1 1.6 riastrad /* $NetBSD: io.c,v 1.6 2022/02/16 23:49:27 riastradh Exp $ */ 2 1.1 nonaka 3 1.1 nonaka /*- 4 1.1 nonaka * Copyright (C) 1995-1997 Gary Thomas (gdt (at) linuxppc.org) 5 1.1 nonaka * All rights reserved. 6 1.1 nonaka * 7 1.1 nonaka * PCI/ISA I/O support 8 1.1 nonaka * 9 1.1 nonaka * Redistribution and use in source and binary forms, with or without 10 1.1 nonaka * modification, are permitted provided that the following conditions 11 1.1 nonaka * are met: 12 1.1 nonaka * 1. Redistributions of source code must retain the above copyright 13 1.1 nonaka * notice, this list of conditions and the following disclaimer. 14 1.1 nonaka * 2. Redistributions in binary form must reproduce the above copyright 15 1.1 nonaka * notice, this list of conditions and the following disclaimer in the 16 1.1 nonaka * documentation and/or other materials provided with the distribution. 17 1.1 nonaka * 3. All advertising materials mentioning features or use of this software 18 1.1 nonaka * must display the following acknowledgement: 19 1.1 nonaka * This product includes software developed by Gary Thomas. 20 1.1 nonaka * 4. The name of the author may not be used to endorse or promote products 21 1.1 nonaka * derived from this software without specific prior written permission. 22 1.1 nonaka * 23 1.1 nonaka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 24 1.1 nonaka * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 25 1.1 nonaka * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 26 1.1 nonaka * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 27 1.1 nonaka * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 28 1.1 nonaka * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 29 1.1 nonaka * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 30 1.1 nonaka * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 31 1.1 nonaka * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 32 1.1 nonaka * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 33 1.1 nonaka */ 34 1.1 nonaka 35 1.1 nonaka #include <lib/libsa/stand.h> 36 1.3 garbled #include <sys/bswap.h> 37 1.1 nonaka #include "boot.h" 38 1.1 nonaka 39 1.3 garbled 40 1.5 kiyohara volatile u_char *PCI_mem = (u_char *)0xc0000000; 41 1.1 nonaka volatile u_char *ISA_io = (u_char *)0x80000000; 42 1.3 garbled volatile u_char *ISA_mem = (u_char *)0xc0000000; 43 1.3 garbled volatile char *videomem = (char *)0xc00b8000; /* + vram offset */ 44 1.3 garbled 45 1.5 kiyohara static int dcache_line_size = 32; 46 1.5 kiyohara 47 1.1 nonaka 48 1.1 nonaka void 49 1.2 garbled outb(int port, char val) 50 1.1 nonaka { 51 1.1 nonaka 52 1.1 nonaka ISA_io[port] = val; 53 1.1 nonaka } 54 1.1 nonaka 55 1.3 garbled inline void 56 1.3 garbled outw(int port, u_int16_t val) 57 1.3 garbled { 58 1.3 garbled outb(port, val>>8); 59 1.3 garbled outb(port+1, val); 60 1.3 garbled } 61 1.3 garbled 62 1.1 nonaka u_char 63 1.2 garbled inb(int port) 64 1.1 nonaka { 65 1.1 