1 //===-- StringExtractor.cpp -------------------------------------*- C++ -*-===//
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 #include "lldb/Utility/StringExtractor.h"
11
12 #include <tuple>
13
14 #include <ctype.h>
15 #include <stdlib.h>
16 #include <string.h>
17
xdigit_to_sint(char ch)18 static inline int xdigit_to_sint(char ch) {
19 if (ch >= 'a' && ch <= 'f')
20 return 10 + ch - 'a';
21 if (ch >= 'A' && ch <= 'F')
22 return 10 + ch - 'A';
23 if (ch >= '0' && ch <= '9')
24 return ch - '0';
25 return -1;
26 }
27
28 //----------------------------------------------------------------------
29 // StringExtractor constructor
30 //----------------------------------------------------------------------
StringExtractor()31 StringExtractor::StringExtractor() : m_packet(), m_index(0) {}
32
StringExtractor(llvm::StringRef packet_str)33 StringExtractor::StringExtractor(llvm::StringRef packet_str)
34 : m_packet(), m_index(0) {
35 m_packet.assign(packet_str.begin(), packet_str.end());
36 }
37
StringExtractor(const char * packet_cstr)38 StringExtractor::StringExtractor(const char *packet_cstr)
39 : m_packet(), m_index(0) {
40 if (packet_cstr)
41 m_packet.assign(packet_cstr);
42 }
43
44 //----------------------------------------------------------------------
45 // StringExtractor copy constructor
46 //----------------------------------------------------------------------
StringExtractor(const StringExtractor & rhs)47 StringExtractor::StringExtractor(const StringExtractor &rhs)
48 : m_packet(rhs.m_packet), m_index(rhs.m_index) {}
49
50 //----------------------------------------------------------------------
51 // StringExtractor assignment operator
52 //----------------------------------------------------------------------
operator =(const StringExtractor & rhs)53 const StringExtractor &StringExtractor::operator=(const StringExtractor &rhs) {
54 if (this != &rhs) {
55 m_packet = rhs.m_packet;
56 m_index = rhs.m_index;
57 }
58 return *this;
59 }
60
61 //----------------------------------------------------------------------
62 // Destructor
63 //----------------------------------------------------------------------
~StringExtractor()64 StringExtractor::~StringExtractor() {}
65
GetChar(char fail_value)66 char StringExtractor::GetChar(char fail_value) {
67 if (m_index < m_packet.size()) {
68 char ch = m_packet[m_index];
69 ++m_index;
70 return ch;
71 }
72 m_index = UINT64_MAX;
73 return fail_value;
74 }
75
76 //----------------------------------------------------------------------
77 // If a pair of valid hex digits exist at the head of the StringExtractor they
78 // are decoded into an unsigned byte and returned by this function
79 //
80 // If there is not a pair of valid hex digits at the head of the
81 // StringExtractor, it is left unchanged and -1 is returned
82 //----------------------------------------------------------------------
DecodeHexU8()83 int StringExtractor::DecodeHexU8() {
84 SkipSpaces();
85 if (GetBytesLeft() < 2) {
86 return -1;
87 }
88 const int hi_nibble = xdigit_to_sint(m_packet[m_index]);
89 const int lo_nibble = xdigit_to_sint(m_packet[m_index + 1]);
90 if (hi_nibble == -1 || lo_nibble == -1) {
91 return -1;
92 }
93 m_index += 2;
94 return (uint8_t)((hi_nibble << 4) + lo_nibble);
95 }
96
97 //----------------------------------------------------------------------
98 // Extract an unsigned character from two hex ASCII chars in the packet string,
99 // or return fail_value on failure
100 //----------------------------------------------------------------------
