38 Commits
v0.15 ... v0.17

Author SHA1 Message Date
Krzysiek Egzmont
a43a3f949f READ MANUAL prompt for unlocking TX 2023-11-09 10:33:28 +01:00
Krzysiek Egzmont
d7b6cdf444 Modify release GH action 2023-11-08 18:57:50 +01:00
BG8LGP
7916d79ff1 Add github actions #86 2023-11-08 02:35:59 +01:00
Krzysiek Egzmont
49cec54cd3 TX on all bands #68 2023-11-08 01:43:06 +01:00
Krzysiek Egzmont
f154aebd38 Refactoring 2023-11-08 01:29:14 +01:00
ErikS-web
aaa55c5742 Update README.md
Cosmetic corrections
2023-11-07 21:49:20 +01:00
ErikS-web
345f1444f5 Update README.md
spelling mistake corrected
2023-11-07 21:39:22 +01:00
Krzysiek Egzmont
7e91d67b53 Mic bar in the same style as an s-meter 2023-11-07 17:11:25 +01:00
Krzysiek Egzmont
ba29176f33 Don't display mic bar over low the battery popup 2023-11-07 17:11:25 +01:00
Krzysiek Egzmont
05feff432e Rename build option 2023-11-07 17:11:24 +01:00
egzumer
cf4f85cb22 Update README.md 2023-11-07 17:09:07 +01:00
Krzysiek Egzmont
a0c2181197 Fix build error 2023-11-06 21:58:27 +01:00
Krzysiek Egzmont
b4abf369e1 FIX #76: Apollo Quindar mutes microphone 2023-11-06 16:20:45 +01:00
Krzysiek Egzmont
be0636d69b Readme update 2023-11-06 15:57:22 +01:00
wrobepio
23986a8648 Add "BLMIN TMP OFF" function for programmable buttons 2023-11-06 15:55:13 +01:00
Krzysiek Egzmont
b1d3a95ca2 Replace RX CSS menu scanning procedure with BK scanning method 2023-11-06 01:25:44 +01:00
Krzysiek Egzmont
1238bf090c Refactoring of cxcss and channel/frequency scanner code 2023-11-06 01:23:36 +01:00
Krzysiek Egzmont
5987e03141 Change names of some submenu items #80 2023-11-04 17:53:33 +01:00
Krzysiek Egzmont
c5e34c4be9 Delete immediate applying of CTCSS/DCS while scrolling options in the menu.
This also caused the option change not to be discarded on EXIT
2023-11-03 16:39:25 +01:00
Krzysiek Egzmont
b0a01cd8cf BYP/RAW removed by default, can be enabled by compile option 2023-11-03 12:51:06 +01:00
Krzysiek Egzmont
21535c9ca0 Don't use AM fix for USB/BYP/RAW 2023-11-03 12:18:31 +01:00
Krzysiek Egzmont
8c9bdaacbc Add "switch demodulation mode" function for programmable buttons 2023-11-03 01:15:29 +01:00
Krzysiek Egzmont
388c3dadf1 SSB, BYP, RAW demodulation modes added #64 2023-11-03 01:15:29 +01:00
Krzysiek Egzmont
72fc4bf52f FIX #60: LCD interference glitch 2023-11-03 01:13:28 +01:00
Krzysiek Egzmont
def555678d Refactoring 2023-11-02 21:56:48 +01:00
Krzysiek Egzmont
16e79bee7d Change the overvoltage level back to 8.9V 2023-11-02 21:34:10 +01:00
Krzysiek Egzmont
9777b5df8b Modified battery icon levels 2023-11-02 02:44:05 +01:00
Krzysiek Egzmont
c057f8a097 FIX #74: limit spectrum analyzer RSSI trigger values 2023-11-02 01:46:21 +01:00
Krzysiek Egzmont
034139d7d5 Battery curve, slight modification 2023-11-02 00:54:48 +01:00
Krzysiek Egzmont
03a51525b6 Fix s-meter over S9 values calculation 2023-11-01 23:37:31 +01:00
Krzysiek Egzmont
f074114d13 Makefile improvements 2023-11-01 22:35:13 +01:00
Krzysiek Egzmont
8a60535f9d Updated wiki 2023-11-01 20:36:19 +01:00
Krzysiek Egzmont
c2be853ef1 Low battery popup 2023-11-01 01:43:09 +01:00
Krzysiek Egzmont
9f1e6ab91f Extra UI helper functions 2023-11-01 00:10:03 +01:00
Krzysiek Egzmont
25334823e5 Refactoring 2023-10-31 19:58:10 +01:00
Krzysiek Egzmont
2796973ad3 Use the custom battery percentage calculations for battery icon and low battery beeping 2023-10-31 19:40:00 +01:00
Krzysiek Egzmont
2344478301 fix build error 2023-10-31 17:34:09 +01:00
Krzysiek Egzmont
61527d1281 More frequency steps 2023-10-31 14:33:05 +01:00
50 changed files with 1690 additions and 1359 deletions

33
.github/workflows/main.yml vendored Normal file
View File

@@ -0,0 +1,33 @@
on:
push:
jobs:
build:
runs-on: ubuntu-22.04
steps:
- name: arm-none-eabi-gcc
uses: carlosperate/arm-none-eabi-gcc-action@v1
with:
release: '10.3-2021.10'
- name: Install Python dependencies
run: python -m pip install --upgrade pip crcmod
- name: Checkout
uses: actions/checkout@v3
- name: Submodules
run: git submodule update --init --recursive --depth 1
- name: Make
run: make
- name: size
run: arm-none-eabi-size firmware
- name: 'Upload Artifact'
uses: actions/upload-artifact@v3
with:
name: firmware
path: firmware*.bin

45
.github/workflows/release.yaml vendored Normal file
View File

@@ -0,0 +1,45 @@
on:
push:
tags:
- 'v*'
jobs:
build:
runs-on: ubuntu-22.04
steps:
- name: arm-none-eabi-gcc
uses: carlosperate/arm-none-eabi-gcc-action@v1
with:
release: '10.3-2021.10'
- name: Install Python dependencies
run: python3 -m pip install --upgrade pip crcmod
- name: Checkout
uses: actions/checkout@v3
- name: Submodules
run: git submodule update --init --recursive --depth 1
- name: Make
run: make
- name: size
run: arm-none-eabi-size firmware
- name: 'Upload Artifact'
uses: actions/upload-artifact@v3
with:
name: firmware
path: firmware*.bin
- name: Upload binaries to release
uses: svenstaro/upload-release-action@v2
with:
repo_token: ${{ secrets.GITHUB_TOKEN }}
file: firmware.packed.bin
asset_name: egzumer_$tag.packed.bin
tag: ${{ github.ref }}
overwrite: true
release_name: release ${{ github.ref_name }}

View File

@@ -26,7 +26,7 @@ ENABLE_CTCSS_TAIL_PHASE_SHIFT := 0
ENABLE_BOOT_BEEPS := 0 ENABLE_BOOT_BEEPS := 0
ENABLE_SHOW_CHARGE_LEVEL := 1 ENABLE_SHOW_CHARGE_LEVEL := 1
ENABLE_REVERSE_BAT_SYMBOL := 0 ENABLE_REVERSE_BAT_SYMBOL := 0
ENABLE_CODE_SCAN_TIMEOUT := 0 ENABLE_NO_CODE_SCAN_TIMEOUT := 1
ENABLE_AM_FIX := 1 ENABLE_AM_FIX := 1
ENABLE_AM_FIX_SHOW_DATA := 0 ENABLE_AM_FIX_SHOW_DATA := 0
ENABLE_SQUELCH_MORE_SENSITIVE := 1 ENABLE_SQUELCH_MORE_SENSITIVE := 1
@@ -36,7 +36,8 @@ ENABLE_AUDIO_BAR := 1
ENABLE_COPY_CHAN_TO_VFO := 1 ENABLE_COPY_CHAN_TO_VFO := 1
ENABLE_SPECTRUM := 1 ENABLE_SPECTRUM := 1
ENABLE_REDUCE_LOW_MID_TX_POWER:= 0 ENABLE_REDUCE_LOW_MID_TX_POWER:= 0
ENABLE_BYP_RAW_DEMODULATORS := 0
ENABLE_BLMIN_TMP_OFF := 0
############################################################# #############################################################
TARGET = firmware TARGET = firmware
@@ -98,12 +99,13 @@ ifeq ($(ENABLE_AIRCOPY),1)
OBJS += app/aircopy.o OBJS += app/aircopy.o
endif endif
OBJS += app/app.o OBJS += app/app.o
OBJS += app/chFrScanner.o
OBJS += app/common.o
OBJS += app/dtmf.o OBJS += app/dtmf.o
ifeq ($(ENABLE_FMRADIO),1) ifeq ($(ENABLE_FMRADIO),1)
OBJS += app/fm.o OBJS += app/fm.o
endif endif
OBJS += app/generic.o OBJS += app/generic.o
OBJS += app/common.o
OBJS += app/main.o OBJS += app/main.o
OBJS += app/menu.o OBJS += app/menu.o
ifeq ($(ENABLE_SPECTRUM), 1) ifeq ($(ENABLE_SPECTRUM), 1)
@@ -281,7 +283,7 @@ endif
ifeq ($(ENABLE_REVERSE_BAT_SYMBOL),1) ifeq ($(ENABLE_REVERSE_BAT_SYMBOL),1)
CFLAGS += -DENABLE_REVERSE_BAT_SYMBOL CFLAGS += -DENABLE_REVERSE_BAT_SYMBOL
endif endif
ifeq ($(ENABLE_CODE_SCAN_TIMEOUT),1) ifeq ($(ENABLE_NO_CODE_SCAN_TIMEOUT),1)
CFLAGS += -DENABLE_CODE_SCAN_TIMEOUT CFLAGS += -DENABLE_CODE_SCAN_TIMEOUT
endif endif
ifeq ($(ENABLE_AM_FIX),1) ifeq ($(ENABLE_AM_FIX),1)
@@ -320,6 +322,12 @@ endif
ifeq ($(ENABLE_REDUCE_LOW_MID_TX_POWER),1) ifeq ($(ENABLE_REDUCE_LOW_MID_TX_POWER),1)
CFLAGS += -DENABLE_REDUCE_LOW_MID_TX_POWER CFLAGS += -DENABLE_REDUCE_LOW_MID_TX_POWER
endif endif
ifeq ($(ENABLE_BYP_RAW_DEMODULATORS),1)
CFLAGS += -DENABLE_BYP_RAW_DEMODULATORS
endif
ifeq ($(ENABLE_BLMIN_TMP_OFF),1)
CFLAGS += -DENABLE_BLMIN_TMP_OFF
endif
LDFLAGS = LDFLAGS =
ifeq ($(ENABLE_CLANG),0) ifeq ($(ENABLE_CLANG),0)
@@ -352,10 +360,44 @@ LIBS =
DEPS = $(OBJS:.o=.d) DEPS = $(OBJS:.o=.d)
ifdef OS
RM = del /Q
FixPath = $(subst /,\,$1)
WHERE = where
else
ifeq ($(shell uname), Linux)
RM = rm -f
FixPath = $1
WHERE = which
endif
endif
ifneq (, $(shell $(WHERE) python))
MY_PYTHON := python
else ifneq (, $(shell $(WHERE) python3))
MY_PYTHON := python3
endif
ifdef MY_PYTHON
HAS_CRCMOD := $(shell $(MY_PYTHON) -c "import crcmod" 2>&1)
endif
all: $(TARGET) all: $(TARGET)
$(OBJCOPY) -O binary $< $<.bin $(OBJCOPY) -O binary $< $<.bin
-python fw-pack.py $<.bin $(GIT_HASH) $<.packed.bin
-python3 fw-pack.py $<.bin $(GIT_HASH) $<.packed.bin ifndef MY_PYTHON
$(info )
$(info !!!!!!!! PYTHON NOT FOUND, *.PACKED.BIN WON'T BE BUILT)
$(info )
else ifneq (,$(HAS_CRCMOD))
$(info )
$(info !!!!!!!! CRCMOD NOT INSTALLED, *.PACKED.BIN WON'T BE BUILT)
$(info !!!!!!!! run: pip install crcmod)
$(info )
else
-$(MY_PYTHON) fw-pack.py $<.bin $(GIT_HASH) $<.packed.bin
endif
$(SIZE) $< $(SIZE) $<
debug: debug:
@@ -382,4 +424,4 @@ bsp/dp32g030/%.h: hardware/dp32g030/%.def
-include $(DEPS) -include $(DEPS)
clean: clean:
rm -f $(TARGET).bin $(TARGET).packed.bin $(TARGET) $(OBJS) $(DEPS) $(RM) $(call FixPath, $(TARGET).bin $(TARGET).packed.bin $(TARGET) $(OBJS) $(DEPS))

View File

@@ -1,22 +1,47 @@
# Main features: # Main features:
- many of OneOfEleven mods, including AM fix * many of OneOfEleven mods:
- fagci spectrum analyzer (**F+5** to turn on) * AM fix, huge improvement in reception quality
- some other smaller mods introduced by me * longpress buttons functions replicating F+ action
* fast scanning
* channel name editing in the menu
* channel name + frequency display option
* shortcut for scannlist assignment (longpress `5 NOAA`)
* scannlist toggle (longpress `* Scan` while scanning)
* configurable button function selectable from menu
* battery percentage/voltage on status bar, selectable from menu
* longer backlight times
* mic bar
* RSSI s-meter
* more frequency steps
* squelch more sensitive
* fagci spectrum analyzer (**F+5** to turn on)
* some other mods introduced by me:
* SSB demodulation (adopted from fagci)
* backlight dimming
* battery voltage callibration from menu
* better battery percentage calculation, selectable for 1600mAh or 2200mAh
* more configurable button functions
* longpress MENU as another cofigurable button
* better DCS/CTCSS scanning in the menu (`* SCAN` while in RX DCS/CTCSS menu item)
* Piotr022 s-meter style
* restore initial freq/channel when scanning stopped with EXIT, remember last found transmission with MENU button
* reordered and renamed menu entries
* LCD interference crash fix
Go to [Wiki](https://github.com/egzumer/uv-k5-firmware-custom/wiki) to learn more. # Manual
* [Radio operation](https://github.com/egzumer/uv-k5-firmware-custom/wiki/Radio-operation)
* [Menu](https://github.com/egzumer/uv-k5-firmware-custom/wiki/Menu)
* [Button functions](https://github.com/egzumer/uv-k5-firmware-custom/wiki/Button-functions)
* [Spectrum analyzer](https://github.com/egzumer/uv-k5-firmware-custom/wiki/Spectrum-analyzer)
* [Flashing the firmware](https://github.com/egzumer/uv-k5-firmware-custom/wiki/Flashing-the-firmware)
<img src="images/main.jpg" width=300 /><img src="images/spectrum.jpg" width=300 /><img src="images/audiobar.jpg" width=300 /><img src="images/rssibar.jpg" width=300 /> <img src="images/main.jpg" width=300 /><img src="images/spectrum.jpg" width=300 /><img src="images/audiobar.jpg" width=300 /><img src="images/rssibar.jpg" width=300 />
❗❗❗You can now calibrate the battery voltage reading in the radio menu.
<img src="images/batcal.jpg" width=300 />
To enter the calibration:
1. turn the radio on while holding PTT and the first side button
2. go to BATCAL option and adjust the voltage with UP/DOWN buttons
3. confirm the setting, calibration will be saved to EEPROM
# Open reimplementation of the Quan Sheng UV-K5 v2.1.27 firmware # Open reimplementation of the Quan Sheng UV-K5 v2.1.27 firmware
@@ -73,45 +98,25 @@ ENABLE_SMALL_BOLD := 1 bold channel name/no. (when name + freq
ENABLE_KEEP_MEM_NAME := 1 maintain channel name when (re)saving memory channel ENABLE_KEEP_MEM_NAME := 1 maintain channel name when (re)saving memory channel
ENABLE_WIDE_RX := 1 full 18MHz to 1300MHz RX (though front-end/PA not designed for full range) ENABLE_WIDE_RX := 1 full 18MHz to 1300MHz RX (though front-end/PA not designed for full range)
ENABLE_TX_WHEN_AM := 0 allow TX (always FM) when RX is set to AM ENABLE_TX_WHEN_AM := 0 allow TX (always FM) when RX is set to AM
ENABLE_F_CAL_MENU := 0 enable/disable the radios hidden frequency calibration menu ENABLE_F_CAL_MENU := 0 enable the radios hidden frequency calibration menu
ENABLE_CTCSS_TAIL_PHASE_SHIFT := 1 standard CTCSS tail phase shift rather than QS's own 55Hz tone method ENABLE_CTCSS_TAIL_PHASE_SHIFT := 1 standard CTCSS tail phase shift rather than QS's own 55Hz tone method
ENABLE_BOOT_BEEPS := 0 gives user audio feedback on volume knob position at boot-up ENABLE_BOOT_BEEPS := 0 gives user audio feedback on volume knob position at boot-up
ENABLE_SHOW_CHARGE_LEVEL := 0 show the charge level when the radio is on charge ENABLE_SHOW_CHARGE_LEVEL := 0 show the charge level when the radio is on charge
ENABLE_REVERSE_BAT_SYMBOL := 1 mirror the battery symbol on the status bar (+ pole on the right) ENABLE_REVERSE_BAT_SYMBOL := 1 mirror the battery symbol on the status bar (+ pole on the right)
ENABLE_CODE_SCAN_TIMEOUT := 0 enable/disable 32-sec CTCSS/DCS scan timeout (press exit butt instead of time-out to end scan) ENABLE_NO_CODE_SCAN_TIMEOUT := 1 disable 32-sec CTCSS/DCS scan timeout (press exit butt instead of time-out to end scan)
ENABLE_AM_FIX := 1 dynamically adjust the front end gains when in AM mode to helo prevent AM demodulator saturation, ignore the on-screen RSSI level (for now) ENABLE_AM_FIX := 1 dynamically adjust the front end gains when in AM mode to helo prevent AM demodulator saturation, ignore the on-screen RSSI level (for now)
ENABLE_AM_FIX_SHOW_DATA := 1 show debug data for the AM fix (still tweaking it) ENABLE_AM_FIX_SHOW_DATA := 1 show debug data for the AM fix (still tweaking it)
ENABLE_SQUELCH_MORE_SENSITIVE := 0 make squelch levels a little bit more sensitive - I plan to let user adjust the values themselves ENABLE_SQUELCH_MORE_SENSITIVE := 0 make squelch levels a little bit more sensitive - I plan to let user adjust the values themselves
ENABLE_FASTER_CHANNEL_SCAN := 0 increases the channel scan speed, but the squelch is also made more twitchy ENABLE_FASTER_CHANNEL_SCAN := 0 increases the channel scan speed, but the squelch is also made more twitchy
ENABLE_RSSI_BAR := 1 enable a dBm/Sn RSSI bar graph level inplace of the little antenna symbols ENABLE_RSSI_BAR := 1 enable a dBm/Sn RSSI bar graph level inplace of the little antenna symbols
ENABLE_AUDIO_BAR := 0 experimental, display an audo bar level when TX'ing ENABLE_AUDIO_BAR := 0 experimental, display an audio bar level when TX'ing
ENABLE_COPY_CHAN_TO_VFO := 1 copy current channel into the other VFO. Long press Menu key ('M') ENABLE_COPY_CHAN_TO_VFO := 1 copy current channel into the other VFO. Long press `1 BAND` when in channel mode
#ENABLE_SINGLE_VFO_CHAN := 1 not yet implemented - single VFO on display when possible ENABLE_SPECTRUM := 1 fagci spectrum analizer, activated with `F` + `5 NOAA`
#ENABLE_BAND_SCOPE := 1 not yet implemented - spectrum/pan-adapter ENABLE_REDUCE_LOW_MID_TX_POWER:= 0 makes medium and low power settings even lower
ENABLE_BYP_RAW_DEMODULATORS := 0 additional BYP (bypass?) and RAW demodulation options, prooved not to be very usefull, but it is there if you want to experiment
ENABLE_BLMIN_TMP_OFF := 0 additional function for configurable buttons that toggles `BLMin` on and off wihout saving it to the EEPROM
``` ```
# New/modified function keys
* Long-press 'M' .. Copy selected channel into same VFO, then switch VFO to frequency mode
*
* Long-press '7' .. Toggle selected channel scanlist setting .. if VOX is disabled in Makefile
* or
* Long-press '5' .. Toggle selected channel scanlist setting .. if NOAA is disabled in Makefile
*
* Long-press '*' .. Start scanning, then toggles the scanning between scanlists 1, 2 or ALL channels
# Some changes made from the Quansheng firmware
* Various Quansheng firmware bugs fixed
* Added new bugs
* Mic menu includes max gain possible
* AM RX everywhere (left the TX as is)
* An attempt to improve the AM RX audio (demodulator getting saturated/overloaded in Quansheng firmware)
* keypad-5/NOAA button now toggles scanlist-1 on/off for current channel when held down - IF NOAA not used
* Better backlight times (inc always on)
* Live DTMF decoder option, though the decoder needs some coeff tuning changes to decode other radios it seems
* Various menu re-wordings (trying to reduce 'WTH does that mean ?')
* ..
# Compiler # Compiler

View File

@@ -18,6 +18,7 @@
#include "app/action.h" #include "app/action.h"
#include "app/app.h" #include "app/app.h"
#include "app/chFrScanner.h"
#include "app/common.h" #include "app/common.h"
#include "app/dtmf.h" #include "app/dtmf.h"
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
@@ -31,6 +32,7 @@
#endif #endif
#include "driver/bk4819.h" #include "driver/bk4819.h"
#include "driver/gpio.h" #include "driver/gpio.h"
#include "driver/backlight.h"
#include "functions.h" #include "functions.h"
#include "misc.h" #include "misc.h"
#include "settings.h" #include "settings.h"
@@ -116,6 +118,7 @@ void ACTION_Monitor(void)
void ACTION_Scan(bool bRestart) void ACTION_Scan(bool bRestart)
{ {
(void)bRestart;
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
if (gFmRadioMode) if (gFmRadioMode)
{ {
@@ -164,7 +167,7 @@ void ACTION_Scan(bool bRestart)
} }
#endif #endif
if (gScreenToDisplay != DISPLAY_SCANNER) if (!SCANNER_IsScanning())
{ // not scanning { // not scanning
gMonitor = false; gMonitor = false;
@@ -192,7 +195,7 @@ void ACTION_Scan(bool bRestart)
gEeprom.SCAN_LIST_DEFAULT = (gEeprom.SCAN_LIST_DEFAULT + 1) % 3; gEeprom.SCAN_LIST_DEFAULT = (gEeprom.SCAN_LIST_DEFAULT + 1) % 3;
// jump to the next channel // jump to the next channel
SCANNER_ScanChannels(false, gScanStateDir); CHFRSCANNER_Start(false, gScanStateDir);
gScanPauseDelayIn_10ms = 1; gScanPauseDelayIn_10ms = 1;
gScheduleScanListen = false; gScheduleScanListen = false;
@@ -201,7 +204,7 @@ void ACTION_Scan(bool bRestart)
else else
{ // stop scanning { // stop scanning
SCANNER_Stop(); CHFRSCANNER_Stop();
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP; gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
@@ -211,7 +214,7 @@ void ACTION_Scan(bool bRestart)
else else
{ // start scanning { // start scanning
SCANNER_ScanChannels(true, SCAN_FWD); CHFRSCANNER_Start(true, SCAN_FWD);
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_SCANNING_BEGIN); AUDIO_SetVoiceID(0, VOICE_ID_SCANNING_BEGIN);
@@ -227,31 +230,6 @@ void ACTION_Scan(bool bRestart)
} }
} }
} }
else
// if (!bRestart)
if (!bRestart && IS_MR_CHANNEL(gNextMrChannel))
{ // channel mode, keep scanning but toggle between scan lists
gEeprom.SCAN_LIST_DEFAULT = (gEeprom.SCAN_LIST_DEFAULT + 1) % 3;
// jump to the next channel
SCANNER_ScanChannels(false, gScanStateDir);
gScanPauseDelayIn_10ms = 1;
gScheduleScanListen = false;
gUpdateStatus = true;
}
else
{ // stop scanning
gMonitor = false;
SCANNER_Stop();
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
#endif
gRequestDisplayScreen = DISPLAY_MAIN;
}
} }
#ifdef ENABLE_VOX #ifdef ENABLE_VOX
@@ -270,6 +248,7 @@ void ACTION_Scan(bool bRestart)
#if defined(ENABLE_ALARM) || defined(ENABLE_TX1750) #if defined(ENABLE_ALARM) || defined(ENABLE_TX1750)
static void ACTION_AlarmOr1750(const bool b1750) static void ACTION_AlarmOr1750(const bool b1750)
{ {
(void)b1750;
gInputBoxIndex = 0; gInputBoxIndex = 0;
#if defined(ENABLE_ALARM) && defined(ENABLE_TX1750) #if defined(ENABLE_ALARM) && defined(ENABLE_TX1750)
@@ -323,6 +302,28 @@ void ACTION_Scan(bool bRestart)
} }
#endif #endif
void ACTION_SwitchDemodul(void)
{
gTxVfo->Modulation++;
if(gTxVfo->Modulation == MODULATION_UKNOWN)
gTxVfo->Modulation = MODULATION_FM;
gRequestSaveChannel = 1;
}
#ifdef ENABLE_BLMIN_TMP_OFF
void ACTION_BlminTmpOff(void)
{
if(++gEeprom.BACKLIGHT_MIN_STAT == BLMIN_STAT_UNKNOWN)
{
gEeprom.BACKLIGHT_MIN_STAT = BLMIN_STAT_ON;
BACKLIGHT_SetBrightness(gEeprom.BACKLIGHT_MIN);
} else
{
BACKLIGHT_SetBrightness(0);
}
}
#endif
void ACTION_Handle(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld) void ACTION_Handle(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
{ {
if (gScreenToDisplay == DISPLAY_MAIN && gDTMF_InputMode) // entering DTMF code if (gScreenToDisplay == DISPLAY_MAIN && gDTMF_InputMode) // entering DTMF code
@@ -438,5 +439,13 @@ void ACTION_Handle(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
case ACTION_OPT_VFO_MR: case ACTION_OPT_VFO_MR:
COMMON_SwitchVFOMode(); COMMON_SwitchVFOMode();
break; break;
case ACTION_OPT_SWITCH_DEMODUL:
ACTION_SwitchDemodul();
break;
#ifdef ENABLE_BLMIN_TMP_OFF
case ACTION_OPT_BLMIN_TMP_OFF:
ACTION_BlminTmpOff();
break;
#endif
} }
} }

View File

@@ -32,6 +32,11 @@ void ACTION_Scan(bool bRestart);
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
void ACTION_FM(void); void ACTION_FM(void);
#endif #endif
void ACTION_SwitchDemodul(void);
#ifdef ENABLE_BLMIN_TMP_OFF
void ACTION_BlminTmpOff(void);
#endif
void ACTION_Handle(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld); void ACTION_Handle(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld);

371
app/app.c
View File

@@ -21,6 +21,7 @@
#include "app/aircopy.h" #include "app/aircopy.h"
#endif #endif
#include "app/app.h" #include "app/app.h"
#include "app/chFrScanner.h"
#include "app/dtmf.h" #include "app/dtmf.h"
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
#include "app/fm.h" #include "app/fm.h"
@@ -71,7 +72,7 @@ static void UpdateRSSI(const int vfo)
#ifdef ENABLE_AM_FIX #ifdef ENABLE_AM_FIX
// add RF gain adjust compensation // add RF gain adjust compensation
if (gEeprom.VfoInfo[vfo].AM_mode && gSetting_AM_fix) if (gEeprom.VfoInfo[vfo].Modulation == MODULATION_AM && gSetting_AM_fix)
rssi -= rssi_gain_diff[vfo]; rssi -= rssi_gain_diff[vfo];
#endif #endif
@@ -92,15 +93,6 @@ static void CheckForIncoming(void)
if (gScanStateDir == SCAN_OFF) if (gScanStateDir == SCAN_OFF)
{ // not RF scanning { // not RF scanning
if (gCssScanMode != CSS_SCAN_MODE_OFF && gRxReceptionMode == RX_MODE_NONE)
{ // CTCSS/DTS scanning
gScanPauseDelayIn_10ms = scan_pause_delay_in_5_10ms;
gScheduleScanListen = false;
gRxReceptionMode = RX_MODE_DETECTED;
}
if (gEeprom.DUAL_WATCH == DUAL_WATCH_OFF) if (gEeprom.DUAL_WATCH == DUAL_WATCH_OFF)
{ // dual watch is disabled { // dual watch is disabled
@@ -219,7 +211,7 @@ static void HandleIncoming(void)
if (!bFlag) if (!bFlag)
return; return;
if (gScanStateDir == SCAN_OFF && gCssScanMode == CSS_SCAN_MODE_OFF) if (gScanStateDir == SCAN_OFF)
{ // not scanning { // not scanning
if (gRxVfo->DTMF_DECODING_ENABLE || gSetting_KILLED) if (gRxVfo->DTMF_DECODING_ENABLE || gSetting_KILLED)
{ // DTMF DCD is enabled { // DTMF DCD is enabled
@@ -407,7 +399,7 @@ Skip:
break; break;
case SCAN_RESUME_SE: case SCAN_RESUME_SE:
SCANNER_Stop(); CHFRSCANNER_Stop();
break; break;
} }
} }
@@ -483,7 +475,7 @@ void APP_StartListening(FUNCTION_Type_t Function, const bool reset_am_fix)
BACKLIGHT_TurnOn(); BACKLIGHT_TurnOn();
if (gScanStateDir != SCAN_OFF) if (gScanStateDir != SCAN_OFF)
SCANNER_Found(); CHFRSCANNER_Found();
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
if (IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE) && gIsNoaaMode) { if (IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE) && gIsNoaaMode) {
@@ -497,11 +489,7 @@ void APP_StartListening(FUNCTION_Type_t Function, const bool reset_am_fix)
} }
#endif #endif
if (gCssScanMode != CSS_SCAN_MODE_OFF)
gCssScanMode = CSS_SCAN_MODE_FOUND;
if (gScanStateDir == SCAN_OFF && if (gScanStateDir == SCAN_OFF &&
gCssScanMode == CSS_SCAN_MODE_OFF &&
gEeprom.DUAL_WATCH != DUAL_WATCH_OFF) gEeprom.DUAL_WATCH != DUAL_WATCH_OFF)
{ // not scanning, dual watch is enabled { // not scanning, dual watch is enabled
@@ -526,7 +514,7 @@ void APP_StartListening(FUNCTION_Type_t Function, const bool reset_am_fix)
const uint8_t orig_pga = 6; // -3dB const uint8_t orig_pga = 6; // -3dB
#ifdef ENABLE_AM_FIX #ifdef ENABLE_AM_FIX
if (gRxVfo->AM_mode && gSetting_AM_fix) { // AM RX mode if (gRxVfo->Modulation == MODULATION_AM && gSetting_AM_fix) { // AM RX mode
if (reset_am_fix) if (reset_am_fix)
AM_fix_reset(chan); // TODO: only reset it when moving channel/frequency AM_fix_reset(chan); // TODO: only reset it when moving channel/frequency
AM_fix_10ms(chan); AM_fix_10ms(chan);
@@ -540,10 +528,11 @@ void APP_StartListening(FUNCTION_Type_t Function, const bool reset_am_fix)
} }
// AF gain - original QS values // AF gain - original QS values
if (gRxVfo->AM_mode){ // if (gRxVfo->Modulation != MODULATION_FM){
BK4819_WriteRegister(BK4819_REG_48, 0xB3A8); // BK4819_WriteRegister(BK4819_REG_48, 0xB3A8);
} // }
else { // else
{
BK4819_WriteRegister(BK4819_REG_48, BK4819_WriteRegister(BK4819_REG_48,
(11u << 12) | // ??? .. 0 to 15, doesn't seem to make any difference (11u << 12) | // ??? .. 0 to 15, doesn't seem to make any difference
( 0u << 10) | // AF Rx Gain-1 ( 0u << 10) | // AF Rx Gain-1
@@ -554,7 +543,7 @@ void APP_StartListening(FUNCTION_Type_t Function, const bool reset_am_fix)
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
if (gVoiceWriteIndex == 0) // AM/FM RX mode will be set when the voice has finished if (gVoiceWriteIndex == 0) // AM/FM RX mode will be set when the voice has finished
#endif #endif
BK4819_SetAF(gRxVfo->AM_mode ? BK4819_AF_AM : BK4819_AF_FM); // no need, set it now RADIO_SetModulation(gRxVfo->Modulation); // no need, set it now
FUNCTION_Select(Function); FUNCTION_Select(Function);
@@ -632,7 +621,7 @@ static void DualwatchAlternate(void)
static void CheckRadioInterrupts(void) static void CheckRadioInterrupts(void)
{ {
if (gScreenToDisplay == DISPLAY_SCANNER) if (SCANNER_IsScanning())
return; return;
while (BK4819_ReadRegister(BK4819_REG_0C) & 1u) while (BK4819_ReadRegister(BK4819_REG_0C) & 1u)
@@ -804,7 +793,7 @@ void APP_EndTransmission(void)
if (gCurrentFunction == FUNCTION_RECEIVE || gCurrentFunction == FUNCTION_MONITOR) if (gCurrentFunction == FUNCTION_RECEIVE || gCurrentFunction == FUNCTION_MONITOR)
return; return;
if (gScanStateDir != SCAN_OFF || gCssScanMode != CSS_SCAN_MODE_OFF) if (gScanStateDir != SCAN_OFF)
return; return;
if (gVOX_NoiseDetected) if (gVOX_NoiseDetected)
@@ -895,23 +884,12 @@ void APP_Update(void)
#endif #endif
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
if (gScreenToDisplay != DISPLAY_SCANNER && gScanStateDir != SCAN_OFF && gScheduleScanListen && !gPttIsPressed && gVoiceWriteIndex == 0) if (!SCANNER_IsScanning() && gScanStateDir != SCAN_OFF && gScheduleScanListen && !gPttIsPressed && gVoiceWriteIndex == 0)
#else #else
if (gScreenToDisplay != DISPLAY_SCANNER && gScanStateDir != SCAN_OFF && gScheduleScanListen && !gPttIsPressed) if (!SCANNER_IsScanning() && gScanStateDir != SCAN_OFF && gScheduleScanListen && !gPttIsPressed)
#endif #endif
{ // scanning { // scanning
SCANNER_ContinueScanning(); CHFRSCANNER_ContinueScanning();
}
#ifdef ENABLE_VOICE
if (gCssScanMode == CSS_SCAN_MODE_SCANNING && gScheduleScanListen && gVoiceWriteIndex == 0)
#else
if (gCssScanMode == CSS_SCAN_MODE_SCANNING && gScheduleScanListen)
#endif
{
MENU_SelectNextCode();
gScheduleScanListen = false;
} }
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
@@ -930,7 +908,7 @@ void APP_Update(void)
#endif #endif
// toggle between the VFO's if dual watch is enabled // toggle between the VFO's if dual watch is enabled
if (gScreenToDisplay != DISPLAY_SCANNER && gEeprom.DUAL_WATCH != DUAL_WATCH_OFF) if (!SCANNER_IsScanning() && gEeprom.DUAL_WATCH != DUAL_WATCH_OFF)
{ {
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
if (gScheduleDualWatch && gVoiceWriteIndex == 0) if (gScheduleDualWatch && gVoiceWriteIndex == 0)
@@ -938,7 +916,7 @@ void APP_Update(void)
if (gScheduleDualWatch) if (gScheduleDualWatch)
#endif #endif
{ {
if (gScanStateDir == SCAN_OFF && gCssScanMode == CSS_SCAN_MODE_OFF) if (gScanStateDir == SCAN_OFF)
{ {
if (!gPttIsPressed && if (!gPttIsPressed &&
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
@@ -989,7 +967,7 @@ void APP_Update(void)
gKeyBeingHeld || gKeyBeingHeld ||
gEeprom.BATTERY_SAVE == 0 || gEeprom.BATTERY_SAVE == 0 ||
gScanStateDir != SCAN_OFF || gScanStateDir != SCAN_OFF ||
gCssScanMode != CSS_SCAN_MODE_OFF || gCssBackgroundScan ||
gScreenToDisplay != DISPLAY_MAIN || gScreenToDisplay != DISPLAY_MAIN ||
gDTMF_CallState != DTMF_CALL_STATE_NONE) gDTMF_CallState != DTMF_CALL_STATE_NONE)
{ {
@@ -1013,7 +991,7 @@ void APP_Update(void)
gKeyBeingHeld || gKeyBeingHeld ||
gEeprom.BATTERY_SAVE == 0 || gEeprom.BATTERY_SAVE == 0 ||
gScanStateDir != SCAN_OFF || gScanStateDir != SCAN_OFF ||
gCssScanMode != CSS_SCAN_MODE_OFF || gCssBackgroundScan ||
gScreenToDisplay != DISPLAY_MAIN || gScreenToDisplay != DISPLAY_MAIN ||
gDTMF_CallState != DTMF_CALL_STATE_NONE) gDTMF_CallState != DTMF_CALL_STATE_NONE)
{ {
@@ -1047,7 +1025,7 @@ void APP_Update(void)
if (gEeprom.DUAL_WATCH != DUAL_WATCH_OFF && if (gEeprom.DUAL_WATCH != DUAL_WATCH_OFF &&
gScanStateDir == SCAN_OFF && gScanStateDir == SCAN_OFF &&
gCssScanMode == CSS_SCAN_MODE_OFF) !gCssBackgroundScan)
{ // dual watch mode, toggle between the two VFO's { // dual watch mode, toggle between the two VFO's
DualwatchAlternate(); DualwatchAlternate();
@@ -1060,7 +1038,7 @@ void APP_Update(void)
gRxIdleMode = false; // RX is awake gRxIdleMode = false; // RX is awake
} }
else else
if (gEeprom.DUAL_WATCH == DUAL_WATCH_OFF || gScanStateDir != SCAN_OFF || gCssScanMode != CSS_SCAN_MODE_OFF || gUpdateRSSI) if (gEeprom.DUAL_WATCH == DUAL_WATCH_OFF || gScanStateDir != SCAN_OFF || gCssBackgroundScan || gUpdateRSSI)
{ // dual watch mode off or scanning or rssi update request { // dual watch mode off or scanning or rssi update request
UpdateRSSI(gEeprom.RX_VFO); UpdateRSSI(gEeprom.RX_VFO);
@@ -1209,8 +1187,8 @@ void APP_TimeSlice10ms(void)
#endif #endif
#ifdef ENABLE_AM_FIX #ifdef ENABLE_AM_FIX
// if (gEeprom.VfoInfo[gEeprom.RX_VFO].AM_mode && gSetting_AM_fix) // if (gEeprom.VfoInfo[gEeprom.RX_VFO].Modulation != MODULATION_FM && gSetting_AM_fix)
if (gRxVfo->AM_mode && gSetting_AM_fix) if (gRxVfo->Modulation == MODULATION_AM && gSetting_AM_fix)
AM_fix_10ms(gEeprom.RX_VFO); AM_fix_10ms(gEeprom.RX_VFO);
#endif #endif
@@ -1329,153 +1307,33 @@ void APP_TimeSlice10ms(void)
} }
} }
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
if (gFmRadioMode && gFM_RestoreCountdown_10ms > 0) if (gFmRadioMode && gFM_RestoreCountdown_10ms > 0)
{
if (--gFM_RestoreCountdown_10ms == 0)
{ // switch back to FM radio mode
FM_Start();
GUI_SelectNextDisplay(DISPLAY_FM);
}
}
#endif
if (gScreenToDisplay == DISPLAY_SCANNER)
{ {
uint32_t Result; if (--gFM_RestoreCountdown_10ms == 0)
int32_t Delta; { // switch back to FM radio mode
BK4819_CssScanResult_t ScanResult; FM_Start();
uint16_t CtcssFreq; GUI_SelectNextDisplay(DISPLAY_FM);
if (gScanDelay_10ms > 0)
{
if (--gScanDelay_10ms > 0)
{
CheckKeys();
return;
}
}
if (gScannerEditState != 0)
{
CheckKeys();
return;
}
switch (gScanCssState)
{
case SCAN_CSS_STATE_OFF:
// must be RF frequency scanning if we're here ?
