HelenOS sources
This source file includes following definitions.
- istate_decode
- null_interrupt
- de_fault
- db_exception
- gp_fault
- ss_fault
- simd_fp_exception
- nm_fault
- tlb_shootdown_ipi
- irq_interrupt
- pic_spurious
- interrupt_init
#include <arch/interrupt.h>
#include <assert.h>
#include <syscall/syscall.h>
#include <stdio.h>
#include <debug.h>
#include <panic.h>
#include <genarch/drivers/i8259/i8259.h>
#include <genarch/pic/pic_ops.h>
#include <halt.h>
#include <cpu.h>
#include <arch/asm.h>
#include <mm/tlb.h>
#include <mm/as.h>
#include <arch.h>
#include <proc/thread.h>
#include <proc/task.h>
#include <synch/spinlock.h>
#include <arch/ddi/ddi.h>
#include <ipc/sysipc.h>
#include <interrupt.h>
#include <ddi/irq.h>
#include <symtab.h>
#include <stacktrace.h>
#include <proc/task.h>
pic_ops_t *pic_ops = NULL;
void istate_decode(istate_t *istate)
{
printf("cs =%0#10" PRIx32 "\teip=%0#10" PRIx32 "\t"
"efl=%0#10" PRIx32 "\terr=%0#10" PRIx32 "\n",
istate->cs, istate->eip, istate->eflags, istate->error_word);
printf("ds =%0#10" PRIx32 "\tes =%0#10" PRIx32 "\t"
"fs =%0#10" PRIx32 "\tgs =%0#10" PRIx32 "\n",
istate->ds, istate->es, istate->fs, istate->gs);
if (istate_from_uspace(istate))
printf("ss =%0#10" PRIx32 "\n", istate->ss);
printf("eax=%0#10" PRIx32 "\tebx=%0#10" PRIx32 "\t"
"ecx=%0#10" PRIx32 "\tedx=%0#10" PRIx32 "\n",
istate->eax, istate->ebx, istate->ecx, istate->edx);
printf("esi=%0#10" PRIx32 "\tedi=%0#10" PRIx32 "\t"
"ebp=%0#10" PRIx32 "\tesp=%0#10" PRIx32 "\n",
istate->esi, istate->edi, istate->ebp,
istate_from_uspace(istate) ? istate->esp :
(uint32_t) &istate->esp);
}
static void null_interrupt(unsigned int n, istate_t *istate)
{
fault_if_from_uspace(istate, "Unserviced interrupt: %u.", n);
panic_badtrap(istate, n, "Unserviced interrupt: %u.", n);
}
static void de_fault(unsigned int n, istate_t *istate)
{
fault_if_from_uspace(istate, "Divide error.");
panic_badtrap(istate, n, "Divide error.");
}
static void db_exception(unsigned int n, istate_t *istate)
{
}
static void gp_fault(unsigned int n __attribute__((unused)), istate_t *istate)
{
if (TASK) {
irq_spinlock_lock(&TASK->lock, false);
size_t ver = TASK->arch.iomapver;
irq_spinlock_unlock(&TASK->lock, false);
if (CPU->arch.iomapver_copy != ver) {
io_perm_bitmap_install();
return;
}
fault_if_from_uspace(istate, "General protection fault.");
}
panic_badtrap(istate, n, "General protection fault.");
}
static void ss_fault(unsigned int n __attribute__((unused)), istate_t *istate)
{
fault_if_from_uspace(istate, "Stack fault.");
panic_badtrap(istate, n, "Stack fault.");
}
static void simd_fp_exception(unsigned int n __attribute__((unused)), istate_t *istate)
{
uint32_t mxcsr;
asm volatile (
"stmxcsr %[mxcsr]\n"
: [mxcsr] "=m" (mxcsr)
);
fault_if_from_uspace(istate, "SIMD FP exception(19), MXCSR=%#0" PRIx32 ".",
mxcsr);
panic_badtrap(istate, n, "SIMD FP exception");
}
static void nm_fault(unsigned int n __attribute__((unused)),
istate_t *istate __attribute__((unused)))
{
#ifdef CONFIG_FPU_LAZY
scheduler_fpu_lazy_request();
#else
fault_if_from_uspace(istate, "FPU fault.");
panic_badtrap(istate, n, "FPU fault.");
#endif
}
#ifdef CONFIG_SMP
static void tlb_shootdown_ipi(unsigned int n __attribute__((unused)),
istate_t *istate __attribute__((unused)))
{
pic_ops->eoi(0);
tlb_shootdown_ipi_recv();
}
#endif
static void irq_interrupt(unsigned int n, istate_t *istate __attribute__((unused)))
{
assert(n >= IVT_IRQBASE);
unsigned int inum = n - IVT_IRQBASE;
bool ack = false;
assert(inum < IRQ_COUNT);
assert(inum != IRQ_PIC1);
irq_t *irq = irq_dispatch_and_lock(inum);
if (irq) {
if (irq->preack) {
pic_ops->eoi(inum);
ack = true;
}
irq->handler(irq);
irq_spinlock_unlock(&irq->lock, false);
} else {
#ifdef CONFIG_DEBUG
log(LF_ARCH, LVL_DEBUG, "cpu%u: unhandled IRQ %u", CPU->id,
inum);
#endif
}
if (!ack)
pic_ops->eoi(inum);
}
static void pic_spurious(unsigned int n, istate_t *istate)
{
unsigned int inum = n - IVT_IRQBASE;
if (!pic_ops->is_spurious(inum)) {
irq_interrupt(n, istate);
return;
}
pic_ops->handle_spurious(n);
#ifdef CONFIG_DEBUG
log(LF_ARCH, LVL_DEBUG, "cpu%u: PIC spurious interrupt %u", CPU->id,
inum);
#endif
}
void interrupt_init(void)
{
unsigned int i;
for (i = 0; i < IVT_ITEMS; i++)
exc_register(i, "null", false, (iroutine_t) null_interrupt);
for (i = 0; i < IRQ_COUNT; i++) {
if ((i != IRQ_PIC0_SPUR) && (i != IRQ_PIC1_SPUR) &&
(i != IRQ_PIC1))
exc_register(IVT_IRQBASE + i, "irq", true,
(iroutine_t) irq_interrupt);
}
exc_register(VECTOR_DE, "de_fault", true, (iroutine_t) de_fault);
exc_register(VECTOR_DB, "db_exc", true, (iroutine_t) db_exception);
exc_register(VECTOR_NM, "nm_fault", true, (iroutine_t) nm_fault);
exc_register(VECTOR_SS, "ss_fault", true, (iroutine_t) ss_fault);
exc_register(VECTOR_GP, "gp_fault", true, (iroutine_t) gp_fault);
exc_register(VECTOR_XM, "simd_fp", true, (iroutine_t) simd_fp_exception);
exc_register(VECTOR_PIC0_SPUR, "pic0_spurious", true,
(iroutine_t) pic_spurious);
exc_register(VECTOR_PIC1_SPUR, "pic1_spurious", true,
(iroutine_t) pic_spurious);
#ifdef CONFIG_SMP
exc_register(VECTOR_TLB_SHOOTDOWN_IPI, "tlb_shootdown", true,
(iroutine_t) tlb_shootdown_ipi);
#endif
}
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