src/cpu/x86/vm/methodHandles_x86.cpp

Wed, 13 Oct 2010 11:46:46 -0400

author
acorn
date
Wed, 13 Oct 2010 11:46:46 -0400
changeset 2226
75b0735b4d04
parent 2222
b6aedd1acdc0
parent 2173
c93c652551b5
child 2227
beba40b26a79
permissions
-rw-r--r--

Merge

jrose@1145 1 /*
trims@1907 2 * Copyright (c) 1997, 2010, Oracle and/or its affiliates. All rights reserved.
jrose@1145 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
jrose@1145 4 *
jrose@1145 5 * This code is free software; you can redistribute it and/or modify it
jrose@1145 6 * under the terms of the GNU General Public License version 2 only, as
jrose@1145 7 * published by the Free Software Foundation.
jrose@1145 8 *
jrose@1145 9 * This code is distributed in the hope that it will be useful, but WITHOUT
jrose@1145 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
jrose@1145 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
jrose@1145 12 * version 2 for more details (a copy is included in the LICENSE file that
jrose@1145 13 * accompanied this code).
jrose@1145 14 *
jrose@1145 15 * You should have received a copy of the GNU General Public License version
jrose@1145 16 * 2 along with this work; if not, write to the Free Software Foundation,
jrose@1145 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
jrose@1145 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
jrose@1145 22 *
jrose@1145 23 */
jrose@1145 24
jrose@1145 25 #include "incls/_precompiled.incl"
jrose@1145 26 #include "incls/_methodHandles_x86.cpp.incl"
jrose@1145 27
jrose@1145 28 #define __ _masm->
jrose@1145 29
jrose@2148 30 #ifdef PRODUCT
jrose@2148 31 #define BLOCK_COMMENT(str) /* nothing */
jrose@2148 32 #else
jrose@2148 33 #define BLOCK_COMMENT(str) __ block_comment(str)
jrose@2148 34 #endif
jrose@2148 35
jrose@2148 36 #define BIND(label) bind(label); BLOCK_COMMENT(#label ":")
jrose@2148 37
jrose@1145 38 address MethodHandleEntry::start_compiled_entry(MacroAssembler* _masm,
jrose@1145 39 address interpreted_entry) {
jrose@1145 40 // Just before the actual machine code entry point, allocate space
jrose@1145 41 // for a MethodHandleEntry::Data record, so that we can manage everything
jrose@1145 42 // from one base pointer.
jrose@1145 43 __ align(wordSize);
jrose@1145 44 address target = __ pc() + sizeof(Data);
jrose@1145 45 while (__ pc() < target) {
jrose@1145 46 __ nop();
jrose@1145 47 __ align(wordSize);
jrose@1145 48 }
jrose@1145 49
jrose@1145 50 MethodHandleEntry* me = (MethodHandleEntry*) __ pc();
jrose@1145 51 me->set_end_address(__ pc()); // set a temporary end_address
jrose@1145 52 me->set_from_interpreted_entry(interpreted_entry);
jrose@1145 53 me->set_type_checking_entry(NULL);
jrose@1145 54
jrose@1145 55 return (address) me;
jrose@1145 56 }
jrose@1145 57
jrose@1145 58 MethodHandleEntry* MethodHandleEntry::finish_compiled_entry(MacroAssembler* _masm,
jrose@1145 59 address start_addr) {
jrose@1145 60 MethodHandleEntry* me = (MethodHandleEntry*) start_addr;
jrose@1145 61 assert(me->end_address() == start_addr, "valid ME");
jrose@1145 62
jrose@1145 63 // Fill in the real end_address:
jrose@1145 64 __ align(wordSize);
jrose@1145 65 me->set_end_address(__ pc());
jrose@1145 66
jrose@1145 67 return me;
jrose@1145 68 }
jrose@1145 69
jrose@1145 70 #ifdef ASSERT
twisti@1739 71 static void verify_argslot(MacroAssembler* _masm, Register argslot_reg,
jrose@1145 72 const char* error_message) {
jrose@1145 73 // Verify that argslot lies within (rsp, rbp].
jrose@1145 74 Label L_ok, L_bad;
jrose@2148 75 BLOCK_COMMENT("{ verify_argslot");
twisti@1739 76 __ cmpptr(argslot_reg, rbp);
twisti@1570 77 __ jccb(Assembler::above, L_bad);
twisti@1739 78 __ cmpptr(rsp, argslot_reg);
twisti@1570 79 __ jccb(Assembler::below, L_ok);
jrose@1145 80 __ bind(L_bad);
jrose@1145 81 __ stop(error_message);
jrose@1145 82 __ bind(L_ok);
jrose@2148 83 BLOCK_COMMENT("} verify_argslot");
jrose@1145 84 }
jrose@1145 85 #endif
jrose@1145 86
jrose@1145 87
jrose@1145 88 // Code generation
jrose@1145 89 address MethodHandles::generate_method_handle_interpreter_entry(MacroAssembler* _masm) {
jrose@1145 90 // rbx: methodOop
jrose@1145 91 // rcx: receiver method handle (must load from sp[MethodTypeForm.vmslots])
jrose@1145 92 // rsi/r13: sender SP (must preserve; see prepare_to_jump_from_interpreted)
jrose@2148 93 // rdx, rdi: garbage temp, blown away
jrose@1145 94
jrose@1145 95 Register rbx_method = rbx;
jrose@1145 96 Register rcx_recv = rcx;
jrose@1145 97 Register rax_mtype = rax;
jrose@1145 98 Register rdx_temp = rdx;
jrose@2148 99 Register rdi_temp = rdi;
jrose@1145 100
jrose@1145 101 // emit WrongMethodType path first, to enable jccb back-branch from main path
jrose@1145 102 Label wrong_method_type;
jrose@1145 103 __ bind(wrong_method_type);
jrose@2148 104 Label invoke_generic_slow_path;
jrose@2148 105 assert(methodOopDesc::intrinsic_id_size_in_bytes() == sizeof(u1), "");;
jrose@2148 106 __ cmpb(Address(rbx_method, methodOopDesc::intrinsic_id_offset_in_bytes()), (int) vmIntrinsics::_invokeExact);
jrose@2148 107 __ jcc(Assembler::notEqual, invoke_generic_slow_path);
jrose@1145 108 __ push(rax_mtype); // required mtype
jrose@1145 109 __ push(rcx_recv); // bad mh (1st stacked argument)
jrose@1145 110 __ jump(ExternalAddress(Interpreter::throw_WrongMethodType_entry()));
jrose@1145 111
jrose@1145 112 // here's where control starts out:
jrose@1145 113 __ align(CodeEntryAlignment);
jrose@1145 114 address entry_point = __ pc();
jrose@1145 115
jrose@1145 116 // fetch the MethodType from the method handle into rax (the 'check' register)
jrose@1145 117 {
jrose@1145 118 Register tem = rbx_method;
jrose@1145 119 for (jint* pchase = methodOopDesc::method_type_offsets_chain(); (*pchase) != -1; pchase++) {
jrose@1145 120 __ movptr(rax_mtype, Address(tem, *pchase));
jrose@1145 121 tem = rax_mtype; // in case there is another indirection
jrose@1145 122 }
jrose@1145 123 }
jrose@1145 124
jrose@1145 125 // given the MethodType, find out where the MH argument is buried
jrose@1145 126 __ movptr(rdx_temp, Address(rax_mtype,
jrose@2148 127 __ delayed_value(java_dyn_MethodType::form_offset_in_bytes, rdi_temp)));
jrose@2148 128 Register rdx_vmslots = rdx_temp;
jrose@2148 129 __ movl(rdx_vmslots, Address(rdx_temp,
jrose@2148 130 __ delayed_value(java_dyn_MethodTypeForm::vmslots_offset_in_bytes, rdi_temp)));
jrose@2148 131 __ movptr(rcx_recv, __ argument_address(rdx_vmslots));
jrose@1145 132
jrose@2148 133 trace_method_handle(_masm, "invokeExact");
jrose@2148 134
jrose@2148 135 __ check_method_handle_type(rax_mtype, rcx_recv, rdi_temp, wrong_method_type);
jrose@2148 136 __ jump_to_method_handle_entry(rcx_recv, rdi_temp);
jrose@2148 137
jrose@2148 138 // for invokeGeneric (only), apply argument and result conversions on the fly
jrose@2148 139 __ bind(invoke_generic_slow_path);
jrose@2148 140 #ifdef ASSERT
jrose@2148 141 { Label L;
jrose@2148 142 __ cmpb(Address(rbx_method, methodOopDesc::intrinsic_id_offset_in_bytes()), (int) vmIntrinsics::_invokeGeneric);
jrose@2148 143 __ jcc(Assembler::equal, L);
jrose@2148 144 __ stop("bad methodOop::intrinsic_id");
jrose@2148 145 __ bind(L);
jrose@2148 146 }
jrose@2148 147 #endif //ASSERT
jrose@2148 148 Register rbx_temp = rbx_method; // don't need it now
jrose@2148 149
jrose@2148 150 // make room on the stack for another pointer:
jrose@2148 151 Register rcx_argslot = rcx_recv;
jrose@2148 152 __ lea(rcx_argslot, __ argument_address(rdx_vmslots, 1));
jrose@2148 153 insert_arg_slots(_masm, 2 * stack_move_unit(), _INSERT_REF_MASK,
jrose@2148 154 rcx_argslot, rbx_temp, rdx_temp);
jrose@2148 155
jrose@2148 156 // load up an adapter from the calling type (Java weaves this)
jrose@2148 157 __ movptr(rdx_temp, Address(rax_mtype,
jrose@2148 158 __ delayed_value(java_dyn_MethodType::form_offset_in_bytes, rdi_temp)));
jrose@2148 159 Register rdx_adapter = rdx_temp;
jrose@2148 160 // movptr(rdx_adapter, Address(rdx_temp, java_dyn_MethodTypeForm::genericInvoker_offset_in_bytes()));
jrose@2148 161 // deal with old JDK versions:
jrose@2148 162 __ lea(rdi_temp, Address(rdx_temp,
jrose@2148 163 __ delayed_value(java_dyn_MethodTypeForm::genericInvoker_offset_in_bytes, rdi_temp)));
jrose@2148 164 __ cmpptr(rdi_temp, rdx_temp);
jrose@2148 165 Label sorry_no_invoke_generic;
jrose@2148 166 __ jccb(Assembler::below, sorry_no_invoke_generic);
jrose@2148 167
jrose@2148 168 __ movptr(rdx_adapter, Address(rdi_temp, 0));
jrose@2148 169 __ testptr(rdx_adapter, rdx_adapter);
jrose@2148 170 __ jccb(Assembler::zero, sorry_no_invoke_generic);
jrose@2148 171 __ movptr(Address(rcx_argslot, 1 * Interpreter::stackElementSize), rdx_adapter);
jrose@2148 172 // As a trusted first argument, pass the type being called, so the adapter knows
jrose@2148 173 // the actual types of the arguments and return values.
