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Greg Claytond495c532011-05-17 03:37:42 +00001//===-- Memory.cpp ----------------------------------------------*- C++ -*-===//
2//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Greg Claytond495c532011-05-17 03:37:42 +00006//
7//===----------------------------------------------------------------------===//
8
9#include "lldb/Target/Memory.h"
Greg Claytond495c532011-05-17 03:37:42 +000010#include "lldb/Target/Process.h"
Zachary Turner666cc0b2017-03-04 01:30:05 +000011#include "lldb/Utility/DataBufferHeap.h"
Zachary Turner6f9e6902017-03-03 20:56:28 +000012#include "lldb/Utility/Log.h"
Pavel Labathb8093312019-03-06 14:41:43 +000013#include "lldb/Utility/RangeMap.h"
Pavel Labathd821c992018-08-07 11:07:21 +000014#include "lldb/Utility/State.h"
Greg Claytond495c532011-05-17 03:37:42 +000015
Jonas Devlieghere796ac802019-02-11 23:13:08 +000016#include <cinttypes>
17#include <memory>
18
Greg Claytond495c532011-05-17 03:37:42 +000019using namespace lldb;
20using namespace lldb_private;
21
22//----------------------------------------------------------------------
23// MemoryCache constructor
24//----------------------------------------------------------------------
Saleem Abdulrasoolbb19a132016-05-19 05:13:57 +000025MemoryCache::MemoryCache(Process &process)
Kate Stoneb9c1b512016-09-06 20:57:50 +000026 : m_mutex(), m_L1_cache(), m_L2_cache(), m_invalid_ranges(),
Saleem Abdulrasoolbb19a132016-05-19 05:13:57 +000027 m_process(process),
Kate Stoneb9c1b512016-09-06 20:57:50 +000028 m_L2_cache_line_byte_size(process.GetMemoryCacheLineSize()) {}
Greg Claytond495c532011-05-17 03:37:42 +000029
30//----------------------------------------------------------------------
31// Destructor
32//----------------------------------------------------------------------
Kate Stoneb9c1b512016-09-06 20:57:50 +000033MemoryCache::~MemoryCache() {}
34
35void MemoryCache::Clear(bool clear_invalid_ranges) {
36 std::lock_guard<std::recursive_mutex> guard(m_mutex);
37 m_L1_cache.clear();
38 m_L2_cache.clear();
39 if (clear_invalid_ranges)
40 m_invalid_ranges.Clear();
41 m_L2_cache_line_byte_size = m_process.GetMemoryCacheLineSize();
Greg Claytond495c532011-05-17 03:37:42 +000042}
43
Kate Stoneb9c1b512016-09-06 20:57:50 +000044void MemoryCache::AddL1CacheData(lldb::addr_t addr, const void *src,
45 size_t src_len) {
46 AddL1CacheData(
47 addr, DataBufferSP(new DataBufferHeap(DataBufferHeap(src, src_len))));
48}
49
50void MemoryCache::AddL1CacheData(lldb::addr_t addr,
51 const DataBufferSP &data_buffer_sp) {
52 std::lock_guard<std::recursive_mutex> guard(m_mutex);
53 m_L1_cache[addr] = data_buffer_sp;
54}
55
56void MemoryCache::Flush(addr_t addr, size_t size) {
57 if (size == 0)
58 return;
59
60 std::lock_guard<std::recursive_mutex> guard(m_mutex);
61
62 // Erase any blocks from the L1 cache that intersect with the flush range
63 if (!m_L1_cache.empty()) {
64 AddrRange flush_range(addr, size);
65 BlockMap::iterator pos = m_L1_cache.upper_bound(addr);
66 if (pos != m_L1_cache.begin()) {
67 --pos;
68 }
69 while (pos != m_L1_cache.end()) {
