methodHandles_sparc.cpp revision 9056:dc9930a04ab0
1290001Sglebius/*
2290001Sglebius * Copyright (c) 2008, 2015, Oracle and/or its affiliates. All rights reserved.
3290001Sglebius * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
4290001Sglebius *
5290001Sglebius * This code is free software; you can redistribute it and/or modify it
6290001Sglebius * under the terms of the GNU General Public License version 2 only, as
7290001Sglebius * published by the Free Software Foundation.
8290001Sglebius *
9290001Sglebius * This code is distributed in the hope that it will be useful, but WITHOUT
10290001Sglebius * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11290001Sglebius * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
12290001Sglebius * version 2 for more details (a copy is included in the LICENSE file that
13290001Sglebius * accompanied this code).
14290001Sglebius *
15290001Sglebius * You should have received a copy of the GNU General Public License version
16290001Sglebius * 2 along with this work; if not, write to the Free Software Foundation,
17290001Sglebius * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
18290001Sglebius *
19290001Sglebius * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
20290001Sglebius * or visit www.oracle.com if you need additional information or have any
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23290001Sglebius */
24290001Sglebius
25290001Sglebius#include "precompiled.hpp"
26290001Sglebius#include "asm/macroAssembler.hpp"
27290001Sglebius#include "classfile/javaClasses.inline.hpp"
28290001Sglebius#include "interpreter/interpreter.hpp"
29290001Sglebius#include "interpreter/interp_masm.hpp"
30290001Sglebius#include "memory/allocation.inline.hpp"
31290001Sglebius#include "prims/methodHandles.hpp"
32290001Sglebius
33290001Sglebius#define __ _masm->
34290001Sglebius
35290001Sglebius#ifdef PRODUCT
36290001Sglebius#define BLOCK_COMMENT(str) /* nothing */
37290001Sglebius#define STOP(error) stop(error)
38290001Sglebius#else
39290001Sglebius#define BLOCK_COMMENT(str) __ block_comment(str)
40290001Sglebius#define STOP(error) block_comment(error); __ stop(error)
41290001Sglebius#endif
42290001Sglebius
43290001Sglebius#define BIND(label) bind(label); BLOCK_COMMENT(#label ":")
44290001Sglebius
45290001Sglebius// Workaround for C++ overloading nastiness on '0' for RegisterOrConstant.
46290001Sglebiusstatic RegisterOrConstant constant(int value) {
47290001Sglebius  return RegisterOrConstant(value);
48290001Sglebius}
49290001Sglebius
50void MethodHandles::load_klass_from_Class(MacroAssembler* _masm, Register klass_reg, Register temp_reg, Register temp2_reg) {
51  if (VerifyMethodHandles)
52    verify_klass(_masm, klass_reg, SystemDictionary::WK_KLASS_ENUM_NAME(java_lang_Class), temp_reg, temp2_reg,
53                 "MH argument is a Class");
54  __ ld_ptr(Address(klass_reg, java_lang_Class::klass_offset_in_bytes()), klass_reg);
55}
56
57#ifdef ASSERT
58static int check_nonzero(const char* xname, int x) {
59  assert(x != 0, "%s should be nonzero", xname);
60  return x;
61}
62#define NONZERO(x) check_nonzero(#x, x)
63#else //ASSERT
64#define NONZERO(x) (x)
65#endif //ASSERT
66
67#ifdef ASSERT
68void MethodHandles::verify_klass(MacroAssembler* _masm,
69                                 Register obj_reg, SystemDictionary::WKID klass_id,
70                                 Register temp_reg, Register temp2_reg,
71                                 const char* error_message) {
72  Klass** klass_addr = SystemDictionary::well_known_klass_addr(klass_id);
73  KlassHandle klass = SystemDictionary::well_known_klass(klass_id);
74  bool did_save = false;
75  if (temp_reg == noreg || temp2_reg == noreg) {
76    temp_reg = L1;
77    temp2_reg = L2;
78    __ save_frame_and_mov(0, obj_reg, L0);
79    obj_reg = L0;
80    did_save = true;
81  }
82  Label L_ok, L_bad;
83  BLOCK_COMMENT("verify_klass {");
84  __ verify_oop(obj_reg);
85  __ br_null_short(obj_reg, Assembler::pn, L_bad);
86  __ load_klass(obj_reg, temp_reg);
87  __ set(ExternalAddress((Metadata**)klass_addr), temp2_reg);
