author | xlu |
Wed, 24 Dec 2008 13:06:09 -0800 | |
changeset 1888 | bbf498fb4354 |
parent 1066 | 717c3345024f |
child 2880 | c2974244a496 |
permissions | -rw-r--r-- |
1 | 1 |
/* |
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* Copyright 1997-2008 Sun Microsystems, Inc. All Rights Reserved. |
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* 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 Sun Microsystems, Inc., 4150 Network Circle, Santa Clara, |
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* CA 95054 USA or visit www.sun.com if you need additional information or |
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* have any questions. |
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* |
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*/ |
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||
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# include "incls/_precompiled.incl" |
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# include "incls/_frame_x86.cpp.incl" |
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#ifdef ASSERT |
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void RegisterMap::check_location_valid() { |
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} |
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#endif |
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// Profiling/safepoint support |
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bool frame::safe_for_sender(JavaThread *thread) { |
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address sp = (address)_sp; |
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address fp = (address)_fp; |
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address unextended_sp = (address)_unextended_sp; |
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// sp must be within the stack |
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bool sp_safe = (sp <= thread->stack_base()) && |
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(sp >= thread->stack_base() - thread->stack_size()); |
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if (!sp_safe) { |
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return false; |
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} |
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// unextended sp must be within the stack and above or equal sp |
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bool unextended_sp_safe = (unextended_sp <= thread->stack_base()) && |
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(unextended_sp >= sp); |
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if (!unextended_sp_safe) { |
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return false; |
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} |
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// an fp must be within the stack and above (but not equal) sp |
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bool fp_safe = (fp <= thread->stack_base()) && (fp > sp); |
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// We know sp/unextended_sp are safe only fp is questionable here |
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// If the current frame is known to the code cache then we can attempt to |
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// to construct the sender and do some validation of it. This goes a long way |
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// toward eliminating issues when we get in frame construction code |
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if (_cb != NULL ) { |
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// First check if frame is complete and tester is reliable |
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// Unfortunately we can only check frame complete for runtime stubs and nmethod |
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// other generic buffer blobs are more problematic so we just assume they are |
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// ok. adapter blobs never have a frame complete and are never ok. |
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if (!_cb->is_frame_complete_at(_pc)) { |
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if (_cb->is_nmethod() || _cb->is_adapter_blob() || _cb->is_runtime_stub()) { |
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return false; |
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} |
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} |
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// Entry frame checks |
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if (is_entry_frame()) { |
