96 Commits
v0.13 ... v0.19

Author SHA1 Message Date
Krzysiek Egzmont
59b3251713 Github actions update 2023-11-29 02:18:34 +01:00
Krzysiek Egzmont
fbb4d08b88 S-meter values readjusted according to measurements from #53 2023-11-29 01:23:20 +01:00
Krzysiek Egzmont
050e04bcfd Enable/disable DTMF calling compile option 2023-11-28 23:00:01 +01:00
Krzysiek Egzmont
7857e8ed7a Scan range function #132 2023-11-28 20:13:02 +01:00
Krzysiek Egzmont
4c3eb98e31 Refactor 2023-11-27 22:51:36 +01:00
Krzysiek Egzmont
fe49f250b0 FM radio button actions changed to be the same as in VFO mode 2023-11-27 19:36:49 +01:00
Krzysiek Egzmont
3c643208ff FIX #152: Zero digit being entered when exiting FM radio with F+0 2023-11-27 13:42:47 +01:00
Krzysiek Egzmont
dc47842892 Refactor 2023-11-27 13:33:39 +01:00
Krzysiek Egzmont
9f22e8a9df FIX #151: Use aviation channels to frequency conversion scheme for 8.33 step rounding 2023-11-27 01:43:36 +01:00
Krzysiek Egzmont
07588853e4 Versioning modified 2023-11-27 00:50:08 +01:00
Krzysiek Egzmont
199b1a27f1 Spectrum: decimal point deletion fix #148, slower buttons repeats 2023-11-26 19:06:18 +01:00
Krzysiek Egzmont
a0d052b68b Spectrum refactor 2023-11-25 19:28:21 +01:00
Krzysiek Egzmont
9a3249a667 FIX #121: Rise tones volume 2023-11-23 21:20:24 +01:00
Krzysiek Egzmont
ffdc0e03b5 FIX #114, #120: Restart monitor mode on PTT release, long press EXIT exits monitor mode 2023-11-23 21:02:47 +01:00
Krzysiek Egzmont
d8d4384b20 Refactoring 2023-11-23 19:48:47 +01:00
Krzysiek Egzmont
0ce7d7bdc3 FIX #129: Bug in radio initialization after reset. 2023-11-22 23:40:39 +01:00
Krzysiek Egzmont
fb30ec8c86 Refactor 2023-11-22 23:40:20 +01:00
Krzysiek Egzmont
67307463e2 FIX #92: Adjust s-meter values 2023-11-22 14:52:16 +01:00
Krzysiek Egzmont
fdd7fc063e Cleanup docker container after build 2023-11-22 14:51:53 +01:00
Krzysiek Egzmont
592810b7d7 FIX #125: Frequency input on the first VFO blanks the display on the second 2023-11-20 22:32:39 +01:00
Krzysiek Egzmont
6e5e7e7aef FIX #85: Equalize tones volume in DTMF codes, fix wrong DTMF frequency values 2023-11-20 21:24:09 +01:00
ErikS-web
cd0dc71de6 Update README.md
Type error corrected
2023-11-18 21:26:37 +01:00
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
Krzysiek Egzmont
140b5f4b4a Added second discharge curve for 2200mAh type battery and hidden BatTyp menu entry 2023-10-31 00:41:53 +01:00
Krzysiek Egzmont
3e0ea6f7de Backlight setting 1 was fully off for some reason on higher freq PWM 2023-10-30 18:57:35 +01:00
Krzysiek Egzmont
ed64c7fb49 Mid, low power reduction mod from 1o11 2023-10-30 18:17:54 +01:00
Krzysiek Egzmont
d70fa1b7b4 Refactor 2023-10-30 16:39:18 +01:00
Krzysiek Egzmont
a41628410e FIX #65: code refactoring 2023-10-30 13:26:16 +01:00
Krzysiek Egzmont
f7c25b482d FIX #55: Broken DTMF calling (D Decd) 2023-10-29 22:26:48 +01:00
Krzysiek Egzmont
ac3cd08163 serial debugging helper 2023-10-28 23:11:52 +02:00
Krzysiek Egzmont
c1657a37f2 Refactor 2023-10-28 22:50:42 +02:00
Krzysiek Egzmont
a2580d5d8d Increase backlight PWM frequency to reduce flicker 2023-10-28 16:10:37 +02:00
Krzysiek Egzmont
5d4f7529ed Refactor 2023-10-28 16:09:49 +02:00
Krzysiek Egzmont
20a3e3b605 Fix STE not working when TX CTCSS/DCS is off
Reverts:
fde690a74a: app.c
50a55e34ab: radio.c
2023-10-28 14:41:47 +02:00
Krzysiek Egzmont
f3cc0f5acf Comments, refactor 2023-10-28 14:39:13 +02:00
Krzysiek Egzmont
2086bd6aaa Comments, refactor 2023-10-28 10:53:07 +02:00
Krzysiek Egzmont
3b3db88e5e Fix s-meter displaying for overpowering signals 2023-10-28 10:50:51 +02:00
Krzysiek Egzmont
f6791395cc Modified displaying of little sbar 2023-10-28 10:45:56 +02:00
Krzysiek Egzmont
8739996668 Changed little sbar back to factory 2023-10-27 15:32:14 +02:00
Krzysiek Egzmont
1740583ccc Set the backlight to minimum on reboot 2023-10-27 11:08:28 +02:00
Krzysiek Egzmont
b12244e352 Fix the RX buzzing problem after reboot 2023-10-27 10:53:22 +02:00
Krzysiek Egzmont
e6ac0d1d8d Import bk4819 changes 2023-10-26 18:30:35 +02:00
Krzysiek Egzmont
eda199d47a Back-light PWM 2023-10-26 18:20:28 +02:00
Krzysiek Egzmont
012c375f2e Fix build error 2023-10-26 10:55:33 +02:00
Krzysiek Egzmont
4a96dfa6ce AM fix gains adjusted 2023-10-25 23:24:45 +02:00
Krzysiek Egzmont
ec10aec0c4 Fix monitor listens on the opposite VFO when XB with DW is active at the same time 2023-10-25 21:35:34 +02:00
Krzysiek Egzmont
49c2c6b405 Refactor 2023-10-25 20:56:03 +02:00
Krzysiek Egzmont
38b1e5cbaa #45 piotr022 style S-meter 2023-10-25 14:39:21 +02:00
Krzysiek Egzmont
9a64a18010 #44 Channel/frequency scanner remember last found channel 2023-10-25 02:34:52 +02:00
Krzysiek Egzmont
72eddd009b Refactor 2023-10-25 01:26:14 +02:00
Krzysiek Egzmont
77d58eb8f5 Stop scan with MENU button and accept scan result 2023-10-24 04:09:46 +02:00
Krzysiek Egzmont
856dbe083d Increase DTMF string buffers size 2023-10-24 03:43:48 +02:00
Krzysiek Egzmont
50cc34ad9b Refactor 2023-10-24 03:42:34 +02:00
Krzysiek Egzmont
c996577a0b Fix frequency wraparound over band limit 2023-10-24 03:31:43 +02:00
Krzysiek Egzmont
e877820594 Change upper limit of airband to 137MHz 2023-10-24 03:29:50 +02:00
Krzysiek Egzmont
8ab123c927 Add new "VFO/MR" configurable button function 2023-10-24 02:34:29 +02:00
Krzysiek Egzmont
a510b89c6a Refactor frequency rounding 2023-10-24 02:25:01 +02:00
Krzysiek Egzmont
8b41a1fa66 Fix offset display in menu 2023-10-24 01:56:27 +02:00
Krzysiek Egzmont
99fc8a8311 FIX #43: frequent offset menu is not working properly 2023-10-24 01:54:57 +02:00
70 changed files with 3574 additions and 2912 deletions

49
.github/workflows/main.yml vendored Normal file
View File

@@ -0,0 +1,49 @@
on:
push:
jobs:
build:
runs-on: ubuntu-22.04
container:
image: archlinux:latest
steps:
- name: base-devel
run: pacman -Syyu base-devel --noconfirm
- name: arm-none-eabi-gcc
run: pacman -Syyu arm-none-eabi-gcc --noconfirm
- name: arm-none-eabi-newlib
run: pacman -Syyu arm-none-eabi-newlib --noconfirm
- name: git
run: pacman -Syyu git --noconfirm
- name: python-pip
run: pacman -Syyu python-pip --noconfirm
- name: python-crcmod
run: pacman -Syyu python-crcmod --noconfirm
- name: Checkout
uses: actions/checkout@v3
- name: safe.directory
run: git config --global --add safe.directory /__w/uv-k5-firmware-custom/uv-k5-firmware-custom
- 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
if: ${{ startsWith(github.ref, 'refs/tags/v') }}
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_SHOW_CHARGE_LEVEL := 1
ENABLE_REVERSE_BAT_SYMBOL := 0
ENABLE_CODE_SCAN_TIMEOUT := 0
ENABLE_NO_CODE_SCAN_TIMEOUT := 1
ENABLE_AM_FIX := 1
ENABLE_AM_FIX_SHOW_DATA := 0
ENABLE_SQUELCH_MORE_SENSITIVE := 1
@@ -35,9 +35,11 @@ ENABLE_RSSI_BAR := 1
ENABLE_AUDIO_BAR := 1
ENABLE_COPY_CHAN_TO_VFO := 1
ENABLE_SPECTRUM := 1
#ENABLE_SINGLE_VFO_CHAN := 1
#ENABLE_BAND_SCOPE := 1
ENABLE_REDUCE_LOW_MID_TX_POWER:= 0
ENABLE_BYP_RAW_DEMODULATORS := 0
ENABLE_BLMIN_TMP_OFF := 0
ENABLE_SCAN_RANGES := 1
ENABLE_DTMF_CALLING := 1
#############################################################
TARGET = firmware
@@ -99,12 +101,13 @@ ifeq ($(ENABLE_AIRCOPY),1)
OBJS += app/aircopy.o
endif
OBJS += app/app.o
OBJS += app/chFrScanner.o
OBJS += app/common.o
OBJS += app/dtmf.o
ifeq ($(ENABLE_FMRADIO),1)
OBJS += app/fm.o
endif
OBJS += app/generic.o
OBJS += app/common.o
OBJS += app/main.o
OBJS += app/menu.o
ifeq ($(ENABLE_SPECTRUM), 1)
@@ -157,6 +160,20 @@ else
TOP := $(shell pwd)
endif
ifdef OS # windows
RM = del /Q
FixPath = $(subst /,\,$1)
WHERE = where
NULL_OUTPUT = nul
else # unix
ifeq ($(shell uname), Linux)
RM = rm -f
FixPath = $1
WHERE = which
NULL_OUTPUT = /dev/null
endif
endif
AS = arm-none-eabi-gcc
CC =
@@ -176,12 +193,17 @@ endif
OBJCOPY = arm-none-eabi-objcopy
SIZE = arm-none-eabi-size
AUTHOR_STRING := EGZUMER
# the user might not have/want git installed
# can set own version string here (max 7 chars)
GIT_HASH := $(shell git rev-parse --short HEAD)
#GIT_HASH := 230930b
ifneq (, $(shell $(WHERE) git))
VERSION_STRING := $(shell git describe --tags --exact-match 2>$(NULL_OUTPUT))
ifeq (, $(VERSION_STRING))
VERSION_STRING := $(shell git rev-parse --short HEAD)
endif
endif
#VERSION_STRING := 230930b
$(info GIT_HASH = $(GIT_HASH))
ASFLAGS = -c -mcpu=cortex-m0
ifeq ($(ENABLE_OVERLAY),1)
@@ -211,9 +233,10 @@ endif
# catch any and all warnings
CFLAGS += -Wextra
#CFLAGS += -Wpedantic
CFLAGS += -DPRINTF_INCLUDE_CONFIG_H
CFLAGS += -DGIT_HASH=\"$(GIT_HASH)\"
CFLAGS += -DAUTHOR_STRING=\"$(AUTHOR_STRING)\" -DVERSION_STRING=\"$(VERSION_STRING)\"
ifeq ($(ENABLE_SPECTRUM),1)
CFLAGS += -DENABLE_SPECTRUM
@@ -281,7 +304,7 @@ endif
ifeq ($(ENABLE_REVERSE_BAT_SYMBOL),1)
CFLAGS += -DENABLE_REVERSE_BAT_SYMBOL
endif
ifeq ($(ENABLE_CODE_SCAN_TIMEOUT),1)
ifeq ($(ENABLE_NO_CODE_SCAN_TIMEOUT),1)
CFLAGS += -DENABLE_CODE_SCAN_TIMEOUT
endif
ifeq ($(ENABLE_AM_FIX),1)
@@ -317,6 +340,21 @@ endif
ifeq ($(ENABLE_BAND_SCOPE),1)
CFLAGS += -DENABLE_BAND_SCOPE
endif
ifeq ($(ENABLE_REDUCE_LOW_MID_TX_POWER),1)
CFLAGS += -DENABLE_REDUCE_LOW_MID_TX_POWER
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
ifeq ($(ENABLE_SCAN_RANGES),1)
CFLAGS += -DENABLE_SCAN_RANGES
endif
ifeq ($(ENABLE_DTMF_CALLING),1)
CFLAGS += -DENABLE_DTMF_CALLING
endif
LDFLAGS =
ifeq ($(ENABLE_CLANG),0)
@@ -349,10 +387,34 @@ LIBS =
DEPS = $(OBJS:.o=.d)
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)
$(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 $(AUTHOR_STRING) $(VERSION_STRING) $<.packed.bin
endif
$(SIZE) $<
debug:
@@ -379,4 +441,4 @@ bsp/dp32g030/%.h: hardware/dp32g030/%.def
-include $(DEPS)
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:
- many of OneOfEleven mods, including AM fix
- fagci spectrum analyzer (**F+5** to turn on)
- some other smaller mods introduced by me
* many of OneOfEleven mods:
* AM fix, huge improvement in reception quality
* 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 configurable 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 />
❗❗❗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
@@ -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_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_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_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_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_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_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_AUDIO_BAR := 0 experimental, display an audo bar level when TX'ing
ENABLE_COPY_CHAN_TO_VFO := 1 copy current channel into the other VFO. Long press Menu key ('M')
#ENABLE_SINGLE_VFO_CHAN := 1 not yet implemented - single VFO on display when possible
#ENABLE_BAND_SCOPE := 1 not yet implemented - spectrum/pan-adapter
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 `1 BAND` when in channel mode
ENABLE_SPECTRUM := 1 fagci spectrum analizer, activated with `F` + `5 NOAA`
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

View File

@@ -51,10 +51,10 @@
// <7:5> = LNA Gain
// 7 = 0dB
// 6 = -2dB
// 5 = -4dB
// 5 = -4dB < original value
// 4 = -6dB
// 3 = -9dB
// 2 = -14dB < original value
// 2 = -14dB
// 1 = -19dB
// 0 = -24dB
//
@@ -192,26 +192,26 @@
{0x03D3, -20}, // 77 .. 3 6 2 3 .. 0dB -2dB -3dB -15dB .. -20dB
{0x03BB, -19}, // 78 .. 3 5 3 3 .. 0dB -4dB 0dB -15dB .. -19dB
{0x037C, -18}, // 79 .. 3 3 3 4 .. 0dB -9dB 0dB -9dB .. -18dB
{0x035E, -17}, // 80 .. 3 2 3 6 .. 0dB -14dB 0dB -3dB .. -17dB original
{0x03CC, -17}, // 80 .. 3 6 1 4 .. 0dB -2dB -6dB -9dB .. -17dB
{0x03C5, -16}, // 81 .. 3 6 0 5 .. 0dB -2dB -8dB -6dB .. -16dB
{0x03EC, -15}, // 82 .. 3 7 1 4 .. 0dB 0dB -6dB -9dB .. -15dB
{0x035F, -14}, // 83 .. 3 2 3 7 .. 0dB -14dB 0dB 0dB .. -14dB
{0x03C6, -13}, // 84 .. 3 6 0 6 .. 0dB -2dB -8dB -3dB .. -13dB
{0x0377, -12}, // 85 .. 3 3 2 7 .. 0dB -9dB -3dB 0dB .. -12dB
{0x03BC, -13}, // 84 .. 3 5 3 4 .. 0dB -4dB 0dB -9dB .. -13dB
{0x038F, -12}, // 85 .. 3 4 1 7 .. 0dB -6dB -6dB 0dB .. -12dB
{0x03E6, -11}, // 86 .. 3 7 0 6 .. 0dB 0dB -8dB -3dB .. -11dB
{0x03BD, -10}, // 87 .. 3 5 3 5 .. 0dB -4dB 0dB -6dB .. -10dB
{0x03F5, -9}, // 88 .. 3 7 2 5 .. 0dB 0dB -3dB -6dB .. -9dB
{0x03DD, -8}, // 89 .. 3 6 3 5 .. 0dB -2dB 0dB -6dB .. -8dB
{0x03B7, -7}, // 90 .. 3 5 2 7 .. 0dB -4dB -3dB 0dB .. -7dB
{0x03F6, -6}, // 91 .. 3 7 2 6 .. 0dB 0dB -3dB -3dB .. -6dB
{0x03D7, -5}, // 92 .. 3 6 2 7 .. 0dB -2dB -3dB 0dB .. -5dB
{0x03BF, -4}, // 93 .. 3 5 3 7 .. 0dB -4dB 0dB 0dB .. -4dB
{0x03F7, -3}, // 94 .. 3 7 2 7 .. 0dB 0dB -3dB 0dB .. -3dB
{0x03DF, -2}, // 95 .. 3 6 3 7 .. 0dB -2dB 0dB 0dB .. -2dB
{0x03FF, 0} // 96 .. 3 7 3 7 .. 0dB 0dB 0dB 0dB .. 0dB
{0x03AF, -10}, // 87 .. 3 5 1 7 .. 0dB -4dB -6dB 0dB .. -10dB
{0x03F5, -9 }, // 88 .. 3 7 2 5 .. 0dB 0dB -3dB -6dB .. -9dB
{0x03D6, -8 }, // 89 .. 3 6 2 6 .. 0dB -2dB -3dB -3dB .. -8dB
{0x03BE, -7 }, // 90 .. 3 5 3 6 .. 0dB -4dB 0dB -3dB .. -7dB original
{0x03F6, -6 }, // 91 .. 3 7 2 6 .. 0dB 0dB -3dB -3dB .. -6dB
{0x03DE, -5 }, // 92 .. 3 6 3 6 .. 0dB -2dB 0dB -3dB .. -5dB
{0x03BF, -4 }, // 93 .. 3 5 3 7 .. 0dB -4dB 0dB 0dB .. -4dB
{0x03F7, -3 }, // 94 .. 3 7 2 7 .. 0dB 0dB -3dB 0dB .. -3dB
{0x03DF, -2 }, // 95 .. 3 6 3 7 .. 0dB -2dB 0dB 0dB .. -2dB
{0x03FF, 0 }, // 96 .. 3 7 3 7 .. 0dB 0dB 0dB 0dB .. 0dB
};
static const unsigned int original_index = 80;
static const unsigned int original_index = 90;
#endif

View File

@@ -18,6 +18,7 @@
#include "app/action.h"
#include "app/app.h"
#include "app/chFrScanner.h"
#include "app/common.h"
#include "app/dtmf.h"
#ifdef ENABLE_FMRADIO
@@ -31,6 +32,7 @@
#endif
#include "driver/bk4819.h"
#include "driver/gpio.h"
#include "driver/backlight.h"
#include "functions.h"
#include "misc.h"
#include "settings.h"
@@ -61,24 +63,22 @@ void ACTION_Power(void)
gTxVfo->OUTPUT_POWER = OUTPUT_POWER_LOW;
gRequestSaveChannel = 1;
//gRequestSaveChannel = 2; // auto save the channel
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_POWER;
#endif
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_POWER;
#endif
gRequestDisplayScreen = gScreenToDisplay;
}
void ACTION_Monitor(void)
{
if (gCurrentFunction != FUNCTION_MONITOR)
{ // enable the monitor
if (gCurrentFunction != FUNCTION_MONITOR) { // enable the monitor
RADIO_SelectVfos();
#ifdef ENABLE_NOAA
if (gRxVfo->CHANNEL_SAVE >= NOAA_CHANNEL_FIRST && gIsNoaaMode)
gNoaaChannel = gRxVfo->CHANNEL_SAVE - NOAA_CHANNEL_FIRST;
#endif
#ifdef ENABLE_NOAA
if (gRxVfo->CHANNEL_SAVE >= NOAA_CHANNEL_FIRST && gIsNoaaMode)
gNoaaChannel = gRxVfo->CHANNEL_SAVE - NOAA_CHANNEL_FIRST;
#endif
RADIO_SetupRegisters(true);
APP_StartListening(FUNCTION_MONITOR, false);
return;
@@ -86,115 +86,112 @@ void ACTION_Monitor(void)
gMonitor = false;
if (gScanStateDir != SCAN_OFF)
{
if (gScanStateDir != SCAN_OFF) {
gScanPauseDelayIn_10ms = scan_pause_delay_in_1_10ms;
gScheduleScanListen = false;
gScanPauseMode = true;
}
#ifdef ENABLE_NOAA
if (gEeprom.DUAL_WATCH == DUAL_WATCH_OFF && gIsNoaaMode)
{
gNOAA_Countdown_10ms = NOAA_countdown_10ms;
gScheduleNOAA = false;
}
#endif
#ifdef ENABLE_NOAA
if (gEeprom.DUAL_WATCH == DUAL_WATCH_OFF && gIsNoaaMode) {
gNOAA_Countdown_10ms = NOAA_countdown_10ms;
gScheduleNOAA = false;
}
#endif
RADIO_SetupRegisters(true);
#ifdef ENABLE_FMRADIO
if (gFmRadioMode)
{
FM_Start();
gRequestDisplayScreen = DISPLAY_FM;
}
else
#endif
gRequestDisplayScreen = gScreenToDisplay;
#ifdef ENABLE_FMRADIO
if (gFmRadioMode) {
FM_Start();
gRequestDisplayScreen = DISPLAY_FM;
}
else
#endif
gRequestDisplayScreen = gScreenToDisplay;
}
void ACTION_Scan(bool bRestart)
{
#ifdef ENABLE_FMRADIO
if (gFmRadioMode)
(void)bRestart;
#ifdef ENABLE_FMRADIO
if (gFmRadioMode)
{
if (gCurrentFunction != FUNCTION_RECEIVE &&
gCurrentFunction != FUNCTION_MONITOR &&
gCurrentFunction != FUNCTION_TRANSMIT)
{
if (gCurrentFunction != FUNCTION_RECEIVE &&
gCurrentFunction != FUNCTION_MONITOR &&
gCurrentFunction != FUNCTION_TRANSMIT)
GUI_SelectNextDisplay(DISPLAY_FM);
gMonitor = false;
if (gFM_ScanState != FM_SCAN_OFF)
{
GUI_SelectNextDisplay(DISPLAY_FM);
FM_PlayAndUpdate();
gMonitor = false;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
#endif
}
else
{
uint16_t Frequency;
if (gFM_ScanState != FM_SCAN_OFF)
if (bRestart)
{
FM_PlayAndUpdate();
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
#endif
gFM_AutoScan = true;
gFM_ChannelPosition = 0;
FM_EraseChannels();
Frequency = gEeprom.FM_LowerLimit;
}
else
{
uint16_t Frequency;
if (bRestart)
{
gFM_AutoScan = true;
gFM_ChannelPosition = 0;
FM_EraseChannels();
Frequency = gEeprom.FM_LowerLimit;
}
else
{
gFM_AutoScan = false;
gFM_ChannelPosition = 0;
Frequency = gEeprom.FM_FrequencyPlaying;
}
BK1080_GetFrequencyDeviation(Frequency);
FM_Tune(Frequency, 1, bRestart);
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_BEGIN;
#endif
gFM_AutoScan = false;
gFM_ChannelPosition = 0;
Frequency = gEeprom.FM_FrequencyPlaying;
}
BK1080_GetFrequencyDeviation(Frequency);
FM_Tune(Frequency, 1, bRestart);
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_BEGIN;
#endif
}
return;
}
#endif
return;
}
#endif
if (gScreenToDisplay != DISPLAY_SCANNER)
if (!SCANNER_IsScanning())
{ // not scanning
gMonitor = false;
#ifdef ENABLE_DTMF_CALLING
DTMF_clear_RX();
#endif
gDTMF_RX_live_timeout = 0;
memset(gDTMF_RX_live, 0, sizeof(gDTMF_RX_live));
RADIO_SelectVfos();
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE))
#endif
#ifdef ENABLE_NOAA
if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE))
#endif
{
GUI_SelectNextDisplay(DISPLAY_MAIN);
if (gScanStateDir != SCAN_OFF)
{ // already scanning
if (gNextMrChannel <= MR_CHANNEL_LAST)
if (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_NextChannel(false, gScanStateDir);
CHFRSCANNER_Start(false, gScanStateDir);
gScanPauseDelayIn_10ms = 1;
gScheduleScanListen = false;
@@ -203,7 +200,7 @@ void ACTION_Scan(bool bRestart)
else
{ // stop scanning
SCANNER_Stop();
CHFRSCANNER_Stop();
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
@@ -213,7 +210,7 @@ void ACTION_Scan(bool bRestart)
else
{ // start scanning
SCANNER_NextChannel(true, SCAN_FWD);
CHFRSCANNER_Start(true, SCAN_FWD);
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_SCANNING_BEGIN);
@@ -229,31 +226,6 @@ void ACTION_Scan(bool bRestart)
}
}
}
else
// if (!bRestart)
if (!bRestart && gNextMrChannel <= MR_CHANNEL_LAST)
{ // 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_NextChannel(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
@@ -272,6 +244,7 @@ void ACTION_Scan(bool bRestart)
#if defined(ENABLE_ALARM) || defined(ENABLE_TX1750)
static void ACTION_AlarmOr1750(const bool b1750)
{
(void)b1750;
gInputBoxIndex = 0;
#if defined(ENABLE_ALARM) && defined(ENABLE_TX1750)
@@ -325,6 +298,28 @@ void ACTION_Scan(bool bRestart)
}
#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)
{
if (gScreenToDisplay == DISPLAY_MAIN && gDTMF_InputMode) // entering DTMF code
@@ -437,5 +432,16 @@ void ACTION_Handle(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
case ACTION_OPT_A_B:
COMMON_SwitchVFOs();
break;
case ACTION_OPT_VFO_MR:
COMMON_SwitchVFOMode();
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
void ACTION_FM(void);
#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);

View File

@@ -57,7 +57,7 @@ void AIRCOPY_SendMessage(void)
BK4819_SendFSKData(g_FSK_Buffer);
BK4819_SetupPowerAmplifier(0, 0);
BK4819_ToggleGpioOut(BK4819_GPIO1_PIN29, false);
BK4819_ToggleGpioOut(BK4819_GPIO1_PIN29_PA_ENABLE, false);
gAircopySendCountdown = 30;
}
@@ -141,8 +141,7 @@ static void AIRCOPY_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
gRxVfo->Band = i;
Frequency += 75;
Frequency = FREQUENCY_FloorToStep(Frequency, gRxVfo->StepFrequency, 0);
Frequency = FREQUENCY_RoundToStep(Frequency, gRxVfo->StepFrequency);
gRxVfo->freq_config_RX.Frequency = Frequency;
gRxVfo->freq_config_TX.Frequency = Frequency;
RADIO_ConfigureSquelchAndOutputPower(gRxVfo);

896
app/app.c

File diff suppressed because it is too large Load Diff

View File

@@ -23,14 +23,10 @@
#include "frequencies.h"
#include "radio.h"
extern const uint8_t orig_lna_short;
extern const uint8_t orig_lna;
extern const uint8_t orig_mixer;
extern const uint8_t orig_pga;
void APP_EndTransmission(void);
void APP_StartListening(FUNCTION_Type_t Function, const bool reset_am_fix);
uint32_t APP_SetFrequencyByStep(VFO_Info_t *pInfo, int8_t Step);
uint32_t APP_SetFreqByStepAndLimits(VFO_Info_t *pInfo, int8_t direction, uint32_t lower, uint32_t upper);
uint32_t APP_SetFrequencyByStep(VFO_Info_t *pInfo, int8_t direction);
void APP_Update(void);
void APP_TimeSlice10ms(void);
void APP_TimeSlice500ms(void);

274
app/chFrScanner.c Normal file
View File

@@ -0,0 +1,274 @@
#include "app/app.h"
#include "app/chFrScanner.h"
#include "functions.h"
#include "misc.h"
#include "settings.h"
int8_t gScanStateDir;
bool gScanKeepResult;
bool gScanPauseMode;
#ifdef ENABLE_SCAN_RANGES
uint32_t gScanRangeStart;
#endif
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)
{
#ifdef ENABLE_SCAN_RANGES
if(gScanRangeStart) {
uint32_t start = gScanRangeStart;
uint32_t end = gEeprom.VfoInfo[(gEeprom.TX_VFO+1)%2].freq_config_RX.Frequency;
gRxVfo->freq_config_RX.Frequency = APP_SetFreqByStepAndLimits(gRxVfo, gScanStateDir, MIN(start, end), MAX(start, end));
}
else
#endif
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
}

22
app/chFrScanner.h Normal file
View File

@@ -0,0 +1,22 @@
#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;
#ifdef ENABLE_SCAN_RANGES
extern uint32_t gScanRangeStart;
#endif
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

@@ -1,3 +1,5 @@
#include "app/chFrScanner.h"
#include "audio.h"
#include "functions.h"
#include "misc.h"
#include "settings.h"
@@ -22,6 +24,9 @@ void COMMON_KeypadLockToggle()
void COMMON_SwitchVFOs()
{
#ifdef ENABLE_SCAN_RANGES
gScanRangeStart = 0;
#endif
gEeprom.TX_VFO ^= 1;
if (gEeprom.CROSS_BAND_RX_TX != CROSS_BAND_OFF)
@@ -34,4 +39,39 @@ void COMMON_SwitchVFOs()
gScheduleDualWatch = true;
gRequestDisplayScreen = DISPLAY_MAIN;
}
void COMMON_SwitchVFOMode()
{
#ifdef ENABLE_NOAA
if (gEeprom.VFO_OPEN && !IS_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
#else
if (gEeprom.VFO_OPEN)
#endif
{
if (IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE))
{ // swap to frequency mode
gEeprom.ScreenChannel[gEeprom.TX_VFO] = gEeprom.FreqChannel[gEeprom.TX_VFO];
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_FREQUENCY_MODE;
#endif
gRequestSaveVFO = true;
gVfoConfigureMode = VFO_CONFIGURE_RELOAD;
return;
}
uint8_t Channel = RADIO_FindNextChannel(gEeprom.MrChannel[gEeprom.TX_VFO], 1, false, 0);
if (Channel != 0xFF)
{ // swap to channel mode
gEeprom.ScreenChannel[gEeprom.TX_VFO] = Channel;
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_CHANNEL_MODE);
AUDIO_SetDigitVoice(1, Channel + 1);
gAnotherVoiceID = (VOICE_ID_t)0xFE;
#endif
gRequestSaveVFO = true;
gVfoConfigureMode = VFO_CONFIGURE_RELOAD;
return;
}
}
}

View File

@@ -8,5 +8,6 @@
void COMMON_KeypadLockToggle();
void COMMON_SwitchVFOs();
void COMMON_SwitchVFOMode();
#endif

View File

@@ -17,6 +17,7 @@
#include <string.h>
#include <stdio.h> // NULL
#include "app/chFrScanner.h"
#ifdef ENABLE_FMRADIO
#include "app/fm.h"
#endif
@@ -40,14 +41,15 @@ uint8_t gDTMF_InputBox_Index = 0;
bool gDTMF_InputMode = false;
uint8_t gDTMF_PreviousIndex = 0;
char gDTMF_RX_live[20];
uint8_t gDTMF_RX_live_timeout = 0;
#ifdef ENABLE_DTMF_CALLING
char gDTMF_RX[17];
uint8_t gDTMF_RX_index = 0;
uint8_t gDTMF_RX_timeout = 0;
bool gDTMF_RX_pending = false;
char gDTMF_RX_live[20];
uint8_t gDTMF_RX_live_timeout = 0;
bool gIsDtmfContactValid;
char gDTMF_ID[4];
char gDTMF_Caller[4];
@@ -57,12 +59,16 @@ uint8_t gDTMF_DecodeRingCountdown_500ms;
uint8_t gDTMF_chosen_contact;
uint8_t gDTMF_auto_reset_time_500ms;
DTMF_CallState_t gDTMF_CallState;
DTMF_ReplyState_t gDTMF_ReplyState;
DTMF_CallMode_t gDTMF_CallMode;
bool gDTMF_IsTx;
uint8_t gDTMF_TxStopCountdown_500ms;
bool gDTMF_IsGroupCall;
#endif
DTMF_ReplyState_t gDTMF_ReplyState;
#ifdef ENABLE_DTMF_CALLING
void DTMF_clear_RX(void)
{
gDTMF_RX_timeout = 0;
@@ -70,6 +76,7 @@ void DTMF_clear_RX(void)
gDTMF_RX_pending = false;
memset(gDTMF_RX, 0, sizeof(gDTMF_RX));
}
#endif
bool DTMF_ValidateCodes(char *pCode, const unsigned int size)
{
@@ -93,6 +100,7 @@ bool DTMF_ValidateCodes(char *pCode, const unsigned int size)
return true;
}
#ifdef ENABLE_DTMF_CALLING
bool DTMF_GetContact(const int Index, char *pContact)
{
int i = -1;
@@ -131,6 +139,8 @@ bool DTMF_FindContact(const char *pContact, char *pResult)
return false;
}
#endif
char DTMF_GetCharacter(const unsigned int code)
{
switch (code)
@@ -154,8 +164,8 @@ char DTMF_GetCharacter(const unsigned int code)
default: return 0xff;
}
}
bool DTMF_CompareMessage(const char *pMsg, const char *pTemplate, const unsigned int size, const bool bCheckGroup)
#ifdef ENABLE_DTMF_CALLING
static bool CompareMessage(const char *pMsg, const char *pTemplate, const unsigned int size, const bool bCheckGroup)
{
unsigned int i;
for (i = 0; i < size; i++)
@@ -180,6 +190,7 @@ DTMF_CallMode_t DTMF_CheckGroupCall(const char *pMsg, const unsigned int size)
return (i < size) ? DTMF_CALL_MODE_GROUP : DTMF_CALL_MODE_NOT_GROUP;
}
#endif
void DTMF_clear_input_box(void)
{
@@ -200,16 +211,17 @@ void DTMF_Append(const char code)
gDTMF_InputBox[gDTMF_InputBox_Index++] = code;
}
#ifdef ENABLE_DTMF_CALLING
void DTMF_HandleRequest(void)
{ // proccess the RX'ed DTMF characters
char String[20];
char String[21];
unsigned int Offset;
if (!gDTMF_RX_pending)
return; // nothing new received
if (gScanStateDir != SCAN_OFF || gCssScanMode != CSS_SCAN_MODE_OFF)
if (gScanStateDir != SCAN_OFF || gCssBackgroundScan)
{ // we're busy scanning
DTMF_clear_RX();
return;
@@ -230,7 +242,7 @@ void DTMF_HandleRequest(void)
Offset = gDTMF_RX_index - strlen(String);
if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
if (CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
{ // bugger
if (gEeprom.PERMIT_REMOTE_KILL)
@@ -271,7 +283,7 @@ void DTMF_HandleRequest(void)
Offset = gDTMF_RX_index - strlen(String);
if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
if (CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
{ // shit, we're back !
gSetting_KILLED = false;
@@ -296,7 +308,7 @@ void DTMF_HandleRequest(void)
Offset = gDTMF_RX_index - strlen(String);
if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
if (CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
{ // ends with "AB"
if (gDTMF_ReplyState != DTMF_REPLY_NONE) // 1of11
@@ -320,7 +332,7 @@ void DTMF_HandleRequest(void)
Offset = gDTMF_RX_index - strlen(String);
if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), false))
if (CompareMessage(gDTMF_RX + Offset, String, strlen(String), false))
{ // we got a response
gDTMF_State = DTMF_STATE_CALL_OUT_RSP;
DTMF_clear_RX();
@@ -342,7 +354,7 @@ void DTMF_HandleRequest(void)
Offset = gDTMF_RX_index - strlen(String) - 3;
if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
if (CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
{ // it's for us !
gDTMF_CallState = DTMF_CALL_STATE_RECEIVED;
@@ -379,27 +391,33 @@ void DTMF_HandleRequest(void)
}
}
}
#endif
void DTMF_Reply(void)
{
uint16_t Delay;
char String[20];
#ifdef ENABLE_DTMF_CALLING
char String[23];
#endif
const char *pString = NULL;
switch (gDTMF_ReplyState)
{
case DTMF_REPLY_ANI:
if (gDTMF_CallMode == DTMF_CALL_MODE_DTMF)
{
pString = gDTMF_String;
}
else
#ifdef ENABLE_DTMF_CALLING
if (gDTMF_CallMode != DTMF_CALL_MODE_DTMF)
{ // append our ID code onto the end of the DTMF code to send
sprintf(String, "%s%c%s", gDTMF_String, gEeprom.DTMF_SEPARATE_CODE, gEeprom.ANI_DTMF_ID);
pString = String;
}
break;
else
#endif
{
pString = gDTMF_String;
}
break;
#ifdef ENABLE_DTMF_CALLING
case DTMF_REPLY_AB:
pString = "AB";
break;
@@ -408,10 +426,13 @@ void DTMF_Reply(void)
sprintf(String, "%s%c%s", gEeprom.ANI_DTMF_ID, gEeprom.DTMF_SEPARATE_CODE, "AAAAA");
pString = String;
break;
#endif
default:
case DTMF_REPLY_NONE:
if (gDTMF_CallState != DTMF_CALL_STATE_NONE ||
if (
#ifdef ENABLE_DTMF_CALLING
gDTMF_CallState != DTMF_CALL_STATE_NONE ||
#endif
gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_APOLLO ||
gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_OFF ||
gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_TX_DOWN)
@@ -434,7 +455,7 @@ void DTMF_Reply(void)
if (gEeprom.DTMF_SIDE_TONE)
{ // the user will also hear the transmitted tones
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
gEnableSpeaker = true;
}
@@ -450,7 +471,7 @@ void DTMF_Reply(void)
gEeprom.DTMF_CODE_PERSIST_TIME,
gEeprom.DTMF_CODE_INTERVAL_TIME);
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
gEnableSpeaker = false;

