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2689 | jermar | 1 | /* |
2 | * Copyright (c) 2008 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 | |||
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 vfs_ops.c |
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35 | * @brief Operations that VFS offers to its clients. |
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36 | */ |
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37 | |||
38 | #include <ipc/ipc.h> |
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39 | #include <async.h> |
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40 | #include <errno.h> |
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41 | #include <stdio.h> |
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42 | #include <stdlib.h> |
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43 | #include <string.h> |
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44 | #include <bool.h> |
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45 | #include <futex.h> |
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46 | #include <rwlock.h> |
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47 | #include <libadt/list.h> |
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48 | #include <unistd.h> |
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49 | #include <ctype.h> |
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2708 | jermar | 50 | #include <fcntl.h> |
2689 | jermar | 51 | #include <assert.h> |
52 | #include <atomic.h> |
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53 | #include "vfs.h" |
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54 | |||
2748 | jermar | 55 | /* Forward declarations of static functions. */ |
56 | static int vfs_truncate_internal(int, int, unsigned long, size_t); |
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57 | |||
2689 | jermar | 58 | /** |
59 | * This rwlock prevents the race between a triplet-to-VFS-node resolution and a |
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60 | * concurrent VFS operation which modifies the file system namespace. |
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61 | */ |
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62 | RWLOCK_INITIALIZE(namespace_rwlock); |
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63 | |||
64 | atomic_t rootfs_futex = FUTEX_INITIALIZER; |
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65 | vfs_triplet_t rootfs = { |
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66 | .fs_handle = 0, |
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67 | .dev_handle = 0, |
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68 | .index = 0, |
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69 | }; |
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70 | |||
2691 | jermar | 71 | static int lookup_root(int fs_handle, int dev_handle, vfs_lookup_res_t *result) |
2689 | jermar | 72 | { |
73 | vfs_pair_t altroot = { |
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74 | .fs_handle = fs_handle, |
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75 | .dev_handle = dev_handle, |
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76 | }; |
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77 | |||
2752 | jermar | 78 | return vfs_lookup_internal("/", L_DIRECTORY, result, &altroot); |
2689 | jermar | 79 | } |
80 | |||
81 | void vfs_mount(ipc_callid_t rid, ipc_call_t *request) |
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82 | { |
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83 | int dev_handle; |
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84 | vfs_node_t *mp_node = NULL; |
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85 | |||
86 | /* |
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87 | * We expect the library to do the device-name to device-handle |
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88 | * translation for us, thus the device handle will arrive as ARG1 |
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89 | * in the request. |
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90 | */ |
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91 | dev_handle = IPC_GET_ARG1(*request); |
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92 | |||
93 | /* |
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94 | * For now, don't make use of ARG2 and ARG3, but they can be used to |
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95 | * carry mount options in the future. |
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96 | */ |
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97 | |||
98 | ipc_callid_t callid; |
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99 | size_t size; |
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100 | |||
101 | /* |
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102 | * Now, we expect the client to send us data with the name of the file |
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103 | * system. |
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104 | */ |
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105 | if (!ipc_data_write_receive(&callid, &size)) { |
