#ifndef _KSTACK_H #define _KSTACK_H #include #include #include #include /* SP must be STACK_BIAS adjusted already. */ static inline bool kstack_valid(struct thread_info *tp, unsigned long sp) { unsigned long base = (unsigned long) tp; if (sp >= (base + sizeof(struct thread_info)) && sp <= (base + THREAD_SIZE - sizeof(struct sparc_stackf))) return true; if (hardirq_stack[tp->cpu]) { base = (unsigned long) hardirq_stack[tp->cpu]; if (sp >= base && sp <= (base + THREAD_SIZE - sizeof(struct sparc_stackf))) return true; base = (unsigned long) softirq_stack[tp->cpu]; if (sp >= base && sp <= (base + THREAD_SIZE - sizeof(struct sparc_stackf))) return true; } return false; } /* Does "regs" point to a valid pt_regs trap frame? */ static inline bool kstack_is_trap_frame(struct thread_info *tp, struct pt_regs *regs) { unsigned long base = (unsigned long) tp; unsigned long addr = (unsigned long) regs; if (addr >= base && addr <= (base + THREAD_SIZE - sizeof(*regs))) goto check_magic; if (hardirq_stack[tp->cpu]) { base = (unsigned long) hardirq_stack[tp->cpu]; if (addr >= base && addr <= (base + THREAD_SIZE - sizeof(*regs))) goto check_magic; base = (unsigned long) softirq_stack[tp->cpu]; if (addr >= base && addr <= (base + THREAD_SIZE - sizeof(*regs))) goto check_magic; } return false; check_magic: if ((regs->magic & ~0x1ff) == PT_REGS_MAGIC) return true; return false; } #endif /* _KSTACK_H */