1*1fdeb165SXin LI /* $Id: osm.h,v 1.10 2010/05/11 10:30:33 lcn Exp $ */ 2*1fdeb165SXin LI /*- 3*1fdeb165SXin LI * Copyright (C) 2005-2011 HighPoint Technologies, Inc. 4*1fdeb165SXin LI * All rights reserved. 5*1fdeb165SXin LI * 6*1fdeb165SXin LI * Redistribution and use in source and binary forms, with or without 7*1fdeb165SXin LI * modification, are permitted provided that the following conditions 8*1fdeb165SXin LI * are met: 9*1fdeb165SXin LI * 1. Redistributions of source code must retain the above copyright 10*1fdeb165SXin LI * notice, this list of conditions and the following disclaimer. 11*1fdeb165SXin LI * 2. Redistributions in binary form must reproduce the above copyright 12*1fdeb165SXin LI * notice, this list of conditions and the following disclaimer in the 13*1fdeb165SXin LI * documentation and/or other materials provided with the distribution. 14*1fdeb165SXin LI * 15*1fdeb165SXin LI * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 16*1fdeb165SXin LI * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 17*1fdeb165SXin LI * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 18*1fdeb165SXin LI * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 19*1fdeb165SXin LI * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 20*1fdeb165SXin LI * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 21*1fdeb165SXin LI * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 22*1fdeb165SXin LI * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 23*1fdeb165SXin LI * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 24*1fdeb165SXin LI * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 25*1fdeb165SXin LI * SUCH DAMAGE. 26*1fdeb165SXin LI * 27*1fdeb165SXin LI * $FreeBSD$ 28*1fdeb165SXin LI */ 29*1fdeb165SXin LI #include <dev/hptnr/hptnr_config.h> 30*1fdeb165SXin LI #ifndef _HPT_OSM_H_ 31*1fdeb165SXin LI #define _HPT_OSM_H_ 32*1fdeb165SXin LI 33*1fdeb165SXin LI #define VERMAGIC_OSM 6 34*1fdeb165SXin LI 35*1fdeb165SXin LI 36*1fdeb165SXin LI #define MAX_MEMBERS 64 37*1fdeb165SXin LI 38*1fdeb165SXin LI #define os_max_queue_comm 32 39*1fdeb165SXin LI #define os_max_sg_descriptors 18 40*1fdeb165SXin LI 41*1fdeb165SXin LI 42*1fdeb165SXin LI extern int os_max_cache_size; 43*1fdeb165SXin LI 44*1fdeb165SXin LI 45*1fdeb165SXin LI #define DMAPOOL_PAGE_SIZE 0x1000 /* PAGE_SIZE (i386/x86_64) */ 46*1fdeb165SXin LI #define os_max_cache_pages (os_max_cache_size/DMAPOOL_PAGE_SIZE) 47*1fdeb165SXin LI 48*1fdeb165SXin LI /* data types */ 49*1fdeb165SXin LI typedef unsigned int HPT_UINT, HPT_U32; 50*1fdeb165SXin LI typedef unsigned long HPT_UPTR; 51*1fdeb165SXin LI typedef unsigned short HPT_U16; 52*1fdeb165SXin LI typedef unsigned char HPT_U8; 53*1fdeb165SXin LI typedef unsigned long HPT_TIME; 54*1fdeb165SXin LI typedef unsigned long long HPT_U64; 55*1fdeb165SXin LI 56*1fdeb165SXin LI #define CPU_TO_LE64(x) (x) 