1 | /*
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2 | * Register cache access API - rbtree caching support
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3 | *
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4 | * Copyright 2011 Wolfson Microelectronics plc
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5 | *
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6 | * Author: Dimitris Papastamos <dp@opensource.wolfsonmicro.com>
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7 | *
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8 | * This program is free software; you can redistribute it and/or modify
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9 | * it under the terms of the GNU General Public License version 2 as
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10 | * published by the Free Software Foundation.
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11 | */
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12 | /* from 4.19.163 */
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13 |
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14 | //#include <linux/debugfs.h>
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15 | #include <linux/device.h>
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16 | #include <linux/rbtree.h>
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17 | #include <linux/seq_file.h>
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18 | #include <linux/slab.h>
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19 | #include <linux/module.h>
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20 | #include <linux/workqueue.h>
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21 | #include <linux/byteorder/little_endian.h>
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22 | #include <linux/printk.h>
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23 |
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24 | #include "internal.h"
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25 |
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26 | #ifdef TARGET_OS2
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27 | #define UINT_MAX (~0U)
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28 | #endif
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29 |
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30 | /*static inline*/ int regcache_rbtree_write(struct regmap *map, unsigned int reg,
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31 | unsigned int value);
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32 | /*static inline*/ int regcache_rbtree_exit(struct regmap *map);
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33 |
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34 | struct regcache_rbtree_node {
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35 | /* block of adjacent registers */
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36 | void *block;
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37 | /* Which registers are present */
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38 | long *cache_present;
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39 | /* base register handled by this block */
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40 | unsigned int base_reg;
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41 | /* number of registers available in the block */
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42 | unsigned int blklen;
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43 | /* the actual rbtree node holding this block */
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44 | struct rb_node node;
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45 | } /*__attribute__ ((packed))*/;
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46 |
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47 | struct regcache_rbtree_ctx {
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48 | struct rb_root root;
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49 | struct regcache_rbtree_node *cached_rbnode;
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50 | };
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51 |
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52 | /*static inline*/ inline void regcache_rbtree_get_base_top_reg(
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53 | struct regmap *map,
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54 | struct regcache_rbtree_node *rbnode,
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55 | unsigned int *base, unsigned int *top)
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56 | {
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57 | *base = rbnode->base_reg;
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58 | *top = rbnode->base_reg + ((rbnode->blklen - 1) * map->reg_stride);
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59 | }
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60 |
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61 | /*static inline*/ unsigned int regcache_rbtree_get_register(struct regmap *map,
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62 | struct regcache_rbtree_node *rbnode, unsigned int idx)
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63 | {
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64 | return regcache_get_val(map, rbnode->block, idx);
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65 | }
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66 |
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67 | /*static inline*/ void regcache_rbtree_set_register(struct regmap *map,
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68 | struct regcache_rbtree_node *rbnode,
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69 | unsigned int idx, unsigned int val)
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70 | {
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71 | set_bit(idx, rbnode->cache_present);
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72 | regcache_set_val(map, rbnode->block, idx, val);
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73 | }
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74 |
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75 | /*static inline*/ struct regcache_rbtree_node *regcache_rbtree_lookup(struct regmap *map,
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76 | unsigned int reg)
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77 | {
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78 | struct regcache_rbtree_ctx *rbtree_ctx = map->cache;
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79 | struct rb_node *node;
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80 | struct regcache_rbtree_node *rbnode;
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81 | unsigned int base_reg, top_reg;
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82 |
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83 | rbnode = rbtree_ctx->cached_rbnode;
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84 | if (rbnode) {
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85 | regcache_rbtree_get_base_top_reg(map, rbnode, &base_reg,
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86 | &top_reg);
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87 | if (reg >= base_reg && reg <= top_reg)
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88 | return rbnode;
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89 | }
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90 |
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91 | node = rbtree_ctx->root.rb_node;
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92 | while (node) {
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93 | rbnode = rb_entry(node, struct regcache_rbtree_node, node);
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94 | regcache_rbtree_get_base_top_reg(map, rbnode, &base_reg,
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95 | &top_reg);
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96 | if (reg >= base_reg && reg <= top_reg) {
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97 | rbtree_ctx->cached_rbnode = rbnode;
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98 | return rbnode;
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99 | } else if (reg > top_reg) {
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100 | node = node->rb_right;
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101 | } else if (reg < base_reg) {
