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1 /*
2  * Copyright (c) 2022 Huawei Device Co., Ltd.
3  * Licensed under the Apache License, Version 2.0 (the "License");
4  * you may not use this file except in compliance with the License.
5  * You may obtain a copy of the License at
6  *
7  *     http://www.apache.org/licenses/LICENSE-2.0
8  *
9  * Unless required by applicable law or agreed to in writing, software
10  * distributed under the License is distributed on an "AS IS" BASIS,
11  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12  * See the License for the specific language governing permissions and
13  * limitations under the License.
14  */
15 #include <map>
16 
17 #include "ecmascript/stackmap/ark_stackmap_builder.h"
18 #include "ecmascript/stackmap/ark_stackmap_parser.h"
19 #include "ecmascript/stackmap/litecg/litecg_stackmap_type.h"
20 #include "ecmascript/stackmap/llvm/llvm_stackmap_parser.h"
21 
22 namespace panda::ecmascript::kungfu {
WriteBuffer(const uint8_t * src,uint32_t count,bool flag)23 void BinaryBufferWriter::WriteBuffer(const uint8_t *src, uint32_t count, bool flag)
24 {
25     uint8_t *dst = buffer_ + offset_;
26     if (flag) {
27         std::cout << "buffer_:0x" << std::hex << buffer_ << " offset_:0x" << offset_ << std::endl;
28     }
29     if (dst >= buffer_ && dst + count <= buffer_ + length_) {
30         if (memcpy_s(dst, buffer_ + length_ - dst, src, count) != EOK) {
31             LOG_FULL(FATAL) << "memcpy_s failed";
32             return;
33         };
34         offset_ = offset_ + count;
35     }  else {
36         LOG_FULL(FATAL) << "parse buffer error, length is 0 or overflow";
37     }
38 }
39 
Dump(const StackMapDumper & dumpInfo) const40 void ArkStackMapBuilder::Dump(const StackMapDumper& dumpInfo) const
41 {
42     LOG_COMPILER(INFO) << "total callsite num: " << dumpInfo.callsiteNum
43                        << ", total ark stack map num: " << dumpInfo.stackmapNum
44                        << ", total deopt num: " << dumpInfo.deoptNum;
45     double callsiteHeadsSize = static_cast<double>(dumpInfo.callsiteHeadSize);
46     double stackMapsSize = static_cast<double>(dumpInfo.arkStackMapSize);
47     double deoptsSize = static_cast<double>(dumpInfo.deoptSize);
48     LOG_COMPILER(INFO) << "total callsite head size: "
49                        << std::fixed << std::setprecision(DECIMAL_LENS)
50                        << (callsiteHeadsSize / 1_KB) << "KB, total stackmap size: "
51                        << std::fixed << std::setprecision(DECIMAL_LENS)
52                        << (stackMapsSize / 1_KB) << "KB, total deopt size: "
53                        << std::fixed << std::setprecision(DECIMAL_LENS)
54                        << (deoptsSize / 1_KB) << "KB";
55 }
56 
Run(std::unique_ptr<uint8_t[]> stackMapAddr,uintptr_t hostCodeSectionAddr,Triple triple)57 std::pair<std::shared_ptr<uint8_t>, uint32_t> ArkStackMapBuilder::Run(std::unique_ptr<uint8_t []> stackMapAddr,
58     uintptr_t hostCodeSectionAddr, Triple triple)
59 {
60     LLVMStackMapInfo stackMapInfo;
61     LLVMStackMapParser parser(stackMapInfo);
62     auto result = parser.CalculateStackMap(std::move(stackMapAddr), hostCodeSectionAddr, 0);
63     if (!result) {
64         LOG_ECMA(FATAL) << "this branch is unreachable";
65         UNREACHABLE();
66     }
67     std::pair<std::shared_ptr<uint8_t>, uint32_t> info = GenerateArkStackMap(stackMapInfo, triple);
68     return info;
69 }
70 
Collect(std::unique_ptr<uint8_t[]> stackMapAddr,uintptr_t hostCodeSectionAddr,uintptr_t hostCodeSectionOffset,CGStackMapInfo & stackMapInfo)71 void ArkStackMapBuilder::Collect(
72     std::unique_ptr<uint8_t []> stackMapAddr,
73     uintptr_t hostCodeSectionAddr,
74     uintptr_t hostCodeSectionOffset,
