examples

Coverage Report

Created: 2025-05-02 00:07

/home/uke/oil/mycpp/gc_alloc.h
Line
Count
Source (jump to first uncovered line)
1
// gc_alloc.h: Functions that wrap gHeap.Allocate()
2
3
#ifndef MYCPP_GC_ALLOC_H
4
#define MYCPP_GC_ALLOC_H
5
6
#include <string.h>  // strlen
7
8
#include <new>      // placement new
9
#include <utility>  // std::forward
10
11
#include "mycpp/gc_obj.h"   // for RawObject, ObjHeader
12
#include "mycpp/gc_slab.h"  // for NewSlab()
13
#include "mycpp/gc_str.h"   // for NewStr()
14
15
#if defined(BUMP_LEAK)
16
  #include "mycpp/bump_leak_heap.h"
17
extern BumpLeakHeap gHeap;
18
#elif defined(MARK_SWEEP)
19
  #include "mycpp/mark_sweep_heap.h"
20
extern MarkSweepHeap gHeap;
21
#endif
22
23
#define VALIDATE_ROOTS 0
24
25
#if VALIDATE_ROOTS
26
static void ValidateRoot(const RawObject* obj) {
27
  if (obj == nullptr) {
28
    return;
29
  }
30
31
  ObjHeader* header = ObjHeader::FromObject(obj);
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  // log("obj %p header %p", obj, header);
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  switch (header->heap_tag) {
35
  case HeapTag::Global:
36
  case HeapTag::Opaque:
37
  case HeapTag::Scanned:
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  case HeapTag::FixedSize:
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    break;
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  default:
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    log("root %p heap %d type %d mask %d len %d", obj, header->heap_tag,
43
        header->type_tag, header->u_mask_npointers);
44
    FAIL(kShouldNotGetHere);
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    break;
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  }
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}
48
#endif
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50
// mycpp generates code that keeps track of the root set
51
class StackRoot {
52
 public:
53
12.9k
  StackRoot(void* root) {
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12.9k
    RawObject** obj = reinterpret_cast<RawObject**>(root);
55
#if VALIDATE_ROOTS
56
    ValidateRoot(*obj);
57
#endif
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12.9k
    gHeap.PushRoot(obj);
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12.9k
  }
60
61
12.9k
  ~StackRoot() {
62
12.9k
    gHeap.PopRoot();
63
12.9k
  }
64
};
65
66
// sugar for tests
67
class StackRoots {
68
 public:
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  // Note: void** seems logical, because these are pointers to pointers, but
70
  // the C++ compiler doesn't like it.
71
0
  StackRoots(std::initializer_list<void*> roots) {
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0
    n_ = roots.size();
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0
74
0
#if VALIDATE_ROOTS
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0
    int i = 0;
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0
#endif
77
0
78
0
    for (auto root : roots) {  // can't use roots[i]
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0
      RawObject** obj = reinterpret_cast<RawObject**>(root);
80
0
#if VALIDATE_ROOTS
81
0
      ValidateRoot(*obj);
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0
      i++;
83
0
#endif
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0
85
0
      gHeap.PushRoot(obj);
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0
    }
87
0
  }
88
89
0
  ~StackRoots() {
90
0
    for (int i = 0; i < n_; ++i) {
91
0
      gHeap.PopRoot();
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0
    }
93
0
  }
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95
 private:
96
  int n_;
97
};
98
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// Note:
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// - This function causes code bloat due to template expansion on hundreds of
101
//   types.  Could switch to a GC_NEW() macro
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// - GCC generates slightly larger code if you factor out void* place and new
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//   (place) T()
104
//
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// Variadic templates:
106
// https://eli.thegreenplace.net/2014/variadic-templates-in-c/
107
template <typename T, typename... Args>
108
6.76k
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
6.76k
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
6.76k
                "Expected no padding");
121
122
6.76k
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
6.76k
#if MARK_SWEEP
126
6.76k
  int obj_id;
127
6.76k
  int pool_id;
128
6.76k
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
6.76k
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
6.76k
#if MARK_SWEEP
134
6.76k
  header->obj_id = obj_id;
135
6.76k
  #ifndef NO_POOL_ALLOC
136
6.76k
  header->pool_id = pool_id;
137
6.76k
  #endif
138
6.76k
#endif
139
6.76k
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
6.76k
  memset(obj, 0, sizeof(T));
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6.76k
  return new (obj) T(std::forward<Args>(args)...);
145
6.76k
}
_Z5AllocIN14asdl_generated17arith_expr__ConstEJiEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
Unexecuted instantiation: _Z5AllocIN14asdl_generated17arith_expr__ConstEJRiEEPT_DpOT0_
_Z5AllocI4ListIiEJEEPT_DpOT0_
Line
Count
Source
108
14
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
14
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
14
                "Expected no padding");
121
122
14
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
14
#if MARK_SWEEP
126
14
  int obj_id;
127
14
  int pool_id;
128
14
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
14
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
14
#if MARK_SWEEP
134
14
  header->obj_id = obj_id;
135
14
  #ifndef NO_POOL_ALLOC
136
14
  header->pool_id = pool_id;
137
14
  #endif
138
14
#endif
139
14
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
14
  memset(obj, 0, sizeof(T));
144
14
  return new (obj) T(std::forward<Args>(args)...);
145
14
}
_Z5AllocIN5mylib5CFileEJRP8_IO_FILEEEPT_DpOT0_
Line
Count
Source
108
3
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
3
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
3
                "Expected no padding");
121
122
3
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
3
#if MARK_SWEEP
126
3
  int obj_id;
127
3
  int pool_id;
128
3
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
3
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
3
#if MARK_SWEEP
134
3
  header->obj_id = obj_id;
135
3
  #ifndef NO_POOL_ALLOC
136
3
  header->pool_id = pool_id;
137
3
  #endif
138
3
#endif
139
3
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
3
  memset(obj, 0, sizeof(T));
144
3
  return new (obj) T(std::forward<Args>(args)...);
145
3
}
Unexecuted instantiation: _Z5AllocI10ValueErrorJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI10IndexErrorJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN5iolib10SignalSafeEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI7OSErrorJRiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI7IOErrorJRiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI17KeyboardInterruptJEEPT_DpOT0_
_Z5AllocI4ListIP6BigStrEJEEPT_DpOT0_
Line
Count
Source
108
39
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
39
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
39
                "Expected no padding");
121
122
39
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
39
#if MARK_SWEEP
126
39
  int obj_id;
127
39
  int pool_id;
128
39
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
39
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
39
#if MARK_SWEEP
134
39
  header->obj_id = obj_id;
135
39
  #ifndef NO_POOL_ALLOC
136
39
  header->pool_id = pool_id;
137
39
  #endif
138
39
#endif
139
39
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
39
  memset(obj, 0, sizeof(T));
144
39
  return new (obj) T(std::forward<Args>(args)...);
145
39
}
_Z5AllocIN7classes10TextOutputEJRPN5mylib6WriterEEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN7classes4BaseEJDnEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN7classes8DerivedIEJDniEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN7classes9DerivedSSEJDnRP6BigStrS4_EEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN5mylib9BufWriterEJEEPT_DpOT0_
Line
Count
Source
108
36
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
36
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
36
                "Expected no padding");
121
122
36
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
36
#if MARK_SWEEP
126
36
  int obj_id;
127
36
  int pool_id;
128
36
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
36
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
36
#if MARK_SWEEP
134
36
  header->obj_id = obj_id;
135
36
  #ifndef NO_POOL_ALLOC
136
36
  header->pool_id = pool_id;
137
36
  #endif
138
36
#endif
139
36
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
36
  memset(obj, 0, sizeof(T));
144
36
  return new (obj) T(std::forward<Args>(args)...);
145
36
}
Unexecuted instantiation: _Z5AllocIN7classes10TextOutputEJRPN5mylib9BufWriterEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN7classes4NodeEJDniEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN7classes4NodeEJRPS1_RiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN7classes8DerivedIEJRPNS0_4BaseERiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN7classes9DerivedSSEJRPNS0_8DerivedIERP6BigStrS7_EEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN7classes4BaseEJRPNS0_9DerivedSSEEEPT_DpOT0_
_Z5AllocI6Tuple2IiP6BigStrEJiRS2_EEPT_DpOT0_
Line
Count
Source
108
5
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
5
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
5
                "Expected no padding");
121
122
5
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
5
#if MARK_SWEEP
126
5
  int obj_id;
127
5
  int pool_id;
128
5
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
5
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
5
#if MARK_SWEEP
134
5
  header->obj_id = obj_id;
135
5
  #ifndef NO_POOL_ALLOC
136
5
  header->pool_id = pool_id;
137
5
  #endif
138
5
#endif
139
5
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
5
  memset(obj, 0, sizeof(T));
144
5
  return new (obj) T(std::forward<Args>(args)...);
145
5
}
_Z5AllocIN10containers5PointEJiiEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocI4DictIP6BigStriEJEEPT_DpOT0_
Line
Count
Source
108
4
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
4
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
4
                "Expected no padding");
121
122
4
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
4
#if MARK_SWEEP
126
4
  int obj_id;
127
4
  int pool_id;
128
4
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
4
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
4
#if MARK_SWEEP
134
4
