03 +000086void DIEHash::addParentContext(const DIE &Parent) {
Eric Christopher45731982013-08-08 23:45:55 +000087
88 DEBUG(dbgs() << "Adding parent context to hash...\n");
89
90 // [7.27.2] For each surrounding type or namespace beginning with the
91 // outermost such construct...
David Blaikie2aee7be2013-10-24 18:29:03 +000092 SmallVector<const DIE *, 1> Parents;
93 const DIE *Cur = &Parent;
David Blaikie409dd9c2013-11-19 23:08:21 +000094 while (Cur->getParent()) {
David Blaikie2aee7be2013-10-24 18:29:03 +000095 Parents.push_back(Cur);
96 Cur = Cur->getParent();
Eric Christopher45731982013-08-08 23:45:55 +000097 }
David Blaikie409dd9c2013-11-19 23:08:21 +000098 assert(Cur->getTag() == dwarf::DW_TAG_compile_unit ||
99 Cur->getTag() == dwarf::DW_TAG_type_unit);
Eric Christopher45731982013-08-08 23:45:55 +0000100
101 // Reverse iterate over our list to go from the outermost construct to the
102 // innermost.
David Blaikie2aee7be2013-10-24 18:29:03 +0000103 for (SmallVectorImpl<const DIE *>::reverse_iterator I = Parents.rbegin(),
104 E = Parents.rend();
Eric Christopher45731982013-08-08 23:45:55 +0000105 I != E; ++I) {
David Blaikie2aee7be2013-10-24 18:29:03 +0000106 const DIE &Die = **I;
Eric Christopher45731982013-08-08 23:45:55 +0000107
108 // ... Append the letter "C" to the sequence...
109 addULEB128('C');
110
111 // ... Followed by the DWARF tag of the construct...
David Blaikie2aee7be2013-10-24 18:29:03 +0000112 addULEB128(Die.getTag());
Eric Christopher45731982013-08-08 23:45:55 +0000113
114 // ... Then the name, taken from the DW_AT_name attribute.
David Blaikie2aee7be2013-10-24 18:29:03 +0000115 StringRef Name = getDIEStringAttr(Die, dwarf::DW_AT_name);
Eric Christopher45731982013-08-08 23:45:55 +0000116 DEBUG(dbgs() << "... adding context: " << Name << "\n");
117 if (!Name.empty())
118 addString(Name);
119 }
120}
121
Eric Christopherd29614f2013-08-13 01:21:55 +0000122// Collect all of the attributes for a particular DIE in single structure.
David Blaikie2aee7be2013-10-24 18:29:03 +0000123void DIEHash::collectAttributes(const DIE &Die, DIEAttrs &Attrs) {
124 const SmallVectorImpl<DIEValue *> &Values = Die.getValues();
125 const DIEAbbrev &Abbrevs = Die.getAbbrev();
Eric Christopherd29614f2013-08-13 01:21:55 +0000126
127#define COLLECT_ATTR(NAME) \
David Blaikie01fae512013-10-17 22:14:08 +0000128 case dwarf::NAME: \
129 Attrs.NAME.Val = Values[i]; \
130 Attrs.NAME.Desc = &Abbrevs.getData()[i]; \
131 break
Eric Christopherd29614f2013-08-13 01:21:55 +0000132
133 for (size_t i = 0, e = Values.size(); i != e; ++i) {
134 DEBUG(dbgs() << "Attribute: "
135 << dwarf::AttributeString(Abbrevs.getData()[i].getAttribute())
136 << " added.\n");
137 switch (Abbrevs.getData()[i].getAttribute()) {
Eric Christophera1b87fd2014-02-20 02:40:41 +0000138 COLLECT_ATTR(DW_AT_name);
