objects-printer.cc 36.6 KB
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// Copyright 2012 the V8 project authors. All rights reserved.
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// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are
// met:
//
//     * Redistributions of source code must retain the above copyright
//       notice, this list of conditions and the following disclaimer.
//     * Redistributions in binary form must reproduce the above
//       copyright notice, this list of conditions and the following
//       disclaimer in the documentation and/or other materials provided
//       with the distribution.
//     * Neither the name of Google Inc. nor the names of its
//       contributors may be used to endorse or promote products derived
//       from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.

#include "v8.h"

#include "disassembler.h"
#include "disasm.h"
#include "jsregexp.h"
#include "objects-visiting.h"

namespace v8 {
namespace internal {

#ifdef OBJECT_PRINT

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void MaybeObject::Print() {
  Print(stdout);
}


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void MaybeObject::Print(FILE* out) {
  Object* this_as_object;
  if (ToObject(&this_as_object)) {
    if (this_as_object->IsSmi()) {
      Smi::cast(this_as_object)->SmiPrint(out);
    } else {
      HeapObject::cast(this_as_object)->HeapObjectPrint(out);
    }
  } else {
    Failure::cast(this)->FailurePrint(out);
  }
  Flush(out);
}


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void MaybeObject::PrintLn() {
  PrintLn(stdout);
}


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void MaybeObject::PrintLn(FILE* out) {
  Print(out);
  PrintF(out, "\n");
}


void HeapObject::PrintHeader(FILE* out, const char* id) {
  PrintF(out, "%p: [%s]\n", reinterpret_cast<void*>(this), id);
}


void HeapObject::HeapObjectPrint(FILE* out) {
  InstanceType instance_type = map()->instance_type();

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  HandleScope scope(GetIsolate());
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  if (instance_type < FIRST_NONSTRING_TYPE) {
    String::cast(this)->StringPrint(out);
    return;
  }

  switch (instance_type) {
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    case SYMBOL_TYPE:
      Symbol::cast(this)->SymbolPrint(out);
      break;
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    case MAP_TYPE:
      Map::cast(this)->MapPrint(out);
      break;
    case HEAP_NUMBER_TYPE:
      HeapNumber::cast(this)->HeapNumberPrint(out);
      break;
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    case FIXED_DOUBLE_ARRAY_TYPE:
      FixedDoubleArray::cast(this)->FixedDoubleArrayPrint(out);
      break;
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    case CONSTANT_POOL_ARRAY_TYPE:
      ConstantPoolArray::cast(this)->ConstantPoolArrayPrint(out);
      break;
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    case FIXED_ARRAY_TYPE:
      FixedArray::cast(this)->FixedArrayPrint(out);
      break;
    case BYTE_ARRAY_TYPE:
      ByteArray::cast(this)->ByteArrayPrint(out);
      break;
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    case FREE_SPACE_TYPE:
      FreeSpace::cast(this)->FreeSpacePrint(out);
      break;
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    case EXTERNAL_PIXEL_ARRAY_TYPE:
      ExternalPixelArray::cast(this)->ExternalPixelArrayPrint(out);
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      break;
    case EXTERNAL_BYTE_ARRAY_TYPE:
      ExternalByteArray::cast(this)->ExternalByteArrayPrint(out);
      break;
    case EXTERNAL_UNSIGNED_BYTE_ARRAY_TYPE:
      ExternalUnsignedByteArray::cast(this)
          ->ExternalUnsignedByteArrayPrint(out);
      break;
    case EXTERNAL_SHORT_ARRAY_TYPE:
      ExternalShortArray::cast(this)->ExternalShortArrayPrint(out);
      break;
    case EXTERNAL_UNSIGNED_SHORT_ARRAY_TYPE:
      ExternalUnsignedShortArray::cast(this)
          ->ExternalUnsignedShortArrayPrint(out);
      break;
    case EXTERNAL_INT_ARRAY_TYPE:
      ExternalIntArray::cast(this)->ExternalIntArrayPrint(out);
      break;
    case EXTERNAL_UNSIGNED_INT_ARRAY_TYPE:
      ExternalUnsignedIntArray::cast(this)->ExternalUnsignedIntArrayPrint(out);
      break;
    case EXTERNAL_FLOAT_ARRAY_TYPE:
      ExternalFloatArray::cast(this)->ExternalFloatArrayPrint(out);
      break;
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    case EXTERNAL_DOUBLE_ARRAY_TYPE:
      ExternalDoubleArray::cast(this)->ExternalDoubleArrayPrint(out);
      break;
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    case FILLER_TYPE:
      PrintF(out, "filler");
      break;
    case JS_OBJECT_TYPE:  // fall through
    case JS_CONTEXT_EXTENSION_OBJECT_TYPE:
    case JS_ARRAY_TYPE:
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    case JS_GENERATOR_OBJECT_TYPE:
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    case JS_REGEXP_TYPE:
      JSObject::cast(this)->JSObjectPrint(out);
      break;
    case ODDBALL_TYPE:
      Oddball::cast(this)->to_string()->Print(out);
      break;
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    case JS_MODULE_TYPE:
      JSModule::cast(this)->JSModulePrint(out);
      break;
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    case JS_FUNCTION_TYPE:
      JSFunction::cast(this)->JSFunctionPrint(out);
      break;
    case JS_GLOBAL_PROXY_TYPE:
      JSGlobalProxy::cast(this)->JSGlobalProxyPrint(out);
      break;
    case JS_GLOBAL_OBJECT_TYPE:
      JSGlobalObject::cast(this)->JSGlobalObjectPrint(out);
      break;
    case JS_BUILTINS_OBJECT_TYPE:
      JSBuiltinsObject::cast(this)->JSBuiltinsObjectPrint(out);
      break;
    case JS_VALUE_TYPE:
      PrintF(out, "Value wrapper around:");
      JSValue::cast(this)->value()->Print(out);
      break;
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    case JS_DATE_TYPE:
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      JSDate::cast(this)->JSDatePrint(out);
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      break;
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    case CODE_TYPE:
      Code::cast(this)->CodePrint(out);
      break;
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    case JS_PROXY_TYPE:
      JSProxy::cast(this)->JSProxyPrint(out);
      break;
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    case JS_FUNCTION_PROXY_TYPE:
      JSFunctionProxy::cast(this)->JSFunctionProxyPrint(out);
      break;
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    case JS_SET_TYPE:
      JSSet::cast(this)->JSSetPrint(out);
      break;
    case JS_MAP_TYPE:
      JSMap::cast(this)->JSMapPrint(out);
      break;
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    case JS_WEAK_MAP_TYPE:
      JSWeakMap::cast(this)->JSWeakMapPrint(out);
      break;
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    case JS_WEAK_SET_TYPE:
      JSWeakSet::cast(this)->JSWeakSetPrint(out);
      break;
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    case FOREIGN_TYPE:
      Foreign::cast(this)->ForeignPrint(out);
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      break;
    case SHARED_FUNCTION_INFO_TYPE:
      SharedFunctionInfo::cast(this)->SharedFunctionInfoPrint(out);
      break;
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    case JS_MESSAGE_OBJECT_TYPE:
      JSMessageObject::cast(this)->JSMessageObjectPrint(out);
      break;
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    case CELL_TYPE:
      Cell::cast(this)->CellPrint(out);
      break;
    case PROPERTY_CELL_TYPE:
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      PropertyCell::cast(this)->PropertyCellPrint(out);
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      break;
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    case JS_ARRAY_BUFFER_TYPE:
      JSArrayBuffer::cast(this)->JSArrayBufferPrint(out);
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      break;
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    case JS_TYPED_ARRAY_TYPE:
      JSTypedArray::cast(this)->JSTypedArrayPrint(out);
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      break;
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    case JS_DATA_VIEW_TYPE:
      JSDataView::cast(this)->JSDataViewPrint(out);
      break;
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#define MAKE_STRUCT_CASE(NAME, Name, name) \
  case NAME##_TYPE:                        \
    Name::cast(this)->Name##Print(out);    \
    break;
  STRUCT_LIST(MAKE_STRUCT_CASE)
#undef MAKE_STRUCT_CASE

