1cfca06d7SDimitry Andric //===-- DynamicRegisterInfo.cpp -------------------------------------------===//
2f034231aSEd Maste //
35f29bb8aSDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
45f29bb8aSDimitry Andric // See https://llvm.org/LICENSE.txt for license information.
55f29bb8aSDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6f034231aSEd Maste //
7f034231aSEd Maste //===----------------------------------------------------------------------===//
8f034231aSEd Maste
9c0981da4SDimitry Andric #include "lldb/Target/DynamicRegisterInfo.h"
10f21a844fSEd Maste #include "lldb/DataFormatters/FormatManager.h"
11b1c73532SDimitry Andric #include "lldb/Host/StreamFile.h"
12f73363f1SDimitry Andric #include "lldb/Interpreter/OptionArgParser.h"
13ef5d0b5eSDimitry Andric #include "lldb/Utility/ArchSpec.h"
14145449b1SDimitry Andric #include "lldb/Utility/LLDBLog.h"
15c0981da4SDimitry Andric #include "lldb/Utility/Log.h"
1674a628f7SDimitry Andric #include "lldb/Utility/RegularExpression.h"
173b6b9a02SDimitry Andric #include "lldb/Utility/StringExtractor.h"
181b306c26SDimitry Andric #include "lldb/Utility/StructuredData.h"
19f034231aSEd Maste
20f034231aSEd Maste using namespace lldb;
21f034231aSEd Maste using namespace lldb_private;
22f034231aSEd Maste
237fa27ce4SDimitry Andric std::unique_ptr<DynamicRegisterInfo>
Create(const StructuredData::Dictionary & dict,const ArchSpec & arch)247fa27ce4SDimitry Andric DynamicRegisterInfo::Create(const StructuredData::Dictionary &dict,
257fa27ce4SDimitry Andric const ArchSpec &arch) {
267fa27ce4SDimitry Andric auto dyn_reg_info = std::make_unique<DynamicRegisterInfo>();
277fa27ce4SDimitry Andric if (!dyn_reg_info)
287fa27ce4SDimitry Andric return nullptr;
297fa27ce4SDimitry Andric
307fa27ce4SDimitry Andric if (dyn_reg_info->SetRegisterInfo(dict, arch) == 0)
317fa27ce4SDimitry Andric return nullptr;
327fa27ce4SDimitry Andric
337fa27ce4SDimitry Andric return dyn_reg_info;
34f034231aSEd Maste }
35f034231aSEd Maste
DynamicRegisterInfo(DynamicRegisterInfo && info)36f73363f1SDimitry Andric DynamicRegisterInfo::DynamicRegisterInfo(DynamicRegisterInfo &&info) {
37f73363f1SDimitry Andric MoveFrom(std::move(info));
38f73363f1SDimitry Andric }
39f73363f1SDimitry Andric
40f73363f1SDimitry Andric DynamicRegisterInfo &
operator =(DynamicRegisterInfo && info)41f73363f1SDimitry Andric DynamicRegisterInfo::operator=(DynamicRegisterInfo &&info) {
42f73363f1SDimitry Andric MoveFrom(std::move(info));
43f73363f1SDimitry Andric return *this;
44f73363f1SDimitry Andric }
45f73363f1SDimitry Andric
MoveFrom(DynamicRegisterInfo && info)46f73363f1SDimitry Andric void DynamicRegisterInfo::MoveFrom(DynamicRegisterInfo &&info) {
47f73363f1SDimitry Andric m_regs = std::move(info.m_regs);
48f73363f1SDimitry Andric m_sets = std::move(info.m_sets);
49f73363f1SDimitry Andric m_set_reg_nums = std::move(info.m_set_reg_nums);
50f73363f1SDimitry Andric m_set_names = std::move(info.m_set_names);
51f73363f1SDimitry Andric m_value_regs_map = std::move(info.m_value_regs_map);
52f73363f1SDimitry Andric m_invalidate_regs_map = std::move(info.m_invalidate_regs_map);
53f73363f1SDimitry Andric
54f73363f1SDimitry Andric m_reg_data_byte_size = info.m_reg_data_byte_size;
55f73363f1SDimitry Andric m_finalized = info.m_finalized;
56f73363f1SDimitry Andric
57f73363f1SDimitry Andric if (m_finalized) {
58f73363f1SDimitry Andric const size_t num_sets = m_sets.size();
59f73363f1SDimitry Andric for (size_t set = 0; set < num_sets; ++set)
60f73363f1SDimitry Andric m_sets[set].registers = m_set_reg_nums[set].data();
61f73363f1SDimitry Andric }
62f73363f1SDimitry Andric
63f73363f1SDimitry Andric info.Clear();
64f73363f1SDimitry Andric }
65f034231aSEd Maste
ByteOffsetFromSlice(uint32_t index,llvm::StringRef slice_str,lldb::ByteOrder byte_order)66c0981da4SDimitry Andric llvm::Expected<uint32_t> DynamicRegisterInfo::ByteOffsetFromSlice(
67c0981da4SDimitry Andric uint32_t index, llvm::StringRef slice_str, lldb::ByteOrder byte_order) {
68c0981da4SDimitry Andric // Slices use the following format:
69c0981da4SDimitry Andric // REGNAME[MSBIT:LSBIT]
70c0981da4SDimitry Andric // REGNAME - name of the register to grab a slice of
71c0981da4SDimitry Andric // MSBIT - the most significant bit at which the current register value
72c0981da4SDimitry Andric // starts at
73c0981da4SDimitry Andric // LSBIT - the least significant bit at which the current register value
74c0981da4SDimitry Andric // ends at
75c0981da4SDimitry Andric static llvm::Regex g_bitfield_regex(
76c0981da4SDimitry Andric "([A-Za-z_][A-Za-z0-9_]*)\\[([0-9]+):([0-9]+)\\]");
77c0981da4SDimitry Andric llvm::SmallVector<llvm::StringRef, 4> matches;
78c0981da4SDimitry Andric if (!g_bitfield_regex.match(slice_str, &matches))
79c0981da4SDimitry Andric return llvm::createStringError(
80c0981da4SDimitry Andric llvm::inconvertibleErrorCode(),
81c0981da4SDimitry Andric "failed to match against register bitfield regex (slice: %s)",
82c0981da4SDimitry Andric slice_str.str().c_str());
83c0981da4SDimitry Andric
84c0981da4SDimitry Andric llvm::StringRef reg_name_str = matches[1];
85c0981da4SDimitry Andric llvm::StringRef msbit_str = matches[2];
86c0981da4SDimitry Andric llvm::StringRef lsbit_str = matches[3];
87c0981da4SDimitry Andric uint32_t msbit;
88c0981da4SDimitry Andric uint32_t lsbit;
89c0981da4SDimitry Andric if (!llvm::to_integer(msbit_str, msbit) ||
90c0981da4SDimitry Andric !llvm::to_integer(lsbit_str, lsbit))
91c0981da4SDimitry Andric return llvm::createStringError(
92c0981da4SDimitry Andric llvm::inconvertibleErrorCode(), "msbit (%s) or lsbit (%s) are invalid",
93c0981da4SDimitry Andric msbit_str.str().c_str(), lsbit_str.str().c_str());
94c0981da4SDimitry Andric
95c0981da4SDimitry Andric if (msbit <= lsbit)
96c0981da4SDimitry Andric return llvm::createStringError(llvm::inconvertibleErrorCode(),
