src/cpu/x86/vm/methodHandles_x86.cpp

Thu, 06 Dec 2012 09:57:41 -0800

author
twisti
date
Thu, 06 Dec 2012 09:57:41 -0800
changeset 4323
f0c2369fda5a
parent 4318
cd3d6a6b95d9
child 4338
fd74228fd5ca
permissions
-rw-r--r--

8003250: SPARC: move MacroAssembler into separate file
Reviewed-by: jrose, kvn

     1 /*
     2  * Copyright (c) 1997, 2012, Oracle and/or its affiliates. All rights reserved.
     3  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
     4  *
     5  * This code is free software; you can redistribute it and/or modify it
     6  * under the terms of the GNU General Public License version 2 only, as
     7  * published by the Free Software Foundation.
     8  *
     9  * This code is distributed in the hope that it will be useful, but WITHOUT
    10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
    11  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
    12  * version 2 for more details (a copy is included in the LICENSE file that
    13  * accompanied this code).
    14  *
    15  * You should have received a copy of the GNU General Public License version
    16  * 2 along with this work; if not, write to the Free Software Foundation,
    17  * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
    18  *
    19  * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
    20  * or visit www.oracle.com if you need additional information or have any
    21  * questions.
    22  *
    23  */
    25 #include "precompiled.hpp"
    26 #include "asm/macroAssembler.hpp"
    27 #include "interpreter/interpreter.hpp"
    28 #include "interpreter/interpreterRuntime.hpp"
    29 #include "memory/allocation.inline.hpp"
    30 #include "prims/methodHandles.hpp"
    32 #define __ _masm->
    34 #ifdef PRODUCT
    35 #define BLOCK_COMMENT(str) /* nothing */
    36 #define STOP(error) stop(error)
    37 #else
    38 #define BLOCK_COMMENT(str) __ block_comment(str)
    39 #define STOP(error) block_comment(error); __ stop(error)
    40 #endif
    42 #define BIND(label) bind(label); BLOCK_COMMENT(#label ":")
    44 // Workaround for C++ overloading nastiness on '0' for RegisterOrConstant.
    45 static RegisterOrConstant constant(int value) {
    46   return RegisterOrConstant(value);
    47 }
    49 void MethodHandles::load_klass_from_Class(MacroAssembler* _masm, Register klass_reg) {
    50   if (VerifyMethodHandles)
    51     verify_klass(_masm, klass_reg, SystemDictionary::WK_KLASS_ENUM_NAME(java_lang_Class),
    52                  "MH argument is a Class");
    53   __ movptr(klass_reg, Address(klass_reg, java_lang_Class::klass_offset_in_bytes()));
    54 }
    56 #ifdef ASSERT
    57 static int check_nonzero(const char* xname, int x) {
    58   assert(x != 0, err_msg("%s should be nonzero", xname));
    59   return x;
    60 }
    61 #define NONZERO(x) check_nonzero(#x, x)
    62 #else //ASSERT
    63 #define NONZERO(x) (x)
    64 #endif //ASSERT
    66 #ifdef ASSERT
    67 void MethodHandles::verify_klass(MacroAssembler* _masm,
    68                                  Register obj, SystemDictionary::WKID klass_id,
    69                                  const char* error_message) {
    70   Klass** klass_addr = SystemDictionary::well_known_klass_addr(klass_id);
    71   KlassHandle klass = SystemDictionary::well_known_klass(klass_id);
    72   Register temp = rdi;
    73   Register temp2 = noreg;
    74   LP64_ONLY(temp2 = rscratch1);  // used by MacroAssembler::cmpptr
    75   Label L_ok, L_bad;
    76   BLOCK_COMMENT("verify_klass {");
    77   __ verify_oop(obj);
    78   __ testptr(obj, obj);
    79   __ jcc(Assembler::zero, L_bad);
