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Rev | Author | Line No. | Line |
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422 | giacomo | 1 | /* |
2 | * Architecture specific parts of the Floppy driver |
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3 | * |
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4 | * This file is subject to the terms and conditions of the GNU General Public |
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5 | * License. See the file "COPYING" in the main directory of this archive |
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6 | * for more details. |
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7 | * |
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8 | * Copyright (C) 1995 |
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9 | */ |
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10 | #ifndef __ASM_I386_FLOPPY_H |
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11 | #define __ASM_I386_FLOPPY_H |
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12 | |||
13 | #include <linux/vmalloc.h> |
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14 | |||
15 | |||
16 | /* |
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17 | * The DMA channel used by the floppy controller cannot access data at |
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18 | * addresses >= 16MB |
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19 | * |
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20 | * Went back to the 1MB limit, as some people had problems with the floppy |
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21 | * driver otherwise. It doesn't matter much for performance anyway, as most |
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22 | * floppy accesses go through the track buffer. |
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23 | */ |
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24 | #define _CROSS_64KB(a,s,vdma) \ |
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25 | (!(vdma) && ((unsigned long)(a)/K_64 != ((unsigned long)(a) + (s) - 1) / K_64)) |
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26 | |||
27 | #define CROSS_64KB(a,s) _CROSS_64KB(a,s,use_virtual_dma & 1) |
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28 | |||
29 | |||
30 | #define SW fd_routine[use_virtual_dma&1] |
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31 | #define CSW fd_routine[can_use_virtual_dma & 1] |
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32 | |||
33 | |||
34 | #define fd_inb(port) inb_p(port) |
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35 | #define fd_outb(port,value) outb_p(port,value) |
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36 | |||
37 | #define fd_request_dma() CSW._request_dma(FLOPPY_DMA,"floppy") |
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38 | #define fd_free_dma() CSW._free_dma(FLOPPY_DMA) |
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39 | #define fd_enable_irq() enable_irq(FLOPPY_IRQ) |
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40 | #define fd_disable_irq() disable_irq(FLOPPY_IRQ) |
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41 | #define fd_free_irq() free_irq(FLOPPY_IRQ, NULL) |
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42 | #define fd_get_dma_residue() SW._get_dma_residue(FLOPPY_DMA) |
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43 | #define fd_dma_mem_alloc(size) SW._dma_mem_alloc(size) |
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44 | #define fd_dma_setup(addr, size, mode, io) SW._dma_setup(addr, size, mode, io) |
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45 | |||
46 | #define FLOPPY_CAN_FALLBACK_ON_NODMA |
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47 | |||
48 | static int virtual_dma_count; |
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49 | static int virtual_dma_residue; |
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50 | static char *virtual_dma_addr; |
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51 | static int virtual_dma_mode; |
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52 | static int doing_pdma; |
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53 | |||
54 | static irqreturn_t floppy_hardint(int irq, void *dev_id, struct pt_regs * regs) |
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55 | { |
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56 | register unsigned char st; |
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57 | |||
58 | #undef TRACE_FLPY_INT |
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59 | #define NO_FLOPPY_ASSEMBLER |
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60 | |||
61 | #ifdef TRACE_FLPY_INT |
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62 | static int calls=0; |
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63 | static int bytes=0; |
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64 | static int dma_wait=0; |
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65 | #endif |
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66 | if (!doing_pdma) |
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67 | return floppy_interrupt(irq, dev_id, regs); |
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68 | |||
69 | #ifdef TRACE_FLPY_INT |
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70 | if(!calls) |
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71 | bytes = virtual_dma_count; |
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72 | #endif |
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73 | |||
74 | #ifndef NO_FLOPPY_ASSEMBLER |
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75 | __asm__ ( |
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76 | "testl %1,%1" |
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77 | "je 3f" |
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78 | "1: inb %w4,%b0" |
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79 | "andb $160,%b0" |
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80 | "cmpb $160,%b0" |
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81 | "jne 2f" |
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82 | "incw %w4" |
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83 | "testl %3,%3" |
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84 | "jne 4f" |
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85 | "inb %w4,%b0" |
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86 | "movb %0,(%2)" |
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87 | "jmp 5f" |
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88 | "4: movb (%2),%0" |
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89 | "outb %b0,%w4" |
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90 | "5: decw %w4" |
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91 | "outb %0,$0x80" |
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92 | "decl %1" |
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93 | "incl %2" |
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94 | "testl %1,%1" |
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95 | "jne 1b" |
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96 | "3: inb %w4,%b0" |
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97 | "2: " |
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98 | : "=a" ((char) st), |
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99 | "=c" ((long) virtual_dma_count), |
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100 | "=S" ((long) virtual_dma_addr) |
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101 | : "b" ((long) virtual_dma_mode), |
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102 | "d" ((short) virtual_dma_port+4), |
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103 | "1" ((long) virtual_dma_count), |
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104 | "2" ((long) virtual_dma_addr)); |
