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serenity/Userland/Libraries/LibPDF/ObjectDerivatives.h
Matthew Olsson c98bda8ce6 LibPDF: Get rid of PlainText/Encoded StreamObject
This was a small optimization to allow a stream object to simply hold
a reference to the bytes in a PDF document rather than duplicating
them. However, as we move into features such as encryption, this
optimization does more harm than good. This can be revisited in the
future if necessary.
2022-03-29 02:52:57 +02:00

192 lines
5 KiB
C++

/*
* Copyright (c) 2021-2022, Matthew Olsson <mattco@serenityos.org>
* Copyright (c) 2021, Ben Wiederhake <BenWiederhake.GitHub@gmx.de>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#pragma once
#include <AK/FlyString.h>
#include <AK/HashMap.h>
#include <AK/RefCounted.h>
#include <AK/SourceLocation.h>
#include <LibPDF/Forward.h>
#include <LibPDF/Object.h>
#include <LibPDF/Value.h>
namespace PDF {
class StringObject final : public Object {
public:
StringObject(String string, bool is_binary)
: m_string(move(string))
, m_is_binary(is_binary)
{
}
~StringObject() override = default;
[[nodiscard]] ALWAYS_INLINE String const& string() const { return m_string; }
[[nodiscard]] ALWAYS_INLINE bool is_binary() const { return m_is_binary; }
const char* type_name() const override { return "string"; }
String to_string(int indent) const override;
protected:
bool is_string() const override { return true; }
private:
String m_string;
bool m_is_binary;
};
class NameObject final : public Object {
public:
explicit NameObject(FlyString name)
: m_name(move(name))
{
}
~NameObject() override = default;
[[nodiscard]] ALWAYS_INLINE FlyString const& name() const { return m_name; }
const char* type_name() const override { return "name"; }
String to_string(int indent) const override;
protected:
bool is_name() const override { return true; }
private:
FlyString m_name;
};
class ArrayObject final : public Object {
public:
explicit ArrayObject(Vector<Value> elements)
: m_elements(move(elements))
{
}
~ArrayObject() override = default;
[[nodiscard]] ALWAYS_INLINE size_t size() const { return m_elements.size(); }
[[nodiscard]] ALWAYS_INLINE Vector<Value> elements() const { return m_elements; }
ALWAYS_INLINE auto begin() const { return m_elements.begin(); }
ALWAYS_INLINE auto end() const { return m_elements.end(); }
ALWAYS_INLINE Value const& operator[](size_t index) const { return at(index); }
ALWAYS_INLINE Value const& at(size_t index) const { return m_elements[index]; }
#define DEFINE_INDEXER(class_name, snake_name) \
PDFErrorOr<NonnullRefPtr<class_name>> get_##snake_name##_at(Document*, size_t index) const;
ENUMERATE_OBJECT_TYPES(DEFINE_INDEXER)
#undef DEFINE_INDEXER
const char* type_name() const override
{
return "array";
}
String to_string(int indent) const override;
protected:
bool is_array() const override { return true; }
private:
Vector<Value> m_elements;
};
class DictObject final : public Object {
public:
explicit DictObject(HashMap<FlyString, Value> map)
: m_map(move(map))
{
}
~DictObject() override = default;
[[nodiscard]] ALWAYS_INLINE HashMap<FlyString, Value> const& map() const { return m_map; }
template<typename... Args>
bool contains(Args&&... keys) const { return (m_map.contains(keys) && ...); }
ALWAYS_INLINE Optional<Value> get(FlyString const& key) const { return m_map.get(key); }
Value get_value(FlyString const& key) const
{
auto value = get(key);
VERIFY(value.has_value());
return value.value();
}
PDFErrorOr<NonnullRefPtr<Object>> get_object(Document*, FlyString const& key) const;
#define DEFINE_GETTER(class_name, snake_name) \
PDFErrorOr<NonnullRefPtr<class_name>> get_##snake_name(Document*, FlyString const& key) const;
ENUMERATE_OBJECT_TYPES(DEFINE_GETTER)
#undef DEFINE_GETTER
const char* type_name() const override
{
return "dict";
}
String to_string(int indent) const override;
protected:
bool is_dict() const override { return true; }
private:
HashMap<FlyString, Value> m_map;
};
class StreamObject : public Object {
public:
explicit StreamObject(NonnullRefPtr<DictObject> const& dict, ByteBuffer const& bytes)
: m_dict(dict)
, m_buffer(bytes)
{
}
virtual ~StreamObject() override = default;
[[nodiscard]] ALWAYS_INLINE NonnullRefPtr<DictObject> dict() const { return m_dict; }
[[nodiscard]] ReadonlyBytes bytes() const { return m_buffer.bytes(); };
const char* type_name() const override { return "stream"; }
String to_string(int indent) const override;
private:
bool is_stream() const override { return true; }
NonnullRefPtr<DictObject> m_dict;
ByteBuffer m_buffer;
};
class IndirectValue final : public Object {
public:
IndirectValue(u32 index, u32 generation_index, Value const& value)
: m_index(index)
, m_value(value)
{
set_generation_index(generation_index);
}
~IndirectValue() override = default;
[[nodiscard]] ALWAYS_INLINE u32 index() const { return m_index; }
[[nodiscard]] ALWAYS_INLINE Value const& value() const { return m_value; }
const char* type_name() const override { return "indirect_object"; }
String to_string(int indent) const override;
protected:
bool is_indirect_value() const override { return true; }
private:
u32 m_index;
Value m_value;
};
}