2019-07-01 21:46:06 +00:00
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//
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// tests for copy-on-write fork() assignment.
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//
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#include "kernel/types.h"
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#include "kernel/memlayout.h"
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#include "user/user.h"
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// allocate more than half of physical memory,
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// then fork. this will fail in the default
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// kernel, which does not support copy-on-write.
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void
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simpletest()
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{
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uint64 phys_size = PHYSTOP - KERNBASE;
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int sz = (phys_size / 3) * 2;
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printf(1, "simple: ");
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char *p = sbrk(sz);
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if(p == (char*)0xffffffffffffffffL){
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printf(1, "sbrk(%d) failed\n", sz);
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exit();
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}
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for(char *q = p; q < p + sz; q += 4096){
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*(int*)q = getpid();
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}
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int pid = fork();
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if(pid < 0){
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printf(1, "fork() failed\n");
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exit();
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}
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if(pid == 0)
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exit();
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wait();
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if(sbrk(-sz) == (char*)0xffffffffffffffffL){
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printf(1, "sbrk(-%d) failed\n", sz);
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exit();
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}
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2019-07-02 15:04:35 +00:00
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printf(1, "ok\n");
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}
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// three processes all write COW memory.
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// this causes more than half of physical memory
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// to be allocated, so it also checks whether
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// copied pages are freed.
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void
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threetest()
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{
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uint64 phys_size = PHYSTOP - KERNBASE;
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int sz = phys_size / 4;
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int pid1, pid2;
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printf(1, "three: ");
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char *p = sbrk(sz);
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if(p == (char*)0xffffffffffffffffL){
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printf(1, "sbrk(%d) failed\n", sz);
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exit();
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}
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pid1 = fork();
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if(pid1 < 0){
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printf(1, "fork failed\n");
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exit();
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}
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if(pid1 == 0){
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pid2 = fork();
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if(pid2 < 0){
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printf(1, "fork failed");
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exit();
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}
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if(pid2 == 0){
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for(char *q = p; q < p + (sz/5)*4; q += 4096){
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*(int*)q = getpid();
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}
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for(char *q = p; q < p + (sz/5)*4; q += 4096){
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if(*(int*)q != getpid()){
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printf(1, "wrong content\n");
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exit();
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}
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}
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exit();
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}
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for(char *q = p; q < p + (sz/2); q += 4096){
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*(int*)q = 9999;
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}
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exit();
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}
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for(char *q = p; q < p + sz; q += 4096){
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*(int*)q = getpid();
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}
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wait();
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sleep(1);
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for(char *q = p; q < p + sz; q += 4096){
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if(*(int*)q != getpid()){
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printf(1, "wrong content\n");
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exit();
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}
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}
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if(sbrk(-sz) == (char*)0xffffffffffffffffL){
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printf(1, "sbrk(-%d) failed\n", sz);
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exit();
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}
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printf(1, "ok\n");
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}
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char junk1[4096];
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int fds[2];
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char junk2[4096];
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char buf[4096];
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char junk3[4096];
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// test whether copyout() simulates COW faults.
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void
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filetest()
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{
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int parent = getpid();
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2019-07-05 16:33:26 +00:00
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printf(1, "file: ");
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2019-07-02 15:04:35 +00:00
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buf[0] = 99;
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for(int i = 0; i < 4; i++){
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if(pipe(fds) != 0){
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printf(1, "pipe() failed\n");
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exit();
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}
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int pid = fork();
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if(pid < 0){
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printf(1, "fork failed\n");
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exit();
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}
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if(pid == 0){
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sleep(1);
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if(read(fds[0], buf, sizeof(i)) != sizeof(i)){
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printf(1, "read failed\n");
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kill(parent);
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exit();
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}
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sleep(1);
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int j = *(int*)buf;
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if(j != i){
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printf(1, "read the wrong value\n");
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kill(parent);
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exit();
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}
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exit();
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}
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if(write(fds[1], &i, sizeof(i)) != sizeof(i)){
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printf(1, "write failed\n");
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exit();
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}
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}
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for(int i = 0; i < 4; i++)
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wait();
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if(buf[0] != 99){
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printf(1, "child overwrote parent\n");
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exit();
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}
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printf(1, "ok\n");
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2019-07-01 21:46:06 +00:00
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}
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int
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main(int argc, char *argv[])
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{
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simpletest();
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2019-07-02 15:04:35 +00:00
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// check that the first simpletest() freed the physical memory.
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simpletest();
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threetest();
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threetest();
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threetest();
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filetest();
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printf(1, "ALL COW TESTS PASSED\n");
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2019-07-01 21:46:06 +00:00
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exit();
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}
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