jrose@2148 174 // (Generic invokers are shared among form-families of method-type.)
jrose@2148 175 __ movptr(Address(rcx_argslot, 0 * Interpreter::stackElementSize), rax_mtype);
jrose@2148 176 // FIXME: assert that rdx_adapter is of the right method-type.
jrose@2148 177 __ mov(rcx, rdx_adapter);
jrose@2148 178 trace_method_handle(_masm, "invokeGeneric");
jrose@2148 179 __ jump_to_method_handle_entry(rcx, rdi_temp);
jrose@2148 180
jrose@2148 181 __ bind(sorry_no_invoke_generic); // no invokeGeneric implementation available!
jrose@2148 182 __ movptr(rcx_recv, Address(rcx_argslot, -1 * Interpreter::stackElementSize)); // recover original MH
jrose@2148 183 __ push(rax_mtype); // required mtype
jrose@2148 184 __ push(rcx_recv); // bad mh (1st stacked argument)
jrose@2148 185 __ jump(ExternalAddress(Interpreter::throw_WrongMethodType_entry()));
jrose@1145 186
jrose@1145 187 return entry_point;
jrose@1145 188 }
jrose@1145 189
jrose@1145 190 // Helper to insert argument slots into the stack.
jrose@1145 191 // arg_slots must be a multiple of stack_move_unit() and <= 0
jrose@1145 192 void MethodHandles::insert_arg_slots(MacroAssembler* _masm,
jrose@1145 193 RegisterOrConstant arg_slots,
jrose@1145 194 int arg_mask,
jrose@1145 195 Register rax_argslot,
twisti@1858 196 Register rbx_temp, Register rdx_temp, Register temp3_reg) {
twisti@1858 197 assert(temp3_reg == noreg, "temp3 not required");
jrose@1145 198 assert_different_registers(rax_argslot, rbx_temp, rdx_temp,
jrose@1145 199 (!arg_slots.is_register() ? rsp : arg_slots.as_register()));
jrose@1145 200
jrose@1145 201 #ifdef ASSERT
jrose@1145 202 verify_argslot(_masm, rax_argslot, "insertion point must fall within current frame");
jrose@1145 203 if (arg_slots.is_register()) {
jrose@1145 204 Label L_ok, L_bad;
jrose@1145 205 __ cmpptr(arg_slots.as_register(), (int32_t) NULL_WORD);
twisti@1570 206 __ jccb(Assembler::greater, L_bad);
jrose@1145 207 __ testl(arg_slots.as_register(), -stack_move_unit() - 1);
twisti@1570 208 __ jccb(Assembler::zero, L_ok);
jrose@1145 209 __ bind(L_bad);
jrose@1145 210 __ stop("assert arg_slots <= 0 and clear low bits");
jrose@1145 211 __ bind(L_ok);
jrose@1145 212 } else {
jrose@1145 213 assert(arg_slots.as_constant() <= 0, "");
jrose@1145 214 assert(arg_slots.as_constant() % -stack_move_unit() == 0, "");
jrose@1145 215 }
jrose@1145 216 #endif //ASSERT
jrose@1145 217
jrose@1145 218 #ifdef _LP64
jrose@1145 219 if (arg_slots.is_register()) {
jrose@1145 220 // clean high bits of stack motion register (was loaded as an int)
jrose@1145 221 __ movslq(arg_slots.as_register(), arg_slots.as_register());
jrose@1145 222 }
jrose@1145 223 #endif
jrose@1145 224
jrose@1145 225 // Make space on the stack for the inserted argument(s).
jrose@1145 226 // Then pull down everything shallower than rax_argslot.
jrose@1145 227 // The stacked return address gets pulled down with everything else.
jrose@1145 228 // That is, copy [rsp, argslot) downward by -size words. In pseudo-code:
jrose@1145 229 // rsp -= size;
jrose@1145 230 // for (rdx = rsp + size; rdx < argslot; rdx++)
jrose@1145 231 // rdx[-size] = rdx[0]
jrose@1145 232 // argslot -= size;
jrose@2148 233 BLOCK_COMMENT("insert_arg_slots {");
jrose@1145 234 __ mov(rdx_temp, rsp); // source pointer for copy
jrose@1145 235 __ lea(rsp, Address(rsp, arg_slots, Address::times_ptr));
jrose@1145 236 {
jrose@1145 237 Label loop;
jrose@2148 238 __ BIND(loop);
jrose@1145 239 // pull one word down each time through the loop
jrose@1145 240 __ movptr(rbx_temp, Address(rdx_temp, 0));
jrose@1145 241 __ movptr(Address(rdx_temp, arg_slots, Address::times_ptr), rbx_temp);
jrose@1145 242 __ addptr(rdx_temp, wordSize);
jrose@1145 243 __ cmpptr(rdx_temp, rax_argslot);
twisti@1570 244 __ jccb(Assembler::less, loop);
jrose@1145 245 }
jrose@1145 246
jrose@1145 247 // Now move the argslot down, to point to the opened-up space.
jrose@1145 248 __ lea(rax_argslot, Address(rax_argslot, arg_slots, Address::times_ptr));
jrose@2148 249 BLOCK_COMMENT("} insert_arg_slots");
jrose@1145 250 }
jrose@1145 251
jrose@1145 252 // Helper to remove argument slots from the stack.
jrose@1145 253 // arg_slots must be a multiple of stack_move_unit() and >= 0
jrose@1145 254 void MethodHandles::remove_arg_slots(MacroAssembler* _masm,
jrose@1145 255 RegisterOrConstant arg_slots,
jrose@1145 256 Register rax_argslot,
twisti@1858 257 Register rbx_temp, Register rdx_temp, Register temp3_reg) {
twisti@1858 258 assert(temp3_reg == noreg, "temp3 not required");
jrose@1145 259 assert_different_registers(rax_argslot, rbx_temp, rdx_temp,
jrose@1145 260 (!arg_slots.is_register() ? rsp : arg_slots.as_register()));
jrose@1145 261
jrose@1145 262 #ifdef ASSERT
twisti@1739 263 // Verify that [argslot..argslot+size) lies within (rsp, rbp).
twisti@1739 264 __ lea(rbx_temp, Address(rax_argslot, arg_slots, Address::times_ptr));
twisti@1739 265 verify_argslot(_masm, rbx_temp, "deleted argument(s) must fall within current frame");
jrose@1145 266 if (arg_slots.is_register()) {
jrose@1145 267 Label L_ok, L_bad;
jrose@1145 268 __ cmpptr(arg_slots.as_register(), (int32_t) NULL_WORD);
twisti@1570 269 __ jccb(Assembler::less, L_bad);
jrose@1145 270 __ testl(arg_slots.as_register(), -stack_move_unit() - 1);
twisti@1570 271 __ jccb(Assembler::zero, L_ok);
jrose@1145 272 __ bind(L_bad);
jrose@1145 273 __ stop("assert arg_slots >= 0 and clear low bits");
jrose@1145 274 __ bind(L_ok);
jrose@1145 275 } else {
jrose@1145 276 assert(arg_slots.as_constant() >= 0, "");
jrose@1145 277 assert(arg_slots.as_constant() % -stack_move_unit() == 0, "");
jrose@1145 278 }
jrose@1145 279 #endif //ASSERT
jrose@1145 280
jrose@1145 281 #ifdef _LP64
jrose@1145 282 if (false) { // not needed, since register is positive
jrose@1145 283 // clean high bits of stack motion register (was loaded as an int)
jrose@1145 284 if (arg_slots.is_register())
jrose@1145 285 __ movslq(arg_slots.as_register(), arg_slots.as_register());
jrose@1145 286 }
jrose@1145 287 #endif
jrose@1145 288
jrose@2148 289 BLOCK_COMMENT("remove_arg_slots {");
jrose@1145 290 // Pull up everything shallower than rax_argslot.
jrose@1145 291 // Then remove the excess space on the stack.
jrose@1145 292 // The stacked return address gets pulled up with everything else.
