{
        int i;
 
-       printk(KERN_ERR "VFP: Error: %s\n", reason);
-       printk(KERN_ERR "VFP: EXC 0x%08x SCR 0x%08x INST 0x%08x\n",
+       pr_err("VFP: Error: %s\n", reason);
+       pr_err("VFP: EXC 0x%08x SCR 0x%08x INST 0x%08x\n",
                fmrx(FPEXC), fmrx(FPSCR), inst);
        for (i = 0; i < 32; i += 2)
-               printk(KERN_ERR "VFP: s%2u: 0x%08x s%2u: 0x%08x\n",
+               pr_err("VFP: s%2u: 0x%08x s%2u: 0x%08x\n",
                       i, vfp_get_float(i), i+1, vfp_get_float(i+1));
 }
 
 
        /* if vfp is on, then save state for resumption */
        if (fpexc & FPEXC_EN) {
-               printk(KERN_DEBUG "%s: saving vfp state\n", __func__);
+               pr_debug("%s: saving vfp state\n", __func__);
                vfp_save_state(&ti->vfpstate, fpexc);
 
                /* disable, just in case */
        barrier();
        vfp_vector = vfp_null_entry;
 
-       printk(KERN_INFO "VFP support v0.3: ");
+       pr_info("VFP support v0.3: ");
        if (VFP_arch)
-               printk("not present\n");
+               pr_cont("not present\n");
        else if (vfpsid & FPSID_NODOUBLE) {
-               printk("no double precision support\n");
+               pr_cont("no double precision support\n");
        } else {
                hotcpu_notifier(vfp_hotplug, 0);
 
                smp_call_function(vfp_enable, NULL, 1);
 
                VFP_arch = (vfpsid & FPSID_ARCH_MASK) >> FPSID_ARCH_BIT;  /* Extract the architecture version */
-               printk("implementor %02x architecture %d part %02x variant %x rev %x\n",
+               pr_cont("implementor %02x architecture %d part %02x variant %x rev %x\n",
                        (vfpsid & FPSID_IMPLEMENTER_MASK) >> FPSID_IMPLEMENTER_BIT,
                        (vfpsid & FPSID_ARCH_MASK) >> FPSID_ARCH_BIT,
                        (vfpsid & FPSID_PART_MASK) >> FPSID_PART_BIT,