317 lines
14 KiB
C
317 lines
14 KiB
C
/*
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* This file is part of the MicroPython project, http://micropython.org/
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*
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* The MIT License (MIT)
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*
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* Copyright (c) 2013, 2014 Damien P. George
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*/
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#ifndef MICROPY_INCLUDED_PY_RUNTIME_H
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#define MICROPY_INCLUDED_PY_RUNTIME_H
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#include <stdarg.h>
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#include "py/mpstate.h"
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#include "py/pystack.h"
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// CIRCUITPY-CHANGE
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#include "supervisor/linker.h"
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#include "supervisor/shared/translate/translate.h"
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// For use with mp_call_function_1_from_nlr_jump_callback.
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#define MP_DEFINE_NLR_JUMP_CALLBACK_FUNCTION_1(ctx, f, a) \
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nlr_jump_callback_node_call_function_1_t ctx = { \
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.func = (void (*)(void *))(f), \
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.arg = (a), \
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}
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typedef enum {
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MP_VM_RETURN_NORMAL,
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MP_VM_RETURN_YIELD,
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MP_VM_RETURN_EXCEPTION,
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} mp_vm_return_kind_t;
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typedef enum {
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MP_ARG_BOOL = 0x001,
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MP_ARG_INT = 0x002,
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MP_ARG_OBJ = 0x003,
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MP_ARG_KIND_MASK = 0x0ff,
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MP_ARG_REQUIRED = 0x100,
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MP_ARG_KW_ONLY = 0x200,
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} mp_arg_flag_t;
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typedef union _mp_arg_val_t {
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bool u_bool;
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mp_int_t u_int;
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mp_obj_t u_obj;
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mp_rom_obj_t u_rom_obj;
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} mp_arg_val_t;
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typedef struct _mp_arg_t {
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uint16_t qst;
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uint16_t flags;
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mp_arg_val_t defval;
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} mp_arg_t;
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struct _mp_sched_node_t;
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typedef void (*mp_sched_callback_t)(struct _mp_sched_node_t *);
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typedef struct _mp_sched_node_t {
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mp_sched_callback_t callback;
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struct _mp_sched_node_t *next;
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} mp_sched_node_t;
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// For use with mp_globals_locals_set_from_nlr_jump_callback.
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typedef struct _nlr_jump_callback_node_globals_locals_t {
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nlr_jump_callback_node_t callback;
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mp_obj_dict_t *globals;
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mp_obj_dict_t *locals;
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} nlr_jump_callback_node_globals_locals_t;
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// For use with mp_call_function_1_from_nlr_jump_callback.
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typedef struct _nlr_jump_callback_node_call_function_1_t {
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nlr_jump_callback_node_t callback;
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void (*func)(void *);
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void *arg;
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} nlr_jump_callback_node_call_function_1_t;
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// Tables mapping operator enums to qstrs, defined in objtype.c
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extern const byte mp_unary_op_method_name[];
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extern const byte mp_binary_op_method_name[];
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void mp_init(void);
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void mp_deinit(void);
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void mp_sched_exception(mp_obj_t exc);
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void mp_sched_keyboard_interrupt(void);
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#if MICROPY_ENABLE_VM_ABORT
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void mp_sched_vm_abort(void);
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#endif
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void mp_handle_pending(bool raise_exc);
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#if MICROPY_ENABLE_SCHEDULER
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void mp_sched_lock(void);
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void mp_sched_unlock(void);
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#define mp_sched_num_pending() (MP_STATE_VM(sched_len))
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bool mp_sched_schedule(mp_obj_t function, mp_obj_t arg);
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bool mp_sched_schedule_node(mp_sched_node_t *node, mp_sched_callback_t callback);
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#endif
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// extra printing method specifically for mp_obj_t's which are integral type
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int mp_print_mp_int(const mp_print_t *print, mp_obj_t x, int base, int base_char, int flags, char fill, int width, int prec);
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void mp_arg_check_num_sig(size_t n_args, size_t n_kw, uint32_t sig);
