xref: /llvm-project/lldb/source/Breakpoint/WatchpointAlgorithms.cpp (revision 5953532615595918d006ace2ad83fe33d1cd3915)
1147d7a64SJason Molenda //===-- WatchpointAlgorithms.cpp ------------------------------------------===//
2147d7a64SJason Molenda //
3147d7a64SJason Molenda // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4147d7a64SJason Molenda // See https://llvm.org/LICENSE.txt for license information.
5147d7a64SJason Molenda // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6147d7a64SJason Molenda //
7147d7a64SJason Molenda //===----------------------------------------------------------------------===//
8147d7a64SJason Molenda 
9147d7a64SJason Molenda #include "lldb/Breakpoint/WatchpointAlgorithms.h"
10147d7a64SJason Molenda #include "lldb/Breakpoint/WatchpointResource.h"
11147d7a64SJason Molenda #include "lldb/Target/Process.h"
12147d7a64SJason Molenda #include "lldb/Utility/ArchSpec.h"
13147d7a64SJason Molenda #include "lldb/Utility/LLDBLog.h"
14147d7a64SJason Molenda #include "lldb/Utility/Log.h"
15147d7a64SJason Molenda 
16147d7a64SJason Molenda #include <algorithm>
17147d7a64SJason Molenda #include <utility>
18147d7a64SJason Molenda #include <vector>
19147d7a64SJason Molenda 
20147d7a64SJason Molenda using namespace lldb;
21147d7a64SJason Molenda using namespace lldb_private;
22147d7a64SJason Molenda 
23147d7a64SJason Molenda std::vector<WatchpointResourceSP>
AtomizeWatchpointRequest(addr_t addr,size_t size,bool read,bool write,WatchpointHardwareFeature supported_features,ArchSpec & arch)24147d7a64SJason Molenda WatchpointAlgorithms::AtomizeWatchpointRequest(
25147d7a64SJason Molenda     addr_t addr, size_t size, bool read, bool write,
26147d7a64SJason Molenda     WatchpointHardwareFeature supported_features, ArchSpec &arch) {
27147d7a64SJason Molenda 
28147d7a64SJason Molenda   std::vector<Region> entries;
29147d7a64SJason Molenda 
30*59535326SJason Molenda   if (supported_features & eWatchpointHardwareArmMASK) {
31147d7a64SJason Molenda     entries =
32147d7a64SJason Molenda         PowerOf2Watchpoints(addr, size,
33147d7a64SJason Molenda                             /*min_byte_size*/ 1,
34147d7a64SJason Molenda                             /*max_byte_size*/ INT32_MAX,
35147d7a64SJason Molenda                             /*address_byte_size*/ arch.GetAddressByteSize());
36147d7a64SJason Molenda   } else {
37147d7a64SJason Molenda     // As a fallback, assume we can watch any power-of-2
38147d7a64SJason Molenda     // number of bytes up through the size of an address in the target.
39147d7a64SJason Molenda     entries =
40147d7a64SJason Molenda         PowerOf2Watchpoints(addr, size,
41147d7a64SJason Molenda                             /*min_byte_size*/ 1,
42147d7a64SJason Molenda                             /*max_byte_size*/ arch.GetAddressByteSize(),
43147d7a64SJason Molenda                             /*address_byte_size*/ arch.GetAddressByteSize());
44147d7a64SJason Molenda   }
45147d7a64SJason Molenda 
46147d7a64SJason Molenda   Log *log = GetLog(LLDBLog::Watchpoints);
47147d7a64SJason Molenda   LLDB_LOGV(log, "AtomizeWatchpointRequest user request addr {0:x} size {1}",
48147d7a64SJason Molenda             addr, size);
49147d7a64SJason Molenda   std::vector<WatchpointResourceSP> resources;
50147d7a64SJason Molenda   for (Region &ent : entries) {
51147d7a64SJason Molenda     LLDB_LOGV(log, "AtomizeWatchpointRequest creating resource {0:x} size {1}",
52147d7a64SJason Molenda               ent.addr, ent.size);
53147d7a64SJason Molenda     WatchpointResourceSP wp_res_sp =
54147d7a64SJason Molenda         std::make_shared<WatchpointResource>(ent.addr, ent.size, read, write);
55147d7a64SJason Molenda     resources.push_back(wp_res_sp);
56147d7a64SJason Molenda   }
57147d7a64SJason Molenda 
58147d7a64SJason Molenda   return resources;
59147d7a64SJason Molenda }
60147d7a64SJason Molenda 
61147d7a64SJason Molenda // This should be `std::bit_ceil(aligned_size)` but
62147d7a64SJason Molenda // that requires C++20.