  header->obj_id = obj_id;
135
4
  #ifndef NO_POOL_ALLOC
136
4
  header->pool_id = pool_id;
137
4
  #endif
138
4
#endif
139
4
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
4
  memset(obj, 0, sizeof(T));
144
4
  return new (obj) T(std::forward<Args>(args)...);
145
4
}
Unexecuted instantiation: _Z5AllocI8KeyErrorJEEPT_DpOT0_
_Z5AllocI4DictIP6BigStriEJSt16initializer_listIS2_ES4_IiEEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocI4DictIP6BigStrS2_EJEEPT_DpOT0_
Line
Count
Source
108
5
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
5
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
5
                "Expected no padding");
121
122
5
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
5
#if MARK_SWEEP
126
5
  int obj_id;
127
5
  int pool_id;
128
5
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
5
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
5
#if MARK_SWEEP
134
5
  header->obj_id = obj_id;
135
5
  #ifndef NO_POOL_ALLOC
136
5
  header->pool_id = pool_id;
137
5
  #endif
138
5
#endif
139
5
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
5
  memset(obj, 0, sizeof(T));
144
5
  return new (obj) T(std::forward<Args>(args)...);
145
5
}
_Z5AllocIN10containers13HasDictMemberEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN12control_flow10ParseErrorEJRP6BigStrEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocI6Tuple2IP6BigStriEJRS2_iEEPT_DpOT0_
Line
Count
Source
108
3
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
3
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
3
                "Expected no padding");
121
122
3
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
3
#if MARK_SWEEP
126
3
  int obj_id;
127
3
  int pool_id;
128
3
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
3
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
3
#if MARK_SWEEP
134
3
  header->obj_id = obj_id;
135
3
  #ifndef NO_POOL_ALLOC
136
3
  header->pool_id = pool_id;
137
3
  #endif
138
3
#endif
139
3
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
3
  memset(obj, 0, sizeof(T));
144
3
  return new (obj) T(std::forward<Args>(args)...);
145
3
}
_Z5AllocI4ListIP6Tuple2IP6BigStriEEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocI4ListIP6Tuple2IiP6BigStrEEJEEPT_DpOT0_
Line
Count
Source
108
2
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
2
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
2
                "Expected no padding");
121
122
2
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
2
#if MARK_SWEEP
126
2
  int obj_id;
127
2
  int pool_id;
128
2
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
2
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
2
#if MARK_SWEEP
134
2
  header->obj_id = obj_id;
135
2
  #ifndef NO_POOL_ALLOC
136
2
  header->pool_id = pool_id;
137
2
  #endif
138
2
#endif
139
2
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
2
  memset(obj, 0, sizeof(T));
144
2
  return new (obj) T(std::forward<Args>(args)...);
145
2
}
_Z5AllocIN7modules3DogEJRP6BigStrEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN7module13CatEJEEPT_DpOT0_
Line
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Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN7modules6SphinxEJRP6BigStrEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN11pretty_asdl13List_MeasuredEJEEPT_DpOT0_
Line
Count
Source
108
276
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
276
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
276
                "Expected no padding");
121
122
276
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
276
#if MARK_SWEEP
126
276
  int obj_id;
127
276
  int pool_id;
128
276
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
276
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
276
#if MARK_SWEEP
134
276
  header->obj_id = obj_id;
135
276
  #ifndef NO_POOL_ALLOC
136
276
  header->pool_id = pool_id;
137
276
  #endif
138
276
#endif
139
276
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
276
  memset(obj, 0, sizeof(T));
144
276
  return new (obj) T(std::forward<Args>(args)...);
145
276
}
_Z5AllocIN9expr_asdl12expr__BinaryEJRP6BigStrDnDnEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN9expr_asdl12CompoundWordEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN9expr_asdl12CompoundWordEJRP4ListIP6BigStrEEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN10hnode_asdl11hnode__LeafEJRP6BigStrNS0_7color_eEEEPT_DpOT0_
Line
Count
Source
108
32
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
32
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
32
                "Expected no padding");
121
122
32
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
32
#if MARK_SWEEP
126
32
  int obj_id;
127
32
  int pool_id;
128
32
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
32
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
32
#if MARK_SWEEP
134
32
  header->obj_id = obj_id;
135
32
  #ifndef NO_POOL_ALLOC
136
32
  header->pool_id = pool_id;
137
32
  #endif
138
32
#endif
139
32
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
32
  memset(obj, 0, sizeof(T));
144
32
  return new (obj) T(std::forward<Args>(args)...);
145
32
}
_Z5AllocI4ListIPN10hnode_asdl5FieldEEJEEPT_DpOT0_
Line
Count
Source
108
57
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
57
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
57
                "Expected no padding");
121
122
57
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
57
#if MARK_SWEEP
126
57
  int obj_id;
127
57
  int pool_id;
128
57
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
57
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
57
#if MARK_SWEEP
134
57
  header->obj_id = obj_id;
135
57
  #ifndef NO_POOL_ALLOC
136
57
  header->pool_id = pool_id;
137
57
  #endif
138
57
#endif
139
57
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
57
  memset(obj, 0, sizeof(T));
144
57
  return new (obj) T(std::forward<Args>(args)...);
145
57
}
_Z5AllocIN10hnode_asdl13hnode__RecordEJRP6BigStrS4_S4_P4ListIPNS0_5FieldEEDnEEPT_DpOT0_
Line
Count
Source
108
57
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
57
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
57
                "Expected no padding");
121
122
57
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
57
#if MARK_SWEEP
126
57
  int obj_id;
127
57
  int pool_id;
128
57
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
57
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
57
#if MARK_SWEEP
134
57
  header->obj_id = obj_id;
135
57
  #ifndef NO_POOL_ALLOC
136
57
  header->pool_id = pool_id;
137
57
  #endif
138
57
#endif
139
57
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
57
  memset(obj, 0, sizeof(T));
144
57
  return new (obj) T(std::forward<Args>(args)...);
145
57
}
_Z5AllocIN11pretty_asdl10doc__BreakEJRP6BigStrEEPT_DpOT0_
Line
Count
Source
108
162
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
162
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
162
                "Expected no padding");
121
122
162
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
162
#if MARK_SWEEP
126
162
  int obj_id;
127
162
  int pool_id;
128
162
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
162
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
162
#if MARK_SWEEP
134
162
  header->obj_id = obj_id;
135
162
  #ifndef NO_POOL_ALLOC
136
162
  header->pool_id = pool_id;
137
162
  #endif
138
162
#endif
139
162
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
162
  memset(obj, 0, sizeof(T));
144
162
  return new (obj) T(std::forward<Args>(args)...);
145
162
}
_Z5AllocIN11pretty_asdl9doc__TextEJRP6BigStrEEPT_DpOT0_
Line
Count
Source
108
391
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
391
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
391
                "Expected no padding");
121
122
391
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
391
#if MARK_SWEEP
126
391
  int obj_id;
127
391
  int pool_id;
128
391
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
391
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
391
#if MARK_SWEEP
134
391
  header->obj_id = obj_id;
135
391
  #ifndef NO_POOL_ALLOC
136
391
  header->pool_id = pool_id;
137
391
  #endif
138
391
#endif
139
391
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
391
  memset(obj, 0, sizeof(T));
144
391
  return new (obj) T(std::forward<Args>(args)...);
145
391
}
_Z5AllocIN11pretty_asdl7MeasureEJiiEEPT_DpOT0_
Line
Count
Source
108
2.43k
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
2.43k
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
2.43k
                "Expected no padding");
121
122
2.43k
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
2.43k
#if MARK_SWEEP
126
2.43k
  int obj_id;
127
2.43k
  int pool_id;
128
2.43k
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
2.43k
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
2.43k
#if MARK_SWEEP
134
2.43k
  header->obj_id = obj_id;
135
2.43k
  #ifndef NO_POOL_ALLOC
136
2.43k
  header->pool_id = pool_id;
137
2.43k
  #endif
138
2.43k
#endif
139
2.43k
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
2.43k
  memset(obj, 0, sizeof(T));
144
2.43k
  return new (obj) T(std::forward<Args>(args)...);
145
2.43k
}
_Z5AllocIN9expr_asdl11expr__ConstEJiEEPT_DpOT0_
Line
Count
Source
108
15
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
15
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
15
                "Expected no padding");
121
122
15
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
15
#if MARK_SWEEP
126
15
  int obj_id;
127
15
  int pool_id;
128
15
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
15
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
15
#if MARK_SWEEP
134
15
  header->obj_id = obj_id;
135
15
  #ifndef NO_POOL_ALLOC
136
15
  header->pool_id = pool_id;
137
15
  #endif
138
15
#endif
139
15
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
15
  memset(obj, 0, sizeof(T));
144
15
  return new (obj) T(std::forward<Args>(args)...);
145
15
}
_Z5AllocIN9expr_asdl9expr__VarEJRP6BigStrEEPT_DpOT0_
Line
Count
Source
108
10
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
10
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
10
                "Expected no padding");
121
122
10
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
10
#if MARK_SWEEP
126
10
  int obj_id;
127
10
  int pool_id;
128
10
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
10
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
10
#if MARK_SWEEP
134
10
  header->obj_id = obj_id;
135
10
  #ifndef NO_POOL_ALLOC
136
10
  header->pool_id = pool_id;
137
10
  #endif
138
10
#endif
139
10
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
10
  memset(obj, 0, sizeof(T));
144
10
  return new (obj) T(std::forward<Args>(args)...);
145
10
}
Unexecuted instantiation: _Z5AllocIN10hnode_asdl11hnode__LeafEJRP6BigStrRNS0_7color_eEEEPT_DpOT0_
_Z5AllocI4DictIibEJEEPT_DpOT0_
Line
Count
Source
108
38
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
38