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106 | ipc_answer_0(callid, EINVAL); |
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107 | ipc_answer_0(rid, EINVAL); |
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108 | return; |
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109 | } |
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110 | |||
111 | /* |
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112 | * Don't receive more than is necessary for storing a full file system |
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113 | * name. |
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114 | */ |
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115 | if (size < 1 || size > FS_NAME_MAXLEN) { |
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116 | ipc_answer_0(callid, EINVAL); |
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117 | ipc_answer_0(rid, EINVAL); |
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118 | return; |
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119 | } |
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120 | |||
2707 | jermar | 121 | /* Deliver the file system name. */ |
2689 | jermar | 122 | char fs_name[FS_NAME_MAXLEN + 1]; |
123 | (void) ipc_data_write_finalize(callid, fs_name, size); |
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124 | fs_name[size] = '\0'; |
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125 | |||
126 | /* |
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127 | * Check if we know a file system with the same name as is in fs_name. |
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128 | * This will also give us its file system handle. |
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129 | */ |
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130 | int fs_handle = fs_name_to_handle(fs_name, true); |
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131 | if (!fs_handle) { |
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132 | ipc_answer_0(rid, ENOENT); |
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133 | return; |
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134 | } |
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135 | |||
2707 | jermar | 136 | /* Now, we want the client to send us the mount point. */ |
2689 | jermar | 137 | if (!ipc_data_write_receive(&callid, &size)) { |
138 | ipc_answer_0(callid, EINVAL); |
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139 | ipc_answer_0(rid, EINVAL); |
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140 | return; |
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141 | } |
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142 | |||
2707 | jermar | 143 | /* Check whether size is reasonable wrt. the mount point. */ |
2689 | jermar | 144 | if (size < 1 || size > MAX_PATH_LEN) { |
145 | ipc_answer_0(callid, EINVAL); |
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146 | ipc_answer_0(rid, EINVAL); |
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147 | return; |
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148 | } |
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2707 | jermar | 149 | /* Allocate buffer for the mount point data being received. */ |
2689 | jermar | 150 | uint8_t *buf; |
2752 | jermar | 151 | buf = malloc(size + 1); |
2689 | jermar | 152 | if (!buf) { |
153 | ipc_answer_0(callid, ENOMEM); |
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154 | ipc_answer_0(rid, ENOMEM); |
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155 | return; |
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156 | } |
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157 | |||
2707 | jermar | 158 | /* Deliver the mount point. */ |
2689 | jermar | 159 | (void) ipc_data_write_finalize(callid, buf, size); |
2752 | jermar | 160 | buf[size] = '\0'; |
2689 | jermar | 161 | |
162 | /* |
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163 | * Lookup the root node of the filesystem being mounted. |
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164 | * In this case, we don't need to take the namespace_futex as the root |
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165 | * node cannot be removed. However, we do take a reference to it so |
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166 | * that we can track how many times it has been mounted. |
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167 | */ |
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168 | int rc; |
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2691 | jermar | 169 | vfs_lookup_res_t mr_res; |
170 | rc = lookup_root(fs_handle, dev_handle, &mr_res); |
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2689 | jermar | 171 | if (rc != EOK) { |
172 | free(buf); |
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173 | ipc_answer_0(rid, rc); |
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174 | return; |
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175 | } |
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2691 | jermar | 176 | vfs_node_t *mr_node = vfs_node_get(&mr_res); |
2689 | jermar | 177 | if (!mr_node) { |