GetHexU8(uint8_t fail_value,bool set_eof_on_fail)101 uint8_t StringExtractor::GetHexU8(uint8_t fail_value, bool set_eof_on_fail) {
102 // On success, fail_value will be overwritten with the next character in the
103 // stream
104 GetHexU8Ex(fail_value, set_eof_on_fail);
105 return fail_value;
106 }
107
GetHexU8Ex(uint8_t & ch,bool set_eof_on_fail)108 bool StringExtractor::GetHexU8Ex(uint8_t &ch, bool set_eof_on_fail) {
109 int byte = DecodeHexU8();
110 if (byte == -1) {
111 if (set_eof_on_fail || m_index >= m_packet.size())
112 m_index = UINT64_MAX;
113 // ch should not be changed in case of failure
114 return false;
115 }
116 ch = (uint8_t)byte;
117 return true;
118 }
119
GetU32(uint32_t fail_value,int base)120 uint32_t StringExtractor::GetU32(uint32_t fail_value, int base) {
121 if (m_index < m_packet.size()) {
122 char *end = nullptr;
123 const char *start = m_packet.c_str();
124 const char *cstr = start + m_index;
125 uint32_t result = static_cast<uint32_t>(::strtoul(cstr, &end, base));
126
127 if (end && end != cstr) {
128 m_index = end - start;
129 return result;
130 }
131 }
132 return fail_value;
133 }
134
GetS32(int32_t fail_value,int base)135 int32_t StringExtractor::GetS32(int32_t fail_value, int base) {
136 if (m_index < m_packet.size()) {
137 char *end = nullptr;
138 const char *start = m_packet.c_str();
139 const char *cstr = start + m_index;
140 int32_t result = static_cast<int32_t>(::strtol(cstr, &end, base));
141
142 if (end && end != cstr) {
143 m_index = end - start;
144 return result;
145 }
146 }
147 return fail_value;
148 }
149
GetU64(uint64_t fail_value,int base)150 uint64_t StringExtractor::GetU64(uint64_t fail_value, int base) {
151 if (m_index < m_packet.size()) {
152 char *end = nullptr;
153 const char *start = m_packet.c_str();
154 const char *cstr = start + m_index;
155 uint64_t result = ::strtoull(cstr, &end, base);
156
157 if (end && end != cstr) {
158 m_index = end - start;
159 return result;
160 }
161 }
162 return fail_value;
163 }
164
GetS64(int64_t fail_value,int base)165 int64_t StringExtractor::GetS64(int64_t fail_value, int base) {
166 if (m_index < m_packet.size()) {
167 char *end = nullptr;
168 const char *start = m_packet.c_str();
169 const char *cstr = start + m_index;
170 int64_t result = ::strtoll(cstr, &end, base);
171
172 if (end && end != cstr) {
173 m_index = end - start;
174 return result;
175 }
176 }
177 return fail_value;
178 }
179
GetHexMaxU32(bool little_endian,uint32_t fail_value)180 uint32_t StringExtractor::GetHexMaxU32(bool little_endian,
181 uint32_t fail_value) {
182 uint32_t result = 0;
183 uint32_t nibble_count = 0;
184
185 SkipSpaces();
186 if (little_endian) {
187 uint32_t shift_amount = 0;
188 while (m_index < m_packet.size() && ::isxdigit(m_packet[m_index])) {
189 // Make sure we don't exceed the size of a uint32_t...
190 if (nibble_count >= (sizeof(uint32_t) * 2)) {
191 m_index = UINT64_MAX;
192 return fail_value;
193 }
194
195 uint8_t nibble_lo;
196 uint8_t nibble_hi = xdigit_to_sint(m_packet[m_index]);
197 ++m_index;
198 if (m_index < m_packet.size() && ::isxdigit(m_packet[m_index])) {
199 nibble_lo = xdigit_to_sint(m_packet[m_index]);
200 ++m_index;
201 result |= ((uint32_t)nibble_hi << (shift_amount + 4));
202 result |= ((uint32_t)nibble_lo << shift_amount);
203 nibble_count += 2;
204 shift_amount += 8;
205 } else {
206 result |= ((uint32_t)nibble_hi << shift_amount);
207 nibble_count += 1;
208 shift_amount += 4;
209 }
210 }
211 } else {
212 while (m_index < m_packet.size() && ::isxdigit(m_packet[m_index])) {
213 // Make sure we don't exceed the size of a uint32_t...
