Sun, 14 Jan 2018 10:38:09 +0100
fixes keep-alive with ssl
54 | 1 | /* |
2 | * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS HEADER. | |
3 | * | |
4 | * Copyright 2013 Olaf Wintermann. All rights reserved. | |
5 | * | |
6 | * Redistribution and use in source and binary forms, with or without | |
7 | * modification, are permitted provided that the following conditions are met: | |
8 | * | |
9 | * 1. Redistributions of source code must retain the above copyright | |
10 | * notice, this list of conditions and the following disclaimer. | |
11 | * | |
12 | * 2. Redistributions in binary form must reproduce the above copyright | |
13 | * notice, this list of conditions and the following disclaimer in the | |
14 | * documentation and/or other materials provided with the distribution. | |
15 | * | |
16 | * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | |
17 | * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | |
18 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | |
19 | * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE | |
20 | * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR | |
21 | * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF | |
22 | * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS | |
23 | * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN | |
24 | * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) | |
25 | * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE | |
26 | * POSSIBILITY OF SUCH DAMAGE. | |
27 | */ | |
28 | ||
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29 | #define _POSIX_PTHREAD_SEMANTIS |
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30 | |
54 | 31 | #include <stdio.h> |
32 | #include <stdlib.h> | |
33 | #include <unistd.h> | |
34 | #include <sys/types.h> | |
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35 | #include <aio.h> |
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36 | #include <ucx/map.h> |
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37 | |
54 | 38 | #include "../util/pool.h" |
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39 | #include "netsite.h" |
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40 | #include "acl.h" |
54 | 41 | #include "vfs.h" |
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42 | #include "threadpools.h" |
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43 | #include "event.h" |
54 | 44 | |
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45 | #define VFS_MALLOC(pool, size) pool ? pool_malloc(pool, size) : malloc(size) |
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46 | #define VFS_FREE(pool, ptr) pool ? pool_free(pool, ptr) : free(ptr) |
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47 | |
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48 | static UcxMap *vfs_map; |
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49 | |
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50 | static VFS sys_vfs = { |
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51 | sys_vfs_open, |
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52 | sys_vfs_stat, |
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53 | sys_vfs_fstat, |
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54 | sys_vfs_opendir, |
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55 | sys_vfs_mkdir, |
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56 | sys_vfs_unlink, |
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57 | VFS_CHECKS_ACL |
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58 | }; |
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59 | |
54 | 60 | static VFS_IO sys_file_io = { |
61 | sys_file_read, | |
62 | sys_file_write, | |
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63 | sys_file_pread, |
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64 | sys_file_pwrite, |
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65 | sys_file_seek, |
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66 | sys_file_close, |
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67 | //sys_file_aioread, |
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68 | //sys_file_aiowrite, |
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69 | NULL, |
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70 | NULL |
54 | 71 | }; |
72 | ||
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73 | static VFS_DIRIO sys_dir_io = { |
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74 | sys_dir_read, |
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75 | sys_dir_close |
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76 | }; |
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77 | |
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78 | int vfs_init() { |
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79 | vfs_map = ucx_map_new(16); |
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80 | if(!vfs_map) { |
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81 | return -1; |
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82 | } |
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83 | return 0; |
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84 | } |
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85 | |
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86 | void vfs_add(char *name, VFS *vfs) { |
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87 | WS_ASSERT(name); |
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88 | |
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89 | if(!vfs_map) { |
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90 | vfs_init(); |
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91 | } |
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92 | ucx_map_cstr_put(vfs_map, name, vfs); |
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93 | } |
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94 | |
54 | 95 | VFSContext* vfs_request_context(Session *sn, Request *rq) { |
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96 | WS_ASSERT(sn); |
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97 | WS_ASSERT(rq); |
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98 | |
54 | 99 | VFSContext *ctx = pool_malloc(sn->pool, sizeof(VFSContext)); |
100 | ctx->sn = sn; | |
101 | ctx->rq = rq; | |
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102 | ctx->vfs = rq->vfs ? rq->vfs : &sys_vfs; |
54 | 103 | ctx->user = acllist_getuser(sn, rq, rq->acllist); |
104 | ctx->acllist = rq->acllist; | |
105 | ctx->aclreqaccess = rq->aclreqaccess; | |
106 | ctx->pool = sn->pool; | |
107 | ctx->vfs_errno = 0; | |
108 | return ctx; | |
109 | } | |
110 | ||
111 | SYS_FILE vfs_open(VFSContext *ctx, char *path, int oflags) { | |
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112 | WS_ASSERT(ctx); |
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113 | WS_ASSERT(path); |
