2012-04-03 15:39:20 +02:00
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#ifndef option_manager_hh_INCLUDED
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#define option_manager_hh_INCLUDED
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#include "utils.hh"
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#include "exception.hh"
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2012-04-03 20:25:27 +02:00
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#include "completion.hh"
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2013-03-26 13:47:14 +01:00
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#include "option_types.hh"
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2012-04-03 15:39:20 +02:00
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#include <unordered_map>
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namespace Kakoune
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{
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struct option_not_found : public runtime_error
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{
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option_not_found(const String& name)
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: runtime_error("option not found: " + name) {}
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};
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2013-03-03 17:25:40 +01:00
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class OptionManager;
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class Option
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{
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public:
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Option(OptionManager& manager, String name);
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virtual ~Option() {}
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template<typename T> const T& get() const;
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template<typename T> void set(const T& val);
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virtual String get_as_string() const = 0;
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virtual void set_from_string(const String& str) = 0;
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virtual void add_from_string(const String& str) = 0;
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String name() const { return m_name; }
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OptionManager& manager() const { return m_manager; }
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virtual Option* clone(OptionManager& manager) const = 0;
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protected:
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OptionManager& m_manager;
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String m_name;
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};
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2012-06-14 15:16:44 +02:00
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class OptionManagerWatcher
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{
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public:
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virtual ~OptionManagerWatcher() {}
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virtual void on_option_changed(const Option& option) = 0;
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};
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class OptionManager : private OptionManagerWatcher
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{
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public:
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OptionManager(OptionManager& parent);
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~OptionManager();
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2012-04-03 15:39:20 +02:00
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const Option& operator[] (const String& name) const;
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Option& get_local_option(const String& name);
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CandidateList complete_option_name(const String& prefix,
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ByteCount cursor_pos);
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using OptionList = std::vector<const Option*>;
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OptionList flatten_options() const;
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void register_watcher(OptionManagerWatcher& watcher);
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void unregister_watcher(OptionManagerWatcher& watcher);
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void on_option_changed(const Option& option) override;
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private:
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OptionManager()
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: m_parent(nullptr) {}
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// the only one allowed to construct a root option manager
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friend class GlobalOptions;
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std::vector<std::unique_ptr<Option>> m_options;
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OptionManager* m_parent;
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std::vector<OptionManagerWatcher*> m_watchers;
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};
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template<typename T>
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class TypedOption : public Option
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{
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public:
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TypedOption(OptionManager& manager, String name, const T& value)
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: Option(manager, std::move(name)), m_value(value) {}
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void set(const T& value)
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{
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if (m_value != value)
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{
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m_value = value;
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m_manager.on_option_changed(*this);
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}
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}
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const T& get() const { return m_value; }
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String get_as_string() const override
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{
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return option_to_string(m_value);
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}
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void set_from_string(const String& str) override
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{
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T val;
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option_from_string(str, val);
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set(val);
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}
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void add_from_string(const String& str) override
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{
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T val;
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option_from_string(str, val);
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if (option_add(m_value, val))
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m_manager.on_option_changed(*this);
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}
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Option* clone(OptionManager& manager) const override
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{
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return new TypedOption{manager, name(), m_value};
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}
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private:
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T m_value;
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};
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template<typename T> const T& Option::get() const
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{
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auto* typed_opt = dynamic_cast<const TypedOption<T>*>(this);
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if (not typed_opt)
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throw runtime_error("option " + name() + " is not of type " + typeid(T).name());
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return typed_opt->get();
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}
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template<typename T> void Option::set(const T& val)
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{
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auto* typed_opt = dynamic_cast<TypedOption<T>*>(this);
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if (not typed_opt)
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throw runtime_error("option " + name() + " is not of type " + typeid(T).name());
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return typed_opt->set(val);
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}
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template<typename T>
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auto find_option(T& container, const String& name) -> decltype(container.begin())
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{
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using ptr_type = decltype(*container.begin());
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return find_if(container, [&name](const ptr_type& opt) { return opt->name() == name; });
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}
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2012-11-22 13:50:29 +01:00
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class GlobalOptions : public OptionManager,
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public Singleton<GlobalOptions>
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{
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public:
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GlobalOptions();
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template<typename T>
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Option& declare_option(const String& name, const T& value)
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{
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if (find_option(m_options, name) != m_options.end())
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throw runtime_error("option " + name + " already declared");
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m_options.emplace_back(new TypedOption<T>{*this, name, value});
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return *m_options.back();
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}
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};
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}
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#endif // option_manager_hh_INCLUDED
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