139 COLLECT_ATTR(DW_AT_accessibility);
140 COLLECT_ATTR(DW_AT_address_class);
141 COLLECT_ATTR(DW_AT_allocated);
142 COLLECT_ATTR(DW_AT_artificial);
143 COLLECT_ATTR(DW_AT_associated);
144 COLLECT_ATTR(DW_AT_binary_scale);
145 COLLECT_ATTR(DW_AT_bit_offset);
146 COLLECT_ATTR(DW_AT_bit_size);
147 COLLECT_ATTR(DW_AT_bit_stride);
148 COLLECT_ATTR(DW_AT_byte_size);
149 COLLECT_ATTR(DW_AT_byte_stride);
150 COLLECT_ATTR(DW_AT_const_expr);
151 COLLECT_ATTR(DW_AT_const_value);
152 COLLECT_ATTR(DW_AT_containing_type);
153 COLLECT_ATTR(DW_AT_count);
154 COLLECT_ATTR(DW_AT_data_bit_offset);
155 COLLECT_ATTR(DW_AT_data_location);
156 COLLECT_ATTR(DW_AT_data_member_location);
157 COLLECT_ATTR(DW_AT_decimal_scale);
158 COLLECT_ATTR(DW_AT_decimal_sign);
159 COLLECT_ATTR(DW_AT_default_value);
160 COLLECT_ATTR(DW_AT_digit_count);
161 COLLECT_ATTR(DW_AT_discr);
162 COLLECT_ATTR(DW_AT_discr_list);
163 COLLECT_ATTR(DW_AT_discr_value);
164 COLLECT_ATTR(DW_AT_encoding);
165 COLLECT_ATTR(DW_AT_enum_class);
166 COLLECT_ATTR(DW_AT_endianity);
167 COLLECT_ATTR(DW_AT_explicit);
168 COLLECT_ATTR(DW_AT_is_optional);
169 COLLECT_ATTR(DW_AT_location);
170 COLLECT_ATTR(DW_AT_lower_bound);
171 COLLECT_ATTR(DW_AT_mutable);
172 COLLECT_ATTR(DW_AT_ordering);
173 COLLECT_ATTR(DW_AT_picture_string);
174 COLLECT_ATTR(DW_AT_prototyped);
175 COLLECT_ATTR(DW_AT_small);
176 COLLECT_ATTR(DW_AT_segment);
177 COLLECT_ATTR(DW_AT_string_length);
178 COLLECT_ATTR(DW_AT_threads_scaled);
179 COLLECT_ATTR(DW_AT_upper_bound);
180 COLLECT_ATTR(DW_AT_use_location);
181 COLLECT_ATTR(DW_AT_use_UTF8);
182 COLLECT_ATTR(DW_AT_variable_parameter);
183 COLLECT_ATTR(DW_AT_virtuality);
184 COLLECT_ATTR(DW_AT_visibility);
185 COLLECT_ATTR(DW_AT_vtable_elem_location);
186 COLLECT_ATTR(DW_AT_type);
Eric Christopherd29614f2013-08-13 01:21:55 +0000187 default:
188 break;
189 }
190 }
191}
192
David Blaikieafcb9652013-10-24 17:51:43 +0000193void DIEHash::hashShallowTypeReference(dwarf::Attribute Attribute,
194 const DIE &Entry, StringRef Name) {
195 // append the letter 'N'
196 addULEB128('N');
197
198 // the DWARF attribute code (DW_AT_type or DW_AT_friend),
199 addULEB128(Attribute);
200
201 // the context of the tag,
David Blaikie2aee7be2013-10-24 18:29:03 +0000202 if (const DIE *Parent = Entry.getParent())
203 addParentContext(*Parent);
David Blaikieafcb9652013-10-24 17:51:43 +0000204
205 // the letter 'E',
206 addULEB128('E');
207
208 // and the name of the type.
209 addString(Name);
210
211 // Currently DW_TAG_friends are not used by Clang, but if they do become so,
212 // here's the relevant spec text to implement:
213 //
214 // For DW_TAG_friend, if the referenced entry is the DW_TAG_subprogram,
215 // the context is omitted and the name to be used is the ABI-specific name
216 // of the subprogram (e.g., the mangled linker name).
