2016-09-28 11:20:34 -04:00
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// Copyright 2015-2016 Espressif Systems (Shanghai) PTE LTD
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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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// 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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#include <esp_types.h>
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2019-03-26 04:30:43 -04:00
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#include "esp_intr_alloc.h"
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2016-09-28 11:20:34 -04:00
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#include "freertos/FreeRTOS.h"
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#include "freertos/semphr.h"
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#include "freertos/xtensa_api.h"
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#include "soc/dport_reg.h"
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#include "driver/periph_ctrl.h"
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static portMUX_TYPE periph_spinlock = portMUX_INITIALIZER_UNLOCKED;
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2017-10-02 02:48:16 -04:00
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/* Static functions to return register address & mask for clk_en / rst of each peripheral */
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static uint32_t get_clk_en_mask(periph_module_t periph);
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static uint32_t get_rst_en_mask(periph_module_t periph, bool enable);
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static uint32_t get_clk_en_reg(periph_module_t periph);
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static uint32_t get_rst_en_reg(periph_module_t periph);
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2016-09-28 11:20:34 -04:00
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void periph_module_enable(periph_module_t periph)
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{
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portENTER_CRITICAL(&periph_spinlock);
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DPORT_SET_PERI_REG_MASK(get_clk_en_reg(periph), get_clk_en_mask(periph));
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DPORT_CLEAR_PERI_REG_MASK(get_rst_en_reg(periph), get_rst_en_mask(periph, true));
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portEXIT_CRITICAL(&periph_spinlock);
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}
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void periph_module_disable(periph_module_t periph)
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{
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portENTER_CRITICAL(&periph_spinlock);
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DPORT_CLEAR_PERI_REG_MASK(get_clk_en_reg(periph), get_clk_en_mask(periph));
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2018-10-29 11:55:02 -04:00
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DPORT_SET_PERI_REG_MASK(get_rst_en_reg(periph), get_rst_en_mask(periph, false));
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portEXIT_CRITICAL(&periph_spinlock);
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}
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void periph_module_reset(periph_module_t periph)
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{
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portENTER_CRITICAL(&periph_spinlock);
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DPORT_SET_PERI_REG_MASK(get_rst_en_reg(periph), get_rst_en_mask(periph, false));
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DPORT_CLEAR_PERI_REG_MASK(get_rst_en_reg(periph), get_rst_en_mask(periph, false));
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portEXIT_CRITICAL(&periph_spinlock);
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}
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static uint32_t get_clk_en_mask(periph_module_t periph)
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{
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switch(periph) {
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case PERIPH_RMT_MODULE:
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return DPORT_RMT_CLK_EN;
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case PERIPH_LEDC_MODULE:
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return DPORT_LEDC_CLK_EN;
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case PERIPH_UART0_MODULE:
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return DPORT_UART_CLK_EN;
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case PERIPH_UART1_MODULE:
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return DPORT_UART1_CLK_EN;
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case PERIPH_UART2_MODULE:
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return DPORT_UART2_CLK_EN;
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case PERIPH_I2C0_MODULE:
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return DPORT_I2C_EXT0_CLK_EN;
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case PERIPH_I2C1_MODULE:
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return DPORT_I2C_EXT1_CLK_EN;
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case PERIPH_I2S0_MODULE:
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return DPORT_I2S0_CLK_EN;
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case PERIPH_I2S1_MODULE:
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return DPORT_I2S1_CLK_EN;
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case PERIPH_TIMG0_MODULE:
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return DPORT_TIMERGROUP_CLK_EN;
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case PERIPH_TIMG1_MODULE:
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return DPORT_TIMERGROUP1_CLK_EN;
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case PERIPH_PWM0_MODULE:
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return DPORT_PWM0_CLK_EN;
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case PERIPH_PWM1_MODULE:
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return DPORT_PWM1_CLK_EN;
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case PERIPH_PWM2_MODULE:
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return DPORT_PWM2_CLK_EN;
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case PERIPH_PWM3_MODULE:
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return DPORT_PWM3_CLK_EN;
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case PERIPH_UHCI0_MODULE:
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return DPORT_UHCI0_CLK_EN;
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case PERIPH_UHCI1_MODULE:
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return DPORT_UHCI1_CLK_EN;
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case PERIPH_PCNT_MODULE:
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return DPORT_PCNT_CLK_EN;
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case PERIPH_SPI_MODULE:
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return DPORT_SPI01_CLK_EN;
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case PERIPH_HSPI_MODULE:
