1 // Copyright (C) 2019 Google LLC
2 //
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 "icing/legacy/index/icing-array-storage.h"
16
17 #include <sys/mman.h>
18
19 #include <algorithm>
20 #include <cinttypes>
21
22 #include "icing/legacy/core/icing-string-util.h"
23 #include "icing/legacy/core/icing-timer.h"
24 #include "icing/legacy/index/icing-bit-util.h"
25 #include "icing/legacy/index/icing-filesystem.h"
26 #include "icing/legacy/index/icing-mmapper.h"
27 #include "icing/util/logging.h"
28
29 using std::max;
30 using std::min;
31 using std::vector;
32
33 namespace icing {
34 namespace lib {
35
36 namespace {
37
38 // Do the cast and const dance.
MakeVoidPtr(const void * ptr)39 void *MakeVoidPtr(const void *ptr) { return const_cast<void *>(ptr); }
40
41 } // namespace
42
43 const uint32_t IcingArrayStorage::kPartialCrcLimitDiv = 8; // limit is 1/8th
44 const size_t IcingArrayStorage::kGrowElts = 1u << 14; // 16KB
45
IcingArrayStorage(const IcingFilesystem & filesystem)46 IcingArrayStorage::IcingArrayStorage(const IcingFilesystem &filesystem)
47 : mmapper_(nullptr), filesystem_(filesystem) {
48 Reset();
49 }
50
~IcingArrayStorage()51 IcingArrayStorage::~IcingArrayStorage() { delete mmapper_; }
52
Init(int fd,size_t fd_offset,bool map_shared,uint32_t elt_size,uint32_t num_elts,uint32_t max_num_elts,uint32_t * crc_ptr,bool init_crc)53 bool IcingArrayStorage::Init(int fd, size_t fd_offset, bool map_shared,
54 uint32_t elt_size, uint32_t num_elts,
55 uint32_t max_num_elts, uint32_t *crc_ptr,
56 bool init_crc) {
57 if (is_initialized()) {
58 return true;
59 }
60
61 // Compute capacity_num_.
62 uint64_t file_size = filesystem_.GetFileSize(fd);
63 if (file_size == IcingFilesystem::kBadFileSize) {
64 ICING_LOG(ERROR) << "Array storage could not get file size";
65 return false;
66 }
67 if (file_size < fd_offset) {
68 ICING_LOG(ERROR) << "Array storage file size " << file_size << " less than offset " << fd_offset;
69 return false;
70 }
71
72 uint32_t capacity_num_elts = (file_size - fd_offset) / elt_size;
73 if (capacity_num_elts < num_elts) {
74 ICING_LOG(ERROR) << "Array storage num elts " << num_elts << " > capacity num elts " << capacity_num_elts;
75 return false;
76 }
77
78 // Map beyond the capacity. We will grow underlying file to avoid
79 // SIGBUS.
80 mmapper_ = new IcingMMapper(fd, false, fd_offset, max_num_elts * elt_size,
81 map_shared ? MAP_SHARED : MAP_PRIVATE);
82 if (!mmapper_->is_valid()) {
83 ICING_LOG(ERROR) << "Array storage map failed";
84 delete mmapper_;
85 mmapper_ = nullptr;
86 return false;
87 }
88
89 fd_ = fd;
90 fd_offset_ = fd_offset;
91 map_shared_ = map_shared;
92 elt_size_ = elt_size;
93 // changes_end_ refers to the last element that was included in the
94 // current crc. If we change it, we must also update *crc_ptr_ to
95 // 0. Otherwise UpdateCrc will fail.
96 cur_num_ = changes_end_ = num_elts;
97 max_num_ = max_num_elts;
98 capacity_num_ = capacity_num_elts;
99 crc_ptr_ = crc_ptr;
100
101 if (crc_ptr_) {
102 uint32_t crc = IcingStringUtil::UpdateCrc32(0, array_cast<char>(),
103 cur_num_ * elt_size_);
104 if (init_crc) {
105 *crc_ptr_ = crc;
106 } else if (crc != *crc_ptr_) {
107 ICING_LOG(ERROR) << "Array storage bad crc " << crc << " vs " << *crc_ptr_;
108 goto failed;
109 }
110 }
111 return true;
112
113 failed:
114 Reset();
115 return false;
116 }
117
Reset()118 void IcingArrayStorage::Reset() {
119 fd_ = -1;
120 fd_offset_ = 0;
121 map_shared_ = false;
122 delete mmapper_;
123 mmapper_ = nullptr;
124 elt_size_ = 0;
125 cur_num_ = 0;
126 changes_end_ = 0;
127 max_num_ = 0;
128 capacity_num_ = 0;
129 crc_ptr_ = nullptr;
130 changes_.clear();
131 saved_orig_buf_.clear();
132 dirty_pages_.clear();
133 }
134
Truncate(uint32_t len)135 void IcingArrayStorage::Truncate(uint32_t len) {
136 if (len > cur_num_) {
137 ICING_LOG(FATAL) << "Length exceeds current size";
138 }
139
140 cur_num_ = len;
141 }
142
GetMutableMemInternal(uint32_t elt_idx,uint32_t elt_len)143 void *IcingArrayStorage::GetMutableMemInternal(uint32_t elt_idx,
144 uint32_t elt_len) {
145 uint32_t start_byte = elt_idx * elt_size_;
146 uint32_t len_bytes = elt_len * elt_size_;
147
148 if (!GrowIfNecessary(elt_idx + elt_len)) {
149 return nullptr;
150 }
151
152 cur_num_ = max(cur_num_, elt_idx + elt_len);
153
154 if (crc_ptr_) {
155 // Cache original value to update crcs.