88  __ ld_ptr(Address(temp2_reg, 0), temp2_reg);
89  __ cmp_and_brx_short(temp_reg, temp2_reg, Assembler::equal, Assembler::pt, L_ok);
90  intptr_t super_check_offset = klass->super_check_offset();
91  __ ld_ptr(Address(temp_reg, super_check_offset), temp_reg);
92  __ set(ExternalAddress((Metadata**)klass_addr), temp2_reg);
93  __ ld_ptr(Address(temp2_reg, 0), temp2_reg);
94  __ cmp_and_brx_short(temp_reg, temp2_reg, Assembler::equal, Assembler::pt, L_ok);
95  __ BIND(L_bad);
96  if (did_save)  __ restore();
97  __ STOP(error_message);
98  __ BIND(L_ok);
99  if (did_save)  __ restore();
100  BLOCK_COMMENT("} verify_klass");
101}
102
103void MethodHandles::verify_ref_kind(MacroAssembler* _masm, int ref_kind, Register member_reg, Register temp) {
104  Label L;
105  BLOCK_COMMENT("verify_ref_kind {");
106  __ lduw(Address(member_reg, NONZERO(java_lang_invoke_MemberName::flags_offset_in_bytes())), temp);
107  __ srl( temp, java_lang_invoke_MemberName::MN_REFERENCE_KIND_SHIFT, temp);
108  __ and3(temp, java_lang_invoke_MemberName::MN_REFERENCE_KIND_MASK,  temp);
109  __ cmp_and_br_short(temp, ref_kind, Assembler::equal, Assembler::pt, L);
110  { char* buf = NEW_C_HEAP_ARRAY(char, 100, mtInternal);
111    jio_snprintf(buf, 100, "verify_ref_kind expected %x", ref_kind);
112    if (ref_kind == JVM_REF_invokeVirtual ||
113        ref_kind == JVM_REF_invokeSpecial)
114      // could do this for all ref_kinds, but would explode assembly code size
115      trace_method_handle(_masm, buf);
116    __ STOP(buf);
117  }
118  BLOCK_COMMENT("} verify_ref_kind");
119  __ bind(L);
120}
121
122#endif // ASSERT
123
124void MethodHandles::jump_from_method_handle(MacroAssembler* _masm, Register method, Register target, Register temp,
125                                            bool for_compiler_entry) {
126  Label L_no_such_method;
127  assert(method == G5_method, "interpreter calling convention");
128  assert_different_registers(method, target, temp);
129
130  if (!for_compiler_entry && JvmtiExport::can_post_interpreter_events()) {
131    Label run_compiled_code;
132    // JVMTI events, such as single-stepping, are implemented partly by avoiding running
133    // compiled code in threads for which the event is enabled.  Check here for
134    // interp_only_mode if these events CAN be enabled.
135    __ verify_thread();
136    const Address interp_only(G2_thread, JavaThread::interp_only_mode_offset());
137    __ ld(interp_only, temp);
138    __ cmp_and_br_short(temp, 0, Assembler::zero, Assembler::pt, run_compiled_code);
139    // Null method test is replicated below in compiled case,
140    // it might be able to address across the verify_thread()
141    __ br_null_short(G5_method, Assembler::pn, L_no_such_method);
142    __ ld_ptr(G5_method, in_bytes(Method::interpreter_entry_offset()), target);
143    __ jmp(target, 0);
144    __ delayed()->nop();
145    __ BIND(run_compiled_code);
146    // Note: we could fill some delay slots here, but
147    // it doesn't matter, since this is interpreter code.
148  }
149
150  // Compiled case, either static or fall-through from runtime conditional
151  __ br_null_short(G5_method, Assembler::pn, L_no_such_method);
152
153  const ByteSize entry_offset = for_compiler_entry ? Method::from_compiled_offset() :
154                                                     Method::from_interpreted_offset();
155  __ ld_ptr(G5_method, in_bytes(entry_offset), target);
156  __ jmp(target, 0);
157  __ delayed()->nop();
158
159  __ bind(L_no_such_method);
160  AddressLiteral ame(StubRoutines::throw_AbstractMethodError_entry());
161  __ jump_to(ame, temp);
162  __ delayed()->nop();
163}
164
165void MethodHandles::jump_to_lambda_form(MacroAssembler* _masm,
166                                        Register recv, Register method_temp,
167                                        Register temp2, Register temp3,
168                                        bool for_compiler_entry) {
169  BLOCK_COMMENT("jump_to_lambda_form {");
170  // This is the initial entry point of a lazy method handle.