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114 | |
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115 | uint32_t access_mask = ctx->aclreqaccess | acl_oflag2mask(oflags); |
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116 | |
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117 | // ctx->aclreqaccess should be the complete access mask |
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118 | uint32_t m = ctx->aclreqaccess; // save original access mask |
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119 | ctx->aclreqaccess = access_mask; // set mask for vfs->open call |
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120 | if((ctx->vfs->flags & VFS_CHECKS_ACL) != VFS_CHECKS_ACL) { |
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121 | // VFS does not evaluates the ACL itself, so we have to do it here |
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122 | SysACL sysacl; |
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123 | if(sys_acl_check(ctx, access_mask, &sysacl)) { |
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124 | return NULL; |
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125 | } |
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126 | } |
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127 | SYS_FILE file = ctx->vfs->open(ctx, path, oflags); |
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128 | ctx->aclreqaccess = m; // restore original access mask |
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129 | return file; |
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130 | } |
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131 | |
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132 | SYS_FILE vfs_openRO(VFSContext *ctx, char *path) { |
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133 | return vfs_open(ctx, path, O_RDONLY); |
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134 | } |
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135 | |
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136 | SYS_FILE vfs_openWO(VFSContext *ctx, char *path) { |
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137 | return vfs_open(ctx, path, O_WRONLY | O_CREAT); |
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138 | } |
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139 | |
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140 | SYS_FILE vfs_openRW(VFSContext *ctx, char *path) { |
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141 | return vfs_open(ctx, path, O_RDONLY | O_WRONLY | O_CREAT); |
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142 | } |
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143 | |
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144 | int vfs_stat(VFSContext *ctx, char *path, struct stat *buf) { |
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145 | WS_ASSERT(ctx); |
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146 | WS_ASSERT(path); |
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147 | |
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148 | uint32_t access_mask = ctx->aclreqaccess | ACL_READ_ATTRIBUTES; |
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149 | |
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150 | // ctx->aclreqaccess should be the complete access mask |
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151 | uint32_t m = ctx->aclreqaccess; // save original access mask |
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152 | ctx->aclreqaccess = access_mask; // set mask for vfs->open call |
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153 | if((ctx->vfs->flags & VFS_CHECKS_ACL) != VFS_CHECKS_ACL) { |
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154 | // VFS does not evaluates the ACL itself, so we have to do it here |
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155 | SysACL sysacl; |
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156 | if(sys_acl_check(ctx, access_mask, &sysacl)) { |
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157 | return -1; |
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158 | } |
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159 | } |
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160 | int ret = ctx->vfs->stat(ctx, path, buf); |
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161 | ctx->aclreqaccess = m; // restore original access mask |
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162 | return ret; |
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163 | } |
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164 | |
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165 | int vfs_fstat(VFSContext *ctx, SYS_FILE fd, struct stat *buf) { |
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166 | WS_ASSERT(ctx); |
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167 | WS_ASSERT(fd); |
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168 | WS_ASSERT(buf); |
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169 | |
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170 | return ctx->vfs->fstat(ctx, fd, buf); |
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171 | } |
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172 | |
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173 | void vfs_close(SYS_FILE fd) { |
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174 | WS_ASSERT(fd); |
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175 | |
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176 | fd->io->close(fd); |
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177 | if(fd->ctx) { |
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178 | pool_free(fd->ctx->pool, fd); |
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179 | } else { |
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180 | free(fd); |
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181 | } |
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182 | } |
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183 | |
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184 | VFS_DIR vfs_opendir(VFSContext *ctx, char *path) { |
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185 | WS_ASSERT(ctx); |
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186 | WS_ASSERT(path); |
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187 | |
165
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188 | uint32_t access_mask = ctx->aclreqaccess | ACL_LIST; |
54 | 189 | |
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190 | // ctx->aclreqaccess should be the complete access mask |
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191 | uint32_t m = ctx->aclreqaccess; // save original access mask |
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192 | ctx->aclreqaccess = access_mask; // set mask for vfs->open call |