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
38
                "Expected no padding");
121
122
38
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
38
#if MARK_SWEEP
126
38
  int obj_id;
127
38
  int pool_id;
128
38
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
38
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
38
#if MARK_SWEEP
134
38
  header->obj_id = obj_id;
135
38
  #ifndef NO_POOL_ALLOC
136
38
  header->pool_id = pool_id;
137
38
  #endif
138
38
#endif
139
38
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
38
  memset(obj, 0, sizeof(T));
144
38
  return new (obj) T(std::forward<Args>(args)...);
145
38
}
Unexecuted instantiation: _Z5AllocI4DictIiiEJEEPT_DpOT0_
_Z5AllocIN8pp_hnode12HNodeEncoderEJEEPT_DpOT0_
Line
Count
Source
108
19
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
19
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
19
                "Expected no padding");
121
122
19
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
19
#if MARK_SWEEP
126
19
  int obj_id;
127
19
  int pool_id;
128
19
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
19
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
19
#if MARK_SWEEP
134
19
  header->obj_id = obj_id;
135
19
  #ifndef NO_POOL_ALLOC
136
19
  header->pool_id = pool_id;
137
19
  #endif
138
19
#endif
139
19
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
19
  memset(obj, 0, sizeof(T));
144
19
  return new (obj) T(std::forward<Args>(args)...);
145
19
}
_Z5AllocIN6pretty13PrettyPrinterEJRiEEPT_DpOT0_
Line
Count
Source
108
19
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
19
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
19
                "Expected no padding");
121
122
19
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
19
#if MARK_SWEEP
126
19
  int obj_id;
127
19
  int pool_id;
128
19
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
19
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
19
#if MARK_SWEEP
134
19
  header->obj_id = obj_id;
135
19
  #ifndef NO_POOL_ALLOC
136
19
  header->pool_id = pool_id;
137
19
  #endif
138
19
#endif
139
19
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
19
  memset(obj, 0, sizeof(T));
144
19
  return new (obj) T(std::forward<Args>(args)...);
145
19
}
_Z5AllocIN11pretty_asdl11MeasuredDocEJPNS0_9doc__TextEPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
267
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
267
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
267
                "Expected no padding");
121
122
267
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
267
#if MARK_SWEEP
126
267
  int obj_id;
127
267
  int pool_id;
128
267
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
267
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
267
#if MARK_SWEEP
134
267
  header->obj_id = obj_id;
135
267
  #ifndef NO_POOL_ALLOC
136
267
  header->pool_id = pool_id;
137
267
  #endif
138
267
#endif
139
267
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
267
  memset(obj, 0, sizeof(T));
144
267
  return new (obj) T(std::forward<Args>(args)...);
145
267
}
_Z5AllocIN11pretty_asdl11MeasuredDocEJPNS0_9doc__TextERPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
124
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
124
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
124
                "Expected no padding");
121
122
124
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
124
#if MARK_SWEEP
126
124
  int obj_id;
127
124
  int pool_id;
128
124
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
124
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
124
#if MARK_SWEEP
134
124
  header->obj_id = obj_id;
135
124
  #ifndef NO_POOL_ALLOC
136
124
  header->pool_id = pool_id;
137
124
  #endif
138
124
#endif
139
124
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
124
  memset(obj, 0, sizeof(T));
144
124
  return new (obj) T(std::forward<Args>(args)...);
145
124
}
_Z5AllocI4ListIPN11pretty_asdl11MeasuredDocEEJEEPT_DpOT0_
Line
Count
Source
108
333
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
333
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
333
                "Expected no padding");
121
122
333
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
333
#if MARK_SWEEP
126
333
  int obj_id;
127
333
  int pool_id;
128
333
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
333
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
333
#if MARK_SWEEP
134
333
  header->obj_id = obj_id;
135
333
  #ifndef NO_POOL_ALLOC
136
333
  header->pool_id = pool_id;
137
333
  #endif
138
333
#endif
139
333
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
333
  memset(obj, 0, sizeof(T));
144
333
  return new (obj) T(std::forward<Args>(args)...);
145
333
}
_Z5AllocIN11pretty_asdl7MeasureEJRiiEEPT_DpOT0_
Line
Count
Source
108
76
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
76
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
76
                "Expected no padding");
121
122
76
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
76
#if MARK_SWEEP
126
76
  int obj_id;
127
76
  int pool_id;
128
76
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
76
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
76
#if MARK_SWEEP
134
76
  header->obj_id = obj_id;
135
76
  #ifndef NO_POOL_ALLOC
136
76
  header->pool_id = pool_id;
137
76
  #endif
138
76
#endif
139
76
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
76
  memset(obj, 0, sizeof(T));
144
76
  return new (obj) T(std::forward<Args>(args)...);
145
76
}
_Z5AllocIN11pretty_asdl7MeasureEJiRiEEPT_DpOT0_
Line
Count
Source
108
628
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
628
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
628
                "Expected no padding");
121
122
628
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
628
#if MARK_SWEEP
126
628
  int obj_id;
127
628
  int pool_id;
128
628
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
628
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
628
#if MARK_SWEEP
134
628
  header->obj_id = obj_id;
135
628
  #ifndef NO_POOL_ALLOC
136
628
  header->pool_id = pool_id;
137
628
  #endif
138
628
#endif
139
628
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
628
  memset(obj, 0, sizeof(T));
144
628
  return new (obj) T(std::forward<Args>(args)...);
145
628
}
_Z5AllocIN11pretty_asdl11MeasuredDocEJPNS0_10doc__BreakEPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
162
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
162
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
162
                "Expected no padding");
121
122
162
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
162
#if MARK_SWEEP
126
162
  int obj_id;
127
162
  int pool_id;
128
162
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
162
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
162
#if MARK_SWEEP
134
162
  header->obj_id = obj_id;
135
162
  #ifndef NO_POOL_ALLOC
136
162
  header->pool_id = pool_id;
137
162
  #endif
138
162
#endif
139
162
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
162
  memset(obj, 0, sizeof(T));
144
162
  return new (obj) T(std::forward<Args>(args)...);
145
162
}
_Z5AllocIN11pretty_asdl11doc__IndentEJRiRPNS0_11MeasuredDocEEEPT_DpOT0_
Line
Count
Source
108
57
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
57
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
57
                "Expected no padding");
121
122
57
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
57
#if MARK_SWEEP
126
57
  int obj_id;
127
57
  int pool_id;
128
57
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
57
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
57
#if MARK_SWEEP
134
57
  header->obj_id = obj_id;
135
57
  #ifndef NO_POOL_ALLOC
136
57
  header->pool_id = pool_id;
137
57
  #endif
138
57
#endif
139
57
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
57
  memset(obj, 0, sizeof(T));
144
57
  return new (obj) T(std::forward<Args>(args)...);
145
57
}
_Z5AllocIN11pretty_asdl11MeasuredDocEJPNS0_11doc__IndentERPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
57
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
57
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
57
                "Expected no padding");
121
122
57
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
57
#if MARK_SWEEP
126
57
  int obj_id;
127
57
  int pool_id;
128
57
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
57
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
57
#if MARK_SWEEP
134
57
  header->obj_id = obj_id;
135
57
  #ifndef NO_POOL_ALLOC
136
57
  header->pool_id = pool_id;
137
57
  #endif
138
57
#endif
139
57
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
57
  memset(obj, 0, sizeof(T));
144
57
  return new (obj) T(std::forward<Args>(args)...);
145
57
}
_Z5AllocIN11pretty_asdl11MeasuredDocEJRPNS0_13List_MeasuredERPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
276
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
276
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
276
                "Expected no padding");
121
122
276
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
276
#if MARK_SWEEP
126
276
  int obj_id;
127
276
  int pool_id;
128
276
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
276
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
276
#if MARK_SWEEP
134
276
  header->obj_id = obj_id;
135
276
  #ifndef NO_POOL_ALLOC
136
276
  header->pool_id = pool_id;
137
276
  #endif
138
276
#endif
139
276
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
276
  memset(obj, 0, sizeof(T));
144
276
  return new (obj) T(std::forward<Args>(args)...);
145
276
}
_Z5AllocIN11pretty_asdl11MeasuredDocEJRPS1_RPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
76
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
76
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
76
                "Expected no padding");
121
122
76
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
76
#if MARK_SWEEP
126
76
  int obj_id;
127
76
  int pool_id;
128
76
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
76
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
76
#if MARK_SWEEP
134
76
  header->obj_id = obj_id;
135
76
  #ifndef NO_POOL_ALLOC
136
76
  header->pool_id = pool_id;
137
76
  #endif
138
76
#endif
139
76
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
76
  memset(obj, 0, sizeof(T));
144
76
  return new (obj) T(std::forward<Args>(args)...);
145
76
}
Unexecuted instantiation: _Z5AllocIN11pretty_asdl11doc__IfFlatEJRPNS0_11MeasuredDocES4_EEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl7MeasureEJRiS2_EEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl11MeasuredDocEJPNS0_11doc__IfFlatEPNS0_7MeasureEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl9doc__FlatEJRPNS0_11MeasuredDocEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl11MeasuredDocEJPNS0_9doc__FlatEPNS0_7MeasureEEEPT_DpOT0_
_Z5AllocIN11pretty_asdl11DocFragmentEJPNS0_11MeasuredDocEibPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
