1aba20a82SSam Ravnborg /* 2aba20a82SSam Ravnborg * sun4m irq support 31da177e4SLinus Torvalds * 41da177e4SLinus Torvalds * djhr: Hacked out of irq.c into a CPU dependent version. 51da177e4SLinus Torvalds * 61da177e4SLinus Torvalds * Copyright (C) 1995 David S. Miller (davem@caip.rutgers.edu) 71da177e4SLinus Torvalds * Copyright (C) 1995 Miguel de Icaza (miguel@nuclecu.unam.mx) 81da177e4SLinus Torvalds * Copyright (C) 1995 Pete A. Zaitcev (zaitcev@yahoo.com) 91da177e4SLinus Torvalds * Copyright (C) 1996 Dave Redman (djhr@tadpole.co.uk) 101da177e4SLinus Torvalds */ 111da177e4SLinus Torvalds 121da177e4SLinus Torvalds #include <asm/timer.h> 131da177e4SLinus Torvalds #include <asm/traps.h> 141da177e4SLinus Torvalds #include <asm/pgalloc.h> 151da177e4SLinus Torvalds #include <asm/pgtable.h> 161da177e4SLinus Torvalds #include <asm/irq.h> 171da177e4SLinus Torvalds #include <asm/io.h> 181da177e4SLinus Torvalds #include <asm/cacheflush.h> 191da177e4SLinus Torvalds 2032231a66SAl Viro #include "irq.h" 21aba20a82SSam Ravnborg #include "kernel.h" 22aba20a82SSam Ravnborg 23aba20a82SSam Ravnborg /* Sample sun4m IRQ layout: 24aba20a82SSam Ravnborg * 25aba20a82SSam Ravnborg * 0x22 - Power 26aba20a82SSam Ravnborg * 0x24 - ESP SCSI 27aba20a82SSam Ravnborg * 0x26 - Lance ethernet 28aba20a82SSam Ravnborg * 0x2b - Floppy 29aba20a82SSam Ravnborg * 0x2c - Zilog uart 30aba20a82SSam Ravnborg * 0x32 - SBUS level 0 31aba20a82SSam Ravnborg * 0x33 - Parallel port, SBUS level 1 32aba20a82SSam Ravnborg * 0x35 - SBUS level 2 33aba20a82SSam Ravnborg * 0x37 - SBUS level 3 34aba20a82SSam Ravnborg * 0x39 - Audio, Graphics card, SBUS level 4 35aba20a82SSam Ravnborg * 0x3b - SBUS level 5 36aba20a82SSam Ravnborg * 0x3d - SBUS level 6 37aba20a82SSam Ravnborg * 38aba20a82SSam Ravnborg * Each interrupt source has a mask bit in the interrupt registers. 39aba20a82SSam Ravnborg * When the mask bit is set, this blocks interrupt deliver. So you 40aba20a82SSam Ravnborg * clear the bit to enable the interrupt. 41aba20a82SSam Ravnborg * 42aba20a82SSam Ravnborg * Interrupts numbered less than 0x10 are software triggered interrupts 43aba20a82SSam Ravnborg * and unused by Linux. 44aba20a82SSam Ravnborg * 45aba20a82SSam Ravnborg * Interrupt level assignment on sun4m: 46aba20a82SSam Ravnborg * 47aba20a82SSam Ravnborg * level source 48aba20a82SSam Ravnborg * ------------------------------------------------------------ 49aba20a82SSam Ravnborg * 1 softint-1 50aba20a82SSam Ravnborg * 2 softint-2, VME/SBUS level 1 51aba20a82SSam Ravnborg * 3 softint-3, VME/SBUS level 2 52aba20a82SSam Ravnborg * 4 softint-4, onboard SCSI 53aba20a82SSam Ravnborg * 5 softint-5, VME/SBUS level 3 54aba20a82SSam Ravnborg * 6 softint-6, onboard ETHERNET 55aba20a82SSam Ravnborg * 7 softint-7, VME/SBUS level 4 56aba20a82SSam Ravnborg * 8 softint-8, onboard VIDEO 57aba20a82SSam Ravnborg * 9 softint-9, VME/SBUS level 5, Module Interrupt 58aba20a82SSam Ravnborg * 10 softint-10, system counter/timer 59aba20a82SSam Ravnborg * 11 softint-11, VME/SBUS level 6, Floppy 60aba20a82SSam Ravnborg * 12 softint-12, Keyboard/Mouse, Serial 61aba20a82SSam Ravnborg * 13 softint-13, VME/SBUS level 7, ISDN Audio 62aba20a82SSam Ravnborg * 14 softint-14, per-processor counter/timer 63aba20a82SSam Ravnborg * 15 softint-15, Asynchronous Errors (broadcast) 64aba20a82SSam Ravnborg * 65aba20a82SSam Ravnborg * Each interrupt source is masked distinctly in the sun4m interrupt 66aba20a82SSam Ravnborg * registers. The PIL level alone is therefore ambiguous, since multiple 67aba20a82SSam Ravnborg * interrupt sources map to a single PIL. 68aba20a82SSam Ravnborg * 69aba20a82SSam Ravnborg * This ambiguity is resolved in the 'intr' property for device nodes 70aba20a82SSam Ravnborg * in the OF device tree. Each 'intr' property entry is composed of 71aba20a82SSam Ravnborg * two 32-bit words. The first word is the IRQ priority value, which 72aba20a82SSam Ravnborg * is what we're intersted in. The second word is the IRQ vector, which 73aba20a82SSam Ravnborg * is unused. 74aba20a82SSam Ravnborg * 75aba20a82SSam Ravnborg * The low 4 bits of the IRQ priority indicate the PIL, and the upper 76aba20a82SSam Ravnborg * 4 bits indicate onboard vs. SBUS leveled vs. VME leveled. 0x20 77aba20a82SSam Ravnborg * means onboard, 0x30 means SBUS leveled, and 0x40 means VME leveled. 78aba20a82SSam Ravnborg * 79aba20a82SSam Ravnborg * For example, an 'intr' IRQ priority value of 0x24 is onboard SCSI 80aba20a82SSam Ravnborg * whereas a value of 0x33 is SBUS level 2. Here are some sample 81aba20a82SSam Ravnborg * 'intr' property IRQ priority values from ss4, ss5, ss10, ss20, and 82aba20a82SSam Ravnborg * Tadpole S3 GX systems. 83aba20a82SSam Ravnborg * 84aba20a82SSam Ravnborg * esp: 0x24 onboard ESP SCSI 85aba20a82SSam Ravnborg * le: 0x26 onboard Lance ETHERNET 86aba20a82SSam Ravnborg * p9100: 0x32 SBUS level 1 P9100 video 87aba20a82SSam Ravnborg * bpp: 0x33 SBUS level 2 BPP parallel port device 88aba20a82SSam Ravnborg * DBRI: 0x39 SBUS level 5 DBRI ISDN audio 89aba20a82SSam Ravnborg * SUNW,leo: 0x39 SBUS level 5 LEO video 90aba20a82SSam Ravnborg * pcmcia: 0x3b SBUS level 6 PCMCIA controller 91aba20a82SSam Ravnborg * uctrl: 0x3b SBUS level 6 UCTRL device 92aba20a82SSam Ravnborg * modem: 0x3d SBUS level 7 MODEM 93aba20a82SSam Ravnborg * zs: 0x2c onboard keyboard/mouse/serial 94aba20a82SSam Ravnborg * floppy: 0x2b onboard Floppy 95aba20a82SSam Ravnborg * power: 0x22 onboard power device (XXX unknown mask bit XXX) 96aba20a82SSam Ravnborg */ 97aba20a82SSam Ravnborg 9832231a66SAl Viro 9969c010b2SDavid S. Miller /* Code in entry.S needs to get at these register mappings. */ 10069c010b2SDavid S. Miller struct sun4m_irq_percpu __iomem *sun4m_irq_percpu[SUN4M_NCPUS]; 10169c010b2SDavid S. Miller struct sun4m_irq_global __iomem *sun4m_irq_global; 10269c010b2SDavid S. Miller 1036baa9b20SSam Ravnborg struct sun4m_handler_data { 1046baa9b20SSam Ravnborg bool percpu; 1056baa9b20SSam Ravnborg long mask; 1066baa9b20SSam Ravnborg }; 1076baa9b20SSam Ravnborg 10832231a66SAl Viro /* Dave Redman (djhr@tadpole.co.uk) 10932231a66SAl Viro * The sun4m interrupt registers. 