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layer.cpp
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356 lines (292 loc) · 7.15 KB
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// Aseprite Document Library
// Copyright (c) 2001-2015 David Capello
//
// This file is released under the terms of the MIT license.
// Read LICENSE.txt for more information.
#ifdef HAVE_CONFIG_H
#include "config.h"
#endif
#include "doc/layer.h"
#include "doc/cel.h"
#include "doc/image.h"
#include "doc/primitives.h"
#include "doc/sprite.h"
#include <algorithm>
#include <cstring>
namespace doc {
Layer::Layer(ObjectType type, Sprite* sprite)
: WithUserData(type)
, m_sprite(sprite)
, m_parent(NULL)
, m_flags(LayerFlags(
int(LayerFlags::Visible) |
int(LayerFlags::Editable)))
{
ASSERT(type == ObjectType::LayerImage || type == ObjectType::LayerFolder);
setName("Layer");
}
Layer::~Layer()
{
}
int Layer::getMemSize() const
{
return sizeof(Layer);
}
Layer* Layer::getPrevious() const
{
if (m_parent != NULL) {
LayerConstIterator it =
std::find(m_parent->getLayerBegin(),
m_parent->getLayerEnd(), this);
if (it != m_parent->getLayerEnd() &&
it != m_parent->getLayerBegin()) {
it--;
return *it;
}
}
return NULL;
}
Layer* Layer::getNext() const
{
if (m_parent != NULL) {
LayerConstIterator it =
std::find(m_parent->getLayerBegin(),
m_parent->getLayerEnd(), this);
if (it != m_parent->getLayerEnd()) {
it++;
if (it != m_parent->getLayerEnd())
return *it;
}
}
return NULL;
}
Cel* Layer::cel(frame_t frame) const
{
return NULL;
}
//////////////////////////////////////////////////////////////////////
// LayerImage class
LayerImage::LayerImage(Sprite* sprite)
: Layer(ObjectType::LayerImage, sprite)
, m_blendmode(BlendMode::NORMAL)
, m_opacity(255)
{
}
LayerImage::~LayerImage()
{
destroyAllCels();
}
int LayerImage::getMemSize() const
{
int size = sizeof(LayerImage);
CelConstIterator it = getCelBegin();
CelConstIterator end = getCelEnd();
for (; it != end; ++it) {
const Cel* cel = *it;
size += cel->getMemSize();
const Image* image = cel->image();
size += image->getMemSize();
}
return size;
}
void LayerImage::destroyAllCels()
{
CelIterator it = getCelBegin();
CelIterator end = getCelEnd();
for (; it != end; ++it) {
Cel* cel = *it;
delete cel;
}
m_cels.clear();
}
Cel* LayerImage::cel(frame_t frame) const
{
CelConstIterator it = findCelIterator(frame);
if (it != getCelEnd())
return *it;
else
return nullptr;
}
void LayerImage::getCels(CelList& cels) const
{
CelConstIterator it = getCelBegin();
CelConstIterator end = getCelEnd();
for (; it != end; ++it)
cels.push_back(*it);
}
Cel* LayerImage::getLastCel() const
{
if (!m_cels.empty())
return m_cels.back();
else
return NULL;
}
CelConstIterator LayerImage::findCelIterator(frame_t frame) const
{
CelIterator it = const_cast<LayerImage*>(this)->findCelIterator(frame);
return CelConstIterator(it);
}
CelIterator LayerImage::findCelIterator(frame_t frame)
{
auto first = getCelBegin();
auto end = getCelEnd();
// Here we use a binary search to find the first cel equal to "frame" (or after frame)
first = std::lower_bound(
first, end, nullptr,
[frame](Cel* cel, Cel*) -> bool {
return cel->frame() < frame;
});
// We return the iterator only if it's an exact match
if (first != end && (*first)->frame() == frame)
return first;
else
return end;
}
CelIterator LayerImage::findFirstCelIteratorAfter(frame_t firstAfterFrame)
{
auto first = getCelBegin();
auto end = getCelEnd();
// Here we use a binary search to find the first cel after the given frame
first = std::lower_bound(
first, end, nullptr,
[firstAfterFrame](Cel* cel, Cel*) -> bool {
return cel->frame() <= firstAfterFrame;
});
return first;
}
void LayerImage::addCel(Cel* cel)
{
ASSERT(cel);
ASSERT(cel->data() && "The cel doesn't contain CelData");
ASSERT(cel->image());
ASSERT(sprite());
ASSERT(cel->image()->pixelFormat() == sprite()->pixelFormat());
CelIterator it = findFirstCelIteratorAfter(cel->frame());
m_cels.insert(it, cel);
cel->setParentLayer(this);
}
/**
* Removes the cel from the layer.