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102 | node = node->rb_left;
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103 | }
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104 | }
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105 |
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106 | return NULL;
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107 | }
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108 |
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109 | /*static inline*/ int regcache_rbtree_insert(struct regmap *map, struct rb_root *root,
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110 | struct regcache_rbtree_node *rbnode)
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111 | {
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112 | struct rb_node **new, *parent;
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113 | struct regcache_rbtree_node *rbnode_tmp;
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114 | unsigned int base_reg_tmp, top_reg_tmp;
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115 | unsigned int base_reg;
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116 |
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117 | parent = NULL;
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118 | new = &root->rb_node;
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119 | while (*new) {
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120 | rbnode_tmp = rb_entry(*new, struct regcache_rbtree_node, node);
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121 | /* base and top registers of the current rbnode */
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122 | regcache_rbtree_get_base_top_reg(map, rbnode_tmp, &base_reg_tmp,
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123 | &top_reg_tmp);
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124 | /* base register of the rbnode to be added */
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125 | base_reg = rbnode->base_reg;
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126 | parent = *new;
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127 | /* if this register has already been inserted, just return */
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128 | if (base_reg >= base_reg_tmp &&
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129 | base_reg <= top_reg_tmp)
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130 | return 0;
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131 | else if (base_reg > top_reg_tmp)
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132 | new = &((*new)->rb_right);
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133 | else if (base_reg < base_reg_tmp)
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134 | new = &((*new)->rb_left);
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135 | }
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136 |
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137 | /* insert the node into the rbtree */
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138 | rb_link_node(&rbnode->node, parent, new);
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139 | rb_insert_color(&rbnode->node, root);
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140 |
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141 | return 1;
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142 | }
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143 |
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144 | #ifdef CONFIG_DEBUG_FS
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145 | /*static inline*/ int rbtree_show(struct seq_file *s, void *ignored)
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146 | {
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147 | struct regmap *map = s->private;
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148 | struct regcache_rbtree_ctx *rbtree_ctx = map->cache;
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149 | struct regcache_rbtree_node *n;
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150 | struct rb_node *node;
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151 | unsigned int base, top;
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152 | size_t mem_size;
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153 | int nodes = 0;
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154 | int registers = 0;
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155 | int this_registers, average;
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156 |
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157 | map->lock(map->lock_arg);
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158 |
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159 | mem_size = sizeof(*rbtree_ctx);
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160 |
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161 | for (node = rb_first(&rbtree_ctx->root); node != NULL;
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162 | node = rb_next(node)) {
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163 | n = rb_entry(node, struct regcache_rbtree_node, node);
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164 | mem_size += sizeof(*n);
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165 | mem_size += (n->blklen * map->cache_word_size);
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166 | mem_size += BITS_TO_LONGS(n->blklen) * sizeof(long);
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167 |
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168 | regcache_rbtree_get_base_top_reg(map, n, &base, &top);
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169 | this_registers = ((top - base) / map->reg_stride) + 1;
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170 | seq_printf(s, "%x-%x (%d)\n", base, top, this_registers);
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171 |
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172 | nodes++;
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173 | registers += this_registers;
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174 | }
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175 |
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176 | if (nodes)
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177 | average = registers / nodes;
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178 | else
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179 | average = 0;
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180 |
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181 | seq_printf(s, "%d nodes, %d registers, average %d registers, used %zu bytes\n",
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182 | nodes, registers, average, mem_size);
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183 |
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184 | map->unlock(map->lock_arg);
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185 |
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186 | return 0;
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187 | }
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188 |
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189 | /*static inline*/ int rbtree_open(struct inode *inode, struct file *file)
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190 | {
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191 | return single_open(file, rbtree_show, inode->i_private);
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192 | }
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193 |
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194 | /*static inline*/ const struct file_operations rbtree_fops = {
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195 | .open = rbtree_open,
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196 | .read = seq_read,
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197 | .llseek = seq_lseek,
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198 | .release = single_release,
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199 | };
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200 |
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201 | /*static inline*/ void rbtree_debugfs_init(struct regmap *map)
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202 | {
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203 | debugfs_create_file("rbtree", 0400, map->debugfs, map, &rbtree_fops);
