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yeeloong_machdep.c revision 1.1.6.1
      1      1.1  bouyer /*	$OpenBSD: yeeloong_machdep.c,v 1.16 2011/04/15 20:40:06 deraadt Exp $	*/
      2      1.1  bouyer 
      3      1.1  bouyer /*
      4      1.1  bouyer  * Copyright (c) 2009, 2010 Miodrag Vallat.
      5      1.1  bouyer  *
      6      1.1  bouyer  * Permission to use, copy, modify, and distribute this software for any
      7      1.1  bouyer  * purpose with or without fee is hereby granted, provided that the above
      8      1.1  bouyer  * copyright notice and this permission notice appear in all copies.
      9      1.1  bouyer  *
     10      1.1  bouyer  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
     11      1.1  bouyer  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
     12      1.1  bouyer  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
     13      1.1  bouyer  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
     14      1.1  bouyer  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
     15      1.1  bouyer  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
     16      1.1  bouyer  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
     17      1.1  bouyer  */
     18      1.1  bouyer 
     19      1.1  bouyer /*
     20      1.1  bouyer  * Lemote {Fu,Lyn,Yee}loong specific code and configuration data.
     21      1.1  bouyer  * (this file really ought to be named lemote_machdep.c by now)
     22      1.1  bouyer  */
     23      1.1  bouyer 
     24      1.1  bouyer #include <sys/param.h>
     25      1.1  bouyer #include <sys/systm.h>
     26      1.1  bouyer #include <sys/device.h>
     27      1.1  bouyer #include <sys/types.h>
     28      1.1  bouyer 
     29      1.1  bouyer #include <evbmips/loongson/autoconf.h>
     30      1.1  bouyer #include <mips/pmon/pmon.h>
     31      1.1  bouyer #include <evbmips/loongson/loongson_intr.h>
     32      1.1  bouyer #include <evbmips/loongson/loongson_bus_defs.h>
     33      1.1  bouyer #include <evbmips/loongson/loongson_isa.h>
     34      1.1  bouyer 
     35      1.1  bouyer #include <dev/isa/isareg.h>
     36      1.1  bouyer #include <dev/isa/isavar.h>
     37      1.1  bouyer #include <dev/ic/i8259reg.h>
     38      1.1  bouyer 
     39      1.1  bouyer #include <dev/pci/pcireg.h>
     40      1.1  bouyer #include <dev/pci/pcivar.h>
     41      1.1  bouyer #include <dev/pci/pcidevs.h>
     42      1.1  bouyer 
     43      1.1  bouyer #include <mips/bonito/bonitoreg.h>
     44      1.1  bouyer #include <mips/bonito/bonitovar.h>
     45      1.1  bouyer 
     46      1.1  bouyer #include <evbmips/loongson/dev/kb3310var.h>
     47      1.1  bouyer #include <evbmips/loongson/dev/glxreg.h>
     48      1.1  bouyer #include <evbmips/loongson/dev/glxvar.h>
     49      1.1  bouyer 
     50      1.1  bouyer #include "com.h"
     51      1.1  bouyer #include "isa.h"
     52      1.1  bouyer #include "ykbec.h"
     53      1.1  bouyer 
     54      1.1  bouyer #if NCOM > 0
     55      1.1  bouyer #include <sys/termios.h>
     56      1.1  bouyer #include <dev/ic/comvar.h>
     57      1.1  bouyer #endif
     58      1.1  bouyer 
     59      1.1  bouyer #ifdef LOW_DEBUG
     60      1.1  bouyer #define DPRINTF(x) printf x
     61      1.1  bouyer #else
     62      1.1  bouyer #define DPRINTF(x)
     63      1.1  bouyer #endif
     64      1.1  bouyer 
     65      1.1  bouyer void	 lemote_device_register(struct device *, void *);
     66      1.1  bouyer void	 lemote_reset(void);
     67      1.1  bouyer 