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static inline void mp_arg_check_num(size_t n_args, size_t n_kw, size_t n_args_min, size_t n_args_max, bool takes_kw) {
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mp_arg_check_num_sig(n_args, n_kw, MP_OBJ_FUN_MAKE_SIG(n_args_min, n_args_max, takes_kw));
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}
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void mp_arg_parse_all(size_t n_pos, const mp_obj_t *pos, mp_map_t *kws, size_t n_allowed, const mp_arg_t *allowed, mp_arg_val_t *out_vals);
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void mp_arg_parse_all_kw_array(size_t n_pos, size_t n_kw, const mp_obj_t *args, size_t n_allowed, const mp_arg_t *allowed, mp_arg_val_t *out_vals);
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NORETURN void mp_arg_error_terse_mismatch(void);
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NORETURN void mp_arg_error_unimpl_kw(void);
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// CIRCUITPY-CHANGE: arg validation routines
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NORETURN void mp_arg_error_invalid(qstr arg_name);
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mp_int_t mp_arg_validate_int(mp_int_t i, mp_int_t required_i, qstr arg_name);
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mp_int_t mp_arg_validate_int_min(mp_int_t i, mp_int_t min, qstr arg_name);
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mp_int_t mp_arg_validate_int_max(mp_int_t i, mp_int_t j, qstr arg_name);
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mp_int_t mp_arg_validate_int_range(mp_int_t i, mp_int_t min, mp_int_t max, qstr arg_name);
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#if MICROPY_PY_BUILTINS_FLOAT
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mp_float_t mp_arg_validate_obj_float_non_negative(mp_obj_t float_in, mp_float_t default_for_null, qstr arg_name);
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mp_float_t mp_arg_validate_obj_float_range(mp_obj_t float_in, mp_int_t min, mp_int_t max, qstr arg_name);
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mp_float_t mp_arg_validate_float_range(mp_float_t float_in, mp_int_t min, mp_int_t max, qstr arg_name);
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mp_float_t mp_arg_validate_type_float(mp_obj_t obj, qstr arg_name);
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#endif
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mp_uint_t mp_arg_validate_length_min(mp_uint_t length, mp_uint_t min, qstr arg_name);
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mp_uint_t mp_arg_validate_length_max(mp_uint_t length, mp_uint_t max, qstr arg_name);
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mp_uint_t mp_arg_validate_length_range(mp_uint_t length, mp_uint_t min, mp_uint_t max, qstr arg_name);
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mp_uint_t mp_arg_validate_length(mp_uint_t length, mp_uint_t required_length, qstr arg_name);
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mp_int_t mp_arg_validate_index_range(mp_int_t index, mp_int_t min, mp_int_t max, qstr arg_name);
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mp_obj_t mp_arg_validate_type(mp_obj_t obj, const mp_obj_type_t *type, qstr arg_name);
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mp_obj_t mp_arg_validate_type_in(mp_obj_t obj, const mp_obj_type_t *type, qstr arg_name);
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mp_obj_t mp_arg_validate_type_or_none(mp_obj_t obj, const mp_obj_type_t *type, qstr arg_name);
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mp_int_t mp_arg_validate_type_int(mp_obj_t obj, qstr arg_name);
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mp_obj_t mp_arg_validate_type_string(mp_obj_t obj, qstr arg_name);
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static inline mp_obj_dict_t *mp_locals_get(void) {
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return MP_STATE_THREAD(dict_locals);
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}
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static inline void mp_locals_set(mp_obj_dict_t *d) {
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MP_STATE_THREAD(dict_locals) = d;
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}
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static inline mp_obj_dict_t *mp_globals_get(void) {
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return MP_STATE_THREAD(dict_globals);
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}
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static inline void mp_globals_set(mp_obj_dict_t *d) {
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MP_STATE_THREAD(dict_globals) = d;
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}
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void mp_globals_locals_set_from_nlr_jump_callback(void *ctx_in);
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void mp_call_function_1_from_nlr_jump_callback(void *ctx_in);
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mp_obj_t mp_load_name(qstr qst);
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mp_obj_t mp_load_global(qstr qst);
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mp_obj_t mp_load_build_class(void);
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void mp_store_name(qstr qst, mp_obj_t obj);
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void mp_store_global(qstr qst, mp_obj_t obj);
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void mp_delete_name(qstr qst);
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void mp_delete_global(qstr qst);
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mp_obj_t mp_unary_op(mp_unary_op_t op, mp_obj_t arg);
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mp_obj_t mp_binary_op(mp_binary_op_t op, mp_obj_t lhs, mp_obj_t rhs);
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mp_obj_t mp_call_function_0(mp_obj_t fun);
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mp_obj_t mp_call_function_1(mp_obj_t fun, mp_obj_t arg);
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mp_obj_t mp_call_function_2(mp_obj_t fun, mp_obj_t arg1, mp_obj_t arg2);
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mp_obj_t mp_call_function_n_kw(mp_obj_t fun, size_t n_args, size_t n_kw, const mp_obj_t *args);
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mp_obj_t mp_call_method_n_kw(size_t n_args, size_t n_kw, const mp_obj_t *args);
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mp_obj_t mp_call_method_n_kw_var(bool have_self, size_t n_args_n_kw, const mp_obj_t *args);
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mp_obj_t mp_call_method_self_n_kw(mp_obj_t meth, mp_obj_t self, size_t n_args, size_t n_kw, const mp_obj_t *args);
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// Call function and catch/dump exception - for Python callbacks from C code
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// (return MP_OBJ_NULL in case of exception).
