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Rev | Author | Line No. | Line |
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2645 | jermar | 1 | /* |
2685 | jermar | 2 | * Copyright (c) 2008 Jakub Jermar |
2645 | jermar | 3 | * All rights reserved. |
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 | |||
29 | /** @addtogroup fs |
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30 | * @{ |
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31 | */ |
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32 | |||
33 | /** |
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34 | * @file tmpfs_ops.c |
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35 | * @brief Implementation of VFS operations for the TMPFS file system |
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36 | * server. |
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37 | */ |
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38 | |||
39 | #include "tmpfs.h" |
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40 | #include "../../vfs/vfs.h" |
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41 | #include <ipc/ipc.h> |
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42 | #include <async.h> |
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43 | #include <errno.h> |
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2655 | jermar | 44 | #include <atomic.h> |
45 | #include <stdlib.h> |
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46 | #include <string.h> |
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47 | #include <stdio.h> |
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2705 | jermar | 48 | #include <dirent.h> |
2699 | jermar | 49 | #include <assert.h> |
2658 | jermar | 50 | #include <sys/types.h> |
51 | #include <libadt/hash_table.h> |
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52 | #include <as.h> |
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2645 | jermar | 53 | |
2658 | jermar | 54 | #define min(a, b) ((a) < (b) ? (a) : (b)) |
55 | #define max(a, b) ((a) > (b) ? (a) : (b)) |
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56 | |||
2645 | jermar | 57 | #define PLB_GET_CHAR(i) (tmpfs_reg.plb_ro[(i) % PLB_SIZE]) |
58 | |||
2658 | jermar | 59 | #define DENTRIES_BUCKETS 256 |
60 | |||
61 | /* |
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62 | * Hash table of all directory entries. |
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63 | */ |
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64 | hash_table_t dentries; |
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65 | |||
66 | static hash_index_t dentries_hash(unsigned long *key) |
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67 | { |
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68 | return *key % DENTRIES_BUCKETS; |
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69 | } |
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70 | |||
71 | static int dentries_compare(unsigned long *key, hash_count_t keys, |
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72 | link_t *item) |
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73 | { |
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74 | tmpfs_dentry_t *dentry = hash_table_get_instance(item, tmpfs_dentry_t, |
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75 | dh_link); |
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76 | return dentry->index == *key; |
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77 | } |
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78 | |||
79 | static void dentries_remove_callback(link_t *item) |
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80 | { |
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81 | } |
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82 | |||
83 | /** TMPFS dentries hash table operations. */ |
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84 | hash_table_operations_t dentries_ops = { |
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85 | .hash = dentries_hash, |
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86 | .compare = dentries_compare, |
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87 | .remove_callback = dentries_remove_callback |
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88 | }; |
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89 | |||
2655 | jermar | 90 | unsigned tmpfs_next_index = 1; |
91 | |||
92 | static void tmpfs_dentry_initialize(tmpfs_dentry_t *dentry) |
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93 | { |
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94 | dentry->index = 0; |
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95 | dentry->parent = NULL; |
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96 | dentry->sibling = NULL; |
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97 | dentry->child = NULL; |
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98 | dentry->name = NULL; |
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99 | dentry->type = TMPFS_NONE; |
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100 | dentry->size = 0; |
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101 | dentry->data = NULL; |
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2658 | jermar | 102 | link_initialize(&dentry->dh_link); |
2655 | jermar | 103 | } |
104 | |||
105 | /* |
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106 | * For now, we don't distinguish between different dev_handles/instances. All |
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107 | * requests resolve to the only instance, rooted in the following variable. |
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108 | */ |
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109 | static tmpfs_dentry_t *root; |
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110 | |||
111 | static bool tmpfs_init(void) |
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112 | { |
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2658 | jermar | 113 | if (!hash_table_create(&dentries, DENTRIES_BUCKETS, 1, &dentries_ops)) |
114 | return false; |
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115 | |||
2655 | jermar | 116 | root = (tmpfs_dentry_t *) malloc(sizeof(tmpfs_dentry_t)); |
2658 | jermar | 117 | if (!root) |
2655 | jermar | 118 | return false; |
119 | tmpfs_dentry_initialize(root); |
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120 | root->index = tmpfs_next_index++; |
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121 | root->name = ""; |
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122 | root->type = TMPFS_DIRECTORY; |
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2658 | jermar | 123 | hash_table_insert(&dentries, &root->index, &root->dh_link); |
2655 | jermar | 124 | |
125 | /* |
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126 | * This is only for debugging. Once we can create files and directories |
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127 | * using VFS, we can get rid of this. |