     68      1.1  bouyer void	 fuloong_powerdown(void);
     69      1.1  bouyer void	 fuloong_setup(void);
     70      1.1  bouyer 
     71      1.1  bouyer void	 yeeloong_powerdown(void);
     72      1.1  bouyer 
     73      1.1  bouyer void	 lemote_pci_attach_hook(device_t, device_t,
     74      1.1  bouyer 	    struct pcibus_attach_args *);
     75      1.1  bouyer int	 lemote_intr_map(int, int, int, pci_intr_handle_t *);
     76      1.1  bouyer 
     77      1.1  bouyer void	 lemote_isa_attach_hook(struct device *, struct device *,
     78      1.1  bouyer 	    struct isabus_attach_args *);
     79      1.1  bouyer void	*lemote_isa_intr_establish(void *, int, int, int,
     80      1.1  bouyer 	    int (*)(void *), void *);
     81      1.1  bouyer void	 lemote_isa_intr_disestablish(void *, void *);
     82      1.1  bouyer const struct evcnt * lemote_isa_intr_evcnt(void *, int);
     83      1.1  bouyer const char * lemote_isa_intr_string(void *, int);
     84      1.1  bouyer 
     85      1.1  bouyer uint	 lemote_get_isa_imr(void);
     86      1.1  bouyer uint	 lemote_get_isa_isr(void);
     87      1.1  bouyer void	 lemote_isa_intr(int, vaddr_t, uint32_t);
     88      1.1  bouyer 
     89      1.1  bouyer const struct bonito_config lemote_bonito = {
     90      1.1  bouyer 	.bc_adbase = 11,
     91      1.1  bouyer 
     92      1.1  bouyer 	.bc_gpioIE = LOONGSON_INTRMASK_GPIO,
     93      1.1  bouyer 	.bc_intEdge = LOONGSON_INTRMASK_PCI_SYSERR |
     94      1.1  bouyer 	    LOONGSON_INTRMASK_PCI_PARERR,
     95      1.1  bouyer 	.bc_intSteer = 0,
     96      1.1  bouyer 	.bc_intPol = LOONGSON_INTRMASK_DRAM_PARERR |
     97      1.1  bouyer 	    LOONGSON_INTRMASK_PCI_SYSERR | LOONGSON_INTRMASK_PCI_PARERR |
     98      1.1  bouyer 	    LOONGSON_INTRMASK_INT0 | LOONGSON_INTRMASK_INT1,
     99      1.1  bouyer 
    100      1.1  bouyer 	.bc_attach_hook = lemote_pci_attach_hook,
    101      1.1  bouyer };
    102      1.1  bouyer 
    103      1.1  bouyer const struct legacy_io_range fuloong_legacy_ranges[] = {
    104      1.1  bouyer 	/* isa */
    105      1.1  bouyer 	{ IO_DMAPG + 4,	IO_DMAPG + 4 },
    106      1.1  bouyer 	/* mcclock */
    107      1.1  bouyer 	{ IO_RTC,	IO_RTC + 1 },
    108      1.1  bouyer 	/* pciide */
    109      1.1  bouyer 	{ 0x170,	0x170 + 7 },
    110      1.1  bouyer 	{ 0x1f0,	0x1f0 + 7 },
    111      1.1  bouyer 	{ 0x376,	0x376 },
    112      1.1  bouyer 	{ 0x3f6,	0x3f6 },
    113      1.1  bouyer 	/* com */
    114      1.1  bouyer 	{ IO_COM1,	IO_COM1 + 8 },		/* IR port */
    115      1.1  bouyer 	{ IO_COM2,	IO_COM2 + 8 },		/* serial port */
    116      1.1  bouyer 
    117      1.1  bouyer 	{ 0 }
    118      1.1  bouyer };
    119      1.1  bouyer 
    120      1.1  bouyer const struct legacy_io_range lynloong_legacy_ranges[] = {
    121      1.1  bouyer 	/* isa */
    122      1.1  bouyer 	{ IO_DMAPG + 4,	IO_DMAPG + 4 },
    123      1.1  bouyer 	/* mcclock */
    124      1.1  bouyer 	{ IO_RTC,	IO_RTC + 1 },
    125      1.1  bouyer 	/* pciide */
    126      1.1  bouyer 	{ 0x170,	0x170 + 7 },
    127      1.1  bouyer 	{ 0x1f0,	0x1f0 + 7 },
    128      1.1  bouyer 	{ 0x376,	0x376 },
    129      1.1  bouyer 	{ 0x3f6,	0x3f6 },
    130      1.1  bouyer #if 0	/* no external connector */
    131      1.1  bouyer 	/* com */
    132      1.1  bouyer 	{ IO_COM2,	IO_COM2 + 8 },
    133      1.1  bouyer #endif
    134      1.1  bouyer 
    135      1.1  bouyer 	{ 0 }
    136      1.1  bouyer };
    137      1.1  bouyer 
    138      1.1  bouyer const struct legacy_io_range yeeloong_legacy_ranges[] = {
    139      1.1  bouyer 	/* isa */
