try to handle a few of the possible out-of-memory errors in fork()
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70c6fe861e
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@ -17,6 +17,7 @@ struct spinlock pid_lock;
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extern void forkret(void);
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static void wakeup1(struct proc *chan);
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static void freeproc(struct proc *p);
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extern char trampoline[]; // trampoline.S
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@ -87,7 +88,7 @@ allocpid() {
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// Look in the process table for an UNUSED proc.
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// If found, initialize state required to run in the kernel,
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// and return with p->lock held.
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// If there are no free procs, return 0.
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// If there are no free procs, or a memory allocation fails, return 0.
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static struct proc*
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allocproc(void)
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{
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@ -114,6 +115,11 @@ found:
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// An empty user page table.
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p->pagetable = proc_pagetable(p);
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if(p->pagetable == 0){
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freeproc(p);
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release(&p->lock);
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return 0;
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}
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// Set up new context to start executing at forkret,
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// which returns to user space.
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@ -160,12 +166,19 @@ proc_pagetable(struct proc *p)
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// at the highest user virtual address.
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// only the supervisor uses it, on the way
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// to/from user space, so not PTE_U.
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mappages(pagetable, TRAMPOLINE, PGSIZE,
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(uint64)trampoline, PTE_R | PTE_X);
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if(mappages(pagetable, TRAMPOLINE, PGSIZE,
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(uint64)trampoline, PTE_R | PTE_X) < 0){
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uvmfree(pagetable, 0);
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return 0;
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}
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// map the trapframe just below TRAMPOLINE, for trampoline.S.
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mappages(pagetable, TRAPFRAME, PGSIZE,
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(uint64)(p->trapframe), PTE_R | PTE_W);
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if(mappages(pagetable, TRAPFRAME, PGSIZE,
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(uint64)(p->trapframe), PTE_R | PTE_W) < 0){
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uvmunmap(pagetable, TRAMPOLINE, 1, 0);
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uvmfree(pagetable, 0);
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return 0;
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}
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return pagetable;
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}
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