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193 | if((ctx->vfs->flags & VFS_CHECKS_ACL) != VFS_CHECKS_ACL) { |
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194 | // VFS does not evaluates the ACL itself, so we have to do it here |
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195 | SysACL sysacl; |
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196 | if(sys_acl_check(ctx, access_mask, &sysacl)) { |
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197 | return NULL; |
54 | 198 | } |
165
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199 | } |
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200 | VFS_DIR dir = ctx->vfs->opendir(ctx, path); |
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201 | ctx->aclreqaccess = m; // restore original access mask |
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202 | return dir; |
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203 | } |
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204 | |
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205 | int vfs_readdir(VFS_DIR dir, VFS_ENTRY *entry) { |
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206 | WS_ASSERT(dir); |
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207 | WS_ASSERT(entry); |
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208 | |
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209 | return dir->io->readdir(dir, entry, 0); |
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210 | } |
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211 | |
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212 | int vfs_readdir_stat(VFS_DIR dir, VFS_ENTRY *entry) { |
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213 | WS_ASSERT(dir); |
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214 | WS_ASSERT(entry); |
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215 | |
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216 | return dir->io->readdir(dir, entry, 1); |
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217 | } |
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218 | |
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219 | void vfs_closedir(VFS_DIR dir) { |
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220 | WS_ASSERT(dir); |
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221 | |
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222 | dir->io->close(dir); |
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223 | if(dir->ctx) { |
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224 | VFS_FREE(dir->ctx->pool, dir); |
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225 | } else { |
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226 | free(dir); |
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227 | } |
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228 | } |
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229 | |
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230 | int vfs_mkdir(VFSContext *ctx, char *path) { |
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231 | WS_ASSERT(ctx); |
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232 | WS_ASSERT(path); |
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233 | |
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234 | return vfs_path_op(ctx, path, ctx->vfs->mkdir, ACL_ADD_FILE); |
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235 | } |
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236 | |
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237 | int vfs_unlink(VFSContext *ctx, char *path) { |
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238 | WS_ASSERT(ctx); |
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239 | WS_ASSERT(path); |
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240 | |
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241 | return vfs_path_op(ctx, path, ctx->vfs->unlink, ACL_DELETE); |
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242 | } |
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243 | |
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244 | |
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245 | // private |
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246 | int vfs_path_op(VFSContext *ctx, char *path, vfs_op_f op, uint32_t access) { |
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247 | uint32_t access_mask = ctx->aclreqaccess; |
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248 | access_mask |= access; |
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249 | |
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250 | // ctx->aclreqaccess should be the complete access mask |
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251 | uint32_t m = ctx->aclreqaccess; // save original access mask |
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252 | ctx->aclreqaccess = access_mask; // set mask for vfs function call |
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253 | if((ctx->vfs->flags & VFS_CHECKS_ACL) != VFS_CHECKS_ACL) { |
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254 | // VFS does not evaluates the ACL itself, so we have to do it here |
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255 | SysACL sysacl; |
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256 | if(sys_acl_check(ctx, access_mask, &sysacl)) { |
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257 | return -1; |
54 | 258 | } |
259 | } | |
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260 | int ret = op(ctx, path); |
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261 | ctx->aclreqaccess = m; // restore original access mask |
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262 | return ret; |
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263 | } |
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264 | |
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265 | /* system vfs implementation */ |
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266 | |
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267 | SYS_FILE sys_vfs_open(VFSContext *ctx, char *path, int oflags) { |
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268 | uint32_t access_mask = ctx->aclreqaccess; |
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269 | pool_handle_t *pool = ctx->pool; |
54 | 270 | |
271 | // check ACLs | |
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272 | SysACL sysacl; |
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273 | if(sys_acl_check(ctx, access_mask, &sysacl)) { |
54 | 274 | return NULL; |
275 | } | |
276 | ||
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277 | if(sysacl.acl) { |
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278 | if(!fs_acl_check(&sysacl, ctx->user, path, access_mask)) { |
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279 | acl_set_error_status(ctx->sn, ctx->rq, sysacl.acl, ctx->user); |
