1 //===-- MessageObjects.cpp ------------------------------------------------===//
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 #include "MessageObjects.h"
10 #include "lldb/Utility/Args.h"
11 #include "lldb/Utility/StringExtractor.h"
12 #include "llvm/ADT/StringExtras.h"
13 #include "gtest/gtest.h"
14 
15 using namespace lldb_private;
16 using namespace lldb;
17 using namespace llvm;
18 namespace llgs_tests {
19 
create(StringRef response)20 Expected<ProcessInfo> ProcessInfo::create(StringRef response) {
21   ProcessInfo process_info;
22   auto elements_or_error = SplitUniquePairList("ProcessInfo", response);
23   if (!elements_or_error)
24     return elements_or_error.takeError();
25 
26   auto &elements = *elements_or_error;
27   if (elements["pid"].getAsInteger(16, process_info.m_pid))
28     return make_parsing_error("ProcessInfo: pid");
29   if (elements["parent-pid"].getAsInteger(16, process_info.m_parent_pid))
30     return make_parsing_error("ProcessInfo: parent-pid");
31   if (elements["real-uid"].getAsInteger(16, process_info.m_real_uid))
32     return make_parsing_error("ProcessInfo: real-uid");
33   if (elements["real-gid"].getAsInteger(16, process_info.m_real_gid))
34     return make_parsing_error("ProcessInfo: real-uid");
35   if (elements["effective-uid"].getAsInteger(16, process_info.m_effective_uid))
36     return make_parsing_error("ProcessInfo: effective-uid");
37   if (elements["effective-gid"].getAsInteger(16, process_info.m_effective_gid))
38     return make_parsing_error("ProcessInfo: effective-gid");
39   if (elements["ptrsize"].getAsInteger(10, process_info.m_ptrsize))
40     return make_parsing_error("ProcessInfo: ptrsize");
41 
42   process_info.m_triple = fromHex(elements["triple"]);
43   StringRef endian_str = elements["endian"];
44   if (endian_str == "little")
45     process_info.m_endian = support::little;
46   else if (endian_str == "big")
47     process_info.m_endian = support::big;
48   else
49     return make_parsing_error("ProcessInfo: endian");
50 
51   return process_info;
52 }
53 
GetPid() const54 lldb::pid_t ProcessInfo::GetPid() const { return m_pid; }
55 
GetEndian() const56 support::endianness ProcessInfo::GetEndian() const { return m_endian; }
57 
58 //====== ThreadInfo ============================================================
ThreadInfo(StringRef name,StringRef reason,RegisterMap registers,unsigned int)59 ThreadInfo::ThreadInfo(StringRef name, StringRef reason, RegisterMap registers,
60                        unsigned int)
61     : m_name(name.str()), m_reason(reason.str()),
62       m_registers(std::move(registers)) {}
63 
ReadRegister(unsigned int Id) const64 const RegisterValue *ThreadInfo::ReadRegister(unsigned int Id) const {
65   auto Iter = m_registers.find(Id);
66   return Iter == m_registers.end() ? nullptr : &Iter->getSecond();
67 }
68 
69 //====== JThreadsInfo ==========================================================
70 
71 Expected<RegisterMap>
parseRegisters(const StructuredData::Dictionary & Dict,ArrayRef<RegisterInfo> RegInfos)72 JThreadsInfo::parseRegisters(const StructuredData::Dictionary &Dict,
73                              ArrayRef<RegisterInfo> RegInfos) {
74   RegisterMap Result;
75 
76   auto KeysObj = Dict.GetKeys();
77   auto Keys = KeysObj->GetAsArray();
78   for (size_t i = 0; i < Keys->GetSize(); i++) {
79     StringRef KeyStr, ValueStr;
80     Keys->GetItemAtIndexAsString(i, KeyStr);
81     Dict.GetValueForKeyAsString(KeyStr, ValueStr);
82     unsigned int Register;
83     if (!llvm::to_integer(KeyStr, Register, 10))
84       return make_parsing_error("JThreadsInfo: register key[{0}]", i);
85 
86     auto RegValOr =
87         parseRegisterValue(RegInfos[Register], ValueStr, support::big);
88     if (!RegValOr)
89       return RegValOr.takeError();
90     Result[Register] = std::move(*RegValOr);
91   }
92   return std::move(Result);
93 }
94 
create(StringRef Response,ArrayRef<RegisterInfo> RegInfos)95 Expected<JThreadsInfo> JThreadsInfo::create(StringRef Response,