jrose@1145 293 // That is, copy [rsp, argslot) upward by size words. In pseudo-code:
jrose@1145 294 // for (rdx = argslot-1; rdx >= rsp; --rdx)
jrose@1145 295 // rdx[size] = rdx[0]
jrose@1145 296 // argslot += size;
jrose@1145 297 // rsp += size;
jrose@1145 298 __ lea(rdx_temp, Address(rax_argslot, -wordSize)); // source pointer for copy
jrose@1145 299 {
jrose@1145 300 Label loop;
jrose@2148 301 __ BIND(loop);
jrose@1145 302 // pull one word up each time through the loop
jrose@1145 303 __ movptr(rbx_temp, Address(rdx_temp, 0));
jrose@1145 304 __ movptr(Address(rdx_temp, arg_slots, Address::times_ptr), rbx_temp);
jrose@1145 305 __ addptr(rdx_temp, -wordSize);
jrose@1145 306 __ cmpptr(rdx_temp, rsp);
twisti@1570 307 __ jccb(Assembler::greaterEqual, loop);
jrose@1145 308 }
jrose@1145 309
jrose@1145 310 // Now move the argslot up, to point to the just-copied block.
jrose@1145 311 __ lea(rsp, Address(rsp, arg_slots, Address::times_ptr));
jrose@1145 312 // And adjust the argslot address to point at the deletion point.
jrose@1145 313 __ lea(rax_argslot, Address(rax_argslot, arg_slots, Address::times_ptr));
jrose@2148 314 BLOCK_COMMENT("} remove_arg_slots");
jrose@1145 315 }
jrose@1145 316
jrose@1145 317 #ifndef PRODUCT
twisti@1568 318 extern "C" void print_method_handle(oop mh);
jrose@1145 319 void trace_method_handle_stub(const char* adaptername,
twisti@1568 320 oop mh,
jrose@2148 321 intptr_t* saved_regs,
jrose@1145 322 intptr_t* entry_sp,
jrose@1474 323 intptr_t* saved_sp,
jrose@1474 324 intptr_t* saved_bp) {
jrose@1145 325 // called as a leaf from native code: do not block the JVM!
jrose@1474 326 intptr_t* last_sp = (intptr_t*) saved_bp[frame::interpreter_frame_last_sp_offset];
jrose@1474 327 intptr_t* base_sp = (intptr_t*) saved_bp[frame::interpreter_frame_monitor_block_top_offset];
jrose@1474 328 printf("MH %s mh="INTPTR_FORMAT" sp=("INTPTR_FORMAT"+"INTX_FORMAT") stack_size="INTX_FORMAT" bp="INTPTR_FORMAT"\n",
jrose@1474 329 adaptername, (intptr_t)mh, (intptr_t)entry_sp, (intptr_t)(saved_sp - entry_sp), (intptr_t)(base_sp - last_sp), (intptr_t)saved_bp);
jrose@2148 330 if (last_sp != saved_sp && last_sp != NULL)
jrose@1474 331 printf("*** last_sp="INTPTR_FORMAT"\n", (intptr_t)last_sp);
jrose@2148 332 if (Verbose) {
jrose@2148 333 printf(" reg dump: ");
jrose@2148 334 int saved_regs_count = (entry_sp-1) - saved_regs;
jrose@2148 335 // 32 bit: rdi rsi rbp rsp; rbx rdx rcx (*) rax
jrose@2148 336 int i;
jrose@2148 337 for (i = 0; i <= saved_regs_count; i++) {
jrose@2148 338 if (i > 0 && i % 4 == 0 && i != saved_regs_count)
jrose@2148 339 printf("\n + dump: ");
jrose@2148 340 printf(" %d: "INTPTR_FORMAT, i, saved_regs[i]);
jrose@2148 341 }
jrose@2148 342 printf("\n");
jrose@2148 343 int stack_dump_count = 16;
jrose@2148 344 if (stack_dump_count < (int)(saved_bp + 2 - saved_sp))
jrose@2148 345 stack_dump_count = (int)(saved_bp + 2 - saved_sp);
jrose@2148 346 if (stack_dump_count > 64) stack_dump_count = 48;
jrose@2148 347 for (i = 0; i < stack_dump_count; i += 4) {
jrose@2148 348 printf(" dump at SP[%d] "INTPTR_FORMAT": "INTPTR_FORMAT" "INTPTR_FORMAT" "INTPTR_FORMAT" "INTPTR_FORMAT"\n",
twisti@2173 349 i, (intptr_t) &entry_sp[i+0], entry_sp[i+0], entry_sp[i+1], entry_sp[i+2], entry_sp[i+3]);
jrose@2148 350 }
jrose@2148 351 print_method_handle(mh);
jrose@2148 352 }
jrose@2148 353 }
jrose@2148 354 void MethodHandles::trace_method_handle(MacroAssembler* _masm, const char* adaptername) {
jrose@2148 355 if (!TraceMethodHandles) return;
jrose@2148 356 BLOCK_COMMENT("trace_method_handle {");
jrose@2148 357 __ push(rax);
jrose@2148 358 __ lea(rax, Address(rsp, wordSize*6)); // entry_sp
jrose@2148 359 __ pusha();
jrose@2148 360 // arguments:
jrose@2148 361 __ push(rbp); // interpreter frame pointer
jrose@2148 362 __ push(rsi); // saved_sp
jrose@2148 363 __ push(rax); // entry_sp
jrose@2148 364 __ push(rcx); // mh
jrose@2148 365 __ push(rcx);
jrose@2148 366 __ movptr(Address(rsp, 0), (intptr_t) adaptername);
jrose@2148 367 __ call_VM_leaf(CAST_FROM_FN_PTR(address, trace_method_handle_stub), 5);
jrose@2148 368 __ popa();
jrose@2148 369 __ pop(rax);
jrose@2148 370 BLOCK_COMMENT("} trace_method_handle");
jrose@1145 371 }
jrose@1145 372 #endif //PRODUCT
jrose@1145 373
jrose@1862 374 // which conversion op types are implemented here?
jrose@1862 375 int MethodHandles::adapter_conversion_ops_supported_mask() {
jrose@1862 376 return ((1<<sun_dyn_AdapterMethodHandle::OP_RETYPE_ONLY)
jrose@1862 377 |(1<<sun_dyn_AdapterMethodHandle::OP_RETYPE_RAW)
jrose@1862 378 |(1<<sun_dyn_AdapterMethodHandle::OP_CHECK_CAST)
jrose@1862 379 |(1<<sun_dyn_AdapterMethodHandle::OP_PRIM_TO_PRIM)
jrose@1862 380 |(1<<sun_dyn_AdapterMethodHandle::OP_REF_TO_PRIM)
jrose@1862 381 |(1<<sun_dyn_AdapterMethodHandle::OP_SWAP_ARGS)
jrose@1862 382 |(1<<sun_dyn_AdapterMethodHandle::OP_ROT_ARGS)
jrose@1862 383 |(1<<sun_dyn_AdapterMethodHandle::OP_DUP_ARGS)
jrose@1862 384 |(1<<sun_dyn_AdapterMethodHandle::OP_DROP_ARGS)
jrose@1862 385 //|(1<<sun_dyn_AdapterMethodHandle::OP_SPREAD_ARGS) //BUG!
jrose@1862 386 );
jrose@1862 387 // FIXME: MethodHandlesTest gets a crash if we enable OP_SPREAD_ARGS.
jrose@1862 388 }
jrose@1862 389
jrose@1145 390 // Generate an "entry" field for a method handle.
jrose@1145 391 // This determines how the method handle will respond to calls.
jrose@1145 392 void MethodHandles::generate_method_handle_stub(MacroAssembler* _masm, MethodHandles::EntryKind ek) {
jrose@1145 393 // Here is the register state during an interpreted call,
jrose@1145 394 // as set up by generate_method_handle_interpreter_entry():
jrose@1145 395 // - rbx: garbage temp (was MethodHandle.invoke methodOop, unused)
jrose@1145 396 // - rcx: receiver method handle
jrose@1145 397 // - rax: method handle type (only used by the check_mtype entry point)
jrose@1145 398 // - rsi/r13: sender SP (must preserve; see prepare_to_jump_from_interpreted)
jrose@1145 399 // - rdx: garbage temp, can blow away
jrose@1145 400
jrose@1145 401 Register rcx_recv = rcx;
jrose@1145 402 Register rax_argslot = rax;
jrose@1145 403 Register rbx_temp = rbx;
jrose@1145 404 Register rdx_temp = rdx;
jrose@1145 405
jrose@1474 406 // This guy is set up by prepare_to_jump_from_interpreted (from interpreted calls)
jrose@1474 407 // and gen_c2i_adapter (from compiled calls):
jrose@1474 408 Register saved_last_sp = LP64_ONLY(r13) NOT_LP64(rsi);
jrose@1474 409
jrose@1145 410 guarantee(java_dyn_MethodHandle::vmentry_offset_in_bytes() != 0, "must have offsets");
jrose@1145 411
jrose@1145 412 // some handy addresses
jrose@1145 413 Address rbx_method_fie( rbx, methodOopDesc::from_interpreted_offset() );
jrose@1145 414
jrose@1145 415 Address rcx_mh_vmtarget( rcx_recv, java_dyn_MethodHandle::vmtarget_offset_in_bytes() );
jrose@1145 416 Address rcx_dmh_vmindex( rcx_recv, sun_dyn_DirectMethodHandle::vmindex_offset_in_bytes() );
jrose@1145 417
jrose@1145 418 Address rcx_bmh_vmargslot( rcx_recv, sun_dyn_BoundMethodHandle::vmargslot_offset_in_bytes() );
jrose@1145 419 Address rcx_bmh_argument( rcx_recv, sun_dyn_BoundMethodHandle::argument_offset_in_bytes() );
jrose@1145 420
jrose@1145 421 Address rcx_amh_vmargslot( rcx_recv, sun_dyn_AdapterMethodHandle::vmargslot_offset_in_bytes() );
jrose@1145 422 Address rcx_amh_argument( rcx_recv, sun_dyn_AdapterMethodHandle::argument_offset_in_bytes() );
jrose@1145 423 Address rcx_amh_conversion( rcx_recv, sun_dyn_AdapterMethodHandle::conversion_offset_in_bytes() );
jrose@1145 424 Address vmarg; // __ argument_address(vmargslot)
jrose@1145 425
jrose@1474 426 const int java_mirror_offset = klassOopDesc::klass_part_offset_in_bytes() + Klass::java_mirror_offset_in_bytes();
jrose@1474 427
jrose@1145 428 if (have_entry(ek)) {
jrose@1145 429 __ nop(); // empty stubs make SG sick
jrose@1145 430 return;
jrose@1145 431 }
jrose@1145 432
jrose@1145 433 address interp_entry = __ pc();
jrose@1145 434 if (UseCompressedOops) __ unimplemented("UseCompressedOops");
jrose@1145 435
jrose@2148 436 trace_method_handle(_masm, entry_name(ek));
jrose@2148 437
jrose@2148 438 BLOCK_COMMENT(entry_name(ek));
jrose@1145 439
jrose@1145 440 switch ((int) ek) {
jrose@1474 441 case _raise_exception:
jrose@1145 442 {
jrose@1474 443 // Not a real MH entry, but rather shared code for raising an exception.