97c0981da4SDimitry Andric "msbit (%u) must be greater than lsbit (%u)",
98c0981da4SDimitry Andric msbit, lsbit);
99c0981da4SDimitry Andric
100c0981da4SDimitry Andric const uint32_t msbyte = msbit / 8;
101c0981da4SDimitry Andric const uint32_t lsbyte = lsbit / 8;
102c0981da4SDimitry Andric
103c0981da4SDimitry Andric const RegisterInfo *containing_reg_info = GetRegisterInfo(reg_name_str);
104c0981da4SDimitry Andric if (!containing_reg_info)
105c0981da4SDimitry Andric return llvm::createStringError(llvm::inconvertibleErrorCode(),
106c0981da4SDimitry Andric "invalid concrete register \"%s\"",
107c0981da4SDimitry Andric reg_name_str.str().c_str());
108c0981da4SDimitry Andric
109c0981da4SDimitry Andric const uint32_t max_bit = containing_reg_info->byte_size * 8;
110c0981da4SDimitry Andric
111c0981da4SDimitry Andric if (msbit > max_bit)
112c0981da4SDimitry Andric return llvm::createStringError(
113c0981da4SDimitry Andric llvm::inconvertibleErrorCode(),
114c0981da4SDimitry Andric "msbit (%u) must be less than the bitsize of the register \"%s\" (%u)",
115c0981da4SDimitry Andric msbit, reg_name_str.str().c_str(), max_bit);
116c0981da4SDimitry Andric if (lsbit > max_bit)
117c0981da4SDimitry Andric return llvm::createStringError(
118c0981da4SDimitry Andric llvm::inconvertibleErrorCode(),
119c0981da4SDimitry Andric "lsbit (%u) must be less than the bitsize of the register \"%s\" (%u)",
120c0981da4SDimitry Andric lsbit, reg_name_str.str().c_str(), max_bit);
121c0981da4SDimitry Andric
122c0981da4SDimitry Andric m_invalidate_regs_map[containing_reg_info->kinds[eRegisterKindLLDB]]
123c0981da4SDimitry Andric .push_back(index);
124c0981da4SDimitry Andric m_value_regs_map[index].push_back(
125c0981da4SDimitry Andric containing_reg_info->kinds[eRegisterKindLLDB]);
126c0981da4SDimitry Andric m_invalidate_regs_map[index].push_back(
127c0981da4SDimitry Andric containing_reg_info->kinds[eRegisterKindLLDB]);
128c0981da4SDimitry Andric
129c0981da4SDimitry Andric if (byte_order == eByteOrderLittle)
130c0981da4SDimitry Andric return containing_reg_info->byte_offset + lsbyte;
131c0981da4SDimitry Andric if (byte_order == eByteOrderBig)
132c0981da4SDimitry Andric return containing_reg_info->byte_offset + msbyte;
133c0981da4SDimitry Andric llvm_unreachable("Invalid byte order");
134c0981da4SDimitry Andric }
135c0981da4SDimitry Andric
ByteOffsetFromComposite(uint32_t index,StructuredData::Array & composite_reg_list,lldb::ByteOrder byte_order)136c0981da4SDimitry Andric llvm::Expected<uint32_t> DynamicRegisterInfo::ByteOffsetFromComposite(
137c0981da4SDimitry Andric uint32_t index, StructuredData::Array &composite_reg_list,
138c0981da4SDimitry Andric lldb::ByteOrder byte_order) {
139c0981da4SDimitry Andric const size_t num_composite_regs = composite_reg_list.GetSize();
140c0981da4SDimitry Andric if (num_composite_regs == 0)
141c0981da4SDimitry Andric return llvm::createStringError(llvm::inconvertibleErrorCode(),
142c0981da4SDimitry Andric "\"composite\" list is empty");
143c0981da4SDimitry Andric
144c0981da4SDimitry Andric uint32_t composite_offset = UINT32_MAX;
145c0981da4SDimitry Andric for (uint32_t composite_idx = 0; composite_idx < num_composite_regs;
146c0981da4SDimitry Andric ++composite_idx) {
147b1c73532SDimitry Andric std::optional<llvm::StringRef> maybe_composite_reg_name =
148b1c73532SDimitry Andric composite_reg_list.GetItemAtIndexAsString(composite_idx);
149b1c73532SDimitry Andric if (!maybe_composite_reg_name)
150c0981da4SDimitry Andric return llvm::createStringError(
151c0981da4SDimitry Andric llvm::inconvertibleErrorCode(),
152c0981da4SDimitry Andric "\"composite\" list value is not a Python string at index %d",
153c0981da4SDimitry Andric composite_idx);
154c0981da4SDimitry Andric
155c0981da4SDimitry Andric const RegisterInfo *composite_reg_info =
156b1c73532SDimitry Andric GetRegisterInfo(*maybe_composite_reg_name);
157c0981da4SDimitry Andric if (!composite_reg_info)
158c0981da4SDimitry Andric return llvm::createStringError(
159c0981da4SDimitry Andric llvm::inconvertibleErrorCode(),
160c0981da4SDimitry Andric "failed to find composite register by name: \"%s\"",
161b1c73532SDimitry Andric maybe_composite_reg_name->str().c_str());
162c0981da4SDimitry Andric
163c0981da4SDimitry Andric composite_offset =
164c0981da4SDimitry Andric std::min(composite_offset, composite_reg_info->byte_offset);
165c0981da4SDimitry Andric m_value_regs_map[index].push_back(
166c0981da4SDimitry Andric composite_reg_info->kinds[eRegisterKindLLDB]);
167c0981da4SDimitry Andric m_invalidate_regs_map[composite_reg_info->kinds[eRegisterKindLLDB]]
168c0981da4SDimitry Andric .push_back(index);
169c0981da4SDimitry Andric m_invalidate_regs_map[index].push_back(
170c0981da4SDimitry Andric composite_reg_info->kinds[eRegisterKindLLDB]);
171c0981da4SDimitry Andric }
172c0981da4SDimitry Andric
173c0981da4SDimitry Andric return composite_offset;
174c0981da4SDimitry Andric }
175c0981da4SDimitry Andric
ByteOffsetFromRegInfoDict(uint32_t index,StructuredData::Dictionary & reg_info_dict,lldb::ByteOrder byte_order)176c0981da4SDimitry Andric llvm::Expected<uint32_t> DynamicRegisterInfo::ByteOffsetFromRegInfoDict(
177c0981da4SDimitry Andric uint32_t index, StructuredData::Dictionary ®_info_dict,
178c0981da4SDimitry Andric lldb::ByteOrder byte_order) {
179c0981da4SDimitry Andric uint32_t byte_offset;
180c0981da4SDimitry Andric if (reg_info_dict.GetValueForKeyAsInteger("offset", byte_offset))
181c0981da4SDimitry Andric return byte_offset;
182c0981da4SDimitry Andric
183c0981da4SDimitry Andric // No offset for this register, see if the register has a value
184c0981da4SDimitry Andric // expression which indicates this register is part of another register.
185c0981da4SDimitry Andric // Value expressions are things like "rax[31:0]" which state that the
186c0981da4SDimitry Andric // current register's value is in a concrete register "rax" in bits 31:0.
