/* * Simple spin lock operations. * * Copyright (C) 2001-2004 Paul Mackerras <paulus@au.ibm.com>, IBM * Copyright (C) 2001 Anton Blanchard <anton@au.ibm.com>, IBM * Copyright (C) 2002 Dave Engebretsen <engebret@us.ibm.com>, IBM * Rework to support virtual processors * * Type of int is used as a full 64b word is not necessary. * * (the type definitions are in asm/simple_spinlock_types.h)
*/ #include <linux/irqflags.h> #include <linux/kcsan-checks.h> #include <asm/paravirt.h> #include <asm/paca.h> #include <asm/synch.h> #include <asm/ppc-opcode.h>
#ifdef CONFIG_PPC64 /* use 0x800000yy when locked, where yy == CPU number */ #ifdef __BIG_ENDIAN__ #define LOCK_TOKEN (*(u32 *)(&get_paca()->lock_token)) #else #define LOCK_TOKEN (*(u32 *)(&get_paca()->paca_index)) #endif #else #define LOCK_TOKEN 1 #endif
/* * This returns the old value in the lock, so we succeeded * in getting the lock if the return value is 0.
*/ staticinlineunsignedlong __arch_spin_trylock(arch_spinlock_t *lock)
{ unsignedlong tmp, token; unsignedint eh = IS_ENABLED(CONFIG_PPC64);
/* * On a system with shared processors (that is, where a physical * processor is multiplexed between several virtual processors), * there is no point spinning on a lock if the holder of the lock * isn't currently scheduled on a physical processor. Instead * we detect this situation and ask the hypervisor to give the * rest of our timeslice to the lock holder. * * So that we can tell which virtual processor is holding a lock, * we put 0x80000000 | smp_processor_id() in the lock when it is * held. Conveniently, we have a word in the paca that holds this * value.
*/
#ifdefined(CONFIG_PPC_SPLPAR) /* We only yield to the hypervisor if we are in shared processor mode */ void splpar_spin_yield(arch_spinlock_t *lock); void splpar_rw_yield(arch_rwlock_t *lock); #else/* SPLPAR */ staticinlinevoid splpar_spin_yield(arch_spinlock_t *lock) {} staticinlinevoid splpar_rw_yield(arch_rwlock_t *lock) {} #endif
staticinlinevoid spin_yield(arch_spinlock_t *lock)
{ if (is_shared_processor())
splpar_spin_yield(lock); else
barrier();
}
staticinlinevoid rw_yield(arch_rwlock_t *lock)
{ if (is_shared_processor())
splpar_rw_yield(lock); else
barrier();
}
staticinlinevoid arch_spin_lock(arch_spinlock_t *lock)
{ while (1) { if (likely(__arch_spin_trylock(lock) == 0)) break; do {
HMT_low(); if (is_shared_processor())
splpar_spin_yield(lock);
} while (unlikely(lock->slock != 0));
HMT_medium();
}
}
/* * Read-write spinlocks, allowing multiple readers * but only one writer. * * NOTE! it is quite common to have readers in interrupts * but no interrupt writers. For those circumstances we * can "mix" irq-safe locks - any writer needs to get a * irq-safe write-lock, but readers can get non-irqsafe * read-locks.
*/
/* * This returns the old value in the lock + 1, * so we got a read lock if the return value is > 0.
*/ staticinlinelong __arch_read_trylock(arch_rwlock_t *rw)
{ long tmp; unsignedint eh = IS_ENABLED(CONFIG_PPC64);
/* * This returns the old value in the lock, * so we got the write lock if the return value is 0.
*/ staticinlinelong __arch_write_trylock(arch_rwlock_t *rw)
{ long tmp, token; unsignedint eh = IS_ENABLED(CONFIG_PPC64);
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