#ifndef EVPP_H__ #define EVPP_H__ /* work in progress, don't use unless you know what you are doing */ namespace ev { template class callback { struct object { }; void *obj; void (object::*meth)(watcher &, int); /* a proxy is a kind of recipe on how to call a specific class method */ struct proxy_base { virtual void call (void *obj, void (object::*meth)(watcher &, int), watcher &w, int) const = 0; }; template struct proxy : proxy_base { virtual void call (void *obj, void (object::*meth)(watcher &, int), watcher &w, int e) const { ((reinterpret_cast(obj)) ->* (reinterpret_cast(meth))) (w, e); } }; proxy_base *prxy; public: template explicit callback (O1 *object, void (O2::*method)(watcher &, int)) { static proxy p; obj = reinterpret_cast(object); meth = reinterpret_cast(method); prxy = &p; } void call (watcher *w, int e) const { return prxy->call (obj, meth, *w, e); } }; #include "ev.h" enum { UNDEF = EV_UNDEF, NONE = EV_NONE, READ = EV_READ, WRITE = EV_WRITE, TIMEOUT = EV_TIMEOUT, PERIODIC = EV_PERIODIC, SIGNAL = EV_SIGNAL, IDLE = EV_IDLE, CHECK = EV_CHECK, PREPARE = EV_PREPARE, CHILD = EV_CHILD, ERROR = EV_ERROR, }; typedef ev_tstamp tstamp; inline ev_tstamp now (EV_P) { return ev_now (EV_A); } #if EV_MULTIPLICITY #define EV_CONSTRUCT(cppstem) \ EV_P; \ \ void set (EV_P) \ { \ this->EV_A = EV_A; \ } \ \ template \ explicit cppstem (O1 *object, void (O2::*method)(cppstem &, int), EV_P = ev_default_loop (0)) \ : callback (object, method), EV_A (EV_A) #else #define EV_CONSTRUCT(cppstem) \ template \ explicit cppstem (O1 *object, void (O2::*method)(cppstem &, int)) \ : callback (object, method) #endif /* using a template here would require quite a bit more lines, * so a macro solution was chosen */ #define EV_DECLARE_WATCHER(cppstem,cstem) \ \ extern "C" void cb_ ## cppstem (struct ev_ ## cstem *w, int revents); \ \ struct cppstem : ev_ ## cstem, callback \ { \ EV_CONSTRUCT (cppstem) \ { \ ev_init (static_cast(this), cb_ ## cppstem); \ } \ \ bool is_active () const \ { \ return ev_is_active (static_cast(this)); \ } \ \ bool is_pending () const \ { \ return ev_is_pending (static_cast(this)); \ } \ \ void start () \ { \ ev_ ## cstem ## _start (EV_A_ static_cast(this)); \ } \ \ void stop () \ { \ ev_ ## cstem ## _stop (EV_A_ static_cast(this)); \ } \ \ void operator ()(int events = EV_UNDEF) \ { \ return call (this, events); \ } \ \ private: \ \ cppstem (const cppstem &o) \ : callback (this, (void (cppstem::*)(cppstem &, int))0) \ { /* disabled */ } \ void operator =(const cppstem &o) { /* disabled */ } \ \ public: EV_DECLARE_WATCHER (io, io) void set (int fd, int events) { int active = is_active (); if (active) stop (); ev_io_set (static_cast(this), fd, events); if (active) start (); } void set (int events) { int active = is_active (); if (active) stop (); ev_io_set (static_cast(this), fd, events); if (active) start (); } void start (int fd, int events) { set (fd, events); start (); } }; EV_DECLARE_WATCHER (timer, timer) void set (ev_tstamp after, ev_tstamp repeat = 0.) { int active = is_active (); if (active) stop (); ev_timer_set (static_cast(this), after, repeat); if (active) start (); } void start (ev_tstamp after, ev_tstamp repeat = 0.) { set (after, repeat); start (); } void again () { ev_timer_again (EV_A_ static_cast(this)); } }; EV_DECLARE_WATCHER (periodic, periodic) void set (ev_tstamp at, ev_tstamp interval = 0.) { int active = is_active (); if (active) stop (); ev_periodic_set (static_cast(this), at, interval, 0); if (active) start (); } void start (ev_tstamp at, ev_tstamp interval = 0.) { set (at, interval); start (); } void again () { ev_periodic_again (EV_A_ static_cast(this)); } }; EV_DECLARE_WATCHER (idle, idle) }; EV_DECLARE_WATCHER (prepare, prepare) }; EV_DECLARE_WATCHER (check, check) }; EV_DECLARE_WATCHER (sig, signal) void set (int signum) { int active = is_active (); if (active) stop (); ev_signal_set (static_cast(this), signum); if (active) start (); } void start (int signum) { set (signum); start (); } }; EV_DECLARE_WATCHER (child, child) void set (int pid) { int active = is_active (); if (active) stop (); ev_child_set (static_cast(this), pid); if (active) start (); } void start (int pid) { set (pid); start (); } }; #undef EV_CONSTRUCT #undef EV_DECLARE_WATCHER } #endif