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mp_obj_t mp_call_function_1_protected(mp_obj_t fun, mp_obj_t arg);
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mp_obj_t mp_call_function_2_protected(mp_obj_t fun, mp_obj_t arg1, mp_obj_t arg2);
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typedef struct _mp_call_args_t {
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mp_obj_t fun;
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size_t n_args, n_kw, n_alloc;
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mp_obj_t *args;
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} mp_call_args_t;
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#if MICROPY_STACKLESS
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// Takes arguments which are the most general mix of Python arg types, and
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// prepares argument array suitable for passing to ->call() method of a
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// function object (and mp_call_function_n_kw()).
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// (Only needed in stackless mode.)
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void mp_call_prepare_args_n_kw_var(bool have_self, size_t n_args_n_kw, const mp_obj_t *args, mp_call_args_t *out_args);
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#endif
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void mp_unpack_sequence(mp_obj_t seq, size_t num, mp_obj_t *items);
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void mp_unpack_ex(mp_obj_t seq, size_t num, mp_obj_t *items);
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mp_obj_t mp_store_map(mp_obj_t map, mp_obj_t key, mp_obj_t value);
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mp_obj_t mp_load_attr(mp_obj_t base, qstr attr);
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void mp_convert_member_lookup(mp_obj_t obj, const mp_obj_type_t *type, mp_obj_t member, mp_obj_t *dest);
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void mp_load_method(mp_obj_t base, qstr attr, mp_obj_t *dest);
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void mp_load_method_maybe(mp_obj_t base, qstr attr, mp_obj_t *dest);
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void mp_load_method_protected(mp_obj_t obj, qstr attr, mp_obj_t *dest, bool catch_all_exc);
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void mp_load_super_method(qstr attr, mp_obj_t *dest);
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void mp_store_attr(mp_obj_t base, qstr attr, mp_obj_t val);
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mp_obj_t mp_getiter(mp_obj_t o, mp_obj_iter_buf_t *iter_buf);
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mp_obj_t mp_iternext_allow_raise(mp_obj_t o); // may return MP_OBJ_STOP_ITERATION instead of raising StopIteration()
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mp_obj_t mp_iternext(mp_obj_t o); // will always return MP_OBJ_STOP_ITERATION instead of raising StopIteration(...)
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mp_vm_return_kind_t mp_resume(mp_obj_t self_in, mp_obj_t send_value, mp_obj_t throw_value, mp_obj_t *ret_val);
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static inline mp_obj_t mp_make_stop_iteration(mp_obj_t o) {
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MP_STATE_THREAD(stop_iteration_arg) = o;
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return MP_OBJ_STOP_ITERATION;
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}
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mp_obj_t mp_make_raise_obj(mp_obj_t o);
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mp_obj_t mp_import_name(qstr name, mp_obj_t fromlist, mp_obj_t level);
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mp_obj_t mp_import_from(mp_obj_t module, qstr name);
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void mp_import_all(mp_obj_t module);
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#if MICROPY_ERROR_REPORTING == MICROPY_ERROR_REPORTING_NONE
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NORETURN void mp_raise_type(const mp_obj_type_t *exc_type);
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NORETURN void mp_raise_ValueError_no_msg(void);
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NORETURN void mp_raise_TypeError_no_msg(void);
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NORETURN void mp_raise_NotImplementedError_no_msg(void);
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#define mp_raise_msg(exc_type, msg) mp_raise_type(exc_type)
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#define mp_raise_msg_varg(exc_type, ...) mp_raise_type(exc_type)
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#define mp_raise_ValueError(msg) mp_raise_ValueError_no_msg()
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#define mp_raise_TypeError(msg) mp_raise_TypeError_no_msg()
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#define mp_raise_NotImplementedError(msg) mp_raise_NotImplementedError_no_msg()
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#else
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#define mp_raise_type(exc_type) mp_raise_msg(exc_type, NULL)
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NORETURN void mp_raise_msg(const mp_obj_type_t *exc_type, const compressed_string_t *msg);
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NORETURN void mp_raise_msg_varg(const mp_obj_type_t *exc_type, const compressed_string_t *fmt, ...);
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NORETURN void mp_raise_ValueError(const compressed_string_t *msg);
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NORETURN void mp_raise_TypeError(const compressed_string_t *msg);
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NORETURN void mp_raise_NotImplementedError(const compressed_string_t *msg);
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#endif
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NORETURN void mp_raise_type_arg(const mp_obj_type_t *exc_type, mp_obj_t arg);
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NORETURN void mp_raise_msg(const mp_obj_type_t *exc_type, const compressed_string_t *msg);
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NORETURN void mp_raise_msg_varg(const mp_obj_type_t *exc_type, const compressed_string_t *fmt
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, ...);
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NORETURN void mp_raise_msg_vlist(const mp_obj_type_t *exc_type, const compressed_string_t *fmt, va_list argptr);
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// Only use this string version in native mpy files. Otherwise, use the compressed string version.