187c0981da4SDimitry Andric // If there is a value expression we can calculate the offset
188c0981da4SDimitry Andric llvm::StringRef slice_str;
189c0981da4SDimitry Andric if (reg_info_dict.GetValueForKeyAsString("slice", slice_str, nullptr))
190c0981da4SDimitry Andric return ByteOffsetFromSlice(index, slice_str, byte_order);
191c0981da4SDimitry Andric
192c0981da4SDimitry Andric StructuredData::Array *composite_reg_list;
193c0981da4SDimitry Andric if (reg_info_dict.GetValueForKeyAsArray("composite", composite_reg_list))
194c0981da4SDimitry Andric return ByteOffsetFromComposite(index, *composite_reg_list, byte_order);
195c0981da4SDimitry Andric
196c0981da4SDimitry Andric return llvm::createStringError(llvm::inconvertibleErrorCode(),
197c0981da4SDimitry Andric "insufficient data to calculate byte offset");
198c0981da4SDimitry Andric }
199c0981da4SDimitry Andric
200f034231aSEd Maste size_t
SetRegisterInfo(const StructuredData::Dictionary & dict,const ArchSpec & arch)20114f1b3e8SDimitry Andric DynamicRegisterInfo::SetRegisterInfo(const StructuredData::Dictionary &dict,
20214f1b3e8SDimitry Andric const ArchSpec &arch) {
203145449b1SDimitry Andric Log *log = GetLog(LLDBLog::Object);
204f21a844fSEd Maste assert(!m_finalized);
2055e95aa85SEd Maste StructuredData::Array *sets = nullptr;
20614f1b3e8SDimitry Andric if (dict.GetValueForKeyAsArray("sets", sets)) {
2075e95aa85SEd Maste const uint32_t num_sets = sets->GetSize();
20814f1b3e8SDimitry Andric for (uint32_t i = 0; i < num_sets; ++i) {
209b1c73532SDimitry Andric std::optional<llvm::StringRef> maybe_set_name =
210b1c73532SDimitry Andric sets->GetItemAtIndexAsString(i);
211b1c73532SDimitry Andric if (maybe_set_name && !maybe_set_name->empty()) {
212b1c73532SDimitry Andric m_sets.push_back(
213b1c73532SDimitry Andric {ConstString(*maybe_set_name).AsCString(), nullptr, 0, nullptr});
21414f1b3e8SDimitry Andric } else {
215f034231aSEd Maste Clear();
216205afe67SEd Maste printf("error: register sets must have valid names\n");
217f034231aSEd Maste return 0;
218f034231aSEd Maste }
219f034231aSEd Maste }
220f034231aSEd Maste m_set_reg_nums.resize(m_sets.size());
221f034231aSEd Maste }
222f73363f1SDimitry Andric
2235e95aa85SEd Maste StructuredData::Array *regs = nullptr;
2245e95aa85SEd Maste if (!dict.GetValueForKeyAsArray("registers", regs))
2255e95aa85SEd Maste return 0;
226f21a844fSEd Maste
227c0981da4SDimitry Andric const ByteOrder byte_order = arch.GetByteOrder();
228c0981da4SDimitry Andric
2295e95aa85SEd Maste const uint32_t num_regs = regs->GetSize();
23014f1b3e8SDimitry Andric // typedef std::map<std::string, std::vector<std::string> >
23114f1b3e8SDimitry Andric // InvalidateNameMap;
232f21a844fSEd Maste // InvalidateNameMap invalidate_map;
23314f1b3e8SDimitry Andric for (uint32_t i = 0; i < num_regs; ++i) {
234b1c73532SDimitry Andric std::optional<StructuredData::Dictionary *> maybe_reg_info_dict =
235b1c73532SDimitry Andric regs->GetItemAtIndexAsDictionary(i);
236b1c73532SDimitry Andric if (!maybe_reg_info_dict) {
2375e95aa85SEd Maste Clear();
2385e95aa85SEd Maste printf("error: items in the 'registers' array must be dictionaries\n");
2395e95aa85SEd Maste regs->DumpToStdout();
2405e95aa85SEd Maste return 0;
2415e95aa85SEd Maste }
242b1c73532SDimitry Andric StructuredData::Dictionary *reg_info_dict = *maybe_reg_info_dict;
2435e95aa85SEd Maste
244f73363f1SDimitry Andric // { 'name':'rcx' , 'bitsize' : 64, 'offset' : 16,
245f73363f1SDimitry Andric // 'encoding':'uint' , 'format':'hex' , 'set': 0, 'ehframe' : 2,
2465e95aa85SEd Maste // 'dwarf' : 2, 'generic':'arg4', 'alt-name':'arg4', },
247f034231aSEd Maste RegisterInfo reg_info;
248f21a844fSEd Maste std::vector<uint32_t> value_regs;
249f21a844fSEd Maste std::vector<uint32_t> invalidate_regs;
2500cac4ca3SEd Maste memset(®_info, 0, sizeof(reg_info));
251f034231aSEd Maste
2527fa27ce4SDimitry Andric llvm::StringRef name_val;
2537fa27ce4SDimitry Andric if (!reg_info_dict->GetValueForKeyAsString("name", name_val)) {
254f034231aSEd Maste Clear();
2555e95aa85SEd Maste printf("error: registers must have valid names and offsets\n");
2565e95aa85SEd Maste reg_info_dict->DumpToStdout();
257f034231aSEd Maste return 0;
258f034231aSEd Maste }
2597fa27ce4SDimitry Andric reg_info.name = ConstString(name_val).GetCString();
2607fa27ce4SDimitry Andric
2617fa27ce4SDimitry Andric llvm::StringRef alt_name_val;
2627fa27ce4SDimitry Andric if (reg_info_dict->GetValueForKeyAsString("alt-name", alt_name_val))
2637fa27ce4SDimitry Andric reg_info.alt_name = ConstString(alt_name_val).GetCString();
2647fa27ce4SDimitry Andric else
2657fa27ce4SDimitry Andric reg_info.alt_name = nullptr;
266f034231aSEd Maste
267c0981da4SDimitry Andric llvm::Expected<uint32_t> byte_offset =
268c0981da4SDimitry Andric ByteOffsetFromRegInfoDict(i, *reg_info_dict, byte_order);
269c0981da4SDimitry Andric if (byte_offset)
270c0981da4SDimitry Andric reg_info.byte_offset = byte_offset.get();
271c0981da4SDimitry Andric else {
272c0981da4SDimitry Andric LLDB_LOG_ERROR(log, byte_offset.takeError(),
273c0981da4SDimitry Andric "error while parsing register {1}: {0}", reg_info.name);
274f034231aSEd Maste Clear();
2755e95aa85SEd Maste reg_info_dict->DumpToStdout();
276f034231aSEd Maste return 0;
277f034231aSEd Maste }
2785e95aa85SEd Maste
2797fa27ce4SDimitry Andric uint64_t bitsize = 0;
28014f1b3e8SDimitry Andric if (!reg_info_dict->GetValueForKeyAsInteger("bitsize", bitsize)) {
281f21a844fSEd Maste Clear();
28214f1b3e8SDimitry Andric printf("error: invalid or missing 'bitsize' key/value pair in register "
28314f1b3e8SDimitry Andric "dictionary\n");
2845e95aa85SEd Maste reg_info_dict->DumpToStdout();
285f21a844fSEd Maste return 0;
286f21a844fSEd Maste }
287f21a844fSEd Maste
288f21a844fSEd Maste reg_info.byte_size = bitsize / 8;
289f034231aSEd Maste
290b76161e4SDimitry Andric llvm::StringRef format_str;
29114f1b3e8SDimitry Andric if (reg_info_dict->GetValueForKeyAsString("format", format_str, nullptr)) {
292f73363f1SDimitry Andric if (OptionArgParser::ToFormat(format_str.str().c_str(), reg_info.format,
2935f29bb8aSDimitry Andric nullptr)
29414f1b3e8SDimitry Andric .Fail()) {
295f034231aSEd Maste Clear();
296205afe67SEd Maste printf("error: invalid 'format' value in register dictionary\n");
2975e95aa85SEd Maste reg_info_dict->DumpToStdout();
298f034231aSEd Maste return 0;
299f034231aSEd Maste }