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128 | */ |
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129 | tmpfs_dentry_t *d; |
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130 | d = (tmpfs_dentry_t *) malloc(sizeof(tmpfs_dentry_t)); |
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131 | if (!d) { |
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132 | free(root); |
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133 | root = NULL; |
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134 | return false; |
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135 | } |
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136 | tmpfs_dentry_initialize(d); |
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137 | d->index = tmpfs_next_index++; |
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138 | root->child = d; |
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139 | d->parent = root; |
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140 | d->type = TMPFS_DIRECTORY; |
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141 | d->name = "dir1"; |
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2658 | jermar | 142 | hash_table_insert(&dentries, &d->index, &d->dh_link); |
2655 | jermar | 143 | |
144 | d = (tmpfs_dentry_t *) malloc(sizeof(tmpfs_dentry_t)); |
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145 | if (!d) { |
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146 | free(root->child); |
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147 | free(root); |
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148 | root = NULL; |
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149 | return false; |
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150 | } |
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151 | tmpfs_dentry_initialize(d); |
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152 | d->index = tmpfs_next_index++; |
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153 | root->child->sibling = d; |
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154 | d->parent = root; |
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155 | d->type = TMPFS_DIRECTORY; |
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156 | d->name = "dir2"; |
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2658 | jermar | 157 | hash_table_insert(&dentries, &d->index, &d->dh_link); |
2655 | jermar | 158 | |
159 | d = (tmpfs_dentry_t *) malloc(sizeof(tmpfs_dentry_t)); |
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160 | if (!d) { |
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161 | free(root->child->sibling); |
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162 | free(root->child); |
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163 | free(root); |
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164 | root = NULL; |
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165 | return false; |
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166 | } |
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167 | tmpfs_dentry_initialize(d); |
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168 | d->index = tmpfs_next_index++; |
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169 | root->child->child = d; |
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170 | d->parent = root->child; |
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171 | d->type = TMPFS_FILE; |
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172 | d->name = "file1"; |
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173 | d->data = "This is the contents of /dir1/file1.\n"; |
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174 | d->size = strlen(d->data); |
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2658 | jermar | 175 | hash_table_insert(&dentries, &d->index, &d->dh_link); |
2655 | jermar | 176 | |
177 | d = (tmpfs_dentry_t *) malloc(sizeof(tmpfs_dentry_t)); |
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178 | if (!d) { |
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179 | free(root->child->sibling); |
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180 | free(root->child->child); |
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181 | free(root->child); |
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182 | free(root); |
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183 | root = NULL; |
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184 | return false; |
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185 | } |
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186 | tmpfs_dentry_initialize(d); |
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187 | d->index = tmpfs_next_index++; |
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188 | root->child->sibling->child = d; |
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189 | d->parent = root->child->sibling; |
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190 | d->type = TMPFS_FILE; |
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191 | d->name = "file2"; |
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192 | d->data = "This is the contents of /dir2/file2.\n"; |
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193 | d->size = strlen(d->data); |
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2658 | jermar | 194 | hash_table_insert(&dentries, &d->index, &d->dh_link); |
2655 | jermar | 195 | |
196 | return true; |
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197 | } |
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198 | |||
2645 | jermar | 199 | /** Compare one component of path to a directory entry. |
200 | * |
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201 | * @param dentry Directory entry to compare the path component with. |
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2705 | jermar | 202 | * @param component Array of characters holding component name. |
2645 | jermar | 203 | * |
2705 | jermar | 204 | * @return True on match, false otherwise. |
2645 | jermar | 205 | */ |
2705 | jermar | 206 | static bool match_component(tmpfs_dentry_t *dentry, const char *component) |
2645 | jermar | 207 | { |
2705 | jermar | 208 | return !strcmp(dentry->name, component); |
209 | } |
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2655 | jermar | 210 | |
2705 | jermar | 211 | static unsigned long create_node(tmpfs_dentry_t *dentry, |
212 | const char *component, int lflag) |
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213 | { |
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214 | return 0; |
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215 | } |
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2655 | jermar | 216 | |
2705 | jermar | 217 | static int destroy_component(tmpfs_dentry_t *dentry) |
218 | { |
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219 | return EPERM; |
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2645 | jermar | 220 | } |