19
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
19
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
19
                "Expected no padding");
121
122
19
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
19
#if MARK_SWEEP
126
19
  int obj_id;
127
19
  int pool_id;
128
19
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
19
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
19
#if MARK_SWEEP
134
19
  header->obj_id = obj_id;
135
19
  #ifndef NO_POOL_ALLOC
136
19
  header->pool_id = pool_id;
137
19
  #endif
138
19
#endif
139
19
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
19
  memset(obj, 0, sizeof(T));
144
19
  return new (obj) T(std::forward<Args>(args)...);
145
19
}
_Z5AllocI4ListIPN11pretty_asdl11DocFragmentEEJEEPT_DpOT0_
Line
Count
Source
108
19
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
19
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
19
                "Expected no padding");
121
122
19
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
19
#if MARK_SWEEP
126
19
  int obj_id;
127
19
  int pool_id;
128
19
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
19
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
19
#if MARK_SWEEP
134
19
  header->obj_id = obj_id;
135
19
  #ifndef NO_POOL_ALLOC
136
19
  header->pool_id = pool_id;
137
19
  #endif
138
19
#endif
139
19
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
19
  memset(obj, 0, sizeof(T));
144
19
  return new (obj) T(std::forward<Args>(args)...);
145
19
}
_Z5AllocIN11pretty_asdl11DocFragmentEJRPNS0_11MeasuredDocEiRbRPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
57
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
57
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
57
                "Expected no padding");
121
122
57
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
57
#if MARK_SWEEP
126
57
  int obj_id;
127
57
  int pool_id;
128
57
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
57
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
57
#if MARK_SWEEP
134
57
  header->obj_id = obj_id;
135
57
  #ifndef NO_POOL_ALLOC
136
57
  header->pool_id = pool_id;
137
57
  #endif
138
57
#endif
139
57
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
57
  memset(obj, 0, sizeof(T));
144
57
  return new (obj) T(std::forward<Args>(args)...);
145
57
}
_Z5AllocIN11pretty_asdl11DocFragmentEJRPNS0_11MeasuredDocERiRbRPNS0_7MeasureEEEPT_DpOT0_
Line
Count
Source
108
724
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
724
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
724
                "Expected no padding");
121
122
724
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
724
#if MARK_SWEEP
126
724
  int obj_id;
127
724
  int pool_id;
128
724
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
724
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
724
#if MARK_SWEEP
134
724
  header->obj_id = obj_id;
135
724
  #ifndef NO_POOL_ALLOC
136
724
  header->pool_id = pool_id;
137
724
  #endif
138
724
#endif
139
724
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
724
  memset(obj, 0, sizeof(T));
144
724
  return new (obj) T(std::forward<Args>(args)...);
145
724
}
Unexecuted instantiation: _Z5AllocIN11pretty_asdl11DocFragmentEJRPNS0_11MeasuredDocERibRPNS0_7MeasureEEEPT_DpOT0_
_Z5AllocIN5parse10ParseErrorEJP6BigStrEEPT_DpOT0_
Line
Count
Source
108
5
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
5
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
5
                "Expected no padding");
121
122
5
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
5
#if MARK_SWEEP
126
5
  int obj_id;
127
5
  int pool_id;
128
5
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
5
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
5
#if MARK_SWEEP
134
5
  header->obj_id = obj_id;
135
5
  #ifndef NO_POOL_ALLOC
136
5
  header->pool_id = pool_id;
137
5
  #endif
138
5
#endif
139
5
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
5
  memset(obj, 0, sizeof(T));
144
5
  return new (obj) T(std::forward<Args>(args)...);
145
5
}
_Z5AllocIN9expr_asdl12expr__BinaryEJRP6BigStrRPNS0_6expr_tES7_EEPT_DpOT0_
Line
Count
Source
108
14
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
14
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
14
                "Expected no padding");
121
122
14
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
14
#if MARK_SWEEP
126
14
  int obj_id;
127
14
  int pool_id;
128
14
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
14
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
14
#if MARK_SWEEP
134
14
  header->obj_id = obj_id;
135
14
  #ifndef NO_POOL_ALLOC
136
14
  header->pool_id = pool_id;
137
14
  #endif
138
14
#endif
139
14
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
14
  memset(obj, 0, sizeof(T));
144
14
  return new (obj) T(std::forward<Args>(args)...);
145
14
}
_Z5AllocIN5parse5LexerEJRP6BigStrEEPT_DpOT0_
Line
Count
Source
108
14
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
14
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
14
                "Expected no padding");
121
122
14
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
14
#if MARK_SWEEP
126
14
  int obj_id;
127
14
  int pool_id;
128
14
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
14
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
14
#if MARK_SWEEP
134
14
  header->obj_id = obj_id;
135
14
  #ifndef NO_POOL_ALLOC
136
14
  header->pool_id = pool_id;
137
14
  #endif
138
14
#endif
139
14
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
14
  memset(obj, 0, sizeof(T));
144
14
  return new (obj) T(std::forward<Args>(args)...);
145
14
}
_Z5AllocIN5parse6ParserEJRPNS0_5LexerEEEPT_DpOT0_
Line
Count
Source
108
13
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
13
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
13
                "Expected no padding");
121
122
13
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
13
#if MARK_SWEEP
126
13
  int obj_id;
127
13
  int pool_id;
128
13
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
13
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
13
#if MARK_SWEEP
134
13
  header->obj_id = obj_id;
135
13
  #ifndef NO_POOL_ALLOC
136
13
  header->pool_id = pool_id;
137
13
  #endif
138
13
#endif
139
13
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
13
  memset(obj, 0, sizeof(T));
144
13
  return new (obj) T(std::forward<Args>(args)...);
145
13
}
_Z5AllocIN9expr_asdl9Measure_vEJRiiEEPT_DpOT0_
Line
Count
Source
108
10
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
10
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
10
                "Expected no padding");
121
122
10
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
10
#if MARK_SWEEP
126
10
  int obj_id;
127
10
  int pool_id;
128
10
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
10
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
10
#if MARK_SWEEP
134
10
  header->obj_id = obj_id;
135
10
  #ifndef NO_POOL_ALLOC
136
10
  header->pool_id = pool_id;
137
10
  #endif
138
10
#endif
139
10
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
10
  memset(obj, 0, sizeof(T));
144
10
  return new (obj) T(std::forward<Args>(args)...);
145
10
}
_Z5AllocIN9expr_asdl11MeasuredDocEJP6BigStrRPNS0_9Measure_vEEEPT_DpOT0_
Line
Count
Source
108
10
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
10
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
10
                "Expected no padding");
121
122
10
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
10
#if MARK_SWEEP
126
10
  int obj_id;
127
10
  int pool_id;
128
10
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
10
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
10
#if MARK_SWEEP
134
10
  header->obj_id = obj_id;
135
10
  #ifndef NO_POOL_ALLOC
136
10
  header->pool_id = pool_id;
137
10
  #endif
138
10
#endif
139
10
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
10
  memset(obj, 0, sizeof(T));
144
10
  return new (obj) T(std::forward<Args>(args)...);
145
10
}
Unexecuted instantiation: _Z5AllocIN10hnode_asdl18hnode__AlreadySeenEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN10hnode_asdl7hnode_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10hnode_asdl12hnode__ArrayEJP4ListIPNS0_7hnode_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10hnode_asdl5FieldEJRP6BigStrDnEEPT_DpOT0_
_Z5AllocIN10hnode_asdl11hnode__LeafEJP6BigStrNS0_7color_eEEEPT_DpOT0_
Line
Count
Source
108
35
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
35
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
35
                "Expected no padding");
121
122
35
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
35
#if MARK_SWEEP
126
35
  int obj_id;
127
35
  int pool_id;
128
35
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
35
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
35
#if MARK_SWEEP
134
35
  header->obj_id = obj_id;
135
35
  #ifndef NO_POOL_ALLOC
136
35
  header->pool_id = pool_id;
137
35
  #endif
138
35
#endif
139
35
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
35
  memset(obj, 0, sizeof(T));
144
35
  return new (obj) T(std::forward<Args>(args)...);
145
35
}
Unexecuted instantiation: _Z5AllocIN11pretty_asdl11doc__IndentEJiDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl9doc__FlatEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl11doc__IfFlatEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl11MeasuredDocEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl11DocFragmentEJDnibDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11pretty_asdl13List_MeasuredEJRP4ListIPNS0_11MeasuredDocEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN9expr_asdl9Measure_vEJiiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN9expr_asdl11MeasuredDocEJRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl19y_lvalue__ContainerEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl18sh_lvalue__IndexedEJRP6BigStriDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl16sh_lvalue__KeyedEJRP6BigStrS4_DnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN10value_asdl7value_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl5TokenEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl14eggex_ops__YesEJP4ListIPNS0_7value_tEEPS2_IPN11syntax_asdl5TokenEEPS2_IP6BigStrEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl14cmd_frag__ExprEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl12value__SliceEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl10value__StrEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN10value_asdl16InitializerValueEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl22value__InitializerListEJP4ListIPNS0_16InitializerValueEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl26value__InternalStringArrayEJP4ListIP6BigStrEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl16value__BashArrayEJDniEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl16value__BashAssocEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl11value__BoolEJbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl10value__IntEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl12value__FloatEJdEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl11value__ListEJP4ListIPNS0_7value_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl11value__DictEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl12value__RangeEJiiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl12value__EggexEJDnRP6BigStrP4ListIPNS0_7value_tEEPS5_IPN11syntax_asdl5TokenEEDnPS5_IS3_EEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl12value__PlaceEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl12value__FrameEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl17value__DebugFrameEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl16value__BoundFuncEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl18value__BuiltinFuncEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl11value__FuncEJRP6BigStrDnP4ListIPNS0_7value_tEEDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl18value__BuiltinProcEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl11value__ProcEJRP6BigStrDnDnDnDnbDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl11value__ExprEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl18value__CommandFragEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl14value__CommandEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl6IntBoxEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl16InitializerValueEJDnRP6BigStrbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl12ProcDefaultsEJDnDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl8LeftNameEJRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl10RegexMatchEJRP6BigStrP4ListIiEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl10SourceLineEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl12LiteralBlockEJDnP4ListIPN11syntax_asdl10SourceLineEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10value_asdl3ObjEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10hnode_asdl18hnode__AlreadySeenEJRiEEPT_DpOT0_
_Z5AllocIN10hnode_asdl5FieldEJP6BigStrRPNS0_7hnode_tEEEPT_DpOT0_
Line
Count
Source
108
105
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
105
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
105
                "Expected no padding");
121
122
105
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
105
#if MARK_SWEEP
126
105
  int obj_id;
127
105
  int pool_id;
128
105
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
105
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
105
#if MARK_SWEEP
134
105
  header->obj_id = obj_id;
135
105
  #ifndef NO_POOL_ALLOC
136
105
  header->pool_id = pool_id;
137
105
  #endif
138
105
#endif
139
105
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
105
  memset(obj, 0, sizeof(T));
144
105
  return new (obj) T(std::forward<Args>(args)...);
145
105
}
Unexecuted instantiation: _Z5AllocIN10hnode_asdl5FieldEJP6BigStrRPNS0_12hnode__ArrayEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10hnode_asdl13hnode__RecordEJRP6BigStrS3_S3_P4ListIPNS0_5FieldEERPS5_IPNS0_7hnode_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN10hnode_asdl5FieldEJP6BigStrRPNS0_13hnode__RecordEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl12CompoundWordEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl15cmd_value__ArgvEJP4ListIP6BigStrEPS2_IPN11syntax_asdl12CompoundWordEEbDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN12runtime_asdl9AssignArgEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl17cmd_value__AssignEJiP4ListIP6BigStrEPS2_IPN11syntax_asdl12CompoundWordEEPS2_IPNS0_9AssignArgEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl17part_value__ArrayEJP4ListIP6BigStrEbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN12runtime_asdl12part_value_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl19part_value__ExtGlobEJP4ListIPNS0_12part_value_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl12a_index__StrEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl12a_index__IntEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl18redirect_arg__PathEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl20redirect_arg__CopyFdEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl20redirect_arg__MoveFdEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl21redirect_arg__HereDocEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl17wait_status__ProcEJNS0_11job_state_eEiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl21wait_status__PipelineEJNS0_11job_state_eEP4ListIiEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl22wait_status__CancelledEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl15trace__ExternalEJP4ListIP6BigStrEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl9AssignArgEJRP6BigStrDnbDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl8ProcArgsEJDnDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl5PieceEJRP6BigStrbbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl11VarSubStateEJbDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl4CellEJbbbDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl10VTestPlaceEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl10RedirValueEJiDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl11StatusArrayEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl13CommandStatusEJbbbDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN12runtime_asdl7HayNodeEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18parse_result__NodeEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl14source__UnusedEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13source__StdinEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16source__MainFileEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17source__OtherFileEJRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl15source__DynamicEJRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl14source__VarRefEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16source__VariableEJRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13source__AliasEJRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16source__ReparsedEJRP6BigStrDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17source__SyntheticEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13loc__WordPartEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9loc__WordEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10loc__ArithEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12loc__CommandEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17loc__TokenTooLongEJDniiiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl21debug_frame__MainFileEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19debug_frame__SourceEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl21debug_frame__ProcLikeEJDnDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl26debug_frame__BeforeErrTrapEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl22bracket_op__WholeArrayEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl22bracket_op__ArrayIndexEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16suffix_op__UnaryEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17suffix_op__StaticEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17suffix_op__PatSubEJDnDniDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16suffix_op__SliceEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl26InitializerWord__ArrayWordEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl17InitializerWord_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl29word_part__InitializerLiteralEJDnP4ListIPNS0_17InitializerWord_tEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl25word_part__EscapedLiteralEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl20word_part__ZshVarSubEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19word_part__TildeSubEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19word_part__ArithSubEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl22word_part__BracedTupleEJP4ListIPNS0_12CompoundWordEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl22word_part__BracedRangeEJDniRP6BigStrS4_iEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl27word_part__BracedRangeDigitEJRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18word_part__ExtGlobEJDnP4ListIPNS0_12CompoundWordEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl25word_part__BashRegexGroupEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17word_part__SpliceEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18word_part__ExprSubEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl11word_part_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16word__BracedTreeEJP4ListIPNS0_11word_part_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12word__StringEJiRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12sh_lhs__NameEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19sh_lhs__IndexedNameEJDnRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl21sh_lhs__UnparsedIndexEJDnRP6BigStrS4_EEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl23arith_expr__UnaryAssignEJiDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl24arith_expr__BinaryAssignEJiDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17arith_expr__UnaryEJiDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18arith_expr__BinaryEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl21arith_expr__TernaryOpEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19bool_expr__WordTestEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17bool_expr__BinaryEJiDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16bool_expr__UnaryEJiDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl21bool_expr__LogicalNotEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl21bool_expr__LogicalAndEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl20bool_expr__LogicalOrEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13redir_loc__FdEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18redir_loc__VarNameEJRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl21redir_param__HereWordEJDnbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl20redir_param__HereDocEJDnDnP4ListIPNS0_11word_part_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18condition__YshExprEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl14case_arg__WordEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17case_arg__YshExprEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl6word_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10pat__WordsEJP4ListIPNS0_6word_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl6expr_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13pat__YshExprsEJP4ListIPNS0_6expr_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl15for_iter__WordsEJP4ListIPNS0_6word_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17for_iter__YshExprEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16proc_sig__ClosedEJDnDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl5RedirEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17command__RedirectEJDnP4ListIPNS0_5RedirEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl7EnvPairEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl15command__SimpleEJDnP4ListIPNS0_7EnvPairEEPS2_IPNS0_6word_tEEDnDnbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl22command__ExpandedAliasEJDnP4ListIPNS0_7EnvPairEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17command__SentenceEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl10AssignPairEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl21command__ShAssignmentEJDnP4ListIPNS0_10AssignPairEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl20command__ControlFlowEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl9command_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17command__PipelineEJDnP4ListIPNS0_9command_tEEPS2_IPNS0_5TokenEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl14command__AndOrEJP4ListIPNS0_9command_tEEPS2_IPNS0_5TokenEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16command__DoGroupEJDnP4ListIPNS0_9command_tEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17command__SubshellEJDnDnDnbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl15command__DParenEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17command__DBracketEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16command__ForEachEJDnP4ListIP6BigStrEDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16command__ForExprEJDnDnDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19command__WhileUntilEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl5IfArmEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11command__IfEJDnP4ListIPNS0_5IfArmEEDnPS2_IPNS0_9command_tEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl7CaseArmEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13command__CaseEJDnDnDnP4ListIPNS0_7CaseArmEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19command__ShFunctionEJDnDnRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18command__TimeBlockEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl20command__CommandListEJP4ListIPNS0_9command_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl17command__BareDeclEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl15command__RetvalEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18glob_part__LiteralEJiRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19glob_part__OperatorEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl20glob_part__CharClassEJbP4ListIP6BigStrEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl20printf_part__PercentEJP4ListIPNS0_5TokenEEDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19place_op__SubscriptEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl19place_op__AttributeEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9expr__VarEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11expr__ConstEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl10place_op_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11expr__PlaceEJDnRP6BigStrP4ListIPNS0_10place_op_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13expr__LiteralEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl8NameTypeEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12expr__LambdaEJP4ListIPNS0_8NameTypeEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11expr__UnaryEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12expr__BinaryEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13expr__CompareEJDnP4ListIPNS0_5TokenEEPS2_IPNS0_6expr_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl14expr__FuncCallEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11expr__IfExpEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11expr__TupleEJDnP4ListIPNS0_6expr_tEENS0_14expr_context_eEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10expr__ListEJDnP4ListIPNS0_6expr_tEENS0_14expr_context_eEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10expr__DictEJDnP4ListIPNS0_6expr_tEES6_EEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl13ComprehensionEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl14expr__ListCompEJDnDnP4ListIPNS0_13ComprehensionEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl14expr__DictCompEJDnDnDnP4ListIPNS0_13ComprehensionEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl18expr__GeneratorExpEJDnP4ListIPNS0_13ComprehensionEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11expr__RangeEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11expr__SliceEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12expr__SpreadEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl26class_literal_term__SpliceEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16re_repeat__RangeEJDnRP6BigStrS4_DnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13re__PrimitiveEJDniEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl20class_literal_term_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl20re__CharClassLiteralEJbP4ListIPNS0_20class_literal_term_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl17char_class_term_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13re__CharClassEJbP4ListIPNS0_17char_class_term_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10re__SpliceEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10re__RepeatEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl4re_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl7re__SeqEJP4ListIPNS0_4re_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl7re__AltEJP4ListIPNS0_4re_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9re__GroupEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11re__CaptureEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16re__BacktrackingEJbDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16re__LiteralCharsEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12BoolParamBoxEJbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11IntParamBoxEJiEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10SourceLineEJiRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl5TokenEJiiiDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12CompoundWordEJP4ListIPNS0_11word_part_tEEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12BracedVarSubEJDnDnRP6BigStrDnDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12DoubleQuotedEJDnP4ListIPNS0_11word_part_tEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12SingleQuotedEJDnRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl12SimpleVarSubEJDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10CommandSubEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl15YshArrayLiteralEJDnP4ListIPNS0_6word_tEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl8NamedArgEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl7ArgListEJDnP4ListIPNS0_6expr_tEEDnPS2_IPNS0_8NamedArgEEDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9AssocPairEJDnDnbEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl5RedirEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10AssignPairEJDnDnNS0_11assign_op_eEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl7EnvPairEJDnRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl7CaseArmEJDnDnDnP4ListIPNS0_9command_tEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9EggexFlagEJbDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl9EggexFlagEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl5EggexEJDnDnP4ListIPNS0_9EggexFlagEEDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl5IfArmEJDnDnDnP4ListIPNS0_9command_tEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10BraceGroupEJDnDnP4ListIPNS0_9command_tEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl5ParamEJDnRP6BigStrDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9RestParamEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl5ParamEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10ParamGroupEJP4ListIPNS0_5ParamEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl4ProcEJDnDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl4FuncEJDnDnDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl16ParsedAssignmentEJDnDniDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl7VarDeclEJDnP4ListIPNS0_8NameTypeEEDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl7y_lhs_tEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl8MutationEJDnP4ListIPNS0_7y_lhs_tEEDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl11ExprCommandEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN11syntax_asdl8TypeExprEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl8TypeExprEJDnRP6BigStrP4ListIPS1_EEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl8NameTypeEJDnRP6BigStrDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl13ComprehensionEJP4ListIPNS0_8NameTypeEEDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl8NamedArgEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9SubscriptEJDnDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9AttributeEJDnDnDnRP6BigStrNS0_14expr_context_eEEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl10PosixClassEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9PerlClassEJDnRP6BigStrEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl8CharCodeEJDnibEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl9CharRangeEJDnDnEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl15List_of_commandEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocIN11syntax_asdl15List_of_commandEJRP4ListIPNS0_9command_tEEEEPT_DpOT0_
_Z5AllocIN15scoped_resource7MyErrorEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15scoped_resource8DirStackEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocI4ListIbEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN9test_cast11ColorOutputEJRPN5mylib9BufWriterEEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN9test_cast12value__EggexEJRP6BigStrEEPT_DpOT0_
Line
Count
Source
108
3
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
3
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
3
                "Expected no padding");
121
122
3
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
3
#if MARK_SWEEP
126
3
  int obj_id;
127
3
  int pool_id;
128
3
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
3
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
3
#if MARK_SWEEP
134
3
  header->obj_id = obj_id;
135
3
  #ifndef NO_POOL_ALLOC
136
3
  header->pool_id = pool_id;
137
3
  #endif
138
3
#endif
139
3
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
3
  memset(obj, 0, sizeof(T));
144
3
  return new (obj) T(std::forward<Args>(args)...);
145
3
}
_Z5AllocIN9test_cast10value__IntEJiEEPT_DpOT0_
Line
Count
Source
108
2
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
2
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
2