96                                             ArrayRef<RegisterInfo> RegInfos) {
97   JThreadsInfo jthreads_info;
98 
99   StructuredData::ObjectSP json =
100       StructuredData::ParseJSON(std::string(Response));
101   StructuredData::Array *array = json->GetAsArray();
102   if (!array)
103     return make_parsing_error("JThreadsInfo: JSON array");
104 
105   for (size_t i = 0; i < array->GetSize(); i++) {
106     StructuredData::Dictionary *thread_info;
107     array->GetItemAtIndexAsDictionary(i, thread_info);
108     if (!thread_info)
109       return make_parsing_error("JThreadsInfo: JSON obj at {0}", i);
110 
111     StringRef name, reason;
112     thread_info->GetValueForKeyAsString("name", name);
113     thread_info->GetValueForKeyAsString("reason", reason);
114     uint64_t signal;
115     thread_info->GetValueForKeyAsInteger("signal", signal);
116     uint64_t tid;
117     thread_info->GetValueForKeyAsInteger("tid", tid);
118 
119     StructuredData::Dictionary *register_dict;
120     thread_info->GetValueForKeyAsDictionary("registers", register_dict);
121     if (!register_dict)
122       return make_parsing_error("JThreadsInfo: registers JSON obj");
123 
124     auto RegsOr = parseRegisters(*register_dict, RegInfos);
125     if (!RegsOr)
126       return RegsOr.takeError();
127     jthreads_info.m_thread_infos[tid] =
128         ThreadInfo(name, reason, std::move(*RegsOr), signal);
129   }
130 
131   return jthreads_info;
132 }
133 
GetThreadInfos() const134 const ThreadInfoMap &JThreadsInfo::GetThreadInfos() const {
135   return m_thread_infos;
136 }
137 
create(StringRef Response)138 Expected<RegisterInfo> RegisterInfoParser::create(StringRef Response) {
139   auto ElementsOr = SplitUniquePairList("RegisterInfoParser", Response);
140   if (!ElementsOr)
141     return ElementsOr.takeError();
142   auto &Elements = *ElementsOr;
143 
144   RegisterInfo Info = {
145       nullptr,       // Name
146       nullptr,       // Alt name
147       0,             // byte size
148       0,             // offset
149       eEncodingUint, // encoding
150       eFormatHex,    // format
151       {
152           LLDB_INVALID_REGNUM, // eh_frame reg num
153           LLDB_INVALID_REGNUM, // DWARF reg num
154           LLDB_INVALID_REGNUM, // generic reg num
155           LLDB_INVALID_REGNUM, // process plugin reg num
156           LLDB_INVALID_REGNUM  // native register number
157       },
158       nullptr,
159       nullptr,
160   };
161   Info.name = ConstString(Elements["name"]).GetCString();
162   if (!Info.name)
163     return make_parsing_error("qRegisterInfo: name");
164 
165   Info.alt_name = ConstString(Elements["alt-name"]).GetCString();
166 
167   if (!to_integer(Elements["bitsize"], Info.byte_size, 10))
168     return make_parsing_error("qRegisterInfo: bit-size");
169   Info.byte_size /= CHAR_BIT;
170 
171   if (!to_integer(Elements["offset"], Info.byte_offset, 10))
172     Info.byte_offset = LLDB_INVALID_INDEX32;
173 
174   Info.encoding = Args::StringToEncoding(Elements["encoding"]);
175   if (Info.encoding == eEncodingInvalid)
176     return make_parsing_error("qRegisterInfo: encoding");
177 
178   Info.format = StringSwitch<Format>(Elements["format"])
179                     .Case("binary", eFormatBinary)
180                     .Case("decimal", eFormatDecimal)
181                     .Case("hex", eFormatHex)
182                     .Case("float", eFormatFloat)
183                     .Case("vector-sint8", eFormatVectorOfSInt8)
184                     .Case("vector-uint8", eFormatVectorOfUInt8)
185                     .Case("vector-sint16", eFormatVectorOfSInt16)
186                     .Case("vector-uint16", eFormatVectorOfUInt16)
187                     .Case("vector-sint32", eFormatVectorOfSInt32)
188                     .Case("vector-uint32", eFormatVectorOfUInt32)
189                     .Case("vector-float32", eFormatVectorOfFloat32)
190                     .Case("vector-uint64", eFormatVectorOfUInt64)
