184 lines
6.4 KiB
C
184 lines
6.4 KiB
C
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/*
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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) 2017 Nick Moore
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* Copyright (c) 2023 Vekatech Ltd.
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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 <stdio.h>
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#include "py/runtime.h"
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#include "py/mphal.h"
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#include "py/mperrno.h"
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#include "pin.h"
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#include "ra/ra_dac.h"
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#include "modmachine.h"
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#if MICROPY_PY_MACHINE_DAC
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typedef struct _machine_dac_obj_t {
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mp_obj_base_t base;
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uint8_t active;
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uint8_t ch;
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uint16_t mv;
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mp_hal_pin_obj_t dac;
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} machine_dac_obj_t;
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STATIC machine_dac_obj_t machine_dac_obj[] = {
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#if defined(MICROPY_HW_DAC0)
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{{&machine_dac_type}, 0, 0, 0, MICROPY_HW_DAC0},
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#endif
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#if defined(MICROPY_HW_DAC1)
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{{&machine_dac_type}, 0, 1, 0, MICROPY_HW_DAC1}
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#endif
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};
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STATIC void machine_dac_print(const mp_print_t *print, mp_obj_t self_in, mp_print_kind_t kind) {
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machine_dac_obj_t *self = MP_OBJ_TO_PTR(self_in); // const char *qstr_str(qstr q);
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mp_printf(print, "DAC(DA%d [#%d], runing=%u, out=%u mV)", self->ch, self->dac->pin, self->active, self->mv);
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}
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STATIC mp_obj_t machine_dac_make_new(const mp_obj_type_t *type, size_t n_args, size_t n_kw, const mp_obj_t *args) {
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mp_hal_pin_obj_t pin_id = MP_OBJ_NULL;
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machine_dac_obj_t *self = MP_OBJ_NULL;
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enum { ARG_pin };
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static const mp_arg_t allowed_args[] = {
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{ MP_QSTR_pin, MP_ARG_REQUIRED | MP_ARG_OBJ, {.u_obj = MP_OBJ_NULL} }
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};
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mp_arg_check_num(n_args, n_kw, 1, 1, true);
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mp_arg_val_t init_args[MP_ARRAY_SIZE(allowed_args)];
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mp_arg_parse_all_kw_array(n_args, n_kw, args, MP_ARRAY_SIZE(allowed_args), allowed_args, init_args);
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// Get GPIO and optional device to connect to DAC.
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pin_id = mp_hal_get_pin_obj(init_args[ARG_pin].u_obj);
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if (pin_id) {
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for (int i = 0; i < MP_ARRAY_SIZE(machine_dac_obj); i++) {
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if (pin_id->pin == machine_dac_obj[i].dac->pin) {
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self = &machine_dac_obj[i];
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break;
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}
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}
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if (self) {
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if (ra_dac_is_dac_pin(self->dac->pin)) {
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ra_dac_init(self->dac->pin, self->ch);
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self->active = ra_dac_is_running(self->ch);
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} else {
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mp_raise_msg_varg(&mp_type_ValueError, MP_ERROR_TEXT("Pin(%d) has no DAC output"), self->dac->pin);
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}
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} else {
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mp_raise_msg_varg(&mp_type_ValueError, MP_ERROR_TEXT("Pin(%d) is used with other peripheral"), pin_id->pin);
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}
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} else {
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mp_raise_ValueError(MP_ERROR_TEXT("Pin doesn't exist"));
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}
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return MP_OBJ_FROM_PTR(self);
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}
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// DAC.deinit()
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STATIC mp_obj_t machine_dac_deinit(mp_obj_t self_in) {
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machine_dac_obj_t *self = MP_OBJ_TO_PTR(self_in);
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ra_dac_deinit(self->dac->pin, self->ch);
