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1 // Copyright 2016 the V8 project authors. All rights reserved. | 1 // Copyright 2016 the V8 project authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #include "src/runtime/runtime-utils.h" | 5 #include "src/runtime/runtime-utils.h" |
6 | 6 |
7 #include "src/arguments.h" | 7 #include "src/arguments.h" |
8 #include "src/assembler.h" | 8 #include "src/assembler.h" |
9 #include "src/compiler/wasm-compiler.h" | 9 #include "src/compiler/wasm-compiler.h" |
10 #include "src/conversions.h" | 10 #include "src/conversions.h" |
11 #include "src/debug/debug.h" | 11 #include "src/debug/debug.h" |
12 #include "src/factory.h" | 12 #include "src/factory.h" |
13 #include "src/frames-inl.h" | 13 #include "src/frames-inl.h" |
14 #include "src/objects-inl.h" | 14 #include "src/objects-inl.h" |
15 #include "src/v8memory.h" | 15 #include "src/v8memory.h" |
16 #include "src/wasm/wasm-module.h" | 16 #include "src/wasm/wasm-module.h" |
17 | 17 |
18 namespace v8 { | 18 namespace v8 { |
19 namespace internal { | 19 namespace internal { |
20 | 20 |
21 RUNTIME_FUNCTION(Runtime_WasmGrowMemory) { | 21 RUNTIME_FUNCTION(Runtime_WasmGrowMemory) { |
22 HandleScope scope(isolate); | 22 HandleScope scope(isolate); |
23 DCHECK_EQ(1, args.length()); | 23 DCHECK_EQ(1, args.length()); |
24 CONVERT_UINT32_ARG_CHECKED(delta_pages, 0); | 24 CONVERT_UINT32_ARG_CHECKED(delta_pages, 0); |
25 Handle<JSObject> module_instance; | 25 Handle<JSObject> module_instance; |
26 | |
27 { | 26 { |
28 // Get the module JSObject | 27 // Get the module JSObject |
29 DisallowHeapAllocation no_allocation; | 28 DisallowHeapAllocation no_allocation; |
30 const Address entry = Isolate::c_entry_fp(isolate->thread_local_top()); | 29 const Address entry = Isolate::c_entry_fp(isolate->thread_local_top()); |
31 Address pc = | 30 Address pc = |
32 Memory::Address_at(entry + StandardFrameConstants::kCallerPCOffset); | 31 Memory::Address_at(entry + StandardFrameConstants::kCallerPCOffset); |
33 Code* code = | 32 Code* code = |
34 isolate->inner_pointer_to_code_cache()->GetCacheEntry(pc)->code; | 33 isolate->inner_pointer_to_code_cache()->GetCacheEntry(pc)->code; |
35 Object* owning_instance = wasm::GetOwningWasmInstance(code); | 34 Object* owning_instance = wasm::GetOwningWasmInstance(code); |
36 CHECK_NOT_NULL(owning_instance); | 35 CHECK_NOT_NULL(owning_instance); |
37 module_instance = handle(JSObject::cast(owning_instance), isolate); | 36 module_instance = handle(JSObject::cast(owning_instance), isolate); |
38 } | 37 } |
39 | 38 return *isolate->factory()->NewNumberFromInt( |
40 Address old_mem_start, new_mem_start; | 39 wasm::GrowInstanceMemory(isolate, module_instance, delta_pages)); |
41 uint32_t old_size, new_size; | |
42 | |
43 // Get mem buffer associated with module object | |
44 MaybeHandle<JSArrayBuffer> maybe_mem_buffer = | |
45 wasm::GetInstanceMemory(isolate, module_instance); | |
46 Handle<JSArrayBuffer> old_buffer; | |
47 if (!maybe_mem_buffer.ToHandle(&old_buffer)) { | |
48 // If module object does not have linear memory associated with it, | |
49 // Allocate new array buffer of given size. | |
50 old_mem_start = nullptr; | |
51 old_size = 0; | |
52 // TODO(gdeepti): Fix bounds check to take into account size of memtype. | |
53 new_size = delta_pages * wasm::WasmModule::kPageSize; | |
54 // The code generated in the wasm compiler guarantees this precondition. | |
55 DCHECK(delta_pages <= wasm::WasmModule::kMaxMemPages); | |
56 new_mem_start = | |