75     CGStackMapInfo &stackMapInfo)
76 {
77     LLVMStackMapInfo &llvmStackMapInfo = static_cast<LLVMStackMapInfo&>(stackMapInfo);
78     LLVMStackMapParser parser(llvmStackMapInfo);
79     auto result = parser.CalculateStackMap(std::move(stackMapAddr), hostCodeSectionAddr, hostCodeSectionOffset);
80     if (!result) {
81         LOG_ECMA(FATAL) << "this branch is unreachable";
82         UNREACHABLE();
83     }
84 }
85 
GenerateArkStackMap(CGStackMapInfo & stackMapInfo,Triple triple)86 std::pair<std::shared_ptr<uint8_t>, uint32_t> ArkStackMapBuilder::GenerateArkStackMap(
87     CGStackMapInfo &stackMapInfo, Triple triple)
88 {
89     ARKCallsiteAOTFileInfo AOTFileInfo;
90     GenArkCallsiteAOTFileInfo(stackMapInfo, AOTFileInfo, triple);
91     uint32_t secSize = AOTFileInfo.secHead.secSize;
92     uint8_t *p = new(std::nothrow) uint8_t[secSize];
93     if (p == nullptr) {
94         LOG_FULL(FATAL) << "new secSize:0x" << std::hex << secSize << " failed";
95     }
96     std::shared_ptr<uint8_t> ptr(p, [](uint8_t *p) { delete []p;});
97     SaveArkCallsiteAOTFileInfo(ptr.get(), secSize, AOTFileInfo, triple);
98     if (traceStackMap_) {
99         Dump(dumper_);
100     }
101     return std::make_pair(ptr, secSize);
102 }
103 
SaveArkStackMap(const ARKCallsiteAOTFileInfo & info,BinaryBufferWriter & writer,Triple triple)104 void ArkStackMapBuilder::SaveArkStackMap(const ARKCallsiteAOTFileInfo& info, BinaryBufferWriter& writer, Triple triple)
105 {
106     size_t n = info.callsites.size();
107     for (size_t i = 0; i < n; i++) {
108         auto &callSite = info.callsites.at(i);
109         LLVMStackMapType::CallSiteInfo stackmaps = callSite.stackmaps;
110         size_t m = stackmaps.size();
111         for (size_t j = 0; j < m; j++) {
112             auto &stackmap = stackmaps.at(j);
113             LLVMStackMapType::DwarfRegType reg = stackmap.first;
114             LLVMStackMapType::OffsetType offset = stackmap.second;
115             if (j == 0) {
116                 ASSERT(callSite.head.stackmapOffsetInSMSec == writer.GetOffset());
117             }
118             std::vector<uint8_t> regOffset;
119             size_t regOffsetSize = 0;
120             LLVMStackMapType::EncodeRegAndOffset(regOffset, regOffsetSize, reg, offset, triple);
121             writer.WriteBuffer(reinterpret_cast<const uint8_t *>(regOffset.data()), regOffset.size());
122             dumper_.arkStackMapSize += regOffsetSize;
123             if (j == m - 1) {
124                 ASSERT((callSite.head.stackmapOffsetInSMSec + callSite.CalStackMapSize(triple)) == writer.GetOffset());
125             }
126         }
127     }
128     writer.AlignOffset();
129 }
130 
SaveArkDeopt(const ARKCallsiteAOTFileInfo & info,BinaryBufferWriter & writer,Triple triple)131 void ArkStackMapBuilder::SaveArkDeopt(const ARKCallsiteAOTFileInfo& info, BinaryBufferWriter& writer, Triple triple)
132 {
133     for (auto &it: info.callsites) {
134         auto& callsite2Deopt = it.callsite2Deopt;
135         size_t m = callsite2Deopt.size();
136         for (size_t j = 0; j < m; j++) {
137             auto &deopt = callsite2Deopt.at(j);
138             if (j == 0) {
139                 ASSERT(it.head.deoptOffset == writer.GetOffset());
140             }
141             std::vector<uint8_t> vregsInfo;
142             size_t vregsInfoSize = 0;
143             LLVMStackMapType::EncodeVRegsInfo(vregsInfo, vregsInfoSize, deopt.id, deopt.kind);
144             writer.WriteBuffer(reinterpret_cast<const uint8_t *>(vregsInfo.data()), vregsInfoSize);
145             dumper_.deoptSize += vregsInfoSize;
146             auto& value = deopt.value;
147             if (std::holds_alternative<LLVMStackMapType::IntType>(value)) {
