* vm_trace.c (rb_tracepoint_enable_for_target): support targetting
TracePoint. [Feature #15289]
Tragetting TracePoint is only enabled on specified method, proc
and so on, example: `tp.enable(target: code)`.
`code` should be consisted of InstructionSeuqnece (iseq)
(RubyVM::InstructionSeuqnece.of(code) should not return nil)
If code is a tree of iseq, TracePoint is enabled on all of
iseqs in a tree.
Enabled tragetting TracePoints can not enabled again with
and without target.
* vm_core.h (rb_iseq_t): introduce `rb_iseq_t::local_hooks`
to store local hooks.
`rb_iseq_t::aux::trace_events` is renamed to
`global_trace_events` to contrast with `local_hooks`.
* vm_core.h (rb_hook_list_t): add `rb_hook_list_t::running`
to represent how many Threads/Fibers are used this list.
If this field is 0, nobody using this hooks and we can
delete it.
This is why we can remove code from cont.c.
* vm_core.h (rb_vm_t): because of above change, we can eliminate
`rb_vm_t::trace_running` field.
Also renamed from `rb_vm_t::event_hooks` to `global_hooks`.
* vm_core.h, vm.c (ruby_vm_event_enabled_global_flags): renamed
from `ruby_vm_event_enabled_flags.
* vm_core.h, vm.c (ruby_vm_event_local_num): added to count
enabled targetting TracePoints.
* vm_core.h, vm_trace.c (rb_exec_event_hooks): accepts
hook list.
* vm_core.h (rb_vm_global_hooks): added for convinience.
* method.h (rb_method_bmethod_t): added to maintain Proc
and `rb_hook_list_t` for bmethod (defined by define_method).
* prelude.rb (TracePoint#enable): extracet a keyword parameter
(because it is easy than writing in C).
It calls `TracePoint#__enable` internal method written in C.
* vm_insnhelper.c (vm_trace): check also iseq->local_hooks.
* vm.c (invoke_bmethod): check def->body.bmethod.hooks.
* vm.c (hook_before_rewind): check iseq->local_hooks
and def->body.bmethod.hooks before rewind by exception.
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It can be used to get the parameters' information of method and block.
There was no way to get block parameters.
It was possible but ineffective to get method parameters via Method
object: `tp.defined_class.method(tp.method_id).parameters`
TracePoint#parameters allows us to get the information easily.
[Feature #14694]
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* method.h (rb_method_definition_struct): use BITFIELD for
rb_method_type_t.
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I plan to use this macro to pack other enums in the VM.
* internal.h: add BITFIELD macro
* method.h: use BITFIELD for rb_method_visibility_t
[ruby-core:85074] [Misc #14395]
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* insns.def (getblockparamproxy): introduce new instruction to return
the `rb_block_param_proxy` object if possible. This object responds
to `call` method and invoke given block (completely similar to `yield`).
* method.h (OPTIMIZED_METHOD_TYPE_BLOCK_CALL): add new optimized call type
which is for `rb_block_param_proxy.cal`.
* vm_insnhelper.c (vm_call_method_each_type): ditto.
* vm_insnhelper.c (vm_call_opt_block_call): ditto.
* vm_core.h (BOP_CALL, PROC_REDEFINED_OP_FLAG): add check for `Proc#call`
redefinition.
* compile.c (iseq_compile_each0): compile to use new insn
`getblockparamproxy` for method call.
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To be precise C90 says "A bit-field may have type int, unsigned
int, or signed int". It is clear that char or enum are NG.
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This change makes each ISeq keep NODE's code range. This information is
needed for method coverage.
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Traditionally, method coverage measurement was implemented by inserting
`trace2` instruction to the head of method iseq. So, it just measured
methods defined by `def` keyword.
This commit drastically changes the measuring mechanism of method
coverage; at `RUBY_EVENT_CALL`, it keeps a hash from rb_method_entry_t*
to runs (i.e., it counts the runs per method entry), and at
`Coverage.result`, it creates the result hash by enumerating all
`rb_method_entry_t*` objects (by `ObjectSpace.each_object`).
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* vm_method.c (rb_resolve_refined_method_callable): make it static.
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* proc.c (method_super_method): search the next super method along
the included ancestor chain. [ruby-core:83114] [Bug #13973]
* vm_method.c (rb_callable_method_entry_without_refinements):
return the defined class.
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* method.h (rb_method_definition_t): rb_method_type_t should be
unsigned as it needs 5bits at least for signed extension.
