mirror of
https://github.com/armel/uv-k1-k5v3-firmware-custom.git
synced 2026-10-02 11:08:20 +00:00
830 lines
22 KiB
C
830 lines
22 KiB
C
/* Copyright 2026
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*
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* Licensed under the Apache License, Version 2.0.
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*/
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#ifdef ENABLE_FEAT_F4HWN_RXTX_LOG
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#include <assert.h>
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#include <string.h>
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#include "app/generic.h"
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#include "app/rxtx_log.h"
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#include "audio.h"
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#include "driver/py25q16.h"
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#include "driver/st7565.h"
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#include "external/printf/printf.h"
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#include "frequencies.h"
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#include "misc.h"
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#include "ui/helper.h"
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#include "ui/ui.h"
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#define RXTX_LOG_FLASH_BASE 0x1E0000u
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#define RXTX_LOG_FLASH_SECTOR_SIZE 0x1000u
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#define RXTX_LOG_FLASH_SECTOR_COUNT 8u
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#define RXTX_LOG_FLASH_SIZE (RXTX_LOG_FLASH_SECTOR_SIZE * RXTX_LOG_FLASH_SECTOR_COUNT)
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#define RXTX_LOG_FLASH_END (RXTX_LOG_FLASH_BASE + RXTX_LOG_FLASH_SIZE)
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#define RXTX_LOG_SLOT_COUNT (RXTX_LOG_FLASH_SIZE / sizeof(RXTX_LogFlashEntry_t))
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#define RXTX_LOG_VIEW_CACHE_COUNT 7u
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#define RXTX_LOG_VIEW_SCAN_BUDGET 8u
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#define RXTX_LOG_VIEW_ANCHOR_STRIDE 16u
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#define RXTX_LOG_VIEW_ANCHOR_COUNT ((RXTX_LOG_VISIBLE_COUNT + RXTX_LOG_VIEW_ANCHOR_STRIDE - 1u) / RXTX_LOG_VIEW_ANCHOR_STRIDE)
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#define RXTX_LOG_ENTRY_COMMIT 0xA5u
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#define RXTX_LOG_CHANNEL_NONE 0xFFFFu
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#define RXTX_LOG_FLAG_TX (1u << 0)
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#define RXTX_LOG_FLAG_NAMED (1u << 1)
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#define RXTX_LOG_FLAG_MONITOR (1u << 2)
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#define RXTX_LOG_FLAG_SESSION (1u << 3)
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#define RXTX_LOG_FILTER_ALL 0u
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#define RXTX_LOG_FILTER_RX 1u
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#define RXTX_LOG_FILTER_TX 2u
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typedef struct __attribute__((packed)) {
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uint32_t sequence;
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uint32_t frequency;
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uint16_t durationSeconds;
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uint16_t channel;
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uint8_t flags;
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char name[RXTX_LOG_NAME_LEN];
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uint8_t reserved[7];
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uint8_t crc;
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uint8_t commit;
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} RXTX_LogFlashEntry_t;
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static_assert(sizeof(RXTX_LogFlashEntry_t) == 32);
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static_assert(RXTX_LOG_VIEW_ANCHOR_COUNT <= 32);
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static RXTX_LogEntry_t gViewCache[RXTX_LOG_VIEW_CACHE_COUNT];
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static uint16_t gViewCacheStart;
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static uint8_t gViewCacheCount;
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static uint8_t gViewCacheFilter;
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static bool gViewCacheHasOlder;
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static bool gViewCacheComplete;
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static bool gViewScanActive;
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static uint16_t gViewScanSlot;
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static uint16_t gViewScanScanned;
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static uint16_t gViewScanSkip;
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static uint16_t gViewScanIndex;
