1 #include <klibc/string.h>
2 #include <lunaix/clock.h>
3 #include <lunaix/common.h>
4 #include <lunaix/mm/pmm.h>
5 #include <lunaix/mm/region.h>
6 #include <lunaix/mm/valloc.h>
7 #include <lunaix/mm/vmm.h>
8 #include <lunaix/process.h>
9 #include <lunaix/spike.h>
10 #include <lunaix/status.h>
11 #include <lunaix/syscall.h>
12 #include <lunaix/syslog.h>
17 __dup_pagetable(pid_t pid, uintptr_t mount_point)
19 void* ptd_pp = pmm_alloc_page(pid, PP_FGPERSIST);
20 vmm_set_mapping(PD_REFERENCED, PG_MOUNT_1, ptd_pp, PG_PREM_RW, VMAP_NULL);
22 x86_page_table* ptd = PG_MOUNT_1;
23 x86_page_table* pptd = (x86_page_table*)(mount_point | (0x3FF << 12));
25 size_t kspace_l1inx = L1_INDEX(KERNEL_MM_BASE);
27 for (size_t i = 0; i < PG_MAX_ENTRIES - 1; i++) {
29 x86_pte_t ptde = pptd->entry[i];
30 // 空或者是未在内存中的L1页表项直接照搬过去。
32 if (!ptde || i >= kspace_l1inx || !(ptde & PG_PRESENT)) {
38 void* pt_pp = pmm_alloc_page(pid, PP_FGPERSIST);
40 PD_REFERENCED, PG_MOUNT_2, pt_pp, PG_PREM_RW, VMAP_NULL);
42 x86_page_table* ppt = (x86_page_table*)(mount_point | (i << 12));
43 x86_page_table* pt = PG_MOUNT_2;
45 for (size_t j = 0; j < PG_MAX_ENTRIES; j++) {
46 x86_pte_t pte = ppt->entry[j];
47 pmm_ref_page(pid, PG_ENTRY_ADDR(pte));
51 ptd->entry[i] = (uintptr_t)pt_pp | PG_ENTRY_FLAGS(ptde);
54 ptd->entry[PG_MAX_ENTRIES - 1] = NEW_L1_ENTRY(T_SELF_REF_PERM, ptd_pp);
60 __del_pagetable(pid_t pid, uintptr_t mount_point)
62 x86_page_table* pptd = (x86_page_table*)(mount_point | (0x3FF << 12));
64 // only remove user address space
65 for (size_t i = 0; i < L1_INDEX(KERNEL_MM_BASE); i++) {
66 x86_pte_t ptde = pptd->entry[i];
67 if (!ptde || !(ptde & PG_PRESENT)) {
71 x86_page_table* ppt = (x86_page_table*)(mount_point | (i << 12));
73 for (size_t j = 0; j < PG_MAX_ENTRIES; j++) {
74 x86_pte_t pte = ppt->entry[j];
75 // free the 4KB data page
76 if ((pte & PG_PRESENT)) {
77 pmm_free_page(pid, PG_ENTRY_ADDR(pte));
80 // free the L2 page table
81 pmm_free_page(pid, PG_ENTRY_ADDR(ptde));
83 // free the L1 directory
84 pmm_free_page(pid, PG_ENTRY_ADDR(pptd->entry[PG_MAX_ENTRIES - 1]));
88 vmm_dup_vmspace(pid_t pid)
90 return __dup_pagetable(pid, PD_REFERENCED);
93 __DEFINE_LXSYSCALL(pid_t, fork)
98 __DEFINE_LXSYSCALL(pid_t, getpid)
100 return __current->pid;
103 __DEFINE_LXSYSCALL(pid_t, getppid)
105 return __current->parent->pid;
108 __DEFINE_LXSYSCALL(pid_t, getpgid)
110 return __current->pgid;
113 __DEFINE_LXSYSCALL2(int, setpgid, pid_t, pid, pid_t, pgid)
115 struct proc_info* proc = pid ? get_process(pid) : __current;
118 __current->k_status = EINVAL;
122 pgid = pgid ? pgid : proc->pid;
124 struct proc_info* gruppenfuhrer = get_process(pgid);
126 if (!gruppenfuhrer || proc->pgid == proc->pid) {
127 __current->k_status = EINVAL;
131 llist_delete(&proc->grp_member);