11032231a66SAl Viro */ 11132231a66SAl Viro #define SUN4M_INT_ENABLE 0x80000000 11232231a66SAl Viro #define SUN4M_INT_E14 0x00000080 11332231a66SAl Viro #define SUN4M_INT_E10 0x00080000 11432231a66SAl Viro 11532231a66SAl Viro #define SUN4M_HARD_INT(x) (0x000000001 << (x)) 11632231a66SAl Viro #define SUN4M_SOFT_INT(x) (0x000010000 << (x)) 11732231a66SAl Viro 11832231a66SAl Viro #define SUN4M_INT_MASKALL 0x80000000 /* mask all interrupts */ 11932231a66SAl Viro #define SUN4M_INT_MODULE_ERR 0x40000000 /* module error */ 1206cf4a924SRobert Reif #define SUN4M_INT_M2S_WRITE_ERR 0x20000000 /* write buffer error */ 1216cf4a924SRobert Reif #define SUN4M_INT_ECC_ERR 0x10000000 /* ecc memory error */ 1226cf4a924SRobert Reif #define SUN4M_INT_VME_ERR 0x08000000 /* vme async error */ 12332231a66SAl Viro #define SUN4M_INT_FLOPPY 0x00400000 /* floppy disk */ 12432231a66SAl Viro #define SUN4M_INT_MODULE 0x00200000 /* module interrupt */ 12532231a66SAl Viro #define SUN4M_INT_VIDEO 0x00100000 /* onboard video */ 12632231a66SAl Viro #define SUN4M_INT_REALTIME 0x00080000 /* system timer */ 12732231a66SAl Viro #define SUN4M_INT_SCSI 0x00040000 /* onboard scsi */ 12832231a66SAl Viro #define SUN4M_INT_AUDIO 0x00020000 /* audio/isdn */ 12932231a66SAl Viro #define SUN4M_INT_ETHERNET 0x00010000 /* onboard ethernet */ 13032231a66SAl Viro #define SUN4M_INT_SERIAL 0x00008000 /* serial ports */ 13132231a66SAl Viro #define SUN4M_INT_KBDMS 0x00004000 /* keyboard/mouse */ 13232231a66SAl Viro #define SUN4M_INT_SBUSBITS 0x00003F80 /* sbus int bits */ 1336cf4a924SRobert Reif #define SUN4M_INT_VMEBITS 0x0000007F /* vme int bits */ 1346cf4a924SRobert Reif 1356cf4a924SRobert Reif #define SUN4M_INT_ERROR (SUN4M_INT_MODULE_ERR | \ 1366cf4a924SRobert Reif SUN4M_INT_M2S_WRITE_ERR | \ 1376cf4a924SRobert Reif SUN4M_INT_ECC_ERR | \ 1386cf4a924SRobert Reif SUN4M_INT_VME_ERR) 13932231a66SAl Viro 14032231a66SAl Viro #define SUN4M_INT_SBUS(x) (1 << (x+7)) 14132231a66SAl Viro #define SUN4M_INT_VME(x) (1 << (x)) 14232231a66SAl Viro 1436cf4a924SRobert Reif /* Interrupt levels used by OBP */ 1446cf4a924SRobert Reif #define OBP_INT_LEVEL_SOFT 0x10 1456cf4a924SRobert Reif #define OBP_INT_LEVEL_ONBOARD 0x20 1466cf4a924SRobert Reif #define OBP_INT_LEVEL_SBUS 0x30 1476cf4a924SRobert Reif #define OBP_INT_LEVEL_VME 0x40 1486cf4a924SRobert Reif 1490399bb5bSSam Ravnborg #define SUN4M_TIMER_IRQ (OBP_INT_LEVEL_ONBOARD | 10) 1506baa9b20SSam Ravnborg #define SUN4M_PROFILE_IRQ (OBP_INT_LEVEL_ONBOARD | 14) 1510399bb5bSSam Ravnborg 1526baa9b20SSam Ravnborg static unsigned long sun4m_imask[0x50] = { 1530399bb5bSSam Ravnborg /* 0x00 - SMP */ 1546cf4a924SRobert Reif 0, SUN4M_SOFT_INT(1), 1556cf4a924SRobert Reif SUN4M_SOFT_INT(2), SUN4M_SOFT_INT(3), 1566cf4a924SRobert Reif SUN4M_SOFT_INT(4), SUN4M_SOFT_INT(5), 1576cf4a924SRobert Reif SUN4M_SOFT_INT(6), SUN4M_SOFT_INT(7), 1586cf4a924SRobert Reif SUN4M_SOFT_INT(8), SUN4M_SOFT_INT(9), 1596cf4a924SRobert Reif SUN4M_SOFT_INT(10), SUN4M_SOFT_INT(11), 1606cf4a924SRobert Reif SUN4M_SOFT_INT(12), SUN4M_SOFT_INT(13), 1616cf4a924SRobert Reif SUN4M_SOFT_INT(14), SUN4M_SOFT_INT(15), 1620399bb5bSSam Ravnborg /* 0x10 - soft */ 1636cf4a924SRobert Reif 0, SUN4M_SOFT_INT(1), 1646cf4a924SRobert Reif SUN4M_SOFT_INT(2), SUN4M_SOFT_INT(3), 1656cf4a924SRobert Reif SUN4M_SOFT_INT(4), SUN4M_SOFT_INT(5), 1666cf4a924SRobert Reif SUN4M_SOFT_INT(6), SUN4M_SOFT_INT(7), 1676cf4a924SRobert Reif SUN4M_SOFT_INT(8), SUN4M_SOFT_INT(9), 1686cf4a924SRobert Reif SUN4M_SOFT_INT(10), SUN4M_SOFT_INT(11), 1696cf4a924SRobert Reif SUN4M_SOFT_INT(12), SUN4M_SOFT_INT(13), 1706cf4a924SRobert Reif SUN4M_SOFT_INT(14), SUN4M_SOFT_INT(15), 1710399bb5bSSam