зеркало из https://github.com/github/ruby.git
Implement invokesuper using cfp->ep[ME] check
This fixes and re-enables invokesuper, replacing the existing guards with a guard on the method entry for the EP.
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Родитель
fbde1d9bee
Коммит
3ecc6befcd
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@ -162,6 +162,40 @@ class TestYJIT < Test::Unit::TestCase
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RUBY
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end
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def test_super_iseq
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assert_compiles(<<~'RUBY', insns: %i[invokesuper opt_plus opt_mult], result: 15)
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class A
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def foo
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1 + 2
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end
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end
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class B < A
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def foo
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super * 5
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end
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end
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B.new.foo
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RUBY
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end
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def test_super_cfunc
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assert_compiles(<<~'RUBY', insns: %i[invokesuper], result: "Hello")
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class Gnirts < String
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def initialize
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super(-"olleH")
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end
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def to_s
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super().reverse
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end
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end
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Gnirts.new.to_s
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RUBY
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end
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def test_fib_recursion
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assert_compiles(<<~'RUBY', insns: %i[opt_le opt_minus opt_plus opt_send_without_block], result: 34)
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def fib(n)
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1
yjit.rb
1
yjit.rb
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@ -159,6 +159,7 @@ module YJIT
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$stderr.puts("Number of locals modified through binding: %d\n" % stats[:binding_set])
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print_counters(stats, prefix: 'send_', prompt: 'method call exit reasons: ')
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print_counters(stats, prefix: 'invokesuper_', prompt: 'invokesuper exit reasons: ')
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print_counters(stats, prefix: 'leave_', prompt: 'leave exit reasons: ')
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print_counters(stats, prefix: 'getivar_', prompt: 'getinstancevariable exit reasons:')
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print_counters(stats, prefix: 'setivar_', prompt: 'setinstancevariable exit reasons:')
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@ -3458,8 +3458,6 @@ gen_send(jitstate_t *jit, ctx_t *ctx)
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return gen_send_general(jit, ctx, cd, block);
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}
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// Not in use as it's incorrect in some situations. See comments.
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RBIMPL_ATTR_MAYBE_UNUSED()
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static codegen_status_t
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gen_invokesuper(jitstate_t *jit, ctx_t *ctx)
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{
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@ -3475,17 +3473,19 @@ gen_invokesuper(jitstate_t *jit, ctx_t *ctx)
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const rb_callable_method_entry_t *me = rb_vm_frame_method_entry(jit->ec->cfp);
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if (!me) {
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return YJIT_CANT_COMPILE;
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} else if (me->def->type == VM_METHOD_TYPE_BMETHOD) {
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// In the interpreter the method id can change which is tested for and
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// invalidates the cache.
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// By skipping super calls inside a BMETHOD definition, I believe we
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// avoid this case
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return YJIT_CANT_COMPILE;
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}
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// FIXME: We should track and invalidate this block when this cme is invalidated
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VALUE current_defined_class = me->defined_class;
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ID mid = me->def->original_id;
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if (me != rb_callable_method_entry(current_defined_class, me->called_id)) {
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// Though we likely could generate this call, as we are only concerned
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// with the method entry remaining valid, assume_method_lookup_stable
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// below requires that the method lookup matches as well
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return YJIT_CANT_COMPILE;
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}
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// vm_search_normal_superclass
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if (BUILTIN_TYPE(current_defined_class) == T_ICLASS && FL_TEST_RAW(RBASIC(current_defined_class)->klass, RMODULE_IS_REFINEMENT)) {
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return YJIT_CANT_COMPILE;
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@ -3502,25 +3502,16 @@ gen_invokesuper(jitstate_t *jit, ctx_t *ctx)
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return YJIT_CANT_COMPILE;
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}
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VALUE comptime_recv = jit_peek_at_stack(jit, ctx, argc);
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VALUE comptime_recv_klass = CLASS_OF(comptime_recv);
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// Ensure we haven't rebound this method onto an incompatible class.
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// In the interpreter we try to avoid making this check by performing some
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// cheaper calculations first, but since we specialize on the receiver
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// class and so only have to do this once at compile time this is fine to
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// always check and side exit.
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// cheaper calculations first, but since we specialize on the method entry
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// and so only have to do this once at compile time this is fine to always
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// check and side exit.
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VALUE comptime_recv = jit_peek_at_stack(jit, ctx, argc);
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if (!rb_obj_is_kind_of(comptime_recv, current_defined_class)) {
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return YJIT_CANT_COMPILE;
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}
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// Because we're assuming only one current_defined_class for a given
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// receiver class we need to check that the superclass doesn't also
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// re-include the same module.
