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Author SHA1 Message Date
twislaandClaude Opus 5.5 dafbdaddf6 G1 done: Saved Pages read offline, checked by hand
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 01:49:12 +02:00
twislaandClaude Opus 5.5 fe886e2c1d G1: accept a ~12 KB heap dip during a fetch with IRC connected (Q86 revised)
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 01:47:59 +02:00
twislaandClaude Opus 5.5 9ca9a16de8 Gemini: read big pages from the card as you scroll (Q88)
A page larger than memory allows is now windowed instead of cut: one
pass over its file (cache or Saved Page) counts lines, indexes every
64th (offset, and the preformatted state there in bit 31: about 1 KB
for a 1 MB page) and loads the first window. Scrolling near either end
reads the next or previous window on the Gemini task; the line on top
of the screen stays put, the scrollbar follows the whole page, and Tab
at a window's edge pages on instead of wrapping. Window budgets count
the memory the old window gives back.

Display pages alternate between two cache files so the one on screen
is never overwritten by the next fetch; jobs use a third.

On the device, Cosmos with IRC connected: 226 of 419 lines at first,
then lines 192-419, back to 64 and 0 while scrolling. `key space` added
to the console's key command.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 01:44:01 +02:00
twislaandClaude Opus 5.5 fd306d5013 G1 steps 5-6: input prompts, bookmarks, downloads, Saved Pages
Everything touching the network or the card is a job on the Gemini
task (a missing card can block 5 s, past the main loop's watchdog):
about:start is composed from /gemini/bookmarks.gmi and the Saved Pages
(by capsule, newest first); file:// opens a Saved Page; s, S, r, d, b
and downloads report one line to the URL bar, S with progress Toasts.

A Saved Page is the cached body with a first line "> Saved from <url>
on <date>": it shows as a quote and gives relative links their base;
inside one, links to other Saved Pages open the saved copy, others go
online or say "Not saved, and offline". Input prompts (11 masked)
request the same URL with the answer as its query.

Fixed on the way: re-wrapping indented lines rebuilt the text from its
rows, inserting a space where a long word had been cut; refreshing
loaded the whole Saved Page next to a TLS connection (heap down to 436
bytes), now it reads one line and every fetch checks the 55 KB floor.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 01:24:29 +02:00
twislaandClaude Opus 5.5 10f3ff7a4c G1 step 4: the Gemini App (rendering, links, history, address line)
Gemtext as Q75 has it: headings bold (# in the accent colour), lists
with a middle dot, quotes muted, links as » labels, preformatted lines
unwrapped and scrolled sideways together; other text/* as is. Pages are
wrapped once for each line's first row (4 bytes a line) and only the
lines on screen are wrapped again to draw. Tab and Shift+Tab move
between links, Enter follows (relative links resolved), Back or Delete
go back to where the page was scrolled, g opens the address line.
Non-Gemini links say so in the URL bar; a changed certificate opens a
dialog; errors and refusals get a page with a "Try again" link; a page
only partly in memory says why at its end.

A status message timed with millis() after the loop's clock read was
cleared before it was drawn (unsigned wrap): now a signed comparison,
as for the toasts in M0.

Verified on the device: start page, Project Gemini, its relative news/
link, Back with the scroll restored, and the YouTube link refused.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 01:07:23 +02:00
twislaandClaude Opus 5.5 7b8d9391a4 G1 step 3: the Gemini fetcher (TOFU, redirects, floors, pages via the card)
GeminiService fetches on a short-lived task and hands the App a
GeminiPage: header, the body as lines in 4 KB chunks (TextBuffer: no
large block, no doubling copies), the final URL after up to 5
redirects. Certificates are pinned on first use per host and port; a
change comes back as its own outcome with both fingerprints. No fetch
starts below 55 KB free (Q86).

With a card, the body streams to /gemini/cache/page.gmi in 1 KB pieces
while the connection is open, then loads into RAM once its memory is
back (Q87); StorageService::runAndWait (moved from the Debug Console)
keeps every card access on the storage task. Without a card: RAM, with
the steady and transient floors.

Measured with IRC connected: Cosmos (31.6 KB) went from 4.6 KB to the
whole page on the card and 20 KB on screen; lowest free heap 19.5 KB
in transfer, 43 KB once loaded. `gemini get` and `gemini trust` on the
console. 14 Gemini tests.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 00:58:01 +02:00
twislaandClaude Opus 5.5 babb1d114e G1 step 2: Gemini parsers (host-tested), and the memory decision (Q86)
lib/gemini: URLs split per RFC 3986 appendix B and resolved per section
5.2 (all 32 reference examples of 5.4 pass, with gemini:// for http://),
the request form (no fragment, lower-case host, never an empty path),
query encoding for input prompts, Saved Page paths; the response header
(status, category, MIME type and parameters, 1024-byte meta limit);
gemtext's line types; and display text for the Latin-1 fonts. 12 tests.

Q86, decided after step 1: free heap stays above 40 KB in steady state
and 20 KB during a handshake; a fetch won't start below 55 KB.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 00:29:55 +02:00
twislaandClaude Opus 5.5 2d384f5cff G1 step 1: gemini get, and two TLS connections measured
`gemini get <url>` fetches on a short-lived task (a handshake would trip
the main loop's watchdog; an idle client should cost no stack) and
reports the header, size, certificate fingerprint and heap. First page:
geminiprotocol.net, 20 text/gemini, 1,184 bytes in 0.7-1.1 s.

With IRC connected over TLS, a fetch dips to about 24 KB free during its
handshake, about 36-40 KB after it; nothing leaks. Antenna is down, so
the default aggregator becomes Cosmos.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 00:27:05 +02:00
twislaandClaude Opus 5.5 dc9b0e14ce G1 design: Gemini client plan, glossary (Capsule, Saved Page)
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-05 00:18:01 +02:00
twislaandClaude Opus 5.5 dc4b49755a Merge branch 'm2': GNSS, and the memory back
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 23:42:41 +02:00
twislaandClaude Opus 5.5 fff28af961 Rebuild the framework with smaller TLS buffers (ADR 0006)
custom_sdkconfig makes pioarduino regenerate the ESP-IDF libraries:
asymmetric TLS buffers (16 KB in, 4 KB out) and dynamic buffers that
free handshake-only data once connected. The rebuild also follows the
board: no PSRAM, 8 MB flash. The project now carries the partition
table the hybrid build needs (identical to the framework's: the app
slots must not move under updates over the air). Generated files are
ignored.

Debug Build, GNSS on, IRC on TLS: 78 KB free and a 59 KB low (M2 began
at 31 KB and 12.6 KB; the floor is 40 KB). The full stress set passes
on it: refused installs over Wi-Fi and from SD, put/get, screenshot,
core dump decode, Probation; under all of it at once, the low is 46 KB.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 23:32:29 +02:00
twislaandClaude Opus 5.5 4e439410cd Stop IRC by hand; remove mDNS
IrcService::disconnect() stops the session from any state: QUIT if
connected, then no more retries. /quit goes through it (before, it only
stopped a connected session; while waiting for Wi-Fi or retrying it did
nothing), and so does the new `irc stop` command. Stopped by hand,
opening the IRC App no longer reconnects; typing a line does.

mDNS is gone: it never crossed the dev box's routed network, and it
cost about 7.5 KB of RAM. Pushes go to the IP shown in Settings ->
Firmware, which drops its Name row. OTA Q54 records the change.

On the device, Debug Build: 105.6 KB free with Wi-Fi (was 98); with IRC
on TLS 54 KB free (was 46); after `irc stop`, back to 99 KB.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 23:17:48 +02:00
twislaandClaude Opus 5.5 db265fb757 Trim task stacks and buffers by measurement: +15 KB with IRC up
Peak stack use was measured through each task's worst case (an
ECDSA-checked install over Wi-Fi and from SD, get/put, a core dump
fetch, an IRC TLS handshake); stacks are now peak plus about 2 KB: loop
8 -> 6 KB, update 8 -> 5, storage 10 -> 6, irc 8 -> 6. The Debug Build's
console ring goes 6 -> 4 KB, serial TX 2 -> 1 KB, the GNSS UART buffer
1 KB -> 512 B.

On the device, with IRC on TLS: 46 KB free (was 31), an 18 KB low (was
9.4). The re-run of every worst case left at least 1.6 KB of stack free
in each task.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 23:02:35 +02:00
twislaandClaude Opus 5.5 578a39d3c1 M2: record cold-start time to first fix and the heap measurement
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 22:52:07 +02:00
twislaandClaude Opus 5.5 d7952612dd M2 step 6: Tracks, recorded to GPX in the background
`r` in the GNSS App (or `gnss track start|stop`) records a Track to
/gnss/tracks/YYYYMMDD-HHMMSS.gpx: a point every 5 s once moved 5 m
(lib/gnss/track, 7 tests: haversine, the rule, GPX text, the file name).
It keeps recording with the App closed, shows REC in the Status Bar, and
announces start and stop with a Toast. It needs a card and the time;
switching GNSS off stops it. Tracks are written like Captures: past 90 %
card usage, until full. Storage Clean-up gets a GNSS tracks category.

A Track cut short by a reset or power loss has no GPX footer; the GNSS
Service closes such files at the next boot.

Verified on the device: a recorded Track and one interrupted by a reset
both parse as GPX 1.1 on the PC.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 22:46:57 +02:00
twislaandClaude Opus 5.5 463ed2dda8 M2 step 5: GNSS App, with the Position and Sky views
Position: the Fix line (or how long it has been searching), latitude and
longitude in decimal degrees or degrees-minutes-seconds (Settings ->
Coordinates), the Maidenhead locator, altitude, speed and course, HDOP
and UTC. Sky: the satellites by azimuth and elevation, coloured by
constellation, filled when used in the Fix, with used/in-view counts.
Tab switches. lib/gnss/geo_format holds the formatting, the locator and
the sky projection, host-tested (6 tests; locators checked against
FN31pr and JN58td).

Verified on the device by a window: 3D Fix from GPS, GLONASS, Galileo
and BeiDou.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 22:38:06 +02:00
twislaandClaude Opus 5.5 d408bada07 M2 step 4: GNSS mark in the Status Bar; the clock follows the Fix
Q61: a muted G while searching (or the receiver is silent), G with a 2D
Fix, G and the satellite count with a 3D Fix; nothing when GNSS is off.
Verified on the device by a window: 3D Fix, 9 of 11 satellites used
(GPS, GLONASS, BeiDou), HDOP 1.3, Status Bar "G9", and "gnss: clock set".

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 22:29:20 +02:00
twislaandClaude Opus 5.5 988253ef02 M2 step 3: GNSS Service, with standby and the clock from a Fix
The GNSS Service reads the receiver (UART 15/13, 115200, 1 KB buffer)
from its 50 ms tick and feeds the NMEA parser. With a Fix it sets the
clock (GNSS is the most trusted TimeSource) and refreshes it every 10
min. Settings gets GNSS On/Off and the coordinate format (Q64).

Off puts the receiver in standby with $PCAS12,65535, renewed hourly; On
wakes it with a hot start, $PCAS10,0. Both measured on the device: the
output stops within a second, and a command wakes it within a second.