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static uint16_t gViewAnchorSlots[RXTX_LOG_VIEW_ANCHOR_COUNT];
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static uint32_t gViewAnchorMask;
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static uint8_t gViewAnchorFilter;
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static bool gClearActive;
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static uint8_t gClearSector;
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static bool gMenuClearHandled;
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static bool gLogHasTraffic;
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static uint32_t gNextSequence;
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static uint32_t gNextFlashAddress;
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static bool gSessionActive;
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static uint8_t gSessionFlags;
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static uint32_t gSessionFrequency;
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static uint16_t gSessionChannel;
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static uint16_t gSessionTicks500ms;
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static char gSessionName[RXTX_LOG_NAME_LEN + 1];
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static uint16_t gLogCursor;
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static uint8_t gLogFilter;
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static uint8_t RXTX_LOG_Crc8(const void *data, uint16_t size)
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{
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const uint8_t *p = (const uint8_t *)data;
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uint8_t crc = 0x5Au;
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while (size-- > 0) {
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crc ^= *p++;
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for (uint8_t bit = 0; bit < 8; bit++) {
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crc = (crc & 0x80u) ? (uint8_t)((crc << 1) ^ 0x31u) : (uint8_t)(crc << 1);
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}
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}
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return crc;
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}
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static bool RXTX_LOG_IsValidFlashEntry(const RXTX_LogFlashEntry_t *entry)
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{
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if (entry->commit != RXTX_LOG_ENTRY_COMMIT ||
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entry->sequence == 0xFFFFFFFFu ||
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entry->frequency == 0xFFFFFFFFu)
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return false;
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return entry->crc == RXTX_LOG_Crc8(entry, sizeof(*entry) - 2);
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}
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static bool RXTX_LOG_IsTx(const RXTX_LogEntry_t *entry)
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{
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return (entry->flags & RXTX_LOG_FLAG_TX) != 0;
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}
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static bool RXTX_LOG_IsSessionMarker(const RXTX_LogEntry_t *entry)
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{
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return (entry->flags & RXTX_LOG_FLAG_SESSION) != 0;
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}
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static bool RXTX_LOG_IsTrafficFlags(uint8_t flags)
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{
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return (flags & RXTX_LOG_FLAG_SESSION) == 0;
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}
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static bool RXTX_LOG_MatchesFlags(uint8_t flags)
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{
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if ((flags & RXTX_LOG_FLAG_SESSION) != 0)
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return gLogFilter == RXTX_LOG_FILTER_ALL;
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if (gLogFilter == RXTX_LOG_FILTER_RX)
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return (flags & RXTX_LOG_FLAG_TX) == 0;
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if (gLogFilter == RXTX_LOG_FILTER_TX)
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return (flags & RXTX_LOG_FLAG_TX) != 0;
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return true;
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}
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const char *RXTX_LOG_GetFilterName(void)
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{
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if (gLogFilter == RXTX_LOG_FILTER_RX)
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return "RX";
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if (gLogFilter == RXTX_LOG_FILTER_TX)
