Files
sakabin 070e06db00 update micropython
add m5stack.py
add m5ui.py
2018-12-04 14:06:15 +08:00

282 lines
10 KiB
C

/*
* This file is part of the MicroPython ESP32 project, https://github.com/loboris/MicroPython_ESP32_psRAM_LoBo
*
* The MIT License (MIT)
*
* Copyright (c) 2014 Damien P. George
* Copyright (c) 2016-2017 Paul Sokolovsky
* Copyright (c) 2018 LoBo (https://github.com/loboris)
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
* THE SOFTWARE.
*/
#include <string.h>
#include <math.h>
#include "py/objlist.h"
#include "py/runtime.h"
#include "py/smallint.h"
#if MICROPY_PY_UTIMEQ
struct qentry {
int64_t time;
mp_uint_t id;
mp_obj_t callback;
mp_obj_t args;
};
typedef struct _mp_obj_utimeq_t {
mp_obj_base_t base;
mp_uint_t alloc;
mp_uint_t len;
bool ascending;
struct qentry items[];
} mp_obj_utimeq_t;
STATIC mp_uint_t utimeq_id = 0;
STATIC bool sort_asc = true;
//--------------------------------------------------
STATIC mp_obj_utimeq_t *get_heap(mp_obj_t heap_in) {
return MP_OBJ_TO_PTR(heap_in);
}
//----------------------------------------------------------------
STATIC int compare_times(const void * item, const void * parent) {
int ret = 0;
int64_t res = ((struct qentry *)parent)->time - ((struct qentry *)item)->time;
ret = (res < 0) ? -1 : 1;
if (res == 0) {
ret = (((struct qentry *)parent)->id - ((struct qentry *)item)->id);
}
if (sort_asc) ret *= -1;
return ret;
}
//---------------------------------------------
STATIC void sort_items(mp_obj_utimeq_t *heap) {
sort_asc = heap->ascending;
qsort(&heap->items, heap->len, sizeof(struct qentry), compare_times);
}
//----------------------------------------------------------------------------------------------------------------
STATIC mp_obj_t utimeq_make_new(const mp_obj_type_t *type, size_t n_args, size_t n_kw, const mp_obj_t *all_args) {
enum { ARG_size, ARG_sort };
static const mp_arg_t allowed_args[] = {
{ MP_QSTR_size, MP_ARG_REQUIRED | MP_ARG_OBJ, {.u_obj = mp_const_none}},
{ MP_QSTR_asc, MP_ARG_KW_ONLY | MP_ARG_BOOL, {.u_bool = true}},
};
// parse arguments
mp_arg_val_t args[MP_ARRAY_SIZE(allowed_args)];
mp_arg_parse_all_kw_array(n_args, n_kw, all_args, MP_ARRAY_SIZE(allowed_args), allowed_args, args);
mp_arg_check_num(n_args, n_kw, 1, 1, true);
mp_uint_t alloc = mp_obj_get_int(args[ARG_size].u_obj);
mp_obj_utimeq_t *o = m_new_obj_var(mp_obj_utimeq_t, struct qentry, alloc);
o->base.type = type;
memset(o->items, 0, sizeof(*o->items) * alloc);
o->alloc = alloc;
o->len = 0;
o->ascending = args[ARG_sort].u_bool;
return MP_OBJ_FROM_PTR(o);
}
//------------------------------------------------------------------------
STATIC mp_obj_t mod_utimeq_heappush(size_t n_args, const mp_obj_t *args) {
(void)n_args;
mp_obj_t heap_in = args[0];
mp_obj_utimeq_t *heap = get_heap(heap_in);
if (heap->len == heap->alloc) {
mp_raise_msg(&mp_type_IndexError, "queue overflow");
}
mp_uint_t l = heap->len;
// time argument can be float or integer