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105 | #else |
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106 | { |
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107 | register int lcount; |
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108 | register char *lptr; |
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109 | |||
110 | st = 1; |
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111 | for(lcount=virtual_dma_count, lptr=virtual_dma_addr; |
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112 | lcount; lcount--, lptr++) { |
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113 | st=inb(virtual_dma_port+4) & 0xa0 ; |
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114 | if(st != 0xa0) |
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115 | break; |
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116 | if(virtual_dma_mode) |
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117 | outb_p(*lptr, virtual_dma_port+5); |
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118 | else |
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119 | *lptr = inb_p(virtual_dma_port+5); |
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120 | } |
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121 | virtual_dma_count = lcount; |
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122 | virtual_dma_addr = lptr; |
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123 | st = inb(virtual_dma_port+4); |
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124 | } |
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125 | #endif |
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126 | |||
127 | #ifdef TRACE_FLPY_INT |
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128 | calls++; |
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129 | #endif |
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130 | if(st == 0x20) |
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131 | return IRQ_HANDLED; |
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132 | if(!(st & 0x20)) { |
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133 | virtual_dma_residue += virtual_dma_count; |
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134 | virtual_dma_count=0; |
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135 | #ifdef TRACE_FLPY_INT |
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136 | printk("count=%x, residue=%x calls=%d bytes=%d dma_wait=%d\n", |
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137 | virtual_dma_count, virtual_dma_residue, calls, bytes, |
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138 | dma_wait); |
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139 | calls = 0; |
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140 | dma_wait=0; |
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141 | #endif |
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142 | doing_pdma = 0; |
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143 | floppy_interrupt(irq, dev_id, regs); |
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144 | return IRQ_HANDLED; |
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145 | } |
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146 | #ifdef TRACE_FLPY_INT |
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147 | if(!virtual_dma_count) |
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148 | dma_wait++; |
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149 | #endif |
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150 | return IRQ_HANDLED; |
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151 | } |
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152 | |||
153 | static void fd_disable_dma(void) |
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154 | { |
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155 | if(! (can_use_virtual_dma & 1)) |
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156 | disable_dma(FLOPPY_DMA); |
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157 | doing_pdma = 0; |
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158 | virtual_dma_residue += virtual_dma_count; |
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159 | virtual_dma_count=0; |
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160 | } |
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161 | |||
162 | static int vdma_request_dma(unsigned int dmanr, const char * device_id) |
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163 | { |
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164 | return 0; |
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165 | } |
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166 | |||
167 | static void vdma_nop(unsigned int dummy) |
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168 | { |
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169 | } |
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170 | |||
171 | |||
172 | static int vdma_get_dma_residue(unsigned int dummy) |
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173 | { |
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174 | return virtual_dma_count + virtual_dma_residue; |
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175 | } |
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176 | |||
177 | |||
178 | static int fd_request_irq(void) |
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179 | { |
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180 | if(can_use_virtual_dma) |
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181 | return request_irq(FLOPPY_IRQ, floppy_hardint,SA_INTERRUPT, |
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182 | "floppy", NULL); |
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183 | else |
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184 | return request_irq(FLOPPY_IRQ, floppy_interrupt, |
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185 | SA_INTERRUPT|SA_SAMPLE_RANDOM, |
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186 | "floppy", NULL); |
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187 | |||
188 | } |
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189 | |||
190 | static unsigned long dma_mem_alloc(unsigned long size) |
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191 | { |
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192 | return __get_dma_pages(GFP_KERNEL,get_order(size)); |
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193 | } |
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194 | |||
195 | |||
196 | static unsigned long vdma_mem_alloc(unsigned long size) |
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197 | { |
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198 | return (unsigned long) vmalloc(size); |
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199 | |||
200 | } |
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201 | |||
202 | #define nodma_mem_alloc(size) vdma_mem_alloc(size) |
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203 | |||
204 | static void _fd_dma_mem_free(unsigned long addr, unsigned long size) |
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205 | { |
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206 | if((unsigned int) addr >= (unsigned int) high_memory) |
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207 | return vfree((void *)addr); |
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208 | else |
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209 | free_pages(addr, get_order(size)); |
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210 | } |
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211 | |||
212 | #define fd_dma_mem_free(addr, size) _fd_dma_mem_free(addr, size) |
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213 | |||
214 | static void _fd_chose_dma_mode(char *addr, unsigned long size) |