70 AddrRange chunk_range(pos->first, pos->second->GetByteSize());
71 if (!chunk_range.DoesIntersect(flush_range))
72 break;
73 pos = m_L1_cache.erase(pos);
74 }
75 }
76
77 if (!m_L2_cache.empty()) {
78 const uint32_t cache_line_byte_size = m_L2_cache_line_byte_size;
79 const addr_t end_addr = (addr + size - 1);
80 const addr_t first_cache_line_addr = addr - (addr % cache_line_byte_size);
81 const addr_t last_cache_line_addr =
82 end_addr - (end_addr % cache_line_byte_size);
83 // Watch for overflow where size will cause us to go off the end of the
84 // 64 bit address space
85 uint32_t num_cache_lines;
86 if (last_cache_line_addr >= first_cache_line_addr)
87 num_cache_lines = ((last_cache_line_addr - first_cache_line_addr) /
88 cache_line_byte_size) +
89 1;
90 else
91 num_cache_lines =
92 (UINT64_MAX - first_cache_line_addr + 1) / cache_line_byte_size;
93
94 uint32_t cache_idx = 0;
95 for (addr_t curr_addr = first_cache_line_addr; cache_idx < num_cache_lines;
96 curr_addr += cache_line_byte_size, ++cache_idx) {
97 BlockMap::iterator pos = m_L2_cache.find(curr_addr);
98 if (pos != m_L2_cache.end())
99 m_L2_cache.erase(pos);
100 }
101 }
102}
103
104void MemoryCache::AddInvalidRange(lldb::addr_t base_addr,
105 lldb::addr_t byte_size) {
106 if (byte_size > 0) {
Saleem Abdulrasoolbb19a132016-05-19 05:13:57 +0000107 std::lock_guard<std::recursive_mutex> guard(m_mutex);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000108 InvalidRanges::Entry range(base_addr, byte_size);
109 m_invalid_ranges.Append(range);
110 m_invalid_ranges.Sort();
111 }
Greg Clayton358cf1e2015-06-25 21:46:34 +0000112}
113
Kate Stoneb9c1b512016-09-06 20:57:50 +0000114bool MemoryCache::RemoveInvalidRange(lldb::addr_t base_addr,
115 lldb::addr_t byte_size) {
116 if (byte_size > 0) {
Saleem Abdulrasoolbb19a132016-05-19 05:13:57 +0000117 std::lock_guard<std::recursive_mutex> guard(m_mutex);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000118 const uint32_t idx = m_invalid_ranges.FindEntryIndexThatContains(base_addr);
119 if (idx != UINT32_MAX) {
120 const InvalidRanges::Entry *entry = m_invalid_ranges.GetEntryAtIndex(idx);
121 if (entry->GetRangeBase() == base_addr &&
122 entry->GetByteSize() == byte_size)
123 return m_invalid_ranges.RemoveEntrtAtIndex(idx);
124 }
125 }
126 return false;
Greg Claytond495c532011-05-17 03:37:42 +0000127}
128
Zachary Turner97206d52017-05-12 04:51:55 +0000129size_t MemoryCache::Read(addr_t addr, void *dst, size_t dst_len,
130 Status &error) {
Kate Stoneb9c1b512016-09-06 20:57:50 +0000131 size_t bytes_left = dst_len;
Greg Claytonde0e9d02012-04-13 20:37:20 +0000132
Adrian Prantl05097242018-04-30 16:49:04 +0000133 // Check the L1 cache for a range that contain the entire memory read. If we
134 // find a range in the L1 cache that does, we use it. Else we fall back to
135 // reading memory in m_L2_cache_line_byte_size byte sized chunks. The L1
136 // cache contains chunks of memory that are not required to be
137 // m_L2_cache_line_byte_size bytes in size, so we don't try anything tricky
138 // when reading from them (no partial reads from the L1 cache).