nonaka 66 1.1 nonaka return (ISA_io[port]); 67 1.1 nonaka } 68 1.1 nonaka 69 1.5 kiyohara u_char 70 1.5 kiyohara readb(u_long addr) 71 1.5 kiyohara { 72 1.5 kiyohara 73 1.5 kiyohara return PCI_mem[addr]; 74 1.5 kiyohara } 75 1.5 kiyohara 76 1.5 kiyohara u_short 77 1.5 kiyohara readw(u_long addr) 78 1.5 kiyohara { 79 1.5 kiyohara 80 1.5 kiyohara return le16toh(*((u_short *)&PCI_mem[addr])); 81 1.5 kiyohara } 82 1.5 kiyohara 83 1.1 nonaka u_long 84 1.5 kiyohara readl(u_long addr) 85 1.5 kiyohara { 86 1.5 kiyohara 87 1.5 kiyohara return le32toh(*((u_long *)&PCI_mem[addr])); 88 1.5 kiyohara } 89 1.5 kiyohara 90 1.5 kiyohara void 91 1.5 kiyohara writeb(u_long addr, u_char val) 92 1.5 kiyohara { 93 1.5 kiyohara 94 1.5 kiyohara PCI_mem[addr] = val; 95 1.5 kiyohara } 96 1.5 kiyohara 97 1.5 kiyohara void 98 1.5 kiyohara writel(u_long addr, u_long val) 99 1.5 kiyohara { 100 1.5 kiyohara 101 1.5 kiyohara *((u_long *)&PCI_mem[addr]) = htole32(val); 102 1.5 kiyohara } 103 1.5 kiyohara 104 1.5 kiyohara void 105 1.5 kiyohara _wbinv(uint32_t adr, uint32_t siz) 106 1.1 nonaka { 107 1.5 kiyohara uint32_t bnd; 108 1.1 nonaka 109 1.6 riastrad asm volatile("eieio" ::: "memory"); 110 1.5 kiyohara for (bnd = adr + siz; adr < bnd; adr += dcache_line_size) 111 1.6 riastrad asm volatile("dcbf 0,%0" :: "r"(adr) : "memory"); 112 1.6 riastrad asm volatile("sync" ::: "memory"); 113 1.1 nonaka } 114 1.3 garbled 115 1.3 garbled void 116 1.5 kiyohara _inv(uint32_t adr, uint32_t siz) 117 1.3 garbled { 118 1.5 kiyohara uint32_t bnd, off; 119 1.3 garbled 120 1.5 kiyohara off = adr & (dcache_line_size - 1); 121 1.5 kiyohara adr -= off; 122 1.5 kiyohara siz += off; 123 1.6 riastrad asm volatile("eieio" ::: "memory"); 124 1.5 kiyohara if (off != 0) { 125 1.5 kiyohara /* wbinv() leading unaligned dcache line */ 126 1.6 riastrad asm volatile("dcbf 0,%0" :: "r"(adr) : "memory"); 127 1.5 kiyohara if (siz < dcache_line_size) 128 1.5 kiyohara goto done; 129 1.5 kiyohara adr += dcache_line_size; 130 1.5 kiyohara siz -= dcache_line_size; 131 1.5 kiyohara } 132 1.5 kiyohara bnd = adr + siz; 133 1.5 kiyohara off = bnd & (dcache_line_size - 1); 134 1.5 kiyohara if (off != 0) { 135 1.5 kiyohara /* wbinv() trailing unaligned dcache line */ 136 1.6 riastrad asm volatile("dcbf 0,%0" :: "r"(bnd) : "memory"); /* it's OK */ 137 1.5 kiyohara if (siz < dcache_line_size) 138 1.5 kiyohara goto done; 139 1.5 kiyohara siz -= off; 140 1.3 garbled } 141 1.5 kiyohara for (bnd = adr + siz; adr < bnd; adr += dcache_line_size) { 142 1.5 kiyohara /* inv() intermediate dcache lines if ever */ 143 1.6 riastrad asm volatile("dcbi 0,%0" :: "r"(adr) : "memory"); 144 1.5 kiyohara } 145 1.5 kiyohara done: 146 1.6 riastrad asm volatile("sync" ::: "memory"); 147 1.3 garbled } 148 1.3 garbled 149 1.5 kiyohara u_long 150 1.5 kiyohara local_to_PCI(u_long addr) 151 1.3 garbled { 152 1.3 garbled 153 1.5 kiyohara return ((addr & 0x7FFFFFFF) | 0x80000000); 154 1.3 garbled } 155