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204 | }
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205 | #endif
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206 |
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207 | /*static inline*/ int regcache_rbtree_init(struct regmap *map)
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208 | {
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209 | struct regcache_rbtree_ctx *rbtree_ctx;
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210 | int i;
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211 | int ret;
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212 | #ifdef TARGET_OS2
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213 | // 2020-11-17 SHL FIXME patched struct rb_root
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214 | struct rb_root _RB_ROOT = { NULL, };
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215 | #endif
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216 |
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217 | map->cache = kmalloc(sizeof *rbtree_ctx, GFP_KERNEL);
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218 | if (!map->cache)
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219 | return -ENOMEM;
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220 |
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221 | rbtree_ctx = map->cache;
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222 | #ifndef TARGET_OS2
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223 | rbtree_ctx->root = RB_ROOT;
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224 | #else
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225 | rbtree_ctx->root = _RB_ROOT;
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226 | rbtree_ctx->root.rb_node = NULL;
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227 | memset(&rbtree_ctx->root, 0, sizeof(struct rb_root));
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228 | #endif
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229 | rbtree_ctx->cached_rbnode = NULL;
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230 |
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231 | for (i = 0; i < map->num_reg_defaults; i++) {
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232 | ret = regcache_rbtree_write(map,
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233 | map->reg_defaults[i].reg,
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234 | map->reg_defaults[i].def);
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235 | if (ret)
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236 | goto err;
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237 | }
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238 |
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239 | return 0;
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240 |
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241 | err:
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242 | regcache_rbtree_exit(map);
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243 | return ret;
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244 | }
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245 |
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246 | /*static inline*/ int regcache_rbtree_exit(struct regmap *map)
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247 | {
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248 | struct rb_node *next;
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249 | struct regcache_rbtree_ctx *rbtree_ctx;
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250 | struct regcache_rbtree_node *rbtree_node;
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251 |
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252 | /* if we've already been called then just return */
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253 | rbtree_ctx = map->cache;
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254 | if (!rbtree_ctx)
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255 | return 0;
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256 |
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257 | /* free up the rbtree */
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258 | next = rb_first(&rbtree_ctx->root);
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259 | while (next) {
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260 | rbtree_node = rb_entry(next, struct regcache_rbtree_node, node);
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261 | next = rb_next(&rbtree_node->node);
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262 | rb_erase(&rbtree_node->node, &rbtree_ctx->root);
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263 | kfree(rbtree_node->cache_present);
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264 | kfree(rbtree_node->block);
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265 | kfree(rbtree_node);
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266 | }
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267 |
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268 | /* release the resources */
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269 | kfree(map->cache);
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270 | map->cache = NULL;
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271 |
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272 | return 0;
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273 | }
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274 |
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275 | /*static inline*/ int regcache_rbtree_read(struct regmap *map,
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276 | unsigned int reg, unsigned int *value)
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277 | {
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278 | struct regcache_rbtree_node *rbnode;
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279 | unsigned int reg_tmp;
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280 |
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281 | rbnode = regcache_rbtree_lookup(map, reg);
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282 | if (rbnode) {
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283 | reg_tmp = (reg - rbnode->base_reg) / map->reg_stride;
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284 | if (!test_bit(reg_tmp, rbnode->cache_present))
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285 | return -ENOENT;
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286 | *value = regcache_rbtree_get_register(map, rbnode, reg_tmp);
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287 | } else {
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288 | return -ENOENT;
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289 | }
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290 |
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291 | return 0;
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292 | }
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293 |
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294 |
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295 | /*static inline*/ int regcache_rbtree_insert_to_block(struct regmap *map,
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296 | struct regcache_rbtree_node *rbnode,
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297 | unsigned int base_reg,
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298 | unsigned int top_reg,
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299 | unsigned int reg,
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300 | unsigned int value)
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301 | {
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302 | unsigned int blklen;
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303 | unsigned int pos, offset;
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304 | unsigned long *present;
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305 | u8 *blk;
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306 |
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307 | blklen = (top_reg - base_reg) / map->reg_stride + 1;
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308 | pos = (reg - base_reg) / map->reg_stride;
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309 | offset = (rbnode->base_reg - base_reg) / map->reg_stride;
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310 |