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return "TX";
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return "ALL";
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}
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static void RXTX_LOG_SanitizeName(char *dst, const char *src)
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{
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uint8_t i;
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for (i = 0; i < RXTX_LOG_NAME_LEN; i++) {
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char c = src ? src[i] : 0;
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if (c < 32 || c > 126)
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break;
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dst[i] = c;
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}
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while (i > 0 && dst[i - 1] == ' ')
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i--;
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dst[i] = 0;
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}
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static void RXTX_LOG_CopyFromFlash(RXTX_LogEntry_t *dst, const RXTX_LogFlashEntry_t *src)
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{
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dst->sequence = src->sequence;
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dst->frequency = src->frequency;
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dst->durationSeconds = src->durationSeconds;
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dst->channel = src->channel;
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dst->flags = src->flags;
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memcpy(dst->name, src->name, RXTX_LOG_NAME_LEN);
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dst->name[RXTX_LOG_NAME_LEN] = 0;
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}
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static uint32_t RXTX_LOG_SlotToAddress(uint16_t slot)
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{
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return RXTX_LOG_FLASH_BASE + ((uint32_t)slot * sizeof(RXTX_LogFlashEntry_t));
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}
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static uint16_t RXTX_LOG_AddressToSlot(uint32_t address)
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{
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return (uint16_t)((address - RXTX_LOG_FLASH_BASE) / sizeof(RXTX_LogFlashEntry_t));
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}
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static uint16_t RXTX_LOG_PreviousSlot(uint16_t slot)
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{
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return slot == 0 ? (uint16_t)(RXTX_LOG_SLOT_COUNT - 1u) : (uint16_t)(slot - 1u);
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}
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static uint16_t RXTX_LOG_NextSlot(uint16_t slot)
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{
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return (uint16_t)(slot + 1u) >= RXTX_LOG_SLOT_COUNT ? 0 : (uint16_t)(slot + 1u);
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}
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static void RXTX_LOG_InvalidateViewAnchors(void)
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{
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gViewAnchorMask = 0;
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gViewAnchorFilter = 0xFFu;
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}
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static void RXTX_LOG_EnsureViewAnchors(void)
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{
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if (gViewAnchorFilter == gLogFilter)
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return;
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gViewAnchorMask = 0;
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gViewAnchorFilter = gLogFilter;
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}
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static void RXTX_LOG_RecordViewAnchor(uint16_t indexFromNewest, uint16_t slot)
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{
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if ((indexFromNewest % RXTX_LOG_VIEW_ANCHOR_STRIDE) != 0)
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return;
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const uint16_t anchor = indexFromNewest / RXTX_LOG_VIEW_ANCHOR_STRIDE;
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if (anchor >= RXTX_LOG_VIEW_ANCHOR_COUNT)
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return;
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gViewAnchorSlots[anchor] = slot;
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gViewAnchorMask |= (uint32_t)(1u << anchor);
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}
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static bool RXTX_LOG_FindViewAnchor(uint16_t indexFromNewest, uint16_t *anchorIndex, uint16_t *slot)
