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a31378476d
Fixes #1394
405 lines
9.8 KiB
C++
405 lines
9.8 KiB
C++
/*
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* \brief Paging-server framework
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* \author Norman Feske
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* \date 2006-04-28
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*/
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/*
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* Copyright (C) 2006-2013 Genode Labs GmbH
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*
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* This file is part of the Genode OS framework, which is distributed
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* under the terms of the GNU General Public License version 2.
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*/
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#ifndef _INCLUDE__BASE__PAGER_H_
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#define _INCLUDE__BASE__PAGER_H_
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#include <base/thread.h>
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#include <base/object_pool.h>
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#include <base/ipc_pager.h>
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#include <base/capability.h>
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#include <cap_session/cap_session.h>
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#include <pager/capability.h>
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namespace Genode {
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class Pager_entrypoint;
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class Pager_object;
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class Exception_handlers
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{
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private:
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template <uint8_t EV>
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__attribute__((regparm(1))) static void _handler(addr_t);
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public:
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Exception_handlers(Pager_object *);
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template <uint8_t EV>
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void register_handler(Pager_object *, Nova::Mtd,
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void (__attribute__((regparm(1)))*)(addr_t) = nullptr);
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};
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class Pager_object : public Object_pool<Pager_object>::Entry
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{
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private:
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unsigned long _badge; /* used for debugging */
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/**
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* User-level signal handler registered for this pager object via
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* 'Cpu_session::exception_handler()'.
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*/
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Signal_context_capability _exception_sigh;
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/**
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* selectors for
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* - cleanup portal
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* - semaphore used by caller used to notify paused state
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* - semaphore used to block during page fault handling or pausing
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*/
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addr_t _selectors;
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addr_t _initial_esp;
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addr_t _initial_eip;
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addr_t _client_exc_pt_sel;
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addr_t _client_exc_vcpu;
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struct
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{
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struct Thread_state thread;
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addr_t sel_client_ec;
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enum {
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BLOCKED = 0x1U,
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DEAD = 0x2U,
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SINGLESTEP = 0x4U,
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NOTIFY_REQUEST = 0x8U,
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SIGNAL_SM = 0x10U,
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DISSOLVED = 0x20U,
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SUBMIT_SIGNAL = 0x40U,
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SKIP_EXCEPTION = 0x80U,
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};
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uint8_t _status;
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/* convenience function to access pause/recall state */
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inline bool blocked() { return _status & BLOCKED;}
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inline void block() { _status |= BLOCKED; }
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inline void unblock() { _status &= ~BLOCKED; }
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inline void mark_dead() { _status |= DEAD; }
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inline bool is_dead() { return _status & DEAD; }
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inline bool singlestep() { return _status & SINGLESTEP; }
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inline void notify_request() { _status |= NOTIFY_REQUEST; }
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inline bool notify_requested() { return _status & NOTIFY_REQUEST; }
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inline void notify_cancel() { _status &= ~NOTIFY_REQUEST; }
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inline void mark_signal_sm() { _status |= SIGNAL_SM; }
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inline bool has_signal_sm() { return _status & SIGNAL_SM; }
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inline void mark_dissolved() { _status |= DISSOLVED; }
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inline bool dissolved() { return _status & DISSOLVED; }
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inline bool to_submit() { return _status & SUBMIT_SIGNAL; }
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inline void submit_signal() { _status |= SUBMIT_SIGNAL; }
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inline void reset_submit() { _status &= ~SUBMIT_SIGNAL; }
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inline bool skip_requested() { return _status & SKIP_EXCEPTION; }
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inline void skip_request() { _status |= SKIP_EXCEPTION; }
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inline void skip_reset() { _status &= ~SKIP_EXCEPTION; }
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} _state;
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Thread_capability _thread_cap;
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Exception_handlers _exceptions;
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void _copy_state(Nova::Utcb * utcb);
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addr_t sel_pt_cleanup() { return _selectors; }
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addr_t sel_sm_notify() { return _selectors + 1; }
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addr_t sel_sm_block() { return _selectors + 2; }
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__attribute__((regparm(1)))
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static void _page_fault_handler(addr_t pager_obj);
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__attribute__((regparm(1)))
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static void _startup_handler(addr_t pager_obj);
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__attribute__((regparm(1)))
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static void _invoke_handler(addr_t pager_obj);
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__attribute__((regparm(1)))
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static void _recall_handler(addr_t pager_obj);
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public:
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const Affinity::Location location;
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Pager_object(unsigned long badge, Affinity::Location location);
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virtual ~Pager_object();
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unsigned long badge() const { return _badge; }
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void reset_badge() { _badge = 0; }
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virtual int pager(Ipc_pager &ps) = 0;
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/**
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* Assign user-level exception handler for the pager object
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*/
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void exception_handler(Signal_context_capability sigh)
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{
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_exception_sigh = sigh;
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}
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void exception(uint8_t exit_id);
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/**
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* Return base of initial portal window
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*/
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addr_t exc_pt_sel_client() { return _client_exc_pt_sel; }
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addr_t exc_pt_vcpu() { return _client_exc_vcpu; }
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/**
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* Set initial stack pointer used by the startup handler
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*/
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addr_t initial_esp() { return _initial_esp; }
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void initial_esp(addr_t esp) { _initial_esp = esp; }
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/**
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* Set initial instruction pointer used by the startup handler
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*/
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void initial_eip(addr_t eip) { _initial_eip = eip; }
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/**
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* Continue execution of pager object
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*/
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void wake_up();
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/**
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* Notify exception handler about the occurrence of an exception
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*/
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bool submit_exception_signal()
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{
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if (!_exception_sigh.valid()) return false;
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_state.reset_submit();
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Signal_transmitter transmitter(_exception_sigh);
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transmitter.submit();
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return true;
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}
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/**
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* Return entry point address
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*/
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addr_t handler_address()
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{
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return reinterpret_cast<addr_t>(_invoke_handler);
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}
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/**
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* Return semaphore to block on until state of a recall is
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* available.