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280 | return NULL; |
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281 | } |
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282 | } |
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283 | |
54 | 284 | // open file |
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285 | mode_t mode = S_IRUSR | S_IWUSR | S_IRGRP | S_IROTH; |
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286 | int fd = open(path, oflags, mode); |
54 | 287 | if(fd == -1) { |
288 | if(ctx) { | |
289 | ctx->vfs_errno = errno; | |
290 | sys_set_error_status(ctx); | |
291 | } | |
292 | return NULL; | |
293 | } | |
294 | ||
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295 | // if a file system acl is active, we set the owner for newly created files |
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296 | if(((oflags & O_CREAT) == O_CREAT) && sysacl.user_uid != -1) { |
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297 | if(fchown(fd, sysacl.user_uid, sysacl.user_gid)) { |
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298 | perror("vfs_open: fchown"); |
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299 | system_close(fd); |
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300 | return NULL; |
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301 | } |
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302 | } |
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303 | |
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304 | VFSFile *file = VFS_MALLOC(pool, sizeof(VFSFile)); |
54 | 305 | if(!file) { |
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306 | system_close(fd); |
54 | 307 | return NULL; |
308 | } | |
309 | file->ctx = ctx; | |
310 | file->data = NULL; | |
311 | file->fd = fd; | |
312 | file->io = &sys_file_io; | |
313 | return file; | |
314 | } | |
315 | ||
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316 | int sys_vfs_stat(VFSContext *ctx, char *path, struct stat *buf) { |
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317 | uint32_t access_mask = ctx->aclreqaccess; |
54 | 318 | |
319 | // check ACLs | |
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320 | SysACL sysacl; |
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321 | if(sys_acl_check(ctx, access_mask, &sysacl)) { |
57 | 322 | return -1; |
54 | 323 | } |
324 | ||
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325 | if(sysacl.acl) { |
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326 | if(!fs_acl_check(&sysacl, ctx->user, path, access_mask)) { |
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327 | acl_set_error_status(ctx->sn, ctx->rq, sysacl.acl, ctx->user); |
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328 | return -1; |
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329 | } |
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330 | } |
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331 | |
54 | 332 | // stat |
333 | if(stat(path, buf)) { | |
334 | if(ctx) { | |
335 | ctx->vfs_errno = errno; | |
336 | sys_set_error_status(ctx); | |
337 | } | |
338 | return -1; | |
339 | } | |
340 | ||
341 | return 0; | |
342 | } | |
343 | ||
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344 | int sys_vfs_fstat(VFSContext *ctx, SYS_FILE fd, struct stat *buf) { |
54 | 345 | // stat |
346 | if(fstat(fd->fd, buf)) { | |
347 | if(ctx) { | |
348 | ctx->vfs_errno = errno; | |
349 | } | |
350 | return -1; | |
351 | } | |
352 | ||
353 | return 0; | |
354 | } | |
355 | ||
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356 | VFS_DIR sys_vfs_opendir(VFSContext *ctx, char *path) { |
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357 | uint32_t access_mask = ctx->aclreqaccess; |
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358 | pool_handle_t *pool = ctx->pool; |
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359 | |
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360 | // check ACLs |
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361 | SysACL sysacl; |
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362 | if(sys_acl_check(ctx, access_mask, &sysacl)) { |
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363 | return NULL; |
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364 | } |
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365 | |
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366 | if(sysacl.acl) { |
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367 | if(!fs_acl_check(&sysacl, ctx->user, path, access_mask)) { |
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368 | acl_set_error_status(ctx->sn, ctx->rq, sysacl.acl, ctx->user); |
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369 | return NULL; |
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370 | } |
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371 | } |
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372 | |
72 | 373 | // open directory |
374 | #ifdef BSD | |
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375 | DIR *sys_dir = opendir(path); |
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376 | int dir_fd = sys_dir ? dirfd(sys_dir) : 0; |
72 | 377 | #else |
378 | int dir_fd = open(path, O_RDONLY); | |
379 | if(dir_fd == -1) { | |
380 | if(ctx) { | |
381 | ctx->vfs_errno = errno; | |
382 | sys_set_error_status(ctx); | |
383 | } | |
384 | return NULL; | |
385 | } | |
386 | DIR *sys_dir = fdopendir(dir_fd); | |
387 | #endif | |
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388 | if(!sys_dir) { |
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389 | if(ctx) { |
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390 | ctx->vfs_errno = errno; |
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391 | sys_set_error_status(ctx); |
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392 | } |
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393 | return NULL; |
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394 | } |
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395 | |
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396 | SysVFSDir *dir_data = VFS_MALLOC(pool, sizeof(SysVFSDir)); |
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397 | if(!dir_data) { |
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398 | closedir(sys_dir); |
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399 | return NULL; |
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400 | } |
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401 | long maxfilelen = fpathconf(dir_fd, _PC_NAME_MAX); |
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402 | size_t entry_len = offsetof(struct dirent, d_name) + maxfilelen + 1; |
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403 | dir_data->cur = VFS_MALLOC(pool, entry_len); |
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404 | if(!dir_data->cur) { |
