175 lines
3.5 KiB
C++
175 lines
3.5 KiB
C++
/*
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* \brief Pistachio-specific implementation of IRQ sessions
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* \author Julian Stecklina
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* \date 2008-02-21
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*/
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/*
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* Copyright (C) 2008-2017 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 Affero General Public License version 3.
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*/
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/* Genode includes */
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#include <base/log.h>
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#include <util/arg_string.h>
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/* core includes */
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#include <irq_root.h>
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#include <util.h>
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/* Pistachio includes */
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namespace Pistachio {
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#include <l4/ipc.h>
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}
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using namespace Genode;
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using namespace Pistachio;
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static inline L4_ThreadId_t irqno_to_threadid(unsigned int irqno)
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{
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/*
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* Interrupt threads have their number as thread_no and a version of 1.
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*/
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return L4_GlobalId(irqno, 1);
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}
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bool Irq_object::_associate()
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{
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L4_ThreadId_t const irq_thread = irqno_to_threadid(_irq);
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return L4_AssociateInterrupt(irq_thread, L4_Myself());
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}
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void Irq_object::_wait_for_irq()
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{
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L4_ThreadId_t const irq_thread = irqno_to_threadid(_irq);
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/* send unmask message and wait for new IRQ */
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L4_Set_MsgTag(L4_Niltag);
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L4_MsgTag_t res = L4_Call(irq_thread);
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if (L4_IpcFailed(res))
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error("ipc error while waiting for interrupt");
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}
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void Irq_object::start()
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{
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::Thread::start();
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_sync_bootup.lock();
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}
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void Irq_object::entry()
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{
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if (!_associate()) {
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error("could not associate with IRQ ", Hex(_irq));
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return;
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}
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/* thread is up and ready */
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_sync_bootup.unlock();
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/* wait for first ack_irq */
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_sync_ack.lock();
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/*
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* Right after associating with an interrupt, the interrupt is
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* unmasked. Hence, we do not need to send an unmask message
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* to the IRQ thread but just wait for the IRQ.
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*/
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L4_ThreadId_t const irq_thread = irqno_to_threadid(_irq);
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L4_Set_MsgTag(L4_Niltag);
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L4_MsgTag_t res = L4_Receive(irq_thread);
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if (L4_IpcFailed(res))
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error("ipc error while attaching to interrupt");
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/*
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* Now, the IRQ is masked. To receive the next IRQ we have to send
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* an unmask message to the IRQ thread first.
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*/
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if (_sig_cap.valid()) {
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Genode::Signal_transmitter(_sig_cap).submit(1);
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_sync_ack.lock();
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}
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while (true) {
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_wait_for_irq();
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if (!_sig_cap.valid())
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continue;
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Genode::Signal_transmitter(_sig_cap).submit(1);
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_sync_ack.lock();
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}
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}
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Irq_object::Irq_object(unsigned irq)
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:
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Thread_deprecated<4096>("irq"),
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_sync_ack(Lock::LOCKED), _sync_bootup(Lock::LOCKED),
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_irq(irq)
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{ }
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/***************************
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** IRQ session component **
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***************************/
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Irq_session_component::Irq_session_component(Range_allocator *irq_alloc,
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const char *args)
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:
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_irq_number(Arg_string::find_arg(args, "irq_number").long_value(-1)),
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_irq_alloc(irq_alloc),
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_irq_object(_irq_number)
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{
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long msi = Arg_string::find_arg(args, "device_config_phys").long_value(0);
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if (msi)
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throw Root::Unavailable();
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if (!irq_alloc || irq_alloc->alloc_addr(1, _irq_number).error()) {
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error("unavailable IRQ ", Hex(_irq_number), " requested");
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throw Root::Unavailable();
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}
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_irq_object.start();
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}
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Irq_session_component::~Irq_session_component()
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{
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L4_Word_t res = L4_DeassociateInterrupt(irqno_to_threadid(_irq_number));
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if (res != 1)
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error("L4_DeassociateInterrupt failed");
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}
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void Irq_session_component::ack_irq()
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{
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_irq_object.ack_irq();
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}
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void Irq_session_component::sigh(Genode::Signal_context_capability cap)
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{
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_irq_object.sigh(cap);
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}
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Genode::Irq_session::Info Irq_session_component::info()
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{
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/* no MSI support */
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return { .type = Genode::Irq_session::Info::Type::INVALID };
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}
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