panic("Error during %s-to-physical address translation\n", when);
}
-void show_registers(struct cpu_user_regs *regs)
+struct reg_ctxt {
+ uint32_t sctlr;
+ uint32_t ttbr0, ttbr1, ttbcr;
+};
+static void _show_registers(struct cpu_user_regs *regs,
+ struct reg_ctxt *ctxt,
+ int guest_mode)
{
static const char *mode_strings[] = {
[PSR_MODE_USR] = "USR",
print_xen_info();
printk("CPU: %d\n", smp_processor_id());
printk("PC: %08"PRIx32, regs->pc);
- if ( !guest_mode(regs) )
+ if ( !guest_mode )
print_symbol(" %s", regs->pc);
printk("\n");
printk("CPSR: %08"PRIx32" MODE:%s\n", regs->cpsr,
printk(" R8: %08"PRIx32" R9: %08"PRIx32" R10:%08"PRIx32" R11:%08"PRIx32" R12:%08"PRIx32"\n",
regs->r8, regs->r9, regs->r10, regs->r11, regs->r12);
- if ( guest_mode(regs) )
+ if ( guest_mode )
{
printk("USR: SP: %08"PRIx32" LR: %08"PRIx32" CPSR:%08"PRIx32"\n",
regs->sp_usr, regs->lr_usr, regs->cpsr);
regs->r8_fiq, regs->r9_fiq, regs->r10_fiq, regs->r11_fiq, regs->r11_fiq);
printk("\n");
printk("TTBR0 %08"PRIx32" TTBR1 %08"PRIx32" TTBCR %08"PRIx32"\n",
- READ_CP32(TTBR0), READ_CP32(TTBR1), READ_CP32(TTBCR));
- printk("SCTLR %08"PRIx32"\n", READ_CP32(SCTLR));
+ ctxt->ttbr0, ctxt->ttbr1, ctxt->ttbcr);
+ printk("SCTLR %08"PRIx32"\n", ctxt->sctlr);
printk("VTTBR %010"PRIx64"\n", READ_CP64(VTTBR));
printk("\n");
}
printk("\n");
}
+void show_registers(struct cpu_user_regs *regs)
+{
+ struct reg_ctxt ctxt;
+ ctxt.sctlr = READ_CP32(SCTLR);
+ ctxt.ttbcr = READ_CP32(TTBCR);
+ ctxt.ttbr0 = READ_CP32(TTBR0);
+ ctxt.ttbr1 = READ_CP32(TTBR1);
+ _show_registers(regs, &ctxt, guest_mode(regs));
+}
+
+void vcpu_show_registers(const struct vcpu *v)
+{
+ struct reg_ctxt ctxt;
+ ctxt.sctlr = v->arch.sctlr;
+ ctxt.ttbcr = v->arch.ttbcr;
+ ctxt.ttbr0 = v->arch.ttbr0;
+ ctxt.ttbr1 = v->arch.ttbr1;
+ _show_registers(&v->arch.cpu_info->guest_cpu_user_regs, &ctxt, 1);
+}
+
static void show_guest_stack(struct cpu_user_regs *regs)
{
printk("GUEST STACK GOES HERE\n");
show_stack(regs);
}
+void vcpu_show_execution_state(struct vcpu *v)
+{
+ printk("*** Dumping Dom%d vcpu#%d state: ***\n",
+ v->domain->domain_id, v->vcpu_id);
+
+ if ( v == current )
+ {
+ show_execution_state(guest_cpu_user_regs());
+ return;
+ }
+
+ vcpu_pause(v); /* acceptably dangerous */
+
+ vcpu_show_registers(v);
+ if ( !usr_mode(&v->arch.cpu_info->guest_cpu_user_regs) )
+ show_guest_stack(&v->arch.cpu_info->guest_cpu_user_regs);
+
+ vcpu_unpause(v);
+}
+
static void do_unexpected_trap(const char *msg, struct cpu_user_regs *regs)
{
printk("Unexpected Trap: %s\n", msg);