298 lines
12 KiB
C
298 lines
12 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) Dan Halbert for Adafruit Industries
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* Copyright (c) 2018 Artur Pacholec
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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 "py/runtime.h"
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#include "shared-bindings/_bleio/__init__.h"
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#include "shared-bindings/_bleio/Characteristic.h"
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#include "shared-bindings/_bleio/Descriptor.h"
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#include "shared-bindings/_bleio/Service.h"
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#include "common-hal/_bleio/Adapter.h"
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#include "common-hal/_bleio/bonding.h"
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STATIC uint16_t characteristic_get_cccd(uint16_t cccd_handle, uint16_t conn_handle) {
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uint16_t cccd;
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ble_gatts_value_t value = {
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.p_value = (uint8_t *)&cccd,
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.len = 2,
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};
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const uint32_t err_code = sd_ble_gatts_value_get(conn_handle, cccd_handle, &value);
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if (err_code == BLE_ERROR_GATTS_SYS_ATTR_MISSING) {
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// CCCD is not set, so say that neither Notify nor Indicate is enabled.
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cccd = 0;
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} else {
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check_nrf_error(err_code);
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}
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return cccd;
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}
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STATIC void characteristic_gatts_notify_indicate(uint16_t handle, uint16_t conn_handle, mp_buffer_info_t *bufinfo, uint16_t hvx_type) {
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uint16_t hvx_len = bufinfo->len;
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ble_gatts_hvx_params_t hvx_params = {
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.handle = handle,
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.type = hvx_type,
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.offset = 0,
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.p_len = &hvx_len,
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.p_data = bufinfo->buf,
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};
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while (1) {
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const uint32_t err_code = sd_ble_gatts_hvx(conn_handle, &hvx_params);
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if (err_code == NRF_SUCCESS) {
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break;
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}
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// TX buffer is full
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// We could wait for an event indicating the write is complete, but just retrying is easier.
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if (err_code == NRF_ERROR_RESOURCES) {
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RUN_BACKGROUND_TASKS;
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continue;
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}
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// Some real error has occurred.
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check_nrf_error(err_code);
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}
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}
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void common_hal_bleio_characteristic_construct(bleio_characteristic_obj_t *self, bleio_service_obj_t *service,
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uint16_t handle, bleio_uuid_obj_t *uuid, bleio_characteristic_properties_t props,
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bleio_attribute_security_mode_t read_perm, bleio_attribute_security_mode_t write_perm,
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mp_int_t max_length, bool fixed_length, mp_buffer_info_t *initial_value_bufinfo,
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const char *user_description) {
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self->service = service;
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self->uuid = uuid;
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self->handle = BLE_GATT_HANDLE_INVALID;
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self->props = props;
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self->read_perm = read_perm;
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self->write_perm = write_perm;
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self->initial_value_len = 0;
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self->initial_value = NULL;
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if (initial_value_bufinfo != NULL) {
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// Copy the initial value if it's on the heap. Otherwise it's internal and we may not be able
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// to allocate.