    140      1.1  bouyer 	{ IO_DMAPG + 4,	IO_DMAPG + 4 },
    141      1.1  bouyer 	/* pckbc */
    142      1.1  bouyer 	{ IO_KBD,	IO_KBD },
    143      1.1  bouyer 	{ IO_KBD + 4,	IO_KBD + 4 },
    144      1.1  bouyer 	/* mcclock */
    145      1.1  bouyer 	{ IO_RTC,	IO_RTC + 1 },
    146      1.1  bouyer 	/* pciide */
    147      1.1  bouyer 	{ 0x170,	0x170 + 7 },
    148      1.1  bouyer 	{ 0x1f0,	0x1f0 + 7 },
    149      1.1  bouyer 	{ 0x376,	0x376 },
    150      1.1  bouyer 	{ 0x3f6,	0x3f6 },
    151      1.1  bouyer 	/* kb3110b embedded controller */
    152      1.1  bouyer 	{ 0x381,	0x383 },
    153      1.1  bouyer 
    154      1.1  bouyer 	{ 0 }
    155      1.1  bouyer };
    156      1.1  bouyer 
    157      1.1  bouyer struct mips_isa_chipset lemote_isa_chipset = {
    158      1.1  bouyer 	.ic_v = NULL,
    159      1.1  bouyer 
    160      1.1  bouyer 	.ic_attach_hook = lemote_isa_attach_hook,
    161      1.1  bouyer 	.ic_intr_establish = lemote_isa_intr_establish,
    162      1.1  bouyer 	.ic_intr_disestablish = lemote_isa_intr_disestablish,
    163      1.1  bouyer 	.ic_intr_evcnt = lemote_isa_intr_evcnt,
    164      1.1  bouyer 	.ic_intr_string = lemote_isa_intr_string,
    165      1.1  bouyer };
    166      1.1  bouyer 
    167      1.1  bouyer const struct platform fuloong_platform = {
    168      1.1  bouyer 	.system_type = LOONGSON_FULOONG,
    169      1.1  bouyer 	.vendor = "Lemote",
    170      1.1  bouyer 	.product = "Fuloong",
    171      1.1  bouyer 
    172      1.1  bouyer 	.bonito_config = &lemote_bonito,
    173      1.1  bouyer 	.isa_chipset = &lemote_isa_chipset,
    174      1.1  bouyer 	.legacy_io_ranges = fuloong_legacy_ranges,
    175      1.1  bouyer 	.bonito_mips_intr = MIPS_INT_MASK_4,
    176      1.1  bouyer 	.isa_mips_intr = MIPS_INT_MASK_0,
    177      1.1  bouyer 	.isa_intr = lemote_isa_intr,
    178      1.1  bouyer 	.p_pci_intr_map = lemote_intr_map,
    179      1.1  bouyer 	.irq_map =loongson2f_irqmap,
    180      1.1  bouyer 
    181      1.1  bouyer 	.setup = fuloong_setup,
    182      1.1  bouyer 	.device_register = lemote_device_register,
    183      1.1  bouyer 
    184      1.1  bouyer 	.powerdown = fuloong_powerdown,
    185      1.1  bouyer 	.reset = lemote_reset
    186      1.1  bouyer };
    187      1.1  bouyer 
    188      1.1  bouyer const struct platform lynloong_platform = {
    189      1.1  bouyer 	.system_type = LOONGSON_LYNLOONG,
    190      1.1  bouyer 	.vendor = "Lemote",
    191      1.1  bouyer 	.product = "Lynloong",
    192      1.1  bouyer 
    193      1.1  bouyer 	.bonito_config = &lemote_bonito,
    194      1.1  bouyer 	.isa_chipset = &lemote_isa_chipset,
    195      1.1  bouyer 	.legacy_io_ranges = lynloong_legacy_ranges,
    196      1.1  bouyer 	.bonito_mips_intr = MIPS_INT_MASK_4,
    197      1.1  bouyer 	.isa_mips_intr = MIPS_INT_MASK_0,
    198      1.1  bouyer 	.isa_intr = lemote_isa_intr,
    199      1.1  bouyer 	.p_pci_intr_map = lemote_intr_map,
    200      1.1  bouyer 	.irq_map =loongson2f_irqmap,
    201      1.1  bouyer 
    202      1.1  bouyer 	.setup = fuloong_setup,
    203      1.1  bouyer 	.device_register = lemote_device_register,
    204      1.1  bouyer 
    205      1.1  bouyer 	.powerdown = fuloong_powerdown,
    206      1.1  bouyer 	.reset = lemote_reset
    207      1.1  bouyer };
    208      1.1  bouyer 
    209      1.1  bouyer const struct platform yeeloong_platform = {
    210      1.1  bouyer 	.system_type = LOONGSON_YEELOONG,
    211      1.1  bouyer 	.vendor = "Lemote",
    212      1.1  bouyer 	.product = "Yeeloong",