Commands: gnss status (Fix, satellites per constellation, bytes and
sentences), gnss nmea on|off, gnss send <sentence>, gnss restart. The
probe is gone; never drive GPIO 15 (the receiver's output): the first
probe's swapped-pin attempt silenced it until a power cycle.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 22:26:53 +02:00
twislaandClaude Opus 5.5 c9b1ecb772 M2 step 2: NMEA parser (host-tested)
lib/gnss: RMC, GGA, GSA and GSV into one GnssState: Fix type, position,
altitude, speed, course, HDOP, UTC time (trusted only with a Fix) and the
satellites in view across constellations. GSV sequences are kept per
constellation and signal band and merged per satellite with the stronger
SNR; GSA's system ID marks which satellites are used. 16 tests, using
lines captured from the device.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 22:05:01 +02:00
twislaandClaude Opus 5.5 f812c62a3d M2 step 1: gnss probe finds the receiver on RX 15 / TX 13 at 115200
A temporary `gnss probe` command listens on both pin orders at 115200
and 9600. Only RX 15 / TX 13 at 115200 carries NMEA, as Meshtastic's
board file says; M5Stack's GPIO 8/9 are the keyboard's I2C bus. The
output format (NMEA 4.10, GSA system IDs, GSV per signal) is recorded in
docs/milestones/M2.md.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 22:05:01 +02:00
twislaandClaude Opus 5.5 9c30d47982 M2 design: GNSS plan, glossary (GNSS Service, Fix, Track), ADR 0001 note
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 22:00:09 +02:00
twislaandClaude Opus 5.5 634a20c339 key command: del and tab
The serial and Debug Console `key` command could type characters but not
erase them, so text typed into a field by mistake couldn't be cleared
remotely. `key del` and `key tab` inject Delete and Tab.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-04 21:27:40 +02:00
59 changed files with 4090 additions and 63 deletions
+5
View File
@@ -4,3 +4,8 @@
# Private signing keys never belong in the repository (ADR 0003)
*key.pem
# Generated by pioarduino's hybrid compile from custom_sdkconfig (platformio.ini)
.dummy/
managed_components/
sdkconfig.*
+21 -1
View File
@@ -40,6 +40,26 @@ _Avoid_: DM (in docs), private message
Rebroadcasting another Node's packet so it travels further across the mesh.
_Avoid_: forwarding, repeating
**Capsule**:
A Gemini site: everything served by one host on Geminispace.
_Avoid_: site, server (when the content is meant)
**Saved Page**:
A Gemini page kept on the SD card to read offline, with the URL it came from and when it was saved. Kept until the user deletes it; Storage Clean-up never offers it.
_Avoid_: cache, download (a download is a non-text file saved from Gemini)
**GNSS Service**:
The Service that owns the GNSS receiver on the Cap: it reads its NMEA sentences in the background and holds the current Fix, position, time and satellites.
_Avoid_: GPS (GPS is one constellation among several)
**Fix**:
What the receiver currently knows: none, 2D (position without altitude) or 3D (with altitude), from how many satellites, at what HDOP.
_Avoid_: lock, signal
**Track**:
A route recorded from GNSS positions to a GPX file on the SD card, started and stopped by the user.
_Avoid_: trace, log (a Log is recorded on its own)
**Wi-Fi Service**:
The Service that owns the Wi-Fi radio. It's always in exactly one mode: *Off*, *Connected* (joined to a Saved Network) or *Monitoring* (passively observing). When Wi-Fi is enabled in Settings, it stays Connected whenever a Saved Network is in range. It goes Monitoring only while Wi-Fi Tools needs it, then reconnects.
_Avoid_: network manager
@@ -49,7 +69,7 @@ A Wi-Fi network the device may join on its own (name, password). When several ar
_Avoid_: profile, known network
**IRC Service**:
The Service that keeps the IRC connection alive in the background once the IRC App has started it, until the user disconnects. It reconnects after drops, and pauses while the Wi-Fi Service is Monitoring. It does not start by itself after a reboot.
The Service that keeps the IRC connection alive in the background once the IRC App has started it, until the user stops it (`/quit`, or `irc stop` on the console). Once stopped by hand, opening the App again doesn't reconnect; typing a line does. It reconnects after drops, and pauses while the Wi-Fi Service is Monitoring. It does not start by itself after a reboot.
_Avoid_: IRC client (that's the App)
**Buffer**:
+11
View File
@@ -18,6 +18,8 @@ scripts/ci.sh
This runs the host-side unit tests (`test/`, `native` environment), then builds the firmware. The output is `.pio/build/cardputer-adv/firmware.factory.bin`.
The framework is rebuilt with the TLS settings in `platformio.ini` (`custom_sdkconfig`, ADR 0006), so the first build after a fresh checkout takes about 4 minutes; later builds take under a minute.
## Flash
1. Connect the Cardputer by USB-C.
@@ -52,6 +54,12 @@ To install from the SD card instead, copy the `.ota` file from `.pio/build/cardp
**The private key** lives in `~/.config/roro9stack/ota-key.pem` and must never be committed. If it's lost, generate a new pair and flash once over USB.
## Gemini
The Gemini App browses Geminispace (docs/milestones/G1.md): Tab and Shift+Tab pick a link, Enter follows it, Back returns (to where the page was scrolled), Space pages down, `g` types an address. Certificates are trusted on first use; a changed one stops the page and asks.
On a page, `b` bookmarks it, `s` saves it to the SD card to read offline (a non-text file goes to `/gemini/downloads/`), `S` saves it with the pages it links to on the same capsule (up to 30). The start page lists bookmarks and Saved Pages; inside a Saved Page, `r` refreshes it and `d` deletes it. With a card, every page streams through `/gemini/cache/` so a large one arrives whole even with IRC connected; what doesn't fit in memory stays on the card.
## Development aids
`scripts/serial_log.sh [seconds] [command…]` records the serial output, and can send commands to the firmware first. For example, `scripts/serial_log.sh 30 short sleep:12 burst` sets short screen timeouts, waits 12 s, then sends a burst of Toasts.
@@ -67,6 +75,9 @@ To install from the SD card instead, copy the `.ota` file from `.pio/build/cardp
| `sd list` | Lists the files of each Storage Clean-up category |
| `cat <path>` | Prints the first ~1.2 KB of a file on the SD card |
| `irc start` | Starts the IRC Service (normally done by opening the IRC App) |
| `irc stop` | Stops it, as `/quit` does: QUIT if connected, no more retries, and the App stays disconnected until you type |
| `gemini get <url>` | Fetches a Gemini page and prints its header, size, certificate fingerprint and heap use |
| `gemini trust <host> <port> <sha256>` | Pins a certificate by hand (the Gemini App asks when one changes) |
| `irc say <buffer> <text>` | Types into a Buffer, commands included (`irc say 0 /join #test`) |
| `irc dump` | Prints IRC status, memory, and the last lines of each Buffer |
| `wifi status` | Prints Wi-Fi state, network, signal, clock and free heap |
+7
View File
@@ -0,0 +1,7 @@
# Name, Type, SubType, Offset, Size, Flags
nvs, data, nvs, 0x9000, 0x5000,
otadata, data, ota, 0xe000, 0x2000,
app0, app, ota_0, 0x10000, 0x330000,
app1, app, ota_1, 0x340000,0x330000,
spiffs, data, spiffs, 0x670000,0x180000,
coredump, data, coredump,0x7F0000,0x10000,
1 # Name Type SubType Offset Size Flags
2 nvs data nvs 0x9000 0x5000
3 otadata data ota 0xe000 0x2000
4 app0 app ota_0 0x10000 0x330000
5 app1 app ota_1 0x340000 0x330000
6 spiffs data spiffs 0x670000 0x180000
7 coredump data coredump 0x7F0000 0x10000
@@ -9,3 +9,7 @@ A fork would give full compatibility on day one, but its architecture is built a
- We accept partial Meshtastic compatibility at first: text on channels, Direct Messages, node list, position and relaying.
- The phone-app (BLE) API and PKI-encrypted Direct Messages are deferred, and we must re-implement protocol details ourselves.
- Multi-boot with stock Meshtastic via a launcher was rejected: it gives none of our own UX.
## Note (2026-10-04, M2)
NMEA is parsed by our own small, host-tested parser instead of TinyGPSPlus: the GNSS App's Sky view needs the satellite list (GSV) across several constellations, which TinyGPSPlus doesn't track. See docs/milestones/M2.md, Q66.
@@ -1,6 +1,6 @@
# A Debug Console over Wi-Fi, in Debug Builds only
The goal of Firmware Updates is to manage the device without a cable, and that includes finding out what went wrong. So a **Debug Build** (`cardputer-adv-debug`, `-DRORO_DEBUG`, version suffix `+debug`) adds a **Debug Console** on TCP 2323: the serial console, over Wi-Fi. A client sends a token as its first line, then gets the last 6 KB of console output (boot messages included), every new line live, and runs the same commands as the serial port, plus a few that only make sense remotely. ESP-IDF's own log lines are teed into it.
The goal of Firmware Updates is to manage the device without a cable, and that includes finding out what went wrong. So a **Debug Build** (`cardputer-adv-debug`, `-DRORO_DEBUG`, version suffix `+debug`) adds a **Debug Console** on TCP 2323: the serial console, over Wi-Fi. A client sends a token as its first line, then gets the last 4 KB of console output (boot messages included), every new line live, and runs the same commands as the serial port, plus a few that only make sense remotely. ESP-IDF's own log lines are teed into it.
It's compiled out of release builds entirely, rather than switched off by a setting. A console that runs commands is a remote control: in a release build, nothing listens.
@@ -9,7 +9,7 @@ It's compiled out of release builds entirely, rather than switched off by a sett
- **Console, not Serial.** All human-readable output goes through `console`, which writes to the USB port and, in a Debug Build, to a ring buffer the Debug Console drains. Writes never wait for USB: a host that's attached but not reading used to stall the main loop for up to 2 s per line.
- **Commands run on the main loop.** The socket lives on the Debug Console's own task, which only queues command lines. The main loop runs them, as it does serial commands, so they touch Apps and Services from the one task allowed to.
- **The token** is 128 random bits in `~/.config/roro9stack/debug-token`, made by the first build and passed into the container. It's never committed; a Debug Build refuses to compile without one. Like the OTA key, it guards against the network, not against someone holding the device.
- **One client at a time**, to keep memory flat (about 6 KB for the ring, 6 KB of task stack).
- **One client at a time**, to keep memory flat (4 KB for the ring since M2, 6 KB of task stack).
- **Binary commands are answered on the console's own task**, not queued: `get`/`put` (SD card files, run as one Storage Service job each so card access stays on the storage task, with TCP doing the flow control), `screenshot` (the 32 KB RGB332 frame the UI composes into, read as it stands, so it may tear), `coredump get` and `reset`. These keep working when the main loop is stuck. A failed `put` closes the connection, so the rest of the file is never read as commands.
## Keep a Debug Build in the fallback slot
@@ -0,0 +1,19 @@
# The framework is rebuilt with our own SDK settings, for smaller TLS buffers
Arduino-ESP32 ships its ESP-IDF libraries prebuilt, with one `sdkconfig` for every ESP32-S3 board. Its TLS settings give every connection a 16 KB receive buffer and a 16 KB send buffer for its whole life. On a device with no PSRAM and about 340 KB of RAM, an IRC connection over TLS left a 12.6 KB low in M2, against a 40 KB floor.
Those settings are compiled into the libraries, so changing them means rebuilding them. pioarduino supports this as a "hybrid compile": `custom_sdkconfig` in `platformio.ini` lists the settings, and the build regenerates the framework's libraries from ESP-IDF (the same 5.5.5 the prebuilt ones come from) before building the app. We set:
- `MBEDTLS_ASYMMETRIC_CONTENT_LEN`, with 16 KB to receive (servers send full TLS records) and **4 KB to send** (IRC lines are short): 12 KB less per connection.
- `MBEDTLS_DYNAMIC_BUFFER`, `DYNAMIC_FREE_CONFIG_DATA`, `DYNAMIC_FREE_CA_CERT`: buffers allocated when needed, and handshake-only data (the CA chain) freed once connected.
The rebuild also follows the board definition instead of the generic one: PSRAM support is off (the Cardputer ADV has none) and the flash size is 8 MB.
## Consequences
- With IRC connected over TLS, a Debug Build has 78 KB free and a 59 KB low (it was 31 KB and 12.6 KB), and 46 KB at the lowest under the heaviest combined load measured (IRC, two refused installs, a 1.6 MB put and get).
- The first build after a fresh checkout, or after changing `custom_sdkconfig`, takes about 4 minutes instead of 45 s: it downloads ESP-IDF into the PlatformIO volume and compiles it. Later builds reuse it.
- Everything the firmware depends on was checked in the regenerated `sdkconfig`: app rollback, core dumps to flash (ELF), the 5 s task watchdog, FreeRTOS run-time stats, the certificate bundle.
- The project now owns its partition table (`default_8MB.csv`, identical to the framework's), which the hybrid build requires. Changing it would break updates over the air: the app slots must stay where they are.
- Generated files (`sdkconfig.*`, `managed_components/`, `.dummy/`) are ignored by git.
- A TLS server that sends records over 16 KB would still fail, as before; one that needs us to send records over 4 KB would now fail. Neither happens with IRC.
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# G1 — Gemini client
**Status:** done, tagged v0.5.0. Every step was checked on the device; reading Saved Pages with Wi-Fi off was checked by hand (2026-10-05).
**Goal:** browse Geminispace from the Cardputer: fetch and read gemtext over TLS, follow links, answer input prompts, keep bookmarks, and save pages to the SD card to read later, offline. A side milestone between M2 and M3, tagged v0.5.0 when done.
Gemini (geminiprotocol.net): one request per TLS connection on port 1965, the request is the URL and CRLF, the response a `<status> <meta>` header line, then the body. Most capsules use self-signed certificates: trust on first use is the norm.
## Decisions (design round 2026-10-05)
| # | Decision |
|---|---|
| Q70 | A milestone of its own, **G1**, before M3: plan, tests first, measured on the device, tagged v0.5.0. |
| Q71 | **TOFU:** the first certificate seen for a host is pinned (SHA-256, in NVS). If it changes, the page isn't shown; a dialog shows both fingerprints and asks whether to trust the new one. Self-signed or expired certificates are fine; only a change counts. |
| Q72 | Responses: 1x input (11 hidden, for passwords), 2x content, up to 5 redirects (3x), 4x/5x errors with the server's message. 6x (client certificates): "not supported". |
| Q73 | `text/gemini` is rendered, other `text/*` shown as plain text. Anything else can be saved to `/gemini/downloads/`, not shown. |
| Q74 | Up to **64 KB on screen**, larger pages truncated with a notice. Saving streams to the card, so a larger page is saved whole. |
| Q75 | Gemtext rendering: text wrapped to the 40-column screen; `#`/`##`/`###` headings in bold and accent; `*` lists with bullets; `>` quotes indented and muted; preformatted blocks unwrapped, Left/Right to scroll; `=>` links with their label, numbered. |
| Q76 | Up/Down scroll; Tab and Shift+Tab move between links; Enter follows; Backspace goes back; `g` opens the address line. Links to other protocols show their URL and aren't followed. |
| Q77 | Back history of 20 URLs in RAM, with scroll positions; going back refetches (or reopens a Saved Page). **Bookmarks** in `/gemini/bookmarks.gmi` (a gemtext page, shown on the start page); `b` adds the current page. Without a card, a built-in start page. |
| Q78 | Start page: bookmarks, then Saved Pages, then defaults: geminiprotocol.net, a search engine (kennedy.gemi.dev), an aggregator (Cosmos; Antenna was down when measured). |
| Q79 | UTF-8 decoded; characters outside the Latin-1 fonts shown as `?`. |
| Q80 | IRC and Gemini can run together: each fetch opens one connection, reads and closes it. If there isn't memory for a second TLS connection, the fetch fails with a clear message and IRC is untouched. Measured in step 1. |
| Q81 | Debug aid: `gemini get <url>` prints the status, MIME type, size, certificate fingerprint and the first lines. URL resolution (RFC 3986), the response header and gemtext parsing are host-tested. |
| Q82 | `s` saves the page on screen as a **Saved Page**: `/gemini/saved/<host>/<path>.gmi`, the gemtext as received plus a first line with its URL and save date. Saving again replaces it, and says so. |
| Q83 | `S` saves the page and the pages it links to, one level deep: gemtext only, same host only, at most 30 pages, in the background with a progress Toast. |
| Q84 | The start page lists Saved Pages, newest first, grouped by capsule; they open with no network. In a Saved Page, a link to another Saved Page opens the saved copy; other links fetch online if Wi-Fi is up, or say "not saved, offline". A Saved Page shows when it was saved; `r` refreshes it. |
| Q86 | *Decided after step 1, revised after Q88.* **Two floors:** free heap stays above 40 KB in steady state; a fetch refuses to start below **55 KB** free ("not enough memory: stop IRC or retry"). The firmware's own allocations during a fetch (a page in RAM, a window) keep 20 KB free. With IRC connected, the TLS connection itself can briefly take the heap lower, depending on the server's record sizes: measured 24, 19.5, 15.5 and **13 KB**. *Accepted:* about 12 KB for a moment during a fetch with IRC up, rather than refusing most fetches (a 70 KB start floor) or dropping IRC's connection for each page. |
| Q87 | *Decided in step 3.* **With a card, every page streams to `/gemini/cache/page.gmi`** in 1 KB pieces while its TLS connection is open; once the connection closes and its ~45 KB is back, the page is loaded into RAM as far as the 40 KB floor allows. The whole page stays on the card (Saved Pages copy it). Without a card, the page goes straight to RAM under the same two floors. Pages are held as lines in 4 KB chunks, never one large block (the largest free block with IRC connected is about 31 KB). |
| Q88 | *Added after step 6.* **A page bigger than memory allows is read from the card as you scroll.** Opening it, one pass over its file counts the lines, records where every 64th starts (and whether it's inside a preformatted block), and loads the first window. Scrolling near either end of the window reads the next or previous one in the background, keeping the line on top of the screen where it is; the scrollbar follows the whole page. Display pages alternate between two cache files, so the one on screen is never overwritten by the next fetch; background jobs use a third. |
| Q85 | Saved Pages are deleted from the App only (`d`, with confirmation), never by Storage Clean-up's age rules, like Notes. |
## Measured (step 1)
- `gemini://geminiprotocol.net/`: `20 text/gemini`, 1,184 bytes, TLS handshake 0.7–1.1 s, whole fetch 0.7–1.1 s; kennedy.gemi.dev 1.9 s. The fetch task's stack peaks at about 3.6 KB of 6.
- **Heap, Debug Build, IRC connected over TLS:** about 68 KB free before a fetch. After the handshake the fetch holds about 32 KB (36–40 KB left); the handshake itself (certificate chain parsed with the 16 KB receive buffer allocated) dips to about **24 KB** for a second or two. Nothing leaks: the heap after matches the heap before.
- **Step 3, Cosmos (31.6 KB) with IRC connected:** first stopped at 4.6 KB (RAM only, the transfer's 20 KB floor). Streamed to the card: the whole page on the card, 20 KB of it loaded, lowest free heap 19.5 KB during the transfer and 43 KB once loaded. Without IRC: the whole page in RAM. Redirects (Cosmos `31`), input (`10`), not found (`51`) and a changed certificate (refused, both fingerprints shown) all checked on the device.
- **Steps 4–6 on the device:** Project Gemini and its relative links, Back with the scroll restored, a refused YouTube link; `b` bookmarks, `s` saves (and says when it replaced an older copy), `S` saved 6 of 6 pages, the start page lists both; a Saved Page opens from the card with its origin, its saved links open saved copies, `r` refreshes, `d` asks first; Kennedy's input prompt sent "cardputer" and got 87 results; emoji drawn as `?`.
- **A bug found there:** refreshing first loaded the whole Saved Page into RAM just to read its origin, next to the App's copy and a TLS connection: the heap fell to 436 bytes. Now only the first line is read, and every fetch (pages, saves, refreshes) checks the 55 KB start floor. Lowest since boot afterwards: 53.8 KB.
- **Windowed pages (Q88), Cosmos with IRC connected:** 226 of 419 lines in memory at first; paging down loaded lines 192–419 in one window, scrolling back up loaded 64 onwards, then 0 onwards. Window budgets count the memory the old window gives back.
- **Heap during a fetch with IRC connected:** lowest 13–15.5 KB in later runs (24 and 19.5 KB earlier), the TLS receive buffers varying with the server's records. Accepted (Q86, revised).
- Antenna (`warmedal.se`) doesn't answer, from the PC either; the default aggregator becomes Cosmos (`gemini://skyjake.fi/~Cosmos/`, which redirects to `cosmos.skyjake.fi`).
## Done when
- `gemini get gemini://geminiprotocol.net/` prints the header, size and fingerprint on the console.
- The Gemini App opens the start page, follows links (relative ones included), goes back, and follows redirects.
- An input prompt (e.g. a search) takes a query and shows the results.
- A changed certificate stops the page and asks.
- `s` saves a page, `S` a page and its links; with Wi-Fi off, Saved Pages open and their saved links work.
- Bookmarks are added with `b` and listed on the start page.
- With IRC connected over TLS, a fetch still works, and the free heap stays above 40 KB.
## Work breakdown
1. **Two TLS connections:** measure the heap with IRC connected while a Gemini fetch runs.
2. **Parsers** (host-tested): URL parsing and relative resolution, the response header, gemtext lines.
3. **Fetch** on its own task, with TOFU and `gemini get`.
4. **Gemini App:** rendering, scrolling, links, history, the address line.
5. **Input prompts, redirects, bookmarks, downloads.**
6. **Saved Pages,** then saving with linked pages.
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# M2 — GNSS
**Status:** done on the device (branch `m2`): every "Done when" item below is met.
## Measured
- **Cold start** (`$PCAS10,2`) to a 3D Fix, by a window: **73 s**, 5 satellites used of 8 in view. A restart of the ESP32 alone keeps the receiver's Fix (the Cap stays powered).
- By a window: 3D Fix from GPS, GLONASS, Galileo and BeiDou, up to 14 of 17 satellites used, HDOP 1.0–1.3.
- **Heap, Debug Build, GNSS on, IRC on TLS** (floor 40 KB; v0.2.1 had a 79 KB low):
| | Free | Lowest |
|---|---|---|
| Start of M2 | 31 KB | 12.6 KB |
| Stacks and buffers trimmed by measurement | 46 KB | 18 KB |
| mDNS removed | 54 KB | 34 KB |
| Framework rebuilt with smaller TLS buffers (ADR 0006) | **78 KB** | **59 KB** |