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// an entry frame must have a valid fp. |
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if (!fp_safe) return false; |
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// Validate the JavaCallWrapper an entry frame must have |
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address jcw = (address)entry_frame_call_wrapper(); |
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bool jcw_safe = (jcw <= thread->stack_base()) && ( jcw > fp); |
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return jcw_safe; |
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} |
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intptr_t* sender_sp = NULL; |
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address sender_pc = NULL; |
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if (is_interpreted_frame()) { |
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// fp must be safe |
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if (!fp_safe) { |
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return false; |
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} |
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sender_pc = (address) this->fp()[return_addr_offset]; |
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sender_sp = (intptr_t*) addr_at(sender_sp_offset); |
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|
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} else { |
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// must be some sort of compiled/runtime frame |
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// fp does not have to be safe (although it could be check for c1?) |
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|
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sender_sp = _unextended_sp + _cb->frame_size(); |
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// On Intel the return_address is always the word on the stack |
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sender_pc = (address) *(sender_sp-1); |
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} |
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|
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// We must always be able to find a recognizable pc |
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CodeBlob* sender_blob = CodeCache::find_blob_unsafe(sender_pc); |
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if (sender_pc == NULL || sender_blob == NULL) { |
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return false; |
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} |
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|
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// If the potential sender is the interpreter then we can do some more checking |
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if (Interpreter::contains(sender_pc)) { |
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|
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// ebp is always saved in a recognizable place in any code we generate. However |
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// only if the sender is interpreted/call_stub (c1 too?) are we certain that the saved ebp |
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// is really a frame pointer. |
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intptr_t *saved_fp = (intptr_t*)*(sender_sp - frame::sender_sp_offset); |
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bool saved_fp_safe = ((address)saved_fp <= thread->stack_base()) && (saved_fp > sender_sp); |
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|
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if (!saved_fp_safe) { |
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return false; |
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} |
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|
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// construct the potential sender |
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|
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frame sender(sender_sp, saved_fp, sender_pc); |
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|
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return sender.is_interpreted_frame_valid(thread); |
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|
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} |
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// Could just be some random pointer within the codeBlob |
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if (!sender_blob->instructions_contains(sender_pc)) return false; |