View File

@@ -75,14 +75,15 @@ extern uint8_t gDTMF_InputBox_Index;
extern bool gDTMF_InputMode;
extern uint8_t gDTMF_PreviousIndex;
extern char gDTMF_RX_live[20];
extern uint8_t gDTMF_RX_live_timeout;
#ifdef ENABLE_DTMF_CALLING
extern char gDTMF_RX[17];
extern uint8_t gDTMF_RX_index;
extern uint8_t gDTMF_RX_timeout;
extern bool gDTMF_RX_pending;
extern char gDTMF_RX_live[20];
extern uint8_t gDTMF_RX_live_timeout;
extern bool gIsDtmfContactValid;
extern char gDTMF_ID[4];
extern char gDTMF_Caller[4];
@@ -92,21 +93,25 @@ extern uint8_t gDTMF_DecodeRingCountdown_500ms;
extern uint8_t gDTMF_chosen_contact;
extern uint8_t gDTMF_auto_reset_time_500ms;
extern DTMF_CallState_t gDTMF_CallState;
extern DTMF_ReplyState_t gDTMF_ReplyState;
extern DTMF_CallMode_t gDTMF_CallMode;
extern bool gDTMF_IsTx;
extern uint8_t gDTMF_TxStopCountdown_500ms;
#endif
extern DTMF_ReplyState_t gDTMF_ReplyState;
void DTMF_clear_RX(void);
bool DTMF_ValidateCodes(char *pCode, const unsigned int size);
bool DTMF_GetContact(const int Index, char *pContact);
bool DTMF_FindContact(const char *pContact, char *pResult);
char DTMF_GetCharacter(const unsigned int code);
bool DTMF_CompareMessage(const char *pDTMF, const char *pTemplate, const unsigned int size, const bool bFlag);
DTMF_CallMode_t DTMF_CheckGroupCall(const char *pDTMF, const unsigned int size);
void DTMF_clear_input_box(void);
void DTMF_Append(const char vode);
void DTMF_HandleRequest(void);
void DTMF_Reply(void);
#ifdef ENABLE_DTMF_CALLING
void DTMF_clear_RX(void);
DTMF_CallMode_t DTMF_CheckGroupCall(const char *pDTMF, const unsigned int size);
bool DTMF_GetContact(const int Index, char *pContact);
bool DTMF_FindContact(const char *pContact, char *pResult);
void DTMF_HandleRequest(void);
#endif
#endif

191
app/fm.c
View File

@@ -47,6 +47,19 @@ bool gFM_FoundFrequency;
bool gFM_AutoScan;
uint16_t gFM_RestoreCountdown_10ms;
const uint8_t BUTTON_STATE_PRESSED = 1 << 0;
const uint8_t BUTTON_STATE_HELD = 1 << 1;
const uint8_t BUTTON_EVENT_PRESSED = BUTTON_STATE_PRESSED;
const uint8_t BUTTON_EVENT_HELD = BUTTON_STATE_PRESSED | BUTTON_STATE_HELD;
const uint8_t BUTTON_EVENT_SHORT = 0;
const uint8_t BUTTON_EVENT_LONG = BUTTON_STATE_HELD;
static void Key_FUNC(KEY_Code_t Key, uint8_t state);
bool FM_CheckValidChannel(uint8_t Channel)
{
return (Channel < ARRAY_SIZE(gFM_Channels) && (gFM_Channels[Channel] >= 760 && gFM_Channels[Channel] < 1080)) ? true : false;
@@ -96,7 +109,7 @@ void FM_TurnOff(void)
gFM_ScanState = FM_SCAN_OFF;
gFM_RestoreCountdown_10ms = 0;
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
gEnableSpeaker = false;
@@ -119,7 +132,7 @@ void FM_EraseChannels(void)
void FM_Tune(uint16_t Frequency, int8_t Step, bool bFlag)
{
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
gEnableSpeaker = false;
@@ -166,7 +179,7 @@ void FM_PlayAndUpdate(void)
gScheduleFM = false;
gAskToSave = false;
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
gEnableSpeaker = true;
}
@@ -223,32 +236,23 @@ Bail:
return ret;
}
static void FM_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
static void Key_DIGITS(KEY_Code_t Key, uint8_t state)
{
#define STATE_FREQ_MODE 0
#define STATE_MR_MODE 1
#define STATE_SAVE 2
enum { STATE_FREQ_MODE, STATE_MR_MODE, STATE_SAVE };
if (!bKeyHeld && bKeyPressed)
{
if (!gWasFKeyPressed)
{
if (state == BUTTON_EVENT_SHORT && !gWasFKeyPressed) {
uint8_t State;
if (gAskToDelete)
{
if (gAskToDelete) {
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
if (gAskToSave)
{
if (gAskToSave) {
State = STATE_SAVE;
}
else
{
if (gFM_ScanState != FM_SCAN_OFF)
{
else {
if (gFM_ScanState != FM_SCAN_OFF) {
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
@@ -260,59 +264,47 @@ static void FM_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
gRequestDisplayScreen = DISPLAY_FM;
if (State == STATE_FREQ_MODE)
{
if (gInputBoxIndex == 1)
{
if (gInputBox[0] > 1)
{
if (State == STATE_FREQ_MODE) {
if (gInputBoxIndex == 1) {
if (gInputBox[0] > 1) {
gInputBox[1] = gInputBox[0];
gInputBox[0] = 0;
gInputBoxIndex = 2;
}
}
else
if (gInputBoxIndex > 3)
{
else if (gInputBoxIndex > 3) {
uint32_t Frequency;
gInputBoxIndex = 0;
Frequency = StrToUL(INPUTBOX_GetAscii());
if (Frequency < gEeprom.FM_LowerLimit || gEeprom.FM_UpperLimit < Frequency)
{
if (Frequency < gEeprom.FM_LowerLimit || gEeprom.FM_UpperLimit < Frequency) {
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
gRequestDisplayScreen = DISPLAY_FM;
return;
}
gEeprom.FM_SelectedFrequency = (uint16_t)Frequency;
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
gEeprom.FM_FrequencyPlaying = gEeprom.FM_SelectedFrequency;
BK1080_SetFrequency(gEeprom.FM_FrequencyPlaying);
gRequestSaveFM = true;
return;
}
}
else
if (gInputBoxIndex == 2)
{
else if (gInputBoxIndex == 2) {
uint8_t Channel;
gInputBoxIndex = 0;
Channel = ((gInputBox[0] * 10) + gInputBox[1]) - 1;
if (State == STATE_MR_MODE)
{
if (FM_CheckValidChannel(Channel))
{
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
if (State == STATE_MR_MODE) {
if (FM_CheckValidChannel(Channel)) {
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
gEeprom.FM_SelectedChannel = Channel;
gEeprom.FM_FrequencyPlaying = gFM_Channels[Channel];
BK1080_SetFrequency(gEeprom.FM_FrequencyPlaying);
@@ -320,12 +312,10 @@ static void FM_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
return;
}
}
else
if (Channel < 20)
{
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
else if (Channel < 20) {
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
gRequestDisplayScreen = DISPLAY_FM;
gInputBoxIndex = 0;
gFM_ChannelPosition = Channel;
@@ -336,25 +326,31 @@ static void FM_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
return;
}
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
}
else
Key_FUNC(Key, state);
}
return;
}
static void Key_FUNC(KEY_Code_t Key, uint8_t state)
{
if (state == BUTTON_EVENT_SHORT || state == BUTTON_EVENT_HELD)
{
bool autoScan = gWasFKeyPressed || (state == BUTTON_EVENT_HELD);
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
gWasFKeyPressed = false;
gUpdateStatus = true;
gRequestDisplayScreen = DISPLAY_FM;
switch (Key)
{
switch (Key) {
case KEY_0:
ACTION_FM();
break;
case KEY_1:
case KEY_3:
gEeprom.FM_IsMrMode = !gEeprom.FM_IsMrMode;
if (!FM_ConfigureChannelState())
@@ -366,12 +362,8 @@ static void FM_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
break;
case KEY_2:
ACTION_Scan(true);
break;
case KEY_3:
ACTION_Scan(false);
case KEY_STAR:
ACTION_Scan(autoScan);
break;
default:
@@ -381,12 +373,9 @@ static void FM_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
}
}
static void FM_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
static void Key_EXIT(uint8_t state)
{
if (bKeyHeld)
return;
if (!bKeyPressed)
if (state != BUTTON_EVENT_SHORT)
return;
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
@@ -441,13 +430,11 @@ static void FM_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
gRequestDisplayScreen = DISPLAY_FM;
}
static void FM_Key_MENU(bool bKeyPressed, bool bKeyHeld)
static void Key_MENU(uint8_t state)
{
if (bKeyHeld)
if (state != BUTTON_EVENT_SHORT)
return;
if (!bKeyPressed)
return;
gRequestDisplayScreen = DISPLAY_FM;
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
@@ -501,38 +488,29 @@ static void FM_Key_MENU(bool bKeyPressed, bool bKeyHeld)
}
}
static void FM_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Step)
static void Key_UP_DOWN(uint8_t state, int8_t Step)
{
if (bKeyHeld || !bKeyPressed)
{
if (gInputBoxIndex)
return;
if (!bKeyPressed)
return;
}
else
{
if (gInputBoxIndex)
{
if (state == BUTTON_EVENT_PRESSED) {
if (gInputBoxIndex) {
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
}
else {
if (gInputBoxIndex || state!=BUTTON_EVENT_HELD)
return;
}
if (gAskToSave)
{
if (gAskToSave) {
gRequestDisplayScreen = DISPLAY_FM;
gFM_ChannelPosition = NUMBER_AddWithWraparound(gFM_ChannelPosition, Step, 0, 19);
return;
}
if (gFM_ScanState != FM_SCAN_OFF)
{
if (gFM_AutoScan)
{
if (gFM_ScanState != FM_SCAN_OFF) {
if (gFM_AutoScan) {
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
@@ -542,8 +520,7 @@ static void FM_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Step)
return;
}
if (gEeprom.FM_IsMrMode)
{
if (gEeprom.FM_IsMrMode) {
const uint8_t Channel = FM_FindNextChannel(gEeprom.FM_SelectedChannel + Step, Step);
if (Channel == 0xFF || gEeprom.FM_SelectedChannel == Channel)
goto Bail;
@@ -551,8 +528,7 @@ static void FM_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Step)
gEeprom.FM_SelectedChannel = Channel;
gEeprom.FM_FrequencyPlaying = gFM_Channels[Channel];
}
else
{
else {
uint16_t Frequency = gEeprom.FM_SelectedFrequency + Step;
if (Frequency < gEeprom.FM_LowerLimit)
Frequency = gEeprom.FM_UpperLimit;
@@ -574,6 +550,10 @@ Bail:
void FM_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
{
uint8_t state = bKeyPressed + 2 * bKeyHeld;
switch (Key)
{
case KEY_0:
@@ -586,19 +566,22 @@ void FM_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
case KEY_7:
case KEY_8:
case KEY_9:
FM_Key_DIGITS(Key, bKeyPressed, bKeyHeld);
Key_DIGITS(Key, state);
break;
case KEY_STAR:
Key_FUNC(Key, state);
break;
case KEY_MENU:
FM_Key_MENU(bKeyPressed, bKeyHeld);
Key_MENU(state);
return;
case KEY_UP:
FM_Key_UP_DOWN(bKeyPressed, bKeyHeld, 1);
Key_UP_DOWN(state, 1);
break;
case KEY_DOWN:
FM_Key_UP_DOWN(bKeyPressed, bKeyHeld, -1);
Key_UP_DOWN(state, -1);
break;;
case KEY_EXIT:
FM_Key_EXIT(bKeyPressed, bKeyHeld);
Key_EXIT(state);
break;
case KEY_F:
GENERIC_Key_F(bKeyPressed, bKeyHeld);
@@ -625,7 +608,7 @@ void FM_Play(void)
if (!gEeprom.FM_IsMrMode)
gEeprom.FM_SelectedFrequency = gEeprom.FM_FrequencyPlaying;
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
gEnableSpeaker = true;
GUI_SelectNextDisplay(DISPLAY_FM);
@@ -659,7 +642,7 @@ void FM_Start(void)
BK1080_Init(gEeprom.FM_FrequencyPlaying, true);
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
gEnableSpeaker = true;
gUpdateStatus = true;

View File

@@ -17,6 +17,7 @@
#include <string.h>
#include "app/app.h"
#include "app/chFrScanner.h"
#include "app/common.h"
#ifdef ENABLE_FMRADIO
@@ -142,36 +143,21 @@ void GENERIC_Key_PTT(bool bKeyPressed)
// 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;
}
if (gScanStateDir != SCAN_OFF)
{ // frequency/channel scanning . .stop
CHFRSCANNER_Stop();
goto cancel_tx;
}
#ifdef ENABLE_FMRADIO
if (gFM_ScanState != FM_SCAN_OFF)
{ // FM radio is scanning .. stop
@@ -198,6 +184,7 @@ void GENERIC_Key_PTT(bool bKeyPressed)
if (gScreenToDisplay != DISPLAY_MENU) // 1of11 .. don't close the menu
gRequestDisplayScreen = DISPLAY_MAIN;
if (!gDTMF_InputMode && gDTMF_InputBox_Index == 0)
goto start_tx; // wasn't entering a DTMF code .. start TX'ing (maybe)
@@ -212,28 +199,20 @@ void GENERIC_Key_PTT(bool bKeyPressed)
if (gDTMF_InputBox_Index < sizeof(gDTMF_InputBox))
gDTMF_InputBox[gDTMF_InputBox_Index] = 0; // NULL term the string
#if 0
// append our DTMF ID to the inputted DTMF code -
// IF the user inputted code is exactly 3 digits long
if (gDTMF_InputBox_Index == 3)
gDTMF_CallMode = DTMF_CheckGroupCall(gDTMF_InputBox, 3);
else
gDTMF_CallMode = DTMF_CALL_MODE_DTMF;
#else
// append our DTMF ID to the inputted DTMF code -
// IF the user inputted code is exactly 3 digits long and D-DCD is enabled
if (gDTMF_InputBox_Index == 3 && gTxVfo->DTMF_DECODING_ENABLE > 0)
gDTMF_CallMode = DTMF_CheckGroupCall(gDTMF_InputBox, 3);
else
gDTMF_CallMode = DTMF_CALL_MODE_DTMF;
#endif
#ifdef ENABLE_DTMF_CALLING
// append our DTMF ID to the inputted DTMF code -
// IF the user inputted code is exactly 3 digits long and D-DCD is enabled
if (gDTMF_InputBox_Index == 3 && gTxVfo->DTMF_DECODING_ENABLE > 0)
gDTMF_CallMode = DTMF_CheckGroupCall(gDTMF_InputBox, 3);
else
gDTMF_CallMode = DTMF_CALL_MODE_DTMF;
gDTMF_State = DTMF_STATE_0;
#endif
// remember the DTMF string
gDTMF_PreviousIndex = gDTMF_InputBox_Index;
strcpy(gDTMF_String, gDTMF_InputBox);
gDTMF_ReplyState = DTMF_REPLY_ANI;
gDTMF_State = DTMF_STATE_0;
}
DTMF_clear_input_box();

View File

@@ -18,6 +18,7 @@
#include "app/action.h"
#include "app/app.h"
#include "app/chFrScanner.h"
#include "app/common.h"
#ifdef ENABLE_FMRADIO
#include "app/fm.h"
@@ -45,9 +46,16 @@
void toggle_chan_scanlist(void)
{ // toggle the selected channels scanlist setting
if (gScreenToDisplay == DISPLAY_SCANNER || !IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE))
if ( SCANNER_IsScanning())
return;
if(!IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE)) {
#ifdef ENABLE_SCAN_RANGES
gScanRangeStart = gScanRangeStart ? 0 : gTxVfo->pRX->Frequency;
#endif
return;
}
if (gTxVfo->SCANLIST1_PARTICIPATION)
{
if (gTxVfo->SCANLIST2_PARTICIPATION)
@@ -105,7 +113,7 @@ static void processFKeyFunction(const KEY_Code_t Key, const bool beep)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
#ifdef ENABLE_COPY_CHAN_TO_VFO
if (gEeprom.VFO_OPEN && gCssScanMode == CSS_SCAN_MODE_OFF)
if (gEeprom.VFO_OPEN && !gCssBackgroundScan)
{
if (gScanStateDir != SCAN_OFF)
@@ -183,39 +191,7 @@ static void processFKeyFunction(const KEY_Code_t Key, const bool beep)
break;
case KEY_3:
#ifdef ENABLE_NOAA
if (gEeprom.VFO_OPEN && IS_NOT_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
#else
if (gEeprom.VFO_OPEN)
#endif
{
uint8_t Channel;
if (IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE))
{ // swap to frequency mode
gEeprom.ScreenChannel[Vfo] = gEeprom.FreqChannel[gEeprom.TX_VFO];
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_FREQUENCY_MODE;
#endif
gRequestSaveVFO = true;
gVfoConfigureMode = VFO_CONFIGURE_RELOAD;
break;
}
Channel = RADIO_FindNextChannel(gEeprom.MrChannel[gEeprom.TX_VFO], 1, false, 0);
if (Channel != 0xFF)
{ // swap to channel mode
gEeprom.ScreenChannel[Vfo] = Channel;
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_CHANNEL_MODE);
AUDIO_SetDigitVoice(1, Channel + 1);
gAnotherVoiceID = (VOICE_ID_t)0xFE;
#endif
gRequestSaveVFO = true;
gVfoConfigureMode = VFO_CONFIGURE_RELOAD;
break;
}
}
COMMON_SwitchVFOMode();
if (beep)
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
@@ -224,22 +200,22 @@ static void processFKeyFunction(const KEY_Code_t Key, const bool beep)
case KEY_4:
gWasFKeyPressed = false;
gFlagStartScan = true;
gScanSingleFrequency = false;
gBackup_CROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX;
gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF;
gUpdateStatus = true;
gUpdateStatus = true;
if (beep)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
SCANNER_Start(false);
gRequestDisplayScreen = DISPLAY_SCANNER;
break;
case KEY_5:
if(beep) {
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
if (!IS_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
{
gEeprom.ScreenChannel[Vfo] = gEeprom.NoaaChannel[gEeprom.TX_VFO];
}
@@ -390,7 +366,7 @@ static void MAIN_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
}
// #ifdef ENABLE_NOAA
// if (IS_NOT_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
// if (!IS_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
// #endif
if (IS_FREQ_CHANNEL(gTxVfo->CHANNEL_SAVE))
{ // user is entering a frequency
@@ -444,10 +420,7 @@ static void MAIN_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
RADIO_ConfigureChannel(Vfo, VFO_CONFIGURE_RELOAD);
}
// Frequency += 75; // is this meant to be rounding ?
Frequency += gTxVfo->StepFrequency / 2; // no idea, but this is
Frequency = FREQUENCY_FloorToStep(Frequency, gTxVfo->StepFrequency, frequencyBandTable[gTxVfo->Band].lower);
Frequency = FREQUENCY_RoundToStep(Frequency, gTxVfo->StepFrequency);
if (Frequency >= BX4819_band1.upper && Frequency < BX4819_band2.lower)
{ // clamp the frequency to the limit
@@ -514,12 +487,14 @@ static void MAIN_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
#ifdef ENABLE_DTMF_CALLING
if (gDTMF_CallState != DTMF_CALL_STATE_NONE && gCurrentFunction != FUNCTION_TRANSMIT)
{ // clear CALL mode being displayed
gDTMF_CallState = DTMF_CALL_STATE_NONE;
gUpdateDisplay = true;
return;
}
#endif
#ifdef ENABLE_FMRADIO
if (!gFmRadioMode)
@@ -540,8 +515,8 @@ static void MAIN_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
}
else
{
bScanKeepFrequency = false;
SCANNER_Stop();
gScanKeepResult = false;
CHFRSCANNER_Stop();
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
@@ -599,7 +574,7 @@ static void MAIN_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
gWasFKeyPressed = false;
gUpdateStatus = true;
ACTION_Handle(KEY_MENU, bKeyPressed, bKeyHeld);
ACTION_Handle(KEY_MENU, bKeyPressed, bKeyHeld);
}
}
@@ -613,6 +588,11 @@ static void MAIN_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
if (bFlag)
{
if (gScanStateDir != SCAN_OFF) {
CHFRSCANNER_Stop();
return;
}
gFlagRefreshSetting = true;
gRequestDisplayScreen = DISPLAY_MENU;
#ifdef ENABLE_VOICE
@@ -662,7 +642,7 @@ static void MAIN_Key_STAR(bool bKeyPressed, bool bKeyHeld)
{
#ifdef ENABLE_NOAA
if (gScanStateDir == SCAN_OFF && IS_NOT_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
if (gScanStateDir == SCAN_OFF && !IS_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
#else
if (gScanStateDir == SCAN_OFF)
#endif
@@ -681,19 +661,18 @@ static void MAIN_Key_STAR(bool bKeyPressed, bool bKeyHeld)
{ // with the F-key
gWasFKeyPressed = false;
#ifdef ENABLE_NOAA
if (IS_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE))
{
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
#endif
#ifdef ENABLE_NOAA
if (IS_NOAA_CHANNEL(gTxVfo->CHANNEL_SAVE)) {
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
#endif
// scan the CTCSS/DCS code
gFlagStartScan = true;
gScanSingleFrequency = true;
gBackup_CROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX;
gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF;
SCANNER_Start(true);
gRequestDisplayScreen = DISPLAY_SCANNER;
}
gPttWasReleased = true;
@@ -740,7 +719,7 @@ static void MAIN_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
if (gScanStateDir == SCAN_OFF)
{
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(Channel))
if (!IS_NOAA_CHANNEL(Channel))
#endif
{
uint8_t Next;
@@ -794,7 +773,7 @@ static void MAIN_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
}
// jump to the next channel
SCANNER_NextChannel(false, Direction);
CHFRSCANNER_Start(false, Direction);
gScanPauseDelayIn_10ms = 1;
gScheduleScanListen = false;

View File

@@ -47,6 +47,8 @@
#define ARRAY_SIZE(x) (sizeof(x) / sizeof(x[0]))
#endif
uint8_t gUnlockAllTxConfCnt;
#ifdef ENABLE_F_CAL_MENU
void writeXtalFreqCal(const int32_t value, const bool update_eeprom)
{
@@ -75,27 +77,39 @@
}
#endif
void MENU_StartCssScan(int8_t Direction)
void MENU_StartCssScan(void)
{
gCssScanMode = CSS_SCAN_MODE_SCANNING;
SCANNER_Start(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;
gScheduleScanListen = false;
gUpdateStatus = true;
gUpdateDisplay = true;
}
void MENU_StopCssScan(void)
{
gCssScanMode = CSS_SCAN_MODE_OFF;
gCssBackgroundScan = false;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
#endif
gUpdateDisplay = true;
gUpdateStatus = true;
RADIO_SetupRegisters(true);
}
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:
*pMin = 0;
*pMax = ARRAY_SIZE(StepFrequencyTable) - 1;
*pMax = ARRAY_SIZE(gStepFrequencyTable) - 1;
break;
case MENU_ABR:
@@ -117,6 +131,16 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
*pMax = ARRAY_SIZE(gSubMenu_BACKLIGHT) - 1;
break;
case MENU_ABR_MIN:
*pMin = 0;
*pMax = 9;
break;
case MENU_ABR_MAX:
*pMin = 1;
*pMax = 10;
break;
case MENU_F_LOCK:
*pMin = 0;
*pMax = ARRAY_SIZE(gSubMenu_F_LOCK) - 1;
@@ -220,9 +244,10 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
case MENU_S_ADD2:
case MENU_STE:
case MENU_D_ST:
#ifdef ENABLE_DTMF_CALLING
case MENU_D_DCD:
#endif
case MENU_D_LIVE_DEC:
case MENU_AM:
#ifdef ENABLE_NOAA
case MENU_NOAA_S:
#endif
@@ -231,11 +256,15 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
case MENU_500TX:
case MENU_350EN:
case MENU_SCREN:
case MENU_TX_EN:
*pMin = 0;
*pMax = ARRAY_SIZE(gSubMenu_OFF_ON) - 1;
break;
case MENU_AM:
*pMin = 0;
*pMax = ARRAY_SIZE(gModulationStr) - 1;
break;
case MENU_SCR:
*pMin = 0;
*pMax = ARRAY_SIZE(gSubMenu_SCRAMBLER) - 1;
@@ -282,12 +311,13 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
*pMin = 0;
*pMax = 2;
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_RSP:
*pMin = 0;
*pMax = ARRAY_SIZE(gSubMenu_D_RSP) - 1;
break;
#endif
case MENU_PTT_ID:
*pMin = 0;
*pMax = ARRAY_SIZE(gSubMenu_PTT_ID) - 1;
@@ -298,21 +328,23 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
*pMax = ARRAY_SIZE(gSubMenu_BAT_TXT) - 1;
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_HOLD:
*pMin = 5;
*pMax = 60;
break;
#endif
case MENU_D_PRE:
*pMin = 3;
*pMax = 99;
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_LIST:
*pMin = 1;
*pMax = 16;
break;
#endif
#ifdef ENABLE_F_CAL_MENU
case MENU_F_CALI:
*pMin = -50;
@@ -321,8 +353,13 @@ int MENU_GetLimits(uint8_t menu_id, int32_t *pMin, int32_t *pMax)
#endif
case MENU_BATCAL:
*pMin = 1600; // 0
*pMax = 2200; // 2300
*pMin = 1600;
*pMax = 2200;
break;
case MENU_BATTYP:
*pMin = 0;
*pMax = 1;
break;
case MENU_F1SHRT:
@@ -348,14 +385,14 @@ void MENU_AcceptSetting(void)
uint8_t Code;
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;
else
if (gSubMenuSelection > Max) gSubMenuSelection = Max;
}
switch (GetCurrentMenuId())
switch (UI_MENU_GetCurrentMenuId())
{
default:
return;
@@ -366,7 +403,7 @@ void MENU_AcceptSetting(void)
break;
case MENU_STEP:
gTxVfo->STEP_SETTING = gSubMenuSelection;
gTxVfo->STEP_SETTING = FREQUENCY_GetStepIdxFromSortedIdx(gSubMenuSelection);
if (IS_FREQ_CHANNEL(gTxVfo->CHANNEL_SAVE))
{
gRequestSaveChannel = 1;
@@ -516,9 +553,19 @@ void MENU_AcceptSetting(void)
#endif
case MENU_ABR:
gEeprom.BACKLIGHT = gSubMenuSelection;
gEeprom.BACKLIGHT_TIME = gSubMenuSelection;
break;
case MENU_ABR_MIN:
gEeprom.BACKLIGHT_MIN = gSubMenuSelection;
gEeprom.BACKLIGHT_MAX = MAX(gSubMenuSelection + 1 , gEeprom.BACKLIGHT_MAX);
break;
case MENU_ABR_MAX:
gEeprom.BACKLIGHT_MAX = gSubMenuSelection;
gEeprom.BACKLIGHT_MIN = MIN(gSubMenuSelection - 1, gEeprom.BACKLIGHT_MIN);
break;
case MENU_ABR_ON_TX_RX:
gSetting_backlight_on_tx_rx = gSubMenuSelection;
break;
@@ -574,7 +621,7 @@ void MENU_AcceptSetting(void)
return;
case MENU_STE:
gEeprom.TAIL_NOTE_ELIMINATION = gSubMenuSelection;
gEeprom.TAIL_TONE_ELIMINATION = gSubMenuSelection;
break;
case MENU_RP_STE:
@@ -619,6 +666,7 @@ void MENU_AcceptSetting(void)
gEeprom.DTMF_SIDE_TONE = gSubMenuSelection;
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_RSP:
gEeprom.DTMF_DECODE_RESPONSE = gSubMenuSelection;
break;
@@ -626,7 +674,7 @@ void MENU_AcceptSetting(void)
case MENU_D_HOLD:
gEeprom.DTMF_auto_reset_time = gSubMenuSelection;
break;
#endif
case MENU_D_PRE:
gEeprom.DTMF_PRELOAD_TIME = gSubMenuSelection * 10;
break;
@@ -640,11 +688,13 @@ void MENU_AcceptSetting(void)
gSetting_battery_text = gSubMenuSelection;
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_DCD:
gTxVfo->DTMF_DECODING_ENABLE = gSubMenuSelection;
DTMF_clear_RX();
gRequestSaveChannel = 1;
return;
#endif
case MENU_D_LIVE_DEC:
gSetting_live_DTMF_decoder = gSubMenuSelection;
@@ -656,6 +706,7 @@ void MENU_AcceptSetting(void)
gUpdateStatus = true;
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_LIST:
gDTMF_chosen_contact = gSubMenuSelection - 1;
if (gIsDtmfContactValid)
@@ -667,7 +718,7 @@ void MENU_AcceptSetting(void)
gRequestDisplayScreen = DISPLAY_INVALID;
}
return;
#endif
case MENU_PONMSG:
gEeprom.POWER_ON_DISPLAY_MODE = gSubMenuSelection;
break;
@@ -677,7 +728,7 @@ void MENU_AcceptSetting(void)
break;
case MENU_AM:
gTxVfo->AM_mode = gSubMenuSelection;
gTxVfo->Modulation = gSubMenuSelection;
gRequestSaveChannel = 1;
return;
@@ -718,10 +769,18 @@ void MENU_AcceptSetting(void)
gSetting_350TX = gSubMenuSelection;
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;
break;
}
case MENU_200TX:
gSetting_200TX = gSubMenuSelection;
break;
@@ -741,10 +800,6 @@ void MENU_AcceptSetting(void)
gFlagReconfigureVfos = true;
break;
case MENU_TX_EN:
gSetting_TX_EN = gSubMenuSelection;
break;
#ifdef ENABLE_F_CAL_MENU
case MENU_F_CALI:
writeXtalFreqCal(gSubMenuSelection, true);
@@ -752,17 +807,21 @@ void MENU_AcceptSetting(void)
#endif
case MENU_BATCAL:
{
gBatteryCalibration[0] = (520ul * gSubMenuSelection) / 760; // 5.20V empty, blinking above this value, reduced functionality below
gBatteryCalibration[1] = (700ul * gSubMenuSelection) / 760; // 7.00V, ~5%, 1 bars above this value
gBatteryCalibration[2] = (745ul * gSubMenuSelection) / 760; // 7.45V, ~17%, 2 bars above this value
{ // 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[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[3] = gSubMenuSelection; // 7.6V, ~29%, 3 bars above this value
gBatteryCalibration[4] = (788ul * gSubMenuSelection) / 760; // 7.88V, ~65%, 4 bars above this value
gBatteryCalibration[5] = 2300;
// gBatteryCalibration[4] = (771ul * gSubMenuSelection) / 760; // 7.71V, ~65%, 4 bars above this value
// gBatteryCalibration[5] = 2300;
SETTINGS_SaveBatteryCalibration(gBatteryCalibration);
return;
}
case MENU_BATTYP:
gEeprom.BATTERY_TYPE = gSubMenuSelection;
break;
case MENU_F1SHRT:
case MENU_F1LONG:
case MENU_F2SHRT:
@@ -775,7 +834,7 @@ void MENU_AcceptSetting(void)
&gEeprom.KEY_2_SHORT_PRESS_ACTION,
&gEeprom.KEY_2_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;
@@ -784,53 +843,12 @@ void MENU_AcceptSetting(void)
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)
{
int32_t Min;
int32_t Max;
if (!MENU_GetLimits(GetCurrentMenuId(), &Min, &Max))
if (!MENU_GetLimits(UI_MENU_GetCurrentMenuId(), &Min, &Max))
{
int32_t Selection = gSubMenuSelection;
if (Selection < Min) Selection = Min;
@@ -842,42 +860,55 @@ static void MENU_ClampSelection(int8_t Direction)
void MENU_ShowCurrentSetting(void)
{
switch (GetCurrentMenuId())
switch (UI_MENU_GetCurrentMenuId())
{
case MENU_SQL:
gSubMenuSelection = gEeprom.SQUELCH_LEVEL;
break;
case MENU_STEP:
gSubMenuSelection = gTxVfo->STEP_SETTING;
gSubMenuSelection = FREQUENCY_GetSortedIdxFromStepIdx(gTxVfo->STEP_SETTING);
break;
case MENU_TXP:
gSubMenuSelection = gTxVfo->OUTPUT_POWER;
break;
case MENU_R_DCS:
switch (gTxVfo->freq_config_RX.CodeType)
{
case MENU_RESET:
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:
gSubMenuSelection = gTxVfo->freq_config_RX.Code + 1;
gSubMenuSelection = code + 1;
break;
case CODE_TYPE_REVERSE_DIGITAL:
gSubMenuSelection = gTxVfo->freq_config_RX.Code + 105;
gSubMenuSelection = code + 105;
break;
default:
gSubMenuSelection = 0;
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;
break;
}
case MENU_T_DCS:
switch (gTxVfo->freq_config_TX.CodeType)
@@ -934,19 +965,24 @@ void MENU_ShowCurrentSetting(void)
gSubMenuSelection = gEeprom.BATTERY_SAVE;
break;
#ifdef ENABLE_VOX
case MENU_VOX:
gSubMenuSelection = gEeprom.VOX_SWITCH ? gEeprom.VOX_LEVEL + 1 : 0;
break;
#endif
#ifdef ENABLE_VOX
case MENU_VOX:
gSubMenuSelection = gEeprom.VOX_SWITCH ? gEeprom.VOX_LEVEL + 1 : 0;
break;
#endif
case MENU_ABR:
gSubMenuSelection = gEeprom.BACKLIGHT;
gBacklightCountdown = 0;
GPIO_SetBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT); // turn the backlight ON while in backlight menu
gSubMenuSelection = gEeprom.BACKLIGHT_TIME;
break;
case MENU_ABR_MIN:
gSubMenuSelection = gEeprom.BACKLIGHT_MIN;
break;
case MENU_ABR_MAX:
gSubMenuSelection = gEeprom.BACKLIGHT_MAX;
break;
case MENU_ABR_ON_TX_RX:
gSubMenuSelection = gSetting_backlight_on_tx_rx;
break;
@@ -963,11 +999,11 @@ void MENU_ShowCurrentSetting(void)
gSubMenuSelection = gEeprom.TX_TIMEOUT_TIMER;
break;
#ifdef ENABLE_VOICE
case MENU_VOICE:
gSubMenuSelection = gEeprom.VOICE_PROMPT;
break;
#endif
#ifdef ENABLE_VOICE
case MENU_VOICE:
gSubMenuSelection = gEeprom.VOICE_PROMPT;
break;
#endif
case MENU_SC_REV:
gSubMenuSelection = gEeprom.SCAN_RESUME_MODE;
@@ -990,7 +1026,7 @@ void MENU_ShowCurrentSetting(void)
break;
case MENU_STE:
gSubMenuSelection = gEeprom.TAIL_NOTE_ELIMINATION;
gSubMenuSelection = gEeprom.TAIL_TONE_ELIMINATION;
break;
case MENU_RP_STE:
@@ -1001,11 +1037,11 @@ void MENU_ShowCurrentSetting(void)
gSubMenuSelection = gEeprom.MIC_SENSITIVITY;
break;
#ifdef ENABLE_AUDIO_BAR
case MENU_MIC_BAR:
gSubMenuSelection = gSetting_mic_bar;
break;
#endif
#ifdef ENABLE_AUDIO_BAR
case MENU_MIC_BAR:
gSubMenuSelection = gSetting_mic_bar;
break;
#endif
case MENU_COMPAND:
gSubMenuSelection = gTxVfo->Compander;
@@ -1037,6 +1073,7 @@ void MENU_ShowCurrentSetting(void)
gSubMenuSelection = gEeprom.DTMF_SIDE_TONE;
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_RSP:
gSubMenuSelection = gEeprom.DTMF_DECODE_RESPONSE;
break;
@@ -1044,7 +1081,7 @@ void MENU_ShowCurrentSetting(void)
case MENU_D_HOLD:
gSubMenuSelection = gEeprom.DTMF_auto_reset_time;
break;
#endif
case MENU_D_PRE:
gSubMenuSelection = gEeprom.DTMF_PRELOAD_TIME / 10;
break;
@@ -1057,6 +1094,7 @@ void MENU_ShowCurrentSetting(void)
gSubMenuSelection = gSetting_battery_text;
return;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_DCD:
gSubMenuSelection = gTxVfo->DTMF_DECODING_ENABLE;
break;
@@ -1064,7 +1102,7 @@ void MENU_ShowCurrentSetting(void)
case MENU_D_LIST:
gSubMenuSelection = gDTMF_chosen_contact + 1;
break;
#endif
case MENU_D_LIVE_DEC:
gSubMenuSelection = gSetting_live_DTMF_decoder;
break;
@@ -1078,14 +1116,14 @@ void MENU_ShowCurrentSetting(void)
break;
case MENU_AM:
gSubMenuSelection = gTxVfo->AM_mode;
gSubMenuSelection = gTxVfo->Modulation;
break;
#ifdef ENABLE_AM_FIX
case MENU_AM_FIX:
gSubMenuSelection = gSetting_AM_fix;
break;
#endif
#ifdef ENABLE_AM_FIX
case MENU_AM_FIX:
gSubMenuSelection = gSetting_AM_fix;
break;
#endif
#ifdef ENABLE_AM_FIX_TEST1
case MENU_AM_FIX_TEST1:
@@ -1131,10 +1169,6 @@ void MENU_ShowCurrentSetting(void)
gSubMenuSelection = gSetting_ScrambleEnable;
break;
case MENU_TX_EN:
gSubMenuSelection = gSetting_TX_EN;
break;
#ifdef ENABLE_F_CAL_MENU
case MENU_F_CALI:
gSubMenuSelection = gEeprom.BK4819_XTAL_FREQ_LOW;
@@ -1145,6 +1179,10 @@ void MENU_ShowCurrentSetting(void)
gSubMenuSelection = gBatteryCalibration[3];
break;
case MENU_BATTYP:
gSubMenuSelection = gEeprom.BATTERY_TYPE;
break;
case MENU_F1SHRT:
case MENU_F1LONG:
case MENU_F2SHRT:
@@ -1157,7 +1195,7 @@ void MENU_ShowCurrentSetting(void)
&gEeprom.KEY_2_SHORT_PRESS_ACTION,
&gEeprom.KEY_2_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++) {
if(gSubMenu_SIDEFUNCTIONS[i].id==id) {
@@ -1186,7 +1224,7 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
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
if (edit_index < 10)
@@ -1251,7 +1289,7 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
return;
}
if (GetCurrentMenuId() == MENU_OFFSET)
if (UI_MENU_GetCurrentMenuId() == MENU_OFFSET)
{
uint32_t Frequency;
@@ -1267,17 +1305,17 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
Frequency = StrToUL(INPUTBOX_GetAscii());
gSubMenuSelection = FREQUENCY_FloorToStep(Frequency + 75, gTxVfo->StepFrequency, 0);
Frequency = StrToUL(INPUTBOX_GetAscii())*100;
gSubMenuSelection = FREQUENCY_RoundToStep(Frequency, gTxVfo->StepFrequency);
gInputBoxIndex = 0;
return;
}
if (GetCurrentMenuId() == MENU_MEM_CH ||
GetCurrentMenuId() == MENU_DEL_CH ||
GetCurrentMenuId() == MENU_1_CALL ||
GetCurrentMenuId() == MENU_MEM_NAME)
if (UI_MENU_GetCurrentMenuId() == MENU_MEM_CH ||
UI_MENU_GetCurrentMenuId() == MENU_DEL_CH ||
UI_MENU_GetCurrentMenuId() == MENU_1_CALL ||
UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME)
{ // enter 3-digit channel number
if (gInputBoxIndex < 3)
@@ -1293,7 +1331,7 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
Value = ((gInputBox[0] * 100) + (gInputBox[1] * 10) + gInputBox[2]) - 1;
if (Value <= MR_CHANNEL_LAST)
if (IS_MR_CHANNEL(Value))
{
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
@@ -1306,7 +1344,7 @@ static void MENU_Key_0_to_9(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
return;
}
if (MENU_GetLimits(GetCurrentMenuId(), &Min, &Max))
if (MENU_GetLimits(UI_MENU_GetCurrentMenuId(), &Min, &Max))
{
gInputBoxIndex = 0;
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
@@ -1347,11 +1385,11 @@ static void MENU_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
if (gCssScanMode == CSS_SCAN_MODE_OFF)
if (!gCssBackgroundScan)
{
if (gIsInSubMenu)
{
if (gInputBoxIndex == 0 || GetCurrentMenuId() != MENU_OFFSET)
if (gInputBoxIndex == 0 || UI_MENU_GetCurrentMenuId() != MENU_OFFSET)
{
gAskForConfirmation = 0;
gIsInSubMenu = false;
@@ -1377,10 +1415,9 @@ static void MENU_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
gRequestDisplayScreen = DISPLAY_MAIN;
if (gEeprom.BACKLIGHT == 0)
if (gEeprom.BACKLIGHT_TIME == 0) // backlight set to always off
{
gBacklightCountdown = 0;
GPIO_ClearBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT); // turn the backlight OFF
BACKLIGHT_TurnOff(); // turn the backlight OFF
}
}
else
@@ -1408,12 +1445,12 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
if (!gIsInSubMenu)
{
#ifdef ENABLE_VOICE
if (GetCurrentMenuId() != MENU_SCR)
if (UI_MENU_GetCurrentMenuId() != MENU_SCR)
gAnotherVoiceID = MenuList[gMenuCursor].voice_id;
#endif
#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))
return; // invalid channel
#endif
@@ -1421,7 +1458,7 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
gAskForConfirmation = 0;
gIsInSubMenu = true;
// if (GetCurrentMenuId() != MENU_D_LIST)
// if (UI_MENU_GetCurrentMenuId() != MENU_D_LIST)
{
gInputBoxIndex = 0;
edit_index = -1;
@@ -1430,7 +1467,7 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
return;
}
if (GetCurrentMenuId() == MENU_MEM_NAME)
if (UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME)
{
if (edit_index < 0)
{ // enter channel name edit mode
@@ -1477,10 +1514,10 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
if (gIsInSubMenu)
{
if (GetCurrentMenuId() == MENU_RESET ||
GetCurrentMenuId() == MENU_MEM_CH ||
GetCurrentMenuId() == MENU_DEL_CH ||
GetCurrentMenuId() == MENU_MEM_NAME)
if (UI_MENU_GetCurrentMenuId() == MENU_RESET ||
UI_MENU_GetCurrentMenuId() == MENU_MEM_CH ||
UI_MENU_GetCurrentMenuId() == MENU_DEL_CH ||
UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME)
{
switch (gAskForConfirmation)
{
@@ -1493,7 +1530,7 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
UI_DisplayMenu();
if (GetCurrentMenuId() == MENU_RESET)
if (UI_MENU_GetCurrentMenuId() == MENU_RESET)
{
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_CONFIRM);
@@ -1521,14 +1558,10 @@ static void MENU_Key_MENU(const bool bKeyPressed, const bool bKeyHeld)
}
}
if (gCssScanMode != CSS_SCAN_MODE_OFF)
{
gCssScanMode = CSS_SCAN_MODE_OFF;
gUpdateStatus = true;
}
SCANNER_Stop();
#ifdef ENABLE_VOICE
if (GetCurrentMenuId() == MENU_SCR)
if (UI_MENU_GetCurrentMenuId() == MENU_SCR)
gAnotherVoiceID = (gSubMenuSelection == 0) ? VOICE_ID_SCRAMBLER_OFF : VOICE_ID_SCRAMBLER_ON;
else
gAnotherVoiceID = VOICE_ID_CONFIRM;
@@ -1544,7 +1577,7 @@ static void MENU_Key_STAR(const bool bKeyPressed, const bool bKeyHeld)
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
if (edit_index < 10)
@@ -1566,31 +1599,17 @@ static void MENU_Key_STAR(const bool bKeyPressed, const bool bKeyHeld)
RADIO_SelectVfos();
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE) && gRxVfo->AM_mode == 0)
if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE) && gRxVfo->Modulation == MODULATION_FM)
#else
if (gRxVfo->AM_mode == 0)
if (gRxVfo->Modulation == MODULATION_FM)
#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
if (gCssScanMode == CSS_SCAN_MODE_OFF)
{
MENU_StartCssScan(1);
gRequestDisplayScreen = DISPLAY_MENU;
#ifdef ENABLE_VOICE
AUDIO_SetVoiceID(0, VOICE_ID_SCANNING_BEGIN);
AUDIO_PlaySingleVoice(1);
#endif
}
if (!SCANNER_IsScanning())
MENU_StartCssScan();
else
{
MENU_StopCssScan();
gRequestDisplayScreen = DISPLAY_MENU;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_STOP;
#endif
}
}
gPttWasReleased = true;
@@ -1606,7 +1625,7 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
uint8_t Channel;
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
if (bKeyPressed && edit_index < 10 && Direction != 0)
{
@@ -1641,12 +1660,7 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
if (!bKeyPressed)
return;
if (gCssScanMode != CSS_SCAN_MODE_OFF)
{
MENU_StartCssScan(Direction);
gPttWasReleased = true;
gRequestDisplayScreen = DISPLAY_MENU;
if (SCANNER_IsScanning()) {
return;
}
@@ -1658,16 +1672,15 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
gRequestDisplayScreen = DISPLAY_MENU;
if (GetCurrentMenuId() != MENU_ABR && gEeprom.BACKLIGHT == 0)
if (UI_MENU_GetCurrentMenuId() != MENU_ABR && gEeprom.BACKLIGHT_TIME == 0) // backlight always off and not in the backlight menu
{
gBacklightCountdown = 0;
GPIO_ClearBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT); // turn the backlight OFF
BACKLIGHT_TurnOff();
}
return;
}
if (GetCurrentMenuId() == MENU_OFFSET)
if (UI_MENU_GetCurrentMenuId() == MENU_OFFSET)
{
int32_t Offset = (Direction * gTxVfo->StepFrequency) + gSubMenuSelection;
if (Offset < 99999990)
@@ -1678,14 +1691,14 @@ static void MENU_Key_UP_DOWN(bool bKeyPressed, bool bKeyHeld, int8_t Direction)
else
Offset = 0;
gSubMenuSelection = FREQUENCY_FloorToStep(Offset, gTxVfo->StepFrequency, 0);
gSubMenuSelection = FREQUENCY_RoundToStep(Offset, gTxVfo->StepFrequency);
gRequestDisplayScreen = DISPLAY_MENU;
return;
}
VFO = 0;
switch (GetCurrentMenuId())
switch (UI_MENU_GetCurrentMenuId())
{
case MENU_DEL_CH:
case MENU_1_CALL:
@@ -1745,7 +1758,7 @@ void MENU_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
MENU_Key_STAR(bKeyPressed, bKeyHeld);
break;
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
if (!bKeyHeld && bKeyPressed)
{
@@ -1777,11 +1790,11 @@ void MENU_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
if (gScreenToDisplay == DISPLAY_MENU)
{
if (GetCurrentMenuId() == MENU_VOL ||
if (UI_MENU_GetCurrentMenuId() == MENU_VOL ||
#ifdef ENABLE_F_CAL_MENU
GetCurrentMenuId() == MENU_F_CALI ||
UI_MENU_GetCurrentMenuId() == MENU_F_CALI ||
#endif
GetCurrentMenuId() == MENU_BATCAL)
UI_MENU_GetCurrentMenuId() == MENU_BATCAL)
{
gMenuCountdown = menu_timeout_long_500ms;
}

