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//
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// Created by MightyPork on 2017/11/26.
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//
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#include <utils/avrlibc.h>
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#include "platform.h"
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#include "utils/hexdump.h"
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#include "settings.h"
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#include "unit_registry.h"
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#include "system_settings.h"
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#include "utils/str_utils.h"
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// pre-declarations
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static void savebuf_flush(PayloadBuilder *pb, bool final);
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static bool savebuf_ovhandler(PayloadBuilder *pb, uint32_t more);
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// This is the first entry in a valid config.
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// Change with each breaking change to force config reset.
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#define CONFIG_MARKER 0xA55D
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void settings_load(void)
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{
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uint8_t *buffer = (uint8_t *) SETTINGS_FLASH_ADDR;
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#if DEBUG_FLASH_WRITE
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dbg("reading @ %p", (void*)SETTINGS_FLASH_ADDR);
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hexDump("Flash", buffer, 64);
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#endif
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PayloadParser pp = pp_start(buffer, SETTINGS_BLOCK_SIZE, NULL);
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// Check the integrity marker
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if (pp_u16(&pp) != CONFIG_MARKER) {
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dbg("Config not valid!");
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// Save for next run
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settings_save();
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return;
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}
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uint8_t version = pp_u8(&pp); // top level settings format version
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{ // Settings
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(void)version; // Conditional choices based on version
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// System section
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if (!systemsettings_load(&pp)) {
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dbg("!! System settings failed to load");
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return;
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}
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if (!ureg_load_units(&pp)) {
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dbg("!! Unit settings failed to load");
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return;
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}
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} // End settings
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dbg("System settings loaded OK");
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}
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static uint8_t save_buffer[FLASH_SAVE_BUF_LEN];
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static uint32_t save_addr;
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#if DEBUG_FLASH_WRITE
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#define fls_printf(fmt, ...) PRINTF(fmt, ##__VA_ARGS__)
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#else
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#define fls_printf(fmt, ...) do {} while (0)
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#endif
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/**
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* Save buffer overflow handler.
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* This should flush whatever is in the buffer and let CWPack continue
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*
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* @param pb - buffer
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* @param more - how many more bytes are needed (this is meant for realloc / buffer expanding)
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* @return - success code
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*/
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static bool savebuf_ovhandler(PayloadBuilder *pb, uint32_t more)
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{
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if (more > FLASH_SAVE_BUF_LEN) return false;
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savebuf_flush(pb, false);
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return true;
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}
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/** Save settings to flash */
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void settings_save(void)
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{
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HAL_StatusTypeDef hst;
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PayloadBuilder pb = pb_start(save_buffer, FLASH_SAVE_BUF_LEN, savebuf_ovhandler);
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save_addr = SETTINGS_FLASH_ADDR;
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fls_printf("--- Starting flash write... ---\r\n");
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hst = HAL_FLASH_Unlock();
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assert_param(hst == HAL_OK);
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{
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fls_printf("ERASE flash pages for settings storage...\r\n");
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// We have to first erase the pages
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FLASH_EraseInitTypeDef erase;
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#if PLAT_FLASHBANKS
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erase.Banks = FLASH_BANK_1; // TODO ?????
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#endif
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#if defined(GEX_PLAT_F407_DISCOVERY)
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// specialty for F4 with too much flash
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erase.NbSectors = 1;
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erase.Sector = SETTINGS_FLASH_SECTOR;
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erase.TypeErase = FLASH_TYPEERASE_SECTORS;
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erase.VoltageRange = FLASH_VOLTAGE_RANGE_3;
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erase.Banks = FLASH_BANK_1; // unused for sector erase
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#else
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erase.NbPages = SETTINGS_BLOCK_SIZE/FLASH_PAGE_SIZE;
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erase.PageAddress = SETTINGS_FLASH_ADDR;
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erase.TypeErase = FLASH_TYPEERASE_PAGES;
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#endif
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uint32_t pgerror = 0;
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hst = HAL_FLASHEx_Erase(&erase, &pgerror);
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assert_param(pgerror == 0xFFFFFFFFU);
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assert_param(hst == HAL_OK);
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// and now we can start writing...
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fls_printf("Beginning settings collect\r\n");
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// Marker that this is a valid save
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pb_u16(&pb, CONFIG_MARKER);
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pb_u8(&pb, 0); // Settings format version
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{ // Settings
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fls_printf("Saving system settings\r\n");
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systemsettings_save(&pb);
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fls_printf("Saving units\r\n");
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ureg_save_units(&pb);
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} // End settings
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fls_printf("Final flush\r\n");
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savebuf_flush(&pb, true);
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}
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fls_printf("Locking flash...\r\n");
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hst = HAL_FLASH_Lock();
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assert_param(hst == HAL_OK);
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fls_printf("--- Flash done ---\r\n");
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#if DEBUG_FLASH_WRITE
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dbg("written @ %p", (void*)SETTINGS_FLASH_ADDR);
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hexDump("Flash", (void*)SETTINGS_FLASH_ADDR, 64);
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#endif
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}
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/**
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* Flush the save buffer to flash, moving leftovers from uneven half-words
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* to the beginning and adjusting the CWPack curent pointer accordingly.