30014f1b3e8SDimitry Andric } else {
30114f1b3e8SDimitry Andric reg_info_dict->GetValueForKeyAsInteger("format", reg_info.format,
30214f1b3e8SDimitry Andric eFormatHex);
303f21a844fSEd Maste }
304f034231aSEd Maste
305b76161e4SDimitry Andric llvm::StringRef encoding_str;
3065e95aa85SEd Maste if (reg_info_dict->GetValueForKeyAsString("encoding", encoding_str))
30714f1b3e8SDimitry Andric reg_info.encoding = Args::StringToEncoding(encoding_str, eEncodingUint);
308f034231aSEd Maste else
30914f1b3e8SDimitry Andric reg_info_dict->GetValueForKeyAsInteger("encoding", reg_info.encoding,
31014f1b3e8SDimitry Andric eEncodingUint);
311f034231aSEd Maste
3125e95aa85SEd Maste size_t set = 0;
3137fa27ce4SDimitry Andric if (!reg_info_dict->GetValueForKeyAsInteger("set", set) ||
31414f1b3e8SDimitry Andric set >= m_sets.size()) {
315f034231aSEd Maste Clear();
31614f1b3e8SDimitry Andric printf("error: invalid 'set' value in register dictionary, valid values "
31714f1b3e8SDimitry Andric "are 0 - %i\n",
31814f1b3e8SDimitry Andric (int)set);
3195e95aa85SEd Maste reg_info_dict->DumpToStdout();
320f034231aSEd Maste return 0;
321f034231aSEd Maste }
322f034231aSEd Maste
323f21a844fSEd Maste // Fill in the register numbers
324f034231aSEd Maste reg_info.kinds[lldb::eRegisterKindLLDB] = i;
325e81d9d49SDimitry Andric reg_info.kinds[lldb::eRegisterKindProcessPlugin] = i;
326e81d9d49SDimitry Andric uint32_t eh_frame_regno = LLDB_INVALID_REGNUM;
32714f1b3e8SDimitry Andric reg_info_dict->GetValueForKeyAsInteger("gcc", eh_frame_regno,
32814f1b3e8SDimitry Andric LLDB_INVALID_REGNUM);
329e81d9d49SDimitry Andric if (eh_frame_regno == LLDB_INVALID_REGNUM)
33014f1b3e8SDimitry Andric reg_info_dict->GetValueForKeyAsInteger("ehframe", eh_frame_regno,
33114f1b3e8SDimitry Andric LLDB_INVALID_REGNUM);
332e81d9d49SDimitry Andric reg_info.kinds[lldb::eRegisterKindEHFrame] = eh_frame_regno;
33314f1b3e8SDimitry Andric reg_info_dict->GetValueForKeyAsInteger(
33414f1b3e8SDimitry Andric "dwarf", reg_info.kinds[lldb::eRegisterKindDWARF], LLDB_INVALID_REGNUM);
335b76161e4SDimitry Andric llvm::StringRef generic_str;
3365e95aa85SEd Maste if (reg_info_dict->GetValueForKeyAsString("generic", generic_str))
33714f1b3e8SDimitry Andric reg_info.kinds[lldb::eRegisterKindGeneric] =
33814f1b3e8SDimitry Andric Args::StringToGenericRegister(generic_str);
339f21a844fSEd Maste else
34014f1b3e8SDimitry Andric reg_info_dict->GetValueForKeyAsInteger(
34114f1b3e8SDimitry Andric "generic", reg_info.kinds[lldb::eRegisterKindGeneric],
34214f1b3e8SDimitry Andric LLDB_INVALID_REGNUM);
343f21a844fSEd Maste
34414f1b3e8SDimitry Andric // Check if this register invalidates any other register values when it is
34514f1b3e8SDimitry Andric // modified
3465e95aa85SEd Maste StructuredData::Array *invalidate_reg_list = nullptr;
34714f1b3e8SDimitry Andric if (reg_info_dict->GetValueForKeyAsArray("invalidate-regs",
34814f1b3e8SDimitry Andric invalidate_reg_list)) {
3495e95aa85SEd Maste const size_t num_regs = invalidate_reg_list->GetSize();
35014f1b3e8SDimitry Andric if (num_regs > 0) {
35114f1b3e8SDimitry Andric for (uint32_t idx = 0; idx < num_regs; ++idx) {
352aca2e42cSDimitry Andric if (auto maybe_invalidate_reg_name =
353aca2e42cSDimitry Andric invalidate_reg_list->GetItemAtIndexAsString(idx)) {
354f73363f1SDimitry Andric const RegisterInfo *invalidate_reg_info =
355b1c73532SDimitry Andric GetRegisterInfo(*maybe_invalidate_reg_name);
35614f1b3e8SDimitry Andric if (invalidate_reg_info) {
35714f1b3e8SDimitry Andric m_invalidate_regs_map[i].push_back(
35814f1b3e8SDimitry Andric invalidate_reg_info->kinds[eRegisterKindLLDB]);
35914f1b3e8SDimitry Andric } else {
36014f1b3e8SDimitry Andric // TODO: print error invalid slice string that doesn't follow the
36114f1b3e8SDimitry Andric // format
36214f1b3e8SDimitry Andric printf("error: failed to find a 'invalidate-regs' register for "
36314f1b3e8SDimitry Andric "\"%s\" while parsing register \"%s\"\n",
364b1c73532SDimitry Andric maybe_invalidate_reg_name->str().c_str(), reg_info.name);
365f21a844fSEd Maste }
366aca2e42cSDimitry Andric } else if (auto maybe_invalidate_reg_num =
367aca2e42cSDimitry Andric invalidate_reg_list->GetItemAtIndexAsInteger<uint64_t>(
368aca2e42cSDimitry Andric idx)) {
369aca2e42cSDimitry Andric if (*maybe_invalidate_reg_num != UINT64_MAX)
370aca2e42cSDimitry Andric m_invalidate_regs_map[i].push_back(*maybe_invalidate_reg_num);
371f21a844fSEd Maste else
37214f1b3e8SDimitry Andric printf("error: 'invalidate-regs' list value wasn't a valid "
37314f1b3e8SDimitry Andric "integer\n");
37414f1b3e8SDimitry Andric } else {
37514f1b3e8SDimitry Andric printf("error: 'invalidate-regs' list value wasn't a python string "
37614f1b3e8SDimitry Andric "or integer\n");
377f21a844fSEd Maste }
378f21a844fSEd Maste }
37914f1b3e8SDimitry Andric } else {
380f21a844fSEd Maste printf("error: 'invalidate-regs' contained an empty list\n");
381f21a844fSEd Maste }
382f21a844fSEd Maste }
383f21a844fSEd Maste
384f21a844fSEd Maste // Calculate the register offset
385f034231aSEd Maste const size_t end_reg_offset = reg_info.byte_offset + reg_info.byte_size;
386f034231aSEd Maste if (m_reg_data_byte_size < end_reg_offset)
387f034231aSEd Maste m_reg_data_byte_size = end_reg_offset;
388f034231aSEd Maste
389f034231aSEd Maste m_regs.push_back(reg_info);
390f034231aSEd Maste m_set_reg_nums[set].push_back(i);
391f034231aSEd Maste }
3925e95aa85SEd Maste Finalize(arch);
393f21a844fSEd Maste return m_regs.size();
394f034231aSEd Maste }
395f034231aSEd Maste
SetRegisterInfo(std::vector<DynamicRegisterInfo::Register> && regs,const ArchSpec & arch)396c0981da4SDimitry Andric size_t DynamicRegisterInfo::SetRegisterInfo(
397c0981da4SDimitry Andric std::vector<DynamicRegisterInfo::Register> &®s,
398c0981da4SDimitry Andric const ArchSpec &arch) {
399f21a844fSEd Maste assert(!m_finalized);
4003b6b9a02SDimitry Andric
401c0981da4SDimitry Andric for (auto it : llvm::enumerate(regs)) {
402c0981da4SDimitry Andric uint32_t local_regnum = it.index();
403c0981da4SDimitry Andric const DynamicRegisterInfo::Register ® = it.value();
404c0981da4SDimitry Andric
405c0981da4SDimitry Andric assert(reg.name);
406c0981da4SDimitry Andric assert(reg.set_name);
407c0981da4SDimitry Andric
408c0981da4SDimitry Andric if (!reg.value_regs.empty())
409c0981da4SDimitry Andric m_value_regs_map[local_regnum] = std::move(reg.value_regs);