jrose@1474 444 // Extra local arguments are pushed on stack, as required type at TOS+8,
jrose@1474 445 // failing object (or NULL) at TOS+4, failing bytecode type at TOS.
jrose@1474 446 // Beyond those local arguments are the PC, of course.
jrose@1474 447 Register rdx_code = rdx_temp;
jrose@1474 448 Register rcx_fail = rcx_recv;
jrose@1474 449 Register rax_want = rax_argslot;
jrose@1474 450 Register rdi_pc = rdi;
jrose@1474 451 __ pop(rdx_code); // TOS+0
jrose@1474 452 __ pop(rcx_fail); // TOS+4
jrose@1474 453 __ pop(rax_want); // TOS+8
jrose@1474 454 __ pop(rdi_pc); // caller PC
jrose@1145 455
jrose@1474 456 __ mov(rsp, rsi); // cut the stack back to where the caller started
jrose@1145 457
jrose@1474 458 // Repush the arguments as if coming from the interpreter.
jrose@1474 459 __ push(rdx_code);
jrose@1474 460 __ push(rcx_fail);
jrose@1474 461 __ push(rax_want);
jrose@1145 462
jrose@1474 463 Register rbx_method = rbx_temp;
jrose@1474 464 Label no_method;
jrose@1474 465 // FIXME: fill in _raise_exception_method with a suitable sun.dyn method
jrose@1474 466 __ movptr(rbx_method, ExternalAddress((address) &_raise_exception_method));
jrose@1474 467 __ testptr(rbx_method, rbx_method);
twisti@1570 468 __ jccb(Assembler::zero, no_method);
jrose@1474 469 int jobject_oop_offset = 0;
jrose@1474 470 __ movptr(rbx_method, Address(rbx_method, jobject_oop_offset)); // dereference the jobject
jrose@1474 471 __ testptr(rbx_method, rbx_method);
twisti@1570 472 __ jccb(Assembler::zero, no_method);
jrose@1474 473 __ verify_oop(rbx_method);
jrose@1474 474 __ push(rdi_pc); // and restore caller PC
jrose@1474 475 __ jmp(rbx_method_fie);
jrose@1145 476
jrose@1474 477 // If we get here, the Java runtime did not do its job of creating the exception.
jrose@1474 478 // Do something that is at least causes a valid throw from the interpreter.
jrose@1474 479 __ bind(no_method);
jrose@1474 480 __ pop(rax_want);
jrose@1474 481 __ pop(rcx_fail);
jrose@1474 482 __ push(rax_want);
jrose@1474 483 __ push(rcx_fail);
jrose@1145 484 __ jump(ExternalAddress(Interpreter::throw_WrongMethodType_entry()));
jrose@1145 485 }
jrose@1145 486 break;
jrose@1145 487
jrose@1145 488 case _invokestatic_mh:
jrose@1145 489 case _invokespecial_mh:
jrose@1145 490 {
jrose@1145 491 Register rbx_method = rbx_temp;
jrose@1145 492 __ movptr(rbx_method, rcx_mh_vmtarget); // target is a methodOop
jrose@1145 493 __ verify_oop(rbx_method);
jrose@1145 494 // same as TemplateTable::invokestatic or invokespecial,
jrose@1145 495 // minus the CP setup and profiling:
jrose@1145 496 if (ek == _invokespecial_mh) {
jrose@1145 497 // Must load & check the first argument before entering the target method.
jrose@1145 498 __ load_method_handle_vmslots(rax_argslot, rcx_recv, rdx_temp);
jrose@1145 499 __ movptr(rcx_recv, __ argument_address(rax_argslot, -1));
jrose@1145 500 __ null_check(rcx_recv);
jrose@1145 501 __ verify_oop(rcx_recv);
jrose@1145 502 }
jrose@1145 503 __ jmp(rbx_method_fie);
jrose@1145 504 }
jrose@1145 505 break;
jrose@1145 506
jrose@1145 507 case _invokevirtual_mh:
jrose@1145 508 {
jrose@1145 509 // same as TemplateTable::invokevirtual,
jrose@1145 510 // minus the CP setup and profiling:
jrose@1145 511
jrose@1145 512 // pick out the vtable index and receiver offset from the MH,
jrose@1145 513 // and then we can discard it:
jrose@1145 514 __ load_method_handle_vmslots(rax_argslot, rcx_recv, rdx_temp);
jrose@1145 515 Register rbx_index = rbx_temp;
jrose@1145 516 __ movl(rbx_index, rcx_dmh_vmindex);
jrose@1145 517 // Note: The verifier allows us to ignore rcx_mh_vmtarget.
jrose@1145 518 __ movptr(rcx_recv, __ argument_address(rax_argslot, -1));
jrose@1145 519 __ null_check(rcx_recv, oopDesc::klass_offset_in_bytes());
jrose@1145 520
jrose@1145 521 // get receiver klass
jrose@1145 522 Register rax_klass = rax_argslot;
jrose@1145 523 __ load_klass(rax_klass, rcx_recv);
jrose@1145 524 __ verify_oop(rax_klass);
jrose@1145 525
jrose@1145 526 // get target methodOop & entry point
jrose@1145 527 const int base = instanceKlass::vtable_start_offset() * wordSize;
jrose@1145 528 assert(vtableEntry::size() * wordSize == wordSize, "adjust the scaling in the code below");
jrose@1145 529 Address vtable_entry_addr(rax_klass,
jrose@1145 530 rbx_index, Address::times_ptr,
jrose@1145 531 base + vtableEntry::method_offset_in_bytes());
jrose@1145 532 Register rbx_method = rbx_temp;
twisti@1543 533 __ movptr(rbx_method, vtable_entry_addr);
jrose@1145 534
jrose@1145 535 __ verify_oop(rbx_method);
jrose@1145 536 __ jmp(rbx_method_fie);
jrose@1145 537 }
jrose@1145 538 break;
jrose@1145 539
jrose@1145 540 case _invokeinterface_mh:
jrose@1145 541 {
jrose@1145 542 // same as TemplateTable::invokeinterface,
jrose@1145 543 // minus the CP setup and profiling:
jrose@1145 544
jrose@1145 545 // pick out the interface and itable index from the MH.
jrose@1145 546 __ load_method_handle_vmslots(rax_argslot, rcx_recv, rdx_temp);
jrose@1145 547 Register rdx_intf = rdx_temp;
jrose@1145 548 Register rbx_index = rbx_temp;
jrose@1145 549 __ movptr(rdx_intf, rcx_mh_vmtarget);
jrose@1145 550 __ movl(rbx_index, rcx_dmh_vmindex);
jrose@1145 551 __ movptr(rcx_recv, __ argument_address(rax_argslot, -1));
jrose@1145 552 __ null_check(rcx_recv, oopDesc::klass_offset_in_bytes());
jrose@1145 553
jrose@1145 554 // get receiver klass
jrose@1145 555 Register rax_klass = rax_argslot;
jrose@1145 556 __ load_klass(rax_klass, rcx_recv);
jrose@1145 557 __ verify_oop(rax_klass);
jrose@1145 558
jrose@1474 559 Register rdi_temp = rdi;
jrose@1145 560 Register rbx_method = rbx_index;
jrose@1145 561
jrose@1145 562 // get interface klass
jrose@1145 563 Label no_such_interface;
jrose@1145 564 __ verify_oop(rdx_intf);
jrose@1145 565 __ lookup_interface_method(rax_klass, rdx_intf,
jrose@1145 566 // note: next two args must be the same:
jrose@1145 567 rbx_index, rbx_method,
jrose@1474 568 rdi_temp,
jrose@1145 569 no_such_interface);
jrose@1145 570
jrose@1145 571 __ verify_oop(rbx_method);
jrose@1145 572 __ jmp(rbx_method_fie);
jrose@1145 573 __ hlt();
jrose@1145 574
jrose@1145 575 __ bind(no_such_interface);
jrose@1145 576 // Throw an exception.
jrose@1145 577 // For historical reasons, it will be IncompatibleClassChangeError.
jrose@1474 578 __ pushptr(Address(rdx_intf, java_mirror_offset)); // required interface
jrose@1474 579 __ push(rcx_recv); // bad receiver
jrose@1474 580 __ push((int)Bytecodes::_invokeinterface); // who is complaining?