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311 | blk = krealloc(rbnode->block,
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312 | blklen * map->cache_word_size,
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313 | GFP_KERNEL);
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314 | if (!blk)
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315 | return -ENOMEM;
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316 |
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317 | if (BITS_TO_LONGS(blklen) > BITS_TO_LONGS(rbnode->blklen)) {
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318 | present = krealloc(rbnode->cache_present,
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319 | BITS_TO_LONGS(blklen) * sizeof(*present),
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320 | GFP_KERNEL);
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321 | if (!present) {
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322 | kfree(blk);
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323 | return -ENOMEM;
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324 | }
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325 |
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326 | memset(present + BITS_TO_LONGS(rbnode->blklen), 0,
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327 | (BITS_TO_LONGS(blklen) - BITS_TO_LONGS(rbnode->blklen))
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328 | * sizeof(*present));
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329 | } else {
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330 | present = rbnode->cache_present;
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331 | }
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332 |
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333 | /* insert the register value in the correct place in the rbnode block */
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334 | if (pos == 0) {
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335 | memmove(blk + offset * map->cache_word_size,
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336 | blk, rbnode->blklen * map->cache_word_size);
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337 | bitmap_shift_left(present, present, offset, blklen);
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338 | }
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339 |
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340 | /* update the rbnode block, its size and the base register */
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341 | rbnode->block = blk;
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342 | rbnode->blklen = blklen;
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343 | rbnode->base_reg = base_reg;
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344 | rbnode->cache_present = present;
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345 |
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346 | regcache_rbtree_set_register(map, rbnode, pos, value);
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347 | return 0;
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348 | }
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349 |
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350 | /*static inline*/ struct regcache_rbtree_node *
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351 | regcache_rbtree_node_alloc(struct regmap *map, unsigned int reg)
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352 | {
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353 | struct regcache_rbtree_node *rbnode;
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354 | const struct regmap_range *range;
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355 | int i;
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356 |
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357 | rbnode = kzalloc(sizeof(*rbnode), GFP_KERNEL);
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358 | if (!rbnode)
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359 | return NULL;
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360 |
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361 | /* If there is a read table then use it to guess at an allocation */
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362 | if (map->rd_table) {
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363 | for (i = 0; i < map->rd_table->n_yes_ranges; i++) {
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364 | if (regmap_reg_in_range(reg,
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365 | &map->rd_table->yes_ranges[i]))
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366 | break;
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367 | }
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368 |
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369 | if (i != map->rd_table->n_yes_ranges) {
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370 | range = &map->rd_table->yes_ranges[i];
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371 | rbnode->blklen = (range->range_max - range->range_min) /
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372 | map->reg_stride + 1;
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373 | rbnode->base_reg = range->range_min;
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374 | }
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375 | }
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376 |
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377 | if (!rbnode->blklen) {
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378 | rbnode->blklen = 1;
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379 | rbnode->base_reg = reg;
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380 | }
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381 |
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382 | rbnode->block = kmalloc_array(rbnode->blklen, map->cache_word_size,
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383 | GFP_KERNEL);
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384 | if (!rbnode->block)
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385 | goto err_free;
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386 |
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387 | rbnode->cache_present = kcalloc(BITS_TO_LONGS(rbnode->blklen),
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388 | sizeof(*rbnode->cache_present),
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389 | GFP_KERNEL);
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390 | if (!rbnode->cache_present)
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391 | goto err_free_block;
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392 |
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393 | return rbnode;
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394 |
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395 | err_free_block:
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396 | kfree(rbnode->block);
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397 | err_free:
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398 | kfree(rbnode);
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399 | return NULL;
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400 | }
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401 |
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402 | /*static inline*/ int regcache_rbtree_write(struct regmap *map, unsigned int reg,
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403 | unsigned int value)
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404 | {
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405 | struct regcache_rbtree_ctx *rbtree_ctx;
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406 | struct regcache_rbtree_node *rbnode, *rbnode_tmp;
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407 | struct rb_node *node;
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408 | unsigned int reg_tmp;
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409 | int ret;
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410 |
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411 | rbtree_ctx = map->cache;
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412 |
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413 | /* if we can't locate it in the cached rbnode we'll have
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414 | * to traverse the rbtree looking for it.