156 if (elt_idx < changes_end_) {
157 uint32_t change_len = min(changes_end_, elt_idx + elt_len) - elt_idx;
158
159 // If we exceed kPartialCrcLimitDiv, clear changes_end_ to
160 // revert to full CRC.
161 if ((saved_orig_buf_.size() + change_len * elt_size_) *
162 kPartialCrcLimitDiv >
163 changes_end_ * elt_size_) {
164 ICING_VLOG(2) << "Array storage change tracking limit exceeded";
165 changes_.clear();
166 saved_orig_buf_.clear();
167 changes_end_ = 0;
168 *crc_ptr_ = 0;
169 } else {
170 changes_.push_back(Change(elt_idx, change_len));
171 saved_orig_buf_.append(array_cast<char>() + start_byte,
172 change_len * elt_size_);
173 }
174 }
175 }
176
177 if (!map_shared_) {
178 // Mark dirty pages.
179 int start_page = start_byte / IcingMMapper::system_page_size();
180 int end_page =
181 (start_byte + len_bytes - 1) / IcingMMapper::system_page_size();
182
183 for (int i = start_page; i <= end_page; i++) {
184 if (static_cast<size_t>(i) >= dirty_pages_.size()) {
185 dirty_pages_.resize(i + 1);
186 }
187 dirty_pages_[i] = true;
188 }
189 }
190
191 return MakeVoidPtr(&(array())[start_byte]);
192 }
193
GrowIfNecessary(uint32_t num_elts)194 bool IcingArrayStorage::GrowIfNecessary(uint32_t num_elts) {
195 if (num_elts <= capacity_num_) return true;
196 if (num_elts > max_num_) return false;
197
198 // Need to grow.
199 uint64_t new_file_size = fd_offset_ + uint64_t{num_elts} * elt_size_;
200 // Grow to kGrowElts boundary.
201 new_file_size = AlignUp(new_file_size, kGrowElts * elt_size_);
202 if (!filesystem_.Grow(fd_, new_file_size)) {
203 return false;
204 }
205 capacity_num_ = (new_file_size - fd_offset_) / elt_size_;
206 return true;
207 }
208
UpdateCrc()209 void IcingArrayStorage::UpdateCrc() {
210 if (!crc_ptr_) return;
211
212 // First apply the modified area. Keep a bitmap of already updated
213 // regions so we don't double-update.
214 vector<bool> updated(changes_end_);
215 uint32_t cur_offset = 0;
216 uint32_t cur_crc = *crc_ptr_;
217 int num_partial_crcs = 0;
218 int num_truncated = 0;
219 int num_overlapped = 0;
220 int num_duplicate = 0;
221 for (size_t i = 0; i < changes_.size(); i++) {
222 const Change &change = changes_[i];
223 if (change.elt_offset + change.elt_len > changes_end_) {
224 ICING_LOG(FATAL) << "Off " << change.elt_offset << " len "
225 << change.elt_len << " end " << changes_end_;
226 }
227
228 // Skip truncated tracked changes.
229 if (change.elt_offset >= cur_num_) {
230 ++num_truncated;
231 continue;
232 }
233
234 // Turn change buf into change^orig.
235 const char *buf_end =
236 &saved_orig_buf_[cur_offset + change.elt_len * elt_size_];
237 const char *cur_array = array_cast<char>() + change.elt_offset * elt_size_;
238 // Now xor in. SSE acceleration please?
239 for (char *cur = &saved_orig_buf_[cur_offset]; cur < buf_end;
240 cur++, cur_array++) {
241 *cur ^= *cur_array;
242 }
243
244 // Skip over already updated bytes by setting update to 0.
245 bool new_update = false;
246 bool overlap = false;
247 uint32_t cur_elt = change.elt_offset;
248 for (char *cur = &saved_orig_buf_[cur_offset]; cur < buf_end;
249 cur_elt++, cur += elt_size_) {
250 if (updated[cur_elt]) {
251 memset(cur, 0, elt_size_);
252 overlap = true;
253 } else {
254 updated[cur_elt] = true;
255 new_update = true;
256 }
257 }
258
259 // Apply update to crc.
260 if (new_update) {
261 cur_crc = IcingStringUtil::UpdateAtPositionCrc32(
262 cur_crc, changes_end_ * elt_size_, change.elt_offset * elt_size_,
263 buf_end - change.elt_len * elt_size_, change.elt_len * elt_size_);
264 num_partial_crcs++;
265 if (overlap) {
266 num_overlapped++;
267 }
268 } else {
269 num_duplicate++;
270 }
271 cur_offset += change.elt_len * elt_size_;
272 }
273 if (!changes_.empty()) {
274 ICING_VLOG(2) << "Array update partial crcs " << num_partial_crcs
275 << " truncated " << num_truncated << " overlapped " << num_overlapped
276 << " duplicate " << num_duplicate;
277 }
278
279 // Now update with grown area.