Under the heaviest combined load measured (IRC, two refused installs, a 1.6 MB put and get), the low is 46 KB. The cost had come mostly from the OTA and Debug Build work, not GNSS. Stacks were set to measured peak plus about 2 KB (loop 6 KB, update 5, storage 6, irc 6); after a TLS handshake the irc task has 1.7 KB left. IRC can now be stopped by hand (`/quit` in any state, `irc stop`), which frees its TLS memory.
**Goal:** the device knows where it is and what time it is without a network: a GNSS Service in the background, a GNSS App with the position and a sky view of the satellites, the clock set from satellites when there's no NTP, and Tracks recorded to the SD card.
**Hardware:** the Cap LoRa-1262 carries an ATGM336H-6N (AT6668), multi-constellation (GPS, BeiDou, Galileo, GLONASS, QZSS), with a ceramic antenna. NMEA over UART, 115200 8N1. **Measured (step 1, `gnss probe`): RX GPIO 15, TX GPIO 13, 115200 8N1**, as in Meshtastic's board file; M5Stack's page names GPIO 8 and 9, which are the internal I2C bus the keyboard controller sits on. Output is NMEA 4.10 style: `GN` RMC, VTG and GGA, one GSA per constellation with the system ID (1 GPS, 2 GLONASS, 3 Galileo, 4 BeiDou, 5 QZSS) in its last field, and a GSV sequence per constellation and signal (`GP`, `GL`, `GA`, …) with the signal ID last. RMC carries a time even without a Fix (status `V`), so only a Fix makes it trustworthy.
## Decisions (design round 2026-10-04)
| # | Decision |
|---|---|
| Q58 | Settings has a GNSS On/Off switch, **On by default**. Off puts the receiver in standby. *Measured:* `$PCAS12,<seconds>` (CASIC) stops its output within a second, for up to at least 65535 s, and any command wakes it within a second; Off sends `PCAS12,65535` (renewed hourly), On sends a hot start, `PCAS10,0`. |
| Q59 | The **GNSS App** has two views, switched with Tab. *Position*: latitude, longitude, altitude, speed, course, Fix (none / 2D / 3D), satellites used and in view, HDOP, UTC time. *Sky*: the satellites placed by azimuth and elevation, coloured by constellation, filled when used in the Fix. |
| Q60 | "Radar" in M2 means the Sky view. A radar of other Nodes by distance and bearing needs the mesh: M4. |
| Q61 | The **Status Bar** shows a GNSS mark: absent when off, muted while searching, normal with a 2D Fix, with the satellite count with a 3D Fix. |
| Q62 | GNSS time **sets the clock once there's a Fix**, and refreshes it every 10 minutes. *Revised in step 3:* the clock's trust order from M0 (Mesh < NTP < GNSS) already ranks GNSS above NTP, which is right: GNSS time is at least as accurate. So GNSS also corrects a clock NTP set, not only an unset one. |
| Q63 | A **Track** is started and stopped in the GNSS App. It's written as GPX to `/gnss/tracks/<YYYYMMDD-HHMMSS>.gpx`, a point every 5 s when the position moved more than 5 m. It keeps recording with the App closed, with a Toast on start and stop and a Status Bar mark, and gets its own Storage Clean-up category. |
| Q64 | Coordinates in **decimal degrees plus the Maidenhead locator**; a Settings switch for degrees, minutes and seconds. Metric units only. |
| Q65 | **The position never leaves the device in M2.** Sharing it over the mesh, and at what precision, is decided in M4. |
| Q66 | **Our own NMEA parser**, host-tested: RMC, GGA, GSA and GSV, with each talker ID mapped to its constellation. TinyGPSPlus (named in ADR 0001) doesn't track the satellite list across constellations, which the Sky view needs. |
| Q67 | The receiver keeps its **defaults** (all constellations, 1 Hz). No receiver settings. Time to first fix is measured and recorded here. |
| Q68 | Debug aids: `gnss status`, and `gnss nmea on/off` to stream the raw sentences to the console (USB serial and Debug Console). Raw NMEA is never written to the card. |
**Lesson (step 3):** the first probe also tried the pins swapped, driving the receiver's output line from the ESP32 for about a second. The receiver then went silent until a full power cycle (an ESP32 restart doesn't cut the Cap's power). Never drive GPIO 15.
## Done when
- The GNSS Service reads NMEA in the background whatever App is on screen, and a 3D Fix appears outdoors.
- The GNSS App shows the Position and Sky views, both live.
- The Status Bar shows the GNSS mark per Q61.
- With no Wi-Fi, the clock is set from GNSS after the first Fix.
- A Track records while the App is closed, survives the screen turning off, and opens as valid GPX on the PC.
- Settings → GNSS Off stops it (and the Status Bar mark goes away); On brings it back.
- Free heap stays above about 40 KB with GNSS, Wi-Fi, IRC on TLS and the UI running.
## Work breakdown
1. **Hardware check:** a `gnss probe` command reads the candidate UART pins and reports which carries NMEA, at what baud rate, and which talker IDs. Then the standby command (Q58) and a first time to first fix.
2. **NMEA parser** (host-tested): checksum, RMC, GGA, GSA, GSV across constellations, merged into one GNSS state (Fix, position, time, satellites).
3. **GNSS Service:** UART on its own task, the parser, `gnss status` and `gnss nmea`, Settings On/Off.
4. **Clock from GNSS** (Q62), and the Status Bar mark (Q61).
5. **GNSS App:** Position view, Maidenhead and coordinate formats (host-tested), then the Sky view.
6. **Tracks:** the 5 s / 5 m rule and GPX writing (host-tested), background recording, Clean-up category.
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|---|---|
| Q52 | Two sources: **push over Wi-Fi** from the PC, and **from the SD card**. Pulling from Gitea releases is deferred. |
| Q53 | **Signed Update Files** (ECDSA P-256 over SHA-256). The private key stays in `~/.config/roro9stack/`, and the firmware embeds the public key (ADR 0003). |
| Q54 | The device **always listens** for pushes on the LAN while Wi-Fi is Connected, announced as `roro9stack-<id>.local`. |
| Q54 | The device **always listens** for pushes on the LAN while Wi-Fi is Connected. *Revised in M2:* it was announced over mDNS as `roro9stack-<id>.local`; mDNS was removed to save RAM (it never crossed the dev box's routed network anyway). Pushes go to the IP shown in Settings → Firmware. |
| Q55 | New firmware runs on **Probation**. It's confirmed once booted, UI drawn, Services started, 30 s without a crash, and Wi-Fi connected (if configured). Otherwise **Rollback**. A Toast reports either outcome. |
| Q56 | **Downgrades are allowed**, with "older than the installed version" shown. |
| Q57 | A valid push **installs right away**: progress screen, then reboot. The reboot waits for Text Entry to end, 60 s at most. |
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@@ -20,6 +20,7 @@ const RowDef kRows[] = {
{Row::Region, Kind::Choice, "Region"}, {Row::Timezone, Kind::Choice, "Timezone"},
{Row::Brightness, Kind::Slider, "Brightness"}, {Row::DimTimeout, Kind::Choice, "Dim after"},
{Row::OffTimeout, Kind::Choice, "Screen off after"}, {Row::Sound, Kind::Toggle, "Sound & LED"},
{Row::Gnss, Kind::Toggle, "GNSS"}, {Row::Coordinates, Kind::Toggle, "Coordinates"},
{Row::ProbeMacs, Kind::Toggle, "Probe MACs"}, {Row::Wifi, Kind::Page, "Wi-Fi"},
{Row::Storage, Kind::Page, "Storage"},
{Row::Firmware, Kind::Page, "Firmware"},
@@ -79,6 +80,8 @@ std::string SettingsMenu::value(int i) const {
case Row::DimTimeout: return formatSeconds(settings_.getInt(Setting::DimTimeoutS));
case Row::OffTimeout: return formatSeconds(settings_.getInt(Setting::OffTimeoutS));
case Row::Sound: return settings_.getBool(Setting::Sound) ? "On" : "Off";
case Row::Gnss: return settings_.getBool(Setting::GnssEnabled) ? "On" : "Off";
case Row::Coordinates: return settings_.getBool(Setting::CoordinatesDms) ? "Deg min sec" : "Decimal";
case Row::ProbeMacs: return settings_.getBool(Setting::ProbeMacRaw) ? "Raw" : "Pseudonymised";
case Row::Wifi: return settings_.getBool(Setting::WifiEnabled) ? "On" : "Off";
default: return "";
@@ -122,6 +125,8 @@ std::string SettingsMenu::choose(int i, int c) {
void SettingsMenu::toggle(int i) {
if (row(i) == Row::Sound) settings_.setBool(Setting::Sound, !settings_.getBool(Setting::Sound));
if (row(i) == Row::Gnss) settings_.setBool(Setting::GnssEnabled, !settings_.getBool(Setting::GnssEnabled));
if (row(i) == Row::Coordinates) settings_.setBool(Setting::CoordinatesDms, !settings_.getBool(Setting::CoordinatesDms));
if (row(i) == Row::ProbeMacs) settings_.setBool(Setting::ProbeMacRaw, !settings_.getBool(Setting::ProbeMacRaw));
}
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@@ -11,7 +11,7 @@ namespace roro {
// values, choice lists and validation messages. Rendering and navigation live in the App.
class SettingsMenu {
public:
enum class Row { LongName, ShortName, Region, Timezone, Brightness, DimTimeout, OffTimeout, Sound, ProbeMacs, Wifi, Storage, Firmware, About };
enum class Row { LongName, ShortName, Region, Timezone, Brightness, DimTimeout, OffTimeout, Sound, Gnss, Coordinates, ProbeMacs, Wifi, Storage, Firmware, About };
enum class Kind { Text, Choice, Toggle, Slider, Page };
explicit SettingsMenu(Settings& settings) : settings_(settings) {}
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@@ -0,0 +1,59 @@
#include "gemini_response.h"
#include <cctype>
namespace roro::gemini {
namespace {
std::string trim(const std::string& s) {
size_t a = s.find_first_not_of(" \t"), b = s.find_last_not_of(" \t");
return a == std::string::npos ? "" : s.substr(a, b - a + 1);
}
std::string lower(std::string s) {
for (auto& c : s) c = static_cast<char>(std::tolower(static_cast<unsigned char>(c)));
return s;
}
} // namespace
bool parseHeader(const std::string& line, Header& out) {
if (line.size() < 2 || !std::isdigit(static_cast<unsigned char>(line[0])) ||
!std::isdigit(static_cast<unsigned char>(line[1])))
return false;
if (line.size() > 2 && line[2] != ' ') return false;
std::string meta = line.size() > 3 ? line.substr(3) : "";
if (meta.size() > 1024) return false;
out.status = (line[0] - '0') * 10 + (line[1] - '0');
out.meta = meta;
return true;
}
Category Header::category() const {
switch (status / 10) {
case 1: return Category::Input;
case 2: return Category::Success;
case 3: return Category::Redirect;
case 4: return Category::TemporaryFailure;
case 5: return Category::PermanentFailure;
case 6: return Category::ClientCertificate;
default: return Category::Unknown;
}
}
std::string Header::mimeType() const {
std::string type = lower(trim(meta.substr(0, meta.find(';'))));
return type.empty() ? "text/gemini" : type;
}
std::string Header::parameter(const std::string& name) const {
size_t pos = meta.find(';');
while (pos != std::string::npos) {
size_t next = meta.find(';', pos + 1);
std::string item = trim(meta.substr(pos + 1, next == std::string::npos ? std::string::npos : next - pos - 1));
size_t eq = item.find('=');
if (eq != std::string::npos && lower(trim(item.substr(0, eq))) == lower(name)) return trim(item.substr(eq + 1));
pos = next;
}
return "";
}
} // namespace roro::gemini
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@@ -0,0 +1,23 @@
#pragma once
#include <string>
namespace roro::gemini {
enum class Category { Input, Success, Redirect, TemporaryFailure, PermanentFailure, ClientCertificate, Unknown };
// The response header: "<two digits> <meta>", at most 1024 bytes of meta.
struct Header {
int status = 0;
std::string meta;
Category category() const;
bool sensitiveInput() const { return status == 11; }
// 2x: the MIME type, lower-cased, without parameters ("text/gemini" when meta is empty).
std::string mimeType() const;
std::string parameter(const std::string& name) const; // e.g. "charset"
};
bool parseHeader(const std::string& line, Header& out);
} // namespace roro::gemini
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@@ -0,0 +1,215 @@
#include "gemini_url.h"
#include <cctype>
#include <cstdio>
#include <cstdlib>
#include <vector>
#include "storage_paths.h"
namespace roro::gemini {
namespace {
// RFC 3986, appendix B: ^(([^:/?#]+):)?(//([^/?#]*))?([^?#]*)(\?([^#]*))?(#(.*))?
struct Parts {
std::string scheme, authority, path, query, fragment;
bool hasScheme = false, hasAuthority = false, hasQuery = false, hasFragment = false;
};
Parts split(const std::string& s) {
Parts p;
size_t i = 0;
size_t colon = s.find(':');
size_t stop = s.find_first_of("/?#");
if (colon != std::string::npos && colon > 0 && (stop == std::string::npos || colon < stop)) {
p.scheme = s.substr(0, colon);
p.hasScheme = true;
i = colon + 1;
}
if (s.compare(i, 2, "//") == 0) {
size_t end = s.find_first_of("/?#", i + 2);
if (end == std::string::npos) end = s.size();
p.authority = s.substr(i + 2, end - i - 2);
p.hasAuthority = true;
i = end;
}
size_t end = s.find_first_of("?#", i);
if (end == std::string::npos) end = s.size();
p.path = s.substr(i, end - i);
i = end;
if (i < s.size() && s[i] == '?') {
end = s.find('#', i);
if (end == std::string::npos) end = s.size();
p.query = s.substr(i + 1, end - i - 1);
p.hasQuery = true;
i = end;
}
if (i < s.size() && s[i] == '#') {
p.fragment = s.substr(i + 1);
p.hasFragment = true;
}
return p;
}
std::string lower(std::string s) {
for (auto& c : s) c = static_cast<char>(std::tolower(static_cast<unsigned char>(c)));
return s;
}
// RFC 3986, section 5.2.4.
std::string removeDotSegments(std::string in) {
std::string out;
while (!in.empty()) {
if (in.compare(0, 3, "../") == 0) in.erase(0, 3);
else if (in.compare(0, 2, "./") == 0) in.erase(0, 2);
else if (in.compare(0, 3, "/./") == 0) in.replace(0, 3, "/");
else if (in == "/.") in = "/";
else if (in.compare(0, 4, "/../") == 0 || in == "/..") {
in = in == "/.." ? "/" : in.substr(3);
size_t slash = out.rfind('/');
out.erase(slash == std::string::npos ? 0 : slash);
} else if (in == "." || in == "..") in.clear();
else {
size_t next = in.find('/', in[0] == '/' ? 1 : 0);
if (next == std::string::npos) next = in.size();
out += in.substr(0, next);
in.erase(0, next);
}
}
return out;
}
// RFC 3986, section 5.2.3.
std::string merge(const Parts& base, const std::string& refPath) {
if (base.hasAuthority && base.path.empty()) return "/" + refPath;
size_t slash = base.path.rfind('/');
return slash == std::string::npos ? refPath : base.path.substr(0, slash + 1) + refPath;
}
// RFC 3986, section 5.3.
std::string recompose(const Parts& p) {
std::string out;
if (p.hasScheme) out += p.scheme + ":";
if (p.hasAuthority) out += "//" + p.authority;
out += p.path;
if (p.hasQuery) out += "?" + p.query;
if (p.hasFragment) out += "#" + p.fragment;
return out;
}
} // namespace
bool parseUrl(const std::string& text, Url& out) {
Parts p = split(text);
if (!p.hasScheme || !p.hasAuthority) return false;
out = Url();
out.scheme = lower(p.scheme);
out.authority = p.authority;
std::string hostPort = p.authority.substr(p.authority.find('@') == std::string::npos ? 0 : p.authority.find('@') + 1);
size_t colon = hostPort.rfind(':');
if (colon != std::string::npos && hostPort.find(']', colon) == std::string::npos) {
out.port = std::atoi(hostPort.c_str() + colon + 1);
hostPort = hostPort.substr(0, colon);
}
out.host = lower(hostPort);
if (out.host.empty()) return false;
out.path = p.path;
out.query = p.query;
out.fragment = p.fragment;
out.hasAuthority = true;
out.hasQuery = p.hasQuery;
out.hasFragment = p.hasFragment;
return true;
}
bool isGemini(const std::string& url) {
Parts p = split(url);
return p.hasScheme && lower(p.scheme) == "gemini";
}
std::string resolve(const std::string& baseText, const std::string& refText) {
Parts base = split(baseText), r = split(refText), t;
if (r.hasScheme) {
t = r;
t.path = removeDotSegments(r.path);
} else {
if (r.hasAuthority) {
t.authority = r.authority;
t.hasAuthority = true;
t.path = removeDotSegments(r.path);
t.query = r.query;
t.hasQuery = r.hasQuery;
} else {
if (r.path.empty()) {
t.path = base.path;
t.query = r.hasQuery ? r.query : base.query;
t.hasQuery = r.hasQuery || base.hasQuery;
} else {
t.path = removeDotSegments(r.path[0] == '/' ? r.path : merge(base, r.path));
t.query = r.query;
t.hasQuery = r.hasQuery;
}
t.authority = base.authority;
t.hasAuthority = base.hasAuthority;
}
t.scheme = base.scheme;
t.hasScheme = base.hasScheme;
}
t.fragment = r.fragment;
t.hasFragment = r.hasFragment;
return recompose(t);
}
std::string requestUrl(const std::string& url) {
Url u;
if (!parseUrl(url, u)) return url;
std::string out = u.scheme + "://" + u.host;
if (u.port > 0 && u.port != 1965) out += ":" + std::to_string(u.port);
out += u.path.empty() ? "/" : u.path;
if (u.hasQuery) out += "?" + u.query;
return out;
}
std::string encodeQuery(const std::string& text) {
std::string out;
for (unsigned char c : text) {
if (std::isalnum(c) || c == '-' || c == '_' || c == '.' || c == '~') out += static_cast<char>(c);
else {
char buf[4];
std::snprintf(buf, sizeof buf, "%%%02X", c);
out += buf;
}
}
return out;
}
std::string savedPath(const std::string& url) {
Url u;
if (!parseUrl(url, u)) return "/gemini/saved/unknown.gmi";
std::string out = "/gemini/saved/" + storage::sanitize(u.host + (u.port > 0 && u.port != 1965 ? "_" + std::to_string(u.port) : ""));
std::string path = u.path.empty() ? "/" : u.path;
std::vector<std::string> parts;
size_t start = 1;
while (start <= path.size()) {
size_t slash = path.find('/', start);
if (slash == std::string::npos) slash = path.size();
parts.push_back(path.substr(start, slash - start));
start = slash + 1;
}
if (parts.empty() || parts.back().empty()) {
if (!parts.empty()) parts.pop_back();
parts.push_back("index");
}
for (size_t i = 0; i < parts.size(); i++) {
std::string name = parts[i];
if (i + 1 == parts.size()) {
if (u.hasQuery) name += "~" + u.query;
if (name.size() < 4 || name.compare(name.size() - 4, 4, ".gmi") != 0) name += ".gmi";
}
out += "/" + storage::sanitize(name);
}
return out;
}
} // namespace roro::gemini
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#pragma once
#include <string>
namespace roro::gemini {
// A URL split per RFC 3986 (appendix B). For Gemini, the host is lower-cased and the port
// defaults to 1965.
struct Url {
std::string scheme, authority, host, path, query, fragment;
int port = -1;
bool hasAuthority = false, hasQuery = false, hasFragment = false;
int portOrDefault() const { return port > 0 ? port : 1965; }
};
// False unless it has a scheme and a host: only absolute URLs are fetched.
bool parseUrl(const std::string& text, Url& out);
bool isGemini(const std::string& url);
// `ref` against `base`, per RFC 3986 section 5.2 (dot segments included).
std::string resolve(const std::string& base, const std::string& ref);
// What goes on the wire: no fragment, lower-case host, never an empty path.
std::string requestUrl(const std::string& url);
// For input prompts: everything but unreserved characters percent-encoded (UTF-8 bytes).
std::string encodeQuery(const std::string& text);
// Where a Saved Page lives (Q82): /gemini/saved/<host>[_<port>]/<path>[~<query>].gmi
std::string savedPath(const std::string& url);
} // namespace roro::gemini
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#include "gemtext.h"
#include <cstdint>
namespace roro::gemini {
namespace {
std::string trim(const std::string& s) {
size_t a = s.find_first_not_of(" \t"), b = s.find_last_not_of(" \t");
return a == std::string::npos ? "" : s.substr(a, b - a + 1);
}
} // namespace
GemLine parseGemLine(const std::string& line, bool& pre) {
GemLine g;
if (line.compare(0, 3, "```") == 0) {
g.type = LineType::PreToggle;
g.text = trim(line.substr(3));
pre = !pre;
} else if (pre) {
g.type = LineType::Preformatted;
g.text = line;
} else if (line.compare(0, 2, "=>") == 0) {
g.type = LineType::Link;
std::string rest = trim(line.substr(2));
size_t gap = rest.find_first_of(" \t");
g.url = rest.substr(0, gap);
g.text = gap == std::string::npos ? "" : trim(rest.substr(gap));
if (g.text.empty()) g.text = g.url;
} else if (line.compare(0, 3, "###") == 0) {
g.type = LineType::Heading3;
g.text = trim(line.substr(3));
} else if (line.compare(0, 2, "##") == 0) {
g.type = LineType::Heading2;
g.text = trim(line.substr(2));
} else if (line.compare(0, 1, "#") == 0) {
g.type = LineType::Heading1;
g.text = trim(line.substr(1));
} else if (line.compare(0, 2, "* ") == 0) {
g.type = LineType::ListItem;
g.text = trim(line.substr(2));
} else if (line.compare(0, 1, ">") == 0) {
g.type = LineType::Quote;
g.text = trim(line.substr(1));
} else {
g.text = line;
}
return g;
}
std::vector<GemLine> parseGemtext(const std::string& document) {
std::vector<GemLine> lines;
bool pre = false;
size_t start = 0;
while (start < document.size()) {
size_t end = document.find('\n', start);
if (end == std::string::npos) end = document.size();
std::string line = document.substr(start, end - start);
if (!line.empty() && line.back() == '\r') line.pop_back();
start = end + 1;
lines.push_back(parseGemLine(line, pre));
}
return lines;
}
std::string displayText(const std::string& s) {
std::string out;
size_t column = 0;
for (size_t i = 0; i < s.size();) {
unsigned char c = static_cast<unsigned char>(s[i]);
if (c == '\t') {
do out += ' ';
while (++column % 4);
i++;
continue;
}
if (c < 0x80) {
out += static_cast<char>(c);
i++;
} else {
int len = (c & 0xE0) == 0xC0 ? 2 : (c & 0xF0) == 0xE0 ? 3 : (c & 0xF8) == 0xF0 ? 4 : 0;
bool valid = len > 0 && i + len <= s.size();
for (int k = 1; valid && k < len; k++) valid = (static_cast<unsigned char>(s[i + k]) & 0xC0) == 0x80;
if (!valid) {
out += '?';
i++;
} else {
uint32_t cp = len == 2 ? (c & 0x1F) : len == 3 ? (c & 0x0F) : (c & 0x07);
for (int k = 1; k < len; k++) cp = (cp << 6) | (static_cast<unsigned char>(s[i + k]) & 0x3F);
if (cp <= 0xFF) out.append(s, i, len); // Latin-1: the fonts have it
else out += '?';
i += len;
}
}
column++;
}
return out;
}
} // namespace roro::gemini
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#pragma once
#include <string>
#include <vector>
namespace roro::gemini {
enum class LineType { Text, Link, Heading1, Heading2, Heading3, ListItem, Quote, PreToggle, Preformatted };
// One gemtext line. Link: `url` and its label in `text` (the URL itself without a label).
// PreToggle: the ``` line, with its alt text. Preformatted: kept exactly.
struct GemLine {
LineType type = LineType::Text;
std::string text, url;
};
// One line; `preformatted` carries the ``` state from line to line (start with false).
GemLine parseGemLine(const std::string& line, bool& preformatted);
std::vector<GemLine> parseGemtext(const std::string& document);
// For the Latin-1 fonts (Q79): valid UTF-8 up to U+00FF kept, anything else '?', and tabs
// expanded to 4-column stops.
std::string displayText(const std::string& utf8);
} // namespace roro::gemini
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#include "text_buffer.h"
#include <algorithm>
namespace roro::gemini {
void TextBuffer::append(const char* data, size_t len) {
bytes_ += len;
for (size_t i = 0; i < len; i++) {
if (data[i] == '\n') endLine();
else partial_ += data[i];
}
}
void TextBuffer::finish() {
if (!partial_.empty()) endLine();
}
void TextBuffer::endLine() {
if (!partial_.empty() && partial_.back() == '\r') partial_.pop_back();
size_t len = std::min<size_t>(partial_.size(), 0xFFFF);
// A line never spans two chunks: a new chunk when it doesn't fit (bigger if the line is).
if (chunks_.empty() || chunks_.back().size() + len > chunks_.back().capacity()) {
chunks_.emplace_back();
chunks_.back().reserve(std::max(kChunk, len));
}
std::string& chunk = chunks_.back();
lines_.push_back({static_cast<uint16_t>(chunks_.size() - 1), static_cast<uint16_t>(chunk.size()),
static_cast<uint16_t>(len)});
chunk.append(partial_, 0, len);
partial_.clear();
}
std::string TextBuffer::line(size_t i) const {