    default:
      PrintF(out, "UNKNOWN TYPE %d", map()->instance_type());
      UNREACHABLE();
      break;
  }
}


void ByteArray::ByteArrayPrint(FILE* out) {
  PrintF(out, "byte array, data starts at %p", GetDataStartAddress());
}


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void FreeSpace::FreeSpacePrint(FILE* out) {
  PrintF(out, "free space, size %d", Size());
}


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void ExternalPixelArray::ExternalPixelArrayPrint(FILE* out) {
  PrintF(out, "external pixel array");
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}


void ExternalByteArray::ExternalByteArrayPrint(FILE* out) {
  PrintF(out, "external byte array");
}


void ExternalUnsignedByteArray::ExternalUnsignedByteArrayPrint(FILE* out) {
  PrintF(out, "external unsigned byte array");
}


void ExternalShortArray::ExternalShortArrayPrint(FILE* out) {
  PrintF(out, "external short array");
}


void ExternalUnsignedShortArray::ExternalUnsignedShortArrayPrint(FILE* out) {
  PrintF(out, "external unsigned short array");
}


void ExternalIntArray::ExternalIntArrayPrint(FILE* out) {
  PrintF(out, "external int array");
}


void ExternalUnsignedIntArray::ExternalUnsignedIntArrayPrint(FILE* out) {
  PrintF(out, "external unsigned int array");
}


void ExternalFloatArray::ExternalFloatArrayPrint(FILE* out) {
  PrintF(out, "external float array");
}


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void ExternalDoubleArray::ExternalDoubleArrayPrint(FILE* out) {
  PrintF(out, "external double array");
}


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void JSObject::PrintProperties(FILE* out) {
  if (HasFastProperties()) {
    DescriptorArray* descs = map()->instance_descriptors();
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    for (int i = 0; i < map()->NumberOfOwnDescriptors(); i++) {
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      PrintF(out, "   ");
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      descs->GetKey(i)->NamePrint(out);
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      PrintF(out, ": ");
      switch (descs->GetType(i)) {
        case FIELD: {
          int index = descs->GetFieldIndex(i);
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          RawFastPropertyAt(index)->ShortPrint(out);
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          PrintF(out, " (field at offset %d)\n", index);
          break;
        }
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        case CONSTANT:
          descs->GetConstant(i)->ShortPrint(out);
          PrintF(out, " (constant)\n");
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          break;
        case CALLBACKS:
          descs->GetCallbacksObject(i)->ShortPrint(out);
          PrintF(out, " (callback)\n");
          break;
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        case NORMAL:  // only in slow mode
        case HANDLER:  // only in lookup results, not in descriptors
        case INTERCEPTOR:  // only in lookup results, not in descriptors
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        // There are no transitions in the descriptor array.
        case TRANSITION:
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        case NONEXISTENT:
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          UNREACHABLE();
          break;
      }
    }
  } else {
    property_dictionary()->Print(out);
  }
}