410c0981da4SDimitry Andric if (!reg.invalidate_regs.empty())
411c0981da4SDimitry Andric m_invalidate_regs_map[local_regnum] = std::move(reg.invalidate_regs);
412c0981da4SDimitry Andric if (reg.value_reg_offset != 0) {
413c0981da4SDimitry Andric assert(reg.value_regs.size() == 1);
414c0981da4SDimitry Andric m_value_reg_offset_map[local_regnum] = reg.value_reg_offset;
4153b6b9a02SDimitry Andric }
4163b6b9a02SDimitry Andric
417c0981da4SDimitry Andric struct RegisterInfo reg_info {
418c0981da4SDimitry Andric reg.name.AsCString(), reg.alt_name.AsCString(), reg.byte_size,
419c0981da4SDimitry Andric reg.byte_offset, reg.encoding, reg.format,
420c0981da4SDimitry Andric {reg.regnum_ehframe, reg.regnum_dwarf, reg.regnum_generic,
421c0981da4SDimitry Andric reg.regnum_remote, local_regnum},
422c0981da4SDimitry Andric // value_regs and invalidate_regs are filled by Finalize()
4237fa27ce4SDimitry Andric nullptr, nullptr, reg.flags_type
424c0981da4SDimitry Andric };
425c0981da4SDimitry Andric
426f034231aSEd Maste m_regs.push_back(reg_info);
427c0981da4SDimitry Andric
428c0981da4SDimitry Andric uint32_t set = GetRegisterSetIndexByName(reg.set_name, true);
429f034231aSEd Maste assert(set < m_sets.size());
430f034231aSEd Maste assert(set < m_set_reg_nums.size());
431f034231aSEd Maste assert(set < m_set_names.size());
432c0981da4SDimitry Andric m_set_reg_nums[set].push_back(local_regnum);
433c0981da4SDimitry Andric };
434c0981da4SDimitry Andric
435c0981da4SDimitry Andric Finalize(arch);
436c0981da4SDimitry Andric return m_regs.size();
437f034231aSEd Maste }
438f034231aSEd Maste
Finalize(const ArchSpec & arch)43914f1b3e8SDimitry Andric void DynamicRegisterInfo::Finalize(const ArchSpec &arch) {
440f21a844fSEd Maste if (m_finalized)
441f21a844fSEd Maste return;
442f21a844fSEd Maste
443f21a844fSEd Maste m_finalized = true;
444f21a844fSEd Maste const size_t num_sets = m_sets.size();
44514f1b3e8SDimitry Andric for (size_t set = 0; set < num_sets; ++set) {
446f034231aSEd Maste assert(m_sets.size() == m_set_reg_nums.size());
447f034231aSEd Maste m_sets[set].num_registers = m_set_reg_nums[set].size();
448f73363f1SDimitry Andric m_sets[set].registers = m_set_reg_nums[set].data();
449f034231aSEd Maste }
450f21a844fSEd Maste
451c0981da4SDimitry Andric // make sure value_regs are terminated with LLDB_INVALID_REGNUM
452f21a844fSEd Maste
45314f1b3e8SDimitry Andric for (reg_to_regs_map::iterator pos = m_value_regs_map.begin(),
45414f1b3e8SDimitry Andric end = m_value_regs_map.end();
45514f1b3e8SDimitry Andric pos != end; ++pos) {
456f21a844fSEd Maste if (pos->second.back() != LLDB_INVALID_REGNUM)
457f21a844fSEd Maste pos->second.push_back(LLDB_INVALID_REGNUM);
458f21a844fSEd Maste }
459f21a844fSEd Maste
460f21a844fSEd Maste // Now update all value_regs with each register info as needed
461f21a844fSEd Maste const size_t num_regs = m_regs.size();
46214f1b3e8SDimitry Andric for (size_t i = 0; i < num_regs; ++i) {
463f21a844fSEd Maste if (m_value_regs_map.find(i) != m_value_regs_map.end())
464f21a844fSEd Maste m_regs[i].value_regs = m_value_regs_map[i].data();
465f21a844fSEd Maste else
4665f29bb8aSDimitry Andric m_regs[i].value_regs = nullptr;
467f21a844fSEd Maste }
468f21a844fSEd Maste
469f21a844fSEd Maste // Expand all invalidation dependencies
47014f1b3e8SDimitry Andric for (reg_to_regs_map::iterator pos = m_invalidate_regs_map.begin(),
47114f1b3e8SDimitry Andric end = m_invalidate_regs_map.end();
47214f1b3e8SDimitry Andric pos != end; ++pos) {
473f21a844fSEd Maste const uint32_t reg_num = pos->first;
474f21a844fSEd Maste
47514f1b3e8SDimitry Andric if (m_regs[reg_num].value_regs) {
476f21a844fSEd Maste reg_num_collection extra_invalid_regs;
47714f1b3e8SDimitry Andric for (const uint32_t invalidate_reg_num : pos->second) {
47814f1b3e8SDimitry Andric reg_to_regs_map::iterator invalidate_pos =
47914f1b3e8SDimitry Andric m_invalidate_regs_map.find(invalidate_reg_num);
48014f1b3e8SDimitry Andric if (invalidate_pos != m_invalidate_regs_map.end()) {
48114f1b3e8SDimitry Andric for (const uint32_t concrete_invalidate_reg_num :
48214f1b3e8SDimitry Andric invalidate_pos->second) {
483f21a844fSEd Maste if (concrete_invalidate_reg_num != reg_num)
484f21a844fSEd Maste extra_invalid_regs.push_back(concrete_invalidate_reg_num);
485f21a844fSEd Maste }
486f21a844fSEd Maste }
487f21a844fSEd Maste }
48814f1b3e8SDimitry Andric pos->second.insert(pos->second.end(), extra_invalid_regs.begin(),
48914f1b3e8SDimitry Andric extra_invalid_regs.end());
490f21a844fSEd Maste }
491f21a844fSEd Maste }
492f21a844fSEd Maste
49314f1b3e8SDimitry Andric // sort and unique all invalidate registers and make sure each is terminated
494f73363f1SDimitry Andric // with LLDB_INVALID_REGNUM
49514f1b3e8SDimitry Andric for (reg_to_regs_map::iterator pos = m_invalidate_regs_map.begin(),
49614f1b3e8SDimitry Andric end = m_invalidate_regs_map.end();
49714f1b3e8SDimitry Andric pos != end; ++pos) {
49814f1b3e8SDimitry Andric if (pos->second.size() > 1) {
4994b4fe385SDimitry Andric llvm::sort(pos->second);
50014f1b3e8SDimitry Andric reg_num_collection::iterator unique_end =
50114f1b3e8SDimitry Andric std::unique(pos->second.begin(), pos->second.end());
502f21a844fSEd Maste if (unique_end != pos->second.end())
503f21a844fSEd Maste pos->second.erase(unique_end, pos->second.end());
504f21a844fSEd Maste }
505f21a844fSEd Maste assert(!pos->second.empty());
506f21a844fSEd Maste if (pos->second.back() != LLDB_INVALID_REGNUM)
507f21a844fSEd Maste pos->second.push_back(LLDB_INVALID_REGNUM);
508f21a844fSEd Maste }
509f21a844fSEd Maste
510f21a844fSEd Maste // Now update all invalidate_regs with each register info as needed
51114f1b3e8SDimitry Andric for (size_t i = 0; i < num_regs; ++i) {
512f21a844fSEd Maste if (m_invalidate_regs_map.find(i) != m_invalidate_regs_map.end())
513f21a844fSEd Maste m_regs[i].invalidate_regs = m_invalidate_regs_map[i].data();
514f21a844fSEd Maste else
5155f29bb8aSDimitry Andric m_regs[i].invalidate_regs = nullptr;
516f21a844fSEd Maste }
5175e95aa85SEd Maste
518f73363f1SDimitry Andric // Check if we need to automatically set the generic registers in case they
519f73363f1SDimitry Andric // weren't set
5205e95aa85SEd Maste bool generic_regs_specified = false;
52114f1b3e8SDimitry Andric for (const auto ® : m_regs) {
52214f1b3e8SDimitry Andric if (reg.kinds[eRegisterKindGeneric] != LLDB_INVALID_REGNUM) {