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415 | */
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416 | rbnode = regcache_rbtree_lookup(map, reg);
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417 | if (rbnode) {
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418 | reg_tmp = (reg - rbnode->base_reg) / map->reg_stride;
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419 | regcache_rbtree_set_register(map, rbnode, reg_tmp, value);
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420 | } else {
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421 | unsigned int base_reg, top_reg;
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422 | unsigned int new_base_reg, new_top_reg;
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423 | unsigned int min, max;
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424 | unsigned int max_dist;
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425 | unsigned int dist, best_dist = UINT_MAX;
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426 |
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427 | max_dist = map->reg_stride * sizeof(*rbnode_tmp) /
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428 | map->cache_word_size;
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429 | if (reg < max_dist)
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430 | min = 0;
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431 | else
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432 | min = reg - max_dist;
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433 | max = reg + max_dist;
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434 |
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435 | /* look for an adjacent register to the one we are about to add */
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436 | node = rbtree_ctx->root.rb_node;
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437 | while (node) {
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438 | rbnode_tmp = rb_entry(node, struct regcache_rbtree_node,
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439 | node);
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440 |
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441 | regcache_rbtree_get_base_top_reg(map, rbnode_tmp,
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442 | &base_reg, &top_reg);
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443 |
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444 | if (base_reg <= max && top_reg >= min) {
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445 | if (reg < base_reg)
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446 | dist = base_reg - reg;
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447 | else if (reg > top_reg)
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448 | dist = reg - top_reg;
|
---|
449 | else
|
---|
450 | dist = 0;
|
---|
451 | if (dist < best_dist) {
|
---|
452 | rbnode = rbnode_tmp;
|
---|
453 | best_dist = dist;
|
---|
454 | new_base_reg = min(reg, base_reg);
|
---|
455 | new_top_reg = max(reg, top_reg);
|
---|
456 | }
|
---|
457 | }
|
---|
458 |
|
---|
459 | /*
|
---|
460 | * Keep looking, we want to choose the closest block,
|
---|
461 | * otherwise we might end up creating overlapping
|
---|
462 | * blocks, which breaks the rbtree.
|
---|
463 | */
|
---|
464 | if (reg < base_reg)
|
---|
465 | node = node->rb_left;
|
---|
466 | else if (reg > top_reg)
|
---|
467 | node = node->rb_right;
|
---|
468 | else
|
---|
469 | break;
|
---|
470 | }
|
---|
471 |
|
---|
472 | if (rbnode) {
|
---|
473 | ret = regcache_rbtree_insert_to_block(map, rbnode,
|
---|
474 | new_base_reg,
|
---|
475 | new_top_reg, reg,
|
---|
476 | value);
|
---|
477 | if (ret)
|
---|
478 | return ret;
|
---|
479 | rbtree_ctx->cached_rbnode = rbnode;
|
---|
480 | return 0;
|
---|
481 | }
|
---|
482 |
|
---|
483 | /* We did not manage to find a place to insert it in
|
---|
484 | * an existing block so create a new rbnode.