void JSObject::PrintElements(FILE* out) {
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  // Don't call GetElementsKind, its validation code can cause the printer to
  // fail when debugging.
  switch (map()->elements_kind()) {
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    case FAST_HOLEY_SMI_ELEMENTS:
    case FAST_SMI_ELEMENTS:
    case FAST_HOLEY_ELEMENTS:
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    case FAST_ELEMENTS: {
      // Print in array notation for non-sparse arrays.
      FixedArray* p = FixedArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
        PrintF(out, "   %d: ", i);
        p->get(i)->ShortPrint(out);
        PrintF(out, "\n");
      }
      break;
    }
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    case FAST_HOLEY_DOUBLE_ELEMENTS:
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    case FAST_DOUBLE_ELEMENTS: {
      // Print in array notation for non-sparse arrays.
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      if (elements()->length() > 0) {
        FixedDoubleArray* p = FixedDoubleArray::cast(elements());
        for (int i = 0; i < p->length(); i++) {
          if (p->is_the_hole(i)) {
            PrintF(out, "   %d: <the hole>", i);
          } else {
            PrintF(out, "   %d: %g", i, p->get_scalar(i));
          }
          PrintF(out, "\n");
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        }
      }
      break;
    }
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    case EXTERNAL_PIXEL_ELEMENTS: {
      ExternalPixelArray* p = ExternalPixelArray::cast(elements());
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      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %d\n", i, p->get_scalar(i));
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      }
      break;
    }
    case EXTERNAL_BYTE_ELEMENTS: {
      ExternalByteArray* p = ExternalByteArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %d\n", i, static_cast<int>(p->get_scalar(i)));
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      }
      break;
    }
    case EXTERNAL_UNSIGNED_BYTE_ELEMENTS: {
      ExternalUnsignedByteArray* p =
          ExternalUnsignedByteArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %d\n", i, static_cast<int>(p->get_scalar(i)));
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      }
      break;
    }
    case EXTERNAL_SHORT_ELEMENTS: {
      ExternalShortArray* p = ExternalShortArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %d\n", i, static_cast<int>(p->get_scalar(i)));
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      }
      break;
    }
    case EXTERNAL_UNSIGNED_SHORT_ELEMENTS: {
      ExternalUnsignedShortArray* p =
          ExternalUnsignedShortArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %d\n", i, static_cast<int>(p->get_scalar(i)));
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      }
      break;
    }
    case EXTERNAL_INT_ELEMENTS: {
      ExternalIntArray* p = ExternalIntArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %d\n", i, static_cast<int>(p->get_scalar(i)));
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      }
      break;
    }
    case EXTERNAL_UNSIGNED_INT_ELEMENTS: {
      ExternalUnsignedIntArray* p =
          ExternalUnsignedIntArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %d\n", i, static_cast<int>(p->get_scalar(i)));
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      }
      break;
    }
    case EXTERNAL_FLOAT_ELEMENTS: {
      ExternalFloatArray* p = ExternalFloatArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %f\n", i, p->get_scalar(i));
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      }
      break;
    }
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    case EXTERNAL_DOUBLE_ELEMENTS: {
      ExternalDoubleArray* p = ExternalDoubleArray::cast(elements());
      for (int i = 0; i < p->length(); i++) {
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        PrintF(out, "   %d: %f\n", i, p->get_scalar(i));
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      }
      break;
    }
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    case DICTIONARY_ELEMENTS:
      elements()->Print(out);
      break;
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    case NON_STRICT_ARGUMENTS_ELEMENTS: {
      FixedArray* p = FixedArray::cast(elements());
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      PrintF(out, "   parameter map:");
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      for (int i = 2; i < p->length(); i++) {
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        PrintF(out, " %d:", i - 2);
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        p->get(i)->ShortPrint(out);
      }
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      PrintF(out, "\n   context: ");
      p->get(0)->ShortPrint(out);
      PrintF(out, "\n   arguments: ");
      p->get(1)->ShortPrint(out);
      PrintF(out, "\n");
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      break;
    }
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  }
}


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void JSObject::PrintTransitions(FILE* out) {
  if (!map()->HasTransitionArray()) return;
  TransitionArray* transitions = map()->transitions();
  for (int i = 0; i < transitions->number_of_transitions(); i++) {
    PrintF(out, "   ");
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    transitions->GetKey(i)->NamePrint(out);
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    PrintF(out, ": ");
    switch (transitions->GetTargetDetails(i).type()) {
      case FIELD: {
        PrintF(out, " (transition to field)\n");
        break;
      }
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      case CONSTANT:
        PrintF(out, " (transition to constant)\n");
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        break;
      case CALLBACKS:
        PrintF(out, " (transition to callback)\n");
        break;
      // Values below are never in the target descriptor array.
      case NORMAL:
      case HANDLER:
      case INTERCEPTOR:
      case TRANSITION:
      case NONEXISTENT:
        UNREACHABLE();
        break;
    }
  }
}


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void JSObject::JSObjectPrint(FILE* out) {
  PrintF(out, "%p: [JSObject]\n", reinterpret_cast<void*>(this));
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  PrintF(out, " - map = %p [", reinterpret_cast<void*>(map()));
  // Don't call GetElementsKind, its validation code can cause the printer to
  // fail when debugging.
  PrintElementsKind(out, this->map()->elements_kind());
  PrintF(out,
         "]\n - prototype = %p\n",
         reinterpret_cast<void*>(GetPrototype()));
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  PrintF(out, " {\n");
  PrintProperties(out);
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  PrintTransitions(out);
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  PrintElements(out);
  PrintF(out, " }\n");
}


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void JSModule::JSModulePrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSModule");
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  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
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  PrintF(out, " - context = ");
  context()->Print(out);
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  PrintF(out, " - scope_info = ");
  scope_info()->ShortPrint(out);
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  PrintElementsKind(out, this->map()->elements_kind());
  PrintF(out, " {\n");
  PrintProperties(out);
  PrintElements(out);
  PrintF(out, " }\n");
}


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static const char* TypeToString(InstanceType type) {
  switch (type) {
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#define TYPE_TO_STRING(TYPE) case TYPE: return #TYPE;
  INSTANCE_TYPE_LIST(TYPE_TO_STRING)
#undef TYPE_TO_STRING
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  }
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  UNREACHABLE();
  return "UNKNOWN";  // Keep the compiler happy.
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}


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void Symbol::SymbolPrint(FILE* out) {
  HeapObject::PrintHeader(out, "Symbol");
  PrintF(out, " - hash: %d\n", Hash());
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  PrintF(out, " - name: ");
  name()->ShortPrint();
  PrintF(out, "\n");
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}


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void Map::MapPrint(FILE* out) {
  HeapObject::PrintHeader(out, "Map");
  PrintF(out, " - type: %s\n", TypeToString(instance_type()));
  PrintF(out, " - instance size: %d\n", instance_size());
  PrintF(out, " - inobject properties: %d\n", inobject_properties());
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  PrintF(out, " - elements kind: ");
  PrintElementsKind(out, elements_kind());
  PrintF(out, "\n - pre-allocated property fields: %d\n",
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      pre_allocated_property_fields());
  PrintF(out, " - unused property fields: %d\n", unused_property_fields());
  if (is_hidden_prototype()) {
    PrintF(out, " - hidden_prototype\n");
  }
  if (has_named_interceptor()) {
    PrintF(out, " - named_interceptor\n");
  }
  if (has_indexed_interceptor()) {
    PrintF(out, " - indexed_interceptor\n");
  }
  if (is_undetectable()) {
    PrintF(out, " - undetectable\n");
  }
  if (has_instance_call_handler()) {
    PrintF(out, " - instance_call_handler\n");
  }
  if (is_access_check_needed()) {
    PrintF(out, " - access_check_needed\n");
  }
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  PrintF(out, " - back pointer: ");
  GetBackPointer()->ShortPrint(out);
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  PrintF(out, "\n - instance descriptors %s#%i: ",
         owns_descriptors() ? "(own) " : "",
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         NumberOfOwnDescriptors());
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  instance_descriptors()->ShortPrint(out);
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  if (HasTransitionArray()) {
    PrintF(out, "\n - transitions: ");
    transitions()->ShortPrint(out);
  }
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  PrintF(out, "\n - prototype: ");
  prototype()->ShortPrint(out);
  PrintF(out, "\n - constructor: ");
  constructor()->ShortPrint(out);
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  PrintF(out, "\n - code cache: ");
  code_cache()->ShortPrint(out);
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  PrintF(out, "\n - dependent code: ");
  dependent_code()->ShortPrint(out);
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  PrintF(out, "\n");
}


void CodeCache::CodeCachePrint(FILE* out) {
  HeapObject::PrintHeader(out, "CodeCache");
  PrintF(out, "\n - default_cache: ");
  default_cache()->ShortPrint(out);
  PrintF(out, "\n - normal_type_cache: ");
  normal_type_cache()->ShortPrint(out);
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}


void PolymorphicCodeCache::PolymorphicCodeCachePrint(FILE* out) {
  HeapObject::PrintHeader(out, "PolymorphicCodeCache");
  PrintF(out, "\n - cache: ");
  cache()->ShortPrint(out);
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}


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void TypeFeedbackInfo::TypeFeedbackInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "TypeFeedbackInfo");
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  PrintF(out, " - ic_total_count: %d, ic_with_type_info_count: %d\n",
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         ic_total_count(), ic_with_type_info_count());
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  PrintF(out, " - type_feedback_cells: ");
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  type_feedback_cells()->FixedArrayPrint(out);
}


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void AliasedArgumentsEntry::AliasedArgumentsEntryPrint(FILE* out) {
  HeapObject::PrintHeader(out, "AliasedArgumentsEntry");
  PrintF(out, "\n - aliased_context_slot: %d", aliased_context_slot());
}


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void FixedArray::FixedArrayPrint(FILE* out) {
  HeapObject::PrintHeader(out, "FixedArray");
  PrintF(out, " - length: %d", length());
  for (int i = 0; i < length(); i++) {
    PrintF(out, "\n  [%d]: ", i);
    get(i)->ShortPrint(out);
  }
  PrintF(out, "\n");
}


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void FixedDoubleArray::FixedDoubleArrayPrint(FILE* out) {
  HeapObject::PrintHeader(out, "FixedDoubleArray");
  PrintF(out, " - length: %d", length());
  for (int i = 0; i < length(); i++) {
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    if (is_the_hole(i)) {
      PrintF(out, "\n  [%d]: <the hole>", i);
    } else {
      PrintF(out, "\n  [%d]: %g", i, get_scalar(i));
    }
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  }
  PrintF(out, "\n");
}