// if float, convert it to 64-bit integer
int64_t itime;
if (mp_obj_is_float(args[1])) {
mp_float_t time = mp_obj_float_get(args[1]);
itime = (int64_t)(round(time));
}
else itime = mp_obj_get_int64(args[1]);
heap->items[l].time = itime;
heap->items[l].id = utimeq_id++;
heap->items[l].callback = args[2];
heap->items[l].args = args[3];
heap->len++;
sort_items(heap);
return mp_const_none;
}
STATIC MP_DEFINE_CONST_FUN_OBJ_VAR_BETWEEN(mod_utimeq_heappush_obj, 4, 4, mod_utimeq_heappush);
//-----------------------------------------------------------------------
STATIC mp_obj_t mod_utimeq_heappop(mp_obj_t heap_in, mp_obj_t list_ref) {
mp_obj_utimeq_t *heap = get_heap(heap_in);
if (heap->len == 0) {
nlr_raise(mp_obj_new_exception_msg(&mp_type_IndexError, "empty heap"));
}
mp_obj_list_t *ret = MP_OBJ_TO_PTR(list_ref);
if (!MP_OBJ_IS_TYPE(list_ref, &mp_type_list) || ret->len < 3) {
mp_raise_TypeError(NULL);
}
struct qentry *item = &heap->items[0];
ret->items[0] = mp_obj_new_int_from_ll(item->time);
ret->items[1] = item->callback;
ret->items[2] = item->args;
heap->len -= 1;
if (heap->len) {
memmove(&heap->items[0], &heap->items[1], sizeof(struct qentry) * heap->len);
//sort_items(heap);
// we don't want to retain a pointers !
memset(&heap->items[heap->len], 0, sizeof(struct qentry));
}
return mp_const_none;
}
STATIC MP_DEFINE_CONST_FUN_OBJ_2(mod_utimeq_heappop_obj, mod_utimeq_heappop);
//-----------------------------------------------------------------------------------------
STATIC mp_obj_t mod_utimeq_heappeek(mp_obj_t heap_in, mp_obj_t idx_in, mp_obj_t list_ref) {
mp_obj_utimeq_t *heap = get_heap(heap_in);
if (heap->len == 0) {
nlr_raise(mp_obj_new_exception_msg(&mp_type_IndexError, "empty heap"));
}
int pos = mp_obj_get_int(idx_in);
if ((pos < 0) || (pos >= heap->len)) {
nlr_raise(mp_obj_new_exception_msg(&mp_type_IndexError, "wrong heap index"));
}
mp_obj_list_t *ret = MP_OBJ_TO_PTR(list_ref);
if (!MP_OBJ_IS_TYPE(list_ref, &mp_type_list) || ret->len < 3) {
mp_raise_TypeError(NULL);
}
struct qentry *item = &heap->items[pos];
ret->items[0] = mp_obj_new_int_from_ll(item->time);
ret->items[1] = item->callback;
ret->items[2] = item->args;
return mp_const_none;
}
STATIC MP_DEFINE_CONST_FUN_OBJ_3(mod_utimeq_heappeek_obj, mod_utimeq_heappeek);
//------------------------------------------------------------------------
STATIC mp_obj_t mod_utimeq_peektime(size_t n_args, const mp_obj_t *args) {
mp_obj_utimeq_t *heap = get_heap(args[0]);
if (heap->len == 0) {
nlr_raise(mp_obj_new_exception_msg(&mp_type_IndexError, "empty heap"));
}
int pos = 0;
if (n_args == 2) {
pos = mp_obj_get_int(args[1]);
if ((pos < 0) || (pos >= heap->len)) {
nlr_raise(mp_obj_new_exception_msg(&mp_type_IndexError, "wrong heap index"));
}
}
struct qentry *item = &heap->items[pos];
return mp_obj_new_int_from_ll(item->time);
}
STATIC MP_DEFINE_CONST_FUN_OBJ_VAR_BETWEEN(mod_utimeq_peektime_obj, 1, 2, mod_utimeq_peektime);
//------------------------------------------------