178 | free(buf); |
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179 | ipc_answer_0(rid, ENOMEM); |
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180 | return; |
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181 | } |
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182 | |||
2707 | jermar | 183 | /* Finally, we need to resolve the path to the mountpoint. */ |
2691 | jermar | 184 | vfs_lookup_res_t mp_res; |
2689 | jermar | 185 | futex_down(&rootfs_futex); |
186 | if (rootfs.fs_handle) { |
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2707 | jermar | 187 | /* We already have the root FS. */ |
2689 | jermar | 188 | rwlock_write_lock(&namespace_rwlock); |
2752 | jermar | 189 | rc = vfs_lookup_internal(buf, L_DIRECTORY, &mp_res, NULL); |
2689 | jermar | 190 | if (rc != EOK) { |
2707 | jermar | 191 | /* The lookup failed for some reason. */ |
2689 | jermar | 192 | rwlock_write_unlock(&namespace_rwlock); |
193 | futex_up(&rootfs_futex); |
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194 | vfs_node_put(mr_node); /* failed -> drop reference */ |
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195 | free(buf); |
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196 | ipc_answer_0(rid, rc); |
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197 | return; |
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198 | } |
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2691 | jermar | 199 | mp_node = vfs_node_get(&mp_res); |
2689 | jermar | 200 | if (!mp_node) { |
201 | rwlock_write_unlock(&namespace_rwlock); |
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202 | futex_up(&rootfs_futex); |
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203 | vfs_node_put(mr_node); /* failed -> drop reference */ |
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204 | free(buf); |
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205 | ipc_answer_0(rid, ENOMEM); |
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206 | return; |
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207 | } |
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208 | /* |
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209 | * Now we hold a reference to mp_node. |
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210 | * It will be dropped upon the corresponding VFS_UNMOUNT. |
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211 | * This prevents the mount point from being deleted. |
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212 | */ |
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213 | rwlock_write_unlock(&namespace_rwlock); |
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214 | } else { |
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2707 | jermar | 215 | /* We still don't have the root file system mounted. */ |
2689 | jermar | 216 | if ((size == 1) && (buf[0] == '/')) { |
2707 | jermar | 217 | /* For this simple, but important case, we are done. */ |
2691 | jermar | 218 | rootfs = mr_res.triplet; |
2689 | jermar | 219 | futex_up(&rootfs_futex); |
220 | free(buf); |
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221 | ipc_answer_0(rid, EOK); |
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222 | return; |
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223 | } else { |
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224 | /* |
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225 | * We can't resolve this without the root filesystem |
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226 | * being mounted first. |
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227 | */ |
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228 | futex_up(&rootfs_futex); |
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229 | free(buf); |
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230 | vfs_node_put(mr_node); /* failed -> drop reference */ |
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231 | ipc_answer_0(rid, ENOENT); |
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232 | return; |
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233 | } |
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234 | } |
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235 | futex_up(&rootfs_futex); |
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236 | |||
237 | free(buf); /* The buffer is not needed anymore. */ |
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238 | |||
239 | /* |
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240 | * At this point, we have all necessary pieces: file system and device |
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241 | * handles, and we know the mount point VFS node and also the root node |
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242 | * of the file system being mounted. |
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243 | */ |
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244 | |||
2691 | jermar | 245 | int phone = vfs_grab_phone(mp_res.triplet.fs_handle); |
2689 | jermar | 246 | /* Later we can use ARG3 to pass mode/flags. */ |
2691 | jermar | 247 | aid_t req1 = async_send_3(phone, VFS_MOUNT, |
248 | (ipcarg_t) mp_res.triplet.dev_handle, |