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405 | closedir(sys_dir); |
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406 | VFS_FREE(pool, dir_data); |
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407 | return NULL; |
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408 | } |
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409 | dir_data->dir = sys_dir; |
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410 | |
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411 | VFSDir *dir = VFS_MALLOC(pool, sizeof(VFSDir)); |
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412 | if(!dir) { |
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413 | closedir(sys_dir); |
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414 | VFS_FREE(pool, dir_data->cur); |
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415 | VFS_FREE(pool, dir_data); |
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416 | return NULL; |
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417 | } |
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418 | dir->ctx = ctx; |
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419 | dir->data = dir_data; |
72 | 420 | dir->fd = dir_fd; |
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421 | dir->io = &sys_dir_io; |
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422 | return dir; |
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423 | } |
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424 | |
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425 | int sys_vfs_mkdir(VFSContext *ctx, char *path) { |
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426 | return sys_path_op(ctx, path, sys_mkdir); |
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427 | } |
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428 | |
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429 | int sys_vfs_unlink(VFSContext *ctx, char *path) { |
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430 | return sys_path_op(ctx, path, sys_unlink); |
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431 | } |
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432 | |
54 | 433 | |
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434 | int sys_path_op(VFSContext *ctx, char *path, sys_op_f op) { |
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435 | uint32_t access_mask = ctx->aclreqaccess; |
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436 | |
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437 | // check ACLs |
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438 | SysACL sysacl; |
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439 | if(sys_acl_check(ctx, access_mask, &sysacl)) { |
57 | 440 | return -1; |
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441 | } |
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442 | |
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443 | if(sysacl.acl) { |
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444 | if(!fs_acl_check(&sysacl, ctx->user, path, access_mask)) { |
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445 | acl_set_error_status(ctx->sn, ctx->rq, sysacl.acl, ctx->user); |
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446 | return -1; |
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447 | } |
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448 | } |
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449 | |
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450 | // do path operation |
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451 | if(op(ctx, path, &sysacl)) { |
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452 | // error |
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453 | ctx->vfs_errno = errno; |
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454 | sys_set_error_status(ctx); |
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455 | return -1; |
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456 | } |
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457 | |
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458 | return 0; |
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459 | } |
54 | 460 | |
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461 | int sys_acl_check(VFSContext *ctx, uint32_t access_mask, SysACL *sysacl) { |
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462 | if(sysacl) { |
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463 | sysacl->acl = NULL; |
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464 | } |
54 | 465 | if(!ctx) { |
466 | return 0; | |
467 | } | |
468 | ||
469 | ACLListHandle *acllist = ctx->acllist; | |
470 | if(acllist) { | |
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471 | ACLList *acl = acl_evallist( |
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472 | acllist, |
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473 | ctx->user, |
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474 | access_mask, |
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475 | &sysacl->acl); |
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476 | |
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477 | if(acl) { |
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478 | acl_set_error_status(ctx->sn, ctx->rq, acl, ctx->user); |
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479 | return 1; |
54 | 480 | } |
481 | } | |
482 | ||
483 | return 0; | |
484 | } | |
485 | ||
486 | void sys_set_error_status(VFSContext *ctx) { | |
487 | if(ctx->sn && ctx->rq) { | |
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488 | int status = util_errno2status(ctx->vfs_errno); |
54 | 489 | protocol_status(ctx->sn, ctx->rq, status, NULL); |
490 | } | |
491 | } | |
492 | ||
493 | ssize_t sys_file_read(SYS_FILE fd, void *buf, size_t nbyte) { | |
494 | return read(fd->fd, buf, nbyte); | |
495 | } | |
496 | ||
497 | ssize_t sys_file_write(SYS_FILE fd, const void *buf, size_t nbyte) { | |
498 | return write(fd->fd, buf, nbyte); | |
499 | } | |
500 | ||
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501 | ssize_t sys_file_pread(SYS_FILE fd, void *buf, size_t nbyte, off_t offset) { |
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502 | return pread(fd->fd, buf, nbyte, offset); |
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503 | } |
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504 | |
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505 | ssize_t sys_file_pwrite(SYS_FILE fd, const void *buf, size_t nbyte, off_t offset) { |
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506 | return pwrite(fd->fd, buf, nbyte, offset); |
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507 | } |
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508 | |
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509 | off_t sys_file_seek(SYS_FILE fd, off_t offset, int whence) { |