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{
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uint16_t anchor = indexFromNewest / RXTX_LOG_VIEW_ANCHOR_STRIDE;
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if (anchor >= RXTX_LOG_VIEW_ANCHOR_COUNT)
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anchor = RXTX_LOG_VIEW_ANCHOR_COUNT - 1u;
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do {
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if ((gViewAnchorMask & (uint32_t)(1u << anchor)) != 0) {
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*anchorIndex = (uint16_t)(anchor * RXTX_LOG_VIEW_ANCHOR_STRIDE);
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*slot = gViewAnchorSlots[anchor];
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return true;
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}
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} while (anchor-- > 0);
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return false;
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}
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static void RXTX_LOG_InvalidateViewCache(void)
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{
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gViewCacheStart = 0xFFFFu;
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gViewCacheCount = 0;
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gViewCacheFilter = 0xFFu;
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gViewCacheHasOlder = false;
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gViewCacheComplete = false;
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gViewScanActive = false;
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RXTX_LOG_InvalidateViewAnchors();
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}
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static void RXTX_LOG_NextFilter(void)
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{
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gLogFilter++;
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if (gLogFilter > RXTX_LOG_FILTER_TX)
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gLogFilter = RXTX_LOG_FILTER_ALL;
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gLogCursor = 0;
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RXTX_LOG_InvalidateViewCache();
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gUpdateStatus = true;
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gUpdateDisplay = true;
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}
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static void RXTX_LOG_StartClear(void)
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{
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if (gClearActive)
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return;
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gClearActive = true;
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gClearSector = 0;
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gSessionActive = false;
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gLogCursor = 0;
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gLogHasTraffic = false;
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gNextSequence = 0;
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gNextFlashAddress = RXTX_LOG_FLASH_BASE;
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RXTX_LOG_InvalidateViewCache();
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}
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static void RXTX_LOG_StepClear(void)
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{
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if (!gClearActive)
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return;
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PY25Q16_SectorErase(RXTX_LOG_FLASH_BASE + ((uint32_t)gClearSector * RXTX_LOG_FLASH_SECTOR_SIZE));
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gClearSector++;
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if (gClearSector >= RXTX_LOG_FLASH_SECTOR_COUNT) {
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gClearActive = false;
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gClearSector = 0;
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gLogHasTraffic = false;
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gNextSequence = 0;
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gNextFlashAddress = RXTX_LOG_FLASH_BASE;
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RXTX_LOG_InvalidateViewCache();
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}
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}
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static uint16_t RXTX_LOG_PageStart(uint16_t indexFromNewest)
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{
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if (indexFromNewest >= RXTX_LOG_VISIBLE_COUNT)
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indexFromNewest = RXTX_LOG_VISIBLE_COUNT - 1u;
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return indexFromNewest;
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}
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static void RXTX_LOG_StepViewCacheScan(void)