217}
218
219void DIEHash::hashRepeatedTypeReference(dwarf::Attribute Attribute,
220 unsigned DieNumber) {
221 // a) If T is in the list of [previously hashed types], use the letter
222 // 'R' as the marker
223 addULEB128('R');
224
225 addULEB128(Attribute);
226
227 // and use the unsigned LEB128 encoding of [the index of T in the
228 // list] as the attribute value;
229 addULEB128(DieNumber);
230}
231
232void DIEHash::hashDIEEntry(dwarf::Attribute Attribute, dwarf::Tag Tag,
David Blaikie2aee7be2013-10-24 18:29:03 +0000233 const DIE &Entry) {
David Blaikieafcb9652013-10-24 17:51:43 +0000234 assert(Tag != dwarf::DW_TAG_friend && "No current LLVM clients emit friend "
235 "tags. Add support here when there's "
236 "a use case");
237 // Step 5
238 // If the tag in Step 3 is one of [the below tags]
239 if ((Tag == dwarf::DW_TAG_pointer_type ||
240 Tag == dwarf::DW_TAG_reference_type ||
241 Tag == dwarf::DW_TAG_rvalue_reference_type ||
242 Tag == dwarf::DW_TAG_ptr_to_member_type) &&
243 // and the referenced type (via the [below attributes])
244 // FIXME: This seems overly restrictive, and causes hash mismatches
245 // there's a decl/def difference in the containing type of a
246 // ptr_to_member_type, but it's what DWARF says, for some reason.
247 Attribute == dwarf::DW_AT_type) {
David Blaikie32744412013-10-24 17:53:58 +0000248 // ... has a DW_AT_name attribute,
249 StringRef Name = getDIEStringAttr(Entry, dwarf::DW_AT_name);
250 if (!Name.empty()) {
251 hashShallowTypeReference(Attribute, Entry, Name);
252 return;
253 }
David Blaikieafcb9652013-10-24 17:51:43 +0000254 }
255
256 unsigned &DieNumber = Numbering[&Entry];
257 if (DieNumber) {
258 hashRepeatedTypeReference(Attribute, DieNumber);
259 return;
260 }
261
262 // otherwise, b) use the letter 'T' as a the marker, ...
263 addULEB128('T');
264
265 addULEB128(Attribute);
266
267 // ... process the type T recursively by performing Steps 2 through 7, and
268 // use the result as the attribute value.
269 DieNumber = Numbering.size();
David Blaikie2aee7be2013-10-24 18:29:03 +0000270 computeHash(Entry);
David Blaikieafcb9652013-10-24 17:51:43 +0000271}
272
Eric Christopher420569b2014-02-20 02:50:45 +0000273// Hash all of the values in a block like set of values. This assumes that
274// all of the data is going to be added as integers.
275void DIEHash::hashBlockData(const SmallVectorImpl<DIEValue *> &Values) {
276 for (SmallVectorImpl<DIEValue *>::const_iterator I = Values.begin(),
277 E = Values.end();
278 I != E; ++I)
279 Hash.update((uint64_t)cast<DIEInteger>(*I)->getValue());
280}
281
Eric Christopherd29614f2013-08-13 01:21:55 +0000282// Hash an individual attribute \param Attr based on the type of attribute and
283// the form.
David Blaikie6cf58c82013-10-21 22:36:50 +0000284void DIEHash::hashAttribute(AttrEntry Attr, dwarf::Tag Tag) {
Eric Christopherd29614f2013-08-13 01:21:55 +0000285 const DIEValue *Value = Attr.Val;
286 const DIEAbbrevData *Desc = Attr.Desc;
David Blaikied70a0552013-10-22 18:14:41 +0000287 dwarf::Attribute Attribute = Desc->getAttribute();
Eric Christopherd29614f2013-08-13 01:21:55 +0000288
David Blaikie6cf58c82013-10-21 22:36:50 +0000289 // 7.27 Step 3
David Blaikieca353be2013-10-17 22:07:09 +0000290 // ... An attribute that refers to another type entry T is processed as
291 // follows:
David Blaikieca353be2013-10-17 22:07:09 +0000292 if (const DIEEntry *EntryAttr = dyn_cast<DIEEntry>(Value)) {
David Blaikieafcb9652013-10-24 17:51:43 +0000293 hashDIEEntry(Attribute, Tag, *EntryAttr->getEntry());
David Blaikieca353be2013-10-17 22:07:09 +0000294 return;
295 }
296
Eric Christopher4b1cf582014-01-31 20:02:58 +0000297 // Other attribute values use the letter 'A' as the marker, and the value
298 // consists of the form code (encoded as an unsigned LEB128 value) followed by
299 // the encoding of the value according to the form code. To ensure
300 // reproducibility of the signature, the set of forms used in the signature
301 // computation is limited to the following: DW_FORM_sdata, DW_FORM_flag,
302 // DW_FORM_string, and DW_FORM_block.