if (i >= lines_.size()) return "";
const Ref& r = lines_[i];
return chunks_[r.chunk].substr(r.offset, r.length);
}
void TextBuffer::clear() {
chunks_.clear();
lines_.clear();
partial_.clear();
bytes_ = 0;
}
} // namespace roro::gemini
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#pragma once
#include <cstddef>
#include <cstdint>
#include <string>
#include <vector>
namespace roro::gemini {
// A page's text, kept as lines in 4 KB chunks: no large contiguous block (with IRC connected the
// largest free block is about 31 KB) and no copy when it grows. About 4 bytes per line on top of
// the text itself. Bytes are fed as they arrive; lines end at LF, a CR before it is dropped.
class TextBuffer {
public:
static constexpr size_t kChunk = 4096;
void append(const char* data, size_t len);
void finish(); // the last line, if it has no line end
size_t lineCount() const { return lines_.size(); }
std::string line(size_t i) const;
size_t bytes() const { return bytes_; }
void clear();
private:
struct Ref {
uint16_t chunk;
uint16_t offset;
uint16_t length;
};
void endLine();
std::vector<std::string> chunks_;
std::vector<Ref> lines_;
std::string partial_; // the line being received
size_t bytes_ = 0;
};
} // namespace roro::gemini
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#include "geo_format.h"
#include <cmath>
#include <cstdio>
namespace roro::gnss {
namespace {
const char* hemisphere(double degrees, bool latitude) {
return latitude ? (degrees < 0 ? "S" : "N") : (degrees < 0 ? "W" : "E");
}
} // namespace
std::string formatDecimal(double degrees, bool latitude) {
char buf[32];
std::snprintf(buf, sizeof buf, "%.5f\xC2\xB0 %s", std::fabs(degrees), hemisphere(degrees, latitude));
return buf;
}
std::string formatDms(double degrees, bool latitude) {
// Work in tenths of a second, so rounding carries into minutes and degrees.
long tenths = std::lround(std::fabs(degrees) * 36000.0);
long d = tenths / 36000, m = tenths / 600 % 60, s10 = tenths % 600;
char buf[40];
std::snprintf(buf, sizeof buf, "%ld\xC2\xB0 %02ld' %02ld.%ld\" %s", d, m, s10 / 10, s10 % 10,
hemisphere(degrees, latitude));
return buf;
}
std::string maidenhead(double latitude, double longitude) {
double lon = std::fmin(std::fmax(longitude + 180.0, 0.0), 359.999999);
double lat = std::fmin(std::fmax(latitude + 90.0, 0.0), 179.999999);
std::string out;
out += static_cast<char>('A' + static_cast<int>(lon / 20));
out += static_cast<char>('A' + static_cast<int>(lat / 10));
out += static_cast<char>('0' + static_cast<int>(std::fmod(lon, 20) / 2));
out += static_cast<char>('0' + static_cast<int>(std::fmod(lat, 10)));
out += static_cast<char>('a' + static_cast<int>(std::fmod(lon, 2) * 12));
out += static_cast<char>('a' + static_cast<int>(std::fmod(lat, 1) * 24));
return out;
}
SkyPoint skyPosition(int azimuthDeg, int elevationDeg, int cx, int cy, int radius) {
int elevation = elevationDeg < 0 ? 0 : elevationDeg > 90 ? 90 : elevationDeg;
double r = radius * (90 - elevation) / 90.0;
double az = azimuthDeg * M_PI / 180.0;
return {cx + static_cast<int>(std::lround(r * std::sin(az))), cy - static_cast<int>(std::lround(r * std::cos(az)))};
}
} // namespace roro::gnss
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#pragma once
#include <string>
namespace roro::gnss {
// "50.86920° N": five decimals, about a metre.
std::string formatDecimal(double degrees, bool latitude);
// "50° 52' 09.1\" N" (Settings → Coordinates, Q64).
std::string formatDms(double degrees, bool latitude);
// The 6-character Maidenhead locator ("JO20ef"), as radio amateurs give their square.
std::string maidenhead(double latitude, double longitude);
// Where a satellite goes on the Sky view: the zenith in the centre, the horizon on the circle,
// north up and east right (as seen looking at the sky from above, like a map).
struct SkyPoint {
int x, y;
};
SkyPoint skyPosition(int azimuthDeg, int elevationDeg, int cx, int cy, int radius);
} // namespace roro::gnss
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#include "nmea_parser.h"
#include <cstdlib>
namespace roro::gnss {
namespace {
constexpr double kKmhPerKnot = 1.852;
int hexValue(char c) {
if (c >= '0' && c <= '9') return c - '0';
if (c >= 'A' && c <= 'F') return c - 'A' + 10;
if (c >= 'a' && c <= 'f') return c - 'a' + 10;
return -1;
}
Constellation fromTalker(const std::string& t) {
if (t == "GP") return Constellation::Gps;
if (t == "GL") return Constellation::Glonass;
if (t == "GA") return Constellation::Galileo;
if (t == "GB" || t == "BD") return Constellation::BeiDou;
if (t == "GQ" || t == "QZ") return Constellation::Qzss;
if (t == "GI") return Constellation::Navic;
return Constellation::Unknown; // GN: combined
}
// GSA's system ID field (NMEA 4.10).
Constellation fromSystemId(int id) {
switch (id) {
case 1: return Constellation::Gps;
case 2: return Constellation::Glonass;
case 3: return Constellation::Galileo;
case 4: return Constellation::BeiDou;
case 5: return Constellation::Qzss;
case 6: return Constellation::Navic;
default: return Constellation::Unknown;
}
}
bool number(const std::string& s, double& out) {
if (s.empty()) return false;
char* end;
out = std::strtod(s.c_str(), &end);
return *end == '\0';
}
int integer(const std::string& s, int fallback = 0) {
double v;
return number(s, v) ? static_cast<int>(v) : fallback;
}
// "ddmm.mmmm" / "dddmm.mmmm" with its hemisphere letter.
bool coordinate(const std::string& value, const std::string& hemisphere, double& out) {
double raw;
if (!number(value, raw) || hemisphere.empty()) return false;
int degrees = static_cast<int>(raw / 100);
out = degrees + (raw - degrees * 100) / 60.0;
if (hemisphere == "S" || hemisphere == "W") out = -out;
return true;
}
// Days since 1970-01-01 for a civil date (Howard Hinnant's algorithm).
int64_t daysFromCivil(int y, int m, int d) {
y -= m <= 2;
const int64_t era = (y >= 0 ? y : y - 399) / 400;
const unsigned yoe = static_cast<unsigned>(y - era * 400);
const unsigned doy = (153 * (m + (m > 2 ? -3 : 9)) + 2) / 5 + d - 1;
const unsigned doe = yoe * 365 + yoe / 4 - yoe / 100 + doy;
return era * 146097 + static_cast<int64_t>(doe) - 719468;
}
} // namespace
const char* constellationName(Constellation c) {
switch (c) {
case Constellation::Gps: return "GPS";
case Constellation::Glonass: return "GLONASS";
case Constellation::Galileo: return "Galileo";
case Constellation::BeiDou: return "BeiDou";
case Constellation::Qzss: return "QZSS";
case Constellation::Navic: return "NavIC";
default: return "?";
}
}
int64_t GnssState::utcSeconds() const {
return daysFromCivil(year, month, day) * 86400 + hour * 3600 + minute * 60 + second;
}
void NmeaParser::feed(const char* data, size_t len) {
for (size_t i = 0; i < len; i++) {
char c = data[i];
if (c == '\n') {
if (!overflow_ && !line_.empty()) {
if (onLine) onLine(line_);
sentence(line_);
}
line_.clear();
overflow_ = false;
} else if (c != '\r') {
if (line_.size() >= kMaxLine) overflow_ = true;
else line_ += c;
}
}
}
bool NmeaParser::sentence(const std::string& line) {
size_t star = line.rfind('*');
if (line.size() < 7 || line[0] != '$' || star == std::string::npos || star + 3 != line.size()) {
bad_++;
return false;
}
uint8_t sum = 0;
for (size_t i = 1; i < star; i++) sum ^= static_cast<uint8_t>(line[i]);
int hi = hexValue(line[star + 1]), lo = hexValue(line[star + 2]);
if (hi < 0 || lo < 0 || sum != (hi << 4 | lo)) {
bad_++;
return false;
}
good_++;
Fields f;
size_t start = 1;
for (size_t i = 1; i <= star; i++)
if (i == star || line[i] == ',') {
f.push_back(line.substr(start, i - start));
start = i + 1;
}
if (f[0].size() < 5) return true;
std::string talker = f[0].substr(0, 2), type = f[0].substr(f[0].size() - 3);
if (type == "RMC") rmc(f);
else if (type == "GGA") gga(f);
else if (type == "GSA") gsa(f, fromTalker(talker));
else if (type == "GSV") gsv(f, fromTalker(talker));
return true;
}
void NmeaParser::rmc(const Fields& f) {
if (f.size() < 10) return;
bool active = f[2] == "A";
double lat, lon;
state_.positionValid = active && coordinate(f[3], f[4], lat) && coordinate(f[5], f[6], lon);
if (state_.positionValid) {
state_.latitude = lat;
state_.longitude = lon;
}
double knots, course;
state_.speedKmh = active && number(f[7], knots) ? static_cast<float>(knots * kKmhPerKnot) : 0;
state_.courseValid = active && number(f[8], course);
if (state_.courseValid) state_.courseDeg = static_cast<float>(course);
const std::string &t = f[1], &d = f[9];
state_.timeValid = active && t.size() >= 6 && d.size() == 6;
if (state_.timeValid) {
state_.hour = integer(t.substr(0, 2));
state_.minute = integer(t.substr(2, 2));
state_.second = integer(t.substr(4, 2));
state_.day = integer(d.substr(0, 2));
state_.month = integer(d.substr(2, 2));
state_.year = 2000 + integer(d.substr(4, 2));
}
}
void NmeaParser::gga(const Fields& f) {
if (f.size() < 10) return;
int quality = integer(f[6]);
double lat, lon, hdop, alt;
state_.positionValid = quality > 0 && coordinate(f[2], f[3], lat) && coordinate(f[4], f[5], lon);
if (state_.positionValid) {
state_.latitude = lat;
state_.longitude = lon;
}
state_.satellitesUsed = integer(f[7]);
if (number(f[8], hdop)) state_.hdop = static_cast<float>(hdop);
state_.altitudeValid = quality > 0 && number(f[9], alt);
if (state_.altitudeValid) state_.altitudeM = static_cast<float>(alt);
}
void NmeaParser::gsa(const Fields& f, Constellation talker) {
if (f.size() < 18) return;
int mode = integer(f[2], 1);
state_.fix = mode == 3 ? FixType::ThreeD : mode == 2 ? FixType::TwoD : FixType::None;
Constellation system = f.size() > 18 ? fromSystemId(integer(f[18])) : talker;
if (system == Constellation::Unknown) return; // can't tell whose satellites these are
std::set<int>& used = used_[static_cast<int>(system)];
used.clear();
for (size_t i = 3; i <= 14; i++)
if (!f[i].empty()) used.insert(integer(f[i]));
rebuildSatellites();
}
void NmeaParser::gsv(const Fields& f, Constellation talker) {
if (f.size() < 4 || talker == Constellation::Unknown) return;
int total = integer(f[1]), number = integer(f[2]);
size_t extra = f.size() - 4;
int signal = extra % 4 == 1 ? integer(f.back()) : 0; // NMEA 4.10 signal ID, last
auto key = std::make_pair(static_cast<int>(talker), signal);
std::vector<Satellite>& pending = pending_[key];
if (number == 1) pending.clear();
for (size_t i = 4; i + 3 < f.size(); i += 4) {
Satellite s;
s.system = talker;
s.prn = integer(f[i]);
s.elevation = integer(f[i + 1]);
s.azimuth = integer(f[i + 2]);
s.snr = integer(f[i + 3], -1);
if (s.prn > 0) pending.push_back(s);
}
if (number == total) {
inView_[key] = pending;
pending.clear();
rebuildSatellites();
}
}
void NmeaParser::rebuildSatellites() {
std::vector<Satellite> merged;
for (auto& [key, list] : inView_)
for (const Satellite& s : list) {
Satellite* same = nullptr;
for (auto& m : merged)
if (m.system == s.system && m.prn == s.prn) same = &m;
if (!same) merged.push_back(s);
else if (s.snr > same->snr) same->snr = s.snr;
}
for (auto& s : merged) {
auto it = used_.find(static_cast<int>(s.system));
s.used = it != used_.end() && it->second.count(s.prn) > 0;
}
state_.satellites = std::move(merged);
}
} // namespace roro::gnss
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#pragma once
#include <cstddef>
#include <cstdint>
#include <functional>
#include <map>
#include <set>
#include <string>
#include <utility>
#include <vector>
namespace roro::gnss {
enum class Constellation : uint8_t { Unknown, Gps, Glonass, Galileo, BeiDou, Qzss, Navic };
const char* constellationName(Constellation c);
enum class FixType : uint8_t { None, TwoD, ThreeD };
struct Satellite {
Constellation system = Constellation::Unknown;
int prn = 0;
int elevation = 0; // degrees above the horizon
int azimuth = 0; // degrees from north, clockwise
int snr = -1; // dB-Hz; -1 when not tracked
bool used = false; // part of the current Fix
};
// Everything the receiver has said, as of the last sentence (see CONTEXT.md: Fix).
struct GnssState {
FixType fix = FixType::None;
bool positionValid = false;
double latitude = 0, longitude = 0; // degrees, south and west negative
bool altitudeValid = false;
float altitudeM = 0; // above mean sea level
float speedKmh = 0;
bool courseValid = false;
float courseDeg = 0;
int satellitesUsed = 0;
float hdop = 99.9f;
// UTC, trusted only with a Fix: the receiver reports a time without one, from its own clock.
bool timeValid = false;
int year = 0, month = 0, day = 0, hour = 0, minute = 0, second = 0;
std::vector<Satellite> satellites; // in view, all constellations, one entry per satellite
int64_t utcSeconds() const; // seconds since 1970-01-01 UTC; meaningful when timeValid
};
// NMEA 0183 (4.10 style, as the Cap's AT6668 sends it): RMC, GGA, GSA and GSV, with the
// constellation taken from the talker ID or GSA's system ID field. Host-tested; no hardware here.
class NmeaParser {
public:
// Raw bytes from the UART, in any chunks.
void feed(const char* data, size_t len);
// One sentence without its line end. False if malformed or its checksum is wrong.
bool sentence(const std::string& line);
// Called with every complete line fed in, valid or not (`gnss nmea on` echoes them).
std::function<void(const std::string&)> onLine;
const GnssState& state() const { return state_; }
uint32_t goodSentences() const { return good_; }
uint32_t badSentences() const { return bad_; }
private:
using Fields = std::vector<std::string>;
void rmc(const Fields& f);
void gga(const Fields& f);
void gsa(const Fields& f, Constellation talker);
void gsv(const Fields& f, Constellation talker);
void rebuildSatellites();
static constexpr size_t kMaxLine = 120;
std::string line_;
bool overflow_ = false;
uint32_t good_ = 0, bad_ = 0;
GnssState state_;
// GSV sequences per (constellation, signal): pending until their last message.
std::map<std::pair<int, int>, std::vector<Satellite>> pending_, inView_;
std::map<int, std::set<int>> used_; // per constellation, from GSA
};
} // namespace roro::gnss
+76
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@@ -0,0 +1,76 @@
#include "track.h"
#include <cmath>
#include <cstdio>
#include <ctime>
namespace roro::gnss {
namespace {
constexpr double kEarthRadiusM = 6371000.0;
double radians(double degrees) { return degrees * M_PI / 180.0; }
// UTC fields from seconds since 1970 (gmtime_r works on the device and the PC alike).
struct tm utc(int64_t seconds) {
time_t t = static_cast<time_t>(seconds);
struct tm out;
gmtime_r(&t, &out);
return out;
}
} // namespace
double distanceMeters(double lat1, double lon1, double lat2, double lon2) {
double dLat = radians(lat2 - lat1), dLon = radians(lon2 - lon1);
double h = std::sin(dLat / 2) * std::sin(dLat / 2) +
std::cos(radians(lat1)) * std::cos(radians(lat2)) * std::sin(dLon / 2) * std::sin(dLon / 2);
return 2 * kEarthRadiusM * std::asin(std::sqrt(h));
}
bool TrackRule::due(uint32_t nowMs, double lat, double lon) {
if (any_ && (nowMs - lastMs_ < kEveryMs || distanceMeters(lat_, lon_, lat, lon) < kMinMeters)) return false;
any_ = true;
lastMs_ = nowMs;
lat_ = lat;
lon_ = lon;
return true;
}
std::string trackPath(int64_t utcSeconds) {
struct tm t = utc(utcSeconds);
char buf[48];
std::snprintf(buf, sizeof buf, "/gnss/tracks/%04d%02d%02d-%02d%02d%02d.gpx", t.tm_year + 1900, t.tm_mon + 1,
t.tm_mday, t.tm_hour, t.tm_min, t.tm_sec);
return buf;
}
namespace gpx {
std::string header(const std::string& name) {
return "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
"<gpx version=\"1.1\" creator=\"roro9stack\" xmlns=\"http://www.topografix.com/GPX/1/1\">\n"
"<trk><name>" + name + "</name><trkseg>";
}
std::string point(double lat, double lon, bool hasElevation, float elevationM, int64_t utcSeconds) {
struct tm t = utc(utcSeconds);
char buf[160], ele[32] = "";
if (hasElevation) std::snprintf(ele, sizeof ele, "<ele>%.1f</ele>", elevationM);
std::snprintf(buf, sizeof buf,
"<trkpt lat=\"%.7f\" lon=\"%.7f\">%s<time>%04d-%02d-%02dT%02d:%02d:%02dZ</time></trkpt>", lat, lon,
ele, t.tm_year + 1900, t.tm_mon + 1, t.tm_mday, t.tm_hour, t.tm_min, t.tm_sec);
return buf;
}
std::string footer() { return "</trkseg></trk></gpx>"; }
bool finished(const std::string& tail) {
size_t end = tail.find_last_not_of(" \r\n\t");
return end != std::string::npos && end + 1 >= 6 && tail.compare(end + 1 - 6, 6, "</gpx>") == 0;
}
} // namespace gpx
} // namespace roro::gnss
+40
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@@ -0,0 +1,40 @@
#pragma once
#include <cstdint>
#include <string>
namespace roro::gnss {
// Great-circle distance in metres (haversine, mean Earth radius).
double distanceMeters(double lat1, double lon1, double lat2, double lon2);
// When a Track takes its next point (Q63): the first one always, then at least every 5 s and only
// after moving at least 5 m, so standing still doesn't fill the card.
class TrackRule {
public:
static constexpr uint32_t kEveryMs = 5000;
static constexpr double kMinMeters = 5.0;
// True if this position should be recorded (and is then remembered as the last point).
bool due(uint32_t nowMs, double lat, double lon);
void reset() { any_ = false; }
private:
bool any_ = false;
uint32_t lastMs_ = 0;
double lat_ = 0, lon_ = 0;
};
// "/gnss/tracks/YYYYMMDD-HHMMSS.gpx", from the UTC start time (Storage Clean-up reads its date).
std::string trackPath(int64_t utcSeconds);
// GPX 1.1, written a line at a time: the header when a Track starts, a point per line, the footer
// when it stops. A file whose footer never came (power lost) is closed at the next boot.
namespace gpx {
std::string header(const std::string& name);
std::string point(double lat, double lon, bool hasElevation, float elevationM, int64_t utcSeconds);
std::string footer();
bool finished(const std::string& tail); // the end of a file: does it close the GPX?
} // namespace gpx
} // namespace roro::gnss
+2
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@@ -29,6 +29,8 @@ const Definition kDefinitions[] = {
{"sound", Kind::Bool, 1, nullptr, 0, 1},
{"probe_mac_raw", Kind::Bool, 1, nullptr, 0, 1},
{"wifi_on", Kind::Bool, 1, nullptr, 0, 1},
{"gnss_on", Kind::Bool, 1, nullptr, 0, 1},
{"coord_dms", Kind::Bool, 0, nullptr, 0, 1},
};
static_assert(sizeof(kDefinitions) / sizeof(kDefinitions[0]) == static_cast<size_t>(Setting::Count),
"every Setting needs a definition");
+2
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@@ -21,6 +21,8 @@ enum class Setting : uint8_t {
Sound, // bool
ProbeMacRaw, // bool: probe-request Logs keep raw MAC addresses
WifiEnabled, // bool: the Wi-Fi Service stays Connected when a Saved Network is in range
GnssEnabled, // bool: the GNSS Service reads the receiver (M2, Q58)
CoordinatesDms, // bool: show degrees, minutes and seconds instead of decimal degrees (Q64)
Count
};
+1
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@@ -20,6 +20,7 @@ inline const CleanupCategory kCleanupCategories[] = {
{"IRC logs", "/irc"},
{"Wi-Fi scan logs", "/wifi/scans"},
{"Wi-Fi captures", "/captures/wifi"},
{"GNSS tracks", "/gnss/tracks"},
};
enum class CleanupAge { OneMonth, ThreeMonths, SixMonths, OneYear, Everything };
+10
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@@ -20,6 +20,16 @@ build_flags =
lib_deps =
m5stack/M5Cardputer @ 1.1.1
test_ignore = *
; Smaller TLS buffers (M2): the framework is rebuilt with these settings (pioarduino "hybrid
; compile"). Receive stays 16 KB (servers send full TLS records); send drops to 4 KB (IRC lines are
; short); buffers are allocated as needed and handshake-only data is freed once connected.
custom_sdkconfig =
CONFIG_MBEDTLS_ASYMMETRIC_CONTENT_LEN=y
CONFIG_MBEDTLS_SSL_IN_CONTENT_LEN=16384
CONFIG_MBEDTLS_SSL_OUT_CONTENT_LEN=4096
CONFIG_MBEDTLS_DYNAMIC_BUFFER=y
CONFIG_MBEDTLS_DYNAMIC_FREE_CONFIG_DATA=y
CONFIG_MBEDTLS_DYNAMIC_FREE_CA_CERT=y
; Debug Build: the same firmware plus the Debug Console on TCP 2323 (see ADR 0004). The token comes
; from ~/.config/roro9stack/debug-token, passed in by scripts/_docker.sh; it's never committed.
+1 -1
View File
@@ -2,7 +2,7 @@
"""Pushes a signed Update File to a Cardputer over Wi-Fi (TCP 3232) and reports the result.
Usage: scripts/ota_push.py <file.ota> <host>
<host> is the device's IP (shown in Settings > About), or its name when mDNS works on your network.
<host> is the device's IP (shown in Settings > Firmware).
"""
import socket
import sys
-2
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@@ -78,7 +78,6 @@ void FirmwarePage::draw(Canvas& c) {
case kVersion: return "Version";
case kStatus: return "Status";
case kAddress: return "Push to";
case kName: return "Name";
case kSdHeader: return listed ? (found.empty() ? "No .ota files in /updates" : "On the SD card:") : "Looking on the SD card...";
default: return " " + found[i - kFixed].substr(std::string(kUpdatesFolder).size() + 1);
}
@@ -88,7 +87,6 @@ void FirmwarePage::draw(Canvas& c) {
case kVersion: return versionString();
case kStatus: return update_.onProbation() ? "on probation" : "confirmed";
case kAddress: return ip.empty() ? "Wi-Fi not connected" : ip + ":" + std::to_string(UpdateService::kPort);
case kName: return update_.hostname() + ".local";
case kSdHeader: return "";
default: return "install >";
}
+1 -1
View File
@@ -28,7 +28,7 @@ class FirmwarePage {
void draw(Canvas& c);
private:
enum Row { kVersion, kStatus, kAddress, kName, kSdHeader, kFixed };
enum Row { kVersion, kStatus, kAddress, kSdHeader, kFixed };
std::vector<std::string> files();
+527
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@@ -0,0 +1,527 @@
#include "gemini_app.h"
#include <Arduino.h>
#include <algorithm>
#include "gemini_url.h"
#include "text_wrap.h"
#include "ui/fonts.h"
#include "ui/theme.h"
#include "ui/widgets.h"
namespace roro {
using namespace gemini;
namespace {
constexpr int kUrlBar = 10; // the small line with the URL at the top
constexpr int kMargin = 3;
constexpr const char* kStartUrl = GeminiService::kStartUrl;
constexpr size_t kMaxHistory = 20; // Q77
// How each line type looks: its prefix, the indent of its wrapped rows, font and colour.
struct Style {
const char* prefix;
int indent; // characters
const lgfx::U8g2font* font;
uint16_t color;
};
Style styleOf(LineType t) {
switch (t) {
case LineType::Heading1: return {"", 0, &fonts::bold, theme::kAccent};
case LineType::Heading2: return {"", 0, &fonts::bold, theme::kText};
case LineType::Heading3: return {"", 0, &fonts::bold, theme::kMuted};
case LineType::ListItem: return {"\xC2\xB7 ", 2, &fonts::body, theme::kText}; // ·
case LineType::Quote: return {"> ", 2, &fonts::body, theme::kMuted};
case LineType::Link: return {"\xC2\xBB ", 2, &fonts::body, theme::kAccent}; // »
case LineType::Preformatted: return {"", 0, &fonts::body, theme::kText};
default: return {"", 0, &fonts::body, theme::kText};
}
}
} // namespace
void GeminiApp::onEnter() {
if (page_.url.empty() && !loading_) navigate(kStartUrl, false);
requestRedraw();
}
// The page's first heading, for a bookmark's label.
std::string GeminiApp::titleOf() const {
for (size_t i = 0; i < page_.text.lineCount() && i < 40; i++)
if (static_cast<LineType>(types_[i]) == LineType::Heading1) return lineAt(i).text;
return "";
}
void GeminiApp::follow(const std::string& link) {
std::string url = resolve(page_.base(), link);
navigate(url, true, isSaved()); // inside a Saved Page, its saved links open offline (Q84)
}
void GeminiApp::showMessage(const std::string& url, const std::string& gemtext) {
GeminiPage p;
p.outcome = GeminiPage::Outcome::Ok;
p.url = url;
p.header.status = 20;
p.text.append(gemtext.data(), gemtext.size());