5235e95aa85SEd Maste generic_regs_specified = true;
5245e95aa85SEd Maste break;
5255e95aa85SEd Maste }
5265e95aa85SEd Maste }
5275e95aa85SEd Maste
52814f1b3e8SDimitry Andric if (!generic_regs_specified) {
52914f1b3e8SDimitry Andric switch (arch.GetMachine()) {
5305e95aa85SEd Maste case llvm::Triple::aarch64:
531ead24645SDimitry Andric case llvm::Triple::aarch64_32:
5325e95aa85SEd Maste case llvm::Triple::aarch64_be:
53314f1b3e8SDimitry Andric for (auto ® : m_regs) {
5345e95aa85SEd Maste if (strcmp(reg.name, "pc") == 0)
5355e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_PC;
53614f1b3e8SDimitry Andric else if ((strcmp(reg.name, "fp") == 0) ||
53714f1b3e8SDimitry Andric (strcmp(reg.name, "x29") == 0))
5385e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FP;
53914f1b3e8SDimitry Andric else if ((strcmp(reg.name, "lr") == 0) ||
54014f1b3e8SDimitry Andric (strcmp(reg.name, "x30") == 0))
5415e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_RA;
54214f1b3e8SDimitry Andric else if ((strcmp(reg.name, "sp") == 0) ||
54314f1b3e8SDimitry Andric (strcmp(reg.name, "x31") == 0))
5445e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_SP;
5455e95aa85SEd Maste else if (strcmp(reg.name, "cpsr") == 0)
5465e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FLAGS;
5475e95aa85SEd Maste }
5485e95aa85SEd Maste break;
5495e95aa85SEd Maste
5505e95aa85SEd Maste case llvm::Triple::arm:
5515e95aa85SEd Maste case llvm::Triple::armeb:
5525e95aa85SEd Maste case llvm::Triple::thumb:
5535e95aa85SEd Maste case llvm::Triple::thumbeb:
55414f1b3e8SDimitry Andric for (auto ® : m_regs) {
5555e95aa85SEd Maste if ((strcmp(reg.name, "pc") == 0) || (strcmp(reg.name, "r15") == 0))
5565e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_PC;
55714f1b3e8SDimitry Andric else if ((strcmp(reg.name, "sp") == 0) ||
55814f1b3e8SDimitry Andric (strcmp(reg.name, "r13") == 0))
5595e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_SP;
56014f1b3e8SDimitry Andric else if ((strcmp(reg.name, "lr") == 0) ||
56114f1b3e8SDimitry Andric (strcmp(reg.name, "r14") == 0))
5625e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_RA;
56314f1b3e8SDimitry Andric else if ((strcmp(reg.name, "r7") == 0) &&
56414f1b3e8SDimitry Andric arch.GetTriple().getVendor() == llvm::Triple::Apple)
5655e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FP;
56614f1b3e8SDimitry Andric else if ((strcmp(reg.name, "r11") == 0) &&
56714f1b3e8SDimitry Andric arch.GetTriple().getVendor() != llvm::Triple::Apple)
5685e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FP;
5695e95aa85SEd Maste else if (strcmp(reg.name, "fp") == 0)
5705e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FP;
5715e95aa85SEd Maste else if (strcmp(reg.name, "cpsr") == 0)
5725e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FLAGS;
5735e95aa85SEd Maste }
5745e95aa85SEd Maste break;
5755e95aa85SEd Maste
5765e95aa85SEd Maste case llvm::Triple::x86:
57714f1b3e8SDimitry Andric for (auto ® : m_regs) {
5785e95aa85SEd Maste if ((strcmp(reg.name, "eip") == 0) || (strcmp(reg.name, "pc") == 0))
5795e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_PC;
58014f1b3e8SDimitry Andric else if ((strcmp(reg.name, "esp") == 0) ||
58114f1b3e8SDimitry Andric (strcmp(reg.name, "sp") == 0))
5825e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_SP;
58314f1b3e8SDimitry Andric else if ((strcmp(reg.name, "ebp") == 0) ||
58414f1b3e8SDimitry Andric (strcmp(reg.name, "fp") == 0))
5855e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FP;
58614f1b3e8SDimitry Andric else if ((strcmp(reg.name, "eflags") == 0) ||
58714f1b3e8SDimitry Andric (strcmp(reg.name, "flags") == 0))
5885e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FLAGS;
5895e95aa85SEd Maste }
5905e95aa85SEd Maste break;
5915e95aa85SEd Maste
5925e95aa85SEd Maste case llvm::Triple::x86_64:
59314f1b3e8SDimitry Andric for (auto ® : m_regs) {
5945e95aa85SEd Maste if ((strcmp(reg.name, "rip") == 0) || (strcmp(reg.name, "pc") == 0))
5955e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_PC;
59614f1b3e8SDimitry Andric else if ((strcmp(reg.name, "rsp") == 0) ||
59714f1b3e8SDimitry Andric (strcmp(reg.name, "sp") == 0))
5985e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_SP;
59914f1b3e8SDimitry Andric else if ((strcmp(reg.name, "rbp") == 0) ||
60014f1b3e8SDimitry Andric (strcmp(reg.name, "fp") == 0))
6015e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FP;
60214f1b3e8SDimitry Andric else if ((strcmp(reg.name, "rflags") == 0) ||
603c0981da4SDimitry Andric (strcmp(reg.name, "eflags") == 0) ||
60414f1b3e8SDimitry Andric (strcmp(reg.name, "flags") == 0))
6055e95aa85SEd Maste reg.kinds[eRegisterKindGeneric] = LLDB_REGNUM_GENERIC_FLAGS;
6065e95aa85SEd Maste }
6075e95aa85SEd Maste break;
6085e95aa85SEd Maste
6095e95aa85SEd Maste default:
6105e95aa85SEd Maste break;
6115e95aa85SEd Maste }
6125e95aa85SEd Maste }
613b60736ecSDimitry Andric
614b60736ecSDimitry Andric // At this stage call ConfigureOffsets to calculate register offsets for
615b60736ecSDimitry Andric // targets supporting dynamic offset calculation. It also calculates
616b60736ecSDimitry Andric // total byte size of register data.
617b60736ecSDimitry Andric ConfigureOffsets();
618b60736ecSDimitry Andric
619b60736ecSDimitry Andric // Check if register info is reconfigurable
620b1c73532SDimitry Andric // AArch64 SVE register set has configurable register sizes, as does the ZA
621b1c73532SDimitry Andric // register that SME added (the streaming state of SME reuses the SVE state).
622b60736ecSDimitry Andric if (arch.GetTriple().isAArch64()) {
623b60736ecSDimitry Andric for (const auto ® : m_regs) {
624b1c73532SDimitry Andric if ((strcmp(reg.name, "vg") == 0) || (strcmp(reg.name, "svg") == 0)) {
625b60736ecSDimitry Andric m_is_reconfigurable = true;
626b60736ecSDimitry Andric break;
627f034231aSEd Maste }
628b60736ecSDimitry Andric }
629b60736ecSDimitry Andric }
630b60736ecSDimitry Andric }
631b60736ecSDimitry Andric
ConfigureOffsets()632b60736ecSDimitry Andric void DynamicRegisterInfo::ConfigureOffsets() {
633b60736ecSDimitry Andric // We are going to create a map between remote (eRegisterKindProcessPlugin)
634b60736ecSDimitry Andric // and local (eRegisterKindLLDB) register numbers. This map will give us
635b60736ecSDimitry Andric // remote register numbers in increasing order for offset calculation.
