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287 lines
9.6 KiB
C
287 lines
9.6 KiB
C
/*******************************************************************************
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* File Name: cyhal_ezi2c.c
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*
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* Description:
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* Provides a high level interface for interacting with the Cypress I2C. This is
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* a wrapper around the lower level PDL API.
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*
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********************************************************************************
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* \copyright
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* Copyright 2018-2021 Cypress Semiconductor Corporation
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* SPDX-License-Identifier: Apache-2.0
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*******************************************************************************/
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#include <stdlib.h>
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#include <string.h>
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#include "cyhal_ezi2c.h"
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#include "cyhal_scb_common.h"
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#include "cyhal_gpio.h"
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#include "cyhal_system_impl.h"
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#include "cyhal_hwmgr.h"
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#include "cyhal_utils.h"
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#include "cyhal_clock.h"
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#if defined(CY_IP_MXSCB) || defined(CY_IP_M0S8SCB)
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#if defined(__cplusplus)
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extern "C"
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{
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#endif
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static inline cyhal_ezi2c_status_t _cyhal_ezi2c_convert_activity_status(uint32_t pdl_status)
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{
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/* Structure to map EZI2C (PDL) status on HAL EZI2C status */
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static const uint32_t status_map[] =
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{
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0U, // Default value
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(uint32_t)CYHAL_EZI2C_STATUS_READ1, // CY_SCB_EZI2C_STATUS_READ1
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(uint32_t)CYHAL_EZI2C_STATUS_WRITE1, // CY_SCB_EZI2C_STATUS_WRITE1
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(uint32_t)CYHAL_EZI2C_STATUS_READ2, // CY_SCB_EZI2C_STATUS_READ2
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(uint32_t)CYHAL_EZI2C_STATUS_WRITE2, // CY_SCB_EZI2C_STATUS_WRITE2
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(uint32_t)CYHAL_EZI2C_STATUS_BUSY, // CY_SCB_EZI2C_STATUS_BUSY
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(uint32_t)CYHAL_EZI2C_STATUS_ERR, // CY_SCB_EZI2C_STATUS_ERR
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};
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cyhal_ezi2c_status_t hal_status = (cyhal_ezi2c_status_t)_cyhal_utils_convert_flags(
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status_map, sizeof(status_map) / sizeof(uint32_t), pdl_status);
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if ((hal_status & (CYHAL_EZI2C_STATUS_BUSY | CYHAL_EZI2C_STATUS_ERR)) == 0)
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{
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hal_status |= CYHAL_EZI2C_STATUS_OK;
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}
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return hal_status;
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}
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/* Implement ISR for EZI2C */
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static void _cyhal_ezi2c_irq_handler(void)
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{
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cyhal_ezi2c_t *obj = (cyhal_ezi2c_t*) _cyhal_scb_get_irq_obj();
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Cy_SCB_EZI2C_Interrupt(obj->base, &(obj->context));
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/* Check if callback is registered */
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cyhal_ezi2c_event_callback_t callback = (cyhal_ezi2c_event_callback_t) obj->callback_data.callback;
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if (callback != NULL)
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{
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/* Check status of EZI2C and verify which events are enabled */
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cyhal_ezi2c_status_t status = cyhal_ezi2c_get_activity_status(obj);
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if(status & obj->irq_cause)
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{
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(void) (callback) (obj->callback_data.callback_arg, (cyhal_ezi2c_status_t)(status & obj->irq_cause));
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}
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}
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}
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static bool _cyhal_ezi2c_pm_callback_instance(void *obj_ptr, cyhal_syspm_callback_state_t state, cy_en_syspm_callback_mode_t pdl_mode)
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{
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cyhal_ezi2c_t *obj = (cyhal_ezi2c_t*)(obj_ptr);
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cy_stc_syspm_callback_params_t ezi2c_callback_params = {
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.base = (void *) (obj->base),
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.context = (void *) &(obj->context)
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};
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bool allow = true;
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switch(state)
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{
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case CYHAL_SYSPM_CB_CPU_DEEPSLEEP:
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allow = (CY_SYSPM_SUCCESS == Cy_SCB_EZI2C_DeepSleepCallback(&ezi2c_callback_params, pdl_mode));
