mirror of https://github.com/odrling/Aegisub
More unique_ptr
This commit is contained in:
parent
eee4da0642
commit
95ef444c20
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@ -88,7 +88,7 @@ UnknownElement::UnknownElement() : m_pImp(new Imp_T
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UnknownElement::UnknownElement(const UnknownElement& unknown) : m_pImp(unknown.m_pImp->Clone()) {}
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UnknownElement::UnknownElement(int number) : m_pImp(new Imp_T<Integer>(number)) {}
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UnknownElement::UnknownElement(const char *string) : m_pImp(new Imp_T<String>(string)) {}
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UnknownElement::~UnknownElement() { delete m_pImp; }
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UnknownElement::~UnknownElement() { }
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#define DEFINE_UE_TYPE(Type) \
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UnknownElement::UnknownElement(Type const& val) : m_pImp(new Imp_T<Type>(val)) { } \
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@ -105,8 +105,7 @@ DEFINE_UE_TYPE(Null)
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UnknownElement& UnknownElement::operator =(const UnknownElement& unknown)
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{
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delete m_pImp;
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m_pImp = unknown.m_pImp->Clone();
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m_pImp.reset(unknown.m_pImp->Clone());
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return *this;
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}
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@ -12,6 +12,7 @@ Author: Terry Caton
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#include <deque>
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#include <list>
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#include <map>
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#include <memory>
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#include <string>
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#include <stdexcept>
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@ -126,7 +127,7 @@ private:
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template <typename ElementTypeT>
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ElementTypeT& CastTo();
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Imp* m_pImp;
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std::unique_ptr<Imp> m_pImp;
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};
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/////////////////////////////////////////////////////////////////////////////////
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@ -87,8 +87,9 @@ void AssFile::swap(AssFile &that) throw() {
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}
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AssFile::AssFile(const AssFile &from) {
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Line.clone_from(from.Line, std::mem_fun_ref(&AssEntry::Clone), delete_ptr());
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Line.clone_from(from.Line, std::mem_fun_ref(&AssEntry::Clone), [](AssEntry *e) { delete e; });
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}
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AssFile& AssFile::operator=(AssFile from) {
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std::swap(*this, from);
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return *this;
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@ -31,20 +31,20 @@
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/// @brief Base classes for audio renderers (spectrum, waveform, ...)
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/// @ingroup audio_ui
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// Headers
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#include "config.h"
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#include "audio_renderer.h"
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#include "include/aegisub/audio_provider.h"
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#include <libaegisub/util.h>
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#include <algorithm>
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#include <functional>
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#include <wx/bitmap.h>
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#include <wx/dcmemory.h>
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#include "include/aegisub/audio_provider.h"
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using std::placeholders::_1;
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AudioRendererBitmapCacheBitmapFactory::AudioRendererBitmapCacheBitmapFactory(AudioRenderer *renderer)
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@ -53,14 +53,9 @@ AudioRendererBitmapCacheBitmapFactory::AudioRendererBitmapCacheBitmapFactory(Aud
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assert(renderer);
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}
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wxBitmap *AudioRendererBitmapCacheBitmapFactory::ProduceBlock(int /* i */)
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std::unique_ptr<wxBitmap> AudioRendererBitmapCacheBitmapFactory::ProduceBlock(int /* i */)
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{
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return new wxBitmap(renderer->cache_bitmap_width, renderer->pixel_height, 24);
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}
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void AudioRendererBitmapCacheBitmapFactory::DisposeBlock(wxBitmap *bmp)
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{
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delete bmp;
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return agi::util::make_unique<wxBitmap>(renderer->cache_bitmap_width, renderer->pixel_height, 24);
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}
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size_t AudioRendererBitmapCacheBitmapFactory::GetBlockSize() const
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@ -79,7 +74,8 @@ AudioRenderer::AudioRenderer()
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, renderer(0)
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, provider(0)
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{
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bitmaps.resize(AudioStyle_MAX, AudioRendererBitmapCache(256, AudioRendererBitmapCacheBitmapFactory(this)));
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for (int i = 0; i < AudioStyle_MAX; ++i)
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bitmaps.emplace_back(256, AudioRendererBitmapCacheBitmapFactory(this));
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// Make sure there's *some* values for those fields, and in the caches
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SetMillisecondsPerPixel(1);
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@ -54,6 +54,8 @@ class AudioRenderer;
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/// @class AudioRendererBitmapCacheBitmapFactory
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/// @brief Produces wxBitmap objects for DataBlockCache storage for the audio renderer
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struct AudioRendererBitmapCacheBitmapFactory {
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typedef std::unique_ptr<wxBitmap> BlockType;
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/// The audio renderer we're producing bitmaps for
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AudioRenderer *renderer;
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@ -66,13 +68,7 @@ struct AudioRendererBitmapCacheBitmapFactory {
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/// @return A fresh wxBitmap
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///
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/// Produces a wxBitmap with dimensions pulled from our master AudioRenderer.