View File

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

View File

@@ -17,6 +17,7 @@
#include "app/app.h"
#include "app/dtmf.h"
#include "app/generic.h"
#include "app/menu.h"
#include "app/scanner.h"
#include "audio.h"
#include "driver/bk4819.h"
@@ -29,56 +30,45 @@
DCS_CodeType_t gScanCssResultType;
uint8_t gScanCssResultCode;
bool gFlagStartScan;
bool gFlagStopScan;
bool gScanSingleFrequency;
uint8_t gScannerEditState;
bool gScanSingleFrequency; // scan CTCSS/DCS codes for current frequency
SCAN_SaveState_t gScannerSaveState;
uint8_t gScanChannel;
uint32_t gScanFrequency;
bool gScanPauseMode;
SCAN_CssState_t gScanCssState;
volatile bool gScheduleScanListen = true;
volatile uint16_t gScanPauseDelayIn_10ms;
uint8_t gScanProgressIndicator;
uint8_t gScanHitCount;
bool gScanUseCssResult;
int8_t gScanStateDir;
bool bScanKeepFrequency;
uint8_t gRestoreMrChannel;
uint8_t gRestoreCROSS_BAND_RX_TX;
STEP_Setting_t stepSetting;
uint8_t scanHitCount;
static void SCANNER_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
{
if (!bKeyHeld && bKeyPressed)
{
if (gScannerEditState == 1)
{
uint16_t Channel;
if (gScannerSaveState == SCAN_SAVE_CHAN_SEL) {
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
INPUTBOX_Append(Key);
gRequestDisplayScreen = DISPLAY_SCANNER;
if (gInputBoxIndex < 3)
{
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
if (gInputBoxIndex < 3) {
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
return;
}
gInputBoxIndex = 0;
Channel = ((gInputBox[0] * 100) + (gInputBox[1] * 10) + gInputBox[2]) - 1;
if (Channel <= MR_CHANNEL_LAST)
{
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
gShowChPrefix = RADIO_CheckValidChannel(Channel, false, 0);
gScanChannel = (uint8_t)Channel;
uint16_t chan = ((gInputBox[0] * 100) + (gInputBox[1] * 10) + gInputBox[2]) - 1;
if (IS_MR_CHANNEL(chan)) {
#ifdef ENABLE_VOICE
gAnotherVoiceID = (VOICE_ID_t)Key;
#endif
gShowChPrefix = RADIO_CheckValidChannel(chan, false, 0);
gScanChannel = (uint8_t)chan;
return;
}
}
@@ -89,28 +79,17 @@ static void SCANNER_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
static void SCANNER_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
{
if (!bKeyHeld && bKeyPressed)
{
if (!bKeyHeld && bKeyPressed) { // short pressed
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
switch (gScannerEditState)
{
case 0:
switch (gScannerSaveState) {
case SCAN_SAVE_NO_PROMPT:
SCANNER_Stop();
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;
case 1:
if (gInputBoxIndex > 0)
{
case SCAN_SAVE_CHAN_SEL:
if (gInputBoxIndex > 0) {
gInputBox[--gInputBoxIndex] = 10;
gRequestDisplayScreen = DISPLAY_SCANNER;
break;
@@ -118,11 +97,11 @@ static void SCANNER_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
// Fallthrough
case 2:
gScannerEditState = 0;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CANCEL;
#endif
case SCAN_SAVE_CHANNEL:
gScannerSaveState = SCAN_SAVE_NO_PROMPT;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CANCEL;
#endif
gRequestDisplayScreen = DISPLAY_SCANNER;
break;
}
@@ -131,118 +110,85 @@ static void SCANNER_Key_EXIT(bool bKeyPressed, bool bKeyHeld)
static void SCANNER_Key_MENU(bool bKeyPressed, bool bKeyHeld)
{
uint8_t Channel;
if (bKeyHeld)
if (bKeyHeld || !bKeyPressed) // ignore long press or release button events
return;
if (!bKeyPressed)
return;
if (gScanCssState == SCAN_CSS_STATE_OFF && !gScanSingleFrequency)
{
if (gScanCssState == SCAN_CSS_STATE_OFF && !gScanSingleFrequency) {
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
if (gScanCssState == SCAN_CSS_STATE_SCANNING)
{
if (gScanSingleFrequency)
{
gBeepToPlay = BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL;
return;
}
if (gScanCssState == SCAN_CSS_STATE_SCANNING && gScanSingleFrequency) {
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;
return;
}
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
switch (gScannerEditState)
{
case 0:
switch (gScannerSaveState) {
case SCAN_SAVE_NO_PROMPT:
if (!gScanSingleFrequency)
{
int16_t Delta625;
uint32_t Freq250 = FREQUENCY_FloorToStep(gScanFrequency, 250, 0);
uint32_t Freq625 = FREQUENCY_FloorToStep(gScanFrequency, 625, 0);
int16_t Delta250 = (int16_t)gScanFrequency - (int16_t)Freq250;
uint32_t freq250 = FREQUENCY_RoundToStep(gScanFrequency, 250);
uint32_t freq625 = FREQUENCY_RoundToStep(gScanFrequency, 625);
if (125 < Delta250)
{
Delta250 = 250 - Delta250;
Freq250 += 250;
uint32_t diff250 = gScanFrequency > freq250 ? gScanFrequency - freq250 : freq250 - gScanFrequency;
uint32_t diff625 = gScanFrequency > freq625 ? gScanFrequency - freq625 : freq625 - gScanFrequency;
if(diff250 > diff625) {
stepSetting = STEP_6_25kHz;
gScanFrequency = freq625;
}
Delta625 = (int16_t)gScanFrequency - (int16_t)Freq625;
if (312 < Delta625)
{
Delta625 = 625 - Delta625;
Freq625 += 625;
}
if (Delta625 < Delta250)
{
gStepSetting = STEP_6_25kHz;
gScanFrequency = Freq625;
}
else
{
gStepSetting = STEP_2_5kHz;
gScanFrequency = Freq250;
else {
stepSetting = STEP_2_5kHz;
gScanFrequency = freq250;
}
}
if (gTxVfo->CHANNEL_SAVE <= MR_CHANNEL_LAST)
{
gScannerEditState = 1;
if (IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE)) {
gScannerSaveState = SCAN_SAVE_CHAN_SEL;
gScanChannel = gTxVfo->CHANNEL_SAVE;
gShowChPrefix = RADIO_CheckValidChannel(gTxVfo->CHANNEL_SAVE, false, 0);
}
else
{
gScannerEditState = 2;
else {
gScannerSaveState = SCAN_SAVE_CHANNEL;
}
gScanCssState = SCAN_CSS_STATE_FOUND;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_MEMORY_CHANNEL;
#endif
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_MEMORY_CHANNEL;
#endif
gRequestDisplayScreen = DISPLAY_SCANNER;
gUpdateStatus = true;
break;
case 1:
if (gInputBoxIndex == 0)
{
case SCAN_SAVE_CHAN_SEL:
if (gInputBoxIndex == 0) {
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
gRequestDisplayScreen = DISPLAY_SCANNER;
gScannerEditState = 2;
gScannerSaveState = SCAN_SAVE_CHANNEL;
}
break;
case 2:
if (!gScanSingleFrequency)
{
case SCAN_SAVE_CHANNEL:
if (!gScanSingleFrequency) {
RADIO_InitInfo(gTxVfo, gTxVfo->CHANNEL_SAVE, gScanFrequency);
if (gScanUseCssResult)
{
if (gScanUseCssResult) {
gTxVfo->freq_config_RX.CodeType = gScanCssResultType;
gTxVfo->freq_config_RX.Code = gScanCssResultCode;
}
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(1, VFO_CONFIGURE_RELOAD);
@@ -252,25 +198,24 @@ static void SCANNER_Key_MENU(bool bKeyPressed, bool bKeyHeld)
gTxVfo->freq_config_TX.Code = gScanCssResultCode;
}
if (gTxVfo->CHANNEL_SAVE <= MR_CHANNEL_LAST)
{
Channel = gScanChannel;
gEeprom.MrChannel[gEeprom.TX_VFO] = Channel;
uint8_t chan;
if (IS_MR_CHANNEL(gTxVfo->CHANNEL_SAVE)) {
chan = gScanChannel;
gEeprom.MrChannel[gEeprom.TX_VFO] = chan;
}
else
{
Channel = gTxVfo->Band + FREQ_CHANNEL_FIRST;
gEeprom.FreqChannel[gEeprom.TX_VFO] = Channel;
else {
chan = gTxVfo->Band + FREQ_CHANNEL_FIRST;
gEeprom.FreqChannel[gEeprom.TX_VFO] = chan;
}
gTxVfo->CHANNEL_SAVE = Channel;
gEeprom.ScreenChannel[gEeprom.TX_VFO] = Channel;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CONFIRM;
#endif
gRequestDisplayScreen = DISPLAY_SCANNER;
gRequestSaveChannel = 2;
gScannerEditState = 0;
gTxVfo->CHANNEL_SAVE = chan;
gEeprom.ScreenChannel[gEeprom.TX_VFO] = chan;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CONFIRM;
#endif
gRequestDisplayScreen = DISPLAY_SCANNER;
gRequestSaveChannel = 2;
gScannerSaveState = SCAN_SAVE_NO_PROMPT;
break;
default:
@@ -281,23 +226,20 @@ static void SCANNER_Key_MENU(bool bKeyPressed, bool bKeyHeld)
static void SCANNER_Key_STAR(bool bKeyPressed, bool bKeyHeld)
{
if (!bKeyHeld && bKeyPressed)
{
if (!bKeyHeld && bKeyPressed) {
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
gFlagStartScan = true;
SCANNER_Start(gScanSingleFrequency);
}
return;
}
static void SCANNER_Key_UP_DOWN(bool bKeyPressed, bool pKeyHeld, int8_t Direction)
{
if (pKeyHeld)
{
if (pKeyHeld) {
if (!bKeyPressed)
return;
}
else
{
else {
if (!bKeyPressed)
return;
@@ -305,8 +247,7 @@ static void SCANNER_Key_UP_DOWN(bool bKeyPressed, bool pKeyHeld, int8_t Directio
gBeepToPlay = BEEP_1KHZ_60MS_OPTIONAL;
}
if (gScannerEditState == 1)
{
if (gScannerSaveState == SCAN_SAVE_CHAN_SEL) {
gScanChannel = NUMBER_AddWithWraparound(gScanChannel, Direction, 0, MR_CHANNEL_LAST);
gShowChPrefix = RADIO_CheckValidChannel(gScanChannel, false, 0);
gRequestDisplayScreen = DISPLAY_SCANNER;
@@ -317,8 +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)
{
switch (Key)
{
switch (Key) {
case KEY_0:
case KEY_1:
case KEY_2:
@@ -356,13 +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;
uint16_t BackupFrequency;
gScanSingleFrequency = singleFreq;
gMonitor = false;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_SCANNING_BEGIN;
#endif
BK4819_StopScan();
RADIO_SelectVfos();
#ifdef ENABLE_NOAA
@@ -370,13 +313,13 @@ void SCANNER_Start(void)
gRxVfo->CHANNEL_SAVE = FREQ_CHANNEL_FIRST + BAND6_400MHz;
#endif
BackupStep = gRxVfo->STEP_SETTING;
BackupFrequency = gRxVfo->StepFrequency;
uint8_t backupStep = gRxVfo->STEP_SETTING;
uint16_t backupFrequency = gRxVfo->StepFrequency;
RADIO_InitInfo(gRxVfo, gRxVfo->CHANNEL_SAVE, gRxVfo->pRX->Frequency);
gRxVfo->STEP_SETTING = BackupStep;
gRxVfo->StepFrequency = BackupFrequency;
gRxVfo->STEP_SETTING = backupStep;
gRxVfo->StepFrequency = backupFrequency;
RADIO_SetupRegisters(true);
@@ -384,34 +327,34 @@ void SCANNER_Start(void)
gIsNoaaMode = false;
#endif
if (gScanSingleFrequency)
{
if (gScanSingleFrequency) {
gScanCssState = SCAN_CSS_STATE_SCANNING;
gScanFrequency = gRxVfo->pRX->Frequency;
gStepSetting = gRxVfo->STEP_SETTING;
stepSetting = gRxVfo->STEP_SETTING;
BK4819_PickRXFilterPathBasedOnFrequency(gScanFrequency);
BK4819_SetScanFrequency(gScanFrequency);
gUpdateStatus = true;
}
else
{
else {
gScanCssState = SCAN_CSS_STATE_OFF;
gScanFrequency = 0xFFFFFFFF;
BK4819_PickRXFilterPathBasedOnFrequency(0xFFFFFFFF);
BK4819_PickRXFilterPathBasedOnFrequency(gScanFrequency);
BK4819_EnableFrequencyScan();
gUpdateStatus = true;
}
#ifdef ENABLE_DTMF_CALLING
DTMF_clear_RX();
#endif
gScanDelay_10ms = scan_delay_10ms;
gScanCssResultCode = 0xFF;
gScanCssResultType = 0xFF;
gScanHitCount = 0;
scanHitCount = 0;
gScanUseCssResult = false;
g_CxCSS_TAIL_Found = false;
g_CDCSS_Lost = false;
@@ -421,220 +364,165 @@ void SCANNER_Start(void)
g_VOX_Lost = false;
#endif
g_SquelchLost = false;
gScannerEditState = 0;
gScannerSaveState = SCAN_SAVE_NO_PROMPT;
gScanProgressIndicator = 0;
}
void SCANNER_Stop(void)
{
if(gRestoreCROSS_BAND_RX_TX != CROSS_BAND_OFF) {
gEeprom.CROSS_BAND_RX_TX = gRestoreCROSS_BAND_RX_TX;
gRestoreCROSS_BAND_RX_TX = CROSS_BAND_OFF;
}
gScanStateDir = SCAN_OFF;
if (!bScanKeepFrequency)
{
if (gNextMrChannel <= MR_CHANNEL_LAST)
{
gEeprom.MrChannel[gEeprom.RX_VFO] = gRestoreMrChannel;
gEeprom.ScreenChannel[gEeprom.RX_VFO] = gRestoreMrChannel;
RADIO_ConfigureChannel(gEeprom.RX_VFO, VFO_CONFIGURE_RELOAD);
}
else
{
gRxVfo->freq_config_RX.Frequency = gRestoreFrequency;
RADIO_ApplyOffset(gRxVfo);
RADIO_ConfigureSquelchAndOutputPower(gRxVfo);
}
RADIO_SetupRegisters(true);
gUpdateDisplay = true;
return;
}
if (gRxVfo->CHANNEL_SAVE > MR_CHANNEL_LAST)
{
RADIO_ApplyOffset(gRxVfo);
RADIO_ConfigureSquelchAndOutputPower(gRxVfo);
SETTINGS_SaveChannel(gRxVfo->CHANNEL_SAVE, gEeprom.RX_VFO, gRxVfo, 1);
return;
}
SETTINGS_SaveVfoIndices();
gUpdateStatus = true;
}
static void SCANNER_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;
if(SCANNER_IsScanning()) {
gEeprom.CROSS_BAND_RX_TX = gBackup_CROSS_BAND_RX_TX;
gVfoConfigureMode = VFO_CONFIGURE_RELOAD;
gFlagResetVfos = true;
gUpdateStatus = true;
gCssBackgroundScan = false;
gScanUseCssResult = false;
#ifdef ENABLE_VOICE
gAnotherVoiceID = VOICE_ID_CANCEL;
#endif
bScanKeepFrequency = false;
gUpdateDisplay = true;
BK4819_StopScan();
}
}
static void SCANNER_NextMemChannel(void)
void SCANNER_TimeSlice10ms(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 (!SCANNER_IsScanning())
return;
if (enabled)
{
switch (gCurrentScanList)
{
case SCAN_NEXT_CHAN_SCANLIST1:
prev_mr_chan = gNextMrChannel;
if (chan1 >= 0)
{
if (RADIO_CheckValidChannel(chan1, false, 0))
{
gCurrentScanList = SCAN_NEXT_CHAN_SCANLIST1;
gNextMrChannel = chan1;
break;
}
}
[[fallthrough]];
case SCAN_NEXT_CHAN_SCANLIST2:
if (chan2 >= 0)
{
if (RADIO_CheckValidChannel(chan2, false, 0))
{
gCurrentScanList = 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 (chan <= MR_CHANNEL_LAST)
// {
// gCurrentScanList = SCAN_NEXT_CHAN_DUAL_WATCH;
// gNextMrChannel = chan;
// break;
// }
// }
if (gScanDelay_10ms > 0) {
gScanDelay_10ms--;
return;
}
default:
case SCAN_NEXT_CHAN_MR:
gCurrentScanList = SCAN_NEXT_CHAN_MR;
gNextMrChannel = prev_mr_chan;
chan = 0xff;
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;
}
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;
// return;
}
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;
gUpdateStatus = true;
}
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);
#endif
gUpdateDisplay = true;
}
else if(gCssBackgroundScan) {
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
bScanKeepFrequency = false;
if (enabled)
if (++gCurrentScanList >= SCAN_NEXT_NUM)
gCurrentScanList = SCAN_NEXT_CHAN_SCANLIST1; // back round we go
}
void SCANNER_NextChannel(const bool storeBackupSettings, const int8_t scan_direction)
bool SCANNER_IsScanning(void)
{
if (storeBackupSettings) {
gRestoreCROSS_BAND_RX_TX = gEeprom.CROSS_BAND_RX_TX;
gEeprom.CROSS_BAND_RX_TX = CROSS_BAND_OFF;
}
RADIO_SelectVfos();
gNextMrChannel = gRxVfo->CHANNEL_SAVE;
gCurrentScanList = SCAN_NEXT_CHAN_SCANLIST1;
gScanStateDir = scan_direction;
if (gNextMrChannel <= MR_CHANNEL_LAST)
{ // channel mode
if (storeBackupSettings)
gRestoreMrChannel = gNextMrChannel;
SCANNER_NextMemChannel();
}
else
{ // frequency mode
if (storeBackupSettings)
gRestoreFrequency = gRxVfo->freq_config_RX.Frequency;
SCANNER_NextFreqChannel();
}
gScanPauseDelayIn_10ms = scan_pause_delay_in_2_10ms;
gScheduleScanListen = false;
gRxReceptionMode = RX_MODE_NONE;
gScanPauseMode = false;
bScanKeepFrequency = false;
}
void SCANNER_ContinueScanning()
{
if (IS_FREQ_CHANNEL(gNextMrChannel))
{
if (gCurrentFunction == FUNCTION_INCOMING)
APP_StartListening(gMonitor ? FUNCTION_MONITOR : FUNCTION_RECEIVE, true);
else
SCANNER_NextFreqChannel(); // switch to next frequency
}
else
{
if (gCurrentCodeType == CODE_TYPE_OFF && gCurrentFunction == FUNCTION_INCOMING)
APP_StartListening(gMonitor ? FUNCTION_MONITOR : FUNCTION_RECEIVE, true);
else
SCANNER_NextMemChannel(); // switch to next channel
}
gScanPauseMode = false;
gRxReceptionMode = RX_MODE_NONE;
gScheduleScanListen = false;
return gCssBackgroundScan || (gScreenToDisplay == DISPLAY_SCANNER);
}

View File

@@ -20,46 +20,38 @@
#include "dcs.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_FOUND,
SCAN_CSS_STATE_FAILED
};
} SCAN_CssState_t;
typedef enum SCAN_CssState_t SCAN_CssState_t;
enum
typedef enum
{
SCAN_REV = -1,
SCAN_OFF = 0,
SCAN_FWD = +1
};
SCAN_SAVE_NO_PROMPT, // saving process not initiated
SCAN_SAVE_CHAN_SEL, // "SAVE: ", channel select prompt, actives only in channel mode
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 uint8_t gScanCssResultCode;
extern bool gFlagStartScan;
extern bool gFlagStopScan;
extern bool gScanSingleFrequency;
extern uint8_t gScannerEditState;
extern SCAN_SaveState_t gScannerSaveState;
extern uint8_t gScanChannel;
extern uint32_t gScanFrequency;
extern bool gScanPauseMode;
extern SCAN_CssState_t gScanCssState;
extern volatile bool gScheduleScanListen;
extern volatile uint16_t gScanPauseDelayIn_10ms;
extern uint8_t gScanProgressIndicator;
extern uint8_t gScanHitCount;
extern bool gScanUseCssResult;
extern int8_t gScanStateDir;
extern bool bScanKeepFrequency;
void SCANNER_ProcessKeys(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld);
void SCANNER_Start(void);
void SCANNER_Start(bool singleFreq);
void SCANNER_Stop(void);
void SCANNER_NextChannel(const bool storeBackupSettings, const int8_t scan_direction);
void SCANNER_ContinueScanning();
void SCANNER_TimeSlice10ms(void);
void SCANNER_TimeSlice500ms(void);
bool SCANNER_IsScanning(void);
#endif

View File

@@ -14,7 +14,10 @@
* limitations under the License.
*/
#include "../app/spectrum.h"
#include "app/spectrum.h"
#include "driver/backlight.h"
#include "audio.h"
#include "ui/helper.h"
struct FrequencyBandInfo {
uint32_t lower;
@@ -47,7 +50,6 @@ ScanInfo scanInfo;
KeyboardState kbd = {KEY_INVALID, KEY_INVALID, 0};
const char *bwOptions[] = {" 25k", "12.5k", "6.25k"};
const char *modulationTypeOptions[] = {" FM", " AM", "USB"};
const uint8_t modulationTypeTuneSteps[] = {100, 50, 10};
const uint8_t modTypeReg47Values[] = {1, 7, 5};
@@ -77,10 +79,10 @@ uint16_t listenT = 0;
RegisterSpec registerSpecs[] = {
{},
{"LNAs", 0x13, 8, 0b11, 1},
{"LNA", 0x13, 5, 0b111, 1},
{"PGA", 0x13, 0, 0b111, 1},
{"IF", 0x3D, 0, 0xFFFF, 0x2aaa},
{"LNAs", BK4819_REG_13, 8, 0b11, 1},
{"LNA", BK4819_REG_13, 5, 0b111, 1},
{"PGA", BK4819_REG_13, 0, 0b111, 1},
{"IF", BK4819_REG_3D, 0, 0xFFFF, 0x2aaa},
// {"MIX", 0x13, 3, 0b11, 1}, // TODO: hidden
};
@@ -101,7 +103,7 @@ static int Rssi2DBm(uint16_t rssi) { return (rssi >> 1) - 160; }
static uint16_t GetRegMenuValue(uint8_t 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) {
@@ -109,14 +111,14 @@ static void SetRegMenuValue(uint8_t st, bool add) {
RegisterSpec s = registerSpecs[st];
uint16_t reg = BK4819_ReadRegister(s.num);
if (add && v <= s.maxValue - s.inc) {
if (add && v <= s.mask - s.inc) {
v += s.inc;
} else if (!add && v >= 0 + s.inc) {
v -= s.inc;
}
// TODO: use max value for bits count in max value, or reset by additional
// mask in spec
reg &= ~(s.maxValue << s.offset);
reg &= ~(s.mask << s.offset);
BK4819_WriteRegister(s.num, reg | (v << s.offset));
redrawScreen = true;
}
@@ -124,21 +126,13 @@ static void SetRegMenuValue(uint8_t st, bool add) {
// GUI functions
static void PutPixel(uint8_t x, uint8_t y, bool fill) {
if (fill) {
gFrameBuffer[y >> 3][x] |= 1 << (y & 7);
} else {
gFrameBuffer[y >> 3][x] &= ~(1 << (y & 7));
}
UI_DrawPixelBuffer(gFrameBuffer, x, y, fill);
}
static void PutPixelStatus(uint8_t x, uint8_t y, bool fill) {
if (fill) {
gStatusLine[x] |= 1 << y;
} else {
gStatusLine[x] &= ~(1 << y);
}
UI_DrawPixelBuffer(&gStatusLine, x, y, fill);
}
static void DrawHLine(int sy, int ey, int nx, bool fill) {
static void DrawVLine(int sy, int ey, int nx, bool fill) {
for (int i = sy; i <= ey; i++) {
if (i < 56 && nx < 128) {
PutPixel(nx, i, fill);
@@ -204,35 +198,23 @@ static void ToggleAFBit(bool on) {
}
static void BackupRegisters() {
R30 = BK4819_ReadRegister(0x30);
R37 = BK4819_ReadRegister(0x37);
R3D = BK4819_ReadRegister(0x3D);
R43 = BK4819_ReadRegister(0x43);
R47 = BK4819_ReadRegister(0x47);
R48 = BK4819_ReadRegister(0x48);
R7E = BK4819_ReadRegister(0x7E);
R30 = BK4819_ReadRegister(BK4819_REG_30);
R37 = BK4819_ReadRegister(BK4819_REG_37);
R3D = BK4819_ReadRegister(BK4819_REG_3D);
R43 = BK4819_ReadRegister(BK4819_REG_43);
R47 = BK4819_ReadRegister(BK4819_REG_47);
R48 = BK4819_ReadRegister(BK4819_REG_48);
R7E = BK4819_ReadRegister(BK4819_REG_7E);
}
static void RestoreRegisters() {
BK4819_WriteRegister(0x30, R30);
BK4819_WriteRegister(0x37, R37);
BK4819_WriteRegister(0x3D, R3D);
BK4819_WriteRegister(0x43, R43);
BK4819_WriteRegister(0x47, R47);
BK4819_WriteRegister(0x48, R48);
BK4819_WriteRegister(0x7E, 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(0x3D, 0b0010101101000101);
BK4819_WriteRegister(BK4819_REG_37, 0x160F);
BK4819_WriteRegister(0x48, 0b0000001110101000);
}
BK4819_WriteRegister(BK4819_REG_30, R30);
BK4819_WriteRegister(BK4819_REG_37, R37);
BK4819_WriteRegister(BK4819_REG_3D, R3D);
BK4819_WriteRegister(BK4819_REG_43, R43);
BK4819_WriteRegister(BK4819_REG_47, R47);
BK4819_WriteRegister(BK4819_REG_48, R48);
BK4819_WriteRegister(BK4819_REG_7E, R7E);
}
static void ToggleAFDAC(bool on) {
@@ -303,9 +285,9 @@ static void ToggleAudio(bool on) {
}
audioState = on;
if (on) {
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
} else {
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
}
}
@@ -399,11 +381,24 @@ static void Measure() { rssiHistory[scanInfo.i] = scanInfo.rssi = GetRssi(); }
// 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) {
if (inc)
settings.rssiTriggerLevel += 2;
settings.rssiTriggerLevel += 2;
else
settings.rssiTriggerLevel -= 2;
settings.rssiTriggerLevel -= 2;
ClampRssiTriggerLevel();
redrawScreen = true;
redrawStatus = true;
}
@@ -416,6 +411,8 @@ static void UpdateDBMax(bool inc) {
} else {
return;
}
ClampRssiTriggerLevel();
redrawStatus = true;
redrawScreen = true;
SYSTEM_DelayMs(20);
@@ -472,12 +469,12 @@ static void UpdateFreqChangeStep(bool inc) {
}
static void ToggleModulation() {
if (settings.modulationType < MOD_USB) {
if (settings.modulationType < MODULATION_UKNOWN - 1) {
settings.modulationType++;
} else {
settings.modulationType = MOD_FM;
settings.modulationType = MODULATION_FM;
}
SetModulation(settings.modulationType);
RADIO_SetModulation(settings.modulationType);
redrawScreen = true;
}
@@ -493,9 +490,9 @@ static void ToggleListeningBW() {
static void ToggleBacklight() {
settings.backlightState = !settings.backlightState;
if (settings.backlightState) {
GPIO_SetBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT);
BACKLIGHT_TurnOn();
} else {
GPIO_ClearBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT);
BACKLIGHT_TurnOff();
}
}
@@ -537,6 +534,8 @@ static void UpdateFreqInput(KEY_Code_t key) {
}
if (key == KEY_EXIT) {
freqInputIndex--;
if(freqInputDotIndex==freqInputIndex)
freqInputDotIndex = 0;
} else {
freqInputArr[freqInputIndex++] = key;
}
@@ -602,7 +601,7 @@ static void DrawSpectrum() {
for (uint8_t x = 0; x < 128; ++x) {
uint16_t rssi = rssiHistory[x >> settings.stepsCount];
if (rssi != RSSI_MAX_VALUE) {
DrawHLine(Rssi2Y(rssi), DrawingEndY, x, true);
DrawVLine(Rssi2Y(rssi), DrawingEndY, x, true);
}
}
}
@@ -616,43 +615,35 @@ static void DrawStatus() {
#endif
GUI_DisplaySmallest(String, 0, 1, true, true);
for (int i = 0; i < 4; i++) {
BOARD_ADC_GetBatteryInfo(&gBatteryVoltages[i], &gBatteryCurrent);
}
BOARD_ADC_GetBatteryInfo(&gBatteryVoltages[gBatteryCheckCounter++ % 4], &gBatteryCurrent);
uint16_t Voltage;
uint8_t v = 0;
Voltage = (gBatteryVoltages[0] + gBatteryVoltages[1] + gBatteryVoltages[2] +
uint16_t voltage = (gBatteryVoltages[0] + gBatteryVoltages[1] + gBatteryVoltages[2] +
gBatteryVoltages[3]) /
4;
4 * 760 / gBatteryCalibration[3];
for(uint8_t i = 5; i > 0; i--) {
if(Voltage > gBatteryCalibration[i - 1]) {
v = i;
break;
}
}
unsigned perc = BATTERY_VoltsToPercent(voltage);
gStatusLine[127] = 0b01111110;
for (int i = 126; i >= 116; i--) {
gStatusLine[i] = 0b01000010;
// sprintf(String, "%d %d", voltage, perc);
// GUI_DisplaySmallest(String, 48, 1, true, true);
gStatusLine[116] = 0b00011100;
gStatusLine[117] = 0b00111110;
for (int i = 118; i <= 126; i++) {
gStatusLine[i] = 0b00100010;
}
v <<= 1;
for (int i = 125; i >= 116; i--) {
if (126 - i <= v) {
gStatusLine[i + 2] = 0b01111110;
for (unsigned i = 127; i >= 118; i--) {
if (127 - i <= (perc+5)*9/100) {
gStatusLine[i] = 0b00111110;
}
}
gStatusLine[117] = 0b01111110;
gStatusLine[116] = 0b00011000;
}
static void DrawF(uint32_t f) {
sprintf(String, "%u.%05u", f / 100000, f % 100000);
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);
sprintf(String, "%s", bwOptions[settings.listenBw]);
GUI_DisplaySmallest(String, 108, 7, false, true);
@@ -708,19 +699,13 @@ static void DrawTicks() {
// center
if (IsCenterMode()) {
gFrameBuffer[5][62] = 0x80;
gFrameBuffer[5][63] = 0x80;
memset(gFrameBuffer[5] + 62, 0x80, 5);
gFrameBuffer[5][64] = 0xff;
gFrameBuffer[5][65] = 0x80;
gFrameBuffer[5][66] = 0x80;
} else {
memset(gFrameBuffer[5] + 1, 0x80, 3);
memset(gFrameBuffer[5] + 124, 0x80, 3);
gFrameBuffer[5][0] = 0xff;
gFrameBuffer[5][1] = 0x80;
gFrameBuffer[5][2] = 0x80;
gFrameBuffer[5][3] = 0x80;
gFrameBuffer[5][124] = 0x80;
gFrameBuffer[5][125] = 0x80;
gFrameBuffer[5][126] = 0x80;
gFrameBuffer[5][127] = 0xff;
}
}
@@ -1013,17 +998,18 @@ bool HandleUserInput() {
kbd.prev = kbd.current;
kbd.current = GetKey();
if (kbd.current == KEY_INVALID) {
kbd.counter = 0;
return true;
}
if (kbd.current == kbd.prev && kbd.counter <= 16) {
kbd.counter++;
if (kbd.current != KEY_INVALID && kbd.current == kbd.prev) {
if(kbd.counter < 16)
kbd.counter++;
else
kbd.counter-=3;
SYSTEM_DelayMs(20);
}
else {
kbd.counter = 0;
}
if (kbd.counter == 3 || kbd.counter > 16) {
if (kbd.counter == 3 || kbd.counter == 16) {
switch (currentState) {
case SPECTRUM:
OnKeyDown(kbd.current);
@@ -1158,7 +1144,7 @@ void APP_RunSpectrum() {
newScanStart = true;
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);
RelaunchScan();

