allow sbrk(-x) to de-allocate user memory
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c4cc10da7e
commit
83d2db91f7
1
defs.h
1
defs.h
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@ -159,6 +159,7 @@ void vminit(void);
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pde_t* setupkvm(void);
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char* uva2ka(pde_t*, char*);
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int allocuvm(pde_t*, char*, uint);
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int deallocuvm(pde_t *pgdir, char *addr, uint sz);
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void freevm(pde_t*);
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void inituvm(pde_t*, char*, char*, uint);
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int loaduvm(pde_t*, char*, struct inode *ip, uint, uint);
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5
proc.c
5
proc.c
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@ -142,8 +142,13 @@ userinit(void)
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int
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growproc(int n)
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{
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if(n > 0){
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if (!allocuvm(proc->pgdir, (char *)proc->sz, n))
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return -1;
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} else if(n < 0){
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if (!deallocuvm(proc->pgdir, (char *)(proc->sz + n), 0 - n))
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return -1;
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}
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proc->sz += n;
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switchuvm(proc);
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return 0;
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57
usertests.c
57
usertests.c
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@ -1232,7 +1232,11 @@ forktest(void)
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void
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sbrktest(void)
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{
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int pid;
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printf(stdout, "sbrk test\n");
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// can one sbrk() less than a page?
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char *a = sbrk(0);
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int i;
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for(i = 0; i < 5000; i++){
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@ -1244,7 +1248,7 @@ sbrktest(void)
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*b = 1;
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a = b + 1;
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}
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int pid = fork();
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pid = fork();
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if(pid < 0){
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printf(stdout, "sbrk test fork failed\n");
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exit();
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@ -1258,6 +1262,57 @@ sbrktest(void)
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if(pid == 0)
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exit();
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wait();
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// can one allocate the full 640K?
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a = sbrk(0);
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uint amt = (640 * 1024) - (uint) a;
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char *p = sbrk(amt);
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if(p != a){
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printf(stdout, "sbrk test failed 640K test, p %x a %x\n", p, a);
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exit();
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}
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char *lastaddr = (char *)(640 * 1024 - 1);
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*lastaddr = 99;
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// is one forbidden from allocating more than 640K?
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c = sbrk(4096);
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if(c != (char *) 0xffffffff){
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printf(stdout, "sbrk allocated more than 640K, c %x\n", c);
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exit();
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}
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// can one de-allocate?
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a = sbrk(0);
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c = sbrk(-4096);
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if(c == (char *) 0xffffffff){
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printf(stdout, "sbrk could not deallocate\n");
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exit();
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}
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c = sbrk(0);
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if(c != a - 4096){
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printf(stdout, "sbrk deallocation produced wrong address, a %x c %x\n", a, c);
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exit();
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}
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// can one re-allocate that page?
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a = sbrk(0);
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c = sbrk(4096);
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if(c != a || sbrk(0) != a + 4096){
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printf(stdout, "sbrk re-allocation failed, a %x c %x\n", a, c);
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exit();
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}
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if(*lastaddr == 99){
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// should be zero
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printf(stdout, "sbrk de-allocation didn't really deallocate\n");
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exit();
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}
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c = sbrk(4096);
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if(c != (char *) 0xffffffff){
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printf(stdout, "sbrk was able to re-allocate beyond 640K, c %x\n", c);
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exit();
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}
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printf(stdout, "sbrk test OK\n");
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}
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26
vm.c
26
vm.c
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@ -198,7 +198,7 @@ uva2ka(pde_t *pgdir, char *uva)
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int
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allocuvm(pde_t *pgdir, char *addr, uint sz)
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{
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if (addr + sz >= (char*)USERTOP)
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if (addr + sz > (char*)USERTOP)
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return 0;
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char *first = PGROUNDDOWN(addr);
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char *last = PGROUNDDOWN(addr + sz - 1);
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@ -218,6 +218,30 @@ allocuvm(pde_t *pgdir, char *addr, uint sz)
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return 1;
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}
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// deallocate some of the user pages, in response to sbrk()
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// with a negative argument. if addr is not page-aligned,
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// then only deallocates starting at the next page boundary.
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int
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deallocuvm(pde_t *pgdir, char *addr, uint sz)
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{
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if (addr + sz > (char*)USERTOP)
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return 0;
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char *first = (char*) PGROUNDUP((uint)addr);
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char *last = PGROUNDDOWN(addr + sz - 1);
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char *a;
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for(a = first; a <= last; a += PGSIZE){
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pte_t *pte = walkpgdir(pgdir, a, 0);
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if(pte && (*pte & PTE_P) != 0){
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uint pa = PTE_ADDR(*pte);
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if(pa == 0)
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panic("deallocuvm");
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kfree((void *) pa, PGSIZE);
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*pte = 0;
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}
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}
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return 1;
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}
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// free a page table and all the physical memory pages
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// in the user part.
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void
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