#include <arch/x86/interrupts.h>
#include <arch/x86/tss.h>
+
#include <hal/apic.h>
#include <hal/cpu.h>
+
#include <lunaix/mm/kalloc.h>
+#include <lunaix/mm/pmm.h>
#include <lunaix/mm/vmm.h>
#include <lunaix/process.h>
#include <lunaix/sched.h>
-
+#include <lunaix/signal.h>
#include <lunaix/spike.h>
#include <lunaix/status.h>
#include <lunaix/syscall.h>
struct proc_info dummy;
-extern void __proc_table;
-
struct scheduler sched_ctx;
LOG_MODULE("SCHED")
sched_init()
{
size_t pg_size = ROUNDUP(sizeof(struct proc_info) * MAX_PROCESS, 0x1000);
- assert_msg(vmm_alloc_pages(
- KERNEL_PID, &__proc_table, pg_size, PG_PREM_RW, PP_FGPERSIST),
- "Fail to allocate proc table");
- sched_ctx = (struct scheduler){ ._procs = (struct proc_info*)&__proc_table,
+ for (size_t i = 0; i <= pg_size; i += 4096) {
+ uintptr_t pa = pmm_alloc_page(KERNEL_PID, PP_FGPERSIST);
+ vmm_set_mapping(
+ PD_REFERENCED, PROC_START + i, pa, PG_PREM_RW, VMAP_NULL);
+ }
+
+ sched_ctx = (struct scheduler){ ._procs = (struct proc_info*)PROC_START,
.ptable_len = 0,
.procs_index = 0 };
}
}
proc->state = PROC_RUNNING;
- // FIXME: 这里还是得再考虑一下。
+ // XXX: 我们需要这一步吗?
// tss_update_esp(__current->intr_ctx.esp);
- if (__current->page_table != proc->page_table) {
- __current = proc;
- cpu_lcr3(__current->page_table);
- // from now on, the we are in the kstack of another process
- } else {
- __current = proc;
- }
-
apic_done_servicing();
- asm volatile("movl %0, %%eax\n"
- "jmp soft_iret\n" ::"r"(&__current->intr_ctx)
- : "eax", "memory");
+ asm volatile("pushl %0\n"
+ "jmp switch_to\n" ::"r"(proc)); // kernel/asm/x86/interrupt.S
}
void
return destroy_process(proc->pid);
}
-pid_t
-alloc_pid()
+struct proc_info*
+alloc_process()
{
pid_t i = 0;
for (;
if (i == MAX_PROCESS) {
panick("Panic in Ponyville shimmer!");
}
- return i;
-}
-void
-push_process(struct proc_info* process)
-{
- int index = process->pid;
- if (index < 0 || index > sched_ctx.ptable_len) {
- __current->k_status = LXINVLDPID;
- return;
- }
-
- if (index == sched_ctx.ptable_len) {
+ if (i == sched_ctx.ptable_len) {
sched_ctx.ptable_len++;
}
- sched_ctx._procs[index] = *process;
+ struct proc_info* proc = &sched_ctx._procs[i];
+ memset(proc, 0, sizeof(*proc));
+
+ proc->state = PROC_CREATED;
+ proc->pid = i;
+ proc->created = clock_systime();
+ proc->pgid = proc->pid;
+
+ llist_init_head(&proc->mm.regions);
+ llist_init_head(&proc->children);
+ llist_init_head(&proc->grp_member);
+
+ return proc;
+}
- process = &sched_ctx._procs[index];
+void
+commit_process(struct proc_info* process)
+{
+ assert(process == &sched_ctx._procs[process->pid]);
- // make sure the reference is relative to process table
- llist_init_head(&process->children);
- llist_init_head(&process->grp_member);
+ if (process->state != PROC_CREATED) {
+ __current->k_status = LXINVL;
+ return;
+ }
// every process is the child of first process (pid=1)
if (process->parent) {
proc->state = PROC_DESTROY;
llist_delete(&proc->siblings);
- if (proc->mm.regions) {
- struct mm_region *pos, *n;
- llist_for_each(pos, n, &proc->mm.regions->head, head)
- {
- lxfree(pos);
- }
+ struct mm_region *pos, *n;
+ llist_for_each(pos, n, &proc->mm.regions.head, head)
+ {
+ lxfree(pos);
}
- vmm_mount_pd(PD_MOUNT_2, proc->page_table);
+ vmm_mount_pd(PD_MOUNT_1, proc->page_table);
- __del_pagetable(pid, PD_MOUNT_2);
+ __del_pagetable(pid, PD_MOUNT_1);
- vmm_unmount_pd(PD_MOUNT_2);
+ vmm_unmount_pd(PD_MOUNT_1);
return pid;
}