mirror of
https://github.com/armel/uv-k1-k5v3-firmware-custom.git
synced 2026-10-02 11:08:20 +00:00
160 lines
6.1 KiB
C
160 lines
6.1 KiB
C
/* Copyright 2025 muzkr https://github.com/muzkr
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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/**
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* -----------------------------------
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* Note:
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*
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* Write operations are inherently inefficient; use this module very wisely!!
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*
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* ------------------------------------
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*/
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#include "driver/eeprom.h"
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#include "driver/py25q16.h"
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#include <string.h>
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#define HOLE_ADDR 0x1000000
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typedef struct
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{
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uint32_t PY25Q16_Addr; // Sector address
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uint16_t EEPROM_Addr;
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uint16_t Size;
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} AddrMapping_t;
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#define _MK_MAPPING(PY25Q16_Addr, EEPROM_From, EEPROM_To) {PY25Q16_Addr, EEPROM_From, EEPROM_To - EEPROM_From}
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static const AddrMapping_t ADDR_MAPPINGS[] = {
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_MK_MAPPING(0x000000, 0x000000, 0x001000), // 256 MR Freq * 16 Bytes (ex 0x000000)
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_MK_MAPPING(0x001000, 0x001000, 0x002000), // 256 MR Freq * 16 Bytes
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_MK_MAPPING(0x002000, 0x002000, 0x003000), // 256 MR Freq * 16 Bytes
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_MK_MAPPING(0x003000, 0x003000, 0x004000), // 256 MR Freq * 16 Bytes
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_MK_MAPPING(0x004000, 0x004000, 0x005000), // 256 MR Name * 16 Bytes (ex 0x00e000)
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_MK_MAPPING(0x005000, 0x005000, 0x006000), // 256 MR Name * 16 Bytes
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_MK_MAPPING(0x006000, 0x006000, 0x007000), // 256 MR Name * 16 Bytes
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_MK_MAPPING(0x007000, 0x007000, 0x008000), // 256 MR Name * 16 Bytes
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_MK_MAPPING(0x008000, 0x008000, 0x00886E), // 1024 MR + 7 VFO Attributes * 2 Bytes (ex 0x002000) 0x008000 -> 0x00880E
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// List name * 4 Bytes 0x00880E -> 0x00886E
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_MK_MAPPING(0x009000, 0x009000, 0x0090D6), // 14 VFO * 16 Bytes (ex 0x001000)
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_MK_MAPPING(0x00A000, 0x00A000, 0x00A170), // Settings * 16 Bytes (ex 0x004000) 0x00A000 -> 0x00A010
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// Settings * 16 Bytes (ex 0x005000) 0x00A010 -> 0x00A020
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// Settings FM * 8 Bytes (0x006000) 0x00A020 -> 0x00A028
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// MR FM * 128 Bytes (0x003000) 0x00A028 -> 0x00A0A8
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// Settings * 80 Bytes (0x007000) 0x00A0A8 -> 0x00A0F8
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// Settings * 56 Bytes (0x008000) 0x00A0F8 -> 0x00A130
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// Settings Scanlist * 8 Bytes (0x009000) 0x00A130 -> 0x00A138
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// Settings AES * 16 Bytes (0x00A000) 0x00A138 -> 0x00A148
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// Settings Spectrum * 8 Bytes 0x00A148 -> 0x00A150
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// Settings * 8 Bytes (0x00B000) 0x00A150 -> 0x00A158
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// Settings F4HWN * 8 Bytes (0x00C000) 0x00A158 -> 0x00A160
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// Settings Version * 16 Bytes 0x00A160 -> 0x00A170
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_MK_MAPPING(0x010000, 0x00B000, 0x00B200), // Calibration 512 Bytes!!!
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_MK_MAPPING(0x011000, 0x00C000, 0x00D000), // Boot Logo sector (4 KB):
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// [0x00..0x07] 8-byte header (reserved)
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// [0x08..0x407] 128x64 monochrome bitmap, 1024 Bytes
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// ST7565-native: 8 pages * 128 columns, column-major LSB-top
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// Not mapped, for documentation only (the EEPROM API uses 16-bit
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// addresses and could not reach a 32 KB window anyway):
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//
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// 0x1E0000 -> 0x1E8000: RX/TX append-only log * 32 KB / 8 sectors
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// (ENABLE_FEAT_F4HWN_RXTX_LOG, accessed directly
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// by app/rxtx_log.c, not through this layer)
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};
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static void AddrTranslate(uint16_t EEPROM_Addr, uint16_t Size, uint32_t *PY25Q16_Addr_out, uint16_t *Size_out, bool *End_out);
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void EEPROM_ReadBuffer(uint16_t Address, void *pBuffer, uint8_t Size)
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{
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while (Size)
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{
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uint32_t PY_Addr;
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uint16_t PY_Size;
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AddrTranslate(Address, Size, &PY_Addr, &PY_Size, NULL);
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if (PY_Addr >= HOLE_ADDR)
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{
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memset(pBuffer, 0xff, PY_Size);
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}
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else
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{
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PY25Q16_ReadBuffer(PY_Addr, pBuffer, PY_Size);
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}
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Address += PY_Size;
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pBuffer += PY_Size;
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Size -= PY_Size;
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}
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}
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void EEPROM_WriteBuffer(uint16_t Address, const void *pBuffer)
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{
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// Write 8 bytes!!
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uint16_t Size = 8;
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while (Size)
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{
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uint32_t PY_Addr;
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uint16_t PY_Size;
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bool AppendFlag;
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AddrTranslate(Address, Size, &PY_Addr, &PY_Size, &AppendFlag);
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if (PY_Addr < HOLE_ADDR)
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{
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PY25Q16_WriteBuffer(PY_Addr, pBuffer, PY_Size, AppendFlag);
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}
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Address += PY_Size;
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pBuffer += PY_Size;
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Size -= PY_Size;
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}
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}
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static void AddrTranslate(uint16_t EEPROM_Addr, uint16_t Size, uint32_t *PY25Q16_Addr_out, uint16_t *Size_out, bool *End_out)
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{
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const AddrMapping_t *p = NULL;
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for (uint32_t i = 0, N = sizeof(ADDR_MAPPINGS) / sizeof(AddrMapping_t); i < N; i++)
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{
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p = ADDR_MAPPINGS + i;
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if (p->EEPROM_Addr <= EEPROM_Addr && EEPROM_Addr < (p->EEPROM_Addr + p->Size))
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{
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goto HIT;
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}
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}
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*PY25Q16_Addr_out = HOLE_ADDR;
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*Size_out = Size;
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return;
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HIT:
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const uint16_t Off = EEPROM_Addr - p->EEPROM_Addr;
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const uint16_t Rem = p->Size - Off;
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if (Size > Rem)
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{
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Size = Rem;
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}
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*PY25Q16_Addr_out = HOLE_ADDR == p->PY25Q16_Addr ? HOLE_ADDR : (p->PY25Q16_Addr + Off);
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*Size_out = Size;
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if (End_out && HOLE_ADDR != p->PY25Q16_Addr)
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{
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*End_out = (Size == Rem);
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}
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}
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