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|
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// We should never be able to see an adapter if the current frame is something from code cache |
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if ( sender_blob->is_adapter_blob()) { |
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return false; |
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151 |
} |
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152 |
|
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153 |
// Could be the call_stub |
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154 |
|
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155 |
if (StubRoutines::returns_to_call_stub(sender_pc)) { |
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156 |
intptr_t *saved_fp = (intptr_t*)*(sender_sp - frame::sender_sp_offset); |
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157 |
bool saved_fp_safe = ((address)saved_fp <= thread->stack_base()) && (saved_fp > sender_sp); |
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|
158 |
|
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159 |
if (!saved_fp_safe) { |
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160 |
return false; |
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161 |
} |
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162 |
|
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163 |
// construct the potential sender |
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164 |
|
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165 |
frame sender(sender_sp, saved_fp, sender_pc); |
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166 |
|
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167 |
// Validate the JavaCallWrapper an entry frame must have |
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address jcw = (address)sender.entry_frame_call_wrapper(); |
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169 |
|
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170 |
bool jcw_safe = (jcw <= thread->stack_base()) && ( jcw > (address)sender.fp()); |
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171 |
|
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172 |
return jcw_safe; |
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173 |
} |
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174 |
|
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175 |
// If the frame size is 0 something is bad because every nmethod has a non-zero frame size |
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176 |
// because the return address counts against the callee's frame. |
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177 |
|
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178 |
if (sender_blob->frame_size() == 0) { |
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179 |
assert(!sender_blob->is_nmethod(), "should count return address at least"); |
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180 |
return false; |
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181 |
} |
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182 |
|
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183 |
// We should never be able to see anything here except an nmethod. If something in the |
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184 |
// code cache (current frame) is called by an entity within the code cache that entity |
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185 |
// should not be anything but the call stub (already covered), the interpreter (already covered) |
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// or an nmethod. |
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187 |
|
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188 |
assert(sender_blob->is_nmethod(), "Impossible call chain"); |
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189 |
|
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190 |
// Could put some more validation for the potential non-interpreted sender |
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191 |
// frame we'd create by calling sender if I could think of any. Wait for next crash in forte... |
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192 |
|
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193 |
// One idea is seeing if the sender_pc we have is one that we'd expect to call to current cb |
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194 |
|
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195 |
// We've validated the potential sender that would be created |
1 | 196 |
return true; |
197 |
} |
|
354
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198 |