p.text.finish();
show(std::move(p));
}
void GeminiApp::navigate(const std::string& target, bool remember, bool preferSaved) {
bool local = target == kStartUrl || target.rfind("file://", 0) == 0;
if (!isGemini(target) && !local) {
status_ = "Not Gemini: " + target;
statusMs_ = millis();
requestRedraw();
return;
}
if (!gemini_.fetch(target, preferSaved)) {
status_ = "Busy: try again in a moment";
statusMs_ = millis();
return;
}
if (remember && !page_.url.empty()) {
history_.push_back({page_.url, topRow_});
if (history_.size() > kMaxHistory) history_.erase(history_.begin());
}
loading_ = true;
loadingUrl_ = target;
status_.clear();
requestRedraw();
}
void GeminiApp::show(GeminiPage&& page) {
page_ = std::move(page);
windowLoading_ = false;
analyse();
topRow_ = hscroll_ = 0;
selected_ = -1;
}
void GeminiApp::analyse() {
types_.clear();
links_.clear();
// A window may start inside a preformatted block: the index says (bit 31).
size_t entry = page_.windowStart / GeminiService::kIndexEvery;
bool pre = page_.windowed && entry < page_.lineIndex.size() && (page_.lineIndex[entry] & 0x80000000u);
for (size_t i = 0; i < page_.text.lineCount(); i++) {
LineType t = parseGemLine(page_.text.line(i), pre).type;
if (page_.header.mimeType() != "text/gemini") t = LineType::Preformatted; // other text/*: as is
types_.push_back(static_cast<uint8_t>(t));
if (t == LineType::Link) links_.push_back(i);
}
layoutDirty_ = true;
requestRedraw();
}
size_t GeminiApp::topLine() const {
if (firstRow_.size() < 2) return page_.windowStart;
size_t i = std::upper_bound(firstRow_.begin(), firstRow_.end() - 1, static_cast<uint32_t>(topRow_)) - firstRow_.begin();
return page_.windowStart + (i > 0 ? i - 1 : 0);
}
void GeminiApp::requestWindow(size_t firstLine) {
if (windowLoading_ || !gemini_.loadWindow(page_, firstLine)) return;
windowLoading_ = true;
keepLine_ = static_cast<long>(topLine());
status_ = "Reading from the card...";
statusMs_ = millis();
}
// A new window of the same page: same URL, history and position, other lines.
void GeminiApp::applyWindow(GeminiPage&& window) {
windowLoading_ = false;
status_.clear();
page_.text = std::move(window.text);
page_.windowStart = window.windowStart;
page_.lineIndex = std::move(window.lineIndex);
selected_ = -1;
analyse();
}
void GeminiApp::update(uint32_t nowMs) {
GeminiPage result;
bool got = gemini_.takeResult(result);
if (got && !result.windowOf.empty()) {
windowLoading_ = false;
if (result.windowOf == page_.backing) applyWindow(std::move(result)); // else: we've moved on
} else if (got) {
loading_ = false;
std::string url = result.url;
switch (result.outcome) {
case GeminiPage::Outcome::CertificateChanged:
pendingCert_ = std::move(result);
certDialog_.reset(new DialogModel({"Cancel", "Trust it"}));
break;
case GeminiPage::Outcome::Failed:
showMessage(url, "# Can't open this page\n" + result.error + "\n=> " + url + " Try again\n");
break;
case GeminiPage::Outcome::Ok:
switch (result.header.category()) {
case Category::Success:
if (result.header.mimeType().rfind("text/", 0) == 0) show(std::move(result));
else {
std::string mime = result.header.mimeType();
showMessage(url, "# Not a text page\nThis is " + mime +
", which the Cardputer can't show. s saves it to the card, in "
"/gemini/downloads.\n");
page_.header.meta = mime; // so s knows to download it
}
break;
case Category::Input:
// Q72: ask, then request the same URL with the answer as its query.
inputOpen_ = true;
inputSensitive_ = result.header.sensitiveInput();
inputPrompt_ = result.header.meta;
inputUrl_ = url;
input_.setText("");
break;
default:
showMessage(url, "# " + std::to_string(result.header.status) + " " + result.header.meta +
"\nThe server refused this page.\n=> " + url + " Try again\n");
break;
}
break;
}
requestRedraw();
}
// Signed: statusMs_ may be a few ms ahead of this pass's nowMs (set by a key handled after it).
std::string message;
if (gemini_.takeMessage(message)) {
status_ = message;
statusMs_ = millis();
if (!reopen_.empty()) { // a refreshed Saved Page: show the new copy
navigate(reopen_, false);
reopen_.clear();
} else if (message == "Deleted") navigate(kStartUrl, false);
requestRedraw();
}
if (!status_.empty() && static_cast<int32_t>(nowMs - statusMs_) > 4000) {
status_.clear();
requestRedraw();
}
}
int GeminiApp::rowsOnScreen() const { return (theme::kContent.h - kUrlBar) / theme::kLineHeight; }
LineType typeOf(const std::vector<uint8_t>& types, size_t i) { return static_cast<LineType>(types[i]); }
GemLine GeminiApp::lineAt(size_t i) const {
bool pre = typeOf(types_, i) == LineType::Preformatted;
GemLine g = parseGemLine(page_.text.line(i), pre);
if (typeOf(types_, i) == LineType::Preformatted) {
g.type = LineType::Preformatted;
g.text = page_.text.line(i);
}
return g;
}
// A line's rows, as drawn: prefix on the first, indent on the rest; preformatted lines don't wrap.
std::vector<std::string> GeminiApp::rowsOf(Canvas& c, size_t i) const {
GemLine g = lineAt(i);
if (g.type == LineType::PreToggle) return {};
if (g.type == LineType::Preformatted) return {displayText(g.text)};
Style st = styleOf(g.type);
c.setFont(st.font);
MeasureText measure = [&c](const std::string& s) { return static_cast<int>(c.textWidth(s.c_str())); };
int width = theme::kWidth - 2 * kMargin;
std::string indent(st.indent, ' ');
std::vector<std::string> rows = wrapText(st.prefix + displayText(g.text), width, measure);
if (rows.empty()) rows.push_back("");
// Rows after the first: the exact rest of the text (wrapText keeps every space but the one it
// breaks at), wrapped again, narrower, behind the indent.
if (rows.size() > 1 && st.indent > 0) {
std::string full = st.prefix + displayText(g.text);
std::string rest = full.substr(rows[0].size());
if (!rest.empty() && rest[0] == ' ') rest.erase(0, 1);
std::vector<std::string> more = wrapText(rest, width - measure(indent), measure);
rows.resize(1);
for (auto& m : more) rows.push_back(indent + m);
}
return rows;
}
void GeminiApp::layout(Canvas& c) {
firstRow_.assign(page_.text.lineCount() + 1, 0);
uint32_t row = 0;
for (size_t i = 0; i < page_.text.lineCount(); i++) {
firstRow_[i] = row;
row += rowsOf(c, i).size();
}
firstRow_.back() = row;
layoutDirty_ = false;
}
void GeminiApp::scrollTo(int row) {
int total = firstRow_.empty() ? 0 : static_cast<int>(firstRow_.back());
// A windowed page: near either end of the window, read the next part from the card. The new
// window starts a block before the line on top, so what's on screen stays.
const size_t block = GeminiService::kIndexEvery;
if (row + rowsOnScreen() > total - 2 && moreBelow()) {
size_t line = topLine();
requestWindow(line >= block ? line - line % block : 0);
} else if (row < 0 && moreAbove()) {
size_t line = topLine();
size_t back = page_.text.lineCount() / 2; // about half a window above
requestWindow(line > back ? line - back : 0);
}
topRow_ = std::max(0, std::min(row, std::max(0, total - rowsOnScreen())));
requestRedraw();
}
void GeminiApp::selectLink(int direction) {
// A windowed page: past the window's last (or first) link, page on instead of wrapping.
int last = static_cast<int>(links_.size()) - 1;
if ((direction > 0 && moreBelow() && (links_.empty() || selected_ == last)) ||
(direction < 0 && moreAbove() && (links_.empty() || selected_ == 0))) {
selected_ = -1;
scrollTo(topRow_ + direction * (rowsOnScreen() - 1));
return;
}
if (links_.empty()) return;
int count = static_cast<int>(links_.size());
if (selected_ < 0) {
// The first link on screen, or after it when going forward.
selected_ = direction > 0 ? 0 : count - 1;
for (int k = 0; k < count; k++)
if (static_cast<int>(firstRow_[links_[k]]) >= topRow_) {
selected_ = direction > 0 ? k : std::max(0, k - 1);
break;
}
} else selected_ = (selected_ + direction + count) % count;
int row = firstRow_[links_[selected_]];
if (row < topRow_ || row >= topRow_ + rowsOnScreen()) scrollTo(row - 1);
requestRedraw();
}
bool GeminiApp::onKey(const KeyEvent& e) {
requestRedraw();
if (certDialog_) {
certDialog_->onKey(e);
if (certDialog_->result() == DialogModel::kPending) return true;
if (certDialog_->result() == 1) {
gemini_.trust(pendingCert_.host, pendingCert_.port, pendingCert_.presented);
navigate(pendingCert_.requested, false);
}
certDialog_.reset();
return true;
}
if (deleteDialog_) {
deleteDialog_->onKey(e);
if (deleteDialog_->result() == DialogModel::kPending) return true;
if (deleteDialog_->result() == 1) gemini_.deleteSaved(savedPathOf());
deleteDialog_.reset();
return true;
}
if (inputOpen_) {
switch (e.key) {
case Key::Char: input_.insert(e.ch); break;
case Key::Delete: input_.backspace(); break;
case Key::Left: input_.left(); break;
case Key::Right: input_.right(); break;
case Key::Back: inputOpen_ = false; break;
case Key::Select:
inputOpen_ = false;
navigate(resolve(inputUrl_, "?" + encodeQuery(input_.text())));
break;
default: break;
}
return true;
}
if (addressOpen_) {
switch (e.key) {
case Key::Char: address_.insert(e.ch); break;
case Key::Delete: address_.backspace(); break;
case Key::Left: address_.left(); break;
case Key::Right: address_.right(); break;
case Key::Back: addressOpen_ = false; break;
case Key::Select: {
std::string url = address_.text();
if (url.find("://") == std::string::npos) url = "gemini://" + url;
addressOpen_ = false;
navigate(url);
break;
}
default: break;
}
return true;
}
switch (e.key) {
case Key::Up: scrollTo(topRow_ - 1); return true;
case Key::Down: scrollTo(topRow_ + 1); return true;
case Key::Left: hscroll_ = std::max(0, hscroll_ - 8); return true;
case Key::Right: hscroll_ += 8; return true;
case Key::Tab: selectLink(e.shift ? -1 : 1); return true;
case Key::Select:
if (selected_ >= 0) follow(lineAt(links_[selected_]).url);
return true;
case Key::Back:
case Key::Delete:
if (loading_) {
gemini_.cancel();
return true;
}
if (history_.empty()) return e.key == Key::Delete; // Back leaves the App
{
Visit v = history_.back();
history_.pop_back();
navigate(v.url, false);
restoreRow_ = v.topRow;
}
return true;
case Key::Char:
switch (e.ch) {
case ' ': scrollTo(topRow_ + rowsOnScreen() - 1); break;
case 'g':
address_.setText(page_.url == kStartUrl || isSaved() ? "" : page_.url);
addressOpen_ = true;
break;
case 'b': // Q77
if (isGemini(page_.base())) gemini_.addBookmark(page_.base(), titleOf());
break;
case 's': // Q82, Q73
if (isSaved()) status_ = "Already saved; r refreshes it";
else if (!isGemini(page_.url)) status_ = "Only Gemini pages can be saved";
else if (page_.header.mimeType().rfind("text/", 0) == 0) gemini_.save(page_.url);
else gemini_.download(page_.url);
statusMs_ = millis();
break;
case 'S': { // Q83: this page and the gemtext it links to on the same capsule
Url here;
if (isSaved() || !parseUrl(page_.url, here)) break;
std::vector<std::string> links;
for (uint32_t i : links_) {
std::string target = resolve(page_.url, lineAt(i).url);
Url u;
if (isGemini(target) && parseUrl(target, u) && u.host == here.host && target != page_.url &&
std::find(links.begin(), links.end(), target) == links.end())
links.push_back(target);
if (static_cast<int>(links.size()) >= GeminiService::kMaxLinkedPages - 1) break;
}
gemini_.saveWithLinks(page_.url, links);
break;
}
case 'r': // Q84: a fresh copy of a Saved Page
if (isSaved() && gemini_.refresh(savedPathOf())) reopen_ = page_.url;
break;
case 'd': // Q85
if (isSaved()) deleteDialog_.reset(new DialogModel({"Keep", "Delete"}));
break;
default: break;
}
return true;
default: return false;
}
}
void GeminiApp::draw(Canvas& c) {
const auto& area = theme::kContent;
if (layoutDirty_) {
layout(c);
if (restoreRow_ >= 0 && !loading_) {
scrollTo(restoreRow_);
restoreRow_ = -1;
}
if (keepLine_ >= 0 && !windowLoading_) { // a new window: back to the line that was on top
long local = keepLine_ - static_cast<long>(page_.windowStart);
if (local >= 0 && local < static_cast<long>(page_.text.lineCount())) topRow_ = firstRow_[local];
keepLine_ = -1;
}
}
// The URL bar: what's shown, or what's loading, or a passing message.
c.setFont(&fonts::small);
c.setTextDatum(top_left);
std::string bar = loading_ ? "Loading " + loadingUrl_
: !status_.empty() ? status_
: isSaved() ? "saved " + page_.savedOn + ": " + page_.savedFrom
: page_.url;
c.setTextColor(loading_ || !status_.empty() ? theme::kWarning : theme::kMuted);
c.drawString(displayText(bar).substr(0, 47).c_str(), kMargin, area.y + 1);
int rows = rowsOnScreen(), y0 = area.y + kUrlBar;
// The first source line on screen: the last whose first row is at or above topRow_.
size_t i = std::upper_bound(firstRow_.begin(), firstRow_.end() - 1, static_cast<uint32_t>(topRow_)) -
firstRow_.begin();
i = i > 0 ? i - 1 : 0;
int row = topRow_;
while (i < page_.text.lineCount() && row < topRow_ + rows) {
int skip = row - static_cast<int>(firstRow_[i]);
int lineRows = static_cast<int>(firstRow_[i + 1] - firstRow_[i]);
if (lineRows > 0) {
drawLine(c, i, skip, y0 + (row - topRow_) * theme::kLineHeight, topRow_ + rows - row);
row += lineRows - skip;
}
i++;
}
if (page_.truncated && row < topRow_ + rows) {
c.setFont(&fonts::small);
c.setTextColor(theme::kWarning);
c.drawString(("Cut short: " + page_.truncatedWhy).substr(0, 47).c_str(), kMargin,
y0 + (row - topRow_) * theme::kLineHeight + 2);
}
// Scroll position, on the right edge: over the whole page, also when only a window is in memory.
int total = static_cast<int>(firstRow_.back());
int h = area.h - kUrlBar;
if (page_.windowed && page_.totalLines > 0) {
int barH = std::max(6, static_cast<int>(h * page_.text.lineCount() / page_.totalLines / 3));
int y = static_cast<int>((h - barH) * topLine() / std::max<size_t>(1, page_.totalLines - 1));
c.fillRect(area.w - 2, y0 + y, 2, barH, theme::kMuted);
} else if (total > rows) {
int barH = std::max(6, h * rows / total);
c.fillRect(area.w - 2, y0 + (h - barH) * topRow_ / std::max(1, total - rows), 2, barH, theme::kMuted);
}
if (addressOpen_) {
theme::Rect box{2, area.y + area.h / 2 - 12, area.w - 4, theme::kLineHeight + 4};
c.fillRect(box.x - 2, box.y - 12, box.w + 4, box.h + 14, theme::kBackground);
c.setFont(&fonts::small);
c.setTextColor(theme::kMuted);
c.drawString("Go to (Enter, or ` to cancel)", box.x, box.y - 10);
widgets::lineEditor(c, address_, box);
}
if (inputOpen_) {
theme::Rect box{2, area.y + area.h / 2 - 4, area.w - 4, theme::kLineHeight + 4};
c.fillRect(0, box.y - 26, area.w, box.h + 28, theme::kBackground);
c.setFont(&fonts::body);
c.setTextColor(theme::kText);
c.drawString(displayText(inputPrompt_).substr(0, 39).c_str(), box.x, box.y - 22);
c.setFont(&fonts::small);
c.setTextColor(theme::kMuted);
c.drawString(inputSensitive_ ? "(hidden) Enter sends, ` cancels" : "Enter sends, ` cancels", box.x, box.y - 9);
if (inputSensitive_) {
LineEditor masked(1024);
masked.setText(std::string(input_.text().size(), '*'));
widgets::lineEditor(c, masked, box);
} else widgets::lineEditor(c, input_, box);
}
if (deleteDialog_) widgets::dialog(c, "Delete this Saved Page?", page_.savedFrom, *deleteDialog_);
if (certDialog_)
widgets::dialog(c, "Certificate changed",
pendingCert_.host + " now shows a different certificate. Was " + pendingCert_.pinned.substr(0, 16) +
"..., now " + pendingCert_.presented.substr(0, 16) + "...",
*certDialog_);
}
void GeminiApp::drawLine(Canvas& c, size_t i, int firstRow, int y, int rowsLeft) {
GemLine g = lineAt(i);
Style st = styleOf(g.type);
bool isSelected = selected_ >= 0 && links_[selected_] == i;
std::vector<std::string> rows = rowsOf(c, i);
c.setFont(st.font);
c.setTextDatum(top_left);
for (int r = firstRow; r < static_cast<int>(rows.size()) && r - firstRow < rowsLeft; r++) {
int ry = y + (r - firstRow) * theme::kLineHeight;
if (isSelected) c.fillRect(0, ry, theme::kWidth - 3, theme::kLineHeight, theme::kSelection);
c.setTextColor(isSelected ? theme::kText : st.color);
std::string text = rows[r];
if (g.type == LineType::Preformatted) text = hscroll_ < static_cast<int>(text.size()) ? text.substr(hscroll_) : "";
c.drawString(text.c_str(), kMargin, ry + 1);
}
}
} // namespace roro
+81
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@@ -0,0 +1,81 @@
#pragma once
#include <memory>
#include <string>
#include <vector>
#include "app.h"
#include "dialog_model.h"
#include "gemtext.h"
#include "line_editor.h"
#include "services/gemini_service.h"
#include "ui/canvas.h"
namespace roro {
// Geminispace on the Cardputer (docs/milestones/G1.md). Pages come from the GeminiService as
// lines; the App wraps them once (keeping only each line's first row), then wraps just the lines
// on screen when it draws, so a long page costs 4 bytes a line on top of its text.
class GeminiApp : public App {
public:
explicit GeminiApp(GeminiService& gemini) : gemini_(gemini) {}
void onEnter() override;
bool onKey(const KeyEvent& e) override;
bool textEntryActive() const override { return addressOpen_ || inputOpen_; }
void update(uint32_t nowMs) override;
void draw(Canvas& c) override;
private:
struct Visit {
std::string url;
int topRow;
};
void navigate(const std::string& url, bool remember = true, bool preferSaved = false);
void follow(const std::string& link);
std::string titleOf() const;
bool isSaved() const { return !page_.savedFrom.empty(); }
std::string savedPathOf() const { return page_.url.substr(7); } // file://…
void show(GeminiPage&& page);
void analyse(); // types and links of the lines in memory
void applyWindow(GeminiPage&& window);
void requestWindow(size_t firstLine);
size_t topLine() const; // the source line (in the whole page) at the top of the screen
bool moreBelow() const { return page_.windowed && page_.windowStart + page_.text.lineCount() < page_.totalLines; }
bool moreAbove() const { return page_.windowed && page_.windowStart > 0; }
void showMessage(const std::string& url, const std::string& gemtext);
void layout(Canvas& c);
void drawLine(Canvas& c, size_t index, int firstRow, int y, int rows);
std::vector<std::string> rowsOf(Canvas& c, size_t index) const;
gemini::GemLine lineAt(size_t index) const;
int rowsOnScreen() const;
void selectLink(int direction);
void scrollTo(int row);
GeminiService& gemini_;
GeminiPage page_;
std::vector<uint8_t> types_; // per source line: gemini::LineType
std::vector<uint32_t> firstRow_; // per source line, plus the total at the end
std::vector<uint32_t> links_; // source lines that are links
bool layoutDirty_ = true;
int topRow_ = 0, hscroll_ = 0;
int selected_ = -1; // into links_
int restoreRow_ = -1; // going back: where that page was scrolled to, applied after layout
bool windowLoading_ = false;
long keepLine_ = -1; // a new window: the source line to keep at the top, applied after layout
std::vector<Visit> history_;
bool loading_ = false;
std::string loadingUrl_, status_;
uint32_t statusMs_ = 0;
bool addressOpen_ = false;
LineEditor address_{1024};
std::unique_ptr<DialogModel> certDialog_;
GeminiPage pendingCert_;
std::unique_ptr<DialogModel> deleteDialog_;
bool inputOpen_ = false, inputSensitive_ = false;
std::string inputPrompt_, inputUrl_;
LineEditor input_{1024};
std::string reopen_; // after a refresh: the Saved Page to show again
};
} // namespace roro
+212
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@@ -0,0 +1,212 @@
#include "gnss_app.h"
#include <Arduino.h>
#include <cmath>
#include <cstdio>
#include "geo_format.h"
#include "ui/canvas.h"
#include "ui/fonts.h"
#include "ui/theme.h"
namespace roro {
using namespace gnss;
namespace {
// One colour per constellation, readable in the 8-bit frame buffer.
uint16_t colorOf(Constellation c) {
switch (c) {
case Constellation::Gps: return theme::kAccent;
case Constellation::Glonass: return 0xF8C8; // red
case Constellation::Galileo: return theme::kMessage;
case Constellation::BeiDou: return 0xFEA0; // yellow
case Constellation::Qzss: return 0xC99F; // violet
default: return theme::kText;
}
}
const char* fixLabel(FixType f) { return f == FixType::ThreeD ? "3D Fix" : f == FixType::TwoD ? "2D Fix" : "No Fix"; }
std::string duration(uint32_t ms) {
uint32_t s = ms / 1000;
char buf[24];
if (s < 60) std::snprintf(buf, sizeof buf, "%lu s", (unsigned long)s);
else std::snprintf(buf, sizeof buf, "%lu min %02lu s", (unsigned long)(s / 60), (unsigned long)(s % 60));
return buf;
}
} // namespace
bool GnssApp::onKey(const KeyEvent& e) {
if (e.key == Key::Tab) {
sky_ = !sky_;
requestRedraw();
return true;
}
if (e.key == Key::Char && (e.ch == 'r' || e.ch == 'R')) { // record a Track, or stop it
if (gnss_.tracking()) gnss_.stopTrack();
else {
refusal_ = gnss_.startTrack(millis());
refusalMs_ = millis();
}
requestRedraw();
return true;
}
return false; // Back leaves the App
}
void GnssApp::update(uint32_t nowMs) {
if (nowMs - lastDrawMs_ >= 1000) { // the receiver reports once a second
lastDrawMs_ = nowMs;
requestRedraw();
}
}
void GnssApp::draw(Canvas& c) {
c.setTextDatum(top_left);
const auto& area = theme::kContent;
if (!gnss_.on()) {
c.setFont(&fonts::bold);
c.setTextColor(theme::kText);
c.drawString("GNSS is off", 4, area.y + 4);
c.setFont(&fonts::body);
c.setTextColor(theme::kMuted);
c.drawString("Settings > GNSS turns it on.", 4, area.y + 22);
return;
}
sky_ ? drawSky(c) : drawPosition(c);
c.setFont(&fonts::small);
c.setTextColor(theme::kMuted);
c.setTextDatum(top_right);
c.drawString(sky_ ? "Tab: position" : "Tab: sky", area.w - 3, area.y + area.h - 9);
c.setTextDatum(top_left);
}
void GnssApp::drawPosition(Canvas& c) {
const auto& area = theme::kContent;
const GnssState& s = gnss_.state();
uint32_t now = millis();
int used = 0;
for (auto& sat : s.satellites) used += sat.used;
char line[64];
c.setFont(&fonts::bold);
c.setTextColor(s.fix == FixType::None ? theme::kWarning : theme::kMessage);
if (!gnss_.receiving(now)) std::snprintf(line, sizeof line, "No data from the receiver");
else if (s.fix == FixType::None)
std::snprintf(line, sizeof line, "Searching: %u in view, %s", (unsigned)s.satellites.size(),
duration(now - gnss_.onSinceMs()).c_str());
else std::snprintf(line, sizeof line, "%s, %d of %u satellites", fixLabel(s.fix), s.satellitesUsed,
(unsigned)s.satellites.size());
c.drawString(line, 4, area.y + 2);
c.setFont(&fonts::body);
int y = area.y + 19;
auto row = [&](const char* label, const std::string& value) {
c.setTextColor(theme::kMuted);
c.drawString(label, 4, y);
c.setTextColor(theme::kText);
c.drawString(value.c_str(), 64, y);
y += theme::kLineHeight;
};
bool dms = settings_.getBool(Setting::CoordinatesDms);
if (s.positionValid) {
row("Lat", dms ? formatDms(s.latitude, true) : formatDecimal(s.latitude, true));
row("Lon", dms ? formatDms(s.longitude, false) : formatDecimal(s.longitude, false));
row("Locator", maidenhead(s.latitude, s.longitude));
std::snprintf(line, sizeof line, s.altitudeValid ? "%.0f m" : "-", s.altitudeM);
row("Altitude", line);
if (s.courseValid && s.speedKmh >= 1.0f)
std::snprintf(line, sizeof line, "%.1f km/h, %.0f\xC2\xB0", s.speedKmh, s.courseDeg);
else std::snprintf(line, sizeof line, "%.1f km/h", s.speedKmh);
row("Speed", line);
} else {
row("Lat", "-");
row("Lon", "-");
y += theme::kLineHeight * 3;
}
std::snprintf(line, sizeof line, "%.1f", s.hdop);
row("HDOP", s.fix == FixType::None ? "-" : line);
if (s.timeValid) std::snprintf(line, sizeof line, "%02d:%02d:%02d UTC", s.hour, s.minute, s.second);
row("Time", s.timeValid ? line : "-");
// The Track line, at the bottom left.
c.setFont(&fonts::small);
if (gnss_.tracking()) {
c.setTextColor(theme::kWarning);
std::snprintf(line, sizeof line, "REC %d point%s, %s r: stop", gnss_.trackPoints(),
gnss_.trackPoints() == 1 ? "" : "s", duration(now - gnss_.trackStartMs()).c_str());
