2011-11-12 06:15:52 +00:00
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/*
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* This file is part of the Black Magic Debug project.
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*
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* Copyright (C) 2011 Black Sphere Technologies Ltd.
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* Written by Gareth McMullin <gareth@blacksphere.co.nz>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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/* This file implements STM32F4 target specific functions for detecting
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* the device, providing the XML memory map and Flash memory programming.
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*
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* Refereces:
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* ST doc - RM0090
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* Reference manual - STM32F405xx, STM32F407xx, STM32F415xx and STM32F417xx
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* advanced ARM-based 32-bit MCUs
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* ST doc - PM0081
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* Programming manual - STM32F40xxx and STM32F41xxx Flash programming
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* manual
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*/
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#include <stdlib.h>
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#include <string.h>
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#include "general.h"
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#include "adiv5.h"
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#include "target.h"
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#include "stm32_tgt.h"
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static int stm32f4_flash_erase(struct target_s *target, uint32_t addr, int len);
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static int stm32f4_flash_write_words(struct target_s *target, uint32_t dest, const uint32_t *src,
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int len);
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static const char stm32f4_driver_str[] = "STM32F4xx";
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static const char stm32f4_xml_memory_map[] = "<?xml version=\"1.0\"?>"
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/* "<!DOCTYPE memory-map "
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" PUBLIC \"+//IDN gnu.org//DTD GDB Memory Map V1.0//EN\""
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" \"http://sourceware.org/gdb/gdb-memory-map.dtd\">"*/
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"<memory-map>"
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" <memory type=\"flash\" start=\"0x8000000\" length=\"0x10000\">"
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" <property name=\"blocksize\">0x4000</property>"
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" </memory>"
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" <memory type=\"flash\" start=\"0x8010000\" length=\"0x10000\">"
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" <property name=\"blocksize\">0x10000</property>"
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" </memory>"
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" <memory type=\"flash\" start=\"0x8020000\" length=\"0xE0000\">"
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" <property name=\"blocksize\">0x20000</property>"
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" </memory>"
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" <memory type=\"ram\" start=\"0x20000000\" length=\"0x30000\"/>"
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2011-11-26 01:04:23 +00:00
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" <memory type=\"ram\" start=\"0x10000000\" length=\"0x10000\"/>"
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2011-11-12 06:15:52 +00:00
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"</memory-map>";
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/* Flash Program ad Erase Controller Register Map */
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#define FPEC_BASE 0x40023C00
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#define FLASH_ACR (FPEC_BASE+0x00)
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#define FLASH_KEYR (FPEC_BASE+0x04)
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#define FLASH_OPTKEYR (FPEC_BASE+0x08)
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#define FLASH_SR (FPEC_BASE+0x0C)
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#define FLASH_CR (FPEC_BASE+0x10)
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#define FLASH_OPTCR (FPEC_BASE+0x14)
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#define FLASH_CR_PG (1 << 0)
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#define FLASH_CR_SER (1 << 1)
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#define FLASH_CR_MER (1 << 2)
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#define FLASH_CR_PSIZE8 (0 << 8)
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#define FLASH_CR_PSIZE16 (1 << 8)
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#define FLASH_CR_PSIZE32 (2 << 8)
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#define FLASH_CR_PSIZE64 (3 << 8)
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#define FLASH_CR_STRT (1 << 16)
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#define FLASH_CR_EOPIE (1 << 24)
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#define FLASH_CR_ERRIE (1 << 25)
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#define FLASH_CR_STRT (1 << 16)
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#define FLASH_SR_BSY (1 << 16)
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#define KEY1 0x45670123
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#define KEY2 0xCDEF89AB
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#define SR_ERROR_MASK 0xF2
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#define SR_EOP 0x01
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/* This routine is uses word access. Only usable on target voltage >2.7V */
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uint16_t stm32f4_flash_write_stub[] = {
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// _start:
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0x480a, // ldr r0, [pc, #40] // _flashbase
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0x490b, // ldr r1, [pc, #44] // _addr
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0x467a, // mov r2, pc
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0x3230, // adds r2, #48
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0x4b0a, // ldr r3, [pc, #36] // _size
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0x4d07, // movs r5, #1
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// _next:
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0xb153, // cbz r3, _done
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0x6105, // str r5, [r0, #16]
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0x6814, // ldr r4, [r2]
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0x600c, // str r4, [r1]
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// _wait:
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0x89c4, // ldrb r4, [r0, #14]
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0x2601, // movs r6, #1
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0x4234, // tst r4, r6
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0xd1fb, // bne _wait
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0x3b04, // subs r3, #4
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0x3104, // adds r1, #4
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0x3204, // adds r2, #4
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0xe7f3, // b _next
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// _done:
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0xbe00, // bkpt
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0x0000,
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// .org 0x28
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//_cr:
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0x0201, 0x0000, //.word 0x00000201 (Value to write to FLASH_CR) */
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// _flashbase:
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0x2000, 0x4002, // .word 0x40022000 (FPEC_BASE)
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// _addr:
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// 0x0000, 0x0000,
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// _size:
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// 0x0000, 0x0000,
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// _data:
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// ...
