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Merge pull request #11422 from fjmolinas/pr_kinetis_w_flashpage
cpu/kinetis: add flashpage for W & K series
This commit is contained in:
commit
e45dc52c7b
@ -19,4 +19,11 @@ else
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FEATURES_PROVIDED += periph_mcg
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endif
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# Since KINETIS_SERIES isn't available in Makefile.features filter according to
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# CPU_MODEL
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ifneq (,$(filter mkw% mk%,$(CPU_MODEL)))
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FEATURES_PROVIDED += periph_flashpage
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FEATURES_PROVIDED += periph_flashpage_raw
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endif
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include $(RIOTCPU)/cortexm_common/Makefile.features
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@ -136,6 +136,24 @@
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#endif /* (KINETIS_SUBFAMILY == y) */
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#endif /* (KINETIS_FAMILY == x) */
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/**
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* @name Flashpage configuration
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* @{
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*/
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#define FLASHPAGE_SIZE (4096U)
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#define FLASHPAGE_NUMOF ((KINETIS_ROMSIZE * 1024) / FLASHPAGE_SIZE)
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/* The minimum block size which can be written is 8B (Phrase). However, the
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* erase block is always FLASHPAGE_SIZE.
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*/
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#define FLASHPAGE_RAW_PHRASE (8U)
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#define FLASHPAGE_RAW_BLOCKSIZE FLASHPAGE_RAW_PHRASE
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/* Writing should be always 8 bytes aligned */
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#define FLASHPAGE_RAW_ALIGNMENT FLASHPAGE_RAW_PHRASE
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/* Section erase and programming must be 16 bytes aligned */
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#define FLASHPAGE_RAW_SECTION_ALIGNMENT (16U)
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/** @} */
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#ifdef __cplusplus
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extern "C"
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{
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@ -77,6 +77,23 @@
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#endif
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#endif /* KINETIS_CORE_x */
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/**
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* @name Flashpage configuration
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* @{
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*/
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#define FLASHPAGE_SIZE (2048U)
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#define FLASHPAGE_NUMOF ((KINETIS_ROMSIZE * 1024) / FLASHPAGE_SIZE)
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/* The minimum block size which can be written is 4B. However, the erase
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* block is always FLASHPAGE_SIZE.
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*/
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#define FLASHPAGE_RAW_BLOCKSIZE (4U)
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/* Writing should be always 4 bytes aligned */
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#define FLASHPAGE_RAW_ALIGNMENT (4U)
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/* Section erase and programming must be 8 bytes aligned */
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#define FLASHPAGE_RAW_SECTION_ALIGNMENT (8U)
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/** @} */
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#ifdef __cplusplus
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extern "C"
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{
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226
cpu/kinetis/periph/flashpage.c
Normal file
226
cpu/kinetis/periph/flashpage.c
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@ -0,0 +1,226 @@
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/*
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* Copyright (C) 2019 Inria
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*
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* This file is subject to the terms and conditions of the GNU Lesser
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* General Public License v2.1. See the file LICENSE in the top level
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* directory for more details.
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*/
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/**
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* @ingroup cpu_kinetis
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* @ingroup drivers_periph_flashpage
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* @{
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*
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* @file
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* @brief Low-level flashpage driver implementation
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*
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* @author Francisco Molina <francois-xavier.molina@inria.fr>
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* @}
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*/
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#include "cpu.h"
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#include "assert.h"
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#define ENABLE_DEBUG (0)
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#include "debug.h"
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#include "periph/flashpage.h"
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/**
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* @brief Flash controller commands
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*/
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#define FTFx_VERIFY_SECTION (0x01U) /* RD1SEC */
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#define FTFx_ERASE_SECTOR (0x09U) /* ERSSCR */
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#define FTFx_PROGRAM_LONGWORD (0x06U) /* PGM4 */
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#define FTFx_PROGRAM_PHRASE (0x07U) /* PGM8 */
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/**
