1 #include <lunaix/mm/mmap.h>
2 #include <lunaix/mm/pmm.h>
3 #include <lunaix/mm/valloc.h>
4 #include <lunaix/mm/vmm.h>
5 #include <lunaix/spike.h>
7 #include <lunaix/syscall.h>
8 #include <lunaix/syscall_utils.h>
10 // any size beyond this is bullshit
11 #define BS_SIZE (KERNEL_MM_BASE - UMMAP_START)
14 mem_has_overlap(vm_regions_t* regions, ptr_t start, ptr_t end)
16 struct mm_region *pos, *n;
17 llist_for_each(pos, n, regions, head)
19 if (pos->end >= start && pos->start < start) {
23 if (pos->end <= end && pos->start >= start) {
27 if (pos->end >= end && pos->start < end) {
36 mem_adjust_inplace(vm_regions_t* regions,
37 struct mm_region* region,
40 ssize_t len = newend - region->start;
49 if (mem_has_overlap(regions, region->start, newend)) {
59 mem_map(void** addr_out,
60 struct mm_region** created,
63 struct mmap_param* param)
65 assert_msg(addr, "addr can not be NULL");
67 ptr_t last_end = USER_START, found_loc = addr;
68 struct mm_region *pos, *n;
70 vm_regions_t* vm_regions = ¶m->pvms->regions;
72 if ((param->flags & MAP_FIXED_NOREPLACE)) {
73 if (mem_has_overlap(vm_regions, found_loc, param->mlen + found_loc)) {
79 if ((param->flags & MAP_FIXED)) {
81 mem_unmap(param->vms_mnt, vm_regions, found_loc, param->mlen);
88 llist_for_each(pos, n, vm_regions, head)
90 if (last_end < found_loc) {
91 size_t avail_space = pos->start - found_loc;
92 if (pos->start > found_loc && avail_space > param->mlen) {
95 found_loc = pos->end + PG_SIZE;
104 if (found_loc >= KERNEL_MM_BASE || found_loc < USER_START) {
108 struct mm_region* region = region_create_range(
111 ((param->proct | param->flags) & 0x3f) | (param->type & ~0xffff));
113 region->mfile = file;
114 region->foff = param->offset;
115 region->flen = param->flen;
116 region->proc_vms = param->pvms;
118 region_add(vm_regions, region);
120 u32_t attr = PG_ALLOW_USER;
121 if ((param->proct & REGION_WRITE)) {
125 for (u32_t i = 0; i < param->mlen; i += PG_SIZE) {
126 vmm_set_mapping(param->vms_mnt, found_loc + i, 0, attr, 0);
134 *addr_out = (void*)found_loc;
143 mem_remap(void** addr_out,
144 struct mm_region** remapped,
147 struct mmap_param* param)
155 mem_sync_pages(ptr_t mnt,
156 struct mm_region* region,
161 if (!region->mfile || !(region->attr & REGION_WSHARED)) {
166 for (size_t i = 0; i < length; i += PG_SIZE) {
167 if (!vmm_lookupat(mnt, start + i, &mapping)) {
171 if (PG_IS_DIRTY(*mapping.pte)) {
172 size_t offset = mapping.va - region->start + region->foff;
173 struct v_inode* inode = region->mfile->inode;
175 region->mfile->ops->write_page(
176 inode, (void*)mapping.va, PG_SIZE, offset);
178 *mapping.pte &= ~PG_DIRTY;
180 cpu_flush_page((ptr_t)mapping.pte);
181 } else if ((options & MS_INVALIDATE)) {
185 if (options & MS_INVALIDATE_ALL) {
192 *mapping.pte &= ~PG_PRESENT;
193 pmm_free_page(KERNEL_PID, mapping.pa);
194 cpu_flush_page((ptr_t)mapping.pte);
200 vm_regions_t* regions,
205 struct mm_region* pos = list_entry(regions->next, struct mm_region, head);