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{
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uint8_t budget = RXTX_LOG_VIEW_SCAN_BUDGET;
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while (gViewScanActive && budget-- > 0 && gViewScanScanned < RXTX_LOG_SLOT_COUNT) {
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RXTX_LogFlashEntry_t flashEntry;
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gViewScanSlot = RXTX_LOG_PreviousSlot(gViewScanSlot);
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gViewScanScanned++;
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PY25Q16_ReadBuffer(RXTX_LOG_SlotToAddress(gViewScanSlot), &flashEntry, sizeof(flashEntry));
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if (!RXTX_LOG_IsValidFlashEntry(&flashEntry) ||
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!RXTX_LOG_MatchesFlags(flashEntry.flags))
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continue;
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RXTX_LOG_RecordViewAnchor(gViewScanIndex, gViewScanSlot);
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if (gViewScanSkip > 0) {
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gViewScanSkip--;
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gViewScanIndex++;
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continue;
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}
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if (gViewCacheCount >= RXTX_LOG_VIEW_CACHE_COUNT) {
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gViewCacheHasOlder = true;
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gViewScanActive = false;
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gViewCacheComplete = true;
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break;
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}
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RXTX_LOG_CopyFromFlash(&gViewCache[gViewCacheCount], &flashEntry);
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gViewCacheCount++;
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gViewScanIndex++;
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if (gViewCacheCount >= RXTX_LOG_VIEW_CACHE_COUNT) {
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gViewCacheHasOlder = (uint16_t)(gViewCacheStart + gViewCacheCount) < RXTX_LOG_VISIBLE_COUNT;
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gViewScanActive = false;
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gViewCacheComplete = true;
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break;
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}
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}
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if (gViewScanScanned >= RXTX_LOG_SLOT_COUNT) {
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gViewScanActive = false;
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gViewCacheComplete = true;
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}
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}
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static void RXTX_LOG_StartViewCacheScan(uint16_t start)
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{
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uint16_t anchorIndex;
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uint16_t anchorSlot;
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start = RXTX_LOG_PageStart(start);
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RXTX_LOG_EnsureViewAnchors();
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gViewCacheStart = start;
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gViewCacheCount = 0;
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gViewCacheFilter = gLogFilter;
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gViewCacheHasOlder = false;
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gViewCacheComplete = false;
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gViewScanActive = false;
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if (gNextSequence == 0) {
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gViewCacheComplete = true;
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return;
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}
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if (RXTX_LOG_FindViewAnchor(start, &anchorIndex, &anchorSlot)) {
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gViewScanSlot = RXTX_LOG_NextSlot(anchorSlot);
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gViewScanSkip = start - anchorIndex;
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gViewScanIndex = anchorIndex;
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} else {
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gViewScanSlot = RXTX_LOG_AddressToSlot(gNextFlashAddress);
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gViewScanSkip = start;
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gViewScanIndex = 0;
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}
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gViewScanScanned = 0;
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gViewScanActive = true;
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}
