#include "Python.h" #include "pycore_call.h" #include "pycore_ceval.h" #include "pycore_dict.h" #include "pycore_emscripten_signal.h" #include "pycore_intrinsics.h" #include "pycore_jit.h" #include "pycore_long.h" #include "pycore_opcode_metadata.h" #include "pycore_opcode_utils.h" #include "pycore_range.h" #include "pycore_setobject.h" #include "pycore_sliceobject.h" #include "ceval_macros.h" #undef CURRENT_OPARG #define CURRENT_OPARG() (_oparg) #undef CURRENT_OPERAND #define CURRENT_OPERAND() (_operand) #undef DEOPT_IF #define DEOPT_IF(COND, INSTNAME) \ do { \ if ((COND)) { \ goto deoptimize; \ } \ } while (0) #undef ENABLE_SPECIALIZATION #define ENABLE_SPECIALIZATION (0) #undef GOTO_ERROR #define GOTO_ERROR(LABEL) \ do { \ goto LABEL ## _tier_two; \ } while (0) #undef LOAD_IP #define LOAD_IP(UNUSED) \ do { \ } while (0) #define PATCH_VALUE(TYPE, NAME, ALIAS) \ extern void ALIAS; \ TYPE NAME = (TYPE)(uint64_t)&ALIAS; #define PATCH_JUMP(ALIAS) \ extern void ALIAS; \ __attribute__((musttail)) \ return ((jit_func)&ALIAS)(frame, stack_pointer, tstate); _Py_CODEUNIT * _JIT_ENTRY(_PyInterpreterFrame *frame, PyObject **stack_pointer, PyThreadState *tstate) { // Locals that the instruction implementations expect to exist: PATCH_VALUE(_PyExecutorObject *, current_executor, _JIT_EXECUTOR) int oparg; int opcode = _JIT_OPCODE; _PyUOpInstruction *next_uop; // Other stuff we need handy: PATCH_VALUE(uint16_t, _oparg, _JIT_OPARG) PATCH_VALUE(uint64_t, _operand, _JIT_OPERAND) PATCH_VALUE(uint32_t, _target, _JIT_TARGET) // The actual instruction definitions (only one will be used): if (opcode == _JUMP_TO_TOP) { CHECK_EVAL_BREAKER(); PATCH_JUMP(_JIT_TOP); } switch (opcode) { #include "executor_cases.c.h" default: Py_UNREACHABLE(); } PATCH_JUMP(_JIT_CONTINUE); // Labels that the instruction implementations expect to exist: unbound_local_error_tier_two: _PyEval_FormatExcCheckArg( tstate, PyExc_UnboundLocalError, UNBOUNDLOCAL_ERROR_MSG, PyTuple_GetItem(_PyFrame_GetCode(frame)->co_localsplusnames, oparg)); goto error_tier_two; pop_4_error_tier_two: STACK_SHRINK(1); pop_3_error_tier_two: STACK_SHRINK(1); pop_2_error_tier_two: STACK_SHRINK(1); pop_1_error_tier_two: STACK_SHRINK(1); error_tier_two: _PyFrame_SetStackPointer(frame, stack_pointer); return NULL; deoptimize: _PyFrame_SetStackPointer(frame, stack_pointer); return _PyCode_CODE(_PyFrame_GetCode(frame)) + _target; }