View File

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

View File

@@ -27,6 +27,7 @@
#include "bsp/dp32g030/dma.h"
#include "bsp/dp32g030/gpio.h"
#include "driver/aes.h"
#include "driver/backlight.h"
#include "driver/bk4819.h"
#include "driver/crc.h"
#include "driver/eeprom.h"
@@ -238,7 +239,7 @@ static void CMD_0514(const uint8_t *pBuffer)
gSerialConfigCountDown_500ms = 12; // 6 sec
// turn the LCD backlight off
GPIO_ClearBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT);
BACKLIGHT_TurnOff();
SendVersion();
}
@@ -399,7 +400,9 @@ static void CMD_052F(const uint8_t *pBuffer)
gEeprom.VfoInfo[0].pTX = &gEeprom.VfoInfo[0].freq_config_TX;
gEeprom.VfoInfo[0].TX_OFFSET_FREQUENCY_DIRECTION = TX_OFFSET_FREQUENCY_DIRECTION_OFF;
gEeprom.VfoInfo[0].DTMF_PTT_ID_TX_MODE = PTT_ID_OFF;
#ifdef ENABLE_DTMF_CALLING
gEeprom.VfoInfo[0].DTMF_DECODING_ENABLE = false;
#endif
#ifdef ENABLE_NOAA
gIsNoaaMode = false;
@@ -413,7 +416,7 @@ static void CMD_052F(const uint8_t *pBuffer)
Timestamp = pCmd->Timestamp;
// turn the LCD backlight off
GPIO_ClearBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT);
BACKLIGHT_TurnOff();
SendVersion();
}

19
audio.c
View File

@@ -97,7 +97,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
ToneConfig = BK4819_ReadRegister(BK4819_REG_71);
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
if (gCurrentFunction == FUNCTION_POWER_SAVE && gRxIdleMode)
BK4819_RX_TurnOn();
@@ -138,7 +138,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
SYSTEM_DelayMs(2);
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
SYSTEM_DelayMs(60);
@@ -185,7 +185,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
BK4819_EnterTxMute();
SYSTEM_DelayMs(20);
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
#ifdef ENABLE_VOX
gVoxResumeCountdown = 80;
@@ -197,7 +197,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
BK4819_WriteRegister(BK4819_REG_71, ToneConfig);
if (gEnableSpeaker)
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
#ifdef ENABLE_FMRADIO
if (gFmRadioMode)
@@ -270,7 +270,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
BK1080_Mute(true);
#endif
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
#ifdef ENABLE_VOX
gVoxResumeCountdown = 2000;
@@ -289,7 +289,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
if (gCurrentFunction == FUNCTION_RECEIVE ||
gCurrentFunction == FUNCTION_MONITOR ||
gCurrentFunction == FUNCTION_INCOMING) // 1of11
BK4819_SetAF(gRxVfo->AM_mode ? BK4819_AF_AM : BK4819_AF_FM);
RADIO_SetModulation(gRxVfo->Modulation);
#ifdef ENABLE_FMRADIO
if (gFmRadioMode)
@@ -297,7 +297,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
#endif
if (!gEnableSpeaker)
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
gVoiceWriteIndex = 0;
gVoiceReadIndex = 0;
@@ -430,7 +430,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
if (gCurrentFunction == FUNCTION_RECEIVE ||
gCurrentFunction == FUNCTION_MONITOR ||
gCurrentFunction == FUNCTION_INCOMING) // 1of11
BK4819_SetAF(gRxVfo->AM_mode ? BK4819_AF_AM : BK4819_AF_FM);
RADIO_SetModulation(gRxVfo->Modulation);
#ifdef ENABLE_FMRADIO
if (gFmRadioMode)
@@ -438,7 +438,7 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
#endif
if (!gEnableSpeaker)
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
#ifdef ENABLE_VOX
gVoxResumeCountdown = 80;
@@ -449,3 +449,4 @@ void AUDIO_PlayBeep(BEEP_Type_t Beep)
}
#endif

11
audio.h
View File

@@ -20,6 +20,9 @@
#include <stdbool.h>
#include <stdint.h>
#include "bsp/dp32g030/gpio.h"
#include "driver/gpio.h"
enum BEEP_Type_t
{
BEEP_NONE = 0,
@@ -130,6 +133,14 @@ enum VOICE_ID_t
typedef enum VOICE_ID_t VOICE_ID_t;
static inline void AUDIO_AudioPathOn(void) {
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
}
static inline void AUDIO_AudioPathOff(void) {
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
}
#ifdef ENABLE_VOICE
extern VOICE_ID_t gVoiceID[8];
extern uint8_t gVoiceReadIndex;

View File

@@ -270,48 +270,6 @@ const uint8_t BITMAP_Antenna[5] =
0b00000011
};
const uint8_t BITMAP_AntennaLevel1[3] =
{
0b01100000,
0b01100000,
0b00000000
};
const uint8_t BITMAP_AntennaLevel2[3] =
{
0b01110000,
0b01110000,
0b00000000
};
const uint8_t BITMAP_AntennaLevel3[3] =
{
0b01111000,
0b01111000,
0b00000000
};
const uint8_t BITMAP_AntennaLevel4[3] =
{
0b01111100,
0b01111100,
0b00000000
};
const uint8_t BITMAP_AntennaLevel5[3] =
{
0b01111110,
0b01111110,
0b00000000
};
const uint8_t BITMAP_AntennaLevel6[3] =
{
0b01111111,
0b01111111,
0b00000000
};
const uint8_t BITMAP_MARKER[8] =
{
0b11111111,

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_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];
@@ -39,12 +35,6 @@ extern const uint8_t BITMAP_TDR2[9];
#endif
extern const uint8_t BITMAP_Antenna[5];
extern const uint8_t BITMAP_AntennaLevel1[3];
extern const uint8_t BITMAP_AntennaLevel2[3];
extern const uint8_t BITMAP_AntennaLevel3[3];
extern const uint8_t BITMAP_AntennaLevel4[3];
extern const uint8_t BITMAP_AntennaLevel5[3];
extern const uint8_t BITMAP_AntennaLevel6[3];
extern const uint8_t BITMAP_MARKER[8];

45
board.c
View File

@@ -26,7 +26,7 @@
#include "bsp/dp32g030/saradc.h"
#include "bsp/dp32g030/syscon.h"
#include "driver/adc.h"
//#include "driver/backlight.h"
#include "driver/backlight.h"
#ifdef ENABLE_FMRADIO
#include "driver/bk1080.h"
#endif
@@ -94,8 +94,6 @@ void BOARD_GPIO_Init(void)
| GPIO_DIR_6_MASK // INPUT
);
GPIOB->DIR |= 0
// Back light
| GPIO_DIR_6_BITS_OUTPUT
// ST7565
| GPIO_DIR_9_BITS_OUTPUT
// ST7565 + SWD IO
@@ -183,14 +181,10 @@ void BOARD_PORTCON_Init(void)
// PORT B pin selection
PORTCON_PORTB_SEL0 &= ~(0
// Back light
| PORTCON_PORTB_SEL0_B6_MASK
// SPI0 SSN
| PORTCON_PORTB_SEL0_B7_MASK
);
PORTCON_PORTB_SEL0 |= 0
// Back light
| PORTCON_PORTB_SEL0_B6_BITS_GPIOB6
// SPI0 SSN
| PORTCON_PORTB_SEL0_B7_BITS_SPI0_SSN
;
@@ -508,6 +502,7 @@ void BOARD_Init(void)
{
BOARD_PORTCON_Init();
BOARD_GPIO_Init();
BACKLIGHT_InitHardware();
BOARD_ADC_Init();
ST7565_Init(true);
#ifdef ENABLE_FMRADIO
@@ -540,12 +535,17 @@ void BOARD_EEPROM_Init(void)
// 0E78..0E7F
EEPROM_ReadBuffer(0x0E78, Data, 8);
gEeprom.BACKLIGHT_MAX = (Data[0] & 0xF) <= 10 ? (Data[0] & 0xF) : 10;
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.CROSS_BAND_RX_TX = (Data[2] < 3) ? Data[2] : CROSS_BAND_OFF;
gEeprom.BATTERY_SAVE = (Data[3] < 5) ? Data[3] : 4;
gEeprom.DUAL_WATCH = (Data[4] < 3) ? Data[4] : DUAL_WATCH_CHAN_A;
gEeprom.BACKLIGHT = (Data[5] < ARRAY_SIZE(gSubMenu_BACKLIGHT)) ? Data[5] : 3;
gEeprom.TAIL_NOTE_ELIMINATION = (Data[6] < 2) ? Data[6] : false;
gEeprom.BACKLIGHT_TIME = (Data[5] < ARRAY_SIZE(gSubMenu_BACKLIGHT)) ? Data[5] : 3;
gEeprom.TAIL_TONE_ELIMINATION = (Data[6] < 2) ? Data[6] : false;
gEeprom.VFO_OPEN = (Data[7] < 2) ? Data[7] : true;
// 0E80..0E87
@@ -617,15 +617,19 @@ void BOARD_EEPROM_Init(void)
#endif
gEeprom.ROGER = (Data[1] < 3) ? Data[1] : ROGER_MODE_OFF;
gEeprom.REPEATER_TAIL_TONE_ELIMINATION = (Data[2] < 11) ? Data[2] : 0;
gEeprom.TX_VFO = (Data[3] < 2) ? Data[3] : 0;
gEeprom.TX_VFO = (Data[3] < 2) ? Data[3] : 0;
gEeprom.BATTERY_TYPE = (Data[4] < BATTERY_TYPE_UNKNOWN) ? Data[4] : BATTERY_TYPE_1600_MAH;
// 0ED0..0ED7
EEPROM_ReadBuffer(0x0ED0, Data, 8);
gEeprom.DTMF_SIDE_TONE = (Data[0] < 2) ? Data[0] : true;
#ifdef ENABLE_DTMF_CALLING
gEeprom.DTMF_SEPARATE_CODE = DTMF_ValidateCodes((char *)(Data + 1), 1) ? Data[1] : '*';
gEeprom.DTMF_GROUP_CALL_CODE = DTMF_ValidateCodes((char *)(Data + 2), 1) ? Data[2] : '#';
gEeprom.DTMF_DECODE_RESPONSE = (Data[3] < 4) ? Data[3] : 0;
gEeprom.DTMF_auto_reset_time = (Data[4] < 61) ? Data[4] : (Data[4] >= 5) ? Data[4] : 10;
#endif
gEeprom.DTMF_PRELOAD_TIME = (Data[5] < 101) ? Data[5] * 10 : 300;
gEeprom.DTMF_FIRST_CODE_PERSIST_TIME = (Data[6] < 101) ? Data[6] * 10 : 100;
gEeprom.DTMF_HASH_CODE_PERSIST_TIME = (Data[7] < 101) ? Data[7] * 10 : 100;
@@ -634,9 +638,11 @@ void BOARD_EEPROM_Init(void)
EEPROM_ReadBuffer(0x0ED8, Data, 8);
gEeprom.DTMF_CODE_PERSIST_TIME = (Data[0] < 101) ? Data[0] * 10 : 100;
gEeprom.DTMF_CODE_INTERVAL_TIME = (Data[1] < 101) ? Data[1] * 10 : 100;
#ifdef ENABLE_DTMF_CALLING
gEeprom.PERMIT_REMOTE_KILL = (Data[2] < 2) ? Data[2] : true;
// 0EE0..0EE7
EEPROM_ReadBuffer(0x0EE0, Data, 8);
if (DTMF_ValidateCodes((char *)Data, 8))
memmove(gEeprom.ANI_DTMF_ID, Data, 8);
@@ -645,7 +651,8 @@ void BOARD_EEPROM_Init(void)
memset(gEeprom.ANI_DTMF_ID, 0, sizeof(gEeprom.ANI_DTMF_ID));
strcpy(gEeprom.ANI_DTMF_ID, "123");
}
// 0EE8..0EEF
EEPROM_ReadBuffer(0x0EE8, Data, 8);
if (DTMF_ValidateCodes((char *)Data, 8))
@@ -665,7 +672,8 @@ void BOARD_EEPROM_Init(void)
memset(gEeprom.REVIVE_CODE, 0, sizeof(gEeprom.REVIVE_CODE));
strcpy(gEeprom.REVIVE_CODE, "9DCBA");
}
#endif
// 0EF8..0F07
EEPROM_ReadBuffer(0x0EF8, Data, 16);
if (DTMF_ValidateCodes((char *)Data, 16))
@@ -700,14 +708,16 @@ void BOARD_EEPROM_Init(void)
// 0F40..0F47
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
#ifdef ENABLE_DTMF_CALLING
gSetting_KILLED = (Data[2] < 2) ? Data[2] : false;
#endif
gSetting_200TX = (Data[3] < 2) ? Data[3] : false;
gSetting_500TX = (Data[4] < 2) ? Data[4] : false;
gSetting_350EN = (Data[5] < 2) ? Data[5] : 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_battery_text = (((Data[7] >> 2) & 3u) <= 2) ? (Data[7] >> 2) & 3 : 2;
#ifdef ENABLE_AUDIO_BAR
@@ -726,6 +736,13 @@ void BOARD_EEPROM_Init(void)
// 0D60..0E27
EEPROM_ReadBuffer(0x0D60, gMR_ChannelAttributes, sizeof(gMR_ChannelAttributes));
for(uint16_t i = 0; i < sizeof(gMR_ChannelAttributes); i++) {
ChannelAttributes_t *att = &gMR_ChannelAttributes[i];
if(att->__val == 0xff){
att->__val = 0;
att->band = 0xf;
}
}
// 0F30..0F3F
EEPROM_ReadBuffer(0x0F30, gCustomAesKey, sizeof(gCustomAesKey));

146
bsp/dp32g030/pwmplus.h Normal file
View File

@@ -0,0 +1,146 @@
#ifndef HARDWARE_DP32G030_PWMPLUS_H
#define HARDWARE_DP32G030_PWMPLUS_H
#define PWM_PLUS0_BASE_ADDR 0x400B4000U
//---------------
#define PWMPLUS_CFG 0x00U
#define PWMPLUS_CFG_COUNTER_EN_SHIFT 0U
#define PWMPLUS_CFG_COUNTER_EN_WIDTH 1U
#define PWMPLUS_CFG_COUNTER_EN_MASK (((1U << PWMPLUS_CFG_COUNTER_EN_WIDTH) - 1U) << PWMPLUS_CFG_COUNTER_EN_SHIFT)
#define PWMPLUS_CFG_COUNTER_EN_VALUE_ENABLE 1U
#define PWMPLUS_CFG_COUNTER_EN_BITS_ENABLE (PWMPLUS_CFG_COUNTER_EN_VALUE_ENABLE << PWMPLUS_CFG_COUNTER_EN_SHIFT)
#define PWMPLUS_CFG_CNT_TYPE_SHIFT 1U
#define PWMPLUS_CFG_CNT_REP_SHIFT 2U
#define PWMPLUS_CFG_CNT_REP_WIDTH 1U
#define PWMPLUS_CFG_CNT_REP_VALUE_ENABLE 1U
#define PWMPLUS_CFG_CNT_REP_BITS_ENABLE (PWMPLUS_CFG_CNT_REP_VALUE_ENABLE << PWMPLUS_CFG_CNT_REP_SHIFT)
#define PWMPLUS_CFG_OUT_MODE_SHIFT 3U
#define PWMPLUS_CFG_OUT_MODE_VALUE_ENABLE 1U
#define PWMPLUS_CFG_OUT_MODE_BITS_ENABLE (PWMPLUS_CFG_OUT_MODE_VALUE_ENABLE << PWMPLUS_CFG_OUT_MODE_SHIFT)
#define PWMPLUS_CFG_AUTO_RELOAD_SHIFT 8U
//---------------
#define PWMPLUS_GEN 0x04U
#define PWMPLUS_GEN_CH0_OE_SHIFT 24U
#define PWMPLUS_GEN_CH0_OE_WIDTH 1U
#define PWMPLUS_GEN_CH0_OE_VALUE_ENABLE 1U
#define PWMPLUS_GEN_CH0_OE_BITS_ENABLE (PWMPLUS_GEN_CH0_OE_VALUE_ENABLE << PWMPLUS_GEN_CH0_OE_SHIFT)
#define PWMPLUS_GEN_CH0_OUTINV_SHIFT 16U
#define PWMPLUS_GEN_CH0_OUTINV_WIDTH 1U
#define PWMPLUS_GEN_CH0_OUTINV_VALUE_ENABLE 1U
#define PWMPLUS_GEN_CH0_OUTINV_BITS_ENABLE (PWMPLUS_GEN_CH0_OUTINV_VALUE_ENABLE << PWMPLUS_GEN_CH0_OUTINV_SHIFT)
#define PWMPLUS_GEN_CH0_START_SHIFT 8U
#define PWMPLUS_GEN_CH0_START_WIDTH 1U
#define PWMPLUS_GEN_CH0_START_VALUE_ENABLE 1U
#define PWMPLUS_GEN_CH0_START_BITS_ENABLE (PWMPLUS_GEN_CH0_START_VALUE_ENABLE << PWMPLUS_GEN_CH0_START_SHIFT)
#define PWMPLUS_GEN_CH0_IDLE_SHIFT 0U
#define PWMPLUS_GEN_CH0_IDLE_WIDTH 1U
#define PWMPLUS_GEN_CH0_IDLE_VALUE_ENABLE 1U
#define PWMPLUS_GEN_CH0_IDLE_BITS_ENABLE (PWMPLUS_GEN_CH0_IDLE_VALUE_ENABLE << PWMPLUS_GEN_CH0_IDLE_SHIFT)
//---------------
#define PWMPLUS_CLKSRC 0x08U
#define PWMPLUS_BRAKE_CFG 0x0CU
#define PWMPLUS_MASK_LEV 0x10U
#define PWMPLUS_PERIOD 0x1CU
#define PWMPLUS_CH0_COMP 0x20U
#define PWMPLUS_CH1_COMP 0x24U
#define PWMPLUS_CH2_COMP 0x28U
#define PWMPLUS_CH0_DT 0x30U
#define PWMPLUS_CH1_DT 0x34U
#define PWMPLUS_CH2_DT 0x38U
#define PWMPLUS_TRIG_COMP 0x40U
#define PWMPLUS_TRIG_CFG 0x44U
#define PWMPLUS_IE 0x60U
#define PWMPLUS_IF 0x64U
#define PWMPLUS_SWLOAD 0x84U
#define PWMPLUS_MASK_EN 0x88
#define PWMPLUS_CNT_ST 0xE0
#define PWMPLUS_BRAKE_ST 0xE4
#define PWM_PLUS0_CFG_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CFG)
#define PWM_PLUS0_CFG (*(volatile uint32_t *)PWM_PLUS0_CFG_ADDR)
#define PWM_PLUS0_GEN_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_GEN)
#define PWM_PLUS0_GEN (*(volatile uint32_t *)PWM_PLUS0_GEN_ADDR)
#define PWM_PLUS0_CLKSRC_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CLKSRC)
#define PWM_PLUS0_CLKSRC (*(volatile uint32_t *)PWM_PLUS0_CLKSRC_ADDR)
#define PWM_PLUS0_BRAKE_CFG_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_BRAKE_CFG)
#define PWM_PLUS0_BRAKE_CFG (*(volatile uint32_t *)PWM_PLUS0_BRAKE_CFG_ADDR)
#define PWM_PLUS0_MASK_LEV_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_MASK_LEV)
#define PWM_PLUS0_MASK_LEV (*(volatile uint32_t *)PWM_PLUS0_MASK_LEV_ADDR)
#define PWM_PLUS0_PERIOD_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_PERIOD)
#define PWM_PLUS0_PERIOD (*(volatile uint32_t *)PWM_PLUS0_PERIOD_ADDR)
#define PWM_PLUS0_CH0_COMP_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CH0_COMP)
#define PWM_PLUS0_CH0_COMP (*(volatile uint32_t *)PWM_PLUS0_CH0_COMP_ADDR)
#define PWM_PLUS0_CH1_COMP_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CH1_COMP)
#define PWM_PLUS0_CH1_COMP (*(volatile uint32_t *)PWM_PLUS0_CH1_COMP_ADDR)
#define PWM_PLUS0_CH2_COMP_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CH2_COMP)
#define PWM_PLUS0_CH2_COMP (*(volatile uint32_t *)PWM_PLUS0_CH2_COMP_ADDR)
#define PWM_PLUS0_CH0_DT_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CH0_DT)
#define PWM_PLUS0_CH0_DT (*(volatile uint32_t *)PWM_PLUS0_CH0_DT_ADDR)
#define PWM_PLUS0_CH1_DT_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CH1_DT)
#define PWM_PLUS0_CH1_DT (*(volatile uint32_t *)PWM_PLUS0_CH1_DT_ADDR)
#define PWM_PLUS0_CH2_DT_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CH2_DT)
#define PWM_PLUS0_CH2_DT (*(volatile uint32_t *)PWM_PLUS0_CH2_DT_ADDR)
#define PWM_PLUS0_TRIG_COMP_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_TRIG_COMP)
#define PWM_PLUS0_TRIG_COMP (*(volatile uint32_t *)PWM_PLUS0_TRIG_COMP_ADDR)
#define PWM_PLUS0_TRIG_CFG_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_TRIG_CFG)
#define PWM_PLUS0_TRIG_CFG (*(volatile uint32_t *)PWM_PLUS0_TRIG_CFG_ADDR)
#define PWM_PLUS0_IE_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_IE)
#define PWM_PLUS0_IE (*(volatile uint32_t *)PWM_PLUS0_IE_ADDR)
#define PWM_PLUS0_IF_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_IF)
#define PWM_PLUS0_IF (*(volatile uint32_t *)PWM_PLUS0_IF_ADDR)
#define PWM_PLUS0_SWLOAD_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_SWLOAD)
#define PWM_PLUS0_SWLOAD (*(volatile uint32_t *)PWM_PLUS0_SWLOAD_ADDR)
#define PWM_PLUS0_MASK_EN_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_MASK_EN)
#define PWM_PLUS0_MASK_EN (*(volatile uint32_t *)PWM_PLUS0_MASK_EN_ADDR)
#define PWM_PLUS0_CNT_ST_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_CNT_ST)
#define PWM_PLUS0_CNT_ST (*(volatile uint32_t *)PWM_PLUS0_CNT_ST_ADDR)
#define PWM_PLUS0_BRAKE_ST_ADDR (PWM_PLUS0_BASE_ADDR + PWMPLUS_BRAKE_ST)
#define PWM_PLUS0_BRAKE_ST (*(volatile uint32_t *)PWM_PLUS0_BRAKE_ST_ADDR)
#endif

View File

@@ -1,4 +1,4 @@
@echo off
docker build -t uvk5 .
docker run -v %CD%\compiled-firmware:/app/compiled-firmware uvk5 /bin/bash -c "cd /app && make clean && make && cp firmware* compiled-firmware/"
docker run --rm -v %CD%\compiled-firmware:/app/compiled-firmware uvk5 /bin/bash -c "cd /app && make clean && make && cp firmware* compiled-firmware/"
pause

View File

@@ -1,3 +1,3 @@
#!/bin/sh
docker build -t uvk5 .
docker run -v ${PWD}/compiled-firmware:/app/compiled-firmware uvk5 /bin/bash -c "cd /app && make && cp firmware* compiled-firmware/"
docker run --rm -v ${PWD}/compiled-firmware:/app/compiled-firmware uvk5 /bin/bash -c "cd /app && make && cp firmware* compiled-firmware/"

18
debugging.h Normal file
View File

@@ -0,0 +1,18 @@
#ifndef DEBUGGING_H
#define DEBUGGING_H
#include "driver/uart.h"
#include "string.h"
#include "external/printf/printf.h"
static inline void LogUart(char * str)
{
UART_Send(str, strlen(str));
}
#endif

View File

@@ -16,21 +16,54 @@
#include "backlight.h"
#include "bsp/dp32g030/gpio.h"
#include "bsp/dp32g030/pwmplus.h"
#include "bsp/dp32g030/portcon.h"
#include "driver/gpio.h"
#include "settings.h"
// this is decremented once every 500ms
uint16_t gBacklightCountdown = 0;
bool backlightOn;
void BACKLIGHT_InitHardware()
{
// 48MHz / 94 / 1024 ~ 500Hz
const uint32_t PWM_FREQUENCY_HZ = 1000;
PWM_PLUS0_CLKSRC |= ((48000000 / 1024 / PWM_FREQUENCY_HZ) << 16);
PWM_PLUS0_PERIOD = 1023;
PORTCON_PORTB_SEL0 &= ~(0
// Back light
| PORTCON_PORTB_SEL0_B6_MASK
);
PORTCON_PORTB_SEL0 |= 0
// Back light PWM
| PORTCON_PORTB_SEL0_B6_BITS_PWMP0_CH0
;
PWM_PLUS0_GEN =
PWMPLUS_GEN_CH0_OE_BITS_ENABLE |
PWMPLUS_GEN_CH0_OUTINV_BITS_ENABLE |
0;
PWM_PLUS0_CFG =
PWMPLUS_CFG_CNT_REP_BITS_ENABLE |
PWMPLUS_CFG_COUNTER_EN_BITS_ENABLE |
0;
}
void BACKLIGHT_TurnOn(void)
{
if (gEeprom.BACKLIGHT == 0)
if (gEeprom.BACKLIGHT_TIME != 0) {
backlightOn = true;
BACKLIGHT_SetBrightness(gEeprom.BACKLIGHT_MAX);
}
else {
BACKLIGHT_TurnOff();
return;
// turn the backlight ON
GPIO_SetBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT);
}
switch (gEeprom.BACKLIGHT)
switch (gEeprom.BACKLIGHT_TIME)
{
default:
case 1: // 5 sec
@@ -58,3 +91,32 @@ void BACKLIGHT_TurnOn(void)
gBacklightCountdown *= 2;
}
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);
#endif
gBacklightCountdown = 0;
backlightOn = false;
}
bool BACKLIGHT_IsOn()
{
return backlightOn;
}
void BACKLIGHT_SetBrightness(uint8_t brigtness)
{
PWM_PLUS0_CH0_COMP = (1 << brigtness) - 1;
//PWM_PLUS0_SWLOAD = 1;
}

View File

@@ -18,10 +18,24 @@
#define DRIVER_BACKLIGHT_H
#include <stdint.h>
#include <stdbool.h>
extern uint16_t gBacklightCountdown;
extern uint8_t gBacklightBrightness;
void BACKLIGHT_TurnOn(void);
#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_TurnOn();
void BACKLIGHT_TurnOff();
bool BACKLIGHT_IsOn();
void BACKLIGHT_SetBrightness(uint8_t brigtness);
#endif

View File

@@ -17,6 +17,19 @@
#ifndef 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 {
BK4819_REG_00 = 0x00U,
BK4819_REG_02 = 0x02U,
@@ -52,6 +65,7 @@ enum BK4819_REGISTER_t {
BK4819_REG_3A = 0x3AU,
BK4819_REG_3B = 0x3BU,
BK4819_REG_3C = 0x3CU,
BK4819_REG_3D = 0x3DU,
BK4819_REG_3E = 0x3EU,
BK4819_REG_3F = 0x3FU,
BK4819_REG_43 = 0x43U,
@@ -95,11 +109,11 @@ enum BK4819_REGISTER_t {
typedef enum BK4819_REGISTER_t BK4819_REGISTER_t;
enum BK4819_GPIO_PIN_t {
BK4819_GPIO0_PIN28 = 0,
BK4819_GPIO1_PIN29 = 1,
BK4819_GPIO3_PIN31 = 3,
BK4819_GPIO4_PIN32 = 4,
BK4819_GPIO5_PIN1_RED = 5,
BK4819_GPIO0_PIN28_RX_ENABLE = 0,
BK4819_GPIO1_PIN29_PA_ENABLE = 1,
BK4819_GPIO3_PIN31_UHF_LNA = 3,
BK4819_GPIO4_PIN32_VHF_LNA = 4,
BK4819_GPIO5_PIN1_RED = 5,
BK4819_GPIO6_PIN2_GREEN = 6,
};