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* @brief Kinetis Flash Memory Module common registers
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*/
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#if defined(FTFA)
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#define FTFx FTFA
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#define FTFx_BASE FTFA_BASE
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#define FTFx_FSTAT_CCIF_MASK FTFA_FSTAT_CCIF_MASK
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#define FTFx_FSTAT_RDCOLERR_MASK FTFA_FSTAT_RDCOLERR_MASK
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#define FTFx_FSTAT_ACCERR_MASK FTFA_FSTAT_ACCERR_MASK
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#define FTFx_FSTAT_FPVIOL_MASK FTFA_FSTAT_FPVIOL_MASK
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#define FTFx_FSTAT_MGSTAT0_MASK FTFA_FSTAT_MGSTAT0_MASK
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#define FTFx_FSEC_SEC_MASK FTFA_FSEC_SEC_MASK
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#define FTFx_FSEC_KEYEN_MASK FTFA_FSEC_KEYEN_MASK
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#elif defined(FTFE)
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#define FTFx FTFE
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#define FTFx_BASE FTFE_BASE
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#define FTFx_FSTAT_CCIF_MASK FTFE_FSTAT_CCIF_MASK
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#define FTFx_FSTAT_RDCOLERR_MASK FTFE_FSTAT_RDCOLERR_MASK
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#define FTFx_FSTAT_ACCERR_MASK FTFE_FSTAT_ACCERR_MASK
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#define FTFx_FSTAT_FPVIOL_MASK FTFE_FSTAT_FPVIOL_MASK
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#define FTFx_FSTAT_MGSTAT0_MASK FTFE_FSTAT_MGSTAT0_MASK
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#define FTFx_FSEC_SEC_MASK FTFE_FSEC_SEC_MASK
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#define FTFx_FSEC_KEYEN_MASK FTFE_FSEC_KEYEN_MASK
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#elif defined(FTFL)
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#define FTFx FTFL
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#define FTFx_BASE FTFL_BASE
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#define FTFx_FSTAT_CCIF_MASK FTFL_FSTAT_CCIF_MASK
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#define FTFx_FSTAT_RDCOLERR_MASK FTFL_FSTAT_RDCOLERR_MASK
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#define FTFx_FSTAT_ACCERR_MASK FTFL_FSTAT_ACCERR_MASK
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#define FTFx_FSTAT_FPVIOL_MASK FTFL_FSTAT_FPVIOL_MASK
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#define FTFx_FSTAT_MGSTAT0_MASK FTFL_FSTAT_MGSTAT0_MASK
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#define FTFx_FSEC_SEC_MASK FTFL_FSEC_SEC_MASK
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#define FTFx_FSEC_KEYEN_MASK FTFL_FSEC_KEYEN_MASK
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#endif
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#define BYTES_JOIN_TO_WORD_1_3(x, y) ((((uint32_t)(x) & 0xFFU) << 24) | \
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((uint32_t)(y) & 0xFFFFFFU))
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#define BYTES_JOIN_TO_WORD_2_1_1(x, y, z) \
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((((uint32_t)(x) & 0xFFFFU) << 16) | (((uint32_t)(y) & 0xFFU) << 8) | \
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((uint32_t)(z) & 0xFFU))
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/**
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* @brief Flash errors
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*/
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enum {
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NO_ERROR = 0,
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PROTECTION_ERROR = -1,
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ALIGN_ERROR = -2,
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ACCESS_ERROR = -3,
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COLLISION_ERROR = -4,
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RUNTIME_ERROR = -5,
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ERASE_ERROR = -6,
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};
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/* Pointer to FCCOB register */
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volatile uint32_t *const FCCOBx = (volatile uint32_t *)&FTFx->FCCOB3;
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/* Erasing/Programming flash is not allowed inside the same flash block
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where the program is being read, for _run_command to be executed in
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RAM to avoid this, more details in:
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https://www.nxp.com/docs/en/application-note/AN4695.pdf */
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__attribute__ ((section (".ramfunc")))
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static void _run_command(void)
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{
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/* Clear previous errors */
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FTFx->FSTAT = FTFx_FSTAT_FPVIOL_MASK | FTFx_FSTAT_ACCERR_MASK |
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FTFx_FSTAT_RDCOLERR_MASK;
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/* Start Operation */
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FTFx->FSTAT = FTFx_FSTAT_CCIF_MASK;
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/* Wait for CCIF to be set (operation finished) */
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while (!(FTFx->FSTAT & FTFx_FSTAT_CCIF_MASK)) {}
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}
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static int _check_errors(void)
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{
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if (FTFx->FSTAT & FTFx_FSTAT_FPVIOL_MASK) {
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DEBUG("[flash_write]: flash protection violation\n");
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return PROTECTION_ERROR;
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}
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if (FTFx->FSTAT & FTFx_FSTAT_ACCERR_MASK) {
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DEBUG("[flash_write]: flash access error\n");
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return ACCESS_ERROR;
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}
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if (FTFx->FSTAT & FTFx_FSTAT_RDCOLERR_MASK) {
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DEBUG("[flash_write]: collision error\n");
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return COLLISION_ERROR;