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break;
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#if defined(COMPONENT_CAT1A) || defined(COMPONENT_CAT1B)
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case CYHAL_SYSPM_CB_SYSTEM_HIBERNATE:
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allow = (CY_SYSPM_SUCCESS == Cy_SCB_EZI2C_HibernateCallback(&ezi2c_callback_params, pdl_mode));
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break;
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#endif
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default:
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break;
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}
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return allow;
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}
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cy_rslt_t cyhal_ezi2c_init(cyhal_ezi2c_t *obj, cyhal_gpio_t sda, cyhal_gpio_t scl, const cyhal_clock_t *clk, const cyhal_ezi2c_cfg_t *cfg)
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{
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CY_ASSERT(NULL != obj);
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memset(obj, 0, sizeof(cyhal_ezi2c_t));
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/* Validate input configuration structure */
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if ((0 == cfg->slave1_cfg.slave_address) || ((cfg->two_addresses) && (0 == cfg->slave2_cfg.slave_address)))
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{
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return CYHAL_EZI2C_RSLT_ERR_CHECK_USER_CONFIG;
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}
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/* Populate configuration structure */
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const cy_stc_scb_ezi2c_config_t ezI2cConfig =
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{
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.numberOfAddresses = cfg->two_addresses ? CY_SCB_EZI2C_TWO_ADDRESSES : CY_SCB_EZI2C_ONE_ADDRESS,
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.slaveAddress1 = cfg->slave1_cfg.slave_address,
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.slaveAddress2 = cfg->two_addresses ? cfg->slave2_cfg.slave_address : 0,
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.subAddressSize = (cy_en_scb_ezi2c_sub_addr_size_t)cfg->sub_address_size,
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.enableWakeFromSleep = cfg->enable_wake_from_sleep,
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};
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/* Explicitly marked not allocated resources as invalid to prevent freeing them. */
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obj->resource.type = CYHAL_RSC_INVALID;
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obj->pin_scl = CYHAL_NC_PIN_VALUE;
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obj->pin_sda = CYHAL_NC_PIN_VALUE;
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obj->is_shared_clock = true;
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cy_rslt_t result;
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/* Reserve the I2C */
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const cyhal_resource_pin_mapping_t *sda_map = _CYHAL_SCB_FIND_MAP(sda, cyhal_pin_map_scb_i2c_sda);
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const cyhal_resource_pin_mapping_t *scl_map = _CYHAL_SCB_FIND_MAP(scl, cyhal_pin_map_scb_i2c_scl);
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if ((NULL == sda_map) || (NULL == scl_map) || !_cyhal_utils_resources_equal(sda_map->inst, scl_map->inst))
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{
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return CYHAL_EZI2C_RSLT_ERR_INVALID_PIN;
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}
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result = cyhal_hwmgr_reserve(scl_map->inst);
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/* Reserve the SDA pin */
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if (result == CY_RSLT_SUCCESS)
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{
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result = _cyhal_utils_reserve_and_connect(sda, sda_map);
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if (result == CY_RSLT_SUCCESS)
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obj->pin_sda = sda;
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}
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/* Reserve the SCL pin */
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if (result == CY_RSLT_SUCCESS)
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{
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result = _cyhal_utils_reserve_and_connect(scl, scl_map);
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if (result == CY_RSLT_SUCCESS)
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obj->pin_scl = scl;
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}
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if (result == CY_RSLT_SUCCESS)
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{
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obj->is_shared_clock = (clk != NULL);
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if (clk == NULL)
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{
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result = cyhal_clock_allocate(&(obj->clock), CYHAL_CLOCK_BLOCK_PERIPHERAL_16BIT);
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}
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else
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{
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obj->clock = *clk;
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_cyhal_utils_update_clock_format(&(obj->clock));
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}
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}
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obj->resource = *(scl_map->inst);
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obj->base = _CYHAL_SCB_BASE_ADDRESSES[obj->resource.block_num];
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if (result == CY_RSLT_SUCCESS)
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{
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/* Configure I2C to operate */
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result = Cy_SCB_EZI2C_Init(obj->base, &ezI2cConfig, &(obj->context));
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}
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/* Set data rate */
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uint32_t dataRate = _cyhal_i2c_set_peri_divider(obj->base, obj->resource.block_num, &(obj->clock), (uint32_t)cfg->data_rate, true);