63147d7a64SJason Molenda // Calculates the smallest integral power of two that is not smaller than x.
bit_ceil(uint64_t input)64147d7a64SJason Molenda static uint64_t bit_ceil(uint64_t input) {
65147d7a64SJason Molenda   if (input <= 1 || llvm::popcount(input) == 1)
66147d7a64SJason Molenda     return input;
67147d7a64SJason Molenda 
68147d7a64SJason Molenda   return 1ULL << (64 - llvm::countl_zero(input));
69147d7a64SJason Molenda }
70147d7a64SJason Molenda 
71147d7a64SJason Molenda /// Convert a user's watchpoint request (\a user_addr and \a user_size)
72147d7a64SJason Molenda /// into hardware watchpoints, for a target that can watch a power-of-2
73147d7a64SJason Molenda /// region of memory (1, 2, 4, 8, etc), aligned to that same power-of-2
74147d7a64SJason Molenda /// memory address.
75147d7a64SJason Molenda ///
76147d7a64SJason Molenda /// If a user asks to watch 4 bytes at address 0x1002 (0x1002-0x1005
77147d7a64SJason Molenda /// inclusive) we can implement this with two 2-byte watchpoints
78147d7a64SJason Molenda /// (0x1002 and 0x1004) or with an 8-byte watchpoint at 0x1000.
79147d7a64SJason Molenda /// A 4-byte watchpoint at 0x1002 would not be properly 4 byte aligned.
80147d7a64SJason Molenda ///
81147d7a64SJason Molenda /// If a user asks to watch 16 bytes at 0x1000, and this target supports
82147d7a64SJason Molenda /// 8-byte watchpoints, we can implement this with two 8-byte watchpoints
83147d7a64SJason Molenda /// at 0x1000 and 0x1008.
84147d7a64SJason Molenda std::vector<WatchpointAlgorithms::Region>
PowerOf2Watchpoints(addr_t user_addr,size_t user_size,size_t min_byte_size,size_t max_byte_size,uint32_t address_byte_size)85147d7a64SJason Molenda WatchpointAlgorithms::PowerOf2Watchpoints(addr_t user_addr, size_t user_size,
86147d7a64SJason Molenda                                           size_t min_byte_size,
87147d7a64SJason Molenda                                           size_t max_byte_size,
88147d7a64SJason Molenda                                           uint32_t address_byte_size) {
89147d7a64SJason Molenda 
90147d7a64SJason Molenda   Log *log = GetLog(LLDBLog::Watchpoints);
91147d7a64SJason Molenda   LLDB_LOGV(log,
92147d7a64SJason Molenda             "AtomizeWatchpointRequest user request addr {0:x} size {1} "
93147d7a64SJason Molenda             "min_byte_size {2}, max_byte_size {3}, address_byte_size {4}",
94147d7a64SJason Molenda             user_addr, user_size, min_byte_size, max_byte_size,
95147d7a64SJason Molenda             address_byte_size);
96147d7a64SJason Molenda 
97147d7a64SJason Molenda   // Can't watch zero bytes.