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};
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int stm32f4_probe(struct target_s *target)
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{
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struct target_ap_s *t = (void *)target;
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uint32_t idcode;
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idcode = adiv5_ap_mem_read(t->ap, 0xE0042000);
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switch(idcode & 0xFFF) {
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case 0x411: /* Documented to be 0x413! This is what I read... */
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case 0x413:
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target->driver = stm32f4_driver_str;
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target->xml_mem_map = stm32f4_xml_memory_map;
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target->flash_erase = stm32f4_flash_erase;
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target->flash_write_words = stm32f4_flash_write_words;
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return 0;
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}
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return -1;
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}
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static int stm32f4_flash_erase(struct target_s *target, uint32_t addr, int len)
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{
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struct target_ap_s *t = (void *)target;
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uint16_t sr;
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uint32_t cr;
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uint32_t pagesize;
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addr &= 0x07E00000;
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/* Enable FPEC controller access */
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adiv5_ap_mem_write(t->ap, FLASH_KEYR, KEY1);
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adiv5_ap_mem_write(t->ap, FLASH_KEYR, KEY2);
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while(len) {
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if (addr < 0x10000) { /* Sector 0..3 */
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cr = (addr >> 11);
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pagesize = 0x4000;
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} else if (addr < 0x20000) { /* Sector 4 */
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cr = (4 << 3);
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pagesize = 0x10000;
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} else if (addr < 0x100000) { /* Sector 5..11 */
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cr = (((addr - 0x20000) >> 14) + 0x28);
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pagesize = 0x20000;
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} else { /* Sector > 11 ?? */
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return -1;
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}
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cr |= FLASH_CR_EOPIE | FLASH_CR_ERRIE | FLASH_CR_SER;
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/* Flash page erase instruction */
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adiv5_ap_mem_write(t->ap, FLASH_CR, cr);
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/* write address to FMA */
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adiv5_ap_mem_write(t->ap, FLASH_CR, cr | FLASH_CR_STRT);
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/* Read FLASH_SR to poll for BSY bit */
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while(adiv5_ap_mem_read(t->ap, FLASH_SR) & FLASH_SR_BSY)
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if(target_check_error(target))
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return -1;
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len -= pagesize;
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addr += pagesize;
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}
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/* Check for error */
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sr = adiv5_ap_mem_read(t->ap, FLASH_SR);
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if(sr & SR_ERROR_MASK)
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return -1;
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return 0;
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}
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static int stm32f4_flash_write_words(struct target_s *target, uint32_t dest,
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const uint32_t *src, int len)
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{
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struct target_ap_s *t = (void *)target;
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uint32_t data[(len>>2)+2];
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uint16_t sr;
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/* Construct data buffer used by stub */
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data[0] = dest & 0xFFFFFFFE;
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data[1] = len & 0xFFFFFFFE;
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memcpy(&data[2], src, len);
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/* Write stub and data to target ram and set PC */
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target_mem_write_words(target, 0x20000000, (void*)stm32f4_flash_write_stub, 0x2C);
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target_mem_write_words(target, 0x20000030, data, len + 8);
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target_pc_write(target, 0x20000000);
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if(target_check_error(target))
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return -1;
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/* Execute the stub */
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target_halt_resume(target, 0);
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while(!target_halt_wait(target));
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/* Check for error */
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sr = adiv5_ap_mem_read(t->ap, FLASH_SR);
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if(sr & SR_ERROR_MASK)
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return -1;
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return 0;
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}
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