206 while (length && (ptr_t)&pos->head != (ptr_t)regions) {
207 if (pos->end >= addr && pos->start <= addr) {
208 size_t l = MIN(length, pos->end - addr);
209 mem_sync_pages(mnt, pos, addr, l, options);
214 pos = list_entry(pos->head.next, struct mm_region, head);
225 mem_unmap_region(ptr_t mnt, struct mm_region* region)
227 size_t len = ROUNDUP(region->end - region->start, PG_SIZE);
228 mem_sync_pages(mnt, region, region->start, len, 0);
230 for (size_t i = region->start; i <= region->end; i += PG_SIZE) {
231 ptr_t pa = vmm_del_mapping(mnt, i);
233 pmm_free_page(__current->pid, pa);
236 llist_delete(®ion->head);
237 region_release(region);
241 mem_unmap(ptr_t mnt, vm_regions_t* regions, ptr_t addr, size_t length)
243 length = ROUNDUP(length, PG_SIZE);
244 ptr_t cur_addr = PG_ALIGN(addr);
245 struct mm_region *pos, *n;
247 llist_for_each(pos, n, regions, head)
249 if (pos->start <= cur_addr && pos->end >= cur_addr) {
254 while (&pos->head != regions && cur_addr >= pos->start) {
255 u32_t l = pos->end - cur_addr;
259 // unmap cause discontinunity in a memory region - do split
260 struct mm_region* region = valloc(sizeof(struct mm_region));
262 region->start = cur_addr + length;
263 llist_insert_after(&pos->head, ®ion->head);
267 mem_sync_pages(mnt, pos, cur_addr, l, 0);
269 for (size_t i = 0; i < l; i += PG_SIZE) {
270 ptr_t pa = vmm_del_mapping(mnt, cur_addr + i);
272 pmm_free_page(pos->proc_vms->pid, pa);
276 n = container_of(pos->head.next, typeof(*pos), head);
277 if (pos->end == pos->start) {
278 llist_delete(&pos->head);
290 __DEFINE_LXSYSCALL3(void*, sys_mmap, void*, addr, size_t, length, va_list, lst)
292 int proct = va_arg(lst, int);
293 int fd = va_arg(lst, u32_t);
294 off_t offset = va_arg(lst, off_t);
295 int options = va_arg(lst, int);
297 void* result = (void*)-1;
299 ptr_t addr_ptr = (ptr_t)addr;
301 if (!length || length > BS_SIZE || !PG_ALIGNED(addr_ptr)) {
307 addr_ptr = UMMAP_START;
308 } else if (addr_ptr < UMMAP_START || addr_ptr + length >= UMMAP_END) {
309 if (!(options & (MAP_FIXED | MAP_FIXED_NOREPLACE))) {
315 struct v_file* file = NULL;
317 if (!(options & MAP_ANON)) {
319 if ((errno = vfs_getfd(fd, &vfd))) {
324 if (!file->ops->read_page) {
330 struct mmap_param param = { .flags = options,
331 .mlen = ROUNDUP(length, PG_SIZE),
333 .type = REGION_TYPE_GENERAL,
335 .pvms = (struct proc_mm*)&__current->mm,
336 .vms_mnt = VMS_SELF };
338 errno = mem_map(&result, NULL, addr_ptr, file, ¶m);
341 __current->k_status = errno;
345 __DEFINE_LXSYSCALL2(int, munmap, void*, addr, size_t, length)
348 VMS_SELF, (vm_regions_t*)&__current->mm.regions, (ptr_t)addr, length);
351 __DEFINE_LXSYSCALL3(int, msync, void*, addr, size_t, length, int, flags)
353 if (!PG_ALIGNED(addr) || ((flags & MS_ASYNC) && (flags & MS_SYNC))) {
354 return DO_STATUS(EINVAL);
357 int status = mem_msync(VMS_SELF,
358 (vm_regions_t*)&__current->mm.regions,
363 return DO_STATUS(status);