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This commit brings all the changes made by running gdb/copyright.py as per GDB's Start of New Year Procedure. For the avoidance of doubt, all changes in this commits were performed by the script.
243 lines
7.4 KiB
C++
243 lines
7.4 KiB
C++
/* Observers
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Copyright (C) 2016-2022 Free Software Foundation, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>. */
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#ifndef COMMON_OBSERVABLE_H
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#define COMMON_OBSERVABLE_H
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#include <algorithm>
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#include <functional>
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#include <vector>
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/* Print an "observer" debug statement. */
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#define observer_debug_printf(fmt, ...) \
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debug_prefixed_printf_cond (observer_debug, "observer", fmt, ##__VA_ARGS__)
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/* Print "observer" start/end debug statements. */
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#define OBSERVER_SCOPED_DEBUG_START_END(fmt, ...) \
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scoped_debug_start_end (observer_debug, "observer", fmt, ##__VA_ARGS__)
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namespace gdb
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{
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namespace observers
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{
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extern bool observer_debug;
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/* An observer is an entity which is interested in being notified
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when GDB reaches certain states, or certain events occur in GDB.
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The entity being observed is called the observable. To receive
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notifications, the observer attaches a callback to the observable.
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One observable can have several observers.
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The observer implementation is also currently not reentrant. In
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particular, it is therefore not possible to call the attach or
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detach routines during a notification. */
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/* The type of a key that can be passed to attach, which can be passed
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to detach to remove associated observers. Tokens have address
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identity, and are thus usually const globals. */
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struct token
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{
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token () = default;
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DISABLE_COPY_AND_ASSIGN (token);
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};
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template<typename... T>
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class observable
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{
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public:
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typedef std::function<void (T...)> func_type;
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private:
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struct observer
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{
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observer (const struct token *token, func_type func, const char *name,
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const std::vector<const struct token *> &dependencies)
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: token (token), func (func), name (name), dependencies (dependencies)
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{}
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const struct token *token;
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func_type func;
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const char *name;
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std::vector<const struct token *> dependencies;
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};
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public:
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explicit observable (const char *name)
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: m_name (name)
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{
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}
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DISABLE_COPY_AND_ASSIGN (observable);
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/* Attach F as an observer to this observable. F cannot be detached or
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specified as a dependency.
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DEPENDENCIES is a list of tokens of observers to be notified before this
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one.
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NAME is the name of the observer, used for debug output purposes. Its
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lifetime must be at least as long as the observer is attached. */
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void attach (const func_type &f, const char *name,
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const std::vector<const struct token *> &dependencies = {})
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{
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attach (f, nullptr, name, dependencies);
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}
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/* Attach F as an observer to this observable.
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T is a reference to a token that can be used to later remove F or specify F
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as a dependency of another observer.
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DEPENDENCIES is a list of tokens of observers to be notified before this
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one.
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NAME is the name of the observer, used for debug output purposes. Its
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lifetime must be at least as long as the observer is attached. */
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void attach (const func_type &f, const token &t, const char *name,
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const std::vector<const struct token *> &dependencies = {})
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{
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attach (f, &t, name, dependencies);
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}
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/* Remove observers associated with T from this observable. T is
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the token that was previously passed to any number of "attach"
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calls. */
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void detach (const token &t)
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{
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auto iter = std::remove_if (m_observers.begin (),
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m_observers.end (),
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[&] (const observer &o)
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{
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return o.token == &t;
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});
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observer_debug_printf ("Detaching observable %s from observer %s",
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iter->name, m_name);
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m_observers.erase (iter, m_observers.end ());
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}
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/* Notify all observers that are attached to this observable. */
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void notify (T... args) const
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{
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OBSERVER_SCOPED_DEBUG_START_END ("observable %s notify() called", m_name);
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for (auto &&e : m_observers)
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{
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OBSERVER_SCOPED_DEBUG_START_END ("calling observer %s of observable %s",
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e.name, m_name);
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e.func (args...);
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}
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}
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private:
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std::vector<observer> m_observers;
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const char *m_name;
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/* Use for sorting algorithm, to indicate which observer we have visited. */
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enum class visit_state
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{
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NOT_VISITED,
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VISITING,
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VISITED,
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};
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/* Helper method for topological sort using depth-first search algorithm.
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Visit all dependencies of observer at INDEX in M_OBSERVERS (later referred
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to as "the observer"). Then append the observer to SORTED_OBSERVERS.
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If the observer is already visited, do nothing. */
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void visit_for_sorting (std::vector<observer> &sorted_observers,
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std::vector<visit_state> &visit_states, int index)
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{
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if (visit_states[index] == visit_state::VISITED)
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return;
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/* If we are already visiting this observer, it means there's a cycle. */
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gdb_assert (visit_states[index] != visit_state::VISITING);
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visit_states[index] = visit_state::VISITING;
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/* For each dependency of this observer... */
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for (const token *dep : m_observers[index].dependencies)
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{
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/* ... find the observer that has token DEP. If found, visit it. */
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auto it_dep
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= std::find_if (m_observers.begin (), m_observers.end (),
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[&] (observer o) { return o.token == dep; });
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if (it_dep != m_observers.end ())
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{
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int i = std::distance (m_observers.begin (), it_dep);
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visit_for_sorting (sorted_observers, visit_states, i);
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}
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}
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visit_states[index] = visit_state::VISITED;
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sorted_observers.push_back (m_observers[index]);
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}
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/* Sort the observers, so that dependencies come before observers
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depending on them.
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Uses depth-first search algorithm for topological sorting, see
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https://en.wikipedia.org/wiki/Topological_sorting#Depth-first_search . */
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void sort_observers ()
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{
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std::vector<observer> sorted_observers;
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std::vector<visit_state> visit_states (m_observers.size (),
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visit_state::NOT_VISITED);
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for (size_t i = 0; i < m_observers.size (); i++)
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visit_for_sorting (sorted_observers, visit_states, i);
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m_observers = std::move (sorted_observers);
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}
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void attach (const func_type &f, const token *t, const char *name,
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const std::vector<const struct token *> &dependencies)
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{
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observer_debug_printf ("Attaching observable %s to observer %s",
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name, m_name);
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m_observers.emplace_back (t, f, name, dependencies);
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/* The observer has been inserted at the end of the vector, so it will be
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after any of its potential dependencies attached earlier. If the
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observer has a token, it means that other observers can specify it as
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a dependency, so sorting is necessary to ensure those will be after the
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newly inserted observer afterwards. */
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if (t != nullptr)
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sort_observers ();
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};
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};
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} /* namespace observers */
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} /* namespace gdb */
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#endif /* COMMON_OBSERVABLE_H */
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