if (!BK4819_GetFrequencyScanResult(&Result))
break;
Delta = Result - gScanFrequency;
gScanFrequency = Result;
if (Delta < 0)
Delta = -Delta;
if (Delta < 100)
gScanHitCount++;
else
gScanHitCount = 0;
BK4819_DisableFrequencyScan();
if (gScanHitCount < 3)
{
BK4819_EnableFrequencyScan();
}
else
{
BK4819_SetScanFrequency(gScanFrequency);
gScanCssResultCode = 0xFF;
gScanCssResultType = 0xFF;
gScanHitCount = 0;
gScanUseCssResult = false;
gScanProgressIndicator = 0;
gScanCssState = SCAN_CSS_STATE_SCANNING;
GUI_SelectNextDisplay(DISPLAY_SCANNER);
gUpdateStatus = true;
}
gScanDelay_10ms = scan_delay_10ms;
//gScanDelay_10ms = 1; // 10ms
break;
case SCAN_CSS_STATE_SCANNING:
ScanResult = BK4819_GetCxCSSScanResult(&Result, &CtcssFreq);
if (ScanResult == BK4819_CSS_RESULT_NOT_FOUND)
break;
BK4819_Disable();
if (ScanResult == BK4819_CSS_RESULT_CDCSS)
{
const uint8_t Code = DCS_GetCdcssCode(Result);
if (Code != 0xFF)
{
gScanCssResultCode = Code;
gScanCssResultType = CODE_TYPE_DIGITAL;
gScanCssState = SCAN_CSS_STATE_FOUND;
gScanUseCssResult = true;
gUpdateStatus = true;
}
}
else
if (ScanResult == BK4819_CSS_RESULT_CTCSS)
{
const uint8_t Code = DCS_GetCtcssCode(CtcssFreq);
if (Code != 0xFF)
{
if (Code == gScanCssResultCode && gScanCssResultType == CODE_TYPE_CONTINUOUS_TONE)
{
if (++gScanHitCount >= 2)
{
gScanCssState = SCAN_CSS_STATE_FOUND;
gScanUseCssResult = true;
gUpdateStatus = true;
}
}
else
gScanHitCount = 0;
gScanCssResultType = CODE_TYPE_CONTINUOUS_TONE;
gScanCssResultCode = Code;
}
}
if (gScanCssState < SCAN_CSS_STATE_FOUND)
{
BK4819_SetScanFrequency(gScanFrequency);
gScanDelay_10ms = scan_delay_10ms;
break;
}
GUI_SelectNextDisplay(DISPLAY_SCANNER);
break;
default:
break;
} }
} }
#endif
#ifdef ENABLE_AIRCOPY
if (gScreenToDisplay == DISPLAY_AIRCOPY && gAircopyState == AIRCOPY_TRANSFER && gAirCopyIsSendMode == 1) SCANNER_TimeSlice10ms();
#ifdef ENABLE_AIRCOPY
if (gScreenToDisplay == DISPLAY_AIRCOPY && gAircopyState == AIRCOPY_TRANSFER && gAirCopyIsSendMode == 1)
{
if (gAircopySendCountdown > 0)
{ {
if (gAircopySendCountdown > 0) if (--gAircopySendCountdown == 0)
{ {
if (--gAircopySendCountdown == 0) AIRCOPY_SendMessage();
{ GUI_DisplayScreen();
AIRCOPY_SendMessage();
GUI_DisplayScreen();
}
} }
} }
#endif }
#endif
CheckKeys(); CheckKeys();
} }
@@ -1565,9 +1423,9 @@ void APP_TimeSlice500ms(void)
if (gBacklightCountdown > 0 && if (gBacklightCountdown > 0 &&
!gAskToSave && !gAskToSave &&
gCssScanMode == CSS_SCAN_MODE_OFF && !gCssBackgroundScan &&
// don't turn off backlight if user is in backlight menu option // don't turn off backlight if user is in backlight menu option
!(gScreenToDisplay == DISPLAY_MENU && (GetCurrentMenuId() == MENU_ABR || GetCurrentMenuId() == MENU_ABR_MAX)) !(gScreenToDisplay == DISPLAY_MENU && (UI_MENU_GetCurrentMenuId() == MENU_ABR || UI_MENU_GetCurrentMenuId() == MENU_ABR_MAX))
) )
{ if (--gBacklightCountdown == 0) { if (--gBacklightCountdown == 0)
if (gEeprom.BACKLIGHT_TIME < (ARRAY_SIZE(gSubMenu_BACKLIGHT) - 1)) // backlight is not set to be always on if (gEeprom.BACKLIGHT_TIME < (ARRAY_SIZE(gSubMenu_BACKLIGHT) - 1)) // backlight is not set to be always on
@@ -1622,15 +1480,15 @@ void APP_TimeSlice500ms(void)
} }
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
if ((gFM_ScanState == FM_SCAN_OFF || gAskToSave) && gCssScanMode == CSS_SCAN_MODE_OFF) if ((gFM_ScanState == FM_SCAN_OFF || gAskToSave) && !gCssBackgroundScan)
#else #else
if (gCssScanMode == CSS_SCAN_MODE_OFF) if (!gCssBackgroundScan)
#endif #endif
{ {
#ifdef ENABLE_AIRCOPY #ifdef ENABLE_AIRCOPY
if (gScanStateDir == SCAN_OFF && gScreenToDisplay != DISPLAY_AIRCOPY && (gScreenToDisplay != DISPLAY_SCANNER || gScanCssState >= SCAN_CSS_STATE_FOUND)) if (gScanStateDir == SCAN_OFF && gScreenToDisplay != DISPLAY_AIRCOPY && !SCANNER_IsScanning())
#else #else
if (gScanStateDir == SCAN_OFF && (gScreenToDisplay != DISPLAY_SCANNER || gScanCssState >= SCAN_CSS_STATE_FOUND)) if (gScanStateDir == SCAN_OFF && !SCANNER_IsScanning())
#endif #endif
{ {
if (gEeprom.AUTO_KEYPAD_LOCK && gKeyLockCountdown > 0 && !gDTMF_InputMode && gScreenToDisplay != DISPLAY_MENU) if (gEeprom.AUTO_KEYPAD_LOCK && gKeyLockCountdown > 0 && !gDTMF_InputMode && gScreenToDisplay != DISPLAY_MENU)
@@ -1652,7 +1510,7 @@ void APP_TimeSlice500ms(void)
if (gInputBoxIndex > 0 || gDTMF_InputMode) if (gInputBoxIndex > 0 || gDTMF_InputMode)
AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL); AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL);
/* /*
if (gScreenToDisplay == DISPLAY_SCANNER) if (SCANNER_IsScanning())
{ {
BK4819_StopScan(); BK4819_StopScan();
@@ -1688,10 +1546,10 @@ void APP_TimeSlice500ms(void)
if (disp == DISPLAY_INVALID) if (disp == DISPLAY_INVALID)
{ {
#ifndef ENABLE_CODE_SCAN_TIMEOUT #ifndef ENABLE_NO_CODE_SCAN_TIMEOUT
if (gScreenToDisplay != DISPLAY_SCANNER) if (!SCANNER_IsScanning())
#endif #endif
disp = DISPLAY_MAIN; disp = DISPLAY_MAIN;
} }
if (disp != DISPLAY_INVALID) if (disp != DISPLAY_INVALID)
@@ -1722,77 +1580,8 @@ void APP_TimeSlice500ms(void)
} }
} }
BATTERY_TimeSlice500ms();
if (gLowBattery) SCANNER_TimeSlice500ms();
{
gLowBatteryBlink = ++gLowBatteryCountdown & 1;
UI_DisplayBattery(0, gLowBatteryBlink);
if (gCurrentFunction != FUNCTION_TRANSMIT)
{ // not transmitting
if (gLowBatteryCountdown < 30)
{
if (gLowBatteryCountdown == 29 && !gChargingWithTypeC)
AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP);
}
else
{
gLowBatteryCountdown = 0;
if (!gChargingWithTypeC)
{ // not on charge
AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP);
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_LOW_VOLTAGE);
#endif
if (gBatteryDisplayLevel == 0)
{
#ifdef ENABLE_VOICE
AUDIO_PlaySingleVoice(true);
#endif
gReducedService = true;
//if (gCurrentFunction != FUNCTION_POWER_SAVE)
FUNCTION_Select(FUNCTION_POWER_SAVE);
ST7565_HardwareReset();
if (gEeprom.BACKLIGHT_TIME < (ARRAY_SIZE(gSubMenu_BACKLIGHT) - 1))
BACKLIGHT_TurnOff(); // turn the backlight off
}
#ifdef ENABLE_VOICE
else
AUDIO_PlaySingleVoice(false);
#endif
}
}
}
}
if (gScreenToDisplay == DISPLAY_SCANNER && gScannerEditState == 0 && gScanCssState < SCAN_CSS_STATE_FOUND)
{
gScanProgressIndicator++;
#ifdef ENABLE_CODE_SCAN_TIMEOUT
if (gScanProgressIndicator > 32)
{
if (gScanCssState == SCAN_CSS_STATE_SCANNING && !gScanSingleFrequency)
gScanCssState = SCAN_CSS_STATE_FOUND;
else
gScanCssState = SCAN_CSS_STATE_FAILED;
gUpdateStatus = true;
}
#endif
gUpdateDisplay = true;
}
if (gCurrentFunction != FUNCTION_TRANSMIT) if (gCurrentFunction != FUNCTION_TRANSMIT)
{ {
@@ -1914,7 +1703,7 @@ static void ProcessKey(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
else // key pressed or held else // key pressed or held
{ {
const uint8_t s = gSetting_backlight_on_tx_rx; const uint8_t s = gSetting_backlight_on_tx_rx;
const int m = GetCurrentMenuId(); const int m = UI_MENU_GetCurrentMenuId();
if ( //not when PTT and the backlight shouldn't turn on on TX if ( //not when PTT and the backlight shouldn't turn on on TX
!(Key == KEY_PTT && s != BACKLIGHT_ON_TR_TX && s != BACKLIGHT_ON_TR_TXRX) !(Key == KEY_PTT && s != BACKLIGHT_ON_TR_TX && s != BACKLIGHT_ON_TR_TXRX)
// not in the backlight menu // not in the backlight menu
@@ -1956,8 +1745,18 @@ static void ProcessKey(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
} }
} }
if (gEeprom.KEY_LOCK && gCurrentFunction != FUNCTION_TRANSMIT && Key != KEY_PTT) bool lowBatPopup = gLowBattery && !gLowBatteryConfirmed && gScreenToDisplay == DISPLAY_MAIN;
{ // keyboard is locked
if ((gEeprom.KEY_LOCK || lowBatPopup) && gCurrentFunction != FUNCTION_TRANSMIT && Key != KEY_PTT)
{ // keyboard is locked or low battery popup
// close low battery popup
if(Key == KEY_EXIT && bKeyPressed && lowBatPopup) {
gLowBatteryConfirmed = true;
gUpdateDisplay = true;
AUDIO_PlayBeep(BEEP_1KHZ_60MS_OPTIONAL);
return;
}
if (Key == KEY_F) if (Key == KEY_F)
{ // function/key-lock key { // function/key-lock key
@@ -1993,7 +1792,7 @@ static void ProcessKey(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
if (Key <= KEY_9 || Key == KEY_F) if (Key <= KEY_9 || Key == KEY_F)
{ {
if (gScanStateDir != SCAN_OFF || gCssScanMode != CSS_SCAN_MODE_OFF) if (gScanStateDir != SCAN_OFF || gCssBackgroundScan)
{ // FREQ/CTCSS/DCS scanning { // FREQ/CTCSS/DCS scanning
if (bKeyPressed && !bKeyHeld) if (bKeyPressed && !bKeyHeld)
AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL); AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL);
@@ -2149,9 +1948,9 @@ static void ProcessKey(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
} }
else else
#ifdef ENABLE_AIRCOPY #ifdef ENABLE_AIRCOPY
if (gScreenToDisplay != DISPLAY_SCANNER && gScreenToDisplay != DISPLAY_AIRCOPY) if (!SCANNER_IsScanning() && gScreenToDisplay != DISPLAY_AIRCOPY)
#else #else
if (gScreenToDisplay != DISPLAY_SCANNER) if (!SCANNER_IsScanning())
#endif #endif
{ {
ACTION_Handle(Key, bKeyPressed, bKeyHeld); ACTION_Handle(Key, bKeyPressed, bKeyHeld);
@@ -2177,12 +1976,6 @@ Skip:
gFlagAcceptSetting = false; gFlagAcceptSetting = false;
} }
if (gFlagStopScan)
{
BK4819_StopScan();
gFlagStopScan = false;
}
if (gRequestSaveSettings) if (gRequestSaveSettings)
{ {
if (!bKeyHeld) if (!bKeyHeld)
@@ -2219,7 +2012,7 @@ Skip:
{ {
SETTINGS_SaveChannel(gTxVfo->CHANNEL_SAVE, gEeprom.TX_VFO, gTxVfo, gRequestSaveChannel); SETTINGS_SaveChannel(gTxVfo->CHANNEL_SAVE, gEeprom.TX_VFO, gTxVfo, gRequestSaveChannel);
if (gScreenToDisplay != DISPLAY_SCANNER) if (!SCANNER_IsScanning())
if (gVfoConfigureMode == VFO_CONFIGURE_NONE) // 'if' is so as we don't wipe out previously setting this variable elsewhere if (gVfoConfigureMode == VFO_CONFIGURE_NONE) // 'if' is so as we don't wipe out previously setting this variable elsewhere
gVfoConfigureMode = VFO_CONFIGURE; gVfoConfigureMode = VFO_CONFIGURE;
} }
@@ -2284,22 +2077,6 @@ Skip:
MENU_ShowCurrentSetting(); MENU_ShowCurrentSetting();
} }
if (gFlagStartScan)
{
gFlagStartScan = false;
gMonitor = false;
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_SCANNING_BEGIN);
AUDIO_PlaySingleVoice(true);
#endif
SCANNER_Start();
gRequestDisplayScreen = DISPLAY_SCANNER;
}
if (gFlagPrepareTX) if (gFlagPrepareTX)
{ {
RADIO_PrepareTX(); RADIO_PrepareTX();

262
app/chFrScanner.c Normal file
View File

@@ -0,0 +1,262 @@
#include "app/app.h"
#include "app/chFrScanner.h"
#include "functions.h"
#include "misc.h"
#include "settings.h"
int8_t gScanStateDir;
bool gScanKeepResult;
bool gScanPauseMode;
typedef enum {
SCAN_NEXT_CHAN_SCANLIST1 = 0,
SCAN_NEXT_CHAN_SCANLIST2,
SCAN_NEXT_CHAN_DUAL_WATCH,
SCAN_NEXT_CHAN_MR,
SCAN_NEXT_NUM
} scan_next_chan_t;
scan_next_chan_t currentScanList;
uint32_t initialFrqOrChan;
uint8_t initialCROSS_BAND_RX_TX;
uint32_t lastFoundFrqOrChan;
static void NextFreqChannel(void);
static void NextMemChannel(void);
void CHFRSCANNER_Start(const bool storeBackupSettings, const int8_t scan_direction)
{
if (storeBackupSettings) {
initialCROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX;
gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF;
gScanKeepResult = false;
}
RADIO_SelectVfos();
gNextMrChannel = gRxVfo->CHANNEL_SAVE;
currentScanList = SCAN_NEXT_CHAN_SCANLIST1;
gScanStateDir = scan_direction;
if (IS_MR_CHANNEL(gNextMrChannel))
{ // channel mode
if (storeBackupSettings) {
initialFrqOrChan = gRxVfo->CHANNEL_SAVE;
lastFoundFrqOrChan = initialFrqOrChan;
}
NextMemChannel();
}
else
{ // frequency mode
if (storeBackupSettings) {
initialFrqOrChan = gRxVfo->freq_config_RX.Frequency;
lastFoundFrqOrChan = initialFrqOrChan;
}
NextFreqChannel();
}
gScanPauseDelayIn_10ms = scan_pause_delay_in_2_10ms;
gScheduleScanListen = false;
gRxReceptionMode = RX_MODE_NONE;
gScanPauseMode = false;
}
void CHFRSCANNER_ContinueScanning(void)
{
if (IS_FREQ_CHANNEL(gNextMrChannel))
{
if (gCurrentFunction == FUNCTION_INCOMING)
APP_StartListening(gMonitor ? FUNCTION_MONITOR : FUNCTION_RECEIVE, true);
else
NextFreqChannel(); // switch to next frequency
}
else
{
if (gCurrentCodeType == CODE_TYPE_OFF && gCurrentFunction == FUNCTION_INCOMING)
APP_StartListening(gMonitor ? FUNCTION_MONITOR : FUNCTION_RECEIVE, true);
else
NextMemChannel(); // switch to next channel
}
gScanPauseMode = false;
gRxReceptionMode = RX_MODE_NONE;
gScheduleScanListen = false;
}
void CHFRSCANNER_Found(void)
{
switch (gEeprom.SCAN_RESUME_MODE)
{
case SCAN_RESUME_TO:
if (!gScanPauseMode)
{
gScanPauseDelayIn_10ms = scan_pause_delay_in_1_10ms;
gScheduleScanListen = false;
gScanPauseMode = true;
}
break;
case SCAN_RESUME_CO:
case SCAN_RESUME_SE:
gScanPauseDelayIn_10ms = 0;
gScheduleScanListen = false;
break;
}
if (IS_MR_CHANNEL(gRxVfo->CHANNEL_SAVE)) { //memory scan
lastFoundFrqOrChan = gRxVfo->CHANNEL_SAVE;
}
else { // frequency scan
lastFoundFrqOrChan = gRxVfo->freq_config_RX.Frequency;
}
gScanKeepResult = true;
}
void CHFRSCANNER_Stop(void)
{
if(initialCROSS_BAND_RX_TX != CROSS_BAND_OFF) {
gEeprom.CROSS_BAND_RX_TX = initialCROSS_BAND_RX_TX;
initialCROSS_BAND_RX_TX = CROSS_BAND_OFF;
}
gScanStateDir = SCAN_OFF;
const uint32_t chFr = gScanKeepResult ? lastFoundFrqOrChan : initialFrqOrChan;
const bool channelChanged = chFr != initialFrqOrChan;
if (IS_MR_CHANNEL(gNextMrChannel)) {
gEeprom.MrChannel[gEeprom.RX_VFO] = chFr;
gEeprom.ScreenChannel[gEeprom.RX_VFO] = chFr;
RADIO_ConfigureChannel(gEeprom.RX_VFO, VFO_CONFIGURE_RELOAD);
if(channelChanged) {
SETTINGS_SaveVfoIndices();
gUpdateStatus = true;
}
}
else {
gRxVfo->freq_config_RX.Frequency = chFr;
RADIO_ApplyOffset(gRxVfo);
RADIO_ConfigureSquelchAndOutputPower(gRxVfo);
if(channelChanged) {
SETTINGS_SaveChannel(gRxVfo->CHANNEL_SAVE, gEeprom.RX_VFO, gRxVfo, 1);
}
}
RADIO_SetupRegisters(true);
gUpdateDisplay = true;
}
static void NextFreqChannel(void)
{
gRxVfo->freq_config_RX.Frequency = APP_SetFrequencyByStep(gRxVfo, gScanStateDir);
RADIO_ApplyOffset(gRxVfo);
RADIO_ConfigureSquelchAndOutputPower(gRxVfo);
RADIO_SetupRegisters(true);
#ifdef ENABLE_FASTER_CHANNEL_SCAN
gScanPauseDelayIn_10ms = 9; // 90ms
#else
gScanPauseDelayIn_10ms = scan_pause_delay_in_6_10ms;
#endif
gUpdateDisplay = true;
}
static void NextMemChannel(void)
{
static unsigned int prev_mr_chan = 0;
const bool enabled = (gEeprom.SCAN_LIST_DEFAULT < 2) ? gEeprom.SCAN_LIST_ENABLED[gEeprom.SCAN_LIST_DEFAULT] : true;
const int chan1 = (gEeprom.SCAN_LIST_DEFAULT < 2) ? gEeprom.SCANLIST_PRIORITY_CH1[gEeprom.SCAN_LIST_DEFAULT] : -1;
const int chan2 = (gEeprom.SCAN_LIST_DEFAULT < 2) ? gEeprom.SCANLIST_PRIORITY_CH2[gEeprom.SCAN_LIST_DEFAULT] : -1;
const unsigned int prev_chan = gNextMrChannel;
unsigned int chan = 0;
if (enabled)
{
switch (currentScanList)
{
case SCAN_NEXT_CHAN_SCANLIST1:
prev_mr_chan = gNextMrChannel;
if (chan1 >= 0)
{
if (RADIO_CheckValidChannel(chan1, false, 0))
{
currentScanList = SCAN_NEXT_CHAN_SCANLIST1;
gNextMrChannel = chan1;
break;
}
}
[[fallthrough]];
case SCAN_NEXT_CHAN_SCANLIST2:
if (chan2 >= 0)
{
if (RADIO_CheckValidChannel(chan2, false, 0))
{
currentScanList = SCAN_NEXT_CHAN_SCANLIST2;
gNextMrChannel = chan2;
break;
}
}
[[fallthrough]];
// this bit doesn't yet work if the other VFO is a frequency
case SCAN_NEXT_CHAN_DUAL_WATCH:
// dual watch is enabled - include the other VFO in the scan
// if (gEeprom.DUAL_WATCH != DUAL_WATCH_OFF)
// {
// chan = (gEeprom.RX_VFO + 1) & 1u;
// chan = gEeprom.ScreenChannel[chan];
// if (IS_MR_CHANNEL(chan))
// {
// currentScanList = SCAN_NEXT_CHAN_DUAL_WATCH;
// gNextMrChannel = chan;
// break;
// }
// }
default:
case SCAN_NEXT_CHAN_MR:
currentScanList = SCAN_NEXT_CHAN_MR;
gNextMrChannel = prev_mr_chan;
chan = 0xff;
break;
}
}
if (!enabled || chan == 0xff)
{
chan = RADIO_FindNextChannel(gNextMrChannel + gScanStateDir, gScanStateDir, (gEeprom.SCAN_LIST_DEFAULT < 2) ? true : false, gEeprom.SCAN_LIST_DEFAULT);
if (chan == 0xFF)
{ // no valid channel found
chan = MR_CHANNEL_FIRST;
}
gNextMrChannel = chan;
}
if (gNextMrChannel != prev_chan)
{
gEeprom.MrChannel[ gEeprom.RX_VFO] = gNextMrChannel;
gEeprom.ScreenChannel[gEeprom.RX_VFO] = gNextMrChannel;
RADIO_ConfigureChannel(gEeprom.RX_VFO, VFO_CONFIGURE_RELOAD);
RADIO_SetupRegisters(true);
gUpdateDisplay = true;
}
#ifdef ENABLE_FASTER_CHANNEL_SCAN
gScanPauseDelayIn_10ms = 9; // 90ms .. <= ~60ms it misses signals (squelch response and/or PLL lock time) ?
