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bytecodes.c
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// This file contains instruction definitions.
// It is read by generators stored in Tools/cases_generator/
// to generate Python/generated_cases.c.h and others.
// Note that there is some dummy C code at the top and bottom of the file
// to fool text editors like VS Code into believing this is valid C code.
// The actual instruction definitions start at // BEGIN BYTECODES //.
// See Tools/cases_generator/README.md for more information.
#include "Python.h"
#include "pycore_abstract.h" // _PyIndex_Check()
#include "pycore_audit.h" // _PySys_Audit()
#include "pycore_backoff.h"
#include "pycore_cell.h" // PyCell_GetRef()
#include "pycore_ceval.h"
#include "pycore_code.h"
#include "pycore_emscripten_signal.h" // _Py_CHECK_EMSCRIPTEN_SIGNALS
#include "pycore_function.h"
#include "pycore_instruments.h"
#include "pycore_intrinsics.h"
#include "pycore_long.h" // _PyLong_GetZero()
#include "pycore_moduleobject.h" // PyModuleObject
#include "pycore_object.h" // _PyObject_GC_TRACK()
#include "pycore_opcode_metadata.h" // uop names
#include "pycore_opcode_utils.h" // MAKE_FUNCTION_*
#include "pycore_pyatomic_ft_wrappers.h" // FT_ATOMIC_*
#include "pycore_pyerrors.h" // _PyErr_GetRaisedException()
#include "pycore_pystate.h" // _PyInterpreterState_GET()
#include "pycore_range.h" // _PyRangeIterObject
#include "pycore_long.h" // _PyLong_ExactDealloc()
#include "pycore_setobject.h" // _PySet_NextEntry()
#include "pycore_sliceobject.h" // _PyBuildSlice_ConsumeRefs
#include "pycore_tuple.h" // _PyTuple_ITEMS()
#include "pycore_typeobject.h" // _PySuper_Lookup()
#include "pycore_dict.h"
#include "dictobject.h"
#include "pycore_frame.h"
#include "opcode.h"
#include "optimizer.h"
#include "pydtrace.h"
#include "setobject.h"
#define USE_COMPUTED_GOTOS 0
#include "ceval_macros.h"
/* Flow control macros */
#define inst(name, ...) case name:
#define op(name, ...) /* NAME is ignored */
#define macro(name) static int MACRO_##name
#define super(name) static int SUPER_##name
#define family(name, ...) static int family_##name
#define pseudo(name) static int pseudo_##name
#define label(name) name:
/* Annotations */
#define guard
#define override
#define specializing
#define split
#define replicate(TIMES)
#define tier1
#define no_save_ip
// Dummy variables for stack effects.
static PyObject *value, *value1, *value2, *left, *right, *res, *sum, *prod, *sub;
static PyObject *container, *start, *stop, *v, *lhs, *rhs, *res2;
static PyObject *list, *tuple, *dict, *owner, *set, *str, *tup, *map, *keys;
static PyObject *exit_func, *lasti, *val, *retval, *obj, *iter, *exhausted;
static PyObject *aiter, *awaitable, *iterable, *w, *exc_value, *bc, *locals;
static PyObject *orig, *excs, *update, *b, *fromlist, *level, *from;
static PyObject **pieces, **values;
static size_t jump;
// Dummy variables for cache effects
static uint16_t invert, counter, index, hint;
#define unused 0 // Used in a macro def, can't be static
static uint32_t type_version;
static _PyExecutorObject *current_executor;
static PyObject *
dummy_func(
PyThreadState *tstate,
_PyInterpreterFrame *frame,
unsigned char opcode,
unsigned int oparg,
_Py_CODEUNIT *next_instr,
PyObject **stack_pointer,
int throwflag,
PyObject *args[]
)
{
// Dummy labels.
pop_1_error:
// Dummy locals.