jrose@1474 581 __ jump(ExternalAddress(from_interpreted_entry(_raise_exception)));
jrose@1145 582 }
jrose@1145 583 break;
jrose@1145 584
jrose@1145 585 case _bound_ref_mh:
jrose@1145 586 case _bound_int_mh:
jrose@1145 587 case _bound_long_mh:
jrose@1145 588 case _bound_ref_direct_mh:
jrose@1145 589 case _bound_int_direct_mh:
jrose@1145 590 case _bound_long_direct_mh:
jrose@1145 591 {
jrose@1145 592 bool direct_to_method = (ek >= _bound_ref_direct_mh);
twisti@1739 593 BasicType arg_type = T_ILLEGAL;
twisti@1739 594 int arg_mask = _INSERT_NO_MASK;
twisti@1739 595 int arg_slots = -1;
twisti@1739 596 get_ek_bound_mh_info(ek, arg_type, arg_mask, arg_slots);
jrose@1145 597
jrose@1145 598 // make room for the new argument:
jrose@1145 599 __ movl(rax_argslot, rcx_bmh_vmargslot);
jrose@1145 600 __ lea(rax_argslot, __ argument_address(rax_argslot));
jrose@1145 601 insert_arg_slots(_masm, arg_slots * stack_move_unit(), arg_mask,
jrose@1145 602 rax_argslot, rbx_temp, rdx_temp);
jrose@1145 603
jrose@1145 604 // store bound argument into the new stack slot:
jrose@1145 605 __ movptr(rbx_temp, rcx_bmh_argument);
jrose@1145 606 Address prim_value_addr(rbx_temp, java_lang_boxing_object::value_offset_in_bytes(arg_type));
jrose@1145 607 if (arg_type == T_OBJECT) {
jrose@1145 608 __ movptr(Address(rax_argslot, 0), rbx_temp);
jrose@1145 609 } else {
twisti@1570 610 __ load_sized_value(rdx_temp, prim_value_addr,
jrose@1145 611 type2aelembytes(arg_type), is_signed_subword_type(arg_type));
twisti@1570 612 __ movptr(Address(rax_argslot, 0), rdx_temp);
jrose@1145 613 #ifndef _LP64
jrose@1145 614 if (arg_slots == 2) {
twisti@1570 615 __ movl(rdx_temp, prim_value_addr.plus_disp(wordSize));
twisti@1861 616 __ movl(Address(rax_argslot, Interpreter::stackElementSize), rdx_temp);
jrose@1145 617 }
jrose@1145 618 #endif //_LP64
jrose@1145 619 }
jrose@1145 620
jrose@1145 621 if (direct_to_method) {
jrose@1145 622 Register rbx_method = rbx_temp;
jrose@1145 623 __ movptr(rbx_method, rcx_mh_vmtarget);
jrose@1145 624 __ verify_oop(rbx_method);
jrose@1145 625 __ jmp(rbx_method_fie);
jrose@1145 626 } else {
jrose@1145 627 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 628 __ verify_oop(rcx_recv);
jrose@1145 629 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 630 }
jrose@1145 631 }
jrose@1145 632 break;
jrose@1145 633
jrose@1145 634 case _adapter_retype_only:
jrose@1474 635 case _adapter_retype_raw:
jrose@1145 636 // immediately jump to the next MH layer:
jrose@1145 637 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 638 __ verify_oop(rcx_recv);
jrose@1145 639 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 640 // This is OK when all parameter types widen.
jrose@1145 641 // It is also OK when a return type narrows.
jrose@1145 642 break;
jrose@1145 643
jrose@1145 644 case _adapter_check_cast:
jrose@1145 645 {
jrose@1145 646 // temps:
jrose@1145 647 Register rbx_klass = rbx_temp; // interesting AMH data
jrose@1145 648
jrose@1145 649 // check a reference argument before jumping to the next layer of MH:
jrose@1145 650 __ movl(rax_argslot, rcx_amh_vmargslot);
jrose@1145 651 vmarg = __ argument_address(rax_argslot);
jrose@1145 652
jrose@1145 653 // What class are we casting to?
jrose@1145 654 __ movptr(rbx_klass, rcx_amh_argument); // this is a Class object!
jrose@1145 655 __ movptr(rbx_klass, Address(rbx_klass, java_lang_Class::klass_offset_in_bytes()));
jrose@1145 656
jrose@1145 657 Label done;
jrose@1145 658 __ movptr(rdx_temp, vmarg);
twisti@1712 659 __ testptr(rdx_temp, rdx_temp);
twisti@1570 660 __ jccb(Assembler::zero, done); // no cast if null
jrose@1145 661 __ load_klass(rdx_temp, rdx_temp);
jrose@1145 662
jrose@1145 663 // live at this point:
jrose@1145 664 // - rbx_klass: klass required by the target method
jrose@1145 665 // - rdx_temp: argument klass to test
jrose@1474 666 // - rcx_recv: adapter method handle
jrose@1145 667 __ check_klass_subtype(rdx_temp, rbx_klass, rax_argslot, done);
jrose@1145 668
jrose@1145 669 // If we get here, the type check failed!
jrose@1145 670 // Call the wrong_method_type stub, passing the failing argument type in rax.
jrose@1145 671 Register rax_mtype = rax_argslot;
jrose@1474 672 __ movl(rax_argslot, rcx_amh_vmargslot); // reload argslot field
jrose@1474 673 __ movptr(rdx_temp, vmarg);
jrose@1474 674
jrose@1474 675 __ pushptr(rcx_amh_argument); // required class
jrose@1474 676 __ push(rdx_temp); // bad object
jrose@1474 677 __ push((int)Bytecodes::_checkcast); // who is complaining?
jrose@1474 678 __ jump(ExternalAddress(from_interpreted_entry(_raise_exception)));
jrose@1145 679
jrose@1145 680 __ bind(done);
jrose@1474 681 // get the new MH:
jrose@1474 682 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 683 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 684 }
jrose@1145 685 break;
jrose@1145 686
jrose@1145 687 case _adapter_prim_to_prim:
jrose@1145 688 case _adapter_ref_to_prim:
jrose@1145 689 // handled completely by optimized cases
jrose@1145 690 __ stop("init_AdapterMethodHandle should not issue this");
jrose@1145 691 break;
jrose@1145 692
jrose@1145 693 case _adapter_opt_i2i: // optimized subcase of adapt_prim_to_prim
jrose@1145 694 //case _adapter_opt_f2i: // optimized subcase of adapt_prim_to_prim
jrose@1145 695 case _adapter_opt_l2i: // optimized subcase of adapt_prim_to_prim
jrose@1145 696 case _adapter_opt_unboxi: // optimized subcase of adapt_ref_to_prim
jrose@1145 697 {
jrose@1145 698 // perform an in-place conversion to int or an int subword
jrose@1145 699 __ movl(rax_argslot, rcx_amh_vmargslot);
jrose@1145 700 vmarg = __ argument_address(rax_argslot);
jrose@1145 701
jrose@1145 702 switch (ek) {
jrose@1145 703 case _adapter_opt_i2i:
jrose@1145 704 __ movl(rdx_temp, vmarg);
jrose@1145 705 break;
jrose@1145 706 case _adapter_opt_l2i:
jrose@1145 707 {
jrose@1145 708 // just delete the extra slot; on a little-endian machine we keep the first
jrose@1145 709 __ lea(rax_argslot, __ argument_address(rax_argslot, 1));
jrose@1145 710 remove_arg_slots(_masm, -stack_move_unit(),
jrose@1145 711 rax_argslot, rbx_temp, rdx_temp);
twisti@1861 712 vmarg = Address(rax_argslot, -Interpreter::stackElementSize);
jrose@1145 713 __ movl(rdx_temp, vmarg);
jrose@1145 714 }
jrose@1145 715 break;
jrose@1145 716 case _adapter_opt_unboxi:
jrose@1145 717 {
jrose@1145 718 // Load the value up from the heap.
jrose@1145 719 __ movptr(rdx_temp, vmarg);
jrose@1145 720 int value_offset = java_lang_boxing_object::value_offset_in_bytes(T_INT);
jrose@1145 721 #ifdef ASSERT
jrose@1145 722 for (int bt = T_BOOLEAN; bt < T_INT; bt++) {
jrose@1145 723 if (is_subword_type(BasicType(bt)))
jrose@1145 724 assert(value_offset == java_lang_boxing_object::value_offset_in_bytes(BasicType(bt)), "");
jrose@1145 725 }
jrose@1145 726 #endif
jrose@1145 727 __ null_check(rdx_temp, value_offset);
jrose@1145 728 __ movl(rdx_temp, Address(rdx_temp, value_offset));
jrose@1145 729 // We load this as a word. Because we are little-endian,
jrose@1145 730 // the low bits will be correct, but the high bits may need cleaning.
jrose@1145 731 // The vminfo will guide us to clean those bits.
jrose@1145 732 }
jrose@1145 733 break;
jrose@1145 734 default:
twisti@1739 735 ShouldNotReachHere();
jrose@1145 736 }
jrose@1145 737
twisti@1739 738 // Do the requested conversion and store the value.