Eric Christopherd29614f2013-08-13 01:21:55 +0000303 switch (Desc->getForm()) {
David Blaikie6316ca42013-10-16 23:36:20 +0000304 case dwarf::DW_FORM_string:
305 llvm_unreachable(
306 "Add support for DW_FORM_string if we ever start emitting them again");
David Blaikie63bb3e12013-10-21 16:37:22 +0000307 case dwarf::DW_FORM_GNU_str_index:
Eric Christopherd29614f2013-08-13 01:21:55 +0000308 case dwarf::DW_FORM_strp:
Eric Christopher4b1cf582014-01-31 20:02:58 +0000309 addULEB128('A');
310 addULEB128(Attribute);
David Blaikie6316ca42013-10-16 23:36:20 +0000311 addULEB128(dwarf::DW_FORM_string);
Eric Christopherd29614f2013-08-13 01:21:55 +0000312 addString(cast<DIEString>(Value)->getString());
313 break;
Eric Christopherd033d6f2013-08-28 00:10:38 +0000314 case dwarf::DW_FORM_data1:
315 case dwarf::DW_FORM_data2:
316 case dwarf::DW_FORM_data4:
317 case dwarf::DW_FORM_data8:
318 case dwarf::DW_FORM_udata:
Eric Christopher8192ba22014-02-20 00:54:40 +0000319 case dwarf::DW_FORM_sdata:
Eric Christopher4b1cf582014-01-31 20:02:58 +0000320 addULEB128('A');
321 addULEB128(Attribute);
David Blaikie6316ca42013-10-16 23:36:20 +0000322 addULEB128(dwarf::DW_FORM_sdata);
323 addSLEB128((int64_t)cast<DIEInteger>(Value)->getValue());
Eric Christopherd033d6f2013-08-28 00:10:38 +0000324 break;
Eric Christopher4b1cf582014-01-31 20:02:58 +0000325 // DW_FORM_flag_present is just flag with a value of one. We still give it a
326 // value so just use the value.
327 case dwarf::DW_FORM_flag_present:
328 case dwarf::DW_FORM_flag:
329 addULEB128('A');
330 addULEB128(Attribute);
331 addULEB128(dwarf::DW_FORM_flag);
332 addULEB128((int64_t)cast<DIEInteger>(Value)->getValue());
333 break;
Eric Christopher420569b2014-02-20 02:50:45 +0000334 case dwarf::DW_FORM_exprloc:
335 case dwarf::DW_FORM_block1:
336 case dwarf::DW_FORM_block2:
337 case dwarf::DW_FORM_block4:
338 case dwarf::DW_FORM_block:
339 addULEB128('A');
340 addULEB128(Attribute);
341 addULEB128(dwarf::DW_FORM_block);
342 if (isa<DIEBlock>(Value)) {
343 addULEB128(cast<DIEBlock>(Value)->ComputeSize(AP));
344 hashBlockData(cast<DIEBlock>(Value)->getValues());
345 } else {
346 addULEB128(cast<DIELoc>(Value)->ComputeSize(AP));
347 hashBlockData(cast<DIELoc>(Value)->getValues());
348 }
349 break;
David Blaikie63bb3e12013-10-21 16:37:22 +0000350 default:
351 llvm_unreachable("Add support for additional forms");
Eric Christopherd29614f2013-08-13 01:21:55 +0000352 }
353}
354
355// Go through the attributes from \param Attrs in the order specified in 7.27.4
356// and hash them.
