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serenity/Userland/Applications/Spreadsheet/Cell.h
Ali Mohammad Pur 5f1a34bba3 Spreadsheet: Avoid using Value.to_string_without_side_effects()
We should use .to_string() and handle the possible exceptions.
This makes the displayed cell contents so much more informative than
'[object Object]' :^)
2021-12-12 14:49:49 +03:30

118 lines
3.2 KiB
C++

/*
* Copyright (c) 2020, the SerenityOS developers.
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#pragma once
#include "CellType/Type.h"
#include "ConditionalFormatting.h"
#include "Forward.h"
#include "JSIntegration.h"
#include "Position.h"
#include <AK/String.h>
#include <AK/Types.h>
#include <AK/WeakPtr.h>
namespace Spreadsheet {
struct Cell : public Weakable<Cell> {
enum Kind {
LiteralString,
Formula,
};
Cell(String data, Position position, WeakPtr<Sheet> sheet)
: m_dirty(false)
, m_data(move(data))
, m_kind(LiteralString)
, m_sheet(sheet)
, m_position(move(position))
{
}
Cell(String source, JS::Value&& cell_value, Position position, WeakPtr<Sheet> sheet)
: m_dirty(false)
, m_data(move(source))
, m_evaluated_data(move(cell_value))
, m_kind(Formula)
, m_sheet(sheet)
, m_position(move(position))
{
}
void reference_from(Cell*);
void set_data(String new_data);
void set_data(JS::Value new_data);
bool dirty() const { return m_dirty; }
void clear_dirty() { m_dirty = false; }
void set_exception(JS::Exception* exc) { m_js_exception = exc; }
JS::Exception* exception() const { return m_js_exception; }
const String& data() const { return m_data; }
const JS::Value& evaluated_data() const { return m_evaluated_data; }
Kind kind() const { return m_kind; }
const Vector<WeakPtr<Cell>>& referencing_cells() const { return m_referencing_cells; }
void set_type(StringView name);
void set_type(const CellType*);
void set_type_metadata(CellTypeMetadata&&);
const Position& position() const { return m_position; }
void set_position(Position position, Badge<Sheet>)
{
if (position != m_position) {
m_dirty = true;
m_position = move(position);
}
}
const Format& evaluated_formats() const { return m_evaluated_formats; }
Format& evaluated_formats() { return m_evaluated_formats; }
const Vector<ConditionalFormat>& conditional_formats() const { return m_conditional_formats; }
void set_conditional_formats(Vector<ConditionalFormat>&& fmts)
{
m_dirty = true;
m_conditional_formats = move(fmts);
}
JS::ThrowCompletionOr<String> typed_display() const;
JS::ThrowCompletionOr<JS::Value> typed_js_data() const;
const CellType& type() const;
const CellTypeMetadata& type_metadata() const { return m_type_metadata; }
CellTypeMetadata& type_metadata() { return m_type_metadata; }
String source() const;
JS::Value js_data();
void update();
void update_data(Badge<Sheet>);
const Sheet& sheet() const { return *m_sheet; }
Sheet& sheet() { return *m_sheet; }
void copy_from(const Cell&);
private:
bool m_dirty { false };
bool m_evaluated_externally { false };
String m_data;
JS::Value m_evaluated_data;
JS::Exception* m_js_exception { nullptr };
Kind m_kind { LiteralString };
WeakPtr<Sheet> m_sheet;
Vector<WeakPtr<Cell>> m_referencing_cells;
const CellType* m_type { nullptr };
CellTypeMetadata m_type_metadata;
Position m_position;
Vector<ConditionalFormat> m_conditional_formats;
Format m_evaluated_formats;
};
}