                "Expected no padding");
121
122
2
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
2
#if MARK_SWEEP
126
2
  int obj_id;
127
2
  int pool_id;
128
2
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
2
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
2
#if MARK_SWEEP
134
2
  header->obj_id = obj_id;
135
2
  #ifndef NO_POOL_ALLOC
136
2
  header->pool_id = pool_id;
137
2
  #endif
138
2
#endif
139
2
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
2
  memset(obj, 0, sizeof(T));
144
2
  return new (obj) T(std::forward<Args>(args)...);
145
2
}
_Z5AllocIN15test_classes_gc6OpaqueEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc10OpaqueBaseEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc13OpaqueDerivedEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc8PointersEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc12PointersBaseEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc15PointersDerivedEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc14BaseWithMethodEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc17DerivedWithMethodEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc8WithDictEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN15test_classes_gc6PrintfEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
Unexecuted instantiation: _Z5AllocI4ListIPN15test_classes_gc10OpaqueBaseEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN15test_classes_gc12PointersBaseEEJEEPT_DpOT0_
Unexecuted instantiation: _Z5AllocI4ListIPN15test_classes_gc14BaseWithMethodEEJEEPT_DpOT0_
_Z5AllocI4DictIP6BigStrS2_EJSt16initializer_listIS2_ES5_EEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN17test_default_args3FooEJiEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN17test_default_args3FooEJiiEEPT_DpOT0_
Line
Count
Source
108
2
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
2
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
2
                "Expected no padding");
121
122
2
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
2
#if MARK_SWEEP
126
2
  int obj_id;
127
2
  int pool_id;
128
2
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
2
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
2
#if MARK_SWEEP
134
2
  header->obj_id = obj_id;
135
2
  #ifndef NO_POOL_ALLOC
136
2
  header->pool_id = pool_id;
137
2
  #endif
138
2
#endif
139
2
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
2
  memset(obj, 0, sizeof(T));
144
2
  return new (obj) T(std::forward<Args>(args)...);
145
2
}
_Z5AllocIN12test_globals7MyClassEJiEEPT_DpOT0_
Line
Count
Source
108
10
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
10
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
10
                "Expected no padding");
121
122
10
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
10
#if MARK_SWEEP
126
10
  int obj_id;
127
10
  int pool_id;
128
10
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
10
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
10
#if MARK_SWEEP
134
10
  header->obj_id = obj_id;
135
10
  #ifndef NO_POOL_ALLOC
136
10
  header->pool_id = pool_id;
137
10
  #endif
138
10
#endif
139
10
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
10
  memset(obj, 0, sizeof(T));
144
10
  return new (obj) T(std::forward<Args>(args)...);
145
10
}
_Z5AllocI7OSErrorJiEEPT_DpOT0_
Line
Count
Source
108
2
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
2
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
2
                "Expected no padding");
121
122
2
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
2
#if MARK_SWEEP
126
2
  int obj_id;
127
2
  int pool_id;
128
2
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
2
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
2
#if MARK_SWEEP
134
2
  header->obj_id = obj_id;
135
2
  #ifndef NO_POOL_ALLOC
136
2
  header->pool_id = pool_id;
137
2
  #endif
138
2
#endif
139
2
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
2
  memset(obj, 0, sizeof(T));
144
2
  return new (obj) T(std::forward<Args>(args)...);
145
2
}
_Z5AllocI6Tuple2IiP6BigStrEJRiS2_EEPT_DpOT0_
Line
Count
Source
108
11
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
11
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
11
                "Expected no padding");
121
122
11
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
11
#if MARK_SWEEP
126
11
  int obj_id;
127
11
  int pool_id;
128
11
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
11
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
11
#if MARK_SWEEP
134
11
  header->obj_id = obj_id;
135
11
  #ifndef NO_POOL_ALLOC
136
11
  header->pool_id = pool_id;
137
11
  #endif
138
11
#endif
139
11
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
11
  memset(obj, 0, sizeof(T));
144
11
  return new (obj) T(std::forward<Args>(args)...);
145
11
}
_Z5AllocI13StopIterationJEEPT_DpOT0_
Line
Count
Source
108
3
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
3
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
3
                "Expected no padding");
121
122
3
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
3
#if MARK_SWEEP
126
3
  int obj_id;
127
3
  int pool_id;
128
3
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
3
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
3
#if MARK_SWEEP
134
3
  header->obj_id = obj_id;
135
3
  #ifndef NO_POOL_ALLOC
136
3
  header->pool_id = pool_id;
137
3
  #endif
138
3
#endif
139
3
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
3
  memset(obj, 0, sizeof(T));
144
3
  return new (obj) T(std::forward<Args>(args)...);
145
3
}
_Z5AllocIN14test_iterators3FooEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocIN12test_strings3FooEJEEPT_DpOT0_
Line
Count
Source
108
1
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
1
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
1
                "Expected no padding");
121
122
1
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
1
#if MARK_SWEEP
126
1
  int obj_id;
127
1
  int pool_id;
128
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
1
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
1
#if MARK_SWEEP
134
1
  header->obj_id = obj_id;
135
1
  #ifndef NO_POOL_ALLOC
136
1
  header->pool_id = pool_id;
137
1
  #endif
138
1
#endif
139
1
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
1
  memset(obj, 0, sizeof(T));
144
1
  return new (obj) T(std::forward<Args>(args)...);
145
1
}
_Z5AllocI6Tuple2IiiEJiiEEPT_DpOT0_
Line
Count
Source
108
2
T* Alloc(Args&&... args) {
109
  // Alloc() allocates space for both a header and object and guarantees that
110
  // they're adjacent in memory (so that they're at known offsets from one
111
  // another). However, this means that the address that the object is
112
  // constructed at is offset from the address returned by the memory allocator
113
  // (by the size of the header), and therefore may not be sufficiently aligned.
114
  // Here we assert that the object will be sufficiently aligned by making the
115
  // equivalent assertion that zero padding would be required to align it.
116
  // Note: the required padding is given by the following (according to
117
  // https://en.wikipedia.org/wiki/Data_structure_alignment):
118
  // `padding = -offset & (align - 1)`.
119
2
  static_assert((-sizeof(ObjHeader) & (alignof(T) - 1)) == 0,
120
2
                "Expected no padding");
121
122
2
  DCHECK(gHeap.is_initialized_);
123
124
0
  constexpr size_t num_bytes = sizeof(ObjHeader) + sizeof(T);
125
2
#if MARK_SWEEP
126
2
  int obj_id;
127
2
  int pool_id;
128
2
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
129
#else
130
  void* place = gHeap.Allocate(num_bytes);
131
#endif
132
2
  ObjHeader* header = new (place) ObjHeader(T::obj_header());
133
2
#if MARK_SWEEP
134
2
  header->obj_id = obj_id;
135
2
  #ifndef NO_POOL_ALLOC
136
2
  header->pool_id = pool_id;
137
2
  #endif
138
2
#endif
139
2
  void* obj = header->ObjectAddress();
140
  // Now that mycpp generates code to initialize every field, we should
141
  // get rid of this.
142
  // TODO: fix uftrace failure, maybe by upgrading, or working around
143
2
  memset(obj, 0, sizeof(T));
144
2
  return new (obj) T(std::forward<Args>(args)...);
145
2
}
146
147
//
148
// String "Constructors".  We need these because of the "flexible array"
149
// pattern.  I don't think "new BigStr()" can do that, and placement new would
150
// require mycpp to generate 2 statements everywhere.
151
//
152
153
2.52k
inline BigStr* NewStr(int len) {
154
2.52k
  if (len == 0) {  // e.g. BufLineReader::readline() can use this optimization
155
0
    return kEmptyString;
156
0
  }
157
158
2.52k
  int obj_len = kStrHeaderSize + len + 1;  // NUL terminator
159
2.52k
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
160
2.52k
#if MARK_SWEEP
161
2.52k
  int obj_id;
162
2.52k
  int pool_id;
163
2.52k
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
164
#else
165
  void* place = gHeap.Allocate(num_bytes);
166
#endif
167
2.52k
  ObjHeader* header = new (place) ObjHeader(BigStr::obj_header());
168
169
2.52k
  auto s = new (header->ObjectAddress()) BigStr();
170
171
2.52k
  s->data_[len] = '\0';  // NUL terminate
172
2.52k
  s->len_ = len;
173
2.52k
  s->hash_ = 0;
174
2.52k
  s->is_hashed_ = 0;
175
176
2.52k
#if MARK_SWEEP
177
2.52k
  header->obj_id = obj_id;
178
2.52k
  #ifndef NO_POOL_ALLOC
179
2.52k
  header->pool_id = pool_id;
180
2.52k
  #endif
181
2.52k
#endif
182
2.52k
  return s;
183
2.52k
}
184
185
// Call OverAllocatedStr() when you don't know the length of the string up
186
// front, e.g. with snprintf().  CALLER IS RESPONSIBLE for calling
187
// s->MaybeShrink() afterward!
188
60
inline BigStr* OverAllocatedStr(int len) {
189
60
  int obj_len = kStrHeaderSize + len + 1;  // NUL terminator
190
60
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
191
60
#if MARK_SWEEP
192
60
  int obj_id;
193
60
  int pool_id;
194
60
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
195
#else
196
  void* place = gHeap.Allocate(num_bytes);
197
#endif
198
60
  ObjHeader* header = new (place) ObjHeader(BigStr::obj_header());
199
60
  auto s = new (header->ObjectAddress()) BigStr();
200
60
  s->hash_ = 0;
201
60
  s->is_hashed_ = 0;
202
203
60
#if MARK_SWEEP
204
60
  header->obj_id = obj_id;
205
60
  #ifndef NO_POOL_ALLOC
206
60
  header->pool_id = pool_id;
207
60
  #endif
208
60
#endif
209
60
  return s;
210
60
}
211
212
// Copy C string into the managed heap.
213
1.59k
inline BigStr* StrFromC(const char* data, int len) {
214
  // Optimization that could be taken out once we have SmallStr
215
1.59k
  if (len == 0) {
216
0
    return kEmptyString;
217
0
  }
218
1.59k
  BigStr* s = NewStr(len);
219
1.59k
  memcpy(s->data_, data, len);
220
1.59k
  DCHECK(s->data_[len] == '\0');  // should be true because Heap was zeroed
221
222
0
  return s;
223
1.59k
}
224
225
162
inline BigStr* StrFromC(const char* data) {
226
162
  return StrFromC(data, strlen(data));
227
162
}
228
229
// Create a slab with a number of entries of a certain type.
