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The new core-internal 'Address_space' interface enables cores RM service to flush mappings of a PD in which a given 'Rm_client' thread resides. Prior this patch, each platform invented their own way to flush mappings in the respective 'rm_session_support.cc' implementation. However, those implementations used to deal poorly with some corner cases. In particular, if a PD session was destroyed prior a RM session, the RM session would try to use no longer existing PD session. The new 'Address_space' uses the just added weak-pointer mechanism to deal with this issue. Furthermore, the generic 'Rm_session_component::detach' function has been improved to avoid duplicated unmap operations for platforms that implement the 'Address_space' interface. Therefore, it is related to issue #595. Right now, this is OKL4 only, but other platforms will follow.
221 lines
6.3 KiB
C++
221 lines
6.3 KiB
C++
/*
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* \brief Region manager session interface
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* \author Norman Feske
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* \date 2006-05-15
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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__RM_SESSION__RM_SESSION_H_
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#define _INCLUDE__RM_SESSION__RM_SESSION_H_
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#include <base/exception.h>
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#include <base/stdint.h>
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#include <base/signal.h>
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#include <dataspace/capability.h>
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#include <thread/capability.h>
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#include <pager/capability.h>
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#include <session/session.h>
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namespace Genode {
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struct Rm_session : Session
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{
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enum Fault_type {
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READY = 0, READ_FAULT = 1, WRITE_FAULT = 2, EXEC_FAULT = 3 };
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/**
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* State of region-manager session
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*
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* If a client accesses a location outside the regions attached to
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* the region-manager session, a fault occurs and gets signalled to
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* the registered fault handler. The fault handler, in turn needs
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* the information about the fault address and fault type to
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* resolve the fault. This information is represented by this
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* structure.
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*/
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struct State
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{
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/**
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* Type of occurred fault
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*/
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Fault_type type;
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/**
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* Fault address
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*/
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addr_t addr;
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/**
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* Default constructor
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*/
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State() : type(READY), addr(0) { }
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/**
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* Constructor
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*/
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State(Fault_type fault_type, addr_t fault_addr) :
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type(fault_type), addr(fault_addr) { }
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};
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/**
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* Helper for tranferring the bit representation of a pointer as RPC
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* argument.
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*/
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class Local_addr
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{
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private:
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void *_ptr;
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public:
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template <typename T>
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Local_addr(T ptr) : _ptr((void *)ptr) { }
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Local_addr() : _ptr(0) { }
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template <typename T>
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operator T () { return (T)_ptr; }
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};
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static const char *service_name() { return "RM"; }
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/*********************
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** Exception types **
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*********************/
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class Attach_failed : public Exception { };
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class Invalid_args : public Attach_failed { };
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class Invalid_dataspace : public Attach_failed { };
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class Region_conflict : public Attach_failed { };
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class Out_of_metadata : public Attach_failed { };
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class Invalid_thread : public Exception { };
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class Unbound_thread : public Exception { };
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/**
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* Destructor
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*/
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virtual ~Rm_session() { }
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/**
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* Map dataspace into local address space
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*
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* \param ds capability of dataspace to map
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* \param size size of the locally mapped region
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* default (0) is the whole dataspace
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* \param offset start at offset in dataspace (page-aligned)
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* \param use_local_addr if set to true, attach the dataspace at
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* the specified 'local_addr'
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* \param local_addr local destination address
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* \param executable if the mapping should be executable
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*
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* \throw Attach_failed if dataspace or offset is invalid,
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* or on region conflict
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* \throw Out_of_metadata if meta-data backing store is exhausted
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*
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* \return local address of mapped dataspace
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*
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*/
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virtual Local_addr attach(Dataspace_capability ds,
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size_t size = 0, off_t offset = 0,
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bool use_local_addr = false,
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Local_addr local_addr = (addr_t)0,
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bool executable = false) = 0;
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/**
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* Shortcut for attaching a dataspace at a predefined local address
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*/
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Local_addr attach_at(Dataspace_capability ds, addr_t local_addr,
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size_t size = 0, off_t offset = 0) {
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return attach(ds, size, offset, true, local_addr); }
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/**
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* Shortcut for attaching a dataspace executable at a predefined local address
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*/
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Local_addr attach_executable(Dataspace_capability ds, addr_t local_addr,
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size_t size = 0, off_t offset = 0) {
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return attach(ds, size, offset, true, local_addr, true); }
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/**
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* Remove region from local address space
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*/
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virtual void detach(Local_addr local_addr) = 0;
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/**
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* Add client to pager
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*
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* \param thread thread that will be paged
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* \throw Invalid_thread
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* \throw Out_of_metadata
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* \throw Unbound_thread
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* \return capability to be used for handling page faults
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*
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* This method must be called at least once to establish a valid
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* communication channel between the pager part of the region manager
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* and the client thread.
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*/
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virtual Pager_capability add_client(Thread_capability thread) = 0;
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/**
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* Remove client from pager
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*
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* \param pager pager capability of client to be removed
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*/
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virtual void remove_client(Pager_capability) = 0;
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/**
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* Register signal handler for region-manager faults
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*
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* On Linux, this signal is never delivered because page-fault handling
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* is performed by the Linux kernel. On microkernel platforms,
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* unresolvable page faults (traditionally called segmentation fault)
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* will result in the delivery of the signal.
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*/
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virtual void fault_handler(Signal_context_capability handler) = 0;
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/**
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* Request current state of RM session
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*/
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virtual State state() = 0;
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/**
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* Return dataspace representation of region-manager session
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*/
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virtual Dataspace_capability dataspace() = 0;
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/*********************
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** RPC declaration **
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*********************/
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GENODE_RPC_THROW(Rpc_attach, Local_addr, attach,
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GENODE_TYPE_LIST(Invalid_dataspace, Region_conflict,
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Out_of_metadata, Invalid_args),
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Dataspace_capability, size_t, off_t, bool, Local_addr, bool);
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GENODE_RPC(Rpc_detach, void, detach, Local_addr);
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GENODE_RPC_THROW(Rpc_add_client, Pager_capability, add_client,
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GENODE_TYPE_LIST(Invalid_thread, Out_of_metadata),
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Thread_capability);
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GENODE_RPC(Rpc_remove_client, void, remove_client, Pager_capability);
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GENODE_RPC(Rpc_fault_handler, void, fault_handler, Signal_context_capability);
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GENODE_RPC(Rpc_state, State, state);
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GENODE_RPC(Rpc_dataspace, Dataspace_capability, dataspace);
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GENODE_RPC_INTERFACE(Rpc_attach, Rpc_detach, Rpc_add_client,
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Rpc_remove_client, Rpc_fault_handler, Rpc_state,
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Rpc_dataspace);
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};
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}
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#endif /* _INCLUDE__RM_SESSION__RM_SESSION_H_ */
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