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[/] [or1k/] [trunk/] [uclinux/] [uClinux-2.0.x/] [arch/] [m68knommu/] [platform/] [68328/] [traps.c] - Rev 1765
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/* * linux/arch/$(ARCH)/platform/$(PLATFORM)/traps.c -- general exception handling code * * Cloned from Linux/m68k. * * No original Copyright holder listed, * Probabily original (C) Roman Zippel (assigned DJD, 1999) * * Copyright 1999-2000 D. Jeff Dionne, <jeff@rt-control.com> * * This file is subject to the terms and conditions of the GNU General Public * License. See the file COPYING in the main directory of this archive * for more details. */ #include <linux/types.h> #include <linux/sched.h> #include <linux/kernel_stat.h> #include <linux/errno.h> #include <asm/system.h> #include <asm/irq.h> #include <asm/traps.h> #include <asm/page.h> #include <asm/machdep.h> /* table for system interrupt handlers */ static irq_handler_t irq_list[SYS_IRQS]; static const char *default_names[SYS_IRQS] = { "spurious int", "int1 handler", "int2 handler", "int3 handler", "int4 handler", "int5 handler", "int6 handler", "int7 handler" }; /* The number of spurious interrupts */ volatile unsigned int num_spurious; #define NUM_IRQ_NODES 16 static irq_node_t nodes[NUM_IRQ_NODES]; #if defined( CONFIG_M68328 ) || defined ( CONFIG_M68EZ328 ) asm (" .global _start, _ramend .section .romvec e_vectors: .long _ramend-4, _start, buserr, trap, trap, trap, trap, trap .long trap, trap, trap, trap, trap, trap, trap, trap .long trap, trap, trap, trap, trap, trap, trap, trap .long trap, trap, trap, trap .long trap, trap, trap, trap /*.long inthandler, inthandler, inthandler, inthandler .long inthandler4, inthandler, inthandler, inthandler */ /* TRAP #0-15 */ .long system_call, trap, trap, trap, trap, trap, trap, trap .long trap, trap, trap, trap, trap, trap, trap, trap .long 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 .text ignore: rte "); #endif /* CONFIG_M68328 || CONFIG_M68EZ328 */ /* * void init_IRQ(void) * * Parameters: None * * Returns: Nothing * * This function should be called during kernel startup to initialize * the IRQ handling routines. */ void init_IRQ(void) { int i; for (i = 0; i < SYS_IRQS; i++) { if (mach_default_handler) irq_list[i].handler = (*mach_default_handler)[i]; else irq_list[i].handler = NULL; irq_list[i].flags = IRQ_FLG_STD; irq_list[i].dev_id = NULL; irq_list[i].devname = default_names[i]; } for (i = 0; i < NUM_IRQ_NODES; i++) nodes[i].handler = NULL; mach_init_IRQ (); } irq_node_t *new_irq_node(void) { irq_node_t *node; short i; for (node = nodes, i = NUM_IRQ_NODES-1; i >= 0; node++, i--) if (!node->handler) return node; printk ("new_irq_node: out of nodes\n"); return NULL; } int request_irq(unsigned int irq, void (*handler)(int, void *, struct pt_regs *), unsigned long flags, const char *devname, void *dev_id) { if (irq & IRQ_MACHSPEC) return mach_request_irq(IRQ_IDX(irq), handler, flags, devname, dev_id); if (irq < IRQ1 || irq > IRQ7) { printk("%s: Incorrect IRQ %d from %s\n", __FUNCTION__, irq, devname); return -ENXIO; } if (!(irq_list[irq].flags & IRQ_FLG_STD)) { if (irq_list[irq].flags & IRQ_FLG_LOCK) { printk("%s: IRQ %d from %s is not replaceable\n", __FUNCTION__, irq, irq_list[irq].devname); return -EBUSY; } if (flags & IRQ_FLG_REPLACE) { printk("%s: %s can't replace IRQ %d from %s\n", __FUNCTION__, devname, irq, irq_list[irq].devname); return -EBUSY; } } irq_list[irq].handler = handler; irq_list[irq].flags = flags; irq_list[irq].dev_id = dev_id; irq_list[irq].devname = devname; return 0; } void free_irq(unsigned int irq, void *dev_id) { if (irq & IRQ_MACHSPEC) { mach_free_irq(IRQ_IDX(irq), dev_id); return; } if (irq < IRQ1 || irq > IRQ7) { printk("%s: Incorrect IRQ %d\n", __FUNCTION__, irq); return; } if (irq_list[irq].dev_id != dev_id) printk("%s: Removing probably wrong IRQ %d from %s\n", __FUNCTION__, irq, irq_list[irq].devname); if (mach_default_handler) irq_list[irq].handler = (*mach_default_handler)[irq]; else irq_list[irq].handler = NULL; irq_list[irq].flags = IRQ_FLG_STD; irq_list[irq].dev_id = NULL; irq_list[irq].devname = default_names[irq]; } /* * Do we need these probe functions on the m68k? */ unsigned long probe_irq_on (void) { return 0; } int probe_irq_off (unsigned long irqs) { return 0; } void enable_irq(unsigned int irq) { if ((irq & IRQ_MACHSPEC) && mach_enable_irq) mach_enable_irq(IRQ_IDX(irq)); } void disable_irq(unsigned int irq) { if ((irq & IRQ_MACHSPEC) && mach_disable_irq) mach_disable_irq(IRQ_IDX(irq)); } asmlinkage void process_int(unsigned long vec, struct pt_regs *fp) { /* give the machine specific code a crack at it first */ if (mach_process_int) if (!mach_process_int(vec, fp)) return; if (vec < VEC_SPUR || vec > VEC_INT7) panic("No interrupt handler for vector %ld\n", vec); vec -= VEC_SPUR; kstat.interrupts[vec]++; if (irq_list[vec].handler) irq_list[vec].handler(vec, irq_list[vec].dev_id, fp); else panic("No interrupt handler for autovector %ld\n", vec); } int get_irq_list(char *buf) { int i, len = 0; /* autovector interrupts */ for (i = 0; i < SYS_IRQS; i++) { if (irq_list[i].handler) { len += sprintf(buf+len, "auto %2d: %10u ", i, i ? kstat.interrupts[i] : num_spurious); if (irq_list[i].flags & IRQ_FLG_LOCK) len += sprintf(buf+len, "L "); else len += sprintf(buf+len, " "); len += sprintf(buf+len, "%s\n", irq_list[i].devname); } } if (mach_get_irq_list) len += mach_get_irq_list(buf+len); return len; } /* * Generic dumping code. Used for panic and debug. */ void dump(struct pt_regs *fp) { unsigned long *sp; unsigned char *tp; int i; printk("\nCURRENT PROCESS:\n\n"); #if 0 { extern int swt_lastjiffies, swt_reference; printk("WATCHDOG: jiffies=%d lastjiffies=%d [%d] reference=%d\n", jiffies, swt_lastjiffies, (swt_lastjiffies - jiffies), swt_reference); } #endif printk("COMM=%s PID=%d\n", current->comm, current->pid); if (current->mm) { printk("TEXT=%08x-%08x DATA=%08x-%08x BSS=%08x-%08x\n", (int) current->mm->start_code, (int) current->mm->end_code, (int) current->mm->start_data, (int) current->mm->end_data, (int) current->mm->end_data, (int) current->mm->brk); printk("USER-STACK=%08x KERNEL-STACK=%08x\n\n", (int) current->mm->start_stack, (int) current->kernel_stack_page); } printk("PC: %08lx\n", fp->pc); printk("SR: %08lx SP: %08lx\n", (long) fp->sr, (long) fp); printk("d0: %08lx d1: %08lx d2: %08lx d3: %08lx\n", fp->d0, fp->d1, fp->d2, fp->d3); printk("d4: %08lx d5: %08lx a0: %08lx a1: %08lx\n", fp->d4, fp->d5, fp->a0, fp->a1); printk("\nUSP: %08x TRAPFRAME: %08x\n", rdusp(), (unsigned int) fp); printk("\nCODE:"); tp = ((unsigned char *) fp->pc) - 0x20; for (sp = (unsigned long *) tp, i = 0; (i < 0x40); i += 4) { if ((i % 0x10) == 0) printk("\n%08x: ", (int) (tp + i)); printk("%08x ", (int) *sp++); } printk("\n"); printk("\nKERNEL STACK:"); tp = ((unsigned char *) fp) - 0x40; for (sp = (unsigned long *) tp, i = 0; (i < 0xc0); i += 4) { if ((i % 0x10) == 0) printk("\n%08x: ", (int) (tp + i)); printk("%08x ", (int) *sp++); } printk("\n"); if (STACK_MAGIC != *(unsigned long *)current->kernel_stack_page) printk("(Possibly corrupted stack page??)\n"); printk("\n"); printk("\nUSER STACK:"); tp = (unsigned char *) (rdusp() - 0x10); for (sp = (unsigned long *) tp, i = 0; (i < 0x80); i += 4) { if ((i % 0x10) == 0) printk("\n%08x: ", (int) (tp + i)); printk("%08x ", (int) *sp++); } printk("\n\n"); }