04b9147e15
Blanket wide to all .c and .h files. Some files originating from ST are difficult to deal with (license wise) so it was left out of those. Also merged modpyb.h, modos.h, modstm.h and modtime.h in stmhal/.
308 lines
10 KiB
C
308 lines
10 KiB
C
/*
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* This file is part of the Micro Python 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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#include <string.h>
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#include <assert.h>
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#include "mpconfig.h"
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#include "nlr.h"
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#include "misc.h"
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#include "qstr.h"
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#include "obj.h"
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#include "runtime0.h"
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#include "runtime.h"
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#include "binary.h"
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typedef struct _mp_obj_array_t {
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mp_obj_base_t base;
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machine_uint_t typecode : 8;
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// free is number of unused elements after len used elements
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// alloc size = len + free
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machine_uint_t free : (8 * sizeof(machine_uint_t) - 8);
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machine_uint_t len; // in elements
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void *items;
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} mp_obj_array_t;
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STATIC mp_obj_t array_iterator_new(mp_obj_t array_in);
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STATIC mp_obj_array_t *array_new(char typecode, uint n);
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STATIC mp_obj_t array_append(mp_obj_t self_in, mp_obj_t arg);
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/******************************************************************************/
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/* array */
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STATIC void array_print(void (*print)(void *env, const char *fmt, ...), void *env, mp_obj_t o_in, mp_print_kind_t kind) {
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mp_obj_array_t *o = o_in;
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if (o->typecode == BYTEARRAY_TYPECODE) {
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print(env, "bytearray(b", o->typecode);
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mp_str_print_quoted(print, env, o->items, o->len);
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} else {
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print(env, "array('%c'", o->typecode);
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if (o->len > 0) {
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print(env, ", [");
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for (int i = 0; i < o->len; i++) {
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if (i > 0) {
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print(env, ", ");
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}
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mp_obj_print_helper(print, env, mp_binary_get_val_array(o->typecode, o->items, i), PRINT_REPR);
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}
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print(env, "]");
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}
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}
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print(env, ")");
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}
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STATIC mp_obj_t array_construct(char typecode, mp_obj_t initializer) {
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uint len;
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// Try to create array of exact len if initializer len is known
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mp_obj_t len_in = mp_obj_len_maybe(initializer);
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if (len_in == MP_OBJ_NULL) {
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len = 0;
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} else {
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len = MP_OBJ_SMALL_INT_VALUE(len_in);
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}
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mp_obj_array_t *array = array_new(typecode, len);
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mp_obj_t iterable = mp_getiter(initializer);
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mp_obj_t item;
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int i = 0;
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while ((item = mp_iternext(iterable)) != MP_OBJ_STOP_ITERATION) {
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if (len == 0) {
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array_append(array, item);
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} else {
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mp_binary_set_val_array(typecode, array->items, i++, item);
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}
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}
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return array;
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}
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STATIC mp_obj_t array_make_new(mp_obj_t type_in, uint n_args, uint n_kw, const mp_obj_t *args) {
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mp_arg_check_num(n_args, n_kw, 1, 2, false);
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// get typecode
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uint l;
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const char *typecode = mp_obj_str_get_data(args[0], &l);
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if (n_args == 1) {
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// 1 arg: make an empty array
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return array_new(*typecode, 0);
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} else {
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// 2 args: construct the array from the given iterator
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return array_construct(*typecode, args[1]);
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}
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}
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STATIC mp_obj_t bytearray_make_new(mp_obj_t type_in, uint n_args, uint n_kw, const mp_obj_t *args) {
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mp_arg_check_num(n_args, n_kw, 0, 1, false);
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if (n_args == 0) {
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// no args: construct an empty bytearray
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return array_new(BYTEARRAY_TYPECODE, 0);
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} else if (MP_OBJ_IS_SMALL_INT(args[0])) {
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// 1 arg, an integer: construct a blank bytearray of that length
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uint len = MP_OBJ_SMALL_INT_VALUE(args[0]);
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mp_obj_array_t *o = array_new(BYTEARRAY_TYPECODE, len);
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memset(o->items, 0, len);
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return o;
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} else {
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// 1 arg, an iterator: construct the bytearray from that
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return array_construct(BYTEARRAY_TYPECODE, args[0]);
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}
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}
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STATIC mp_obj_t array_unary_op(int op, mp_obj_t o_in) {
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mp_obj_array_t *o = o_in;
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switch (op) {
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case MP_UNARY_OP_BOOL: return MP_BOOL(o->len != 0);
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case MP_UNARY_OP_LEN: return MP_OBJ_NEW_SMALL_INT(o->len);
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default: return MP_OBJ_NOT_SUPPORTED;
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}
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}
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STATIC mp_obj_t array_append(mp_obj_t self_in, mp_obj_t arg) {
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assert(MP_OBJ_IS_TYPE(self_in, &mp_type_array) || MP_OBJ_IS_TYPE(self_in, &mp_type_bytearray));
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mp_obj_array_t *self = self_in;
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if (self->free == 0) {
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int item_sz = mp_binary_get_size('@', self->typecode, NULL);
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// TODO: alloc policy
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self->free = 8;
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self->items = m_realloc(self->items, item_sz * self->len, item_sz * (self->len + self->free));
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mp_seq_clear(self->items, self->len + 1, self->len + self->free, item_sz);
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}
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mp_binary_set_val_array(self->typecode, self->items, self->len++, arg);
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self->free--;
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return mp_const_none; // return None, as per CPython
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}
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STATIC MP_DEFINE_CONST_FUN_OBJ_2(array_append_obj, array_append);
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STATIC mp_obj_t array_subscr(mp_obj_t self_in, mp_obj_t index_in, mp_obj_t value) {
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if (value == MP_OBJ_NULL) {
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// delete item