|
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199 |
// Must be native-compiled frame. Since sender will try and use fp to find |
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200 |
// linkages it must be safe |
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201 |
|
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202 |
if (!fp_safe) { |
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203 |
return false; |
1 | 204 |
} |
354
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205 |
|
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206 |
// Will the pc we fetch be non-zero (which we'll find at the oldest frame) |
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207 |
|
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208 |
if ( (address) this->fp()[return_addr_offset] == NULL) return false; |
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209 |
|
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210 |
|
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211 |
// could try and do some more potential verification of native frame if we could think of some... |
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212 |
|
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213 |
return true; |
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214 |
|
1 | 215 |
} |
216 |
||
217 |
||
218 |
void frame::patch_pc(Thread* thread, address pc) { |
|
219 |
if (TracePcPatching) { |
|
1066 | 220 |
tty->print_cr("patch_pc at address" INTPTR_FORMAT " [" INTPTR_FORMAT " -> " INTPTR_FORMAT "] ", |
221 |
&((address *)sp())[-1], ((address *)sp())[-1], pc); |
|
1 | 222 |
} |
223 |
((address *)sp())[-1] = pc; |
|
224 |
_cb = CodeCache::find_blob(pc); |
|
225 |
if (_cb != NULL && _cb->is_nmethod() && ((nmethod*)_cb)->is_deopt_pc(_pc)) { |
|
226 |
address orig = (((nmethod*)_cb)->get_original_pc(this)); |
|
227 |
assert(orig == _pc, "expected original to be stored before patching"); |
|
228 |
_deopt_state = is_deoptimized; |
|
229 |
// leave _pc as is |
|
230 |
} else { |
|
231 |
_deopt_state = not_deoptimized; |
|
232 |
_pc = pc; |
|
233 |
} |
|
234 |
} |
|
235 |
||
236 |
bool frame::is_interpreted_frame() const { |
|
237 |
return Interpreter::contains(pc()); |
|
238 |
} |
|
239 |
||
240 |
int frame::frame_size() const { |
|
241 |
RegisterMap map(JavaThread::current(), false); |
|
242 |
frame sender = this->sender(&map); |
|
243 |
return sender.sp() - sp(); |
|
244 |
} |
|
245 |
||
246 |
intptr_t* frame::entry_frame_argument_at(int offset) const { |
|
247 |
// convert offset to index to deal with tsi |
|
248 |
int index = (Interpreter::expr_offset_in_bytes(offset)/wordSize); |
|
249 |
// Entry frame's arguments are always in relation to unextended_sp() |
|
250 |
return &unextended_sp()[index]; |
|
251 |
} |
|
252 |
||
253 |
// sender_sp |
|
254 |
#ifdef CC_INTERP |
|
255 |
intptr_t* frame::interpreter_frame_sender_sp() const { |
|
256 |
assert(is_interpreted_frame(), "interpreted frame expected"); |
|
257 |
// QQQ why does this specialize method exist if frame::sender_sp() does same thing? |
|
258 |
// seems odd and if we always know interpreted vs. non then sender_sp() is really |
|
259 |
// doing too much work. |
|
260 |
return get_interpreterState()->sender_sp(); |
|
261 |
} |
|
262 |
||
263 |
// monitor elements |
|
264 |
||
265 |
BasicObjectLock* frame::interpreter_frame_monitor_begin() const { |
|
266 |
return get_interpreterState()->monitor_base(); |
|
267 |
} |
|
268 |
||
269 |
BasicObjectLock* frame::interpreter_frame_monitor_end() const { |
|
270 |
return (BasicObjectLock*) get_interpreterState()->stack_base(); |
|
271 |
} |
|
272 |
||
273 |
#else // CC_INTERP |
|
274 |
||
275 |
intptr_t* frame::interpreter_frame_sender_sp() const { |
|
276 |
assert(is_interpreted_frame(), "interpreted frame expected"); |
|
277 |
return (intptr_t*) at(interpreter_frame_sender_sp_offset); |
|
278 |
} |
|
279 |
||
280 |
void frame::set_interpreter_frame_sender_sp(intptr_t* sender_sp) { |
|
281 |
assert(is_interpreted_frame(), "interpreted frame expected"); |
|
282 |
ptr_at_put(interpreter_frame_sender_sp_offset, (intptr_t) sender_sp); |
|
283 |
} |
|
284 |
||
285 |
||
286 |
// monitor elements |
|
287 |
||
288 |
BasicObjectLock* frame::interpreter_frame_monitor_begin() const { |
|
289 |
return (BasicObjectLock*) addr_at(interpreter_frame_monitor_block_bottom_offset); |
|
290 |
} |
|
291 |
||
292 |
BasicObjectLock* frame::interpreter_frame_monitor_end() const { |
|
293 |
BasicObjectLock* result = (BasicObjectLock*) *addr_at(interpreter_frame_monitor_block_top_offset); |
|
294 |
// make sure the pointer points inside the frame |
|
295 |
