提交 65bd8e13 创建 作者: rsc's avatar rsc

New scheduler.

Removed cli and sti stack in favor of tracking number of locks held on each CPU and explicit conditionals in spinlock.c.
上级 40a2a083
...@@ -113,7 +113,7 @@ void ...@@ -113,7 +113,7 @@ void
cprintf(char *fmt, ...) cprintf(char *fmt, ...)
{ {
int i, state = 0, c; int i, state = 0, c;
unsigned int *ap = (unsigned int *) &fmt + 1; unsigned int *ap = (unsigned int *)(void*)&fmt + 1;
if(use_console_lock) if(use_console_lock)
acquire(&console_lock); acquire(&console_lock);
......
...@@ -13,7 +13,6 @@ struct proc; ...@@ -13,7 +13,6 @@ struct proc;
struct jmpbuf; struct jmpbuf;
void setupsegs(struct proc *); void setupsegs(struct proc *);
struct proc * newproc(void); struct proc * newproc(void);
void swtch(int);
struct spinlock; struct spinlock;
void sleep(void *, struct spinlock *); void sleep(void *, struct spinlock *);
void wakeup(void *); void wakeup(void *);
...@@ -22,8 +21,6 @@ void proc_exit(void); ...@@ -22,8 +21,6 @@ void proc_exit(void);
int proc_kill(int); int proc_kill(int);
int proc_wait(void); int proc_wait(void);
void yield(void); void yield(void);
void cli(void);
void sti(void);
// swtch.S // swtch.S
struct jmpbuf; struct jmpbuf;
......
...@@ -107,7 +107,7 @@ romimage: file=$BXSHARE/BIOS-bochs-latest, address=0xf0000 ...@@ -107,7 +107,7 @@ romimage: file=$BXSHARE/BIOS-bochs-latest, address=0xf0000
# 650Mhz Athlon K-7 with Linux 2.4.4/egcs-2.91.66 2 to 2.5 Mips # 650Mhz Athlon K-7 with Linux 2.4.4/egcs-2.91.66 2 to 2.5 Mips
# 400Mhz Pentium II with Linux 2.0.36/egcs-1.0.3 1 to 1.8 Mips # 400Mhz Pentium II with Linux 2.0.36/egcs-1.0.3 1 to 1.8 Mips
#======================================================================= #=======================================================================
cpu: count=2, ips=10000000 cpu: count=2, ips=10000000, reset_on_triple_fault=0
#======================================================================= #=======================================================================
# MEGS # MEGS
......
...@@ -18,19 +18,19 @@ extern uint8_t _binary_userfs_start[], _binary_userfs_size[]; ...@@ -18,19 +18,19 @@ extern uint8_t _binary_userfs_start[], _binary_userfs_size[];
extern int use_console_lock; extern int use_console_lock;
struct spinlock sillylock; // hold this to keep interrupts disabled
int int
main() main()
{ {
struct proc *p; struct proc *p;
if (acpu) { if (acpu) {
cpus[cpu()].clis = 1;
cprintf("an application processor\n"); cprintf("an application processor\n");
idtinit(); // CPU's idt idtinit(); // CPU's idt
lapic_init(cpu()); lapic_init(cpu());
lapic_timerinit(); lapic_timerinit();
lapic_enableintr(); lapic_enableintr();
sti();
scheduler(); scheduler();
} }
acpu = 1; acpu = 1;
...@@ -40,10 +40,9 @@ main() ...@@ -40,10 +40,9 @@ main()
mp_init(); // collect info about this machine mp_init(); // collect info about this machine
acquire(&sillylock);
use_console_lock = 1; use_console_lock = 1;
cpus[cpu()].clis = 1; // cpu starts as if we had called cli()
lapic_init(mp_bcpu()); lapic_init(mp_bcpu());
cprintf("\nxV6\n\n"); cprintf("\nxV6\n\n");
...@@ -56,7 +55,7 @@ main() ...@@ -56,7 +55,7 @@ main()
// create fake process zero // create fake process zero
p = &proc[0]; p = &proc[0];
memset(p, 0, sizeof *p); memset(p, 0, sizeof *p);
p->state = WAITING; p->state = SLEEPING;
p->sz = 4 * PAGE; p->sz = 4 * PAGE;
p->mem = kalloc(p->sz); p->mem = kalloc(p->sz);
memset(p->mem, 0, p->sz); memset(p->mem, 0, p->sz);
...@@ -88,6 +87,7 @@ main() ...@@ -88,6 +87,7 @@ main()
//load_icode(p, _binary_userfs_start, (unsigned) _binary_userfs_size); //load_icode(p, _binary_userfs_start, (unsigned) _binary_userfs_size);
p->state = RUNNABLE; p->state = RUNNABLE;
cprintf("loaded userfs\n"); cprintf("loaded userfs\n");
release(&sillylock);
scheduler(); scheduler();
......