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249 | (ipcarg_t) mp_res.triplet.index, 0, NULL); |
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2689 | jermar | 250 | /* The second call uses the same method. */ |
251 | aid_t req2 = async_send_3(phone, VFS_MOUNT, |
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2691 | jermar | 252 | (ipcarg_t) mr_res.triplet.fs_handle, |
253 | (ipcarg_t) mr_res.triplet.dev_handle, |
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254 | (ipcarg_t) mr_res.triplet.index, NULL); |
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2689 | jermar | 255 | vfs_release_phone(phone); |
256 | |||
257 | ipcarg_t rc1; |
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258 | ipcarg_t rc2; |
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259 | async_wait_for(req1, &rc1); |
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260 | async_wait_for(req2, &rc2); |
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261 | |||
262 | if ((rc1 != EOK) || (rc2 != EOK)) { |
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263 | /* Mount failed, drop references to mr_node and mp_node. */ |
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264 | vfs_node_put(mr_node); |
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265 | if (mp_node) |
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266 | vfs_node_put(mp_node); |
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267 | } |
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268 | |||
269 | if (rc2 == EOK) |
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270 | ipc_answer_0(rid, rc1); |
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271 | else if (rc1 == EOK) |
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272 | ipc_answer_0(rid, rc2); |
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273 | else |
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274 | ipc_answer_0(rid, rc1); |
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275 | } |
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276 | |||
277 | void vfs_open(ipc_callid_t rid, ipc_call_t *request) |
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278 | { |
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279 | if (!vfs_files_init()) { |
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280 | ipc_answer_0(rid, ENOMEM); |
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281 | return; |
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282 | } |
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283 | |||
284 | /* |
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2700 | jermar | 285 | * The POSIX interface is open(path, oflag, mode). |
286 | * We can receive oflags and mode along with the VFS_OPEN call; the path |
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2689 | jermar | 287 | * will need to arrive in another call. |
2700 | jermar | 288 | * |
289 | * We also receive one private, non-POSIX set of flags called lflag |
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290 | * used to pass information to vfs_lookup_internal(). |
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2689 | jermar | 291 | */ |
2700 | jermar | 292 | int lflag = IPC_GET_ARG1(*request); |
293 | int oflag = IPC_GET_ARG2(*request); |
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294 | int mode = IPC_GET_ARG3(*request); |
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2689 | jermar | 295 | size_t len; |
296 | |||
2708 | jermar | 297 | if (oflag & O_CREAT) |
298 | lflag |= L_CREATE; |
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299 | if (oflag & O_EXCL) |
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300 | lflag |= L_EXCLUSIVE; |
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301 | |||
2689 | jermar | 302 | ipc_callid_t callid; |
303 | |||
304 | if (!ipc_data_write_receive(&callid, &len)) { |
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305 | ipc_answer_0(callid, EINVAL); |
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306 | ipc_answer_0(rid, EINVAL); |
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307 | return; |
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308 | } |
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309 | |||
310 | /* |
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311 | * Now we are on the verge of accepting the path. |
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312 | * |
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313 | * There is one optimization we could do in the future: copy the path |
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314 | * directly into the PLB using some kind of a callback. |
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315 | */ |
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2752 | jermar | 316 | char *path = malloc(len + 1); |
2689 | jermar | 317 | |
318 | if (!path) { |
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319 | ipc_answer_0(callid, ENOMEM); |
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320 | ipc_answer_0(rid, ENOMEM); |
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321 | return; |