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wxBitmap *ProduceBlock(int i);
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/// @brief Delete a bitmap
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/// @param bmp The bitmap to delete
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///
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/// Deletes said bitmap.
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void DisposeBlock(wxBitmap *bmp);
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std::unique_ptr<wxBitmap> ProduceBlock(int i);
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/// @brief Calculate the size of bitmaps
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/// @return The size of bitmaps created
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@ -83,7 +79,6 @@ struct AudioRendererBitmapCacheBitmapFactory {
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typedef DataBlockCache<wxBitmap, 8, AudioRendererBitmapCacheBitmapFactory> AudioRendererBitmapCache;
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/// @class AudioRenderer
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/// @brief Renders audio to bitmap images for display on screen
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///
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@ -54,6 +54,8 @@
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/// Allocates blocks of derived data for the audio spectrum
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struct AudioSpectrumCacheBlockFactory {
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typedef std::unique_ptr<float, std::default_delete<float[]>> BlockType;
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/// Pointer back to the owning spectrum renderer
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AudioSpectrumRenderer *spectrum;
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@ -66,18 +68,11 @@ struct AudioSpectrumCacheBlockFactory {
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/// @return Newly allocated and filled block
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///
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/// The filling is delegated to the spectrum renderer
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float *ProduceBlock(size_t i)
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BlockType ProduceBlock(size_t i)
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{
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float *res = new float[((size_t)1)<<spectrum->derivation_size];
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spectrum->FillBlock(i, res);
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return res;
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}
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/// @brief De-allocate a cache block
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/// @param block The block to dispose of
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void DisposeBlock(float *block)
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{
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delete[] block;
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return BlockType(res);
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}
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/// @brief Calculate the in-memory size of a spec
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@ -118,7 +113,7 @@ AudioSpectrumRenderer::AudioSpectrumRenderer(std::string const& color_scheme_nam
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AudioSpectrumRenderer::~AudioSpectrumRenderer()
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{
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// This sequence will clean up
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provider = 0;
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provider = nullptr;
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RecreateCache();
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}
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@ -307,7 +307,7 @@ namespace Automation4 {
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std::string version;
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std::vector<cmd::Command*> macros;
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std::vector<ExportFilter*> filters;
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std::vector<std::unique_ptr<ExportFilter>> filters;
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/// load script and create internal structures etc.
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void Create();
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@ -337,7 +337,7 @@ namespace Automation4 {
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bool GetLoadedState() const { return L != 0; }
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std::vector<cmd::Command*> GetMacros() const { return macros; }
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std::vector<ExportFilter*> GetFilters() const { return filters; }
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std::vector<ExportFilter*> GetFilters() const;
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std::vector<SubtitleFormat*> GetFormats() const { return std::vector<SubtitleFormat*>(); }
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};
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@ -492,12 +492,20 @@ namespace Automation4 {
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for (int i = macros.size() - 1; i >= 0; --i)
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cmd::unreg(macros[i]->name());
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delete_clear(filters);
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filters.clear();
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lua_close(L);
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L = nullptr;
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}
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std::vector<ExportFilter*> LuaScript::GetFilters() const
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{
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std::vector<ExportFilter *> ret;
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ret.reserve(filters.size());
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for (auto& filter : filters) ret.push_back(filter.get());
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return ret;
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}
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void LuaScript::RegisterCommand(LuaCommand *command)
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{
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for (auto macro : macros) {
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@ -517,7 +525,7 @@ namespace Automation4 {
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void LuaScript::RegisterFilter(LuaExportFilter *filter)
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{
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filters.push_back(filter);
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filters.emplace_back(filter);
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}
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LuaScript* LuaScript::GetScriptObject(lua_State *L)
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@ -83,7 +83,7 @@ namespace Automation4 {
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/// Commits to apply once processing completes successfully
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std::deque<PendingCommit> pending_commits;
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/// Lines to delete once processing complete successfully
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std::deque<AssEntry*> lines_to_delete;
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std::deque<std::unique_ptr<AssEntry>> lines_to_delete;
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int ObjectIndexRead(lua_State *L);
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void ObjectIndexWrite(lua_State *L);
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@ -101,7 +101,7 @@ namespace Automation4 {
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void LuaSetUndoPoint(lua_State *L);
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// LuaAssFile can only be deleted by the reference count hitting zero
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~LuaAssFile() { }
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~LuaAssFile();
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public:
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static LuaAssFile *GetObjPointer(lua_State *L, int idx);
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@ -129,6 +129,8 @@ namespace {
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}
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namespace Automation4 {
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LuaAssFile::~LuaAssFile() { }
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void LuaAssFile::CheckAllowModify()
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{
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if (!can_modify)
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@ -376,7 +378,7 @@ namespace Automation4 {
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auto e = LuaToAssEntry(L);