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if (dataRate == 0)
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{
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/* Can not reach desired data rate */
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return CYHAL_EZI2C_RSLT_ERR_CAN_NOT_REACH_DR;
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}
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if (result == CY_RSLT_SUCCESS)
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{
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/* Configure buffer for communication with master */
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Cy_SCB_EZI2C_SetBuffer1(obj->base, cfg->slave1_cfg.buf, cfg->slave1_cfg.buf_size, cfg->slave1_cfg.buf_rw_boundary, &(obj->context));
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/* Check if user set one or two addresses */
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if(cfg->two_addresses)
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{
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Cy_SCB_EZI2C_SetBuffer2(obj->base, cfg->slave2_cfg.buf, cfg->slave2_cfg.buf_size, cfg->slave2_cfg.buf_rw_boundary, &(obj->context));
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}
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}
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if (result == CY_RSLT_SUCCESS)
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{
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_cyhal_scb_update_instance_data(obj->resource.block_num, (void*)obj, &_cyhal_ezi2c_pm_callback_instance);
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obj->callback_data.callback = NULL;
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obj->callback_data.callback_arg = NULL;
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obj->irq_cause = 0;
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cy_stc_sysint_t irqCfg = { _CYHAL_SCB_IRQ_N[obj->resource.block_num], CYHAL_ISR_PRIORITY_DEFAULT };
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Cy_SysInt_Init(&irqCfg, _cyhal_ezi2c_irq_handler);
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NVIC_EnableIRQ(_CYHAL_SCB_IRQ_N[obj->resource.block_num]);
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/* Enable EZI2C to operate */
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(void)Cy_SCB_EZI2C_Enable(obj->base);
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}
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if (result != CY_RSLT_SUCCESS)
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{
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cyhal_ezi2c_free(obj);
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}
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return result;
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}
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void cyhal_ezi2c_free(cyhal_ezi2c_t *obj)
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{
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CY_ASSERT(NULL != obj);
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if (CYHAL_RSC_INVALID != obj->resource.type)
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{
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IRQn_Type irqn = _CYHAL_SCB_IRQ_N[obj->resource.block_num];
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NVIC_DisableIRQ(irqn);
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cyhal_hwmgr_free(&(obj->resource));
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obj->base = NULL;
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obj->resource.type = CYHAL_RSC_INVALID;
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_cyhal_scb_update_instance_data(obj->resource.block_num, NULL, NULL);
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}
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_cyhal_utils_release_if_used(&(obj->pin_sda));
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_cyhal_utils_release_if_used(&(obj->pin_scl));
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if (!obj->is_shared_clock)
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{
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cyhal_clock_free(&(obj->clock));
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}
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}
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cyhal_ezi2c_status_t cyhal_ezi2c_get_activity_status(cyhal_ezi2c_t *obj)
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{
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return _cyhal_ezi2c_convert_activity_status(Cy_SCB_EZI2C_GetActivity(obj->base, &(obj->context)));
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}
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void cyhal_ezi2c_register_callback(cyhal_ezi2c_t *obj, cyhal_ezi2c_event_callback_t callback, void *callback_arg)
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{
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uint32_t savedIntrStatus = cyhal_system_critical_section_enter();
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obj->callback_data.callback = (cy_israddress) callback;
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obj->callback_data.callback_arg = callback_arg;
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cyhal_system_critical_section_exit(savedIntrStatus);
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}
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void cyhal_ezi2c_enable_event(cyhal_ezi2c_t *obj, cyhal_ezi2c_status_t event, uint8_t intr_priority, bool enable)
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{
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if (enable)
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{
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obj->irq_cause |= event;
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}
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else
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{
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obj->irq_cause &= ~event;
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}
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IRQn_Type irqn = _CYHAL_SCB_IRQ_N[obj->resource.block_num];
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NVIC_SetPriority(irqn, intr_priority);
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}
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#if defined(__cplusplus)
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}
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#endif
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#endif /* CY_IP_MXSCB */
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