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322 | } |
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323 | |||
324 | int rc; |
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325 | if ((rc = ipc_data_write_finalize(callid, path, len))) { |
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326 | ipc_answer_0(rid, rc); |
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327 | free(path); |
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328 | return; |
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329 | } |
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2752 | jermar | 330 | path[len] = '\0'; |
2689 | jermar | 331 | |
332 | /* |
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333 | * Avoid the race condition in which the file can be deleted before we |
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334 | * find/create-and-lock the VFS node corresponding to the looked-up |
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335 | * triplet. |
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336 | */ |
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2708 | jermar | 337 | if (lflag & L_CREATE) |
338 | rwlock_write_lock(&namespace_rwlock); |
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339 | else |
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340 | rwlock_read_lock(&namespace_rwlock); |
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2689 | jermar | 341 | |
2707 | jermar | 342 | /* The path is now populated and we can call vfs_lookup_internal(). */ |
2691 | jermar | 343 | vfs_lookup_res_t lr; |
2752 | jermar | 344 | rc = vfs_lookup_internal(path, lflag, &lr, NULL); |
2689 | jermar | 345 | if (rc) { |
2708 | jermar | 346 | if (lflag & L_CREATE) |
347 | rwlock_write_unlock(&namespace_rwlock); |
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348 | else |
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349 | rwlock_read_unlock(&namespace_rwlock); |
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2689 | jermar | 350 | ipc_answer_0(rid, rc); |
351 | free(path); |
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352 | return; |
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353 | } |
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354 | |||
2748 | jermar | 355 | /* Path is no longer needed. */ |
2689 | jermar | 356 | free(path); |
357 | |||
2691 | jermar | 358 | vfs_node_t *node = vfs_node_get(&lr); |
2708 | jermar | 359 | if (lflag & L_CREATE) |
360 | rwlock_write_unlock(&namespace_rwlock); |
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361 | else |
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362 | rwlock_read_unlock(&namespace_rwlock); |
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2689 | jermar | 363 | |
2748 | jermar | 364 | /* Truncate the file if requested and if necessary. */ |
365 | if (oflag & O_TRUNC) { |
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2749 | jermar | 366 | rwlock_write_lock(&node->contents_rwlock); |
2748 | jermar | 367 | if (node->size) { |
368 | rc = vfs_truncate_internal(node->fs_handle, |
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369 | node->dev_handle, node->index, 0); |
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370 | if (rc) { |
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2749 | jermar | 371 | rwlock_write_unlock(&node->contents_rwlock); |
2748 | jermar | 372 | vfs_node_put(node); |
373 | ipc_answer_0(rid, rc); |
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374 | return; |
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375 | } |
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376 | node->size = 0; |
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377 | } |
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2749 | jermar | 378 | rwlock_write_unlock(&node->contents_rwlock); |
2748 | jermar | 379 | } |
380 | |||
2689 | jermar | 381 | /* |
382 | * Get ourselves a file descriptor and the corresponding vfs_file_t |
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383 | * structure. |
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384 | */ |
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385 | int fd = vfs_fd_alloc(); |
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386 | if (fd < 0) { |
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387 | vfs_node_put(node); |
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388 | ipc_answer_0(rid, fd); |
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389 | return; |
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390 | } |
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391 | vfs_file_t *file = vfs_file_get(fd); |
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392 | file->node = node; |
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2710 | jermar | 393 | if (oflag & O_APPEND) |
2709 | jermar | 394 | file->append = true; |
2689 | jermar | 395 | |
396 | /* |
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397 | * The following increase in reference count is for the fact that the |
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398 | * file is being opened and that a file structure is pointing to it. |
