1 | /*
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2 | * Copyright (c) 2006 Jakub Jermar
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3 | * All rights reserved.
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4 | *
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5 | * Redistribution and use in source and binary forms, with or without
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6 | * modification, are permitted provided that the following conditions
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7 | * are met:
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8 | *
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9 | * - Redistributions of source code must retain the above copyright
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10 | * notice, this list of conditions and the following disclaimer.
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11 | * - Redistributions in binary form must reproduce the above copyright
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12 | * notice, this list of conditions and the following disclaimer in the
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13 | * documentation and/or other materials provided with the distribution.
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14 | * - The name of the author may not be used to endorse or promote products
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15 | * derived from this software without specific prior written permission.
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16 | *
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17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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27 | */
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28 |
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29 | /** @addtogroup genericddi
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30 | * @{
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31 | */
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32 | /**
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33 | * @file
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34 | * @brief IRQ dispatcher.
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35 | *
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36 | * This file provides means of connecting IRQs with particular
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37 | * devices and logic for dispatching interrupts to IRQ handlers
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38 | * defined by those devices.
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39 | *
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40 | * This code is designed to support:
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41 | * - multiple devices sharing single IRQ
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42 | * - multiple IRQs per single device
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43 | * - multiple instances of the same device
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44 | *
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45 | *
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46 | * Note about architectures.
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47 | *
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48 | * Some architectures has the term IRQ well defined. Examples
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49 | * of such architectures include amd64, ia32 and mips32. Some
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50 | * other architectures, such as sparc64, don't use the term
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51 | * at all. In those cases, we boldly step forward and define what
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52 | * an IRQ is.
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53 | *
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54 | * The implementation is generic enough and still allows the
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55 | * architectures to use the hardware layout effectively.
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56 | * For instance, on amd64 and ia32, where there is only 16
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57 | * IRQs, the irq_hash_table can be optimized to a one-dimensional
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58 | * array. Next, when it is known that the IRQ numbers (aka INR's)
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59 | * are unique, the claim functions can always return IRQ_ACCEPT.
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60 | *
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61 | *
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62 | * Note about the irq_hash_table.
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63 | *
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64 | * The hash table is configured to use two keys: inr and devno.
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65 | * However, the hash index is computed only from inr. Moreover,
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66 | * if devno is -1, the match is based on the return value of
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67 | * the claim() function instead of on devno.
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68 | */
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69 |
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70 | #include <ddi/irq.h>
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71 | #include <adt/hash_table.h>
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72 | #include <mm/slab.h>
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73 | #include <typedefs.h>
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74 | #include <synch/spinlock.h>
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75 | #include <console/console.h>
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76 | #include <interrupt.h>
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77 | #include <memstr.h>
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78 | #include <arch.h>
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79 |
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80 | #define KEY_INR 0
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81 | #define KEY_DEVNO 1
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82 |
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83 | /** Spinlock protecting the kernel IRQ hash table.
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84 | *
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85 | * This lock must be taken only when interrupts are disabled.
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86 | *
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87 | */
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88 | IRQ_SPINLOCK_STATIC_INITIALIZE(irq_kernel_hash_table_lock);
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89 |
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90 | /** The kernel IRQ hash table. */
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91 | static hash_table_t irq_kernel_hash_table;
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92 |
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93 | /** Spinlock protecting the uspace IRQ hash table.
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94 | *
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95 | * This lock must be taken only when interrupts are disabled.
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96 | *
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97 | */
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98 | IRQ_SPINLOCK_INITIALIZE(irq_uspace_hash_table_lock);
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99 |
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100 | /** The uspace IRQ hash table. */
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101 | hash_table_t irq_uspace_hash_table;
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102 |
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103 | /**
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104 | * Hash table operations for cases when we know that
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105 | * there will be collisions between different keys.
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106 | *
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107 | */
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108 | static size_t irq_ht_hash(sysarg_t *key);
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109 | static bool irq_ht_compare(sysarg_t *key, size_t keys, link_t *item);
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110 | static void irq_ht_remove(link_t *item);
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111 |
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112 | static hash_table_operations_t irq_ht_ops = {
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113 | .hash = irq_ht_hash,
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114 | .compare = irq_ht_compare,
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115 | .remove_callback = irq_ht_remove,
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116 | };
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117 |
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118 | /**
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119 | * Hash table operations for cases when we know that
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120 | * there will be no collisions between different keys.
