author | ihse |
Wed, 28 Mar 2018 23:56:08 +0200 | |
changeset 49440 | 396ea30afbd5 |
parent 47216 | 71c04702a3d5 |
child 53004 | b9d34a97a4be |
child 56721 | 01b558efd286 |
permissions | -rw-r--r-- |
1 | 1 |
/* |
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* Copyright (c) 2003, 2018, Oracle and/or its affiliates. All rights reserved. |
1 | 3 |
* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
1 | 22 |
* |
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*/ |
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#include <stdarg.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <fcntl.h> |
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#include <thread_db.h> |
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#include "libproc_impl.h" |
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31 |
||
32 |
#define SA_ALTROOT "SA_ALTROOT" |
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33 |
||
34 |
int pathmap_open(const char* name) { |
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static const char *alt_root = NULL; |
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static int alt_root_initialized = 0; |
1 | 37 |
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int fd; |
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char alt_path[PATH_MAX + 1], *alt_path_end; |
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const char *s; |
33794 | 41 |
int free_space; |
1 | 42 |
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if (!alt_root_initialized) { |
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alt_root_initialized = -1; |
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alt_root = getenv(SA_ALTROOT); |
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} |
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|
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if (alt_root == NULL) { |
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return open(name, O_RDONLY); |
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} |
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if (strlen(alt_root) + strlen(name) > PATH_MAX) { |
33794 | 54 |
// Buffer too small. |
55 |
return -1; |
|
56 |
} |
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57 |
||
58 |
strncpy(alt_path, alt_root, PATH_MAX); |
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alt_path[PATH_MAX] = '\0'; |
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alt_path_end = alt_path + strlen(alt_path); |
33794 | 61 |
free_space = PATH_MAX + 1 - (alt_path_end-alt_path); |
1 | 62 |
|
33794 | 63 |
// Strip path items one by one and try to open file with alt_root prepended. |
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s = name; |
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65 |
while (1) { |
33794 | 66 |
strncat(alt_path, s, free_space); |
67 |
s += 1; // Skip /. |
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68 |
|
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fd = open(alt_path, O_RDONLY); |
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if (fd >= 0) { |
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print_debug("path %s substituted for %s\n", alt_path, name); |
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return fd; |
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} |
1 | 74 |
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// Linker always put full path to solib to process, so we can rely |
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// on presence of /. If slash is not present, it means, that SOlib doesn't |
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// physically exist (e.g. linux-gate.so) and we fail opening it anyway |
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if ((s = strchr(s, '/')) == NULL) { |
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break; |
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} |
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33794 | 82 |
// Cut off what we appended above. |
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*alt_path_end = '\0'; |
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} |
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|
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return -1; |
1 | 87 |
} |
88 |
||
89 |
static bool _libsaproc_debug; |
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90 |
||
91 |