#else
gScanPauseDelayIn_10ms = scan_pause_delay_in_3_10ms;
#endif
if (enabled)
if (++currentScanList >= SCAN_NEXT_NUM)
currentScanList = SCAN_NEXT_CHAN_SCANLIST1; // back round we go
}

18
app/chFrScanner.h Normal file
View File

@@ -0,0 +1,18 @@
#ifndef APP_CHFRSCANNER_H
#define APP_CHFRSCANNER_H
#include <stdbool.h>
#include <stdint.h>
// scan direction, if not equal SCAN_OFF indicates
// that we are in a process of scanning channels/frequencies
extern int8_t gScanStateDir;
extern bool gScanKeepResult;
extern bool gScanPauseMode;
void CHFRSCANNER_Found(void);
void CHFRSCANNER_Stop(void);
void CHFRSCANNER_Start(const bool storeBackupSettings, const int8_t scan_direction);
void CHFRSCANNER_ContinueScanning(void);
#endif

View File

@@ -17,6 +17,7 @@
#include <string.h> #include <string.h>
#include <stdio.h> // NULL #include <stdio.h> // NULL
#include "app/chFrScanner.h"
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
#include "app/fm.h" #include "app/fm.h"
#endif #endif
@@ -209,7 +210,7 @@ void DTMF_HandleRequest(void)
if (!gDTMF_RX_pending) if (!gDTMF_RX_pending)
return; // nothing new received return; // nothing new received
if (gScanStateDir != SCAN_OFF || gCssScanMode != CSS_SCAN_MODE_OFF) if (gScanStateDir != SCAN_OFF || gCssBackgroundScan)
{ // we're busy scanning { // we're busy scanning
DTMF_clear_RX(); DTMF_clear_RX();
return; return;

View File

@@ -17,6 +17,7 @@
#include <string.h> #include <string.h>
#include "app/app.h" #include "app/app.h"
#include "app/chFrScanner.h"
#include "app/common.h" #include "app/common.h"
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
@@ -142,36 +143,21 @@ void GENERIC_Key_PTT(bool bKeyPressed)
// PTT pressed // PTT pressed
if (gScanStateDir != SCAN_OFF || // frequency/channel scanning
gScreenToDisplay == DISPLAY_SCANNER || // CTCSS/CDCSS scanning
gCssScanMode != CSS_SCAN_MODE_OFF) // " "
{ // we're scanning .. stop
if (gScreenToDisplay == DISPLAY_SCANNER)
{ // CTCSS/CDCSS scanning .. stop
gEeprom.CROSS_BAND_RX_TX = gBackup_CROSS_BAND_RX_TX;
gFlagStopScan = true;
gVfoConfigureMode = VFO_CONFIGURE_RELOAD;
gFlagResetVfos = true;
}
else
if (gScanStateDir != SCAN_OFF)
{ // frequency/channel scanning . .stop
SCANNER_Stop();
}
else
if (gCssScanMode != CSS_SCAN_MODE_OFF)
{ // CTCSS/CDCSS scanning .. stop
MENU_StopCssScan();
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
#endif
}
if (SCANNER_IsScanning())
{ // CTCSS/CDCSS scanning .. stop
SCANNER_Stop();
goto cancel_tx; goto cancel_tx;
} }
if (gScanStateDir != SCAN_OFF)
{ // frequency/channel scanning . .stop
CHFRSCANNER_Stop();
goto cancel_tx;
}
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
if (gFM_ScanState != FM_SCAN_OFF) if (gFM_ScanState != FM_SCAN_OFF)
{ // FM radio is scanning .. stop { // FM radio is scanning .. stop

View File

@@ -18,6 +18,7 @@
#include "app/action.h" #include "app/action.h"
#include "app/app.h" #include "app/app.h"
#include "app/chFrScanner.h"
#include "app/common.h" #include "app/common.h"
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
#include "app/fm.h" #include "app/fm.h"
@@ -45,7 +46,7 @@
void toggle_chan_scanlist(void) void toggle_chan_scanlist(void)
{ // toggle the selected channels scanlist setting { // toggle the selected channels scanlist setting
if (gScreenToDisplay == DISPLAY_SCANNER || !IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE)) if ( SCANNER_IsScanning() || !IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE))
return; return;
if (gTxVfo->SCANLIST1_PARTICIPATION) if (gTxVfo->SCANLIST1_PARTICIPATION)
@@ -105,7 +106,7 @@ static void processFKeyFunction(const KEY_Code_t Key, const bool beep)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
#ifdef ENABLE_COPY_CHAN_TO_VFO #ifdef ENABLE_COPY_CHAN_TO_VFO
if (gEeprom.VFO_OPEN && gCssScanMode == CSS_SCAN_MODE_OFF) if (gEeprom.VFO_OPEN && !gCssBackgroundScan)
{ {
if (gScanStateDir != SCAN_OFF) if (gScanStateDir != SCAN_OFF)
@@ -192,15 +193,15 @@ static void processFKeyFunction(const KEY_Code_t Key, const bool beep)
case KEY_4: case KEY_4:
gWasFKeyPressed = false; gWasFKeyPressed = false;
gFlagStartScan = true;
gScanSingleFrequency = false;
gBackup_CROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX; gBackup_CROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX;
gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF; gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF;
gUpdateStatus = true; gUpdateStatus = true;
if (beep) if (beep)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
SCANNER_Start(false);
gRequestDisplayScreen = DISPLAY_SCANNER;
break; break;
case KEY_5: case KEY_5:
@@ -506,7 +507,7 @@ static void MAIN_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
else else
{ {
gScanKeepResult = false; gScanKeepResult = false;
SCANNER_Stop(); CHFRSCANNER_Stop();
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP; gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
@@ -579,7 +580,7 @@ static void MAIN_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
if (bFlag) if (bFlag)
{ {
if (gScanStateDir != SCAN_OFF) { if (gScanStateDir != SCAN_OFF) {
SCANNER_Stop(); CHFRSCANNER_Stop();
return; return;
} }
@@ -651,19 +652,18 @@ static void MAIN_Key_STAR(bool bKeyPressed, bool bKeyHeld)
{ // with the F-key { // with the F-key
gWasFKeyPressed = false; gWasFKeyPressed = false;
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
if (IS_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE)) if (IS_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE)) {
{ gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL; return;
return; }
} #endif
#endif
// scan the CTCSS/DCS code // scan the CTCSS/DCS code
gFlagStartScan = true;
gScanSingleFrequency = true;
gBackup_CROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX; gBackup_CROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX;
gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF; gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF;
SCANNER_Start(true);
gRequestDisplayScreen = DISPLAY_SCANNER;
} }
gPttWasReleased = true; gPttWasReleased = true;
@@ -764,7 +764,7 @@ static void MAIN_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
} }
// jump to the next channel // jump to the next channel
SCANNER_ScanChannels(false, Direction); CHFRSCANNER_Start(false, Direction);
gScanPauseDelayIn_10ms = 1; gScanPauseDelayIn_10ms = 1;
gScheduleScanListen = false; gScheduleScanListen = false;

View File

@@ -47,6 +47,8 @@
#define ARRAY_SIZE(x) (sizeof(x) / sizeof(x[0])) #define ARRAY_SIZE(x) (sizeof(x) / sizeof(x[0]))
#endif #endif
uint8_t gUnlockAllTxConfCnt;
#ifdef ENABLE_F_CAL_MENU #ifdef ENABLE_F_CAL_MENU
void writeXtalFreqCal(const int32_t value, const bool update_eeprom) void writeXtalFreqCal(const int32_t value, const bool update_eeprom)
{ {
@@ -75,27 +77,39 @@
} }
#endif #endif
void MENU_StartCssScan(int8_t Direction) void MENU_StartCssScan(void)
{ {
gCssScanMode = CSS_SCAN_MODE_SCANNING; SCANNER_Start(true);
gUpdateStatus = true; gUpdateStatus = true;
gCssBackgroundScan = true;
gMenuScrollDirection = Direction; gRequestDisplayScreen = DISPLAY_MENU;
}
RADIO_SelectVfos(); void MENU_CssScanFound(void)
{
if(gScanCssResultType == CODE_TYPE_DIGITAL || gScanCssResultType == CODE_TYPE_REVERSE_DIGITAL) {
gMenuCursor = UI_MENU_GetMenuIdx(MENU_R_DCS);
}
else if(gScanCssResultType == CODE_TYPE_CONTINUOUS_TONE) {
gMenuCursor = UI_MENU_GetMenuIdx(MENU_R_CTCS);
}
MENU_SelectNextCode(); MENU_ShowCurrentSetting();
gScanPauseDelayIn_10ms = scan_pause_delay_in_2_10ms; gUpdateStatus = true;
gScheduleScanListen = false; gUpdateDisplay = true;
} }
void MENU_StopCssScan(void) void MENU_StopCssScan(void)
{ {
gCssScanMode = CSS_SCAN_MODE_OFF; gCssBackgroundScan = false;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
#endif
gUpdateDisplay = true;
gUpdateStatus = true; gUpdateStatus = true;
RADIO_SetupRegisters(true);
} }
int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax) int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
@@ -109,7 +123,7 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
case MENU_STEP: case MENU_STEP:
*pMin = 0; *pMin = 0;
*pMax = ARRAY_SIZE(StepFrequencyTable) - 1; *pMax = ARRAY_SIZE(gStepFrequencyTable) - 1;
break; break;
case MENU_ABR: case MENU_ABR:
@@ -232,7 +246,6 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
case MENU_D_ST: case MENU_D_ST:
case MENU_D_DCD: case MENU_D_DCD:
case MENU_D_LIVE_DEC: case MENU_D_LIVE_DEC:
case MENU_AM:
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
case MENU_NOAA_S: case MENU_NOAA_S:
#endif #endif
@@ -241,11 +254,15 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
case MENU_500TX: case MENU_500TX:
case MENU_350EN: case MENU_350EN:
case MENU_SCREN: case MENU_SCREN:
case MENU_TX_EN:
*pMin = 0; *pMin = 0;
*pMax = ARRAY_SIZE(gSubMenu_OFF_ON) - 1; *pMax = ARRAY_SIZE(gSubMenu_OFF_ON) - 1;
break; break;
case MENU_AM:
*pMin = 0;
*pMax = ARRAY_SIZE(gModulationStr) - 1;
break;
case MENU_SCR: case MENU_SCR:
*pMin = 0; *pMin = 0;
*pMax = ARRAY_SIZE(gSubMenu_SCRAMBLER) - 1; *pMax = ARRAY_SIZE(gSubMenu_SCRAMBLER) - 1;
@@ -363,14 +380,14 @@ void MENU_AcceptSetting(void)
uint8_t Code; uint8_t Code;
FREQ_Config_t *pConfig = &gTxVfo->freq_config_RX; FREQ_Config_t *pConfig = &gTxVfo->freq_config_RX;
if (!MENU_GetLimits(GetCurrentMenuId(), &Min, &Max)) if (!MENU_GetLimits(UI_MENU_GetCurrentMenuId(), &Min, &Max))
{ {
if (gSubMenuSelection < Min) gSubMenuSelection = Min; if (gSubMenuSelection < Min) gSubMenuSelection = Min;
else else
if (gSubMenuSelection > Max) gSubMenuSelection = Max; if (gSubMenuSelection > Max) gSubMenuSelection = Max;
} }
switch (GetCurrentMenuId()) switch (UI_MENU_GetCurrentMenuId())
{ {
default: default:
return; return;
@@ -381,7 +398,7 @@ void MENU_AcceptSetting(void)
break; break;
case MENU_STEP: case MENU_STEP:
gTxVfo->STEP_SETTING = gSubMenuSelection; gTxVfo->STEP_SETTING = FREQUENCY_GetStepIdxFromSortedIdx(gSubMenuSelection);
if (IS_FREQ_CHANNEL(gTxVfo->CHANNEL_SAVE)) if (IS_FREQ_CHANNEL(gTxVfo->CHANNEL_SAVE))
{ {
gRequestSaveChannel = 1; gRequestSaveChannel = 1;
@@ -702,7 +719,7 @@ void MENU_AcceptSetting(void)
break; break;
case MENU_AM: case MENU_AM:
gTxVfo->AM_mode = gSubMenuSelection; gTxVfo->Modulation = gSubMenuSelection;
gRequestSaveChannel = 1; gRequestSaveChannel = 1;
return; return;
@@ -743,10 +760,18 @@ void MENU_AcceptSetting(void)
gSetting_350TX = gSubMenuSelection; gSetting_350TX = gSubMenuSelection;
break; break;
case MENU_F_LOCK: case MENU_F_LOCK: {
if(gSubMenuSelection == F_LOCK_NONE) { // select 10 times to enable
gUnlockAllTxConfCnt++;
if(gUnlockAllTxConfCnt < 10)
return;
}
else
gUnlockAllTxConfCnt = 0;
gSetting_F_LOCK = gSubMenuSelection; gSetting_F_LOCK = gSubMenuSelection;
break; break;
}
case MENU_200TX: case MENU_200TX:
gSetting_200TX = gSubMenuSelection; gSetting_200TX = gSubMenuSelection;
break; break;
@@ -766,10 +791,6 @@ void MENU_AcceptSetting(void)
gFlagReconfigureVfos = true; gFlagReconfigureVfos = true;
break; break;
case MENU_TX_EN:
gSetting_TX_EN = gSubMenuSelection;
break;
#ifdef ENABLE_F_CAL_MENU #ifdef ENABLE_F_CAL_MENU
case MENU_F_CALI: case MENU_F_CALI:
writeXtalFreqCal(gSubMenuSelection, true); writeXtalFreqCal(gSubMenuSelection, true);
@@ -778,12 +799,12 @@ void MENU_AcceptSetting(void)
case MENU_BATCAL: case MENU_BATCAL:
{ // voltages are averages between discharge curves of 1600 and 2200 mAh { // voltages are averages between discharge curves of 1600 and 2200 mAh
gBatteryCalibration[0] = (520ul * gSubMenuSelection) / 760; // 5.20V empty, blinking above this value, reduced functionality below // gBatteryCalibration[0] = (520ul * gSubMenuSelection) / 760; // 5.20V empty, blinking above this value, reduced functionality below
gBatteryCalibration[1] = (689ul * gSubMenuSelection) / 760; // 6.89V, ~5%, 1 bars above this value // gBatteryCalibration[1] = (689ul * gSubMenuSelection) / 760; // 6.89V, ~5%, 1 bars above this value
gBatteryCalibration[2] = (724ul * gSubMenuSelection) / 760; // 7.24V, ~17%, 2 bars above this value // gBatteryCalibration[2] = (724ul * gSubMenuSelection) / 760; // 7.24V, ~17%, 2 bars above this value
gBatteryCalibration[3] = gSubMenuSelection; // 7.6V, ~29%, 3 bars above this value gBatteryCalibration[3] = gSubMenuSelection; // 7.6V, ~29%, 3 bars above this value
gBatteryCalibration[4] = (771ul * gSubMenuSelection) / 760; // 7.71V, ~65%, 4 bars above this value // gBatteryCalibration[4] = (771ul * gSubMenuSelection) / 760; // 7.71V, ~65%, 4 bars above this value
gBatteryCalibration[5] = 2300; // gBatteryCalibration[5] = 2300;
SETTINGS_SaveBatteryCalibration(gBatteryCalibration); SETTINGS_SaveBatteryCalibration(gBatteryCalibration);
return; return;
} }
@@ -804,7 +825,7 @@ void MENU_AcceptSetting(void)
&gEeprom.KEY_2_SHORT_PRESS_ACTION, &gEeprom.KEY_2_SHORT_PRESS_ACTION,
&gEeprom.KEY_2_LONG_PRESS_ACTION, &gEeprom.KEY_2_LONG_PRESS_ACTION,
&gEeprom.KEY_M_LONG_PRESS_ACTION}; &gEeprom.KEY_M_LONG_PRESS_ACTION};
*fun[GetCurrentMenuId()-MENU_F1SHRT] = gSubMenu_SIDEFUNCTIONS[gSubMenuSelection].id; *fun[UI_MENU_GetCurrentMenuId()-MENU_F1SHRT] = gSubMenu_SIDEFUNCTIONS[gSubMenuSelection].id;
} }
break; break;
@@ -813,53 +834,12 @@ void MENU_AcceptSetting(void)
gRequestSaveSettings = true; gRequestSaveSettings = true;
} }
void MENU_SelectNextCode(void)
{
int32_t UpperLimit;
if (GetCurrentMenuId() == MENU_R_DCS)
UpperLimit = 208;
//UpperLimit = ARRAY_SIZE(DCS_Options);
else if (GetCurrentMenuId() == MENU_R_CTCS)
UpperLimit = ARRAY_SIZE(CTCSS_Options) - 1;
else
return;
gSubMenuSelection = NUMBER_AddWithWraparound(gSubMenuSelection, gMenuScrollDirection, 1, UpperLimit);
if (GetCurrentMenuId() == MENU_R_DCS)
{
if (gSubMenuSelection > 104)
{
gSelectedCodeType = CODE_TYPE_REVERSE_DIGITAL;
gSelectedCode = gSubMenuSelection - 105;
}
else
{
gSelectedCodeType = CODE_TYPE_DIGITAL;
gSelectedCode = gSubMenuSelection - 1;
}
}
else
{
gSelectedCodeType = CODE_TYPE_CONTINUOUS_TONE;
gSelectedCode = gSubMenuSelection - 1;
}
RADIO_SetupRegisters(true);
gScanPauseDelayIn_10ms = (gSelectedCodeType == CODE_TYPE_CONTINUOUS_TONE) ? scan_pause_delay_in_3_10ms : scan_pause_delay_in_4_10ms;
gUpdateDisplay = true;
}
static void MENU_ClampSelection(int8_t Direction) static void MENU_ClampSelection(int8_t Direction)
{ {
int32_t Min; int32_t Min;
int32_t Max; int32_t Max;
if (!MENU_GetLimits(GetCurrentMenuId(), &Min, &Max)) if (!MENU_GetLimits(UI_MENU_GetCurrentMenuId(), &Min, &Max))
{ {
int32_t Selection = gSubMenuSelection; int32_t Selection = gSubMenuSelection;
if (Selection < Min) Selection = Min; if (Selection < Min) Selection = Min;
@@ -871,42 +851,55 @@ static void MENU_ClampSelection(int8_t Direction)
void MENU_ShowCurrentSetting(void) void MENU_ShowCurrentSetting(void)
{ {
switch (GetCurrentMenuId()) switch (UI_MENU_GetCurrentMenuId())
{ {
case MENU_SQL: case MENU_SQL:
gSubMenuSelection = gEeprom.SQUELCH_LEVEL; gSubMenuSelection = gEeprom.SQUELCH_LEVEL;
break; break;
case MENU_STEP: case MENU_STEP:
gSubMenuSelection = gTxVfo->STEP_SETTING; gSubMenuSelection = FREQUENCY_GetSortedIdxFromStepIdx(gTxVfo->STEP_SETTING);
break; break;
case MENU_TXP: case MENU_TXP:
gSubMenuSelection = gTxVfo->OUTPUT_POWER; gSubMenuSelection = gTxVfo->OUTPUT_POWER;
break; break;
case MENU_R_DCS: case MENU_RESET:
switch (gTxVfo->freq_config_RX.CodeType) gSubMenuSelection = 0;
{ break;
case MENU_R_DCS:
case MENU_R_CTCS:
{
DCS_CodeType_t type = gTxVfo->freq_config_RX.CodeType;
uint8_t code = gTxVfo->freq_config_RX.Code;
int menuid = UI_MENU_GetCurrentMenuId();
if(gScanUseCssResult) {
gScanUseCssResult = false;
type = gScanCssResultType;
code = gScanCssResultCode;
}
if((menuid==MENU_R_CTCS) ^ (type==CODE_TYPE_CONTINUOUS_TONE)) { //not the same type
gSubMenuSelection = 0;
break;
}
switch (type) {
case CODE_TYPE_CONTINUOUS_TONE:
case CODE_TYPE_DIGITAL: case CODE_TYPE_DIGITAL:
gSubMenuSelection = gTxVfo->freq_config_RX.Code + 1; gSubMenuSelection = code + 1;
break; break;
case CODE_TYPE_REVERSE_DIGITAL: case CODE_TYPE_REVERSE_DIGITAL:
gSubMenuSelection = gTxVfo->freq_config_RX.Code + 105; gSubMenuSelection = code + 105;
break; break;
default: default:
gSubMenuSelection = 0; gSubMenuSelection = 0;
break; break;
} }
break; break;
}
case MENU_RESET:
gSubMenuSelection = 0;
break;
case MENU_R_CTCS:
gSubMenuSelection = (gTxVfo->freq_config_RX.CodeType == CODE_TYPE_CONTINUOUS_TONE) ? gTxVfo->freq_config_RX.Code + 1 : 0;
break;
case MENU_T_DCS: case MENU_T_DCS:
switch (gTxVfo->freq_config_TX.CodeType) switch (gTxVfo->freq_config_TX.CodeType)
@@ -1112,7 +1105,7 @@ void MENU_ShowCurrentSetting(void)
break; break;
case MENU_AM: case MENU_AM:
gSubMenuSelection = gTxVfo->AM_mode; gSubMenuSelection = gTxVfo->Modulation;
break; break;
#ifdef ENABLE_AM_FIX #ifdef ENABLE_AM_FIX
@@ -1165,10 +1158,6 @@ void MENU_ShowCurrentSetting(void)
gSubMenuSelection = gSetting_ScrambleEnable; gSubMenuSelection = gSetting_ScrambleEnable;
break; break;
case MENU_TX_EN:
gSubMenuSelection = gSetting_TX_EN;
break;
#ifdef ENABLE_F_CAL_MENU #ifdef ENABLE_F_CAL_MENU
case MENU_F_CALI: case MENU_F_CALI:
gSubMenuSelection = gEeprom.BK4819_XTAL_FREQ_LOW; gSubMenuSelection = gEeprom.BK4819_XTAL_FREQ_LOW;
@@ -1195,7 +1184,7 @@ void MENU_ShowCurrentSetting(void)
&gEeprom.KEY_2_SHORT_PRESS_ACTION, &gEeprom.KEY_2_SHORT_PRESS_ACTION,
&gEeprom.KEY_2_LONG_PRESS_ACTION, &gEeprom.KEY_2_LONG_PRESS_ACTION,
&gEeprom.KEY_M_LONG_PRESS_ACTION}; &gEeprom.KEY_M_LONG_PRESS_ACTION};
uint8_t id = *fun[GetCurrentMenuId()-MENU_F1SHRT]; uint8_t id = *fun[UI_MENU_GetCurrentMenuId()-MENU_F1SHRT];
for(int i = 0; i < gSubMenu_SIDEFUNCTIONS_size; i++) { for(int i = 0; i < gSubMenu_SIDEFUNCTIONS_size; i++) {
if(gSubMenu_SIDEFUNCTIONS[i].id==id) { if(gSubMenu_SIDEFUNCTIONS[i].id==id) {
@@ -1224,7 +1213,7 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
if (GetCurrentMenuId() == MENU_MEM_NAME && edit_index >= 0) if (UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME && edit_index >= 0)
{ // currently editing the channel name { // currently editing the channel name
if (edit_index < 10) if (edit_index < 10)
@@ -1289,7 +1278,7 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
return; return;
} }
if (GetCurrentMenuId() == MENU_OFFSET) if (UI_MENU_GetCurrentMenuId() == MENU_OFFSET)
{ {
uint32_t Frequency; uint32_t Frequency;
@@ -1312,10 +1301,10 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
return; return;
} }
if (GetCurrentMenuId() == MENU_MEM_CH || if (UI_MENU_GetCurrentMenuId() == MENU_MEM_CH ||
GetCurrentMenuId() == MENU_DEL_CH || UI_MENU_GetCurrentMenuId() == MENU_DEL_CH ||
GetCurrentMenuId() == MENU_1_CALL || UI_MENU_GetCurrentMenuId() == MENU_1_CALL ||
GetCurrentMenuId() == MENU_MEM_NAME) UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME)
{ // enter 3-digit channel number { // enter 3-digit channel number
if (gInputBoxIndex < 3) if (gInputBoxIndex < 3)
@@ -1344,7 +1333,7 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
return; return;
} }
if (MENU_GetLimits(GetCurrentMenuId(), &Min, &Max)) if (MENU_GetLimits(UI_MENU_GetCurrentMenuId(), &Min, &Max))
{ {
gInputBoxIndex = 0; gInputBoxIndex = 0;
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL; gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
@@ -1385,11 +1374,11 @@ static void MENU_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
if (gCssScanMode == CSS_SCAN_MODE_OFF) if (!gCssBackgroundScan)
{ {
if (gIsInSubMenu) if (gIsInSubMenu)
{ {
if (gInputBoxIndex == 0 || GetCurrentMenuId() != MENU_OFFSET) if (gInputBoxIndex == 0 || UI_MENU_GetCurrentMenuId() != MENU_OFFSET)
{ {
gAskForConfirmation = 0; gAskForConfirmation = 0;
gIsInSubMenu = false; gIsInSubMenu = false;
@@ -1445,12 +1434,12 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
if (!gIsInSubMenu) if (!gIsInSubMenu)
{ {
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
if (GetCurrentMenuId() != MENU_SCR) if (UI_MENU_GetCurrentMenuId() != MENU_SCR)
gAnotherVoiceID = MenuList[gMenuCursor].voice_id; gAnotherVoiceID = MenuList[gMenuCursor].voice_id;
#endif #endif
#if 1 #if 1
if (GetCurrentMenuId() == MENU_DEL_CH || GetCurrentMenuId() == MENU_MEM_NAME) if (UI_MENU_GetCurrentMenuId() == MENU_DEL_CH || UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME)
if (!RADIO_CheckValidChannel(gSubMenuSelection, false, 0)) if (!RADIO_CheckValidChannel(gSubMenuSelection, false, 0))
return; // invalid channel return; // invalid channel
#endif #endif
@@ -1458,7 +1447,7 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
gAskForConfirmation = 0; gAskForConfirmation = 0;
gIsInSubMenu = true; gIsInSubMenu = true;
// if (GetCurrentMenuId() != MENU_D_LIST) // if (UI_MENU_GetCurrentMenuId() != MENU_D_LIST)
{ {
gInputBoxIndex = 0; gInputBoxIndex = 0;
edit_index = -1; edit_index = -1;
@@ -1467,7 +1456,7 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
return; return;
} }
if (GetCurrentMenuId() == MENU_MEM_NAME) if (UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME)
{ {
if (edit_index < 0) if (edit_index < 0)
{ // enter channel name edit mode { // enter channel name edit mode
@@ -1514,10 +1503,10 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
if (gIsInSubMenu) if (gIsInSubMenu)
{ {
if (GetCurrentMenuId() == MENU_RESET || if (UI_MENU_GetCurrentMenuId() == MENU_RESET ||
GetCurrentMenuId() == MENU_MEM_CH || UI_MENU_GetCurrentMenuId() == MENU_MEM_CH ||
GetCurrentMenuId() == MENU_DEL_CH || UI_MENU_GetCurrentMenuId() == MENU_DEL_CH ||
GetCurrentMenuId() == MENU_MEM_NAME) UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME)
{ {
switch (gAskForConfirmation) switch (gAskForConfirmation)
{ {
@@ -1530,7 +1519,7 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
UI_DisplayMenu(); UI_DisplayMenu();
if (GetCurrentMenuId() == MENU_RESET) if (UI_MENU_GetCurrentMenuId() == MENU_RESET)
{ {