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return DPORT_SPI2_CLK_EN;
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case PERIPH_VSPI_MODULE:
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return DPORT_SPI3_CLK_EN;
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case PERIPH_SPI_DMA_MODULE:
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return DPORT_SPI_DMA_CLK_EN;
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case PERIPH_SDMMC_MODULE:
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return DPORT_WIFI_CLK_SDIO_HOST_EN;
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case PERIPH_SDIO_SLAVE_MODULE:
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return DPORT_WIFI_CLK_SDIOSLAVE_EN;
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case PERIPH_CAN_MODULE:
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return DPORT_CAN_CLK_EN;
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case PERIPH_EMAC_MODULE:
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return DPORT_WIFI_CLK_EMAC_EN;
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case PERIPH_RNG_MODULE:
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return DPORT_WIFI_CLK_RNG_EN;
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case PERIPH_WIFI_MODULE:
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return DPORT_WIFI_CLK_WIFI_EN_M;
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case PERIPH_BT_MODULE:
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return DPORT_WIFI_CLK_BT_EN_M;
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case PERIPH_WIFI_BT_COMMON_MODULE:
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return DPORT_WIFI_CLK_WIFI_BT_COMMON_M;
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case PERIPH_BT_BASEBAND_MODULE:
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return DPORT_BT_BASEBAND_EN;
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case PERIPH_BT_LC_MODULE:
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return DPORT_BT_LC_EN;
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case PERIPH_AES_MODULE:
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return DPORT_PERI_EN_AES;
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case PERIPH_SHA_MODULE:
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return DPORT_PERI_EN_SHA;
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case PERIPH_RSA_MODULE:
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return DPORT_PERI_EN_RSA;
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default:
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return 0;
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}
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}
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static uint32_t get_rst_en_mask(periph_module_t periph, bool enable)
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{
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switch(periph) {
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case PERIPH_RMT_MODULE:
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return DPORT_RMT_RST;
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case PERIPH_LEDC_MODULE:
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return DPORT_LEDC_RST;
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case PERIPH_UART0_MODULE:
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return DPORT_UART_RST;
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case PERIPH_UART1_MODULE:
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return DPORT_UART1_RST;
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case PERIPH_UART2_MODULE:
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return DPORT_UART2_RST;
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case PERIPH_I2C0_MODULE:
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return DPORT_I2C_EXT0_RST;
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case PERIPH_I2C1_MODULE:
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return DPORT_I2C_EXT1_RST;
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case PERIPH_I2S0_MODULE:
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return DPORT_I2S0_RST;
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case PERIPH_I2S1_MODULE:
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return DPORT_I2S1_RST;
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case PERIPH_TIMG0_MODULE:
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return DPORT_TIMERGROUP_RST;
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case PERIPH_TIMG1_MODULE:
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return DPORT_TIMERGROUP1_RST;
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case PERIPH_PWM0_MODULE:
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return DPORT_PWM0_RST;
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case PERIPH_PWM1_MODULE:
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return DPORT_PWM1_RST;
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case PERIPH_PWM2_MODULE:
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return DPORT_PWM2_RST;
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case PERIPH_PWM3_MODULE:
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return DPORT_PWM3_RST;
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case PERIPH_UHCI0_MODULE:
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return DPORT_UHCI0_RST;
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case PERIPH_UHCI1_MODULE:
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return DPORT_UHCI1_RST;
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case PERIPH_PCNT_MODULE:
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return DPORT_PCNT_RST;
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case PERIPH_SPI_MODULE:
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return DPORT_SPI01_RST;
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case PERIPH_HSPI_MODULE:
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return DPORT_SPI2_RST;
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case PERIPH_VSPI_MODULE:
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return DPORT_SPI3_RST;
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case PERIPH_SPI_DMA_MODULE:
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return DPORT_SPI_DMA_RST;
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case PERIPH_SDMMC_MODULE:
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return DPORT_SDIO_HOST_RST;
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case PERIPH_SDIO_SLAVE_MODULE:
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return DPORT_SDIO_RST;
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case PERIPH_CAN_MODULE:
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return DPORT_CAN_RST;
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2017-09-04 06:12:15 -04:00
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case PERIPH_EMAC_MODULE:
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return DPORT_EMAC_RST;
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case PERIPH_AES_MODULE:
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if (enable == true) {
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// Clear reset on digital signature & secure boot units, otherwise AES unit is held in reset also.