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void ConstantPoolArray::ConstantPoolArrayPrint(FILE* out) {
  HeapObject::PrintHeader(out, "ConstantPoolArray");
  PrintF(out, " - length: %d", length());
  for (int i = 0; i < length(); i++) {
    if (i < first_ptr_index()) {
      PrintF(out, "\n  [%d]: double: %g", i, get_int64_entry_as_double(i));
    } else if (i < first_int32_index()) {
      PrintF(out, "\n  [%d]: pointer: %p", i,
             reinterpret_cast<void*>(get_ptr_entry(i)));
    } else {
      PrintF(out, "\n  [%d]: int32: %d", i, get_int32_entry(i));
    }
  }
  PrintF(out, "\n");
}


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void JSValue::JSValuePrint(FILE* out) {
  HeapObject::PrintHeader(out, "ValueObject");
  value()->Print(out);
}


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void JSMessageObject::JSMessageObjectPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSMessageObject");
  PrintF(out, " - type: ");
  type()->ShortPrint(out);
  PrintF(out, "\n - arguments: ");
  arguments()->ShortPrint(out);
  PrintF(out, "\n - start_position: %d", start_position());
  PrintF(out, "\n - end_position: %d", end_position());
  PrintF(out, "\n - script: ");
  script()->ShortPrint(out);
  PrintF(out, "\n - stack_trace: ");
  stack_trace()->ShortPrint(out);
  PrintF(out, "\n - stack_frames: ");
  stack_frames()->ShortPrint(out);
  PrintF(out, "\n");
}


677
void String::StringPrint(FILE* out) {
678
  if (StringShape(this).IsInternalized()) {
679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699
    PrintF(out, "#");
  } else if (StringShape(this).IsCons()) {
    PrintF(out, "c\"");
  } else {
    PrintF(out, "\"");
  }

  const char truncated_epilogue[] = "...<truncated>";
  int len = length();
  if (!FLAG_use_verbose_printer) {
    if (len > 100) {
      len = 100 - sizeof(truncated_epilogue);
    }
  }
  for (int i = 0; i < len; i++) {
    PrintF(out, "%c", Get(i));
  }
  if (len != length()) {
    PrintF(out, "%s", truncated_epilogue);
  }

700
  if (!StringShape(this).IsInternalized()) PrintF(out, "\"");
701 702 703
}


704 705 706 707 708 709 710 711
void Name::NamePrint(FILE* out) {
  if (IsString())
    String::cast(this)->StringPrint(out);
  else
    ShortPrint();
}


712
// This method is only meant to be called from gdb for debugging purposes.
713
// Since the string can also be in two-byte encoding, non-ASCII characters
714 715 716 717 718 719 720
// will be ignored in the output.
char* String::ToAsciiArray() {
  // Static so that subsequent calls frees previously allocated space.
  // This also means that previous results will be overwritten.
  static char* buffer = NULL;
  if (buffer != NULL) free(buffer);
  buffer = new char[length()+1];
721
  WriteToFlat(this, reinterpret_cast<uint8_t*>(buffer), 0, length());
722 723 724 725 726
  buffer[length()] = 0;
  return buffer;
}


727 728 729 730
static const char* const weekdays[] = {
  "???", "Sun", "Mon", "Tue", "Wed", "Thu", "Fri", "Sat"
};

731

732 733
void JSDate::JSDatePrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSDate");
734
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
735 736 737 738 739
  PrintF(out, " - value = ");
  value()->Print(out);
  if (!year()->IsSmi()) {
    PrintF(out, " - time = NaN\n");
  } else {
740 741 742 743 744 745 746 747
    PrintF(out, " - time = %s %04d/%02d/%02d %02d:%02d:%02d\n",
           weekdays[weekday()->IsSmi() ? Smi::cast(weekday())->value() + 1 : 0],
           year()->IsSmi() ? Smi::cast(year())->value() : -1,
           month()->IsSmi() ? Smi::cast(month())->value() : -1,
           day()->IsSmi() ? Smi::cast(day())->value() : -1,
           hour()->IsSmi() ? Smi::cast(hour())->value() : -1,
           min()->IsSmi() ? Smi::cast(min())->value() : -1,
           sec()->IsSmi() ? Smi::cast(sec())->value() : -1);
748 749 750 751
  }
}


752 753
void JSProxy::JSProxyPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSProxy");
754
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
755 756
  PrintF(out, " - handler = ");
  handler()->Print(out);
757 758
  PrintF(out, " - hash = ");
  hash()->Print(out);
759 760 761 762
  PrintF(out, "\n");
}


763 764
void JSFunctionProxy::JSFunctionProxyPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSFunctionProxy");
765
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
766 767 768 769 770 771 772 773 774 775
  PrintF(out, " - handler = ");
  handler()->Print(out);
  PrintF(out, " - call_trap = ");
  call_trap()->Print(out);
  PrintF(out, " - construct_trap = ");
  construct_trap()->Print(out);
  PrintF(out, "\n");
}


776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793
void JSSet::JSSetPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSSet");
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
  PrintF(out, " - table = ");
  table()->ShortPrint(out);
  PrintF(out, "\n");
}


void JSMap::JSMapPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSMap");
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
  PrintF(out, " - table = ");
  table()->ShortPrint(out);
  PrintF(out, "\n");
}


794 795
void JSWeakMap::JSWeakMapPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSWeakMap");
796
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
797 798 799 800 801 802
  PrintF(out, " - table = ");
  table()->ShortPrint(out);
  PrintF(out, "\n");
}


803 804
void JSWeakSet::JSWeakSetPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSWeakSet");
805
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
806 807 808 809 810 811
  PrintF(out, " - table = ");
  table()->ShortPrint(out);
  PrintF(out, "\n");
}