Greg Claytonde0e9d02012-04-13 20:37:20 +0000139
Kate Stoneb9c1b512016-09-06 20:57:50 +0000140 std::lock_guard<std::recursive_mutex> guard(m_mutex);
141 if (!m_L1_cache.empty()) {
142 AddrRange read_range(addr, dst_len);
143 BlockMap::iterator pos = m_L1_cache.upper_bound(addr);
144 if (pos != m_L1_cache.begin()) {
145 --pos;
Greg Clayton358cf1e2015-06-25 21:46:34 +0000146 }
Kate Stoneb9c1b512016-09-06 20:57:50 +0000147 AddrRange chunk_range(pos->first, pos->second->GetByteSize());
148 if (chunk_range.Contains(read_range)) {
149 memcpy(dst, pos->second->GetBytes() + addr - chunk_range.GetRangeBase(),
150 dst_len);
151 return dst_len;
Greg Claytond495c532011-05-17 03:37:42 +0000152 }
Kate Stoneb9c1b512016-09-06 20:57:50 +0000153 }
154
Adrian Prantl05097242018-04-30 16:49:04 +0000155 // If this memory read request is larger than the cache line size, then we
156 // (1) try to read as much of it at once as possible, and (2) don't add the
157 // data to the memory cache. We don't want to split a big read up into more
158 // separate reads than necessary, and with a large memory read request, it is
159 // unlikely that the caller function will ask for the next
Kate Stoneb9c1b512016-09-06 20:57:50 +0000160 // 4 bytes after the large memory read - so there's little benefit to saving
161 // it in the cache.
162 if (dst && dst_len > m_L2_cache_line_byte_size) {
163 size_t bytes_read =
164 m_process.ReadMemoryFromInferior(addr, dst, dst_len, error);
165 // Add this non block sized range to the L1 cache if we actually read
166 // anything
167 if (bytes_read > 0)
168 AddL1CacheData(addr, dst, bytes_read);
169 return bytes_read;
170 }
171
172 if (dst && bytes_left > 0) {
173 const uint32_t cache_line_byte_size = m_L2_cache_line_byte_size;
174 uint8_t *dst_buf = (uint8_t *)dst;
175 addr_t curr_addr = addr - (addr % cache_line_byte_size);
176 addr_t cache_offset = addr - curr_addr;
177
178 while (bytes_left > 0) {
179 if (m_invalid_ranges.FindEntryThatContains(curr_addr)) {
180 error.SetErrorStringWithFormat("memory read failed for 0x%" PRIx64,
181 curr_addr);
182 return dst_len - bytes_left;
183 }
184
185 BlockMap::const_iterator pos = m_L2_cache.find(curr_addr);
186 BlockMap::const_iterator end = m_L2_cache.end();
187
188 if (pos != end) {
189 size_t curr_read_size = cache_line_byte_size - cache_offset;
190 if (curr_read_size > bytes_left)
191 curr_read_size = bytes_left;
192
193 memcpy(dst_buf + dst_len - bytes_left,
194 pos->second->GetBytes() + cache_offset, curr_read_size);
195
196 bytes_left -= curr_read_size;
197 curr_addr += curr_read_size + cache_offset;
198 cache_offset = 0;
199
200 if (bytes_left > 0) {
201 // Get sequential cache page hits
202 for (++pos; (pos != end) && (bytes_left > 0); ++pos) {
203 assert((curr_addr % cache_line_byte_size) == 0);
204
205 if (pos->first != curr_addr)
206 break;
207
208 curr_read_size = pos->second->GetByteSize();
209 if (curr_read_size > bytes_left)
210 curr_read_size = bytes_left;
211
212 memcpy(dst_buf + dst_len - bytes_left, pos->second->GetBytes(),
213 curr_read_size);
214
215 bytes_left -= curr_read_size;
216 curr_addr += curr_read_size;
217
Adrian Prantl05097242018-04-30 16:49:04 +0000218 // We have a cache page that succeeded to read some bytes but not
219 // an entire page. If this happens, we must cap off how much data
220 // we are able to read...