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*
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* @param ctx - pack context
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* @param final - if true, flush uneven leftovers; else move them to the beginning and keep for next call.
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*/
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static void savebuf_flush(PayloadBuilder *pb, bool final)
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{
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// TODO this might be buggy, was not tested cross-boundary yet
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// TODO remove those printf's after verifying correctness
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uint32_t bytes = (uint32_t) pb_length(pb);
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// Dump what we're flushing
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fls_printf("Flush: ");
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for (uint32_t i = 0; i < bytes; i++) {
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fls_printf("%02X ", save_buffer[i]);
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}
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fls_printf("\r\n");
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uint32_t halfwords = bytes >> 1;
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uint32_t remain = bytes & 1; // how many bytes won't be programmed
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fls_printf("Halfwords: %d, Remain: %d, last? %d\r\n", (int)halfwords, (int)remain, final);
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uint16_t *hwbuf = (void*) &save_buffer[0];
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for (; halfwords > 0; halfwords--) {
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uint16_t hword = *hwbuf++;
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fls_printf("%04X ", hword);
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HAL_StatusTypeDef res = HAL_FLASH_Program(FLASH_TYPEPROGRAM_HALFWORD, save_addr, hword);
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assert_param(HAL_OK == res);
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save_addr += 2; // advance
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}
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// rewind the context buffer
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pb->current = pb->start;
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if (remain) {
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// We have an odd byte left to write
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if (final) {
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// We're done writing, this is the last call. Append the last byte to flash.
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uint16_t hword = save_buffer[bytes-1];
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fls_printf("& %02X ", hword);
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HAL_StatusTypeDef res = HAL_FLASH_Program(FLASH_TYPEPROGRAM_HALFWORD, save_addr, hword);
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assert_param(HAL_OK == res);
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} else {
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// Move the leftover to the beginning of the buffer for next call.
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save_buffer[0] = save_buffer[bytes-1];
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pb->current++;
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}
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}
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fls_printf("\r\n");
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}
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// ---------------------------------------------------------------
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static void ini_preamble(IniWriter *iw, const char *filename)
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{
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// File header
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iw_hdr_comment(iw, filename);
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iw_hdr_comment(iw, "GEX v%s on %s", GEX_VERSION, GEX_PLATFORM);
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iw_hdr_comment(iw, "built %s at %s", __DATE__, __TIME__);
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iw_cmt_newline(iw);
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iw_comment(iw, "Overwrite this file to change settings.");
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iw_comment(iw, "Close the LOCK jumper to save them to Flash.");
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}
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/**
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* Write system settings to INI (without section)
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*/
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void settings_build_units_ini(IniWriter *iw)
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{
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ini_preamble(iw, "UNITS.INI");
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ureg_build_ini(iw);
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}
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/**
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* Write system settings to INI (without section)
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*/
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void settings_build_system_ini(IniWriter *iw)
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{
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ini_preamble(iw, "SYSTEM.INI");
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systemsettings_build_ini(iw);
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}
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uint32_t settings_get_units_ini_len(void)
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{
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// this writer is configured to skip everything, so each written byte will decrement the skip count
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IniWriter iw = iw_init(NULL, 0xFFFFFFFF, 1); // count is never used, we use 1 because 0 means we're full
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settings_build_units_ini(&iw);
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// now we just check how many bytes were skipped
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return 0xFFFFFFFF - iw.skip;
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}
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uint32_t settings_get_system_ini_len(void)
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{
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// same as above
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IniWriter iw = iw_init(NULL, 0xFFFFFFFF, 1);
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settings_build_system_ini(&iw);
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return 0xFFFFFFFF - iw.skip;
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}
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// ---------------------------------------------------------------
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void settings_load_ini_begin(void)
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{
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SystemSettings.modified = true;
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SystemSettings.pristine = true;
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}
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void settings_load_ini_key(const char *restrict section, const char *restrict key, const char *restrict value)
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{
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dbg("[%s] %s = %s", section, key, value);
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static char namebuf[INI_KEY_MAX];
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if (streq(section, "SYSTEM")) {
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if (SystemSettings.pristine) {
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SystemSettings.pristine = false;
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systemsettings_loadDefaults();
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}
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// system is always at the top
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systemsettings_load_ini(key, value);
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}
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else if (streq(section, "UNITS")) {
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if (SystemSettings.pristine) {
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SystemSettings.pristine = false;
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ureg_remove_all_units();
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}
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// this will always come before individual units config
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// install or tear down units as described by the config
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ureg_instantiate_by_ini(key, value);
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}
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else {
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// not a standard section, may be some unit config
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// all unit sections contain the colon character [TYPE:NAME@CALLSIGN]
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const char *nameptr = strchr(section, ':');
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const char *csptr = strchr(section, '@');
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if (nameptr && csptr) {
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strncpy(namebuf, nameptr+1, csptr - nameptr - 1);
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uint8_t cs = (uint8_t) avr_atoi(csptr + 1);
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ureg_load_unit_ini_key(namebuf, key, value, cs);
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} else {
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dbg("! Bad config key: [%s] %s = %s", section, key, value);
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}
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}
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}
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void settings_load_ini_end(void)
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{
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if (!ureg_finalize_all_init()) {
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dbg("Some units failed to init!!");
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}
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}
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