280 if (changes_end_ < cur_num_) {
281 cur_crc = IcingStringUtil::UpdateCrc32(
282 cur_crc, array_cast<char>() + changes_end_ * elt_size_,
283 (cur_num_ - changes_end_) * elt_size_);
284 ICING_VLOG(2) << "Array update tail crc offset " << changes_end_ << " -> " << cur_num_;
285 }
286
287 // Clear, now that we've applied changes.
288 changes_.clear();
289 saved_orig_buf_.clear();
290 changes_end_ = cur_num_;
291
292 // Commit new crc.
293 *crc_ptr_ = cur_crc;
294 }
295
Warm() const296 void IcingArrayStorage::Warm() const {
297 if (madvise(MakeVoidPtr(array()),
298 IcingMMapper::page_aligned_size(cur_num_ * elt_size_),
299 MADV_WILLNEED) != 0) {
300 ICING_LOG(FATAL) << "Failed to madvise()";
301 }
302 }
303
Clear()304 void IcingArrayStorage::Clear() {
305 cur_num_ = 0;
306 changes_end_ = 0;
307 changes_.clear();
308 saved_orig_buf_.clear();
309 dirty_pages_.clear();
310 if (crc_ptr_) *crc_ptr_ = 0;
311 }
312
313 // TODO(b/69383247): investigate strange behavior here
314 // If map_shared_ is false (i.e. we are using MAP_PRIVATE), dirty pages are
315 // flushed to the underlying file, but strangely a sync isn't done.
316 // If map_shared_ is true, then we call sync.
Sync()317 uint32_t IcingArrayStorage::Sync() {
318 if (!map_shared_) {
319 IcingTimer timer;
320 uint32_t num_flushed = 0; // pages flushed
321 uint32_t num_contiguous = 0; // contiguous series of pages flushed
322 uint32_t dirty_pages_size = dirty_pages_.size();
323
324 bool in_dirty = false;
325 uint32_t dirty_start = 0;
326 for (size_t i = 0; i < dirty_pages_size; i++) {
327 bool is_dirty = dirty_pages_[i];
328 if (in_dirty && !is_dirty) {
329 // Flush pages between dirty_start and this.
330 uint32_t dirty_end = i * IcingMMapper::system_page_size();
331 num_contiguous++;
332 num_flushed +=
333 (dirty_end - dirty_start) / IcingMMapper::system_page_size();
334
335 if (pwrite(fd_, array() + dirty_start, dirty_end - dirty_start,
336 fd_offset_ + dirty_start) !=
337 static_cast<ssize_t>(dirty_end - dirty_start)) {
338 ICING_LOG(ERROR) << "Flushing pages failed (" << dirty_start << ", " << dirty_end << ")";
339 }
340 in_dirty = false;
341 } else if (!in_dirty && is_dirty) {
342 dirty_start = i * IcingMMapper::system_page_size();
343 in_dirty = true;
344 }
345 }
346
347 // Flush remaining.
348 if (in_dirty) {
349 uint32_t dirty_end = dirty_pages_size * IcingMMapper::system_page_size();
350 num_contiguous++;
351 num_flushed +=
352 (dirty_end - dirty_start) / IcingMMapper::system_page_size();
353
354 if (pwrite(fd_, array() + dirty_start, dirty_end - dirty_start,
355 fd_offset_ + dirty_start) !=
356 static_cast<ssize_t>(dirty_end - dirty_start)) {
357 ICING_LOG(ERROR) << "Flushing pages failed (" << dirty_start << ", " << dirty_end << ")";
358 }
359 }
360
361 // Clear in one shot.
362 dirty_pages_.clear();
363
364 // Invalidate region so that we are rid of dirty private pages.
365 if (madvise(MakeVoidPtr(array()),
366 IcingMMapper::page_aligned_size(cur_num_ * elt_size_),
367 MADV_DONTNEED) != 0) {
368 ICING_LOG(FATAL) << "Failed to madvise()";
369 }
370
371 if (num_flushed > 0) {
372 ICING_VLOG(1) << "Flushing " << num_flushed << "/" << dirty_pages_size << " " << num_contiguous << " contiguous pages in " << timer.Elapsed() * 1000 << "ms.";
373 }
374
375 return num_flushed;
376 } else {
377 // Changes have been applied. msync() to ensure they are written out.
378 // Don't sync 0-length, which is an error in iOS and a no-op on Android
379 const size_t sync_length =
380 IcingMMapper::page_aligned_size(cur_num_ * elt_size_);
381 if (sync_length > 0) {
382 if (msync(MakeVoidPtr(array()), sync_length, MS_SYNC) != 0) {
383 ICING_LOG(FATAL) << "Failed to msync()";
384 }
385 }
386
387 return 0;
388 }
389 }
390
391 } // namespace lib
392 } // namespace icing
393