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_CONFIRM); AUDIO_SetVoiceID(0, VOICE_ID_CONFIRM);
@@ -1558,14 +1547,10 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
} }
} }
if (gCssScanMode != CSS_SCAN_MODE_OFF) SCANNER_Stop();
{
gCssScanMode = CSS_SCAN_MODE_OFF;
gUpdateStatus = true;
}
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
if (GetCurrentMenuId() == MENU_SCR) if (UI_MENU_GetCurrentMenuId() == MENU_SCR)
gAnotherVoiceID = (gSubMenuSelection == 0) ? VOICE_ID_SCRAMBLER_OFF : VOICE_ID_SCRAMBLER_ON; gAnotherVoiceID = (gSubMenuSelection == 0) ? VOICE_ID_SCRAMBLER_OFF : VOICE_ID_SCRAMBLER_ON;
else else
gAnotherVoiceID = VOICE_ID_CONFIRM; gAnotherVoiceID = VOICE_ID_CONFIRM;
@@ -1581,7 +1566,7 @@ static void MENU_Key_STAR(const bool bKeyPressed, const bool bKeyHeld)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
if (GetCurrentMenuId() == MENU_MEM_NAME && edit_index >= 0) if (UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME && edit_index >= 0)
{ // currently editing the channel name { // currently editing the channel name
if (edit_index < 10) if (edit_index < 10)
@@ -1603,31 +1588,17 @@ static void MENU_Key_STAR(const bool bKeyPressed, const bool bKeyHeld)
RADIO_SelectVfos(); RADIO_SelectVfos();
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE) && gRxVfo->AM_mode == 0) if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE) && gRxVfo->Modulation == MODULATION_FM)
#else #else
if (gRxVfo->AM_mode == 0) if (gRxVfo->Modulation == MODULATION_FM)
#endif #endif
{ {
if (GetCurrentMenuId() == MENU_R_CTCS || GetCurrentMenuId() == MENU_R_DCS) if ((UI_MENU_GetCurrentMenuId() == MENU_R_CTCS || UI_MENU_GetCurrentMenuId() == MENU_R_DCS) && gIsInSubMenu)
{ // scan CTCSS or DCS to find the tone/code of the incoming signal { // scan CTCSS or DCS to find the tone/code of the incoming signal
if (!SCANNER_IsScanning())
if (gCssScanMode == CSS_SCAN_MODE_OFF) MENU_StartCssScan();
{
MENU_StartCssScan(1);
gRequestDisplayScreen = DISPLAY_MENU;
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_SCANNING_BEGIN);
AUDIO_PlaySingleVoice(1);
#endif
}
else else
{
MENU_StopCssScan(); MENU_StopCssScan();
gRequestDisplayScreen = DISPLAY_MENU;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
#endif
}
} }
gPttWasReleased = true; gPttWasReleased = true;
@@ -1643,7 +1614,7 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
uint8_t Channel; uint8_t Channel;
bool bCheckScanList; bool bCheckScanList;
if (GetCurrentMenuId() == MENU_MEM_NAME && gIsInSubMenu && edit_index >= 0) if (UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME && gIsInSubMenu && edit_index >= 0)
{ // change the character { // change the character
if (bKeyPressed && edit_index < 10 && Direction != 0) if (bKeyPressed && edit_index < 10 && Direction != 0)
{ {
@@ -1678,12 +1649,7 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
if (!bKeyPressed) if (!bKeyPressed)
return; return;
if (gCssScanMode != CSS_SCAN_MODE_OFF) if (SCANNER_IsScanning()) {
{
MENU_StartCssScan(Direction);
gPttWasReleased = true;
gRequestDisplayScreen = DISPLAY_MENU;
return; return;
} }
@@ -1695,7 +1661,7 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
gRequestDisplayScreen = DISPLAY_MENU; gRequestDisplayScreen = DISPLAY_MENU;
if (GetCurrentMenuId() != MENU_ABR && gEeprom.BACKLIGHT_TIME == 0) // backlight always off and not in the backlight menu if (UI_MENU_GetCurrentMenuId() != MENU_ABR && gEeprom.BACKLIGHT_TIME == 0) // backlight always off and not in the backlight menu
{ {
BACKLIGHT_TurnOff(); BACKLIGHT_TurnOff();
} }
@@ -1703,7 +1669,7 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
return; return;
} }
if (GetCurrentMenuId() == MENU_OFFSET) if (UI_MENU_GetCurrentMenuId() == MENU_OFFSET)
{ {
int32_t Offset = (Direction * gTxVfo->StepFrequency) + gSubMenuSelection; int32_t Offset = (Direction * gTxVfo->StepFrequency) + gSubMenuSelection;
if (Offset < 99999990) if (Offset < 99999990)
@@ -1721,7 +1687,7 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
VFO = 0; VFO = 0;
switch (GetCurrentMenuId()) switch (UI_MENU_GetCurrentMenuId())
{ {
case MENU_DEL_CH: case MENU_DEL_CH:
case MENU_1_CALL: case MENU_1_CALL:
@@ -1781,7 +1747,7 @@ void MENU_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
MENU_Key_STAR(bKeyPressed, bKeyHeld); MENU_Key_STAR(bKeyPressed, bKeyHeld);
break; break;
case KEY_F: case KEY_F:
if (GetCurrentMenuId() == MENU_MEM_NAME && edit_index >= 0) if (UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME && edit_index >= 0)
{ // currently editing the channel name { // currently editing the channel name
if (!bKeyHeld && bKeyPressed) if (!bKeyHeld && bKeyPressed)
{ {
@@ -1813,11 +1779,11 @@ void MENU_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
if (gScreenToDisplay == DISPLAY_MENU) if (gScreenToDisplay == DISPLAY_MENU)
{ {
if (GetCurrentMenuId() == MENU_VOL || if (UI_MENU_GetCurrentMenuId() == MENU_VOL ||
#ifdef ENABLE_F_CAL_MENU #ifdef ENABLE_F_CAL_MENU
GetCurrentMenuId() == MENU_F_CALI || UI_MENU_GetCurrentMenuId() == MENU_F_CALI ||
#endif #endif
GetCurrentMenuId() == MENU_BATCAL) UI_MENU_GetCurrentMenuId() == MENU_BATCAL)
{ {
gMenuCountdown = menu_timeout_long_500ms; gMenuCountdown = menu_timeout_long_500ms;
} }

View File

@@ -23,11 +23,13 @@
void writeXtalFreqCal(const int32_t value, const bool update_eeprom); void writeXtalFreqCal(const int32_t value, const bool update_eeprom);
#endif #endif
extern uint8_t gUnlockAllTxConfCnt;
int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax); int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax);
void MENU_AcceptSetting(void); void MENU_AcceptSetting(void);
void MENU_SelectNextCode(void);
void MENU_ShowCurrentSetting(void); void MENU_ShowCurrentSetting(void);
void MENU_StartCssScan(int8_t Direction); void MENU_StartCssScan(void);
void MENU_CssScanFound(void);
void MENU_StopCssScan(void); void MENU_StopCssScan(void);
void MENU_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld); void MENU_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld);

View File

@@ -17,6 +17,7 @@
#include "app/app.h" #include "app/app.h"
#include "app/dtmf.h" #include "app/dtmf.h"
#include "app/generic.h" #include "app/generic.h"
#include "app/menu.h"
#include "app/scanner.h" #include "app/scanner.h"
#include "audio.h" #include "audio.h"
#include "driver/bk4819.h" #include "driver/bk4819.h"
@@ -29,68 +30,45 @@
DCS_CodeType_t gScanCssResultType; DCS_CodeType_t gScanCssResultType;
uint8_t gScanCssResultCode; uint8_t gScanCssResultCode;
bool gFlagStartScan; bool gScanSingleFrequency; // scan CTCSS/DCS codes for current frequency
bool gFlagStopScan; SCAN_SaveState_t gScannerSaveState;
bool gScanSingleFrequency;
uint8_t gScannerEditState;
uint8_t gScanChannel; uint8_t gScanChannel;
uint32_t gScanFrequency; uint32_t gScanFrequency;
bool gScanPauseMode;
SCAN_CssState_t gScanCssState; SCAN_CssState_t gScanCssState;
volatile bool gScheduleScanListen = true;
volatile uint16_t gScanPauseDelayIn_10ms;
uint8_t gScanProgressIndicator; uint8_t gScanProgressIndicator;
uint8_t gScanHitCount;
bool gScanUseCssResult; bool gScanUseCssResult;
int8_t gScanStateDir;
bool gScanKeepResult;
typedef enum { STEP_Setting_t stepSetting;
SCAN_NEXT_CHAN_SCANLIST1 = 0, uint8_t scanHitCount;
SCAN_NEXT_CHAN_SCANLIST2,
SCAN_NEXT_CHAN_DUAL_WATCH,
SCAN_NEXT_CHAN_MR,
SCAN_NEXT_NUM
} scan_next_chan_t;
scan_next_chan_t currentScanList;
uint32_t initialFrqOrChan;
uint8_t initialCROSS_BAND_RX_TX;
uint32_t lastFoundFrqOrChan;
static void SCANNER_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld) static void SCANNER_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
{ {
if (!bKeyHeld && bKeyPressed) if (!bKeyHeld && bKeyPressed)
{ {
if (gScannerEditState == 1) if (gScannerSaveState == SCAN_SAVE_CHAN_SEL) {
{
uint16_t Channel;
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
INPUTBOX_Append(Key); INPUTBOX_Append(Key);
gRequestDisplayScreen = DISPLAY_SCANNER; gRequestDisplayScreen = DISPLAY_SCANNER;
if (gInputBoxIndex < 3) if (gInputBoxIndex < 3) {
{ #ifdef ENABLE_VOICE
#ifdef ENABLE_VOICE gAnotherVoiceID = (VOICE_ID_t)Key;
gAnotherVoiceID = (VOICE_ID_t)Key; #endif
#endif
return; return;
} }
gInputBoxIndex = 0; gInputBoxIndex = 0;
Channel = ((gInputBox[0] * 100) + (gInputBox[1] * 10) + gInputBox[2]) - 1; uint16_t chan = ((gInputBox[0] * 100) + (gInputBox[1] * 10) + gInputBox[2]) - 1;
if (IS_MR_CHANNEL(Channel)) if (IS_MR_CHANNEL(chan)) {
{ #ifdef ENABLE_VOICE
#ifdef ENABLE_VOICE gAnotherVoiceID = (VOICE_ID_t)Key;
gAnotherVoiceID = (VOICE_ID_t)Key; #endif
#endif gShowChPrefix = RADIO_CheckValidChannel(chan, false, 0);
gShowChPrefix = RADIO_CheckValidChannel(Channel, false, 0); gScanChannel = (uint8_t)chan;
gScanChannel = (uint8_t)Channel;
return; return;
} }
} }
@@ -101,28 +79,17 @@ static void SCANNER_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
static void SCANNER_Key_EXIT(bool bKeyPressed, bool bKeyHeld) static void SCANNER_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
{ {
if (!bKeyHeld && bKeyPressed) if (!bKeyHeld && bKeyPressed) { // short pressed
{
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
switch (gScannerEditState) switch (gScannerSaveState) {
{ case SCAN_SAVE_NO_PROMPT:
case 0: SCANNER_Stop();
gRequestDisplayScreen = DISPLAY_MAIN; gRequestDisplayScreen = DISPLAY_MAIN;
gEeprom.CROSS_BAND_RX_TX = gBackup_CROSS_BAND_RX_TX;
gUpdateStatus = true;
gFlagStopScan = true;
gVfoConfigureMode = VFO_CONFIGURE_RELOAD;
gFlagResetVfos = true;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CANCEL;
#endif
break; break;
case 1: case SCAN_SAVE_CHAN_SEL:
if (gInputBoxIndex > 0) if (gInputBoxIndex > 0) {
{
gInputBox[--gInputBoxIndex] = 10; gInputBox[--gInputBoxIndex] = 10;
gRequestDisplayScreen = DISPLAY_SCANNER; gRequestDisplayScreen = DISPLAY_SCANNER;
break; break;
@@ -130,11 +97,11 @@ static void SCANNER_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
// Fallthrough // Fallthrough
case 2: case SCAN_SAVE_CHANNEL:
gScannerEditState = 0; gScannerSaveState = SCAN_SAVE_NO_PROMPT;
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CANCEL; gAnotherVoiceID = VOICE_ID_CANCEL;
#endif #endif
gRequestDisplayScreen = DISPLAY_SCANNER; gRequestDisplayScreen = DISPLAY_SCANNER;
break; break;
} }
@@ -143,40 +110,28 @@ static void SCANNER_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
static void SCANNER_Key_MENU(bool bKeyPressed, bool bKeyHeld) static void SCANNER_Key_MENU(bool bKeyPressed, bool bKeyHeld)
{ {
uint8_t Channel; if (bKeyHeld || !bKeyPressed) // ignore long press or release button events
if (bKeyHeld)
return; return;
if (!bKeyPressed) if (gScanCssState == SCAN_CSS_STATE_OFF && !gScanSingleFrequency) {
return;
if (gScanCssState == SCAN_CSS_STATE_OFF && !gScanSingleFrequency)
{
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL; gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return; return;
} }
if (gScanCssState == SCAN_CSS_STATE_SCANNING) if (gScanCssState == SCAN_CSS_STATE_SCANNING && gScanSingleFrequency) {
{ gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
if (gScanSingleFrequency) return;
{
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
} }
if (gScanCssState == SCAN_CSS_STATE_FAILED) if (gScanCssState == SCAN_CSS_STATE_FAILED) {
{
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL; gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return; return;
} }
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
switch (gScannerEditState) switch (gScannerSaveState) {
{ case SCAN_SAVE_NO_PROMPT:
case 0:
if (!gScanSingleFrequency) if (!gScanSingleFrequency)
{ {
uint32_t freq250 = FREQUENCY_RoundToStep(gScanFrequency, 250); uint32_t freq250 = FREQUENCY_RoundToStep(gScanFrequency, 250);
@@ -186,60 +141,54 @@ static void SCANNER_Key_MENU(bool bKeyPressed, bool bKeyHeld)
uint32_t diff625 = gScanFrequency > freq625 ? gScanFrequency - freq625 : freq625 - gScanFrequency; uint32_t diff625 = gScanFrequency > freq625 ? gScanFrequency - freq625 : freq625 - gScanFrequency;
if(diff250 > diff625) { if(diff250 > diff625) {
gStepSetting = STEP_6_25kHz; stepSetting = STEP_6_25kHz;
gScanFrequency = freq625; gScanFrequency = freq625;
} }
else { else {
gStepSetting = STEP_2_5kHz; stepSetting = STEP_2_5kHz;
gScanFrequency = freq250; gScanFrequency = freq250;
} }
} }
if (IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE)) if (IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE)) {
{ gScannerSaveState = SCAN_SAVE_CHAN_SEL;
gScannerEditState = 1;
gScanChannel = gTxVfo->CHANNEL_SAVE; gScanChannel = gTxVfo->CHANNEL_SAVE;
gShowChPrefix = RADIO_CheckValidChannel(gTxVfo->CHANNEL_SAVE, false, 0); gShowChPrefix = RADIO_CheckValidChannel(gTxVfo->CHANNEL_SAVE, false, 0);
} }
else else {
{ gScannerSaveState = SCAN_SAVE_CHANNEL;
gScannerEditState = 2;
} }
gScanCssState = SCAN_CSS_STATE_FOUND; gScanCssState = SCAN_CSS_STATE_FOUND;
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_MEMORY_CHANNEL; gAnotherVoiceID = VOICE_ID_MEMORY_CHANNEL;
#endif #endif
gRequestDisplayScreen = DISPLAY_SCANNER; gRequestDisplayScreen = DISPLAY_SCANNER;
gUpdateStatus = true; gUpdateStatus = true;
break; break;
case 1: case SCAN_SAVE_CHAN_SEL:
if (gInputBoxIndex == 0) if (gInputBoxIndex == 0) {
{
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
gRequestDisplayScreen = DISPLAY_SCANNER; gRequestDisplayScreen = DISPLAY_SCANNER;
gScannerEditState = 2; gScannerSaveState = SCAN_SAVE_CHANNEL;
} }
break; break;
case 2: case SCAN_SAVE_CHANNEL:
if (!gScanSingleFrequency) if (!gScanSingleFrequency) {
{
RADIO_InitInfo(gTxVfo, gTxVfo->CHANNEL_SAVE, gScanFrequency); RADIO_InitInfo(gTxVfo, gTxVfo->CHANNEL_SAVE, gScanFrequency);
if (gScanUseCssResult) if (gScanUseCssResult) {
{
gTxVfo->freq_config_RX.CodeType = gScanCssResultType; gTxVfo->freq_config_RX.CodeType = gScanCssResultType;
gTxVfo->freq_config_RX.Code = gScanCssResultCode; gTxVfo->freq_config_RX.Code = gScanCssResultCode;
} }
gTxVfo->freq_config_TX = gTxVfo->freq_config_RX; gTxVfo->freq_config_TX = gTxVfo->freq_config_RX;
gTxVfo->STEP_SETTING = gStepSetting; gTxVfo->STEP_SETTING = stepSetting;
} }
else else {
{
RADIO_ConfigureChannel(0, VFO_CONFIGURE_RELOAD); RADIO_ConfigureChannel(0, VFO_CONFIGURE_RELOAD);
RADIO_ConfigureChannel(1, VFO_CONFIGURE_RELOAD); RADIO_ConfigureChannel(1, VFO_CONFIGURE_RELOAD);
@@ -249,25 +198,24 @@ static void SCANNER_Key_MENU(bool bKeyPressed, bool bKeyHeld)
gTxVfo->freq_config_TX.Code = gScanCssResultCode; gTxVfo->freq_config_TX.Code = gScanCssResultCode;
} }
if (IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE)) uint8_t chan;
{ if (IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE)) {
Channel = gScanChannel; chan = gScanChannel;
gEeprom.MrChannel[gEeprom.TX_VFO] = Channel; gEeprom.MrChannel[gEeprom.TX_VFO] = chan;
} }
else else {
{ chan = gTxVfo->Band + FREQ_CHANNEL_FIRST;
Channel = gTxVfo->Band + FREQ_CHANNEL_FIRST; gEeprom.FreqChannel[gEeprom.TX_VFO] = chan;
gEeprom.FreqChannel[gEeprom.TX_VFO] = Channel;
} }
gTxVfo->CHANNEL_SAVE = Channel; gTxVfo->CHANNEL_SAVE = chan;
gEeprom.ScreenChannel[gEeprom.TX_VFO] = Channel; gEeprom.ScreenChannel[gEeprom.TX_VFO] = chan;
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CONFIRM; gAnotherVoiceID = VOICE_ID_CONFIRM;
#endif #endif
gRequestDisplayScreen = DISPLAY_SCANNER; gRequestDisplayScreen = DISPLAY_SCANNER;
gRequestSaveChannel = 2; gRequestSaveChannel = 2;
gScannerEditState = 0; gScannerSaveState = SCAN_SAVE_NO_PROMPT;
break; break;
default: default:
@@ -278,23 +226,20 @@ static void SCANNER_Key_MENU(bool bKeyPressed, bool bKeyHeld)
static void SCANNER_Key_STAR(bool bKeyPressed, bool bKeyHeld) static void SCANNER_Key_STAR(bool bKeyPressed, bool bKeyHeld)
{ {
if (!bKeyHeld && bKeyPressed) if (!bKeyHeld && bKeyPressed) {
{
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
gFlagStartScan = true; SCANNER_Start(gScanSingleFrequency);
} }
return; return;
} }
static void SCANNER_Key_UP_DOWN(bool bKeyPressed, bool pKeyHeld, int8_t Direction) static void SCANNER_Key_UP_DOWN(bool bKeyPressed, bool pKeyHeld, int8_t Direction)
{ {
if (pKeyHeld) if (pKeyHeld) {
{
if (!bKeyPressed) if (!bKeyPressed)
return; return;
} }
else else {
{
if (!bKeyPressed) if (!bKeyPressed)
return; return;
@@ -302,8 +247,7 @@ static void SCANNER_Key_UP_DOWN(bool bKeyPressed, bool pKeyHeld, int8_t Directio
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL; gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
} }
if (gScannerEditState == 1) if (gScannerSaveState == SCAN_SAVE_CHAN_SEL) {
{
gScanChannel = NUMBER_AddWithWraparound(gScanChannel, Direction, 0, MR_CHANNEL_LAST); gScanChannel = NUMBER_AddWithWraparound(gScanChannel, Direction, 0, MR_CHANNEL_LAST);
gShowChPrefix = RADIO_CheckValidChannel(gScanChannel, false, 0); gShowChPrefix = RADIO_CheckValidChannel(gScanChannel, false, 0);
gRequestDisplayScreen = DISPLAY_SCANNER; gRequestDisplayScreen = DISPLAY_SCANNER;
@@ -314,8 +258,7 @@ static void SCANNER_Key_UP_DOWN(bool bKeyPressed, bool pKeyHeld, int8_t Directio
void SCANNER_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld) void SCANNER_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
{ {
switch (Key) switch (Key) {
{
case KEY_0: case KEY_0:
case KEY_1: case KEY_1:
case KEY_2: case KEY_2:
@@ -353,13 +296,16 @@ void SCANNER_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
} }
} }
void SCANNER_Start(void) void SCANNER_Start(bool singleFreq)
{ {
uint8_t BackupStep; gScanSingleFrequency = singleFreq;
uint16_t BackupFrequency; gMonitor = false;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_BEGIN;
#endif
BK4819_StopScan(); BK4819_StopScan();
RADIO_SelectVfos(); RADIO_SelectVfos();
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
@@ -367,13 +313,13 @@ void SCANNER_Start(void)
gRxVfo->CHANNEL_SAVE = FREQ_CHANNEL_FIRST + BAND6_400MHz; gRxVfo->CHANNEL_SAVE = FREQ_CHANNEL_FIRST + BAND6_400MHz;
#endif #endif
BackupStep = gRxVfo->STEP_SETTING; uint8_t backupStep = gRxVfo->STEP_SETTING;
BackupFrequency = gRxVfo->StepFrequency; uint16_t backupFrequency = gRxVfo->StepFrequency;
RADIO_InitInfo(gRxVfo, gRxVfo->CHANNEL_SAVE, gRxVfo->pRX->Frequency); RADIO_InitInfo(gRxVfo, gRxVfo->CHANNEL_SAVE, gRxVfo->pRX->Frequency);
gRxVfo->STEP_SETTING = BackupStep; gRxVfo->STEP_SETTING = backupStep;
gRxVfo->StepFrequency = BackupFrequency; gRxVfo->StepFrequency = backupFrequency;
RADIO_SetupRegisters(true); RADIO_SetupRegisters(true);
@@ -381,23 +327,21 @@ void SCANNER_Start(void)
gIsNoaaMode = false; gIsNoaaMode = false;
#endif #endif
if (gScanSingleFrequency) if (gScanSingleFrequency) {
{
gScanCssState = SCAN_CSS_STATE_SCANNING; gScanCssState = SCAN_CSS_STATE_SCANNING;
gScanFrequency = gRxVfo->pRX->Frequency; gScanFrequency = gRxVfo->pRX->Frequency;
gStepSetting = gRxVfo->STEP_SETTING; stepSetting = gRxVfo->STEP_SETTING;
BK4819_PickRXFilterPathBasedOnFrequency(gScanFrequency); BK4819_PickRXFilterPathBasedOnFrequency(gScanFrequency);
BK4819_SetScanFrequency(gScanFrequency); BK4819_SetScanFrequency(gScanFrequency);
gUpdateStatus = true; gUpdateStatus = true;
} }
else else {
{
gScanCssState = SCAN_CSS_STATE_OFF; gScanCssState = SCAN_CSS_STATE_OFF;
gScanFrequency = 0xFFFFFFFF; gScanFrequency = 0xFFFFFFFF;
BK4819_PickRXFilterPathBasedOnFrequency(0xFFFFFFFF); BK4819_PickRXFilterPathBasedOnFrequency(gScanFrequency);
BK4819_EnableFrequencyScan(); BK4819_EnableFrequencyScan();
gUpdateStatus = true; gUpdateStatus = true;
@@ -408,7 +352,7 @@ void SCANNER_Start(void)
gScanDelay_10ms = scan_delay_10ms; gScanDelay_10ms = scan_delay_10ms;
gScanCssResultCode = 0xFF; gScanCssResultCode = 0xFF;
gScanCssResultType = 0xFF; gScanCssResultType = 0xFF;
gScanHitCount = 0; scanHitCount = 0;
gScanUseCssResult = false; gScanUseCssResult = false;
g_CxCSS_TAIL_Found = false; g_CxCSS_TAIL_Found = false;
g_CDCSS_Lost = false; g_CDCSS_Lost = false;
@@ -418,242 +362,165 @@ void SCANNER_Start(void)
g_VOX_Lost = false; g_VOX_Lost = false;
#endif #endif
g_SquelchLost = false; g_SquelchLost = false;
gScannerEditState = 0; gScannerSaveState = SCAN_SAVE_NO_PROMPT;
gScanProgressIndicator = 0; gScanProgressIndicator = 0;
} }
void SCANNER_Found()
{
switch (gEeprom.SCAN_RESUME_MODE)
{
case SCAN_RESUME_TO:
if (!gScanPauseMode)
{
gScanPauseDelayIn_10ms = scan_pause_delay_in_1_10ms;
gScheduleScanListen = false;
gScanPauseMode = true;
}
break;
case SCAN_RESUME_CO:
case SCAN_RESUME_SE:
gScanPauseDelayIn_10ms = 0;
gScheduleScanListen = false;
break;
}
if (IS_MR_CHANNEL(gRxVfo->CHANNEL_SAVE)) { //memory scan
lastFoundFrqOrChan = gRxVfo->CHANNEL_SAVE;
}
else { // frequency scan
lastFoundFrqOrChan = gRxVfo->freq_config_RX.Frequency;
}
gScanKeepResult = true;
}
void SCANNER_Stop(void) void SCANNER_Stop(void)
{ {
if(initialCROSS_BAND_RX_TX != CROSS_BAND_OFF) { if(SCANNER_IsScanning()) {
gEeprom.CROSS_BAND_RX_TX = initialCROSS_BAND_RX_TX; gEeprom.CROSS_BAND_RX_TX = gBackup_CROSS_BAND_RX_TX;
initialCROSS_BAND_RX_TX = CROSS_BAND_OFF; gVfoConfigureMode = VFO_CONFIGURE_RELOAD;
gFlagResetVfos = true;
gUpdateStatus = true;
gCssBackgroundScan = false;
gScanUseCssResult = false;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CANCEL;
#endif
BK4819_StopScan();
} }
}
gScanStateDir = SCAN_OFF;
const uint32_t chFr = gScanKeepResult ? lastFoundFrqOrChan : initialFrqOrChan; void SCANNER_TimeSlice10ms(void)
const bool channelChanged = chFr != initialFrqOrChan; {
if (IS_MR_CHANNEL(gNextMrChannel)) { if (!SCANNER_IsScanning())
gEeprom.MrChannel[gEeprom.RX_VFO] = chFr; return;
gEeprom.ScreenChannel[gEeprom.RX_VFO] = chFr;
RADIO_ConfigureChannel(gEeprom.RX_VFO, VFO_CONFIGURE_RELOAD); if (gScanDelay_10ms > 0) {
gScanDelay_10ms--;
return;
}
if (gScannerSaveState != SCAN_SAVE_NO_PROMPT) {
return;
}
switch (gScanCssState) {
case SCAN_CSS_STATE_OFF: {
// must be RF frequency scanning if we're here ?