assert((intptr_t) fp() > (intptr_t) result, "result must < than frame pointer"); |
|
296 |
assert((intptr_t) sp() <= (intptr_t) result, "result must >= than stack pointer"); |
|
297 |
return result; |
|
298 |
} |
|
299 |
||
300 |
void frame::interpreter_frame_set_monitor_end(BasicObjectLock* value) { |
|
301 |
*((BasicObjectLock**)addr_at(interpreter_frame_monitor_block_top_offset)) = value; |
|
302 |
} |
|
303 |
||
304 |
// Used by template based interpreter deoptimization |
|
305 |
void frame::interpreter_frame_set_last_sp(intptr_t* sp) { |
|
306 |
*((intptr_t**)addr_at(interpreter_frame_last_sp_offset)) = sp; |
|
307 |
} |
|
308 |
#endif // CC_INTERP |
|
309 |
||
310 |
frame frame::sender_for_entry_frame(RegisterMap* map) const { |
|
311 |
assert(map != NULL, "map must be set"); |
|
312 |
// Java frame called from C; skip all C frames and return top C |
|
313 |
// frame of that chunk as the sender |
|
314 |
JavaFrameAnchor* jfa = entry_frame_call_wrapper()->anchor(); |
|
315 |
assert(!entry_frame_is_first(), "next Java fp must be non zero"); |
|
316 |
assert(jfa->last_Java_sp() > sp(), "must be above this frame on stack"); |
|
317 |
map->clear(); |
|
318 |
assert(map->include_argument_oops(), "should be set by clear"); |
|
319 |
if (jfa->last_Java_pc() != NULL ) { |
|
320 |
frame fr(jfa->last_Java_sp(), jfa->last_Java_fp(), jfa->last_Java_pc()); |
|
321 |
return fr; |
|
322 |
} |
|
323 |
frame fr(jfa->last_Java_sp(), jfa->last_Java_fp()); |
|
324 |
return fr; |
|
325 |
} |
|
326 |
||
327 |
frame frame::sender_for_interpreter_frame(RegisterMap* map) const { |
|
328 |
// sp is the raw sp from the sender after adapter or interpreter extension |
|
329 |
intptr_t* sp = (intptr_t*) addr_at(sender_sp_offset); |
|
330 |
||
331 |
// This is the sp before any possible extension (adapter/locals). |
|
332 |
intptr_t* unextended_sp = interpreter_frame_sender_sp(); |
|
333 |
||
334 |
// The interpreter and compiler(s) always save EBP/RBP in a known |
|
335 |
// location on entry. We must record where that location is |
|
336 |
// so this if EBP/RBP was live on callout from c2 we can find |
|
337 |
// the saved copy no matter what it called. |
|
338 |
||
339 |
// Since the interpreter always saves EBP/RBP if we record where it is then |
|
340 |
// we don't have to always save EBP/RBP on entry and exit to c2 compiled |
|
341 |
// code, on entry will be enough. |
|
342 |
#ifdef COMPILER2 |
|
343 |
if (map->update_map()) { |
|
344 |
map->set_location(rbp->as_VMReg(), (address) addr_at(link_offset)); |
|
345 |
#ifdef AMD64 |
|
346 |
// this is weird "H" ought to be at a higher address however the |
|
347 |
// oopMaps seems to have the "H" regs at the same address and the |
|
348 |
// vanilla register. |
|
349 |
// XXXX make this go away |
|
350 |
if (true) { |
|
351 |
map->set_location(rbp->as_VMReg()->next(), (address)addr_at(link_offset)); |
|
352 |
} |
|
353 |
#endif // AMD64 |
|
354 |
} |
|
355 |
#endif /* COMPILER2 */ |
|
356 |
return frame(sp, unextended_sp, link(), sender_pc()); |
|
357 |
} |
|
358 |
||
359 |
||
360 |
//------------------------------sender_for_compiled_frame----------------------- |
|
361 |
frame frame::sender_for_compiled_frame(RegisterMap* map) const { |
|
362 |
assert(map != NULL, "map must be set"); |
|
363 |
const bool c1_compiled = _cb->is_compiled_by_c1(); |
|
364 |
||
365 |
// frame owned by optimizing compiler |
|
366 |
intptr_t* sender_sp = NULL; |
|
367 |
||
368 |
assert(_cb->frame_size() >= 0, "must have non-zero frame size"); |
|
369 |
sender_sp = unextended_sp() + _cb->frame_size(); |
|
370 |
||
371 |
// On Intel the return_address is always the word on the stack |
|
372 |
address sender_pc = (address) *(sender_sp-1); |
|
373 |
||
374 |
// This is the saved value of ebp which may or may not really be an fp. |
|
375 |
// it is only an fp if the sender is an interpreter frame (or c1?) |
|
376 |
||
377 |
intptr_t *saved_fp = (intptr_t*)*(sender_sp - frame::sender_sp_offset); |
|
378 |
||
379 |
if (map->update_map()) { |
|
380 |
// Tell GC to use argument oopmaps for some runtime stubs that need it. |
|
381 |
// For C1, the runtime stub might not have oop maps, so set this flag |
|
382 |
// outside of update_register_map. |
|
383 |
map->set_include_argument_oops(_cb->caller_must_gc_arguments(map->thread())); |
|
384 |
if (_cb->oop_maps() != NULL) { |
|
385 |
OopMapSet::update_register_map(this, map); |
|
386 |
} |
|
387 |
// Since the prolog does the save and restore of epb there is no oopmap |
|
388 |
// for it so we must fill in its location as if there was an oopmap entry |
|
389 |
// since if our caller was compiled code there could be live jvm state in it. |
|
390 |
map->set_location(rbp->as_VMReg(), (address) (sender_sp - frame::sender_sp_offset)); |