57*1fdeb165SXin LI #define CPU_TO_LE32(x) (x) 58*1fdeb165SXin LI #define CPU_TO_LE16(x) (x) 59*1fdeb165SXin LI #define LE32_TO_CPU(x) (x) 60*1fdeb165SXin LI #define LE16_TO_CPU(x) (x) 61*1fdeb165SXin LI #define LE64_TO_CPU(x) (x) 62*1fdeb165SXin LI 63*1fdeb165SXin LI static __inline HPT_U64 CPU_TO_BE64(HPT_U64 x) 64*1fdeb165SXin LI { 65*1fdeb165SXin LI HPT_U8 *p = (HPT_U8 *)&x; 66*1fdeb165SXin LI return ((HPT_U64)p[0] << 56) | 67*1fdeb165SXin LI ((HPT_U64)p[1] << 48) | 68*1fdeb165SXin LI ((HPT_U64)p[2] << 40) | 69*1fdeb165SXin LI ((HPT_U64)p[3] << 32) | 70*1fdeb165SXin LI ((HPT_U64)p[4] << 24) | 71*1fdeb165SXin LI ((HPT_U64)p[5] << 16) | 72*1fdeb165SXin LI ((HPT_U64)p[6] << 8) | 73*1fdeb165SXin LI p[7]; 74*1fdeb165SXin LI } 75*1fdeb165SXin LI 76*1fdeb165SXin LI static __inline HPT_U32 CPU_TO_BE32(HPT_U32 x) 77*1fdeb165SXin LI { 78*1fdeb165SXin LI HPT_U8 *p = (HPT_U8 *)&x; 79*1fdeb165SXin LI return ((HPT_U32)p[0] << 24) | 80*1fdeb165SXin LI ((HPT_U32)p[1] << 16) | 81*1fdeb165SXin LI ((HPT_U32)p[2] << 8) | p[3]; 82*1fdeb165SXin LI } 83*1fdeb165SXin LI 84*1fdeb165SXin LI static __inline HPT_U16 CPU_TO_BE16(HPT_U16 x) 85*1fdeb165SXin LI { 86*1fdeb165SXin LI return ((HPT_U8)x << 8) | (x>>8); 87*1fdeb165SXin LI } 88*1fdeb165SXin LI 89*1fdeb165SXin LI #define BE16_TO_CPU(x) CPU_TO_BE16(x) 90*1fdeb165SXin LI #define BE32_TO_CPU(x) CPU_TO_BE32(x) 91*1fdeb165SXin LI #define BE64_TO_CPU(x) CPU_TO_BE64(x) 92*1fdeb165SXin LI 93*1fdeb165SXin LI #define FAR 94*1fdeb165SXin LI #define EXTERN_C 95*1fdeb165SXin LI 96*1fdeb165SXin LI typedef void * HPT_PTR; 97*1fdeb165SXin LI 98*1fdeb165SXin LI typedef HPT_U64 HPT_LBA; 99*1fdeb165SXin LI typedef HPT_U64 HPT_RAW_LBA; 100*1fdeb165SXin LI #define MAX_LBA_VALUE 0xffffffffffffffffull 101*1fdeb165SXin LI #define MAX_RAW_LBA_VALUE MAX_LBA_VALUE 102*1fdeb165SXin LI #define RAW_LBA(x) (x) 103*1fdeb165SXin LI #define LO_LBA(x) ((HPT_U32)(x)) 104*1fdeb165SXin LI #define HI_LBA(x) (sizeof(HPT_LBA)>4? (HPT_U32)((x)>>32) : 0) 105*1fdeb165SXin LI #define LBA_FORMAT_STR "0x%llX" 106*1fdeb165SXin LI 107*1fdeb165SXin LI typedef HPT_U64 BUS_ADDRESS; 108*1fdeb165SXin LI #define LO_BUSADDR(x) ((HPT_U32)(x)) 109*1fdeb165SXin LI #define HI_BUSADDR(x) (sizeof(BUS_ADDRESS)>4? (x)>>32 : 0) 110*1fdeb165SXin LI 111*1fdeb165SXin LI typedef unsigned char HPT_BOOL; 112*1fdeb165SXin LI #define HPT_TRUE 1 113*1fdeb165SXin LI #define HPT_FALSE 0 114*1fdeb165SXin LI 115*1fdeb165SXin LI typedef struct _TIME_RECORD { 116*1fdeb165SXin LI HPT_U32 seconds:6; /* 0 - 59 */ 117*1fdeb165SXin LI HPT_U32 minutes:6; /* 0 - 59 */ 118*1fdeb165SXin LI HPT_U32 month:4; /* 1 - 12 */ 119*1fdeb165SXin LI HPT_U32 hours:6; /* 0 - 59 */ 120*1fdeb165SXin LI HPT_U32 day:5; /* 1 - 31 */ 121*1fdeb165SXin LI HPT_U32 year:5; /* 0=2000, 31=2031 */ 122*1fdeb165SXin LI } TIME_RECORD; 123*1fdeb165SXin LI 124*1fdeb165SXin LI /* hardware