PyObject *dummy;
_Py_CODEUNIT *this_instr;
PyObject *attr;
PyObject *attrs;
PyObject *bottom;
PyObject *callable;
PyObject *callargs;
PyObject *codeobj;
PyObject *cond;
PyObject *descr;
PyObject *exc;
PyObject *exit;
PyObject *fget;
PyObject *fmt_spec;
PyObject *func;
uint32_t func_version;
PyObject *getattribute;
PyObject *kwargs;
PyObject *kwdefaults;
PyObject *len_o;
PyObject *match;
PyObject *match_type;
PyObject *method;
PyObject *mgr;
Py_ssize_t min_args;
PyObject *names;
PyObject *new_exc;
PyObject *next;
PyObject *none;
PyObject *null;
PyObject *prev_exc;
PyObject *receiver;
PyObject *rest;
int result;
PyObject *self;
PyObject *seq;
PyObject *slice;
PyObject *step;
PyObject *subject;
PyObject *top;
PyObject *type;
PyObject *typevars;
PyObject *val0;
PyObject *val1;
int values_or_none;
switch (opcode) {
// BEGIN BYTECODES //
pure inst(NOP, (--)) {
}
family(RESUME, 0) = {
RESUME_CHECK,
};
macro(NOT_TAKEN) = NOP;
op(_CHECK_PERIODIC, (--)) {
_Py_CHECK_EMSCRIPTEN_SIGNALS_PERIODICALLY();
QSBR_QUIESCENT_STATE(tstate);
if (_Py_atomic_load_uintptr_relaxed(&tstate->eval_breaker) & _PY_EVAL_EVENTS_MASK) {
int err = _Py_HandlePending(tstate);
ERROR_IF(err != 0, error);
}
}
op(_CHECK_PERIODIC_IF_NOT_YIELD_FROM, (--)) {
if ((oparg & RESUME_OPARG_LOCATION_MASK) < RESUME_AFTER_YIELD_FROM) {
_Py_CHECK_EMSCRIPTEN_SIGNALS_PERIODICALLY();
QSBR_QUIESCENT_STATE(tstate); \
if (_Py_atomic_load_uintptr_relaxed(&tstate->eval_breaker) & _PY_EVAL_EVENTS_MASK) {
int err = _Py_HandlePending(tstate);
ERROR_IF(err != 0, error);
}
}
}
op(_QUICKEN_RESUME, (--)) {
#if ENABLE_SPECIALIZATION_FT
if (tstate->tracing == 0 && this_instr->op.code == RESUME) {
FT_ATOMIC_STORE_UINT8_RELAXED(this_instr->op.code, RESUME_CHECK);
}
#endif /* ENABLE_SPECIALIZATION_FT */
}
tier1 op(_MAYBE_INSTRUMENT, (--)) {
if (tstate->tracing == 0) {
uintptr_t global_version = _Py_atomic_load_uintptr_relaxed(&tstate->eval_breaker) & ~_PY_EVAL_EVENTS_MASK;
uintptr_t code_version = FT_ATOMIC_LOAD_UINTPTR_ACQUIRE(_PyFrame_GetCode(frame)->_co_instrumentation_version);
if (code_version != global_version) {
int err = _Py_Instrument(_PyFrame_GetCode(frame), tstate->interp);
if (err) {
ERROR_NO_POP();
}
next_instr = this_instr;
DISPATCH();
}
}
}
op(_LOAD_BYTECODE, (--)) {
#ifdef Py_GIL_DISABLED
if (frame->tlbc_index !=
((_PyThreadStateImpl *)tstate)->tlbc_index) {
_Py_CODEUNIT *bytecode =
_PyEval_GetExecutableCode(tstate, _PyFrame_GetCode(frame));
ERROR_IF(bytecode == NULL, error);
ptrdiff_t off = this_instr - _PyFrame_GetBytecode(frame);
frame->tlbc_index = ((_PyThreadStateImpl *)tstate)->tlbc_index;
frame->instr_ptr = bytecode + off;
// Make sure this_instr gets reset correctley for any uops that
// follow
next_instr = frame->instr_ptr;
DISPATCH();
}
#endif
}
macro(RESUME) =
_LOAD_BYTECODE +
_MAYBE_INSTRUMENT +
_QUICKEN_RESUME +
_CHECK_PERIODIC_IF_NOT_YIELD_FROM;
inst(RESUME_CHECK, (--)) {
#if defined(__EMSCRIPTEN__)
DEOPT_IF(_Py_emscripten_signal_clock == 0);
_Py_emscripten_signal_clock -= Py_EMSCRIPTEN_SIGNAL_HANDLING;
#endif
uintptr_t eval_breaker = _Py_atomic_load_uintptr_relaxed(&tstate->eval_breaker);
uintptr_t version = FT_ATOMIC_LOAD_UINTPTR_ACQUIRE(_PyFrame_GetCode(frame)->_co_instrumentation_version);
assert((version & _PY_EVAL_EVENTS_MASK) == 0);
DEOPT_IF(eval_breaker != version);
#ifdef Py_GIL_DISABLED
DEOPT_IF(frame->tlbc_index !=
((_PyThreadStateImpl *)tstate)->tlbc_index);
#endif
}
op(_MONITOR_RESUME, (--)) {
int err = _Py_call_instrumentation(
tstate, oparg > 0, frame, this_instr);
ERROR_IF(err, error);
if (frame->instr_ptr != this_instr) {
/* Instrumentation has jumped */
next_instr = frame->instr_ptr;
}
}
macro(INSTRUMENTED_RESUME) =
_LOAD_BYTECODE +
_MAYBE_INSTRUMENT +
_CHECK_PERIODIC_IF_NOT_YIELD_FROM +
_MONITOR_RESUME;
pseudo(LOAD_CLOSURE, (-- unused)) = {
LOAD_FAST,
};
inst(LOAD_FAST_CHECK, (-- value)) {
_PyStackRef value_s = GETLOCAL(oparg);
if (PyStackRef_IsNull(value_s)) {
_PyEval_FormatExcCheckArg(tstate, PyExc_UnboundLocalError,
UNBOUNDLOCAL_ERROR_MSG,
PyTuple_GetItem(_PyFrame_GetCode(frame)->co_localsplusnames, oparg)
);
ERROR_IF(1, error);
}
value = PyStackRef_DUP(value_s);
}
replicate(8) pure inst(LOAD_FAST, (-- value)) {
assert(!PyStackRef_IsNull(GETLOCAL(oparg)));
value = PyStackRef_DUP(GETLOCAL(oparg));
}
inst(LOAD_FAST_AND_CLEAR, (-- value)) {
value = GETLOCAL(oparg);
GETLOCAL(oparg) = PyStackRef_NULL;
}
inst(LOAD_FAST_LOAD_FAST, ( -- value1, value2)) {
uint32_t oparg1 = oparg >> 4;
uint32_t oparg2 = oparg & 15;
value1 = PyStackRef_DUP(GETLOCAL(oparg1));
value2 = PyStackRef_DUP(GETLOCAL(oparg2));
}
family(LOAD_CONST, 0) = {
LOAD_CONST_MORTAL,
LOAD_CONST_IMMORTAL,
};
inst(LOAD_CONST, (-- value)) {
/* We can't do this in the bytecode compiler as
* marshalling can intern strings and make them immortal. */
PyObject *obj = GETITEM(FRAME_CO_CONSTS, oparg);
value = PyStackRef_FromPyObjectNew(obj);
#if ENABLE_SPECIALIZATION_FT
#ifdef Py_GIL_DISABLED
uint8_t expected = LOAD_CONST;
if (!_Py_atomic_compare_exchange_uint8(
&this_instr->op.code, &expected,
_Py_IsImmortal(obj) ? LOAD_CONST_IMMORTAL : LOAD_CONST_MORTAL)) {
// We might lose a race with instrumentation, which we don't care about.