    213      1.1  bouyer 
    214      1.1  bouyer 	.bonito_config = &lemote_bonito,
    215      1.1  bouyer 	.isa_chipset = &lemote_isa_chipset,
    216      1.1  bouyer 	.legacy_io_ranges = yeeloong_legacy_ranges,
    217      1.1  bouyer 	.bonito_mips_intr = MIPS_INT_MASK_4,
    218      1.1  bouyer 	.isa_mips_intr = MIPS_INT_MASK_0,
    219      1.1  bouyer 	.isa_intr = lemote_isa_intr,
    220      1.1  bouyer 	.p_pci_intr_map = lemote_intr_map,
    221      1.1  bouyer 	.irq_map =loongson2f_irqmap,
    222      1.1  bouyer 
    223      1.1  bouyer 	.setup = NULL,
    224      1.1  bouyer 	.device_register = lemote_device_register,
    225      1.1  bouyer 
    226      1.1  bouyer 	.powerdown = yeeloong_powerdown,
    227      1.1  bouyer 	.reset = lemote_reset,
    228      1.1  bouyer #if NYKBEC > 0
    229      1.1  bouyer 	.suspend = ykbec_suspend,
    230      1.1  bouyer 	.resume = ykbec_resume
    231      1.1  bouyer #endif
    232      1.1  bouyer };
    233      1.1  bouyer 
    234      1.1  bouyer static int stray_intr[BONITO_NISA];
    235      1.1  bouyer 
    236      1.1  bouyer /*
    237      1.1  bouyer  * PCI model specific routines
    238      1.1  bouyer  */
    239      1.1  bouyer 
    240      1.1  bouyer void
    241      1.1  bouyer lemote_pci_attach_hook(device_t parent, device_t self,
    242      1.1  bouyer     struct pcibus_attach_args *pba)
    243      1.1  bouyer {
    244      1.1  bouyer 	pci_chipset_tag_t pc = pba->pba_pc;
    245      1.1  bouyer 	pcireg_t id;
    246      1.1  bouyer 	pcitag_t tag;
    247      1.1  bouyer 	int dev, i;
    248      1.1  bouyer 
    249      1.1  bouyer 	if (pba->pba_bus != 0)
    250      1.1  bouyer 		return;
    251      1.1  bouyer 
    252      1.1  bouyer 	/*
    253      1.1  bouyer 	 * Check for an AMD CS5536 chip; if one is found, register
    254      1.1  bouyer 	 * the proper PCI configuration space hooks.
    255      1.1  bouyer 	 */
    256      1.1  bouyer 
    257      1.1  bouyer 	for (dev = pci_bus_maxdevs(pc, 0); dev >= 0; dev--) {
    258      1.1  bouyer 		tag = pci_make_tag(pc, 0, dev, 0);
    259      1.1  bouyer 		id = pci_conf_read(pc, tag, PCI_ID_REG);
    260      1.1  bouyer 		DPRINTF(("lemote_pci_attach_hook id 0x%x\n", id));
    261      1.1  bouyer 		if (id == PCI_ID_CODE(PCI_VENDOR_AMD,
    262      1.1  bouyer 		    PCI_PRODUCT_AMD_CS5536_PCISB)) {
    263      1.1  bouyer 			glx_init(pc, tag, dev);
    264      1.1  bouyer 			break;
    265      1.1  bouyer 		}
    266      1.1  bouyer 	}
    267      1.1  bouyer 	wrmsr(GCSC_PIC_SHDW, 0);
    268      1.1  bouyer 	DPRINTF(("PMON setup picregs:"));
    269      1.1  bouyer 	for (i = 0; i < 12; i++) {
    270      1.1  bouyer 		if (i == 6)
    271      1.1  bouyer 			DPRINTF((" | "));
    272      1.1  bouyer 		DPRINTF((" 0x%x", (uint32_t)(rdmsr(GCSC_PIC_SHDW) & 0xff)));
    273      1.1  bouyer 	}
    274      1.1  bouyer 	DPRINTF(("\n"));
    275      1.1  bouyer 	DPRINTF(("intsel 0x%x 0x%x\n", REGVAL8(BONITO_PCIIO_BASE + 0x4d0),
    276      1.1  bouyer 	    REGVAL8(BONITO_PCIIO_BASE + 0x4d1)));
    277      1.1  bouyer 	/* setup legacy interrupt controller */
    278      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + PIC_OCW1) = 0xff;
    279      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + PIC_ICW1) =
    280      1.1  bouyer 	    ICW1_SELECT | ICW1_IC4;
    281      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + PIC_ICW2) = ICW2_VECTOR(0);
    282      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + PIC_ICW3) = ICW3_CASCADE(2);