191                     .Case("vector-uint128", eFormatVectorOfUInt128)
192                     .Default(eFormatInvalid);
193   if (Info.format == eFormatInvalid)
194     return make_parsing_error("qRegisterInfo: format");
195 
196   Info.kinds[eRegisterKindGeneric] =
197       Args::StringToGenericRegister(Elements["generic"]);
198 
199   return std::move(Info);
200 }
201 
parseRegisterValue(const RegisterInfo & Info,StringRef HexValue,llvm::support::endianness Endian,bool ZeroPad)202 Expected<RegisterValue> parseRegisterValue(const RegisterInfo &Info,
203                                            StringRef HexValue,
204                                            llvm::support::endianness Endian,
205                                            bool ZeroPad) {
206   SmallString<128> Storage;
207   if (ZeroPad && HexValue.size() < Info.byte_size * 2) {
208     Storage.insert(Storage.begin(), Info.byte_size * 2 - HexValue.size(), '0');
209     Storage += HexValue;
210     HexValue = Storage;
211   }
212 
213   SmallVector<uint8_t, 64> Bytes(HexValue.size() / 2);
214   StringExtractor(HexValue).GetHexBytes(Bytes, '\xcc');
215   RegisterValue Value;
216   Status ST;
217   Value.SetFromMemoryData(
218       &Info, Bytes.data(), Bytes.size(),
219       Endian == support::little ? eByteOrderLittle : eByteOrderBig, ST);
220   if (ST.Fail())
221     return ST.ToError();
222   return Value;
223 }
224 
225 //====== StopReply =============================================================
226 Expected<std::unique_ptr<StopReply>>
create(StringRef Response,llvm::support::endianness Endian,ArrayRef<RegisterInfo> RegInfos)227 StopReply::create(StringRef Response, llvm::support::endianness Endian,
228                   ArrayRef<RegisterInfo> RegInfos) {
229   if (Response.size() < 3)
230     return make_parsing_error("StopReply: Invalid packet");
231   if (Response.consume_front("T"))
232     return StopReplyStop::create(Response, Endian, RegInfos);
233   if (Response.consume_front("W"))
234     return StopReplyExit::create(Response);
235   return make_parsing_error("StopReply: Invalid packet");
236 }
237 
parseRegisters(const StringMap<SmallVector<StringRef,2>> & Elements,support::endianness Endian,ArrayRef<lldb_private::RegisterInfo> RegInfos)238 Expected<RegisterMap> StopReplyStop::parseRegisters(
239     const StringMap<SmallVector<StringRef, 2>> &Elements,
240     support::endianness Endian, ArrayRef<lldb_private::RegisterInfo> RegInfos) {
241 
242   RegisterMap Result;
243   for (const auto &E : Elements) {
244     StringRef Key = E.getKey();
245     const auto &Val = E.getValue();
246     if (Key.size() != 2)
247       continue;
248 
249     unsigned int Reg;
250     if (!to_integer(Key, Reg, 16))
251       continue;
252 
253     if (Val.size() != 1)
254       return make_parsing_error(
255           "StopReplyStop: multiple entries for register field [{0:x}]", Reg);
256 
257     auto RegValOr = parseRegisterValue(RegInfos[Reg], Val[0], Endian);
258     if (!RegValOr)
259       return RegValOr.takeError();
260     Result[Reg] = std::move(*RegValOr);
261   }
262   return std::move(Result);
263 }
264 
265 Expected<std::unique_ptr<StopReplyStop>>
create(StringRef Response,support::endianness Endian,ArrayRef<RegisterInfo> RegInfos)266 StopReplyStop::create(StringRef Response, support::endianness Endian,
267                       ArrayRef<RegisterInfo> RegInfos) {
268   unsigned int Signal;
269   StringRef SignalStr = Response.take_front(2);
270   Response = Response.drop_front(2);
271   if (!to_integer(SignalStr, Signal, 16))
272     return make_parsing_error("StopReply: stop signal");
273 
274   auto Elements = SplitPairList(Response);
275   for (StringRef Field :
276        {"name", "reason", "thread", "threads", "thread-pcs"}) {
277     // This will insert an empty field if there is none. In the future, we
278     // should probably differentiate between these fields not being present and
279     // them being empty, but right now no tests depends on this.