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399 | * It is necessary so that the file will not disappear when |
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400 | * vfs_node_put() is called. The reference will be dropped by the |
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401 | * respective VFS_CLOSE. |
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402 | */ |
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403 | vfs_node_addref(node); |
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404 | vfs_node_put(node); |
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405 | |||
2707 | jermar | 406 | /* Success! Return the new file descriptor to the client. */ |
2689 | jermar | 407 | ipc_answer_1(rid, EOK, fd); |
408 | } |
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409 | |||
2734 | jermar | 410 | void vfs_close(ipc_callid_t rid, ipc_call_t *request) |
411 | { |
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412 | int fd = IPC_GET_ARG1(*request); |
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413 | if (fd >= MAX_OPEN_FILES) { |
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414 | ipc_answer_0(rid, EBADF); |
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415 | return; |
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416 | } |
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417 | vfs_fd_free(fd); |
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418 | ipc_answer_0(rid, EOK); |
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419 | } |
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420 | |||
2689 | jermar | 421 | static void vfs_rdwr(ipc_callid_t rid, ipc_call_t *request, bool read) |
422 | { |
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423 | |||
424 | /* |
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425 | * The following code strongly depends on the fact that the files data |
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426 | * structure can be only accessed by a single fibril and all file |
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427 | * operations are serialized (i.e. the reads and writes cannot |
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428 | * interleave and a file cannot be closed while it is being read). |
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429 | * |
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430 | * Additional synchronization needs to be added once the table of |
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431 | * open files supports parallel access! |
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432 | */ |
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433 | |||
434 | int fd = IPC_GET_ARG1(*request); |
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435 | |||
2707 | jermar | 436 | /* Lookup the file structure corresponding to the file descriptor. */ |
2689 | jermar | 437 | vfs_file_t *file = vfs_file_get(fd); |
438 | if (!file) { |
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439 | ipc_answer_0(rid, ENOENT); |
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440 | return; |
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441 | } |
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442 | |||
443 | /* |
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444 | * Now we need to receive a call with client's |
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445 | * IPC_M_DATA_READ/IPC_M_DATA_WRITE request. |
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446 | */ |
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447 | ipc_callid_t callid; |
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448 | int res; |
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449 | if (read) |
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450 | res = ipc_data_read_receive(&callid, NULL); |
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451 | else |
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452 | res = ipc_data_write_receive(&callid, NULL); |
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453 | if (!res) { |
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454 | ipc_answer_0(callid, EINVAL); |
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455 | ipc_answer_0(rid, EINVAL); |
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456 | return; |
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457 | } |
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458 | |||
459 | /* |
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460 | * Lock the open file structure so that no other thread can manipulate |
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461 | * the same open file at a time. |
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462 | */ |
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463 | futex_down(&file->lock); |
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464 | |||
465 | /* |
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466 | * Lock the file's node so that no other client can read/write to it at |
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467 | * the same time. |
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468 | */ |