636b60736ecSDimitry Andric std::map<uint32_t, uint32_t> remote_to_local_regnum_map;
637b60736ecSDimitry Andric for (const auto ® : m_regs)
638b60736ecSDimitry Andric remote_to_local_regnum_map[reg.kinds[eRegisterKindProcessPlugin]] =
639b60736ecSDimitry Andric reg.kinds[eRegisterKindLLDB];
640b60736ecSDimitry Andric
641b60736ecSDimitry Andric // At this stage we manually calculate g/G packet offsets of all primary
642b60736ecSDimitry Andric // registers, only if target XML or qRegisterInfo packet did not send
643b60736ecSDimitry Andric // an offset explicitly.
644b60736ecSDimitry Andric uint32_t reg_offset = 0;
645b60736ecSDimitry Andric for (auto const ®num_pair : remote_to_local_regnum_map) {
646b60736ecSDimitry Andric if (m_regs[regnum_pair.second].byte_offset == LLDB_INVALID_INDEX32 &&
647b60736ecSDimitry Andric m_regs[regnum_pair.second].value_regs == nullptr) {
648b60736ecSDimitry Andric m_regs[regnum_pair.second].byte_offset = reg_offset;
649b60736ecSDimitry Andric
650b60736ecSDimitry Andric reg_offset = m_regs[regnum_pair.second].byte_offset +
651b60736ecSDimitry Andric m_regs[regnum_pair.second].byte_size;
652b60736ecSDimitry Andric }
653b60736ecSDimitry Andric }
654b60736ecSDimitry Andric
655b60736ecSDimitry Andric // Now update all value_regs with each register info as needed
656b60736ecSDimitry Andric for (auto ® : m_regs) {
657b60736ecSDimitry Andric if (reg.value_regs != nullptr) {
658c0981da4SDimitry Andric // Assign a valid offset to all pseudo registers that have only a single
659c0981da4SDimitry Andric // parent register in value_regs list, if not assigned by stub. Pseudo
660c0981da4SDimitry Andric // registers with value_regs list populated will share same offset as
661c0981da4SDimitry Andric // that of their corresponding parent register.
662b60736ecSDimitry Andric if (reg.byte_offset == LLDB_INVALID_INDEX32) {
663b60736ecSDimitry Andric uint32_t value_regnum = reg.value_regs[0];
664c0981da4SDimitry Andric if (value_regnum != LLDB_INVALID_INDEX32 &&
665c0981da4SDimitry Andric reg.value_regs[1] == LLDB_INVALID_INDEX32) {
666b60736ecSDimitry Andric reg.byte_offset =
667c0981da4SDimitry Andric GetRegisterInfoAtIndex(value_regnum)->byte_offset;
668c0981da4SDimitry Andric auto it = m_value_reg_offset_map.find(reg.kinds[eRegisterKindLLDB]);
669c0981da4SDimitry Andric if (it != m_value_reg_offset_map.end())
670c0981da4SDimitry Andric reg.byte_offset += it->second;
671c0981da4SDimitry Andric }
672b60736ecSDimitry Andric }
673b60736ecSDimitry Andric }
674b60736ecSDimitry Andric
675b60736ecSDimitry Andric reg_offset = reg.byte_offset + reg.byte_size;
676b60736ecSDimitry Andric if (m_reg_data_byte_size < reg_offset)
677b60736ecSDimitry Andric m_reg_data_byte_size = reg_offset;
678b60736ecSDimitry Andric }
679b60736ecSDimitry Andric }
680b60736ecSDimitry Andric
IsReconfigurable()681b60736ecSDimitry Andric bool DynamicRegisterInfo::IsReconfigurable() { return m_is_reconfigurable; }
682f034231aSEd Maste
GetNumRegisters() const68314f1b3e8SDimitry Andric size_t DynamicRegisterInfo::GetNumRegisters() const { return m_regs.size(); }
684f034231aSEd Maste
GetNumRegisterSets() const68514f1b3e8SDimitry Andric size_t DynamicRegisterInfo::GetNumRegisterSets() const { return m_sets.size(); }
686f034231aSEd Maste
GetRegisterDataByteSize() const68714f1b3e8SDimitry Andric size_t DynamicRegisterInfo::GetRegisterDataByteSize() const {
688f034231aSEd Maste return m_reg_data_byte_size;
689f034231aSEd Maste }
690f034231aSEd Maste
691f034231aSEd Maste const RegisterInfo *
GetRegisterInfoAtIndex(uint32_t i) const69214f1b3e8SDimitry Andric DynamicRegisterInfo::GetRegisterInfoAtIndex(uint32_t i) const {
693f034231aSEd Maste if (i < m_regs.size())
694f034231aSEd Maste return &m_regs[i];
6955f29bb8aSDimitry Andric return nullptr;
696f034231aSEd Maste }
697f034231aSEd Maste
GetRegisterInfo(uint32_t kind,uint32_t num) const698344a3780SDimitry Andric const RegisterInfo *DynamicRegisterInfo::GetRegisterInfo(uint32_t kind,
699344a3780SDimitry Andric uint32_t num) const {
700344a3780SDimitry Andric uint32_t reg_index = ConvertRegisterKindToRegisterNumber(kind, num);
701344a3780SDimitry Andric if (reg_index != LLDB_INVALID_REGNUM)
702344a3780SDimitry Andric return &m_regs[reg_index];
703344a3780SDimitry Andric return nullptr;
704344a3780SDimitry Andric }
705344a3780SDimitry Andric
GetRegisterSet(uint32_t i) const70614f1b3e8SDimitry Andric const RegisterSet *DynamicRegisterInfo::GetRegisterSet(uint32_t i) const {
707f034231aSEd Maste if (i < m_sets.size())
708f034231aSEd Maste return &m_sets[i];
7095f29bb8aSDimitry Andric return nullptr;
710f034231aSEd Maste }
711f034231aSEd Maste
712c0981da4SDimitry Andric uint32_t
GetRegisterSetIndexByName(const ConstString & set_name,bool can_create)713c0981da4SDimitry Andric DynamicRegisterInfo::GetRegisterSetIndexByName(const ConstString &set_name,
71414f1b3e8SDimitry Andric bool can_create) {
715f034231aSEd Maste name_collection::iterator pos, end = m_set_names.end();
71614f1b3e8SDimitry Andric for (pos = m_set_names.begin(); pos != end; ++pos) {
717f034231aSEd Maste if (*pos == set_name)
718f034231aSEd Maste return std::distance(m_set_names.begin(), pos);
719f034231aSEd Maste }
720f034231aSEd Maste
721f034231aSEd Maste m_set_names.push_back(set_name);
722f034231aSEd Maste m_set_reg_nums.resize(m_set_reg_nums.size() + 1);
7235f29bb8aSDimitry Andric RegisterSet new_set = {set_name.AsCString(), nullptr, 0, nullptr};
724f034231aSEd Maste m_sets.push_back(new_set);
725f034231aSEd Maste return m_sets.size() - 1;
726f034231aSEd Maste }
727f034231aSEd Maste
728f034231aSEd Maste uint32_t
ConvertRegisterKindToRegisterNumber(uint32_t kind,uint32_t num) const72914f1b3e8SDimitry Andric DynamicRegisterInfo::ConvertRegisterKindToRegisterNumber(uint32_t kind,
73014f1b3e8SDimitry Andric uint32_t num) const {
731f034231aSEd Maste reg_collection::const_iterator pos, end = m_regs.end();
73214f1b3e8SDimitry Andric for (pos = m_regs.begin(); pos != end; ++pos) {