View File

@@ -16,6 +16,7 @@
#include <stdio.h> // NULL
#include "audio.h"
#include "bk4819.h"
#include "bsp/dp32g030/gpio.h"
#include "bsp/dp32g030/portcon.h"
@@ -29,6 +30,9 @@
static const uint16_t FSK_RogerTable[7] = {0xF1A2, 0x7446, 0x61A4, 0x6544, 0x4E8A, 0xE044, 0xEA84};
static const uint8_t DTMF_TONE1_GAIN = 65;
static const uint8_t DTMF_TONE2_GAIN = 93;
static uint16_t gBK4819_GpioOutState;
bool gRxIdleMode;
@@ -51,8 +55,8 @@ void BK4819_Init(void)
BK4819_WriteRegister(BK4819_REG_37, 0x1D0F);
BK4819_WriteRegister(BK4819_REG_36, 0x0022);
BK4819_SetAGC(0);
// BK4819_SetAGC(1);
BK4819_DisableAGC();
// BK4819_EnableAGC();
BK4819_WriteRegister(BK4819_REG_19, 0b0001000001000001); // <15> MIC AGC 1 = disable 0 = enable
@@ -232,118 +236,113 @@ void BK4819_WriteU16(uint16_t Data)
}
}
void BK4819_SetAGC(uint8_t Value)
void BK4819_DisableAGC()
{
if (Value == 0)
{
// REG_10
//
// 0x0038 Rx AGC Gain Table[0]. (Index Max->Min is 3,2,1,0,-1)
//
// <15:10> ???
//
// <9:8> LNA Gain Short
// 3 = 0dB <<<
// 2 = -24dB // was -11
// 1 = -30dB // was -16
// 0 = -33dB // was -19
//
// <7:5> LNA Gain
// 7 = 0dB
// 6 = -2dB
// 5 = -4dB
// 4 = -6dB
// 3 = -9dB
// 2 = -14dB <<<
// 1 = -19dB
// 0 = -24dB
//
// <4:3> MIXER Gain
// 3 = 0dB <<<
// 2 = -3dB
// 1 = -6dB
// 0 = -8dB
//
// <2:0> PGA Gain
// 7 = 0dB
// 6 = -3dB <<<
// 5 = -6dB
// 4 = -9dB
// 3 = -15dB
// 2 = -21dB
// 1 = -27dB
// 0 = -33dB
//
BK4819_WriteRegister(BK4819_REG_13, (3u << 8) | (2u << 5) | (3u << 3) | (6u << 0)); // 000000 11 101 11 110
// REG_10
//
// 0x0038 Rx AGC Gain Table[0]. (Index Max->Min is 3,2,1,0,-1)
//
// <15:10> ???
//
// <9:8> LNA Gain Short
// 3 = 0dB <<<
// 2 = -24dB // was -11
// 1 = -30dB // was -16
// 0 = -33dB // was -19
//
// <7:5> LNA Gain
// 7 = 0dB
// 6 = -2dB
// 5 = -4dB
// 4 = -6dB
// 3 = -9dB
// 2 = -14dB <<<
// 1 = -19dB
// 0 = -24dB
//
// <4:3> MIXER Gain
// 3 = 0dB <<<
// 2 = -3dB
// 1 = -6dB
// 0 = -8dB
//
// <2:0> PGA Gain
// 7 = 0dB
// 6 = -3dB <<<
// 5 = -6dB
// 4 = -9dB
// 3 = -15dB
// 2 = -21dB
// 1 = -27dB
// 0 = -33dB
//
BK4819_WriteRegister(BK4819_REG_13, (3u << 8) | (5u << 5) | (3u << 3) | (6u << 0)); // 000000 11 101 11 110
BK4819_WriteRegister(BK4819_REG_12, 0x037B); // 000000 11 011 11 011
BK4819_WriteRegister(BK4819_REG_11, 0x027B); // 000000 10 011 11 011
BK4819_WriteRegister(BK4819_REG_10, 0x007A); // 000000 00 011 11 010
BK4819_WriteRegister(BK4819_REG_14, 0x0019); // 000000 00 000 11 001
BK4819_WriteRegister(BK4819_REG_12, 0x037B); // 000000 11 011 11 011
BK4819_WriteRegister(BK4819_REG_11, 0x027B); // 000000 10 011 11 011
BK4819_WriteRegister(BK4819_REG_10, 0x007A); // 000000 00 011 11 010
BK4819_WriteRegister(BK4819_REG_14, 0x0019); // 000000 00 000 11 001
BK4819_WriteRegister(BK4819_REG_49, 0x2A38);
BK4819_WriteRegister(BK4819_REG_7B, 0x8420);
}
else
if (Value == 1)
{ // what does this do ???
BK4819_WriteRegister(BK4819_REG_49, 0x2A38);
BK4819_WriteRegister(BK4819_REG_7B, 0x8420);
}
unsigned int i;
void BK4819_EnableAGC()
{
// REG_10
//
// 0x0038 Rx AGC Gain Table[0]. (Index Max->Min is 3,2,1,0,-1)
//
// (15:10> ???
//
// <9:8> LNA Gain Short
// 3 = 0dB << original
// 2 = -24dB // was -11
// 1 = -30dB // was -16
// 0 = -33dB // was -19
//
// <7:5> LNA Gain
// 7 = 0dB
// 6 = -2dB
// 5 = -4dB
// 4 = -6dB
// 3 = -9dB
// 2 = -14dB << original
// 1 = -19dB
// 0 = -24dB
//
// <4:3> MIXER Gain
// 3 = 0dB << original
// 2 = -3dB
// 1 = -6dB
// 0 = -8dB
//
// <2:0> PGA Gain
// 7 = 0dB
// 6 = -3dB << original
// 5 = -6dB
// 4 = -9dB
// 3 = -15dB
// 2 = -21dB
// 1 = -27dB
// 0 = -33dB
//
BK4819_WriteRegister(BK4819_REG_13, (3u << 8) | (5u << 5) | (3u << 3) | (6u << 0));
// REG_10
//
// 0x0038 Rx AGC Gain Table[0]. (Index Max->Min is 3,2,1,0,-1)
//
// (15:10> ???
//
// <9:8> LNA Gain Short
// 3 = 0dB << original
// 2 = -24dB // was -11
// 1 = -30dB // was -16
// 0 = -33dB // was -19
//
// <7:5> LNA Gain
// 7 = 0dB
// 6 = -2dB
// 5 = -4dB
// 4 = -6dB
// 3 = -9dB
// 2 = -14dB << original
// 1 = -19dB
// 0 = -24dB
//
// <4:3> MIXER Gain
// 3 = 0dB << original
// 2 = -3dB
// 1 = -6dB
// 0 = -8dB
//
// <2:0> PGA Gain
// 7 = 0dB
// 6 = -3dB << original
// 5 = -6dB
// 4 = -9dB
// 3 = -15dB
// 2 = -21dB
// 1 = -27dB
// 0 = -33dB
//
BK4819_WriteRegister(BK4819_REG_13, (3u << 8) | (2u << 5) | (3u << 3) | (6u << 0));
BK4819_WriteRegister(BK4819_REG_12, 0x037C); // 000000 11 011 11 100
BK4819_WriteRegister(BK4819_REG_11, 0x027B); // 000000 10 011 11 011
BK4819_WriteRegister(BK4819_REG_10, 0x007A); // 000000 00 011 11 010
BK4819_WriteRegister(BK4819_REG_14, 0x0018); // 000000 00 000 11 000
BK4819_WriteRegister(BK4819_REG_12, 0x037C); // 000000 11 011 11 100
BK4819_WriteRegister(BK4819_REG_11, 0x027B); // 000000 10 011 11 011
BK4819_WriteRegister(BK4819_REG_10, 0x007A); // 000000 00 011 11 010
BK4819_WriteRegister(BK4819_REG_14, 0x0018); // 000000 00 000 11 000
BK4819_WriteRegister(BK4819_REG_49, 0x2A38);
BK4819_WriteRegister(BK4819_REG_7B, 0x318C);
BK4819_WriteRegister(BK4819_REG_49, 0x2A38);
BK4819_WriteRegister(BK4819_REG_7B, 0x318C);
BK4819_WriteRegister(BK4819_REG_7C, 0x595E);
BK4819_WriteRegister(BK4819_REG_20, 0x8DEF);
BK4819_WriteRegister(BK4819_REG_7C, 0x595E);
BK4819_WriteRegister(BK4819_REG_20, 0x8DEF);
for (i = 0; i < 8; i++)
// Bug? The bit 0x2000 below overwrites the (i << 13)
BK4819_WriteRegister(BK4819_REG_06, ((i << 13) | 0x2500u) + 0x036u);
for (uint8_t i = 0; i < 8; i++) {
//BK4819_WriteRegister(BK4819_REG_06, ((i << 13) | 0x2500u) + 0x036u);
BK4819_WriteRegister(BK4819_REG_06, (i & 7) << 13 | 0x4A << 7 | 0x36);
}
}
@@ -760,19 +759,13 @@ void BK4819_SetupSquelch(
// 0 ~ 255
//
BK4819_WriteRegister(BK4819_REG_4E, // 01 101 11 1 00000000
#ifndef ENABLE_FASTER_CHANNEL_SCAN
// original (*)
(1u << 14) | // 1 ???
(3u << 11) | // *5 squelch = open delay .. 0 ~ 7
(2u << 9) | // *3 squelch = close delay .. 0 ~ 3
SquelchOpenGlitchThresh); // 0 ~ 255
#else
// faster (but twitchier)
(1u << 14) | // 1 ???
(2u << 11) | // *5 squelch = open delay .. 0 ~ 7
(1u << 9) | // *3 squelch = close delay .. 0 ~ 3
SquelchOpenGlitchThresh); // 0 ~ 255
#endif
(1u << 14) | // 1 ???
(5u << 11) | // *5 squelch = open delay .. 0 ~ 7
(6u << 9) | // *3 squelch = close delay .. 0 ~ 3
SquelchOpenGlitchThresh); // 0 ~ 255
// REG_4F
//
@@ -804,7 +797,14 @@ void BK4819_SetAF(BK4819_AF_Type_t AF)
// AF Output Inverse Mode = Inverse
// Undocumented bits 0x2040
//
BK4819_WriteRegister(BK4819_REG_47, 0x6040 | (AF << 8));
// BK4819_WriteRegister(BK4819_REG_47, 0x6040 | (AF << 8));
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)
@@ -843,20 +843,20 @@ void BK4819_RX_TurnOn(void)
void BK4819_PickRXFilterPathBasedOnFrequency(uint32_t Frequency)
{
if (Frequency < 28000000)
{
BK4819_ToggleGpioOut(BK4819_GPIO4_PIN32, true);
BK4819_ToggleGpioOut(BK4819_GPIO3_PIN31, false);
{ // VHF
BK4819_ToggleGpioOut(BK4819_GPIO4_PIN32_VHF_LNA, true);
BK4819_ToggleGpioOut(BK4819_GPIO3_PIN31_UHF_LNA, false);
}
else
if (Frequency == 0xFFFFFFFF)
{
BK4819_ToggleGpioOut(BK4819_GPIO4_PIN32, false);
BK4819_ToggleGpioOut(BK4819_GPIO3_PIN31, false);
{ // OFF
BK4819_ToggleGpioOut(BK4819_GPIO4_PIN32_VHF_LNA, false);
BK4819_ToggleGpioOut(BK4819_GPIO3_PIN31_UHF_LNA, false);
}
else
{
BK4819_ToggleGpioOut(BK4819_GPIO4_PIN32, false);
BK4819_ToggleGpioOut(BK4819_GPIO3_PIN31, true);
{ // UHF
BK4819_ToggleGpioOut(BK4819_GPIO4_PIN32_VHF_LNA, false);
BK4819_ToggleGpioOut(BK4819_GPIO3_PIN31_UHF_LNA, true);
}
}
@@ -975,27 +975,27 @@ void BK4819_EnableDTMF(void)
// <3:0> 14 Max symbol number for SelCall detection
//
// const uint16_t threshold = 24; // default, but doesn't decode non-QS radios
const uint16_t threshold = 160; // but 128 ~ 247 does
const uint16_t threshold = 130; // but 128 ~ 247 does
BK4819_WriteRegister(BK4819_REG_24, // 1 00011000 1 1 1 1110
(1u << BK4819_REG_24_SHIFT_UNKNOWN_15) |
(threshold << BK4819_REG_24_SHIFT_THRESHOLD) | // 0 ~ 255
(1u << BK4819_REG_24_SHIFT_UNKNOWN_6) |
BK4819_REG_24_ENABLE |
BK4819_REG_24_SELECT_DTMF |
(14u << BK4819_REG_24_SHIFT_MAX_SYMBOLS)); // 0 ~ 15
(15u << BK4819_REG_24_SHIFT_MAX_SYMBOLS)); // 0 ~ 15
}
void BK4819_PlayTone(uint16_t Frequency, bool bTuningGainSwitch)
{
uint16_t ToneConfig;
uint16_t ToneConfig = BK4819_REG_70_ENABLE_TONE1;
BK4819_EnterTxMute();
BK4819_SetAF(BK4819_AF_BEEP);
if (bTuningGainSwitch == 0)
ToneConfig = BK4819_REG_70_ENABLE_TONE1 | (96u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN);
ToneConfig |= 96u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN;
else
ToneConfig = BK4819_REG_70_ENABLE_TONE1 | (28u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN);
ToneConfig |= 28u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN;
BK4819_WriteRegister(BK4819_REG_70, ToneConfig);
BK4819_WriteRegister(BK4819_REG_30, 0);
@@ -1004,21 +1004,20 @@ void BK4819_PlayTone(uint16_t Frequency, bool bTuningGainSwitch)
BK4819_WriteRegister(BK4819_REG_71, scale_freq(Frequency));
}
// level 0 ~ 127
void BK4819_PlaySingleTone(const unsigned int tone_Hz, const unsigned int delay, const unsigned int level, const bool play_speaker)
{
BK4819_EnterTxMute();
if (play_speaker)
{
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
BK4819_SetAF(BK4819_AF_BEEP);
}
else
BK4819_SetAF(BK4819_AF_MUTE);
// level 0 ~ 127
// BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_ENABLE_TONE1 | (96u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
// BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_ENABLE_TONE1 | (28u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_ENABLE_TONE1 | ((level & 0x7f) << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
BK4819_EnableTXLink();
@@ -1032,12 +1031,13 @@ void BK4819_PlaySingleTone(const unsigned int tone_Hz, const unsigned int delay,
if (play_speaker)
{
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
BK4819_SetAF(BK4819_AF_MUTE);
}
BK4819_WriteRegister(BK4819_REG_70, 0x0000);
BK4819_WriteRegister(BK4819_REG_30, 0xC1FE);
BK4819_ExitTxMute();
}
void BK4819_EnterTxMute(void)
@@ -1198,7 +1198,7 @@ void BK4819_Conditional_RX_TurnOn_and_GPIO6_Enable(void)
{
if (gRxIdleMode)
{
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28, true);
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28_RX_ENABLE, true);
BK4819_RX_TurnOn();
}
}
@@ -1211,9 +1211,9 @@ void BK4819_EnterDTMF_TX(bool bLocalLoopback)
BK4819_WriteRegister(BK4819_REG_70,
BK4819_REG_70_MASK_ENABLE_TONE1 |
(83u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN) |
(DTMF_TONE1_GAIN << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN) |
BK4819_REG_70_MASK_ENABLE_TONE2 |
(83u << BK4819_REG_70_SHIFT_TONE2_TUNING_GAIN));
(DTMF_TONE2_GAIN << BK4819_REG_70_SHIFT_TONE2_TUNING_GAIN));
BK4819_EnableTXLink();
}
@@ -1249,30 +1249,30 @@ void BK4819_PlayDTMF(char Code)
uint16_t tone1 = 0;
uint16_t tone2 = 0;
switch (Code) // Hz Hz
{ //
case '0': tone1 = 9715; tone2 = 13793; break; // 941 1336
case '1': tone1 = 7196; tone2 = 12482; break; // 679 1209
case '2': tone1 = 7196; tone2 = 13793; break; // 697 1336
case '3': tone1 = 7196; tone2 = 15249; break; // 679 1477
case '4': tone1 = 7950; tone2 = 12482; break; // 770 1209
case '5': tone1 = 7950; tone2 = 13793; break; // 770 1336
case '6': tone1 = 7950; tone2 = 15249; break; // 770 1477
case '7': tone1 = 8796; tone2 = 12482; break; // 852 1209
case '8': tone1 = 8796; tone2 = 13793; break; // 852 1336
case '9': tone1 = 8796; tone2 = 15249; break; // 852 1477
case 'A': tone1 = 7196; tone2 = 16860; break; // 679 1633
case 'B': tone1 = 7950; tone2 = 16860; break; // 770 1633
case 'C': tone1 = 8796; tone2 = 16860; break; // 852 1633
case 'D': tone1 = 9715; tone2 = 16860; break; // 941 1633
case '*': tone1 = 9715; tone2 = 12482; break; // 941 1209
case '#': tone1 = 9715; tone2 = 15249; break; // 941 1477
switch (Code)
{
case '0': tone1 = 941; tone2 = 1336; break;
case '1': tone1 = 697; tone2 = 1209; break;
case '2': tone1 = 697; tone2 = 1336; break;
case '3': tone1 = 697; tone2 = 1477; break;
case '4': tone1 = 770; tone2 = 1209; break;
case '5': tone1 = 770; tone2 = 1336; break;
case '6': tone1 = 770; tone2 = 1477; break;
case '7': tone1 = 852; tone2 = 1209; break;
case '8': tone1 = 852; tone2 = 1336; break;
case '9': tone1 = 852; tone2 = 1477; break;
case 'A': tone1 = 697; tone2 = 1633; break;
case 'B': tone1 = 770; tone2 = 1633; break;
case 'C': tone1 = 852; tone2 = 1633; break;
case 'D': tone1 = 941; tone2 = 1633; break;
case '*': tone1 = 941; tone2 = 1209; break;
case '#': tone1 = 941; tone2 = 1477; break;
}
if (tone1 > 0)
BK4819_WriteRegister(BK4819_REG_71, tone1);
BK4819_WriteRegister(BK4819_REG_71, (((uint32_t)tone1 * 103244) + 5000) / 10000); // with rounding
if (tone2 > 0)
BK4819_WriteRegister(BK4819_REG_72, tone2);
BK4819_WriteRegister(BK4819_REG_72, (((uint32_t)tone2 * 103244) + 5000) / 10000); // with rounding
}
void BK4819_PlayDTMFString(const char *pString, bool bDelayFirst, uint16_t FirstCodePersistTime, uint16_t HashCodePersistTime, uint16_t CodePersistTime, uint16_t CodeInternalTime)
@@ -1322,8 +1322,7 @@ void BK4819_TransmitTone(bool bLocalLoopback, uint32_t Frequency)
//
// set the tone amplitude
//
// BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_MASK_ENABLE_TONE1 | (96u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_MASK_ENABLE_TONE1 | (28u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_MASK_ENABLE_TONE1 | (66u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
BK4819_WriteRegister(BK4819_REG_71, scale_freq(Frequency));
@@ -1513,12 +1512,46 @@ BK4819_CssScanResult_t BK4819_GetCxCSSScanResult(uint32_t *pCdcssFreq, uint16_t
void BK4819_DisableFrequencyScan(void)
{
BK4819_WriteRegister(BK4819_REG_32, 0x0244);
// REG_32
//
// <15:14> 0 frequency scan time
// 0 = 0.2 sec
// 1 = 0.4 sec
// 2 = 0.8 sec
// 3 = 1.6 sec
//
// <13:1> ???
//
// <0> 0 frequency scan enable
// 1 = enable
// 0 = disable
//
BK4819_WriteRegister(BK4819_REG_32, // 0x0244); // 00 0000100100010 0
( 0u << 14) | // 0 frequency scan Time
(290u << 1) | // ???
( 0u << 0)); // 0 frequency scan enable
}
void BK4819_EnableFrequencyScan(void)
{
BK4819_WriteRegister(BK4819_REG_32, 0x0245); // 00 0000100100010 1
// REG_32
//
// <15:14> 0 frequency scan time
// 0 = 0.2 sec
// 1 = 0.4 sec
// 2 = 0.8 sec
// 3 = 1.6 sec
//
// <13:1> ???
//
// <0> 0 frequency scan enable
// 1 = enable
// 0 = disable
//
BK4819_WriteRegister(BK4819_REG_32, // 0x0245); // 00 0000100100010 1
( 0u << 14) | // 0 frequency scan time
(290u << 1) | // ???
( 1u << 0)); // 1 frequency scan enable
}
void BK4819_SetScanFrequency(uint32_t Frequency)
@@ -1668,8 +1701,7 @@ void BK4819_PlayRoger(void)
BK4819_EnterTxMute();
BK4819_SetAF(BK4819_AF_MUTE);
// BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_ENABLE_TONE1 | (96u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_ENABLE_TONE1 | (28u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
BK4819_WriteRegister(BK4819_REG_70, BK4819_REG_70_ENABLE_TONE1 | (66u << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN));
BK4819_EnableTXLink();
SYSTEM_DelayMs(50);
@@ -1750,7 +1782,12 @@ void BK4819_PlayDTMFEx(bool bLocalLoopback, char Code)
BK4819_EnterTxMute();
BK4819_SetAF(bLocalLoopback ? BK4819_AF_BEEP : BK4819_AF_MUTE);
BK4819_WriteRegister(BK4819_REG_70, 0xD3D3);
BK4819_WriteRegister(BK4819_REG_70,
BK4819_REG_70_MASK_ENABLE_TONE1 |
(DTMF_TONE1_GAIN << BK4819_REG_70_SHIFT_TONE1_TUNING_GAIN) |
BK4819_REG_70_MASK_ENABLE_TONE2 |
(DTMF_TONE2_GAIN << BK4819_REG_70_SHIFT_TONE2_TUNING_GAIN));
BK4819_EnableTXLink();

View File

@@ -28,12 +28,12 @@ enum BK4819_AF_Type_t
BK4819_AF_FM = 1u, // FM
BK4819_AF_ALAM = 2u, //
BK4819_AF_BEEP = 3u, //
BK4819_AF_BASEBAND1 = 4u, // SSB
BK4819_AF_BASEBAND2 = 5u, // SSB
BK4819_AF_BASEBAND1 = 4u, // RAW
BK4819_AF_BASEBAND2 = 5u, // USB
BK4819_AF_CTCO = 6u, // strange LF audio .. maybe the CTCSS LF line ?
BK4819_AF_AM = 7u, // AM
BK4819_AF_FSKO = 8u, // nothing
BK4819_AF_UNKNOWN3 = 9u, // distorted
BK4819_AF_UNKNOWN3 = 9u, // BYP
BK4819_AF_UNKNOWN4 = 10u, // nothing at all
BK4819_AF_UNKNOWN5 = 11u, // distorted
BK4819_AF_UNKNOWN6 = 12u, // distorted
@@ -62,15 +62,18 @@ enum BK4819_CssScanResult_t
typedef enum BK4819_CssScanResult_t BK4819_CssScanResult_t;
// radio is asleep, not listening
extern bool gRxIdleMode;
void BK4819_Init(void);
uint16_t BK4819_ReadRegister(BK4819_REGISTER_t Register);
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_WriteU16(uint16_t Data);
void BK4819_SetAGC(uint8_t Value);
void BK4819_EnableAGC();
void BK4819_DisableAGC();
void BK4819_ToggleGpioOut(BK4819_GPIO_PIN_t Pin, bool bSet);

View File

@@ -14,25 +14,5 @@
* limitations under the License.
*/
#include "driver/gpio.h"
void GPIO_ClearBit(volatile uint32_t *pReg, uint8_t Bit)
{
*pReg &= ~(1U << Bit);
}
uint8_t GPIO_CheckBit(volatile uint32_t *pReg, uint8_t Bit)
{
return (*pReg >> Bit) & 1U;
}
void GPIO_FlipBit(volatile uint32_t *pReg, uint8_t Bit)
{
*pReg ^= 1U << Bit;
}
void GPIO_SetBit(volatile uint32_t *pReg, uint8_t Bit)
{
*pReg |= 1U << Bit;
}

View File

@@ -58,10 +58,21 @@ enum GPIOC_PINS {
GPIOC_PIN_PTT = 5
};
void GPIO_ClearBit(volatile uint32_t *pReg, uint8_t Bit);
uint8_t GPIO_CheckBit(volatile uint32_t *pReg, uint8_t Bit);
void GPIO_FlipBit( volatile uint32_t *pReg, uint8_t Bit);
void GPIO_SetBit( volatile uint32_t *pReg, uint8_t Bit);
static inline void GPIO_ClearBit(volatile uint32_t *pReg, uint8_t Bit) {
*pReg &= ~(1U << Bit);
}
static inline uint8_t GPIO_CheckBit(volatile uint32_t *pReg, uint8_t Bit) {
return (*pReg >> Bit) & 1U;
}
static inline void GPIO_FlipBit(volatile uint32_t *pReg, uint8_t Bit) {
*pReg ^= 1U << Bit;
}
static inline void GPIO_SetBit(volatile uint32_t *pReg, uint8_t Bit) {
*pReg |= 1U << Bit;
}
#endif

View File

@@ -140,65 +140,116 @@ void ST7565_FillScreen(uint8_t Value)
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)
{
if (full)
{
if (full) {
SPI0_Init();
ST7565_HardwareReset();
SPI_ToggleMasterMode(&SPI0->CR, false);
ST7565_WriteByte(0xE2); // internal reset
ST7565_WriteByte(ST7565_CMD_SOFTWARE_RESET); // software reset
SYSTEM_DelayMs(120);
}
else
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
ST7565_WriteByte(0x24); //
ST7565_WriteByte(0x81); // volume first ?
for(uint8_t i = 0; i < 8; i++)
ST7565_WriteByte(cmds[i]);
ST7565_WriteByte(0x1f); // contrast ?
if (full)
{
ST7565_WriteByte(0x2B); // power control ?
if (full) {
ST7565_WriteByte(ST7565_CMD_POWER_CIRCUIT | 0b011); // VB=0 VR=1 VF=1
SYSTEM_DelayMs(1);
ST7565_WriteByte(ST7565_CMD_POWER_CIRCUIT | 0b110); // VB=1 VR=1 VF=0
SYSTEM_DelayMs(1);
ST7565_WriteByte(0x2E); // power control ?
SYSTEM_DelayMs(1);
ST7565_WriteByte(0x2F); //
ST7565_WriteByte(0x2F); //
ST7565_WriteByte(0x2F); //
ST7565_WriteByte(0x2F); //
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(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);
if (full)
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)
{
GPIO_SetBit(&GPIOB->DATA, GPIOB_PIN_ST7565_RES);

View File

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

View File

@@ -26,22 +26,22 @@ const freq_band_table_t frequencyBandTable[7] =
{
#ifndef ENABLE_WIDE_RX
// QS original
{ 5000000, 7600000},
{10800000, 13600000},
{13600000, 17400000},
{17400000, 35000000},
{35000000, 40000000},
{40000000, 47000000},
{47000000, 60000000}
{.lower = 5000000, .upper = 7600000},
{.lower = 10800000, .upper = 13700000},
{.lower = 13700000, .upper = 17400000},
{.lower = 17400000, .upper = 35000000},
{.lower = 35000000, .upper = 40000000},
{.lower = 40000000, .upper = 47000000},
{.lower = 47000000, .upper = 60000000}
#else
// extended range
{ 1800000, 10800000},
{10800000, 13600000},
{13600000, 17400000},
{17400000, 35000000},
{35000000, 40000000},
{40000000, 47000000},
{47000000, 130000000}
{.lower = BX4819_band1.lower, .upper = 10800000},
{.lower = 10800000, .upper = 13700000},
{.lower = 13700000, .upper = 17400000},
{.lower = 17400000, .upper = 35000000},
{.lower = 35000000, .upper = 40000000},
{.lower = 40000000, .upper = 47000000},
{.lower = 47000000, .upper = BX4819_band2.upper}
#endif
};
@@ -61,13 +61,29 @@ const freq_band_table_t frequencyBandTable[7] =
};
#endif
#ifndef ENABLE_12_5KHZ_STEP
// QS steps (*10 Hz)
const uint16_t StepFrequencyTable[7] = {250, 500, 625, 1000, 1250, 2500, 833};
#else
// includes 1.25kHz step
const uint16_t StepFrequencyTable[7] = {125, 250, 625, 1000, 1250, 2500, 833};
#endif
const uint16_t gStepFrequencyTable[] = {
250, 500, 625, 1000, 1250, 2500, 833,
1, 5, 10, 25, 50, 100, 125, 1500, 3000, 5000, 10000, 12500, 25000, 50000
};
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)
{
@@ -100,25 +116,17 @@ uint8_t FREQUENCY_CalculateOutputPower(uint8_t TxpLow, uint8_t TxpMid, uint8_t T
return TxpMid;
}
uint32_t FREQUENCY_FloorToStep(uint32_t Upper, uint32_t Step, uint32_t Lower)
uint32_t FREQUENCY_RoundToStep(uint32_t freq, uint16_t step)
{
uint32_t Index;
if (Step == 833)
{
const uint32_t Delta = Upper - Lower;
uint32_t Base = (Delta / 2500) * 2500;
const uint32_t Index = ((Delta - Base) % 2500) / 833;
if (Index == 2)
Base++;
return Lower + Base + (Index * 833);
if(step == 833) {
uint32_t base = freq/2500*2500;
int chno = (freq - base) / 700; // convert entered aviation 8.33Khz channel number scheme to actual frequency.
return base + (chno * 833) + (chno == 3);
}
Index = (Upper - Lower) / Step;
return Lower + (Step * Index);
if(step == 1)
return freq;
return (freq + (step + 1) / 2) / step * step;
}
int TX_freq_check(const uint32_t Frequency)
@@ -133,18 +141,18 @@ int TX_freq_check(const uint32_t Frequency)
switch (gSetting_F_LOCK)
{
case F_LOCK_OFF:
if (Frequency >= 13600000 && Frequency < 17400000)
case F_LOCK_DEF:
if (Frequency >= frequencyBandTable[BAND3_137MHz].lower && Frequency < frequencyBandTable[BAND3_137MHz].upper)
return 0;
if (Frequency >= 17400000 && Frequency < 35000000)
if (Frequency >= frequencyBandTable[BAND4_174MHz].lower && Frequency < frequencyBandTable[BAND4_174MHz].upper)
if (gSetting_200TX)
return 0;
if (Frequency >= 35000000 && Frequency < 40000000)
if (Frequency >= frequencyBandTable[BAND5_350MHz].lower && Frequency < frequencyBandTable[BAND5_350MHz].upper)
if (gSetting_350TX && gSetting_350EN)
return 0;
if (Frequency >= 40000000 && Frequency < 47000000)
if (Frequency >= frequencyBandTable[BAND6_400MHz].lower && Frequency < frequencyBandTable[BAND6_400MHz].upper)
return 0;
if (Frequency >= 47000000 && Frequency <= 60000000)
if (Frequency >= frequencyBandTable[BAND7_470MHz].lower && Frequency <= 60000000)
if (gSetting_500TX)
return 0;
break;
@@ -171,18 +179,27 @@ int TX_freq_check(const uint32_t Frequency)
break;
case F_LOCK_430:
if (Frequency >= 13600000 && Frequency < 17400000)
if (Frequency >= frequencyBandTable[BAND3_137MHz].lower && Frequency < 17400000)
return 0;
if (Frequency >= 40000000 && Frequency < 43000000)
return 0;
break;
case F_LOCK_438:
if (Frequency >= 13600000 && Frequency < 17400000)
if (Frequency >= frequencyBandTable[BAND3_137MHz].lower && Frequency < 17400000)
return 0;
if (Frequency >= 40000000 && Frequency < 43800000)
return 0;
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

View File

@@ -19,8 +19,6 @@
#include <stdint.h>
#define ENABLE_12_5KHZ_STEP
typedef struct {
const uint32_t lower;
const uint32_t upper;
@@ -31,44 +29,44 @@ extern const freq_band_table_t BX4819_band2;
extern const freq_band_table_t frequencyBandTable[7];
enum FREQUENCY_Band_t {
typedef enum {
BAND_NONE = -1,
BAND1_50MHz = 0,
BAND2_108MHz,
BAND3_136MHz,
BAND3_137MHz,
BAND4_174MHz,
BAND5_350MHz,
BAND6_400MHz,
BAND7_470MHz
};
typedef enum FREQUENCY_Band_t 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
extern const uint32_t NoaaFrequencyTable[10];
@@ -76,7 +74,10 @@ extern const uint16_t StepFrequencyTable[7];
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);
uint32_t FREQUENCY_FloorToStep(uint32_t Upper, uint32_t Step, uint32_t Lower);
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 RX_freq_check(const uint32_t Frequency);

View File

@@ -20,6 +20,7 @@
#if defined(ENABLE_FMRADIO)
#include "app/fm.h"
#endif
#include "audio.h"
#include "bsp/dp32g030/gpio.h"
#include "dcs.h"
#include "driver/backlight.h"
@@ -29,6 +30,7 @@
#include "driver/bk4819.h"
#include "driver/gpio.h"
#include "driver/system.h"
#include "driver/st7565.h"
#include "frequencies.h"
#include "functions.h"
#include "helper/battery.h"
@@ -42,20 +44,20 @@ FUNCTION_Type_t gCurrentFunction;
void FUNCTION_Init(void)
{
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE))
#endif
#ifdef ENABLE_NOAA
if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE))
#endif
{
gCurrentCodeType = gSelectedCodeType;
if (gCssScanMode == CSS_SCAN_MODE_OFF)
gCurrentCodeType = gRxVfo->AM_mode ? CODE_TYPE_OFF : gRxVfo->pRX->CodeType;
gCurrentCodeType = (gRxVfo->Modulation != MODULATION_FM) ? CODE_TYPE_OFF : gRxVfo->pRX->CodeType;
}
#ifdef ENABLE_NOAA
else
gCurrentCodeType = CODE_TYPE_CONTINUOUS_TONE;
#endif
#ifdef ENABLE_NOAA
else
gCurrentCodeType = CODE_TYPE_CONTINUOUS_TONE;
#endif
#ifdef ENABLE_DTMF_CALLING
DTMF_clear_RX();
#endif
g_CxCSS_TAIL_Found = false;
g_CDCSS_Lost = false;
@@ -93,17 +95,19 @@ void FUNCTION_Select(FUNCTION_Type_t Function)
{
BK4819_Conditional_RX_TurnOn_and_GPIO6_Enable();
gRxIdleMode = false;
UI_DisplayStatus(false);
UI_DisplayStatus();
}
switch (Function)
{
case FUNCTION_FOREGROUND:
#ifdef ENABLE_DTMF_CALLING
if (gDTMF_ReplyState != DTMF_REPLY_NONE)
RADIO_PrepareCssTX();
#endif
if (PreviousFunction == FUNCTION_TRANSMIT)
{
ST7565_FixInterfGlitch();
gVFO_RSSI_bar_level[0] = 0;
gVFO_RSSI_bar_level[1] = 0;
}
@@ -115,14 +119,15 @@ void FUNCTION_Select(FUNCTION_Type_t Function)
if (gFmRadioMode)
gFM_RestoreCountdown_10ms = fm_restore_countdown_10ms;
#endif
#ifdef ENABLE_DTMF_CALLING
if (gDTMF_CallState == DTMF_CALL_STATE_CALL_OUT ||
gDTMF_CallState == DTMF_CALL_STATE_RECEIVED ||
gDTMF_CallState == DTMF_CALL_STATE_RECEIVED_STAY)
{
gDTMF_auto_reset_time_500ms = gEeprom.DTMF_auto_reset_time * 2;
}
#endif
gUpdateStatus = true;
return;
@@ -145,7 +150,7 @@ void FUNCTION_Select(FUNCTION_Type_t Function)
BK4819_DisableVox();
BK4819_Sleep();
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28, false);
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28_RX_ENABLE, false);
gUpdateStatus = true;
@@ -159,8 +164,10 @@ void FUNCTION_Select(FUNCTION_Type_t Function)
// if DTMF is enabled when TX'ing, it changes the TX audio filtering !! .. 1of11
BK4819_DisableDTMF();
#ifdef ENABLE_DTMF_CALLING
// clear the DTMF RX buffer
DTMF_clear_RX();
#endif
// clear the DTMF RX live decoder buffer
gDTMF_RX_live_timeout = 0;
@@ -179,13 +186,13 @@ void FUNCTION_Select(FUNCTION_Type_t Function)
GUI_DisplayScreen();
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
SYSTEM_DelayMs(20);
BK4819_PlayTone(500, 0);
SYSTEM_DelayMs(2);
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
gEnableSpeaker = true;
@@ -223,7 +230,7 @@ void FUNCTION_Select(FUNCTION_Type_t Function)
BK4819_TransmitTone(true, 500);
#endif
SYSTEM_DelayMs(2);
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
#ifdef ENABLE_ALARM
gAlarmToneCounter = 0;
#endif

View File

@@ -21,11 +21,10 @@ def obfuscate(fw):
return bytes([a^b for a, b in zip(fw, cycle(OBFUSCATION))])
plain = open(sys.argv[1], 'rb').read()
if len(sys.argv[2]) > 10:
print('Version suffix is too big!')
sys.exit(1)
version = b'*OEFW-' + bytes(sys.argv[2], 'ascii')
version = b'*' + bytes(sys.argv[2], 'ascii') + b' ' + bytes(sys.argv[3], 'ascii')
version = version[0:16]
if len(version) < 16:
version += b'\x00' * (16 - len(version))
@@ -36,5 +35,5 @@ crc.update(packed)
digest = crc.digest()
digest = bytes([digest[1], digest[0]])
open(sys.argv[3], 'wb').write(packed + digest)
open(sys.argv[4], 'wb').write(packed + digest)

View File

@@ -16,7 +16,10 @@
#include "battery.h"
#include "driver/backlight.h"
#include "driver/st7565.h"
#include "functions.h"
#include "misc.h"
#include "settings.h"
#include "ui/battery.h"
#include "ui/menu.h"
#include "ui/ui.h"
@@ -28,54 +31,66 @@ uint16_t gBatteryVoltages[4];
uint16_t gBatteryVoltageAverage;
uint8_t gBatteryDisplayLevel;
bool gChargingWithTypeC;
bool gLowBattery;
bool gLowBatteryBlink;
bool gLowBattery;
bool gLowBatteryConfirmed;
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;
/*
Based on real measurement
Volts Percent Volts Percent Volts Percent Volts Percent
8.28 100 7.95099 73 7.7184 46 7.48116 19
8.22 99 7.94188 72 7.71091 45 7.46364 18
8.17 98 7.9338 71 7.70911 44 7.44789 17
8.13632 97 7.92684 70 7.70098 43 7.43318 16
8.12308 96 7.9178 69 7.69619 42 7.41864 15
8.09688 95 7.90823 68 7.69018 41 7.40579 14
8.08124 94 7.89858 67 7.68473 40 7.39289 13
8.06912 93 7.88667 66 7.67911 39 7.37839 12
8.05826 92 7.87673 65 7.67087 38 7.36017 11
8.05008 91 7.86864 64 7.66601 37 7.33704 10
8.04192 90 7.85802 63 7.6599 36 7.3079 9
8.03866 89 7.84816 62 7.65418 35 7.26793 8
8.03089 88 7.83744 61 7.64775 34 7.21291 7
8.0284 87 7.82748 60 7.64065 33 7.13416 6
8.02044 86 7.81983 59 7.63136 32 7.02785 5
8.01832 85 7.80929 58 7.6244 31 6.89448 4
8.01072 84 7.79955 57 7.61636 30 6.72912 3
8.00965 83 7.79017 56 7.60738 29 6.5164 2
8.00333 82 7.78107 55 7.597 28 6.19272 1
7.99973 81 7.77167 54 7.5876 27 5.63138 0
7.99218 80 7.76509 53 7.57732 26
7.98999 79 7.75649 52 7.56563 25
7.98234 78 7.74939 51 7.55356 24
7.97892 77 7.7411 50 7.54088 23
7.97043 76 7.73648 49 7.52683 22
7.96478 75 7.72911 48 7.51285 21
7.95983 74 7.72097 47 7.49832 20
*/
unsigned int BATTERY_VoltsToPercent(const unsigned int voltage_10mV)
{
if (voltage_10mV > 814)
return 100;
if (voltage_10mV > 756)
return ((132ul * voltage_10mV) / 100) - 974u;
if (voltage_10mV > 729)
return ((63ul * voltage_10mV) / 100) - 452u;
if (voltage_10mV > 600)
return ((52ul * voltage_10mV) / 1000) - 31u;
const uint16_t crv1600[][2] = {
{828, 100},
{814, 97 },
{760, 25 },
{729, 6 },
{630, 0 },
{0, 0 }
};
const uint16_t crv2200[][2] = {
{832, 100},
{813, 95 },
{740, 60 },
{707, 21 },
{682, 5 },
{630, 0 },
{0, 0 }
};
const BATTERY_Type_t type = gEeprom.BATTERY_TYPE;
const uint16_t(*crv)[2];
uint8_t size;
if (type == BATTERY_TYPE_2200_MAH) {
crv = crv2200;
size = ARRAY_SIZE(crv2200);
}
else {
crv = crv1600;
size = ARRAY_SIZE(crv1600);
}
const int mulipl = 1000;
for (int i = 1; i < size; i++) {
if (voltage_10mV > crv[i][0]) {
int a = (crv[i - 1][1] - crv[i][1]) * mulipl / (crv[i - 1][0] - crv[i][0]);
int b = crv[i][1] - a * crv[i][0] / mulipl;
int p = a * voltage_10mV / mulipl + b;
return MIN(p, 100);
}
}
return 0;
}
@@ -84,18 +99,28 @@ void BATTERY_GetReadings(const bool bDisplayBatteryLevel)
const uint8_t PreviousBatteryLevel = gBatteryDisplayLevel;
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];
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;
if (gBatteryCurrent < 501)
@@ -122,7 +147,9 @@ void BATTERY_GetReadings(const bool bDisplayBatteryLevel)
if (PreviousBatteryLevel != gBatteryDisplayLevel)
{
if (gBatteryDisplayLevel < 2)
if(gBatteryDisplayLevel > 2)
gLowBatteryConfirmed = false;
else if (gBatteryDisplayLevel < 2)
{
gLowBattery = true;
}
@@ -133,7 +160,64 @@ void BATTERY_GetReadings(const bool bDisplayBatteryLevel)
if (bDisplayBatteryLevel)
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

@@ -27,14 +27,22 @@ extern uint16_t gBatteryVoltages[4];
extern uint16_t gBatteryVoltageAverage;
extern uint8_t gBatteryDisplayLevel;
extern bool gChargingWithTypeC;
extern bool gLowBattery;
extern bool gLowBatteryBlink;
extern bool gLowBattery;
extern bool gLowBatteryConfirmed;
extern uint16_t gBatteryCheckCounter;
extern volatile uint16_t gPowerSave_10ms;
typedef enum {
BATTERY_TYPE_1600_MAH,
BATTERY_TYPE_2200_MAH,
BATTERY_TYPE_UNKNOWN
} BATTERY_Type_t;
unsigned int BATTERY_VoltsToPercent(const unsigned int voltage_10mV);
void BATTERY_GetReadings(const bool bDisplayBatteryLevel);
void BATTERY_TimeSlice500ms(void);
#endif

9
main.c
View File

@@ -61,7 +61,8 @@ void Main(void)
| SYSCON_DEV_CLK_GATE_SPI0_BITS_ENABLE
| SYSCON_DEV_CLK_GATE_SARADC_BITS_ENABLE
| SYSCON_DEV_CLK_GATE_CRC_BITS_ENABLE
| SYSCON_DEV_CLK_GATE_AES_BITS_ENABLE;
| SYSCON_DEV_CLK_GATE_AES_BITS_ENABLE
| SYSCON_DEV_CLK_GATE_PWM_PLUS0_BITS_ENABLE;
SYSTICK_Init();
BOARD_Init();
@@ -140,10 +141,10 @@ void Main(void)
{
FUNCTION_Select(FUNCTION_POWER_SAVE);
if (gEeprom.BACKLIGHT < (ARRAY_SIZE(gSubMenu_BACKLIGHT) - 1))
GPIO_ClearBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT); // turn the backlight OFF
if (gEeprom.BACKLIGHT_TIME < (ARRAY_SIZE(gSubMenu_BACKLIGHT) - 1)) // backlight is not set to be always on
BACKLIGHT_TurnOff(); // turn the backlight OFF
else
GPIO_SetBit(&GPIOB->DATA, GPIOB_PIN_BACKLIGHT); // turn the backlight ON
BACKLIGHT_TurnOn(); // turn the backlight ON
gReducedService = true;
}