    283      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + PIC_ICW4) = ICW4_8086;
    284      1.1  bouyer 	delay(100);
    285      1.1  bouyer 	/* mask all interrupts */
    286      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + PIC_OCW1) = 0xff;
    287      1.1  bouyer 
    288      1.1  bouyer 	/* read ISR by default. */
    289      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + PIC_OCW3) =
    290      1.1  bouyer 	    OCW3_SELECT | OCW3_RR;
    291      1.1  bouyer 	(void)REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + PIC_OCW3);
    292      1.1  bouyer 
    293      1.1  bouyer 	/* reset; program device, four bytes */
    294      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + PIC_OCW1) = 0xff;
    295      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + PIC_ICW1) =
    296      1.1  bouyer 	    ICW1_SELECT | ICW1_IC4;
    297      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + PIC_ICW2) = ICW2_VECTOR(8);
    298      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + PIC_ICW3) = ICW3_SIC(2);
    299      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + PIC_ICW4) = ICW4_8086;
    300      1.1  bouyer 	delay(100);
    301      1.1  bouyer 	/* leave interrupts masked */
    302      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + PIC_OCW1) = 0xff;
    303      1.1  bouyer 	/* read ISR by default. */
    304      1.1  bouyer 	REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + PIC_OCW3) =
    305      1.1  bouyer 	    OCW3_SELECT | OCW3_RR;
    306      1.1  bouyer 	(void)REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + PIC_OCW3);
    307      1.1  bouyer }
    308      1.1  bouyer 
    309      1.1  bouyer int
    310      1.1  bouyer lemote_intr_map(int dev, int fn, int pin, pci_intr_handle_t *ihp)
    311      1.1  bouyer {
    312      1.1  bouyer 	switch (dev) {
    313      1.1  bouyer 	/* onboard devices, only pin A is wired */
    314      1.1  bouyer 	case 6:
    315      1.1  bouyer 	case 7:
    316      1.1  bouyer 	case 8:
    317      1.1  bouyer 	case 9:
    318      1.1  bouyer 		if (pin == PCI_INTERRUPT_PIN_A) {
    319      1.1  bouyer 			*ihp = BONITO_DIRECT_IRQ(LOONGSON_INTR_PCIA +
    320      1.1  bouyer 			    (dev - 6));
    321      1.1  bouyer 			return 0;
    322      1.1  bouyer 		}
    323      1.1  bouyer 		break;
    324      1.1  bouyer 	/* PCI slot */
    325      1.1  bouyer 	case 10:
    326      1.1  bouyer 		*ihp = BONITO_DIRECT_IRQ(LOONGSON_INTR_PCIA +
    327      1.1  bouyer 		    (pin - PCI_INTERRUPT_PIN_A));
    328      1.1  bouyer 		return 0;
    329      1.1  bouyer 	/* Geode chip */
    330      1.1  bouyer 	case 14:
    331      1.1  bouyer 		switch (fn) {
    332      1.1  bouyer 		case 1:	/* Flash */
    333      1.1  bouyer 			*ihp = BONITO_ISA_IRQ(6);
    334      1.1  bouyer 			return 0;
    335      1.1  bouyer 		case 3:	/* AC97 */
    336      1.1  bouyer 			*ihp = BONITO_ISA_IRQ(9);
    337      1.1  bouyer 			return 0;
    338      1.1  bouyer 		case 4:	/* OHCI */
    339      1.1  bouyer 		case 5:	/* EHCI */
    340      1.1  bouyer 			*ihp = BONITO_ISA_IRQ(11);
    341      1.1  bouyer 			return 0;
    342      1.1  bouyer 		}
    343      1.1  bouyer 		break;
    344      1.1  bouyer 	default:
    345      1.1  bouyer 		break;
    346      1.1  bouyer 	}
    347      1.1  bouyer 
    348      1.1  bouyer 	return 1;
    349      1.1  bouyer }
    350      1.1  bouyer 
    351      1.1  bouyer /*
    352      1.1  bouyer  * ISA model specific routines
    353      1.1  bouyer  */
    354      1.1  bouyer 