    80   __ push(temp); if (temp2 != noreg)  __ push(temp2);
    81 #define UNPUSH { if (temp2 != noreg)  __ pop(temp2);  __ pop(temp); }
    82   __ load_klass(temp, obj);
    83   __ cmpptr(temp, ExternalAddress((address) klass_addr));
    84   __ jcc(Assembler::equal, L_ok);
    85   intptr_t super_check_offset = klass->super_check_offset();
    86   __ movptr(temp, Address(temp, super_check_offset));
    87   __ cmpptr(temp, ExternalAddress((address) klass_addr));
    88   __ jcc(Assembler::equal, L_ok);
    89   UNPUSH;
    90   __ bind(L_bad);
    91   __ STOP(error_message);
    92   __ BIND(L_ok);
    93   UNPUSH;
    94   BLOCK_COMMENT("} verify_klass");
    95 }
    97 void MethodHandles::verify_ref_kind(MacroAssembler* _masm, int ref_kind, Register member_reg, Register temp) {
    98   Label L;
    99   BLOCK_COMMENT("verify_ref_kind {");
   100   __ movl(temp, Address(member_reg, NONZERO(java_lang_invoke_MemberName::flags_offset_in_bytes())));
   101   __ shrl(temp, java_lang_invoke_MemberName::MN_REFERENCE_KIND_SHIFT);
   102   __ andl(temp, java_lang_invoke_MemberName::MN_REFERENCE_KIND_MASK);
   103   __ cmpl(temp, ref_kind);
   104   __ jcc(Assembler::equal, L);
   105   { char* buf = NEW_C_HEAP_ARRAY(char, 100, mtInternal);
   106     jio_snprintf(buf, 100, "verify_ref_kind expected %x", ref_kind);
   107     if (ref_kind == JVM_REF_invokeVirtual ||
   108         ref_kind == JVM_REF_invokeSpecial)
   109       // could do this for all ref_kinds, but would explode assembly code size
   110       trace_method_handle(_masm, buf);
   111     __ STOP(buf);
   112   }
   113   BLOCK_COMMENT("} verify_ref_kind");
   114   __ bind(L);
   115 }
   117 #endif //ASSERT
   119 void MethodHandles::jump_from_method_handle(MacroAssembler* _masm, Register method, Register temp,
   120                                             bool for_compiler_entry) {
   121   assert(method == rbx, "interpreter calling convention");
   122   __ verify_method_ptr(method);
   124   if (!for_compiler_entry && JvmtiExport::can_post_interpreter_events()) {
   125     Label run_compiled_code;
   126     // JVMTI events, such as single-stepping, are implemented partly by avoiding running
   127     // compiled code in threads for which the event is enabled.  Check here for
   128     // interp_only_mode if these events CAN be enabled.
   129 #ifdef _LP64
   130     Register rthread = r15_thread;
   131 #else
   132     Register rthread = temp;
   133     __ get_thread(rthread);
   134 #endif
   135     // interp_only is an int, on little endian it is sufficient to test the byte only
   136     // Is a cmpl faster?
   137     __ cmpb(Address(rthread, JavaThread::interp_only_mode_offset()), 0);
   138     __ jccb(Assembler::zero, run_compiled_code);
   139     __ jmp(Address(method, Method::interpreter_entry_offset()));
   140     __ BIND(run_compiled_code);
   141   }
   143   const ByteSize entry_offset = for_compiler_entry ? Method::from_compiled_offset() :
   144                                                      Method::from_interpreted_offset();
   145   __ jmp(Address(method, entry_offset));
   146 }
   148 void MethodHandles::jump_to_lambda_form(MacroAssembler* _masm,
   149                                         Register recv, Register method_temp,
   150                                         Register temp2,
   151                                         bool for_compiler_entry) {
   152   BLOCK_COMMENT("jump_to_lambda_form {");
   153   // This is the initial entry point of a lazy method handle.
   154   // After type checking, it picks up the invoker from the LambdaForm.