148                 LLVMStackMapType::IntType v = std::get<LLVMStackMapType::IntType>(value);
149                 std::vector<uint8_t> num;
150                 size_t numSize = 0;
151                 LLVMStackMapType::EncodeData(num, numSize, v);
152                 writer.WriteBuffer(reinterpret_cast<const uint8_t *>(num.data()), numSize);
153                 dumper_.deoptSize += numSize;
154             } else if (std::holds_alternative<LLVMStackMapType::LargeInt>(value)) {
155                 LLVMStackMapType::LargeInt v = std::get<LLVMStackMapType::LargeInt>(value);
156                 std::vector<uint8_t> num;
157                 size_t numSize = 0;
158                 LLVMStackMapType::EncodeData(num, numSize, v);
159                 writer.WriteBuffer(reinterpret_cast<const uint8_t *>(num.data()), numSize);
160                 dumper_.deoptSize += numSize;
161             } else if (std::holds_alternative<LLVMStackMapType::DwarfRegAndOffsetType>(value)) {
162                 LLVMStackMapType::DwarfRegAndOffsetType v = std::get<LLVMStackMapType::DwarfRegAndOffsetType>(value);
163                 std::vector<uint8_t> regOffset;
164                 size_t regOffsetSize = 0;
165                 LLVMStackMapType::EncodeRegAndOffset(regOffset, regOffsetSize, v.first, v.second, triple);
166                 writer.WriteBuffer(reinterpret_cast<const uint8_t *>(regOffset.data()), regOffset.size());
167                 dumper_.arkStackMapSize += regOffsetSize;
168             } else {
169                 LOG_ECMA(FATAL) << "this branch is unreachable";
170                 UNREACHABLE();
171             }
172         }
173     }
174 }
175 
SaveArkCallsiteAOTFileInfo(uint8_t * ptr,uint32_t length,const ARKCallsiteAOTFileInfo & info,Triple triple)176 void ArkStackMapBuilder::SaveArkCallsiteAOTFileInfo(uint8_t *ptr, uint32_t length,
177     const ARKCallsiteAOTFileInfo& info, Triple triple)
178 {
179     BinaryBufferWriter writer(ptr, length);
180     ASSERT(length >= info.secHead.secSize);
181     writer.WriteBuffer(reinterpret_cast<const uint8_t *>(&(info.secHead)), sizeof(ArkStackMapHeader));
182     dumper_.callsiteHeadSize += sizeof(ArkStackMapHeader);
183     for (auto &it: info.callsites) {
184         writer.WriteBuffer(reinterpret_cast<const uint8_t *>(&(it.head)), sizeof(CallsiteHeader));
185         dumper_.callsiteHeadSize += sizeof(CallsiteHeader);
186     }
187     SaveArkStackMap(info, writer, triple);
188     SaveArkDeopt(info, writer, triple);
189 #ifndef NDEBUG
190     ArkStackMapParser parser;
191     parser.ParseArkStackMapAndDeopt(ptr, length);
192 #endif
193 }
194 
195 template <class Vec>
SortCallSite(const std::vector<std::unordered_map<uintptr_t,Vec>> & infos,std::vector<std::pair<uintptr_t,Vec>> & result)196 void ArkStackMapBuilder::SortCallSite(
197     const std::vector<std::unordered_map<uintptr_t, Vec>> &infos,
198     std::vector<std::pair<uintptr_t, Vec>>& result)
199 {
200     for (auto &info: infos) {
201         for (auto &it: info) {
202             result.emplace_back(it);
203         }
204     }
205     std::sort(result.begin(), result.end(),
206         [](const std::pair<uintptr_t, Vec> &x, const std::pair<uintptr_t, Vec> &y) {
207             return x.first < y.first;
208         });
209 }
210 
CalcCallsitePc(std::vector<std::pair<uintptr_t,LLVMStackMapType::DeoptInfoType>> & pc2Deopt,std::vector<std::pair<uintptr_t,LLVMStackMapType::CallSiteInfo>> & pc2StackMap,std::vector<intptr_t> & callsitePcs)211 void ArkStackMapBuilder::CalcCallsitePc(std::vector<std::pair<uintptr_t, LLVMStackMapType::DeoptInfoType>> &pc2Deopt,
212     std::vector<std::pair<uintptr_t, LLVMStackMapType::CallSiteInfo>> &pc2StackMap, std::vector<intptr_t> &callsitePcs)
213 {
214     std::set<uintptr_t> pcSet;
215     for (auto &it: pc2Deopt) {