void print_debug(const char* format,...) { |
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92 |
if (_libsaproc_debug) { |
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93 |
va_list alist; |
|
94 |
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95 |
va_start(alist, format); |
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fputs("libsaproc DEBUG: ", stderr); |
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97 |
vfprintf(stderr, format, alist); |
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98 |
va_end(alist); |
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99 |
} |
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100 |
} |
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101 |
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15734 | 102 |
void print_error(const char* format,...) { |
103 |
va_list alist; |
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104 |
va_start(alist, format); |
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105 |
fputs("ERROR: ", stderr); |
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106 |
vfprintf(stderr, format, alist); |
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107 |
va_end(alist); |
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108 |
} |
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109 |
||
1 | 110 |
bool is_debug() { |
111 |
return _libsaproc_debug; |
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112 |
} |
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113 |
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114 |
// initialize libproc |
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49440 | 115 |
JNIEXPORT bool JNICALL |
116 |
init_libproc(bool debug) { |
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1 | 117 |
// init debug mode |
118 |
_libsaproc_debug = debug; |
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119 |
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120 |
// initialize the thread_db library |
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121 |
if (td_init() != TD_OK) { |
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122 |
print_debug("libthread_db's td_init failed\n"); |
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123 |
return false; |
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124 |
} |
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125 |
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126 |
return true; |
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127 |
} |
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128 |
||
129 |
static void destroy_lib_info(struct ps_prochandle* ph) { |
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lib_info* lib = ph->libs; |
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while (lib) { |
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132 |
lib_info *next = lib->next; |
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if (lib->symtab) { |
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134 |
destroy_symtab(lib->symtab); |
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135 |
} |
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136 |
free(lib); |
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lib = next; |
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} |
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139 |
} |
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140 |
||
141 |
static void destroy_thread_info(struct ps_prochandle* ph) { |
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thread_info* thr = ph->threads; |
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while (thr) { |
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thread_info *next = thr->next; |
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free(thr); |
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thr = next; |
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} |
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} |
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||
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// ps_prochandle cleanup |
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151 |
||
152 |
// ps_prochandle cleanup |
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49440 | 153 |
JNIEXPORT void JNICALL |
154 |
Prelease(struct ps_prochandle* ph) { |
