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*/
// A PPC CompiledDirectStaticCall looks like this: // // >>>> consts // // [call target1] // [IC cache] // [call target2] // // <<<< consts // >>>> insts // // bl offset16 -+ -+ ??? // How many bits available? // | | // <<<< insts | | // >>>> stubs | | // | |- trampoline_stub_Reloc // trampoline stub: | <-+ // r2 = toc | // r2 = [r2 + offset] | // Load call target1 from const section // mtctr r2 | // bctr |- static_stub_Reloc // comp_to_interp_stub: <---+ // r1 = toc // ICreg = [r1 + IC_offset] // Load IC from const section // r1 = [r1 + offset] // Load call target2 from const section // mtctr r1 // bctr // // <<<< stubs // // The call instruction in the code either // - branches directly to a compiled method if offset encodable in instruction // - branches to the trampoline stub if offset to compiled method not encodable // - branches to the compiled_to_interp stub if target interpreted // // Further there are three relocations from the loads to the constants in // the constant section. // // Usage of r1 and r2 in the stubs allows to distinguish them.
constint IC_pos_in_java_to_interp_stub = 8; #define __ _masm.
address CompiledStaticCall::emit_to_interp_stub(CodeBuffer &cbuf, address mark/* = NULL*/) { #ifdef COMPILER2 if (mark == NULL) { // Get the mark within main instrs section which is set to the address of the call.
mark = cbuf.insts_mark();
}
// Note that the code buffer's insts_mark is always relative to insts. // That's why we must use the macroassembler to generate a stub.
MacroAssembler _masm(&cbuf);
// Start the stub.
address stub = __ start_a_stub(CompiledStaticCall::to_interp_stub_size()); if (stub == NULL) { return NULL; // CodeCache is full
}
// For java_to_interp stubs we use R11_scratch1 as scratch register // and in call trampoline stubs we use R12_scratch2. This way we // can distinguish them (see is_NativeCallTrampolineStub_at()). Register reg_scratch = R11_scratch1;
// Create a static stub relocation which relates this stub // with the call instruction at insts_call_instruction_offset in the // instructions code-section.
__ relocate(static_stub_Relocation::spec(mark)); constint stub_start_offset = __ offset();
// Now, create the stub's code: // - load the TOC // - load the inline cache oop from the constant pool // - load the call target from the constant pool // - call
__ calculate_address_from_global_toc(reg_scratch, __ method_toc());
AddressLiteral ic = __ allocate_metadata_address((Metadata *)NULL); bool success = __ load_const_from_method_toc(as_Register(Matcher::inline_cache_reg_encode()),
ic, reg_scratch, /*fixed_size*/ true); if (!success) { return NULL; // CodeCache is full
}
if (ReoptimizeCallSequences) {
__ b64_patchable((address)-1, relocInfo::none);
} else {
AddressLiteral a((address)-1);
success = __ load_const_from_method_toc(reg_scratch, a, reg_scratch, /*fixed_size*/ true); if (!success) { return NULL; // CodeCache is full
}
__ mtctr(reg_scratch);
__ bctr();
}
// FIXME: Assert that the stub can be identified and patched.
// Java_to_interp_stub_size should be good.
assert((__ offset() - stub_start_offset) <= CompiledStaticCall::to_interp_stub_size(), "should be good size");
assert(!is_NativeCallTrampolineStub_at(__ addr_at(stub_start_offset)), "must not confuse java_to_interp with trampoline stubs");
// End the stub.
__ end_a_stub(); return stub; #else
ShouldNotReachHere(); return NULL; #endif
} #undef __
// Size of java_to_interp stub, this doesn't need to be accurate but it must // be larger or equal to the real size of the stub. // Used for optimization in Compile::Shorten_branches. int CompiledStaticCall::to_interp_stub_size() { return 12 * BytesPerInstWord;
}
// Relocation entries for call stub, compiled java to interpreter. // Used for optimization in Compile::Shorten_branches. int CompiledStaticCall::reloc_to_interp_stub() { return 5;
}
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