David Blaikie6cf58c82013-10-21 22:36:50 +0000357void DIEHash::hashAttributes(const DIEAttrs &Attrs, dwarf::Tag Tag) {
Eric Christopherd29614f2013-08-13 01:21:55 +0000358#define ADD_ATTR(ATTR) \
359 { \
360 if (ATTR.Val != 0) \
David Blaikie6cf58c82013-10-21 22:36:50 +0000361 hashAttribute(ATTR, Tag); \
Eric Christopherd29614f2013-08-13 01:21:55 +0000362 }
363
Eric Christopherd29614f2013-08-13 01:21:55 +0000364 ADD_ATTR(Attrs.DW_AT_name);
Eric Christophere020fa72013-09-03 20:00:20 +0000365 ADD_ATTR(Attrs.DW_AT_accessibility);
366 ADD_ATTR(Attrs.DW_AT_address_class);
367 ADD_ATTR(Attrs.DW_AT_allocated);
368 ADD_ATTR(Attrs.DW_AT_artificial);
369 ADD_ATTR(Attrs.DW_AT_associated);
370 ADD_ATTR(Attrs.DW_AT_binary_scale);
371 ADD_ATTR(Attrs.DW_AT_bit_offset);
372 ADD_ATTR(Attrs.DW_AT_bit_size);
373 ADD_ATTR(Attrs.DW_AT_bit_stride);
374 ADD_ATTR(Attrs.DW_AT_byte_size);
375 ADD_ATTR(Attrs.DW_AT_byte_stride);
376 ADD_ATTR(Attrs.DW_AT_const_expr);
377 ADD_ATTR(Attrs.DW_AT_const_value);
378 ADD_ATTR(Attrs.DW_AT_containing_type);
379 ADD_ATTR(Attrs.DW_AT_count);
380 ADD_ATTR(Attrs.DW_AT_data_bit_offset);
381 ADD_ATTR(Attrs.DW_AT_data_location);
382 ADD_ATTR(Attrs.DW_AT_data_member_location);
383 ADD_ATTR(Attrs.DW_AT_decimal_scale);
384 ADD_ATTR(Attrs.DW_AT_decimal_sign);
385 ADD_ATTR(Attrs.DW_AT_default_value);
386 ADD_ATTR(Attrs.DW_AT_digit_count);
387 ADD_ATTR(Attrs.DW_AT_discr);
388 ADD_ATTR(Attrs.DW_AT_discr_list);
389 ADD_ATTR(Attrs.DW_AT_discr_value);
390 ADD_ATTR(Attrs.DW_AT_encoding);
391 ADD_ATTR(Attrs.DW_AT_enum_class);
392 ADD_ATTR(Attrs.DW_AT_endianity);
393 ADD_ATTR(Attrs.DW_AT_explicit);
394 ADD_ATTR(Attrs.DW_AT_is_optional);
395 ADD_ATTR(Attrs.DW_AT_location);
396 ADD_ATTR(Attrs.DW_AT_lower_bound);
397 ADD_ATTR(Attrs.DW_AT_mutable);
398 ADD_ATTR(Attrs.DW_AT_ordering);
399 ADD_ATTR(Attrs.DW_AT_picture_string);
400 ADD_ATTR(Attrs.DW_AT_prototyped);
401 ADD_ATTR(Attrs.DW_AT_small);
402 ADD_ATTR(Attrs.DW_AT_segment);
403 ADD_ATTR(Attrs.DW_AT_string_length);
404 ADD_ATTR(Attrs.DW_AT_threads_scaled);
405 ADD_ATTR(Attrs.DW_AT_upper_bound);
406 ADD_ATTR(Attrs.DW_AT_use_location);
407 ADD_ATTR(Attrs.DW_AT_use_UTF8);
408 ADD_ATTR(Attrs.DW_AT_variable_parameter);
409 ADD_ATTR(Attrs.DW_AT_virtuality);
410 ADD_ATTR(Attrs.DW_AT_visibility);
411 ADD_ATTR(Attrs.DW_AT_vtable_elem_location);
David Blaikieca353be2013-10-17 22:07:09 +0000412 ADD_ATTR(Attrs.DW_AT_type);
Eric Christophere020fa72013-09-03 20:00:20 +0000413
414 // FIXME: Add the extended attributes.