jrose@1145 739 Register rbx_vminfo = rbx_temp;
jrose@1145 740 __ movl(rbx_vminfo, rcx_amh_conversion);
jrose@1145 741 assert(CONV_VMINFO_SHIFT == 0, "preshifted");
jrose@1145 742
jrose@1145 743 // get the new MH:
jrose@1145 744 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 745 // (now we are done with the old MH)
jrose@1145 746
jrose@1145 747 // original 32-bit vmdata word must be of this form:
twisti@1570 748 // | MBZ:6 | signBitCount:8 | srcDstTypes:8 | conversionOp:8 |
twisti@1570 749 __ xchgptr(rcx, rbx_vminfo); // free rcx for shifts
jrose@1145 750 __ shll(rdx_temp /*, rcx*/);
jrose@1145 751 Label zero_extend, done;
jrose@1145 752 __ testl(rcx, CONV_VMINFO_SIGN_FLAG);
twisti@1570 753 __ jccb(Assembler::zero, zero_extend);
jrose@1145 754
jrose@1145 755 // this path is taken for int->byte, int->short
jrose@1145 756 __ sarl(rdx_temp /*, rcx*/);
twisti@1570 757 __ jmpb(done);
jrose@1145 758
jrose@1145 759 __ bind(zero_extend);
jrose@1145 760 // this is taken for int->char
jrose@1145 761 __ shrl(rdx_temp /*, rcx*/);
jrose@1145 762
jrose@1145 763 __ bind(done);
twisti@1739 764 __ movl(vmarg, rdx_temp); // Store the value.
twisti@1570 765 __ xchgptr(rcx, rbx_vminfo); // restore rcx_recv
jrose@1145 766
jrose@1145 767 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 768 }
jrose@1145 769 break;
jrose@1145 770
jrose@1145 771 case _adapter_opt_i2l: // optimized subcase of adapt_prim_to_prim
jrose@1145 772 case _adapter_opt_unboxl: // optimized subcase of adapt_ref_to_prim
jrose@1145 773 {
jrose@1145 774 // perform an in-place int-to-long or ref-to-long conversion
jrose@1145 775 __ movl(rax_argslot, rcx_amh_vmargslot);
jrose@1145 776
jrose@1145 777 // on a little-endian machine we keep the first slot and add another after
jrose@1145 778 __ lea(rax_argslot, __ argument_address(rax_argslot, 1));
jrose@1145 779 insert_arg_slots(_masm, stack_move_unit(), _INSERT_INT_MASK,
jrose@1145 780 rax_argslot, rbx_temp, rdx_temp);
twisti@1861 781 Address vmarg1(rax_argslot, -Interpreter::stackElementSize);
twisti@1861 782 Address vmarg2 = vmarg1.plus_disp(Interpreter::stackElementSize);
jrose@1145 783
jrose@1145 784 switch (ek) {
jrose@1145 785 case _adapter_opt_i2l:
jrose@1145 786 {
twisti@1728 787 #ifdef _LP64
twisti@1728 788 __ movslq(rdx_temp, vmarg1); // Load sign-extended
twisti@1728 789 __ movq(vmarg1, rdx_temp); // Store into first slot
twisti@1728 790 #else
jrose@1145 791 __ movl(rdx_temp, vmarg1);
twisti@1728 792 __ sarl(rdx_temp, BitsPerInt - 1); // __ extend_sign()
jrose@1145 793 __ movl(vmarg2, rdx_temp); // store second word
twisti@1728 794 #endif
jrose@1145 795 }
jrose@1145 796 break;
jrose@1145 797 case _adapter_opt_unboxl:
jrose@1145 798 {
jrose@1145 799 // Load the value up from the heap.
jrose@1145 800 __ movptr(rdx_temp, vmarg1);
jrose@1145 801 int value_offset = java_lang_boxing_object::value_offset_in_bytes(T_LONG);
jrose@1145 802 assert(value_offset == java_lang_boxing_object::value_offset_in_bytes(T_DOUBLE), "");
jrose@1145 803 __ null_check(rdx_temp, value_offset);
twisti@1728 804 #ifdef _LP64
twisti@1728 805 __ movq(rbx_temp, Address(rdx_temp, value_offset));
twisti@1728 806 __ movq(vmarg1, rbx_temp);
twisti@1728 807 #else
jrose@1145 808 __ movl(rbx_temp, Address(rdx_temp, value_offset + 0*BytesPerInt));
jrose@1145 809 __ movl(rdx_temp, Address(rdx_temp, value_offset + 1*BytesPerInt));
jrose@1145 810 __ movl(vmarg1, rbx_temp);
jrose@1145 811 __ movl(vmarg2, rdx_temp);
twisti@1728 812 #endif
jrose@1145 813 }
jrose@1145 814 break;
jrose@1145 815 default:
twisti@1739 816 ShouldNotReachHere();
jrose@1145 817 }
jrose@1145 818
jrose@1145 819 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 820 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 821 }
jrose@1145 822 break;
jrose@1145 823
jrose@1145 824 case _adapter_opt_f2d: // optimized subcase of adapt_prim_to_prim
jrose@1145 825 case _adapter_opt_d2f: // optimized subcase of adapt_prim_to_prim
jrose@1145 826 {
jrose@1145 827 // perform an in-place floating primitive conversion
jrose@1145 828 __ movl(rax_argslot, rcx_amh_vmargslot);
jrose@1145 829 __ lea(rax_argslot, __ argument_address(rax_argslot, 1));
jrose@1145 830 if (ek == _adapter_opt_f2d) {
jrose@1145 831 insert_arg_slots(_masm, stack_move_unit(), _INSERT_INT_MASK,
jrose@1145 832 rax_argslot, rbx_temp, rdx_temp);
jrose@1145 833 }
twisti@1861 834 Address vmarg(rax_argslot, -Interpreter::stackElementSize);
jrose@1145 835
jrose@1145 836 #ifdef _LP64
jrose@1145 837 if (ek == _adapter_opt_f2d) {
jrose@1145 838 __ movflt(xmm0, vmarg);
jrose@1145 839 __ cvtss2sd(xmm0, xmm0);
jrose@1145 840 __ movdbl(vmarg, xmm0);
jrose@1145 841 } else {
jrose@1145 842 __ movdbl(xmm0, vmarg);
jrose@1145 843 __ cvtsd2ss(xmm0, xmm0);
jrose@1145 844 __ movflt(vmarg, xmm0);
jrose@1145 845 }
jrose@1145 846 #else //_LP64
jrose@1145 847 if (ek == _adapter_opt_f2d) {
jrose@1145 848 __ fld_s(vmarg); // load float to ST0
jrose@1145 849 __ fstp_s(vmarg); // store single
twisti@1739 850 } else {
jrose@1145 851 __ fld_d(vmarg); // load double to ST0
jrose@1145 852 __ fstp_s(vmarg); // store single
jrose@1145 853 }
jrose@1145 854 #endif //_LP64
jrose@1145 855
jrose@1145 856 if (ek == _adapter_opt_d2f) {
jrose@1145 857 remove_arg_slots(_masm, -stack_move_unit(),
jrose@1145 858 rax_argslot, rbx_temp, rdx_temp);
jrose@1145 859 }
jrose@1145 860
jrose@1145 861 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 862 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 863 }
jrose@1145 864 break;
jrose@1145 865
jrose@1145 866 case _adapter_prim_to_ref:
jrose@1145 867 __ unimplemented(entry_name(ek)); // %%% FIXME: NYI
jrose@1145 868 break;
jrose@1145 869
jrose@1145 870 case _adapter_swap_args:
jrose@1145 871 case _adapter_rot_args:
jrose@1145 872 // handled completely by optimized cases
jrose@1145 873 __ stop("init_AdapterMethodHandle should not issue this");
jrose@1145 874 break;
jrose@1145 875
jrose@1145 876 case _adapter_opt_swap_1:
jrose@1145 877 case _adapter_opt_swap_2:
jrose@1145 878 case _adapter_opt_rot_1_up:
jrose@1145 879 case _adapter_opt_rot_1_down:
jrose@1145 880 case _adapter_opt_rot_2_up:
jrose@1145 881 case _adapter_opt_rot_2_down:
jrose@1145 882 {
twisti@1739 883 int swap_bytes = 0, rotate = 0;
twisti@1739 884 get_ek_adapter_opt_swap_rot_info(ek, swap_bytes, rotate);
jrose@1145 885
jrose@1145 886 // 'argslot' is the position of the first argument to swap
jrose@1145 887 __ movl(rax_argslot, rcx_amh_vmargslot);
jrose@1145 888 __ lea(rax_argslot, __ argument_address(rax_argslot));
jrose@1145 889
jrose@1145 890 // 'vminfo' is the second
jrose@1145 891 Register rbx_destslot = rbx_temp;
jrose@1145 892 __ movl(rbx_destslot, rcx_amh_conversion);
jrose@1145 893 assert(CONV_VMINFO_SHIFT == 0, "preshifted");
jrose@1145 894 __ andl(rbx_destslot, CONV_VMINFO_MASK);
jrose@1145 895 __ lea(rbx_destslot, __ argument_address(rbx_destslot));
jrose@1145 896 DEBUG_ONLY(verify_argslot(_masm, rbx_destslot, "swap point must fall within current frame"));
jrose@1145 897
jrose@1145 898 if (!rotate) {
jrose@1145 899 for (int i = 0; i < swap_bytes; i += wordSize) {
jrose@1145 900 __ movptr(rdx_temp, Address(rax_argslot , i));
jrose@1145 901 __ push(rdx_temp);
jrose@1145 902 __ movptr(rdx_temp, Address(rbx_destslot, i));
jrose@1145 903 __ movptr(Address(rax_argslot, i), rdx_temp);
jrose@1145 904 __ pop(rdx_temp);
jrose@1145 905 __ movptr(Address(rbx_destslot, i), rdx_temp);
jrose@1145 906 }
jrose@1145 907 } else {
jrose@1145 908 // push the first chunk, which is going to get overwritten
jrose@1145 909 for (int i = swap_bytes; (i -= wordSize) >= 0; ) {
jrose@1145 910 __ movptr(rdx_temp, Address(rax_argslot, i));
jrose@1145 911 __ push(rdx_temp);
jrose@1145 912 }
jrose@1145 913
jrose@1145 914 if (rotate > 0) {
jrose@1145 915 // rotate upward
jrose@1145 916 __ subptr(rax_argslot, swap_bytes);
jrose@1145 917 #ifdef ASSERT
jrose@1145 918 {
jrose@1145 919 // Verify that argslot > destslot, by at least swap_bytes.