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static bool RXTX_LOG_ViewCacheCovers(uint16_t indexFromNewest)
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{
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return gViewCacheFilter == gLogFilter &&
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indexFromNewest >= gViewCacheStart &&
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indexFromNewest < (uint16_t)(gViewCacheStart + gViewCacheCount);
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}
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static bool RXTX_LOG_SlotIsBlank(uint32_t address)
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{
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RXTX_LogFlashEntry_t entry;
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PY25Q16_ReadBuffer(address, &entry, sizeof(entry));
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const uint8_t *p = (const uint8_t *)&entry;
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for (uint8_t i = 0; i < sizeof(entry); i++) {
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if (p[i] != 0xFFu)
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return false;
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}
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return true;
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}
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static void RXTX_LOG_PrepareNextSlot(void)
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{
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if (gNextFlashAddress >= RXTX_LOG_FLASH_END)
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gNextFlashAddress = RXTX_LOG_FLASH_BASE;
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if (!RXTX_LOG_SlotIsBlank(gNextFlashAddress)) {
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if ((gNextFlashAddress % RXTX_LOG_FLASH_SECTOR_SIZE) != 0) {
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gNextFlashAddress += RXTX_LOG_FLASH_SECTOR_SIZE - (gNextFlashAddress % RXTX_LOG_FLASH_SECTOR_SIZE);
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if (gNextFlashAddress >= RXTX_LOG_FLASH_END)
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gNextFlashAddress = RXTX_LOG_FLASH_BASE;
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}
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if (!RXTX_LOG_SlotIsBlank(gNextFlashAddress)) {
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const uint32_t sector = gNextFlashAddress - (gNextFlashAddress % RXTX_LOG_FLASH_SECTOR_SIZE);
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PY25Q16_SectorErase(sector);
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}
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}
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}
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static void RXTX_LOG_AdvanceFlashAddress(void)
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{
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gNextFlashAddress += sizeof(RXTX_LogFlashEntry_t);
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if (gNextFlashAddress >= RXTX_LOG_FLASH_END)
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gNextFlashAddress = RXTX_LOG_FLASH_BASE;
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}
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static uint32_t RXTX_LOG_WriteEntry(const RXTX_LogEntry_t *src)
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{
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RXTX_LogFlashEntry_t entry;
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uint8_t commit = RXTX_LOG_ENTRY_COMMIT;
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memset(&entry, 0xFF, sizeof(entry));
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entry.sequence = src->sequence;
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entry.frequency = src->frequency;
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entry.durationSeconds = src->durationSeconds;
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entry.channel = src->channel;
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entry.flags = src->flags;
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memcpy(entry.name, src->name, RXTX_LOG_NAME_LEN);
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entry.crc = RXTX_LOG_Crc8(&entry, sizeof(entry) - 2);
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RXTX_LOG_PrepareNextSlot();
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const uint32_t address = gNextFlashAddress;
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PY25Q16_WriteBuffer(gNextFlashAddress, &entry, sizeof(entry), false);
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PY25Q16_WriteBuffer(gNextFlashAddress + sizeof(entry) - 1u, &commit, 1, false);
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RXTX_LOG_AdvanceFlashAddress();
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return address;
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}
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static void RXTX_LOG_WriteSessionMarker(void)
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{
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RXTX_LogEntry_t entry;