    355      1.1  bouyer void
    356      1.1  bouyer lemote_isa_attach_hook(struct device *parent, struct device *self,
    357      1.1  bouyer     struct isabus_attach_args *iba)
    358      1.1  bouyer {
    359      1.1  bouyer 	loongson_set_isa_imr(loongson_isaimr);
    360      1.1  bouyer }
    361      1.1  bouyer 
    362      1.1  bouyer void *
    363      1.1  bouyer lemote_isa_intr_establish(void *v, int irq, int type, int level,
    364      1.1  bouyer     int (*handler)(void *), void *arg)
    365      1.1  bouyer {
    366      1.1  bouyer 	void *ih;
    367      1.1  bouyer 	uint imr;
    368      1.1  bouyer 
    369      1.1  bouyer 	ih =  evbmips_intr_establish(BONITO_ISA_IRQ(irq), handler, arg);
    370      1.1  bouyer 	if (ih == NULL)
    371      1.1  bouyer 		return NULL;
    372      1.1  bouyer 	/* enable interrupt */
    373      1.1  bouyer 	imr = lemote_get_isa_imr();
    374      1.1  bouyer 	imr |= (1 << irq);
    375      1.1  bouyer 	DPRINTF(("lemote_isa_intr_establish: enable irq %d 0x%x\n",
    376      1.1  bouyer 	    irq, imr));
    377      1.1  bouyer 	loongson_set_isa_imr(imr);
    378      1.1  bouyer 	return ih;
    379      1.1  bouyer }
    380      1.1  bouyer 
    381      1.1  bouyer void
    382      1.1  bouyer lemote_isa_intr_disestablish(void *v, void *ih)
    383      1.1  bouyer {
    384      1.1  bouyer 	evbmips_intr_disestablish(ih);
    385      1.1  bouyer }
    386      1.1  bouyer 
    387      1.1  bouyer const struct evcnt *
    388      1.1  bouyer lemote_isa_intr_evcnt(void *v, int irq)
    389      1.1  bouyer {
    390      1.1  bouyer 
    391      1.1  bouyer         if (irq == 0 || irq >= BONITO_NISA || irq == 2)
    392      1.1  bouyer 		panic("lemote_isa_intr_evcnt: bogus isa irq 0x%x", irq);
    393      1.1  bouyer 
    394      1.1  bouyer 	return (&bonito_intrhead[BONITO_ISA_IRQ(irq)].intr_count);
    395      1.1  bouyer }
    396      1.1  bouyer 
    397      1.1  bouyer const char *
    398      1.1  bouyer lemote_isa_intr_string(void *v, int irq)
    399      1.1  bouyer {
    400      1.1  bouyer 	if (irq == 0 || irq >= BONITO_NISA || irq == 2)
    401      1.1  bouyer 		panic("lemote_isa_intr_string: bogus isa irq 0x%x", irq);
    402      1.1  bouyer 
    403      1.1  bouyer 	return loongson_intr_string(&lemote_bonito, BONITO_ISA_IRQ(irq));
    404      1.1  bouyer }
    405      1.1  bouyer 
    406      1.1  bouyer /*
    407      1.1  bouyer  * Legacy (ISA) interrupt handling
    408      1.1  bouyer  */
    409      1.1  bouyer 
    410      1.1  bouyer /*
    411      1.1  bouyer  * Process legacy interrupts.
    412      1.1  bouyer  *
    413      1.1  bouyer  * XXX On 2F, ISA interrupts only occur on LOONGSON_INTR_INT0, but since
    414      1.1  bouyer  * XXX the other LOONGSON_INTR_INT# are unmaskable, bad things will happen
    415      1.1  bouyer  * XXX if they ever are triggered...
    416      1.1  bouyer  */
    417      1.1  bouyer void
    418      1.1  bouyer lemote_isa_intr(int ipl, vaddr_t pc, uint32_t ipending)
    419      1.1  bouyer {
    420      1.1  bouyer #if NISA > 0
    421      1.1  bouyer 	uint32_t isr, imr, mask;
    422      1.1  bouyer 	int bit;
    423      1.1  bouyer 	struct evbmips_intrhand *ih;
    424      1.1  bouyer 	int rc;
    425      1.1  bouyer 	//int i;
    426      1.1  bouyer 
    427      1.1  bouyer 	imr = lemote_get_isa_imr();
    428      1.1  bouyer 	isr = lemote_get_isa_isr() & imr;
    429      1.1  bouyer 
    430      1.1  bouyer 	/*
    431      1.1  bouyer 	 * Now process allowed interrupts.