812 813
void JSArrayBuffer::JSArrayBufferPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSArrayBuffer");
814 815
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
  PrintF(out, " - backing_store = %p\n", backing_store());
816 817 818 819 820 821
  PrintF(out, " - byte_length = ");
  byte_length()->ShortPrint(out);
  PrintF(out, "\n");
}


822 823
void JSTypedArray::JSTypedArrayPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSTypedArray");
824
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
825 826 827 828 829 830
  PrintF(out, " - buffer =");
  buffer()->ShortPrint(out);
  PrintF(out, "\n - byte_offset = ");
  byte_offset()->ShortPrint(out);
  PrintF(out, "\n - byte_length = ");
  byte_length()->ShortPrint(out);
831
  PrintF(out, "\n - length = ");
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  length()->ShortPrint(out);
  PrintF("\n");
  PrintElements(out);
}


838 839 840 841 842 843 844 845 846 847 848 849 850
void JSDataView::JSDataViewPrint(FILE* out) {
  HeapObject::PrintHeader(out, "JSDataView");
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
  PrintF(out, " - buffer =");
  buffer()->ShortPrint(out);
  PrintF(out, "\n - byte_offset = ");
  byte_offset()->ShortPrint(out);
  PrintF(out, "\n - byte_length = ");
  byte_length()->ShortPrint(out);
  PrintF("\n");
}


851 852
void JSFunction::JSFunctionPrint(FILE* out) {
  HeapObject::PrintHeader(out, "Function");
853
  PrintF(out, " - map = %p\n", reinterpret_cast<void*>(map()));
854 855 856 857 858 859 860 861 862
  PrintF(out, " - initial_map = ");
  if (has_initial_map()) {
    initial_map()->ShortPrint(out);
  }
  PrintF(out, "\n - shared_info = ");
  shared()->ShortPrint(out);
  PrintF(out, "\n   - name = ");
  shared()->name()->Print(out);
  PrintF(out, "\n - context = ");
863
  context()->ShortPrint(out);
864 865
  PrintF(out, "\n - literals = ");
  literals()->ShortPrint(out);
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  PrintF(out, "\n - code = ");
  code()->ShortPrint(out);
  PrintF(out, "\n");

  PrintProperties(out);
  PrintElements(out);

  PrintF(out, "\n");
}


void SharedFunctionInfo::SharedFunctionInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "SharedFunctionInfo");
  PrintF(out, " - name: ");
  name()->ShortPrint(out);
  PrintF(out, "\n - expected_nof_properties: %d", expected_nof_properties());
  PrintF(out, "\n - instance class name = ");
  instance_class_name()->Print(out);
  PrintF(out, "\n - code = ");
  code()->ShortPrint(out);
886 887
  if (HasSourceCode()) {
    PrintF(out, "\n - source code = ");
888 889 890 891 892 893 894 895
    String* source = String::cast(Script::cast(script())->source());
    int start = start_position();
    int length = end_position() - start;
    SmartArrayPointer<char> source_string =
        source->ToCString(DISALLOW_NULLS,
                          FAST_STRING_TRAVERSAL,
                          start, length, NULL);
    PrintF(out, "%s", *source_string);
896
  }
897 898 899 900 901 902 903 904 905 906
  // Script files are often large, hard to read.
  // PrintF(out, "\n - script =");
  // script()->Print(out);
  PrintF(out, "\n - function token position = %d", function_token_position());
  PrintF(out, "\n - start position = %d", start_position());
  PrintF(out, "\n - end position = %d", end_position());
  PrintF(out, "\n - is expression = %d", is_expression());
  PrintF(out, "\n - debug info = ");
  debug_info()->ShortPrint(out);
  PrintF(out, "\n - length = %d", length());
907 908
  PrintF(out, "\n - optimized_code_map = ");
  optimized_code_map()->ShortPrint(out);
909 910 911 912 913
  PrintF(out, "\n");
}


void JSGlobalProxy::JSGlobalProxyPrint(FILE* out) {
914
  PrintF(out, "global_proxy ");
915
  JSObjectPrint(out);
916 917
  PrintF(out, "native context : ");
  native_context()->ShortPrint(out);
918 919 920 921 922 923 924
  PrintF(out, "\n");
}


void JSGlobalObject::JSGlobalObjectPrint(FILE* out) {
  PrintF(out, "global ");
  JSObjectPrint(out);
925 926
  PrintF(out, "native context : ");
  native_context()->ShortPrint(out);
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  PrintF(out, "\n");
}


void JSBuiltinsObject::JSBuiltinsObjectPrint(FILE* out) {
  PrintF(out, "builtins ");
  JSObjectPrint(out);
}


937 938 939 940 941
void Cell::CellPrint(FILE* out) {
  HeapObject::PrintHeader(out, "Cell");
}


942 943
void PropertyCell::PropertyCellPrint(FILE* out) {
  HeapObject::PrintHeader(out, "PropertyCell");
944 945 946 947 948 949 950 951 952 953 954 955 956
}


void Code::CodePrint(FILE* out) {
  HeapObject::PrintHeader(out, "Code");
#ifdef ENABLE_DISASSEMBLER
  if (FLAG_use_verbose_printer) {
    Disassemble(NULL, out);
  }
#endif
}


957
void Foreign::ForeignPrint(FILE* out) {
958
  PrintF(out, "foreign address : %p", foreign_address());
959 960 961
}