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memset(&entry, 0, sizeof(entry));
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entry.sequence = gNextSequence++;
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entry.channel = RXTX_LOG_CHANNEL_NONE;
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entry.flags = RXTX_LOG_FLAG_SESSION;
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RXTX_LOG_WriteEntry(&entry);
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RXTX_LOG_InvalidateViewCache();
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}
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static void RXTX_LOG_EnsureViewCache(void)
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{
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const uint16_t pageStart = RXTX_LOG_PageStart(gLogCursor);
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if (RXTX_LOG_ViewCacheCovers(gLogCursor) &&
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gViewCacheStart == pageStart)
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return;
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if (gViewScanActive &&
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gViewCacheFilter == gLogFilter &&
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gViewCacheStart == pageStart)
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return;
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if (gViewCacheComplete &&
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gViewCacheFilter == gLogFilter &&
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gViewCacheStart == pageStart)
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return;
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RXTX_LOG_StartViewCacheScan(gLogCursor);
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}
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static bool RXTX_LOG_GetFilteredEntry(uint16_t indexFromNewest, RXTX_LogEntry_t *entry)
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{
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if (indexFromNewest >= RXTX_LOG_VISIBLE_COUNT)
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return false;
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|
|
if (!RXTX_LOG_ViewCacheCovers(indexFromNewest))
|
|
return false;
|
|
|
|
*entry = gViewCache[indexFromNewest - gViewCacheStart];
|
|
return true;
|
|
}
|
|
|
|
static void RXTX_LOG_CaptureSession(uint8_t flags, const VFO_Info_t *vfo)
|
|
{
|
|
if (gClearActive)
|
|
return;
|
|
|
|
const uint32_t frequency = (flags & RXTX_LOG_FLAG_TX) ? vfo->pTX->Frequency : vfo->pRX->Frequency;
|
|
const bool isMemoryChannel = IS_MR_CHANNEL(vfo->CHANNEL_SAVE);
|
|
const uint16_t channel = isMemoryChannel ? vfo->CHANNEL_SAVE : RXTX_LOG_CHANNEL_NONE;
|
|
char name[RXTX_LOG_NAME_LEN + 1];
|
|
|
|
RXTX_LOG_SanitizeName(name, isMemoryChannel ? vfo->Name : NULL);
|
|
|
|
if (gSessionActive &&
|
|
gSessionFlags == flags &&
|
|
gSessionFrequency == frequency &&
|
|
gSessionChannel == channel)
|
|
return;
|
|
|
|
RXTX_LOG_EndActive();
|
|
|
|
gSessionActive = true;
|
|
gSessionFlags = flags;
|
|
gSessionFrequency = frequency;
|
|
gSessionChannel = channel;
|
|
gSessionTicks500ms = 0;
|
|
strcpy(gSessionName, name);
|
|
}
|
|
|
|
void RXTX_LOG_Init(void)
|
|
{
|
|
uint32_t maxSequence = 0;
|
|
uint32_t maxAddress = RXTX_LOG_FLASH_BASE;
|
|
uint8_t lastEntryFlags = 0;
|
|
bool found = false;
|
|
|
|
gLogCursor = 0;
|
|
gLogFilter = RXTX_LOG_FILTER_ALL;
|
|
gSessionActive = false;
|
|
gClearActive = false;
|
|
gClearSector = 0;
|
|
gMenuClearHandled = false;
|
|
gLogHasTraffic = false;
|
|
gNextFlashAddress = RXTX_LOG_FLASH_BASE;
|
|
RXTX_LOG_InvalidateViewCache();
|
|
|
|
for (uint32_t address = RXTX_LOG_FLASH_BASE; address < RXTX_LOG_FLASH_END; address += sizeof(RXTX_LogFlashEntry_t)) {
|
|
RXTX_LogFlashEntry_t flashEntry;
|
|
|
|
PY25Q16_ReadBuffer(address, &flashEntry, sizeof(flashEntry));
|
|
if (!RXTX_LOG_IsValidFlashEntry(&flashEntry))
|
|
continue;
|
|
|
|
if (RXTX_LOG_IsTrafficFlags(flashEntry.flags))
|
|
gLogHasTraffic = true;
|
|
|
|
if (!found || flashEntry.sequence > maxSequence) {
|
|
found = true;
|
|
maxSequence = flashEntry.sequence;
|
|
maxAddress = address;
|
|
lastEntryFlags = flashEntry.flags;
|
|
}
|
|
}
|
|
|
|
if (found) {
|
|
gNextSequence = maxSequence + 1u;
|
|
gNextFlashAddress = maxAddress + sizeof(RXTX_LogFlashEntry_t);
|
|
if (gNextFlashAddress >= RXTX_LOG_FLASH_END)
|
|
gNextFlashAddress = RXTX_LOG_FLASH_BASE;
|
|
} else {
|
|
gNextSequence = 0;
|
|
}
|
|
|
|
// Skip the marker if the log already ends with one (e.g. repeated
|
|
// reboots with no RX/TX in between) to avoid stacking empty separators.
|
|
if (!found || (lastEntryFlags & RXTX_LOG_FLAG_SESSION) == 0)
|
|
RXTX_LOG_WriteSessionMarker();
|
|
}
|
|
|
|
void RXTX_LOG_BeginRx(const VFO_Info_t *vfo, FUNCTION_Type_t function)
|
|
{
|
|
if (vfo == NULL)
|
|
return;
|
|
|
|
uint8_t flags = 0;
|
|
if (function == FUNCTION_MONITOR)
|
|
flags |= RXTX_LOG_FLAG_MONITOR;
|
|
|
|
RXTX_LOG_CaptureSession(flags, vfo);
|
|
}
|
|
|
|
void RXTX_LOG_BeginTx(const VFO_Info_t *vfo)
|
|
{
|
|
if (vfo == NULL)
|
|
return;
|
|
|
|
RXTX_LOG_CaptureSession(RXTX_LOG_FLAG_TX, vfo);
|
|
}
|
|
|
|
void RXTX_LOG_EndActive(void)
|
|
{
|
|
if (!gSessionActive)
|
|
return;
|
|
|
|