uint32_t result;
if (!BK4819_GetFrequencyScanResult(&result))
break;
int32_t delta = result - gScanFrequency;
gScanFrequency = result;
if (delta < 0)
delta = -delta;
if (delta < 100)
scanHitCount++;
else
scanHitCount = 0;
BK4819_DisableFrequencyScan();
if (scanHitCount < 3) {
BK4819_EnableFrequencyScan();
}
else {
BK4819_SetScanFrequency(gScanFrequency);
gScanCssResultCode = 0xFF;
gScanCssResultType = 0xFF;
scanHitCount = 0;
gScanUseCssResult = false;
gScanProgressIndicator = 0;
gScanCssState = SCAN_CSS_STATE_SCANNING;
if(!gCssBackgroundScan)
GUI_SelectNextDisplay(DISPLAY_SCANNER);
gUpdateStatus = true;
}
gScanDelay_10ms = scan_delay_10ms;
//gScanDelay_10ms = 1; // 10ms
break;
}
case SCAN_CSS_STATE_SCANNING: {
uint32_t cdcssFreq;
uint16_t ctcssFreq;
BK4819_CssScanResult_t scanResult = BK4819_GetCxCSSScanResult(&cdcssFreq, &ctcssFreq);
if (scanResult == BK4819_CSS_RESULT_NOT_FOUND)
break;
BK4819_Disable();
if (scanResult == BK4819_CSS_RESULT_CDCSS) {
const uint8_t Code = DCS_GetCdcssCode(cdcssFreq);
if (Code != 0xFF)
{
gScanCssResultCode = Code;
gScanCssResultType = CODE_TYPE_DIGITAL;
gScanCssState = SCAN_CSS_STATE_FOUND;
gScanUseCssResult = true;
gUpdateStatus = true;
}
}
else if (scanResult == BK4819_CSS_RESULT_CTCSS) {
const uint8_t Code = DCS_GetCtcssCode(ctcssFreq);
if (Code != 0xFF) {
if (Code == gScanCssResultCode && gScanCssResultType == CODE_TYPE_CONTINUOUS_TONE) {
if (++scanHitCount >= 2) {
gScanCssState = SCAN_CSS_STATE_FOUND;
gScanUseCssResult = true;
gUpdateStatus = true;
}
}
else
scanHitCount = 0;
gScanCssResultType = CODE_TYPE_CONTINUOUS_TONE;
gScanCssResultCode = Code;
}
}
if (gScanCssState < SCAN_CSS_STATE_FOUND) { // scanning or off
BK4819_SetScanFrequency(gScanFrequency);
gScanDelay_10ms = scan_delay_10ms;
break;
}
if(gCssBackgroundScan) {
gCssBackgroundScan = false;
if(gScanUseCssResult)
MENU_CssScanFound();
}
else
GUI_SelectNextDisplay(DISPLAY_SCANNER);
break;
}
default:
gCssBackgroundScan = false;
break;
}
}
void SCANNER_TimeSlice500ms(void)
{
if (SCANNER_IsScanning() && gScannerSaveState == SCAN_SAVE_NO_PROMPT && gScanCssState < SCAN_CSS_STATE_FOUND) {
gScanProgressIndicator++;
#ifdef ENABLE_NO_CODE_SCAN_TIMEOUT
if (gScanProgressIndicator > 32) {
if (gScanCssState == SCAN_CSS_STATE_SCANNING && !gScanSingleFrequency)
gScanCssState = SCAN_CSS_STATE_FOUND;
else
gScanCssState = SCAN_CSS_STATE_FAILED;
if(channelChanged) {
SETTINGS_SaveVfoIndices();
gUpdateStatus = true; gUpdateStatus = true;
} }
}
else {
gRxVfo->freq_config_RX.Frequency = chFr;
RADIO_ApplyOffset(gRxVfo);
RADIO_ConfigureSquelchAndOutputPower(gRxVfo);
if(channelChanged) {
SETTINGS_SaveChannel(gRxVfo->CHANNEL_SAVE, gEeprom.RX_VFO, gRxVfo, 1);
}
}
RADIO_SetupRegisters(true);
gUpdateDisplay = true;
}
static void NextFreqChannel(void)
{
gRxVfo->freq_config_RX.Frequency = APP_SetFrequencyByStep(gRxVfo, gScanStateDir);
RADIO_ApplyOffset(gRxVfo);
RADIO_ConfigureSquelchAndOutputPower(gRxVfo);
RADIO_SetupRegisters(true);
#ifdef ENABLE_FASTER_CHANNEL_SCAN
gScanPauseDelayIn_10ms = 9; // 90ms
#else
gScanPauseDelayIn_10ms = scan_pause_delay_in_6_10ms;
#endif #endif
gUpdateDisplay = true;
}
static void NextMemChannel(void)
{
static unsigned int prev_mr_chan = 0;
const bool enabled = (gEeprom.SCAN_LIST_DEFAULT < 2) ? gEeprom.SCAN_LIST_ENABLED[gEeprom.SCAN_LIST_DEFAULT] : true;
const int chan1 = (gEeprom.SCAN_LIST_DEFAULT < 2) ? gEeprom.SCANLIST_PRIORITY_CH1[gEeprom.SCAN_LIST_DEFAULT] : -1;
const int chan2 = (gEeprom.SCAN_LIST_DEFAULT < 2) ? gEeprom.SCANLIST_PRIORITY_CH2[gEeprom.SCAN_LIST_DEFAULT] : -1;
const unsigned int prev_chan = gNextMrChannel;
unsigned int chan = 0;
if (enabled)
{
switch (currentScanList)
{
case SCAN_NEXT_CHAN_SCANLIST1:
prev_mr_chan = gNextMrChannel;
if (chan1 >= 0)
{
if (RADIO_CheckValidChannel(chan1, false, 0))
{
currentScanList = SCAN_NEXT_CHAN_SCANLIST1;
gNextMrChannel = chan1;
break;
}
}
[[fallthrough]];
case SCAN_NEXT_CHAN_SCANLIST2:
if (chan2 >= 0)
{
if (RADIO_CheckValidChannel(chan2, false, 0))
{
currentScanList = SCAN_NEXT_CHAN_SCANLIST2;
gNextMrChannel = chan2;
break;
}
}
[[fallthrough]];
// this bit doesn't yet work if the other VFO is a frequency
case SCAN_NEXT_CHAN_DUAL_WATCH:
// dual watch is enabled - include the other VFO in the scan
// if (gEeprom.DUAL_WATCH != DUAL_WATCH_OFF)
// {
// chan = (gEeprom.RX_VFO + 1) & 1u;
// chan = gEeprom.ScreenChannel[chan];
// if (IS_MR_CHANNEL(chan))
// {
// currentScanList = SCAN_NEXT_CHAN_DUAL_WATCH;
// gNextMrChannel = chan;
// break;
// }
// }
default:
case SCAN_NEXT_CHAN_MR:
currentScanList = SCAN_NEXT_CHAN_MR;
gNextMrChannel = prev_mr_chan;
chan = 0xff;
break;
}
}
if (!enabled || chan == 0xff)
{
chan = RADIO_FindNextChannel(gNextMrChannel + gScanStateDir, gScanStateDir, (gEeprom.SCAN_LIST_DEFAULT < 2) ? true : false, gEeprom.SCAN_LIST_DEFAULT);
if (chan == 0xFF)
{ // no valid channel found
chan = MR_CHANNEL_FIRST;
}
gNextMrChannel = chan;
}
if (gNextMrChannel != prev_chan)
{
gEeprom.MrChannel[ gEeprom.RX_VFO] = gNextMrChannel;
gEeprom.ScreenChannel[gEeprom.RX_VFO] = gNextMrChannel;
RADIO_ConfigureChannel(gEeprom.RX_VFO, VFO_CONFIGURE_RELOAD);
RADIO_SetupRegisters(true);
gUpdateDisplay = true; gUpdateDisplay = true;
} }
else if(gCssBackgroundScan) {
#ifdef ENABLE_FASTER_CHANNEL_SCAN gUpdateDisplay = true;
gScanPauseDelayIn_10ms = 9; // 90ms .. <= ~60ms it misses signals (squelch response and/or PLL lock time) ? }
#else
gScanPauseDelayIn_10ms = scan_pause_delay_in_3_10ms;
#endif
if (enabled)
if (++currentScanList >= SCAN_NEXT_NUM)
currentScanList = SCAN_NEXT_CHAN_SCANLIST1; // back round we go
} }
void SCANNER_ScanChannels(const bool storeBackupSettings, const int8_t scan_direction) bool SCANNER_IsScanning(void)
{ {
if (storeBackupSettings) { return gCssBackgroundScan || (gScreenToDisplay == DISPLAY_SCANNER);
initialCROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX;
gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF;
gScanKeepResult = false;
}
RADIO_SelectVfos();
gNextMrChannel = gRxVfo->CHANNEL_SAVE;
currentScanList = SCAN_NEXT_CHAN_SCANLIST1;
gScanStateDir = scan_direction;
if (IS_MR_CHANNEL(gNextMrChannel))
{ // channel mode
if (storeBackupSettings) {
initialFrqOrChan = gRxVfo->CHANNEL_SAVE;
lastFoundFrqOrChan = initialFrqOrChan;
}
NextMemChannel();
}
else
{ // frequency mode
if (storeBackupSettings) {
initialFrqOrChan = gRxVfo->freq_config_RX.Frequency;
lastFoundFrqOrChan = initialFrqOrChan;
}
NextFreqChannel();
}
gScanPauseDelayIn_10ms = scan_pause_delay_in_2_10ms;
gScheduleScanListen = false;
gRxReceptionMode = RX_MODE_NONE;
gScanPauseMode = false;
}
void SCANNER_ContinueScanning()
{
if (IS_FREQ_CHANNEL(gNextMrChannel))
{
if (gCurrentFunction == FUNCTION_INCOMING)
APP_StartListening(gMonitor ? FUNCTION_MONITOR : FUNCTION_RECEIVE, true);
else
NextFreqChannel(); // switch to next frequency
}
else
{
if (gCurrentCodeType == CODE_TYPE_OFF && gCurrentFunction == FUNCTION_INCOMING)
APP_StartListening(gMonitor ? FUNCTION_MONITOR : FUNCTION_RECEIVE, true);
else
NextMemChannel(); // switch to next channel
}
gScanPauseMode = false;
gRxReceptionMode = RX_MODE_NONE;
gScheduleScanListen = false;
} }

View File

@@ -20,50 +20,38 @@
#include "dcs.h" #include "dcs.h"
#include "driver/keyboard.h" #include "driver/keyboard.h"
enum SCAN_CssState_t typedef enum
{ {
SCAN_CSS_STATE_OFF = 0, SCAN_CSS_STATE_OFF,
SCAN_CSS_STATE_SCANNING, SCAN_CSS_STATE_SCANNING,
SCAN_CSS_STATE_FOUND, SCAN_CSS_STATE_FOUND,
SCAN_CSS_STATE_FAILED SCAN_CSS_STATE_FAILED
}; } SCAN_CssState_t;
typedef enum SCAN_CssState_t SCAN_CssState_t; typedef enum
enum
{ {
SCAN_REV = -1, SCAN_SAVE_NO_PROMPT, // saving process not initiated
SCAN_OFF = 0, SCAN_SAVE_CHAN_SEL, // "SAVE: ", channel select prompt, actives only in channel mode
SCAN_FWD = +1 SCAN_SAVE_CHANNEL, // "SAVE?" prompt, waits for confirmation to save settings to channel, or current VFO
}; } SCAN_SaveState_t;
extern DCS_CodeType_t gScanCssResultType; extern DCS_CodeType_t gScanCssResultType;
extern uint8_t gScanCssResultCode; extern uint8_t gScanCssResultCode;
extern bool gFlagStartScan;
extern bool gFlagStopScan;
extern bool gScanSingleFrequency; extern bool gScanSingleFrequency;
extern uint8_t gScannerEditState; extern SCAN_SaveState_t gScannerSaveState;
extern uint8_t gScanChannel; extern uint8_t gScanChannel;
extern uint32_t gScanFrequency; extern uint32_t gScanFrequency;
extern bool gScanPauseMode;
extern SCAN_CssState_t gScanCssState; extern SCAN_CssState_t gScanCssState;
extern volatile bool gScheduleScanListen;
extern volatile uint16_t gScanPauseDelayIn_10ms;
extern uint8_t gScanProgressIndicator; extern uint8_t gScanProgressIndicator;
extern uint8_t gScanHitCount;
extern bool gScanUseCssResult; extern bool gScanUseCssResult;
// scan direction, if not equal SCAN_OFF indicates
// that we are in a process of scanning channels/frequencies
extern int8_t gScanStateDir;
extern bool gScanKeepResult;
void SCANNER_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld); void SCANNER_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld);
void SCANNER_Start(void); void SCANNER_Start(bool singleFreq);
void SCANNER_Found();
void SCANNER_Stop(void); void SCANNER_Stop(void);
void SCANNER_ScanChannels(const bool storeBackupSettings, const int8_t scan_direction); void SCANNER_TimeSlice10ms(void);
void SCANNER_ContinueScanning(); void SCANNER_TimeSlice500ms(void);
bool SCANNER_IsScanning(void);
#endif #endif

View File

@@ -49,7 +49,6 @@ ScanInfo scanInfo;
KeyboardState kbd = {KEY_INVALID, KEY_INVALID, 0}; KeyboardState kbd = {KEY_INVALID, KEY_INVALID, 0};
const char *bwOptions[] = {" 25k", "12.5k", "6.25k"}; const char *bwOptions[] = {" 25k", "12.5k", "6.25k"};
const char *modulationTypeOptions[] = {" FM", " AM", "USB"};
const uint8_t modulationTypeTuneSteps[] = {100, 50, 10}; const uint8_t modulationTypeTuneSteps[] = {100, 50, 10};
const uint8_t modTypeReg47Values[] = {1, 7, 5}; const uint8_t modTypeReg47Values[] = {1, 7, 5};
@@ -103,7 +102,7 @@ static int Rssi2DBm(uint16_t rssi) { return (rssi >> 1) - 160; }
static uint16_t GetRegMenuValue(uint8_t st) { static uint16_t GetRegMenuValue(uint8_t st) {
RegisterSpec s = registerSpecs[st]; RegisterSpec s = registerSpecs[st];
return (BK4819_ReadRegister(s.num) >> s.offset) & s.maxValue; return (BK4819_ReadRegister(s.num) >> s.offset) & s.mask;
} }
static void SetRegMenuValue(uint8_t st, bool add) { static void SetRegMenuValue(uint8_t st, bool add) {
@@ -111,14 +110,14 @@ static void SetRegMenuValue(uint8_t st, bool add) {
RegisterSpec s = registerSpecs[st]; RegisterSpec s = registerSpecs[st];
uint16_t reg = BK4819_ReadRegister(s.num); uint16_t reg = BK4819_ReadRegister(s.num);
if (add && v <= s.maxValue - s.inc) { if (add && v <= s.mask - s.inc) {
v += s.inc; v += s.inc;
} else if (!add && v >= 0 + s.inc) { } else if (!add && v >= 0 + s.inc) {
v -= s.inc; v -= s.inc;
} }
// TODO: use max value for bits count in max value, or reset by additional // TODO: use max value for bits count in max value, or reset by additional
// mask in spec // mask in spec
reg &= ~(s.maxValue << s.offset); reg &= ~(s.mask << s.offset);
BK4819_WriteRegister(s.num, reg | (v << s.offset)); BK4819_WriteRegister(s.num, reg | (v << s.offset));
redrawScreen = true; redrawScreen = true;
} }
@@ -225,18 +224,6 @@ static void RestoreRegisters() {
BK4819_WriteRegister(BK4819_REG_7E, R7E); BK4819_WriteRegister(BK4819_REG_7E, R7E);
} }
static void SetModulation(ModulationType type) {
RestoreRegisters();
uint16_t reg = BK4819_ReadRegister(BK4819_REG_47);
reg &= ~(0b111 << 8);
BK4819_WriteRegister(BK4819_REG_47, reg | (modTypeReg47Values[type] << 8));
if (type == MOD_USB) {
BK4819_WriteRegister(BK4819_REG_3D, 0b0010101101000101);
BK4819_WriteRegister(BK4819_REG_37, 0x160F);
BK4819_WriteRegister(BK4819_REG_48, 0b0000001110101000);
}
}
static void ToggleAFDAC(bool on) { static void ToggleAFDAC(bool on) {
uint32_t Reg = BK4819_ReadRegister(BK4819_REG_30); uint32_t Reg = BK4819_ReadRegister(BK4819_REG_30);
Reg &= ~(1 << 9); Reg &= ~(1 << 9);
@@ -401,11 +388,24 @@ static void Measure() { rssiHistory[scanInfo.i] = scanInfo.rssi = GetRssi(); }
// Update things by keypress // Update things by keypress
static uint16_t dbm2rssi(int dBm)
{
return (dBm + 160)*2;
}
static void ClampRssiTriggerLevel()
{
settings.rssiTriggerLevel = clamp(settings.rssiTriggerLevel, dbm2rssi(settings.dbMin), dbm2rssi(settings.dbMax));
}
static void UpdateRssiTriggerLevel(bool inc) { static void UpdateRssiTriggerLevel(bool inc) {
if (inc) if (inc)
settings.rssiTriggerLevel += 2; settings.rssiTriggerLevel += 2;
else else
settings.rssiTriggerLevel -= 2; settings.rssiTriggerLevel -= 2;
ClampRssiTriggerLevel();
redrawScreen = true; redrawScreen = true;
redrawStatus = true; redrawStatus = true;
} }
@@ -418,6 +418,8 @@ static void UpdateDBMax(bool inc) {
} else { } else {
return; return;
} }
ClampRssiTriggerLevel();
redrawStatus = true; redrawStatus = true;
redrawScreen = true; redrawScreen = true;
SYSTEM_DelayMs(20); SYSTEM_DelayMs(20);
@@ -474,12 +476,12 @@ static void UpdateFreqChangeStep(bool inc) {
} }
static void ToggleModulation() { static void ToggleModulation() {
if (settings.modulationType < MOD_USB) { if (settings.modulationType < MODULATION_UKNOWN - 1) {
settings.modulationType++; settings.modulationType++;
} else { } else {
settings.modulationType = MOD_FM; settings.modulationType = MODULATION_FM;
} }
SetModulation(settings.modulationType); RADIO_SetModulation(settings.modulationType);
redrawScreen = true; redrawScreen = true;
} }
@@ -654,7 +656,7 @@ static void DrawF(uint32_t f) {
sprintf(String, "%u.%05u", f / 100000, f % 100000); sprintf(String, "%u.%05u", f / 100000, f % 100000);
UI_PrintStringSmall(String, 8, 127, 0); UI_PrintStringSmall(String, 8, 127, 0);
sprintf(String, "%s", modulationTypeOptions[settings.modulationType]); sprintf(String, "%3s", gModulationStr[settings.modulationType]);
GUI_DisplaySmallest(String, 116, 1, false, true); GUI_DisplaySmallest(String, 116, 1, false, true);
sprintf(String, "%s", bwOptions[settings.listenBw]); sprintf(String, "%s", bwOptions[settings.listenBw]);
GUI_DisplaySmallest(String, 108, 7, false, true); GUI_DisplaySmallest(String, 108, 7, false, true);
@@ -1160,7 +1162,7 @@ void APP_RunSpectrum() {
newScanStart = true; newScanStart = true;
ToggleRX(true), ToggleRX(false); // hack to prevent noise when squelch off ToggleRX(true), ToggleRX(false); // hack to prevent noise when squelch off
SetModulation(settings.modulationType = MOD_FM); RADIO_SetModulation(settings.modulationType = MODULATION_FM);
BK4819_SetFilterBandwidth(settings.listenBw = BK4819_FILTER_BW_WIDE, false); BK4819_SetFilterBandwidth(settings.listenBw = BK4819_FILTER_BW_WIDE, false);
RelaunchScan(); RelaunchScan();

View File

@@ -99,12 +99,6 @@ typedef enum StepsCount {
STEPS_16, STEPS_16,
} StepsCount; } StepsCount;
typedef enum ModulationType {
MOD_FM,
MOD_AM,
MOD_USB,
} ModulationType;
typedef enum ScanStep { typedef enum ScanStep {
S_STEP_0_01kHz, S_STEP_0_01kHz,
S_STEP_0_1kHz, S_STEP_0_1kHz,
@@ -131,7 +125,7 @@ typedef struct SpectrumSettings {
BK4819_FilterBandwidth_t listenBw; BK4819_FilterBandwidth_t listenBw;
int dbMin; int dbMin;
int dbMax; int dbMax;
ModulationType modulationType; ModulationMode_t modulationType;
bool backlightState; bool backlightState;
} SpectrumSettings; } SpectrumSettings;
@@ -149,14 +143,6 @@ typedef struct ScanInfo {
uint8_t measurementsCount; uint8_t measurementsCount;
} ScanInfo; } ScanInfo;
typedef struct RegisterSpec {
char *name;
uint8_t num;
uint8_t offset;
uint16_t maxValue;
uint16_t inc;
} RegisterSpec;
typedef struct PeakInfo { typedef struct PeakInfo {
uint16_t t; uint16_t t;
uint16_t rssi; uint16_t rssi;

View File

@@ -289,7 +289,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
if (gCurrentFunction == FUNCTION_RECEIVE || if (gCurrentFunction == FUNCTION_RECEIVE ||
gCurrentFunction == FUNCTION_MONITOR || gCurrentFunction == FUNCTION_MONITOR ||
gCurrentFunction == FUNCTION_INCOMING) // 1of11 gCurrentFunction == FUNCTION_INCOMING) // 1of11
BK4819_SetAF(gRxVfo->AM_mode ? BK4819_AF_AM : BK4819_AF_FM); RADIO_SetModulation(gRxVfo->Modulation);
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
if (gFmRadioMode) if (gFmRadioMode)
@@ -430,7 +430,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
if (gCurrentFunction == FUNCTION_RECEIVE || if (gCurrentFunction == FUNCTION_RECEIVE ||
gCurrentFunction == FUNCTION_MONITOR || gCurrentFunction == FUNCTION_MONITOR ||
gCurrentFunction == FUNCTION_INCOMING) // 1of11 gCurrentFunction == FUNCTION_INCOMING) // 1of11
BK4819_SetAF(gRxVfo->AM_mode ? BK4819_AF_AM : BK4819_AF_FM); RADIO_SetModulation(gRxVfo->Modulation);
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
if (gFmRadioMode) if (gFmRadioMode)

View File

@@ -10,10 +10,6 @@ extern const uint8_t BITMAP_RX[8];
extern const uint8_t BITMAP_BatteryLevel[2]; extern const uint8_t BITMAP_BatteryLevel[2];
extern const uint8_t BITMAP_BatteryLevel1[17]; extern const uint8_t BITMAP_BatteryLevel1[17];
extern const uint8_t BITMAP_BatteryLevel2[17];
extern const uint8_t BITMAP_BatteryLevel3[17];
extern const uint8_t BITMAP_BatteryLevel4[17];
extern const uint8_t BITMAP_BatteryLevel5[17];
extern const uint8_t BITMAP_USB_C[9]; extern const uint8_t BITMAP_USB_C[9];

View File

@@ -537,6 +537,9 @@ void BOARD_EEPROM_Init(void)
EEPROM_ReadBuffer(0x0E78, Data, 8); EEPROM_ReadBuffer(0x0E78, Data, 8);
gEeprom.BACKLIGHT_MAX = (Data[0] & 0xF) <= 10 ? (Data[0] & 0xF) : 10; gEeprom.BACKLIGHT_MAX = (Data[0] & 0xF) <= 10 ? (Data[0] & 0xF) : 10;
gEeprom.BACKLIGHT_MIN = (Data[0] >> 4) < gEeprom.BACKLIGHT_MAX ? (Data[0] >> 4) : 0; gEeprom.BACKLIGHT_MIN = (Data[0] >> 4) < gEeprom.BACKLIGHT_MAX ? (Data[0] >> 4) : 0;
#ifdef ENABLE_BLMIN_TMP_OFF
gEeprom.BACKLIGHT_MIN_STAT = BLMIN_STAT_ON;
#endif
gEeprom.CHANNEL_DISPLAY_MODE = (Data[1] < 4) ? Data[1] : MDF_FREQUENCY; // 4 instead of 3 - extra display mode gEeprom.CHANNEL_DISPLAY_MODE = (Data[1] < 4) ? Data[1] : MDF_FREQUENCY; // 4 instead of 3 - extra display mode
gEeprom.CROSS_BAND_RX_TX = (Data[2] < 3) ? Data[2] : CROSS_BAND_OFF; gEeprom.CROSS_BAND_RX_TX = (Data[2] < 3) ? Data[2] : CROSS_BAND_OFF;
gEeprom.BATTERY_SAVE = (Data[3] < 5) ? Data[3] : 4; gEeprom.BATTERY_SAVE = (Data[3] < 5) ? Data[3] : 4;
@@ -698,14 +701,14 @@ void BOARD_EEPROM_Init(void)
// 0F40..0F47 // 0F40..0F47
EEPROM_ReadBuffer(0x0F40, Data, 8); EEPROM_ReadBuffer(0x0F40, Data, 8);
gSetting_F_LOCK = (Data[0] < 6) ? Data[0] : F_LOCK_OFF; gSetting_F_LOCK = (Data[0] < F_LOCK_LEN) ? Data[0] : F_LOCK_DEF;
gSetting_350TX = (Data[1] < 2) ? Data[1] : false; // was true gSetting_350TX = (Data[1] < 2) ? Data[1] : false; // was true
gSetting_KILLED = (Data[2] < 2) ? Data[2] : false; gSetting_KILLED = (Data[2] < 2) ? Data[2] : false;
gSetting_200TX = (Data[3] < 2) ? Data[3] : false; gSetting_200TX = (Data[3] < 2) ? Data[3] : false;
gSetting_500TX = (Data[4] < 2) ? Data[4] : false; gSetting_500TX = (Data[4] < 2) ? Data[4] : false;
gSetting_350EN = (Data[5] < 2) ? Data[5] : true; gSetting_350EN = (Data[5] < 2) ? Data[5] : true;
gSetting_ScrambleEnable = (Data[6] < 2) ? Data[6] : true; gSetting_ScrambleEnable = (Data[6] < 2) ? Data[6] : true;
gSetting_TX_EN = (Data[7] & (1u << 0)) ? true : false; //gSetting_TX_EN = (Data[7] & (1u << 0)) ? true : false;
gSetting_live_DTMF_decoder = (Data[7] & (1u << 1)) ? true : false; gSetting_live_DTMF_decoder = (Data[7] & (1u << 1)) ? true : false;
gSetting_battery_text = (((Data[7] >> 2) & 3u) <= 2) ? (Data[7] >> 2) & 3 : 2; gSetting_battery_text = (((Data[7] >> 2) & 3u) <= 2) ? (Data[7] >> 2) & 3 : 2;
#ifdef ENABLE_AUDIO_BAR #ifdef ENABLE_AUDIO_BAR

View File

@@ -94,7 +94,18 @@ void BACKLIGHT_TurnOn(void)
void BACKLIGHT_TurnOff() void BACKLIGHT_TurnOff()
{ {
#ifdef ENABLE_BLMIN_TMP_OFF
register uint8_t tmp;
if (gEeprom.BACKLIGHT_MIN_STAT == BLMIN_STAT_ON)
tmp = gEeprom.BACKLIGHT_MIN;
else
tmp = 0;
BACKLIGHT_SetBrightness(tmp);
#else
BACKLIGHT_SetBrightness(gEeprom.BACKLIGHT_MIN); BACKLIGHT_SetBrightness(gEeprom.BACKLIGHT_MIN);
#endif
gBacklightCountdown = 0; gBacklightCountdown = 0;
backlightOn = false; backlightOn = false;
} }
@@ -108,4 +119,4 @@ void BACKLIGHT_SetBrightness(uint8_t brigtness)
{ {
PWM_PLUS0_CH0_COMP = (1 << brigtness) - 1; PWM_PLUS0_CH0_COMP = (1 << brigtness) - 1;
//PWM_PLUS0_SWLOAD = 1; //PWM_PLUS0_SWLOAD = 1;
} }

View File

@@ -23,6 +23,14 @@
extern uint16_t gBacklightCountdown; extern uint16_t gBacklightCountdown;
extern uint8_t gBacklightBrightness; extern uint8_t gBacklightBrightness;
#ifdef ENABLE_BLMIN_TMP_OFF
typedef enum {
BLMIN_STAT_ON,
BLMIN_STAT_OFF,
BLMIN_STAT_UNKNOWN
} BLMIN_STAT_t;
#endif
void BACKLIGHT_InitHardware(); void BACKLIGHT_InitHardware();
void BACKLIGHT_TurnOn(); void BACKLIGHT_TurnOn();
void BACKLIGHT_TurnOff(); void BACKLIGHT_TurnOff();

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@@ -17,6 +17,19 @@
#ifndef BK4819_REGS_H #ifndef BK4819_REGS_H
#define BK4819_REGS_H #define BK4819_REGS_H
typedef struct {
const char *name;
uint8_t num;
uint8_t offset;
uint16_t mask;
uint16_t inc;
} RegisterSpec;
static const RegisterSpec afcDisableRegSpec = {"AFC Disable", 0x73, 4, 1, 1};
static const RegisterSpec afOutRegSpec = {"AF Output Select", 0x47, 8, 0xF, 1};
static const RegisterSpec afDacGainRegSpec = {"AF DAC Gain", 0x48, 0, 0xF, 1};
enum BK4819_REGISTER_t { enum BK4819_REGISTER_t {
BK4819_REG_00 = 0x00U, BK4819_REG_00 = 0x00U,
BK4819_REG_02 = 0x02U, BK4819_REG_02 = 0x02U,

View File

@@ -798,6 +798,12 @@ void BK4819_SetAF(BK4819_AF_Type_t AF)
BK4819_WriteRegister(BK4819_REG_47, (6u << 12) | (AF << 8) | (1u << 6)); BK4819_WriteRegister(BK4819_REG_47, (6u << 12) | (AF << 8) | (1u << 6));
} }
void BK4819_SetRegValue(RegisterSpec s, uint16_t v) {
uint16_t reg = BK4819_ReadRegister(s.num);
reg &= ~(s.mask << s.offset);
BK4819_WriteRegister(s.num, reg | (v << s.offset));
}
void BK4819_RX_TurnOn(void) void BK4819_RX_TurnOn(void)
{ {
// DSP Voltage Setting = 1 // DSP Voltage Setting = 1
@@ -1029,6 +1035,7 @@ void BK4819_PlaySingleTone(const unsigned int tone_Hz, const unsigned int delay,
BK4819_WriteRegister(BK4819_REG_70, 0x0000); BK4819_WriteRegister(BK4819_REG_70, 0x0000);
BK4819_WriteRegister(BK4819_REG_30, 0xC1FE); BK4819_WriteRegister(BK4819_REG_30, 0xC1FE);
BK4819_ExitTxMute();
} }
void BK4819_EnterTxMute(void) void BK4819_EnterTxMute(void)

View File

@@ -28,12 +28,12 @@ enum BK4819_AF_Type_t
BK4819_AF_FM = 1u, // FM BK4819_AF_FM = 1u, // FM
BK4819_AF_ALAM = 2u, // BK4819_AF_ALAM = 2u, //
BK4819_AF_BEEP = 3u, // BK4819_AF_BEEP = 3u, //
BK4819_AF_BASEBAND1 = 4u, // SSB BK4819_AF_BASEBAND1 = 4u, // RAW
BK4819_AF_BASEBAND2 = 5u, // SSB BK4819_AF_BASEBAND2 = 5u, // USB
BK4819_AF_CTCO = 6u, // strange LF audio .. maybe the CTCSS LF line ? BK4819_AF_CTCO = 6u, // strange LF audio .. maybe the CTCSS LF line ?
BK4819_AF_AM = 7u, // AM BK4819_AF_AM = 7u, // AM
BK4819_AF_FSKO = 8u, // nothing BK4819_AF_FSKO = 8u, // nothing
BK4819_AF_UNKNOWN3 = 9u, // distorted BK4819_AF_UNKNOWN3 = 9u, // BYP
BK4819_AF_UNKNOWN4 = 10u, // nothing at all BK4819_AF_UNKNOWN4 = 10u, // nothing at all
BK4819_AF_UNKNOWN5 = 11u, // distorted BK4819_AF_UNKNOWN5 = 11u, // distorted
BK4819_AF_UNKNOWN6 = 12u, // distorted BK4819_AF_UNKNOWN6 = 12u, // distorted
@@ -68,6 +68,7 @@ extern bool gRxIdleMode;
void BK4819_Init(void); void BK4819_Init(void);
uint16_t BK4819_ReadRegister(BK4819_REGISTER_t Register); uint16_t BK4819_ReadRegister(BK4819_REGISTER_t Register);
void BK4819_WriteRegister(BK4819_REGISTER_t Register, uint16_t Data); void BK4819_WriteRegister(BK4819_REGISTER_t Register, uint16_t Data);
void BK4819_SetRegValue(RegisterSpec s, uint16_t v);
void BK4819_WriteU8(uint8_t Data); void BK4819_WriteU8(uint8_t Data);
void BK4819_WriteU16(uint16_t Data); void BK4819_WriteU16(uint16_t Data);

View File

@@ -140,65 +140,116 @@ void ST7565_FillScreen(uint8_t Value)
SPI_ToggleMasterMode(&SPI0->CR, true); SPI_ToggleMasterMode(&SPI0->CR, true);
} }
// Software reset
const uint8_t ST7565_CMD_SOFTWARE_RESET = 0xE2;
// Bias Select
// 1 0 1 0 0 0 1 BS
// Select bias setting 0=1/9; 1=1/7 (at 1/65 duty)
const uint8_t ST7565_CMD_BIAS_SELECT = 0xA2;
// COM Direction
// 1 1 0 0 MY - - -
// Set output direction of COM
// MY=1, reverse direction
// MY=0, normal direction
const uint8_t ST7565_CMD_COM_DIRECTION = 0xC0;
// SEG Direction
// 1 0 1 0 0 0 0 MX
// Set scan direction of SEG
// MX=1, reverse direction
// MX=0, normal direction
const uint8_t ST7565_CMD_SEG_DIRECTION = 0xA0;
// Inverse Display
// 1 0 1 0 0 1 1 INV
// INV =1, inverse display
// INV =0, normal display
const uint8_t ST7565_CMD_INVERSE_DISPLAY = 0xA6;
// All Pixel ON
// 1 0 1 0 0 1 0 AP
// AP=1, set all pixel ON
// AP=0, normal display
const uint8_t ST7565_CMD_ALL_PIXEL_ON = 0xA4;
// Regulation Ratio
// 0 0 1 0 0 RR2 RR1 RR0
// This instruction controls the regulation ratio of the built-in regulator
const uint8_t ST7565_CMD_REGULATION_RATIO = 0x20;
// Double command!! Set electronic volume (EV) level
// Send next: 0 0 EV5 EV4 EV3 EV2 EV1 EV0 contrast 0-63
const uint8_t ST7565_CMD_SET_EV = 0x81;
// Control built-in power circuit ON/OFF - 0 0 1 0 1 VB VR VF
// VB: Built-in Booster
// VR: Built-in Regulator
// VF: Built-in Follower
const uint8_t ST7565_CMD_POWER_CIRCUIT = 0x28;
// Set display start line 0-63
// 0 0 0 1 S5 S4 S3 S2 S1 S0
const uint8_t ST7565_CMD_SET_START_LINE = 0x40;
// Display ON/OFF
// 0 0 1 0 1 0 1 1 1 D
// D=1, display ON
// D=0, display OFF
const uint8_t ST7565_CMD_DISPLAY_ON_OFF = 0xAE;
uint8_t cmds[] = {
ST7565_CMD_BIAS_SELECT | 0, // Select bias setting: 1/9
ST7565_CMD_COM_DIRECTION | (0 << 3), // Set output direction of COM: normal
ST7565_CMD_SEG_DIRECTION | 1, // Set scan direction of SEG: reverse
ST7565_CMD_INVERSE_DISPLAY | 0, // Inverse Display: false
ST7565_CMD_ALL_PIXEL_ON | 0, // All Pixel ON: false - normal display
ST7565_CMD_REGULATION_RATIO | (4 << 0), // Regulation Ratio 5.0
ST7565_CMD_SET_EV, // Set contrast
31,
ST7565_CMD_POWER_CIRCUIT | 0b111, // Built-in power circuit ON/OFF: VB=1 VR=1 VF=1
ST7565_CMD_SET_START_LINE | 0, // Set Start Line: 0
ST7565_CMD_DISPLAY_ON_OFF | 1, // Display ON/OFF: ON
};
void ST7565_Init(const bool full) void ST7565_Init(const bool full)
{ {
if (full) if (full) {
{
SPI0_Init(); SPI0_Init();
ST7565_HardwareReset(); ST7565_HardwareReset();
SPI_ToggleMasterMode(&SPI0->CR, false); SPI_ToggleMasterMode(&SPI0->CR, false);
ST7565_WriteByte(ST7565_CMD_SOFTWARE_RESET); // software reset
ST7565_WriteByte(0xE2); // internal reset
SYSTEM_DelayMs(120); SYSTEM_DelayMs(120);
} }
else else
SPI_ToggleMasterMode(&SPI0->CR, false); SPI_ToggleMasterMode(&SPI0->CR, false);
ST7565_WriteByte(0xA2); // bias 9
ST7565_WriteByte(0xC0); // com normal
ST7565_WriteByte(0xA1); // reverse ?