|
---|
485 | */
|
---|
486 | rbnode = regcache_rbtree_node_alloc(map, reg);
|
---|
487 | if (!rbnode)
|
---|
488 | return -ENOMEM;
|
---|
489 | regcache_rbtree_set_register(map, rbnode,
|
---|
490 | reg - rbnode->base_reg, value);
|
---|
491 | regcache_rbtree_insert(map, &rbtree_ctx->root, rbnode);
|
---|
492 | rbtree_ctx->cached_rbnode = rbnode;
|
---|
493 | }
|
---|
494 |
|
---|
495 | return 0;
|
---|
496 | }
|
---|
497 |
|
---|
498 | /*static inline*/ int regcache_rbtree_sync(struct regmap *map, unsigned int min,
|
---|
499 | unsigned int max)
|
---|
500 | {
|
---|
501 | struct regcache_rbtree_ctx *rbtree_ctx;
|
---|
502 | struct rb_node *node;
|
---|
503 | struct regcache_rbtree_node *rbnode;
|
---|
504 | unsigned int base_reg, top_reg;
|
---|
505 | unsigned int start, end;
|
---|
506 | int ret;
|
---|
507 |
|
---|
508 | rbtree_ctx = map->cache;
|
---|
509 | for (node = rb_first(&rbtree_ctx->root); node; node = rb_next(node)) {
|
---|
510 | rbnode = rb_entry(node, struct regcache_rbtree_node, node);
|
---|
511 |
|
---|
512 | regcache_rbtree_get_base_top_reg(map, rbnode, &base_reg,
|
---|
513 | &top_reg);
|
---|
514 | if (base_reg > max)
|
---|
515 | break;
|
---|
516 | if (top_reg < min)
|
---|
517 | continue;
|
---|
518 |
|
---|
519 | if (min > base_reg)
|
---|
520 | start = (min - base_reg) / map->reg_stride;
|
---|
521 | else
|
---|
522 | start = 0;
|
---|
523 |
|
---|
524 | if (max < top_reg)
|
---|
525 | end = (max - base_reg) / map->reg_stride + 1;
|
---|
526 | else
|
---|
527 | end = rbnode->blklen;
|
---|
528 |
|
---|
529 | ret = regcache_sync_block(map, rbnode->block,
|
---|
530 | rbnode->cache_present,
|
---|
531 | rbnode->base_reg, start, end);
|
---|
532 | if (ret != 0)
|
---|
533 | return ret;
|
---|
534 | }
|
---|
535 |
|
---|
536 | return regmap_async_complete(map);
|
---|
537 | }
|
---|
538 |
|
---|
539 | /*static inline*/ int regcache_rbtree_drop(struct regmap *map, unsigned int min,
|
---|
540 | unsigned int max)
|
---|
541 | {
|
---|
542 | struct regcache_rbtree_ctx *rbtree_ctx;
|
---|
543 | struct regcache_rbtree_node *rbnode;
|
---|
544 | struct rb_node *node;
|
---|
545 | unsigned int base_reg, top_reg;
|
---|
546 | unsigned int start, end;
|
---|
547 |
|
---|
548 | rbtree_ctx = map->cache;
|
---|
549 | for (node = rb_first(&rbtree_ctx->root); node; node = rb_next(node)) {
|
---|
550 | rbnode = rb_entry(node, struct regcache_rbtree_node, node);
|
---|
551 |
|
---|
552 | regcache_rbtree_get_base_top_reg(map, rbnode, &base_reg,
|
---|
553 | &top_reg);
|
---|
554 | if (base_reg > max)
|
---|
555 | break;
|
---|
556 | if (top_reg < min)
|
---|
557 | continue;
|
---|
558 |
|
---|
559 | if (min > base_reg)
|
---|
560 | start = (min - base_reg) / map->reg_stride;
|
---|
561 | else
|
---|
562 | start = 0;
|
---|
563 |
|
---|
564 | if (max < top_reg)
|
---|
565 | end = (max - base_reg) / map->reg_stride + 1;
|
---|
566 | else
|
---|
567 | end = rbnode->blklen;
|
---|
568 |
|
---|
569 | bitmap_clear(rbnode->cache_present, start, end - start);
|
---|
570 | }
|
---|
571 |
|
---|
572 | return 0;
|
---|
573 | }
|
---|
574 |
|
---|
575 | struct regcache_ops regcache_rbtree_ops = {
|
---|
576 | .type = REGCACHE_RBTREE,
|
---|
577 | .name = "rbtree",
|
---|
578 | .init = regcache_rbtree_init,
|
---|
579 | .exit = regcache_rbtree_exit,
|
---|
580 | #ifdef CONFIG_DEBUG_FS
|
---|
581 | .debugfs_init = rbtree_debugfs_init,
|
---|
582 | #endif
|
---|
583 | .read = regcache_rbtree_read,
|
---|
584 | .write = regcache_rbtree_write,
|
---|
585 | .sync = regcache_rbtree_sync,
|
---|
586 | .drop = regcache_rbtree_drop,
|
---|
587 | };
|
---|