    432      1.1  bouyer 	 */
    433      1.1  bouyer 	if (isr != 0) {
    434      1.1  bouyer 		int bitno, ret;
    435      1.1  bouyer 
    436      1.1  bouyer 		/* Service higher level interrupts first */
    437      1.1  bouyer 		bit = BONITO_NISA - 1;
    438      1.1  bouyer 		for (bitno = bit, mask = 1UL << bitno;
    439      1.1  bouyer 		    mask != 0;
    440      1.1  bouyer 		    bitno--, mask >>= 1) {
    441      1.1  bouyer 			if ((isr & mask) == 0)
    442      1.1  bouyer 				continue;
    443      1.1  bouyer 			loongson_isa_specific_eoi(bitno);
    444      1.1  bouyer 			rc = 0;
    445      1.1  bouyer 			LIST_FOREACH(ih,
    446      1.1  bouyer 			    &bonito_intrhead[BONITO_ISA_IRQ(bitno)].intrhand_head,
    447      1.1  bouyer 			    ih_q) {
    448      1.1  bouyer 				ret = (*ih->ih_func)(ih->ih_arg);
    449      1.1  bouyer 				if (ret) {
    450      1.1  bouyer 					rc = 1;
    451      1.1  bouyer 					bonito_intrhead[BONITO_ISA_IRQ(bitno)].intr_count.ev_count++;
    452      1.1  bouyer 				}
    453      1.1  bouyer 			}
    454      1.1  bouyer 			if (rc == 0) {
    455      1.1  bouyer 				if (stray_intr[bitno]++ & 0x10000) {
    456      1.1  bouyer 					printf("spurious isa interrupt %d\n",
    457      1.1  bouyer 					    bitno);
    458      1.1  bouyer 					stray_intr[bitno] = 0;
    459      1.1  bouyer 				}
    460      1.1  bouyer 			}
    461      1.1  bouyer 
    462      1.1  bouyer 			if ((isr ^= mask) == 0)
    463      1.1  bouyer 				break;
    464      1.1  bouyer 		}
    465      1.1  bouyer 
    466      1.1  bouyer 		/*
    467      1.1  bouyer 		 * Reenable interrupts which have been serviced.
    468      1.1  bouyer 		 */
    469      1.1  bouyer 		loongson_set_isa_imr(imr);
    470      1.1  bouyer 	}
    471      1.1  bouyer 
    472      1.1  bouyer #endif
    473      1.1  bouyer 	return;
    474      1.1  bouyer }
    475      1.1  bouyer 
    476      1.1  bouyer uint
    477  1.1.6.1     mrg lemote_get_isa_imr(void)
    478      1.1  bouyer {
    479      1.1  bouyer 	uint imr1, imr2;
    480      1.1  bouyer 
    481      1.1  bouyer 	imr1 = 0xff & ~REGVAL8(BONITO_PCIIO_BASE + IO_ICU1 + 1);
    482      1.1  bouyer 	imr1 &= ~(1 << 2);	/* hide cascade */
    483      1.1  bouyer 	imr2 = 0xff & ~REGVAL8(BONITO_PCIIO_BASE + IO_ICU2 + 1);
    484      1.1  bouyer 
    485      1.1  bouyer 	return (imr2 << 8) | imr1;
    486      1.1  bouyer }
    487      1.1  bouyer 
    488      1.1  bouyer uint
    489  1.1.6.1     mrg lemote_get_isa_isr(void)
    490      1.1  bouyer {
    491      1.1  bouyer 	uint isr1, isr2 = 0;
    492      1.1  bouyer 
    493      1.1  bouyer 	isr1 = REGVAL8(BONITO_PCIIO_BASE + IO_ICU1);
    494      1.1  bouyer 	isr1 &= ~(1<<2);
    495      1.1  bouyer 	isr2 = REGVAL8(BONITO_PCIIO_BASE + IO_ICU2);
    496      1.1  bouyer 
    497      1.1  bouyer 	return (isr1 | (isr2 << 8));
    498      1.1  bouyer }
    499      1.1  bouyer 
    500      1.1  bouyer /*
    501      1.1  bouyer  * Other model specific routines
    502      1.1  bouyer  */
    503      1.1  bouyer 
    504      1.1  bouyer void
    505  1.1.6.1     mrg fuloong_powerdown(void)
    506      1.1  bouyer {
    507      1.1  bouyer 	vaddr_t gpiobase;
    508      1.1  bouyer 
    509      1.1  bouyer 	gpiobase = BONITO_PCIIO_BASE + (rdmsr(GCSC_DIVIL_LBAR_GPIO) & 0xff00);
    510      1.1  bouyer 	/* enable GPIO 13 */
    511      1.1  bouyer 	REGVAL(gpiobase + GCSC_GPIOL_OUT_EN) = GCSC_GPIO_ATOMIC_VALUE(13, 1);
    512      1.1  bouyer 	/* set GPIO13 value to zero */
    513      1.1  bouyer 	REGVAL(gpiobase + GCSC_GPIOL_OUT_VAL) = GCSC_GPIO_ATOMIC_VALUE(13, 0);