ST7565_WriteByte(0xA6); // normal screen ?
// ST7565_WriteByte(0xA7); // inverse screen ?
ST7565_WriteByte(0xA4); // all points normal for(uint8_t i = 0; i < 8; i++)
ST7565_WriteByte(0x24); // ST7565_WriteByte(cmds[i]);
ST7565_WriteByte(0x81); // volume first ?
ST7565_WriteByte(0x1f); // contrast ? if (full) {
ST7565_WriteByte(ST7565_CMD_POWER_CIRCUIT | 0b011); // VB=0 VR=1 VF=1
if (full) SYSTEM_DelayMs(1);
{ ST7565_WriteByte(ST7565_CMD_POWER_CIRCUIT | 0b110); // VB=1 VR=1 VF=0
ST7565_WriteByte(0x2B); // power control ?
SYSTEM_DelayMs(1); SYSTEM_DelayMs(1);
ST7565_WriteByte(0x2E); // power control ? for(uint8_t i = 0; i < 4; i++) // why 4 times?
ST7565_WriteByte(ST7565_CMD_POWER_CIRCUIT | 0b111); // VB=1 VR=1 VF=1
SYSTEM_DelayMs(1);
ST7565_WriteByte(0x2F); //
ST7565_WriteByte(0x2F); //
ST7565_WriteByte(0x2F); //
ST7565_WriteByte(0x2F); //
SYSTEM_DelayMs(40); SYSTEM_DelayMs(40);
} }
ST7565_WriteByte(0x40); // start line ?
ST7565_WriteByte(0xAF); // display on ?
SPI_WaitForUndocumentedTxFifoStatusBit();
ST7565_WriteByte(ST7565_CMD_SET_START_LINE | 0); // line 0
ST7565_WriteByte(ST7565_CMD_DISPLAY_ON_OFF | 1); // D=1
SPI_WaitForUndocumentedTxFifoStatusBit();
SPI_ToggleMasterMode(&SPI0->CR, true); SPI_ToggleMasterMode(&SPI0->CR, true);
if (full) if (full)
ST7565_FillScreen(0x00); ST7565_FillScreen(0x00);
} }
void ST7565_FixInterfGlitch(void)
{
SPI_ToggleMasterMode(&SPI0->CR, false);
for(uint8_t i = 0; i < ARRAY_SIZE(cmds); i++)
ST7565_WriteByte(cmds[i]);
SPI_WaitForUndocumentedTxFifoStatusBit();
SPI_ToggleMasterMode(&SPI0->CR, true);
}
void ST7565_HardwareReset(void) void ST7565_HardwareReset(void)
{ {
GPIO_SetBit(&GPIOB->DATA, GPIOB_PIN_ST7565_RES); GPIO_SetBit(&GPIOB->DATA, GPIOB_PIN_ST7565_RES);

View File

@@ -31,6 +31,7 @@ void ST7565_BlitFullScreen(void);
void ST7565_BlitStatusLine(void); void ST7565_BlitStatusLine(void);
void ST7565_FillScreen(uint8_t Value); void ST7565_FillScreen(uint8_t Value);
void ST7565_Init(const bool full); void ST7565_Init(const bool full);
void ST7565_FixInterfGlitch(void);
void ST7565_HardwareReset(void); void ST7565_HardwareReset(void);
void ST7565_SelectColumnAndLine(uint8_t Column, uint8_t Line); void ST7565_SelectColumnAndLine(uint8_t Column, uint8_t Line);
void ST7565_WriteByte(uint8_t Value); void ST7565_WriteByte(uint8_t Value);

View File

@@ -61,13 +61,29 @@ const freq_band_table_t frequencyBandTable[7] =
}; };
#endif #endif
#ifndef ENABLE_12_5KHZ_STEP
// QS steps (*10 Hz) const uint16_t gStepFrequencyTable[] = {
const uint16_t StepFrequencyTable[7] = {250, 500, 625, 1000, 1250, 2500, 833}; 250, 500, 625, 1000, 1250, 2500, 833,
#else 1, 5, 10, 25, 50, 100, 125, 1500, 3000, 5000, 10000, 12500, 25000, 50000
// includes 1.25kHz step };
const uint16_t StepFrequencyTable[7] = {125, 250, 625, 1000, 1250, 2500, 833};
#endif
const uint8_t StepSortedIndexes[] = {
STEP_0_01kHz, STEP_0_05kHz, STEP_0_1kHz, STEP_0_25kHz, STEP_0_5kHz, STEP_1kHz, STEP_1_25kHz, STEP_2_5kHz, STEP_5kHz, STEP_6_25kHz,
STEP_8_33kHz, STEP_10kHz, STEP_12_5kHz, STEP_15kHz, STEP_25kHz, STEP_30kHz, STEP_50kHz, STEP_100kHz,
STEP_125kHz, STEP_250kHz, STEP_500kHz
};
uint8_t FREQUENCY_GetStepIdxFromSortedIdx(uint8_t sortedIdx)
{
return StepSortedIndexes[sortedIdx];
}
uint8_t FREQUENCY_GetSortedIdxFromStepIdx(uint8_t stepIdx)
{
for(uint8_t i = 0; i < ARRAY_SIZE(gStepFrequencyTable); i++)
if(StepSortedIndexes[i] == stepIdx)
return i;
return 0;
}
FREQUENCY_Band_t FREQUENCY_GetBand(uint32_t Frequency) FREQUENCY_Band_t FREQUENCY_GetBand(uint32_t Frequency)
{ {
@@ -102,6 +118,8 @@ uint8_t FREQUENCY_CalculateOutputPower(uint8_t TxpLow, uint8_t TxpMid, uint8_t T
static int32_t rnd(int32_t freq, uint16_t step) static int32_t rnd(int32_t freq, uint16_t step)
{ {
if(step == 1)
return freq;
return (freq + (step + 1) / 2) / step * step; return (freq + (step + 1) / 2) / step * step;
} }
@@ -129,7 +147,7 @@ int TX_freq_check(const uint32_t Frequency)
switch (gSetting_F_LOCK) switch (gSetting_F_LOCK)
{ {
case F_LOCK_OFF: case F_LOCK_DEF:
if (Frequency >= frequencyBandTable[BAND3_137MHz].lower && Frequency < frequencyBandTable[BAND3_137MHz].upper) if (Frequency >= frequencyBandTable[BAND3_137MHz].lower && Frequency < frequencyBandTable[BAND3_137MHz].upper)
return 0; return 0;
if (Frequency >= frequencyBandTable[BAND4_174MHz].lower && Frequency < frequencyBandTable[BAND4_174MHz].upper) if (Frequency >= frequencyBandTable[BAND4_174MHz].lower && Frequency < frequencyBandTable[BAND4_174MHz].upper)
@@ -179,6 +197,15 @@ int TX_freq_check(const uint32_t Frequency)
if (Frequency >= 40000000 && Frequency < 43800000) if (Frequency >= 40000000 && Frequency < 43800000)
return 0; return 0;
break; break;
case F_LOCK_ALL:
break;
case F_LOCK_NONE:
for (uint8_t i = 0; i < ARRAY_SIZE(frequencyBandTable); i++)
if (Frequency >= frequencyBandTable[i].lower && Frequency < frequencyBandTable[i].upper)
return 0;
break;
} }
// dis-allowed TX frequency // dis-allowed TX frequency

View File

@@ -19,8 +19,6 @@
#include <stdint.h> #include <stdint.h>
#define ENABLE_12_5KHZ_STEP
typedef struct { typedef struct {
const uint32_t lower; const uint32_t lower;
const uint32_t upper; const uint32_t upper;
@@ -31,7 +29,7 @@ extern const freq_band_table_t BX4819_band2;
extern const freq_band_table_t frequencyBandTable[7]; extern const freq_band_table_t frequencyBandTable[7];
enum FREQUENCY_Band_t { typedef enum {
BAND_NONE = -1, BAND_NONE = -1,
BAND1_50MHz = 0, BAND1_50MHz = 0,
BAND2_108MHz, BAND2_108MHz,
@@ -40,35 +38,35 @@ enum FREQUENCY_Band_t {
BAND5_350MHz, BAND5_350MHz,
BAND6_400MHz, BAND6_400MHz,
BAND7_470MHz BAND7_470MHz
}; } FREQUENCY_Band_t;
typedef enum FREQUENCY_Band_t FREQUENCY_Band_t;
#ifndef ENABLE_12_5KHZ_STEP
// QS steps
enum STEP_Setting_t {
STEP_2_5kHz = 0,
STEP_5_0kHz,
STEP_6_25kHz,
STEP_10_0kHz,
STEP_12_5kHz,
STEP_25_0kHz,
STEP_8_33kHz
};
#else
// includes 1.25kHz step
enum STEP_Setting_t {
STEP_1_25kHz = 0,
STEP_2_5kHz,
STEP_6_25kHz,
STEP_10_0kHz,
STEP_12_5kHz,
STEP_25_0kHz,
STEP_8_33kHz
};
#endif
typedef enum STEP_Setting_t STEP_Setting_t;
extern const uint16_t StepFrequencyTable[7]; typedef enum {
STEP_2_5kHz,
STEP_5kHz,
STEP_6_25kHz,
STEP_10kHz,
STEP_12_5kHz,
STEP_25kHz,
STEP_8_33kHz,
STEP_0_01kHz,
STEP_0_05kHz,
STEP_0_1kHz,
STEP_0_25kHz,
STEP_0_5kHz,
STEP_1kHz,
STEP_1_25kHz,
STEP_15kHz,
STEP_30kHz,
STEP_50kHz,
STEP_100kHz,
STEP_125kHz,
STEP_250kHz,
STEP_500kHz,
} STEP_Setting_t;
extern const uint16_t gStepFrequencyTable[21];
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
extern const uint32_t NoaaFrequencyTable[10]; extern const uint32_t NoaaFrequencyTable[10];
@@ -78,6 +76,9 @@ FREQUENCY_Band_t FREQUENCY_GetBand(uint32_t Frequency);
uint8_t FREQUENCY_CalculateOutputPower(uint8_t TxpLow, uint8_t TxpMid, uint8_t TxpHigh, int32_t LowerLimit, int32_t Middle, int32_t UpperLimit, int32_t Frequency); uint8_t FREQUENCY_CalculateOutputPower(uint8_t TxpLow, uint8_t TxpMid, uint8_t TxpHigh, int32_t LowerLimit, int32_t Middle, int32_t UpperLimit, int32_t Frequency);
uint32_t FREQUENCY_RoundToStep(uint32_t freq, uint16_t step); uint32_t FREQUENCY_RoundToStep(uint32_t freq, uint16_t step);
uint8_t FREQUENCY_GetStepIdxFromSortedIdx(uint8_t sortedIdx);
uint8_t FREQUENCY_GetSortedIdxFromStepIdx(uint8_t step);
int TX_freq_check(const uint32_t Frequency); int TX_freq_check(const uint32_t Frequency);
int RX_freq_check(const uint32_t Frequency); int RX_freq_check(const uint32_t Frequency);

View File

@@ -20,6 +20,7 @@
#if defined(ENABLE_FMRADIO) #if defined(ENABLE_FMRADIO)
#include "app/fm.h" #include "app/fm.h"
#endif #endif
#include "audio.h"
#include "bsp/dp32g030/gpio.h" #include "bsp/dp32g030/gpio.h"
#include "dcs.h" #include "dcs.h"
#include "driver/backlight.h" #include "driver/backlight.h"
@@ -29,6 +30,7 @@
#include "driver/bk4819.h" #include "driver/bk4819.h"
#include "driver/gpio.h" #include "driver/gpio.h"
#include "driver/system.h" #include "driver/system.h"
#include "driver/st7565.h"
#include "frequencies.h" #include "frequencies.h"
#include "functions.h" #include "functions.h"
#include "helper/battery.h" #include "helper/battery.h"
@@ -42,18 +44,16 @@ FUNCTION_Type_t gCurrentFunction;
void FUNCTION_Init(void) void FUNCTION_Init(void)
{ {
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE)) if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE))
#endif #endif
{ {
gCurrentCodeType = gSelectedCodeType; gCurrentCodeType = (gRxVfo->Modulation != MODULATION_FM) ? CODE_TYPE_OFF : gRxVfo->pRX->CodeType;
if (gCssScanMode == CSS_SCAN_MODE_OFF)
gCurrentCodeType = gRxVfo->AM_mode ? CODE_TYPE_OFF : gRxVfo->pRX->CodeType;
} }
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
else else
gCurrentCodeType = CODE_TYPE_CONTINUOUS_TONE; gCurrentCodeType = CODE_TYPE_CONTINUOUS_TONE;
#endif #endif
DTMF_clear_RX(); DTMF_clear_RX();
@@ -104,6 +104,7 @@ void FUNCTION_Select(FUNCTION_Type_t Function)
if (PreviousFunction == FUNCTION_TRANSMIT) if (PreviousFunction == FUNCTION_TRANSMIT)
{ {
ST7565_FixInterfGlitch();
gVFO_RSSI_bar_level[0] = 0; gVFO_RSSI_bar_level[0] = 0;
gVFO_RSSI_bar_level[1] = 0; gVFO_RSSI_bar_level[1] = 0;
} }

View File

@@ -16,6 +16,8 @@
#include "battery.h" #include "battery.h"
#include "driver/backlight.h" #include "driver/backlight.h"
#include "driver/st7565.h"
#include "functions.h"
#include "misc.h" #include "misc.h"
#include "settings.h" #include "settings.h"
#include "ui/battery.h" #include "ui/battery.h"
@@ -29,30 +31,43 @@ uint16_t gBatteryVoltages[4];
uint16_t gBatteryVoltageAverage; uint16_t gBatteryVoltageAverage;
uint8_t gBatteryDisplayLevel; uint8_t gBatteryDisplayLevel;
bool gChargingWithTypeC; bool gChargingWithTypeC;
bool gLowBattery;
bool gLowBatteryBlink; bool gLowBatteryBlink;
bool gLowBattery;
bool gLowBatteryConfirmed;
uint16_t gBatteryCheckCounter; uint16_t gBatteryCheckCounter;
typedef enum {
BATTERY_LOW_INACTIVE,
BATTERY_LOW_ACTIVE,
BATTERY_LOW_CONFIRMED
} BatteryLow_t;
uint16_t lowBatteryCountdown;
const uint16_t lowBatteryPeriod = 30;
volatile uint16_t gPowerSave_10ms; volatile uint16_t gPowerSave_10ms;
unsigned int BATTERY_VoltsToPercent(const unsigned int voltage_10mV) unsigned int BATTERY_VoltsToPercent(const unsigned int voltage_10mV)
{ {
const uint16_t crv1600[][2] = { const uint16_t crv1600[][2] = {
{814, 100}, {828, 100},
{756, 24 }, {814, 97 },
{729, 7 }, {760, 25 },
{597, 0 }, {729, 6 },
{0, 0} {630, 0 },
{0, 0 }
}; };
const uint16_t crv2200[][2] = { const uint16_t crv2200[][2] = {
{823, 100}, {832, 100},
{740, 60}, {813, 95 },
{707, 21}, {740, 60 },
{680, 5}, {707, 21 },
{505, 0}, {682, 5 },
{0, 0} {630, 0 },
{0, 0 }
}; };
const BATTERY_Type_t type = gEeprom.BATTERY_TYPE; const BATTERY_Type_t type = gEeprom.BATTERY_TYPE;
@@ -84,18 +99,28 @@ void BATTERY_GetReadings(const bool bDisplayBatteryLevel)
const uint8_t PreviousBatteryLevel = gBatteryDisplayLevel; const uint8_t PreviousBatteryLevel = gBatteryDisplayLevel;
const uint16_t Voltage = (gBatteryVoltages[0] + gBatteryVoltages[1] + gBatteryVoltages[2] + gBatteryVoltages[3]) / 4; const uint16_t Voltage = (gBatteryVoltages[0] + gBatteryVoltages[1] + gBatteryVoltages[2] + gBatteryVoltages[3]) / 4;
gBatteryDisplayLevel = 0;
for(uint8_t i = 6; i > 0; i--){
if (Voltage > gBatteryCalibration[i-1]) {
gBatteryDisplayLevel = i;
break;
}
}
gBatteryVoltageAverage = (Voltage * 760) / gBatteryCalibration[3]; gBatteryVoltageAverage = (Voltage * 760) / gBatteryCalibration[3];
if ((gScreenToDisplay == DISPLAY_MENU) && GetCurrentMenuId() == MENU_VOL) if(gBatteryVoltageAverage > 890)
gBatteryDisplayLevel = 7; // battery overvoltage
else if(gBatteryVoltageAverage < 630)
gBatteryDisplayLevel = 0; // battery critical
else {
gBatteryDisplayLevel = 1;
const uint8_t levels[] = {5,17,41,65,88};
uint8_t perc = BATTERY_VoltsToPercent(gBatteryVoltageAverage);
for(uint8_t i = 6; i >= 1; i--){
if (perc > levels[i-2]) {
gBatteryDisplayLevel = i;
break;
}
}
}
if ((gScreenToDisplay == DISPLAY_MENU) && UI_MENU_GetCurrentMenuId() == MENU_VOL)
gUpdateDisplay = true; gUpdateDisplay = true;
if (gBatteryCurrent < 501) if (gBatteryCurrent < 501)
@@ -122,7 +147,9 @@ void BATTERY_GetReadings(const bool bDisplayBatteryLevel)
if (PreviousBatteryLevel != gBatteryDisplayLevel) if (PreviousBatteryLevel != gBatteryDisplayLevel)
{ {
if (gBatteryDisplayLevel < 2) if(gBatteryDisplayLevel > 2)
gLowBatteryConfirmed = false;
else if (gBatteryDisplayLevel < 2)
{ {
gLowBattery = true; gLowBattery = true;
} }
@@ -133,7 +160,64 @@ void BATTERY_GetReadings(const bool bDisplayBatteryLevel)
if (bDisplayBatteryLevel) if (bDisplayBatteryLevel)
UI_DisplayBattery(gBatteryDisplayLevel, gLowBatteryBlink); UI_DisplayBattery(gBatteryDisplayLevel, gLowBatteryBlink);
} }
if(!gLowBatteryConfirmed)
gUpdateDisplay = true;
gLowBatteryCountdown = 0; lowBatteryCountdown = 0;
} }
} }
void BATTERY_TimeSlice500ms(void)
{
if (gLowBattery)
{
gLowBatteryBlink = ++lowBatteryCountdown & 1;
UI_DisplayBattery(0, gLowBatteryBlink);
if (gCurrentFunction != FUNCTION_TRANSMIT)
{ // not transmitting
if (lowBatteryCountdown < lowBatteryPeriod)
{
if (lowBatteryCountdown == lowBatteryPeriod-1 && !gChargingWithTypeC && !gLowBatteryConfirmed)
AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP);
}
else
{
lowBatteryCountdown = 0;
if (!gChargingWithTypeC)
{ // not on charge
if(!gLowBatteryConfirmed) {
AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP);
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_LOW_VOLTAGE);
#endif
}
if (gBatteryDisplayLevel == 0)
{
#ifdef ENABLE_VOICE
AUDIO_PlaySingleVoice(true);
#endif
gReducedService = true;
//if (gCurrentFunction != FUNCTION_POWER_SAVE)
FUNCTION_Select(FUNCTION_POWER_SAVE);
ST7565_HardwareReset();
if (gEeprom.BACKLIGHT_TIME < (ARRAY_SIZE(gSubMenu_BACKLIGHT) - 1))
BACKLIGHT_TurnOff(); // turn the backlight off
}
#ifdef ENABLE_VOICE
else
AUDIO_PlaySingleVoice(false);
#endif
}
}
}
}
}

View File

@@ -27,8 +27,9 @@ extern uint16_t gBatteryVoltages[4];
extern uint16_t gBatteryVoltageAverage; extern uint16_t gBatteryVoltageAverage;
extern uint8_t gBatteryDisplayLevel; extern uint8_t gBatteryDisplayLevel;
extern bool gChargingWithTypeC; extern bool gChargingWithTypeC;
extern bool gLowBattery;
extern bool gLowBatteryBlink; extern bool gLowBatteryBlink;
extern bool gLowBattery;
extern bool gLowBatteryConfirmed;
extern uint16_t gBatteryCheckCounter; extern uint16_t gBatteryCheckCounter;
extern volatile uint16_t gPowerSave_10ms; extern volatile uint16_t gPowerSave_10ms;
@@ -41,6 +42,7 @@ typedef enum {
unsigned int BATTERY_VoltsToPercent(const unsigned int voltage_10mV); unsigned int BATTERY_VoltsToPercent(const unsigned int voltage_10mV);
void BATTERY_GetReadings(const bool bDisplayBatteryLevel); void BATTERY_GetReadings(const bool bDisplayBatteryLevel);
void BATTERY_TimeSlice500ms(void);
#endif #endif

8
misc.c
View File

@@ -82,7 +82,6 @@ bool gSetting_KILLED;
bool gSetting_200TX; bool gSetting_200TX;
bool gSetting_500TX; bool gSetting_500TX;
bool gSetting_350EN; bool gSetting_350EN;
bool gSetting_TX_EN;
uint8_t gSetting_F_LOCK; uint8_t gSetting_F_LOCK;
bool gSetting_ScrambleEnable; bool gSetting_ScrambleEnable;
@@ -154,7 +153,11 @@ uint8_t gVFO_RSSI_bar_level[2];
uint8_t gReducedService; uint8_t gReducedService;
uint8_t gBatteryVoltageIndex; uint8_t gBatteryVoltageIndex;
CssScanMode_t gCssScanMode; bool gCssBackgroundScan;
volatile bool gScheduleScanListen = true;
volatile uint16_t gScanPauseDelayIn_10ms;
bool gUpdateRSSI; bool gUpdateRSSI;
#if defined(ENABLE_ALARM) || defined(ENABLE_TX1750) #if defined(ENABLE_ALARM) || defined(ENABLE_TX1750)
AlarmState_t gAlarmState; AlarmState_t gAlarmState;
@@ -197,7 +200,6 @@ bool g_SquelchLost;
uint8_t gFlashLightState; uint8_t gFlashLightState;
volatile uint16_t gFlashLightBlinkCounter; volatile uint16_t gFlashLightBlinkCounter;
bool gFlagEndTransmission; bool gFlagEndTransmission;
uint16_t gLowBatteryCountdown;
uint8_t gNextMrChannel; uint8_t gNextMrChannel;
ReceptionMode_t gRxReceptionMode; ReceptionMode_t gRxReceptionMode;

27
misc.h
View File

@@ -75,14 +75,6 @@ enum ReceptionMode_t {
}; };
typedef enum ReceptionMode_t ReceptionMode_t; typedef enum ReceptionMode_t ReceptionMode_t;
enum CssScanMode_t
{
CSS_SCAN_MODE_OFF = 0,
CSS_SCAN_MODE_SCANNING,
CSS_SCAN_MODE_FOUND,
};
typedef enum CssScanMode_t CssScanMode_t;
enum BacklightOnRxTx_t { enum BacklightOnRxTx_t {
BACKLIGHT_ON_TR_OFF, BACKLIGHT_ON_TR_OFF,
BACKLIGHT_ON_TR_TX, BACKLIGHT_ON_TR_TX,
@@ -154,7 +146,6 @@ extern bool gSetting_KILLED;
extern bool gSetting_200TX; extern bool gSetting_200TX;
extern bool gSetting_500TX; extern bool gSetting_500TX;
extern bool gSetting_350EN; extern bool gSetting_350EN;
extern bool gSetting_TX_EN;
extern uint8_t gSetting_F_LOCK; extern uint8_t gSetting_F_LOCK;
extern bool gSetting_ScrambleEnable; extern bool gSetting_ScrambleEnable;
@@ -229,9 +220,20 @@ extern uint8_t gVFO_RSSI_bar_level[2];
extern uint8_t gReducedService; extern uint8_t gReducedService;
extern uint8_t gBatteryVoltageIndex; extern uint8_t gBatteryVoltageIndex;
// if not equal CSS_SCAN_MODE_OFF we are scanning CTCSS/DCS // we are searching CTCSS/DCS inside RX ctcss/dcs menu
// this is a scanning inside RX ctcss/dcs menu extern bool gCssBackgroundScan;
extern CssScanMode_t gCssScanMode;
enum
{
SCAN_REV = -1,
SCAN_OFF = 0,
SCAN_FWD = +1
};
extern volatile bool gScheduleScanListen;
extern volatile uint16_t gScanPauseDelayIn_10ms;
extern bool gUpdateRSSI; extern bool gUpdateRSSI;
extern AlarmState_t gAlarmState; extern AlarmState_t gAlarmState;
extern uint16_t gMenuCountdown; extern uint16_t gMenuCountdown;
@@ -274,7 +276,6 @@ extern bool g_SquelchLost;
extern uint8_t gFlashLightState; extern uint8_t gFlashLightState;
extern volatile uint16_t gFlashLightBlinkCounter; extern volatile uint16_t gFlashLightBlinkCounter;
extern bool gFlagEndTransmission; extern bool gFlagEndTransmission;
extern uint16_t gLowBatteryCountdown;
extern uint8_t gNextMrChannel; extern uint8_t gNextMrChannel;
extern ReceptionMode_t gRxReceptionMode; extern ReceptionMode_t gRxReceptionMode;

99
radio.c
View File

@@ -38,12 +38,21 @@
VFO_Info_t *gTxVfo; VFO_Info_t *gTxVfo;
VFO_Info_t *gRxVfo; VFO_Info_t *gRxVfo;
VFO_Info_t *gCurrentVfo; VFO_Info_t *gCurrentVfo;
DCS_CodeType_t gSelectedCodeType;
DCS_CodeType_t gCurrentCodeType; DCS_CodeType_t gCurrentCodeType;
uint8_t gSelectedCode;
STEP_Setting_t gStepSetting;
VfoState_t VfoState[2]; VfoState_t VfoState[2];
const char gModulationStr[][4] =
{
"FM",
"AM",
"USB",
#ifdef ENABLE_BYP_RAW_DEMODULATORS
"BYP",
"RAW"
#endif
};
bool RADIO_CheckValidChannel(uint16_t Channel, bool bCheckScanList, uint8_t VFO) bool RADIO_CheckValidChannel(uint16_t Channel, bool bCheckScanList, uint8_t VFO)
{ // return true if the channel appears valid { // return true if the channel appears valid
@@ -122,7 +131,7 @@ void RADIO_InitInfo(VFO_Info_t *pInfo, const uint8_t ChannelSave, const uint32_t
pInfo->SCANLIST1_PARTICIPATION = true; pInfo->SCANLIST1_PARTICIPATION = true;
pInfo->SCANLIST2_PARTICIPATION = true; pInfo->SCANLIST2_PARTICIPATION = true;
pInfo->STEP_SETTING = STEP_12_5kHz; pInfo->STEP_SETTING = STEP_12_5kHz;
pInfo->StepFrequency = StepFrequencyTable[pInfo->STEP_SETTING]; pInfo->StepFrequency = gStepFrequencyTable[pInfo->STEP_SETTING];
pInfo->CHANNEL_SAVE = ChannelSave; pInfo->CHANNEL_SAVE = ChannelSave;
pInfo->FrequencyReverse = false; pInfo->FrequencyReverse = false;
pInfo->OUTPUT_POWER = OUTPUT_POWER_LOW; pInfo->OUTPUT_POWER = OUTPUT_POWER_LOW;
@@ -133,7 +142,7 @@ void RADIO_InitInfo(VFO_Info_t *pInfo, const uint8_t ChannelSave, const uint32_t
pInfo->Compander = 0; // off pInfo->Compander = 0; // off
if (ChannelSave == (FREQ_CHANNEL_FIRST + BAND2_108MHz)) if (ChannelSave == (FREQ_CHANNEL_FIRST + BAND2_108MHz))
pInfo->AM_mode = 1; pInfo->Modulation = MODULATION_AM;
RADIO_ConfigureSquelchAndOutputPower(pInfo); RADIO_ConfigureSquelchAndOutputPower(pInfo);
} }
@@ -253,13 +262,13 @@ void RADIO_ConfigureChannel(const unsigned int VFO, const unsigned int configure
if (Tmp > TX_OFFSET_FREQUENCY_DIRECTION_SUB) if (Tmp > TX_OFFSET_FREQUENCY_DIRECTION_SUB)
Tmp = 0; Tmp = 0;
gEeprom.VfoInfo[VFO].TX_OFFSET_FREQUENCY_DIRECTION = Tmp; gEeprom.VfoInfo[VFO].TX_OFFSET_FREQUENCY_DIRECTION = Tmp;
gEeprom.VfoInfo[VFO].AM_mode = (Data[3] >> 4) & 1u; gEeprom.VfoInfo[VFO].Modulation = (Data[3] >> 4);
Tmp = Data[6]; Tmp = Data[6];
if (Tmp >= ARRAY_SIZE(StepFrequencyTable)) if (Tmp >= ARRAY_SIZE(gStepFrequencyTable))
Tmp = STEP_12_5kHz; Tmp = STEP_12_5kHz;
gEeprom.VfoInfo[VFO].STEP_SETTING = Tmp; gEeprom.VfoInfo[VFO].STEP_SETTING = Tmp;
gEeprom.VfoInfo[VFO].StepFrequency = StepFrequencyTable[Tmp]; gEeprom.VfoInfo[VFO].StepFrequency = gStepFrequencyTable[Tmp];
Tmp = Data[7]; Tmp = Data[7];
if (Tmp > (ARRAY_SIZE(gSubMenu_SCRAMBLER) - 1)) if (Tmp > (ARRAY_SIZE(gSubMenu_SCRAMBLER) - 1))
@@ -407,7 +416,7 @@ void RADIO_ConfigureChannel(const unsigned int VFO, const unsigned int configure
pConfig->Frequency = 43300000; pConfig->Frequency = 43300000;
} }
if (gEeprom.VfoInfo[VFO].AM_mode) if (gEeprom.VfoInfo[VFO].Modulation != MODULATION_FM)
{ // freq/chan is in AM mode { // freq/chan is in AM mode
gEeprom.VfoInfo[VFO].SCRAMBLING_TYPE = 0; gEeprom.VfoInfo[VFO].SCRAMBLING_TYPE = 0;
// gEeprom.VfoInfo[VFO].DTMF_DECODING_ENABLE = false; // no reason to disable DTMF decoding, aircraft use it on SSB // gEeprom.VfoInfo[VFO].DTMF_DECODING_ENABLE = false; // no reason to disable DTMF decoding, aircraft use it on SSB
@@ -605,7 +614,7 @@ void RADIO_SetupRegisters(bool switchToForeground)
case BK4819_FILTER_BW_WIDE: case BK4819_FILTER_BW_WIDE:
case BK4819_FILTER_BW_NARROW: case BK4819_FILTER_BW_NARROW:
#ifdef ENABLE_AM_FIX #ifdef ENABLE_AM_FIX
// BK4819_SetFilterBandwidth(Bandwidth, gRxVfo->AM_mode && gSetting_AM_fix); // BK4819_SetFilterBandwidth(Bandwidth, gRxVfo->Modulation == MODULATION_AM && gSetting_AM_fix);
BK4819_SetFilterBandwidth(Bandwidth, true); BK4819_SetFilterBandwidth(Bandwidth, true);
#else #else
BK4819_SetFilterBandwidth(Bandwidth, false); BK4819_SetFilterBandwidth(Bandwidth, false);
@@ -654,7 +663,13 @@ void RADIO_SetupRegisters(bool switchToForeground)
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28_RX_ENABLE, true); BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28_RX_ENABLE, true);
// AF RX Gain and DAC // AF RX Gain and DAC
BK4819_WriteRegister(BK4819_REG_48, 0xB3A8); // 1011 00 111010 1000 //BK4819_WriteRegister(BK4819_REG_48, 0xB3A8); // 1011 00 111010 1000
BK4819_WriteRegister(BK4819_REG_48,
(11u << 12) | // ??? .. 0 ~ 15, doesn't seem to make any difference
( 0u << 10) | // AF Rx Gain-1
(gEeprom.VOLUME_GAIN << 4) | // AF Rx Gain-2
(gEeprom.DAC_GAIN << 0)); // AF DAC Gain (after Gain-1 and Gain-2)
InterruptMask = BK4819_REG_3F_SQUELCH_FOUND | BK4819_REG_3F_SQUELCH_LOST; InterruptMask = BK4819_REG_3F_SQUELCH_FOUND | BK4819_REG_3F_SQUELCH_LOST;
@@ -662,15 +677,10 @@ void RADIO_SetupRegisters(bool switchToForeground)
if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE)) if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE))
#endif #endif
{ {
if (gRxVfo->AM_mode == 0) if (gRxVfo->Modulation == MODULATION_FM)
{ // FM { // FM
uint8_t CodeType = gSelectedCodeType; uint8_t CodeType = gRxVfo->pRX->CodeType;
uint8_t Code = gSelectedCode; uint8_t Code = gRxVfo->pRX->Code;
if (gCssScanMode == CSS_SCAN_MODE_OFF)
{
CodeType = gRxVfo->pRX->CodeType;
Code = gRxVfo->pRX->Code;
}
switch (CodeType) switch (CodeType)
{ {
@@ -738,15 +748,15 @@ void RADIO_SetupRegisters(bool switchToForeground)
#ifdef ENABLE_VOX #ifdef ENABLE_VOX
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
if (gEeprom.VOX_SWITCH && !gFmRadioMode && !IS_NOAA_CHANNEL(gCurrentVfo->CHANNEL_SAVE) && gCurrentVfo->AM_mode == 0) if (gEeprom.VOX_SWITCH && !gFmRadioMode && !IS_NOAA_CHANNEL(gCurrentVfo->CHANNEL_SAVE) && gCurrentVfo->Modulation == MODULATION_FM)
#else #else
if (gEeprom.VOX_SWITCH && !IS_NOAA_CHANNEL(gCurrentVfo->CHANNEL_SAVE) && gCurrentVfo->AM_mode == 0) if (gEeprom.VOX_SWITCH && !IS_NOAA_CHANNEL(gCurrentVfo->CHANNEL_SAVE) && gCurrentVfo->Modulation == MODULATION_FM)
#endif #endif
#else #else
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
if (gEeprom.VOX_SWITCH && !gFmRadioMode && gCurrentVfo->AM_mode == 0) if (gEeprom.VOX_SWITCH && !gFmRadioMode && gCurrentVfo->Modulation == MODULATION_FM)
#else #else
if (gEeprom.VOX_SWITCH && gCurrentVfo->AM_mode == 0) if (gEeprom.VOX_SWITCH && gCurrentVfo->Modulation == MODULATION_FM)
#endif #endif
#endif #endif
{ {
@@ -758,7 +768,7 @@ void RADIO_SetupRegisters(bool switchToForeground)
BK4819_DisableVox(); BK4819_DisableVox();
// RX expander // RX expander
BK4819_SetCompander((gRxVfo->AM_mode == 0 && gRxVfo->Compander >= 2) ? gRxVfo->Compander : 0); BK4819_SetCompander((gRxVfo->Modulation == MODULATION_FM && gRxVfo->Compander >= 2) ? gRxVfo->Compander : 0);
#if 0 #if 0
if (!gRxVfo->DTMF_DECODING_ENABLE && !gSetting_KILLED) if (!gRxVfo->DTMF_DECODING_ENABLE && !gSetting_KILLED)
@@ -855,7 +865,7 @@ void RADIO_SetTxParameters(void)
case BK4819_FILTER_BW_WIDE: case BK4819_FILTER_BW_WIDE:
case BK4819_FILTER_BW_NARROW: case BK4819_FILTER_BW_NARROW:
#ifdef ENABLE_AM_FIX #ifdef ENABLE_AM_FIX
// BK4819_SetFilterBandwidth(Bandwidth, gCurrentVfo->AM_mode && gSetting_AM_fix); // BK4819_SetFilterBandwidth(Bandwidth, gCurrentVfo->Modulation == MODULATION_AM && gSetting_AM_fix);
BK4819_SetFilterBandwidth(Bandwidth, true); BK4819_SetFilterBandwidth(Bandwidth, true);
#else #else
BK4819_SetFilterBandwidth(Bandwidth, false); BK4819_SetFilterBandwidth(Bandwidth, false);
@@ -866,7 +876,7 @@ void RADIO_SetTxParameters(void)
BK4819_SetFrequency(gCurrentVfo->pTX->Frequency); BK4819_SetFrequency(gCurrentVfo->pTX->Frequency);
// TX compressor // TX compressor
BK4819_SetCompander((gRxVfo->AM_mode == 0 && (gRxVfo->Compander == 1 || gRxVfo->Compander >= 3)) ? gRxVfo->Compander : 0); BK4819_SetCompander((gRxVfo->Modulation == MODULATION_FM && (gRxVfo->Compander == 1 || gRxVfo->Compander >= 3)) ? gRxVfo->Compander : 0);
BK4819_PrepareTransmit(); BK4819_PrepareTransmit();
@@ -900,6 +910,37 @@ void RADIO_SetTxParameters(void)
} }
} }
void RADIO_SetModulation(ModulationMode_t modulation)
{
BK4819_AF_Type_t mod;
switch(modulation) {
default:
case MODULATION_FM:
mod = BK4819_AF_FM;
break;
case MODULATION_AM:
mod = BK4819_AF_AM;
break;
case MODULATION_USB:
mod = BK4819_AF_BASEBAND2;
break;
#ifdef ENABLE_BYP_RAW_DEMODULATORS
case MODULATION_BYP:
mod = BK4819_AF_UNKNOWN3;
break;
case MODULATION_RAW:
mod = BK4819_AF_BASEBAND1;
break;
#endif
}
BK4819_SetAF(mod);
BK4819_SetRegValue(afDacGainRegSpec, 0xF);
BK4819_WriteRegister(BK4819_REG_3D, modulation == MODULATION_USB ? 0 : 0x2AAB);
BK4819_SetRegValue(afcDisableRegSpec, modulation != MODULATION_FM);
}
void RADIO_SetVfoState(VfoState_t State) void RADIO_SetVfoState(VfoState_t State)
{ {
if (State == VFO_STATE_NORMAL) if (State == VFO_STATE_NORMAL)
@@ -964,13 +1005,13 @@ void RADIO_PrepareTX(void)
#endif #endif
{ {
#ifndef ENABLE_TX_WHEN_AM #ifndef ENABLE_TX_WHEN_AM
if (gCurrentVfo->AM_mode) if (gCurrentVfo->Modulation != MODULATION_FM)
{ // not allowed to TX if in AM mode { // not allowed to TX if in AM mode
State = VFO_STATE_TX_DISABLE; State = VFO_STATE_TX_DISABLE;
} }
else else
#endif #endif
if (!gSetting_TX_EN || gSerialConfigCountDown_500ms > 0) if (gSerialConfigCountDown_500ms > 0)
{ // TX is disabled or config upload/download in progress { // TX is disabled or config upload/download in progress
State = VFO_STATE_TX_DISABLE; State = VFO_STATE_TX_DISABLE;
} }
@@ -983,7 +1024,7 @@ void RADIO_PrepareTX(void)
if (gBatteryDisplayLevel == 0) if (gBatteryDisplayLevel == 0)
State = VFO_STATE_BAT_LOW; // charge your battery ! State = VFO_STATE_BAT_LOW; // charge your battery !