if (gClearActive) {
|
|
gSessionActive = false;
|
|
return;
|
|
}
|
|
|
|
RXTX_LogEntry_t entry;
|
|
memset(&entry, 0, sizeof(entry));
|
|
|
|
entry.sequence = gNextSequence++;
|
|
entry.frequency = gSessionFrequency;
|
|
entry.durationSeconds = (gSessionTicks500ms + 1u) / 2u;
|
|
entry.channel = gSessionChannel;
|
|
entry.flags = gSessionFlags;
|
|
strcpy(entry.name, gSessionName);
|
|
|
|
if (entry.name[0] != 0)
|
|
entry.flags |= RXTX_LOG_FLAG_NAMED;
|
|
|
|
if (entry.durationSeconds == 0)
|
|
entry.durationSeconds = 1;
|
|
|
|
RXTX_LOG_WriteEntry(&entry);
|
|
gLogHasTraffic = true;
|
|
RXTX_LOG_InvalidateViewCache();
|
|
|
|
gSessionActive = false;
|
|
}
|
|
|
|
void RXTX_LOG_Tick500ms(void)
|
|
{
|
|
if (gSessionActive && gSessionTicks500ms < 0xFFFEu)
|
|
gSessionTicks500ms++;
|
|
}
|
|
|
|
void RXTX_LOG_Task10ms(void)
|
|
{
|
|
if (gClearActive) {
|
|
RXTX_LOG_StepClear();
|
|
} else if (gViewScanActive) {
|
|
RXTX_LOG_StepViewCacheScan();
|
|
} else {
|
|
return;
|
|
}
|
|
|
|
if (gScreenToDisplay == DISPLAY_RXTX_LOG)
|
|
gUpdateDisplay = true;
|
|
}
|
|
|
|
void ACTION_RxTxLog(void)
|
|
{
|
|
gLogCursor = 0;
|
|
RXTX_LOG_InvalidateViewCache();
|
|
gUpdateStatus = true;
|
|
GUI_SelectNextDisplay(DISPLAY_RXTX_LOG);
|
|
}
|
|
|
|
void RXTX_LOG_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
|
|
{
|
|
if (Key == KEY_PTT) {
|
|
GENERIC_Key_PTT(bKeyPressed);
|
|
return;
|
|
}
|
|
|
|
if (!bKeyPressed && !bKeyHeld && Key != KEY_MENU)
|
|
return;
|
|
|
|
if (gClearActive) {
|
|
if (Key == KEY_MENU && !bKeyPressed)
|
|
gMenuClearHandled = false;
|
|
gUpdateDisplay = true;
|
|
return;
|
|
}
|
|
|
|
switch (Key) {
|
|
case KEY_UP:
|
|
if (gLogCursor > 0) {
|
|
gLogCursor--;
|
|
RXTX_LOG_EnsureViewCache();
|
|
}
|
|
gUpdateDisplay = true;
|
|
break;
|
|
|
|
case KEY_DOWN:
|
|
RXTX_LOG_EnsureViewCache();
|
|
if (gViewCacheCount > 0) {
|
|
const uint16_t next = gLogCursor + 1u;
|
|
if (next < (uint16_t)(gViewCacheStart + gViewCacheCount)) {
|
|
gLogCursor = next;
|
|
} else if (gViewCacheHasOlder &&
|
|
(uint16_t)(gViewCacheStart + gViewCacheCount) < RXTX_LOG_VISIBLE_COUNT) {
|
|
gLogCursor = gViewCacheStart + gViewCacheCount;
|
|
RXTX_LOG_StartViewCacheScan(gLogCursor);
|
|
}
|
|
}
|
|
gUpdateDisplay = true;
|
|
break;
|
|
|
|
case KEY_STAR:
|
|
if (!bKeyHeld && bKeyPressed) {
|
|
RXTX_LOG_NextFilter();
|
|
}
|
|
break;
|
|
|
|
case KEY_MENU:
|
|
if (bKeyHeld) {
|
|
if (bKeyPressed && !gMenuClearHandled) {
|
|
gMenuClearHandled = true;
|
|
RXTX_LOG_StartClear();
|
|
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
|
|
gUpdateStatus = true;
|
|
gUpdateDisplay = true;
|
|
}
|
|
} else if (!bKeyPressed) {
|
|
if (!gMenuClearHandled)
|
|
RXTX_LOG_NextFilter();
|
|
gMenuClearHandled = false;
|
|
}
|
|
break;
|
|
|
|
case KEY_EXIT:
|
|
gRequestDisplayScreen = DISPLAY_MAIN;
|
|
gUpdateStatus = true;
|
|
break;
|
|
|
|
default:
|
|
if (!bKeyHeld)
|
|
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
|
|
break;
|
|
}
|
|
}
|
|
|
|
static void RXTX_LOG_FormatFrequency(uint32_t frequency, char *buffer)
|
|
{
|
|
sprintf(buffer, "%u.%05u", frequency / 100000u, frequency % 100000u);
|
|
}
|
|
|
|
static void RXTX_LOG_FormatTitle(const RXTX_LogEntry_t *entry, char *buffer)
|
|
{
|
|
if ((entry->flags & RXTX_LOG_FLAG_NAMED) != 0) {
|
|
strcpy(buffer, entry->name);
|
|
} else {
|
|
RXTX_LOG_FormatFrequency(entry->frequency, buffer);
|
|
}
|
|
}
|
|
|
|
static void RXTX_LOG_DrawIndexBadge(uint16_t indexFromNewest, uint8_t line)
|
|
{
|
|
char label[4];
|
|
|
|
sprintf(label, "%03u", indexFromNewest + 1u);
|
|
GUI_DisplaySmallestInverse(label, 2, line, false, true, 14);
|
|
}
|
|
|
|
static void RXTX_LOG_DrawSessionMarker(uint8_t line)
|
|
{
|
|
const int16_t y = (int16_t)(line * 8u) + 3;
|
|
|
|
UI_DrawLineBuffer(gFrameBuffer, 4, y, 123, y, true);
|
|
}
|
|
|
|
void UI_DisplayRxTxLog(void)
|
|
{
|
|
char duration[8];
|
|
char title[16];
|
|
RXTX_LogEntry_t entry;
|
|
|
|
UI_DisplayClear();
|
|
|
|
if (gClearActive) {
|
|
UI_PrintStringSmallBold("NO LOG", 0, 127, 3);
|
|
ST7565_BlitFullScreen();
|
|
return;
|
|
}
|
|
|
|
RXTX_LOG_EnsureViewCache();
|
|
|
|
if (gLogFilter == RXTX_LOG_FILTER_ALL && !gLogHasTraffic) {
|
|
UI_PrintStringSmallBold("NO LOG", 0, 127, 3);
|
|
ST7565_BlitFullScreen();
|
|
return;
|
|
}
|
|
|
|
if (gViewCacheCount == 0) {
|
|
if (!gViewScanActive)
|
|
UI_PrintStringSmallBold("NO LOG", 0, 127, 3);
|
|
ST7565_BlitFullScreen();
|
|
return;
|
|
}
|
|
|
|
for (uint8_t row = 0; row < RXTX_LOG_VIEW_CACHE_COUNT; row++) {
|
|
const uint16_t index = gLogCursor + row;
|
|
|
|
if (!RXTX_LOG_GetFilteredEntry(index, &entry))
|
|
break;
|
|
|
|
if (RXTX_LOG_IsSessionMarker(&entry)) {
|
|
RXTX_LOG_DrawSessionMarker(row);
|
|
continue;
|
|
}
|
|
|
|
const bool isTx = RXTX_LOG_IsTx(&entry);
|
|
|
|
RXTX_LOG_FormatTitle(&entry, title);
|
|
RXTX_LOG_DrawIndexBadge(index, row);
|
|
|
|
if (isTx)
|
|
UI_PrintStringSmallBold(title, 17, 0, row);
|
|
else
|
|
UI_PrintStringSmallNormal(title, 17, 0, row);
|
|
|
|
GUI_DisplaySmallest(isTx ? "TX" : "RX", 96, (uint8_t)((row * 8u) + 1u), false, true);
|
|
|
|
sprintf(duration, "%02u:%02u", entry.durationSeconds / 60u, entry.durationSeconds % 60u);
|
|
GUI_DisplaySmallestInverse(duration, 107, row, false, true, 127);
|
|
}
|
|
|
|
ST7565_BlitFullScreen();
|
|
}
|
|
|
|
#endif
|