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121 | * However, there might be still collisions among
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122 | * elements with single key (sharing of one IRQ).
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123 | *
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124 | */
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125 | static size_t irq_lin_hash(sysarg_t *key);
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126 | static bool irq_lin_compare(sysarg_t *key, size_t keys, link_t *item);
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127 | static void irq_lin_remove(link_t *item);
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128 |
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129 | static hash_table_operations_t irq_lin_ops = {
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130 | .hash = irq_lin_hash,
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131 | .compare = irq_lin_compare,
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132 | .remove_callback = irq_lin_remove,
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133 | };
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134 |
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135 | /** Number of buckets in either of the hash tables. */
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136 | static size_t buckets;
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137 |
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138 | /** Last valid INR. */
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139 | inr_t last_inr = 0;
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140 |
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141 | /** Initialize IRQ subsystem.
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142 | *
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143 | * @param inrs Numbers of unique IRQ numbers or INRs.
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144 | * @param chains Number of chains in the hash table.
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145 | *
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146 | */
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147 | void irq_init(size_t inrs, size_t chains)
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148 | {
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149 | buckets = chains;
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150 | last_inr = inrs - 1;
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151 |
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152 | /*
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153 | * Be smart about the choice of the hash table operations.
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154 | * In cases in which inrs equals the requested number of
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155 | * chains (i.e. where there is no collision between
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156 | * different keys), we can use optimized set of operations.
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157 | */
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158 | if (inrs == chains) {
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159 | hash_table_create(&irq_uspace_hash_table, chains, 2,
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160 | &irq_lin_ops);
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161 | hash_table_create(&irq_kernel_hash_table, chains, 2,
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162 | &irq_lin_ops);
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163 | } else {
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164 | hash_table_create(&irq_uspace_hash_table, chains, 2,
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165 | &irq_ht_ops);
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166 | hash_table_create(&irq_kernel_hash_table, chains, 2,
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167 | &irq_ht_ops);
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168 | }
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169 | }
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170 |
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171 | /** Initialize one IRQ structure.
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172 | *
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173 | * @param irq Pointer to the IRQ structure to be initialized.
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174 | *
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175 | */
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176 | void irq_initialize(irq_t *irq)
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177 | {
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178 | memsetb(irq, sizeof(irq_t), 0);
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179 | link_initialize(&irq->link);
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180 | irq_spinlock_initialize(&irq->lock, "irq.lock");
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181 | link_initialize(&irq->notif_cfg.link);
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182 | irq->inr = -1;
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183 | irq->devno = -1;
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184 |
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185 | irq_initialize_arch(irq);
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186 | }
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187 |
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188 | /** Register IRQ for device.
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189 | *
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190 | * The irq structure must be filled with information
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191 | * about the interrupt source and with the claim()
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192 | * function pointer and handler() function pointer.
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193 | *
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194 | * @param irq IRQ structure belonging to a device.
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195 | *
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196 | * @return True on success, false on failure.
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197 | *
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198 | */
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199 | void irq_register(irq_t *irq)
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200 | {
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201 | sysarg_t key[] = {
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202 | (sysarg_t) irq->inr,
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203 | (sysarg_t) irq->devno
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204 | };
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205 |
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206 | irq_spinlock_lock(&irq_kernel_hash_table_lock, true);
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207 | irq_spinlock_lock(&irq->lock, false);
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208 | hash_table_insert(&irq_kernel_hash_table, key, &irq->link);
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209 | irq_spinlock_unlock(&irq->lock, false);
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210 | irq_spinlock_unlock(&irq_kernel_hash_table_lock, true);
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211 | }
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212 |
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213 | /** Search and lock the uspace IRQ hash table.
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214 | *
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215 | */
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216 | static irq_t *irq_dispatch_and_lock_uspace(inr_t inr)
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217 | {
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218 | link_t *lnk;
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219 | sysarg_t key[] = {
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220 | (sysarg_t) inr,
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221 | (sysarg_t) -1 /* Search will use claim() instead of devno */
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222 | };
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223 |
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224 | irq_spinlock_lock(&irq_uspace_hash_table_lock, false);
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225 | lnk = hash_table_find(&irq_uspace_hash_table, key);
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226 | if (lnk) {
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227 | irq_t *irq = hash_table_get_instance(lnk, irq_t, link);
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228 | irq_spinlock_unlock(&irq_uspace_hash_table_lock, false);
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229 | return irq;
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230 | }
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231 | irq_spinlock_unlock(&irq_uspace_hash_table_lock, false);
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232 |
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233 | return NULL;
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234 | }
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235 |
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236 | /** Search and lock the kernel IRQ hash table.