Kate Stoneb9c1b512016-09-06 20:57:50 +0000221 if (pos->second->GetByteSize() != cache_line_byte_size)
222 return dst_len - bytes_left;
223 }
224 }
225 }
226
227 // We need to read from the process
228
229 if (bytes_left > 0) {
230 assert((curr_addr % cache_line_byte_size) == 0);
Jonas Devlieghered5b44032019-02-13 06:25:41 +0000231 std::unique_ptr<DataBufferHeap> data_buffer_heap_up(
Kate Stoneb9c1b512016-09-06 20:57:50 +0000232 new DataBufferHeap(cache_line_byte_size, 0));
233 size_t process_bytes_read = m_process.ReadMemoryFromInferior(
Jonas Devlieghered5b44032019-02-13 06:25:41 +0000234 curr_addr, data_buffer_heap_up->GetBytes(),
235 data_buffer_heap_up->GetByteSize(), error);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000236 if (process_bytes_read == 0)
237 return dst_len - bytes_left;
238
239 if (process_bytes_read != cache_line_byte_size)
Jonas Devlieghered5b44032019-02-13 06:25:41 +0000240 data_buffer_heap_up->SetByteSize(process_bytes_read);
241 m_L2_cache[curr_addr] = DataBufferSP(data_buffer_heap_up.release());
Kate Stoneb9c1b512016-09-06 20:57:50 +0000242 // We have read data and put it into the cache, continue through the
243 // loop again to get the data out of the cache...
244 }
245 }
246 }
247
248 return dst_len - bytes_left;
Greg Claytond495c532011-05-17 03:37:42 +0000249}
250
Kate Stoneb9c1b512016-09-06 20:57:50 +0000251AllocatedBlock::AllocatedBlock(lldb::addr_t addr, uint32_t byte_size,
252 uint32_t permissions, uint32_t chunk_size)
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000253 : m_range(addr, byte_size), m_permissions(permissions),
254 m_chunk_size(chunk_size)
Greg Claytond495c532011-05-17 03:37:42 +0000255{
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000256 // The entire address range is free to start with.
257 m_free_blocks.Append(m_range);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000258 assert(byte_size > chunk_size);
Greg Claytond495c532011-05-17 03:37:42 +0000259}
260
Kate Stoneb9c1b512016-09-06 20:57:50 +0000261AllocatedBlock::~AllocatedBlock() {}
Greg Claytond495c532011-05-17 03:37:42 +0000262
Kate Stoneb9c1b512016-09-06 20:57:50 +0000263lldb::addr_t AllocatedBlock::ReserveBlock(uint32_t size) {
Greg Clayton98f9bcc2017-02-22 23:42:55 +0000264 // We must return something valid for zero bytes.
265 if (size == 0)
266 size = 1;
Pavel Labath3b7e1982017-02-05 00:44:54 +0000267 Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000268
269 const size_t free_count = m_free_blocks.GetSize();
270 for (size_t i=0; i<free_count; ++i)
271 {
Greg Clayton21b4b2e2017-02-09 18:21:04 +0000272 auto &free_block = m_free_blocks.GetEntryRef(i);
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000273 const lldb::addr_t range_size = free_block.GetByteSize();
274 if (range_size >= size)
275 {
276 // We found a free block that is big enough for our data. Figure out how
Adrian Prantl05097242018-04-30 16:49:04 +0000277 // many chunks we will need and calculate the resulting block size we
278 // will reserve.
Greg Clayton98f9bcc2017-02-22 23:42:55 +0000279 addr_t addr = free_block.GetRangeBase();
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000280 size_t num_chunks = CalculateChunksNeededForSize(size);
281 lldb::addr_t block_size = num_chunks * m_chunk_size;
282 lldb::addr_t bytes_left = range_size - block_size;
283 if (bytes_left == 0)
284 {
285 // The newly allocated block will take all of the bytes in this
286 // available block, so we can just add it to the allocated ranges and
287 // remove the range from the free ranges.
288 m_reserved_blocks.Insert(free_block, false);
289 m_free_blocks.RemoveEntryAtIndex(i);
290 }
291 else
292 {
293 // Make the new allocated range and add it to the allocated ranges.