132 llist_append(&gruppenfuhrer->grp_member, &proc->grp_member);
139 init_proc_user_space(struct proc_info* pcb)
141 vmm_mount_pd(PD_MOUNT_1, pcb->page_table);
147 &pcb->mm.regions, USTACK_END, USTACK_TOP, REGION_RW | REGION_RSHARED);
149 // 预留地址空间,具体物理页将由Page Fault Handler按需分配。
150 for (uintptr_t i = PG_ALIGN(USTACK_END); i < USTACK_TOP; i += PG_SIZE) {
151 vmm_set_mapping(PD_MOUNT_1, i, 0, PG_ALLOW_USER | PG_WRITE, VMAP_NULL);
154 // TODO other uspace initialization stuff
156 vmm_unmount_pd(PD_MOUNT_1);
160 __mark_region(uintptr_t start_vpn, uintptr_t end_vpn, int attr)
162 for (size_t i = start_vpn; i <= end_vpn; i++) {
163 x86_pte_t* curproc = &PTE_MOUNTED(PD_REFERENCED, i);
164 x86_pte_t* newproc = &PTE_MOUNTED(PD_MOUNT_1, i);
167 if ((attr & REGION_MODE_MASK) == REGION_RSHARED) {
168 // 如果读共享,则将两者的都标注为只读,那么任何写入都将会应用COW策略。
171 *curproc = *curproc & ~PG_WRITE;
172 *newproc = *newproc & ~PG_WRITE;
174 // 如果是私有页,则将该页从新进程中移除。
181 __copy_fdtable(struct proc_info* pcb)
183 for (size_t i = 0; i < VFS_MAX_FD; i++) {
184 struct v_fd* fd = __current->fdtable->fds[i];
187 vfs_dup_fd(fd, &pcb->fdtable->fds[i]);
194 struct proc_info* pcb = alloc_process();
195 pcb->mm.u_heap = __current->mm.u_heap;
196 pcb->intr_ctx = __current->intr_ctx;
197 pcb->parent = __current;
200 region_copy(&__current->mm.regions, &pcb->mm.regions);
202 setup_proc_mem(pcb, PD_REFERENCED);
204 // 根据 mm_region 进一步配置页表
206 struct mm_region *pos, *n;
207 llist_for_each(pos, n, &pcb->mm.regions.head, head)
210 if ((pos->attr & REGION_WSHARED)) {
214 uintptr_t start_vpn = pos->start >> 12;
215 uintptr_t end_vpn = pos->end >> 12;
216 __mark_region(start_vpn, end_vpn, pos->attr);
219 vmm_unmount_pd(PD_MOUNT_1);
222 pcb->intr_ctx.registers.eax = 0;
229 extern void __kernel_end;
232 setup_proc_mem(struct proc_info* proc, uintptr_t usedMnt)
234 // copy the entire kernel page table
235 pid_t pid = proc->pid;
236 void* pt_copy = __dup_pagetable(pid, usedMnt);
238 vmm_mount_pd(PD_MOUNT_1, pt_copy); // 将新进程的页表挂载到挂载点#2
240 // copy the kernel stack
241 for (size_t i = KSTACK_START >> 12; i <= KSTACK_TOP >> 12; i++) {
242 volatile x86_pte_t* ppte = &PTE_MOUNTED(PD_MOUNT_1, i);
245 This is a fucking nightmare, the TLB caching keep the rewrite to PTE
246 from updating. Even the Nightmare Moon the Evil is far less nasty
247 than this. It took me hours of debugging to figure this out.
249 In the name of Celestia our glorious goddess, I will fucking HATE
250 the TLB for the rest of my LIFE!
255 void* ppa = vmm_dup_page(pid, PG_ENTRY_ADDR(p));
256 pmm_free_page(pid, PG_ENTRY_ADDR(p));
257 *ppte = (p & 0xfff) | (uintptr_t)ppa;
260 // 我们不需要分配内核的区域,因为所有的内核代码和数据段只能通过系统调用来访问,任何非法的访问
261 // 都会导致eip落在区域外面,从而segmentation fault.
263 // 至于其他的区域我们暂时没有办法知道,因为那需要知道用户程序的信息。我们留到之后在处理。
264 proc->page_table = pt_copy;