|
391 |
#ifdef AMD64 |
|
392 |
// this is weird "H" ought to be at a higher address however the |
|
393 |
// oopMaps seems to have the "H" regs at the same address and the |
|
394 |
// vanilla register. |
|
395 |
// XXXX make this go away |
|
396 |
if (true) { |
|
397 |
map->set_location(rbp->as_VMReg()->next(), (address) (sender_sp - frame::sender_sp_offset)); |
|
398 |
} |
|
399 |
#endif // AMD64 |
|
400 |
} |
|
401 |
||
402 |
assert(sender_sp != sp(), "must have changed"); |
|
403 |
return frame(sender_sp, saved_fp, sender_pc); |
|
404 |
} |
|
405 |
||
406 |
frame frame::sender(RegisterMap* map) const { |
|
407 |
// Default is we done have to follow them. The sender_for_xxx will |
|
408 |
// update it accordingly |
|
409 |
map->set_include_argument_oops(false); |
|
410 |
||
411 |
if (is_entry_frame()) return sender_for_entry_frame(map); |
|
412 |
if (is_interpreted_frame()) return sender_for_interpreter_frame(map); |
|
413 |
assert(_cb == CodeCache::find_blob(pc()),"Must be the same"); |
|
414 |
||
415 |
if (_cb != NULL) { |
|
416 |
return sender_for_compiled_frame(map); |
|
417 |
} |
|
418 |
// Must be native-compiled frame, i.e. the marshaling code for native |
|
419 |
// methods that exists in the core system. |
|
420 |
return frame(sender_sp(), link(), sender_pc()); |
|
421 |
} |
|
422 |
||
423 |
||
424 |
bool frame::interpreter_frame_equals_unpacked_fp(intptr_t* fp) { |
|
425 |
assert(is_interpreted_frame(), "must be interpreter frame"); |
|
426 |
methodOop method = interpreter_frame_method(); |
|
427 |
// When unpacking an optimized frame the frame pointer is |
|
428 |
// adjusted with: |
|
429 |
int diff = (method->max_locals() - method->size_of_parameters()) * |
|
430 |
Interpreter::stackElementWords(); |
|
431 |
return _fp == (fp - diff); |
|
432 |
} |
|
433 |
||
434 |
void frame::pd_gc_epilog() { |
|
435 |
// nothing done here now |
|
436 |
} |
|
437 |
||
354
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438 |
bool frame::is_interpreted_frame_valid(JavaThread* thread) const { |
1 | 439 |
// QQQ |
440 |
#ifdef CC_INTERP |
|
441 |
#else |
|
442 |
assert(is_interpreted_frame(), "Not an interpreted frame"); |
|
443 |
// These are reasonable sanity checks |
|
444 |
if (fp() == 0 || (intptr_t(fp()) & (wordSize-1)) != 0) { |
|
445 |
return false; |
|
446 |
} |
|
447 |
if (sp() == 0 || (intptr_t(sp()) & (wordSize-1)) != 0) { |
|
448 |
return false; |
|
449 |
} |
|
450 |
if (fp() + interpreter_frame_initial_sp_offset < sp()) { |
|
451 |
return false; |
|
452 |
} |
|
453 |
// These are hacks to keep us out of trouble. |
|
454 |
// The problem with these is that they mask other problems |
|
455 |
if (fp() <= sp()) { // this attempts to deal with unsigned comparison above |
|
456 |
return false; |
|
457 |
} |
|
354
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|
458 |
|
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|
459 |
// do some validation of frame elements |
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|
460 |
|
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|
461 |
// first the method |
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|
462 |
|
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|
463 |
methodOop m = *interpreter_frame_method_addr(); |
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|
464 |
|
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|
465 |
// validate the method we'd find in this potential sender |
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466 |
if (!Universe::heap()->is_valid_method(m)) return false; |
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|
467 |
|
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|
468 |
// stack frames shouldn't be much larger than max_stack elements |
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|
469 |
|
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|
470 |
if (fp() - sp() > 1024 + m->max_stack()*Interpreter::stackElementSize()) { |
1 | 471 |
return false; |
472 |
} |
|
354
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|
473 |
|
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|
474 |
// validate bci/bcx |
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|
475 |
|
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|
476 |
intptr_t bcx = interpreter_frame_bcx(); |
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|
477 |
if (m->validate_bci_from_bcx(bcx) < 0) { |
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|
478 |
return false; |
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|
479 |
} |
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|
480 |
|
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|
481 |