access */ 125*1fdeb165SXin LI HPT_U8 os_inb (void *port); 126*1fdeb165SXin LI HPT_U16 os_inw (void *port); 127*1fdeb165SXin LI HPT_U32 os_inl (void *port); 128*1fdeb165SXin LI void os_outb (void *port, HPT_U8 value); 129*1fdeb165SXin LI void os_outw (void *port, HPT_U16 value); 130*1fdeb165SXin LI void os_outl (void *port, HPT_U32 value); 131*1fdeb165SXin LI void os_insw (void *port, HPT_U16 *buffer, HPT_U32 count); 132*1fdeb165SXin LI void os_outsw(void *port, HPT_U16 *buffer, HPT_U32 count); 133*1fdeb165SXin LI 134*1fdeb165SXin LI extern HPT_U32 __dummy_reg; /* to avoid the compiler warning */ 135*1fdeb165SXin LI 136*1fdeb165SXin LI #define os_readb(addr) (*(HPT_U8 *)&__dummy_reg = *(volatile HPT_U8 *)(addr)) 137*1fdeb165SXin LI #define os_readw(addr) (*(HPT_U16 *)&__dummy_reg = *(volatile HPT_U16 *)(addr)) 138*1fdeb165SXin LI #define os_readl(addr) (*(HPT_U32 *)&__dummy_reg = *(volatile HPT_U32 *)(addr)) 139*1fdeb165SXin LI 140*1fdeb165SXin LI #define os_writeb(addr, val) *(volatile HPT_U8 *)(addr) = (HPT_U8)(val) 141*1fdeb165SXin LI #define os_writew(addr, val) *(volatile HPT_U16 *)(addr) = (HPT_U16)(val) 142*1fdeb165SXin LI #define os_writel(addr, val) *(volatile HPT_U32 *)(addr) = (HPT_U32)(val) 143*1fdeb165SXin LI 144*1fdeb165SXin LI /* PCI configuration space for specified device*/ 145*1fdeb165SXin LI HPT_U8 os_pci_readb (void *osext, HPT_U8 offset); 146*1fdeb165SXin LI HPT_U16 os_pci_readw (void *osext, HPT_U8 offset); 147*1fdeb165SXin LI HPT_U32 os_pci_readl (void *osext, HPT_U8 offset); 148*1fdeb165SXin LI void os_pci_writeb(void *osext, HPT_U8 offset, HPT_U8 value); 149*1fdeb165SXin LI void os_pci_writew(void *osext, HPT_U8 offset, HPT_U16 value); 150*1fdeb165SXin LI void os_pci_writel(void *osext, HPT_U8 offset, HPT_U32 value); 151*1fdeb165SXin LI 152*1fdeb165SXin LI /* obsolute interface */ 153*1fdeb165SXin LI #define MAX_PCI_BUS_NUMBER 0xff 154*1fdeb165SXin LI #define MAX_PCI_DEVICE_NUMBER 32 155*1fdeb165SXin LI #define MAX_PCI_FUNC_NUMBER 1 156*1fdeb165SXin LI HPT_U32 pcicfg_read_dword(HPT_U8 bus, HPT_U8 dev, HPT_U8 func, HPT_U8 reg); 157*1fdeb165SXin LI 158*1fdeb165SXin LI 159*1fdeb165SXin LI void *os_map_pci_bar( 160*1fdeb165SXin LI void *osext, 161*1fdeb165SXin LI int index, 162*1fdeb165SXin LI HPT_U32 offset, 163*1fdeb165SXin LI HPT_U32 length 164*1fdeb165SXin LI ); 165*1fdeb165SXin LI 166*1fdeb165SXin LI 167*1fdeb165SXin LI void os_unmap_pci_bar(void *osext, void *base); 168*1fdeb165SXin LI 169*1fdeb165SXin LI #define os_kmap_sgptr(psg) (psg->addr._logical) 170*1fdeb165SXin LI #define os_kunmap_sgptr(ptr) 171*1fdeb165SXin LI #define os_set_sgptr(psg, ptr) (psg)->addr._logical = (ptr) 172*1fdeb165SXin LI 173*1fdeb165SXin LI /* timer */ 174*1fdeb165SXin LI void *os_add_timer(void *osext, HPT_U32 microseconds, void (*proc)(void *), void *arg); 175*1fdeb165SXin LI void os_del_timer(void *handle); 176*1fdeb165SXin LI void os_request_timer(void * osext, HPT_U32 interval); 177*1fdeb165SXin LI HPT_TIME os_query_time(void); 178*1fdeb165SXin LI 179*1fdeb165SXin LI /* task */ 180*1fdeb165SXin LI #define OS_SUPPORT_TASK 181*1fdeb165SXin LI 182*1fdeb165SXin LI typedef struct _OSM_TASK { 183*1fdeb165SXin LI struct _OSM_TASK *next; 184*1fdeb165SXin LI void (*func)(void *vbus, void *data); 185*1fdeb165SXin LI void *data; 186*1fdeb165SXin LI } 187*1fdeb165SXin LI OSM_TASK; 188*1fdeb165SXin LI 189*1fdeb165SXin LI void os_schedule_task(void *osext, OSM_TASK *task); 190*1fdeb165SXin LI 191*1fdeb165SXin LI /* misc */ 192*1fdeb165SXin LI HPT_U32 os_get_stamp(void); 193*1fdeb165SXin LI void os_stallexec(HPT_U32 microseconds); 194*1fdeb165SXin LI 195*1fdeb165SXin LI #ifndef _SYS_LIBKERN_H_ 196*1fdeb165SXin LI #define memcpy(dst, src, size) __builtin_memcpy((dst), (src), (size)) 197*1fdeb165SXin LI #define memcmp(dst, src, size) __builtin_memcmp((dst), (src), (size)) 198*1fdeb165SXin LI #define strcpy(dst, src) __builtin_strcpy((dst), (src)) 199*1fdeb165SXin LI static __inline void * memset(void *dst, int c, unsigned long size) 200*1fdeb165SXin LI { 201*1fdeb165SXin LI char *p; 202*1fdeb165SXin LI for (p=(char*)dst; size; size--,p++) *p = c; 203*1fdeb165SXin LI return dst; 204*1fdeb165SXin LI } 205*1fdeb165SXin LI #endif 206*1fdeb165SXin LI 207*1fdeb165SXin LI #define farMemoryCopy(a,b,c) memcpy((char *)(a), (char *)(b), (HPT_U32)c) 208*1fdeb165SXin LI 209*1fdeb165SXin LI 210*1fdeb165SXin LI #define os_register_device(osext, target_id) 211*1fdeb165SXin LI #define os_unregister_device(osext, target_id) 212*1fdeb165SXin LI int os_query_remove_device(void *osext, int target_id); 213*1fdeb165SXin LI int os_revalidate_device(void *osext, int target_id); 214*1fdeb165SXin LI 215*1fdeb165SXin LI HPT_U8 os_get_vbus_seq(void *osext); 216*1fdeb165SXin LI 217*1fdeb165SXin LI /* debug support */ 218*1fdeb165SXin LI int os_printk(char *fmt, ...); 219*1fdeb165SXin LI 220*1fdeb165SXin LI #if DBG 221*1fdeb165SXin LI extern int hpt_dbg_level; 222*1fdeb165SXin LI #define KdPrint(x) do { if (hpt_dbg_level) os_printk x; } while (0) 223*1fdeb165SXin LI void __os_dbgbreak(const char *file, int line); 224*1fdeb165SXin LI #define os_dbgbreak() __os_dbgbreak(__FILE__, __LINE__) 225*1fdeb165SXin LI #define HPT_ASSERT(x) do { if (!(x)) os_dbgbreak(); } while (0) 226*1fdeb165SXin LI void os_check_stack(const char *location, int size); 227*1fdeb165SXin LI #define HPT_CHECK_STACK(size) os_check_stack(__FUNCTION__, (size)) 228*1fdeb165SXin LI #else 229*1fdeb165SXin LI #define KdPrint(x) 230*1fdeb165SXin LI #define HPT_ASSERT(x) 231*1fdeb165SXin LI #define HPT_CHECK_STACK(size) 232*1fdeb165SXin LI #endif 233*1fdeb165SXin LI 234*1fdeb165SXin LI #define OsPrint(x) do { os_printk x; } while (0) 235*1fdeb165SXin LI 236*1fdeb165SXin LI #endif 237