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1 | 155 |
// do the "derived class" clean-up first |
156 |
ph->ops->release(ph); |
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157 |
destroy_lib_info(ph); |
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158 |
destroy_thread_info(ph); |
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159 |
free(ph); |
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160 |
} |
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161 |
||
162 |
lib_info* add_lib_info(struct ps_prochandle* ph, const char* libname, uintptr_t base) { |
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163 |
return add_lib_info_fd(ph, libname, -1, base); |
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164 |
} |
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165 |
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lib_info* add_lib_info_fd(struct ps_prochandle* ph, const char* libname, int fd, uintptr_t base) { |
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lib_info* newlib; |
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168 |
||
169 |
if ( (newlib = (lib_info*) calloc(1, sizeof(struct lib_info))) == NULL) { |
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170 |
print_debug("can't allocate memory for lib_info\n"); |
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171 |
return NULL; |
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172 |
} |
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30281 | 174 |
if (strlen(libname) >= sizeof(newlib->name)) { |
175 |
print_debug("libname %s too long\n", libname); |
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free(newlib); |
30281 | 177 |
return NULL; |
178 |
} |
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strcpy(newlib->name, libname); |
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180 |
||
1 | 181 |
newlib->base = base; |
182 |
||
183 |
if (fd == -1) { |
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184 |
if ( (newlib->fd = pathmap_open(newlib->name)) < 0) { |
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185 |
print_debug("can't open shared object %s\n", newlib->name); |
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186 |
free(newlib); |
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187 |
return NULL; |
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188 |
} |
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189 |
} else { |
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190 |
newlib->fd = fd; |
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191 |
} |
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192 |
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193 |
// check whether we have got an ELF file. /proc/<pid>/map |
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194 |
// gives out all file mappings and not just shared objects |
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195 |
if (is_elf_file(newlib->fd) == false) { |
|
196 |
close(newlib->fd); |
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197 |
free(newlib); |
|
198 |
return NULL; |
|
199 |
} |
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200 |
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newlib->symtab = build_symtab(newlib->fd, libname); |
1 | 202 |
if (newlib->symtab == NULL) { |
203 |
print_debug("symbol table build failed for %s\n", newlib->name); |
|
204 |
} |
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205 |
||
206 |
// even if symbol table building fails, we add the lib_info. |
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207 |
// This is because we may need to read from the ELF file for core file |
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208 |
// address read functionality. lookup_symbol checks for NULL symtab. |
|
209 |
if (ph->libs) { |
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210 |
ph->lib_tail->next = newlib; |
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211 |
ph->lib_tail = newlib; |
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212 |
} else { |
|
213 |
ph->libs = ph->lib_tail = newlib; |
|
214 |
} |
|
215 |
ph->num_libs++; |
|
216 |
||
217 |
return newlib; |
|
218 |
} |
|
219 |
||
220 |
// lookup for a specific symbol |
|
221 |
uintptr_t lookup_symbol(struct ps_prochandle* ph, const char* object_name, |
|
222 |
const char* sym_name) { |
|
223 |
// ignore object_name. search in all libraries |