Ravnborg /* 0x20 - onboard */ 1726cf4a924SRobert Reif 0, 0, 0, 0, 1736cf4a924SRobert Reif SUN4M_INT_SCSI, 0, SUN4M_INT_ETHERNET, 0, 1746cf4a924SRobert Reif SUN4M_INT_VIDEO, SUN4M_INT_MODULE, 1756cf4a924SRobert Reif SUN4M_INT_REALTIME, SUN4M_INT_FLOPPY, 1766cf4a924SRobert Reif (SUN4M_INT_SERIAL | SUN4M_INT_KBDMS), 1776baa9b20SSam Ravnborg SUN4M_INT_AUDIO, SUN4M_INT_E14, SUN4M_INT_MODULE_ERR, 1780399bb5bSSam Ravnborg /* 0x30 - sbus */ 1796cf4a924SRobert Reif 0, 0, SUN4M_INT_SBUS(0), SUN4M_INT_SBUS(1), 1806cf4a924SRobert Reif 0, SUN4M_INT_SBUS(2), 0, SUN4M_INT_SBUS(3), 1816cf4a924SRobert Reif 0, SUN4M_INT_SBUS(4), 0, SUN4M_INT_SBUS(5), 1826cf4a924SRobert Reif 0, SUN4M_INT_SBUS(6), 0, 0, 1830399bb5bSSam Ravnborg /* 0x40 - vme */ 1846cf4a924SRobert Reif 0, 0, SUN4M_INT_VME(0), SUN4M_INT_VME(1), 1856cf4a924SRobert Reif 0, SUN4M_INT_VME(2), 0, SUN4M_INT_VME(3), 1866cf4a924SRobert Reif 0, SUN4M_INT_VME(4), 0, SUN4M_INT_VME(5), 1876cf4a924SRobert Reif 0, SUN4M_INT_VME(6), 0, 0 1881da177e4SLinus Torvalds }; 1891da177e4SLinus Torvalds 1906baa9b20SSam Ravnborg static void sun4m_mask_irq(struct irq_data *data) 1911da177e4SLinus Torvalds { 1926baa9b20SSam Ravnborg struct sun4m_handler_data *handler_data = data->handler_data; 1931da177e4SLinus Torvalds int cpu = smp_processor_id(); 1941da177e4SLinus Torvalds 1956baa9b20SSam Ravnborg if (handler_data->mask) { 1966baa9b20SSam Ravnborg unsigned long flags; 1971da177e4SLinus Torvalds 1981da177e4SLinus Torvalds local_irq_save(flags); 1996baa9b20SSam Ravnborg if (handler_data->percpu) { 2006baa9b20SSam Ravnborg sbus_writel(handler_data->mask, &sun4m_irq_percpu[cpu]->set); 2011da177e4SLinus Torvalds } else { 2026baa9b20SSam Ravnborg sbus_writel(handler_data->mask, &sun4m_irq_global->mask_set); 2036baa9b20SSam Ravnborg } 2041da177e4SLinus Torvalds local_irq_restore(flags); 2051da177e4SLinus Torvalds } 2061da177e4SLinus Torvalds } 2071da177e4SLinus Torvalds 2086baa9b20SSam Ravnborg static void sun4m_unmask_irq(struct irq_data *data) 2096baa9b20SSam Ravnborg { 2106baa9b20SSam Ravnborg struct sun4m_handler_data *handler_data = data->handler_data; 2116baa9b20SSam Ravnborg int cpu = smp_processor_id(); 2126baa9b20SSam Ravnborg 2136baa9b20SSam Ravnborg if (handler_data->mask) { 2146baa9b20SSam Ravnborg unsigned long flags; 2156baa9b20SSam Ravnborg 2166baa9b20SSam Ravnborg local_irq_save(flags); 2176baa9b20SSam Ravnborg if (handler_data->percpu) { 2186baa9b20SSam Ravnborg sbus_writel(handler_data->mask, &sun4m_irq_percpu[cpu]->clear); 2196baa9b20SSam Ravnborg } else { 2206baa9b20SSam Ravnborg sbus_writel(handler_data->mask, &sun4m_irq_global->mask_clear); 2216baa9b20SSam Ravnborg } 2226baa9b20SSam Ravnborg local_irq_restore(flags); 2236baa9b20SSam Ravnborg } 2246baa9b20SSam Ravnborg } 2256baa9b20SSam Ravnborg 2266baa9b20SSam Ravnborg static unsigned int sun4m_startup_irq(struct irq_data *data) 2276baa9b20SSam Ravnborg { 2286baa9b20SSam Ravnborg irq_link(data->irq); 2296baa9b20SSam Ravnborg sun4m_unmask_irq(data); 2306baa9b20SSam Ravnborg return 0; 2316baa9b20SSam Ravnborg } 2326baa9b20SSam Ravnborg 2336baa9b20SSam Ravnborg static void sun4m_shutdown_irq(struct irq_data *data) 2346baa9b20SSam Ravnborg { 2356baa9b20SSam Ravnborg sun4m_mask_irq(data); 2366baa9b20SSam Ravnborg