171  // After type checking, it picks up the invoker from the LambdaForm.
172  assert_different_registers(recv, method_temp, temp2);  // temp3 is only passed on
173  assert(method_temp == G5_method, "required register for loading method");
174
175  //NOT_PRODUCT({ FlagSetting fs(TraceMethodHandles, true); trace_method_handle(_masm, "LZMH"); });
176
177  // Load the invoker, as MH -> MH.form -> LF.vmentry
178  __ verify_oop(recv);
179  __ load_heap_oop(Address(recv,        NONZERO(java_lang_invoke_MethodHandle::form_offset_in_bytes())),   method_temp);
180  __ verify_oop(method_temp);
181  __ load_heap_oop(Address(method_temp, NONZERO(java_lang_invoke_LambdaForm::vmentry_offset_in_bytes())),  method_temp);
182  __ verify_oop(method_temp);
183  // the following assumes that a Method* is normally compressed in the vmtarget field:
184  __ ld_ptr(       Address(method_temp, NONZERO(java_lang_invoke_MemberName::vmtarget_offset_in_bytes())), method_temp);
185
186  if (VerifyMethodHandles && !for_compiler_entry) {
187    // make sure recv is already on stack
188    __ ld_ptr(method_temp, in_bytes(Method::const_offset()), temp2);
189    __ load_sized_value(Address(temp2, ConstMethod::size_of_parameters_offset()),
190                        temp2,
191                        sizeof(u2), /*is_signed*/ false);
192    // assert(sizeof(u2) == sizeof(Method::_size_of_parameters), "");
193    Label L;
194    __ ld_ptr(__ argument_address(temp2, temp2, -1), temp2);
195    __ cmp_and_br_short(temp2, recv, Assembler::equal, Assembler::pt, L);
196    __ STOP("receiver not on stack");
197    __ BIND(L);
198  }
199
200  jump_from_method_handle(_masm, method_temp, temp2, temp3, for_compiler_entry);
201  BLOCK_COMMENT("} jump_to_lambda_form");
202}
203
204
205// Code generation
206address MethodHandles::generate_method_handle_interpreter_entry(MacroAssembler* _masm,
207                                                                vmIntrinsics::ID iid) {
208  const bool not_for_compiler_entry = false;  // this is the interpreter entry
209  assert(is_signature_polymorphic(iid), "expected invoke iid");
210  if (iid == vmIntrinsics::_invokeGeneric ||
211      iid == vmIntrinsics::_compiledLambdaForm) {
212    // Perhaps surprisingly, the symbolic references visible to Java are not directly used.
213    // They are linked to Java-generated adapters via MethodHandleNatives.linkMethod.
214    // They all allow an appendix argument.
215    __ should_not_reach_here();           // empty stubs make SG sick
216    return NULL;
217  }
218
219  // I5_savedSP/O5_savedSP: sender SP (must preserve; see prepare_to_jump_from_interpreted)
220  // G5_method:  Method*
221  // G4 (Gargs): incoming argument list (must preserve)
222  // O0: used as temp to hold mh or receiver
223  // O1, O4: garbage temps, blown away
224  Register O1_scratch    = O1;
225  Register O4_param_size = O4;   // size of parameters
226
227  // here's where control starts out:
228  __ align(CodeEntryAlignment);
229  address entry_point = __ pc();
230
231  if (VerifyMethodHandles) {
232    assert(Method::intrinsic_id_size_in_bytes() == 2, "assuming Method::_intrinsic_id is u2");
233
234    Label L;
235    BLOCK_COMMENT("verify_intrinsic_id {");
236    __ lduh(Address(G5_method, Method::intrinsic_id_offset_in_bytes()), O1_scratch);
237    __ cmp_and_br_short(O1_scratch, (int) iid, Assembler::equal, Assembler::pt, L);
238    if (iid == vmIntrinsics::_linkToVirtual ||
239        iid == vmIntrinsics::_linkToSpecial) {
240      // could do this for all kinds, but would explode assembly code size
241      trace_method_handle(_masm, "bad Method*::intrinsic_id");
242    }
243    __ STOP("bad Method*::intrinsic_id");
244    __ bind(L);
245    BLOCK_COMMENT("} verify_intrinsic_id");
246  }
247
248  // First task:  Find out how big the argument list is.