|
224 |
// FIXME: what should we do with object_name?? The library names are obtained |
|
225 |
// by parsing /proc/<pid>/maps, which may not be the same as object_name. |
|
226 |
// What we need is a utility to map object_name to real file name, something |
|
227 |
// dlopen() does by looking at LD_LIBRARY_PATH and /etc/ld.so.cache. For |
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228 |
// now, we just ignore object_name and do a global search for the symbol. |
|
229 |
||
230 |
lib_info* lib = ph->libs; |
|
231 |
while (lib) { |
|
232 |
if (lib->symtab) { |
|
233 |
uintptr_t res = search_symbol(lib->symtab, lib->base, sym_name, NULL); |
|
234 |
if (res) return res; |
|
235 |
} |
|
236 |
lib = lib->next; |
|
237 |
} |
|
238 |
||
239 |
print_debug("lookup failed for symbol '%s' in obj '%s'\n", |
|
240 |
sym_name, object_name); |
|
241 |
return (uintptr_t) NULL; |
|
242 |
} |
|
243 |
||
244 |
||
245 |
const char* symbol_for_pc(struct ps_prochandle* ph, uintptr_t addr, uintptr_t* poffset) { |
|
246 |
const char* res = NULL; |
|
247 |
lib_info* lib = ph->libs; |
|
248 |
while (lib) { |
|
249 |
if (lib->symtab && addr >= lib->base) { |
|
250 |
res = nearest_symbol(lib->symtab, addr - lib->base, poffset); |
|
251 |
if (res) return res; |
|
252 |
} |
|
253 |
lib = lib->next; |
|
254 |
} |
|
255 |
return NULL; |
|
256 |
} |
|
257 |
||
258 |
// add a thread to ps_prochandle |
|
259 |
thread_info* add_thread_info(struct ps_prochandle* ph, pthread_t pthread_id, lwpid_t lwp_id) { |
|
260 |
thread_info* newthr; |
|
261 |
if ( (newthr = (thread_info*) calloc(1, sizeof(thread_info))) == NULL) { |
|
262 |
print_debug("can't allocate memory for thread_info\n"); |
|
263 |
return NULL; |
|
264 |
} |
|
265 |
||
266 |
// initialize thread info |
|
267 |
newthr->pthread_id = pthread_id; |
|
268 |
newthr->lwp_id = lwp_id; |
|
269 |
||
270 |
// add new thread to the list |
|
271 |
newthr->next = ph->threads; |
|
272 |
ph->threads = newthr; |
|
273 |
ph->num_threads++; |
|
274 |
return newthr; |
|
275 |
} |
|
276 |
||
277 |
||
278 |
// struct used for client data from thread_db callback |
|
279 |
struct thread_db_client_data { |
|
280 |
struct ps_prochandle* ph; |
|
281 |
thread_info_callback callback; |
|
282 |
}; |
|
283 |
||
284 |
// callback function for libthread_db |
|
285 |
static int thread_db_callback(const td_thrhandle_t *th_p, void *data) { |
|
286 |
struct thread_db_client_data* ptr = (struct thread_db_client_data*) data; |
|
287 |
td_thrinfo_t ti; |
|
288 |
td_err_e err; |
|
289 |
||
290 |
memset(&ti, 0, sizeof(ti)); |
|
291 |
err = td_thr_get_info(th_p, &ti); |
|
292 |
if (err != TD_OK) { |
|
293 |
print_debug("libthread_db : td_thr_get_info failed, can't get thread info\n"); |
|
294 |
return err; |
|
295 |
} |
|
296 |
||
297 |
print_debug("thread_db : pthread %d (lwp %d)\n", ti.ti_tid, ti.ti_lid); |
|
298 |
||
299 |
if (ptr->callback(ptr->ph, ti.ti_tid, ti.ti_lid) != true) |
|
300 |
return TD_ERR; |
|
301 |
||
302 |
return TD_OK; |
|
303 |
} |
|
304 |
||
305 |
// read thread_info using libthread_db |
|
306 |
bool read_thread_info(struct ps_prochandle* ph, thread_info_callback cb) { |
|
307 |
struct thread_db_client_data mydata; |
|
308 |
td_thragent_t* thread_agent = NULL; |
|
309 |
if (td_ta_new(ph, &thread_agent) != TD_OK) { |
|
310 |
print_debug("can't create libthread_db agent\n"); |
|
311 |
return false; |
|
312 |
} |
|
313 |
||
314 |
mydata.ph = ph; |
|
315 |
mydata.callback = cb; |
|
316 |
||
317 |
// we use libthread_db iterator to iterate thru list of threads. |
|
318 |
if (td_ta_thr_iter(thread_agent, thread_db_callback, &mydata, |
|
319 |
TD_THR_ANY_STATE, TD_THR_LOWEST_PRIORITY, |
|
320 |
TD_SIGNO_MASK, TD_THR_ANY_USER_FLAGS) != TD_OK) { |
|
321 |
td_ta_delete(thread_agent); |
|
322 |
return false; |
|
323 |
} |
|
324 |
||
325 |
// delete thread agent |
|
326 |
td_ta_delete(thread_agent); |
|
327 |
return true; |
|
328 |
} |
|
329 |
||
330 |
||
331 |
// get number of threads |
|
332 |
int get_num_threads(struct ps_prochandle* ph) { |
|
333 |
return ph->num_threads; |
|
334 |
} |
|
335 |
||
336 |
// get lwp_id of n'th thread |
|
337 |
lwpid_t get_lwp_id(struct ps_prochandle* ph, int index) { |
|
338 |
int count = 0; |
|
339 |
thread_info* thr = ph->threads; |
|
340 |
while (thr) { |
|
341 |
if (count == index) { |
|
342 |
return thr->lwp_id; |
|
343 |
} |
|
344 |
count++; |
|
345 |
thr = thr->next; |