差异被折叠。
...@@ -33,7 +33,7 @@ struct jmpbuf { ...@@ -33,7 +33,7 @@ struct jmpbuf {
int jb_eip; int jb_eip;
}; };
enum proc_state { UNUSED, EMBRYO, WAITING, RUNNABLE, RUNNING, ZOMBIE }; enum proc_state { UNUSED, EMBRYO, SLEEPING, RUNNABLE, RUNNING, ZOMBIE };
struct proc{ struct proc{
char *mem; // start of process's physical memory char *mem; // start of process's physical memory
...@@ -46,7 +46,6 @@ struct proc{ ...@@ -46,7 +46,6 @@ struct proc{
int ppid; int ppid;
void *chan; // sleep void *chan; // sleep
int killed; int killed;
int locks; // # of locks currently held
struct fd *fds[NOFILE]; struct fd *fds[NOFILE];
struct Taskstate ts; // only to give cpu address of kernel stack struct Taskstate ts; // only to give cpu address of kernel stack
...@@ -71,7 +70,7 @@ struct cpu { ...@@ -71,7 +70,7 @@ struct cpu {
struct jmpbuf jmpbuf; struct jmpbuf jmpbuf;
char mpstack[MPSTACK]; // per-cpu start-up stack, only used to get into main() char mpstack[MPSTACK]; // per-cpu start-up stack, only used to get into main()
struct proc *lastproc; // last proc scheduled on this cpu (never NULL) struct proc *lastproc; // last proc scheduled on this cpu (never NULL)
int clis; // cli() nesting depth int nlock; // # of locks currently held
}; };
extern struct cpu cpus[NCPU]; extern struct cpu cpus[NCPU];
......
...@@ -6,42 +6,35 @@ ...@@ -6,42 +6,35 @@
#include "proc.h" #include "proc.h"
#include "spinlock.h" #include "spinlock.h"
#define DEBUG 0 // Can't call cprintf from inside these routines,
// because cprintf uses them itself.
#define cprintf dont_use_cprintf
extern int use_console_lock; extern int use_console_lock;
int getcallerpc(void *v) { int
getcallerpc(void *v)
{
return ((int*)v)[-1]; return ((int*)v)[-1];
} }
void void
acquire1(struct spinlock * lock, struct proc *cp) acquire1(struct spinlock * lock, struct proc *cp)
{ {
if(DEBUG) cprintf("cpu%d: acquiring at %x\n", cpu(), getcallerpc(&lock)); if(cpus[cpu()].nlock++ == 0)
cli(); cli();
while ( cmpxchg(0, 1, &lock->locked) == 1 ) { ; } while(cmpxchg(0, 1, &lock->locked) == 1)
;
cpuid(0, 0, 0, 0, 0); // memory barrier
lock->locker_pc = getcallerpc(&lock); lock->locker_pc = getcallerpc(&lock);
if(cp)
cp->locks += 1;
if(DEBUG) cprintf("cpu%d: acquired at %x\n", cpu(), getcallerpc(&lock));
} }
void void
release1(struct spinlock * lock, struct proc *cp) release1(struct spinlock * lock, struct proc *cp)
{ {
cpuid(0, 0, 0, 0, 0); // memory barrier
if(DEBUG) cprintf ("cpu%d: releasing at %x\n", cpu(), getcallerpc(&lock)); lock->locked = 0;
if(--cpus[cpu()].nlock == 0)
if(lock->locked != 1)
panic("release");
if(cp)
cp->locks -= 1;
cmpxchg(1, 0, &lock->locked);
sti(); sti();
} }
...@@ -56,3 +49,4 @@ release(struct spinlock *lock) ...@@ -56,3 +49,4 @@ release(struct spinlock *lock)
{ {
release1(lock, curproc[cpu()]); release1(lock, curproc[cpu()]);
} }
...@@ -34,8 +34,9 @@ fetchint(struct proc *p, unsigned addr, int *ip) ...@@ -34,8 +34,9 @@ fetchint(struct proc *p, unsigned addr, int *ip)
return 0; return 0;
} }
// This arg is void* so that both int* and uint* can be passed.
int int
fetcharg(int argno, int *ip) fetcharg(int argno, void *ip)
{ {
unsigned esp; unsigned esp;
......