249  Address O4_first_arg_addr;
250  int ref_kind = signature_polymorphic_intrinsic_ref_kind(iid);
251  assert(ref_kind != 0 || iid == vmIntrinsics::_invokeBasic, "must be _invokeBasic or a linkTo intrinsic");
252  if (ref_kind == 0 || MethodHandles::ref_kind_has_receiver(ref_kind)) {
253    __ ld_ptr(G5_method, in_bytes(Method::const_offset()), O4_param_size);
254    __ load_sized_value(Address(O4_param_size, ConstMethod::size_of_parameters_offset()),
255                        O4_param_size,
256                        sizeof(u2), /*is_signed*/ false);
257    // assert(sizeof(u2) == sizeof(Method::_size_of_parameters), "");
258    O4_first_arg_addr = __ argument_address(O4_param_size, O4_param_size, -1);
259  } else {
260    DEBUG_ONLY(O4_param_size = noreg);
261  }
262
263  Register O0_mh = noreg;
264  if (!is_signature_polymorphic_static(iid)) {
265    __ ld_ptr(O4_first_arg_addr, O0_mh = O0);
266    DEBUG_ONLY(O4_param_size = noreg);
267  }
268
269  // O4_first_arg_addr is live!
270
271  if (TraceMethodHandles) {
272    if (O0_mh != noreg)
273      __ mov(O0_mh, G3_method_handle);  // make stub happy
274    trace_method_handle_interpreter_entry(_masm, iid);
275  }
276
277  if (iid == vmIntrinsics::_invokeBasic) {
278    generate_method_handle_dispatch(_masm, iid, O0_mh, noreg, not_for_compiler_entry);
279
280  } else {
281    // Adjust argument list by popping the trailing MemberName argument.
282    Register O0_recv = noreg;
283    if (MethodHandles::ref_kind_has_receiver(ref_kind)) {
284      // Load the receiver (not the MH; the actual MemberName's receiver) up from the interpreter stack.
285      __ ld_ptr(O4_first_arg_addr, O0_recv = O0);
286      DEBUG_ONLY(O4_param_size = noreg);
287    }
288    Register G5_member = G5_method;  // MemberName ptr; incoming method ptr is dead now
289    __ ld_ptr(__ argument_address(constant(0)), G5_member);
290    __ add(Gargs, Interpreter::stackElementSize, Gargs);
291    generate_method_handle_dispatch(_masm, iid, O0_recv, G5_member, not_for_compiler_entry);
292  }
293
294  return entry_point;
295}
296
297void MethodHandles::generate_method_handle_dispatch(MacroAssembler* _masm,
298                                                    vmIntrinsics::ID iid,
299                                                    Register receiver_reg,
300                                                    Register member_reg,
301                                                    bool for_compiler_entry) {
302  assert(is_signature_polymorphic(iid), "expected invoke iid");
303  Register temp1 = (for_compiler_entry ? G1_scratch : O1);
304  Register temp2 = (for_compiler_entry ? G3_scratch : O2);
305  Register temp3 = (for_compiler_entry ? G4_scratch : O3);
306  Register temp4 = (for_compiler_entry ? noreg      : O4);
307  if (for_compiler_entry) {
308    assert(receiver_reg == (iid == vmIntrinsics::_linkToStatic ? noreg : O0), "only valid assignment");
309    assert_different_registers(temp1, O0, O1, O2, O3, O4, O5);
310    assert_different_registers(temp2, O0, O1, O2, O3, O4, O5);
311    assert_different_registers(temp3, O0, O1, O2, O3, O4, O5);
312    assert_different_registers(temp4, O0, O1, O2, O3, O4, O5);
313  } else {
314    assert_different_registers(temp1, temp2, temp3, temp4, O5_savedSP);  // don't trash lastSP
315  }
316  if (receiver_reg != noreg)  assert_different_registers(temp1, temp2, temp3, temp4, receiver_reg);
317  if (member_reg   != noreg)  assert_different_registers(temp1, temp2, temp3, temp4, member_reg);
318
319  if (iid == vmIntrinsics::_invokeBasic) {
320    // indirect through MH.form.vmentry.vmtarget
321    jump_to_lambda_form(_masm, receiver_reg, G5_method, temp1, temp2, for_compiler_entry);
322
323  } else {
324    // The method is a member invoker used by direct method handles.
