1 /*
2 * Copyright (c) 2015, Freescale Semiconductor, Inc.
3 * Copyright 2016-2019 NXP
4 * All rights reserved.
5 *
6 * SPDX-License-Identifier: BSD-3-Clause
7 */
8
9 #ifndef FSL_VREF_H_
10 #define FSL_VREF_H_
11
12 #include "fsl_common.h"
13
14 /*!
15 * @addtogroup vref
16 * @{
17 */
18
19 /******************************************************************************
20 * Definitions
21 ******************************************************************************/
22
23 /*! @name Driver version */
24 /*! @{ */
25 #define FSL_VREF_DRIVER_VERSION (MAKE_VERSION(2, 1, 2)) /*!< Version 2.1.2. */
26 /*! @} */
27
28 /* Those macros below defined to support SoC family which have VREFL (0.4V) reference */
29 #if defined(FSL_FEATURE_VREF_HAS_LOW_REFERENCE) && FSL_FEATURE_VREF_HAS_LOW_REFERENCE
30 #define VREF_SC_MODE_LV VREF_VREFH_SC_MODE_LV
31 #define VREF_SC_REGEN VREF_VREFH_SC_REGEN
32 #define VREF_SC_VREFEN VREF_VREFH_SC_VREFEN
33 #define VREF_SC_ICOMPEN VREF_VREFH_SC_ICOMPEN
34 #define VREF_SC_REGEN_MASK VREF_VREFH_SC_REGEN_MASK
35 #define VREF_SC_VREFST_MASK VREF_VREFH_SC_VREFST_MASK
36 #define VREF_SC_VREFEN_MASK VREF_VREFH_SC_VREFEN_MASK
37 #define VREF_SC_MODE_LV_MASK VREF_VREFH_SC_MODE_LV_MASK
38 #define VREF_SC_ICOMPEN_MASK VREF_VREFH_SC_ICOMPEN_MASK
39 #define TRM VREFH_TRM
40 #define VREF_TRM_TRIM VREF_VREFH_TRM_TRIM
41 #define VREF_TRM_CHOPEN_MASK VREF_VREFH_TRM_CHOPEN_MASK
42 #define VREF_TRM_TRIM_MASK VREF_VREFH_TRM_TRIM_MASK
43 #define VREF_TRM_CHOPEN_SHIFT VREF_VREFH_TRM_CHOPEN_SHIFT
44 #define VREF_TRM_TRIM_SHIFT VREF_VREFH_TRM_TRIM_SHIFT
45 #define VREF_SC_MODE_LV_SHIFT VREF_VREFH_SC_MODE_LV_SHIFT
46 #define VREF_SC_REGEN_SHIFT VREF_VREFH_SC_REGEN_SHIFT
47 #define VREF_SC_VREFST_SHIFT VREF_VREFH_SC_VREFST_SHIFT
48 #define VREF_SC_ICOMPEN_SHIFT VREF_VREFH_SC_ICOMPEN_SHIFT
49 #endif /* FSL_FEATURE_VREF_HAS_LOW_REFERENCE */
50
51 /*!
52 * @brief VREF modes.
53 */
54 typedef enum _vref_buffer_mode
55 {
56 kVREF_ModeBandgapOnly = 0U, /*!< Bandgap on only, for stabilization and startup */
57 #if defined(FSL_FEATURE_VREF_MODE_LV_TYPE) && FSL_FEATURE_VREF_MODE_LV_TYPE
58 kVREF_ModeHighPowerBuffer = 1U, /*!< High-power buffer mode enabled */
59 kVREF_ModeLowPowerBuffer = 2U /*!< Low-power buffer mode enabled */
60 #else
61 kVREF_ModeTightRegulationBuffer = 2U /*!< Tight regulation buffer enabled */
62 #endif /* FSL_FEATURE_VREF_MODE_LV_TYPE */
63 } vref_buffer_mode_t;
64
65 /*!
66 * @brief The description structure for the VREF module.
67 */
68 typedef struct _vref_config
69 {
70 vref_buffer_mode_t bufferMode; /*!< Buffer mode selection */
71 #if defined(FSL_FEATURE_VREF_HAS_LOW_REFERENCE) && FSL_FEATURE_VREF_HAS_LOW_REFERENCE
72 bool enableLowRef; /*!< Set VREFL (0.4 V) reference buffer enable or disable */
73 bool enableExternalVoltRef; /*!< Select external voltage reference or not (internal) */
74 #endif /* FSL_FEATURE_VREF_HAS_LOW_REFERENCE */
75 #if defined(FSL_FEATURE_VREF_HAS_TRM4) && FSL_FEATURE_VREF_HAS_TRM4
76 bool enable2V1VoltRef; /*!< Enable Internal Voltage Reference (2.1V) */
77 #endif /* FSL_FEATURE_VREF_HAS_TRM4 */
78 } vref_config_t;
79
80 /******************************************************************************
81 * API
82 ******************************************************************************/
83
84 #if defined(__cplusplus)
85 extern "C" {
86 #endif /* __cplusplus */
87
88 /*!
89 * @name VREF functional operation
90 * @{
91 */
92
93 /*!
94 * @brief Enables the clock gate and configures the VREF module according to the configuration structure.
95 *
96 * This function must be called before calling all other VREF driver functions,
97 * read/write registers, and configurations with user-defined settings.