   155   assert_different_registers(recv, method_temp, temp2);
   156   assert(recv != noreg, "required register");
   157   assert(method_temp == rbx, "required register for loading method");
   159   //NOT_PRODUCT({ FlagSetting fs(TraceMethodHandles, true); trace_method_handle(_masm, "LZMH"); });
   161   // Load the invoker, as MH -> MH.form -> LF.vmentry
   162   __ verify_oop(recv);
   163   __ load_heap_oop(method_temp, Address(recv, NONZERO(java_lang_invoke_MethodHandle::form_offset_in_bytes())));
   164   __ verify_oop(method_temp);
   165   __ load_heap_oop(method_temp, Address(method_temp, NONZERO(java_lang_invoke_LambdaForm::vmentry_offset_in_bytes())));
   166   __ verify_oop(method_temp);
   167   // the following assumes that a Method* is normally compressed in the vmtarget field:
   168   __ movptr(method_temp, Address(method_temp, NONZERO(java_lang_invoke_MemberName::vmtarget_offset_in_bytes())));
   170   if (VerifyMethodHandles && !for_compiler_entry) {
   171     // make sure recv is already on stack
   172     __ load_sized_value(temp2,
   173                         Address(method_temp, Method::size_of_parameters_offset()),
   174                         sizeof(u2), /*is_signed*/ false);
   175     // assert(sizeof(u2) == sizeof(Method::_size_of_parameters), "");
   176     Label L;
   177     __ cmpptr(recv, __ argument_address(temp2, -1));
   178     __ jcc(Assembler::equal, L);
   179     __ movptr(rax, __ argument_address(temp2, -1));
   180     __ STOP("receiver not on stack");
   181     __ BIND(L);
   182   }
   184   jump_from_method_handle(_masm, method_temp, temp2, for_compiler_entry);
   185   BLOCK_COMMENT("} jump_to_lambda_form");
   186 }
   189 // Code generation
   190 address MethodHandles::generate_method_handle_interpreter_entry(MacroAssembler* _masm,
   191                                                                 vmIntrinsics::ID iid) {
   192   const bool not_for_compiler_entry = false;  // this is the interpreter entry
   193   assert(is_signature_polymorphic(iid), "expected invoke iid");
   194   if (iid == vmIntrinsics::_invokeGeneric ||
   195       iid == vmIntrinsics::_compiledLambdaForm) {
   196     // Perhaps surprisingly, the symbolic references visible to Java are not directly used.
   197     // They are linked to Java-generated adapters via MethodHandleNatives.linkMethod.
   198     // They all allow an appendix argument.
   199     __ hlt();           // empty stubs make SG sick
   200     return NULL;
   201   }
   203   // rsi/r13: sender SP (must preserve; see prepare_to_jump_from_interpreted)
   204   // rbx: Method*
   205   // rdx: argument locator (parameter slot count, added to rsp)
   206   // rcx: used as temp to hold mh or receiver
   207   // rax, rdi: garbage temps, blown away
   208   Register rdx_argp   = rdx;   // argument list ptr, live on error paths
   209   Register rax_temp   = rax;
   210   Register rcx_mh     = rcx;   // MH receiver; dies quickly and is recycled
   211   Register rbx_method = rbx;   // eventual target of this invocation
   213   // here's where control starts out:
   214   __ align(CodeEntryAlignment);
   215   address entry_point = __ pc();
   217   if (VerifyMethodHandles) {
   218     Label L;
   219     BLOCK_COMMENT("verify_intrinsic_id {");
   220     __ cmpb(Address(rbx_method, Method::intrinsic_id_offset_in_bytes()), (int) iid);
   221     __ jcc(Assembler::equal, L);
   222     if (iid == vmIntrinsics::_linkToVirtual ||
   223         iid == vmIntrinsics::_linkToSpecial) {
   224       // could do this for all kinds, but would explode assembly code size
   225       trace_method_handle(_masm, "bad Method*::intrinsic_id");
   226     }
   227     __ STOP("bad Method*::intrinsic_id");
   228     __ bind(L);
   229     BLOCK_COMMENT("} verify_intrinsic_id");
   230   }
   232   // First task:  Find out how big the argument list is.
   233   Address rdx_first_arg_addr;
   234   int ref_kind = signature_polymorphic_intrinsic_ref_kind(iid);
   235   assert(ref_kind != 0 || iid == vmIntrinsics::_invokeBasic, "must be _invokeBasic or a linkTo intrinsic");
   236   if (ref_kind == 0 || MethodHandles::ref_kind_has_receiver(ref_kind)) {
   237     __ load_sized_value(rdx_argp,
   238                         Address(rbx_method, Method::size_of_parameters_offset()),
   239                         sizeof(u2), /*is_signed*/ false);
   240     // assert(sizeof(u2) == sizeof(Method::_size_of_parameters), "");
   241     rdx_first_arg_addr = __ argument_address(rdx_argp, -1);
   242   } else {
   243     DEBUG_ONLY(rdx_argp = noreg);
   244   }
   246   if (!is_signature_polymorphic_static(iid)) {
   247     __ movptr(rcx_mh, rdx_first_arg_addr);
   248     DEBUG_ONLY(rdx_argp = noreg);
   249   }
   251   // rdx_first_arg_addr is live!