733f034231aSEd Maste if (pos->kinds[kind] == num)
734f034231aSEd Maste return std::distance(m_regs.begin(), pos);
735f034231aSEd Maste }
736f034231aSEd Maste
737f034231aSEd Maste return LLDB_INVALID_REGNUM;
738f034231aSEd Maste }
739f034231aSEd Maste
Clear()74014f1b3e8SDimitry Andric void DynamicRegisterInfo::Clear() {
741f034231aSEd Maste m_regs.clear();
742f034231aSEd Maste m_sets.clear();
743f034231aSEd Maste m_set_reg_nums.clear();
744f034231aSEd Maste m_set_names.clear();
745f21a844fSEd Maste m_value_regs_map.clear();
746f21a844fSEd Maste m_invalidate_regs_map.clear();
747f21a844fSEd Maste m_reg_data_byte_size = 0;
748f21a844fSEd Maste m_finalized = false;
749f21a844fSEd Maste }
750f21a844fSEd Maste
Dump() const75114f1b3e8SDimitry Andric void DynamicRegisterInfo::Dump() const {
752f21a844fSEd Maste StreamFile s(stdout, false);
753f21a844fSEd Maste const size_t num_regs = m_regs.size();
7540cac4ca3SEd Maste s.Printf("%p: DynamicRegisterInfo contains %" PRIu64 " registers:\n",
7550cac4ca3SEd Maste static_cast<const void *>(this), static_cast<uint64_t>(num_regs));
75614f1b3e8SDimitry Andric for (size_t i = 0; i < num_regs; ++i) {
7570cac4ca3SEd Maste s.Printf("[%3" PRIu64 "] name = %-10s", (uint64_t)i, m_regs[i].name);
758f21a844fSEd Maste s.Printf(", size = %2u, offset = %4u, encoding = %u, format = %-10s",
75914f1b3e8SDimitry Andric m_regs[i].byte_size, m_regs[i].byte_offset, m_regs[i].encoding,
760f21a844fSEd Maste FormatManager::GetFormatAsCString(m_regs[i].format));
761e81d9d49SDimitry Andric if (m_regs[i].kinds[eRegisterKindProcessPlugin] != LLDB_INVALID_REGNUM)
76214f1b3e8SDimitry Andric s.Printf(", process plugin = %3u",
76314f1b3e8SDimitry Andric m_regs[i].kinds[eRegisterKindProcessPlugin]);
764f21a844fSEd Maste if (m_regs[i].kinds[eRegisterKindDWARF] != LLDB_INVALID_REGNUM)
765f21a844fSEd Maste s.Printf(", dwarf = %3u", m_regs[i].kinds[eRegisterKindDWARF]);
766e81d9d49SDimitry Andric if (m_regs[i].kinds[eRegisterKindEHFrame] != LLDB_INVALID_REGNUM)
767e81d9d49SDimitry Andric s.Printf(", ehframe = %3u", m_regs[i].kinds[eRegisterKindEHFrame]);
768f21a844fSEd Maste if (m_regs[i].kinds[eRegisterKindGeneric] != LLDB_INVALID_REGNUM)
769f21a844fSEd Maste s.Printf(", generic = %3u", m_regs[i].kinds[eRegisterKindGeneric]);
770f21a844fSEd Maste if (m_regs[i].alt_name)
771f21a844fSEd Maste s.Printf(", alt-name = %s", m_regs[i].alt_name);
77214f1b3e8SDimitry Andric if (m_regs[i].value_regs) {
773f21a844fSEd Maste s.Printf(", value_regs = [ ");
77414f1b3e8SDimitry Andric for (size_t j = 0; m_regs[i].value_regs[j] != LLDB_INVALID_REGNUM; ++j) {
775f21a844fSEd Maste s.Printf("%s ", m_regs[m_regs[i].value_regs[j]].name);
776f21a844fSEd Maste }
777f21a844fSEd Maste s.Printf("]");
778f21a844fSEd Maste }
77914f1b3e8SDimitry Andric if (m_regs[i].invalidate_regs) {
780f21a844fSEd Maste s.Printf(", invalidate_regs = [ ");
78114f1b3e8SDimitry Andric for (size_t j = 0; m_regs[i].invalidate_regs[j] != LLDB_INVALID_REGNUM;
78214f1b3e8SDimitry Andric ++j) {
783f21a844fSEd Maste s.Printf("%s ", m_regs[m_regs[i].invalidate_regs[j]].name);
784f21a844fSEd Maste }
785f21a844fSEd Maste s.Printf("]");
786f21a844fSEd Maste }
787f21a844fSEd Maste s.EOL();
788f21a844fSEd Maste }
789f21a844fSEd Maste
790f21a844fSEd Maste const size_t num_sets = m_sets.size();
7910cac4ca3SEd Maste s.Printf("%p: DynamicRegisterInfo contains %" PRIu64 " register sets:\n",
7920cac4ca3SEd Maste static_cast<const void *>(this), static_cast<uint64_t>(num_sets));
79314f1b3e8SDimitry Andric for (size_t i = 0; i < num_sets; ++i) {
79414f1b3e8SDimitry Andric s.Printf("set[%" PRIu64 "] name = %s, regs = [", (uint64_t)i,
79514f1b3e8SDimitry Andric m_sets[i].name);
79614f1b3e8SDimitry Andric for (size_t idx = 0; idx < m_sets[i].num_registers; ++idx) {
797f21a844fSEd Maste s.Printf("%s ", m_regs[m_sets[i].registers[idx]].name);
798f21a844fSEd Maste }
799f21a844fSEd Maste s.Printf("]\n");
800f21a844fSEd Maste }
801f21a844fSEd Maste }
802f21a844fSEd Maste
803b60736ecSDimitry Andric const lldb_private::RegisterInfo *
GetRegisterInfo(llvm::StringRef reg_name) const804b60736ecSDimitry Andric DynamicRegisterInfo::GetRegisterInfo(llvm::StringRef reg_name) const {
805b60736ecSDimitry Andric for (auto ®_info : m_regs)
806b60736ecSDimitry Andric if (reg_info.name == reg_name)
807f21a844fSEd Maste return ®_info;
8085f29bb8aSDimitry Andric return nullptr;
809f034231aSEd Maste }
810c0981da4SDimitry Andric
addSupplementaryRegister(std::vector<DynamicRegisterInfo::Register> & regs,DynamicRegisterInfo::Register new_reg_info)811c0981da4SDimitry Andric void lldb_private::addSupplementaryRegister(
812c0981da4SDimitry Andric std::vector<DynamicRegisterInfo::Register> ®s,
813c0981da4SDimitry Andric DynamicRegisterInfo::Register new_reg_info) {
814c0981da4SDimitry Andric assert(!new_reg_info.value_regs.empty());
815c0981da4SDimitry Andric const uint32_t reg_num = regs.size();
816c0981da4SDimitry Andric regs.push_back(new_reg_info);
817c0981da4SDimitry Andric
818c0981da4SDimitry Andric std::map<uint32_t, std::vector<uint32_t>> new_invalidates;
819c0981da4SDimitry Andric for (uint32_t value_reg : new_reg_info.value_regs) {
820c0981da4SDimitry Andric // copy value_regs to invalidate_regs
821c0981da4SDimitry Andric new_invalidates[reg_num].push_back(value_reg);
822c0981da4SDimitry Andric
823c0981da4SDimitry Andric // copy invalidate_regs from the parent register
824c0981da4SDimitry Andric llvm::append_range(new_invalidates[reg_num],
825c0981da4SDimitry Andric regs[value_reg].invalidate_regs);
826c0981da4SDimitry Andric
827c0981da4SDimitry Andric // add reverse invalidate entries
828c0981da4SDimitry Andric for (uint32_t x : new_invalidates[reg_num])
829c0981da4SDimitry Andric new_invalidates[x].push_back(reg_num);
830c0981da4SDimitry Andric }
831c0981da4SDimitry Andric
832c0981da4SDimitry Andric for (const auto &x : new_invalidates)
833c0981da4SDimitry Andric llvm::append_range(regs[x.first].invalidate_regs, x.second);
834c0981da4SDimitry Andric }
835