Greg Clayton21b4b2e2017-02-09 18:21:04 +0000294 Range<lldb::addr_t, uint32_t> reserved_block(free_block);
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000295 reserved_block.SetByteSize(block_size);
Adrian Prantl05097242018-04-30 16:49:04 +0000296 // Insert the reserved range and don't combine it with other blocks in
297 // the reserved blocks list.
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000298 m_reserved_blocks.Insert(reserved_block, false);
299 // Adjust the free range in place since we won't change the sorted
300 // ordering of the m_free_blocks list.
301 free_block.SetRangeBase(reserved_block.GetRangeEnd());
302 free_block.SetByteSize(bytes_left);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000303 }
Greg Clayton98f9bcc2017-02-22 23:42:55 +0000304 LLDB_LOGV(log, "({0}) (size = {1} ({1:x})) => {2:x}", this, size, addr);
305 return addr;
Greg Claytond495c532011-05-17 03:37:42 +0000306 }
Kate Stoneb9c1b512016-09-06 20:57:50 +0000307 }
Jim Inghame7701fe2014-08-08 20:01:41 +0000308
Greg Clayton98f9bcc2017-02-22 23:42:55 +0000309 LLDB_LOGV(log, "({0}) (size = {1} ({1:x})) => {2:x}", this, size,
310 LLDB_INVALID_ADDRESS);
311 return LLDB_INVALID_ADDRESS;
Greg Claytond495c532011-05-17 03:37:42 +0000312}
313
Kate Stoneb9c1b512016-09-06 20:57:50 +0000314bool AllocatedBlock::FreeBlock(addr_t addr) {
Kate Stoneb9c1b512016-09-06 20:57:50 +0000315 bool success = false;
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000316 auto entry_idx = m_reserved_blocks.FindEntryIndexThatContains(addr);
317 if (entry_idx != UINT32_MAX)
318 {
319 m_free_blocks.Insert(m_reserved_blocks.GetEntryRef(entry_idx), true);
320 m_reserved_blocks.RemoveEntryAtIndex(entry_idx);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000321 success = true;
322 }
Pavel Labath3b7e1982017-02-05 00:44:54 +0000323 Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
Greg Claytonac7c2ef2017-02-09 17:56:55 +0000324 LLDB_LOGV(log, "({0}) (addr = {1:x}) => {2}", this, addr, success);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000325 return success;
Greg Claytond495c532011-05-17 03:37:42 +0000326}
327
Kate Stoneb9c1b512016-09-06 20:57:50 +0000328AllocatedMemoryCache::AllocatedMemoryCache(Process &process)
329 : m_process(process), m_mutex(), m_memory_map() {}
330
331AllocatedMemoryCache::~AllocatedMemoryCache() {}
332
333void AllocatedMemoryCache::Clear() {
334 std::lock_guard<std::recursive_mutex> guard(m_mutex);
335 if (m_process.IsAlive()) {
336 PermissionsToBlockMap::iterator pos, end = m_memory_map.end();
337 for (pos = m_memory_map.begin(); pos != end; ++pos)
338 m_process.DoDeallocateMemory(pos->second->GetBaseAddress());
339 }
340 m_memory_map.clear();
Greg Claytond495c532011-05-17 03:37:42 +0000341}
342
Greg Claytond495c532011-05-17 03:37:42 +0000343AllocatedMemoryCache::AllocatedBlockSP
Kate Stoneb9c1b512016-09-06 20:57:50 +0000344AllocatedMemoryCache::AllocatePage(uint32_t byte_size, uint32_t permissions,
Zachary Turner97206d52017-05-12 04:51:55 +0000345 uint32_t chunk_size, Status &error) {
Kate Stoneb9c1b512016-09-06 20:57:50 +0000346 AllocatedBlockSP block_sp;
347 const size_t page_size = 4096;
348 const size_t num_pages = (byte_size + page_size - 1) / page_size;