|
346 |
} |
|
347 |
return -1; |
|
348 |
} |
|
349 |
||
350 |
// get regs for a given lwp |
|
351 |
bool get_lwp_regs(struct ps_prochandle* ph, lwpid_t lwp_id, struct user_regs_struct* regs) { |
|
352 |
return ph->ops->get_lwp_regs(ph, lwp_id, regs); |
|
353 |
} |
|
354 |
||
355 |
// get number of shared objects |
|
356 |
int get_num_libs(struct ps_prochandle* ph) { |
|
357 |
return ph->num_libs; |
|
358 |
} |
|
359 |
||
360 |
// get name of n'th solib |
|
361 |
const char* get_lib_name(struct ps_prochandle* ph, int index) { |
|
362 |
int count = 0; |
|
363 |
lib_info* lib = ph->libs; |
|
364 |
while (lib) { |
|
365 |
if (count == index) { |
|
366 |
return lib->name; |
|
367 |
} |
|
368 |
count++; |
|
369 |
lib = lib->next; |
|
370 |
} |
|
371 |
return NULL; |
|
372 |
} |
|
373 |
||
374 |
// get base address of a lib |
|
375 |
uintptr_t get_lib_base(struct ps_prochandle* ph, int index) { |
|
376 |
int count = 0; |
|
377 |
lib_info* lib = ph->libs; |
|
378 |
while (lib) { |
|
379 |
if (count == index) { |
|
380 |
return lib->base; |
|
381 |
} |
|
382 |
count++; |
|
383 |
lib = lib->next; |
|
384 |
} |
|
385 |
return (uintptr_t)NULL; |
|
386 |
} |
|
387 |
||
388 |
bool find_lib(struct ps_prochandle* ph, const char *lib_name) { |
|
389 |
lib_info *p = ph->libs; |
|
390 |
while (p) { |
|
391 |
if (strcmp(p->name, lib_name) == 0) { |
|
392 |
return true; |
|
393 |
} |
|
394 |
p = p->next; |
|
395 |
} |
|
396 |
return false; |
|
397 |
} |
|
398 |
||
399 |
//-------------------------------------------------------------------------- |
|
400 |
// proc service functions |
|
401 |
||
402 |
// get process id |
|
49440 | 403 |
JNIEXPORT pid_t JNICALL |
404 |
ps_getpid(struct ps_prochandle *ph) { |
|
1 | 405 |
return ph->pid; |
406 |
} |
|
407 |
||
408 |
// ps_pglobal_lookup() looks up the symbol sym_name in the symbol table |
|
409 |
// of the load object object_name in the target process identified by ph. |
|
410 |
// It returns the symbol's value as an address in the target process in |
|
411 |
// *sym_addr. |
|
412 |
||
49440 | 413 |
JNIEXPORT ps_err_e JNICALL |
414 |
ps_pglobal_lookup(struct ps_prochandle *ph, const char *object_name, |
|
1 | 415 |
const char *sym_name, psaddr_t *sym_addr) { |
416 |
*sym_addr = (psaddr_t) lookup_symbol(ph, object_name, sym_name); |
|
417 |
return (*sym_addr ? PS_OK : PS_NOSYM); |
|
418 |
} |
|
419 |
||
420 |
// read "size" bytes info "buf" from address "addr" |
|
49440 | 421 |
JNIEXPORT ps_err_e JNICALL |
422 |
ps_pdread(struct ps_prochandle *ph, psaddr_t addr, |
|
1 | 423 |
void *buf, size_t size) { |
424 |
return ph->ops->p_pread(ph, (uintptr_t) addr, buf, size)? PS_OK: PS_ERR; |
|
425 |
} |
|
426 |
||
427 |
// write "size" bytes of data to debuggee at address "addr" |
|
49440 | 428 |
JNIEXPORT ps_err_e JNICALL |
429 |
ps_pdwrite(struct ps_prochandle *ph, psaddr_t addr, |
|
1 | 430 |
const void *buf, size_t size) { |
431 |
return ph->ops->p_pwrite(ph, (uintptr_t)addr, buf, size)? PS_OK: PS_ERR; |
|
432 |
} |
|
433 |
||
434 |
// ------------------------------------------------------------------------ |
|
435 |
// Functions below this point are not yet implemented. They are here only |
|
436 |
// to make the linker happy. |
|
437 |
||
49440 | 438 |
JNIEXPORT ps_err_e JNICALL |
439 |
ps_lsetfpregs(struct ps_prochandle *ph, lwpid_t lid, const prfpregset_t *fpregs) { |
|
1 | 440 |
print_debug("ps_lsetfpregs not implemented\n"); |
441 |
return PS_OK; |
|
442 |
} |
|
443 |
||
49440 | 444 |
JNIEXPORT ps_err_e JNICALL |
445 |
ps_lsetregs(struct ps_prochandle *ph, lwpid_t lid, const prgregset_t gregset) { |
|
1 | 446 |
print_debug("ps_lsetregs not implemented\n"); |
447 |
return PS_OK; |
|
448 |
} |
|
449 |
||
49440 | 450 |
JNIEXPORT ps_err_e JNICALL |
451 |
ps_lgetfpregs(struct ps_prochandle *ph, lwpid_t lid, prfpregset_t *fpregs) { |
|
1 | 452 |
print_debug("ps_lgetfpregs not implemented\n"); |
453 |
return PS_OK; |
|
454 |
} |
|
455 |
||
49440 | 456 |
JNIEXPORT ps_err_e JNICALL |
457 |
ps_lgetregs(struct ps_prochandle *ph, lwpid_t lid, prgregset_t gregset) { |
|
1 | 458 |
print_debug("ps_lgetfpregs not implemented\n"); |
459 |
return PS_OK; |
|
460 |
} |
|
461 |
||
462 |
// new libthread_db of NPTL seem to require this symbol |
|
49440 | 463 |
JNIEXPORT ps_err_e JNICALL |
464 |
ps_get_thread_area() { |
|
1 | 465 |
print_debug("ps_get_thread_area not implemented\n"); |
466 |
return PS_OK; |
|
467 |
} |