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469 | if (read) |
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470 | rwlock_read_lock(&file->node->contents_rwlock); |
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471 | else |
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472 | rwlock_write_lock(&file->node->contents_rwlock); |
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473 | |||
474 | int fs_phone = vfs_grab_phone(file->node->fs_handle); |
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475 | |||
2707 | jermar | 476 | /* Make a VFS_READ/VFS_WRITE request at the destination FS server. */ |
2689 | jermar | 477 | aid_t msg; |
478 | ipc_call_t answer; |
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2709 | jermar | 479 | if (!read && file->append) |
480 | file->pos = file->node->size; |
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2689 | jermar | 481 | msg = async_send_3(fs_phone, IPC_GET_METHOD(*request), |
482 | file->node->dev_handle, file->node->index, file->pos, &answer); |
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483 | |||
484 | /* |
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485 | * Forward the IPC_M_DATA_READ/IPC_M_DATA_WRITE request to the |
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486 | * destination FS server. The call will be routed as if sent by |
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487 | * ourselves. Note that call arguments are immutable in this case so we |
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488 | * don't have to bother. |
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489 | */ |
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490 | ipc_forward_fast(callid, fs_phone, 0, 0, 0, IPC_FF_ROUTE_FROM_ME); |
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491 | |||
492 | vfs_release_phone(fs_phone); |
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493 | |||
2707 | jermar | 494 | /* Wait for reply from the FS server. */ |
2689 | jermar | 495 | ipcarg_t rc; |
496 | async_wait_for(msg, &rc); |
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497 | size_t bytes = IPC_GET_ARG1(answer); |
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498 | |||
2707 | jermar | 499 | /* Unlock the VFS node. */ |
2689 | jermar | 500 | if (read) |
501 | rwlock_read_unlock(&file->node->contents_rwlock); |
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502 | else { |
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503 | /* Update the cached version of node's size. */ |
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2710 | jermar | 504 | if (rc == EOK) |
505 | file->node->size = IPC_GET_ARG2(answer); |
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2689 | jermar | 506 | rwlock_write_unlock(&file->node->contents_rwlock); |
507 | } |
||
508 | |||
2707 | jermar | 509 | /* Update the position pointer and unlock the open file. */ |
2710 | jermar | 510 | if (rc == EOK) |
511 | file->pos += bytes; |
||
2689 | jermar | 512 | futex_up(&file->lock); |
513 | |||
514 | /* |
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515 | * FS server's reply is the final result of the whole operation we |
||
516 | * return to the client. |
||
517 | */ |
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518 | ipc_answer_1(rid, rc, bytes); |
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519 | } |
||
520 | |||
521 | void vfs_read(ipc_callid_t rid, ipc_call_t *request) |
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522 | { |
||
523 | vfs_rdwr(rid, request, true); |
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524 | } |
||
525 | |||
526 | void vfs_write(ipc_callid_t rid, ipc_call_t *request) |
||
527 | { |
||
528 | vfs_rdwr(rid, request, false); |
||
529 | } |
||
530 | |||
531 | void vfs_seek(ipc_callid_t rid, ipc_call_t *request) |
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532 | { |
||
533 | int fd = (int) IPC_GET_ARG1(*request); |
||
534 | off_t off = (off_t) IPC_GET_ARG2(*request); |
||
535 | int whence = (int) IPC_GET_ARG3(*request); |
||
536 | |||
537 | |||
2707 | jermar | 538 | /* Lookup the file structure corresponding to the file descriptor. */ |
2689 | jermar | 539 | vfs_file_t *file = vfs_file_get(fd); |
540 | if (!file) { |
||
541 | ipc_answer_0(rid, ENOENT); |
||
542 | return; |
||
543 | } |
||
544 | |||
545 | off_t newpos; |
||
546 | futex_down(&file->lock); |
||
547 | if (whence == SEEK_SET) { |
||
548 | file->pos = off; |
||
549 | futex_up(&file->lock); |
||
550 | ipc_answer_1(rid, EOK, off); |
||
551 | return; |
||
552 | } |
||
553 | if (whence == SEEK_CUR) { |
||
554 | if (file->pos + off < file->pos) { |
||
555 | futex_up(&file->lock); |
||
556 | ipc_answer_0(rid, EOVERFLOW); |
||
557 | return; |
||
558 | } |
||
559 | file->pos += off; |
||
560 | newpos = file->pos; |
||
561 | futex_up(&file->lock); |
||
562 | ipc_answer_1(rid, EOK, newpos); |
||
563 | return; |
||
564 | } |
||
565 | if (whence == SEEK_END) { |
||
566 | rwlock_read_lock(&file->node->contents_rwlock); |
||
567 | size_t size = file->node->size; |
||
568 | rwlock_read_unlock(&file->node->contents_rwlock); |
||
569 | if (size + off < size) { |
||