} else if (!refusal_.empty() && now - refusalMs_ < 4000) {
c.setTextColor(theme::kWarning);
std::snprintf(line, sizeof line, "%s", refusal_.c_str());
} else {
c.setTextColor(theme::kMuted);
std::snprintf(line, sizeof line, "r: record a Track");
}
c.drawString(line, 4, area.y + area.h - 9);
}
void GnssApp::drawSky(Canvas& c) {
const auto& area = theme::kContent;
const GnssState& s = gnss_.state();
const int radius = (area.h - 6) / 2, cx = 4 + radius, cy = area.y + area.h / 2;
// The sky from above: horizon, 30° and 60° elevation rings, north up.
c.drawCircle(cx, cy, radius, theme::kMuted);
c.drawCircle(cx, cy, radius * 2 / 3, 0x4208);
c.drawCircle(cx, cy, radius / 3, 0x4208);
c.drawFastHLine(cx - radius, cy, 2 * radius, 0x4208);
c.drawFastVLine(cx, cy - radius, 2 * radius, 0x4208);
c.setFont(&fonts::small);
c.setTextColor(theme::kMuted);
c.setTextDatum(middle_center);
auto compass = [&](const char* letter, int x, int y) {
c.fillRect(x - 3, y - 4, 7, 9, theme::kBackground); // off the lines, so it reads
c.drawString(letter, x, y);
};
compass("N", cx, cy - radius + 5);
compass("S", cx, cy + radius - 4);
compass("E", cx + radius - 4, cy);
compass("W", cx - radius + 4, cy);
c.setTextDatum(top_left);
int inView[8] = {}, usedBy[8] = {};
for (auto& sat : s.satellites) {
int k = static_cast<int>(sat.system);
inView[k]++;
usedBy[k] += sat.used;
SkyPoint p = skyPosition(sat.azimuth, sat.elevation, cx, cy, radius - 3);
uint16_t color = colorOf(sat.system);
if (sat.used) c.fillCircle(p.x, p.y, 3, color);
else c.drawCircle(p.x, p.y, 3, sat.snr < 0 ? theme::kMuted : color);
}
// Legend: used / in view per constellation, then the Fix.
int x = cx + radius + 12, y = area.y + 4;
c.setFont(&fonts::body);
for (int k = 1; k < 7; k++) {
if (!inView[k]) continue;
auto system = static_cast<Constellation>(k);
c.fillCircle(x + 3, y + 6, 3, colorOf(system));
char line[32];
std::snprintf(line, sizeof line, "%-8s%d/%d", constellationName(system), usedBy[k], inView[k]);
c.setTextColor(theme::kText);
c.drawString(line, x + 10, y);
y += theme::kLineHeight;
}
if (s.satellites.empty()) {
c.setTextColor(theme::kMuted);
c.drawString("No satellites", x, y);
y += theme::kLineHeight;
}
c.setTextColor(s.fix == FixType::None ? theme::kWarning : theme::kMessage);
c.drawString(fixLabel(s.fix), x, y + 4);
c.setFont(&fonts::small);
c.setTextColor(theme::kMuted);
c.drawString("filled: in use", x, area.y + area.h - 20);
}
} // namespace roro
+33
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@@ -0,0 +1,33 @@
#pragma once
#include <string>
#include "app.h"
#include "services/gnss_service.h"
#include "settings.h"
namespace roro {
// GNSS (see docs/milestones/M2.md, Q59): the Position view, and the Sky view with every satellite
// in view placed by direction and elevation. Tab switches between them.
class GnssApp : public App {
public:
GnssApp(GnssService& gnss, const Settings& settings) : gnss_(gnss), settings_(settings) {}
void onEnter() override { requestRedraw(); }
bool onKey(const KeyEvent& e) override;
void update(uint32_t nowMs) override;
void draw(Canvas& c) override;
private:
void drawPosition(Canvas& c);
void drawSky(Canvas& c);
GnssService& gnss_;
const Settings& settings_;
bool sky_ = false;
uint32_t lastDrawMs_ = 0;
std::string refusal_; // why a Track couldn't start, shown for a few seconds
uint32_t refusalMs_ = 0;
};
} // namespace roro
+1 -1
View File
@@ -42,7 +42,7 @@ std::string lowered(std::string s) {
void IrcApp::onEnter() {
page_ = Page::Chat;
editing_ = false;
irc_.connect();
if (!irc_.stoppedByUser()) irc_.connect(); // stopped by hand: stay stopped, typing reconnects
view(current_);
}
+53 -6
View File
@@ -2,11 +2,14 @@
#include <M5Cardputer.h>
#include <SD.h>
#include <atomic>
#include <memory>
#include "app_manager.h"
#include "apps/demo_app.h"
#include "apps/gemini_app.h"
#include "apps/gnss_app.h"
#include "apps/irc_app.h"
#include "apps/launcher_app.h"
#include "apps/settings_app.h"
@@ -25,6 +28,8 @@
#include "services/irc_service.h"
#include "services/clock_service.h"
#include "services/debug_console.h"
#include "services/gemini_service.h"
#include "services/gnss_service.h"
#include "services/power_service.h"
#include "services/storage_service.h"
#include "services/update_service.h"
@@ -50,6 +55,8 @@ static BatteryService* battery;
static StorageService* storageService;
static PowerService* power;
static ClockService* clockService;
static GnssService* gnssService;
static GeminiService* geminiService;
static SavedNetworks* savedNetworks;
static WifiService* wifi;
static IrcService* irc;
@@ -88,6 +95,15 @@ static StatusInfo currentStatus() {
s.sdLevel = storageState.level;
s.compose = keyMapper.pendingCompose();
s.unread = irc->totalUnread();
if (gnssService && gnssService->on()) {
const auto& g = gnssService->state();
bool fresh = gnssService->receiving(millis());
s.gnss = !fresh || g.fix == gnss::FixType::None ? StatusInfo::Gnss::Searching
: g.fix == gnss::FixType::TwoD ? StatusInfo::Gnss::TwoD
: StatusInfo::Gnss::ThreeD;
s.gnssSatellites = g.satellitesUsed;
s.tracking = gnssService->tracking();
}
using WifiState = WifiController::State;
switch (wifi->state()) {
case WifiState::Connected: {
@@ -107,6 +123,9 @@ static StatusInfo currentStatus() {
// (UpdateService::tick) decides instead, and an unconfirmed image stays PENDING_VERIFY.
extern "C" bool verifyRollbackLater() { return true; } // C linkage, or the weak default wins
// The main loop's stack: Arduino's default is 8 KB; the measured peak is 3 KB (M2).
size_t getArduinoLoopTaskStackSize() { return 6144; }
static void setupSafeMode(int crashes);
void setup() {
@@ -115,7 +134,7 @@ void setup() {
int crashes = crash_report::noteBoot(nvs);
safeMode = SafeMode::active(crashes);
Serial.setRxBufferSize(2 * FileReceiver::kChunk); // before the port opens; sd put sends 1 chunk at a time
Serial.setTxBufferSize(2048); // the console skips Serial when it's full: room for a burst like `tasks`
Serial.setTxBufferSize(1024); // the console skips Serial when it's full: room for a burst like `tasks`
auto cfg = M5.config();
M5Cardputer.begin(cfg, true);
@@ -129,6 +148,8 @@ void setup() {
storageService = new StorageService(bus);
power = new PowerService(settings);
clockService = new ClockService(settings, bus);
geminiService = new GeminiService(nvs, *storageService, *clockService, bus);
gnssService = new GnssService(settings, *clockService, *storageService, bus);
savedNetworks = new SavedNetworks(nvs);
savedNetworks->load();
wifi = new WifiService(settings, *savedNetworks, *clockService);
@@ -139,6 +160,7 @@ void setup() {
services.add(*power);
services.add(*clockService);
services.add(*battery);
services.add(*gnssService);
services.add(*storageService);
services.add(*wifi);
services.add(*irc);
@@ -152,6 +174,8 @@ void setup() {
launcher.setManager(*apps);
apps->registerApp({"irc", "IRC", false, new IrcApp(*irc, *clockService, bus)});
apps->registerApp({"wifi-tools", "Wi-Fi Tools", false, new WifiToolsApp(*wifi, *storageService, *clockService)});
apps->registerApp({"gnss", "GNSS", false, new GnssApp(*gnssService, settings)});
apps->registerApp({"gemini", "Gemini", false, new GeminiApp(*geminiService)});
apps->registerApp({"settings", "Settings", false,
new SettingsApp({settings, bus, *apps, *battery, *storageService, *clockService, *wifi, *savedNetworks, *update})});
apps->registerApp({"demo", "Widget demo", true, new DemoApp(bus)});
@@ -323,11 +347,13 @@ static const char* const kHelp =
"reboot restart\n"
"boot other restart into the other app slot (manual Rollback)\n"
"log level <0-5> ESP-IDF log level (0 none ... 5 verbose)\n"
"gnss status | gnss restart | gnss track start|stop | gnss nmea on|off | gnss send <sentence without $ and checksum>\n"
"crash the last crash: firmware, reason, task, backtrace\n"
"coredump erase forget the core dump in flash\n"
"key <name|char> press a key: up down left right select back home, or one character\n"
"key <name|char> press a key: up down left right select back home del tab space, or one character\n"
"wifi status | wifi add <ssid><TAB><password>\n"
"irc start | irc dump | irc say <buffer> <text>\n"
"gemini get <url> fetch a Gemini page and report header, size, certificate, heap\n"
"irc start | irc stop | irc dump | irc say <buffer> <text>\n"
"ls [folder] | rm <path> | install <path.ota> (Update from SD)\n"
"sd list | cat <path> | log <text> | burst | sound on|off | short | normal\n"
#ifdef RORO_DEBUG
@@ -384,6 +410,16 @@ static void runCommand(String line) {
});
}
if (line.startsWith("install ")) update->installFromSd(line.substring(8).c_str()); // Update from SD
if (line == "gnss status" && gnssService) gnssService->printStatus(console, millis());
if ((line == "gnss nmea on" || line == "gnss nmea off") && gnssService) gnssService->setEcho(line.endsWith("on"));
if (line == "gnss restart" && gnssService) gnssService->restart(millis());
if (line == "gnss track start" && gnssService) {
std::string why = gnssService->startTrack(millis());
console.printf("gnss track: %s\n", why.empty() ? "recording" : why.c_str());
}
if (line == "gnss track stop" && gnssService) gnssService->stopTrack();
if (line.startsWith("gnss send ") && gnssService) // the checksum is added
console.println(gnssService->send(line.substring(10).c_str()) ? "gnss: sent" : "gnss: off");
if (line == "crash") crash_report::print(console, nvs);
if (line == "coredump erase") console.println(crash_report::erase() ? "coredump: erased" : "coredump: nothing to erase");
#ifdef RORO_DEBUG
@@ -394,11 +430,14 @@ static void runCommand(String line) {
if (line == "burst")
for (int i = 1; i <= 5; i++)
bus.publish(Event::withText(EventType::Notification, ("Burst " + String(i)).c_str(), 0));
if (line.startsWith("key ")) { // key up|down|left|right|select|back|home
if (line.startsWith("key ")) { // key up|down|left|right|select|back|home|del|tab
String k = line.substring(4);
Key key = k == "up" ? Key::Up : k == "down" ? Key::Down : k == "left" ? Key::Left
: k == "right" ? Key::Right : k == "back" ? Key::Back : k == "home" ? Key::Home : Key::Select;
KeyEvent ev = k.length() == 1 && k[0] > ' ' ? KeyEvent::character((unsigned char)k[0]) : KeyEvent::of(key);
: k == "right" ? Key::Right : k == "back" ? Key::Back : k == "home" ? Key::Home
: k == "del" ? Key::Delete : k == "tab" ? Key::Tab : Key::Select;
KeyEvent ev = k == "space" ? KeyEvent::character(' ')
: k.length() == 1 && k[0] > ' ' ? KeyEvent::character((unsigned char)k[0])
: KeyEvent::of(key);
if (!power->onKey(millis())) apps->handleKey(ev);
}
if (line.startsWith("wifi add ")) { // wifi add <ssid>\t<password>: credentials never touch the repo
@@ -431,7 +470,15 @@ static void runCommand(String line) {
storageService->requestListing();
listingWanted = true;
}
if (line.startsWith("gemini trust ")) { // gemini trust <host> <port> <sha256>: accept a changed certificate
char host[96] = "", fp[80] = "";
int port = 1965;
if (geminiService && sscanf(line.substring(13).c_str(), "%95s %d %79s", host, &port, fp) == 3) geminiService->trust(host, port, fp);
}
if (line.startsWith("gemini get "))
if (!geminiService || !geminiService->fetchToConsole(line.substring(11).c_str())) console.println("gemini: busy, or unavailable in Safe Mode");
if (line == "irc start") irc->connect();
if (line == "irc stop") irc->disconnect();
if (line.startsWith("irc say ")) { // irc say <buffer index> <text>
String rest = line.substring(8);
int space = rest.indexOf(' ');
+1 -1
View File
@@ -17,7 +17,7 @@ class Console : public Print {
using Print::write;
#ifdef RORO_DEBUG
static constexpr size_t kRingBytes = 6144;
static constexpr size_t kRingBytes = 4096;
// Also copies ESP-IDF's own log lines into the ring (they still reach the serial port).
void captureEspLogs();
+1 -23
View File
@@ -187,29 +187,7 @@ bool DebugConsole::binaryCommand(NetworkClient& client, const std::string& line)
return true;
}
bool DebugConsole::onStorage(std::function<void()> job) {
// Shared with the job, which outlives this wait if the card is missing and it never starts.
// Exactly one side wins the state change: the job (Queued -> Running) or the wait giving up
// (Queued -> Abandoned), so an abandoned job can never touch this stack frame.
enum : int { Queued, Running, Abandoned };
struct Run {
std::atomic<int> state{Queued};
SemaphoreHandle_t done = xSemaphoreCreateBinary();
~Run() { vSemaphoreDelete(done); }
};
auto run = std::make_shared<Run>();
storage_.runJob([run, job]() {
int expected = Queued;
if (!run->state.compare_exchange_strong(expected, Running)) return;
job();
xSemaphoreGive(run->done);
});
for (int waited = 0; xSemaphoreTake(run->done, pdMS_TO_TICKS(500)) != pdTRUE; waited += 500) {
int expected = Queued;
if (waited >= 5000 && run->state.compare_exchange_strong(expected, Abandoned)) return false;
}
return true;
}
bool DebugConsole::onStorage(std::function<void()> job) { return storage_.runAndWait(std::move(job)); }
void DebugConsole::get(NetworkClient& client, const std::string& path) {
bool ran = onStorage([&]() {
+803
View File
@@ -0,0 +1,803 @@
#include "services/gemini_service.h"
#include <NetworkClientSecure.h>
#include <SD.h>
#include <WiFi.h>
#include <esp_heap_caps.h>
#include <algorithm>
#include <map>
#include "gemini_url.h"
#include "gemtext.h"
#include "platform/console.h"
#include "sha256.h"
#include "storage_paths.h"
namespace roro {
using gemini::TextBuffer;
namespace {
constexpr uint32_t kIdleTimeoutMs = 15000;
constexpr const char* kSavedRoot = "/gemini/saved";
constexpr const char* kSavedMark = "> Saved from "; // first line of a Saved Page (Q82)
constexpr const char* kDefaults =
"## Start here\n"
"=> gemini://geminiprotocol.net/ Project Gemini\n"
"=> gemini://kennedy.gemi.dev/ Kennedy: search Geminispace\n"
"=> gemini://skyjake.fi/~Cosmos/ Cosmos: what's new on Geminispace\n"
"=> gemini://bbs.geminispace.org/ Bubble: a bulletin board\n";
std::string hex(const uint8_t* data, size_t len) {
static const char* digits = "0123456789abcdef";
std::string out;
for (size_t i = 0; i < len; i++) {
out += digits[data[i] >> 4];
out += digits[data[i] & 15];
}
return out;
}
// Folders for a file path, one at a time (SD.mkdir makes one level).
void makeParents(const std::string& path) {
for (size_t slash = path.find('/', 1); slash != std::string::npos; slash = path.find('/', slash + 1)) {
std::string dir = path.substr(0, slash);
if (!SD.exists(dir.c_str())) SD.mkdir(dir.c_str());
}
}
// Copies `from` to `to`, optionally after a first line. On the storage task.
bool copyFile(const char* from, const std::string& to, const std::string& firstLine) {
File in = SD.open(from);
if (!in) return false;
makeParents(to);
File out = SD.open(to.c_str(), FILE_WRITE);
if (!out) return false;
bool ok = firstLine.empty() || out.print((firstLine + "\n").c_str()) > 0;
uint8_t buf[512];
int n;
while (ok && (n = in.read(buf, sizeof buf)) > 0) ok = out.write(buf, n) == static_cast<size_t>(n);
out.close();
in.close();
if (!ok) SD.remove(to.c_str());
return ok;
}
struct SavedEntry {
std::string path; // /gemini/saved/host/…/name.gmi
time_t when;
};
void listSaved(const std::string& dir, std::vector<SavedEntry>& out) {
File d = SD.open(dir.c_str());
if (!d || !d.isDirectory()) return;
for (File f = d.openNextFile(); f && out.size() < 200; f = d.openNextFile()) {
std::string path = dir + "/" + f.name();
if (f.isDirectory()) listSaved(path, out);
else out.push_back({path, f.getLastWrite()});
}
}
} // namespace
const char* GeminiService::slotPath(int slot) {
static const char* const kPaths[] = {"/gemini/cache/page0.gmi", "/gemini/cache/page1.gmi", "/gemini/cache/work.gmi"};
return kPaths[slot];
}
const char* GeminiService::cacheOf(const std::string& url) const {
for (int s = 0; s < 3; s++)
if (!url.empty() && slotUrl_[s] == url) return slotPath(s);
return nullptr;
}
GeminiService::GeminiService(KeyValueStore& store, StorageService& storage, ClockService& clock, EventBus& bus)
: store_(store), storage_(storage), clock_(clock), bus_(bus), lock_(xSemaphoreCreateMutex()) {}
// NVS keys are 15 characters at most: "gm" and 12 hex digits of SHA-256("host:port").
std::string GeminiService::pinKey(const std::string& host, int port) const {
std::string id = host + ":" + std::to_string(port);
uint8_t digest[32];
Sha256::hash(reinterpret_cast<const uint8_t*>(id.data()), id.size(), digest);
return "gm" + hex(digest, 6);
}
void GeminiService::trust(const std::string& host, int port, const std::string& fingerprint) {
store_.putString(pinKey(host, port).c_str(), fingerprint);
}
std::string GeminiService::now() const {
int64_t t = clock_.utcNow();
return t < 0 ? "an unknown date" : ClockModel::formatLocalDate(t) + " " + ClockModel::formatLocalTime(t);
}
void GeminiService::notify(const std::string& text) {
bus_.publish(Event::withText(EventType::Notification, text.c_str(), static_cast<int32_t>(NotificationLevel::Info)));
}
bool GeminiService::start(Job job) {
if (busy_) return false;
busy_ = true;
ready_ = messageReady_ = cancel_ = false;
job_ = job;
if (xTaskCreate(taskEntry, "gemini", 6144, this, 1, nullptr) != pdPASS) { // peak 3.6 KB (step 1)
busy_ = false;
return false;
}
return true;
}
bool GeminiService::fetch(const std::string& url, bool preferSaved) {
if (busy_) return false;
arg_ = url;
preferSaved_ = preferSaved;
return start(Job::Fetch);
}
bool GeminiService::fetchToConsole(const std::string& url) {
if (busy_) return false;
toConsole_ = true;
if (!fetch(url)) {
toConsole_ = false;
return false;
}
return true;
}
bool GeminiService::save(const std::string& url) {
if (busy_) return false;
arg_ = url;
return start(Job::Save);
}
bool GeminiService::saveWithLinks(const std::string& url, std::vector<std::string> links) {
if (busy_) return false;
arg_ = url;
links_ = std::move(links);
return start(Job::SaveWithLinks);
}
bool GeminiService::refresh(const std::string& savedPath) {
if (busy_) return false;
arg_ = savedPath;
return start(Job::Refresh);
}
bool GeminiService::deleteSaved(const std::string& savedPath) {
if (busy_) return false;
arg_ = savedPath;
return start(Job::Delete);
}
bool GeminiService::addBookmark(const std::string& url, const std::string& title) {
if (busy_) return false;
arg_ = url;
arg2_ = title;
return start(Job::Bookmark);
}
bool GeminiService::download(const std::string& url) {
if (busy_) return false;
arg_ = url;
return start(Job::Download);
}
bool GeminiService::loadWindow(const GeminiPage& page, size_t firstLine) {
if (busy_ || page.backing.empty()) return false;
windowPage_ = GeminiPage();
windowPage_.backing = page.backing;
windowPage_.totalLines = page.totalLines;
windowPage_.lineIndex = page.lineIndex;
windowLine_ = firstLine;
// The App drops its current window once the new one is in: count that memory as coming back.
windowReleasing_ = page.text.bytes() + page.text.lineCount() * 8;
return start(Job::Window);
}
bool GeminiService::takeResult(GeminiPage& out) {
if (!ready_) return false;
xSemaphoreTake(lock_, portMAX_DELAY);
out = std::move(result_);
result_ = GeminiPage();
ready_ = false;
xSemaphoreGive(lock_);
return true;
}
bool GeminiService::takeMessage(std::string& out) {
if (!messageReady_) return false;
xSemaphoreTake(lock_, portMAX_DELAY);
out = std::move(message_);
messageReady_ = false;
xSemaphoreGive(lock_);
return true;
}
void GeminiService::finishWithMessage(const std::string& text) {
xSemaphoreTake(lock_, portMAX_DELAY);
message_ = text;
messageReady_ = true;
xSemaphoreGive(lock_);
}
void GeminiService::taskEntry(void* self) {
static_cast<GeminiService*>(self)->run();
vTaskDelete(nullptr);
}
void GeminiService::run() {
switch (job_) {
case Job::Fetch: {
GeminiPage page;
runFetch(page);
if (!toConsole_) {
xSemaphoreTake(lock_, portMAX_DELAY);
result_ = std::move(page);
ready_ = true;
xSemaphoreGive(lock_);
}
toConsole_ = false;
break;
}
case Job::Save: {
std::string why = saveCached(arg_);
finishWithMessage(!why.empty() ? why : replaced_ ? "Saved again (replaced the older copy)" : "Saved for offline reading");
break;
}
case Job::SaveWithLinks: {
std::string why = saveCached(arg_);
if (!why.empty()) {
finishWithMessage(why);
break;
}
int saved = 1, failed = 0, total = static_cast<int>(links_.size()) + 1;
notify("Saving " + std::to_string(total) + " pages for offline reading");
for (const std::string& link : links_) {
if (cancel_) break;
GeminiPage page;
fetchFollowing(link, page, false, kWorkSlot);
bool text = page.outcome == GeminiPage::Outcome::Ok &&
page.header.category() == gemini::Category::Success && page.header.mimeType() == "text/gemini";
if (text && saveCached(link).empty()) saved++;
else failed++;
if ((saved + failed) % 5 == 0) notify("Saved " + std::to_string(saved) + " of " + std::to_string(total));
}
std::string done = "Saved " + std::to_string(saved) + " of " + std::to_string(total) + " pages" +
(failed ? " (" + std::to_string(failed) + " not gemtext or failed)" : "");
notify(done);
finishWithMessage(done);
break;
}
case Job::Refresh: {
// Only the first line: where it came from. (Loading the whole page here, next to the
// App's copy and a TLS connection, once took the heap down to 436 bytes.)
std::string from = savedFrom(arg_);
if (from.empty()) {
finishWithMessage("Not a Saved Page");
break;
}
GeminiPage page;
fetchFollowing(from, page, false, kWorkSlot);
std::string why = page.outcome != GeminiPage::Outcome::Ok ? page.error
: page.header.category() != gemini::Category::Success ? page.header.meta
: saveCached(from);
finishWithMessage(why.empty() ? "Refreshed" : "Not refreshed: " + why);
break;
}
case Job::Window: {
// Q86 both ways: old and new together above the transient floor for a moment, and the
// new one alone (once the old is dropped) leaving the steady floor.
size_t free = esp_get_free_heap_size();
size_t transient = free > kTransientFloor + TextBuffer::kChunk ? free - kTransientFloor - TextBuffer::kChunk : 0;
size_t steady = free + windowReleasing_ > kSteadyFloor + TextBuffer::kChunk
? free + windowReleasing_ - kSteadyFloor - TextBuffer::kChunk
: 0;
size_t budget = std::min(transient, steady);
GeminiPage page = std::move(windowPage_);
page.windowStart = windowLine_ - windowLine_ % kIndexEvery;
page.windowed = true;
page.windowOf = page.backing;
page.outcome = GeminiPage::Outcome::Ok;
readWindow(page, page.windowStart, std::min(budget, kMaxBody));
console.printf("gemini: window from line %u: %u lines\n", (unsigned)page.windowStart,
(unsigned)page.text.lineCount());
xSemaphoreTake(lock_, portMAX_DELAY);
result_ = std::move(page);
ready_ = true;
xSemaphoreGive(lock_);
break;
}
case Job::Delete: {
bool removed = false;
bool ran = storage_.runAndWait([&]() { removed = SD.remove(arg_.c_str()); });
finishWithMessage(!ran ? "No SD card" : removed ? "Deleted" : "Not deleted");
break;
}
case Job::Bookmark: {
std::string line = "=> " + arg_ + (arg2_.empty() ? "" : " " + arg2_), already;
bool ran = storage_.runAndWait([&]() {
File f = SD.open(kBookmarks);
while (f && f.available()) {
String l = f.readStringUntil('\n');
if (l.startsWith(("=> " + arg_ + " ").c_str()) || l == ("=> " + arg_).c_str()) already = "yes";
}
if (f) f.close();
if (!already.empty()) return;
makeParents(kBookmarks);
File out = SD.open(kBookmarks, FILE_APPEND);
if (out) {
out.print((line + "\n").c_str());
out.close();
}
});
finishWithMessage(!ran ? "No SD card" : !already.empty() ? "Already bookmarked" : "Bookmarked");
break;
}
case Job::Download: {
gemini::Url u;
std::string name = gemini::parseUrl(arg_, u) ? u.path.substr(u.path.rfind('/') + 1) : "";