325    if (VerifyMethodHandles) {
326      // make sure the trailing argument really is a MemberName (caller responsibility)
327      verify_klass(_masm, member_reg, SystemDictionary::WK_KLASS_ENUM_NAME(MemberName_klass),
328                   temp1, temp2,
329                   "MemberName required for invokeVirtual etc.");
330    }
331
332    Address member_clazz(    member_reg, NONZERO(java_lang_invoke_MemberName::clazz_offset_in_bytes()));
333    Address member_vmindex(  member_reg, NONZERO(java_lang_invoke_MemberName::vmindex_offset_in_bytes()));
334    Address member_vmtarget( member_reg, NONZERO(java_lang_invoke_MemberName::vmtarget_offset_in_bytes()));
335
336    Register temp1_recv_klass = temp1;
337    if (iid != vmIntrinsics::_linkToStatic) {
338      __ verify_oop(receiver_reg);
339      if (iid == vmIntrinsics::_linkToSpecial) {
340        // Don't actually load the klass; just null-check the receiver.
341        __ null_check(receiver_reg);
342      } else {
343        // load receiver klass itself
344        __ null_check(receiver_reg, oopDesc::klass_offset_in_bytes());
345        __ load_klass(receiver_reg, temp1_recv_klass);
346        __ verify_klass_ptr(temp1_recv_klass);
347      }
348      BLOCK_COMMENT("check_receiver {");
349      // The receiver for the MemberName must be in receiver_reg.
350      // Check the receiver against the MemberName.clazz
351      if (VerifyMethodHandles && iid == vmIntrinsics::_linkToSpecial) {
352        // Did not load it above...
353        __ load_klass(receiver_reg, temp1_recv_klass);
354        __ verify_klass_ptr(temp1_recv_klass);
355      }
356      if (VerifyMethodHandles && iid != vmIntrinsics::_linkToInterface) {
357        Label L_ok;
358        Register temp2_defc = temp2;
359        __ load_heap_oop(member_clazz, temp2_defc);
360        load_klass_from_Class(_masm, temp2_defc, temp3, temp4);
361        __ verify_klass_ptr(temp2_defc);
362        __ check_klass_subtype(temp1_recv_klass, temp2_defc, temp3, temp4, L_ok);
363        // If we get here, the type check failed!
364        __ STOP("receiver class disagrees with MemberName.clazz");
365        __ bind(L_ok);
366      }
367      BLOCK_COMMENT("} check_receiver");
368    }
369    if (iid == vmIntrinsics::_linkToSpecial ||
370        iid == vmIntrinsics::_linkToStatic) {
371      DEBUG_ONLY(temp1_recv_klass = noreg);  // these guys didn't load the recv_klass
372    }
373
374    // Live registers at this point:
375    //  member_reg - MemberName that was the trailing argument
376    //  temp1_recv_klass - klass of stacked receiver, if needed
377    //  O5_savedSP - interpreter linkage (if interpreted)
378    //  O0..O5 - compiler arguments (if compiled)
379
380    Label L_incompatible_class_change_error;
381    switch (iid) {
382    case vmIntrinsics::_linkToSpecial:
383      if (VerifyMethodHandles) {
384        verify_ref_kind(_masm, JVM_REF_invokeSpecial, member_reg, temp2);
385      }
386      __ ld_ptr(member_vmtarget, G5_method);
387      break;
388
389    case vmIntrinsics::_linkToStatic:
390      if (VerifyMethodHandles) {
391        verify_ref_kind(_masm, JVM_REF_invokeStatic, member_reg, temp2);
392      }
393      __ ld_ptr(member_vmtarget, G5_method);
394      break;
395
396    case vmIntrinsics::_linkToVirtual:
397    {
398      // same as TemplateTable::invokevirtual,
399      // minus the CP setup and profiling:
400
401      if (VerifyMethodHandles) {
402        verify_ref_kind(_masm, JVM_REF_invokeVirtual, member_reg, temp2);
403      }
404
405      // pick out the vtable index from the MemberName, and then we can discard it:
406      Register temp2_index = temp2;
407      __ ld_ptr(member_vmindex, temp2_index);
408
409      if (VerifyMethodHandles) {
410        Label L_index_ok;
411        __ cmp_and_br_short(temp2_index, (int) 0, Assembler::greaterEqual, Assembler::pn, L_index_ok);
412        __ STOP("no virtual index");
413        __ BIND(L_index_ok);
414      }
415
416      // Note:  The verifier invariants allow us to ignore MemberName.clazz and vmtarget
417      // at this point.  And VerifyMethodHandles has already checked clazz, if needed.