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if (rb_class_search_ancestor(comptime_superclass, current_defined_class)) {
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return YJIT_CANT_COMPILE;
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}
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// Do method lookup
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const rb_callable_method_entry_t *cme = rb_callable_method_entry(comptime_superclass, mid);
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@ -3541,6 +3532,18 @@ gen_invokesuper(jitstate_t *jit, ctx_t *ctx)
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// Guard that the receiver has the same class as the one from compile time
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uint8_t *side_exit = yjit_side_exit(jit, ctx);
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if (jit->ec->cfp->ep[VM_ENV_DATA_INDEX_ME_CREF] != (VALUE)me) {
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// This will be the case for super within a block
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return YJIT_CANT_COMPILE;
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}
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ADD_COMMENT(cb, "guard known me");
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mov(cb, REG0, member_opnd(REG_CFP, rb_control_frame_t, ep));
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x86opnd_t ep_me_opnd = mem_opnd(64, REG0, SIZEOF_VALUE * VM_ENV_DATA_INDEX_ME_CREF);
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jit_mov_gc_ptr(jit, cb, REG1, (VALUE)me);
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cmp(cb, ep_me_opnd, REG1);
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jne_ptr(cb, COUNTED_EXIT(side_exit, invokesuper_me_changed));
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if (!block) {
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// Guard no block passed
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// rb_vm_frame_block_handler(GET_EC()->cfp) == VM_BLOCK_HANDLER_NONE
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@ -3549,25 +3552,20 @@ gen_invokesuper(jitstate_t *jit, ctx_t *ctx)
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// TODO: this could properly forward the current block handler, but
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// would require changes to gen_send_*
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ADD_COMMENT(cb, "guard no block given");
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mov(cb, REG0, member_opnd(REG_CFP, rb_control_frame_t, ep));
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mov(cb, REG0, mem_opnd(64, REG0, SIZEOF_VALUE * VM_ENV_DATA_INDEX_SPECVAL));
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cmp(cb, REG0, imm_opnd(VM_BLOCK_HANDLER_NONE));
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jne_ptr(cb, side_exit);
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// EP is in REG0 from above
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x86opnd_t ep_specval_opnd = mem_opnd(64, REG0, SIZEOF_VALUE * VM_ENV_DATA_INDEX_SPECVAL);
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cmp(cb, ep_specval_opnd, imm_opnd(VM_BLOCK_HANDLER_NONE));
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jne_ptr(cb, COUNTED_EXIT(side_exit, invokesuper_block));
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}
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// Points to the receiver operand on the stack
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x86opnd_t recv = ctx_stack_opnd(ctx, argc);
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insn_opnd_t recv_opnd = OPND_STACK(argc);
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mov(cb, REG0, recv);
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// FIXME: This guard and the assume_method_lookup_stable() call below isn't
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// always enough to correctly replicate the interpreter's behavior of
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// searching at runtime for the callee through the method entry of the stack frame.
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if (!jit_guard_known_klass(jit, ctx, comptime_recv_klass, recv_opnd, comptime_recv, SEND_MAX_DEPTH, side_exit)) {
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return YJIT_CANT_COMPILE;
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}
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assume_method_lookup_stable(comptime_recv_klass, cme, jit->block);
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// We need to assume that both our current method entry and the super
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// method entry we invoke remain stable
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assume_method_lookup_stable(current_defined_class, me, jit->block);
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assume_method_lookup_stable(comptime_superclass, cme, jit->block);
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// Method calls may corrupt types
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ctx_clear_local_types(ctx);
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@ -4066,6 +4064,7 @@ yjit_init_codegen(void)
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yjit_reg_op(BIN(getblockparamproxy), gen_getblockparamproxy);
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yjit_reg_op(BIN(opt_send_without_block), gen_opt_send_without_block);
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yjit_reg_op(BIN(send), gen_send);
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yjit_reg_op(BIN(invokesuper), gen_invokesuper);
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yjit_reg_op(BIN(leave), gen_leave);
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yjit_reg_op(BIN(getglobal), gen_getglobal);
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yjit_reg_op(BIN(setglobal), gen_setglobal);
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@ -232,7 +232,7 @@ assume_method_lookup_stable(VALUE receiver_klass, const rb_callable_method_entry
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RUBY_ASSERT(cme_validity_dependency);
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RUBY_ASSERT(method_lookup_dependency);
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RUBY_ASSERT(rb_callable_method_entry(receiver_klass, cme->called_id) == cme);
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RUBY_ASSERT_ALWAYS(RB_TYPE_P(receiver_klass, T_CLASS));
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RUBY_ASSERT_ALWAYS(RB_TYPE_P(receiver_klass, T_CLASS) || RB_TYPE_P(receiver_klass, T_ICLASS));
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RUBY_ASSERT_ALWAYS(!rb_objspace_garbage_object_p(receiver_klass));
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cme_dependency_t cme_dep = { receiver_klass, (VALUE)cme };
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@ -66,6 +66,9 @@ YJIT_DECLARE_COUNTERS(
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traced_cfunc_return,
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invokesuper_me_changed,
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invokesuper_block,
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leave_se_interrupt,
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leave_interp_return,
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leave_start_pc_non_zero,
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