216         pcSet.insert(it.first);
217     }
218     for (auto &it: pc2StackMap) {
219         pcSet.insert(it.first);
220     }
221     callsitePcs.assign(pcSet.begin(), pcSet.end());
222 }
223 
FindLoc(std::vector<intptr_t> & CallsitePcs,intptr_t pc)224 int ArkStackMapBuilder::FindLoc(std::vector<intptr_t> &CallsitePcs, intptr_t pc)
225 {
226     for (size_t i = 0; i < CallsitePcs.size(); i++) {
227         if (CallsitePcs[i] == pc) {
228             return i;
229         }
230     }
231     return -1;
232 }
233 
GenARKDeopt(const LLVMStackMapType::DeoptInfoType & deopt,std::pair<uint32_t,std::vector<ARKDeopt>> & sizeAndArkDeopt,Triple triple)234 void ArkStackMapBuilder::GenARKDeopt(const LLVMStackMapType::DeoptInfoType& deopt, std::pair<uint32_t,
235                                      std::vector<ARKDeopt>> &sizeAndArkDeopt, Triple triple)
236 {
237     ASSERT(deopt.size() % DEOPT_ENTRY_SIZE == 0); // 2:<id, value>
238     uint32_t total = 0;
239     ARKDeopt v;
240     for (size_t i = 0; i < deopt.size(); i += 2) { // 2:<id, value>
241         ASSERT(std::holds_alternative<LLVMStackMapType::IntType>(deopt[i]));
242         LLVMStackMapType::VRegId id = static_cast<LLVMStackMapType::VRegId>(
243             std::get<LLVMStackMapType::IntType>(deopt[i]));
244         v.id = id;
245         auto value = deopt[i + 1];
246         if (std::holds_alternative<LLVMStackMapType::IntType>(value)) {
247             v.kind = LocationTy::Kind::CONSTANT;
248             v.value = std::get<LLVMStackMapType::IntType>(value);
249             std::vector<uint8_t> vregsInfo;
250             size_t vregsInfoSize = 0;
251             LLVMStackMapType::EncodeVRegsInfo(vregsInfo, vregsInfoSize, v.id, v.kind);
252             size_t valueSize = panda::leb128::SignedEncodingSize(std::get<LLVMStackMapType::IntType>(value));
253             total += (vregsInfoSize + valueSize);
254         } else if (std::holds_alternative<LLVMStackMapType::LargeInt>(value)) {
255             v.kind = LocationTy::Kind::CONSTANTNDEX;
256             v.value = std::get<LLVMStackMapType::LargeInt>(value);
257             std::vector<uint8_t> vregsInfo;
258             size_t vregsInfoSize = 0;
259             LLVMStackMapType::EncodeVRegsInfo(vregsInfo, vregsInfoSize, v.id, v.kind);
260             size_t valueSize = panda::leb128::SignedEncodingSize(std::get<LLVMStackMapType::LargeInt>(value));
261             total += (vregsInfoSize + valueSize);
262         } else if (std::holds_alternative<LLVMStackMapType::DwarfRegAndOffsetType>(value)) {
263             v.kind = LocationTy::Kind::INDIRECT;
264             v.value = std::get<LLVMStackMapType::DwarfRegAndOffsetType>(value);
265             std::vector<uint8_t> vregsInfo;
266             size_t vregsInfoSize = 0;
267             LLVMStackMapType::EncodeVRegsInfo(vregsInfo, vregsInfoSize, v.id, v.kind);
268             LLVMStackMapType::DwarfRegType reg = std::get<LLVMStackMapType::DwarfRegAndOffsetType>(value).first;
269             LLVMStackMapType::OffsetType offset = std::get<LLVMStackMapType::DwarfRegAndOffsetType>(value).second;
270             std::vector<uint8_t> regOffset;
271             size_t regOffsetSize = 0;
272             LLVMStackMapType::EncodeRegAndOffset(regOffset, regOffsetSize, reg, offset, triple);
273             total += (vregsInfoSize + regOffsetSize);
274         } else {
275             LOG_ECMA(FATAL) << "this branch is unreachable";
276             UNREACHABLE();
277         }
278         sizeAndArkDeopt.second.emplace_back(v);
279     }
280     std::sort(sizeAndArkDeopt.second.begin(), sizeAndArkDeopt.second.end(),
281         [](const ARKDeopt &a, const ARKDeopt &b) {
282             return a.id < b.id;
283         });
284     sizeAndArkDeopt.first = total;