418
419      // get target Method* & entry point
420      __ lookup_virtual_method(temp1_recv_klass, temp2_index, G5_method);
421      break;
422    }
423
424    case vmIntrinsics::_linkToInterface:
425    {
426      // same as TemplateTable::invokeinterface
427      // (minus the CP setup and profiling, with different argument motion)
428      if (VerifyMethodHandles) {
429        verify_ref_kind(_masm, JVM_REF_invokeInterface, member_reg, temp2);
430      }
431
432      Register temp2_intf = temp2;
433      __ load_heap_oop(member_clazz, temp2_intf);
434      load_klass_from_Class(_masm, temp2_intf, temp3, temp4);
435      __ verify_klass_ptr(temp2_intf);
436
437      Register G5_index = G5_method;
438      __ ld_ptr(member_vmindex, G5_index);
439      if (VerifyMethodHandles) {
440        Label L;
441        __ cmp_and_br_short(G5_index, 0, Assembler::greaterEqual, Assembler::pt, L);
442        __ STOP("invalid vtable index for MH.invokeInterface");
443        __ bind(L);
444      }
445
446      // given intf, index, and recv klass, dispatch to the implementation method
447      __ lookup_interface_method(temp1_recv_klass, temp2_intf,
448                                 // note: next two args must be the same:
449                                 G5_index, G5_method,
450                                 temp3, temp4,
451                                 L_incompatible_class_change_error);
452      break;
453    }
454
455    default:
456      fatal("unexpected intrinsic %d: %s", iid, vmIntrinsics::name_at(iid));
457      break;
458    }
459
460    // Live at this point:
461    //   G5_method
462    //   O5_savedSP (if interpreted)
463
464    // After figuring out which concrete method to call, jump into it.
465    // Note that this works in the interpreter with no data motion.
466    // But the compiled version will require that rcx_recv be shifted out.
467    __ verify_method_ptr(G5_method);
468    jump_from_method_handle(_masm, G5_method, temp1, temp2, for_compiler_entry);
469
470    if (iid == vmIntrinsics::_linkToInterface) {
471      __ BIND(L_incompatible_class_change_error);
472      AddressLiteral icce(StubRoutines::throw_IncompatibleClassChangeError_entry());
473      __ jump_to(icce, temp1);
474      __ delayed()->nop();
475    }
476  }
477}
478
479#ifndef PRODUCT
480void trace_method_handle_stub(const char* adaptername,
481                              oopDesc* mh,
482                              intptr_t* saved_sp,
483                              intptr_t* args,
484                              intptr_t* tracing_fp) {
485  bool has_mh = (strstr(adaptername, "/static") == NULL &&
486                 strstr(adaptername, "linkTo") == NULL);    // static linkers don't have MH
487  const char* mh_reg_name = has_mh ? "G3_mh" : "G3";
488  tty->print_cr("MH %s %s=" INTPTR_FORMAT " saved_sp=" INTPTR_FORMAT " args=" INTPTR_FORMAT,
489                adaptername, mh_reg_name,
490                p2i(mh), p2i(saved_sp), p2i(args));
491
492  if (Verbose) {
493    // dumping last frame with frame::describe
494
495    JavaThread* p = JavaThread::active();
496
497    ResourceMark rm;
498    PRESERVE_EXCEPTION_MARK; // may not be needed by safer and unexpensive here
499    FrameValues values;
500
501    // Note: We want to allow trace_method_handle from any call site.
502    // While trace_method_handle creates a frame, it may be entered
503    // without a valid return PC in O7 (e.g. not just after a call).
504    // Walking that frame could lead to failures due to that invalid PC.