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237 | *
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238 | */
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239 | static irq_t *irq_dispatch_and_lock_kernel(inr_t inr)
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240 | {
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241 | link_t *lnk;
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242 | sysarg_t key[] = {
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243 | (sysarg_t) inr,
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244 | (sysarg_t) -1 /* Search will use claim() instead of devno */
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245 | };
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246 |
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247 | irq_spinlock_lock(&irq_kernel_hash_table_lock, false);
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248 | lnk = hash_table_find(&irq_kernel_hash_table, key);
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249 | if (lnk) {
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250 | irq_t *irq = hash_table_get_instance(lnk, irq_t, link);
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251 | irq_spinlock_unlock(&irq_kernel_hash_table_lock, false);
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252 | return irq;
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253 | }
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254 | irq_spinlock_unlock(&irq_kernel_hash_table_lock, false);
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255 |
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256 | return NULL;
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257 | }
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258 |
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259 | /** Dispatch the IRQ.
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260 | *
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261 | * We assume this function is only called from interrupt
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262 | * context (i.e. that interrupts are disabled prior to
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263 | * this call).
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264 | *
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265 | * This function attempts to lookup a fitting IRQ
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266 | * structure. In case of success, return with interrupts
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267 | * disabled and holding the respective structure.
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268 | *
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269 | * @param inr Interrupt number (aka inr or irq).
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270 | *
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271 | * @return IRQ structure of the respective device or NULL.
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272 | *
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273 | */
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274 | irq_t *irq_dispatch_and_lock(inr_t inr)
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275 | {
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276 | /*
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277 | * If the kernel console is silenced,
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278 | * then try first the uspace handlers,
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279 | * eventually fall back to kernel handlers.
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280 | *
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281 | * If the kernel console is active,
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282 | * then do it the other way around.
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283 | */
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284 | if (silent) {
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285 | irq_t *irq = irq_dispatch_and_lock_uspace(inr);
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286 | if (irq)
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287 | return irq;
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288 |
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289 | return irq_dispatch_and_lock_kernel(inr);
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290 | }
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291 |
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292 | irq_t *irq = irq_dispatch_and_lock_kernel(inr);
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293 | if (irq)
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294 | return irq;
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295 |
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296 | return irq_dispatch_and_lock_uspace(inr);
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297 | }
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298 |
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299 | /** Compute hash index for the key.
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300 | *
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301 | * This function computes hash index into
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302 | * the IRQ hash table for which there
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303 | * can be collisions between different
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304 | * INRs.
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305 | *
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306 | * The devno is not used to compute the hash.
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307 | *
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308 | * @param key The first of the keys is inr and the second is devno or -1.
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309 | *
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310 | * @return Index into the hash table.
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311 | *
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312 | */
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313 | size_t irq_ht_hash(sysarg_t key[])
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314 | {
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315 | inr_t inr = (inr_t) key[KEY_INR];
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316 | return inr % buckets;
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317 | }
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318 |
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319 | /** Compare hash table element with a key.
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320 | *
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321 | * There are two things to note about this function.
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322 | * First, it is used for the more complex architecture setup
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323 | * in which there are way too many interrupt numbers (i.e. inr's)
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324 | * to arrange the hash table so that collisions occur only
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325 | * among same inrs of different devnos. So the explicit check
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326 | * for inr match must be done.
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327 | * Second, if devno is -1, the second key (i.e. devno) is not
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328 | * used for the match and the result of the claim() function
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329 | * is used instead.
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330 | *
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331 | * This function assumes interrupts are already disabled.
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332 | *
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333 | * @param key Keys (i.e. inr and devno).
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334 | * @param keys This is 2.
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335 | * @param item The item to compare the key with.
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336 | *
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337 | * @return True on match or false otherwise.