irq_unlink(data->irq); 2376baa9b20SSam Ravnborg } 2386baa9b20SSam Ravnborg 2396baa9b20SSam Ravnborg static struct irq_chip sun4m_irq = { 2406baa9b20SSam Ravnborg .name = "sun4m", 2416baa9b20SSam Ravnborg .irq_startup = sun4m_startup_irq, 2426baa9b20SSam Ravnborg .irq_shutdown = sun4m_shutdown_irq, 2436baa9b20SSam Ravnborg .irq_mask = sun4m_mask_irq, 2446baa9b20SSam Ravnborg .irq_unmask = sun4m_unmask_irq, 2451da177e4SLinus Torvalds }; 2461da177e4SLinus Torvalds 2476baa9b20SSam Ravnborg 2486baa9b20SSam Ravnborg static unsigned int sun4m_build_device_irq(struct platform_device *op, 2496baa9b20SSam Ravnborg unsigned int real_irq) 2501da177e4SLinus Torvalds { 2516baa9b20SSam Ravnborg struct sun4m_handler_data *handler_data; 2526baa9b20SSam Ravnborg unsigned int irq; 2536baa9b20SSam Ravnborg unsigned int pil; 2546baa9b20SSam Ravnborg 2556baa9b20SSam Ravnborg if (real_irq >= OBP_INT_LEVEL_VME) { 2566baa9b20SSam Ravnborg prom_printf("Bogus sun4m IRQ %u\n", real_irq); 2576baa9b20SSam Ravnborg prom_halt(); 2586baa9b20SSam Ravnborg } 2596baa9b20SSam Ravnborg pil = (real_irq & 0xf); 2606baa9b20SSam Ravnborg irq = irq_alloc(real_irq, pil); 2616baa9b20SSam Ravnborg 2626baa9b20SSam Ravnborg if (irq == 0) 2636baa9b20SSam Ravnborg goto out; 2646baa9b20SSam Ravnborg 2656baa9b20SSam Ravnborg handler_data = irq_get_handler_data(irq); 2666baa9b20SSam Ravnborg if (unlikely(handler_data)) 2676baa9b20SSam Ravnborg goto out; 2686baa9b20SSam Ravnborg 2696baa9b20SSam Ravnborg handler_data = kzalloc(sizeof(struct sun4m_handler_data), GFP_ATOMIC); 2706baa9b20SSam Ravnborg if (unlikely(!handler_data)) { 2716baa9b20SSam Ravnborg prom_printf("IRQ: kzalloc(sun4m_handler_data) failed.\n"); 2726baa9b20SSam Ravnborg prom_halt(); 2731da177e4SLinus Torvalds } 2741da177e4SLinus Torvalds 2756baa9b20SSam Ravnborg handler_data->mask = sun4m_imask[real_irq]; 2766baa9b20SSam Ravnborg handler_data->percpu = real_irq < OBP_INT_LEVEL_ONBOARD; 2776baa9b20SSam Ravnborg irq_set_chip_and_handler_name(irq, &sun4m_irq, 2786baa9b20SSam Ravnborg handle_level_irq, "level"); 2796baa9b20SSam Ravnborg irq_set_handler_data(irq, handler_data); 2806baa9b20SSam Ravnborg 2816baa9b20SSam Ravnborg out: 2826baa9b20SSam Ravnborg return irq; 2831da177e4SLinus Torvalds } 2841da177e4SLinus Torvalds 2851da177e4SLinus Torvalds #ifdef CONFIG_SMP 2861da177e4SLinus Torvalds static void sun4m_send_ipi(int cpu, int level) 2871da177e4SLinus Torvalds { 2886baa9b20SSam Ravnborg sbus_writel(SUN4M_SOFT_INT(level), &sun4m_irq_percpu[cpu]->set); 2891da177e4SLinus Torvalds } 2901da177e4SLinus Torvalds 2911da177e4SLinus Torvalds static void sun4m_clear_ipi(int cpu, int level) 2921da177e4SLinus Torvalds { 2936baa9b20SSam Ravnborg sbus_writel(SUN4M_SOFT_INT(level), &sun4m_irq_percpu[cpu]->clear); 2941da177e4SLinus Torvalds } 2951da177e4SLinus Torvalds 2961da177e4SLinus Torvalds static void sun4m_set_udt(int cpu) 2971da177e4SLinus Torvalds { 29869c010b2SDavid S. Miller sbus_writel(cpu, &sun4m_irq_global->interrupt_target); 2991da177e4SLinus Torvalds } 3001da177e4SLinus Torvalds #endif 3011da177e4SLinus Torvalds 3029b2e43aeSDavid S. Miller struct sun4m_timer_percpu { 3039b2e43aeSDavid S. Miller u32 l14_limit; 3049b2e43aeSDavid S. Miller u32 l14_count; 3059b2e43aeSDavid S. Miller u32 