221 | |||
222 | void tmpfs_lookup(ipc_callid_t rid, ipc_call_t *request) |
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223 | { |
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2655 | jermar | 224 | unsigned next = IPC_GET_ARG1(*request); |
225 | unsigned last = IPC_GET_ARG2(*request); |
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2645 | jermar | 226 | int dev_handle = IPC_GET_ARG3(*request); |
2700 | jermar | 227 | int lflag = IPC_GET_ARG4(*request); |
2645 | jermar | 228 | |
2655 | jermar | 229 | if (last < next) |
230 | last += PLB_SIZE; |
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231 | |||
2705 | jermar | 232 | /* |
233 | * Initialize TMPFS. |
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234 | */ |
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2655 | jermar | 235 | if (!root && !tmpfs_init()) { |
236 | ipc_answer_0(rid, ENOMEM); |
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237 | return; |
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238 | } |
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239 | |||
240 | tmpfs_dentry_t *dtmp = root->child; |
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241 | tmpfs_dentry_t *dcur = root; |
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242 | |||
243 | if (PLB_GET_CHAR(next) == '/') |
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244 | next++; /* eat slash */ |
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245 | |||
2705 | jermar | 246 | char component[NAME_MAX + 1]; |
247 | int len = 0; |
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2655 | jermar | 248 | while (next <= last) { |
2705 | jermar | 249 | |
250 | /* collect the component */ |
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251 | if (PLB_GET_CHAR(next) != '/') { |
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252 | if (len + 1 == NAME_MAX) { |
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253 | /* comopnent length overflow */ |
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254 | ipc_answer_0(rid, ENAMETOOLONG); |
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255 | return; |
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256 | } |
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257 | component[len++] = PLB_GET_CHAR(next); |
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258 | next++; /* process next character */ |
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259 | if (next <= last) |
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260 | continue; |
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261 | } |
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262 | |||
263 | assert(len); |
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264 | component[len] = '\0'; |
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265 | next++; /* eat slash */ |
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266 | len = 0; |
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267 | |||
268 | /* match the component */ |
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269 | while (dtmp && !match_component(dtmp, component)) |
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270 | dtmp = dtmp->sibling; |
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271 | |||
272 | /* handle miss: match amongst siblings */ |
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273 | if (!dtmp) { |
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274 | if ((next > last) && (lflag & L_CREATE)) { |
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275 | /* no components left and L_CREATE specified */ |
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276 | if (dcur->type != TMPFS_DIRECTORY) { |
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277 | ipc_answer_0(rid, ENOTDIR); |
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278 | return; |
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279 | } |
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280 | unsigned long index = create_node(dcur, |
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281 | component, lflag); |
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282 | if (index) { |
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283 | ipc_answer_4(rid, EOK, |
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284 | tmpfs_reg.fs_handle, dev_handle, |
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285 | index, 0); |
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286 | } else { |
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287 | ipc_answer_0(rid, ENOSPC); |
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288 | } |
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289 | return; |
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290 | } |
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291 | ipc_answer_0(rid, ENOENT); |
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2655 | jermar | 292 | return; |
293 | } |
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2705 | jermar | 294 | |
295 | /* descent one level */ |
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296 | dcur = dtmp; |
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297 | dtmp = dtmp->child; |
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298 | |||
299 | /* handle miss: excessive components */ |
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300 | if (!dtmp && next <= last) { |
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301 | if (lflag & L_CREATE) { |
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302 | if (dcur->type != TMPFS_DIRECTORY) { |
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303 | ipc_answer_0(rid, ENOTDIR); |
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304 | return; |
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305 | } |
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306 | |||
307 | /* collect next component */ |
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308 | while (next <= last) { |
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309 | if (PLB_GET_CHAR(next) == '/') { |
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310 | /* more than one component */ |
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311 | ipc_answer_0(rid, ENOENT); |
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312 | return; |
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313 | } |
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314 | if (len + 1 == NAME_MAX) { |
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315 | /* component length overflow */ |
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316 | ipc_answer_0(rid, ENAMETOOLONG); |
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317 | return; |
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318 | } |
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319 | component[len++] = PLB_GET_CHAR(next); |