assert(expected >= MIN_INSTRUMENTED_OPCODE);
}
#else
if (this_instr->op.code == LOAD_CONST) {
this_instr->op.code = _Py_IsImmortal(obj) ? LOAD_CONST_IMMORTAL : LOAD_CONST_MORTAL;
}
#endif
#endif
}
inst(LOAD_CONST_MORTAL, (-- value)) {
PyObject *obj = GETITEM(FRAME_CO_CONSTS, oparg);
value = PyStackRef_FromPyObjectNew(obj);
}
inst(LOAD_CONST_IMMORTAL, (-- value)) {
PyObject *obj = GETITEM(FRAME_CO_CONSTS, oparg);
assert(_Py_IsImmortal(obj));
value = PyStackRef_FromPyObjectImmortal(obj);
}
replicate(4) inst(LOAD_SMALL_INT, (-- value)) {
assert(oparg < _PY_NSMALLPOSINTS);
PyObject *obj = (PyObject *)&_PyLong_SMALL_INTS[_PY_NSMALLNEGINTS + oparg];
value = PyStackRef_FromPyObjectImmortal(obj);
}
replicate(8) inst(STORE_FAST, (value --)) {
_PyStackRef tmp = GETLOCAL(oparg);
GETLOCAL(oparg) = value;
DEAD(value);
PyStackRef_XCLOSE(tmp);
}
pseudo(STORE_FAST_MAYBE_NULL, (unused --)) = {
STORE_FAST,
};
inst(STORE_FAST_LOAD_FAST, (value1 -- value2)) {
uint32_t oparg1 = oparg >> 4;
uint32_t oparg2 = oparg & 15;
_PyStackRef tmp = GETLOCAL(oparg1);
GETLOCAL(oparg1) = value1;
DEAD(value1);
value2 = PyStackRef_DUP(GETLOCAL(oparg2));
PyStackRef_XCLOSE(tmp);
}
inst(STORE_FAST_STORE_FAST, (value2, value1 --)) {
uint32_t oparg1 = oparg >> 4;
uint32_t oparg2 = oparg & 15;
_PyStackRef tmp = GETLOCAL(oparg1);
GETLOCAL(oparg1) = value1;
DEAD(value1);
PyStackRef_XCLOSE(tmp);
tmp = GETLOCAL(oparg2);
GETLOCAL(oparg2) = value2;
DEAD(value2);
PyStackRef_XCLOSE(tmp);
}
pure inst(POP_TOP, (value --)) {
PyStackRef_CLOSE(value);
}
pure inst(PUSH_NULL, (-- res)) {
res = PyStackRef_NULL;
}
no_save_ip inst(END_FOR, (value -- )) {
/* Don't update instr_ptr, so that POP_ITER sees
* the FOR_ITER as the previous instruction.
* This has the benign side effect that if value is
* finalized it will see the location as the FOR_ITER's.