l14_limit_noclear; 3069b2e43aeSDavid S. Miller u32 user_timer_start_stop; 3079b2e43aeSDavid S. Miller }; 3089b2e43aeSDavid S. Miller 3099b2e43aeSDavid S. Miller static struct sun4m_timer_percpu __iomem *timers_percpu[SUN4M_NCPUS]; 3109b2e43aeSDavid S. Miller 3119b2e43aeSDavid S. Miller struct sun4m_timer_global { 3129b2e43aeSDavid S. Miller u32 l10_limit; 3139b2e43aeSDavid S. Miller u32 l10_count; 3149b2e43aeSDavid S. Miller u32 l10_limit_noclear; 3159b2e43aeSDavid S. Miller u32 reserved; 3169b2e43aeSDavid S. Miller u32 timer_config; 3179b2e43aeSDavid S. Miller }; 3189b2e43aeSDavid S. Miller 3199b2e43aeSDavid S. Miller static struct sun4m_timer_global __iomem *timers_global; 3209b2e43aeSDavid S. Miller 3211da177e4SLinus Torvalds 3221da177e4SLinus Torvalds unsigned int lvl14_resolution = (((1000000/HZ) + 1) << 10); 3231da177e4SLinus Torvalds 3241da177e4SLinus Torvalds static void sun4m_clear_clock_irq(void) 3251da177e4SLinus Torvalds { 3269b2e43aeSDavid S. Miller sbus_readl(&timers_global->l10_limit); 3271da177e4SLinus Torvalds } 3281da177e4SLinus Torvalds 3296cf4a924SRobert Reif void sun4m_nmi(struct pt_regs *regs) 3306cf4a924SRobert Reif { 3316cf4a924SRobert Reif unsigned long afsr, afar, si; 3326cf4a924SRobert Reif 3336cf4a924SRobert Reif printk(KERN_ERR "Aieee: sun4m NMI received!\n"); 3346cf4a924SRobert Reif /* XXX HyperSparc hack XXX */ 3356cf4a924SRobert Reif __asm__ __volatile__("mov 0x500, %%g1\n\t" 3366cf4a924SRobert Reif "lda [%%g1] 0x4, %0\n\t" 3376cf4a924SRobert Reif "mov 0x600, %%g1\n\t" 3386cf4a924SRobert Reif "lda [%%g1] 0x4, %1\n\t" : 3396cf4a924SRobert Reif "=r" (afsr), "=r" (afar)); 3406cf4a924SRobert Reif printk(KERN_ERR "afsr=%08lx afar=%08lx\n", afsr, afar); 3416cf4a924SRobert Reif si = sbus_readl(&sun4m_irq_global->pending); 3426cf4a924SRobert Reif printk(KERN_ERR "si=%08lx\n", si); 3436cf4a924SRobert Reif if (si & SUN4M_INT_MODULE_ERR) 3446cf4a924SRobert Reif printk(KERN_ERR "Module async error\n"); 3456cf4a924SRobert Reif if (si & SUN4M_INT_M2S_WRITE_ERR) 3466cf4a924SRobert Reif printk(KERN_ERR "MBus/SBus async error\n"); 3476cf4a924SRobert Reif if (si & SUN4M_INT_ECC_ERR) 3486cf4a924SRobert Reif printk(KERN_ERR "ECC memory error\n"); 3496cf4a924SRobert Reif if (si & SUN4M_INT_VME_ERR) 3506cf4a924SRobert Reif printk(KERN_ERR "VME async error\n"); 3516cf4a924SRobert Reif printk(KERN_ERR "you lose buddy boy...\n"); 3526cf4a924SRobert Reif show_regs(regs); 3536cf4a924SRobert Reif prom_halt(); 3546cf4a924SRobert Reif } 3556cf4a924SRobert Reif 3566baa9b20SSam Ravnborg void sun4m_unmask_profile_irq(void) 3576baa9b20SSam Ravnborg { 3586baa9b20SSam Ravnborg unsigned long flags; 3596baa9b20SSam Ravnborg 3606baa9b20SSam Ravnborg local_irq_save(flags); 3616baa9b20SSam Ravnborg sbus_writel(sun4m_imask[SUN4M_PROFILE_IRQ], &sun4m_irq_global->mask_clear); 3626baa9b20SSam Ravnborg local_irq_restore(flags); 3636baa9b20SSam Ravnborg } 3646baa9b20SSam Ravnborg 3651de937a5SDavid S. Miller void sun4m_clear_profile_irq(int cpu) 3661da177e4SLinus Torvalds { 3679b2e43aeSDavid S. Miller sbus_readl(&timers_percpu[cpu]->l14_limit); 3681da177e4SLinus Torvalds } 3691da177e4SLinus Torvalds 3701da177e4SLinus Torvalds static void sun4m_load_profile_irq(int cpu, unsigned int limit) 3711da177e4SLinus