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320 | next++; /* process next character */ |
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321 | } |
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322 | assert(len); |
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323 | component[len] = '\0'; |
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324 | len = 0; |
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325 | |||
326 | unsigned long index; |
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327 | index = create_node(dcur, component, lflag); |
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328 | if (index) { |
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329 | ipc_answer_4(rid, EOK, |
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330 | tmpfs_reg.fs_handle, dev_handle, |
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331 | index, 0); |
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332 | } else { |
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333 | ipc_answer_0(rid, ENOSPC); |
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334 | } |
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335 | return; |
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336 | } |
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337 | ipc_answer_0(rid, ENOENT); |
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338 | return; |
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339 | } |
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340 | |||
2655 | jermar | 341 | } |
342 | |||
2705 | jermar | 343 | /* handle hit */ |
344 | if (lflag & L_DESTROY) { |
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345 | int res = destroy_component(dcur); |
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346 | ipc_answer_0(rid, res); |
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347 | return; |
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348 | } |
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349 | if ((lflag & (L_CREATE | L_EXCLUSIVE)) == (L_CREATE | L_EXCLUSIVE)) { |
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350 | ipc_answer_0(rid, EEXIST); |
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351 | return; |
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352 | } |
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353 | if ((lflag & L_FILE) && (dcur->type != TMPFS_FILE)) { |
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354 | ipc_answer_0(rid, EISDIR); |
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355 | return; |
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356 | } |
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357 | if ((lflag & L_DIRECTORY) && (dcur->type != TMPFS_DIRECTORY)) { |
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358 | ipc_answer_0(rid, ENOTDIR); |
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359 | return; |
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360 | } |
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361 | |||
2687 | jermar | 362 | ipc_answer_4(rid, EOK, tmpfs_reg.fs_handle, dev_handle, dcur->index, |
363 | dcur->size); |
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2645 | jermar | 364 | } |
365 | |||
2658 | jermar | 366 | void tmpfs_read(ipc_callid_t rid, ipc_call_t *request) |
367 | { |
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368 | int dev_handle = IPC_GET_ARG1(*request); |
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369 | unsigned long index = IPC_GET_ARG2(*request); |
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370 | off_t pos = IPC_GET_ARG3(*request); |
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371 | |||
372 | /* |
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373 | * Lookup the respective dentry. |
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374 | */ |
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375 | link_t *hlp; |
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376 | hlp = hash_table_find(&dentries, &index); |
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377 | if (!hlp) { |
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378 | ipc_answer_0(rid, ENOENT); |
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379 | return; |
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380 | } |
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381 | tmpfs_dentry_t *dentry = hash_table_get_instance(hlp, tmpfs_dentry_t, |
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382 | dh_link); |
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383 | |||
384 | /* |
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2663 | jermar | 385 | * Receive the read request. |
2658 | jermar | 386 | */ |
387 | ipc_callid_t callid; |
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2673 | jermar | 388 | size_t len; |
389 | if (!ipc_data_read_receive(&callid, &len)) { |
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2658 | jermar | 390 | ipc_answer_0(callid, EINVAL); |
391 | ipc_answer_0(rid, EINVAL); |
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392 | return; |
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393 | } |
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394 | |||
2699 | jermar | 395 | size_t bytes; |
396 | if (dentry->type == TMPFS_FILE) { |
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397 | bytes = max(0, min(dentry->size - pos, len)); |
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398 | (void) ipc_data_read_finalize(callid, dentry->data + pos, |
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399 | bytes); |
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400 | } else { |
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401 | int i; |
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402 | tmpfs_dentry_t *cur = dentry->child; |
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403 | |||
404 | assert(dentry->type == TMPFS_DIRECTORY); |
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405 | |||
406 | /* |
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407 | * Yes, we really use O(n) algorithm here. |
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408 | * If it bothers someone, it could be fixed by introducing a |
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409 | * hash table. |
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410 | */ |
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411 | for (i = 0, cur = dentry->child; i < pos && cur; i++, |
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412 | cur = cur->sibling) |
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413 | ; |
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2664 | jermar | 414 | |
2699 | jermar | 415 | if (!cur) { |
416 | ipc_answer_0(callid, ENOENT); |
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417 | ipc_answer_1(rid, ENOENT, 0); |
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418 | return; |
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419 | } |