570 | futex_up(&file->lock); |
||
571 | ipc_answer_0(rid, EOVERFLOW); |
||
572 | return; |
||
573 | } |
||
574 | newpos = size + off; |
||
575 | futex_up(&file->lock); |
||
576 | ipc_answer_1(rid, EOK, newpos); |
||
577 | return; |
||
578 | } |
||
579 | futex_up(&file->lock); |
||
580 | ipc_answer_0(rid, EINVAL); |
||
581 | } |
||
582 | |||
2748 | jermar | 583 | int vfs_truncate_internal(int fs_handle, int dev_handle, unsigned long index, |
584 | size_t size) |
||
585 | { |
||
586 | ipcarg_t rc; |
||
587 | int fs_phone; |
||
588 | |||
589 | fs_phone = vfs_grab_phone(fs_handle); |
||
590 | rc = async_req_3_0(fs_phone, VFS_TRUNCATE, (ipcarg_t)dev_handle, |
||
591 | (ipcarg_t)index, (ipcarg_t)size); |
||
592 | vfs_release_phone(fs_phone); |
||
593 | return (int)rc; |
||
594 | } |
||
595 | |||
2693 | jermar | 596 | void vfs_truncate(ipc_callid_t rid, ipc_call_t *request) |
597 | { |
||
598 | int fd = IPC_GET_ARG1(*request); |
||
599 | size_t size = IPC_GET_ARG2(*request); |
||
2748 | jermar | 600 | int rc; |
2693 | jermar | 601 | |
602 | vfs_file_t *file = vfs_file_get(fd); |
||
603 | if (!file) { |
||
604 | ipc_answer_0(rid, ENOENT); |
||
605 | return; |
||
606 | } |
||
607 | futex_down(&file->lock); |
||
608 | |||
609 | rwlock_write_lock(&file->node->contents_rwlock); |
||
2748 | jermar | 610 | rc = vfs_truncate_internal(file->node->fs_handle, |
611 | file->node->dev_handle, file->node->index, size); |
||
2693 | jermar | 612 | if (rc == EOK) |
613 | file->node->size = size; |
||
614 | rwlock_write_unlock(&file->node->contents_rwlock); |
||
615 | |||
616 | futex_up(&file->lock); |
||
2748 | jermar | 617 | ipc_answer_0(rid, (ipcarg_t)rc); |
2693 | jermar | 618 | } |
619 | |||
2707 | jermar | 620 | void vfs_mkdir(ipc_callid_t rid, ipc_call_t *request) |
621 | { |
||
622 | int mode = IPC_GET_ARG1(*request); |
||
2735 | jermar | 623 | |
2707 | jermar | 624 | size_t len; |
625 | ipc_callid_t callid; |
||
626 | |||
627 | if (!ipc_data_write_receive(&callid, &len)) { |
||
628 | ipc_answer_0(callid, EINVAL); |
||
629 | ipc_answer_0(rid, EINVAL); |
||
630 | return; |
||
631 | } |
||
632 | |||
633 | /* |
||
634 | * Now we are on the verge of accepting the path. |
||
635 | * |
||
636 | * There is one optimization we could do in the future: copy the path |
||
637 | * directly into the PLB using some kind of a callback. |
||
638 | */ |
||
2752 | jermar | 639 | char *path = malloc(len + 1); |
2707 | jermar | 640 | |
641 | if (!path) { |
||
642 | ipc_answer_0(callid, ENOMEM); |
||
643 | ipc_answer_0(rid, ENOMEM); |
||
644 | return; |
||
645 | } |
||
646 | |||
647 | int rc; |
||
648 | if ((rc = ipc_data_write_finalize(callid, path, len))) { |
||
649 | ipc_answer_0(rid, rc); |
||
650 | free(path); |
||
651 | return; |
||
652 | } |
||
2752 | jermar | 653 | path[len] = '\0'; |
2707 | jermar | 654 | |
655 | rwlock_write_lock(&namespace_rwlock); |
||
656 | int lflag = L_DIRECTORY | L_CREATE | L_EXCLUSIVE; |
||
2752 | jermar | 657 | rc = vfs_lookup_internal(path, lflag, NULL, NULL); |
2707 | jermar | 658 | rwlock_write_unlock(&namespace_rwlock); |
659 | free(path); |
||
660 | ipc_answer_0(rid, rc); |
||
661 | } |
||
662 | |||
2735 | jermar | 663 | void vfs_unlink(ipc_callid_t rid, ipc_call_t *request) |
664 | { |
||
665 | int lflag = IPC_GET_ARG1(*request); |
||
666 | |||
667 | size_t len; |
||
668 | ipc_callid_t callid; |
||
669 | |||
670 | if (!ipc_data_write_receive(&callid, &len)) { |
||
671 | ipc_answer_0(callid, EINVAL); |
||
672 | ipc_answer_0(rid, EINVAL); |
||
673 | return; |
||
674 | } |
||
675 | |||
676 | /* |
||
677 | * Now we are on the verge of accepting the path. |
||
678 | * |
||
679 | * There is one optimization we could do in the future: copy the path |
||
680 | * directly into the PLB using some kind of a callback. |
||
681 | */ |
||
2752 | jermar | 682 | char *path = malloc(len + 1); |
2735 | jermar | 683 | |
684 | if (!path) { |
||
685 | ipc_answer_0(callid, ENOMEM); |
||
686 | ipc_answer_0(rid, ENOMEM); |
||
687 | return; |
||
688 | } |
||
689 | |||
690 | int rc; |
||
691 | if ((rc = ipc_data_write_finalize(callid, path, len))) { |
||
692 | ipc_answer_0(rid, rc); |
||
693 | free(path); |
||
694 | return; |
||
695 | } |
||
2752 | jermar | 696 | path[len] = '\0'; |
2735 | jermar | 697 | |
698 | rwlock_write_lock(&namespace_rwlock); |
||
699 | lflag &= L_DIRECTORY; /* sanitize lflag */ |
||
700 | vfs_lookup_res_t lr; |
||
2752 | jermar | 701 | rc = vfs_lookup_internal(path, lflag | L_DESTROY, &lr, NULL); |
2735 | jermar | 702 | free(path); |
703 | if (rc != EOK) { |
||
704 | rwlock_write_unlock(&namespace_rwlock); |
||
705 | ipc_answer_0(rid, rc); |
||
706 | return; |
||
707 | } |
||
708 | |||
709 | /* |
||
710 | * The name has already been unlinked by vfs_lookup_internal(). |
||
711 | * We have to get and put the VFS node to ensure that it is |
||
2742 | jermar | 712 | * VFS_DESTROY'ed after the last reference to it is dropped. |
2735 | jermar | 713 | */ |
714 | vfs_node_t *node = vfs_node_get(&lr); |
||
715 | node->lnkcnt--; |
||
716 | rwlock_write_unlock(&namespace_rwlock); |
||
717 | vfs_node_put(node); |
||
718 | ipc_answer_0(rid, EOK); |
||
719 | } |
||
720 | |||
2689 | jermar | 721 | /** |
722 | * @} |
||
723 | */ |