230
// Note: entries will be zero'd because we use calloc().  TODO: Consider
231
// zeroing them separately.
232
template <typename T>
233
1.00k
inline Slab<T>* NewSlab(int len) {
234
1.00k
  int obj_len = len * sizeof(T);
235
1.00k
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
1.00k
#if MARK_SWEEP
237
1.00k
  int obj_id;
238
1.00k
  int pool_id;
239
1.00k
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
1.00k
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
1.00k
  void* obj = header->ObjectAddress();
245
1.00k
  if (std::is_pointer<T>()) {
246
903
    memset(obj, 0, obj_len);
247
903
  }
248
1.00k
  auto slab = new (obj) Slab<T>(len);
249
1.00k
#if MARK_SWEEP
250
1.00k
  header->obj_id = obj_id;
251
1.00k
  #ifndef NO_POOL_ALLOC
252
1.00k
  header->pool_id = pool_id;
253
1.00k
  #endif
254
1.00k
#endif
255
1.00k
  return slab;
256
1.00k
}
_Z7NewSlabIiEP4SlabIT_Ei
Line
Count
Source
233
79
inline Slab<T>* NewSlab(int len) {
234
79
  int obj_len = len * sizeof(T);
235
79
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
79
#if MARK_SWEEP
237
79
  int obj_id;
238
79
  int pool_id;
239
79
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
79
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
79
  void* obj = header->ObjectAddress();
245
79
  if (std::is_pointer<T>()) {
246
0
    memset(obj, 0, obj_len);
247
0
  }
248
79
  auto slab = new (obj) Slab<T>(len);
249
79
#if MARK_SWEEP
250
79
  header->obj_id = obj_id;
251
79
  #ifndef NO_POOL_ALLOC
252
79
  header->pool_id = pool_id;
253
79
  #endif
254
79
#endif
255
79
  return slab;
256
79
}
_Z7NewSlabIP6BigStrEP4SlabIT_Ei
Line
Count
Source
233
63
inline Slab<T>* NewSlab(int len) {
234
63
  int obj_len = len * sizeof(T);
235
63
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
63
#if MARK_SWEEP
237
63
  int obj_id;
238
63
  int pool_id;
239
63
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
63
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
63
  void* obj = header->ObjectAddress();
245
63
  if (std::is_pointer<T>()) {
246
63
    memset(obj, 0, obj_len);
247
63
  }
248
63
  auto slab = new (obj) Slab<T>(len);
249
63
#if MARK_SWEEP
250
63
  header->obj_id = obj_id;
251
63
  #ifndef NO_POOL_ALLOC
252
63
  header->pool_id = pool_id;
253
63
  #endif
254
63
#endif
255
63
  return slab;
256
63
}
_Z7NewSlabIP6Tuple2IP6BigStriEEP4SlabIT_Ei
Line
Count
Source
233
1
inline Slab<T>* NewSlab(int len) {
234
1
  int obj_len = len * sizeof(T);
235
1
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
1
#if MARK_SWEEP
237
1
  int obj_id;
238
1
  int pool_id;
239
1
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
1
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
1
  void* obj = header->ObjectAddress();
245
1
  if (std::is_pointer<T>()) {
246
1
    memset(obj, 0, obj_len);
247
1
  }
248
1
  auto slab = new (obj) Slab<T>(len);
249
1
#if MARK_SWEEP
250
1
  header->obj_id = obj_id;
251
1
  #ifndef NO_POOL_ALLOC
252
1
  header->pool_id = pool_id;
253
1
  #endif
254
1
#endif
255
1
  return slab;
256
1
}
_Z7NewSlabIP6Tuple2IiP6BigStrEEP4SlabIT_Ei
Line
Count
Source
233
6
inline Slab<T>* NewSlab(int len) {
234
6
  int obj_len = len * sizeof(T);
235
6
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
6
#if MARK_SWEEP
237
6
  int obj_id;
238
6
  int pool_id;
239
6
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
6
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
6
  void* obj = header->ObjectAddress();
245
6
  if (std::is_pointer<T>()) {
246
6
    memset(obj, 0, obj_len);
247
6
  }
248
6
  auto slab = new (obj) Slab<T>(len);
249
6
#if MARK_SWEEP
250
6
  header->obj_id = obj_id;
251
6
  #ifndef NO_POOL_ALLOC
252
6
  header->pool_id = pool_id;
253
6
  #endif
254
6
#endif
255
6
  return slab;
256
6
}
_Z7NewSlabIPN11pretty_asdl11MeasuredDocEEP4SlabIT_Ei
Line
Count
Source
233
719
inline Slab<T>* NewSlab(int len) {
234
719
  int obj_len = len * sizeof(T);
235
719
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
719
#if MARK_SWEEP
237
719
  int obj_id;
238
719
  int pool_id;
239
719
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
719
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
719
  void* obj = header->ObjectAddress();
245
719
  if (std::is_pointer<T>()) {
246
719
    memset(obj, 0, obj_len);
247
719
  }
248
719
  auto slab = new (obj) Slab<T>(len);
249
719
#if MARK_SWEEP
250
719
  header->obj_id = obj_id;
251
719
  #ifndef NO_POOL_ALLOC
252
719
  header->pool_id = pool_id;
253
719
  #endif
254
719
#endif
255
719
  return slab;
256
719
}
_Z7NewSlabIPN11pretty_asdl11DocFragmentEEP4SlabIT_Ei
Line
Count
Source
233
57
inline Slab<T>* NewSlab(int len) {
234
57
  int obj_len = len * sizeof(T);
235
57
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
57
#if MARK_SWEEP
237
57
  int obj_id;
238
57
  int pool_id;
239
57
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
57
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
57
  void* obj = header->ObjectAddress();
245
57
  if (std::is_pointer<T>()) {
246
57
    memset(obj, 0, obj_len);
247
57
  }
248
57
  auto slab = new (obj) Slab<T>(len);
249
57
#if MARK_SWEEP
250
57
  header->obj_id = obj_id;
251
57
  #ifndef NO_POOL_ALLOC
252
57
  header->pool_id = pool_id;
253
57
  #endif
254
57
#endif
255
57
  return slab;
256
57
}
_Z7NewSlabIbEP4SlabIT_Ei
Line
Count
Source
233
20
inline Slab<T>* NewSlab(int len) {
234
20
  int obj_len = len * sizeof(T);
235
20
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
20
#if MARK_SWEEP
237
20
  int obj_id;
238
20
  int pool_id;
239
20
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
20
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
20
  void* obj = header->ObjectAddress();
245
20
  if (std::is_pointer<T>()) {
246
0
    memset(obj, 0, obj_len);
247
0
  }
248
20
  auto slab = new (obj) Slab<T>(len);
249
20
#if MARK_SWEEP
250
20
  header->obj_id = obj_id;
251
20
  #ifndef NO_POOL_ALLOC
252
20
  header->pool_id = pool_id;
253
20
  #endif
254
20
#endif
255
20
  return slab;
256
20
}
_Z7NewSlabIPN10hnode_asdl5FieldEEP4SlabIT_Ei
Line
Count
Source
233
57
inline Slab<T>* NewSlab(int len) {
234
57
  int obj_len = len * sizeof(T);
235
57
  const size_t num_bytes = sizeof(ObjHeader) + obj_len;
236
57
#if MARK_SWEEP
237
57
  int obj_id;
238
57
  int pool_id;
239
57
  void* place = gHeap.Allocate(num_bytes, &obj_id, &pool_id);
240
#else
241
  void* place = gHeap.Allocate(num_bytes);
242
#endif
243
57
  ObjHeader* header = new (place) ObjHeader(Slab<T>::obj_header(len));
244
57
  void* obj = header->ObjectAddress();
245
57
  if (std::is_pointer<T>()) {
246
57
    memset(obj, 0, obj_len);
247
57
  }
248
57
  auto slab = new (obj) Slab<T>(len);
249
57
#if MARK_SWEEP
250
57
  header->obj_id = obj_id;
251
57
  #ifndef NO_POOL_ALLOC
252
57
  header->pool_id = pool_id;
253
57
  #endif
254
57
#endif
255
57
  return slab;
256
57
}
Unexecuted instantiation: _Z7NewSlabIPN10hnode_asdl7hnode_tEEP4SlabIT_Ei
Unexecuted instantiation: _Z7NewSlabIPN15test_classes_gc10OpaqueBaseEEP4SlabIT_Ei
Unexecuted instantiation: _Z7NewSlabIPN15test_classes_gc12PointersBaseEEP4SlabIT_Ei
Unexecuted instantiation: _Z7NewSlabIPN15test_classes_gc14BaseWithMethodEEP4SlabIT_Ei
257
258
#endif  // MYCPP_GC_ALLOC_H