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self->initial_value_len = initial_value_bufinfo->len;
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if (gc_alloc_possible()) {
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if (gc_nbytes(initial_value_bufinfo->buf) > 0) {
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uint8_t *initial_value = m_malloc(self->initial_value_len, false);
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memcpy(initial_value, initial_value_bufinfo->buf, self->initial_value_len);
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self->initial_value = initial_value;
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} else {
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self->initial_value = initial_value_bufinfo->buf;
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}
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self->descriptor_list = mp_obj_new_list(0, NULL);
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} else {
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self->initial_value = initial_value_bufinfo->buf;
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self->descriptor_list = NULL;
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}
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}
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const mp_int_t max_length_max = fixed_length ? BLE_GATTS_FIX_ATTR_LEN_MAX : BLE_GATTS_VAR_ATTR_LEN_MAX;
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if (max_length < 0 || max_length > max_length_max) {
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mp_raise_ValueError_varg(translate("max_length must be 0-%d when fixed_length is %s"),
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max_length_max, fixed_length ? "True" : "False");
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}
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self->max_length = max_length;
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self->fixed_length = fixed_length;
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if (service->is_remote) {
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self->handle = handle;
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} else {
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common_hal_bleio_service_add_characteristic(self->service, self, initial_value_bufinfo, user_description);
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}
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}
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mp_obj_tuple_t *common_hal_bleio_characteristic_get_descriptors(bleio_characteristic_obj_t *self) {
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if (self->descriptor_list == NULL) {
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return mp_const_empty_tuple;
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}
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return mp_obj_new_tuple(self->descriptor_list->len, self->descriptor_list->items);
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}
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bleio_service_obj_t *common_hal_bleio_characteristic_get_service(bleio_characteristic_obj_t *self) {
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return self->service;
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}
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size_t common_hal_bleio_characteristic_get_value(bleio_characteristic_obj_t *self, uint8_t *buf, size_t len) {
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// Do GATT operations only if this characteristic has been added to a registered service.
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if (self->handle != BLE_GATT_HANDLE_INVALID) {
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uint16_t conn_handle = bleio_connection_get_conn_handle(self->service->connection);
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if (common_hal_bleio_service_get_is_remote(self->service)) {
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return common_hal_bleio_gattc_read(self->handle, conn_handle, buf, len);
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} else {
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// conn_handle is ignored for non-system attributes.
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return common_hal_bleio_gatts_read(self->handle, conn_handle, buf, len);
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}
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}
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return 0;
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}
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size_t common_hal_bleio_characteristic_get_max_length(bleio_characteristic_obj_t *self) {
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return self->max_length;
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}
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void common_hal_bleio_characteristic_set_value(bleio_characteristic_obj_t *self, mp_buffer_info_t *bufinfo) {
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// Do GATT operations only if this characteristic has been added to a registered service.
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if (self->handle != BLE_GATT_HANDLE_INVALID) {
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if (common_hal_bleio_service_get_is_remote(self->service)) {
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uint16_t conn_handle = bleio_connection_get_conn_handle(self->service->connection);
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// Last argument is true if write-no-reponse desired.
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common_hal_bleio_gattc_write(self->handle, conn_handle, bufinfo,
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(self->props & CHAR_PROP_WRITE_NO_RESPONSE));
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} else {
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// Validate data length for local characteristics only.
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if (self->fixed_length && bufinfo->len != self->max_length) {
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mp_raise_ValueError(translate("Value length != required fixed length"));
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}
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if (bufinfo->len > self->max_length) {
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mp_raise_ValueError(translate("Value length > max_length"));
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}
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// Always write the value locally even if no connections are active.
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// conn_handle is ignored for non-system attributes, so we use BLE_CONN_HANDLE_INVALID.
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common_hal_bleio_gatts_write(self->handle, BLE_CONN_HANDLE_INVALID, bufinfo);
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// Check to see if we need to notify or indicate any active connections.
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for (size_t i = 0; i < BLEIO_TOTAL_CONNECTION_COUNT; i++) {
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bleio_connection_internal_t *connection = &bleio_connections[i];
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uint16_t conn_handle = connection->conn_handle;
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if (connection->conn_handle == BLE_CONN_HANDLE_INVALID) {
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continue;
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}
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uint16_t cccd = 0;
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const bool notify = self->props & CHAR_PROP_NOTIFY;
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const bool indicate = self->props & CHAR_PROP_INDICATE;
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if (notify | indicate) {
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cccd = characteristic_get_cccd(self->cccd_handle, conn_handle);
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}
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// It's possible that both notify and indicate are set.