...@@ -36,11 +36,6 @@ trap(struct Trapframe *tf) ...@@ -36,11 +36,6 @@ trap(struct Trapframe *tf)
{ {
int v = tf->tf_trapno; int v = tf->tf_trapno;
if(cpus[cpu()].clis){
cprintf("cpu %d v %d eip %x\n", cpu(), v, tf->tf_eip);
panic("interrupt while interrupts are off");
}
if(v == T_SYSCALL){ if(v == T_SYSCALL){
struct proc *cp = curproc[cpu()]; struct proc *cp = curproc[cpu()];
int num = cp->tf->tf_regs.reg_eax; int num = cp->tf->tf_regs.reg_eax;
...@@ -56,12 +51,10 @@ trap(struct Trapframe *tf) ...@@ -56,12 +51,10 @@ trap(struct Trapframe *tf)
panic("trap ret but not RUNNING"); panic("trap ret but not RUNNING");
if(tf != cp->tf) if(tf != cp->tf)
panic("trap ret wrong tf"); panic("trap ret wrong tf");
if(cp->locks){ if(cpus[cpu()].nlock){
cprintf("num=%d\n", num); cprintf("num=%d\n", num);
panic("syscall returning locks held"); panic("syscall returning locks held");
} }
if(cpus[cpu()].clis)
panic("syscall returning but clis != 0");
if((read_eflags() & FL_IF) == 0) if((read_eflags() & FL_IF) == 0)
panic("syscall returning but FL_IF clear"); panic("syscall returning but FL_IF clear");
if(read_esp() < (unsigned)cp->kstack || if(read_esp() < (unsigned)cp->kstack ||
...@@ -75,7 +68,7 @@ trap(struct Trapframe *tf) ...@@ -75,7 +68,7 @@ trap(struct Trapframe *tf)
if(v == (IRQ_OFFSET + IRQ_TIMER)){ if(v == (IRQ_OFFSET + IRQ_TIMER)){
struct proc *cp = curproc[cpu()]; struct proc *cp = curproc[cpu()];
lapic_timerintr(); lapic_timerintr();
if(cp && cp->locks) if(cpus[cpu()].nlock)
panic("timer interrupt while holding a lock"); panic("timer interrupt while holding a lock");
if(cp){ if(cp){
#if 1 #if 1
......
#include "mmu.h" #include "mmu.h"
.text .text
.globl alltraps .globl trap
.globl trap .globl trapret1
.globl alltraps
alltraps: alltraps:
/* vectors.S sends all traps here */ /* vectors.S sends all traps here */
pushl %ds # build pushl %ds # build
...@@ -16,11 +18,11 @@ alltraps: ...@@ -16,11 +18,11 @@ alltraps:
addl $4, %esp addl $4, %esp
# return falls through to trapret... # return falls through to trapret...
.globl trapret
/* /*
* a forked process RETs here * a forked process RETs here
* expects ESP to point to a Trapframe * expects ESP to point to a Trapframe
*/ */
.globl trapret
trapret: trapret:
popal popal
popl %es popl %es
...@@ -28,6 +30,10 @@ trapret: ...@@ -28,6 +30,10 @@ trapret:
addl $0x8, %esp /* trapno and errcode */ addl $0x8, %esp /* trapno and errcode */
iret iret
.globl forkret
forkret:
call forkret1
jmp trapret
.globl acpu .globl acpu
acpu: acpu:
......
...@@ -29,6 +29,8 @@ static __inline uint32_t read_ebp(void) __attribute__((always_inline)); ...@@ -29,6 +29,8 @@ static __inline uint32_t read_ebp(void) __attribute__((always_inline));
static __inline uint32_t read_esp(void) __attribute__((always_inline)); static __inline uint32_t read_esp(void) __attribute__((always_inline));
static __inline void cpuid(uint32_t info, uint32_t *eaxp, uint32_t *ebxp, uint32_t *ecxp, uint32_t *edxp); static __inline void cpuid(uint32_t info, uint32_t *eaxp, uint32_t *ebxp, uint32_t *ecxp, uint32_t *edxp);
static __inline uint64_t read_tsc(void) __attribute__((always_inline)); static __inline uint64_t read_tsc(void) __attribute__((always_inline));
static __inline void cli(void) __attribute__((always_inline));
static __inline void sti(void) __attribute__((always_inline));
static __inline void static __inline void
breakpoint(void) breakpoint(void)
...@@ -304,6 +306,18 @@ read_tsc(void) ...@@ -304,6 +306,18 @@ read_tsc(void)
return tsc; return tsc;
} }
static __inline void
cli(void)
{
__asm__ volatile("cli");
}
static __inline void
sti(void)
{
__asm__ volatile("sti");
}
struct PushRegs { struct PushRegs {
/* registers as pushed by pusha */ /* registers as pushed by pusha */
uint32_t reg_edi; uint32_t reg_edi;
......
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