349 const size_t page_byte_size = num_pages * page_size;
Greg Claytond495c532011-05-17 03:37:42 +0000350
Kate Stoneb9c1b512016-09-06 20:57:50 +0000351 addr_t addr = m_process.DoAllocateMemory(page_byte_size, permissions, error);
Greg Claytond495c532011-05-17 03:37:42 +0000352
Kate Stoneb9c1b512016-09-06 20:57:50 +0000353 Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
354 if (log) {
355 log->Printf("Process::DoAllocateMemory (byte_size = 0x%8.8" PRIx32
356 ", permissions = %s) => 0x%16.16" PRIx64,
357 (uint32_t)page_byte_size, GetPermissionsAsCString(permissions),
358 (uint64_t)addr);
359 }
Greg Claytond495c532011-05-17 03:37:42 +0000360
Kate Stoneb9c1b512016-09-06 20:57:50 +0000361 if (addr != LLDB_INVALID_ADDRESS) {
Jonas Devlieghere796ac802019-02-11 23:13:08 +0000362 block_sp = std::make_shared<AllocatedBlock>(addr, page_byte_size,
363 permissions, chunk_size);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000364 m_memory_map.insert(std::make_pair(permissions, block_sp));
365 }
366 return block_sp;
367}
368
369lldb::addr_t AllocatedMemoryCache::AllocateMemory(size_t byte_size,
370 uint32_t permissions,
Zachary Turner97206d52017-05-12 04:51:55 +0000371 Status &error) {
Kate Stoneb9c1b512016-09-06 20:57:50 +0000372 std::lock_guard<std::recursive_mutex> guard(m_mutex);
373
374 addr_t addr = LLDB_INVALID_ADDRESS;
375 std::pair<PermissionsToBlockMap::iterator, PermissionsToBlockMap::iterator>
376 range = m_memory_map.equal_range(permissions);
377
378 for (PermissionsToBlockMap::iterator pos = range.first; pos != range.second;
379 ++pos) {
380 addr = (*pos).second->ReserveBlock(byte_size);
Greg Claytond495c532011-05-17 03:37:42 +0000381 if (addr != LLDB_INVALID_ADDRESS)
Kate Stoneb9c1b512016-09-06 20:57:50 +0000382 break;
383 }
384
385 if (addr == LLDB_INVALID_ADDRESS) {
386 AllocatedBlockSP block_sp(AllocatePage(byte_size, permissions, 16, error));
387
388 if (block_sp)
389 addr = block_sp->ReserveBlock(byte_size);
390 }
391 Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
392 if (log)
393 log->Printf(
394 "AllocatedMemoryCache::AllocateMemory (byte_size = 0x%8.8" PRIx32
395 ", permissions = %s) => 0x%16.16" PRIx64,
396 (uint32_t)byte_size, GetPermissionsAsCString(permissions),
397 (uint64_t)addr);
398 return addr;
Greg Claytond495c532011-05-17 03:37:42 +0000399}
400
Kate Stoneb9c1b512016-09-06 20:57:50 +0000401bool AllocatedMemoryCache::DeallocateMemory(lldb::addr_t addr) {
402 std::lock_guard<std::recursive_mutex> guard(m_mutex);
Saleem Abdulrasoolbb19a132016-05-19 05:13:57 +0000403
Kate Stoneb9c1b512016-09-06 20:57:50 +0000404 PermissionsToBlockMap::iterator pos, end = m_memory_map.end();
405 bool success = false;
406 for (pos = m_memory_map.begin(); pos != end; ++pos) {
407 if (pos->second->Contains(addr)) {
408 success = pos->second->FreeBlock(addr);
409 break;
Greg Claytond495c532011-05-17 03:37:42 +0000410 }
Kate Stoneb9c1b512016-09-06 20:57:50 +0000411 }
412 Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
413 if (log)
414 log->Printf("AllocatedMemoryCache::DeallocateMemory (addr = 0x%16.16" PRIx64
415 ") => %i",
416 (uint64_t)addr, success);
417 return success;
Greg Claytond495c532011-05-17 03:37:42 +0000418}