   253   trace_method_handle_interpreter_entry(_masm, iid);
   255   if (iid == vmIntrinsics::_invokeBasic) {
   256     generate_method_handle_dispatch(_masm, iid, rcx_mh, noreg, not_for_compiler_entry);
   258   } else {
   259     // Adjust argument list by popping the trailing MemberName argument.
   260     Register rcx_recv = noreg;
   261     if (MethodHandles::ref_kind_has_receiver(ref_kind)) {
   262       // Load the receiver (not the MH; the actual MemberName's receiver) up from the interpreter stack.
   263       __ movptr(rcx_recv = rcx, rdx_first_arg_addr);
   264     }
   265     DEBUG_ONLY(rdx_argp = noreg);
   266     Register rbx_member = rbx_method;  // MemberName ptr; incoming method ptr is dead now
   267     __ pop(rax_temp);           // return address
   268     __ pop(rbx_member);         // extract last argument
   269     __ push(rax_temp);          // re-push return address
   270     generate_method_handle_dispatch(_masm, iid, rcx_recv, rbx_member, not_for_compiler_entry);
   271   }
   273   return entry_point;
   274 }
   276 void MethodHandles::generate_method_handle_dispatch(MacroAssembler* _masm,
   277                                                     vmIntrinsics::ID iid,
   278                                                     Register receiver_reg,
   279                                                     Register member_reg,
   280                                                     bool for_compiler_entry) {
   281   assert(is_signature_polymorphic(iid), "expected invoke iid");
   282   Register rbx_method = rbx;   // eventual target of this invocation
   283   // temps used in this code are not used in *either* compiled or interpreted calling sequences
   284 #ifdef _LP64
   285   Register temp1 = rscratch1;
   286   Register temp2 = rscratch2;
   287   Register temp3 = rax;
   288   if (for_compiler_entry) {
   289     assert(receiver_reg == (iid == vmIntrinsics::_linkToStatic ? noreg : j_rarg0), "only valid assignment");
   290     assert_different_registers(temp1,        j_rarg0, j_rarg1, j_rarg2, j_rarg3, j_rarg4, j_rarg5);
   291     assert_different_registers(temp2,        j_rarg0, j_rarg1, j_rarg2, j_rarg3, j_rarg4, j_rarg5);
   292     assert_different_registers(temp3,        j_rarg0, j_rarg1, j_rarg2, j_rarg3, j_rarg4, j_rarg5);
   293   }
   294 #else
   295   Register temp1 = (for_compiler_entry ? rsi : rdx);
   296   Register temp2 = rdi;
   297   Register temp3 = rax;
   298   if (for_compiler_entry) {
   299     assert(receiver_reg == (iid == vmIntrinsics::_linkToStatic ? noreg : rcx), "only valid assignment");
   300     assert_different_registers(temp1,        rcx, rdx);
   301     assert_different_registers(temp2,        rcx, rdx);
   302     assert_different_registers(temp3,        rcx, rdx);
   303   }
   304 #endif
   305   else {
   306     assert_different_registers(temp1, temp2, temp3, saved_last_sp_register());  // don't trash lastSP
   307   }
   308   assert_different_registers(temp1, temp2, temp3, receiver_reg);
   309   assert_different_registers(temp1, temp2, temp3, member_reg);
   311   if (iid == vmIntrinsics::_invokeBasic) {
   312     // indirect through MH.form.vmentry.vmtarget
   313     jump_to_lambda_form(_masm, receiver_reg, rbx_method, temp1, for_compiler_entry);
   315   } else {
   316     // The method is a member invoker used by direct method handles.
   317     if (VerifyMethodHandles) {
   318       // make sure the trailing argument really is a MemberName (caller responsibility)
   319       verify_klass(_masm, member_reg, SystemDictionary::WK_KLASS_ENUM_NAME(java_lang_invoke_MemberName),
   320                    "MemberName required for invokeVirtual etc.");
   321     }
   323     Address member_clazz(    member_reg, NONZERO(java_lang_invoke_MemberName::clazz_offset_in_bytes()));
   324     Address member_vmindex(  member_reg, NONZERO(java_lang_invoke_MemberName::vmindex_offset_in_bytes()));
   325     Address member_vmtarget( member_reg, NONZERO(java_lang_invoke_MemberName::vmtarget_offset_in_bytes()));
   327     Register temp1_recv_klass = temp1;
   328     if (iid != vmIntrinsics::_linkToStatic) {
   329       __ verify_oop(receiver_reg);
   330       if (iid == vmIntrinsics::_linkToSpecial) {
   331         // Don't actually load the klass; just null-check the receiver.