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420 | |||
421 | (void) ipc_data_read_finalize(callid, cur->name, |
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422 | strlen(cur->name) + 1); |
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423 | bytes = 1; |
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424 | } |
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425 | |||
2664 | jermar | 426 | /* |
427 | * Answer the VFS_READ call. |
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428 | */ |
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429 | ipc_answer_1(rid, EOK, bytes); |
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2658 | jermar | 430 | } |
431 | |||
2666 | jermar | 432 | void tmpfs_write(ipc_callid_t rid, ipc_call_t *request) |
433 | { |
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434 | int dev_handle = IPC_GET_ARG1(*request); |
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435 | unsigned long index = IPC_GET_ARG2(*request); |
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436 | off_t pos = IPC_GET_ARG3(*request); |
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437 | |||
438 | /* |
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439 | * Lookup the respective dentry. |
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440 | */ |
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441 | link_t *hlp; |
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442 | hlp = hash_table_find(&dentries, &index); |
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443 | if (!hlp) { |
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444 | ipc_answer_0(rid, ENOENT); |
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445 | return; |
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446 | } |
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447 | tmpfs_dentry_t *dentry = hash_table_get_instance(hlp, tmpfs_dentry_t, |
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448 | dh_link); |
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449 | |||
450 | /* |
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451 | * Receive the write request. |
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452 | */ |
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453 | ipc_callid_t callid; |
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2673 | jermar | 454 | size_t len; |
2676 | jermar | 455 | if (!ipc_data_write_receive(&callid, &len)) { |
2666 | jermar | 456 | ipc_answer_0(callid, EINVAL); |
457 | ipc_answer_0(rid, EINVAL); |
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458 | return; |
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459 | } |
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460 | |||
461 | /* |
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2667 | jermar | 462 | * Check whether the file needs to grow. |
463 | */ |
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2673 | jermar | 464 | if (pos + len <= dentry->size) { |
2667 | jermar | 465 | /* The file size is not changing. */ |
2678 | jermar | 466 | (void) ipc_data_write_finalize(callid, dentry->data + pos, len); |
2673 | jermar | 467 | ipc_answer_1(rid, EOK, len); |
2667 | jermar | 468 | return; |
469 | } |
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2673 | jermar | 470 | size_t delta = (pos + len) - dentry->size; |
2667 | jermar | 471 | /* |
2666 | jermar | 472 | * At this point, we are deliberately extremely straightforward and |
2667 | jermar | 473 | * simply realloc the contents of the file on every write that grows the |
474 | * file. In the end, the situation might not be as bad as it may look: |
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475 | * our heap allocator can save us and just grow the block whenever |
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476 | * possible. |
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2666 | jermar | 477 | */ |
2667 | jermar | 478 | void *newdata = realloc(dentry->data, dentry->size + delta); |
2666 | jermar | 479 | if (!newdata) { |
480 | ipc_answer_0(callid, ENOMEM); |
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481 | ipc_answer_1(rid, EOK, 0); |
||
482 | return; |
||
483 | } |
||
2693 | jermar | 484 | /* Clear any newly allocated memory in order to emulate gaps. */ |
2686 | jermar | 485 | memset(newdata + dentry->size, 0, delta); |
2667 | jermar | 486 | dentry->size += delta; |
2666 | jermar | 487 | dentry->data = newdata; |
2678 | jermar | 488 | (void) ipc_data_write_finalize(callid, dentry->data + pos, len); |
2687 | jermar | 489 | ipc_answer_2(rid, EOK, len, dentry->size); |
2666 | jermar | 490 | } |
491 | |||
2693 | jermar | 492 | void tmpfs_truncate(ipc_callid_t rid, ipc_call_t *request) |
493 | { |
||
494 | int dev_handle = IPC_GET_ARG1(*request); |
||
495 | unsigned long index = IPC_GET_ARG2(*request); |
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496 | size_t size = IPC_GET_ARG3(*request); |
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497 | |||
498 | /* |
||
499 | * Lookup the respective dentry. |
||
500 | */ |
||
501 | link_t *hlp; |
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502 | hlp = hash_table_find(&dentries, &index); |
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503 | if (!hlp) { |
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504 | ipc_answer_0(rid, ENOENT); |
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505 | return; |
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506 | } |
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507 | tmpfs_dentry_t *dentry = hash_table_get_instance(hlp, tmpfs_dentry_t, |
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508 | dh_link); |
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509 | |||
510 | if (size == dentry->size) { |
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511 | ipc_answer_0(rid, EOK); |
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512 | return; |
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513 | } |
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514 | |||
515 | void *newdata = realloc(dentry->data, size); |
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516 | if (!newdata) { |
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517 | ipc_answer_0(rid, ENOMEM); |
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518 | return; |
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519 | } |
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520 | if (size > dentry->size) { |
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521 | size_t delta = size - dentry->size; |
||
522 | memset(newdata + dentry->size, 0, delta); |
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523 | } |
||
524 | dentry->size = size; |
||
525 | dentry->data = newdata; |
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526 | ipc_answer_0(rid, EOK); |
||
527 | } |
||
528 | |||
2645 | jermar | 529 | /** |
530 | * @} |
||
531 | */ |