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NORETURN void mp_raise_msg_str(const mp_obj_type_t *exc_type, const char *msg);
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NORETURN void mp_raise_AttributeError(const compressed_string_t *msg);
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NORETURN void mp_raise_BrokenPipeError(void);
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NORETURN void mp_raise_ConnectionError(const compressed_string_t *msg);
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NORETURN void mp_raise_ImportError(const compressed_string_t *msg);
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NORETURN void mp_raise_IndexError(const compressed_string_t *msg);
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NORETURN void mp_raise_IndexError_varg(const compressed_string_t *msg, ...);
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NORETURN void mp_raise_NotImplementedError(const compressed_string_t *msg);
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NORETURN void mp_raise_NotImplementedError_varg(const compressed_string_t *fmt, ...);
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NORETURN void mp_raise_OSError_errno_str(int errno_, mp_obj_t str);
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NORETURN void mp_raise_OSError(int errno_);
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NORETURN void mp_raise_OSError_msg(const compressed_string_t *msg);
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NORETURN void mp_raise_OSError_msg_varg(const compressed_string_t *fmt, ...);
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NORETURN void mp_raise_OSError_with_filename(int errno_, const char *filename);
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NORETURN void mp_raise_OverflowError_varg(const compressed_string_t *fmt, ...);
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NORETURN void mp_raise_recursion_depth(void);
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NORETURN void mp_raise_RuntimeError(const compressed_string_t *msg);
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NORETURN void mp_raise_RuntimeError_varg(const compressed_string_t *fmt, ...);
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NORETURN void mp_raise_StopIteration(mp_obj_t arg);
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NORETURN void mp_raise_TypeError(const compressed_string_t *msg);
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NORETURN void mp_raise_TypeError_varg(const compressed_string_t *fmt, ...);
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NORETURN void mp_raise_TypeError_int_conversion(mp_const_obj_t arg);
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NORETURN void mp_raise_ValueError(const compressed_string_t *msg);
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NORETURN void mp_raise_ValueError_varg(const compressed_string_t *fmt, ...);
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NORETURN void mp_raise_ZeroDivisionError(void);
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#if MICROPY_BUILTIN_METHOD_CHECK_SELF_ARG
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#undef mp_check_self
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#define mp_check_self(pred)
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#else
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// A port may define to raise TypeError for example
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#ifndef mp_check_self
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#define mp_check_self(pred) assert(pred)
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#endif
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#endif
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// helper functions for native/viper code
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int mp_native_type_from_qstr(qstr qst);
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mp_uint_t mp_native_from_obj(mp_obj_t obj, mp_uint_t type);
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mp_obj_t mp_native_to_obj(mp_uint_t val, mp_uint_t type);
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#if MICROPY_PY_SYS_PATH
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#define mp_sys_path (MP_STATE_VM(sys_mutable[MP_SYS_MUTABLE_PATH]))
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#endif
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#if MICROPY_PY_SYS_ARGV
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#define mp_sys_argv (MP_OBJ_FROM_PTR(&MP_STATE_VM(mp_sys_argv_obj)))
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#endif
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#if MICROPY_WARNINGS
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#ifndef mp_warning
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void mp_warning(const char *category, const char *msg, ...);
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#endif
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#else
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#define mp_warning(...)
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#endif
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#endif // MICROPY_INCLUDED_PY_RUNTIME_H
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