98147d7a64SJason Molenda   if (user_size == 0)
99147d7a64SJason Molenda     return {};
100147d7a64SJason Molenda 
101147d7a64SJason Molenda   size_t aligned_size = std::max(user_size, min_byte_size);
102147d7a64SJason Molenda   /// Round up \a user_size to the next power-of-2 size
103147d7a64SJason Molenda   /// user_size == 8   -> aligned_size == 8
104147d7a64SJason Molenda   /// user_size == 9   -> aligned_size == 16
105147d7a64SJason Molenda   aligned_size = bit_ceil(aligned_size);
106147d7a64SJason Molenda 
107147d7a64SJason Molenda   addr_t aligned_start = user_addr & ~(aligned_size - 1);
108147d7a64SJason Molenda 
109147d7a64SJason Molenda   // Does this power-of-2 memory range, aligned to power-of-2 that the
110147d7a64SJason Molenda   // hardware can watch, completely cover the requested region.
111147d7a64SJason Molenda   if (aligned_size <= max_byte_size &&
112147d7a64SJason Molenda       aligned_start + aligned_size >= user_addr + user_size)
113147d7a64SJason Molenda     return {{aligned_start, aligned_size}};
114147d7a64SJason Molenda 
115147d7a64SJason Molenda   // If the maximum region we can watch is larger than the aligned
116147d7a64SJason Molenda   // size, try increasing the region size by one power of 2 and see
117147d7a64SJason Molenda   // if aligning to that amount can cover the requested region.
118147d7a64SJason Molenda   //
119147d7a64SJason Molenda   // Increasing the aligned_size repeatedly instead of splitting the
120147d7a64SJason Molenda   // watchpoint can result in us watching large regions of memory
121147d7a64SJason Molenda   // unintentionally when we could use small two watchpoints.  e.g.
122147d7a64SJason Molenda   //    user_addr 0x3ff8 user_size 32
123147d7a64SJason Molenda   // can be watched with four 8-byte watchpoints or if it's done with one
124147d7a64SJason Molenda   // MASK watchpoint, it would need to be a 32KB watchpoint (a 16KB
125147d7a64SJason Molenda   // watchpoint at 0x0 only covers 0x0000-0x4000).  A user request
126147d7a64SJason Molenda   // at the end of a power-of-2 region can lead to these undesirably
127147d7a64SJason Molenda   // large watchpoints and many false positive hits to ignore.
128147d7a64SJason Molenda   if (max_byte_size >= (aligned_size << 1)) {
129147d7a64SJason Molenda     aligned_size <<= 1;
130147d7a64SJason Molenda     aligned_start = user_addr & ~(aligned_size - 1);
131147d7a64SJason Molenda     if (aligned_size <= max_byte_size &&
132147d7a64SJason Molenda         aligned_start + aligned_size >= user_addr + user_size)
133147d7a64SJason Molenda       return {{aligned_start, aligned_size}};
134147d7a64SJason Molenda 
135147d7a64SJason Molenda     // Go back to our original aligned size, to try the multiple
136147d7a64SJason Molenda     // watchpoint approach.
137147d7a64SJason Molenda     aligned_size >>= 1;
138147d7a64SJason Molenda   }
139147d7a64SJason Molenda 
140147d7a64SJason Molenda   // We need to split the user's watchpoint into two or more watchpoints
141147d7a64SJason Molenda   // that can be monitored by hardware, because of alignment and/or size
142147d7a64SJason Molenda   // reasons.
143147d7a64SJason Molenda   aligned_size = std::min(aligned_size, max_byte_size);
144147d7a64SJason Molenda   aligned_start = user_addr & ~(aligned_size - 1);
145147d7a64SJason Molenda 
146147d7a64SJason Molenda   std::vector<Region> result;
147147d7a64SJason Molenda   addr_t current_address = aligned_start;
148147d7a64SJason Molenda   const addr_t user_end_address = user_addr + user_size;
149147d7a64SJason Molenda   while (current_address + aligned_size < user_end_address) {
150147d7a64SJason Molenda     result.push_back({current_address, aligned_size});
151147d7a64SJason Molenda     current_address += aligned_size;
152147d7a64SJason Molenda   }
153147d7a64SJason Molenda 
154147d7a64SJason Molenda   if (current_address < user_end_address)
155147d7a64SJason Molenda     result.push_back({current_address, aligned_size});
156147d7a64SJason Molenda 
157147d7a64SJason Molenda   return result;
158147d7a64SJason Molenda }
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