57 static_cast<Address>(isolate->array_buffer_allocator()->Allocate( | |
58 static_cast<uint32_t>(new_size))); | |
59 if (new_mem_start == NULL) { | |
60 return *isolate->factory()->NewNumberFromInt(-1); | |
61 } | |
62 #if DEBUG | |
63 // Double check the API allocator actually zero-initialized the memory. | |
64 for (size_t i = old_size; i < new_size; i++) { | |
65 DCHECK_EQ(0, new_mem_start[i]); | |
66 } | |
67 #endif | |
68 } else { | |
69 old_mem_start = static_cast<Address>(old_buffer->backing_store()); | |
70 old_size = old_buffer->byte_length()->Number(); | |
71 // If the old memory was zero-sized, we should have been in the | |
72 // "undefined" case above. | |
73 DCHECK_NOT_NULL(old_mem_start); | |
74 DCHECK_NE(0, old_size); | |
75 | |
76 new_size = old_size + delta_pages * wasm::WasmModule::kPageSize; | |
77 if (new_size > | |
78 wasm::WasmModule::kMaxMemPages * wasm::WasmModule::kPageSize) { | |
79 return *isolate->factory()->NewNumberFromInt(-1); | |
80 } | |
81 new_mem_start = | |
82 static_cast<Address>(isolate->array_buffer_allocator()->Allocate( | |
83 static_cast<uint32_t>(new_size))); | |
84 if (new_mem_start == NULL) { | |
85 return *isolate->factory()->NewNumberFromInt(-1); | |
86 } | |
87 #if DEBUG | |
88 // Double check the API allocator actually zero-initialized the memory. | |
89 for (size_t i = old_size; i < new_size; i++) { | |
90 DCHECK_EQ(0, new_mem_start[i]); | |
91 } | |
92 #endif | |
93 // Copy contents of the old buffer to the new buffer | |
94 memcpy(new_mem_start, old_mem_start, old_size); | |
95 } | |
96 | |
97 Handle<JSArrayBuffer> buffer = isolate->factory()->NewJSArrayBuffer(); | |
98 JSArrayBuffer::Setup(buffer, isolate, false, new_mem_start, new_size); | |
99 buffer->set_is_neuterable(false); | |
100 | |
101 // Set new buffer to be wasm memory | |
102 | |
103 wasm::SetInstanceMemory(module_instance, *buffer); | |
104 | |
105 CHECK(wasm::UpdateWasmModuleMemory(module_instance, old_mem_start, | |
106 new_mem_start, old_size, new_size)); | |
107 | |
108 return *isolate->factory()->NewNumberFromInt(old_size / | |
109 wasm::WasmModule::kPageSize); | |
110 } | 40 } |
111 | 41 |
112 RUNTIME_FUNCTION(Runtime_WasmThrowTypeError) { | 42 RUNTIME_FUNCTION(Runtime_WasmThrowTypeError) { |
113 HandleScope scope(isolate); | 43 HandleScope scope(isolate); |
114 DCHECK_EQ(0, args.length()); | 44 DCHECK_EQ(0, args.length()); |
115 THROW_NEW_ERROR_RETURN_FAILURE( | 45 THROW_NEW_ERROR_RETURN_FAILURE( |
116 isolate, NewTypeError(MessageTemplate::kWasmTrapTypeError)); | 46 isolate, NewTypeError(MessageTemplate::kWasmTrapTypeError)); |
117 } | 47 } |
118 | 48 |
119 RUNTIME_FUNCTION(Runtime_WasmThrow) { | 49 RUNTIME_FUNCTION(Runtime_WasmThrow) { |
(...skipping 13 matching lines...) Expand all Loading... |
133 Object* exception = args[0]; | 63 Object* exception = args[0]; |
134 // The unwinder will only deliver exceptions to wasm if the exception is a | 64 // The unwinder will only deliver exceptions to wasm if the exception is a |
135 // Number or a Smi (which we have just converted to a Number.) This logic | 65 // Number or a Smi (which we have just converted to a Number.) This logic |
136 // lives in Isolate::is_catchable_by_wasm(Object*). | 66 // lives in Isolate::is_catchable_by_wasm(Object*). |
137 CHECK(exception->IsNumber()); | 67 CHECK(exception->IsNumber()); |
138 return exception; | 68 return exception; |
139 } | 69 } |
140 | 70 |
141 } // namespace internal | 71 } // namespace internal |
142 } // namespace v8 | 72 } // namespace v8 |
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