17
misc.c
View File

@@ -30,9 +30,11 @@ const uint8_t menu_timeout_500ms = 20000 / 500; // 20 second
const uint16_t menu_timeout_long_500ms = 120000 / 500; // 2 minutes
const uint8_t DTMF_RX_live_timeout_500ms = 6000 / 500; // 6 seconds live decoder on screen
#ifdef ENABLE_DTMF_CALLING
const uint8_t DTMF_RX_timeout_500ms = 10000 / 500; // 10 seconds till we wipe the DTMF receiver
const uint8_t DTMF_decode_ring_countdown_500ms = 15000 / 500; // 15 seconds .. time we sound the ringing for
const uint8_t DTMF_txstop_countdown_500ms = 3000 / 500; // 6 seconds
#endif
const uint8_t key_input_timeout_500ms = 8000 / 500; // 8 seconds
@@ -78,11 +80,12 @@ const uint32_t gDefaultAesKey[4] = {0x4AA5CC60, 0x0312CC5F, 0x
const uint8_t gMicGain_dB2[5] = {3, 8, 16, 24, 31};
bool gSetting_350TX;
#ifdef ENABLE_DTMF_CALLING
bool gSetting_KILLED;
#endif
bool gSetting_200TX;
bool gSetting_500TX;
bool gSetting_350EN;
bool gSetting_TX_EN;
uint8_t gSetting_F_LOCK;
bool gSetting_ScrambleEnable;
@@ -112,7 +115,7 @@ uint16_t gEEPROM_RSSI_CALIB[7][4];
uint16_t gEEPROM_1F8A;
uint16_t gEEPROM_1F8C;
uint8_t gMR_ChannelAttributes[FREQ_CHANNEL_LAST + 1];
ChannelAttributes_t gMR_ChannelAttributes[FREQ_CHANNEL_LAST + 1];
volatile uint16_t gBatterySaveCountdown_10ms = battery_save_count_10ms;
@@ -154,7 +157,11 @@ uint8_t gVFO_RSSI_bar_level[2];
uint8_t gReducedService;
uint8_t gBatteryVoltageIndex;
CssScanMode_t gCssScanMode;
bool gCssBackgroundScan;
volatile bool gScheduleScanListen = true;
volatile uint16_t gScanPauseDelayIn_10ms;
bool gUpdateRSSI;
#if defined(ENABLE_ALARM) || defined(ENABLE_TX1750)
AlarmState_t gAlarmState;
@@ -197,13 +204,9 @@ bool g_SquelchLost;
uint8_t gFlashLightState;
volatile uint16_t gFlashLightBlinkCounter;
bool gFlagEndTransmission;
uint16_t gLowBatteryCountdown;
uint8_t gNextMrChannel;
ReceptionMode_t gRxReceptionMode;
enum scan_next_chan_t gCurrentScanList;
uint32_t gRestoreFrequency;
bool gRxVfoIsActive;
#ifdef ENABLE_ALARM
uint8_t gAlarmToneCounter;

60
misc.h
View File

@@ -35,9 +35,7 @@
#define IS_MR_CHANNEL(x) ((x) <= MR_CHANNEL_LAST)
#define IS_FREQ_CHANNEL(x) ((x) >= FREQ_CHANNEL_FIRST && (x) <= FREQ_CHANNEL_LAST)
#define IS_VALID_CHANNEL(x) ((x) < LAST_CHANNEL)
#define IS_NOAA_CHANNEL(x) ((x) >= NOAA_CHANNEL_FIRST && (x) <= NOAA_CHANNEL_LAST)
#define IS_NOT_NOAA_CHANNEL(x) ((x) <= FREQ_CHANNEL_LAST)
enum {
MR_CHANNEL_FIRST = 0,
@@ -77,23 +75,6 @@ enum 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 scan_next_chan_t {
SCAN_NEXT_CHAN_SCANLIST1 = 0,
SCAN_NEXT_CHAN_SCANLIST2,
SCAN_NEXT_CHAN_DUAL_WATCH,
SCAN_NEXT_CHAN_MR,
SCAN_NEXT_NUM
};
typedef enum scan_next_chan_t scan_next_chan_t;
enum BacklightOnRxTx_t {
BACKLIGHT_ON_TR_OFF,
BACKLIGHT_ON_TR_TX,
@@ -112,9 +93,11 @@ extern const uint8_t menu_timeout_500ms;
extern const uint16_t menu_timeout_long_500ms;
extern const uint8_t DTMF_RX_live_timeout_500ms;
#ifdef ENABLE_DTMF_CALLING
extern const uint8_t DTMF_RX_timeout_500ms;
extern const uint8_t DTMF_decode_ring_countdown_500ms;
extern const uint8_t DTMF_txstop_countdown_500ms;
#endif
extern const uint8_t key_input_timeout_500ms;
@@ -161,11 +144,12 @@ extern const uint16_t scan_pause_delay_in_7_10ms;
extern const uint8_t gMicGain_dB2[5];
extern bool gSetting_350TX;
#ifdef ENABLE_DTMF_CALLING
extern bool gSetting_KILLED;
#endif
extern bool gSetting_200TX;
extern bool gSetting_500TX;
extern bool gSetting_350EN;
extern bool gSetting_TX_EN;
extern uint8_t gSetting_F_LOCK;
extern bool gSetting_ScrambleEnable;
@@ -196,7 +180,18 @@ extern uint16_t gEEPROM_RSSI_CALIB[7][4];
extern uint16_t gEEPROM_1F8A;
extern uint16_t gEEPROM_1F8C;
extern uint8_t gMR_ChannelAttributes[207];
typedef union {
struct {
uint8_t
band : 4,
compander : 2,
scanlist2 : 1,
scanlist1 : 1;
};
uint8_t __val;
} ChannelAttributes_t;
extern ChannelAttributes_t gMR_ChannelAttributes[207];
extern volatile uint16_t gBatterySaveCountdown_10ms;
@@ -236,9 +231,24 @@ extern bool gEndOfRxDetectedMaybe;
extern int16_t gVFO_RSSI[2];
extern uint8_t gVFO_RSSI_bar_level[2];
// battery critical, limit functionality to minimum
extern uint8_t gReducedService;
extern uint8_t gBatteryVoltageIndex;
extern CssScanMode_t gCssScanMode;
// we are searching CTCSS/DCS inside RX ctcss/dcs menu
extern bool gCssBackgroundScan;
enum
{
SCAN_REV = -1,
SCAN_OFF = 0,
SCAN_FWD = +1
};
extern volatile bool gScheduleScanListen;
extern volatile uint16_t gScanPauseDelayIn_10ms;
extern bool gUpdateRSSI;
extern AlarmState_t gAlarmState;
extern uint16_t gMenuCountdown;
@@ -275,17 +285,15 @@ extern bool g_CxCSS_TAIL_Found;
extern uint16_t gVoxResumeCountdown;
extern uint16_t gVoxPauseCountdown;
#endif
// true means we are receiving signal
extern bool g_SquelchLost;
extern uint8_t gFlashLightState;
extern volatile uint16_t gFlashLightBlinkCounter;
extern bool gFlagEndTransmission;
extern uint16_t gLowBatteryCountdown;
extern uint8_t gNextMrChannel;
extern ReceptionMode_t gRxReceptionMode;
extern scan_next_chan_t gCurrentScanList;
extern uint32_t gRestoreFrequency;
//TRUE when dual watch is momentarly suspended and RX_VFO is locked to either last TX or RX
extern bool gRxVfoIsActive;
extern uint8_t gAlarmToneCounter;

530
radio.c
View File

@@ -38,33 +38,40 @@
VFO_Info_t *gTxVfo;
VFO_Info_t *gRxVfo;
VFO_Info_t *gCurrentVfo;
DCS_CodeType_t gSelectedCodeType;
DCS_CodeType_t gCurrentCodeType;
uint8_t gSelectedCode;
STEP_Setting_t gStepSetting;
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)
{ // return true if the channel appears valid
uint8_t Attributes;
ChannelAttributes_t att;
uint8_t PriorityCh1;
uint8_t PriorityCh2;
if (Channel > MR_CHANNEL_LAST)
if (!IS_MR_CHANNEL(Channel))
return false;
Attributes = gMR_ChannelAttributes[Channel];
att = gMR_ChannelAttributes[Channel];
if ((Attributes & MR_CH_BAND_MASK) > BAND7_470MHz)
if (att.band > BAND7_470MHz)
return false;
if (bCheckScanList)
{
switch (VFO)
{
if (bCheckScanList) {
switch (VFO) {
case 0:
if ((Attributes & MR_CH_SCANLIST1) == 0)
if (!att.scanlist1)
return false;
PriorityCh1 = gEeprom.SCANLIST_PRIORITY_CH1[0];
@@ -72,7 +79,7 @@ bool RADIO_CheckValidChannel(uint16_t Channel, bool bCheckScanList, uint8_t VFO)
break;
case 1:
if ((Attributes & MR_CH_SCANLIST2) == 0)
if (!att.scanlist2)
return false;
PriorityCh1 = gEeprom.SCANLIST_PRIORITY_CH1[1];
@@ -97,12 +104,12 @@ uint8_t RADIO_FindNextChannel(uint8_t Channel, int8_t Direction, bool bCheckScan
{
unsigned int i;
for (i = 0; i <= MR_CHANNEL_LAST; i++)
for (i = 0; IS_MR_CHANNEL(i); i++)
{
if (Channel == 0xFF)
Channel = MR_CHANNEL_LAST;
else
if (Channel > MR_CHANNEL_LAST)
if (!IS_MR_CHANNEL(Channel))
Channel = MR_CHANNEL_FIRST;
if (RADIO_CheckValidChannel(Channel, bCheckScanList, VFO))
@@ -119,10 +126,10 @@ void RADIO_InitInfo(VFO_Info_t *pInfo, const uint8_t ChannelSave, const uint32_t
memset(pInfo, 0, sizeof(*pInfo));
pInfo->Band = FREQUENCY_GetBand(Frequency);
pInfo->SCANLIST1_PARTICIPATION = true;
pInfo->SCANLIST2_PARTICIPATION = true;
pInfo->SCANLIST1_PARTICIPATION = false;
pInfo->SCANLIST2_PARTICIPATION = false;
pInfo->STEP_SETTING = STEP_12_5kHz;
pInfo->StepFrequency = StepFrequencyTable[pInfo->STEP_SETTING];
pInfo->StepFrequency = gStepFrequencyTable[pInfo->STEP_SETTING];
pInfo->CHANNEL_SAVE = ChannelSave;
pInfo->FrequencyReverse = false;
pInfo->OUTPUT_POWER = OUTPUT_POWER_LOW;
@@ -133,38 +140,32 @@ void RADIO_InitInfo(VFO_Info_t *pInfo, const uint8_t ChannelSave, const uint32_t
pInfo->Compander = 0; // off
if (ChannelSave == (FREQ_CHANNEL_FIRST + BAND2_108MHz))
pInfo->AM_mode = 1;
pInfo->Modulation = MODULATION_AM;
else
pInfo->Modulation = MODULATION_FM;
RADIO_ConfigureSquelchAndOutputPower(pInfo);
}
void RADIO_ConfigureChannel(const unsigned int VFO, const unsigned int configure)
{
uint8_t Channel;
uint8_t Attributes;
uint8_t Band;
bool bParticipation2;
uint16_t Base;
uint32_t Frequency;
VFO_Info_t *pRadio = &gEeprom.VfoInfo[VFO];
VFO_Info_t *pVfo = &gEeprom.VfoInfo[VFO];
if (!gSetting_350EN)
{
if (gEeprom.FreqChannel[VFO] == (FREQ_CHANNEL_LAST - 2))
gEeprom.FreqChannel[VFO] = FREQ_CHANNEL_LAST - 1;
if (!gSetting_350EN) {
if (gEeprom.FreqChannel[VFO] == FREQ_CHANNEL_FIRST + BAND5_350MHz)
gEeprom.FreqChannel[VFO] = FREQ_CHANNEL_FIRST + BAND6_400MHz;
if (gEeprom.ScreenChannel[VFO] == (FREQ_CHANNEL_LAST - 2))
gEeprom.ScreenChannel[VFO] = FREQ_CHANNEL_LAST - 1;
if (gEeprom.ScreenChannel[VFO] == FREQ_CHANNEL_FIRST + BAND5_350MHz)
gEeprom.ScreenChannel[VFO] = FREQ_CHANNEL_FIRST + BAND6_400MHz;
}
Channel = gEeprom.ScreenChannel[VFO];
uint8_t channel = gEeprom.ScreenChannel[VFO];
if (IS_VALID_CHANNEL(Channel))
{
if (IS_VALID_CHANNEL(channel)) {
#ifdef ENABLE_NOAA
if (Channel >= NOAA_CHANNEL_FIRST)
if (channel >= NOAA_CHANNEL_FIRST)
{
RADIO_InitInfo(pRadio, gEeprom.ScreenChannel[VFO], NoaaFrequencyTable[Channel - NOAA_CHANNEL_FIRST]);
RADIO_InitInfo(pVfo, gEeprom.ScreenChannel[VFO], NoaaFrequencyTable[channel - NOAA_CHANNEL_FIRST]);
if (gEeprom.CROSS_BAND_RX_TX == CROSS_BAND_OFF)
return;
@@ -176,251 +177,244 @@ void RADIO_ConfigureChannel(const unsigned int VFO, const unsigned int configure
}
#endif
if (Channel <= MR_CHANNEL_LAST)
{
Channel = RADIO_FindNextChannel(Channel, RADIO_CHANNEL_UP, false, VFO);
if (Channel == 0xFF)
{
Channel = gEeprom.FreqChannel[VFO];
if (IS_MR_CHANNEL(channel)) {
channel = RADIO_FindNextChannel(channel, RADIO_CHANNEL_UP, false, VFO);
if (channel == 0xFF) {
channel = gEeprom.FreqChannel[VFO];
gEeprom.ScreenChannel[VFO] = gEeprom.FreqChannel[VFO];
}
else
{
gEeprom.ScreenChannel[VFO] = Channel;
gEeprom.MrChannel[VFO] = Channel;
else {
gEeprom.ScreenChannel[VFO] = channel;
gEeprom.MrChannel[VFO] = channel;
}
}
}
else
Channel = FREQ_CHANNEL_LAST - 1;
channel = FREQ_CHANNEL_LAST - 1;
Attributes = gMR_ChannelAttributes[Channel];
if (Attributes == 0xFF)
{ // invalid/unused channel
uint8_t Index;
if (Channel <= MR_CHANNEL_LAST)
{
Channel = gEeprom.FreqChannel[VFO];
gEeprom.ScreenChannel[VFO] = gEeprom.FreqChannel[VFO];
ChannelAttributes_t att = gMR_ChannelAttributes[channel];
if (att.__val == 0xFF) { // invalid/unused channel
if (IS_MR_CHANNEL(channel)) {
channel = gEeprom.FreqChannel[VFO];
gEeprom.ScreenChannel[VFO] = channel;
}
Index = Channel - FREQ_CHANNEL_FIRST;
RADIO_InitInfo(pRadio, Channel, frequencyBandTable[Index].lower);
uint8_t bandIdx = channel - FREQ_CHANNEL_FIRST;
RADIO_InitInfo(pVfo, channel, frequencyBandTable[bandIdx].lower);
return;
}
Band = Attributes & MR_CH_BAND_MASK;
if (Band > BAND7_470MHz)
{
Band = BAND6_400MHz;
uint8_t band = att.band;
if (band > BAND7_470MHz) {
band = BAND6_400MHz;
}
if (Channel <= MR_CHANNEL_LAST)
{
gEeprom.VfoInfo[VFO].Band = Band;
gEeprom.VfoInfo[VFO].SCANLIST1_PARTICIPATION = !!(Attributes & MR_CH_SCANLIST1);
bParticipation2 = !!(Attributes & MR_CH_SCANLIST2);
bool bParticipation1;
bool bParticipation2;
if (IS_MR_CHANNEL(channel)) {
bParticipation1 = att.scanlist1;
bParticipation2 = att.scanlist2;
}
else {
band = channel - FREQ_CHANNEL_FIRST;
bParticipation1 = true;
bParticipation2 = true;
}
pVfo->Band = band;
pVfo->SCANLIST1_PARTICIPATION = bParticipation1;
pVfo->SCANLIST2_PARTICIPATION = bParticipation2;
pVfo->CHANNEL_SAVE = channel;
uint16_t base;
if (IS_MR_CHANNEL(channel))
base = channel * 16;
else
base = 0x0C80 + ((channel - FREQ_CHANNEL_FIRST) * 32) + (VFO * 16);
if (configure == VFO_CONFIGURE_RELOAD || IS_FREQ_CHANNEL(channel))
{
Band = Channel - FREQ_CHANNEL_FIRST;
gEeprom.VfoInfo[VFO].Band = Band;
bParticipation2 = true;
gEeprom.VfoInfo[VFO].SCANLIST1_PARTICIPATION = true;
}
gEeprom.VfoInfo[VFO].SCANLIST2_PARTICIPATION = bParticipation2;
gEeprom.VfoInfo[VFO].CHANNEL_SAVE = Channel;
if (Channel <= MR_CHANNEL_LAST)
Base = Channel * 16;
else
Base = 0x0C80 + ((Channel - FREQ_CHANNEL_FIRST) * 32) + (VFO * 16);
if (configure == VFO_CONFIGURE_RELOAD || Channel >= FREQ_CHANNEL_FIRST)
{
uint8_t Tmp;
uint8_t Data[8];
uint8_t tmp;
uint8_t data[8];
// ***************
EEPROM_ReadBuffer(Base + 8, Data, sizeof(Data));
EEPROM_ReadBuffer(base + 8, data, sizeof(data));
Tmp = Data[3] & 0x0F;
if (Tmp > TX_OFFSET_FREQUENCY_DIRECTION_SUB)
Tmp = 0;
gEeprom.VfoInfo[VFO].TX_OFFSET_FREQUENCY_DIRECTION = Tmp;
gEeprom.VfoInfo[VFO].AM_mode = (Data[3] >> 4) & 1u;
tmp = data[3] & 0x0F;
if (tmp > TX_OFFSET_FREQUENCY_DIRECTION_SUB)
tmp = 0;
pVfo->TX_OFFSET_FREQUENCY_DIRECTION = tmp;
tmp = data[3] >> 4;
if (tmp >= MODULATION_UKNOWN)
tmp = MODULATION_FM;
pVfo->Modulation = tmp;
Tmp = Data[6];
if (Tmp >= ARRAY_SIZE(StepFrequencyTable))
Tmp = STEP_12_5kHz;
gEeprom.VfoInfo[VFO].STEP_SETTING = Tmp;
gEeprom.VfoInfo[VFO].StepFrequency = StepFrequencyTable[Tmp];
tmp = data[6];
if (tmp >= ARRAY_SIZE(gStepFrequencyTable))
tmp = STEP_12_5kHz;
pVfo->STEP_SETTING = tmp;
pVfo->StepFrequency = gStepFrequencyTable[tmp];
Tmp = Data[7];
if (Tmp > (ARRAY_SIZE(gSubMenu_SCRAMBLER) - 1))
Tmp = 0;
gEeprom.VfoInfo[VFO].SCRAMBLING_TYPE = Tmp;
tmp = data[7];
if (tmp > (ARRAY_SIZE(gSubMenu_SCRAMBLER) - 1))
tmp = 0;
pVfo->SCRAMBLING_TYPE = tmp;
gEeprom.VfoInfo[VFO].freq_config_RX.CodeType = (Data[2] >> 0) & 0x0F;
gEeprom.VfoInfo[VFO].freq_config_TX.CodeType = (Data[2] >> 4) & 0x0F;
pVfo->freq_config_RX.CodeType = (data[2] >> 0) & 0x0F;
pVfo->freq_config_TX.CodeType = (data[2] >> 4) & 0x0F;
Tmp = Data[0];
switch (gEeprom.VfoInfo[VFO].freq_config_RX.CodeType)
tmp = data[0];
switch (pVfo->freq_config_RX.CodeType)
{
default:
case CODE_TYPE_OFF:
gEeprom.VfoInfo[VFO].freq_config_RX.CodeType = CODE_TYPE_OFF;
Tmp = 0;
pVfo->freq_config_RX.CodeType = CODE_TYPE_OFF;
tmp = 0;
break;
case CODE_TYPE_CONTINUOUS_TONE:
if (Tmp > (ARRAY_SIZE(CTCSS_Options) - 1))
Tmp = 0;
if (tmp > (ARRAY_SIZE(CTCSS_Options) - 1))
tmp = 0;
break;
case CODE_TYPE_DIGITAL:
case CODE_TYPE_REVERSE_DIGITAL:
if (Tmp > (ARRAY_SIZE(DCS_Options) - 1))
Tmp = 0;
if (tmp > (ARRAY_SIZE(DCS_Options) - 1))
tmp = 0;
break;
}
gEeprom.VfoInfo[VFO].freq_config_RX.Code = Tmp;
pVfo->freq_config_RX.Code = tmp;
Tmp = Data[1];
switch (gEeprom.VfoInfo[VFO].freq_config_TX.CodeType)
tmp = data[1];
switch (pVfo->freq_config_TX.CodeType)
{
default:
case CODE_TYPE_OFF:
gEeprom.VfoInfo[VFO].freq_config_TX.CodeType = CODE_TYPE_OFF;
Tmp = 0;
pVfo->freq_config_TX.CodeType = CODE_TYPE_OFF;
tmp = 0;
break;
case CODE_TYPE_CONTINUOUS_TONE:
if (Tmp > (ARRAY_SIZE(CTCSS_Options) - 1))
Tmp = 0;
if (tmp > (ARRAY_SIZE(CTCSS_Options) - 1))
tmp = 0;
break;
case CODE_TYPE_DIGITAL:
case CODE_TYPE_REVERSE_DIGITAL:
if (Tmp > (ARRAY_SIZE(DCS_Options) - 1))
Tmp = 0;
if (tmp > (ARRAY_SIZE(DCS_Options) - 1))
tmp = 0;
break;
}
gEeprom.VfoInfo[VFO].freq_config_TX.Code = Tmp;
pVfo->freq_config_TX.Code = tmp;
if (Data[4] == 0xFF)
if (data[4] == 0xFF)
{
gEeprom.VfoInfo[VFO].FrequencyReverse = false;
gEeprom.VfoInfo[VFO].CHANNEL_BANDWIDTH = BK4819_FILTER_BW_WIDE;
gEeprom.VfoInfo[VFO].OUTPUT_POWER = OUTPUT_POWER_LOW;
gEeprom.VfoInfo[VFO].BUSY_CHANNEL_LOCK = false;
pVfo->FrequencyReverse = false;
pVfo->CHANNEL_BANDWIDTH = BK4819_FILTER_BW_WIDE;
pVfo->OUTPUT_POWER = OUTPUT_POWER_LOW;
pVfo->BUSY_CHANNEL_LOCK = false;
}
else
{
const uint8_t d4 = Data[4];
gEeprom.VfoInfo[VFO].FrequencyReverse = !!((d4 >> 0) & 1u);
gEeprom.VfoInfo[VFO].CHANNEL_BANDWIDTH = !!((d4 >> 1) & 1u);
gEeprom.VfoInfo[VFO].OUTPUT_POWER = ((d4 >> 2) & 3u);
gEeprom.VfoInfo[VFO].BUSY_CHANNEL_LOCK = !!((d4 >> 4) & 1u);
const uint8_t d4 = data[4];
pVfo->FrequencyReverse = !!((d4 >> 0) & 1u);
pVfo->CHANNEL_BANDWIDTH = !!((d4 >> 1) & 1u);
pVfo->OUTPUT_POWER = ((d4 >> 2) & 3u);
pVfo->BUSY_CHANNEL_LOCK = !!((d4 >> 4) & 1u);
}
if (Data[5] == 0xFF)
if (data[5] == 0xFF)
{
gEeprom.VfoInfo[VFO].DTMF_DECODING_ENABLE = false;
gEeprom.VfoInfo[VFO].DTMF_PTT_ID_TX_MODE = PTT_ID_OFF;
#ifdef ENABLE_DTMF_CALLING
pVfo->DTMF_DECODING_ENABLE = false;
#endif
pVfo->DTMF_PTT_ID_TX_MODE = PTT_ID_OFF;
}
else
{
gEeprom.VfoInfo[VFO].DTMF_DECODING_ENABLE = ((Data[5] >> 0) & 1u) ? true : false;
gEeprom.VfoInfo[VFO].DTMF_PTT_ID_TX_MODE = ((Data[5] >> 1) & 7u);
#ifdef ENABLE_DTMF_CALLING
pVfo->DTMF_DECODING_ENABLE = ((data[5] >> 0) & 1u) ? true : false;
#endif
pVfo->DTMF_PTT_ID_TX_MODE = ((data[5] >> 1) & 7u);
}
// ***************
struct
{
struct {
uint32_t Frequency;
uint32_t Offset;
} __attribute__((packed)) Info;
} __attribute__((packed)) info;
EEPROM_ReadBuffer(base, &info, sizeof(info));
if(info.Frequency==0xFFFFFFFF)
pVfo->freq_config_RX.Frequency = frequencyBandTable[band].lower;
else
pVfo->freq_config_RX.Frequency = info.Frequency;
EEPROM_ReadBuffer(Base, &Info, sizeof(Info));
pRadio->freq_config_RX.Frequency = Info.Frequency;
if (Info.Offset >= 100000000)
Info.Offset = 1000000;
gEeprom.VfoInfo[VFO].TX_OFFSET_FREQUENCY = Info.Offset;
if (info.Offset >= 100000000)
info.Offset = 1000000;
pVfo->TX_OFFSET_FREQUENCY = info.Offset;
// ***************
}
Frequency = pRadio->freq_config_RX.Frequency;
uint32_t frequency = pVfo->freq_config_RX.Frequency;
#if 1
// fix previously set incorrect band
Band = FREQUENCY_GetBand(Frequency);
#endif
band = FREQUENCY_GetBand(frequency);
if (Frequency < frequencyBandTable[Band].lower)
Frequency = frequencyBandTable[Band].lower;
else
if (Frequency > frequencyBandTable[Band].upper)
Frequency = frequencyBandTable[Band].upper;
else
if (Channel >= FREQ_CHANNEL_FIRST)
Frequency = FREQUENCY_FloorToStep(Frequency, gEeprom.VfoInfo[VFO].StepFrequency, frequencyBandTable[Band].lower);
if (frequency < frequencyBandTable[band].lower)
frequency = frequencyBandTable[band].lower;
else if (frequency > frequencyBandTable[band].upper)
frequency = frequencyBandTable[band].upper;
else if (channel >= FREQ_CHANNEL_FIRST)
frequency = FREQUENCY_RoundToStep(frequency, pVfo->StepFrequency);
pRadio->freq_config_RX.Frequency = Frequency;
pVfo->freq_config_RX.Frequency = frequency;
if (Frequency >= 10800000 && Frequency < 13600000)
gEeprom.VfoInfo[VFO].TX_OFFSET_FREQUENCY_DIRECTION = TX_OFFSET_FREQUENCY_DIRECTION_OFF;
else
if (Channel > MR_CHANNEL_LAST)
gEeprom.VfoInfo[VFO].TX_OFFSET_FREQUENCY = FREQUENCY_FloorToStep(gEeprom.VfoInfo[VFO].TX_OFFSET_FREQUENCY, gEeprom.VfoInfo[VFO].StepFrequency, 0);
if (frequency >= frequencyBandTable[BAND2_108MHz].upper && frequency < frequencyBandTable[BAND2_108MHz].upper)
pVfo->TX_OFFSET_FREQUENCY_DIRECTION = TX_OFFSET_FREQUENCY_DIRECTION_OFF;
else if (!IS_MR_CHANNEL(channel))
pVfo->TX_OFFSET_FREQUENCY = FREQUENCY_RoundToStep(pVfo->TX_OFFSET_FREQUENCY, pVfo->StepFrequency);
RADIO_ApplyOffset(pRadio);
RADIO_ApplyOffset(pVfo);
memset(gEeprom.VfoInfo[VFO].Name, 0, sizeof(gEeprom.VfoInfo[VFO].Name));
if (Channel < MR_CHANNEL_LAST)
memset(pVfo->Name, 0, sizeof(pVfo->Name));
if (IS_MR_CHANNEL(channel))
{ // 16 bytes allocated to the channel name but only 10 used, the rest are 0's
EEPROM_ReadBuffer(0x0F50 + (Channel * 16), gEeprom.VfoInfo[VFO].Name + 0, 8);
EEPROM_ReadBuffer(0x0F58 + (Channel * 16), gEeprom.VfoInfo[VFO].Name + 8, 2);
EEPROM_ReadBuffer(0x0F50 + (channel * 16), pVfo->Name + 0, 8);
EEPROM_ReadBuffer(0x0F58 + (channel * 16), pVfo->Name + 8, 2);
}
if (!gEeprom.VfoInfo[VFO].FrequencyReverse)
if (!pVfo->FrequencyReverse)
{
gEeprom.VfoInfo[VFO].pRX = &gEeprom.VfoInfo[VFO].freq_config_RX;
gEeprom.VfoInfo[VFO].pTX = &gEeprom.VfoInfo[VFO].freq_config_TX;
pVfo->pRX = &pVfo->freq_config_RX;
pVfo->pTX = &pVfo->freq_config_TX;
}
else
{
gEeprom.VfoInfo[VFO].pRX = &gEeprom.VfoInfo[VFO].freq_config_TX;
gEeprom.VfoInfo[VFO].pTX = &gEeprom.VfoInfo[VFO].freq_config_RX;
pVfo->pRX = &pVfo->freq_config_TX;
pVfo->pTX = &pVfo->freq_config_RX;
}
if (!gSetting_350EN)
{
FREQ_Config_t *pConfig = gEeprom.VfoInfo[VFO].pRX;
FREQ_Config_t *pConfig = pVfo->pRX;
if (pConfig->Frequency >= 35000000 && pConfig->Frequency < 40000000)
pConfig->Frequency = 43300000;
}
if (gEeprom.VfoInfo[VFO].AM_mode)
if (pVfo->Modulation != MODULATION_FM)
{ // freq/chan is in AM mode
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].freq_config_RX.CodeType = CODE_TYPE_OFF;
gEeprom.VfoInfo[VFO].freq_config_TX.CodeType = CODE_TYPE_OFF;
pVfo->SCRAMBLING_TYPE = 0;
// pVfo->DTMF_DECODING_ENABLE = false; // no reason to disable DTMF decoding, aircraft use it on SSB
pVfo->freq_config_RX.CodeType = CODE_TYPE_OFF;
pVfo->freq_config_TX.CodeType = CODE_TYPE_OFF;
}
gEeprom.VfoInfo[VFO].Compander = (Attributes & MR_CH_COMPAND) >> 4;
pVfo->Compander = att.compander;
RADIO_ConfigureSquelchAndOutputPower(pRadio);
RADIO_ConfigureSquelchAndOutputPower(pVfo);
}
void RADIO_ConfigureSquelchAndOutputPower(VFO_Info_t *pInfo)
@@ -516,6 +510,21 @@ void RADIO_ConfigureSquelchAndOutputPower(VFO_Info_t *pInfo)
EEPROM_ReadBuffer(0x1ED0 + (Band * 16) + (pInfo->OUTPUT_POWER * 3), Txp, 3);
#ifdef ENABLE_REDUCE_LOW_MID_TX_POWER
// make low and mid even lower
if (pInfo->OUTPUT_POWER == OUTPUT_POWER_LOW) {
Txp[0] /= 5;
Txp[1] /= 5;
Txp[2] /= 5;
}
else if (pInfo->OUTPUT_POWER == OUTPUT_POWER_MID){
Txp[0] /= 3;
Txp[1] /= 3;
Txp[2] /= 3;
}
#endif
pInfo->TXP_CalculatedSetting = FREQUENCY_CalculateOutputPower(
Txp[0],
Txp[1],
@@ -555,17 +564,17 @@ void RADIO_ApplyOffset(VFO_Info_t *pInfo)
static void RADIO_SelectCurrentVfo(void)
{
// if crossband is active the gCurrentVfo is gTxVfo (gTxVfo/TX_VFO is only ever changed by the user)
// otherwise it is set to gRxVfo
// if crossband is active and DW not the gCurrentVfo is gTxVfo (gTxVfo/TX_VFO is only ever changed by the user)
// otherwise it is set to gRxVfo which is set to gTxVfo in RADIO_SelectVfos
// so in the end gCurrentVfo is equal to gTxVfo unless dual watch changes it on incomming transmition (again, this can only happen when XB off)
// note: it is called only in certain situations so could not by up-to-date
gCurrentVfo = (gEeprom.CROSS_BAND_RX_TX == CROSS_BAND_OFF) ? gRxVfo : gTxVfo;
// note: it is called only in certain situations so could be not up-to-date
gCurrentVfo = (gEeprom.CROSS_BAND_RX_TX == CROSS_BAND_OFF || gEeprom.DUAL_WATCH != DUAL_WATCH_OFF) ? gRxVfo : gTxVfo;
}
void RADIO_SelectVfos(void)
{
// if crossband is used then RX_VFO is the opposite to the TX_VFO
gEeprom.RX_VFO = (gEeprom.CROSS_BAND_RX_TX == CROSS_BAND_OFF) ? gEeprom.TX_VFO : !gEeprom.TX_VFO;
// if crossband without DW is used then RX_VFO is the opposite to the TX_VFO
gEeprom.RX_VFO = (gEeprom.CROSS_BAND_RX_TX == CROSS_BAND_OFF || gEeprom.DUAL_WATCH != DUAL_WATCH_OFF) ? gEeprom.TX_VFO : !gEeprom.TX_VFO;
gTxVfo = &gEeprom.VfoInfo[gEeprom.TX_VFO];
gRxVfo = &gEeprom.VfoInfo[gEeprom.RX_VFO];
@@ -573,13 +582,13 @@ void RADIO_SelectVfos(void)
RADIO_SelectCurrentVfo();
}
void RADIO_SetupRegisters(bool bSwitchToFunction0)
void RADIO_SetupRegisters(bool switchToForeground)
{
BK4819_FilterBandwidth_t Bandwidth = gRxVfo->CHANNEL_BANDWIDTH;
uint16_t InterruptMask;
uint32_t Frequency;
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
gEnableSpeaker = false;
@@ -593,7 +602,7 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0)
case BK4819_FILTER_BW_WIDE:
case BK4819_FILTER_BW_NARROW:
#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);
#else
BK4819_SetFilterBandwidth(Bandwidth, false);
@@ -605,7 +614,7 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0)
BK4819_SetupPowerAmplifier(0, 0);
BK4819_ToggleGpioOut(BK4819_GPIO1_PIN29, false);
BK4819_ToggleGpioOut(BK4819_GPIO1_PIN29_PA_ENABLE, false);
while (1)
{
@@ -622,7 +631,7 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0)
BK4819_WriteRegister(BK4819_REG_7D, 0xE940 | (gEeprom.MIC_SENSITIVITY_TUNING & 0x1f));
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE) || !gIsNoaaMode)
if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE) || !gIsNoaaMode)
Frequency = gRxVfo->pRX->Frequency;
else
Frequency = NoaaFrequencyTable[gNoaaChannel];
@@ -639,26 +648,27 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0)
BK4819_PickRXFilterPathBasedOnFrequency(Frequency);
// what does this in do ?
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28, true);
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28_RX_ENABLE, true);
// 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;
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE))
if (!IS_NOAA_CHANNEL(gRxVfo->CHANNEL_SAVE))
#endif
{
if (gRxVfo->AM_mode == 0)
if (gRxVfo->Modulation == MODULATION_FM)
{ // FM
uint8_t CodeType = gSelectedCodeType;
uint8_t Code = gSelectedCode;
if (gCssScanMode == CSS_SCAN_MODE_OFF)
{
CodeType = gRxVfo->pRX->CodeType;
Code = gRxVfo->pRX->Code;
}
uint8_t CodeType = gRxVfo->pRX->CodeType;
uint8_t Code = gRxVfo->pRX->Code;
switch (CodeType)
{
@@ -726,15 +736,15 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0)
#ifdef ENABLE_VOX
#ifdef ENABLE_NOAA
#ifdef ENABLE_FMRADIO
if (gEeprom.VOX_SWITCH && !gFmRadioMode && IS_NOT_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
if (gEeprom.VOX_SWITCH && IS_NOT_NOAA_CHANNEL(gCurrentVfo->CHANNEL_SAVE) && gCurrentVfo->AM_mode == 0)
if (gEeprom.VOX_SWITCH && !IS_NOAA_CHANNEL(gCurrentVfo->CHANNEL_SAVE) && gCurrentVfo->Modulation == MODULATION_FM)
#endif
#else
#ifdef ENABLE_FMRADIO
if (gEeprom.VOX_SWITCH && !gFmRadioMode && gCurrentVfo->AM_mode == 0)
if (gEeprom.VOX_SWITCH && !gFmRadioMode && gCurrentVfo->Modulation == MODULATION_FM)
#else
if (gEeprom.VOX_SWITCH && gCurrentVfo->AM_mode == 0)
if (gEeprom.VOX_SWITCH && gCurrentVfo->Modulation == MODULATION_FM)
#endif
#endif
{
@@ -746,7 +756,7 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0)
BK4819_DisableVox();
// 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 (!gRxVfo->DTMF_DECODING_ENABLE && !gSetting_KILLED)
@@ -776,7 +786,7 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0)
FUNCTION_Init();
if (bSwitchToFunction0)
if (switchToForeground)
FUNCTION_Select(FUNCTION_FOREGROUND);
}
@@ -791,9 +801,9 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0)
{
if (gEeprom.DUAL_WATCH != DUAL_WATCH_OFF)
{
if (IS_NOT_NOAA_CHANNEL(gEeprom.ScreenChannel[0]))
if (!IS_NOAA_CHANNEL(gEeprom.ScreenChannel[0]))
{
if (IS_NOT_NOAA_CHANNEL(gEeprom.ScreenChannel[1]))
if (!IS_NOAA_CHANNEL(gEeprom.ScreenChannel[1]))
{
gIsNoaaMode = false;
return;
@@ -829,11 +839,11 @@ void RADIO_SetTxParameters(void)
{
BK4819_FilterBandwidth_t Bandwidth = gCurrentVfo->CHANNEL_BANDWIDTH;
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
gEnableSpeaker = false;
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28, false);
BK4819_ToggleGpioOut(BK4819_GPIO0_PIN28_RX_ENABLE, false);
switch (Bandwidth)
{
@@ -843,7 +853,7 @@ void RADIO_SetTxParameters(void)
case BK4819_FILTER_BW_WIDE:
case BK4819_FILTER_BW_NARROW:
#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);
#else
BK4819_SetFilterBandwidth(Bandwidth, false);
@@ -854,7 +864,7 @@ void RADIO_SetTxParameters(void)
BK4819_SetFrequency(gCurrentVfo->pTX->Frequency);
// 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();
@@ -862,7 +872,7 @@ void RADIO_SetTxParameters(void)
BK4819_PickRXFilterPathBasedOnFrequency(gCurrentVfo->pTX->Frequency);
BK4819_ToggleGpioOut(BK4819_GPIO1_PIN29, true);
BK4819_ToggleGpioOut(BK4819_GPIO1_PIN29_PA_ENABLE, true);
SYSTEM_DelayMs(5);
@@ -888,6 +898,37 @@ 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)
{
if (State == VFO_STATE_NORMAL)
@@ -952,13 +993,13 @@ void RADIO_PrepareTX(void)
#endif
{
#ifndef ENABLE_TX_WHEN_AM
if (gCurrentVfo->AM_mode)
if (gCurrentVfo->Modulation != MODULATION_FM)
{ // not allowed to TX if in AM mode
State = VFO_STATE_TX_DISABLE;
}
else
#endif
if (!gSetting_TX_EN || gSerialConfigCountDown_500ms > 0)
if (gSerialConfigCountDown_500ms > 0)
{ // TX is disabled or config upload/download in progress
State = VFO_STATE_TX_DISABLE;
}
@@ -971,7 +1012,7 @@ void RADIO_PrepareTX(void)
if (gBatteryDisplayLevel == 0)
State = VFO_STATE_BAT_LOW; // charge your battery !
else
if (gBatteryDisplayLevel >= 6)
if (gBatteryDisplayLevel > 6)
State = VFO_STATE_VOLTAGE_HIGH; // over voltage .. this is being a pain
}
else
@@ -986,14 +1027,16 @@ void RADIO_PrepareTX(void)
gAlarmState = ALARM_STATE_OFF;
#endif
#ifdef ENABLE_DTMF_CALLING
gDTMF_ReplyState = DTMF_REPLY_NONE;
#endif
AUDIO_PlayBeep(BEEP_500HZ_60MS_DOUBLE_BEEP_OPTIONAL);
return;
}
// TX is allowed
#ifdef ENABLE_DTMF_CALLING
if (gDTMF_ReplyState == DTMF_REPLY_ANI)
{
if (gDTMF_CallMode == DTMF_CALL_MODE_DTMF)
@@ -1008,6 +1051,7 @@ void RADIO_PrepareTX(void)
gDTMF_IsTx = false;
}
}
#endif
FUNCTION_Select(FUNCTION_TRANSMIT);
@@ -1029,28 +1073,25 @@ void RADIO_PrepareTX(void)
gFlagEndTransmission = false;
gRTTECountdown = 0;
#ifdef ENABLE_DTMF_CALLING
gDTMF_ReplyState = DTMF_REPLY_NONE;
#endif
}
void RADIO_EnableCxCSS(void)
{
switch (gCurrentVfo->pTX->CodeType)
{
default:
case CODE_TYPE_OFF:
break;
case CODE_TYPE_CONTINUOUS_TONE:
BK4819_EnableCTCSS();
SYSTEM_DelayMs(200);
break;
case CODE_TYPE_DIGITAL:
case CODE_TYPE_REVERSE_DIGITAL:
BK4819_EnableCDCSS();
SYSTEM_DelayMs(200);
break;
switch (gCurrentVfo->pTX->CodeType) {
case CODE_TYPE_DIGITAL:
case CODE_TYPE_REVERSE_DIGITAL:
BK4819_EnableCDCSS();
break;
default:
BK4819_EnableCTCSS();
break;
}
SYSTEM_DelayMs(200);
}
void RADIO_PrepareCssTX(void)
@@ -1074,13 +1115,16 @@ void RADIO_SendEndOfTransmission(void)
if (gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_APOLLO)
BK4819_PlaySingleTone(2475, 250, 28, gEeprom.DTMF_SIDE_TONE);
if (gDTMF_CallState == DTMF_CALL_STATE_NONE &&
if (
#ifdef ENABLE_DTMF_CALLING
gDTMF_CallState == DTMF_CALL_STATE_NONE &&
#endif
(gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_TX_DOWN ||
gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_BOTH))
{ // end-of-tx
if (gEeprom.DTMF_SIDE_TONE)
{
GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOn();
gEnableSpeaker = true;
SYSTEM_DelayMs(60);
}
@@ -1095,7 +1139,7 @@ void RADIO_SendEndOfTransmission(void)
gEeprom.DTMF_CODE_PERSIST_TIME,
gEeprom.DTMF_CODE_INTERVAL_TIME);
GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_AUDIO_PATH);
AUDIO_AudioPathOff();
gEnableSpeaker = false;
}