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modification_type |= modification_mask(e.get());
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CheckBounds(n);
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lines_to_delete.push_back(lines[n - 1]);
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lines_to_delete.emplace_back(lines[n - 1]);
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lines[n - 1] = e.release();
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}
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else {
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@ -416,7 +418,7 @@ namespace Automation4 {
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for (size_t i = 0; i < lines.size(); ++i) {
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if (id_idx < ids.size() && ids[id_idx] == i) {
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modification_type |= modification_mask(lines[i]);
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lines_to_delete.push_back(lines[i]);
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lines_to_delete.emplace_back(lines[i]);
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++id_idx;
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}
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else {
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@ -438,7 +440,7 @@ namespace Automation4 {
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for (; b < lines.size(); ++a, ++b) {
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modification_type |= modification_mask(lines[a]);
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lines_to_delete.push_back(lines[a]);
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lines_to_delete.emplace_back(lines[a]);
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lines[a] = lines[b];
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}
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@ -609,7 +611,7 @@ namespace Automation4 {
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if (modification_type && can_set_undo && !undo_description.empty())
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ass->Commit(undo_description, modification_type);
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delete_clear(lines_to_delete);
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lines_to_delete.clear();
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references--;
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if (!references) delete this;
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@ -617,6 +619,7 @@ namespace Automation4 {
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void LuaAssFile::Cancel()
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{
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for (auto& line : lines_to_delete) line.release();
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references--;
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if (!references) delete this;
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}
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@ -49,25 +49,18 @@
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/// requested blocks in to avoid the default allocator.
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template <typename BlockT>
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struct BasicDataBlockFactory {
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typedef std::unique_ptr<BlockT> BlockType;
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/// @brief Allocates a block and returns it
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/// @param i Index of the block to allocate
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/// @return A pointer to the allocated block
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///
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/// This default implementation does not use the i parameter. Custom implementations
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/// of block factories should use i to determine what data to fill into the block.
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BlockT *ProduceBlock(size_t i)
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std::unique_ptr<BlockT> ProduceBlock(size_t i)
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{
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(void)i;
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return new BlockT;
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}
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/// @brief De-allocate a block
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/// @param block Pointer to the block to de-allocate
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///
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/// It is guaranteed that block was returned by ProduceBlock.
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void DisposeBlock(BlockT *block)
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{
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delete block;
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return std::unique_ptr<BlockT>(new BlockT);
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}
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/// @brief Retrieve the amount of memory consumed by a single block
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@ -94,9 +87,8 @@ template <
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typename BlockFactoryT = BasicDataBlockFactory<BlockT>
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>
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class DataBlockCache {
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/// Type of an array of blocks
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typedef std::vector<BlockT*> BlockArray;
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typedef std::vector<typename BlockFactoryT::BlockType> BlockArray;
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struct MacroBlock {
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/// This macroblock's position in the age list
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@ -105,6 +97,16 @@ class DataBlockCache {
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/// The blocks contained in the macroblock
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BlockArray blocks;
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#ifdef _MSC_VER
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MacroBlock() { }
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MacroBlock(MacroBlock&& rgt) : position(rgt.position), blocks(std::move(rgt.blocks)) { }
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MacroBlock& operator=(MacroBlock&& rgt) {
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position = rgt.position;
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blocks = std::move(rgt.blocks);
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return *this;
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}
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#endif
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};
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/// Type of an array of macro blocks
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@ -135,17 +137,21 @@ class DataBlockCache {
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if (mb.blocks.empty())
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return;
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for (auto block : mb.blocks)
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{
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if (block)
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factory.DisposeBlock(block);
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}
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mb.blocks.clear();
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age.erase(mb.position);
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}
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public:
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#ifdef _MSC_VER
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DataBlockCache(DataBlockCache&& rgt)
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: data(std::move(rgt.data))
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, age(std::move(rgt.age))
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, macroblock_size(rgt.macroblock_size)
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, macroblock_index_mask(rgt.macroblock_index_mask)
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, factory(std::move(rgt.factory))
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{ }
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#endif
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/// @brief Constructor
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/// @param block_count Total number of blocks the cache will manage
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/// @param factory Factory object to use for producing blocks
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@ -155,22 +161,12 @@ public:
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///
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/// The factory object passed must respond well to copying.
