serenity/Kernel/Interrupts/GenericInterruptHandler.cpp
Liav A 7c0540a229 Everywhere: Move global Kernel pattern code to Kernel/Library directory
This has KString, KBuffer, DoubleBuffer, KBufferBuilder, IOWindow,
UserOrKernelBuffer and ScopedCritical classes being moved to the
Kernel/Library subdirectory.

Also, move the panic and assertions handling code to that directory.
2023-06-04 21:32:34 +02:00

81 lines
2.5 KiB
C++

/*
* Copyright (c) 2020, Liav A. <liavalb@hotmail.co.il>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include <Kernel/Arch/InterruptManagement.h>
#include <Kernel/Arch/Interrupts.h>
#include <Kernel/Interrupts/GenericInterruptHandler.h>
#include <Kernel/Library/Assertions.h>
namespace Kernel {
GenericInterruptHandler& GenericInterruptHandler::from(u8 interrupt_number)
{
return get_interrupt_handler(interrupt_number);
}
GenericInterruptHandler::GenericInterruptHandler(u8 interrupt_number, bool disable_remap)
: m_interrupt_number(interrupt_number)
, m_disable_remap(disable_remap)
{
// NOTE: We cannot register or unregister the handler while the object
// is being constructed or deconstructed!
}
void GenericInterruptHandler::will_be_destroyed()
{
// This will be called for RefCounted interrupt handlers before the
// object is being destroyed. As soon as the destructor is invoked
// it is no longer advisable to unregister the handler (which causes
// calls to virtual functions), so let's do this right before
// invoking it
unregister_interrupt_handler();
}
void GenericInterruptHandler::register_interrupt_handler()
{
if (m_registered)
return;
if (m_disable_remap)
register_generic_interrupt_handler(m_interrupt_number, *this);
else
register_generic_interrupt_handler(InterruptManagement::acquire_mapped_interrupt_number(m_interrupt_number), *this);
m_registered = true;
}
void GenericInterruptHandler::unregister_interrupt_handler()
{
if (!m_registered)
return;
if (m_disable_remap)
unregister_generic_interrupt_handler(m_interrupt_number, *this);
else
unregister_generic_interrupt_handler(InterruptManagement::acquire_mapped_interrupt_number(m_interrupt_number), *this);
m_registered = false;
}
void GenericInterruptHandler::change_interrupt_number(u8 number)
{
VERIFY_INTERRUPTS_DISABLED();
VERIFY(!m_disable_remap);
if (m_registered) {
unregister_generic_interrupt_handler(InterruptManagement::acquire_mapped_interrupt_number(interrupt_number()), *this);
m_registered = false;
}
m_interrupt_number = number;
register_generic_interrupt_handler(InterruptManagement::acquire_mapped_interrupt_number(interrupt_number()), *this);
}
ReadonlySpan<u32> GenericInterruptHandler::per_cpu_call_counts() const
{
return m_per_cpu_call_counts.span().slice(0, Processor::count());
}
void GenericInterruptHandler::increment_call_count()
{
++m_per_cpu_call_counts[Processor::current_id()];
}
}