Torvalds { 3729b2e43aeSDavid S. Miller sbus_writel(limit, &timers_percpu[cpu]->l14_limit); 3731da177e4SLinus Torvalds } 3741da177e4SLinus Torvalds 37540220c1aSDavid Howells static void __init sun4m_init_timers(irq_handler_t counter_fn) 3761da177e4SLinus Torvalds { 3779b2e43aeSDavid S. Miller struct device_node *dp = of_find_node_by_name(NULL, "counter"); 3789b2e43aeSDavid S. Miller int i, err, len, num_cpu_timers; 3796baa9b20SSam Ravnborg unsigned int irq; 3809b2e43aeSDavid S. Miller const u32 *addr; 3811da177e4SLinus Torvalds 3829b2e43aeSDavid S. Miller if (!dp) { 3839b2e43aeSDavid S. Miller printk(KERN_ERR "sun4m_init_timers: No 'counter' node.\n"); 3849b2e43aeSDavid S. Miller return; 3851da177e4SLinus Torvalds } 3861da177e4SLinus Torvalds 3879b2e43aeSDavid S. Miller addr = of_get_property(dp, "address", &len); 388c2e27c35SNicolas Palix of_node_put(dp); 3899b2e43aeSDavid S. Miller if (!addr) { 3909b2e43aeSDavid S. Miller printk(KERN_ERR "sun4m_init_timers: No 'address' prop.\n"); 3919b2e43aeSDavid S. Miller return; 3921da177e4SLinus Torvalds } 3931da177e4SLinus Torvalds 3949b2e43aeSDavid S. Miller num_cpu_timers = (len / sizeof(u32)) - 1; 3959b2e43aeSDavid S. Miller for (i = 0; i < num_cpu_timers; i++) { 3969b2e43aeSDavid S. Miller timers_percpu[i] = (void __iomem *) 3979b2e43aeSDavid S. Miller (unsigned long) addr[i]; 3981da177e4SLinus Torvalds } 3999b2e43aeSDavid S. Miller timers_global = (void __iomem *) 4009b2e43aeSDavid S. Miller (unsigned long) addr[num_cpu_timers]; 4019b2e43aeSDavid S. Miller 402*e51e07e0STkhai Kirill /* Every per-cpu timer works in timer mode */ 403*e51e07e0STkhai Kirill sbus_writel(0x00000000, &timers_global->timer_config); 404*e51e07e0STkhai Kirill 4059b2e43aeSDavid S. Miller sbus_writel((((1000000/HZ) + 1) << 10), &timers_global->l10_limit); 4069b2e43aeSDavid S. Miller 4079b2e43aeSDavid S. Miller master_l10_counter = &timers_global->l10_count; 4089b2e43aeSDavid S. Miller 4096baa9b20SSam Ravnborg irq = sun4m_build_device_irq(NULL, SUN4M_TIMER_IRQ); 4106baa9b20SSam Ravnborg 4116baa9b20SSam Ravnborg err = request_irq(irq, counter_fn, IRQF_TIMER, "timer", NULL); 4129b2e43aeSDavid S. Miller if (err) { 4139b2e43aeSDavid S. Miller printk(KERN_ERR "sun4m_init_timers: Register IRQ error %d.\n", 4149b2e43aeSDavid S. Miller err); 4159b2e43aeSDavid S. Miller return; 4169b2e43aeSDavid S. Miller } 4179b2e43aeSDavid S. Miller 4189b2e43aeSDavid S. Miller for (i = 0; i < num_cpu_timers; i++) 4199b2e43aeSDavid S. Miller sbus_writel(0, &timers_percpu[i]->l14_limit); 4209b2e43aeSDavid S. Miller if (num_cpu_timers == 4) 42169c010b2SDavid S. Miller sbus_writel(SUN4M_INT_E14, &sun4m_irq_global->mask_set); 4229b2e43aeSDavid S. Miller 4231da177e4SLinus Torvalds #ifdef CONFIG_SMP 4241da177e4SLinus Torvalds { 4251da177e4SLinus Torvalds unsigned long flags; 4261da177e4SLinus Torvalds struct tt_entry *trap_table = &sparc_ttable[SP_TRAP_IRQ1 + (14 - 1)]; 4271da177e4SLinus Torvalds 4281da177e4SLinus Torvalds /* For SMP we use the level 14 ticker, however the bootup code 429d1a78c32SSimon Arlott * has copied the firmware's level 14 vector into the boot cpu's 4301da177e4SLinus Torvalds * trap table, we must fix this now or we get squashed. 