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* method.h (rb_method_definition_t): define type as an enum for
debugging.
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We only have 12 method types, so 4 bits is enough for
rb_method_type_t.
Size reductions:
- x86-64 48 => 40 bytes
- x86 28 => 24 bytes
* method.h (enum method_optimized_type): split out for CPP
(struct rb_method_definition struct): pack on unaligned systems
(rb_method_definition_t): split typedef to help ctags
[ruby-core:81236] [Feature #13494]
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* rb_method_definition_t::complemented_count to count shared method
entries because of complemented method entries and separate from
alias_count.
Shared `def' only by complemented method entries should not prevent
method re-definition warning.
* METHOD_ENTRY_COMPLEMENTED(me) to represent complemented method entry.
* METHOD_ENTRY_COMPLEMENTED_SET(me) to check it as complemented me.
* vm_insnhelper.c (aliased_callable_method_entry): should also
check me->def->complemented_count.
* vm_method.c (method_definition_addref_complement): add to count
complemented method entries number.
* vm_method.c (rb_method_definition_release): release `def' iff
alias_count == 0 and complemented_count == 0.
* test/ruby/test_module.rb: add a test.
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complemented method entries or not. There are some cases that callabe
method entries do not have defined_class.
* vm_method.c (rb_method_entry_complement_defined_class):
use METHOD_ENTRY_COMPLEMENTED_SET().
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* vm_method.c (method_definition_addref_complement): introduced.
def->alias_count is used to decide warn or do not warn at method
redefinition. Complented methods should not prevent redefiniton
warnings.
* vm_method.c (rb_method_definition_release): release def iff
alias_count == 0 && complemented_count == 0.
* test/ruby/test_module.rb: add a test.
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* error.c (name_err_mesg_to_str): quote the name if unprintable.
* object.c (check_setter_id): use rb_check_id to convert names.
* variable.c (uninitialized_constant): use NameError::message to
keep the receiver of uninitialized constant. [Feature #10881]
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because $SAFE = 3 and 4 is not available.
Now, $SAFE is not checked on method dispatch at all.
* vm_eval.c, vm_insnhelper.c, vm_method.c: ditto.
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* iseq.h (rb_iseq_t): also should be defined here for prototype
declarations arguments.
* method.h (rb_iseq_t): get rid of redefinition.
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Setting VM_CHECK_MODE to 1 in vm_core.h makes noisy warnings
otherwise. AFAIK, the signedness of enums is
implementation-dependent, and GCC considers them unsigned and
warns.
Tested on gcc 4.7.2 (Debian 4.7.2-5)
* method.h (METHOD_ENTRY_VISI_SET): cast visi to int
(METHOD_ENTRY_FLAGS_SET): ditto
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All contents of previous rb_iseq_t is in rb_iseq_t::body.
Remove rb_iseq_t::self because rb_iseq_t is an object.
RubyVM::InstructionSequence is wrapper object points T_IMEMO/iseq.
So RubyVM::ISeq.of(something) method returns different wrapper
objects but they point the same T_IMEMO/iseq object.
This patch is big, but most of difference is replacement of
iseq->xxx to iseq->body->xxx.
(previous) rb_iseq_t::compile_data is also located to
rb_iseq_t::compile_data.
It was moved from rb_iseq_body::compile_data.
Now rb_iseq_t has empty two pointers.
I will split rb_iseq_body data into static data and dynamic data.
* compile.c: rename some functions/macros.
Now, we don't need to separate iseq and iseqval (only VALUE).
* eval.c (ruby_exec_internal): `n' is rb_iseq_t (T_IMEMO/iseq).
* ext/objspace/objspace.c (count_imemo_objects): count T_IMEMO/iseq.
* gc.c: check T_IMEMO/iseq.
* internal.h: add imemo_type::imemo_iseq.
* iseq.c: define RubyVM::InstructionSequnce as T_OBJECT.
Methods are implemented by functions named iseqw_....
* load.c (rb_load_internal0): rb_iseq_new_top() returns
rb_iseq_t (T_IMEMO/iesq).
* method.h (rb_add_method_iseq): accept rb_iseq_t (T_IMEMO/iseq).
* vm_core.h (GetISeqPtr): removed because it is not T_DATA now.
* vm_core.h (struct rb_iseq_body): remove padding for
[Bug #10037][ruby-core:63721].
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and remoev prefix `rb_' because it is used only in proc.c.
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rb_control_frame_t::klass.