    514      1.1  bouyer }
    515      1.1  bouyer 
    516      1.1  bouyer void
    517  1.1.6.1     mrg yeeloong_powerdown(void)
    518      1.1  bouyer {
    519      1.1  bouyer 	REGVAL(BONITO_GPIODATA) &= ~0x00000001;
    520      1.1  bouyer 	REGVAL(BONITO_GPIOIE) &= ~0x00000001;
    521      1.1  bouyer }
    522      1.1  bouyer 
    523      1.1  bouyer void
    524  1.1.6.1     mrg lemote_reset(void)
    525      1.1  bouyer {
    526      1.1  bouyer 	wrmsr(GCSC_GLCP_SYS_RST, rdmsr(GCSC_GLCP_SYS_RST) | 1);
    527      1.1  bouyer }
    528      1.1  bouyer 
    529      1.1  bouyer void
    530      1.1  bouyer fuloong_setup(void)
    531      1.1  bouyer {
    532      1.1  bouyer #if NCOM > 0
    533      1.1  bouyer 	const char *envvar;
    534      1.1  bouyer 	int serial;
    535      1.1  bouyer 
    536      1.1  bouyer 	envvar = pmon_getenv("nokbd");
    537      1.1  bouyer 	serial = envvar != NULL;
    538      1.1  bouyer 	envvar = pmon_getenv("novga");
    539      1.1  bouyer 	serial = serial && envvar != NULL;
    540      1.1  bouyer 
    541      1.1  bouyer 	//serial = 1; /* XXXXXX */
    542      1.1  bouyer 	if (serial) {
    543      1.1  bouyer                 comconsiot = &bonito_iot;
    544      1.1  bouyer                 comconsaddr = 0x2f8;
    545      1.1  bouyer                 comconsrate = 115200; /* default PMON console speed */
    546      1.1  bouyer 	}
    547      1.1  bouyer #endif
    548      1.1  bouyer }
    549      1.1  bouyer 
    550      1.1  bouyer void
    551      1.1  bouyer lemote_device_register(struct device *dev, void *aux)
    552      1.1  bouyer {
    553      1.1  bouyer 	const char *name = device_xname(dev);
    554      1.1  bouyer 
    555      1.1  bouyer 	if (dev->dv_class != bootdev_class)
    556      1.1  bouyer 		return;
    557      1.1  bouyer 
    558      1.1  bouyer 	/*
    559      1.1  bouyer 	 * The device numbering must match. There's no way
    560      1.1  bouyer 	 * pmon tells us more info. Depending on the usb slot
    561      1.1  bouyer 	 * and hubs used you may be lucky. Also, assume umass/sd for usb
    562      1.1  bouyer 	 * attached devices.
    563      1.1  bouyer 	 */
    564      1.1  bouyer 	switch (bootdev_class) {
    565      1.1  bouyer 	case DV_DISK:
    566      1.1  bouyer 		if (device_is_a(dev, "wd") && strcmp(name, bootdev) == 0) {
    567      1.1  bouyer 			if (booted_device == NULL)
    568      1.1  bouyer 				booted_device = dev;
    569      1.1  bouyer 		} else {
    570      1.1  bouyer 			/* XXX this really only works safely for usb0... */
    571      1.1  bouyer 		    	if ((device_is_a(dev, "sd") ||
    572      1.1  bouyer 			    device_is_a(dev, "cd") == 0) &&
    573      1.1  bouyer 			    strncmp(bootdev, "usb", 3) == 0 &&
    574      1.1  bouyer 			    strcmp(name + 2, bootdev + 3) == 0) {
    575      1.1  bouyer 				if (booted_device == NULL)
    576      1.1  bouyer 					booted_device = dev;
    577      1.1  bouyer 			}
    578      1.1  bouyer 		}
    579      1.1  bouyer 		break;
    580      1.1  bouyer 	case DV_IFNET:
    581      1.1  bouyer 		/*
    582      1.1  bouyer 		 * This relies on the onboard Ethernet interface being
    583      1.1  bouyer 		 * attached before any other (usb) interface.
    584      1.1  bouyer 		 */
    585      1.1  bouyer 		if (booted_device == NULL)
    586      1.1  bouyer 			booted_device = dev;
    587      1.1  bouyer 		break;
    588      1.1  bouyer 	default:
    589      1.1  bouyer 		break;
    590      1.1  bouyer 	}
    591      1.1  bouyer }
    592