98 * The example below shows how to set up vref_config_t parameters and
99 * how to call the VREF_Init function by passing in these parameters.
100 * This is an example.
101 * @code
102 * vref_config_t vrefConfig;
103 * vrefConfig.bufferMode = kVREF_ModeHighPowerBuffer;
104 * vrefConfig.enableExternalVoltRef = false;
105 * vrefConfig.enableLowRef = false;
106 * VREF_Init(VREF, &vrefConfig);
107 * @endcode
108 *
109 * @param base VREF peripheral address.
110 * @param config Pointer to the configuration structure.
111 */
112 void VREF_Init(VREF_Type *base, const vref_config_t *config);
113
114 /*!
115 * @brief Stops and disables the clock for the VREF module.
116 *
117 * This function should be called to shut down the module.
118 * This is an example.
119 * @code
120 * vref_config_t vrefUserConfig;
121 * VREF_Init(VREF);
122 * VREF_GetDefaultConfig(&vrefUserConfig);
123 * ...
124 * VREF_Deinit(VREF);
125 * @endcode
126 *
127 * @param base VREF peripheral address.
128 */
129 void VREF_Deinit(VREF_Type *base);
130
131 /*!
132 * @brief Initializes the VREF configuration structure.
133 *
134 * This function initializes the VREF configuration structure to default values.
135 * This is an example.
136 * @code
137 * vrefConfig->bufferMode = kVREF_ModeHighPowerBuffer;
138 * vrefConfig->enableExternalVoltRef = false;
139 * vrefConfig->enableLowRef = false;
140 * @endcode
141 *
142 * @param config Pointer to the initialization structure.
143 */
144 void VREF_GetDefaultConfig(vref_config_t *config);
145
146 /*!
147 * @brief Sets a TRIM value for the reference voltage.
148 *
149 * This function sets a TRIM value for the reference voltage.
150 * Note that the TRIM value maximum is 0x3F.
151 *
152 * @param base VREF peripheral address.
153 * @param trimValue Value of the trim register to set the output reference voltage (maximum 0x3F (6-bit)).
154 */
155 void VREF_SetTrimVal(VREF_Type *base, uint8_t trimValue);
156
157 /*!
158 * @brief Reads the value of the TRIM meaning output voltage.
159 *
160 * This function gets the TRIM value from the TRM register.
161 *
162 * @param base VREF peripheral address.
163 * @return Six-bit value of trim setting.
164 */
VREF_GetTrimVal(VREF_Type * base)165 static inline uint8_t VREF_GetTrimVal(VREF_Type *base)
166 {
167 return (base->TRM & VREF_TRM_TRIM_MASK);
168 }
169
170 #if defined(FSL_FEATURE_VREF_HAS_TRM4) && FSL_FEATURE_VREF_HAS_TRM4
171 /*!
172 * @brief Sets a TRIM value for the reference voltage (2V1).
173 *
174 * This function sets a TRIM value for the reference voltage (2V1).
175 * Note that the TRIM value maximum is 0x3F.
176 *
177 * @param base VREF peripheral address.
178 * @param trimValue Value of the trim register to set the output reference voltage (maximum 0x3F (6-bit)).
179 */
180 void VREF_SetTrim2V1Val(VREF_Type *base, uint8_t trimValue);
181
182 /*!
183 * @brief Reads the value of the TRIM meaning output voltage (2V1).
184 *
185 * This function gets the TRIM value from the VREF_TRM4 register.
186 *
187 * @param base VREF peripheral address.
188 * @return Six-bit value of trim setting.
189 */
VREF_GetTrim2V1Val(VREF_Type * base)190 static inline uint8_t VREF_GetTrim2V1Val(VREF_Type *base)
191 {
192 return (base->TRM4 & VREF_TRM4_TRIM2V1_MASK);
193 }
194 #endif /* FSL_FEATURE_VREF_HAS_TRM4 */
195
196 #if defined(FSL_FEATURE_VREF_HAS_LOW_REFERENCE) && FSL_FEATURE_VREF_HAS_LOW_REFERENCE
197
198 /*!
199 * @brief Sets the TRIM value for the low voltage reference.
200 *
201 * This function sets the TRIM value for low reference voltage.
202 * Note the following.
203 * - The TRIM value maximum is 0x05U
204 * - The values 111b and 110b are not valid/allowed.
205 *
206 * @param base VREF peripheral address.
207 * @param trimValue Value of the trim register to set output low reference voltage (maximum 0x05U (3-bit)).
208 */
209 void VREF_SetLowReferenceTrimVal(VREF_Type *base, uint8_t trimValue);
210
211 /*!
212 * @brief Reads the value of the TRIM meaning output voltage.
213 *
214 * This function gets the TRIM value from the VREFL_TRM register.
215 *
216 * @param base VREF peripheral address.
217 * @return Three-bit value of the trim setting.
218 */
VREF_GetLowReferenceTrimVal(VREF_Type * base)219 static inline uint8_t VREF_GetLowReferenceTrimVal(VREF_Type *base)
220 {
221 return (base->VREFL_TRM & VREF_VREFL_TRM_VREFL_TRIM_MASK);
222 }
223 #endif /* FSL_FEATURE_VREF_HAS_LOW_REFERENCE */
224
225 /*! @} */
226
227 #if defined(__cplusplus)
228 }
229 #endif /* __cplusplus */
230
231 /*! @}*/
232
233 #endif /* FSL_VREF_H_ */
234