*/
PyStackRef_CLOSE(value);
}
macro(POP_ITER) = POP_TOP;
no_save_ip tier1 inst(INSTRUMENTED_END_FOR, (receiver, value -- receiver)) {
/* Need to create a fake StopIteration error here,
* to conform to PEP 380 */
if (PyStackRef_GenCheck(receiver)) {
int err = monitor_stop_iteration(tstate, frame, this_instr, PyStackRef_AsPyObjectBorrow(value));
if (err) {
ERROR_NO_POP();
}
}
PyStackRef_CLOSE(value);
}
tier1 inst(INSTRUMENTED_POP_ITER, (iter -- )) {
INSTRUMENTED_JUMP(prev_instr, this_instr+1, PY_MONITORING_EVENT_BRANCH_RIGHT);
PyStackRef_CLOSE(iter);
}
pure inst(END_SEND, (receiver, value -- val)) {
(void)receiver;
val = value;
DEAD(value);
PyStackRef_CLOSE(receiver);
}
tier1 inst(INSTRUMENTED_END_SEND, (receiver, value -- val)) {
PyObject *receiver_o = PyStackRef_AsPyObjectBorrow(receiver);
if (PyGen_Check(receiver_o) || PyCoro_CheckExact(receiver_o)) {
int err = monitor_stop_iteration(tstate, frame, this_instr, PyStackRef_AsPyObjectBorrow(value));
if (err) {
ERROR_NO_POP();
}
}
val = value;
DEAD(value);
PyStackRef_CLOSE(receiver);
}
inst(UNARY_NEGATIVE, (value -- res)) {
PyObject *res_o = PyNumber_Negative(PyStackRef_AsPyObjectBorrow(value));
PyStackRef_CLOSE(value);
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
pure inst(UNARY_NOT, (value -- res)) {
assert(PyStackRef_BoolCheck(value));
res = PyStackRef_IsFalse(value)
? PyStackRef_True : PyStackRef_False;
DEAD(value);
}
family(TO_BOOL, INLINE_CACHE_ENTRIES_TO_BOOL) = {
TO_BOOL_ALWAYS_TRUE,
TO_BOOL_BOOL,
TO_BOOL_INT,
TO_BOOL_LIST,
TO_BOOL_NONE,
TO_BOOL_STR,
};
specializing op(_SPECIALIZE_TO_BOOL, (counter/1, value -- value)) {
#if ENABLE_SPECIALIZATION_FT
if (ADAPTIVE_COUNTER_TRIGGERS(counter)) {
next_instr = this_instr;
_Py_Specialize_ToBool(value, next_instr);
DISPATCH_SAME_OPARG();
}
OPCODE_DEFERRED_INC(TO_BOOL);
ADVANCE_ADAPTIVE_COUNTER(this_instr[1].counter);
#endif /* ENABLE_SPECIALIZATION_FT */
}
op(_TO_BOOL, (value -- res)) {
int err = PyObject_IsTrue(PyStackRef_AsPyObjectBorrow(value));
PyStackRef_CLOSE(value);
ERROR_IF(err < 0, error);
res = err ? PyStackRef_True : PyStackRef_False;
}
macro(TO_BOOL) = _SPECIALIZE_TO_BOOL + unused/2 + _TO_BOOL;
inst(TO_BOOL_BOOL, (unused/1, unused/2, value -- value)) {
EXIT_IF(!PyStackRef_BoolCheck(value));
STAT_INC(TO_BOOL, hit);
}
inst(TO_BOOL_INT, (unused/1, unused/2, value -- res)) {
PyObject *value_o = PyStackRef_AsPyObjectBorrow(value);
EXIT_IF(!PyLong_CheckExact(value_o));
STAT_INC(TO_BOOL, hit);
if (_PyLong_IsZero((PyLongObject *)value_o)) {
assert(_Py_IsImmortal(value_o));
DEAD(value);
res = PyStackRef_False;
}
else {
PyStackRef_CLOSE(value);
res = PyStackRef_True;
}
}
inst(TO_BOOL_LIST, (unused/1, unused/2, value -- res)) {
PyObject *value_o = PyStackRef_AsPyObjectBorrow(value);
EXIT_IF(!PyList_CheckExact(value_o));
STAT_INC(TO_BOOL, hit);
res = PyList_GET_SIZE(value_o) ? PyStackRef_True : PyStackRef_False;
DECREF_INPUTS();
}
inst(TO_BOOL_NONE, (unused/1, unused/2, value -- res)) {
// This one is a bit weird, because we expect *some* failures:
EXIT_IF(!PyStackRef_IsNone(value));
DEAD(value);
STAT_INC(TO_BOOL, hit);
res = PyStackRef_False;
}
inst(TO_BOOL_STR, (unused/1, unused/2, value -- res)) {
PyObject *value_o = PyStackRef_AsPyObjectBorrow(value);
EXIT_IF(!PyUnicode_CheckExact(value_o));
STAT_INC(TO_BOOL, hit);
if (value_o == &_Py_STR(empty)) {
assert(_Py_IsImmortal(value_o));
DEAD(value);
res = PyStackRef_False;
}
else {
assert(Py_SIZE(value_o));
PyStackRef_CLOSE(value);
res = PyStackRef_True;
}
}
op(_REPLACE_WITH_TRUE, (value -- res)) {
PyStackRef_CLOSE(value);
res = PyStackRef_True;
}
macro(TO_BOOL_ALWAYS_TRUE) =
unused/1 +
_GUARD_TYPE_VERSION +
_REPLACE_WITH_TRUE;
inst(UNARY_INVERT, (value -- res)) {
PyObject *res_o = PyNumber_Invert(PyStackRef_AsPyObjectBorrow(value));
PyStackRef_CLOSE(value);
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
family(BINARY_OP, INLINE_CACHE_ENTRIES_BINARY_OP) = {
BINARY_OP_MULTIPLY_INT,
BINARY_OP_ADD_INT,
BINARY_OP_SUBTRACT_INT,
BINARY_OP_MULTIPLY_FLOAT,
BINARY_OP_ADD_FLOAT,
BINARY_OP_SUBTRACT_FLOAT,
BINARY_OP_ADD_UNICODE,
BINARY_OP_SUBSCR_LIST_INT,
BINARY_OP_SUBSCR_TUPLE_INT,
BINARY_OP_SUBSCR_STR_INT,
BINARY_OP_SUBSCR_DICT,
BINARY_OP_SUBSCR_GETITEM,
// BINARY_OP_INPLACE_ADD_UNICODE, // See comments at that opcode.