4311da177e4SLinus Torvalds */ 4321da177e4SLinus Torvalds local_irq_save(flags); 4331da177e4SLinus Torvalds trap_table->inst_one = lvl14_save[0]; 4341da177e4SLinus Torvalds trap_table->inst_two = lvl14_save[1]; 4351da177e4SLinus Torvalds trap_table->inst_three = lvl14_save[2]; 4361da177e4SLinus Torvalds trap_table->inst_four = lvl14_save[3]; 4371da177e4SLinus Torvalds local_flush_cache_all(); 4381da177e4SLinus Torvalds local_irq_restore(flags); 4391da177e4SLinus Torvalds } 4401da177e4SLinus Torvalds #endif 4411da177e4SLinus Torvalds } 4421da177e4SLinus Torvalds 4431da177e4SLinus Torvalds void __init sun4m_init_IRQ(void) 4441da177e4SLinus Torvalds { 44569c010b2SDavid S. Miller struct device_node *dp = of_find_node_by_name(NULL, "interrupt"); 44669c010b2SDavid S. Miller int len, i, mid, num_cpu_iregs; 44769c010b2SDavid S. Miller const u32 *addr; 44869c010b2SDavid S. Miller 44969c010b2SDavid S. Miller if (!dp) { 45069c010b2SDavid S. Miller printk(KERN_ERR "sun4m_init_IRQ: No 'interrupt' node.\n"); 45169c010b2SDavid S. Miller return; 45269c010b2SDavid S. Miller } 45369c010b2SDavid S. Miller 45469c010b2SDavid S. Miller addr = of_get_property(dp, "address", &len); 455c2e27c35SNicolas Palix of_node_put(dp); 45669c010b2SDavid S. Miller if (!addr) { 45769c010b2SDavid S. Miller printk(KERN_ERR "sun4m_init_IRQ: No 'address' prop.\n"); 45869c010b2SDavid S. Miller return; 45969c010b2SDavid S. Miller } 46069c010b2SDavid S. Miller 46169c010b2SDavid S. Miller num_cpu_iregs = (len / sizeof(u32)) - 1; 46269c010b2SDavid S. Miller for (i = 0; i < num_cpu_iregs; i++) { 46369c010b2SDavid S. Miller sun4m_irq_percpu[i] = (void __iomem *) 46469c010b2SDavid S. Miller (unsigned long) addr[i]; 46569c010b2SDavid S. Miller } 46669c010b2SDavid S. Miller sun4m_irq_global = (void __iomem *) 46769c010b2SDavid S. Miller (unsigned long) addr[num_cpu_iregs]; 4681da177e4SLinus Torvalds 4691da177e4SLinus Torvalds local_irq_disable(); 4701da177e4SLinus Torvalds 47169c010b2SDavid S. Miller sbus_writel(~SUN4M_INT_MASKALL, &sun4m_irq_global->mask_set); 4721da177e4SLinus Torvalds for (i = 0; !cpu_find_by_instance(i, NULL, &mid); i++) 47369c010b2SDavid S. Miller sbus_writel(~0x17fff, &sun4m_irq_percpu[mid]->clear); 4741da177e4SLinus Torvalds 475e7913de9SDavid S. Miller if (num_cpu_iregs == 4) 47669c010b2SDavid S. Miller sbus_writel(0, &sun4m_irq_global->interrupt_target); 477e7913de9SDavid S. Miller 4781da177e4SLinus Torvalds BTFIXUPSET_CALL(clear_clock_irq, sun4m_clear_clock_irq, BTFIXUPCALL_NORM); 4791da177e4SLinus Torvalds BTFIXUPSET_CALL(load_profile_irq, sun4m_load_profile_irq, BTFIXUPCALL_NORM); 480bbdc2661SSam Ravnborg 481bbdc2661SSam Ravnborg sparc_irq_config.init_timers = sun4m_init_timers; 4826baa9b20SSam Ravnborg sparc_irq_config.build_device_irq = sun4m_build_device_irq; 483bbdc2661SSam Ravnborg 4841da177e4SLinus Torvalds #ifdef CONFIG_SMP 4851da177e4SLinus Torvalds BTFIXUPSET_CALL(set_cpu_int, sun4m_send_ipi, BTFIXUPCALL_NORM); 4861da177e4SLinus Torvalds BTFIXUPSET_CALL(clear_cpu_int, sun4m_clear_ipi, BTFIXUPCALL_NORM); 4871da177e4SLinus Torvalds BTFIXUPSET_CALL(set_irq_udt, sun4m_set_udt, BTFIXUPCALL_NORM); 4881da177e4SLinus Torvalds #endif 48969c010b2SDavid S. Miller 4901da177e4SLinus Torvalds /* Cannot enable interrupts until OBP ticker is disabled. */ 4911da177e4SLinus Torvalds } 492