Eric Christopherd29614f2013-08-13 01:21:55 +0000415}
416
417// Add all of the attributes for \param Die to the hash.
David Blaikie2aee7be2013-10-24 18:29:03 +0000418void DIEHash::addAttributes(const DIE &Die) {
David Blaikie94ded5f2013-10-16 00:47:21 +0000419 DIEAttrs Attrs = {};
David Blaikied0d6fcc2013-08-14 22:23:05 +0000420 collectAttributes(Die, Attrs);
David Blaikie2aee7be2013-10-24 18:29:03 +0000421 hashAttributes(Attrs, Die.getTag());
Eric Christopherd29614f2013-08-13 01:21:55 +0000422}
423
David Blaikie65cc9692013-10-25 18:38:43 +0000424void DIEHash::hashNestedType(const DIE &Die, StringRef Name) {
425 // 7.27 Step 7
426 // ... append the letter 'S',
427 addULEB128('S');
428
429 // the tag of C,
430 addULEB128(Die.getTag());
431
432 // and the name.
433 addString(Name);
434}
435
Eric Christopherd29614f2013-08-13 01:21:55 +0000436// Compute the hash of a DIE. This is based on the type signature computation
437// given in section 7.27 of the DWARF4 standard. It is the md5 hash of a
438// flattened description of the DIE.
David Blaikie2aee7be2013-10-24 18:29:03 +0000439void DIEHash::computeHash(const DIE &Die) {
Eric Christopherd29614f2013-08-13 01:21:55 +0000440 // Append the letter 'D', followed by the DWARF tag of the DIE.
441 addULEB128('D');
David Blaikie2aee7be2013-10-24 18:29:03 +0000442 addULEB128(Die.getTag());
Eric Christopherd29614f2013-08-13 01:21:55 +0000443
444 // Add each of the attributes of the DIE.
445 addAttributes(Die);
446
447 // Then hash each of the children of the DIE.
David Blaikie2aee7be2013-10-24 18:29:03 +0000448 for (std::vector<DIE *>::const_iterator I = Die.getChildren().begin(),
449 E = Die.getChildren().end();
David Blaikie65cc9692013-10-25 18:38:43 +0000450 I != E; ++I) {
451 // 7.27 Step 7
452 // If C is a nested type entry or a member function entry, ...
David Blaikie8bc7db72013-10-25 20:04:25 +0000453 if (isType((*I)->getTag()) || (*I)->getTag() == dwarf::DW_TAG_subprogram) {
David Blaikie65cc9692013-10-25 18:38:43 +0000454 StringRef Name = getDIEStringAttr(**I, dwarf::DW_AT_name);
455 // ... and has a DW_AT_name attribute
456 if (!Name.empty()) {
457 hashNestedType(**I, Name);
458 continue;
459 }
460 }
David Blaikie2aee7be2013-10-24 18:29:03 +0000461 computeHash(**I);
David Blaikie65cc9692013-10-25 18:38:43 +0000462 }
David Blaikie71a0ad62013-10-16 20:29:06 +0000463
464 // Following the last (or if there are no children), append a zero byte.
David Blaikie920bb2a2013-10-16 20:40:46 +0000465 Hash.update(makeArrayRef((uint8_t)'\0'));
Eric Christopherd29614f2013-08-13 01:21:55 +0000466}
467
Eric Christopher45731982013-08-08 23:45:55 +0000468/// This is based on the type signature computation given in section 7.27 of the
469/// DWARF4 standard. It is the md5 hash of a flattened description of the DIE
Eric Christophercede3db2013-08-12 23:59:24 +0000470/// with the exception that we are hashing only the context and the name of the
471/// type.