[Bug #11278], [Bug #11279]
rb_method_entry_t data belong to modules/classes.
rb_method_entry_t::owner points defined module or class.
module M
def foo; end
end
In this case, owner is M.
rb_callable_method_entry_t data belong to only classes.
For modules, MRI creates corresponding T_ICLASS internally.
rb_callable_method_entry_t can also belong to T_ICLASS.
rb_callable_method_entry_t::defined_class points T_CLASS or
T_ICLASS.
rb_method_entry_t data for classes (not for modules) are also
rb_callable_method_entry_t data because it is completely same data.
In this case, rb_method_entry_t::owner == rb_method_entry_t::defined_class.
For example, there are classes C and D, and incldues M,
class C; include M; end
class D; include M; end
then, two T_ICLASS objects for C's super class and D's super class
will be created.
When C.new.foo is called, then M#foo is searcheed and
rb_callable_method_t data is used by VM to invoke M#foo.
rb_method_entry_t data is only one for M#foo.
However, rb_callable_method_entry_t data are two (and can be more).
It is proportional to the number of including (and prepending)
classes (the number of T_ICLASS which point to the module).
Now, created rb_callable_method_entry_t are collected when
the original module M was modified. We can think it is a cache.
We need to select what kind of method entry data is needed.
To operate definition, then you need to use rb_method_entry_t.
You can access them by the following functions.
* rb_method_entry(VALUE klass, ID id);
* rb_method_entry_with_refinements(VALUE klass, ID id);
* rb_method_entry_without_refinements(VALUE klass, ID id);
* rb_resolve_refined_method(VALUE refinements, const rb_method_entry_t *me);
To invoke methods, then you need to use rb_callable_method_entry_t
which you can get by the following APIs corresponding to the
above listed functions.
* rb_callable_method_entry(VALUE klass, ID id);
* rb_callable_method_entry_with_refinements(VALUE klass, ID id);
* rb_callable_method_entry_without_refinements(VALUE klass, ID id);
* rb_resolve_refined_method_callable(VALUE refinements, const rb_callable_method_entry_t *me);
VM pushes rb_callable_method_entry_t, so that rb_vm_frame_method_entry()
returns rb_callable_method_entry_t.
You can check a super class of current method by
rb_callable_method_entry_t::defined_class.
* method.h: renamed from rb_method_entry_t::klass to
rb_method_entry_t::owner.
* internal.h: add rb_classext_struct::callable_m_tbl to cache
rb_callable_method_entry_t data.
We need to consider abotu this field again because it is only
active for T_ICLASS.
* class.c (method_entry_i): ditto.
* class.c (rb_define_attr): rb_method_entry() does not takes
defiend_class_ptr.
* gc.c (mark_method_entry): mark RCLASS_CALLABLE_M_TBL() for T_ICLASS.
* cont.c (fiber_init): rb_control_frame_t::klass is removed.
* proc.c: fix `struct METHOD' data structure because
rb_callable_method_t has all information.
* vm_core.h: remove several fields.
* rb_control_frame_t::klass.
* rb_block_t::klass.
And catch up changes.
* eval.c: catch up changes.
* gc.c: ditto.
* insns.def: ditto.
* vm.c: ditto.
* vm_args.c: ditto.
* vm_backtrace.c: ditto.
* vm_dump.c: ditto.
* vm_eval.c: ditto.
* vm_insnhelper.c: ditto.
* vm_method.c: ditto.
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* method.h (METHOD_ENTRY_VISI_SET, METHOD_ENTRY_BASIC_SET),
(METHOD_ENTRY_SAFE_SET, METHOD_ENTRY_FLAGS_SET): get rid of
negative arguments, and safe leve is restricted to 1 now.
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a rb_method_entry_t data (me).
Normally, `me' points `def'. Some Ruby objects pointed from `def'
and objects are marked by `me' (mark_method_entry() in gc.c).
However, `def' is built before making a `me', then nobody can mark
objects pointed from `def' before making (and pointing from) `me'.
I hope this patch solve #11244.
* vm_method.c: remove `rb_' prefix from some static functions.
* method.h (rb_method_entry_create): constify
* gc.c (mark_method_entry): add checking `def' and
`def->body.iseq.iseqptr' availability because they can be NULL.
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rb_method_entry_t::flags to make one word spare space.
Add some macros to access these flags.
* vm_method.c: use these macros.
* internal.h: define IMEMO_FL_USHIFT and IMEMO_FL_USER[0-4]
for T_IMEMO local flags.
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