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// TODO implement
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// TODO: confirmed that both bytearray and array.array support
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// slice deletion
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return MP_OBJ_NOT_SUPPORTED;
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} else {
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mp_obj_array_t *o = self_in;
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if (MP_OBJ_IS_TYPE(index_in, &mp_type_slice)) {
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if (value != MP_OBJ_SENTINEL) {
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// Only getting a slice is suported so far, not assignment
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// TODO: confirmed that both bytearray and array.array support
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// slice assignment (incl. of different size)
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return MP_OBJ_NOT_SUPPORTED;
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}
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machine_uint_t start, stop;
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if (!m_seq_get_fast_slice_indexes(o->len, index_in, &start, &stop)) {
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assert(0);
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}
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mp_obj_array_t *res = array_new(o->typecode, stop - start);
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int sz = mp_binary_get_size('@', o->typecode, NULL);
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assert(sz > 0);
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byte *p = o->items;
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memcpy(res->items, p + start * sz, (stop - start) * sz);
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return res;
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} else {
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uint index = mp_get_index(o->base.type, o->len, index_in, false);
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if (value == MP_OBJ_SENTINEL) {
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// load
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return mp_binary_get_val_array(o->typecode, o->items, index);
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} else {
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// store
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mp_binary_set_val_array(o->typecode, o->items, index, value);
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return mp_const_none;
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}
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}
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}
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}
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STATIC machine_int_t array_get_buffer(mp_obj_t o_in, mp_buffer_info_t *bufinfo, int flags) {
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mp_obj_array_t *o = o_in;
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bufinfo->buf = o->items;
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bufinfo->len = o->len * mp_binary_get_size('@', o->typecode, NULL);
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bufinfo->typecode = o->typecode;
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return 0;
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}
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STATIC const mp_map_elem_t array_locals_dict_table[] = {
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{ MP_OBJ_NEW_QSTR(MP_QSTR_append), (mp_obj_t)&array_append_obj },
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};
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STATIC MP_DEFINE_CONST_DICT(array_locals_dict, array_locals_dict_table);
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const mp_obj_type_t mp_type_array = {
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{ &mp_type_type },
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.name = MP_QSTR_array,
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.print = array_print,
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.make_new = array_make_new,
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.getiter = array_iterator_new,
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.unary_op = array_unary_op,
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.subscr = array_subscr,
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.buffer_p = { .get_buffer = array_get_buffer },
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.locals_dict = (mp_obj_t)&array_locals_dict,
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};
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const mp_obj_type_t mp_type_bytearray = {
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{ &mp_type_type },
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.name = MP_QSTR_bytearray,
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.print = array_print,
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.make_new = bytearray_make_new,
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.getiter = array_iterator_new,
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.unary_op = array_unary_op,
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.subscr = array_subscr,
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.buffer_p = { .get_buffer = array_get_buffer },
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.locals_dict = (mp_obj_t)&array_locals_dict,
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};
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STATIC mp_obj_array_t *array_new(char typecode, uint n) {
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int typecode_size = mp_binary_get_size('@', typecode, NULL);
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if (typecode_size <= 0) {
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nlr_raise(mp_obj_new_exception_msg(&mp_type_ValueError, "bad typecode"));
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}
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mp_obj_array_t *o = m_new_obj(mp_obj_array_t);
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o->base.type = (typecode == BYTEARRAY_TYPECODE) ? &mp_type_bytearray : &mp_type_array;
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o->typecode = typecode;
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o->free = 0;
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o->len = n;
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o->items = m_malloc(typecode_size * o->len);
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return o;
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}
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uint mp_obj_array_len(mp_obj_t self_in) {
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return ((mp_obj_array_t *)self_in)->len;
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}
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mp_obj_t mp_obj_new_bytearray(uint n, void *items) {
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mp_obj_array_t *o = array_new(BYTEARRAY_TYPECODE, n);
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memcpy(o->items, items, n);
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return o;
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}
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// Create bytearray which references specified memory area
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mp_obj_t mp_obj_new_bytearray_by_ref(uint n, void *items) {
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mp_obj_array_t *o = m_new_obj(mp_obj_array_t);
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o->base.type = &mp_type_array;
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o->typecode = BYTEARRAY_TYPECODE;
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o->free = 0;
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o->len = n;
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o->items = items;
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return o;
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}
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/******************************************************************************/
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/* array iterator */
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typedef struct _mp_obj_array_it_t {
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mp_obj_base_t base;
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mp_obj_array_t *array;
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machine_uint_t cur;
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} mp_obj_array_it_t;
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STATIC mp_obj_t array_it_iternext(mp_obj_t self_in) {
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mp_obj_array_it_t *self = self_in;
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if (self->cur < self->array->len) {
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return mp_binary_get_val_array(self->array->typecode, self->array->items, self->cur++);
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} else {
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return MP_OBJ_STOP_ITERATION;
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}
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}
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STATIC const mp_obj_type_t array_it_type = {
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{ &mp_type_type },
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.name = MP_QSTR_iterator,
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.getiter = mp_identity,
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.iternext = array_it_iternext,
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};
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STATIC mp_obj_t array_iterator_new(mp_obj_t array_in) {
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mp_obj_array_t *array = array_in;
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mp_obj_array_it_t *o = m_new_obj(mp_obj_array_it_t);
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o->base.type = &array_it_type;
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o->array = array;
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o->cur = 0;
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return o;
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}
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