505    // => carefully detect that frame when doing the stack walking
506
507    // walk up to the right frame using the "tracing_fp" argument
508    intptr_t* cur_sp = StubRoutines::Sparc::flush_callers_register_windows_func()();
509    frame cur_frame(cur_sp, frame::unpatchable, NULL);
510
511    while (cur_frame.fp() != (intptr_t *)(STACK_BIAS+(uintptr_t)tracing_fp)) {
512      cur_frame = os::get_sender_for_C_frame(&cur_frame);
513    }
514
515    // safely create a frame and call frame::describe
516    intptr_t *dump_sp = cur_frame.sender_sp();
517    intptr_t *dump_fp = cur_frame.link();
518
519    bool walkable = has_mh; // whether the traced frame shoud be walkable
520
521    // the sender for cur_frame is the caller of trace_method_handle
522    if (walkable) {
523      // The previous definition of walkable may have to be refined
524      // if new call sites cause the next frame constructor to start
525      // failing. Alternatively, frame constructors could be
526      // modified to support the current or future non walkable
527      // frames (but this is more intrusive and is not considered as
528      // part of this RFE, which will instead use a simpler output).
529      frame dump_frame = frame(dump_sp,
530                               cur_frame.sp(), // younger_sp
531                               false); // no adaptation
532      dump_frame.describe(values, 1);
533    } else {
534      // Robust dump for frames which cannot be constructed from sp/younger_sp
535      // Add descriptions without building a Java frame to avoid issues
536      values.describe(-1, dump_fp, "fp for #1 <not parsed, cannot trust pc>");
537      values.describe(-1, dump_sp, "sp");
538    }
539
540    bool has_args = has_mh; // whether Gargs is meaningful
541
542    // mark args, if seems valid (may not be valid for some adapters)
543    if (has_args) {
544      if ((args >= dump_sp) && (args < dump_fp)) {
545        values.describe(-1, args, "*G4_args");
546      }
547    }
548
549    // mark saved_sp, if seems valid (may not be valid for some adapters)
550    intptr_t *unbiased_sp = (intptr_t *)(STACK_BIAS+(uintptr_t)saved_sp);
551    const int ARG_LIMIT = 255, SLOP = 45, UNREASONABLE_STACK_MOVE = (ARG_LIMIT + SLOP);
552    if ((unbiased_sp >= dump_sp - UNREASONABLE_STACK_MOVE) && (unbiased_sp < dump_fp)) {
553      values.describe(-1, unbiased_sp, "*saved_sp+STACK_BIAS");
554    }
555
556    // Note: the unextended_sp may not be correct
557    tty->print_cr("  stack layout:");
558    values.print(p);
559    if (has_mh && mh->is_oop()) {
560      mh->print();
561      if (java_lang_invoke_MethodHandle::is_instance(mh)) {
562        if (java_lang_invoke_MethodHandle::form_offset_in_bytes() != 0)
563          java_lang_invoke_MethodHandle::form(mh)->print();
564      }
565    }
566  }
567}
568
569void MethodHandles::trace_method_handle(MacroAssembler* _masm, const char* adaptername) {
570  if (!TraceMethodHandles)  return;
571  BLOCK_COMMENT("trace_method_handle {");
572  // save: Gargs, O5_savedSP
573  __ save_frame(16); // need space for saving required FPU state
574
575  __ set((intptr_t) adaptername, O0);
576  __ mov(G3_method_handle, O1);
577  __ mov(I5_savedSP, O2);
578  __ mov(Gargs, O3);
579  __ mov(I6, O4); // frame identifier for safe stack walking
580
581  // Save scratched registers that might be needed. Robustness is more
582  // important than optimizing the saves for this debug only code.
583
584  // save FP result, valid at some call sites (adapter_opt_return_float, ...)
585  Address d_save(FP, -sizeof(jdouble) + STACK_BIAS);
586  __ stf(FloatRegisterImpl::D, Ftos_d, d_save);
587  // Safely save all globals but G2 (handled by call_VM_leaf) and G7
588  // (OS reserved).
589  __ mov(G3_method_handle, L3);
590  __ mov(Gargs, L4);
591  __ mov(G5_method_type, L5);
592  __ mov(G6, L6);
593  __ mov(G1, L1);
594
595  __ call_VM_leaf(L2 /* for G2 */, CAST_FROM_FN_PTR(address, trace_method_handle_stub));
596
597  __ mov(L3, G3_method_handle);
598  __ mov(L4, Gargs);
599  __ mov(L5, G5_method_type);
600  __ mov(L6, G6);
601  __ mov(L1, G1);
602  __ ldf(FloatRegisterImpl::D, d_save, Ftos_d);
603
604  __ restore();
605  BLOCK_COMMENT("} trace_method_handle");
606}
607#endif // PRODUCT
608