43
radio.h
View File

@@ -23,13 +23,6 @@
#include "dcs.h"
#include "frequencies.h"
enum {
MR_CH_BAND_MASK = 0x0F << 0,
MR_CH_COMPAND = 3u << 4, // new
MR_CH_SCANLIST2 = 1u << 6,
MR_CH_SCANLIST1 = 1u << 7
};
enum {
RADIO_CHANNEL_UP = 0x01u,
RADIO_CHANNEL_DOWN = 0xFFu,
@@ -61,6 +54,21 @@ enum 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
{
uint32_t Frequency;
@@ -73,7 +81,14 @@ typedef struct VFO_Info_t
{
FREQ_Config_t freq_config_RX;
FREQ_Config_t freq_config_TX;
// this is for a purpose of the FrequencyReverse function
// it points to freq_config_RX normally and to freq_config_TX if reverse function is active
//
FREQ_Config_t *pRX;
// this is for a purpose of the FrequencyReverse function
// it points to freq_config_TX normally and to freq_config_RX if reverse function is active
FREQ_Config_t *pTX;
uint32_t TX_OFFSET_FREQUENCY;
@@ -102,13 +117,14 @@ typedef struct VFO_Info_t
uint8_t SCANLIST2_PARTICIPATION;
uint8_t Band;
#ifdef ENABLE_DTMF_CALLING
uint8_t DTMF_DECODING_ENABLE;
#endif
PTT_ID_t DTMF_PTT_ID_TX_MODE;
uint8_t BUSY_CHANNEL_LOCK;
uint8_t AM_mode;
ModulationMode_t Modulation;
uint8_t Compander;
@@ -116,7 +132,7 @@ typedef struct VFO_Info_t
} VFO_Info_t;
// Settings of the main VFO that is selected by the user
// The pointer follows gEeprom.RX_VFO index
// The pointer follows gEeprom.TX_VFO index
extern VFO_Info_t *gTxVfo;
// Settings of the actual VFO that is now used for RX,
@@ -127,11 +143,7 @@ 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)
extern VFO_Info_t *gCurrentVfo;
extern DCS_CodeType_t gSelectedCodeType;
extern DCS_CodeType_t gCurrentCodeType;
extern uint8_t gSelectedCode;
extern STEP_Setting_t gStepSetting;
extern VfoState_t VfoState[2];
@@ -147,11 +159,12 @@ void RADIO_SetupRegisters(bool bSwitchToFunction0);
void RADIO_ConfigureNOAA(void);
#endif
void RADIO_SetTxParameters(void);
void RADIO_SetModulation(ModulationMode_t modulation);
void RADIO_SetVfoState(VfoState_t State);
void RADIO_PrepareTX(void);
void RADIO_EnableCxCSS(void);
void RADIO_PrepareCssTX(void);
void RADIO_SendEndOfTransmission(void);
#endif

View File

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

View File

@@ -96,13 +96,13 @@ void SETTINGS_SaveSettings(void)
State[7] = gEeprom.MIC_SENSITIVITY;
EEPROM_WriteBuffer(0x0E70, State);
State[0] = 0xFF;
State[0] = (gEeprom.BACKLIGHT_MIN << 4) + gEeprom.BACKLIGHT_MAX;
State[1] = gEeprom.CHANNEL_DISPLAY_MODE;
State[2] = gEeprom.CROSS_BAND_RX_TX;
State[3] = gEeprom.BATTERY_SAVE;
State[4] = gEeprom.DUAL_WATCH;
State[5] = gEeprom.BACKLIGHT;
State[6] = gEeprom.TAIL_NOTE_ELIMINATION;
State[5] = gEeprom.BACKLIGHT_TIME;
State[6] = gEeprom.TAIL_TONE_ELIMINATION;
State[7] = gEeprom.VFO_OPEN;
EEPROM_WriteBuffer(0x0E78, State);
@@ -123,11 +123,11 @@ void SETTINGS_SaveSettings(void)
#endif
EEPROM_WriteBuffer(0x0E98, Password);
#ifdef ENABLE_VOICE
memset(State, 0xFF, sizeof(State));
State[0] = gEeprom.VOICE_PROMPT;
EEPROM_WriteBuffer(0x0EA0, State);
#endif
memset(State, 0xFF, sizeof(State));
#ifdef ENABLE_VOICE
State[0] = gEeprom.VOICE_PROMPT;
EEPROM_WriteBuffer(0x0EA0, State);
#endif
#if defined(ENABLE_ALARM) || defined(ENABLE_TX1750)
State[0] = gEeprom.ALARM_MODE;
@@ -137,13 +137,16 @@ void SETTINGS_SaveSettings(void)
State[1] = gEeprom.ROGER;
State[2] = gEeprom.REPEATER_TAIL_TONE_ELIMINATION;
State[3] = gEeprom.TX_VFO;
State[4] = gEeprom.BATTERY_TYPE;
EEPROM_WriteBuffer(0x0EA8, State);
State[0] = gEeprom.DTMF_SIDE_TONE;
#ifdef ENABLE_DTMF_CALLING
State[1] = gEeprom.DTMF_SEPARATE_CODE;
State[2] = gEeprom.DTMF_GROUP_CALL_CODE;
State[3] = gEeprom.DTMF_DECODE_RESPONSE;
State[4] = gEeprom.DTMF_auto_reset_time;
#endif
State[5] = gEeprom.DTMF_PRELOAD_TIME / 10U;
State[6] = gEeprom.DTMF_FIRST_CODE_PERSIST_TIME / 10U;
State[7] = gEeprom.DTMF_HASH_CODE_PERSIST_TIME / 10U;
@@ -152,7 +155,9 @@ void SETTINGS_SaveSettings(void)
memset(State, 0xFF, sizeof(State));
State[0] = gEeprom.DTMF_CODE_PERSIST_TIME / 10U;
State[1] = gEeprom.DTMF_CODE_INTERVAL_TIME / 10U;
#ifdef ENABLE_DTMF_CALLING
State[2] = gEeprom.PERMIT_REMOTE_KILL;
#endif
EEPROM_WriteBuffer(0x0ED8, State);
State[0] = gEeprom.SCAN_LIST_DEFAULT;
@@ -168,12 +173,14 @@ void SETTINGS_SaveSettings(void)
memset(State, 0xFF, sizeof(State));
State[0] = gSetting_F_LOCK;
State[1] = gSetting_350TX;
#ifdef ENABLE_DTMF_CALLING
State[2] = gSetting_KILLED;
#endif
State[3] = gSetting_200TX;
State[4] = gSetting_500TX;
State[5] = gSetting_350EN;
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);
State[7] = (State[7] & ~(3u << 2)) | ((gSetting_battery_text & 3u) << 2);
#ifdef ENABLE_AUDIO_BAR
@@ -190,19 +197,19 @@ void SETTINGS_SaveSettings(void)
void SETTINGS_SaveChannel(uint8_t Channel, uint8_t VFO, const VFO_Info_t *pVFO, uint8_t Mode)
{
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(Channel))
if (!IS_NOAA_CHANNEL(Channel))
#endif
{
const uint16_t OffsetMR = Channel * 16;
uint16_t OffsetVFO = OffsetMR;
if (Channel > MR_CHANNEL_LAST)
if (!IS_MR_CHANNEL(Channel))
{ // it's a VFO, not a channel
OffsetVFO = (VFO == 0) ? 0x0C80 : 0x0C90;
OffsetVFO += (Channel - FREQ_CHANNEL_FIRST) * 32;
}
if (Mode >= 2 || Channel > MR_CHANNEL_LAST)
if (Mode >= 2 || !IS_MR_CHANNEL(Channel))
{ // copy VFO to a channel
uint8_t State[8];
@@ -214,20 +221,24 @@ void SETTINGS_SaveChannel(uint8_t Channel, uint8_t VFO, const VFO_Info_t *pVFO,
State[0] = pVFO->freq_config_RX.Code;
State[1] = pVFO->freq_config_TX.Code;
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
| (pVFO->BUSY_CHANNEL_LOCK << 4)
| (pVFO->OUTPUT_POWER << 2)
| (pVFO->CHANNEL_BANDWIDTH << 1)
| (pVFO->FrequencyReverse << 0);
State[5] = ((pVFO->DTMF_PTT_ID_TX_MODE & 7u) << 1) | ((pVFO->DTMF_DECODING_ENABLE & 1u) << 0);
State[5] = ((pVFO->DTMF_PTT_ID_TX_MODE & 7u) << 1)
#ifdef ENABLE_DTMF_CALLING
| ((pVFO->DTMF_DECODING_ENABLE & 1u) << 0)
#endif
;
State[6] = pVFO->STEP_SETTING;
State[7] = pVFO->SCRAMBLING_TYPE;
EEPROM_WriteBuffer(OffsetVFO + 8, State);
SETTINGS_UpdateChannel(Channel, pVFO, true);
if (Channel <= MR_CHANNEL_LAST)
if (IS_MR_CHANNEL(Channel))
{ // it's a memory channel
#ifndef ENABLE_KEEP_MEM_NAME
@@ -262,55 +273,45 @@ void SETTINGS_SaveBatteryCalibration(const uint16_t * batteryCalibration)
EEPROM_WriteBuffer(0x1F48, buf);
}
void SETTINGS_UpdateChannel(uint8_t Channel, const VFO_Info_t *pVFO, bool keep)
void SETTINGS_UpdateChannel(uint8_t channel, const VFO_Info_t *pVFO, bool keep)
{
#ifdef ENABLE_NOAA
if (IS_NOT_NOAA_CHANNEL(Channel))
#endif
#ifdef ENABLE_NOAA
if (!IS_NOAA_CHANNEL(channel))
#endif
{
uint8_t State[8];
uint8_t Attributes = 0xFF; // default attributes
uint16_t Offset = 0x0D60 + (Channel & ~7u);
Attributes &= (uint8_t)(~MR_CH_COMPAND); // default to '0' = compander disabled
uint8_t state[8];
ChannelAttributes_t att = {
.band = 0xf,
.compander = 0,
.scanlist1 = 0,
.scanlist2 = 0,
}; // default attributes
EEPROM_ReadBuffer(Offset, State, sizeof(State));
uint16_t offset = 0x0D60 + (channel & ~7u);
EEPROM_ReadBuffer(offset, state, sizeof(state));
if (keep)
{
Attributes = (pVFO->SCANLIST1_PARTICIPATION << 7) | (pVFO->SCANLIST2_PARTICIPATION << 6) | (pVFO->Compander << 4) | (pVFO->Band << 0);
if (State[Channel & 7u] == Attributes)
if (keep) {
att.band = pVFO->Band;
att.scanlist1 = pVFO->SCANLIST1_PARTICIPATION;
att.scanlist2 = pVFO->SCANLIST2_PARTICIPATION;
att.compander = pVFO->Compander;
if (state[channel & 7u] == att.__val)
return; // no change in the attributes
}
State[Channel & 7u] = Attributes;
state[channel & 7u] = att.__val;
EEPROM_WriteBuffer(offset, state);
EEPROM_WriteBuffer(Offset, State);
gMR_ChannelAttributes[channel] = att;
gMR_ChannelAttributes[Channel] = Attributes;
// #ifndef ENABLE_KEEP_MEM_NAME
if (Channel <= MR_CHANNEL_LAST)
{ // it's a memory channel
const uint16_t OffsetMR = Channel * 16;
if (!keep)
{ // clear/reset the channel name
//memset(&State, 0xFF, sizeof(State));
memset(&State, 0x00, sizeof(State)); // follow the QS way
EEPROM_WriteBuffer(0x0F50 + OffsetMR, State);
EEPROM_WriteBuffer(0x0F58 + OffsetMR, State);
}
// else
// { // update the channel name
// memmove(State, pVFO->Name + 0, 8);
// EEPROM_WriteBuffer(0x0F50 + OffsetMR, State);
// //memset(State, 0xFF, sizeof(State));
// memset(State, 0x00, sizeof(State)); // follow the QS way
// memmove(State, pVFO->Name + 8, 2);
// EEPROM_WriteBuffer(0x0F58 + OffsetMR, State);
// }
if (IS_MR_CHANNEL(channel)) { // it's a memory channel
const uint16_t OffsetMR = channel * 16;
if (!keep) {
// clear/reset the channel name
memset(&state, 0x00, sizeof(state));
EEPROM_WriteBuffer(0x0F50 + OffsetMR, state);
EEPROM_WriteBuffer(0x0F58 + OffsetMR, state);
}
// #endif
}
}
}

View File

@@ -21,7 +21,9 @@
#include <stdint.h>
#include "frequencies.h"
#include <helper/battery.h>
#include "radio.h"
#include <driver/backlight.h>
enum POWER_OnDisplayMode_t {
POWER_ON_DISPLAY_MODE_FULL_SCREEN = 0,
@@ -32,12 +34,15 @@ enum POWER_OnDisplayMode_t {
typedef enum POWER_OnDisplayMode_t POWER_OnDisplayMode_t;
enum {
F_LOCK_OFF = 0,
F_LOCK_DEF, //all default frequencies + configurable
F_LOCK_FCC,
F_LOCK_CE,
F_LOCK_GB,
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 {
@@ -82,6 +87,11 @@ enum {
ACTION_OPT_1750,
ACTION_OPT_KEYLOCK,
ACTION_OPT_A_B,
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
};
@@ -117,9 +127,9 @@ enum CHANNEL_DisplayMode_t {
typedef enum CHANNEL_DisplayMode_t CHANNEL_DisplayMode_t;
typedef struct {
uint8_t ScreenChannel[2];
uint8_t FreqChannel[2];
uint8_t MrChannel[2];
uint8_t ScreenChannel[2]; // current channels set in the radio (memory or frequency channels)
uint8_t FreqChannel[2]; // last frequency channels used
uint8_t MrChannel[2]; // last memory channels used
#ifdef ENABLE_NOAA
uint8_t NoaaChannel[2];
#endif
@@ -154,12 +164,12 @@ typedef struct {
#endif
bool BEEP_CONTROL;
uint8_t CHANNEL_DISPLAY_MODE;
bool TAIL_NOTE_ELIMINATION;
bool TAIL_TONE_ELIMINATION;
bool VFO_OPEN;
uint8_t DUAL_WATCH;
uint8_t CROSS_BAND_RX_TX;
uint8_t BATTERY_SAVE;
uint8_t BACKLIGHT;
uint8_t BACKLIGHT_TIME;
uint8_t SCAN_RESUME_MODE;
uint8_t SCAN_LIST_DEFAULT;
bool SCAN_LIST_ENABLED[2];
@@ -186,9 +196,11 @@ typedef struct {
uint8_t MIC_SENSITIVITY;
uint8_t MIC_SENSITIVITY_TUNING;
uint8_t CHAN_1_CALL;
#ifdef ENABLE_DTMF_CALLING
char ANI_DTMF_ID[8];
char KILL_CODE[8];
char REVIVE_CODE[8];
#endif
char DTMF_UP_CODE[16];
uint8_t field57_0x6c;
@@ -199,17 +211,21 @@ typedef struct {
uint8_t field60_0x7e;
uint8_t field61_0x7f;
#ifdef ENABLE_DTMF_CALLING
char DTMF_SEPARATE_CODE;
char DTMF_GROUP_CALL_CODE;
uint8_t DTMF_DECODE_RESPONSE;
uint8_t DTMF_auto_reset_time;
#endif
uint16_t DTMF_PRELOAD_TIME;
uint16_t DTMF_FIRST_CODE_PERSIST_TIME;
uint16_t DTMF_HASH_CODE_PERSIST_TIME;
uint16_t DTMF_CODE_PERSIST_TIME;
uint16_t DTMF_CODE_INTERVAL_TIME;
bool DTMF_SIDE_TONE;
#ifdef ENABLE_DTMF_CALLING
bool PERMIT_REMOTE_KILL;
#endif
int16_t BK4819_XTAL_FREQ_LOW;
#ifdef ENABLE_NOAA
bool NOAA_AUTO_SCAN;
@@ -227,6 +243,12 @@ typedef struct {
uint8_t field79_0x97;
uint8_t KEY_M_LONG_PRESS_ACTION;
uint8_t BACKLIGHT_MIN;
#ifdef ENABLE_BLMIN_TMP_OFF
BLMIN_STAT_t BACKLIGHT_MIN_STAT;
#endif
uint8_t BACKLIGHT_MAX;
BATTERY_Type_t BATTERY_TYPE;
} EEPROM_Config_t;
extern EEPROM_Config_t gEeprom;
@@ -238,6 +260,6 @@ void SETTINGS_SaveVfoIndices(void);
void SETTINGS_SaveSettings(void);
void SETTINGS_SaveChannel(uint8_t Channel, uint8_t VFO, const VFO_Info_t *pVFO, uint8_t Mode);
void SETTINGS_SaveBatteryCalibration(const uint16_t * batteryCalibration);
void SETTINGS_UpdateChannel(uint8_t Channel, const VFO_Info_t *pVFO, bool keep);
void SETTINGS_UpdateChannel(uint8_t channel, const VFO_Info_t *pVFO, bool keep);
#endif

View File

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

View File

@@ -21,6 +21,7 @@
#include "font.h"
#include "ui/helper.h"
#include "ui/inputbox.h"
#include "misc.h"
#ifndef ARRAY_SIZE
#define ARRAY_SIZE(arr) (sizeof(arr)/sizeof((arr)[0]))
@@ -87,11 +88,13 @@ void UI_PrintStringSmall(const char *pString, uint8_t Start, uint8_t End, uint8_
const size_t Length = strlen(pString);
size_t i;
if (End > Start)
Start += (((End - Start) - (Length * 8)) + 1) / 2;
const unsigned int char_width = ARRAY_SIZE(gFontSmall[0]);
const unsigned int char_spacing = char_width + 1;
if (End > Start)
Start += (((End - Start) - (Length * char_spacing)) + 1) / 2;
uint8_t *pFb = gFrameBuffer[Line] + Start;
for (i = 0; i < Length; i++)
{
@@ -178,3 +181,72 @@ void UI_DisplayFrequency(const char *string, uint8_t X, uint8_t Y, bool center)
pFb1 += char_width;
}
}
void UI_DrawPixelBuffer(uint8_t (*buffer)[128], uint8_t x, uint8_t y, bool black)
{
if(black)
buffer[y/8][x] |= 1 << (y%8);
else
buffer[y/8][x] &= ~(1 << (y%8));
}
static void sort(int16_t *a, int16_t *b)
{
if(*a > *b) {
int16_t t = *a;
*a = *b;
*b = t;
}
}
void UI_DrawLineBuffer(uint8_t (*buffer)[128], 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_DrawPixelBuffer(buffer, 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_DrawPixelBuffer(buffer, i, i*a/multipl +b, black);
}
}
}
void UI_DrawRectangleBuffer(uint8_t (*buffer)[128], int16_t x1, int16_t y1, int16_t x2, int16_t y2, bool black)
{
UI_DrawLineBuffer(buffer, x1,y1, x1,y2, black);
UI_DrawLineBuffer(buffer, x1,y1, x2,y1, black);
UI_DrawLineBuffer(buffer, x2,y1, x2,y2, black);
UI_DrawLineBuffer(buffer, 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_DrawPixelBuffer(x, 10, true);
// UI_DrawPixelBuffer(x, 46-9, true);
// }
// for(uint8_t y = 11; y < 37; y++) {
// UI_DrawPixelBuffer(10, y, true);
// UI_DrawPixelBuffer(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
void UI_PrintStringSmallBuffer(const char *pString, uint8_t *buffer);
void UI_DisplayFrequency(const char *string, uint8_t X, uint8_t Y, bool center);
#endif
void UI_DisplayPopup(const char *string);
void UI_DrawPixelBuffer(uint8_t (*buffer)[128], uint8_t x, uint8_t y, bool black);
void UI_DrawLineBuffer(uint8_t (*buffer)[128], int16_t x1, int16_t y1, int16_t x2, int16_t y2, bool black);
void UI_DrawRectangleBuffer(uint8_t (*buffer)[128], int16_t x1, int16_t y1, int16_t x2, int16_t y2, bool black);

388
ui/main.c
View File

@@ -17,6 +17,7 @@
#include <string.h>
#include <stdlib.h> // abs()
#include "app/chFrScanner.h"
#include "app/dtmf.h"
#ifdef ENABLE_AM_FIX_SHOW_DATA
#include "am_fix.h"
@@ -40,21 +41,43 @@ center_line_t center_line = CENTER_LINE_NONE;
// ***************************************************************************
void UI_drawBars(uint8_t *p, const unsigned int level)
static void DrawSmallAntennaAndBars(uint8_t *p, unsigned int level)
{
switch (level)
{
default:
case 7: memmove(p + 20, BITMAP_AntennaLevel6, sizeof(BITMAP_AntennaLevel6)); [[fallthrough]];
case 6: memmove(p + 17, BITMAP_AntennaLevel5, sizeof(BITMAP_AntennaLevel5)); [[fallthrough]];
case 5: memmove(p + 14, BITMAP_AntennaLevel4, sizeof(BITMAP_AntennaLevel4)); [[fallthrough]];
case 4: memmove(p + 11, BITMAP_AntennaLevel3, sizeof(BITMAP_AntennaLevel3)); [[fallthrough]];
case 3: memmove(p + 8, BITMAP_AntennaLevel2, sizeof(BITMAP_AntennaLevel2)); [[fallthrough]];
case 2: memmove(p + 5, BITMAP_AntennaLevel1, sizeof(BITMAP_AntennaLevel1)); [[fallthrough]];
case 1: memmove(p + 0, BITMAP_Antenna, sizeof(BITMAP_Antenna)); break;
case 0: memset( p + 0, 0, sizeof(BITMAP_Antenna)); break;
if(level>6)
level = 6;
memcpy(p, BITMAP_Antenna, ARRAY_SIZE(BITMAP_Antenna));
for(uint8_t i = 1; i <= level; i++) {
char bar = (0xff << (6-i)) & 0x7F;
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
@@ -79,14 +102,17 @@ void UI_DisplayAudioBar(void)
{
if (gSetting_mic_bar)
{
if(gLowBattery && !gLowBatteryConfirmed)
return;
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 ||
gScreenToDisplay != DISPLAY_MAIN ||
gDTMF_CallState != DTMF_CALL_STATE_NONE)
gScreenToDisplay != DISPLAY_MAIN
#ifdef ENABLE_DTMF_CALLING
|| gDTMF_CallState != DTMF_CALL_STATE_NONE
#endif
)
{
return; // screen is in use
}
@@ -98,16 +124,14 @@ void UI_DisplayAudioBar(void)
const unsigned int voice_amp = BK4819_GetVoiceAmplitudeOut(); // 15:0
// make non-linear to make more sensitive at low values
const unsigned int level = voice_amp * 8;
const unsigned int sqrt_level = sqrt16((level < 65535) ? level : 65535);
const unsigned int len = (sqrt_level <= bar_width) ? sqrt_level : bar_width;
const unsigned int level = MIN(voice_amp * 8, 65535u);
const unsigned int sqrt_level = MIN(sqrt16(level), 124u);
uint8_t bars = 13 * sqrt_level / 124;
uint8_t *p_line = gFrameBuffer[line];
memset(p_line, 0, LCD_WIDTH);
for (i = 0; i < bar_width; i++)
p_line[bar_x + i] = (i > len) ? ((i & 1) == 0) ? 0x41 : 0x00 : ((i & 1) == 0) ? 0x7f : 0x3e;
DrawLevelBar(62, line, bars);
if (gCurrentFunction == FUNCTION_TRANSMIT)
ST7565_BlitFullScreen();
@@ -115,154 +139,113 @@ void UI_DisplayAudioBar(void)
}
#endif
#if defined(ENABLE_RSSI_BAR)
void UI_DisplayRSSIBar(const int16_t rssi, const bool now)
static void DisplayRSSIBar(const int16_t rssi, const bool now)
{
// const int16_t s0_dBm = -127; // S0 .. base level
const int16_t s0_dBm = -147; // S0 .. base level
#if defined(ENABLE_RSSI_BAR)
const int16_t s9_dBm = s0_dBm + (6 * 9); // S9 .. 6dB/S-Point
const int16_t bar_max_dBm = s9_dBm + 30; // S9+30dB
// const int16_t bar_min_dBm = s0_dBm + (6 * 0); // S0
const int16_t bar_min_dBm = s0_dBm + (6 * 4); // S4
if (center_line == CENTER_LINE_RSSI) {
const unsigned int txt_width = 7 * 8; // 8 text chars
const unsigned int bar_x = 2 + txt_width + 4; // X coord of bar graph
// ************
const unsigned int line = 3;
uint8_t *p_line = gFrameBuffer[line];
char str[16];
const unsigned int txt_width = 7 * 8; // 8 text chars
const unsigned int bar_x = 2 + txt_width + 4; // X coord of bar graph
const unsigned int bar_width = LCD_WIDTH - 1 - bar_x;
const char plus[] = {
0b00011000,
0b00011000,
0b01111110,
0b01111110,
0b01111110,
0b00011000,
0b00011000,
};
const int16_t rssi_dBm = (rssi / 2) - 160;
const int16_t clamped_dBm = (rssi_dBm <= bar_min_dBm) ? bar_min_dBm : (rssi_dBm >= bar_max_dBm) ? bar_max_dBm : rssi_dBm;
const unsigned int bar_range_dB = bar_max_dBm - bar_min_dBm;
const unsigned int len = ((clamped_dBm - bar_min_dBm) * bar_width) / bar_range_dB;
if (gEeprom.KEY_LOCK && gKeypadLocked > 0)
return; // display is in use
const unsigned int line = 3;
uint8_t *p_line = gFrameBuffer[line];
if (gCurrentFunction == FUNCTION_TRANSMIT ||
gScreenToDisplay != DISPLAY_MAIN
#ifdef ENABLE_DTMF_CALLING
|| gDTMF_CallState != DTMF_CALL_STATE_NONE
#endif
)
return; // display is in use
char s[16];
unsigned int i;
if (now)
memset(p_line, 0, LCD_WIDTH);
const int8_t dBmCorrTable[7] = {
-15, // band 1
-25, // band 2
-20, // band 3
-4, // band 4
-7, // band 5
-6, // band 6
-1 // band 7
};
if (gEeprom.KEY_LOCK && gKeypadLocked > 0)
return; // display is in use
const int16_t s0_dBm = -130; // S0 .. base level
const int16_t rssi_dBm = (rssi / 2) - 160 + dBmCorrTable[gRxVfo->Band];
if (gCurrentFunction == FUNCTION_TRANSMIT ||
gScreenToDisplay != DISPLAY_MAIN ||
gDTMF_CallState != DTMF_CALL_STATE_NONE)
return; // display is in use
const uint8_t s_level = MIN(MAX((rssi_dBm - s0_dBm) / 6, 0), 9); // S0 - S9
uint8_t overS9dBm = MIN(MAX(rssi_dBm - (s0_dBm + 9*6), 0), 99);
uint8_t overS9Bars = MIN(overS9dBm/10, 4);
if(overS9Bars == 0) {
sprintf(str, "% 4d S%d", rssi_dBm, s_level);
}
else {
sprintf(str, "% 4d %2d", rssi_dBm, overS9dBm);
memcpy(p_line + 2 + 7*5, &plus, ARRAY_SIZE(plus));
}
UI_PrintStringSmall(str, 2, 0, line);
DrawLevelBar(bar_x, line, s_level + overS9Bars);
}
#else
uint8_t Level;
if (rssi >= gEEPROM_RSSI_CALIB[gRxVfo->Band][3]) {
Level = 6;
} else if (rssi >= gEEPROM_RSSI_CALIB[gRxVfo->Band][2]) {
Level = 4;
} else if (rssi >= gEEPROM_RSSI_CALIB[gRxVfo->Band][1]) {
Level = 2;
} else if (rssi >= gEEPROM_RSSI_CALIB[gRxVfo->Band][0]) {
Level = 1;
} else {
Level = 0;
}
uint8_t *pLine = (gEeprom.RX_VFO == 0)? gFrameBuffer[2] : gFrameBuffer[6];
if (now)
memset(p_line, 0, LCD_WIDTH);
if (rssi_dBm >= (s9_dBm + 6))
{ // S9+XXdB, 1dB increment
const char *fmt[] = {"%3d 9+%u ", "%3d 9+%2u "};
const unsigned int s9_dB = ((rssi_dBm - s9_dBm) <= 99) ? rssi_dBm - s9_dBm : 99;
sprintf(s, (s9_dB < 10) ? fmt[0] : fmt[1], rssi_dBm, s9_dB);
}
else
{ // S0 ~ S9, 6dB per S-point
const unsigned int s_level = (rssi_dBm >= s0_dBm) ? (rssi_dBm - s0_dBm) / 6 : 0;
sprintf(s, "%4d S%u ", rssi_dBm, s_level);
}
UI_PrintStringSmall(s, 2, 0, line);
#if 1
// solid bar
for (i = 0; i < bar_width; i++)
p_line[bar_x + i] = (i > len) ? ((i & 1) == 0) ? 0x41 : 0x00 : ((i & 1) == 0) ? 0x7f : 0x3e;
#else
// knuled bar
for (i = 0; i < bar_width; i += 2)
p_line[bar_x + i] = (i <= len) ? 0x7f : 0x41;
#endif
memset(pLine, 0, 23);
DrawSmallAntennaAndBars(pLine, Level);
#endif
if (now)
ST7565_BlitFullScreen();
}
#endif
void UI_UpdateRSSI(const int16_t rssi, const int vfo)
{
#ifdef ENABLE_RSSI_BAR
(void)vfo; // unused
// optional larger RSSI dBm, S-point and bar level
if (center_line != CENTER_LINE_RSSI)
return;
if (gCurrentFunction == FUNCTION_RECEIVE ||
gCurrentFunction == FUNCTION_MONITOR ||
gCurrentFunction == FUNCTION_INCOMING)
{
UI_DisplayRSSIBar(rssi, true);
DisplayRSSIBar(rssi, true);
}
#else
// original little RS bars
// const int16_t dBm = (rssi / 2) - 160;
const uint8_t Line = (vfo == 0) ? 3 : 7;
uint8_t *p_line = gFrameBuffer[Line - 1];
const unsigned int band = gRxVfo->Band;
const int16_t level0 = gEEPROM_RSSI_CALIB[band][0];
const int16_t level1 = gEEPROM_RSSI_CALIB[band][1];
const int16_t level2 = gEEPROM_RSSI_CALIB[band][2];
const int16_t level3 = gEEPROM_RSSI_CALIB[band][3];
const int16_t level01 = (level0 + level1) / 2;
const int16_t level12 = (level1 + level2) / 2;
const int16_t level23 = (level2 + level3) / 2;
gVFO_RSSI[vfo] = rssi;
uint8_t rssi_level = 0;
if (rssi >= level3) rssi_level = 7;
else
if (rssi >= level23) rssi_level = 6;
else
if (rssi >= level2) rssi_level = 5;
else
if (rssi >= level12) rssi_level = 4;
else
if (rssi >= level1) rssi_level = 3;
else
if (rssi >= level01) rssi_level = 2;
else
if (rssi >= level0) rssi_level = 1;
if (gVFO_RSSI_bar_level[vfo] == rssi_level)
return;
gVFO_RSSI_bar_level[vfo] = rssi_level;
// **********************************************************
if (gEeprom.KEY_LOCK && gKeypadLocked > 0)
return; // display is in use
if (gCurrentFunction == FUNCTION_TRANSMIT || gScreenToDisplay != DISPLAY_MAIN)
return; // display is in use
p_line = gFrameBuffer[Line - 1];
memset(p_line, 0, 23);
// untested !!!
if (rssi_level == 0)
p_line = NULL;
else
UI_drawBars(p_line, rssi_level);
ST7565_DrawLine(0, Line, 23, p_line);
#endif
}
// ***************************************************************************
@@ -271,7 +254,7 @@ void UI_DisplayMain(void)
{
const unsigned int line0 = 0; // text screen line
const unsigned int line1 = 4;
char String[16];
char String[22];
unsigned int vfo_num;
center_line = CENTER_LINE_NONE;
@@ -279,6 +262,12 @@ void UI_DisplayMain(void)
// clear the screen
memset(gFrameBuffer, 0, sizeof(gFrameBuffer));
if(gLowBattery && !gLowBatteryConfirmed) {
UI_DisplayPopup("LOW BATTERY");
ST7565_BlitFullScreen();
return;
}
if (gEeprom.KEY_LOCK && gKeypadLocked > 0)
{ // tell user how to unlock the keyboard
UI_PrintString("Long press #", 0, LCD_WIDTH, 1, 8);
@@ -299,13 +288,31 @@ void UI_DisplayMain(void)
if (activeTxVFO != vfo_num) // this is not active TX VFO
{
if (gDTMF_CallState != DTMF_CALL_STATE_NONE || gDTMF_IsTx || gDTMF_InputMode)
{ // show DTMF stuff
#ifdef ENABLE_SCAN_RANGES
if(gScanRangeStart) {
UI_PrintString("ScnRng", 5, 0, line, 8);
sprintf(String, "%3u.%05u", gScanRangeStart / 100000, gScanRangeStart % 100000);
UI_PrintStringSmall(String, 56, 0, line);
uint32_t frq = gEeprom.VfoInfo[vfo_num].pRX->Frequency;
sprintf(String, "%3u.%05u", frq / 100000, frq % 100000);
UI_PrintStringSmall(String, 56, 0, line + 1);
continue;
}
#endif
if (
#ifdef ENABLE_DTMF_CALLING
gDTMF_CallState != DTMF_CALL_STATE_NONE || gDTMF_IsTx ||
#endif
gDTMF_InputMode)
{ // show DTMF stuff
#ifdef ENABLE_DTMF_CALLING
char Contact[16];
if (!gDTMF_InputMode)
{
memset(Contact, 0, sizeof(Contact));
if (gDTMF_CallState == DTMF_CALL_STATE_CALL_OUT)
strcpy(String, (gDTMF_State == DTMF_STATE_CALL_OUT_RSP) ? "CALL OUT(RSP)" : "CALL OUT");
@@ -317,14 +324,14 @@ void UI_DisplayMain(void)
strcpy(String, (gDTMF_State == DTMF_STATE_TX_SUCC) ? "DTMF TX(SUCC)" : "DTMF TX");
}
else
#endif
{
sprintf(String, ">%s", gDTMF_InputBox);
}
UI_PrintString(String, 2, 0, 0 + (vfo_num * 3), 8);
#ifdef ENABLE_DTMF_CALLING
memset(String, 0, sizeof(String));
if (!gDTMF_InputMode)
{
if (!gDTMF_InputMode) {
memset(Contact, 0, sizeof(Contact));
if (gDTMF_CallState == DTMF_CALL_STATE_CALL_OUT)
sprintf(String, ">%s", (DTMF_FindContact(gDTMF_String, Contact)) ? Contact : gDTMF_String);
@@ -335,8 +342,9 @@ void UI_DisplayMain(void)
if (gDTMF_IsTx)
sprintf(String, ">%s", gDTMF_String);
}
UI_PrintString(String, 2, 0, 2 + (vfo_num * 3), 8);
UI_PrintString(String, 2, 0, 2 + (vfo_num * 3), 8);
#endif
center_line = CENTER_LINE_IN_USE;
continue;
}
@@ -389,7 +397,7 @@ void UI_DisplayMain(void)
}
}
if (gEeprom.ScreenChannel[vfo_num] <= MR_CHANNEL_LAST)
if (IS_MR_CHANNEL(gEeprom.ScreenChannel[vfo_num]))
{ // channel mode
const unsigned int x = 2;
const bool inputting = (gInputBoxIndex == 0 || gEeprom.TX_VFO != vfo_num) ? false : true;
@@ -461,7 +469,7 @@ void UI_DisplayMain(void)
UI_PrintString(String, 32, 0, line, 8);
}
break;
continue;
}
else
{
@@ -471,19 +479,19 @@ void UI_DisplayMain(void)
frequency = gEeprom.VfoInfo[vfo_num].pTX->Frequency;
}
if (gEeprom.ScreenChannel[vfo_num] <= MR_CHANNEL_LAST)
if (IS_MR_CHANNEL(gEeprom.ScreenChannel[vfo_num]))
{ // it's a channel
// show the scan list assigment symbols
const uint8_t attributes = gMR_ChannelAttributes[gEeprom.ScreenChannel[vfo_num]];
if (attributes & MR_CH_SCANLIST1)
const ChannelAttributes_t att = gMR_ChannelAttributes[gEeprom.ScreenChannel[vfo_num]];
if (att.scanlist1)
memmove(p_line0 + 113, BITMAP_ScanList1, sizeof(BITMAP_ScanList1));
if (attributes & MR_CH_SCANLIST2)
if (att.scanlist2)
memmove(p_line0 + 120, BITMAP_ScanList2, sizeof(BITMAP_ScanList2));
// compander symbol
#ifndef ENABLE_BIG_FREQ
if ((attributes & MR_CH_COMPAND) > 0)
if (att.compander)
memmove(p_line0 + 120 + LCD_WIDTH, BITMAP_compand, sizeof(BITMAP_compand));
#else
// TODO: // find somewhere else to put the symbol
@@ -561,8 +569,8 @@ void UI_DisplayMain(void)
}
// show the channel symbols
const uint8_t attributes = gMR_ChannelAttributes[gEeprom.ScreenChannel[vfo_num]];
if ((attributes & MR_CH_COMPAND) > 0)
const ChannelAttributes_t att = gMR_ChannelAttributes[gEeprom.ScreenChannel[vfo_num]];
if (att.compander)
#ifdef ENABLE_BIG_FREQ
memmove(p_line0 + 120, BITMAP_compand, sizeof(BITMAP_compand));
#else
@@ -594,26 +602,31 @@ void UI_DisplayMain(void)
Level = gVFO_RSSI_bar_level[vfo_num];
#endif
}
UI_drawBars(p_line1 + LCD_WIDTH, Level);
if(Level)
DrawSmallAntennaAndBars(p_line1 + LCD_WIDTH, Level);
}
// ************
String[0] = '\0';
if (gEeprom.VfoInfo[vfo_num].AM_mode)
{ // show the AM symbol
strcpy(String, "AM");
}
else
{ // or show the CTCSS/DCS symbol
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 char *code_list[] = {"", "CT", "DCS", "DCR"};
if (code_type < ARRAY_SIZE(code_list))
strcpy(String, code_list[code_type]);
}
UI_PrintStringSmall(String, LCD_WIDTH + 24, 0, line + 1);
// show the modulation symbol
const char * s = "";
const ModulationMode_t mod = gEeprom.VfoInfo[vfo_num].Modulation;
switch (mod){
case MODULATION_FM: {
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 char *code_list[] = {"", "CT", "DCS", "DCR"};
if (code_type < ARRAY_SIZE(code_list))
s = code_list[code_type];
break;
}
default:
s = gModulationStr[mod];
break;
}
UI_PrintStringSmall(s, LCD_WIDTH + 24, 0, line + 1);
if (state == VFO_STATE_NORMAL || state == VFO_STATE_ALARM)
{ // show the TX power
@@ -647,9 +660,11 @@ void UI_DisplayMain(void)
UI_PrintStringSmall(String, LCD_WIDTH + 70, 0, line + 1);
}
#ifdef ENABLE_DTMF_CALLING
// show the DTMF decoding symbol
if (gEeprom.VfoInfo[vfo_num].DTMF_DECODING_ENABLE || gSetting_KILLED)
UI_PrintStringSmall("DTMF", LCD_WIDTH + 78, 0, line + 1);
#endif
// show the audio scramble symbol
if (gEeprom.VfoInfo[vfo_num].SCRAMBLING_TYPE > 0 && gSetting_ScrambleEnable)
@@ -672,10 +687,13 @@ void UI_DisplayMain(void)
#endif
#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 ||
gDTMF_CallState != DTMF_CALL_STATE_NONE)
if (gScreenToDisplay != DISPLAY_MAIN
#ifdef ENABLE_DTMF_CALLING
|| gDTMF_CallState != DTMF_CALL_STATE_NONE
#endif
)
return;
center_line = CENTER_LINE_AM_FIX_DATA;
@@ -688,7 +706,7 @@ void UI_DisplayMain(void)
#ifdef ENABLE_RSSI_BAR
if (rx) {
center_line = CENTER_LINE_RSSI;
UI_DisplayRSSIBar(gCurrentRSSI[gEeprom.RX_VFO], false);
DisplayRSSIBar(gCurrentRSSI[gEeprom.RX_VFO], false);
}
else
#endif
@@ -700,8 +718,11 @@ void UI_DisplayMain(void)
const unsigned int len = strlen(gDTMF_RX_live);
const unsigned int idx = (len > (17 - 5)) ? len - (17 - 5) : 0; // limit to last 'n' chars
if (gScreenToDisplay != DISPLAY_MAIN ||
gDTMF_CallState != DTMF_CALL_STATE_NONE)
if (gScreenToDisplay != DISPLAY_MAIN
#ifdef ENABLE_DTMF_CALLING
|| gDTMF_CallState != DTMF_CALL_STATE_NONE
#endif
)
return;
center_line = CENTER_LINE_DTMF_DEC;
@@ -731,8 +752,11 @@ void UI_DisplayMain(void)
#ifdef ENABLE_SHOW_CHARGE_LEVEL
else if (gChargingWithTypeC)
{ // charging .. show the battery state
if (gScreenToDisplay != DISPLAY_MAIN ||
gDTMF_CallState != DTMF_CALL_STATE_NONE)
if (gScreenToDisplay != DISPLAY_MAIN
#ifdef ENABLE_DTMF_CALLING
|| gDTMF_CallState != DTMF_CALL_STATE_NONE
#endif
)
return;
center_line = CENTER_LINE_CHARGE_DATA;