962 963 964 965 966 967
void ExecutableAccessorInfo::ExecutableAccessorInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "ExecutableAccessorInfo");
  PrintF(out, "\n - name: ");
  name()->ShortPrint(out);
  PrintF(out, "\n - flag: ");
  flag()->ShortPrint(out);
968 969 970 971 972 973
  PrintF(out, "\n - getter: ");
  getter()->ShortPrint(out);
  PrintF(out, "\n - setter: ");
  setter()->ShortPrint(out);
  PrintF(out, "\n - data: ");
  data()->ShortPrint(out);
974 975 976 977 978 979 980
}


void DeclaredAccessorInfo::DeclaredAccessorInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "DeclaredAccessorInfo");
  PrintF(out, "\n - name: ");
  name()->ShortPrint(out);
981 982
  PrintF(out, "\n - flag: ");
  flag()->ShortPrint(out);
983 984 985 986 987 988 989 990
  PrintF(out, "\n - descriptor: ");
  descriptor()->ShortPrint(out);
}


void DeclaredAccessorDescriptor::DeclaredAccessorDescriptorPrint(FILE* out) {
  HeapObject::PrintHeader(out, "DeclaredAccessorDescriptor");
  PrintF(out, "\n - internal field: ");
991
  serialized_data()->ShortPrint(out);
992 993 994
}


995 996 997 998 999 1000 1001
void Box::BoxPrint(FILE* out) {
  HeapObject::PrintHeader(out, "Box");
  PrintF(out, "\n - value: ");
  value()->ShortPrint(out);
}


1002 1003 1004 1005 1006 1007
void AccessorPair::AccessorPairPrint(FILE* out) {
  HeapObject::PrintHeader(out, "AccessorPair");
  PrintF(out, "\n - getter: ");
  getter()->ShortPrint(out);
  PrintF(out, "\n - setter: ");
  setter()->ShortPrint(out);
1008 1009
  PrintF(out, "\n - flag: ");
  access_flags()->ShortPrint(out);
1010 1011 1012
}


1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088
void AccessCheckInfo::AccessCheckInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "AccessCheckInfo");
  PrintF(out, "\n - named_callback: ");
  named_callback()->ShortPrint(out);
  PrintF(out, "\n - indexed_callback: ");
  indexed_callback()->ShortPrint(out);
  PrintF(out, "\n - data: ");
  data()->ShortPrint(out);
}


void InterceptorInfo::InterceptorInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "InterceptorInfo");
  PrintF(out, "\n - getter: ");
  getter()->ShortPrint(out);
  PrintF(out, "\n - setter: ");
  setter()->ShortPrint(out);
  PrintF(out, "\n - query: ");
  query()->ShortPrint(out);
  PrintF(out, "\n - deleter: ");
  deleter()->ShortPrint(out);
  PrintF(out, "\n - enumerator: ");
  enumerator()->ShortPrint(out);
  PrintF(out, "\n - data: ");
  data()->ShortPrint(out);
}


void CallHandlerInfo::CallHandlerInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "CallHandlerInfo");
  PrintF(out, "\n - callback: ");
  callback()->ShortPrint(out);
  PrintF(out, "\n - data: ");
  data()->ShortPrint(out);
  PrintF(out, "\n - call_stub_cache: ");
}


void FunctionTemplateInfo::FunctionTemplateInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "FunctionTemplateInfo");
  PrintF(out, "\n - class name: ");
  class_name()->ShortPrint(out);
  PrintF(out, "\n - tag: ");
  tag()->ShortPrint(out);
  PrintF(out, "\n - property_list: ");
  property_list()->ShortPrint(out);
  PrintF(out, "\n - serial_number: ");
  serial_number()->ShortPrint(out);
  PrintF(out, "\n - call_code: ");
  call_code()->ShortPrint(out);
  PrintF(out, "\n - property_accessors: ");
  property_accessors()->ShortPrint(out);
  PrintF(out, "\n - prototype_template: ");
  prototype_template()->ShortPrint(out);
  PrintF(out, "\n - parent_template: ");
  parent_template()->ShortPrint(out);
  PrintF(out, "\n - named_property_handler: ");
  named_property_handler()->ShortPrint(out);
  PrintF(out, "\n - indexed_property_handler: ");
  indexed_property_handler()->ShortPrint(out);
  PrintF(out, "\n - instance_template: ");
  instance_template()->ShortPrint(out);
  PrintF(out, "\n - signature: ");
  signature()->ShortPrint(out);
  PrintF(out, "\n - access_check_info: ");
  access_check_info()->ShortPrint(out);
  PrintF(out, "\n - hidden_prototype: %s",
         hidden_prototype() ? "true" : "false");
  PrintF(out, "\n - undetectable: %s", undetectable() ? "true" : "false");
  PrintF(out, "\n - need_access_check: %s",
         needs_access_check() ? "true" : "false");
}


void ObjectTemplateInfo::ObjectTemplateInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "ObjectTemplateInfo");
1089 1090 1091 1092
  PrintF(out, " - tag: ");
  tag()->ShortPrint(out);
  PrintF(out, "\n - property_list: ");
  property_list()->ShortPrint(out);
1093 1094
  PrintF(out, "\n - property_accessors: ");
  property_accessors()->ShortPrint(out);
1095 1096 1097 1098
  PrintF(out, "\n - constructor: ");
  constructor()->ShortPrint(out);
  PrintF(out, "\n - internal_field_count: ");
  internal_field_count()->ShortPrint(out);
1099
  PrintF(out, "\n");
1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118
}


void SignatureInfo::SignatureInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "SignatureInfo");
  PrintF(out, "\n - receiver: ");
  receiver()->ShortPrint(out);
  PrintF(out, "\n - args: ");
  args()->ShortPrint(out);
}


void TypeSwitchInfo::TypeSwitchInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "TypeSwitchInfo");
  PrintF(out, "\n - types: ");
  types()->ShortPrint(out);
}