David Blaikie2aee7be2013-10-24 18:29:03 +0000472uint64_t DIEHash::computeDIEODRSignature(const DIE &Die) {
Eric Christopher45731982013-08-08 23:45:55 +0000473
474 // Add the contexts to the hash. We won't be computing the ODR hash for
475 // function local types so it's safe to use the generic context hashing
476 // algorithm here.
477 // FIXME: If we figure out how to account for linkage in some way we could
478 // actually do this with a slight modification to the parent hash algorithm.
David Blaikie2aee7be2013-10-24 18:29:03 +0000479 if (const DIE *Parent = Die.getParent())
480 addParentContext(*Parent);
Eric Christopher45731982013-08-08 23:45:55 +0000481
482 // Add the current DIE information.
483
484 // Add the DWARF tag of the DIE.
David Blaikie2aee7be2013-10-24 18:29:03 +0000485 addULEB128(Die.getTag());
Eric Christopher45731982013-08-08 23:45:55 +0000486
487 // Add the name of the type to the hash.
David Blaikie2aee7be2013-10-24 18:29:03 +0000488 addString(getDIEStringAttr(Die, dwarf::DW_AT_name));
Eric Christopher45731982013-08-08 23:45:55 +0000489
490 // Now get the result.
491 MD5::MD5Result Result;
492 Hash.final(Result);
493
494 // ... take the least significant 8 bytes and return those. Our MD5
495 // implementation always returns its results in little endian, swap bytes
496 // appropriately.
497 return *reinterpret_cast<support::ulittle64_t *>(Result + 8);
498}
Eric Christopherd29614f2013-08-13 01:21:55 +0000499
500/// This is based on the type signature computation given in section 7.27 of the
501/// DWARF4 standard. It is an md5 hash of the flattened description of the DIE
502/// with the inclusion of the full CU and all top level CU entities.
Eric Christopher25b7adc2013-09-03 21:57:57 +0000503// TODO: Initialize the type chain at 0 instead of 1 for CU signatures.
David Blaikie2aee7be2013-10-24 18:29:03 +0000504uint64_t DIEHash::computeCUSignature(const DIE &Die) {
David Blaikie980d4992013-10-21 18:59:40 +0000505 Numbering.clear();
David Blaikie2aee7be2013-10-24 18:29:03 +0000506 Numbering[&Die] = 1;
Eric Christopherd29614f2013-08-13 01:21:55 +0000507
508 // Hash the DIE.
509 computeHash(Die);
510
511 // Now return the result.
512 MD5::MD5Result Result;
513 Hash.final(Result);
514
515 // ... take the least significant 8 bytes and return those. Our MD5
516 // implementation always returns its results in little endian, swap bytes
517 // appropriately.
518 return *reinterpret_cast<support::ulittle64_t *>(Result + 8);
519}
Eric Christopher25b7adc2013-09-03 21:57:57 +0000520
521/// This is based on the type signature computation given in section 7.27 of the
522/// DWARF4 standard. It is an md5 hash of the flattened description of the DIE
523/// with the inclusion of additional forms not specifically called out in the
524/// standard.
David Blaikie2aee7be2013-10-24 18:29:03 +0000525uint64_t DIEHash::computeTypeSignature(const DIE &Die) {
David Blaikie980d4992013-10-21 18:59:40 +0000526 Numbering.clear();
David Blaikie2aee7be2013-10-24 18:29:03 +0000527 Numbering[&Die] = 1;
Eric Christopher25b7adc2013-09-03 21:57:57 +0000528
David Blaikie2aee7be2013-10-24 18:29:03 +0000529 if (const DIE *Parent = Die.getParent())
530 addParentContext(*Parent);
David Blaikie8a142aa2013-10-17 00:10:34 +0000531
Eric Christopher25b7adc2013-09-03 21:57:57 +0000532 // Hash the DIE.
533 computeHash(Die);
534
535 // Now return the result.
536 MD5::MD5Result Result;
537 Hash.final(Result);
538
539 // ... take the least significant 8 bytes and return those. Our MD5
540 // implementation always returns its results in little endian, swap bytes
541 // appropriately.
542 return *reinterpret_cast<support::ulittle64_t *>(Result + 8);
543}