if (name.empty()) name = "download";
std::string to = "/gemini/downloads/" + storage::sanitize(name);
bool copied = false;
if (const char* from = cacheOf(arg_)) storage_.runAndWait([&]() { copied = copyFile(from, to, ""); });
finishWithMessage(copied ? "Saved to " + to : "Not saved (no card, or the page is gone)");
break;
}
}
busy_ = false;
}
void GeminiService::runFetch(GeminiPage& page) {
page.requested = arg_;
size_t before = esp_get_free_heap_size();
lowest_ = before;
uint32_t started = millis();
const std::string& url = arg_;
if (url == kStartUrl) composeStart(page);
else if (url.rfind("file://", 0) == 0) openSaved(url.substr(7), page);
else {
// Inside a Saved Page, a link to another Saved Page opens the saved copy (Q84).
bool savedCopy = false;
if (preferSaved_) {
std::string path = gemini::savedPath(url);
storage_.runAndWait([&]() { savedCopy = SD.exists(path.c_str()); });
if (savedCopy) openSaved(path, page);
}
if (!savedCopy) {
if (preferSaved_ && !WiFi.isConnected()) {
page.url = url;
page.error = "Not saved, and offline";
} else
{
int slot = nextDisplay_;
fetchFollowing(url, page, true, slot);
if (page.outcome == GeminiPage::Outcome::Ok && !page.cachePath.empty())
nextDisplay_ = 1 - slot; // keep this one: it backs the page on screen
}
}
}
page.ms = millis() - started;
if (toConsole_) report(page, before, lowest_);
}
// One request, following up to kMaxRedirects redirects.
void GeminiService::fetchFollowing(const std::string& first, GeminiPage& page, bool loadIntoRam, int slot) {
std::string url = first;
size_t free = esp_get_free_heap_size();
if (free < kStartFloor) { // Q86, for every fetch: pages, saves, refreshes
page.url = url;
page.outcome = GeminiPage::Outcome::Failed;
page.error = "Not enough memory (" + std::to_string(free / 1024) + " KB free): stop IRC or retry";
return;
}
for (int hop = 0;; hop++) {
fetchOne(url, page, loadIntoRam, slot);
if (page.outcome != GeminiPage::Outcome::Ok || page.header.category() != gemini::Category::Redirect) break;
std::string next = gemini::resolve(url, page.header.meta);
if (!gemini::isGemini(next)) {
page.outcome = GeminiPage::Outcome::Failed;
page.error = "Redirect to another protocol: " + next;
break;
}
if (hop + 1 > kMaxRedirects) {
page.outcome = GeminiPage::Outcome::Failed;
page.error = "Too many redirects";
break;
}
url = next;
}
page.url = url;
}
// A Saved Page's first line: "> Saved from <url> on <date>" (Q82). Empty if it isn't one.
std::string GeminiService::savedFirstLine(const std::string& path) {
std::string first;
storage_.runAndWait([&]() {
File f = SD.open(path.c_str());
if (!f) return;
char buf[600];
size_t n = f.readBytesUntil('\n', buf, sizeof buf - 1);
buf[n] = 0;
first = buf;
f.close();
});
if (!first.empty() && first.back() == '\r') first.pop_back();
return first.rfind(kSavedMark, 0) == 0 ? first : "";
}
std::string GeminiService::savedFrom(const std::string& path) {
std::string first = savedFirstLine(path);
if (first.empty()) return "";
std::string rest = first.substr(strlen(kSavedMark));
return rest.substr(0, rest.find(" on "));
}
// A Saved Page from the card, as far as memory allows; its first line says where it came from.
void GeminiService::openSaved(const std::string& path, GeminiPage& page) {
page.url = "file://" + path;
page.header.status = 20;
page.header.meta = "text/gemini";
bool found = false;
storage_.runAndWait([&]() { found = SD.exists(path.c_str()); });
std::string first = found ? savedFirstLine(path) : "";
if (!found) {
page.error = "This Saved Page is gone";
return;
}
if (first.rfind(kSavedMark, 0) == 0) {
std::string rest = first.substr(strlen(kSavedMark));
size_t on = rest.find(" on ");
page.savedFrom = rest.substr(0, on);
page.savedOn = on == std::string::npos ? "" : rest.substr(on + 4);
}
loadFromCard(page, esp_get_free_heap_size(), path);
page.outcome = GeminiPage::Outcome::Ok;
}
// about:start (Q78, Q84): bookmarks, then Saved Pages by capsule, newest first, then defaults.
void GeminiService::composeStart(GeminiPage& page) {
std::string doc = "# Gemini\nTab picks a link, Enter follows it, Back returns, g types an address. "
"On a page: b bookmarks it, s saves it to read offline, S with the pages it links to.\n";
std::string bookmarks;
std::vector<SavedEntry> saved;
bool card = storage_.runAndWait([&]() {
File f = SD.open(kBookmarks);
while (f && f.available() && bookmarks.size() < 8192) {
String l = f.readStringUntil('\n');
if (l.startsWith("=>")) bookmarks += std::string(l.c_str()) + "\n";
}
if (f) f.close();
listSaved(kSavedRoot, saved);
});
doc += "## Bookmarks\n";
doc += !card ? "No SD card: bookmarks and Saved Pages live on it.\n"
: bookmarks.empty() ? "None yet: b on a page adds it here.\n" : bookmarks;
if (!saved.empty()) {
// Capsules ordered by their newest Saved Page, pages newest first within each.
std::sort(saved.begin(), saved.end(), [](const SavedEntry& a, const SavedEntry& b) { return a.when > b.when; });
std::vector<std::string> order;
std::map<std::string, std::string> byHost;
size_t root = strlen(kSavedRoot) + 1;
for (auto& e : saved) {
std::string rel = e.path.substr(root);
std::string host = rel.substr(0, rel.find('/'));
if (!byHost.count(host)) order.push_back(host);
std::string label = rel.substr(host.size() + 1);
if (label.size() > 4 && label.compare(label.size() - 4, 4, ".gmi") == 0) label.resize(label.size() - 4);
char day[24] = "";
if (e.when > 1000000000) {
struct tm t;
localtime_r(&e.when, &t);
strftime(day, sizeof day, " (%d %b)", &t);
}
byHost[host] += "=> file://" + e.path + " " + label + day + "\n";
}
doc += "## Saved pages\n";
for (auto& host : order) doc += "### " + host + "\n" + byHost[host];
}
doc += kDefaults;
page.url = kStartUrl;
page.header.status = 20;
page.header.meta = "text/gemini";
page.text.append(doc.data(), doc.size());
page.text.finish();
page.outcome = GeminiPage::Outcome::Ok;
}
// The cached body of `url` (fetched again if the cache holds something else) to its Saved Page.
std::string GeminiService::saveCached(const std::string& url) {
if (!gemini::isGemini(url)) return "Only Gemini pages can be saved";
if (!storage_.state().present) return "No SD card";
const char* from = cacheOf(url);
if (!from) {
GeminiPage page;
fetchFollowing(url, page, false, kWorkSlot);
if (page.outcome != GeminiPage::Outcome::Ok) return page.error;
if (page.header.category() != gemini::Category::Success) return page.header.meta;
from = cacheOf(page.url);
if (!from) return "Not saved";
}
std::string to = gemini::savedPath(url);
bool existed = false, ok = false;
replaced_ = false;
std::string header = std::string(kSavedMark) + url + " on " + now();
storage_.runAndWait([&]() {
existed = SD.exists(to.c_str());
ok = copyFile(from, to, header);
});
if (!ok) return "Writing to the SD card failed";
replaced_ = existed; // Q82: saving again replaces it, and says so
return "";
}
void GeminiService::fetchOne(const std::string& url, GeminiPage& page, bool loadIntoRam, int slot) {
page.outcome = GeminiPage::Outcome::Failed;
page.text.clear();
page.truncated = false;
gemini::Url u;
if (!gemini::parseUrl(url, u) || u.scheme != "gemini") {
page.error = "Not a Gemini URL: " + url;
return;
}
auto track = [this]() { lowest_ = std::min<size_t>(lowest_, esp_get_free_heap_size()); };
size_t freeBefore = esp_get_free_heap_size(); // what's left once the connection closes again
NetworkClientSecure tls;
tls.setInsecure(); // trust on first use: the pinned fingerprint is what counts (Q71)
tls.setTimeout(15);
if (!tls.connect(u.host.c_str(), u.portOrDefault())) {
page.error = "Cannot connect to " + u.host;
return;
}
track();
uint8_t sha[32];
if (!tls.getFingerprintSHA256(sha)) {
page.error = "No certificate from " + u.host;
return;
}
std::string presented = hex(sha, sizeof sha), pinned;
std::string key = pinKey(u.host, u.portOrDefault());
if (!store_.getString(key.c_str(), pinned)) store_.putString(key.c_str(), presented); // first use
else if (pinned != presented) {
page.outcome = GeminiPage::Outcome::CertificateChanged;
page.host = u.host;
page.port = u.portOrDefault();
page.pinned = pinned;
page.presented = presented;
page.error = "The certificate of " + u.host + " changed";
return;
}
tls.print((gemini::requestUrl(url) + "\r\n").c_str());
std::string header;
bool inBody = false;
uint32_t last = millis();
char buf[512];
while (!cancel_) {
int n = tls.available() ? tls.read(reinterpret_cast<uint8_t*>(buf), sizeof buf) : 0;
if (n <= 0) {
if (!tls.connected()) break;
if (millis() - last > kIdleTimeoutMs) {
page.error = "Timed out";
return;
}
delay(5);
continue;
}
last = millis();
int i = 0;
while (!inBody && i < n) {
char c = buf[i++];
if (c == '\n') inBody = true;
else if (c != '\r') header += c;
if (header.size() > 1100) {
page.error = "Malformed response header";
return;
}
}
if (!inBody) continue;
if (!gemini::parseHeader(header, page.header)) {
page.error = "Malformed response header";
return;
}
if (page.header.category() != gemini::Category::Success) break; // no body to read
// With a card, the body goes there while the connection is open (only 4 KB in RAM),
// and comes back into RAM once the connection's memory is free again.
if (storage_.state().present) {
slotUrl_[slot].clear();
if (!receiveToCard(tls, buf + i, n - i, page, slot)) return;
tls.stop();
slotUrl_[slot] = url;
if (loadIntoRam) loadFromCard(page, freeBefore, slotPath(slot));
page.outcome = GeminiPage::Outcome::Ok;
return;
}
// Q86, two floors: once the connection closes, its ~50 KB comes back, so the page may use
// what was free before minus the steady floor; meanwhile the heap must stay above the
// transient floor. Both counted with the next 4 KB chunk and the line index.
size_t take = std::min<size_t>(n - i, kMaxBody - page.text.bytes());
size_t pageCost = page.text.bytes() + page.text.lineCount() * 8 + TextBuffer::kChunk + take;
if (take < static_cast<size_t>(n - i)) page.truncatedWhy = "longer than 64 KB";
else if (freeBefore < kSteadyFloor + pageCost) page.truncatedWhy = "not enough memory to keep it";
else if (esp_get_free_heap_size() < kTransientFloor + TextBuffer::kChunk + take)
page.truncatedWhy = "not enough memory while receiving";
if (!page.truncatedWhy.empty()) {
page.truncated = true;
break;
}
page.text.append(buf + i, take);
track();
}
if (cancel_) {
page.error = "Cancelled";
return;
}
if (!inBody && !gemini::parseHeader(header, page.header)) { // a header with no line end
page.error = header.empty() ? "Empty response" : "Malformed response header";
return;
}
page.text.finish();
page.outcome = GeminiPage::Outcome::Ok;
}
// Streams the rest of the body to a cache file in 1 KB pieces, each written by the storage task:
// with IRC's TLS connection and this one both open, every KB of RAM counts (Q86).
bool GeminiService::receiveToCard(NetworkClientSecure& tls, const char* first, size_t len, GeminiPage& page, int slot) {
struct Cache {
File file;
};
auto cache = std::make_shared<Cache>();
bool opened = storage_.runAndWait([cache, slot]() {
SD.mkdir("/gemini");
SD.mkdir("/gemini/cache");
cache->file = SD.open(slotPath(slot), FILE_WRITE);
});
if (!opened || !cache->file) {
page.error = "Can't write to the SD card";
return false;
}
std::string pending(first, len);
constexpr size_t kPiece = 1024;
pending.reserve(kPiece + 512);
bool ok = true;
auto flush = [&]() {
if (pending.empty() || !ok) return;
ok = storage_.runAndWait([cache, &pending, &ok]() {
ok = cache->file.write(reinterpret_cast<const uint8_t*>(pending.data()), pending.size()) == pending.size();
}) && ok;
page.receivedBytes += pending.size();
pending.clear();
};
uint32_t last = millis();
char buf[512];
while (!cancel_ && ok) {
if (pending.size() >= kPiece) flush();
if (page.receivedBytes + pending.size() >= kMaxOnCard) {
page.truncated = true;
page.truncatedWhy = "longer than 1 MB";
break;
}
int n = tls.available() ? tls.read(reinterpret_cast<uint8_t*>(buf), sizeof buf) : 0;
if (n <= 0) {
if (!tls.connected()) break;
if (millis() - last > kIdleTimeoutMs) break; // keep what came
delay(5);
continue;
}
last = millis();
pending.append(buf, n);
lowest_ = std::min<size_t>(lowest_, esp_get_free_heap_size());
}
flush();
storage_.runAndWait([cache]() { cache->file.close(); });
if (cancel_) page.error = "Cancelled";
else if (!ok) page.error = "Writing to the SD card failed";
else page.cachePath = slotPath(slot);
return !cancel_ && ok;
}
// Back into RAM, now that the connection's memory is free again: one pass over the file counts
// its lines and indexes every kIndexEvery-th, and loads lines while the steady floor allows (Q86).
// If they don't all fit, the page is windowed: the App asks for other windows as you scroll.
void GeminiService::loadFromCard(GeminiPage& page, size_t freeBefore, const std::string& path) {
size_t budget = freeBefore > kSteadyFloor + TextBuffer::kChunk ? freeBefore - kSteadyFloor - TextBuffer::kChunk : 0;
budget = std::min(budget, kMaxBody);
page.backing = path;
page.lineIndex.clear();
page.totalLines = 0;
page.windowStart = 0;
bool loading = true;
storage_.runAndWait([&]() {
File f = SD.open(path.c_str());
if (!f) return;
std::string line;
uint32_t offset = 0, lineStart = 0;
bool pre = false;
auto endLine = [&]() {
if (page.totalLines % kIndexEvery == 0) page.lineIndex.push_back(lineStart | (pre ? 0x80000000u : 0));
if (line.compare(0, 3, "```") == 0) pre = !pre;
if (loading) {
if (page.text.bytes() + page.text.lineCount() * 8 + line.size() + 1 > budget) loading = false;
else {
line += '\n';
page.text.append(line.data(), line.size());
}
}
page.totalLines++;
line.clear();
};
char buf[512];
int n;
while ((n = f.read(reinterpret_cast<uint8_t*>(buf), sizeof buf)) > 0) {
for (int i = 0; i < n; i++, offset++) {
if (buf[i] == '\n') {
endLine();
lineStart = offset + 1;
} else if (line.size() < kMaxLineBytes) line += buf[i];
}
}
if (!line.empty()) endLine();
f.close();
});
page.text.finish();
page.windowed = !loading;
if (page.windowed)
console.printf("gemini: %s is windowed: %u of %u lines in memory\n", path.c_str(),
(unsigned)page.text.lineCount(), (unsigned)page.totalLines);
}
// Lines from `firstLine` on, from the page's file, as many as `budget` allows.
void GeminiService::readWindow(GeminiPage& page, size_t firstLine, size_t budget) {
size_t entry = firstLine / kIndexEvery;
if (entry >= page.lineIndex.size()) return;
storage_.runAndWait([&]() {
File f = SD.open(page.backing.c_str());
if (!f || !f.seek(page.lineIndex[entry] & 0x7FFFFFFFu)) return;
size_t lineNo = entry * kIndexEvery;
std::string line;
char buf[512];
int n;
bool done = false;
while (!done && (n = f.read(reinterpret_cast<uint8_t*>(buf), sizeof buf)) > 0) {
for (int i = 0; i < n && !done; i++) {
if (buf[i] != '\n') {
if (line.size() < kMaxLineBytes) line += buf[i];
continue;
}
if (lineNo >= firstLine) {
if (page.text.bytes() + page.text.lineCount() * 8 + line.size() + 1 > budget) done = true;
else {
line += '\n';
page.text.append(line.data(), line.size());
}
}
lineNo++;
line.clear();
}
}
if (!done && !line.empty() && lineNo >= firstLine) page.text.append(line.data(), line.size());
f.close();
});
page.text.finish();
}
void GeminiService::report(const GeminiPage& page, size_t heapBefore, size_t heapLowest) {
console.printf("gemini: %s -> %s, %lu ms\n", page.requested.c_str(), page.url.c_str(), (unsigned long)page.ms);
if (page.outcome != GeminiPage::Outcome::Ok) console.printf("gemini: %s\n", page.error.c_str());
else console.printf("gemini: %d %s, %u bytes, %u lines%s\n", page.header.status, page.header.meta.c_str(),
(unsigned)page.text.bytes(), (unsigned)page.text.lineCount(),
page.truncated ? (" (truncated: " + page.truncatedWhy + ")").c_str() : "");
if (page.outcome == GeminiPage::Outcome::CertificateChanged)
console.printf("gemini: pinned %s\ngemini: now %s\n", page.pinned.c_str(), page.presented.c_str());
for (size_t i = 0; i < page.text.lineCount() && i < 6; i++) console.printf(" %s\n", page.text.line(i).substr(0, 100).c_str());
if (!page.cachePath.empty())
console.printf("gemini: %u bytes on the card in %s\n", (unsigned)page.receivedBytes, page.cachePath.c_str());
console.printf("gemini: heap %u before, %u lowest seen, %u after\n", (unsigned)heapBefore, (unsigned)heapLowest,
(unsigned)esp_get_free_heap_size());
}
} // namespace roro
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#pragma once
#include <freertos/FreeRTOS.h>
#include <freertos/semphr.h>
#include <string>
#include <vector>
#include "event_bus.h"
#include "gemini_response.h"
#include "key_value_store.h"
#include "services/clock_service.h"
#include "services/storage_service.h"
#include "text_buffer.h"
class NetworkClientSecure;
namespace roro {
// What a fetch came back with.
struct GeminiPage {
enum class Outcome { Ok, Failed, CertificateChanged };
Outcome outcome = Outcome::Failed;
std::string requested; // what was asked for
std::string url; // where it ended up, after redirects (file://… for a Saved Page)
gemini::Header header; // the final response's header
gemini::TextBuffer text; // 2x only: the body as lines, up to kMaxBody
bool truncated = false; // the body was cut: see truncatedWhy
std::string truncatedWhy;
std::string error; // Failed: why, for a human
std::string host; // CertificateChanged: whose, and both fingerprints
int port = 1965;
std::string pinned, presented;
std::string cachePath; // with a card: the whole body as received (Saved Pages copy it)
size_t receivedBytes = 0; // the whole body, which may be more than `text` holds
std::string savedFrom; // a Saved Page: the URL it was saved from (links resolve against it)
std::string savedOn; // and when, "2026-10-05 01:20"
uint32_t ms = 0;
// A page bigger than memory allows is read from its file as you scroll: `text` then holds
// lines [windowStart, windowStart + text.lineCount()) of totalLines. lineIndex has where every
// 64th line starts in the file (bit 31: inside a preformatted block there).
std::string backing; // the file the page is in (a cache file or a Saved Page)
bool windowed = false;
size_t totalLines = 0, windowStart = 0;
std::vector<uint32_t> lineIndex;
std::string windowOf; // a window result: the backing file it belongs to
// What relative links resolve against.
const std::string& base() const { return savedFrom.empty() ? url : savedFrom; }
};
// Gemini (docs/milestones/G1.md). Everything that touches the network or the SD card runs as one
// job at a time on a short-lived task of its own: a TLS handshake or a missing card can block for
// seconds, which the main loop's watchdog wouldn't allow, and an idle client should cost no stack.
// Certificates are trusted on first use, per host and port (Q71).
class GeminiService {
public:
static constexpr size_t kMaxBody = 64 * 1024; // Q74
static constexpr size_t kStartFloor = 55 * 1024; // Q86: no fetch below this
static constexpr size_t kSteadyFloor = 40 * 1024; // Q86: what must be left once the page is in
static constexpr size_t kTransientFloor = 20 * 1024; // Q86: while the TLS connection is open
static constexpr int kMaxRedirects = 5; // Q72
static constexpr size_t kMaxOnCard = 1024 * 1024; // a text page larger than this is cut
static constexpr int kMaxLinkedPages = 30; // Q83
static constexpr size_t kIndexEvery = 64; // lines between lineIndex entries
static constexpr size_t kMaxLineBytes = 8192; // longer lines are cut
static constexpr const char* kBookmarks = "/gemini/bookmarks.gmi";
static constexpr const char* kStartUrl = "about:start";
GeminiService(KeyValueStore& store, StorageService& storage, ClockService& clock, EventBus& bus);
// Pages: gemini://…, about:start (bookmarks, Saved Pages, defaults) or file:///gemini/saved/….
// `preferSaved`: open the Saved Page of that URL if there is one (inside a Saved Page, Q84).
bool fetch(const std::string& url, bool preferSaved = false);
// Actions; each reports one line through takeMessage().
bool save(const std::string& url); // s (Q82)
bool saveWithLinks(const std::string& url, std::vector<std::string> links); // S (Q83)
bool refresh(const std::string& savedPath); // r on a Saved Page
bool deleteSaved(const std::string& savedPath); // d on a Saved Page (Q85)
bool addBookmark(const std::string& url, const std::string& title); // b (Q77)
bool download(const std::string& url); // s on a non-text page (Q73)
// The window of a big page starting at `firstLine` (a multiple of kIndexEvery), from its file.
bool loadWindow(const GeminiPage& page, size_t firstLine);
bool busy() const { return busy_; }
bool takeResult(GeminiPage& out);
bool takeMessage(std::string& out);
void cancel() { cancel_ = true; }
// After the user accepts a changed certificate.
void trust(const std::string& host, int port, const std::string& fingerprint);
// `gemini get <url>`: the same fetch, reported on the console instead of to the App.
bool fetchToConsole(const std::string& url);
private:
enum class Job { Fetch, Save, SaveWithLinks, Refresh, Delete, Bookmark, Download, Window };
// Cache files: two take turns for pages on screen (the one shown is never overwritten by the
// next), one for jobs (saving linked pages, refreshing).
static constexpr int kWorkSlot = 2;
static const char* slotPath(int slot);
bool start(Job job);
static void taskEntry(void* self);
void run();
void runFetch(GeminiPage& page);
void fetchFollowing(const std::string& url, GeminiPage& page, bool loadIntoRam, int slot);
void fetchOne(const std::string& url, GeminiPage& page, bool loadIntoRam, int slot);
bool receiveToCard(::NetworkClientSecure& tls, const char* first, size_t len, GeminiPage& page, int slot);
void loadFromCard(GeminiPage& page, size_t freeBefore, const std::string& path);
void readWindow(GeminiPage& page, size_t firstLine, size_t budget);
void openSaved(const std::string& path, GeminiPage& page);
std::string savedFirstLine(const std::string& path);
std::string savedFrom(const std::string& path);
void composeStart(GeminiPage& page);
std::string saveCached(const std::string& url); // "" or what went wrong
const char* cacheOf(const std::string& url) const; // the cache file holding url's body, or nullptr
void finishWithMessage(const std::string& text);
void notify(const std::string& text);
void report(const GeminiPage& page, size_t heapBefore, size_t heapLowest);
std::string pinKey(const std::string& host, int port) const;
std::string now() const;
KeyValueStore& store_;
StorageService& storage_;
ClockService& clock_;
EventBus& bus_;
SemaphoreHandle_t lock_;
Job job_ = Job::Fetch;
std::string arg_, arg2_;
std::vector<std::string> links_;
bool preferSaved_ = false;
GeminiPage result_;
std::string message_;
std::string slotUrl_[3]; // the URL whose body each cache file holds
int nextDisplay_ = 0;
size_t windowLine_ = 0, windowReleasing_ = 0;
GeminiPage windowPage_;
bool replaced_ = false; // the last save replaced an older copy
volatile bool busy_ = false, ready_ = false, messageReady_ = false, cancel_ = false, toConsole_ = false;
size_t lowest_ = 0;
};
} // namespace roro
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#include "services/gnss_service.h"
#include <Arduino.h>
#include <SD.h>
#include <algorithm>
#include <cstdio>
#include "platform/console.h"
namespace roro {
namespace {
const char* fixName(gnss::FixType f) {
return f == gnss::FixType::ThreeD ? "3D" : f == gnss::FixType::TwoD ? "2D" : "none";
}
} // namespace
GnssService::GnssService(const Settings& settings, ClockService& clock, StorageService& storage, EventBus& bus)
: settings_(settings), clock_(clock), storage_(storage), bus_(bus) {