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return (DPORT_PERI_EN_AES | DPORT_PERI_EN_DIGITAL_SIGNATURE | DPORT_PERI_EN_SECUREBOOT);
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} else {
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//Don't return other units to reset, as this pulls reset on RSA & SHA units, respectively.
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return DPORT_PERI_EN_AES;
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}
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case PERIPH_SHA_MODULE:
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if (enable == true) {
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// Clear reset on secure boot, otherwise SHA is held in reset
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return (DPORT_PERI_EN_SHA | DPORT_PERI_EN_SECUREBOOT);
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} else {
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// Don't assert reset on secure boot, otherwise AES is held in reset
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return DPORT_PERI_EN_SHA;
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}
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case PERIPH_RSA_MODULE:
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if (enable == true) {
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// Also clear reset on digital signature, otherwise RSA is held in reset
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return (DPORT_PERI_EN_RSA | DPORT_PERI_EN_DIGITAL_SIGNATURE);
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} else {
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// Don't reset digital signature unit, as this resets AES also
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return DPORT_PERI_EN_RSA;
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}
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case PERIPH_WIFI_MODULE:
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case PERIPH_BT_MODULE:
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case PERIPH_WIFI_BT_COMMON_MODULE:
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case PERIPH_BT_BASEBAND_MODULE:
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case PERIPH_BT_LC_MODULE:
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return 0;
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default:
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return 0;
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}
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}
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static bool is_wifi_clk_peripheral(periph_module_t periph)
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{
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/* A small subset of peripherals use WIFI_CLK_EN_REG and
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CORE_RST_EN_REG for their clock & reset registers */
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switch(periph) {
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case PERIPH_SDMMC_MODULE:
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case PERIPH_SDIO_SLAVE_MODULE:
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case PERIPH_EMAC_MODULE:
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case PERIPH_RNG_MODULE:
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case PERIPH_WIFI_MODULE:
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2017-11-01 05:05:38 -04:00
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case PERIPH_BT_MODULE:
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case PERIPH_WIFI_BT_COMMON_MODULE:
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2018-04-08 07:19:47 -04:00
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case PERIPH_BT_BASEBAND_MODULE:
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case PERIPH_BT_LC_MODULE:
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return true;
|
|
|
|
default:
|
|
|
|
return false;
|
2016-09-28 11:20:34 -04:00
|
|
|
}
|
|
|
|
}
|
2017-10-02 02:48:16 -04:00
|
|
|
|
|
|
|
static uint32_t get_clk_en_reg(periph_module_t periph)
|
|
|
|
{
|
2018-10-29 11:55:02 -04:00
|
|
|
if (periph == PERIPH_AES_MODULE || periph == PERIPH_SHA_MODULE || periph == PERIPH_RSA_MODULE) {
|
|
|
|
return DPORT_PERI_CLK_EN_REG;
|
|
|
|
} else {
|
|
|
|
return is_wifi_clk_peripheral(periph) ? DPORT_WIFI_CLK_EN_REG : DPORT_PERIP_CLK_EN_REG;
|
|
|
|
}
|
2017-10-02 02:48:16 -04:00
|
|
|
}
|
|
|
|
|
|
|
|
static uint32_t get_rst_en_reg(periph_module_t periph)
|
|
|
|
{
|
2018-10-29 11:55:02 -04:00
|
|
|
if (periph == PERIPH_AES_MODULE || periph == PERIPH_SHA_MODULE || periph == PERIPH_RSA_MODULE) {
|
|
|
|
return DPORT_PERI_RST_EN_REG;
|
|
|
|
} else {
|
|
|
|
return is_wifi_clk_peripheral(periph) ? DPORT_CORE_RST_EN_REG : DPORT_PERIP_RST_EN_REG;
|
|
|
|
}
|
2017-10-02 02:48:16 -04:00
|
|
|
}
|
|
|
|
|
|
|
|
|