   332         __ null_check(receiver_reg);
   333       } else {
   334         // load receiver klass itself
   335         __ null_check(receiver_reg, oopDesc::klass_offset_in_bytes());
   336         __ load_klass(temp1_recv_klass, receiver_reg);
   337         __ verify_klass_ptr(temp1_recv_klass);
   338       }
   339       BLOCK_COMMENT("check_receiver {");
   340       // The receiver for the MemberName must be in receiver_reg.
   341       // Check the receiver against the MemberName.clazz
   342       if (VerifyMethodHandles && iid == vmIntrinsics::_linkToSpecial) {
   343         // Did not load it above...
   344         __ load_klass(temp1_recv_klass, receiver_reg);
   345         __ verify_klass_ptr(temp1_recv_klass);
   346       }
   347       if (VerifyMethodHandles && iid != vmIntrinsics::_linkToInterface) {
   348         Label L_ok;
   349         Register temp2_defc = temp2;
   350         __ load_heap_oop(temp2_defc, member_clazz);
   351         load_klass_from_Class(_masm, temp2_defc);
   352         __ verify_klass_ptr(temp2_defc);
   353         __ check_klass_subtype(temp1_recv_klass, temp2_defc, temp3, L_ok);
   354         // If we get here, the type check failed!
   355         __ STOP("receiver class disagrees with MemberName.clazz");
   356         __ bind(L_ok);
   357       }
   358       BLOCK_COMMENT("} check_receiver");
   359     }
   360     if (iid == vmIntrinsics::_linkToSpecial ||
   361         iid == vmIntrinsics::_linkToStatic) {
   362       DEBUG_ONLY(temp1_recv_klass = noreg);  // these guys didn't load the recv_klass
   363     }
   365     // Live registers at this point:
   366     //  member_reg - MemberName that was the trailing argument
   367     //  temp1_recv_klass - klass of stacked receiver, if needed
   368     //  rsi/r13 - interpreter linkage (if interpreted)
   369     //  rcx, rdx, rsi, rdi, r8, r8 - compiler arguments (if compiled)
   371     Label L_incompatible_class_change_error;
   372     switch (iid) {
   373     case vmIntrinsics::_linkToSpecial:
   374       if (VerifyMethodHandles) {
   375         verify_ref_kind(_masm, JVM_REF_invokeSpecial, member_reg, temp3);
   376       }
   377       __ movptr(rbx_method, member_vmtarget);
   378       break;
   380     case vmIntrinsics::_linkToStatic:
   381       if (VerifyMethodHandles) {
   382         verify_ref_kind(_masm, JVM_REF_invokeStatic, member_reg, temp3);
   383       }
   384       __ movptr(rbx_method, member_vmtarget);
   385       break;
   387     case vmIntrinsics::_linkToVirtual:
   388     {
   389       // same as TemplateTable::invokevirtual,
   390       // minus the CP setup and profiling:
   392       if (VerifyMethodHandles) {
   393         verify_ref_kind(_masm, JVM_REF_invokeVirtual, member_reg, temp3);
   394       }
   396       // pick out the vtable index from the MemberName, and then we can discard it:
   397       Register temp2_index = temp2;
   398       __ movptr(temp2_index, member_vmindex);
   400       if (VerifyMethodHandles) {
   401         Label L_index_ok;
   402         __ cmpl(temp2_index, 0);
   403         __ jcc(Assembler::greaterEqual, L_index_ok);
   404         __ STOP("no virtual index");
   405         __ BIND(L_index_ok);
   406       }
   408       // Note:  The verifier invariants allow us to ignore MemberName.clazz and vmtarget
   409       // at this point.  And VerifyMethodHandles has already checked clazz, if needed.