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510 | return lseek(fd->fd, offset, whence); |
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511 | } |
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512 | |
54 | 513 | void sys_file_close(SYS_FILE fd) { |
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514 | system_close(fd->fd); |
54 | 515 | } |
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516 | |
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517 | int sys_file_aioread(aiocb_s *aiocb) { |
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518 | WS_ASSERT(aiocb->buf); |
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519 | WS_ASSERT(aiocb->nbytes > 0); |
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520 | return ev_aioread(aiocb->filedes->fd, aiocb); |
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521 | } |
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522 | |
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523 | int sys_file_aiowrite(aiocb_s *aiocb) { |
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524 | WS_ASSERT(aiocb->buf); |
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525 | WS_ASSERT(aiocb->nbytes > 0); |
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526 | return ev_aiowrite(aiocb->filedes->fd, aiocb); |
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527 | } |
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528 | |
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529 | |
55
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530 | int sys_dir_read(VFS_DIR dir, VFS_ENTRY *entry, int getstat) { |
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531 | SysVFSDir *dirdata = dir->data; |
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532 | struct dirent *result = NULL; |
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533 | int s = readdir_r(dirdata->dir, dirdata->cur, &result); |
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534 | if(!s && result) { |
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535 | char *name = result->d_name; |
58
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536 | if(!strcmp(name, ".") || !strcmp(name, "..")) { |
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537 | return sys_dir_read(dir, entry, getstat); |
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538 | } else { |
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539 | entry->name = name; |
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540 | if(getstat) { |
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541 | // TODO: check ACLs again for new path |
105
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542 | if(fstatat(dir->fd, result->d_name, &entry->stat, 0)) { |
58
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543 | entry->stat_errno = errno; |
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544 | } |
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545 | entry->stat_extra = NULL; |
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546 | } |
58
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547 | return 1; |
55
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548 | } |
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549 | } else { |
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550 | return 0; |
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551 | } |
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552 | } |
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553 | |
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554 | void sys_dir_close(VFS_DIR dir) { |
105
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555 | SysVFSDir *dirdata = dir->data; |
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556 | closedir(dirdata->dir); |
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557 | |
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558 | pool_handle_t *pool = dir->ctx->pool; |
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559 | if(pool) { |
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|
560 | pool_free(pool, dirdata->cur); |
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561 | pool_free(pool, dirdata); |
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562 | pool_free(pool, dir); |
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563 | } else { |
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|
564 | free(dirdata->cur); |
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565 | free(dirdata); |
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566 | free(dir); |
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567 | } |
55
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|
568 | } |
56
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|
569 | |
63
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|
570 | int sys_mkdir(VFSContext *ctx, char *path, SysACL *sysacl) { |
56
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|
571 | mode_t mode = S_IRWXU | S_IRGRP | S_IXGRP | S_IROTH | S_IXOTH; |
63
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|
572 | int ret = mkdir(path, mode); |
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|
573 | if(ret == 0) { |
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|
574 | if(sysacl->user_uid != -1) { |
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575 | if(chown(path, sysacl->user_uid, sysacl->user_gid)) { |
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576 | // TODO: error |
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577 | } |
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578 | } |
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|
579 | } |
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|
580 | return ret; |
56
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581 | } |
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|
582 | |
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583 | int sys_unlink(VFSContext *ctx, char *path, SysACL *sysacl) { |
56
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|
584 | return unlink(path); |
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|
585 | } |
58
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|
586 | |
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|
587 | /* public file api */ |
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588 | |
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|
589 | NSAPI_PUBLIC int system_fread(SYS_FILE fd, void *buf, int nbyte) { |
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590 | return fd->io->read(fd, buf, nbyte); |
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|
591 | } |
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|
592 | |
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|
593 | NSAPI_PUBLIC int system_fwrite(SYS_FILE fd, const void *buf, int nbyte) { |