BINARY_OP_EXTEND,
};
op(_GUARD_BOTH_INT, (left, right -- left, right)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
EXIT_IF(!PyLong_CheckExact(left_o));
EXIT_IF(!PyLong_CheckExact(right_o));
}
op(_GUARD_NOS_INT, (left, unused -- left, unused)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
EXIT_IF(!PyLong_CheckExact(left_o));
}
op(_GUARD_TOS_INT, (value -- value)) {
PyObject *value_o = PyStackRef_AsPyObjectBorrow(value);
EXIT_IF(!PyLong_CheckExact(value_o));
}
pure op(_BINARY_OP_MULTIPLY_INT, (left, right -- res)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
assert(PyLong_CheckExact(left_o));
assert(PyLong_CheckExact(right_o));
STAT_INC(BINARY_OP, hit);
PyObject *res_o = _PyLong_Multiply((PyLongObject *)left_o, (PyLongObject *)right_o);
PyStackRef_CLOSE_SPECIALIZED(right, _PyLong_ExactDealloc);
PyStackRef_CLOSE_SPECIALIZED(left, _PyLong_ExactDealloc);
INPUTS_DEAD();
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
pure op(_BINARY_OP_ADD_INT, (left, right -- res)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
assert(PyLong_CheckExact(left_o));
assert(PyLong_CheckExact(right_o));
STAT_INC(BINARY_OP, hit);
PyObject *res_o = _PyLong_Add((PyLongObject *)left_o, (PyLongObject *)right_o);
PyStackRef_CLOSE_SPECIALIZED(right, _PyLong_ExactDealloc);
PyStackRef_CLOSE_SPECIALIZED(left, _PyLong_ExactDealloc);
INPUTS_DEAD();
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
pure op(_BINARY_OP_SUBTRACT_INT, (left, right -- res)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
assert(PyLong_CheckExact(left_o));
assert(PyLong_CheckExact(right_o));
STAT_INC(BINARY_OP, hit);
PyObject *res_o = _PyLong_Subtract((PyLongObject *)left_o, (PyLongObject *)right_o);
PyStackRef_CLOSE_SPECIALIZED(right, _PyLong_ExactDealloc);
PyStackRef_CLOSE_SPECIALIZED(left, _PyLong_ExactDealloc);
INPUTS_DEAD();
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
macro(BINARY_OP_MULTIPLY_INT) =
_GUARD_BOTH_INT + unused/5 + _BINARY_OP_MULTIPLY_INT;
macro(BINARY_OP_ADD_INT) =
_GUARD_BOTH_INT + unused/5 + _BINARY_OP_ADD_INT;
macro(BINARY_OP_SUBTRACT_INT) =
_GUARD_BOTH_INT + unused/5 + _BINARY_OP_SUBTRACT_INT;
op(_GUARD_BOTH_FLOAT, (left, right -- left, right)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
EXIT_IF(!PyFloat_CheckExact(left_o));
EXIT_IF(!PyFloat_CheckExact(right_o));
}
op(_GUARD_NOS_FLOAT, (left, unused -- left, unused)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
EXIT_IF(!PyFloat_CheckExact(left_o));
}
op(_GUARD_TOS_FLOAT, (value -- value)) {
PyObject *value_o = PyStackRef_AsPyObjectBorrow(value);
EXIT_IF(!PyFloat_CheckExact(value_o));
}
pure op(_BINARY_OP_MULTIPLY_FLOAT, (left, right -- res)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
assert(PyFloat_CheckExact(left_o));
assert(PyFloat_CheckExact(right_o));
STAT_INC(BINARY_OP, hit);
double dres =
((PyFloatObject *)left_o)->ob_fval *
((PyFloatObject *)right_o)->ob_fval;
PyObject *res_o = _PyFloat_FromDouble_ConsumeInputs(left, right, dres);
INPUTS_DEAD();
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
pure op(_BINARY_OP_ADD_FLOAT, (left, right -- res)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
assert(PyFloat_CheckExact(left_o));
assert(PyFloat_CheckExact(right_o));
STAT_INC(BINARY_OP, hit);
double dres =
((PyFloatObject *)left_o)->ob_fval +
((PyFloatObject *)right_o)->ob_fval;
PyObject *res_o = _PyFloat_FromDouble_ConsumeInputs(left, right, dres);
INPUTS_DEAD();
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
pure op(_BINARY_OP_SUBTRACT_FLOAT, (left, right -- res)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
assert(PyFloat_CheckExact(left_o));
assert(PyFloat_CheckExact(right_o));
STAT_INC(BINARY_OP, hit);
double dres =
((PyFloatObject *)left_o)->ob_fval -
((PyFloatObject *)right_o)->ob_fval;
PyObject *res_o = _PyFloat_FromDouble_ConsumeInputs(left, right, dres);
INPUTS_DEAD();
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
macro(BINARY_OP_MULTIPLY_FLOAT) =
_GUARD_BOTH_FLOAT + unused/5 + _BINARY_OP_MULTIPLY_FLOAT;
macro(BINARY_OP_ADD_FLOAT) =
_GUARD_BOTH_FLOAT + unused/5 + _BINARY_OP_ADD_FLOAT;
macro(BINARY_OP_SUBTRACT_FLOAT) =
_GUARD_BOTH_FLOAT + unused/5 + _BINARY_OP_SUBTRACT_FLOAT;
op(_GUARD_BOTH_UNICODE, (left, right -- left, right)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
EXIT_IF(!PyUnicode_CheckExact(left_o));
EXIT_IF(!PyUnicode_CheckExact(right_o));
}
pure op(_BINARY_OP_ADD_UNICODE, (left, right -- res)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
assert(PyUnicode_CheckExact(left_o));
assert(PyUnicode_CheckExact(right_o));
STAT_INC(BINARY_OP, hit);
PyObject *res_o = PyUnicode_Concat(left_o, right_o);
PyStackRef_CLOSE_SPECIALIZED(right, _PyUnicode_ExactDealloc);
PyStackRef_CLOSE_SPECIALIZED(left, _PyUnicode_ExactDealloc);
INPUTS_DEAD();
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
macro(BINARY_OP_ADD_UNICODE) =
_GUARD_BOTH_UNICODE + unused/5 + _BINARY_OP_ADD_UNICODE;
// This is a subtle one. It's a super-instruction for
// BINARY_OP_ADD_UNICODE followed by STORE_FAST
// where the store goes into the left argument.