else else
if (gBatteryDisplayLevel >= 6) if (gBatteryDisplayLevel > 6)
State = VFO_STATE_VOLTAGE_HIGH; // over voltage .. this is being a pain State = VFO_STATE_VOLTAGE_HIGH; // over voltage .. this is being a pain
} }
else else

24
radio.h
View File

@@ -61,6 +61,21 @@ enum VfoState_t
}; };
typedef enum VfoState_t VfoState_t; typedef enum VfoState_t VfoState_t;
typedef enum {
MODULATION_FM,
MODULATION_AM,
MODULATION_USB,
#ifdef ENABLE_BYP_RAW_DEMODULATORS
MODULATION_BYP,
MODULATION_RAW,
#endif
MODULATION_UKNOWN
} ModulationMode_t;
extern const char gModulationStr[MODULATION_UKNOWN][4];
typedef struct typedef struct
{ {
uint32_t Frequency; uint32_t Frequency;
@@ -115,7 +130,7 @@ typedef struct VFO_Info_t
uint8_t BUSY_CHANNEL_LOCK; uint8_t BUSY_CHANNEL_LOCK;
uint8_t AM_mode; ModulationMode_t Modulation;
uint8_t Compander; uint8_t Compander;
@@ -134,11 +149,7 @@ extern VFO_Info_t *gRxVfo;
// Equal to gTxVfo unless dual watch changes it on incomming transmition (this can only happen when XB off and DW on) // Equal to gTxVfo unless dual watch changes it on incomming transmition (this can only happen when XB off and DW on)
extern VFO_Info_t *gCurrentVfo; extern VFO_Info_t *gCurrentVfo;
extern DCS_CodeType_t gSelectedCodeType;
extern DCS_CodeType_t gCurrentCodeType; extern DCS_CodeType_t gCurrentCodeType;
extern uint8_t gSelectedCode;
extern STEP_Setting_t gStepSetting;
extern VfoState_t VfoState[2]; extern VfoState_t VfoState[2];
@@ -154,11 +165,12 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0);
void RADIO_ConfigureNOAA(void); void RADIO_ConfigureNOAA(void);
#endif #endif
void RADIO_SetTxParameters(void); void RADIO_SetTxParameters(void);
void RADIO_SetModulation(ModulationMode_t modulation);
void RADIO_SetVfoState(VfoState_t State); void RADIO_SetVfoState(VfoState_t State);
void RADIO_PrepareTX(void); void RADIO_PrepareTX(void);
void RADIO_EnableCxCSS(void); void RADIO_EnableCxCSS(void);
void RADIO_PrepareCssTX(void); void RADIO_PrepareCssTX(void);
void RADIO_SendEndOfTransmission(void); void RADIO_SendEndOfTransmission(void);
#endif #endif

View File

@@ -14,6 +14,7 @@
* limitations under the License. * limitations under the License.
*/ */
#include "app/chFrScanner.h"
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
#include "app/fm.h" #include "app/fm.h"
#endif #endif
@@ -77,18 +78,18 @@ void SystickHandler(void)
if (gCurrentFunction == FUNCTION_POWER_SAVE) if (gCurrentFunction == FUNCTION_POWER_SAVE)
DECREMENT_AND_TRIGGER(gPowerSave_10ms, gPowerSaveCountdownExpired); DECREMENT_AND_TRIGGER(gPowerSave_10ms, gPowerSaveCountdownExpired);
if (gScanStateDir == SCAN_OFF && gCssScanMode == CSS_SCAN_MODE_OFF && gEeprom.DUAL_WATCH != DUAL_WATCH_OFF) if (gScanStateDir == SCAN_OFF && !gCssBackgroundScan && gEeprom.DUAL_WATCH != DUAL_WATCH_OFF)
if (gCurrentFunction != FUNCTION_MONITOR && gCurrentFunction != FUNCTION_TRANSMIT && gCurrentFunction != FUNCTION_RECEIVE) if (gCurrentFunction != FUNCTION_MONITOR && gCurrentFunction != FUNCTION_TRANSMIT && gCurrentFunction != FUNCTION_RECEIVE)
DECREMENT_AND_TRIGGER(gDualWatchCountdown_10ms, gScheduleDualWatch); DECREMENT_AND_TRIGGER(gDualWatchCountdown_10ms, gScheduleDualWatch);
#ifdef ENABLE_NOAA #ifdef ENABLE_NOAA
if (gScanStateDir == SCAN_OFF && gCssScanMode == CSS_SCAN_MODE_OFF && gEeprom.DUAL_WATCH == DUAL_WATCH_OFF) if (gScanStateDir == SCAN_OFF && !gCssBackgroundScan && gEeprom.DUAL_WATCH == DUAL_WATCH_OFF)
if (gIsNoaaMode && gCurrentFunction != FUNCTION_MONITOR && gCurrentFunction != FUNCTION_TRANSMIT) if (gIsNoaaMode && gCurrentFunction != FUNCTION_MONITOR && gCurrentFunction != FUNCTION_TRANSMIT)
if (gCurrentFunction != FUNCTION_RECEIVE) if (gCurrentFunction != FUNCTION_RECEIVE)
DECREMENT_AND_TRIGGER(gNOAA_Countdown_10ms, gScheduleNOAA); DECREMENT_AND_TRIGGER(gNOAA_Countdown_10ms, gScheduleNOAA);
#endif #endif
if (gScanStateDir != SCAN_OFF || gCssScanMode == CSS_SCAN_MODE_SCANNING) if (gScanStateDir != SCAN_OFF)
if (gCurrentFunction != FUNCTION_MONITOR && gCurrentFunction != FUNCTION_TRANSMIT) if (gCurrentFunction != FUNCTION_MONITOR && gCurrentFunction != FUNCTION_TRANSMIT)
DECREMENT_AND_TRIGGER(gScanPauseDelayIn_10ms, gScheduleScanListen); DECREMENT_AND_TRIGGER(gScanPauseDelayIn_10ms, gScheduleScanListen);

View File

@@ -174,7 +174,7 @@ void SETTINGS_SaveSettings(void)
State[4] = gSetting_500TX; State[4] = gSetting_500TX;
State[5] = gSetting_350EN; State[5] = gSetting_350EN;
State[6] = gSetting_ScrambleEnable; State[6] = gSetting_ScrambleEnable;
if (!gSetting_TX_EN) State[7] &= ~(1u << 0); //if (!gSetting_TX_EN) State[7] &= ~(1u << 0);
if (!gSetting_live_DTMF_decoder) State[7] &= ~(1u << 1); if (!gSetting_live_DTMF_decoder) State[7] &= ~(1u << 1);
State[7] = (State[7] & ~(3u << 2)) | ((gSetting_battery_text & 3u) << 2); State[7] = (State[7] & ~(3u << 2)) | ((gSetting_battery_text & 3u) << 2);
#ifdef ENABLE_AUDIO_BAR #ifdef ENABLE_AUDIO_BAR
@@ -215,7 +215,7 @@ void SETTINGS_SaveChannel(uint8_t Channel, uint8_t VFO, const VFO_Info_t *pVFO,
State[0] = pVFO->freq_config_RX.Code; State[0] = pVFO->freq_config_RX.Code;
State[1] = pVFO->freq_config_TX.Code; State[1] = pVFO->freq_config_TX.Code;
State[2] = (pVFO->freq_config_TX.CodeType << 4) | pVFO->freq_config_RX.CodeType; State[2] = (pVFO->freq_config_TX.CodeType << 4) | pVFO->freq_config_RX.CodeType;
State[3] = ((pVFO->AM_mode & 1u) << 4) | pVFO->TX_OFFSET_FREQUENCY_DIRECTION; State[3] = (pVFO->Modulation << 4) | pVFO->TX_OFFSET_FREQUENCY_DIRECTION;
State[4] = 0 State[4] = 0
| (pVFO->BUSY_CHANNEL_LOCK << 4) | (pVFO->BUSY_CHANNEL_LOCK << 4)
| (pVFO->OUTPUT_POWER << 2) | (pVFO->OUTPUT_POWER << 2)

View File

@@ -23,6 +23,7 @@
#include "frequencies.h" #include "frequencies.h"
#include <helper/battery.h> #include <helper/battery.h>
#include "radio.h" #include "radio.h"
#include <driver/backlight.h>
enum POWER_OnDisplayMode_t { enum POWER_OnDisplayMode_t {
POWER_ON_DISPLAY_MODE_FULL_SCREEN = 0, POWER_ON_DISPLAY_MODE_FULL_SCREEN = 0,
@@ -33,12 +34,15 @@ enum POWER_OnDisplayMode_t {
typedef enum POWER_OnDisplayMode_t POWER_OnDisplayMode_t; typedef enum POWER_OnDisplayMode_t POWER_OnDisplayMode_t;
enum { enum {
F_LOCK_OFF = 0, F_LOCK_DEF, //all default frequencies + configurable
F_LOCK_FCC, F_LOCK_FCC,
F_LOCK_CE, F_LOCK_CE,
F_LOCK_GB, F_LOCK_GB,
F_LOCK_430, F_LOCK_430,
F_LOCK_438 F_LOCK_438,
F_LOCK_ALL, // disable TX on all frequencies
F_LOCK_NONE, // enable TX on all frequencies
F_LOCK_LEN
}; };
enum { enum {
@@ -84,6 +88,10 @@ enum {
ACTION_OPT_KEYLOCK, ACTION_OPT_KEYLOCK,
ACTION_OPT_A_B, ACTION_OPT_A_B,
ACTION_OPT_VFO_MR, ACTION_OPT_VFO_MR,
ACTION_OPT_SWITCH_DEMODUL,
#ifdef ENABLE_BLMIN_TMP_OFF
ACTION_OPT_BLMIN_TMP_OFF, //BackLight Minimum Temporay OFF
#endif
ACTION_OPT_LEN ACTION_OPT_LEN
}; };
@@ -230,6 +238,9 @@ typedef struct {
uint8_t KEY_M_LONG_PRESS_ACTION; uint8_t KEY_M_LONG_PRESS_ACTION;
uint8_t BACKLIGHT_MIN; uint8_t BACKLIGHT_MIN;
#ifdef ENABLE_BLMIN_TMP_OFF
BLMIN_STAT_t BACKLIGHT_MIN_STAT;
#endif
uint8_t BACKLIGHT_MAX; uint8_t BACKLIGHT_MAX;
BATTERY_Type_t BATTERY_TYPE; BATTERY_Type_t BATTERY_TYPE;
} EEPROM_Config_t; } EEPROM_Config_t;

View File

@@ -30,10 +30,10 @@ void UI_DrawBattery(uint8_t* bitmap, uint8_t level, uint8_t blink)
else else
{ {
memmove(bitmap, BITMAP_BatteryLevel1, sizeof(BITMAP_BatteryLevel1)); memmove(bitmap, BITMAP_BatteryLevel1, sizeof(BITMAP_BatteryLevel1));
if (level > 1) if (level > 2)
{ {
unsigned int i; unsigned int i;
uint8_t bars = level - 1; uint8_t bars = level - 2;
if (bars > 4) if (bars > 4)
bars = 4; bars = 4;
for (i = 0; i < bars; i++) for (i = 0; i < bars; i++)

View File

@@ -21,6 +21,7 @@
#include "font.h" #include "font.h"
#include "ui/helper.h" #include "ui/helper.h"
#include "ui/inputbox.h" #include "ui/inputbox.h"
#include "misc.h"
#ifndef ARRAY_SIZE #ifndef ARRAY_SIZE
#define ARRAY_SIZE(arr) (sizeof(arr)/sizeof((arr)[0])) #define ARRAY_SIZE(arr) (sizeof(arr)/sizeof((arr)[0]))
@@ -178,3 +179,70 @@ void UI_DisplayFrequency(const char *string, uint8_t X, uint8_t Y, bool center)
pFb1 += char_width; pFb1 += char_width;
} }
} }
void UI_DrawPixel(uint8_t x, uint8_t y, bool black)
{
gFrameBuffer[y/8][x] &= ~(1 << (y%8));
gFrameBuffer[y/8][x] |= black << (y%8);
}
static void sort(int16_t *a, int16_t *b)
{
if(*a > *b) {
int16_t t = *a;
*a = *b;
*b = t;
}
}
void UI_DrawLine(int16_t x1, int16_t y1, int16_t x2, int16_t y2, bool black)
{
if(x2==x1) {
sort(&y1, &y2);
for(int16_t i = y1; i <= y2; i++) {
UI_DrawPixel(x1, i, black);
}
} else {
const int multipl = 1000;
int a = (y2-y1)*multipl / (x2-x1);
int b = y1 - a * x1 / multipl;
sort(&x1, &x2);
for(int i = x1; i<= x2; i++)
{
UI_DrawPixel(i, i*a/multipl +b, black);
}
}
}
void UI_DrawRectangle(int16_t x1, int16_t y1, int16_t x2, int16_t y2, bool black)
{
UI_DrawLine(x1,y1, x1,y2, black);
UI_DrawLine(x1,y1, x2,y1, black);
UI_DrawLine(x2,y1, x2,y2, black);
UI_DrawLine(x1,y2, x2,y2, black);
}
void UI_DisplayPopup(const char *string)
{
for(uint8_t i = 0; i < 7; i++) {
memset(gFrameBuffer[i], 0x00, 128);
}
// for(uint8_t i = 1; i < 5; i++) {
// memset(gFrameBuffer[i]+8, 0x00, 111);
// }
// for(uint8_t x = 10; x < 118; x++) {
// UI_DrawPixel(x, 10, true);
// UI_DrawPixel(x, 46-9, true);
// }
// for(uint8_t y = 11; y < 37; y++) {
// UI_DrawPixel(10, y, true);
// UI_DrawPixel(117, y, true);
// }
// DrawRectangle(9,9, 118,38, true);
UI_PrintString(string, 9, 118, 2, 8);
UI_PrintStringSmall("Press EXIT", 9, 118, 6);
}

View File

@@ -29,6 +29,11 @@ void UI_PrintStringSmall(const char *pString, uint8_t Start, uint8_t End, uint8_
#endif #endif
void UI_PrintStringSmallBuffer(const char *pString, uint8_t *buffer); void UI_PrintStringSmallBuffer(const char *pString, uint8_t *buffer);
void UI_DisplayFrequency(const char *string, uint8_t X, uint8_t Y, bool center); void UI_DisplayFrequency(const char *string, uint8_t X, uint8_t Y, bool center);
#endif #endif
void UI_DisplayPopup(const char *string);
void UI_DrawPixel(uint8_t x, uint8_t y, bool black);
void UI_DrawLine(int16_t x1, int16_t y1, int16_t x2, int16_t y2, bool black);
void UI_DrawRectangle(int16_t x1, int16_t y1, int16_t x2, int16_t y2, bool black);

View File

@@ -52,6 +52,31 @@ static void DrawSmallAntennaAndBars(uint8_t *p, unsigned int level)
memset(p + 2 + i*3, bar, 2); memset(p + 2 + i*3, bar, 2);
} }
} }
#if defined ENABLE_AUDIO_BAR || defined ENABLE_RSSI_BAR
static void DrawLevelBar(uint8_t xpos, uint8_t line, uint8_t level)
{
const char hollowBar[] = {
0b01111111,
0b01000001,
0b01000001,
0b01111111
};
uint8_t *p_line = gFrameBuffer[line];
level = MIN(level, 13);
for(uint8_t i = 0; i < level; i++) {
if(i < 9) {
for(uint8_t j = 0; j < 4; j++)
p_line[xpos + i * 5 + j] = (~(0x7F >> (i+1))) & 0x7F;
}
else {
memcpy(p_line + (xpos + i * 5), &hollowBar, ARRAY_SIZE(hollowBar));
}
}
}
#endif
#ifdef ENABLE_AUDIO_BAR #ifdef ENABLE_AUDIO_BAR
@@ -76,10 +101,10 @@ void UI_DisplayAudioBar(void)
{ {
if (gSetting_mic_bar) if (gSetting_mic_bar)
{ {
if(gLowBattery && !gLowBatteryConfirmed)
return;
const unsigned int line = 3; const unsigned int line = 3;
const unsigned int bar_x = 2;
const unsigned int bar_width = LCD_WIDTH - 2 - bar_x;
unsigned int i;
if (gCurrentFunction != FUNCTION_TRANSMIT || if (gCurrentFunction != FUNCTION_TRANSMIT ||
gScreenToDisplay != DISPLAY_MAIN || gScreenToDisplay != DISPLAY_MAIN ||
@@ -95,16 +120,14 @@ void UI_DisplayAudioBar(void)
const unsigned int voice_amp = BK4819_GetVoiceAmplitudeOut(); // 15:0 const unsigned int voice_amp = BK4819_GetVoiceAmplitudeOut(); // 15:0
// make non-linear to make more sensitive at low values // make non-linear to make more sensitive at low values
const unsigned int level = voice_amp * 8; const unsigned int level = MIN(voice_amp * 8, 65535u);
const unsigned int sqrt_level = sqrt16((level < 65535) ? level : 65535); const unsigned int sqrt_level = MIN(sqrt16(level), 124u);
const unsigned int len = (sqrt_level <= bar_width) ? sqrt_level : bar_width; uint8_t bars = 13 * sqrt_level / 124;
uint8_t *p_line = gFrameBuffer[line]; uint8_t *p_line = gFrameBuffer[line];
memset(p_line, 0, LCD_WIDTH); memset(p_line, 0, LCD_WIDTH);
for (i = 0; i < bar_width; i++) DrawLevelBar(62, line, bars);
p_line[bar_x + i] = (i > len) ? ((i & 1) == 0) ? 0x41 : 0x00 : ((i & 1) == 0) ? 0x7f : 0x3e;
if (gCurrentFunction == FUNCTION_TRANSMIT) if (gCurrentFunction == FUNCTION_TRANSMIT)
ST7565_BlitFullScreen(); ST7565_BlitFullScreen();
@@ -112,6 +135,7 @@ void UI_DisplayAudioBar(void)
} }
#endif #endif
static void DisplayRSSIBar(const int16_t rssi, const bool now) static void DisplayRSSIBar(const int16_t rssi, const bool now)
{ {
#if defined(ENABLE_RSSI_BAR) #if defined(ENABLE_RSSI_BAR)
@@ -134,13 +158,6 @@ static void DisplayRSSIBar(const int16_t rssi, const bool now)
0b00011000, 0b00011000,
}; };
const char hollowBar[] = {
0b01111111,
0b01000001,
0b01000001,
0b01111111
};
if (gEeprom.KEY_LOCK && gKeypadLocked > 0) if (gEeprom.KEY_LOCK && gKeypadLocked > 0)
return; // display is in use return; // display is in use
@@ -156,7 +173,7 @@ static void DisplayRSSIBar(const int16_t rssi, const bool now)
const int16_t rssi_dBm = (rssi / 2) - 160; const int16_t rssi_dBm = (rssi / 2) - 160;
const uint8_t s_level = MIN(MAX((rssi_dBm - s0_dBm) / 6, 0), 9); // S0 - S9 const uint8_t s_level = MIN(MAX((rssi_dBm - s0_dBm) / 6, 0), 9); // S0 - S9
uint8_t overS9dBm = MIN(MAX(73 + rssi_dBm, 0), 99); uint8_t overS9dBm = MIN(MAX(rssi_dBm - (s0_dBm + 9*6), 0), 99);
uint8_t overS9Bars = MIN(overS9dBm/10, 4); uint8_t overS9Bars = MIN(overS9dBm/10, 4);
if(overS9Bars == 0) { if(overS9Bars == 0) {
@@ -169,13 +186,7 @@ static void DisplayRSSIBar(const int16_t rssi, const bool now)
UI_PrintStringSmall(str, 2, 0, line); UI_PrintStringSmall(str, 2, 0, line);
for(uint8_t i = 0; i < s_level; i++) { // S bars DrawLevelBar(bar_x, line, s_level + overS9Bars);
for(uint8_t j = 0; j < 4; j++)
p_line[bar_x + i * 5 + j] = (~(0x7F >> (i+1))) & 0x7F;
}
for(uint8_t i = 0; i < overS9Bars; i++) { // +10 hollow bars
memcpy(p_line + (bar_x + (i + 9) * 5), &hollowBar, ARRAY_SIZE(hollowBar));
}
} }
#else #else
@@ -234,6 +245,12 @@ void UI_DisplayMain(void)
// clear the screen // clear the screen
memset(gFrameBuffer, 0, sizeof(gFrameBuffer)); memset(gFrameBuffer, 0, sizeof(gFrameBuffer));
if(gLowBattery && !gLowBatteryConfirmed) {
UI_DisplayPopup("LOW BATTERY");
ST7565_BlitFullScreen();
return;
}
if (gEeprom.KEY_LOCK && gKeypadLocked > 0) if (gEeprom.KEY_LOCK && gKeypadLocked > 0)
{ // tell user how to unlock the keyboard { // tell user how to unlock the keyboard
UI_PrintString("Long press #", 0, LCD_WIDTH, 1, 8); UI_PrintString("Long press #", 0, LCD_WIDTH, 1, 8);
@@ -556,19 +573,24 @@ void UI_DisplayMain(void)
// ************ // ************
String[0] = '\0'; String[0] = '\0';
if (gEeprom.VfoInfo[vfo_num].AM_mode)
{ // show the AM symbol // show the modulation symbol
strcpy(String, "AM"); const char * s = "";
} const ModulationMode_t mod = gEeprom.VfoInfo[vfo_num].Modulation;
else switch (mod){
{ // or show the CTCSS/DCS symbol case MODULATION_FM: {
const FREQ_Config_t *pConfig = (mode == 1) ? gEeprom.VfoInfo[vfo_num].pTX : gEeprom.VfoInfo[vfo_num].pRX; const FREQ_Config_t *pConfig = (mode == 1) ? gEeprom.VfoInfo[vfo_num].pTX : gEeprom.VfoInfo[vfo_num].pRX;
const unsigned int code_type = pConfig->CodeType; const unsigned int code_type = pConfig->CodeType;
const char *code_list[] = {"", "CT", "DCS", "DCR"}; const char *code_list[] = {"", "CT", "DCS", "DCR"};
if (code_type < ARRAY_SIZE(code_list)) if (code_type < ARRAY_SIZE(code_list))
strcpy(String, code_list[code_type]); s = code_list[code_type];
} break;
UI_PrintStringSmall(String, LCD_WIDTH + 24, 0, line + 1); }
default:
s = gModulationStr[mod];
break;
}
UI_PrintStringSmall(s, LCD_WIDTH + 24, 0, line + 1);
if (state == VFO_STATE_NORMAL || state == VFO_STATE_ALARM) if (state == VFO_STATE_NORMAL || state == VFO_STATE_ALARM)
{ // show the TX power { // show the TX power
@@ -627,7 +649,7 @@ void UI_DisplayMain(void)
#endif #endif
#if defined(ENABLE_AM_FIX) && defined(ENABLE_AM_FIX_SHOW_DATA) #if defined(ENABLE_AM_FIX) && defined(ENABLE_AM_FIX_SHOW_DATA)
if (rx && gEeprom.VfoInfo[gEeprom.RX_VFO].AM_mode && gSetting_AM_fix) if (rx && gEeprom.VfoInfo[gEeprom.RX_VFO].Modulation == MODULATION_AM && gSetting_AM_fix)
{ {
if (gScreenToDisplay != DISPLAY_MAIN || if (gScreenToDisplay != DISPLAY_MAIN ||
gDTMF_CallState != DTMF_CALL_STATE_NONE) gDTMF_CallState != DTMF_CALL_STATE_NONE)

180
ui/menu.c
View File

@@ -129,7 +129,6 @@ const t_menu_item MenuList[] =
{"Tx 500", VOICE_ID_INVALID, MENU_500TX }, // was "500TX" {"Tx 500", VOICE_ID_INVALID, MENU_500TX }, // was "500TX"
{"350 En", VOICE_ID_INVALID, MENU_350EN }, // was "350EN" {"350 En", VOICE_ID_INVALID, MENU_350EN }, // was "350EN"
{"ScraEn", VOICE_ID_INVALID, MENU_SCREN }, // was "SCREN" {"ScraEn", VOICE_ID_INVALID, MENU_SCREN }, // was "SCREN"
{"TxEnab", VOICE_ID_INVALID, MENU_TX_EN }, // enable TX
#ifdef ENABLE_F_CAL_MENU #ifdef ENABLE_F_CAL_MENU
{"FrCali", VOICE_ID_INVALID, MENU_F_CALI }, // reference xtal calibration {"FrCali", VOICE_ID_INVALID, MENU_F_CALI }, // reference xtal calibration
#endif #endif
@@ -142,33 +141,33 @@ const t_menu_item MenuList[] =
const uint8_t FIRST_HIDDEN_MENU_ITEM = MENU_F_LOCK; const uint8_t FIRST_HIDDEN_MENU_ITEM = MENU_F_LOCK;
const char gSubMenu_TXP[3][5] = const char gSubMenu_TXP[][5] =
{ {
"LOW", "LOW",
"MID", "MID",
"HIGH" "HIGH"
}; };
const char gSubMenu_SFT_D[3][4] = const char gSubMenu_SFT_D[][4] =
{ {
"OFF", "OFF",
"+", "+",
"-" "-"
}; };
const char gSubMenu_W_N[2][7] = const char gSubMenu_W_N[][7] =
{ {
"WIDE", "WIDE",
"NARROW" "NARROW"
}; };
const char gSubMenu_OFF_ON[2][4] = const char gSubMenu_OFF_ON[][4] =
{ {
"OFF", "OFF",
"ON" "ON"
}; };
const char gSubMenu_SAVE[5][4] = const char gSubMenu_SAVE[][4] =
{ {
"OFF", "OFF",
"1:1", "1:1",
@@ -177,7 +176,7 @@ const char gSubMenu_SAVE[5][4] =
"1:4" "1:4"
}; };
const char gSubMenu_TOT[11][7] = const char gSubMenu_TOT[][7] =
{ {
"30 sec", "30 sec",
"1 min", "1 min",
@@ -192,7 +191,7 @@ const char gSubMenu_TOT[11][7] =
"15 min" "15 min"
}; };
const char* gSubMenu_RXMode[4] = const char* gSubMenu_RXMode[] =
{ {
"MAIN\nONLY", // TX and RX on main only "MAIN\nONLY", // TX and RX on main only
"DUAL RX\nRESPOND", // Watch both and respond "DUAL RX\nRESPOND", // Watch both and respond
@@ -201,7 +200,7 @@ const char* gSubMenu_RXMode[4] =
}; };
#ifdef ENABLE_VOICE #ifdef ENABLE_VOICE
const char gSubMenu_VOICE[3][4] = const char gSubMenu_VOICE[][4] =