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self->active = ra_dac_is_running(self->ch);
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self->ch = 0;
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self->mv = 0;
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return mp_const_none;
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}
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STATIC MP_DEFINE_CONST_FUN_OBJ_1(machine_dac_deinit_obj, machine_dac_deinit);
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// DAC.write(value)
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STATIC mp_obj_t machine_dac_write(mp_obj_t self_in, mp_obj_t data) { // mp_obj_t value_in
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machine_dac_obj_t *self = MP_OBJ_TO_PTR(self_in);
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mp_int_t value = mp_obj_get_int(data);
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if (value < 0 || value > 4095) {
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mp_raise_ValueError(MP_ERROR_TEXT("value should be 0-4095"));
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} else
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if (self->active) {
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ra_dac_write(self->ch, value);
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self->mv = (value * 3300) / 4095;
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}
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return mp_const_none;
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}
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STATIC MP_DEFINE_CONST_FUN_OBJ_2(machine_dac_write_obj, machine_dac_write);
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// DAC.read()
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STATIC mp_obj_t machine_dac_read(mp_obj_t self_in) {
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machine_dac_obj_t *self = MP_OBJ_TO_PTR(self_in);
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return MP_OBJ_NEW_SMALL_INT(ra_dac_read(self->ch));
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}
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STATIC MP_DEFINE_CONST_FUN_OBJ_1(machine_dac_read_obj, machine_dac_read);
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// DAC.write_mv(Vout)
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STATIC mp_obj_t machine_dac_write_mv(mp_obj_t self_in, mp_obj_t data) { // mp_obj_t self_in, mp_obj_t value_in
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machine_dac_obj_t *self = MP_OBJ_TO_PTR(self_in);
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mp_int_t Vout = mp_obj_get_int(data);
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if (Vout < 0 || Vout > 3300) {
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mp_raise_ValueError(MP_ERROR_TEXT("value should be 0-3300"));
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} else
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if (self->active) {
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uint16_t Dout = (Vout * 4095) / 3300;
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ra_dac_write(self->ch, Dout);
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self->mv = Vout;
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}
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return mp_const_none;
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}
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STATIC MP_DEFINE_CONST_FUN_OBJ_2(machine_dac_write_mv_obj, machine_dac_write_mv);
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// DAC.read_mv()
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STATIC mp_obj_t machine_dac_read_mv(mp_obj_t self_in) {
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machine_dac_obj_t *self = MP_OBJ_TO_PTR(self_in);
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return MP_OBJ_NEW_SMALL_INT(self->mv);
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}
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STATIC MP_DEFINE_CONST_FUN_OBJ_1(machine_dac_read_mv_obj, machine_dac_read_mv);
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// MP_DEFINE_CONST_FUN_OBJ_2(mp_machine_dac_write_obj, mp_machine_dac_write);
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STATIC const mp_rom_map_elem_t machine_dac_locals_dict_table[] = {
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{ MP_ROM_QSTR(MP_QSTR_deinit), MP_ROM_PTR(&machine_dac_deinit_obj) },
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{ MP_ROM_QSTR(MP_QSTR_read), MP_ROM_PTR(&machine_dac_read_obj) },
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{ MP_ROM_QSTR(MP_QSTR_write), MP_ROM_PTR(&machine_dac_write_obj) },
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{ MP_ROM_QSTR(MP_QSTR_read_mv), MP_ROM_PTR(&machine_dac_read_mv_obj) },
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{ MP_ROM_QSTR(MP_QSTR_write_mv), MP_ROM_PTR(&machine_dac_write_mv_obj) }
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};
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STATIC MP_DEFINE_CONST_DICT(machine_dac_locals_dict, machine_dac_locals_dict_table);
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MP_DEFINE_CONST_OBJ_TYPE(
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machine_dac_type,
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MP_QSTR_DAC,
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MP_TYPE_FLAG_NONE,
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make_new, machine_dac_make_new,
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print, machine_dac_print,
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locals_dict, &machine_dac_locals_dict
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);
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#endif // MICROPY_PY_MACHINE_DAC
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