jrose@1145 920 Label L_ok;
jrose@1145 921 __ cmpptr(rax_argslot, rbx_destslot);
twisti@1570 922 __ jccb(Assembler::aboveEqual, L_ok);
jrose@1145 923 __ stop("source must be above destination (upward rotation)");
jrose@1145 924 __ bind(L_ok);
jrose@1145 925 }
jrose@1145 926 #endif
jrose@1145 927 // work argslot down to destslot, copying contiguous data upwards
jrose@1145 928 // pseudo-code:
jrose@1145 929 // rax = src_addr - swap_bytes
jrose@1145 930 // rbx = dest_addr
jrose@1145 931 // while (rax >= rbx) *(rax + swap_bytes) = *(rax + 0), rax--;
jrose@1145 932 Label loop;
jrose@1145 933 __ bind(loop);
jrose@1145 934 __ movptr(rdx_temp, Address(rax_argslot, 0));
jrose@1145 935 __ movptr(Address(rax_argslot, swap_bytes), rdx_temp);
jrose@1145 936 __ addptr(rax_argslot, -wordSize);
jrose@1145 937 __ cmpptr(rax_argslot, rbx_destslot);
twisti@1570 938 __ jccb(Assembler::aboveEqual, loop);
jrose@1145 939 } else {
jrose@1145 940 __ addptr(rax_argslot, swap_bytes);
jrose@1145 941 #ifdef ASSERT
jrose@1145 942 {
jrose@1145 943 // Verify that argslot < destslot, by at least swap_bytes.
jrose@1145 944 Label L_ok;
jrose@1145 945 __ cmpptr(rax_argslot, rbx_destslot);
twisti@1570 946 __ jccb(Assembler::belowEqual, L_ok);
jrose@1145 947 __ stop("source must be below destination (downward rotation)");
jrose@1145 948 __ bind(L_ok);
jrose@1145 949 }
jrose@1145 950 #endif
jrose@1145 951 // work argslot up to destslot, copying contiguous data downwards
jrose@1145 952 // pseudo-code:
jrose@1145 953 // rax = src_addr + swap_bytes
jrose@1145 954 // rbx = dest_addr
jrose@1145 955 // while (rax <= rbx) *(rax - swap_bytes) = *(rax + 0), rax++;
jrose@1145 956 Label loop;
jrose@1145 957 __ bind(loop);
jrose@1145 958 __ movptr(rdx_temp, Address(rax_argslot, 0));
jrose@1145 959 __ movptr(Address(rax_argslot, -swap_bytes), rdx_temp);
jrose@1145 960 __ addptr(rax_argslot, wordSize);
jrose@1145 961 __ cmpptr(rax_argslot, rbx_destslot);
twisti@1570 962 __ jccb(Assembler::belowEqual, loop);
jrose@1145 963 }
jrose@1145 964
jrose@1145 965 // pop the original first chunk into the destination slot, now free
jrose@1145 966 for (int i = 0; i < swap_bytes; i += wordSize) {
jrose@1145 967 __ pop(rdx_temp);
jrose@1145 968 __ movptr(Address(rbx_destslot, i), rdx_temp);
jrose@1145 969 }
jrose@1145 970 }
jrose@1145 971
jrose@1145 972 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 973 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 974 }
jrose@1145 975 break;
jrose@1145 976
jrose@1145 977 case _adapter_dup_args:
jrose@1145 978 {
jrose@1145 979 // 'argslot' is the position of the first argument to duplicate
jrose@1145 980 __ movl(rax_argslot, rcx_amh_vmargslot);
jrose@1145 981 __ lea(rax_argslot, __ argument_address(rax_argslot));
jrose@1145 982
jrose@1145 983 // 'stack_move' is negative number of words to duplicate
jrose@1145 984 Register rdx_stack_move = rdx_temp;
twisti@1728 985 __ movl2ptr(rdx_stack_move, rcx_amh_conversion);
twisti@1728 986 __ sarptr(rdx_stack_move, CONV_STACK_MOVE_SHIFT);
jrose@1145 987
jrose@1145 988 int argslot0_num = 0;
jrose@1145 989 Address argslot0 = __ argument_address(RegisterOrConstant(argslot0_num));
jrose@1145 990 assert(argslot0.base() == rsp, "");
jrose@1145 991 int pre_arg_size = argslot0.disp();
jrose@1145 992 assert(pre_arg_size % wordSize == 0, "");
jrose@1145 993 assert(pre_arg_size > 0, "must include PC");
jrose@1145 994
jrose@1145 995 // remember the old rsp+1 (argslot[0])
jrose@1145 996 Register rbx_oldarg = rbx_temp;
jrose@1145 997 __ lea(rbx_oldarg, argslot0);
jrose@1145 998
jrose@1145 999 // move rsp down to make room for dups
jrose@1145 1000 __ lea(rsp, Address(rsp, rdx_stack_move, Address::times_ptr));
jrose@1145 1001
jrose@1145 1002 // compute the new rsp+1 (argslot[0])
jrose@1145 1003 Register rdx_newarg = rdx_temp;
jrose@1145 1004 __ lea(rdx_newarg, argslot0);
jrose@1145 1005
jrose@1145 1006 __ push(rdi); // need a temp
jrose@1145 1007 // (preceding push must be done after arg addresses are taken!)
jrose@1145 1008
jrose@1145 1009 // pull down the pre_arg_size data (PC)
jrose@1145 1010 for (int i = -pre_arg_size; i < 0; i += wordSize) {
jrose@1145 1011 __ movptr(rdi, Address(rbx_oldarg, i));
jrose@1145 1012 __ movptr(Address(rdx_newarg, i), rdi);
jrose@1145 1013 }
jrose@1145 1014
jrose@1145 1015 // copy from rax_argslot[0...] down to new_rsp[1...]
jrose@1145 1016 // pseudo-code:
jrose@1145 1017 // rbx = old_rsp+1
jrose@1145 1018 // rdx = new_rsp+1
jrose@1145 1019 // rax = argslot
jrose@1145 1020 // while (rdx < rbx) *rdx++ = *rax++
jrose@1145 1021 Label loop;
jrose@1145 1022 __ bind(loop);
jrose@1145 1023 __ movptr(rdi, Address(rax_argslot, 0));
jrose@1145 1024 __ movptr(Address(rdx_newarg, 0), rdi);
jrose@1145 1025 __ addptr(rax_argslot, wordSize);
jrose@1145 1026 __ addptr(rdx_newarg, wordSize);
jrose@1145 1027 __ cmpptr(rdx_newarg, rbx_oldarg);
twisti@1570 1028 __ jccb(Assembler::less, loop);
jrose@1145 1029
jrose@1145 1030 __ pop(rdi); // restore temp
jrose@1145 1031
jrose@1145 1032 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 1033 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 1034 }
jrose@1145 1035 break;
jrose@1145 1036
jrose@1145 1037 case _adapter_drop_args:
jrose@1145 1038 {
jrose@1145 1039 // 'argslot' is the position of the first argument to nuke
jrose@1145 1040 __ movl(rax_argslot, rcx_amh_vmargslot);
jrose@1145 1041 __ lea(rax_argslot, __ argument_address(rax_argslot));
jrose@1145 1042
jrose@1145 1043 __ push(rdi); // need a temp
jrose@1145 1044 // (must do previous push after argslot address is taken)
jrose@1145 1045
jrose@1145 1046 // 'stack_move' is number of words to drop
jrose@1145 1047 Register rdi_stack_move = rdi;
twisti@1728 1048 __ movl2ptr(rdi_stack_move, rcx_amh_conversion);
twisti@1728 1049 __ sarptr(rdi_stack_move, CONV_STACK_MOVE_SHIFT);
jrose@1145 1050 remove_arg_slots(_masm, rdi_stack_move,
jrose@1145 1051 rax_argslot, rbx_temp, rdx_temp);
jrose@1145 1052
jrose@1145 1053 __ pop(rdi); // restore temp
jrose@1145 1054
jrose@1145 1055 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 1056 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 1057 }
jrose@1145 1058 break;
jrose@1145 1059
jrose@1145 1060 case _adapter_collect_args:
jrose@1145 1061 __ unimplemented(entry_name(ek)); // %%% FIXME: NYI
jrose@1145 1062 break;
jrose@1145 1063
jrose@1145 1064 case _adapter_spread_args:
jrose@1145 1065 // handled completely by optimized cases
jrose@1145 1066 __ stop("init_AdapterMethodHandle should not issue this");
jrose@1145 1067 break;
jrose@1145 1068
jrose@1145 1069 case _adapter_opt_spread_0:
jrose@1145 1070 case _adapter_opt_spread_1:
jrose@1145 1071 case _adapter_opt_spread_more:
jrose@1145 1072 {
jrose@1145 1073 // spread an array out into a group of arguments
twisti@1739 1074 int length_constant = get_ek_adapter_opt_spread_info(ek);
jrose@1145 1075
jrose@1145 1076 // find the address of the array argument
jrose@1145 1077 __ movl(rax_argslot, rcx_amh_vmargslot);
jrose@1145 1078 __ lea(rax_argslot, __ argument_address(rax_argslot));
jrose@1145 1079
jrose@1145 1080 // grab some temps
jrose@1145 1081 { __ push(rsi); __ push(rdi); }
jrose@1145 1082 // (preceding pushes must be done after argslot address is taken!)