214 if (nibble_count >= (sizeof(uint32_t) * 2)) {
215 m_index = UINT64_MAX;
216 return fail_value;
217 }
218
219 uint8_t nibble = xdigit_to_sint(m_packet[m_index]);
220 // Big Endian
221 result <<= 4;
222 result |= nibble;
223
224 ++m_index;
225 ++nibble_count;
226 }
227 }
228 return result;
229 }
230
GetHexMaxU64(bool little_endian,uint64_t fail_value)231 uint64_t StringExtractor::GetHexMaxU64(bool little_endian,
232 uint64_t fail_value) {
233 uint64_t result = 0;
234 uint32_t nibble_count = 0;
235
236 SkipSpaces();
237 if (little_endian) {
238 uint32_t shift_amount = 0;
239 while (m_index < m_packet.size() && ::isxdigit(m_packet[m_index])) {
240 // Make sure we don't exceed the size of a uint64_t...
241 if (nibble_count >= (sizeof(uint64_t) * 2)) {
242 m_index = UINT64_MAX;
243 return fail_value;
244 }
245
246 uint8_t nibble_lo;
247 uint8_t nibble_hi = xdigit_to_sint(m_packet[m_index]);
248 ++m_index;
249 if (m_index < m_packet.size() && ::isxdigit(m_packet[m_index])) {
250 nibble_lo = xdigit_to_sint(m_packet[m_index]);
251 ++m_index;
252 result |= ((uint64_t)nibble_hi << (shift_amount + 4));
253 result |= ((uint64_t)nibble_lo << shift_amount);
254 nibble_count += 2;
255 shift_amount += 8;
256 } else {
257 result |= ((uint64_t)nibble_hi << shift_amount);
258 nibble_count += 1;
259 shift_amount += 4;
260 }
261 }
262 } else {
263 while (m_index < m_packet.size() && ::isxdigit(m_packet[m_index])) {
264 // Make sure we don't exceed the size of a uint64_t...
265 if (nibble_count >= (sizeof(uint64_t) * 2)) {
266 m_index = UINT64_MAX;
267 return fail_value;
268 }
269
270 uint8_t nibble = xdigit_to_sint(m_packet[m_index]);
271 // Big Endian
272 result <<= 4;
273 result |= nibble;
274
275 ++m_index;
276 ++nibble_count;
277 }
278 }
279 return result;
280 }
281
ConsumeFront(const llvm::StringRef & str)282 bool StringExtractor::ConsumeFront(const llvm::StringRef &str) {
283 llvm::StringRef S = GetStringRef();
284 if (!S.startswith(str))
285 return false;
286 else
287 m_index += str.size();
288 return true;
289 }
290
GetHexBytes(llvm::MutableArrayRef<uint8_t> dest,uint8_t fail_fill_value)291 size_t StringExtractor::GetHexBytes(llvm::MutableArrayRef<uint8_t> dest,
292 uint8_t fail_fill_value) {
293 size_t bytes_extracted = 0;
294 while (!dest.empty() && GetBytesLeft() > 0) {
295 dest[0] = GetHexU8(fail_fill_value);
296 if (!IsGood())
297 break;
298 ++bytes_extracted;
299 dest = dest.drop_front();
300 }
301
302 if (!dest.empty())
303 ::memset(dest.data(), fail_fill_value, dest.size());
304
305 return bytes_extracted;
306 }
307
308 //----------------------------------------------------------------------
309 // Decodes all valid hex encoded bytes at the head of the StringExtractor,
310 // limited by dst_len.
