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215 lines
5.5 KiB
C++
215 lines
5.5 KiB
C++
/*
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* \brief Support code for the thread API
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* \author Norman Feske
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* \date 2010-01-13
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*/
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/*
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* Copyright (C) 2010-2013 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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/* Genode includes */
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#include <rm_session/rm_session.h>
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#include <ram_session/ram_session.h>
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#include <base/printf.h>
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#include <base/thread.h>
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/* local includes */
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#include <platform.h>
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#include <map_local.h>
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#include <dataspace_component.h>
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using namespace Genode;
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/**
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* Pointer to dataspace used to hold core contexts
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*/
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enum { MAX_CORE_CONTEXTS = 256 };
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static Dataspace_component *context_ds[MAX_CORE_CONTEXTS];
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/**
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* Region-manager session for allocating thread contexts
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*
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* This class corresponds to the managed dataspace that is normally
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* used for organizing thread contexts with the thread context area.
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* It "emulates" the sub address space by adjusting the local address
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* argument to 'attach' with the offset of the thread context area.
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*/
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class Context_area_rm_session : public Rm_session
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{
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enum { verbose = false };
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public:
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/**
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* Attach backing store to thread-context area
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*/
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Local_addr attach(Dataspace_capability ds_cap,
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size_t size, off_t offset,
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bool use_local_addr, Local_addr local_addr,
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bool executable)
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{
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Dataspace_component *ds =
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dynamic_cast<Dataspace_component*>(Dataspace_capability::deref(ds_cap));
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if (!ds) {
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PERR("dataspace for core context does not exist");
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return (addr_t)0;
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}
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addr_t core_local_addr = Native_config::context_area_virtual_base() +
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(addr_t)local_addr;
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if (verbose)
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PDBG("core_local_addr = %lx, phys_addr = %lx, size = 0x%zx",
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core_local_addr, ds->phys_addr(), ds->size());
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if (!map_local(ds->phys_addr(), core_local_addr,
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ds->size() >> get_page_size_log2())) {
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PERR("could not map phys %lx at local %lx", ds->phys_addr(), core_local_addr);
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return (addr_t)0;
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}
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ds->assign_core_local_addr((void*)core_local_addr);
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return local_addr;
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}
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void detach(Local_addr local_addr)
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{
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addr_t core_local_addr = Native_config::context_area_virtual_base() +
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(addr_t)local_addr;
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Dataspace_component *ds = 0;
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/* find the dataspace component for the given address */
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for (unsigned i = 0; i < MAX_CORE_CONTEXTS; i++) {
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if (context_ds[i] &&
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(core_local_addr >= context_ds[i]->core_local_addr()) &&
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(core_local_addr < (context_ds[i]->core_local_addr() +
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context_ds[i]->size()))) {
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ds = context_ds[i];
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break;
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}
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}
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if (!ds) {
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PERR("dataspace for core context does not exist");
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return;
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}
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if (verbose)
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PDBG("core_local_addr = %lx, phys_addr = %lx, size = 0x%zx",
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ds->core_local_addr(), ds->phys_addr(), ds->size());
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Genode::unmap_local(ds->core_local_addr(), ds->size() >> get_page_size_log2());
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}
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Pager_capability add_client(Thread_capability) {
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return Pager_capability(); }
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void remove_client(Pager_capability) { }
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void fault_handler(Signal_context_capability) { }
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State state() { return State(); }
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Dataspace_capability dataspace() { return Dataspace_capability(); }
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};
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class Context_area_ram_session : public Ram_session
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{
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enum { verbose = false };
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public:
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Ram_dataspace_capability alloc(size_t size, bool cached)
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{
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/* find free context */
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unsigned i;
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for (i = 0; i < MAX_CORE_CONTEXTS; i++)
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if (!context_ds[i])
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break;
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if (i == MAX_CORE_CONTEXTS) {
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PERR("maximum number of core contexts (%d) reached", MAX_CORE_CONTEXTS);
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return Ram_dataspace_capability();
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}
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/* allocate physical memory */
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size = round_page(size);
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void *phys_base;
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if (platform_specific()->ram_alloc()->alloc_aligned(size, &phys_base,
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get_page_size_log2()).is_error()) {
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PERR("could not allocate backing store for new context");
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return Ram_dataspace_capability();
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}
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if (verbose)
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PDBG("phys_base = %p, size = 0x%zx", phys_base, size);
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context_ds[i] = new (platform()->core_mem_alloc())
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Dataspace_component(size, 0, (addr_t)phys_base, false, true, 0);
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Dataspace_capability cap = Dataspace_capability::local_cap(context_ds[i]);
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return static_cap_cast<Ram_dataspace>(cap);
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}
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void free(Ram_dataspace_capability ds)
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{
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Dataspace_component *dataspace_component =
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dynamic_cast<Dataspace_component*>(Dataspace_capability::deref(ds));
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if (!dataspace_component)
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return;
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for (unsigned i = 0; i < MAX_CORE_CONTEXTS; i++)
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if (context_ds[i] == dataspace_component) {
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context_ds[i] = 0;
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break;
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}
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void *phys_addr = (void*)dataspace_component->phys_addr();
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size_t size = dataspace_component->size();
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if (verbose)
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PDBG("phys_addr = %p, size = 0x%zx", phys_addr, size);
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destroy(platform()->core_mem_alloc(), dataspace_component);
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platform_specific()->ram_alloc()->free(phys_addr, size);
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}
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int ref_account(Ram_session_capability ram_session) { return 0; }
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int transfer_quota(Ram_session_capability ram_session, size_t amount) { return 0; }
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size_t quota() { return 0; }
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size_t used() { return 0; }
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};
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/**
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* Return single instance of the context-area RM and RAM session
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*/
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namespace Genode {
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Rm_session *env_context_area_rm_session()
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{
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static Context_area_rm_session inst;
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return &inst;
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}
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Ram_session *env_context_area_ram_session()
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{
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static Context_area_ram_session inst;
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return &inst;
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}
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}
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