280     if (Elements.insert({Field, {""}}).first->second.size() != 1)
281       return make_parsing_error(
282           "StopReply: got multiple responses for the {0} field", Field);
283   }
284   StringRef Name = Elements["name"][0];
285   StringRef Reason = Elements["reason"][0];
286 
287   lldb::tid_t Thread;
288   if (!to_integer(Elements["thread"][0], Thread, 16))
289     return make_parsing_error("StopReply: thread");
290 
291   SmallVector<StringRef, 20> Threads;
292   SmallVector<StringRef, 20> Pcs;
293   Elements["threads"][0].split(Threads, ',');
294   Elements["thread-pcs"][0].split(Pcs, ',');
295   if (Threads.size() != Pcs.size())
296     return make_parsing_error("StopReply: thread/PC count mismatch");
297 
298   RegisterMap ThreadPcs;
299   const RegisterInfo *PcInfo = find_if(RegInfos, [](const RegisterInfo &Info) {
300     return Info.kinds[eRegisterKindGeneric] == LLDB_REGNUM_GENERIC_PC;
301   });
302   assert(PcInfo);
303 
304   for (auto ThreadPc : zip(Threads, Pcs)) {
305     lldb::tid_t Id;
306     if (!to_integer(std::get<0>(ThreadPc), Id, 16))
307       return make_parsing_error("StopReply: Thread id '{0}'",
308                                 std::get<0>(ThreadPc));
309 
310     auto PcOr = parseRegisterValue(*PcInfo, std::get<1>(ThreadPc), Endian,
311                                    /*ZeroPad*/ true);
312     if (!PcOr)
313       return PcOr.takeError();
314     ThreadPcs[Id] = std::move(*PcOr);
315   }
316 
317   auto RegistersOr = parseRegisters(Elements, Endian, RegInfos);
318   if (!RegistersOr)
319     return RegistersOr.takeError();
320 
321   return std::make_unique<StopReplyStop>(Signal, Thread, Name,
322                                           std::move(ThreadPcs),
323                                           std::move(*RegistersOr), Reason);
324 }
325 
326 Expected<std::unique_ptr<StopReplyExit>>
create(StringRef Response)327 StopReplyExit::create(StringRef Response) {
328   uint8_t Status;
329   if (!to_integer(Response, Status, 16))
330     return make_parsing_error("StopReply: exit status");
331   return std::make_unique<StopReplyExit>(Status);
332 }
333 
334 //====== Globals ===============================================================
SplitUniquePairList(StringRef caller,StringRef str)335 Expected<StringMap<StringRef>> SplitUniquePairList(StringRef caller,
336                                                    StringRef str) {
337   SmallVector<StringRef, 20> elements;
338   str.split(elements, ';');
339 
340   StringMap<StringRef> pairs;
341   for (StringRef s : elements) {
342     std::pair<StringRef, StringRef> pair = s.split(':');
343     if (pairs.count(pair.first))
344       return make_parsing_error("{0}: Duplicate Key: {1}", caller, pair.first);
345 
346     pairs.insert(pair);
347   }
348 
349   return pairs;
350 }
351 
SplitPairList(StringRef str)352 StringMap<SmallVector<StringRef, 2>> SplitPairList(StringRef str) {
353   SmallVector<StringRef, 20> elements;
354   str.split(elements, ';');
355 
356   StringMap<SmallVector<StringRef, 2>> pairs;
357   for (StringRef s : elements) {
358     std::pair<StringRef, StringRef> pair = s.split(':');
359     pairs[pair.first].push_back(pair.second);
360   }
361 
362   return pairs;
363 }
364 } // namespace llgs_tests
365 
operator <<(std::ostream & OS,const RegisterValue & RegVal)366 std::ostream &lldb_private::operator<<(std::ostream &OS,
367                                        const RegisterValue &RegVal) {
368   ArrayRef<uint8_t> Bytes(static_cast<const uint8_t *>(RegVal.GetBytes()),
369                           RegVal.GetByteSize());
370   return OS << formatv("RegisterValue[{0}]: {1:@[x-2]}", RegVal.GetByteSize(),
371                        make_range(Bytes.begin(), Bytes.end()))
372                    .str();
373 }
374