285 }
286 
GenArkCallsiteAOTFileInfo(const CGStackMapInfo & stackMapInfo,ARKCallsiteAOTFileInfo & result,Triple triple)287 void ArkStackMapBuilder::GenArkCallsiteAOTFileInfo(const CGStackMapInfo &stackMapInfo,
288                                                    ARKCallsiteAOTFileInfo &result, Triple triple)
289 {
290     std::vector<std::pair<uintptr_t, LLVMStackMapType::CallSiteInfo>> pc2StackMaps;
291     std::vector<std::pair<uintptr_t, LLVMStackMapType::DeoptInfoType>> pc2Deopts;
292     if (stackMapInfo.GetStackMapKind() == CGStackMapInfo::kLiteCGStackMapInfo) {
293         std::vector<LLVMStackMapType::Pc2CallSiteInfo> pc2StackMapsVec;
294         std::vector<LLVMStackMapType::Pc2Deopt> pc2DeoptInfoVec;
295         const auto &liteCGStackMapInfo = static_cast<const LiteCGStackMapInfo&>(stackMapInfo);
296         liteCGStackMapInfo.ConvertToLLVMStackMapInfo(pc2StackMapsVec, pc2DeoptInfoVec, triple);
297         SortCallSite(pc2StackMapsVec, pc2StackMaps);
298         SortCallSite(pc2DeoptInfoVec, pc2Deopts);
299     } else {
300         const auto &llvmStackMapInfo = static_cast<const LLVMStackMapInfo&>(stackMapInfo);
301         SortCallSite(llvmStackMapInfo.GetCallSiteInfoVec(), pc2StackMaps);
302         SortCallSite(llvmStackMapInfo.GetDeoptInfoVec(), pc2Deopts);
303     }
304     ARKCallsite callsite;
305     uint32_t secSize = 0;
306 
307     std::vector<intptr_t> CallsitePcs;
308 
309     CalcCallsitePc(pc2Deopts, pc2StackMaps, CallsitePcs);
310     uint32_t callsiteNum = CallsitePcs.size();
311     dumper_.callsiteNum = callsiteNum;
312     result.callsites.resize(callsiteNum);
313     uint32_t stackmapOffset = sizeof(ArkStackMapHeader) + sizeof(CallsiteHeader) * callsiteNum;
314     for (auto &x: pc2StackMaps) {
315         LLVMStackMapType::CallSiteInfo i = x.second;
316         callsite.head.calliteOffsetInTxtSec = x.first;
317         ASSERT(std::numeric_limits<uint16_t>::min() <= i.size() && i.size() <= std::numeric_limits<uint16_t>::max());
318         callsite.head.stackmapNum = i.size();
319         callsite.head.stackmapOffsetInSMSec = stackmapOffset;
320         callsite.head.deoptOffset = 0;
321         callsite.head.deoptNum = 0;
322         callsite.stackmaps = i;
323         stackmapOffset += callsite.CalStackMapSize(triple);
324         int loc = FindLoc(CallsitePcs, x.first);
325         ASSERT(loc >= 0 && loc < static_cast<int>(callsiteNum));
326         result.callsites[static_cast<uint32_t>(loc)] = callsite;
327         dumper_.stackmapNum += i.size();
328     }
329     stackmapOffset = AlignUp(stackmapOffset, LLVMStackMapType::STACKMAP_ALIGN_BYTES);
330     secSize = stackmapOffset;
331     for (auto &x: pc2Deopts) {
332         int loc = FindLoc(CallsitePcs, x.first);
333         ASSERT(loc >= 0 && loc < static_cast<int>(callsiteNum));
334         LLVMStackMapType::DeoptInfoType deopt = x.second;
335         result.callsites[static_cast<uint32_t>(loc)].head.calliteOffsetInTxtSec = x.first;
336         ASSERT(std::numeric_limits<uint16_t>::min() <= deopt.size()
337             && deopt.size() <= std::numeric_limits<uint16_t>::max());
338         result.callsites[static_cast<uint32_t>(loc)].head.deoptNum = deopt.size();
339         result.callsites[static_cast<uint32_t>(loc)].head.deoptOffset = secSize;
340         std::pair<uint32_t, std::vector<ARKDeopt>> sizeAndArkDeopt;
341         GenARKDeopt(deopt, sizeAndArkDeopt, triple);
342         secSize += sizeAndArkDeopt.first;
343         result.callsites[static_cast<uint32_t>(loc)].callsite2Deopt = sizeAndArkDeopt.second;
344         dumper_.deoptNum += deopt.size();
345     }
346     result.secHead.callsiteNum = callsiteNum;
347     result.secHead.secSize = secSize;
348 }
349 } // namespace panda::ecmascript::kungfu
350