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215 | { |
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216 | if(can_use_virtual_dma == 2) { |
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217 | if((unsigned int) addr >= (unsigned int) high_memory || |
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218 | isa_virt_to_bus(addr) >= 0x1000000 || |
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219 | _CROSS_64KB(addr, size, 0)) |
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220 | use_virtual_dma = 1; |
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221 | else |
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222 | use_virtual_dma = 0; |
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223 | } else { |
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224 | use_virtual_dma = can_use_virtual_dma & 1; |
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225 | } |
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226 | } |
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227 | |||
228 | #define fd_chose_dma_mode(addr, size) _fd_chose_dma_mode(addr, size) |
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229 | |||
230 | |||
231 | static int vdma_dma_setup(char *addr, unsigned long size, int mode, int io) |
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232 | { |
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233 | doing_pdma = 1; |
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234 | virtual_dma_port = io; |
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235 | virtual_dma_mode = (mode == DMA_MODE_WRITE); |
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236 | virtual_dma_addr = addr; |
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237 | virtual_dma_count = size; |
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238 | virtual_dma_residue = 0; |
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239 | return 0; |
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240 | } |
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241 | |||
242 | static int hard_dma_setup(char *addr, unsigned long size, int mode, int io) |
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243 | { |
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244 | #ifdef FLOPPY_SANITY_CHECK |
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245 | if (CROSS_64KB(addr, size)) { |
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246 | printk("DMA crossing 64-K boundary %p-%p\n", addr, addr+size); |
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247 | return -1; |
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248 | } |
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249 | #endif |
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250 | /* actual, physical DMA */ |
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251 | doing_pdma = 0; |
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252 | clear_dma_ff(FLOPPY_DMA); |
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253 | set_dma_mode(FLOPPY_DMA,mode); |
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254 | set_dma_addr(FLOPPY_DMA,isa_virt_to_bus(addr)); |
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255 | set_dma_count(FLOPPY_DMA,size); |
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256 | enable_dma(FLOPPY_DMA); |
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257 | return 0; |
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258 | } |
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259 | |||
260 | struct fd_routine_l { |
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261 | int (*_request_dma)(unsigned int dmanr, const char * device_id); |
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262 | void (*_free_dma)(unsigned int dmanr); |
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263 | int (*_get_dma_residue)(unsigned int dummy); |
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264 | unsigned long (*_dma_mem_alloc) (unsigned long size); |
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265 | int (*_dma_setup)(char *addr, unsigned long size, int mode, int io); |
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266 | } fd_routine[] = { |
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267 | { |
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268 | request_dma, |
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269 | free_dma, |
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270 | get_dma_residue, |
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271 | dma_mem_alloc, |
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272 | hard_dma_setup |
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273 | }, |
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274 | { |
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275 | vdma_request_dma, |
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276 | vdma_nop, |
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277 | vdma_get_dma_residue, |
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278 | vdma_mem_alloc, |
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279 | vdma_dma_setup |
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280 | } |
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281 | }; |
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282 | |||
283 | |||
284 | static int FDC1 = 0x3f0; |
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285 | static int FDC2 = -1; |
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286 | |||
287 | /* |
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288 | * Floppy types are stored in the rtc's CMOS RAM and so rtc_lock |
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289 | * is needed to prevent corrupted CMOS RAM in case "insmod floppy" |
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290 | * coincides with another rtc CMOS user. Paul G. |
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291 | */ |
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292 | #define FLOPPY0_TYPE ({ \ |
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293 | unsigned long flags; \ |
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294 | unsigned char val; \ |
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295 | spin_lock_irqsave(&rtc_lock, flags); \ |
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296 | val = (CMOS_READ(0x10) >> 4) & 15; \ |
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297 | spin_unlock_irqrestore(&rtc_lock, flags); \ |
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298 | val; \ |
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299 | }) |
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300 | |||
301 | #define FLOPPY1_TYPE ({ \ |
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302 | unsigned long flags; \ |
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303 | unsigned char val; \ |
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304 | spin_lock_irqsave(&rtc_lock, flags); \ |
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305 | val = CMOS_READ(0x10) & 15; \ |
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306 | spin_unlock_irqrestore(&rtc_lock, flags); \ |
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307 | val; \ |
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308 | }) |
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309 | |||
310 | #define N_FDC 2 |
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311 | #define N_DRIVE 8 |
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312 | |||
313 | #define FLOPPY_MOTOR_MASK 0xf0 |
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314 | |||
315 | #define AUTO_DMA |
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316 | |||
317 | #define EXTRA_FLOPPY_PARAMS |
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318 | |||
319 | #endif /* __ASM_I386_FLOPPY_H */ |