// So the inputs are the same as for all BINARY_OP
// specializations, but there is no output.
// At the end we just skip over the STORE_FAST.
op(_BINARY_OP_INPLACE_ADD_UNICODE, (left, right --)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectSteal(right);
assert(PyUnicode_CheckExact(left_o));
assert(PyUnicode_CheckExact(right_o));
int next_oparg;
#if TIER_ONE
assert(next_instr->op.code == STORE_FAST);
next_oparg = next_instr->op.arg;
#else
next_oparg = CURRENT_OPERAND0();
#endif
_PyStackRef *target_local = &GETLOCAL(next_oparg);
DEOPT_IF(PyStackRef_AsPyObjectBorrow(*target_local) != left_o);
STAT_INC(BINARY_OP, hit);
/* Handle `left = left + right` or `left += right` for str.
*
* When possible, extend `left` in place rather than
* allocating a new PyUnicodeObject. This attempts to avoid
* quadratic behavior when one neglects to use str.join().
*
* If `left` has only two references remaining (one from
* the stack, one in the locals), DECREFing `left` leaves
* only the locals reference, so PyUnicode_Append knows
* that the string is safe to mutate.
*/
assert(Py_REFCNT(left_o) >= 2);
PyStackRef_CLOSE_SPECIALIZED(left, _PyUnicode_ExactDealloc);
DEAD(left);
PyObject *temp = PyStackRef_AsPyObjectSteal(*target_local);
PyUnicode_Append(&temp, right_o);
*target_local = PyStackRef_FromPyObjectSteal(temp);
Py_DECREF(right_o);
ERROR_IF(PyStackRef_IsNull(*target_local), error);
#if TIER_ONE
// The STORE_FAST is already done. This is done here in tier one,
// and during trace projection in tier two:
assert(next_instr->op.code == STORE_FAST);
SKIP_OVER(1);
#endif
}
op(_GUARD_BINARY_OP_EXTEND, (descr/4, left, right -- left, right)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
_PyBinaryOpSpecializationDescr *d = (_PyBinaryOpSpecializationDescr*)descr;
assert(INLINE_CACHE_ENTRIES_BINARY_OP == 5);
assert(d && d->guard);
int res = d->guard(left_o, right_o);
DEOPT_IF(!res);
}
pure op(_BINARY_OP_EXTEND, (descr/4, left, right -- res)) {
PyObject *left_o = PyStackRef_AsPyObjectBorrow(left);
PyObject *right_o = PyStackRef_AsPyObjectBorrow(right);
assert(INLINE_CACHE_ENTRIES_BINARY_OP == 5);
_PyBinaryOpSpecializationDescr *d = (_PyBinaryOpSpecializationDescr*)descr;
STAT_INC(BINARY_OP, hit);
PyObject *res_o = d->action(left_o, right_o);
DECREF_INPUTS();
res = PyStackRef_FromPyObjectSteal(res_o);
}
macro(BINARY_OP_EXTEND) =
unused/1 + _GUARD_BINARY_OP_EXTEND + rewind/-4 + _BINARY_OP_EXTEND;
macro(BINARY_OP_INPLACE_ADD_UNICODE) =
_GUARD_BOTH_UNICODE + unused/5 + _BINARY_OP_INPLACE_ADD_UNICODE;
specializing op(_SPECIALIZE_BINARY_SLICE, (container, start, stop -- container, start, stop)) {
// Placeholder until we implement BINARY_SLICE specialization
#if ENABLE_SPECIALIZATION
OPCODE_DEFERRED_INC(BINARY_SLICE);
#endif /* ENABLE_SPECIALIZATION */
}
op(_BINARY_SLICE, (container, start, stop -- res)) {
PyObject *slice = _PyBuildSlice_ConsumeRefs(PyStackRef_AsPyObjectSteal(start),
PyStackRef_AsPyObjectSteal(stop));
PyObject *res_o;
// Can't use ERROR_IF() here, because we haven't
// DECREF'ed container yet, and we still own slice.