311 //
312 // Returns the number of bytes successfully decoded
313 //----------------------------------------------------------------------
GetHexBytesAvail(llvm::MutableArrayRef<uint8_t> dest)314 size_t StringExtractor::GetHexBytesAvail(llvm::MutableArrayRef<uint8_t> dest) {
315 size_t bytes_extracted = 0;
316 while (!dest.empty()) {
317 int decode = DecodeHexU8();
318 if (decode == -1)
319 break;
320 dest[0] = (uint8_t)decode;
321 dest = dest.drop_front();
322 ++bytes_extracted;
323 }
324 return bytes_extracted;
325 }
326
327 // Consume ASCII hex nibble character pairs until we have decoded byte_size
328 // bytes of data.
329
GetHexWithFixedSize(uint32_t byte_size,bool little_endian,uint64_t fail_value)330 uint64_t StringExtractor::GetHexWithFixedSize(uint32_t byte_size,
331 bool little_endian,
332 uint64_t fail_value) {
333 if (byte_size <= 8 && GetBytesLeft() >= byte_size * 2) {
334 uint64_t result = 0;
335 uint32_t i;
336 if (little_endian) {
337 // Little Endian
338 uint32_t shift_amount;
339 for (i = 0, shift_amount = 0; i < byte_size && IsGood();
340 ++i, shift_amount += 8) {
341 result |= ((uint64_t)GetHexU8() << shift_amount);
342 }
343 } else {
344 // Big Endian
345 for (i = 0; i < byte_size && IsGood(); ++i) {
346 result <<= 8;
347 result |= GetHexU8();
348 }
349 }
350 }
351 m_index = UINT64_MAX;
352 return fail_value;
353 }
354
GetHexByteString(std::string & str)355 size_t StringExtractor::GetHexByteString(std::string &str) {
356 str.clear();
357 str.reserve(GetBytesLeft() / 2);
358 char ch;
359 while ((ch = GetHexU8()) != '\0')
360 str.append(1, ch);
361 return str.size();
362 }
363
GetHexByteStringFixedLength(std::string & str,uint32_t nibble_length)364 size_t StringExtractor::GetHexByteStringFixedLength(std::string &str,
365 uint32_t nibble_length) {
366 str.clear();
367
368 uint32_t nibble_count = 0;
369 for (const char *pch = Peek();
370 (nibble_count < nibble_length) && (pch != nullptr);
371 str.append(1, GetHexU8(0, false)), pch = Peek(), nibble_count += 2) {
372 }
373
374 return str.size();
375 }
376
GetHexByteStringTerminatedBy(std::string & str,char terminator)377 size_t StringExtractor::GetHexByteStringTerminatedBy(std::string &str,
378 char terminator) {
379 str.clear();
380 char ch;
381 while ((ch = GetHexU8(0, false)) != '\0')
382 str.append(1, ch);
383 if (Peek() && *Peek() == terminator)
384 return str.size();
385
386 str.clear();
387 return str.size();
388 }
389
GetNameColonValue(llvm::StringRef & name,llvm::StringRef & value)390 bool StringExtractor::GetNameColonValue(llvm::StringRef &name,
391 llvm::StringRef &value) {
392 // Read something in the form of NNNN:VVVV; where NNNN is any character that
393 // is not a colon, followed by a ':' character, then a value (one or more ';'
394 // chars), followed by a ';'
395 if (m_index >= m_packet.size())
396 return fail();
397
398 llvm::StringRef view(m_packet);
399 if (view.empty())
400 return fail();
401
402 llvm::StringRef a, b, c, d;
403 view = view.substr(m_index);
404 std::tie(a, b) = view.split(':');
405 if (a.empty() || b.empty())
406 return fail();
407 std::tie(c, d) = b.split(';');
408 if (b == c && d.empty())
409 return fail();
410
411 name = a;
412 value = c;
413 if (d.empty())
414 m_index = m_packet.size();
415 else {
416 size_t bytes_consumed = d.data() - view.data();
417 m_index += bytes_consumed;
418 }
419 return true;
420 }
421
SkipSpaces()422 void StringExtractor::SkipSpaces() {
423 const size_t n = m_packet.size();
424 while (m_index < n && isspace(m_packet[m_index]))
425 ++m_index;
426 }
427