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338 | *
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339 | */
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340 | bool irq_ht_compare(sysarg_t key[], size_t keys, link_t *item)
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341 | {
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342 | irq_t *irq = hash_table_get_instance(item, irq_t, link);
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343 | inr_t inr = (inr_t) key[KEY_INR];
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344 | devno_t devno = (devno_t) key[KEY_DEVNO];
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345 |
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346 | bool rv;
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347 |
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348 | irq_spinlock_lock(&irq->lock, false);
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349 | if (devno == -1) {
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350 | /* Invoked by irq_dispatch_and_lock(). */
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351 | rv = ((irq->inr == inr) &&
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352 | (irq->claim(irq) == IRQ_ACCEPT));
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353 | } else {
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354 | /* Invoked by irq_find_and_lock(). */
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355 | rv = ((irq->inr == inr) && (irq->devno == devno));
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356 | }
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357 |
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358 | /* unlock only on non-match */
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359 | if (!rv)
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360 | irq_spinlock_unlock(&irq->lock, false);
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361 |
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362 | return rv;
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363 | }
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364 |
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365 | /** Unlock IRQ structure after hash_table_remove().
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366 | *
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367 | * @param lnk Link in the removed and locked IRQ structure.
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368 | */
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369 | void irq_ht_remove(link_t *lnk)
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370 | {
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371 | irq_t *irq __attribute__((unused))
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372 | = hash_table_get_instance(lnk, irq_t, link);
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373 | irq_spinlock_unlock(&irq->lock, false);
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374 | }
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375 |
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376 | /** Compute hash index for the key.
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377 | *
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378 | * This function computes hash index into
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379 | * the IRQ hash table for which there
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380 | * are no collisions between different
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381 | * INRs.
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382 | *
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383 | * @param key The first of the keys is inr and the second is devno or -1.
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384 | *
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385 | * @return Index into the hash table.
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386 | *
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387 | */
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388 | size_t irq_lin_hash(sysarg_t key[])
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389 | {
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390 | inr_t inr = (inr_t) key[KEY_INR];
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391 | return inr;
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392 | }
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393 |
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394 | /** Compare hash table element with a key.
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395 | *
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396 | * There are two things to note about this function.
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397 | * First, it is used for the less complex architecture setup
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398 | * in which there are not too many interrupt numbers (i.e. inr's)
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399 | * to arrange the hash table so that collisions occur only
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400 | * among same inrs of different devnos. So the explicit check
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401 | * for inr match is not done.
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402 | * Second, if devno is -1, the second key (i.e. devno) is not
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403 | * used for the match and the result of the claim() function
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404 | * is used instead.
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405 | *
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406 | * This function assumes interrupts are already disabled.
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407 | *
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408 | * @param key Keys (i.e. inr and devno).
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409 | * @param keys This is 2.
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410 | * @param item The item to compare the key with.
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411 | *
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412 | * @return True on match or false otherwise.
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413 | *
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414 | */
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415 | bool irq_lin_compare(sysarg_t key[], size_t keys, link_t *item)
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416 | {
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417 | irq_t *irq = list_get_instance(item, irq_t, link);
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418 | devno_t devno = (devno_t) key[KEY_DEVNO];
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419 | bool rv;
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420 |
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421 | irq_spinlock_lock(&irq->lock, false);
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422 | if (devno == -1) {
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423 | /* Invoked by irq_dispatch_and_lock() */
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424 | rv = (irq->claim(irq) == IRQ_ACCEPT);
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425 | } else {
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426 | /* Invoked by irq_find_and_lock() */
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427 | rv = (irq->devno == devno);
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428 | }
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429 |
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430 | /* unlock only on non-match */
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431 | if (!rv)
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432 | irq_spinlock_unlock(&irq->lock, false);
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433 |
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434 | return rv;
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435 | }
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436 |
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437 | /** Unlock IRQ structure after hash_table_remove().
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438 | *
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439 | * @param lnk Link in the removed and locked IRQ structure.
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440 | *
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441 | */
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442 | void irq_lin_remove(link_t *lnk)
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443 | {
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444 | irq_t *irq __attribute__((unused))
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445 | = hash_table_get_instance(lnk, irq_t, link);
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446 | irq_spinlock_unlock(&irq->lock, false);
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447 | }
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448 |
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449 | /** @}
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450 | */
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