   411       // get target Method* & entry point
   412       __ lookup_virtual_method(temp1_recv_klass, temp2_index, rbx_method);
   413       break;
   414     }
   416     case vmIntrinsics::_linkToInterface:
   417     {
   418       // same as TemplateTable::invokeinterface
   419       // (minus the CP setup and profiling, with different argument motion)
   420       if (VerifyMethodHandles) {
   421         verify_ref_kind(_masm, JVM_REF_invokeInterface, member_reg, temp3);
   422       }
   424       Register temp3_intf = temp3;
   425       __ load_heap_oop(temp3_intf, member_clazz);
   426       load_klass_from_Class(_masm, temp3_intf);
   427       __ verify_klass_ptr(temp3_intf);
   429       Register rbx_index = rbx_method;
   430       __ movptr(rbx_index, member_vmindex);
   431       if (VerifyMethodHandles) {
   432         Label L;
   433         __ cmpl(rbx_index, 0);
   434         __ jcc(Assembler::greaterEqual, L);
   435         __ STOP("invalid vtable index for MH.invokeInterface");
   436         __ bind(L);
   437       }
   439       // given intf, index, and recv klass, dispatch to the implementation method
   440       __ lookup_interface_method(temp1_recv_klass, temp3_intf,
   441                                  // note: next two args must be the same:
   442                                  rbx_index, rbx_method,
   443                                  temp2,
   444                                  L_incompatible_class_change_error);
   445       break;
   446     }
   448     default:
   449       fatal(err_msg_res("unexpected intrinsic %d: %s", iid, vmIntrinsics::name_at(iid)));
   450       break;
   451     }
   453     // Live at this point:
   454     //   rbx_method
   455     //   rsi/r13 (if interpreted)
   457     // After figuring out which concrete method to call, jump into it.
   458     // Note that this works in the interpreter with no data motion.
   459     // But the compiled version will require that rcx_recv be shifted out.
   460     __ verify_method_ptr(rbx_method);
   461     jump_from_method_handle(_masm, rbx_method, temp1, for_compiler_entry);
   463     if (iid == vmIntrinsics::_linkToInterface) {
   464       __ bind(L_incompatible_class_change_error);
   465       __ jump(RuntimeAddress(StubRoutines::throw_IncompatibleClassChangeError_entry()));
   466     }
   467   }
   468 }
   470 #ifndef PRODUCT
   471 void trace_method_handle_stub(const char* adaptername,
   472                               oop mh,
   473                               intptr_t* saved_regs,
   474                               intptr_t* entry_sp) {
   475   // called as a leaf from native code: do not block the JVM!
   476   bool has_mh = (strstr(adaptername, "/static") == NULL &&
   477                  strstr(adaptername, "linkTo") == NULL);    // static linkers don't have MH
   478   const char* mh_reg_name = has_mh ? "rcx_mh" : "rcx";
   479   tty->print_cr("MH %s %s="PTR_FORMAT" sp="PTR_FORMAT,
   480                 adaptername, mh_reg_name,
   481                 mh, entry_sp);
   483   if (Verbose) {
   484     tty->print_cr("Registers:");
   485     const int saved_regs_count = RegisterImpl::number_of_registers;
   486     for (int i = 0; i < saved_regs_count; i++) {
   487       Register r = as_Register(i);
   488       // The registers are stored in reverse order on the stack (by pusha).
   489       tty->print("%3s=" PTR_FORMAT, r->name(), saved_regs[((saved_regs_count - 1) - i)]);
   490       if ((i + 1) % 4 == 0) {
   491         tty->cr();
   492       } else {
   493         tty->print(", ");
   494       }
   495     }
   496     tty->cr();
   498     {
   499      // dumping last frame with frame::describe
   501       JavaThread* p = JavaThread::active();
   503       ResourceMark rm;
   504       PRESERVE_EXCEPTION_MARK; // may not be needed by safer and unexpensive here
   505       FrameValues values;
   507       // Note: We want to allow trace_method_handle from any call site.
   508       // While trace_method_handle creates a frame, it may be entered
   509       // without a PC on the stack top (e.g. not just after a call).
   510       // Walking that frame could lead to failures due to that invalid PC.
   511       // => carefully detect that frame when doing the stack walking
   513       // Current C frame
   514       frame cur_frame = os::current_frame();
   516       // Robust search of trace_calling_frame (independant of inlining).
   517       // Assumes saved_regs comes from a pusha in the trace_calling_frame.