STATIC mp_obj_t mod_utimeq_len(mp_obj_t heap_in) {
mp_obj_utimeq_t *heap = get_heap(heap_in);
mp_obj_tuple_t *t = mp_obj_new_tuple(2, NULL);
t->items[0] = mp_obj_new_int(heap->len);
t->items[1] = mp_obj_new_int(heap->alloc);
return t;
}
STATIC MP_DEFINE_CONST_FUN_OBJ_1(mod_utimeq_len_obj, mod_utimeq_len);
//--------------------------------------------------------------------
STATIC mp_obj_t mod_utimeq_dump(size_t n_args, const mp_obj_t *args) {
mp_obj_utimeq_t *heap = get_heap(args[0]);
int maxlen = heap->len;
if (n_args == 2) {
if ( mp_obj_is_true(args[1])) maxlen = heap->alloc;
}
printf("%4s%21s%10s%12s%12s\n", "Idx", "Time", "ID", "Callback", "Arg");
printf("-----------------------------------------------------------\n");
for (int i = 0; i < maxlen; i++) {
printf("%4d%21lld%10u%12p%12p", i, heap->items[i].time, heap->items[i].id,
MP_OBJ_TO_PTR(heap->items[i].callback), MP_OBJ_TO_PTR(heap->items[i].args));
if (i >= heap->len) printf(" (empty)\n");
else printf("\n");
}
printf("-----------------------------------------------------------\n");
return mp_const_none;
}
STATIC MP_DEFINE_CONST_FUN_OBJ_VAR_BETWEEN(mod_utimeq_dump_obj, 1, 2, mod_utimeq_dump);
//-------------------------------------------------------------------
STATIC mp_obj_t utimeq_unary_op(mp_unary_op_t op, mp_obj_t self_in) {
mp_obj_utimeq_t *self = MP_OBJ_TO_PTR(self_in);
switch (op) {
case MP_UNARY_OP_BOOL: return mp_obj_new_bool(self->len != 0);
case MP_UNARY_OP_LEN: return MP_OBJ_NEW_SMALL_INT(self->len);
default: return MP_OBJ_NULL; // op not supported
}
}
//===========================================================
STATIC const mp_rom_map_elem_t utimeq_locals_dict_table[] = {
{ MP_ROM_QSTR(MP_QSTR_push), MP_ROM_PTR(&mod_utimeq_heappush_obj) },
{ MP_ROM_QSTR(MP_QSTR_pop), MP_ROM_PTR(&mod_utimeq_heappop_obj) },
{ MP_ROM_QSTR(MP_QSTR_peek), MP_ROM_PTR(&mod_utimeq_heappeek_obj) },
{ MP_ROM_QSTR(MP_QSTR_peektime), MP_ROM_PTR(&mod_utimeq_peektime_obj) },
{ MP_ROM_QSTR(MP_QSTR_len), MP_ROM_PTR(&mod_utimeq_len_obj) },
{ MP_ROM_QSTR(MP_QSTR_dump), MP_ROM_PTR(&mod_utimeq_dump_obj) },
};
STATIC MP_DEFINE_CONST_DICT(utimeq_locals_dict, utimeq_locals_dict_table);
//========================================
STATIC const mp_obj_type_t utimeq_type = {
{ &mp_type_type },
.name = MP_QSTR_utimeq,
.make_new = utimeq_make_new,
.unary_op = utimeq_unary_op,
.locals_dict = (void*)&utimeq_locals_dict,
};
//=================================================================
STATIC const mp_rom_map_elem_t mp_module_utimeq_globals_table[] = {
{ MP_ROM_QSTR(MP_QSTR___name__), MP_ROM_QSTR(MP_QSTR_utimeq) },
{ MP_ROM_QSTR(MP_QSTR_utimeq), MP_ROM_PTR(&utimeq_type) },
};
STATIC MP_DEFINE_CONST_DICT(mp_module_utimeq_globals, mp_module_utimeq_globals_table);
//========================================
const mp_obj_module_t mp_module_utimeq = {
.base = { &mp_type_module },
.globals = (mp_obj_dict_t*)&mp_module_utimeq_globals,
};
#endif //MICROPY_PY_UTIMEQ