jrose@1145 1083 #define UNPUSH_RSI_RDI \
jrose@1145 1084 { __ pop(rdi); __ pop(rsi); }
jrose@1145 1085
jrose@1145 1086 // arx_argslot points both to the array and to the first output arg
jrose@1145 1087 vmarg = Address(rax_argslot, 0);
jrose@1145 1088
jrose@1145 1089 // Get the array value.
jrose@1145 1090 Register rsi_array = rsi;
jrose@1145 1091 Register rdx_array_klass = rdx_temp;
jrose@1145 1092 BasicType elem_type = T_OBJECT;
jrose@1145 1093 int length_offset = arrayOopDesc::length_offset_in_bytes();
jrose@1145 1094 int elem0_offset = arrayOopDesc::base_offset_in_bytes(elem_type);
jrose@1145 1095 __ movptr(rsi_array, vmarg);
jrose@1145 1096 Label skip_array_check;
jrose@1145 1097 if (length_constant == 0) {
jrose@1145 1098 __ testptr(rsi_array, rsi_array);
jrose@1145 1099 __ jcc(Assembler::zero, skip_array_check);
jrose@1145 1100 }
jrose@1145 1101 __ null_check(rsi_array, oopDesc::klass_offset_in_bytes());
jrose@1145 1102 __ load_klass(rdx_array_klass, rsi_array);
jrose@1145 1103
jrose@1145 1104 // Check the array type.
jrose@1145 1105 Register rbx_klass = rbx_temp;
jrose@1145 1106 __ movptr(rbx_klass, rcx_amh_argument); // this is a Class object!
jrose@1145 1107 __ movptr(rbx_klass, Address(rbx_klass, java_lang_Class::klass_offset_in_bytes()));
jrose@1145 1108
jrose@1145 1109 Label ok_array_klass, bad_array_klass, bad_array_length;
jrose@1145 1110 __ check_klass_subtype(rdx_array_klass, rbx_klass, rdi, ok_array_klass);
jrose@1145 1111 // If we get here, the type check failed!
jrose@1145 1112 __ jmp(bad_array_klass);
jrose@1145 1113 __ bind(ok_array_klass);
jrose@1145 1114
jrose@1145 1115 // Check length.
jrose@1145 1116 if (length_constant >= 0) {
jrose@1145 1117 __ cmpl(Address(rsi_array, length_offset), length_constant);
jrose@1145 1118 } else {
jrose@1145 1119 Register rbx_vminfo = rbx_temp;
jrose@1145 1120 __ movl(rbx_vminfo, rcx_amh_conversion);
jrose@1145 1121 assert(CONV_VMINFO_SHIFT == 0, "preshifted");
jrose@1145 1122 __ andl(rbx_vminfo, CONV_VMINFO_MASK);
jrose@1145 1123 __ cmpl(rbx_vminfo, Address(rsi_array, length_offset));
jrose@1145 1124 }
jrose@1145 1125 __ jcc(Assembler::notEqual, bad_array_length);
jrose@1145 1126
jrose@1145 1127 Register rdx_argslot_limit = rdx_temp;
jrose@1145 1128
jrose@1145 1129 // Array length checks out. Now insert any required stack slots.
jrose@1145 1130 if (length_constant == -1) {
jrose@1145 1131 // Form a pointer to the end of the affected region.
twisti@1861 1132 __ lea(rdx_argslot_limit, Address(rax_argslot, Interpreter::stackElementSize));
jrose@1145 1133 // 'stack_move' is negative number of words to insert
jrose@1145 1134 Register rdi_stack_move = rdi;
twisti@1728 1135 __ movl2ptr(rdi_stack_move, rcx_amh_conversion);
twisti@1728 1136 __ sarptr(rdi_stack_move, CONV_STACK_MOVE_SHIFT);
jrose@1145 1137 Register rsi_temp = rsi_array; // spill this
jrose@1145 1138 insert_arg_slots(_masm, rdi_stack_move, -1,
jrose@1145 1139 rax_argslot, rbx_temp, rsi_temp);
jrose@1145 1140 // reload the array (since rsi was killed)
jrose@1145 1141 __ movptr(rsi_array, vmarg);
jrose@1145 1142 } else if (length_constant > 1) {
jrose@1145 1143 int arg_mask = 0;
jrose@1145 1144 int new_slots = (length_constant - 1);
jrose@1145 1145 for (int i = 0; i < new_slots; i++) {
jrose@1145 1146 arg_mask <<= 1;
jrose@1145 1147 arg_mask |= _INSERT_REF_MASK;
jrose@1145 1148 }
jrose@1145 1149 insert_arg_slots(_masm, new_slots * stack_move_unit(), arg_mask,
jrose@1145 1150 rax_argslot, rbx_temp, rdx_temp);
jrose@1145 1151 } else if (length_constant == 1) {
jrose@1145 1152 // no stack resizing required
jrose@1145 1153 } else if (length_constant == 0) {
jrose@1145 1154 remove_arg_slots(_masm, -stack_move_unit(),
jrose@1145 1155 rax_argslot, rbx_temp, rdx_temp);
jrose@1145 1156 }
jrose@1145 1157
jrose@1145 1158 // Copy from the array to the new slots.
jrose@1145 1159 // Note: Stack change code preserves integrity of rax_argslot pointer.
jrose@1145 1160 // So even after slot insertions, rax_argslot still points to first argument.
jrose@1145 1161 if (length_constant == -1) {
jrose@1145 1162 // [rax_argslot, rdx_argslot_limit) is the area we are inserting into.
jrose@1145 1163 Register rsi_source = rsi_array;
jrose@1145 1164 __ lea(rsi_source, Address(rsi_array, elem0_offset));
jrose@1145 1165 Label loop;
jrose@1145 1166 __ bind(loop);
jrose@1145 1167 __ movptr(rbx_temp, Address(rsi_source, 0));
jrose@1145 1168 __ movptr(Address(rax_argslot, 0), rbx_temp);
jrose@1145 1169 __ addptr(rsi_source, type2aelembytes(elem_type));
twisti@1861 1170 __ addptr(rax_argslot, Interpreter::stackElementSize);
jrose@1145 1171 __ cmpptr(rax_argslot, rdx_argslot_limit);
twisti@1570 1172 __ jccb(Assembler::less, loop);
jrose@1145 1173 } else if (length_constant == 0) {
jrose@1145 1174 __ bind(skip_array_check);
jrose@1145 1175 // nothing to copy
jrose@1145 1176 } else {
jrose@1145 1177 int elem_offset = elem0_offset;
jrose@1145 1178 int slot_offset = 0;
jrose@1145 1179 for (int index = 0; index < length_constant; index++) {
jrose@1145 1180 __ movptr(rbx_temp, Address(rsi_array, elem_offset));
jrose@1145 1181 __ movptr(Address(rax_argslot, slot_offset), rbx_temp);
jrose@1145 1182 elem_offset += type2aelembytes(elem_type);
twisti@1861 1183 slot_offset += Interpreter::stackElementSize;
jrose@1145 1184 }
jrose@1145 1185 }
jrose@1145 1186
jrose@1145 1187 // Arguments are spread. Move to next method handle.
jrose@1145 1188 UNPUSH_RSI_RDI;
jrose@1145 1189 __ movptr(rcx_recv, rcx_mh_vmtarget);
jrose@1145 1190 __ jump_to_method_handle_entry(rcx_recv, rdx_temp);
jrose@1145 1191
jrose@1145 1192 __ bind(bad_array_klass);
jrose@1145 1193 UNPUSH_RSI_RDI;
jrose@1474 1194 __ pushptr(Address(rdx_array_klass, java_mirror_offset)); // required type
jrose@1474 1195 __ pushptr(vmarg); // bad array
jrose@1474 1196 __ push((int)Bytecodes::_aaload); // who is complaining?
jrose@1474 1197 __ jump(ExternalAddress(from_interpreted_entry(_raise_exception)));
jrose@1145 1198
jrose@1145 1199 __ bind(bad_array_length);
jrose@1145 1200 UNPUSH_RSI_RDI;
jrose@1474 1201 __ push(rcx_recv); // AMH requiring a certain length
jrose@1474 1202 __ pushptr(vmarg); // bad array
jrose@1474 1203 __ push((int)Bytecodes::_arraylength); // who is complaining?
jrose@1474 1204 __ jump(ExternalAddress(from_interpreted_entry(_raise_exception)));
jrose@1145 1205
jrose@1145 1206 #undef UNPUSH_RSI_RDI
jrose@1145 1207 }
jrose@1145 1208 break;
jrose@1145 1209
jrose@1145 1210 case _adapter_flyby:
jrose@1145 1211 case _adapter_ricochet:
jrose@1145 1212 __ unimplemented(entry_name(ek)); // %%% FIXME: NYI
jrose@1145 1213 break;
jrose@1145 1214
jrose@1145 1215 default: ShouldNotReachHere();
jrose@1145 1216 }
jrose@1145 1217 __ hlt();
jrose@1145 1218
jrose@1145 1219 address me_cookie = MethodHandleEntry::start_compiled_entry(_masm, interp_entry);
jrose@1145 1220 __ unimplemented(entry_name(ek)); // %%% FIXME: NYI
jrose@1145 1221
jrose@1145 1222 init_entry(ek, MethodHandleEntry::finish_compiled_entry(_masm, me_cookie));
jrose@1145 1223 }

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