{ {
"OFF", "OFF",
"CHI", "CHI",
@@ -209,14 +208,14 @@ const char* gSubMenu_RXMode[4] =
}; };
#endif #endif
const char gSubMenu_SC_REV[3][8] = const char gSubMenu_SC_REV[][8] =
{ {
"TIMEOUT", "TIMEOUT",
"CARRIER", "CARRIER",
"STOP" "STOP"
}; };
const char* gSubMenu_MDF[4] = const char* gSubMenu_MDF[] =
{ {
"FREQ", "FREQ",
"CHANNEL\nNUMBER", "CHANNEL\nNUMBER",
@@ -225,14 +224,14 @@ const char* gSubMenu_MDF[4] =
}; };
#ifdef ENABLE_ALARM #ifdef ENABLE_ALARM
const char gSubMenu_AL_MOD[2][5] = const char gSubMenu_AL_MOD[][5] =
{ {
"SITE", "SITE",
"TONE" "TONE"
}; };
#endif #endif
const char gSubMenu_D_RSP[4][11] = const char gSubMenu_D_RSP[][11] =
{ {
"DO\nNOTHING", "DO\nNOTHING",
"RING", "RING",
@@ -240,16 +239,16 @@ const char gSubMenu_D_RSP[4][11] =
"BOTH" "BOTH"
}; };
const char* gSubMenu_PTT_ID[5] = const char* gSubMenu_PTT_ID[] =
{ {
"OFF", "OFF",
"KEY\nUP", "UP CODE",
"KEY\nDOWN", "DOWN CODE",
"KEY\nUP+DOWN", "UP+DOWN\nCODE",
"APOLLO\nQUINDAR" "APOLLO\nQUINDAR"
}; };
const char gSubMenu_PONMSG[4][8] = const char gSubMenu_PONMSG[][8] =
{ {
"FULL", "FULL",
"MESSAGE", "MESSAGE",
@@ -257,30 +256,32 @@ const char gSubMenu_PONMSG[4][8] =
"NONE" "NONE"
}; };
const char* gSubMenu_ROGER[3] = const char gSubMenu_ROGER[][6] =
{ {
"OFF", "OFF",
"ROGER", "ROGER",
"MDC\n1200" "MDC"
}; };
const char gSubMenu_RESET[2][4] = const char gSubMenu_RESET[][4] =
{ {
"VFO", "VFO",
"ALL" "ALL"
}; };
const char gSubMenu_F_LOCK[6][4] = const char * gSubMenu_F_LOCK[] =
{ {
"OFF", "DEFAULT+\n137-174\n400-470",
"FCC", "FCC HAM\n144-148\n420-450",
"CE", "CE HAM\n144-146\n430-440",
"GB", "GB HAM\n144-148\n430-440",
"430", "137-174\n400-430",
"438" "137-174\n400-438",
"DISABLE\nALL",
"UNLOCK\nALL",
}; };
const char gSubMenu_BACKLIGHT[8][7] = const char gSubMenu_BACKLIGHT[][7] =
{ {
"OFF", "OFF",
"5 sec", "5 sec",
@@ -292,7 +293,7 @@ const char gSubMenu_BACKLIGHT[8][7] =
"ON" "ON"
}; };
const char gSubMenu_RX_TX[4][6] = const char gSubMenu_RX_TX[][6] =
{ {
"OFF", "OFF",
"TX", "TX",
@@ -301,7 +302,7 @@ const char gSubMenu_RX_TX[4][6] =
}; };
#ifdef ENABLE_AM_FIX_TEST1 #ifdef ENABLE_AM_FIX_TEST1
const char gSubMenu_AM_fix_test1[4][8] = const char gSubMenu_AM_fix_test1[][8] =
{ {
"LNA-S 0", "LNA-S 0",
"LNA-S 1", "LNA-S 1",
@@ -310,20 +311,20 @@ const char gSubMenu_RX_TX[4][6] =
}; };
#endif #endif
const char gSubMenu_BAT_TXT[3][8] = const char gSubMenu_BAT_TXT[][8] =
{ {
"NONE", "NONE",
"VOLTAGE", "VOLTAGE",
"PERCENT" "PERCENT"
}; };
const char gSubMenu_BATTYP[2][9] = const char gSubMenu_BATTYP[][9] =
{ {
"1600mAh", "1600mAh",
"2200mAh" "2200mAh"
}; };
const char gSubMenu_SCRAMBLER[11][7] = const char gSubMenu_SCRAMBLER[][7] =
{ {
"OFF", "OFF",
"2600Hz", "2600Hz",
@@ -338,7 +339,6 @@ const char gSubMenu_SCRAMBLER[11][7] =
"3500Hz" "3500Hz"
}; };
const t_sidefunction SIDEFUNCTIONS[] = const t_sidefunction SIDEFUNCTIONS[] =
{ {
{"NONE", ACTION_OPT_NONE}, {"NONE", ACTION_OPT_NONE},
@@ -360,20 +360,32 @@ const t_sidefunction SIDEFUNCTIONS[] =
#endif #endif
{"LOCK\nKEYPAD", ACTION_OPT_KEYLOCK}, {"LOCK\nKEYPAD", ACTION_OPT_KEYLOCK},
{"SWITCH\nVFO", ACTION_OPT_A_B}, {"SWITCH\nVFO", ACTION_OPT_A_B},
{"VFO/MR", ACTION_OPT_VFO_MR}, {"VFO/MR", ACTION_OPT_VFO_MR},
{"SWITCH\nDEMODUL", ACTION_OPT_SWITCH_DEMODUL},
#ifdef ENABLE_BLMIN_TMP_OFF
{"BLMIN\nTMP OFF", ACTION_OPT_BLMIN_TMP_OFF}, //BackLight Minimum Temporay OFF
#endif
}; };
const t_sidefunction* gSubMenu_SIDEFUNCTIONS = SIDEFUNCTIONS; const t_sidefunction* gSubMenu_SIDEFUNCTIONS = SIDEFUNCTIONS;
const uint8_t gSubMenu_SIDEFUNCTIONS_size = ARRAY_SIZE(SIDEFUNCTIONS); const uint8_t gSubMenu_SIDEFUNCTIONS_size = ARRAY_SIZE(SIDEFUNCTIONS);
bool gIsInSubMenu; bool gIsInSubMenu;
uint8_t gMenuCursor; uint8_t gMenuCursor;
int GetCurrentMenuId() { int UI_MENU_GetCurrentMenuId() {
if(gMenuCursor < ARRAY_SIZE(MenuList)) if(gMenuCursor < ARRAY_SIZE(MenuList))
return MenuList[gMenuCursor].menu_id; return MenuList[gMenuCursor].menu_id;
else else
return MenuList[ARRAY_SIZE(MenuList)-1].menu_id; return MenuList[ARRAY_SIZE(MenuList)-1].menu_id;
} }
int8_t gMenuScrollDirection;
uint8_t UI_MENU_GetMenuIdx(uint8_t id)
{
for(uint8_t i = 0; i < ARRAY_SIZE(MenuList); i++)
if(MenuList[i].menu_id == id)
return i;
return 0;
}
int32_t gSubMenuSelection; int32_t gSubMenuSelection;
// edit box // edit box
@@ -476,7 +488,7 @@ void UI_DisplayMenu(void)
bool already_printed = false; bool already_printed = false;
switch (GetCurrentMenuId()) switch (UI_MENU_GetCurrentMenuId())
{ {
case MENU_SQL: case MENU_SQL:
sprintf(String, "%d", gSubMenuSelection); sprintf(String, "%d", gSubMenuSelection);
@@ -495,9 +507,11 @@ void UI_DisplayMenu(void)
break; break;
#endif #endif
case MENU_STEP: case MENU_STEP: {
sprintf(String, "%d.%02ukHz", StepFrequencyTable[gSubMenuSelection] / 100, abs(StepFrequencyTable[gSubMenuSelection]) % 100); uint16_t step = gStepFrequencyTable[FREQUENCY_GetStepIdxFromSortedIdx(gSubMenuSelection)];
sprintf(String, "%d.%02ukHz", step / 100, step % 100);
break; break;
}
case MENU_TXP: case MENU_TXP:
strcpy(String, gSubMenu_TXP[gSubMenuSelection]); strcpy(String, gSubMenu_TXP[gSubMenuSelection]);
@@ -507,8 +521,7 @@ void UI_DisplayMenu(void)
case MENU_T_DCS: case MENU_T_DCS:
if (gSubMenuSelection == 0) if (gSubMenuSelection == 0)
strcpy(String, "OFF"); strcpy(String, "OFF");
else else if (gSubMenuSelection < 105)
if (gSubMenuSelection < 105)
sprintf(String, "D%03oN", DCS_Options[gSubMenuSelection - 1]); sprintf(String, "D%03oN", DCS_Options[gSubMenuSelection - 1]);
else else
sprintf(String, "D%03oI", DCS_Options[gSubMenuSelection - 105]); sprintf(String, "D%03oI", DCS_Options[gSubMenuSelection - 105]);
@@ -517,38 +530,10 @@ void UI_DisplayMenu(void)
case MENU_R_CTCS: case MENU_R_CTCS:
case MENU_T_CTCS: case MENU_T_CTCS:
{ {
#if 1 if (gSubMenuSelection == 0)
unsigned int Code; strcpy(String, "OFF");
FREQ_Config_t *pConfig = (GetCurrentMenuId() == MENU_R_CTCS) ? &gTxVfo->freq_config_RX : &gTxVfo->freq_config_TX; else
if (gSubMenuSelection == 0) sprintf(String, "%u.%uHz", CTCSS_Options[gSubMenuSelection - 1] / 10, CTCSS_Options[gSubMenuSelection - 1] % 10);
{
strcpy(String, "OFF");
if (pConfig->CodeType != CODE_TYPE_CONTINUOUS_TONE)
break;
Code = 0;
pConfig->CodeType = CODE_TYPE_OFF;
pConfig->Code = Code;
BK4819_ExitSubAu();
}
else
{
sprintf(String, "%u.%uHz", CTCSS_Options[gSubMenuSelection - 1] / 10, CTCSS_Options[gSubMenuSelection - 1] % 10);
pConfig->CodeType = CODE_TYPE_CONTINUOUS_TONE;
Code = gSubMenuSelection - 1;
pConfig->Code = Code;
BK4819_SetCTCSSFrequency(CTCSS_Options[Code]);
}
#else
if (gSubMenuSelection == 0)
strcpy(String, "OFF");
else
sprintf(String, "%u.%uHz", CTCSS_Options[gSubMenuSelection - 1] / 10, CTCSS_Options[gSubMenuSelection - 1] % 10);
#endif
break; break;
} }
@@ -612,7 +597,7 @@ void UI_DisplayMenu(void)
break; break;
case MENU_AM: case MENU_AM:
strcpy(String, (gSubMenuSelection == 0) ? "FM" : "AM"); strcpy(String, gModulationStr[gSubMenuSelection]);
break; break;
#ifdef ENABLE_AM_FIX_TEST1 #ifdef ENABLE_AM_FIX_TEST1
@@ -650,7 +635,6 @@ void UI_DisplayMenu(void)
case MENU_500TX: case MENU_500TX:
case MENU_350EN: case MENU_350EN:
case MENU_SCREN: case MENU_SCREN:
case MENU_TX_EN:
strcpy(String, gSubMenu_OFF_ON[gSubMenuSelection]); strcpy(String, gSubMenu_OFF_ON[gSubMenuSelection]);
break; break;
@@ -818,7 +802,10 @@ void UI_DisplayMenu(void)
break; break;
case MENU_F_LOCK: case MENU_F_LOCK:
strcpy(String, gSubMenu_F_LOCK[gSubMenuSelection]); if(!gIsInSubMenu && gUnlockAllTxConfCnt>0 && gUnlockAllTxConfCnt<10)
strcpy(String, "READ\nMANUAL");
else
strcpy(String, gSubMenu_F_LOCK[gSubMenuSelection]);
break; break;
#ifdef ENABLE_F_CAL_MENU #ifdef ENABLE_F_CAL_MENU
@@ -911,9 +898,9 @@ void UI_DisplayMenu(void)
} }
} }
if (GetCurrentMenuId() == MENU_SLIST1 || GetCurrentMenuId() == MENU_SLIST2) if (UI_MENU_GetCurrentMenuId() == MENU_SLIST1 || UI_MENU_GetCurrentMenuId() == MENU_SLIST2)
{ {
i = (GetCurrentMenuId() == MENU_SLIST1) ? 0 : 1; i = (UI_MENU_GetCurrentMenuId() == MENU_SLIST1) ? 0 : 1;
// if (gSubMenuSelection == 0xFF) // if (gSubMenuSelection == 0xFF)
if (gSubMenuSelection < 0) if (gSubMenuSelection < 0)
@@ -958,9 +945,9 @@ void UI_DisplayMenu(void)
} }
} }
if (GetCurrentMenuId() == MENU_MEM_CH || if (UI_MENU_GetCurrentMenuId() == MENU_MEM_CH ||
GetCurrentMenuId() == MENU_DEL_CH || UI_MENU_GetCurrentMenuId() == MENU_DEL_CH ||
GetCurrentMenuId() == MENU_1_CALL) UI_MENU_GetCurrentMenuId() == MENU_1_CALL)
{ // display the channel name { // display the channel name
char s[11]; char s[11];
BOARD_fetchChannelName(s, gSubMenuSelection); BOARD_fetchChannelName(s, gSubMenuSelection);
@@ -969,18 +956,19 @@ void UI_DisplayMenu(void)
UI_PrintString(s, menu_item_x1, menu_item_x2, 2, 8); UI_PrintString(s, menu_item_x1, menu_item_x2, 2, 8);
} }
if ((GetCurrentMenuId() == MENU_R_CTCS || GetCurrentMenuId() == MENU_R_DCS) && gCssScanMode != CSS_SCAN_MODE_OFF) if ((UI_MENU_GetCurrentMenuId() == MENU_R_CTCS || UI_MENU_GetCurrentMenuId() == MENU_R_DCS) && gCssBackgroundScan)
UI_PrintString("SCAN", menu_item_x1, menu_item_x2, 4, 8); UI_PrintString("SCAN", menu_item_x1, menu_item_x2, 4, 8);
if (GetCurrentMenuId() == MENU_UPCODE) if (UI_MENU_GetCurrentMenuId() == MENU_UPCODE)
if (strlen(gEeprom.DTMF_UP_CODE) > 8) if (strlen(gEeprom.DTMF_UP_CODE) > 8)
UI_PrintString(gEeprom.DTMF_UP_CODE + 8, menu_item_x1, menu_item_x2, 4, 8); UI_PrintString(gEeprom.DTMF_UP_CODE + 8, menu_item_x1, menu_item_x2, 4, 8);
if (GetCurrentMenuId() == MENU_DWCODE) if (UI_MENU_GetCurrentMenuId() == MENU_DWCODE)
if (strlen(gEeprom.DTMF_DOWN_CODE) > 8) if (strlen(gEeprom.DTMF_DOWN_CODE) > 8)
UI_PrintString(gEeprom.DTMF_DOWN_CODE + 8, menu_item_x1, menu_item_x2, 4, 8); UI_PrintString(gEeprom.DTMF_DOWN_CODE + 8, menu_item_x1, menu_item_x2, 4, 8);
if (GetCurrentMenuId() == MENU_D_LIST && gIsDtmfContactValid) if (UI_MENU_GetCurrentMenuId() == MENU_D_LIST && gIsDtmfContactValid)
{ {
Contact[11] = 0; Contact[11] = 0;
memmove(&gDTMF_ID, Contact + 8, 4); memmove(&gDTMF_ID, Contact + 8, 4);
@@ -988,20 +976,20 @@ void UI_DisplayMenu(void)
UI_PrintString(String, menu_item_x1, menu_item_x2, 4, 8); UI_PrintString(String, menu_item_x1, menu_item_x2, 4, 8);
} }
if (GetCurrentMenuId() == MENU_R_CTCS || if (UI_MENU_GetCurrentMenuId() == MENU_R_CTCS ||
GetCurrentMenuId() == MENU_T_CTCS || UI_MENU_GetCurrentMenuId() == MENU_T_CTCS ||
GetCurrentMenuId() == MENU_R_DCS || UI_MENU_GetCurrentMenuId() == MENU_R_DCS ||
GetCurrentMenuId() == MENU_T_DCS || UI_MENU_GetCurrentMenuId() == MENU_T_DCS ||
GetCurrentMenuId() == MENU_D_LIST) UI_MENU_GetCurrentMenuId() == MENU_D_LIST)
{ {
sprintf(String, "%2d", gSubMenuSelection); sprintf(String, "%2d", gSubMenuSelection);
UI_PrintStringSmall(String, 105, 0, 0); UI_PrintStringSmall(String, 105, 0, 0);
} }
if ((GetCurrentMenuId() == MENU_RESET || if ((UI_MENU_GetCurrentMenuId() == MENU_RESET ||
GetCurrentMenuId() == MENU_MEM_CH || UI_MENU_GetCurrentMenuId() == MENU_MEM_CH ||
GetCurrentMenuId() == MENU_MEM_NAME || UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME ||
GetCurrentMenuId() == MENU_DEL_CH) && gAskForConfirmation) UI_MENU_GetCurrentMenuId() == MENU_DEL_CH) && gAskForConfirmation)
{ // display confirmation { // display confirmation
strcpy(String, (gAskForConfirmation == 1) ? "SURE?" : "WAIT!"); strcpy(String, (gAskForConfirmation == 1) ? "SURE?" : "WAIT!");
UI_PrintString(String, menu_item_x1, menu_item_x2, 5, 8); UI_PrintString(String, menu_item_x1, menu_item_x2, 5, 8);

View File

@@ -21,6 +21,7 @@
#include <stdint.h> #include <stdint.h>
#include "audio.h" // VOICE_ID_t #include "audio.h" // VOICE_ID_t
#include "settings.h"
typedef struct { typedef struct {
const char name[7]; // menu display area only has room for 6 characters const char name[7]; // menu display area only has room for 6 characters
@@ -110,8 +111,6 @@ enum
MENU_500TX, MENU_500TX,
MENU_350EN, MENU_350EN,
MENU_SCREN, MENU_SCREN,
MENU_TX_EN, // enable TX
#ifdef ENABLE_F_CAL_MENU #ifdef ENABLE_F_CAL_MENU
MENU_F_CALI, // reference xtal calibration MENU_F_CALI, // reference xtal calibration
#endif #endif
@@ -146,9 +145,9 @@ extern const char* gSubMenu_MDF[4];
extern const char gSubMenu_D_RSP[4][11]; extern const char gSubMenu_D_RSP[4][11];
extern const char* gSubMenu_PTT_ID[5]; extern const char* gSubMenu_PTT_ID[5];
extern const char gSubMenu_PONMSG[4][8]; extern const char gSubMenu_PONMSG[4][8];
extern const char* gSubMenu_ROGER[3]; extern const char gSubMenu_ROGER[3][6];
extern const char gSubMenu_RESET[2][4]; extern const char gSubMenu_RESET[2][4];
extern const char gSubMenu_F_LOCK[6][4]; extern const char* gSubMenu_F_LOCK[F_LOCK_LEN];
extern const char gSubMenu_BACKLIGHT[8][7]; extern const char gSubMenu_BACKLIGHT[8][7];
extern const char gSubMenu_RX_TX[4][6]; extern const char gSubMenu_RX_TX[4][6];
#ifdef ENABLE_AM_FIX_TEST1 #ifdef ENABLE_AM_FIX_TEST1
@@ -165,8 +164,7 @@ extern const t_sidefunction* gSubMenu_SIDEFUNCTIONS;
extern bool gIsInSubMenu; extern bool gIsInSubMenu;
extern uint8_t gMenuCursor; extern uint8_t gMenuCursor;
int GetCurrentMenuId();
extern int8_t gMenuScrollDirection;
extern int32_t gSubMenuSelection; extern int32_t gSubMenuSelection;
extern char edit_original[17]; extern char edit_original[17];
@@ -174,5 +172,7 @@ extern char edit[17];
extern int edit_index; extern int edit_index;
void UI_DisplayMenu(void); void UI_DisplayMenu(void);
int UI_MENU_GetCurrentMenuId();
uint8_t UI_MENU_GetMenuIdx(uint8_t id);
#endif #endif

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@@ -50,7 +50,7 @@ void UI_DisplayScanner(void)
UI_PrintString(String, 2, 0, 3, 8); UI_PrintString(String, 2, 0, 3, 8);
memset(String, 0, sizeof(String)); memset(String, 0, sizeof(String));
if (gScannerEditState == 2) if (gScannerSaveState == SCAN_SAVE_CHANNEL)
{ {
strcpy(String, "SAVE?"); strcpy(String, "SAVE?");
@@ -59,19 +59,15 @@ void UI_DisplayScanner(void)
} }
else else
{ {
if (gScannerEditState == 1) if (gScannerSaveState == SCAN_SAVE_CHAN_SEL) {
{
strcpy(String, "SAVE:"); strcpy(String, "SAVE:");
UI_GenerateChannelStringEx(String + 5, gShowChPrefix, gScanChannel); UI_GenerateChannelStringEx(String + 5, gShowChPrefix, gScanChannel);
} }
else else if (gScanCssState < SCAN_CSS_STATE_FOUND) {
if (gScanCssState < SCAN_CSS_STATE_FOUND)
{
strcpy(String, "SCAN"); strcpy(String, "SCAN");
memset(String + 4, '.', (gScanProgressIndicator & 7) + 1); memset(String + 4, '.', (gScanProgressIndicator & 7) + 1);
} }
else else if (gScanCssState == SCAN_CSS_STATE_FOUND)
if (gScanCssState == SCAN_CSS_STATE_FOUND)
strcpy(String, "SCAN CMP."); strcpy(String, "SCAN CMP.");
else else
strcpy(String, "SCAN FAIL."); strcpy(String, "SCAN FAIL.");

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@@ -16,10 +16,11 @@
#include <string.h> #include <string.h>
#include "app/scanner.h" #include "app/chFrScanner.h"
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
#include "app/fm.h" #include "app/fm.h"
#endif #endif
#include "app/scanner.h"
#include "bitmaps.h" #include "bitmaps.h"
#include "driver/keyboard.h" #include "driver/keyboard.h"
#include "driver/st7565.h" #include "driver/st7565.h"
@@ -86,10 +87,10 @@ void UI_DisplayStatus()
} }
else else
// SCAN indicator // SCAN indicator
if (gScanStateDir != SCAN_OFF || gScreenToDisplay == DISPLAY_SCANNER) if (gScanStateDir != SCAN_OFF || SCANNER_IsScanning())
{ {
char * s = ""; char * s = "";
if (IS_MR_CHANNEL(gNextMrChannel) && gScreenToDisplay != DISPLAY_SCANNER) if (IS_MR_CHANNEL(gNextMrChannel) && !SCANNER_IsScanning())
{ // channel mode { // channel mode
switch(gEeprom.SCAN_LIST_DEFAULT) { switch(gEeprom.SCAN_LIST_DEFAULT) {
case 0: s = "1"; break; case 0: s = "1"; break;
@@ -119,7 +120,7 @@ void UI_DisplayStatus()
#endif #endif
x++; x++;
if(gScreenToDisplay != DISPLAY_SCANNER) { if(!SCANNER_IsScanning()) {
uint8_t dw = (gEeprom.DUAL_WATCH != DUAL_WATCH_OFF) + (gEeprom.CROSS_BAND_RX_TX != CROSS_BAND_OFF) * 2; uint8_t dw = (gEeprom.DUAL_WATCH != DUAL_WATCH_OFF) + (gEeprom.CROSS_BAND_RX_TX != CROSS_BAND_OFF) * 2;
if(dw == 1 || dw == 3) { // DWR - dual watch + respond if(dw == 1 || dw == 3) { // DWR - dual watch + respond
if(gDualWatchActive) if(gDualWatchActive)
@@ -165,7 +166,7 @@ void UI_DisplayStatus()
char s[8]; char s[8];
unsigned int space_needed; unsigned int space_needed;
unsigned int x2 = LCD_WIDTH - sizeof(BITMAP_BatteryLevel5) - 3; unsigned int x2 = LCD_WIDTH - sizeof(BITMAP_BatteryLevel1) - 3;
if (gChargingWithTypeC) if (gChargingWithTypeC)
x2 -= sizeof(BITMAP_USB_C); // the radio is on charge x2 -= sizeof(BITMAP_USB_C); // the radio is on charge

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@@ -16,11 +16,11 @@
#include <string.h> #include <string.h>
#include "app/chFrScanner.h"
#include "app/dtmf.h" #include "app/dtmf.h"
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
#include "app/fm.h" #include "app/fm.h"
#endif #endif
#include "app/scanner.h"
#include "driver/keyboard.h" #include "driver/keyboard.h"
#include "misc.h" #include "misc.h"
#ifdef ENABLE_AIRCOPY #ifdef ENABLE_AIRCOPY
@@ -86,7 +86,7 @@ void GUI_SelectNextDisplay(GUI_DisplayType_t Display)
gInputBoxIndex = 0; gInputBoxIndex = 0;
gIsInSubMenu = false; gIsInSubMenu = false;
gCssScanMode = CSS_SCAN_MODE_OFF; gCssBackgroundScan = false;
gScanStateDir = SCAN_OFF; gScanStateDir = SCAN_OFF;
#ifdef ENABLE_FMRADIO #ifdef ENABLE_FMRADIO
gFM_ScanState = FM_SCAN_OFF; gFM_ScanState = FM_SCAN_OFF;

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@@ -18,15 +18,6 @@
:: Delete any left over files from previous compile
::
del /S /Q *.o >nul 2>nul
del /S /Q *.d >nul 2>nul
del /Q firmware >nul 2>nul
del /Q *.bin >nul 2>nul
:: You may need to edit/change these three paths to suit your setup :: You may need to edit/change these three paths to suit your setup
:: ::
:: Temporarily add the compiler and make program directories to the system PATH .. :: Temporarily add the compiler and make program directories to the system PATH ..
@@ -40,14 +31,6 @@ del /Q *.bin >nul 2>nul
make clean make clean
make make
:: Delete the spent files
::
del /S /Q *.o >nul 2>nul
del /S /Q *.d >nul 2>nul
del /Q firmware >nul 2>nul
:: If you have python installed, you can create a 'packed' .bin from the compiled firmware.bin file. :: If you have python installed, you can create a 'packed' .bin from the compiled firmware.bin file.
:: The Quansheng windows upload-to-radio program requires a 'packed' .bin file. :: The Quansheng windows upload-to-radio program requires a 'packed' .bin file.