*
* It doesn't destroy the cel, you have to delete it after calling
* this routine.
*/
void LayerImage::removeCel(Cel* cel)
{
ASSERT(cel);
CelIterator it = findCelIterator(cel->frame());
ASSERT(it != m_cels.end());
m_cels.erase(it);
cel->setParentLayer(NULL);
}
void LayerImage::moveCel(Cel* cel, frame_t frame)
{
removeCel(cel);
cel->setFrame(frame);
addCel(cel);
}
/**
* Configures some properties of the specified layer to make it as the
* "Background" of the sprite.
*
* You can't use this routine if the sprite already has a background
* layer.
*/
void LayerImage::configureAsBackground()
{
ASSERT(sprite() != NULL);
ASSERT(sprite()->backgroundLayer() == NULL);
switchFlags(LayerFlags::BackgroundLayerFlags, true);
setName("Background");
sprite()->folder()->stackLayer(this, NULL);
}
void LayerImage::displaceFrames(frame_t fromThis, frame_t delta)
{
Sprite* sprite = this->sprite();
if (delta > 0) {
for (frame_t c=sprite->lastFrame(); c>=fromThis; --c) {
if (Cel* cel = this->cel(c))
moveCel(cel, c+delta);
}
}
else {
for (frame_t c=fromThis; c<=sprite->lastFrame(); ++c) {
if (Cel* cel = this->cel(c))
moveCel(cel, c+delta);
}
}
}
//////////////////////////////////////////////////////////////////////
// LayerFolder class
LayerFolder::LayerFolder(Sprite* sprite)
: Layer(ObjectType::LayerFolder, sprite)
{
setName("Layer Set");
}
LayerFolder::~LayerFolder()
{
destroyAllLayers();
}
void LayerFolder::destroyAllLayers()
{
LayerIterator it = getLayerBegin();
LayerIterator end = getLayerEnd();
for (; it != end; ++it) {
Layer* layer = *it;
delete layer;
}
m_layers.clear();
}
int LayerFolder::getMemSize() const
{
int size = sizeof(LayerFolder);
LayerConstIterator it = getLayerBegin();
LayerConstIterator end = getLayerEnd();
for (; it != end; ++it) {
const Layer* layer = *it;
size += layer->getMemSize();
}
return size;
}
void LayerFolder::getCels(CelList& cels) const
{
LayerConstIterator it = getLayerBegin();
LayerConstIterator end = getLayerEnd();
for (; it != end; ++it)
(*it)->getCels(cels);
}
void LayerFolder::addLayer(Layer* layer)
{
m_layers.push_back(layer);
layer->setParent(this);
}
void LayerFolder::removeLayer(Layer* layer)
{
LayerIterator it = std::find(m_layers.begin(), m_layers.end(), layer);
ASSERT(it != m_layers.end());
m_layers.erase(it);
layer->setParent(NULL);
}
void LayerFolder::stackLayer(Layer* layer, Layer* after)
{
ASSERT(layer != after);
if (layer == after)
return;
LayerIterator it = std::find(m_layers.begin(), m_layers.end(), layer);
ASSERT(it != m_layers.end());
m_layers.erase(it);
if (after) {
LayerIterator after_it = std::find(m_layers.begin(), m_layers.end(), after);
ASSERT(after_it != m_layers.end());
after_it++;
m_layers.insert(after_it, layer);
}
else
m_layers.insert(m_layers.begin(), layer);
}
void LayerFolder::displaceFrames(frame_t fromThis, frame_t delta)
{
for (Layer* layer : m_layers)
layer->displaceFrames(fromThis, delta);
}
} // namespace doc