236 lines
10 KiB
C
236 lines
10 KiB
C
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/*
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* Copyright (c) 2015-2016, Freescale Semiconductor, Inc.
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* Copyright 2016-2018, 2020-2021 NXP
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* All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#ifndef _FSL_TRNG_DRIVER_H_
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#define _FSL_TRNG_DRIVER_H_
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#include "fsl_common.h"
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#if defined(FSL_FEATURE_SOC_TRNG_COUNT) && FSL_FEATURE_SOC_TRNG_COUNT
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/*!
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* @addtogroup trng
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* @{
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*/
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/*******************************************************************************
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* Definitions
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*******************************************************************************/
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/*! @name Driver version */
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/*@{*/
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/*! @brief TRNG driver version 2.0.13.
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*
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* Current version: 2.0.13
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*
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* Change log:
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* - version 2.0.13
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* - After deepsleep it might return error, added clearing bits in TRNG_GetRandomData() and generating new entropy.
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* - Modified reloading entropy in TRNG_GetRandomData(), for some data length it doesn't reloading entropy correctly.
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* - version 2.0.12
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* - For KW34A4_SERIES, KW35A4_SERIES, KW36A4_SERIES set TRNG_USER_CONFIG_DEFAULT_OSC_DIV to kTRNG_RingOscDiv8.
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* - version 2.0.11
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* - Add clearing pending errors in TRNG_Init().
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* - version 2.0.10
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* - Fixed doxygen issues.
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* - version 2.0.9
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* - Fix HIS_CCM metrics issues.
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* - version 2.0.8
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* - For K32L2A41A_SERIES set TRNG_USER_CONFIG_DEFAULT_OSC_DIV to kTRNG_RingOscDiv4.
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* - version 2.0.7
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* - Fix MISRA 2004 issue rule 12.5.
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* - version 2.0.6
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* - For KW35Z4_SERIES set TRNG_USER_CONFIG_DEFAULT_OSC_DIV to kTRNG_RingOscDiv8.
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* - version 2.0.5
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* - Add possibility to define default TRNG configuration by device specific preprocessor macros
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* for FRQMIN, FRQMAX and OSCDIV.
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* - version 2.0.4
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* - Fix MISRA-2012 issues.
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* - Version 2.0.3
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* - update TRNG_Init to restart entropy generation
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* - Version 2.0.2
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* - fix MISRA issues
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* - Version 2.0.1
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* - add support for KL8x and KL28Z
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* - update default OSCDIV for K81 to divide by 2
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*/
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#define FSL_TRNG_DRIVER_VERSION (MAKE_VERSION(2, 0, 13))
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/*@}*/
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/*! @brief TRNG sample mode. Used by trng_config_t. */
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typedef enum _trng_sample_mode
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{
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kTRNG_SampleModeVonNeumann = 0U, /*!< Use von Neumann data in both Entropy shifter and Statistical Checker. */
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kTRNG_SampleModeRaw = 1U, /*!< Use raw data into both Entropy shifter and Statistical Checker. */
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kTRNG_SampleModeVonNeumannRaw =
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2U /*!< Use von Neumann data in Entropy shifter. Use raw data into Statistical Checker. */
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} trng_sample_mode_t;
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/*! @brief TRNG clock mode. Used by trng_config_t. */
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typedef enum _trng_clock_mode
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{
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kTRNG_ClockModeRingOscillator = 0U, /*!< Ring oscillator is used to operate the TRNG (default). */
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kTRNG_ClockModeSystem = 1U /*!< System clock is used to operate the TRNG. This is for test use only, and
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indeterminate results may occur. */
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} trng_clock_mode_t;
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/*! @brief TRNG ring oscillator divide. Used by trng_config_t. */
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typedef enum _trng_ring_osc_div
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{
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kTRNG_RingOscDiv0 = 0U, /*!< Ring oscillator with no divide */
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kTRNG_RingOscDiv2 = 1U, /*!< Ring oscillator divided-by-2. */
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kTRNG_RingOscDiv4 = 2U, /*!< Ring oscillator divided-by-4. */
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kTRNG_RingOscDiv8 = 3U /*!< Ring oscillator divided-by-8. */
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} trng_ring_osc_div_t;
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/*! @brief Data structure for definition of statistical check limits. Used by trng_config_t. */
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typedef struct _trng_statistical_check_limit
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{
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uint32_t maximum; /*!< Maximum limit.*/
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uint32_t minimum; /*!< Minimum limit.*/
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} trng_statistical_check_limit_t;
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/*!
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* @brief Data structure for the TRNG initialization
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*
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* This structure initializes the TRNG by calling the TRNG_Init() function.
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* It contains all TRNG configurations.
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*/
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typedef struct _trng_user_config
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{
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bool lock; /*!< @brief Disable programmability of TRNG registers. */
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trng_clock_mode_t clockMode; /*!< @brief Clock mode used to operate TRNG.*/
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trng_ring_osc_div_t ringOscDiv; /*!< @brief Ring oscillator divide used by TRNG. */
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trng_sample_mode_t sampleMode; /*!< @brief Sample mode of the TRNG ring oscillator. */
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/* Seed Control*/
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uint16_t
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entropyDelay; /*!< @brief Entropy Delay. Defines the length (in system clocks) of each Entropy sample taken. */
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uint16_t sampleSize; /*!< @brief Sample Size. Defines the total number of Entropy samples that will be taken during
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Entropy generation. */
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uint16_t sparseBitLimit; /*!< @brief Sparse Bit Limit which defines the maximum number of
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* consecutive samples that may be discarded before an error is generated.