if (slice == NULL) {
res_o = NULL;
}
else {
res_o = PyObject_GetItem(PyStackRef_AsPyObjectBorrow(container), slice);
Py_DECREF(slice);
}
PyStackRef_CLOSE(container);
ERROR_IF(res_o == NULL, error);
res = PyStackRef_FromPyObjectSteal(res_o);
}
macro(BINARY_SLICE) = _SPECIALIZE_BINARY_SLICE + _BINARY_SLICE;
specializing op(_SPECIALIZE_STORE_SLICE, (v, container, start, stop -- v, container, start, stop)) {
// Placeholder until we implement STORE_SLICE specialization
#if ENABLE_SPECIALIZATION
OPCODE_DEFERRED_INC(STORE_SLICE);
#endif /* ENABLE_SPECIALIZATION */
}
op(_STORE_SLICE, (v, container, start, stop -- )) {
PyObject *slice = _PyBuildSlice_ConsumeRefs(PyStackRef_AsPyObjectSteal(start),
PyStackRef_AsPyObjectSteal(stop));
int err;
if (slice == NULL) {
err = 1;
}
else {
err = PyObject_SetItem(PyStackRef_AsPyObjectBorrow(container), slice, PyStackRef_AsPyObjectBorrow(v));
Py_DECREF(slice);
}
DECREF_INPUTS();
ERROR_IF(err, error);
}
macro(STORE_SLICE) = _SPECIALIZE_STORE_SLICE + _STORE_SLICE;
inst(BINARY_OP_SUBSCR_LIST_INT, (unused/5, list_st, sub_st -- res)) {
PyObject *sub = PyStackRef_AsPyObjectBorrow(sub_st);
PyObject *list = PyStackRef_AsPyObjectBorrow(list_st);
DEOPT_IF(!PyLong_CheckExact(sub));
DEOPT_IF(!PyList_CheckExact(list));
// Deopt unless 0 <= sub < PyList_Size(list)
DEOPT_IF(!_PyLong_IsNonNegativeCompact((PyLongObject *)sub));
Py_ssize_t index = ((PyLongObject*)sub)->long_value.ob_digit[0];
#ifdef Py_GIL_DISABLED
PyObject *res_o = _PyList_GetItemRef((PyListObject*)list, index);
DEOPT_IF(res_o == NULL);
STAT_INC(BINARY_OP, hit);
#else
DEOPT_IF(index >= PyList_GET_SIZE(list));
STAT_INC(BINARY_OP, hit);
PyObject *res_o = PyList_GET_ITEM(list, index);
assert(res_o != NULL);
Py_INCREF(res_o);
#endif
PyStackRef_CLOSE_SPECIALIZED(sub_st, _PyLong_ExactDealloc);
DEAD(sub_st);
PyStackRef_CLOSE(list_st);
res = PyStackRef_FromPyObjectSteal(res_o);
}
inst(BINARY_OP_SUBSCR_STR_INT, (unused/5, str_st, sub_st -- res)) {
PyObject *sub = PyStackRef_AsPyObjectBorrow(sub_st);
PyObject *str = PyStackRef_AsPyObjectBorrow(str_st);
DEOPT_IF(!PyLong_CheckExact(sub));
DEOPT_IF(!PyUnicode_CheckExact(str));
DEOPT_IF(!_PyLong_IsNonNegativeCompact((PyLongObject *)sub));
Py_ssize_t index = ((PyLongObject*)sub)->long_value.ob_digit[0];
DEOPT_IF(PyUnicode_GET_LENGTH(str) <= index);
// Specialize for reading an ASCII character from any string:
Py_UCS4 c = PyUnicode_READ_CHAR(str, index);
DEOPT_IF(Py_ARRAY_LENGTH(_Py_SINGLETON(strings).ascii) <= c);
STAT_INC(BINARY_OP, hit);
PyObject *res_o = (PyObject*)&_Py_SINGLETON(strings).ascii[c];
PyStackRef_CLOSE_SPECIALIZED(sub_st, _PyLong_ExactDealloc);
DEAD(sub_st);
PyStackRef_CLOSE(str_st);
res = PyStackRef_FromPyObjectSteal(res_o);
}
inst(BINARY_OP_SUBSCR_TUPLE_INT, (unused/5, tuple_st, sub_st -- res)) {
PyObject *sub = PyStackRef_AsPyObjectBorrow(sub_st);
PyObject *tuple = PyStackRef_AsPyObjectBorrow(tuple_st);
DEOPT_IF(!PyLong_CheckExact(sub));
DEOPT_IF(!PyTuple_CheckExact(tuple));
// Deopt unless 0 <= sub < PyTuple_Size(list)
DEOPT_IF(!_PyLong_IsNonNegativeCompact((PyLongObject *)sub));
Py_ssize_t index = ((PyLongObject*)sub)->long_value.ob_digit[0];
DEOPT_IF(index >= PyTuple_GET_SIZE(tuple));
STAT_INC(BINARY_OP, hit);
PyObject *res_o = PyTuple_GET_ITEM(tuple, index);