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}
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if (FTFx->FSTAT & FTFx_FSTAT_MGSTAT0_MASK) {
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DEBUG("[flash_write]: runtime error\\n");
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return RUNTIME_ERROR;
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}
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DEBUG("[flash_write]: no error reported\n");
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return 0;
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}
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static int _verify_erased(uint32_t address, size_t len)
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{
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/* Ensures verifies are aligned */
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assert(!(address % FLASHPAGE_RAW_SECTION_ALIGNMENT));
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/* We verify FLASHPAGE_RAW_SECTION_ALIGNMENT Bytes at a time, we
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round up before adjusting to FLASHPAGE_RAW_SECTION_ALIGNMENT */
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uint32_t num = (len + (FLASHPAGE_RAW_SECTION_ALIGNMENT - 1)) /
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FLASHPAGE_RAW_SECTION_ALIGNMENT;
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/* Setup command and run */
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FCCOBx[0] = BYTES_JOIN_TO_WORD_1_3(FTFx_VERIFY_SECTION, address);
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FCCOBx[1] = BYTES_JOIN_TO_WORD_2_1_1(num, 0x00, 0xFF);
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_run_command();
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return _check_errors();
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}
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static int _sector_erase(uint32_t address)
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{
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/* Ensures erases are aligned */
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assert(!(address % FLASHPAGE_RAW_SECTION_ALIGNMENT));
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/* Setup command and run */
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FCCOBx[0] = BYTES_JOIN_TO_WORD_1_3(FTFx_ERASE_SECTOR, address);
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_run_command();
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return _check_errors();
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}
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static int _flash_write(uint32_t address, uint32_t *data)
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{
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/* Setup command and run */
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FCCOBx[1] = *data++;
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if (FLASHPAGE_RAW_BLOCKSIZE == 8U) {
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FCCOBx[2] = *data;
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FCCOBx[0] = BYTES_JOIN_TO_WORD_1_3(FTFx_PROGRAM_PHRASE, address);
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}
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else {
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FCCOBx[0] = BYTES_JOIN_TO_WORD_1_3(FTFx_PROGRAM_LONGWORD, address);
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}
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_run_command();
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return _check_errors();
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}
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void flashpage_write_raw(void *target_addr, const void *data, size_t len)
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{
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/* Assert multiples of FLASHPAGE_RAW_BLOCKSIZE are written and no less of
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that length. */
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assert(!(len % FLASHPAGE_RAW_BLOCKSIZE));
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/* Ensure writes are aligned */
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assert(!(((unsigned)target_addr % FLASHPAGE_RAW_ALIGNMENT) ||
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((unsigned)data % FLASHPAGE_RAW_ALIGNMENT)));
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/* Ensure the length doesn't exceed the actual flash size */
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assert(((unsigned)target_addr + len) <
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(CPU_FLASH_BASE + (FLASHPAGE_SIZE * FLASHPAGE_NUMOF)) + 1);
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#ifdef FLASHPAGE_RAW_PHRASE
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const uint64_t *data_addr = data;
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uint64_t *dst = target_addr;
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#else
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const uint32_t *data_addr = data;
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uint32_t *dst = target_addr;
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#endif
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/* Verify sector was previously erased */
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if (_verify_erased((uint32_t)dst, len) != NO_ERROR) {
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DEBUG("[flash-write]: ERROR sector not in erased state\n");
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return;
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}
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/* Write to flash FLASHPAGE_RAW_BLOCKSIZE bytes at a time */
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for (size_t i = 0; i < (len / FLASHPAGE_RAW_BLOCKSIZE); i++) {
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_flash_write((uint32_t) dst++, (uint32_t *) data_addr++);
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}
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}
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void flashpage_write(int page, const void *data)
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{
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assert(page < (int)FLASHPAGE_NUMOF);
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uint32_t *page_addr = flashpage_addr(page);
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/* ERASE sector */
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_sector_erase((uint32_t)page_addr);
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/* WRITE sector */
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if (data != NULL) {
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flashpage_write_raw(page_addr, data, FLASHPAGE_SIZE);
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}
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}
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