// validate constantPoolCacheOop |
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|
482 |
|
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|
483 |
constantPoolCacheOop cp = *interpreter_frame_cache_addr(); |
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|
484 |
|
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|
485 |
if (cp == NULL || |
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|
486 |
!Space::is_aligned(cp) || |
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|
487 |
!Universe::heap()->is_permanent((void*)cp)) return false; |
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|
488 |
|
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|
489 |
// validate locals |
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|
490 |
|
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|
491 |
address locals = (address) *interpreter_frame_locals_addr(); |
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|
492 |
|
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|
493 |
if (locals > thread->stack_base() || locals < (address) fp()) return false; |
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|
494 |
|
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|
495 |
// We'd have to be pretty unlucky to be mislead at this point |
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|
496 |
|
1 | 497 |
#endif // CC_INTERP |
498 |
return true; |
|
499 |
} |
|
500 |
||
501 |
BasicType frame::interpreter_frame_result(oop* oop_result, jvalue* value_result) { |
|
502 |
#ifdef CC_INTERP |
|
503 |
// Needed for JVMTI. The result should always be in the interpreterState object |
|
504 |
assert(false, "NYI"); |
|
505 |
interpreterState istate = get_interpreterState(); |
|
506 |
#endif // CC_INTERP |
|
507 |
assert(is_interpreted_frame(), "interpreted frame expected"); |
|
508 |
methodOop method = interpreter_frame_method(); |
|
509 |
BasicType type = method->result_type(); |
|
510 |
||
511 |
intptr_t* tos_addr; |
|
512 |
if (method->is_native()) { |
|
513 |
// Prior to calling into the runtime to report the method_exit the possible |
|
514 |
// return value is pushed to the native stack. If the result is a jfloat/jdouble |
|
515 |
// then ST0 is saved before EAX/EDX. See the note in generate_native_result |
|
516 |
tos_addr = (intptr_t*)sp(); |
|
517 |
if (type == T_FLOAT || type == T_DOUBLE) { |
|
518 |
// QQQ seems like this code is equivalent on the two platforms |
|
519 |
#ifdef AMD64 |
|
520 |
// This is times two because we do a push(ltos) after pushing XMM0 |
|
521 |
// and that takes two interpreter stack slots. |
|
522 |
tos_addr += 2 * Interpreter::stackElementWords(); |
|
523 |
#else |
|
524 |
tos_addr += 2; |
|
525 |
#endif // AMD64 |
|
526 |
} |
|
527 |
} else { |
|
528 |
tos_addr = (intptr_t*)interpreter_frame_tos_address(); |
|
529 |
} |
|
530 |
||
531 |
switch (type) { |
|
532 |
case T_OBJECT : |
|
533 |
case T_ARRAY : { |
|
534 |
oop obj; |
|
535 |
if (method->is_native()) { |
|
536 |
#ifdef CC_INTERP |
|
537 |
obj = istate->_oop_temp; |
|
538 |
#else |
|
539 |
obj = (oop) at(interpreter_frame_oop_temp_offset); |
|
540 |
#endif // CC_INTERP |
|
541 |
} else { |
|
542 |
oop* obj_p = (oop*)tos_addr; |
|
543 |
obj = (obj_p == NULL) ? (oop)NULL : *obj_p; |
|
544 |
} |
|
545 |
assert(obj == NULL || Universe::heap()->is_in(obj), "sanity check"); |
|
546 |
*oop_result = obj; |
|
547 |
break; |
|
548 |
} |
|
549 |
case T_BOOLEAN : value_result->z = *(jboolean*)tos_addr; break; |
|
550 |
case T_BYTE : value_result->b = *(jbyte*)tos_addr; break; |
|
551 |
case T_CHAR : value_result->c = *(jchar*)tos_addr; break; |
|
552 |
case T_SHORT : value_result->s = *(jshort*)tos_addr; break; |
|
553 |
case T_INT : value_result->i = *(jint*)tos_addr; break; |
|
554 |
case T_LONG : value_result->j = *(jlong*)tos_addr; break; |
|
555 |
case T_FLOAT : { |
|
556 |
#ifdef AMD64 |
|
557 |
value_result->f = *(jfloat*)tos_addr; |
|
558 |
#else |
|
559 |
if (method->is_native()) { |
|
560 |
jdouble d = *(jdouble*)tos_addr; // Result was in ST0 so need to convert to jfloat |
|
561 |
value_result->f = (jfloat)d; |
|
562 |
} else { |
|
563 |
value_result->f = *(jfloat*)tos_addr; |
|
564 |
} |
|
565 |
#endif // AMD64 |
|
566 |
break; |
|
567 |
} |
|
568 |
case T_DOUBLE : value_result->d = *(jdouble*)tos_addr; break; |
|
569 |
case T_VOID : /* Nothing to do */ break; |
|
570 |
default : ShouldNotReachHere(); |
|
571 |
} |
|
572 |
||
573 |
return type; |
|
574 |
} |
|
575 |
||
576 |
||
577 |
intptr_t* frame::interpreter_frame_tos_at(jint offset) const { |
|
578 |
int index = (Interpreter::expr_offset_in_bytes(offset)/wordSize); |
|
579 |
return &interpreter_frame_tos_address()[index]; |
|
580 |
} |