assert(res_o != NULL);
Py_INCREF(res_o);
PyStackRef_CLOSE_SPECIALIZED(sub_st, _PyLong_ExactDealloc);
DEAD(sub_st);
PyStackRef_CLOSE(tuple_st);
res = PyStackRef_FromPyObjectSteal(res_o);
}
inst(BINARY_OP_SUBSCR_DICT, (unused/5, dict_st, sub_st -- res)) {
PyObject *sub = PyStackRef_AsPyObjectBorrow(sub_st);
PyObject *dict = PyStackRef_AsPyObjectBorrow(dict_st);
DEOPT_IF(!PyDict_CheckExact(dict));
STAT_INC(BINARY_OP, hit);
PyObject *res_o;
int rc = PyDict_GetItemRef(dict, sub, &res_o);
if (rc == 0) {
_PyErr_SetKeyError(sub);
}
DECREF_INPUTS();
ERROR_IF(rc <= 0, error); // not found or error
res = PyStackRef_FromPyObjectSteal(res_o);
}
op(_BINARY_OP_SUBSCR_CHECK_FUNC, (container, unused -- container, unused, getitem)) {
PyTypeObject *tp = Py_TYPE(PyStackRef_AsPyObjectBorrow(container));
DEOPT_IF(!PyType_HasFeature(tp, Py_TPFLAGS_HEAPTYPE));
PyHeapTypeObject *ht = (PyHeapTypeObject *)tp;
PyObject *getitem_o = FT_ATOMIC_LOAD_PTR_ACQUIRE(ht->_spec_cache.getitem);
DEOPT_IF(getitem_o == NULL);
assert(PyFunction_Check(getitem_o));
uint32_t cached_version = FT_ATOMIC_LOAD_UINT32_RELAXED(ht->_spec_cache.getitem_version);
DEOPT_IF(((PyFunctionObject *)getitem_o)->func_version != cached_version);
PyCodeObject *code = (PyCodeObject *)PyFunction_GET_CODE(getitem_o);
assert(code->co_argcount == 2);
DEOPT_IF(!_PyThreadState_HasStackSpace(tstate, code->co_framesize));
getitem = PyStackRef_FromPyObjectNew(getitem_o);
STAT_INC(BINARY_OP, hit);
}
op(_BINARY_OP_SUBSCR_INIT_CALL, (container, sub, getitem -- new_frame: _PyInterpreterFrame* )) {
new_frame = _PyFrame_PushUnchecked(tstate, getitem, 2, frame);
new_frame->localsplus[0] = container;
new_frame->localsplus[1] = sub;
INPUTS_DEAD();
frame->return_offset = INSTRUCTION_SIZE;
}
macro(BINARY_OP_SUBSCR_GETITEM) =
unused/5 + // Skip over the counter and cache
_CHECK_PEP_523 +
_BINARY_OP_SUBSCR_CHECK_FUNC +
_BINARY_OP_SUBSCR_INIT_CALL +
_PUSH_FRAME;
inst(LIST_APPEND, (list, unused[oparg-1], v -- list, unused[oparg-1])) {
int err = _PyList_AppendTakeRef((PyListObject *)PyStackRef_AsPyObjectBorrow(list),
PyStackRef_AsPyObjectSteal(v));
ERROR_IF(err < 0, error);
}
inst(SET_ADD, (set, unused[oparg-1], v -- set, unused[oparg-1])) {
int err = PySet_Add(PyStackRef_AsPyObjectBorrow(set),
PyStackRef_AsPyObjectBorrow(v));
PyStackRef_CLOSE(v);
ERROR_IF(err, error);
}
family(STORE_SUBSCR, INLINE_CACHE_ENTRIES_STORE_SUBSCR) = {
STORE_SUBSCR_DICT,
STORE_SUBSCR_LIST_INT,
};
specializing op(_SPECIALIZE_STORE_SUBSCR, (counter/1, container, sub -- container, sub)) {
#if ENABLE_SPECIALIZATION_FT
if (ADAPTIVE_COUNTER_TRIGGERS(counter)) {
next_instr = this_instr;
_Py_Specialize_StoreSubscr(container, sub, next_instr);
DISPATCH_SAME_OPARG();
}
OPCODE_DEFERRED_INC(STORE_SUBSCR);
ADVANCE_ADAPTIVE_COUNTER(this_instr[1].counter);
#endif /* ENABLE_SPECIALIZATION_FT */
}
op(_STORE_SUBSCR, (v, container, sub -- )) {
/* container[sub] = v */
int err = PyObject_SetItem(PyStackRef_AsPyObjectBorrow(container), PyStackRef_AsPyObjectBorrow(sub), PyStackRef_AsPyObjectBorrow(v));
DECREF_INPUTS();
ERROR_IF(err, error);
}
macro(STORE_SUBSCR) = _SPECIALIZE_STORE_SUBSCR + _STORE_SUBSCR;
inst(STORE_SUBSCR_LIST_INT, (unused/1, value, list_st, sub_st -- )) {
PyObject *sub = PyStackRef_AsPyObjectBorrow(sub_st);