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if (notify && (cccd & BLE_GATT_HVX_NOTIFICATION)) {
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characteristic_gatts_notify_indicate(self->handle, conn_handle, bufinfo, BLE_GATT_HVX_NOTIFICATION);
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}
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if (indicate && (cccd & BLE_GATT_HVX_INDICATION)) {
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characteristic_gatts_notify_indicate(self->handle, conn_handle, bufinfo, BLE_GATT_HVX_INDICATION);
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}
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}
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}
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}
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}
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bleio_uuid_obj_t *common_hal_bleio_characteristic_get_uuid(bleio_characteristic_obj_t *self) {
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return self->uuid;
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}
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bleio_characteristic_properties_t common_hal_bleio_characteristic_get_properties(bleio_characteristic_obj_t *self) {
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return self->props;
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}
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void common_hal_bleio_characteristic_add_descriptor(bleio_characteristic_obj_t *self, bleio_descriptor_obj_t *descriptor) {
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if (self->descriptor_list == NULL) {
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// This should only happen from internal use so we just fail silently instead of raising an
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// exception.
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return;
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}
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ble_uuid_t desc_uuid;
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bleio_uuid_convert_to_nrf_ble_uuid(descriptor->uuid, &desc_uuid);
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ble_gatts_attr_md_t desc_attr_md = {
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// Data passed is not in a permanent location and should be copied.
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.vloc = BLE_GATTS_VLOC_STACK,
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.vlen = !descriptor->fixed_length,
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};
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bleio_attribute_gatts_set_security_mode(&desc_attr_md.read_perm, descriptor->read_perm);
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bleio_attribute_gatts_set_security_mode(&desc_attr_md.write_perm, descriptor->write_perm);
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mp_buffer_info_t desc_value_bufinfo;
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mp_get_buffer_raise(descriptor->initial_value, &desc_value_bufinfo, MP_BUFFER_READ);
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ble_gatts_attr_t desc_attr = {
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.p_uuid = &desc_uuid,
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.p_attr_md = &desc_attr_md,
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.init_len = desc_value_bufinfo.len,
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.p_value = desc_value_bufinfo.buf,
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.init_offs = 0,
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.max_len = descriptor->max_length,
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};
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check_nrf_error(sd_ble_gatts_descriptor_add(self->handle, &desc_attr, &descriptor->handle));
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mp_obj_list_append(MP_OBJ_FROM_PTR(self->descriptor_list),
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MP_OBJ_FROM_PTR(descriptor));
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}
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void common_hal_bleio_characteristic_set_cccd(bleio_characteristic_obj_t *self, bool notify, bool indicate) {
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if (self->cccd_handle == BLE_GATT_HANDLE_INVALID) {
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mp_raise_bleio_BluetoothError(translate("No CCCD for this Characteristic"));
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}
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if (!common_hal_bleio_service_get_is_remote(self->service)) {
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mp_raise_bleio_RoleError(translate("Can't set CCCD on local Characteristic"));
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}
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const uint16_t conn_handle = bleio_connection_get_conn_handle(self->service->connection);
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common_hal_bleio_check_connected(conn_handle);
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uint16_t cccd_value =
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(notify ? BLE_GATT_HVX_NOTIFICATION : 0) |
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(indicate ? BLE_GATT_HVX_INDICATION : 0);
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ble_gattc_write_params_t write_params = {
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.write_op = BLE_GATT_OP_WRITE_REQ,
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.handle = self->cccd_handle,
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.p_value = (uint8_t *)&cccd_value,
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.len = 2,
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};
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while (1) {
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uint32_t err_code = sd_ble_gattc_write(conn_handle, &write_params);
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if (err_code == NRF_SUCCESS) {
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break;
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}
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// Write with response will return NRF_ERROR_BUSY if the response has not been received.
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// Write without reponse will return NRF_ERROR_RESOURCES if too many writes are pending.
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if (err_code == NRF_ERROR_BUSY || err_code == NRF_ERROR_RESOURCES) {
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// We could wait for an event indicating the write is complete, but just retrying is easier.
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RUN_BACKGROUND_TASKS;
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continue;
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}
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// Some real error occurred.
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check_nrf_error(err_code);
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}
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}
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