1119 1120
void AllocationSite::AllocationSitePrint(FILE* out) {
  HeapObject::PrintHeader(out, "AllocationSite");
1121 1122
  PrintF(out, " - weak_next: ");
  weak_next()->ShortPrint(out);
1123 1124
  PrintF(out, "\n - dependent code: ");
  dependent_code()->ShortPrint(out);
1125 1126
  PrintF(out, "\n - nested site: ");
  nested_site()->ShortPrint(out);
1127
  PrintF(out, "\n - transition_info: ");
1128 1129
  if (transition_info()->IsCell()) {
    Cell* cell = Cell::cast(transition_info());
1130 1131 1132 1133 1134 1135 1136 1137 1138
    Object* cell_contents = cell->value();
    if (cell_contents->IsSmi()) {
      ElementsKind kind = static_cast<ElementsKind>(
          Smi::cast(cell_contents)->value());
      PrintF(out, "Array allocation with ElementsKind ");
      PrintElementsKind(out, kind);
      PrintF(out, "\n");
      return;
    }
1139
  } else if (transition_info()->IsJSArray()) {
1140
    PrintF(out, "Array literal ");
1141
    transition_info()->ShortPrint(out);
1142 1143 1144 1145
    PrintF(out, "\n");
    return;
  }

1146 1147
  PrintF(out, "unknown transition_info");
  transition_info()->ShortPrint(out);
1148 1149 1150 1151
  PrintF(out, "\n");
}


1152 1153
void AllocationMemento::AllocationMementoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "AllocationMemento");
1154 1155 1156 1157 1158 1159 1160 1161 1162
  PrintF(out, " - allocation site: ");
  if (IsValid()) {
    GetAllocationSite()->Print();
  } else {
    PrintF(out, "<invalid>\n");
  }
}


1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182
void Script::ScriptPrint(FILE* out) {
  HeapObject::PrintHeader(out, "Script");
  PrintF(out, "\n - source: ");
  source()->ShortPrint(out);
  PrintF(out, "\n - name: ");
  name()->ShortPrint(out);
  PrintF(out, "\n - line_offset: ");
  line_offset()->ShortPrint(out);
  PrintF(out, "\n - column_offset: ");
  column_offset()->ShortPrint(out);
  PrintF(out, "\n - type: ");
  type()->ShortPrint(out);
  PrintF(out, "\n - id: ");
  id()->ShortPrint(out);
  PrintF(out, "\n - data: ");
  data()->ShortPrint(out);
  PrintF(out, "\n - context data: ");
  context_data()->ShortPrint(out);
  PrintF(out, "\n - wrapper: ");
  wrapper()->ShortPrint(out);
1183
  PrintF(out, "\n - compilation type: %d", compilation_type());
1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230
  PrintF(out, "\n - line ends: ");
  line_ends()->ShortPrint(out);
  PrintF(out, "\n - eval from shared: ");
  eval_from_shared()->ShortPrint(out);
  PrintF(out, "\n - eval from instructions offset: ");
  eval_from_instructions_offset()->ShortPrint(out);
  PrintF(out, "\n");
}


#ifdef ENABLE_DEBUGGER_SUPPORT
void DebugInfo::DebugInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "DebugInfo");
  PrintF(out, "\n - shared: ");
  shared()->ShortPrint(out);
  PrintF(out, "\n - original_code: ");
  original_code()->ShortPrint(out);
  PrintF(out, "\n - code: ");
  code()->ShortPrint(out);
  PrintF(out, "\n - break_points: ");
  break_points()->Print(out);
}


void BreakPointInfo::BreakPointInfoPrint(FILE* out) {
  HeapObject::PrintHeader(out, "BreakPointInfo");
  PrintF(out, "\n - code_position: %d", code_position()->value());
  PrintF(out, "\n - source_position: %d", source_position()->value());
  PrintF(out, "\n - statement_position: %d", statement_position()->value());
  PrintF(out, "\n - break_point_objects: ");
  break_point_objects()->ShortPrint(out);
}
#endif  // ENABLE_DEBUGGER_SUPPORT


void DescriptorArray::PrintDescriptors(FILE* out) {
  PrintF(out, "Descriptor array  %d\n", number_of_descriptors());
  for (int i = 0; i < number_of_descriptors(); i++) {
    PrintF(out, " %d: ", i);
    Descriptor desc;
    Get(i, &desc);
    desc.Print(out);
  }
  PrintF(out, "\n");
}


1231 1232 1233 1234
void TransitionArray::PrintTransitions(FILE* out) {
  PrintF(out, "Transition array  %d\n", number_of_transitions());
  for (int i = 0; i < number_of_transitions(); i++) {
    PrintF(out, " %d: ", i);
1235
    GetKey(i)->NamePrint(out);
1236 1237 1238 1239 1240 1241
    PrintF(out, ": ");
    switch (GetTargetDetails(i).type()) {
      case FIELD: {
        PrintF(out, " (transition to field)\n");
        break;
      }
1242 1243
      case CONSTANT:
        PrintF(out, " (transition to constant)\n");
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        break;
      case CALLBACKS:
        PrintF(out, " (transition to callback)\n");
        break;
      // Values below are never in the target descriptor array.
      case NORMAL:
      case HANDLER:
      case INTERCEPTOR:
      case TRANSITION:
      case NONEXISTENT:
        UNREACHABLE();
        break;
    }
  }
  PrintF(out, "\n");
}


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#endif  // OBJECT_PRINT


} }  // namespace v8::internal