243
ui/menu.c
View File

@@ -83,6 +83,8 @@ const t_menu_item MenuList[] =
{"POnMsg", VOICE_ID_INVALID, MENU_PONMSG },
{"BatTxt", VOICE_ID_INVALID, MENU_BAT_TXT },
{"BackLt", VOICE_ID_INVALID, MENU_ABR }, // was "ABR"
{"BLMin", VOICE_ID_INVALID, MENU_ABR_MIN },
{"BLMax", VOICE_ID_INVALID, MENU_ABR_MAX },
{"BltTRX", VOICE_ID_INVALID, MENU_ABR_ON_TX_RX },
{"Beep", VOICE_ID_BEEP_PROMPT, MENU_BEEP },
#ifdef ENABLE_VOICE
@@ -95,16 +97,22 @@ const t_menu_item MenuList[] =
#ifdef ENABLE_ALARM
{"AlarmT", VOICE_ID_INVALID, MENU_AL_MOD },
#endif
#ifdef ENABLE_DTMF_CALLING
{"ANI ID", VOICE_ID_ANI_CODE, MENU_ANI_ID },
#endif
{"UPCode", VOICE_ID_INVALID, MENU_UPCODE },
{"DWCode", VOICE_ID_INVALID, MENU_DWCODE },
{"PTT ID", VOICE_ID_INVALID, MENU_PTT_ID },
{"D ST", VOICE_ID_INVALID, MENU_D_ST },
#ifdef ENABLE_DTMF_CALLING
{"D Resp", VOICE_ID_INVALID, MENU_D_RSP },
{"D Hold", VOICE_ID_INVALID, MENU_D_HOLD },
#endif
{"D Prel", VOICE_ID_INVALID, MENU_D_PRE },
#ifdef ENABLE_DTMF_CALLING
{"D Decd", VOICE_ID_INVALID, MENU_D_DCD },
{"D List", VOICE_ID_INVALID, MENU_D_LIST },
#endif
{"D Live", VOICE_ID_INVALID, MENU_D_LIVE_DEC }, // live DTMF decoder
#ifdef ENABLE_AM_FIX
{"AM Fix", VOICE_ID_INVALID, MENU_AM_FIX },
@@ -127,11 +135,11 @@ const t_menu_item MenuList[] =
{"Tx 500", VOICE_ID_INVALID, MENU_500TX }, // was "500TX"
{"350 En", VOICE_ID_INVALID, MENU_350EN }, // was "350EN"
{"ScraEn", VOICE_ID_INVALID, MENU_SCREN }, // was "SCREN"
{"TxEnab", VOICE_ID_INVALID, MENU_TX_EN }, // enable TX
#ifdef ENABLE_F_CAL_MENU
{"FrCali", VOICE_ID_INVALID, MENU_F_CALI }, // reference xtal calibration
#endif
{"BatCal", VOICE_ID_INVALID, MENU_BATCAL }, // battery voltage calibration
{"BatTyp", VOICE_ID_INVALID, MENU_BATTYP }, // battery type 1600/2200mAh
{"Reset", VOICE_ID_INITIALISATION, MENU_RESET }, // might be better to move this to the hidden menu items ?
{"", VOICE_ID_INVALID, 0xff } // end of list - DO NOT delete or move this this
@@ -139,33 +147,33 @@ const t_menu_item MenuList[] =
const uint8_t FIRST_HIDDEN_MENU_ITEM = MENU_F_LOCK;
const char gSubMenu_TXP[3][5] =
const char gSubMenu_TXP[][5] =
{
"LOW",
"MID",
"HIGH"
};
const char gSubMenu_SFT_D[3][4] =
const char gSubMenu_SFT_D[][4] =
{
"OFF",
"+",
"-"
};
const char gSubMenu_W_N[2][7] =
const char gSubMenu_W_N[][7] =
{
"WIDE",
"NARROW"
};
const char gSubMenu_OFF_ON[2][4] =
const char gSubMenu_OFF_ON[][4] =
{
"OFF",
"ON"
};
const char gSubMenu_SAVE[5][4] =
const char gSubMenu_SAVE[][4] =
{
"OFF",
"1:1",
@@ -174,7 +182,7 @@ const char gSubMenu_SAVE[5][4] =
"1:4"
};
const char gSubMenu_TOT[11][7] =
const char gSubMenu_TOT[][7] =
{
"30 sec",
"1 min",
@@ -189,7 +197,7 @@ const char gSubMenu_TOT[11][7] =
"15 min"
};
const char* gSubMenu_RXMode[4] =
const char* gSubMenu_RXMode[] =
{
"MAIN\nONLY", // TX and RX on main only
"DUAL RX\nRESPOND", // Watch both and respond
@@ -198,7 +206,7 @@ const char* gSubMenu_RXMode[4] =
};
#ifdef ENABLE_VOICE
const char gSubMenu_VOICE[3][4] =
const char gSubMenu_VOICE[][4] =
{
"OFF",
"CHI",
@@ -206,14 +214,14 @@ const char* gSubMenu_RXMode[4] =
};
#endif
const char gSubMenu_SC_REV[3][8] =
const char gSubMenu_SC_REV[][8] =
{
"TIMEOUT",
"CARRIER",
"STOP"
};
const char* gSubMenu_MDF[4] =
const char* gSubMenu_MDF[] =
{
"FREQ",
"CHANNEL\nNUMBER",
@@ -222,31 +230,33 @@ const char* gSubMenu_MDF[4] =
};
#ifdef ENABLE_ALARM
const char gSubMenu_AL_MOD[2][5] =
const char gSubMenu_AL_MOD[][5] =
{
"SITE",
"TONE"
};
#endif
const char gSubMenu_D_RSP[4][11] =
#ifdef ENABLE_DTMF_CALLING
const char gSubMenu_D_RSP[][11] =
{
"DO\nNOTHING",
"RING",
"REPLY",
"BOTH"
};
#endif
const char* gSubMenu_PTT_ID[5] =
const char* gSubMenu_PTT_ID[] =
{
"OFF",
"KEY\nUP",
"KEY\nDOWN",
"KEY\nUP+DOWN",
"UP CODE",
"DOWN CODE",
"UP+DOWN\nCODE",
"APOLLO\nQUINDAR"
};
const char gSubMenu_PONMSG[4][8] =
const char gSubMenu_PONMSG[][8] =
{
"FULL",
"MESSAGE",
@@ -254,30 +264,32 @@ const char gSubMenu_PONMSG[4][8] =
"NONE"
};
const char* gSubMenu_ROGER[3] =
const char gSubMenu_ROGER[][6] =
{
"OFF",
"ROGER",
"MDC\n1200"
"MDC"
};
const char gSubMenu_RESET[2][4] =
const char gSubMenu_RESET[][4] =
{
"VFO",
"ALL"
};
const char gSubMenu_F_LOCK[6][4] =
const char * gSubMenu_F_LOCK[] =
{
"OFF",
"FCC",
"CE",
"GB",
"430",
"438"
"DEFAULT+\n137-174\n400-470",
"FCC HAM\n144-148\n420-450",
"CE HAM\n144-146\n430-440",
"GB HAM\n144-148\n430-440",
"137-174\n400-430",
"137-174\n400-438",
"DISABLE\nALL",
"UNLOCK\nALL",
};
const char gSubMenu_BACKLIGHT[8][7] =
const char gSubMenu_BACKLIGHT[][7] =
{
"OFF",
"5 sec",
@@ -289,7 +301,7 @@ const char gSubMenu_BACKLIGHT[8][7] =
"ON"
};
const char gSubMenu_RX_TX[4][6] =
const char gSubMenu_RX_TX[][6] =
{
"OFF",
"TX",
@@ -298,7 +310,7 @@ const char gSubMenu_RX_TX[4][6] =
};
#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 1",
@@ -307,14 +319,20 @@ const char gSubMenu_RX_TX[4][6] =
};
#endif
const char gSubMenu_BAT_TXT[3][8] =
const char gSubMenu_BAT_TXT[][8] =
{
"NONE",
"VOLTAGE",
"PERCENT"
};
const char gSubMenu_SCRAMBLER[11][7] =
const char gSubMenu_BATTYP[][9] =
{
"1600mAh",
"2200mAh"
};
const char gSubMenu_SCRAMBLER[][7] =
{
"OFF",
"2600Hz",
@@ -329,7 +347,6 @@ const char gSubMenu_SCRAMBLER[11][7] =
"3500Hz"
};
const t_sidefunction SIDEFUNCTIONS[] =
{
{"NONE", ACTION_OPT_NONE},
@@ -351,19 +368,32 @@ const t_sidefunction SIDEFUNCTIONS[] =
#endif
{"LOCK\nKEYPAD", ACTION_OPT_KEYLOCK},
{"SWITCH\nVFO", ACTION_OPT_A_B},
{"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 uint8_t gSubMenu_SIDEFUNCTIONS_size = ARRAY_SIZE(SIDEFUNCTIONS);
bool gIsInSubMenu;
uint8_t gMenuCursor;
int GetCurrentMenuId() {
int UI_MENU_GetCurrentMenuId() {
if(gMenuCursor < ARRAY_SIZE(MenuList))
return MenuList[gMenuCursor].menu_id;
else
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;
// edit box
@@ -378,7 +408,10 @@ void UI_DisplayMenu(void)
const unsigned int menu_item_x2 = LCD_WIDTH - 1;
unsigned int i;
char String[64]; // bigger cuz we can now do multi-line in one string (use '\n' char)
#ifdef ENABLE_DTMF_CALLING
char Contact[16];
#endif
// clear the screen buffer
memset(gFrameBuffer, 0, sizeof(gFrameBuffer));
@@ -466,7 +499,7 @@ void UI_DisplayMenu(void)
bool already_printed = false;
switch (GetCurrentMenuId())
switch (UI_MENU_GetCurrentMenuId())
{
case MENU_SQL:
sprintf(String, "%d", gSubMenuSelection);
@@ -485,9 +518,11 @@ void UI_DisplayMenu(void)
break;
#endif
case MENU_STEP:
sprintf(String, "%d.%02ukHz", StepFrequencyTable[gSubMenuSelection] / 100, abs(StepFrequencyTable[gSubMenuSelection]) % 100);
case MENU_STEP: {
uint16_t step = gStepFrequencyTable[FREQUENCY_GetStepIdxFromSortedIdx(gSubMenuSelection)];
sprintf(String, "%d.%02ukHz", step / 100, step % 100);
break;
}
case MENU_TXP:
strcpy(String, gSubMenu_TXP[gSubMenuSelection]);
@@ -497,8 +532,7 @@ void UI_DisplayMenu(void)
case MENU_T_DCS:
if (gSubMenuSelection == 0)
strcpy(String, "OFF");
else
if (gSubMenuSelection < 105)
else if (gSubMenuSelection < 105)
sprintf(String, "D%03oN", DCS_Options[gSubMenuSelection - 1]);
else
sprintf(String, "D%03oI", DCS_Options[gSubMenuSelection - 105]);
@@ -507,38 +541,10 @@ void UI_DisplayMenu(void)
case MENU_R_CTCS:
case MENU_T_CTCS:
{
#if 1
unsigned int Code;
FREQ_Config_t *pConfig = (GetCurrentMenuId() == MENU_R_CTCS) ? &gTxVfo->freq_config_RX : &gTxVfo->freq_config_TX;
if (gSubMenuSelection == 0)
{
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
if (gSubMenuSelection == 0)
strcpy(String, "OFF");
else
sprintf(String, "%u.%uHz", CTCSS_Options[gSubMenuSelection - 1] / 10, CTCSS_Options[gSubMenuSelection - 1] % 10);
break;
}
@@ -549,21 +555,13 @@ void UI_DisplayMenu(void)
case MENU_OFFSET:
if (!gIsInSubMenu || gInputBoxIndex == 0)
{
sprintf(String, "%d.%05u", gSubMenuSelection / 100000, abs(gSubMenuSelection) % 100000);
sprintf(String, "%3d.%05u", gSubMenuSelection / 100000, abs(gSubMenuSelection) % 100000);
UI_PrintString(String, menu_item_x1, menu_item_x2, 1, 8);
}
else
{
for (i = 0; i < 3; i++)
String[i ] = (gInputBox[i] == 10) ? '-' : gInputBox[i] + '0';
String[3] = '.';
for (i = 3; i < 6; i++)
String[i + 1] = (gInputBox[i] == 10) ? '-' : gInputBox[i] + '0';
String[ 7] = '-';
String[ 8] = '-';
String[ 9] = 0;
String[10] = 0;
String[11] = 0;
const char * ascii = INPUTBOX_GetAscii();
sprintf(String, "%.3s.%.3s ",ascii, ascii + 3);
UI_PrintString(String, menu_item_x1, menu_item_x2, 1, 8);
}
@@ -597,10 +595,20 @@ void UI_DisplayMenu(void)
case MENU_ABR:
strcpy(String, gSubMenu_BACKLIGHT[gSubMenuSelection]);
BACKLIGHT_SetBrightness(-1);
break;
case MENU_ABR_MIN:
case MENU_ABR_MAX:
sprintf(String, "%d", gSubMenuSelection);
if(gIsInSubMenu)
BACKLIGHT_SetBrightness(gSubMenuSelection);
else
BACKLIGHT_SetBrightness(-1);
break;
case MENU_AM:
strcpy(String, (gSubMenuSelection == 0) ? "FM" : "AM");
strcpy(String, gModulationStr[gSubMenuSelection]);
break;
#ifdef ENABLE_AM_FIX_TEST1
@@ -628,7 +636,9 @@ void UI_DisplayMenu(void)
case MENU_S_ADD2:
case MENU_STE:
case MENU_D_ST:
#ifdef ENABLE_DTMF_CALLING
case MENU_D_DCD:
#endif
case MENU_D_LIVE_DEC:
#ifdef ENABLE_NOAA
case MENU_NOAA_S:
@@ -638,7 +648,6 @@ void UI_DisplayMenu(void)
case MENU_500TX:
case MENU_350EN:
case MENU_SCREN:
case MENU_TX_EN:
strcpy(String, gSubMenu_OFF_ON[gSubMenuSelection]);
break;
@@ -747,10 +756,11 @@ void UI_DisplayMenu(void)
break;
#endif
#ifdef ENABLE_DTMF_CALLING
case MENU_ANI_ID:
strcpy(String, gEeprom.ANI_DTMF_ID);
break;
#endif
case MENU_UPCODE:
strcpy(String, gEeprom.DTMF_UP_CODE);
break;
@@ -759,6 +769,7 @@ void UI_DisplayMenu(void)
strcpy(String, gEeprom.DTMF_DOWN_CODE);
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_RSP:
strcpy(String, gSubMenu_D_RSP[gSubMenuSelection]);
break;
@@ -766,7 +777,7 @@ void UI_DisplayMenu(void)
case MENU_D_HOLD:
sprintf(String, "%ds", gSubMenuSelection);
break;
#endif
case MENU_D_PRE:
sprintf(String, "%d*10ms", gSubMenuSelection);
break;
@@ -779,6 +790,7 @@ void UI_DisplayMenu(void)
strcpy(String, gSubMenu_BAT_TXT[gSubMenuSelection]);
break;
#ifdef ENABLE_DTMF_CALLING
case MENU_D_LIST:
gIsDtmfContactValid = DTMF_GetContact((int)gSubMenuSelection - 1, Contact);
if (!gIsDtmfContactValid)
@@ -786,6 +798,7 @@ void UI_DisplayMenu(void)
else
memmove(String, Contact, 8);
break;
#endif
case MENU_PONMSG:
strcpy(String, gSubMenu_PONMSG[gSubMenuSelection]);
@@ -806,7 +819,10 @@ void UI_DisplayMenu(void)
break;
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;
#ifdef ENABLE_F_CAL_MENU
@@ -830,7 +846,11 @@ void UI_DisplayMenu(void)
sprintf(String, "%u.%02uV\n%u", vol / 100, vol % 100, gSubMenuSelection);
break;
}
case MENU_BATTYP:
strcpy(String, gSubMenu_BATTYP[gSubMenuSelection]);
break;
case MENU_F1SHRT:
case MENU_F1LONG:
case MENU_F2SHRT:
@@ -895,9 +915,9 @@ 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 < 0)
@@ -942,9 +962,9 @@ void UI_DisplayMenu(void)
}
}
if (GetCurrentMenuId() == MENU_MEM_CH ||
GetCurrentMenuId() == MENU_DEL_CH ||
GetCurrentMenuId() == MENU_1_CALL)
if (UI_MENU_GetCurrentMenuId() == MENU_MEM_CH ||
UI_MENU_GetCurrentMenuId() == MENU_DEL_CH ||
UI_MENU_GetCurrentMenuId() == MENU_1_CALL)
{ // display the channel name
char s[11];
BOARD_fetchChannelName(s, gSubMenuSelection);
@@ -953,39 +973,46 @@ void UI_DisplayMenu(void)
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);
if (GetCurrentMenuId() == MENU_UPCODE)
if (UI_MENU_GetCurrentMenuId() == MENU_UPCODE)
if (strlen(gEeprom.DTMF_UP_CODE) > 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)
UI_PrintString(gEeprom.DTMF_DOWN_CODE + 8, menu_item_x1, menu_item_x2, 4, 8);
if (GetCurrentMenuId() == MENU_D_LIST && gIsDtmfContactValid)
#ifdef ENABLE_DTMF_CALLING
if (UI_MENU_GetCurrentMenuId() == MENU_D_LIST && gIsDtmfContactValid)
{
Contact[11] = 0;
memmove(&gDTMF_ID, Contact + 8, 4);
sprintf(String, "ID:%s", Contact + 8);
UI_PrintString(String, menu_item_x1, menu_item_x2, 4, 8);
}
#endif
if (UI_MENU_GetCurrentMenuId() == MENU_R_CTCS ||
UI_MENU_GetCurrentMenuId() == MENU_T_CTCS ||
UI_MENU_GetCurrentMenuId() == MENU_R_DCS ||
UI_MENU_GetCurrentMenuId() == MENU_T_DCS
#ifdef ENABLE_DTMF_CALLING
|| UI_MENU_GetCurrentMenuId() == MENU_D_LIST
#endif
)
if (GetCurrentMenuId() == MENU_R_CTCS ||
GetCurrentMenuId() == MENU_T_CTCS ||
GetCurrentMenuId() == MENU_R_DCS ||
GetCurrentMenuId() == MENU_T_DCS ||
GetCurrentMenuId() == MENU_D_LIST)
{
sprintf(String, "%2d", gSubMenuSelection);
UI_PrintStringSmall(String, 105, 0, 0);
}
if ((GetCurrentMenuId() == MENU_RESET ||
GetCurrentMenuId() == MENU_MEM_CH ||
GetCurrentMenuId() == MENU_MEM_NAME ||
GetCurrentMenuId() == MENU_DEL_CH) && gAskForConfirmation)
if ((UI_MENU_GetCurrentMenuId() == MENU_RESET ||
UI_MENU_GetCurrentMenuId() == MENU_MEM_CH ||
UI_MENU_GetCurrentMenuId() == MENU_MEM_NAME ||
UI_MENU_GetCurrentMenuId() == MENU_DEL_CH) && gAskForConfirmation)
{ // display confirmation
strcpy(String, (gAskForConfirmation == 1) ? "SURE?" : "WAIT!");
UI_PrintString(String, menu_item_x1, menu_item_x2, 5, 8);

View File

@@ -21,6 +21,7 @@
#include <stdint.h>
#include "audio.h" // VOICE_ID_t
#include "settings.h"
typedef struct {
const char name[7]; // menu display area only has room for 6 characters
@@ -53,6 +54,8 @@ enum
#endif
MENU_ABR,
MENU_ABR_ON_TX_RX,
MENU_ABR_MIN,
MENU_ABR_MAX,
MENU_TDR,
MENU_BEEP,
#ifdef ENABLE_VOICE
@@ -76,16 +79,22 @@ enum
#ifdef ENABLE_ALARM
MENU_AL_MOD,
#endif
#ifdef ENABLE_DTMF_CALLING
MENU_ANI_ID,
#endif
MENU_UPCODE,
MENU_DWCODE,
MENU_PTT_ID,
MENU_D_ST,
#ifdef ENABLE_DTMF_CALLING
MENU_D_RSP,
MENU_D_HOLD,
#endif
MENU_D_PRE,
#ifdef ENABLE_DTMF_CALLING
MENU_D_DCD,
MENU_D_LIST,
#endif
MENU_D_LIVE_DEC,
MENU_PONMSG,
MENU_ROGER,
@@ -108,8 +117,6 @@ enum
MENU_500TX,
MENU_350EN,
MENU_SCREN,
MENU_TX_EN, // enable TX
#ifdef ENABLE_F_CAL_MENU
MENU_F_CALI, // reference xtal calibration
#endif
@@ -118,7 +125,8 @@ enum
MENU_F1LONG,
MENU_F2SHRT,
MENU_F2LONG,
MENU_MLONG
MENU_MLONG,
MENU_BATTYP
};
extern const uint8_t FIRST_HIDDEN_MENU_ITEM;
@@ -140,19 +148,21 @@ extern const char* gSubMenu_MDF[4];
#ifdef ENABLE_ALARM
extern const char gSubMenu_AL_MOD[2][5];
#endif
#ifdef ENABLE_DTMF_CALLING
extern const char gSubMenu_D_RSP[4][11];
#endif
extern const char* gSubMenu_PTT_ID[5];
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_F_LOCK[6][4];
extern const char* gSubMenu_F_LOCK[F_LOCK_LEN];
extern const char gSubMenu_BACKLIGHT[8][7];
extern const char gSubMenu_RX_TX[4][6];
#ifdef ENABLE_AM_FIX_TEST1
extern const char gSubMenu_AM_fix_test1[4][8];
#endif
extern const char gSubMenu_BAT_TXT[3][8];
extern const char gSubMenu_BATTYP[2][9];
extern const char gSubMenu_SCRAMBLER[11][7];
typedef struct {char* name; uint8_t id;} t_sidefunction;
@@ -162,8 +172,7 @@ extern const t_sidefunction* gSubMenu_SIDEFUNCTIONS;
extern bool gIsInSubMenu;
extern uint8_t gMenuCursor;
int GetCurrentMenuId();
extern int8_t gMenuScrollDirection;
extern int32_t gSubMenuSelection;
extern char edit_original[17];
@@ -171,5 +180,7 @@ extern char edit[17];
extern int edit_index;
void UI_DisplayMenu(void);
int UI_MENU_GetCurrentMenuId();
uint8_t UI_MENU_GetMenuIdx(uint8_t id);
#endif

View File

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

View File

@@ -16,10 +16,11 @@
#include <string.h>
#include "app/scanner.h"
#include "app/chFrScanner.h"
#ifdef ENABLE_FMRADIO
#include "app/fm.h"
#endif
#include "app/scanner.h"
#include "bitmaps.h"
#include "driver/keyboard.h"
#include "driver/st7565.h"
@@ -33,7 +34,7 @@
#include "ui/ui.h"
#include "ui/status.h"
void UI_DisplayStatus(const bool test_display)
void UI_DisplayStatus()
{
uint8_t *line = gStatusLine;
unsigned int x = 0;
@@ -60,7 +61,7 @@ void UI_DisplayStatus(const bool test_display)
x1 = x + sizeof(BITMAP_RX);
}
else
if (gCurrentFunction == FUNCTION_POWER_SAVE || test_display)
if (gCurrentFunction == FUNCTION_POWER_SAVE)
{
memmove(line + x, BITMAP_POWERSAVE, sizeof(BITMAP_POWERSAVE));
x1 = x + sizeof(BITMAP_POWERSAVE);
@@ -69,7 +70,7 @@ void UI_DisplayStatus(const bool test_display)
#ifdef ENABLE_NOAA
// NOASS SCAN indicator
if (gIsNoaaMode || test_display)
if (gIsNoaaMode)
{
memmove(line + x, BITMAP_NOAA, sizeof(BITMAP_NOAA));
x1 = x + sizeof(BITMAP_NOAA);
@@ -78,38 +79,41 @@ void UI_DisplayStatus(const bool test_display)
#else
// hmmm, what to put in it's place
#endif
#ifdef ENABLE_DTMF_CALLING
if (gSetting_KILLED)
{
memset(line + x, 0xFF, 10);
x1 = x + 10;
}
else
else
#endif
{
// SCAN indicator
if (gScanStateDir != SCAN_OFF || gScreenToDisplay == DISPLAY_SCANNER || test_display)
if (gScanStateDir != SCAN_OFF || SCANNER_IsScanning())
{
if (gNextMrChannel <= MR_CHANNEL_LAST && gScreenToDisplay != DISPLAY_SCANNER)
char * s = "";
if (IS_MR_CHANNEL(gNextMrChannel) && !SCANNER_IsScanning())
{ // channel mode
if (gEeprom.SCAN_LIST_DEFAULT == 0)
UI_PrintStringSmallBuffer("1", line + x);
else
if (gEeprom.SCAN_LIST_DEFAULT == 1)
UI_PrintStringSmallBuffer("2", line + x);
else
if (gEeprom.SCAN_LIST_DEFAULT == 2)
UI_PrintStringSmallBuffer("*", line + x);
switch(gEeprom.SCAN_LIST_DEFAULT) {
case 0: s = "1"; break;
case 1: s = "2"; break;
case 2: s = "*"; break;
}
}
else
{ // frequency mode
UI_PrintStringSmallBuffer("S", line + x);
s = "S";
}
UI_PrintStringSmallBuffer(s, line + x);
x1 = x + 7;
}
}
x += 7; // font character width
#ifdef ENABLE_VOICE
// VOICE indicator
if (gEeprom.VOICE_PROMPT != VOICE_PROMPT_OFF || test_display)
if (gEeprom.VOICE_PROMPT != VOICE_PROMPT_OFF)
{
memmove(line + x, BITMAP_VoicePrompt, sizeof(BITMAP_VoicePrompt));
x1 = x + sizeof(BITMAP_VoicePrompt);
@@ -120,10 +124,10 @@ void UI_DisplayStatus(const bool test_display)
#endif
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;
if(dw == 1 || dw == 3 || test_display) { // DWR - dual watch + respond
if(gDualWatchActive || test_display)
if(dw == 1 || dw == 3) { // DWR - dual watch + respond
if(gDualWatchActive)
memmove(line + x, BITMAP_TDR1, sizeof(BITMAP_TDR1) - (dw==1?0:5));
else
memmove(line + x + 3, BITMAP_TDR2, sizeof(BITMAP_TDR2));
@@ -136,7 +140,7 @@ void UI_DisplayStatus(const bool test_display)
#ifdef ENABLE_VOX
// VOX indicator
if (gEeprom.VOX_SWITCH || test_display)
if (gEeprom.VOX_SWITCH)
{
memmove(line + x, BITMAP_VOX, sizeof(BITMAP_VOX));
x1 = x + sizeof(BITMAP_VOX);
@@ -148,7 +152,7 @@ void UI_DisplayStatus(const bool test_display)
x1 = x;
// KEY-LOCK indicator
if (gEeprom.KEY_LOCK || test_display)
if (gEeprom.KEY_LOCK)
{
memmove(line + x, BITMAP_KeyLock, sizeof(BITMAP_KeyLock));
x += sizeof(BITMAP_KeyLock);
@@ -166,7 +170,7 @@ void UI_DisplayStatus(const bool test_display)
char s[8];
unsigned int space_needed;
unsigned int x2 = LCD_WIDTH - sizeof(BITMAP_BatteryLevel5) - 3;
unsigned int x2 = LCD_WIDTH - sizeof(BITMAP_BatteryLevel1) - 3;
if (gChargingWithTypeC)
x2 -= sizeof(BITMAP_USB_C); // the radio is on charge
@@ -204,7 +208,7 @@ void UI_DisplayStatus(const bool test_display)
x = LCD_WIDTH - sizeof(BITMAP_BatteryLevel1) - sizeof(BITMAP_USB_C);
// USB-C charge indicator
if (gChargingWithTypeC || test_display)
if (gChargingWithTypeC)
memmove(line + x, BITMAP_USB_C, sizeof(BITMAP_USB_C));
x += sizeof(BITMAP_USB_C);

View File

@@ -17,7 +17,7 @@
#ifndef UI_STATUS_H
#define UI_STATUS_H
void UI_DisplayStatus(const bool test_display);
void UI_DisplayStatus();
#endif

View File

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

View File

@@ -43,7 +43,6 @@ void UI_DisplayWelcome(void)
{
char WelcomeString0[16];
char WelcomeString1[16];
char WelcomeString2[16];
memset(gStatusLine, 0, sizeof(gStatusLine));
memset(gFrameBuffer, 0, sizeof(gFrameBuffer));
@@ -61,7 +60,6 @@ void UI_DisplayWelcome(void)
{
memset(WelcomeString0, 0, sizeof(WelcomeString0));
memset(WelcomeString1, 0, sizeof(WelcomeString1));
memset(WelcomeString2, 0, sizeof(WelcomeString2));
if (gEeprom.POWER_ON_DISPLAY_MODE == POWER_ON_DISPLAY_MODE_VOLTAGE)
{
@@ -70,10 +68,6 @@ void UI_DisplayWelcome(void)
gBatteryVoltageAverage / 100,
gBatteryVoltageAverage % 100,
BATTERY_VoltsToPercent(gBatteryVoltageAverage));
#if 0
sprintf(WelcomeString2, "Current %u", gBatteryCurrent); // needs scaling into mA
#endif
}
else
{
@@ -83,17 +77,9 @@ void UI_DisplayWelcome(void)
UI_PrintString(WelcomeString0, 0, 127, 0, 10);
UI_PrintString(WelcomeString1, 0, 127, 2, 10);
#if 0
UI_PrintStringSmall(WelcomeString2, 0, 127, 4);
#endif
UI_PrintStringSmall(Version, 0, 0, 6);
UI_PrintStringSmall(Version, 0, 128, 6);
#if 1
ST7565_BlitStatusLine(); // blank status line
#else
UI_DisplayStatus(true); // show all status line symbols (test)
#endif
ST7565_BlitStatusLine(); // blank status line
ST7565_BlitFullScreen();
}
}

View File

@@ -1,16 +1,11 @@
#define ONE_OF_ELEVEN_VER
#ifdef GIT_HASH
#define VER GIT_HASH
#ifdef VERSION_STRING
#define VER " "VERSION_STRING
#else
#define VER "231004"
#define VER ""
#endif
#ifndef ONE_OF_ELEVEN_VER
const char Version[] = "OEFW-"VER;
const char UART_Version[] = "UV-K5 Firmware, Open Edition, OEFW-"VER"\r\n";
#else
const char Version[] = "1o11+fagci-"VER;
const char UART_Version[] = "UV-K5 Firmware, Open Edition, 1o11+fagci-"VER"\r\n";
#endif
const char Version[] = AUTHOR_STRING VER;
const char UART_Version[] = "UV-K5 Firmware, Open Edition, " AUTHOR_STRING VER "\r\n";

View File

@@ -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
::
:: 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
:: 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.
:: The Quansheng windows upload-to-radio program requires a 'packed' .bin file.