   518       assert(cur_frame.sp() < saved_regs, "registers not saved on stack ?");
   519       frame trace_calling_frame = os::get_sender_for_C_frame(&cur_frame);
   520       while (trace_calling_frame.fp() < saved_regs) {
   521         trace_calling_frame = os::get_sender_for_C_frame(&trace_calling_frame);
   522       }
   524       // safely create a frame and call frame::describe
   525       intptr_t *dump_sp = trace_calling_frame.sender_sp();
   526       intptr_t *dump_fp = trace_calling_frame.link();
   528       bool walkable = has_mh; // whether the traced frame shoud be walkable
   530       if (walkable) {
   531         // The previous definition of walkable may have to be refined
   532         // if new call sites cause the next frame constructor to start
   533         // failing. Alternatively, frame constructors could be
   534         // modified to support the current or future non walkable
   535         // frames (but this is more intrusive and is not considered as
   536         // part of this RFE, which will instead use a simpler output).
   537         frame dump_frame = frame(dump_sp, dump_fp);
   538         dump_frame.describe(values, 1);
   539       } else {
   540         // Stack may not be walkable (invalid PC above FP):
   541         // Add descriptions without building a Java frame to avoid issues
   542         values.describe(-1, dump_fp, "fp for #1 <not parsed, cannot trust pc>");
   543         values.describe(-1, dump_sp, "sp for #1");
   544       }
   545       values.describe(-1, entry_sp, "raw top of stack");
   547       tty->print_cr("Stack layout:");
   548       values.print(p);
   549     }
   550     if (has_mh && mh->is_oop()) {
   551       mh->print();
   552       if (java_lang_invoke_MethodHandle::is_instance(mh)) {
   553         if (java_lang_invoke_MethodHandle::form_offset_in_bytes() != 0)
   554           java_lang_invoke_MethodHandle::form(mh)->print();
   555       }
   556     }
   557   }
   558 }
   560 // The stub wraps the arguments in a struct on the stack to avoid
   561 // dealing with the different calling conventions for passing 6
   562 // arguments.
   563 struct MethodHandleStubArguments {
   564   const char* adaptername;
   565   oopDesc* mh;
   566   intptr_t* saved_regs;
   567   intptr_t* entry_sp;
   568 };
   569 void trace_method_handle_stub_wrapper(MethodHandleStubArguments* args) {
   570   trace_method_handle_stub(args->adaptername,
   571                            args->mh,
   572                            args->saved_regs,
   573                            args->entry_sp);
   574 }
   576 void MethodHandles::trace_method_handle(MacroAssembler* _masm, const char* adaptername) {
   577   if (!TraceMethodHandles)  return;
   578   BLOCK_COMMENT("trace_method_handle {");
   579   __ enter();
   580   __ andptr(rsp, -16); // align stack if needed for FPU state
   581   __ pusha();
   582   __ mov(rbx, rsp); // for retreiving saved_regs
   583   // Note: saved_regs must be in the entered frame for the
   584   // robust stack walking implemented in trace_method_handle_stub.
   586   // save FP result, valid at some call sites (adapter_opt_return_float, ...)
   587   __ increment(rsp, -2 * wordSize);
   588   if  (UseSSE >= 2) {
   589     __ movdbl(Address(rsp, 0), xmm0);
   590   } else if (UseSSE == 1) {
   591     __ movflt(Address(rsp, 0), xmm0);
   592   } else {
   593     __ fst_d(Address(rsp, 0));
   594   }
   596   // Incoming state:
   597   // rcx: method handle
   598   //
   599   // To avoid calling convention issues, build a record on the stack
   600   // and pass the pointer to that instead.
   601   __ push(rbp);               // entry_sp (with extra align space)
   602   __ push(rbx);               // pusha saved_regs
   603   __ push(rcx);               // mh
   604   __ push(rcx);               // slot for adaptername
   605   __ movptr(Address(rsp, 0), (intptr_t) adaptername);
   606   __ super_call_VM_leaf(CAST_FROM_FN_PTR(address, trace_method_handle_stub_wrapper), rsp);
   607   __ increment(rsp, sizeof(MethodHandleStubArguments));
   609   if  (UseSSE >= 2) {
   610     __ movdbl(xmm0, Address(rsp, 0));
   611   } else if (UseSSE == 1) {
   612     __ movflt(xmm0, Address(rsp, 0));
   613   } else {
   614     __ fld_d(Address(rsp, 0));
   615   }
   616   __ increment(rsp, 2 * wordSize);
   618   __ popa();
   619   __ leave();
   620   BLOCK_COMMENT("} trace_method_handle");
   621 }
   622 #endif //PRODUCT

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