serenity/Userland/Applications/Spreadsheet/Cell.cpp
Shannon Booth e2e7c4d574 Everywhere: Use to_number<T> instead of to_{int,uint,float,double}
In a bunch of cases, this actually ends up simplifying the code as
to_number will handle something such as:

```
Optional<I> opt;
if constexpr (IsSigned<I>)
    opt = view.to_int<I>();
else
    opt = view.to_uint<I>();
```

For us.

The main goal here however is to have a single generic number conversion
API between all of the String classes.
2023-12-23 20:41:07 +01:00

202 lines
5 KiB
C++

/*
* Copyright (c) 2020, the SerenityOS developers.
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include "Cell.h"
#include "Spreadsheet.h"
#include <AK/StringBuilder.h>
#include <AK/TemporaryChange.h>
#include <LibJS/Runtime/ValueInlines.h>
namespace Spreadsheet {
void Cell::set_data(ByteString new_data)
{
// If we are a formula, we do not save the beginning '=', if the new_data is "" we can simply change our kind
if (m_kind == Formula && m_data.is_empty() && new_data.is_empty()) {
m_kind = LiteralString;
return;
}
if (m_data == new_data)
return;
if (new_data.starts_with('=')) {
new_data = new_data.substring(1, new_data.length() - 1);
m_kind = Formula;
} else {
m_kind = LiteralString;
}
m_data = move(new_data);
m_dirty = true;
m_evaluated_externally = false;
}
void Cell::set_data(JS::Value new_data)
{
m_dirty = true;
m_evaluated_externally = true;
StringBuilder builder;
builder.append(new_data.to_string_without_side_effects());
m_data = builder.to_byte_string();
m_evaluated_data = move(new_data);
}
void Cell::set_type(CellType const* type)
{
m_type = type;
}
void Cell::set_type(StringView name)
{
auto* cell_type = CellType::get_by_name(name);
if (cell_type) {
return set_type(cell_type);
}
VERIFY_NOT_REACHED();
}
void Cell::set_type_metadata(CellTypeMetadata const& metadata)
{
m_type_metadata = metadata;
}
void Cell::set_type_metadata(CellTypeMetadata&& metadata)
{
m_type_metadata = move(metadata);
}
CellType const& Cell::type() const
{
if (m_type)
return *m_type;
if (m_kind == LiteralString) {
if (m_data.to_number<int>().has_value())
return *CellType::get_by_name("Numeric"sv);
}
return *CellType::get_by_name("Identity"sv);
}
JS::ThrowCompletionOr<ByteString> Cell::typed_display() const
{
return type().display(const_cast<Cell&>(*this), m_type_metadata);
}
JS::ThrowCompletionOr<JS::Value> Cell::typed_js_data() const
{
return type().js_value(const_cast<Cell&>(*this), m_type_metadata);
}
void Cell::update_data(Badge<Sheet>)
{
TemporaryChange cell_change { m_sheet->current_evaluated_cell(), this };
if (!m_dirty)
return;
if (m_dirty) {
m_dirty = false;
if (m_kind == Formula) {
if (!m_evaluated_externally) {
auto value_or_error = m_sheet->evaluate(m_data, this);
if (value_or_error.is_error()) {
m_evaluated_data = JS::js_undefined();
m_thrown_value = *value_or_error.release_error().release_value();
} else {
m_evaluated_data = value_or_error.release_value();
m_thrown_value = {};
}
}
}
for (auto& ref : m_referencing_cells) {
if (ref) {
ref->m_dirty = true;
ref->update();
}
}
}
m_evaluated_formats.background_color.clear();
m_evaluated_formats.foreground_color.clear();
if (m_thrown_value.is_empty()) {
for (auto& fmt : m_conditional_formats) {
if (!fmt.condition.is_empty()) {
auto value_or_error = m_sheet->evaluate(fmt.condition, this);
if (value_or_error.is_error()) {
m_thrown_value = *value_or_error.release_error().release_value();
} else {
if (value_or_error.release_value().to_boolean()) {
if (fmt.background_color.has_value())
m_evaluated_formats.background_color = fmt.background_color;
if (fmt.foreground_color.has_value())
m_evaluated_formats.foreground_color = fmt.foreground_color;
}
}
}
}
}
}
void Cell::update()
{
m_sheet->update(*this);
}
JS::Value Cell::js_data()
{
if (m_dirty)
update();
if (m_kind == Formula)
return m_evaluated_data;
auto& vm = m_sheet->vm();
return JS::PrimitiveString::create(vm, m_data);
}
ByteString Cell::source() const
{
StringBuilder builder;
if (m_kind == Formula)
builder.append('=');
builder.append(m_data);
return builder.to_byte_string();
}
// FIXME: Find a better way to figure out dependencies
void Cell::reference_from(Cell* other)
{
if (!other || other == this)
return;
if (!m_referencing_cells.find_if([other](auto const& ptr) { return ptr.ptr() == other; }).is_end())
return;
m_referencing_cells.append(other->make_weak_ptr());
}
void Cell::copy_from(Cell const& other)
{
m_dirty = true;
m_evaluated_externally = other.m_evaluated_externally;
m_data = other.m_data;
m_evaluated_data = other.m_evaluated_data;
m_kind = other.m_kind;
m_type = other.m_type;
m_type_metadata = other.m_type_metadata;
m_conditional_formats = other.m_conditional_formats;
m_evaluated_formats = other.m_evaluated_formats;
m_thrown_value = other.m_thrown_value;
}
}