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*/
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Native_capability notify_sm()
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{
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if (_state.blocked() || _state.is_dead())
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return Native_capability();
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_state.notify_request();
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return Native_capability(sel_sm_notify());
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}
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/**
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* Copy thread state of recalled thread.
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*/
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bool copy_thread_state(Thread_state * state_dst)
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{
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if (!state_dst || !_state.blocked())
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return false;
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*state_dst = _state.thread;
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return true;
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}
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/**
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* Cancel blocking in a lock so that recall exception can take
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* place.
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*/
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void client_cancel_blocking();
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uint8_t client_recall();
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void client_set_ec(addr_t ec) { _state.sel_client_ec = ec; }
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inline Native_capability single_step(bool on)
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{
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if (_state.is_dead() ||
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(on && (_state._status & _state.SINGLESTEP)) ||
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(!on && !(_state._status & _state.SINGLESTEP)))
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return Native_capability();
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if (on)
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_state._status |= _state.SINGLESTEP;
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else
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_state._status &= ~_state.SINGLESTEP;
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/* we want to be notified if state change is done */
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_state.notify_request();
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/* the first single step exit ignore when switching it on */
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if (on && _state.blocked())
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_state.skip_request();
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/* force client in exit and thereby apply single_step change */
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client_recall();
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/* single_step mode changes don't apply if blocked - wake up */
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if (_state.blocked())
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wake_up();
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return Native_capability(sel_sm_notify());
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}
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/**
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* Remember thread cap so that rm_session can tell thread that
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* rm_client is gone.
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*/
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Thread_capability thread_cap() { return _thread_cap; } const
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void thread_cap(Thread_capability cap) { _thread_cap = cap; }
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/**
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* Note in the thread state that an unresolved page
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* fault occurred.
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*/
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void unresolved_page_fault_occurred()
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{
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_state.thread.unresolved_page_fault = true;
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}
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/**
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* Make sure nobody is in the handler anymore by doing an IPC to a
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* local cap pointing to same serving thread (if not running in the
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* context of the serving thread). When the call returns
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* we know that nobody is handled by this object anymore, because
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* all remotely available portals had been revoked beforehand.
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*/
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void cleanup_call();
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/**
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* Open receive window for initial portals for vCPU.
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*/
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void prepare_vCPU_portals()
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{
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_client_exc_vcpu = cap_map()->insert(Nova::NUM_INITIAL_VCPU_PT_LOG2);
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}
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};
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/**
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* A 'Pager_activation' processes one page fault of a 'Pager_object' at a time.
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*/
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class Pager_entrypoint;
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class Pager_activation_base: public Thread_base
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{
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private:
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Native_capability _cap;
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Pager_entrypoint *_ep; /* entry point to which the
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activation belongs */
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/**
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* Lock used for blocking until '_cap' is initialized
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*/
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Lock _cap_valid;
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public:
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/**
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* Constructor
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*
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* \param name name of the new thread
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* \param stack_size stack size of the new thread
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*/
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Pager_activation_base(char const * const name,
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size_t const stack_size);
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/**
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* Set entry point, which the activation serves
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*
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* This function is only called by the 'Pager_entrypoint'
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* constructor.
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*/
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void ep(Pager_entrypoint *ep) { _ep = ep; }
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/**
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* Thread interface
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*/
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void entry();
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/**
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* Return capability to this activation
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*
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* This function should only be called from 'Pager_entrypoint'
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*/
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Native_capability cap()
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{
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/* ensure that the initialization of our 'Ipc_pager' is done */
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if (!_cap.valid())
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_cap_valid.lock();
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return _cap;
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}
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};
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/**
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* Paging entry point
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*
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* For a paging entry point can hold only one activation. So, paging is
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* strictly serialized for one entry point.
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*/
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class Pager_entrypoint : public Object_pool<Pager_object>
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{
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private:
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Pager_activation_base *_activation;
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Cap_session *_cap_session;
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public:
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/**
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* Constructor
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*
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* \param cap_session Cap_session for creating capabilities
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* for the pager objects managed by this
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* entry point
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* \param a initial activation
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*/
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Pager_entrypoint(Cap_session *cap_session, Pager_activation_base *a = 0);
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/**
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* Associate Pager_object with the entry point
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*/
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Pager_capability manage(Pager_object *obj);
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/**
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* Dissolve Pager_object from entry point
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*/
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void dissolve(Pager_object *obj);
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};
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template <int STACK_SIZE>
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class Pager_activation : public Pager_activation_base
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{
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public:
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Pager_activation() : Pager_activation_base("pager", STACK_SIZE)
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{ }
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};
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}
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#endif /* _INCLUDE__BASE__PAGER_H_ */
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