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DataBlockCache(size_t block_count, BlockFactoryT factory = BlockFactoryT())
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: factory(factory)
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: factory(factory)
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{
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SetBlockCount(block_count);
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}
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/// @brief Destructor
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///
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/// Disposes of all cached blocks
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~DataBlockCache()
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{
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// Clear all blocks by aging to zero bytes
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Age(0);
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}
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/// @brief Change the number of blocks in cache
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/// @param block_count New number of blocks to hold
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///
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@ -184,7 +180,7 @@ public:
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macroblock_index_mask = ~(((~0) >> MacroblockExponent) << MacroblockExponent);
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data.resize( (block_count + macroblock_size - 1) >> MacroblockExponent );
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data.resize((block_count + macroblock_size - 1) >> MacroblockExponent);
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}
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@ -201,8 +197,10 @@ public:
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// Quick way out: get rid of everything
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if (max_size == 0)
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{
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for (auto& mb : data)
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KillMacroBlock(mb);
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size_t block_count = data.size();
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data.clear();
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SetBlockCount(block_count);
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age.clear();
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return;
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}
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@ -212,14 +210,12 @@ public:
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auto it = age.begin();
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for (; it != age.end() && cur_size < max_size; ++it)
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{
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BlockArray &ba = (*it)->blocks;
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auto& ba = (*it)->blocks;
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cur_size += (ba.size() - std::count(ba.begin(), ba.end(), nullptr)) * block_size;
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}
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// Hit max, clear all remaining blocks
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for (; it != age.end();)
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{
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for (; it != age.end(); )
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KillMacroBlock(**it++);
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}
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}
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@ -229,21 +225,17 @@ public:
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/// @return A pointer to the block in cache
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///
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/// It is legal to pass 0 (null) for created, in this case nothing is returned in it.
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BlockT *Get(size_t i, bool *created = 0)
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BlockT *Get(size_t i, bool *created = nullptr)
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{
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size_t mbi = i >> MacroblockExponent;
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assert(mbi < data.size());
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MacroBlock &mb = data[mbi];
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if (mb.blocks.size() == 0)
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{
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if (mb.blocks.empty())
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mb.blocks.resize(macroblock_size);
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}
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else
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{
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age.erase(mb.position);
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}
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// Move this macroblock to the front of the age list
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age.push_front(&mb);
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@ -252,13 +244,13 @@ public:
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size_t block_index = i & macroblock_index_mask;
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assert(block_index < mb.blocks.size());
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BlockT *b = mb.blocks[block_index];
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BlockT *b = mb.blocks[block_index].get();
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if (!b)
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{
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b = factory.ProduceBlock(i);
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mb.blocks[block_index] = factory.ProduceBlock(i);
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b = mb.blocks[block_index].get();
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assert(b != 0);
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mb.blocks[block_index] = b;
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if (created) *created = true;
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}
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|
@ -114,22 +114,6 @@ void SetClipboard(wxBitmap const& new_value);
|
|||
|
||||
#define countof(array) (sizeof(array) / sizeof(array[0]))
|
||||
|
||||
/// Polymorphic delete functor
|
||||
struct delete_ptr {
|
||||
template<class T> void operator()(T* ptr) const {
|
||||
delete ptr;
|
||||
}
|
||||
};
|
||||
|
||||
/// Delete all of the items in a container of pointers and clear the container
|
||||
template<class T>
|
||||
void delete_clear(T& container) {
|
||||
if (!container.empty()) {
|
||||
std::for_each(container.begin(), container.end(), delete_ptr());
|
||||
container.clear();
|
||||
}
|
||||
}
|
||||
|
||||
template<class Out>
|
||||
struct cast {
|
||||
template<class In>
|
||||
|
|
Loading…
Reference in New Issue