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* This limit is used only for during von Neumann sampling (enabled by
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* TRNG_HAL_SetSampleMode()). Samples are discarded if two consecutive raw samples are both
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* 0 or both 1. If this discarding occurs for a long period of time, it indicates that
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* there is insufficient Entropy. */
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/* Statistical Check Parameters.*/
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uint8_t retryCount; /*!< @brief Retry count. It defines the number of times a statistical check may fails
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* during the TRNG Entropy Generation before generating an error. */
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uint8_t longRunMaxLimit; /*!< @brief Largest allowable number of consecutive samples of all 1, or all 0,
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* that is allowed during the Entropy generation. */
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trng_statistical_check_limit_t monobitLimit; /*!< @brief Maximum and minimum limits for statistical check of number
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of ones/zero detected during entropy generation. */
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trng_statistical_check_limit_t runBit1Limit; /*!< @brief Maximum and minimum limits for statistical check of number
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of runs of length 1 detected during entropy generation. */
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trng_statistical_check_limit_t runBit2Limit; /*!< @brief Maximum and minimum limits for statistical check of number
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of runs of length 2 detected during entropy generation. */
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trng_statistical_check_limit_t runBit3Limit; /*!< @brief Maximum and minimum limits for statistical check of number
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of runs of length 3 detected during entropy generation. */
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trng_statistical_check_limit_t runBit4Limit; /*!< @brief Maximum and minimum limits for statistical check of number
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of runs of length 4 detected during entropy generation. */
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trng_statistical_check_limit_t runBit5Limit; /*!< @brief Maximum and minimum limits for statistical check of number
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of runs of length 5 detected during entropy generation. */
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trng_statistical_check_limit_t runBit6PlusLimit; /*!< @brief Maximum and minimum limits for statistical check of
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number of runs of length 6 or more detected during entropy
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generation. */
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trng_statistical_check_limit_t
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pokerLimit; /*!< @brief Maximum and minimum limits for statistical check of "Poker Test". */
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trng_statistical_check_limit_t frequencyCountLimit; /*!< @brief Maximum and minimum limits for statistical check of
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entropy sample frequency count. */
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} trng_config_t;
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/*******************************************************************************
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* API
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*******************************************************************************/
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#if defined(__cplusplus)
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extern "C" {
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#endif
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/*!
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* @brief Initializes the user configuration structure to default values.
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*
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* This function initializes the configuration structure to default values. The default
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* values are as follows.
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* @code
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* userConfig->lock = 0;
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* userConfig->clockMode = kTRNG_ClockModeRingOscillator;
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* userConfig->ringOscDiv = kTRNG_RingOscDiv0; Or to other kTRNG_RingOscDiv[2|8] depending on the platform.
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* userConfig->sampleMode = kTRNG_SampleModeRaw;
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* userConfig->entropyDelay = 3200;
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* userConfig->sampleSize = 2500;
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* userConfig->sparseBitLimit = TRNG_USER_CONFIG_DEFAULT_SPARSE_BIT_LIMIT;
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* userConfig->retryCount = 63;
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* userConfig->longRunMaxLimit = 34;
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* userConfig->monobitLimit.maximum = 1384;
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* userConfig->monobitLimit.minimum = 1116;
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* userConfig->runBit1Limit.maximum = 405;
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* userConfig->runBit1Limit.minimum = 227;
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* userConfig->runBit2Limit.maximum = 220;
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* userConfig->runBit2Limit.minimum = 98;
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* userConfig->runBit3Limit.maximum = 125;
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* userConfig->runBit3Limit.minimum = 37;
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* userConfig->runBit4Limit.maximum = 75;
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* userConfig->runBit4Limit.minimum = 11;
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* userConfig->runBit5Limit.maximum = 47;
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* userConfig->runBit5Limit.minimum = 1;
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* userConfig->runBit6PlusLimit.maximum = 47;
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* userConfig->runBit6PlusLimit.minimum = 1;
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* userConfig->pokerLimit.maximum = 26912;
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* userConfig->pokerLimit.minimum = 24445;
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* userConfig->frequencyCountLimit.maximum = 25600;
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* userConfig->frequencyCountLimit.minimum = 1600;
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* @endcode
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*
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* @param userConfig User configuration structure.
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* @return If successful, returns the kStatus_TRNG_Success. Otherwise, it returns an error.
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*/
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status_t TRNG_GetDefaultConfig(trng_config_t *userConfig);
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/*!
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* @brief Initializes the TRNG.
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*
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* This function initializes the TRNG.
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* When called, the TRNG entropy generation starts immediately.
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*
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* @param base TRNG base address
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* @param userConfig Pointer to the initialization configuration structure.
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* @return If successful, returns the kStatus_TRNG_Success. Otherwise, it returns an error.
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*/
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status_t TRNG_Init(TRNG_Type *base, const trng_config_t *userConfig);
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/*!
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* @brief Shuts down the TRNG.
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*
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* This function shuts down the TRNG.
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*
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* @param base TRNG base address.
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*/
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void TRNG_Deinit(TRNG_Type *base);
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/*!
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* @brief Gets random data.
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*
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* This function gets random data from the TRNG.
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*
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* @param base TRNG base address.
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* @param data Pointer address used to store random data.
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* @param dataSize Size of the buffer pointed by the data parameter.
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* @return random data
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*/
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status_t TRNG_GetRandomData(TRNG_Type *base, void *data, size_t dataSize);
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#if defined(__cplusplus)
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}
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#endif
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/*! @}*/
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#endif /* FSL_FEATURE_SOC_TRNG_COUNT */
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#endif /*_FSL_TRNG_H_*/
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