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|
594 | return fd->io->write(fd, buf, nbyte); |
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595 | } |
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596 | |
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597 | NSAPI_PUBLIC int system_pread(SYS_FILE fd, void *buf, int nbyte, off_t offset) { |
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598 | return fd->io->pread(fd, buf, nbyte, offset); |
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599 | } |
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600 | |
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|
601 | NSAPI_PUBLIC int system_pwrite(SYS_FILE fd, const void *buf, int nbyte, off_t offset) { |
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|
602 | return fd->io->pwrite(fd, buf, nbyte, offset); |
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603 | } |
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|
604 | |
66
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|
605 | NSAPI_PUBLIC off_t system_lseek(SYS_FILE fd, off_t offset, int whence) { |
74babc0082b7
added authentication cache
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|
606 | return fd->io->seek(fd, offset, whence); |
74babc0082b7
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607 | } |
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608 | |
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609 | NSAPI_PUBLIC int system_fclose(SYS_FILE fd) { |
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610 | vfs_close(fd); |
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611 | return 0; |
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612 | } |
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613 | |
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614 | // AIO API |
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615 | |
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616 | NSAPI_PUBLIC int system_aio_read(aiocb_s *aiocb) { |
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617 | if(!aiocb->event || !aiocb->evhandler) { |
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618 | return -1; |
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619 | } |
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620 | |
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621 | SYS_FILE file = aiocb->filedes; |
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622 | aiocb->event->object = (intptr_t)aiocb; |
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623 | if(file->io->opt_aioread) { |
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624 | return file->io->opt_aioread(aiocb); |
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625 | } else { |
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626 | vfs_queue_aio(aiocb, VFS_AIO_READ); |
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627 | return 0; |
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628 | } |
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629 | } |
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630 | |
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631 | NSAPI_PUBLIC int system_aio_write(aiocb_s *aiocb) { |
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632 | if(!aiocb->event || !aiocb->evhandler) { |
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633 | return -1; |
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634 | } |
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635 | |
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636 | SYS_FILE file = aiocb->filedes; |
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637 | aiocb->event->object = (intptr_t)aiocb; |
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638 | if(file->io->opt_aiowrite) { |
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639 | return file->io->opt_aiowrite(aiocb); |
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640 | } else { |
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641 | vfs_queue_aio(aiocb, VFS_AIO_WRITE); |
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642 | return 0; |
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643 | } |
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644 | } |
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645 | |
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646 | static void* vfs_aio_read(aiocb_s *aiocb) { |
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647 | int result = system_pread(aiocb->filedes, aiocb->buf, aiocb->nbytes, aiocb->offset); |
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648 | aiocb->result = result; |
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649 | if(result < 0) { |
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650 | aiocb->result_errno = errno; |
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651 | } |
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652 | event_send(aiocb->evhandler, aiocb->event); |
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653 | return NULL; |
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654 | } |
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655 | |
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656 | static void* vfs_aio_write(aiocb_s *aiocb) { |
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657 | int result = system_pwrite(aiocb->filedes, aiocb->buf, aiocb->nbytes, aiocb->offset); |
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658 | aiocb->result = result; |
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659 | if(result < 0) { |
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660 | aiocb->result_errno = errno; |
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661 | } |
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662 | event_send(aiocb->evhandler, aiocb->event); |
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663 | return NULL; |
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664 | } |
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665 | |
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666 | void vfs_queue_aio(aiocb_s *aiocb, VFSAioOp op) { |
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667 | threadpool_t *pool = get_default_iopool(); // TODO: use specific IOPool |
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668 | if(op == VFS_AIO_READ) { |
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669 | threadpool_run(pool, (job_callback_f)vfs_aio_read, aiocb); |
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670 | } else if(VFS_AIO_WRITE) { |
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671 | threadpool_run(pool, (job_callback_f)vfs_aio_write, aiocb); |
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672 | } |
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673 | } |