parser_.onLine = [this](const std::string& line) {
lastLineMs_ = millis();
if (echo_) console.printf("nmea: %s\n", line.c_str());
};
}
void GnssService::start() {
open(millis());
storage_.runJob([this]() { closeUnfinishedTracks(); });
}
void GnssService::stop() { close(); }
void GnssService::open(uint32_t nowMs) {
Serial1.setRxBufferSize(512); // before begin(): over a second of NMEA, read every 50 ms
Serial1.begin(kBaud, SERIAL_8N1, kRxPin, kTxPin);
open_ = true;
active_ = false; // tick() wakes it or puts it to sleep, per the setting
standbyMs_ = 0;
}
void GnssService::wake(uint32_t nowMs) {
send("PCAS10,0"); // hot start: ends a standby, keeps what the receiver knows
active_ = true;
openedMs_ = nowMs;
firstFixMs_ = 0;
lastLineMs_ = 0;
lastFix_ = gnss::FixType::None;
console.println("gnss: on");
}
void GnssService::standby(uint32_t nowMs) {
if (tracking()) stopTrack();
send("PCAS12,65535");
if (active_) console.println("gnss: off (receiver in standby)");
active_ = false;
standbyMs_ = nowMs;
}
void GnssService::close() {
if (!open_) return;
Serial1.end();
open_ = active_ = false;
lastLineMs_ = 0;
}
void GnssService::tick(uint32_t nowMs) {
if (!open_) open(nowMs);
bool wanted = settings_.getBool(Setting::GnssEnabled);
if (wanted && !active_) wake(nowMs);
if (!wanted && (active_ || !standbyMs_ || nowMs - standbyMs_ >= kStandbyRenewMs)) standby(nowMs);
char buf[128];
for (int avail; (avail = Serial1.available()) > 0;) {
size_t n = Serial1.read(reinterpret_cast<uint8_t*>(buf), std::min<size_t>(avail, sizeof buf));
if (n == 0) break;
bytes_ += n;
if (active_) parser_.feed(buf, n); // in standby: the last lines before it, discarded
}
if (!active_) return;
const gnss::GnssState& s = parser_.state();
if (s.fix != lastFix_) {
if (s.fix != gnss::FixType::None && !firstFixMs_) {
firstFixMs_ = nowMs - openedMs_;
console.printf("gnss: first Fix after %lu s\n", (unsigned long)(firstFixMs_ / 1000));
}
console.printf("gnss: Fix %s, %d satellites used\n", fixName(s.fix), s.satellitesUsed);
lastFix_ = s.fix;
}
recordPoint(nowMs);
// GNSS time is the most trusted source (ClockModel): set it with a Fix, then now and then.
if (s.timeValid && s.fix != gnss::FixType::None && (!clockSetMs_ || nowMs - clockSetMs_ >= kClockEveryMs)) {
if (clock_.set(s.utcSeconds(), TimeSource::Gnss) && !clockSetMs_) console.println("gnss: clock set");
clockSetMs_ = nowMs;
}
}
void GnssService::notify(const std::string& text) {
bus_.publish(Event::withText(EventType::Notification, text.c_str(), static_cast<int32_t>(NotificationLevel::Info)));
}
std::string GnssService::startTrack(uint32_t nowMs) {
if (tracking()) return "";
if (!active_) return "GNSS is off";
if (!storage_.state().present) return "No SD card";
int64_t now = clock_.utcNow();
if (now < 0) return "Waiting for the time (a Fix or Wi-Fi)";
trackPath_ = gnss::trackPath(now);
std::string name = trackPath_.substr(trackPath_.rfind('/') + 1);
name = name.substr(0, name.size() - 4); // without ".gpx"
storage_.appendLine(trackPath_, gnss::gpx::header(name), true);
trackPoints_ = 0;
trackStartMs_ = nowMs;
trackRule_.reset();
console.printf("gnss: Track %s started\n", trackPath_.c_str());
notify("Track started");
return "";
}
void GnssService::stopTrack() {
if (!tracking()) return;
storage_.appendLine(trackPath_, gnss::gpx::footer(), true);
console.printf("gnss: Track %s saved, %d points\n", trackPath_.c_str(), trackPoints_);
notify("Track saved: " + std::to_string(trackPoints_) + (trackPoints_ == 1 ? " point" : " points"));
trackPath_.clear();
}
void GnssService::recordPoint(uint32_t nowMs) {
const gnss::GnssState& s = parser_.state();
if (!tracking() || !s.positionValid || !s.timeValid) return;
if (!trackRule_.due(nowMs, s.latitude, s.longitude)) return;
storage_.appendLine(trackPath_,
gnss::gpx::point(s.latitude, s.longitude, s.altitudeValid, s.altitudeM, s.utcSeconds()), true);
trackPoints_++;
}
// A Track cut short by a power loss or a crash has no footer: GPX readers refuse it. Close it.
void GnssService::closeUnfinishedTracks() {
File dir = SD.open("/gnss/tracks");
if (!dir || !dir.isDirectory()) return;
int closed = 0;
for (File f = dir.openNextFile(); f; f = dir.openNextFile()) {
std::string name = f.name();
if (f.isDirectory() || name.size() < 4 || name.compare(name.size() - 4, 4, ".gpx") != 0) continue;
char tail[32] = {};
size_t size = f.size();
f.seek(size > sizeof tail - 1 ? size - (sizeof tail - 1) : 0);
f.read(reinterpret_cast<uint8_t*>(tail), sizeof tail - 1);
f.close();
if (gnss::gpx::finished(tail)) continue;
File out = SD.open(("/gnss/tracks/" + name).c_str(), FILE_APPEND);
if (out) {
out.print(("\n" + gnss::gpx::footer() + "\n").c_str());
out.close();
closed++;
}
}
if (closed) console.printf("gnss: closed %d unfinished Track(s)\n", closed);
}
bool GnssService::send(const std::string& body) {
if (!open_) return false;
uint8_t sum = 0;
for (char c : body) sum ^= static_cast<uint8_t>(c);
char tail[8];
std::snprintf(tail, sizeof tail, "*%02X\r\n", sum);
std::string line = "$" + body + tail;
Serial1.write(reinterpret_cast<const uint8_t*>(line.data()), line.size());
return true;
}
void GnssService::printStatus(Print& out, uint32_t nowMs) const {
if (!active_) return (void)out.println("gnss: off (receiver in standby)");
const gnss::GnssState& s = parser_.state();
out.printf("gnss: %s, Fix %s, %d used, %u in view, HDOP %.1f\n",
receiving(nowMs) ? "receiving" : "silent", fixName(s.fix), s.satellitesUsed,
(unsigned)s.satellites.size(), s.hdop);
if (s.positionValid)
out.printf("gnss: %.6f %.6f, %s%.0f m, %.1f km/h\n", s.latitude, s.longitude,
s.altitudeValid ? "" : "altitude unknown ", s.altitudeM, s.speedKmh);
if (s.timeValid)
out.printf("gnss: %04d-%02d-%02d %02d:%02d:%02d UTC\n", s.year, s.month, s.day, s.hour, s.minute, s.second);
int perSystem[8] = {}, usedPerSystem[8] = {};
for (auto& sat : s.satellites) {
perSystem[static_cast<int>(sat.system)]++;
if (sat.used) usedPerSystem[static_cast<int>(sat.system)]++;
}
out.print("gnss: in view (used)");
for (int c = 1; c < 7; c++)
if (perSystem[c])
out.printf(" %s %d (%d)", gnss::constellationName(static_cast<gnss::Constellation>(c)), perSystem[c],
usedPerSystem[c]);
out.println();
if (tracking())
out.printf("gnss: recording %s, %d points, %lu s\n", trackPath_.c_str(), trackPoints_,
(unsigned long)((nowMs - trackStartMs_) / 1000));
out.printf("gnss: up %lu s, first Fix %s, %lu bytes, %lu sentences, %lu bad\n", (unsigned long)((nowMs - openedMs_) / 1000),
firstFixMs_ ? (std::to_string(firstFixMs_ / 1000) + " s").c_str() : "not yet", (unsigned long)bytes_,
(unsigned long)parser_.goodSentences(), (unsigned long)parser_.badSentences());
}
} // namespace roro
+84
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@@ -0,0 +1,84 @@
#pragma once
#include <Print.h>
#include <string>
#include "event_bus.h"
#include "nmea_parser.h"
#include "service.h"
#include "services/clock_service.h"
#include "services/storage_service.h"
#include "settings.h"
#include "track.h"
namespace roro {
// The GNSS receiver on the Cap LoRa-1262 (see CONTEXT.md and docs/milestones/M2.md): reads its
// NMEA from the main loop's tick (about 450 bytes/s, so a 512-byte UART buffer covers a second),
// holds the current Fix, and sets the clock from it. Settings → GNSS switches it on and off.
class GnssService : public Service {
public:
static constexpr int kRxPin = 15, kTxPin = 13; // measured: M2 step 1
static constexpr uint32_t kBaud = 115200;
static constexpr uint32_t kSilentAfterMs = 3000; // no sentence for this long: receiver silent
static constexpr uint32_t kClockEveryMs = 600000; // refresh the clock from the Fix this often
// Off (Q58, measured): "$PCAS12,<s>" puts the receiver in standby for that long, and any
// command wakes it. Standby is renewed while off, in case the duration is clamped.
static constexpr uint32_t kStandbyRenewMs = 3600000;
GnssService(const Settings& settings, ClockService& clock, StorageService& storage, EventBus& bus);
const char* name() const override { return "gnss"; }
uint32_t tickIntervalMs() const override { return 50; }
void start() override;
void stop() override;
void tick(uint32_t nowMs) override;
bool on() const { return active_; }
bool receiving(uint32_t nowMs) const { return active_ && lastLineMs_ && nowMs - lastLineMs_ < kSilentAfterMs; }
const gnss::GnssState& state() const { return parser_.state(); }
uint32_t onSinceMs() const { return openedMs_; } // when the receiver was last woken
// Debug aids (Q68): raw sentences to the console, a status report, and sending a command
// ("PCAS10,0" becomes "$PCAS10,0*1C\r\n").
void setEcho(bool echo) { echo_ = echo; }
void printStatus(Print& out, uint32_t nowMs) const;
bool send(const std::string& body);
// Tracks (Q63): GPX on the SD card, a point every 5 s once moved 5 m, recorded in the
// background whatever App is open. startTrack() returns why it can't, or "".
std::string startTrack(uint32_t nowMs);
void stopTrack();
bool tracking() const { return !trackPath_.empty(); }
int trackPoints() const { return trackPoints_; }
uint32_t trackStartMs() const { return trackStartMs_; }
void restart(uint32_t nowMs) {
close();
open(nowMs);
}
private:
void open(uint32_t nowMs); // the UART; the receiver's state follows the setting in tick()
void close();
void wake(uint32_t nowMs);
void recordPoint(uint32_t nowMs);
void closeUnfinishedTracks(); // on the storage task
void notify(const std::string& text);
void standby(uint32_t nowMs);
const Settings& settings_;
ClockService& clock_;
StorageService& storage_;
EventBus& bus_;
gnss::NmeaParser parser_;
bool open_ = false, active_ = false, echo_ = false;
uint32_t bytes_ = 0, standbyMs_ = 0;
uint32_t openedMs_ = 0, lastLineMs_ = 0, firstFixMs_ = 0, clockSetMs_ = 0;
gnss::FixType lastFix_ = gnss::FixType::None;
std::string trackPath_;
int trackPoints_ = 0;
uint32_t trackStartMs_ = 0;
gnss::TrackRule trackRule_;
};
} // namespace roro
+25 -8
View File
@@ -33,16 +33,23 @@ IrcService::IrcService(KeyValueStore& store, const std::string& defaultNick, Wif
void IrcService::start() {
if (task_) return;
lock_ = xSemaphoreCreateMutex();
xTaskCreate(taskEntry, "irc", 8192, this, 1, &task_);
xTaskCreate(taskEntry, "irc", 6144, this, 1, &task_); // peak 4.0 KB (TLS handshake, M2)
}
void IrcService::connect() {
stoppedByUser_ = false;
if (wanted_) return;
retryAtMs_ = millis();
backoff_.reset();
wanted_ = true;
}
void IrcService::disconnect() {
stoppedByUser_ = true;
stopRequested_ = true; // the IRC task says QUIT and closes; nothing to do if it never started
if (!task_) wanted_ = false;
}
int IrcService::totalUnread() {
Lock l(lock_);
return session_->totalUnread();
@@ -176,13 +183,10 @@ void IrcService::flushEffects() {
status_ = Status::Online;
backoff_.reset();
}
if (quit && open_) {
delay(300); // let QUIT reach the server
close("");
wanted_ = false;
status_ = Status::Stopped;
Lock l(lock_);
session_->disconnected(clock_.utcNow(), "disconnected");
if (quit) { // /quit: QUIT is already on its way if connected; stop in any state
stoppedByUser_ = true;
stopRequested_ = true;
quitSent_ = true;
}
}
@@ -192,6 +196,19 @@ void IrcService::loop() {
bool wifiUp = wifi_.state() == WifiController::State::Connected;
bool monitoring = wifi_.state() == WifiController::State::Monitoring;
if (stopRequested_) {
stopRequested_ = false;
if (open_) {
if (!quitSent_) conn_->print("QUIT :roro9stack\r\n");
vTaskDelay(pdMS_TO_TICKS(300)); // let QUIT reach the server
close("");
}
quitSent_ = false;
wanted_ = false;
status_ = Status::Stopped;
Lock l(lock_);
session_->disconnected(clock_.utcNow(), "disconnected (Enter reconnects)");
}
if (restart_) {
restart_ = false;
if (open_) {
+7 -1
View File
@@ -31,9 +31,12 @@ class IrcService : public Service {
const char* name() const override { return "irc"; }
void start() override;
// Starts the session (the IRC App does this when opened); /quit stops it.
// Starts the session (the IRC App does this when opened, unless you stopped it).
void connect();
// Stops it, from any state: says QUIT if connected, and stops retrying. /quit, `irc stop`.
void disconnect();
bool running() const { return wanted_; }
bool stoppedByUser() const { return stoppedByUser_; }
Status status() const { return status_; }
// Read or act on the session while holding its lock: withSession([](IrcSession& s) { ... }).
@@ -78,6 +81,9 @@ class IrcService : public Service {
ReconnectPolicy backoff_;
std::string partial_;
volatile bool wanted_ = false;
volatile bool stoppedByUser_ = false; // a manual stop: opening the App doesn't reconnect
volatile bool stopRequested_ = false;
bool quitSent_ = false; // /quit already queued its QUIT
volatile bool restart_ = false;
volatile Status status_ = Status::Stopped;
bool open_ = false;
+29 -3
View File
@@ -5,6 +5,7 @@
#include <sd_diskio.h>
#include <algorithm>
#include <atomic>
#include <memory>
#include "platform/pins.h"
@@ -14,7 +15,7 @@ namespace roro {
void StorageService::start() {
if (task_) return;
xTaskCreate(taskEntry, "storage", 10240, this, 1, &task_); // room for a signature check
xTaskCreate(taskEntry, "storage", 6144, this, 1, &task_); // peak 3.9 KB (SD install with its signature check, M2)
}
void StorageService::stop() {
@@ -32,10 +33,11 @@ StorageState StorageService::state() const {
return copy;
}
void StorageService::appendLine(const std::string& path, const std::string& line) {
void StorageService::appendLine(const std::string& path, const std::string& line, bool capture) {
lock();
size_t bytes = path.size() + line.size();
bool accept = monitor_.state().logsAllowed && pendingBytes_ + bytes <= kMaxPendingBytes;
bool allowed = capture ? monitor_.state().capturesAllowed : monitor_.state().logsAllowed;
bool accept = allowed && pendingBytes_ + bytes <= kMaxPendingBytes;
if (accept) {
pending_.emplace_back(path, line);
pendingBytes_ += bytes;
@@ -81,6 +83,30 @@ void StorageService::runJob(std::function<void()> job) {
if (task_) xTaskNotifyGive(task_);
}
bool StorageService::runAndWait(std::function<void()> job) {
// Shared with the job, which outlives this wait if the card is missing and it never starts.
// Exactly one side wins the state change: the job (Queued -> Running) or the wait giving up
// (Queued -> Abandoned), so an abandoned job can never touch this stack frame.
enum : int { Queued, Running, Abandoned };
struct Run {
std::atomic<int> state{Queued};
SemaphoreHandle_t done = xSemaphoreCreateBinary();
~Run() { vSemaphoreDelete(done); }
};
auto run = std::make_shared<Run>();
runJob([run, job]() {
int expected = Queued;
if (!run->state.compare_exchange_strong(expected, Running)) return;
job();
xSemaphoreGive(run->done);
});
for (int waited = 0; xSemaphoreTake(run->done, pdMS_TO_TICKS(500)) != pdTRUE; waited += 500) {
int expected = Queued;
if (waited >= 5000 && run->state.compare_exchange_strong(expected, Abandoned)) return false;
}
return true;
}
bool StorageService::requestFormat() {
if (formatRequested_ || !task_) return false;
formatRequested_ = true;
+6 -2
View File
@@ -29,8 +29,9 @@ class StorageService : public Service {
StorageState state() const;
// Queues one line for a Log file (created with its folders as needed). Dropped while Logs are
// paused (over 90 % full, or no card) or if too much is already waiting.
void appendLine(const std::string& path, const std::string& line);
// paused (over 90 % full, or no card) or if too much is already waiting. A Capture (or a Track,
// something the user started) keeps going past 90 %, until the card is full.
void appendLine(const std::string& path, const std::string& line, bool capture = false);
uint32_t droppedLines() const { return dropped_; }
// Storage Clean-up: list every file of every category, then delete a selection.
@@ -41,6 +42,9 @@ class StorageService : public Service {
// Runs `job` on the storage task, where card access is safe (e.g. reading an Update File).
void runJob(std::function<void()> job);
// The same, and waits for it (from another task, never the storage task itself). False if it
// never started within 5 s: no card mounted, and then it never will run.
bool runAndWait(std::function<void()> job);
// Erases the whole card: one partition spanning the card, formatted FAT32.
bool requestFormat();
+1 -6
View File
@@ -1,13 +1,11 @@
#include "update_service.h"
#include <ESPmDNS.h>
#include <SD.h>
#include <WiFi.h>
#include <esp_ota_ops.h>
#include <memory>
#include "platform/identity.h"
#include "platform/ota_device.h"
#include "platform/system_info.h"
#include "probation.h"
@@ -66,7 +64,6 @@ class FileSource : public UpdateSource {
UpdateService::UpdateService(KeyValueStore& store, WifiService& wifi, SavedNetworks& saved, StorageService& storage,
EventBus& bus, const Settings& settings)
: store_(store), wifi_(wifi), saved_(saved), storage_(storage), bus_(bus), settings_(settings) {
hostname_ = "roro9stack-" + identity::defaultShortName();
}
void UpdateService::notify(const std::string& text, NotificationLevel level) {
@@ -90,7 +87,7 @@ void UpdateService::start() {
store_.putString("ota_pending", "");
}
if (!task_) xTaskCreate(taskEntry, "update", 8192, this, 1, &task_);
if (!task_) xTaskCreate(taskEntry, "update", 5120, this, 1, &task_); // peak 3.4 KB (ECDSA check, M2)
}
void UpdateService::bootGuard(KeyValueStore& store) {
@@ -196,11 +193,9 @@ void UpdateService::listen() {
bool connected = wifi_.state() == WifiController::State::Connected;
if (connected && !listening) {
server.begin();
if (MDNS.begin(hostname_.c_str())) MDNS.addService("roro9stack", "tcp", kPort);
listening = true;
} else if (!connected && listening) {
server.end();
MDNS.end();
listening = false;
}
// The main loop restarts into an installed update when it's safe. If it never does (stuck,
-2
View File
@@ -35,7 +35,6 @@ class UpdateService : public Service {
int percent() const { return percent_; }
std::string incomingVersion() const;
bool onProbation() const { return probation_; }
const std::string& hostname() const { return hostname_; }
// Installs an Update File from the SD card (runs on the storage task).
void installFromSd(const std::string& path);
@@ -58,7 +57,6 @@ class UpdateService : public Service {
EventBus& bus_;
const Settings& settings_;
TaskHandle_t task_ = nullptr;
std::string hostname_;
volatile Phase phase_ = Phase::Idle;
volatile int percent_ = 0;
std::string incoming_;
+7
View File
@@ -48,6 +48,13 @@ void statusBar(Canvas& c, const StatusInfo& info) {
case StatusInfo::Wifi::Monitoring: right("MON", kAccent); break;
case StatusInfo::Wifi::None: break;
}
if (info.tracking) right("REC", kWarning);
switch (info.gnss) { // Q61: muted while searching, normal with a Fix, the count with a 3D Fix
case StatusInfo::Gnss::Searching: right("G", kMuted); break;
case StatusInfo::Gnss::TwoD: right("G", kText); break;
case StatusInfo::Gnss::ThreeD: right("G" + std::to_string(info.gnssSatellites), kText); break;
case StatusInfo::Gnss::None: break;
}
if (info.compose) right(std::string("opt ") + (info.compose == '*' ? "" : std::string(1, info.compose)), kAccent);
c.setTextDatum(top_left);
}
+5 -1
View File
@@ -24,11 +24,15 @@ struct StatusInfo {
enum class Wifi { None, Searching, Connected, Monitoring } wifi = Wifi::None;
int wifiBars = 0; // 0..3 when Connected
int unread = 0; // unread messages across Services
enum class Gnss { None, Searching, TwoD, ThreeD } gnss = Gnss::None; // None: GNSS off (Q61)
int gnssSatellites = 0; // used in the Fix
bool tracking = false; // a Track is recording (Q63)
bool operator==(const StatusInfo& o) const {
return title == o.title && batteryPercent == o.batteryPercent && clock == o.clock &&
sdPresent == o.sdPresent && sdLevel == o.sdLevel && compose == o.compose && wifi == o.wifi &&
wifiBars == o.wifiBars && unread == o.unread;
wifiBars == o.wifiBars && unread == o.unread && gnss == o.gnss && gnssSatellites == o.gnssSatellites &&
tracking == o.tracking;
}
bool operator!=(const StatusInfo& o) const { return !(*this == o); }
};
+223
View File
@@ -0,0 +1,223 @@
#include <unity.h>
#include <string>
#include "gemini_response.h"
#include "gemini_url.h"
#include "gemtext.h"
#include "text_buffer.h"
using namespace roro::gemini;
void setUp() {}
void tearDown() {}
static void resolvesTo(const char* ref, const char* expected) {
TEST_ASSERT_EQUAL_STRING_MESSAGE(expected, resolve("gemini://a/b/c/d;p?q", ref).c_str(), ref);
}
// RFC 3986, section 5.4.1, with gemini:// for http://.
void test_rfc3986_normal_examples() {
resolvesTo("g:h", "g:h");
resolvesTo("g", "gemini://a/b/c/g");
resolvesTo("./g", "gemini://a/b/c/g");
resolvesTo("g/", "gemini://a/b/c/g/");
resolvesTo("/g", "gemini://a/g");
resolvesTo("//g", "gemini://g");
resolvesTo("?y", "gemini://a/b/c/d;p?y");
resolvesTo("g?y", "gemini://a/b/c/g?y");
resolvesTo("#s", "gemini://a/b/c/d;p?q#s");
resolvesTo("g#s", "gemini://a/b/c/g#s");
resolvesTo("g?y#s", "gemini://a/b/c/g?y#s");
resolvesTo(";x", "gemini://a/b/c/;x");
resolvesTo("", "gemini://a/b/c/d;p?q");
resolvesTo(".", "gemini://a/b/c/");
resolvesTo("./", "gemini://a/b/c/");
resolvesTo("..", "gemini://a/b/");
resolvesTo("../", "gemini://a/b/");
resolvesTo("../g", "gemini://a/b/g");
resolvesTo("../..", "gemini://a/");
resolvesTo("../../", "gemini://a/");
resolvesTo("../../g", "gemini://a/g");
}
// Section 5.4.2.
void test_rfc3986_abnormal_examples() {
resolvesTo("../../../g", "gemini://a/g");
resolvesTo("../../../../g", "gemini://a/g");
resolvesTo("/./g", "gemini://a/g");
resolvesTo("/../g", "gemini://a/g");
resolvesTo("g.", "gemini://a/b/c/g.");
resolvesTo(".g", "gemini://a/b/c/.g");
resolvesTo("./../g", "gemini://a/b/g");
resolvesTo("g/./h", "gemini://a/b/c/g/h");
resolvesTo("g/../h", "gemini://a/b/c/h");
resolvesTo("g;x=1/./y", "gemini://a/b/c/g;x=1/y");
resolvesTo("g;x=1/../y", "gemini://a/b/c/y");
}
void test_parse_a_gemini_url() {
Url u;
TEST_ASSERT_TRUE(parseUrl("gemini://Example.ORG:1966/a/b?c=d#e", u));
TEST_ASSERT_EQUAL_STRING("gemini", u.scheme.c_str());
TEST_ASSERT_EQUAL_STRING("example.org", u.host.c_str()); // hosts are case-insensitive
TEST_ASSERT_EQUAL(1966, u.port);
TEST_ASSERT_EQUAL_STRING("/a/b", u.path.c_str());
TEST_ASSERT_EQUAL_STRING("c=d", u.query.c_str());
TEST_ASSERT_EQUAL_STRING("e", u.fragment.c_str());
TEST_ASSERT_TRUE(parseUrl("gemini://example.org", u));
TEST_ASSERT_EQUAL(1965, u.portOrDefault());
TEST_ASSERT_FALSE(parseUrl("not a url", u));
}
void test_the_request_drops_the_fragment_and_never_has_an_empty_path() {
TEST_ASSERT_EQUAL_STRING("gemini://example.org/", requestUrl("gemini://example.org").c_str());
TEST_ASSERT_EQUAL_STRING("gemini://example.org/a?b", requestUrl("gemini://example.org/a?b#frag").c_str());
TEST_ASSERT_EQUAL_STRING("gemini://example.org:1966/", requestUrl("gemini://EXAMPLE.org:1966").c_str());
}
void test_other_schemes_are_recognised() {
TEST_ASSERT_TRUE(isGemini("gemini://a/"));
TEST_ASSERT_FALSE(isGemini("https://a/"));
TEST_ASSERT_FALSE(isGemini("gopher://a/"));
TEST_ASSERT_FALSE(isGemini("mailto:someone@example.org"));
}
void test_query_encoding() {
TEST_ASSERT_EQUAL_STRING("hello%20world", encodeQuery("hello world").c_str());
TEST_ASSERT_EQUAL_STRING("caf%C3%A9%3F%26", encodeQuery("caf\xC3\xA9?&").c_str());
TEST_ASSERT_EQUAL_STRING("a-b_c.d~e", encodeQuery("a-b_c.d~e").c_str());
}
void test_response_header() {
Header h;
TEST_ASSERT_TRUE(parseHeader("20 text/gemini; charset=utf-8; lang=en", h));
TEST_ASSERT_EQUAL(20, h.status);
TEST_ASSERT_EQUAL_STRING("text/gemini", h.mimeType().c_str());
TEST_ASSERT_EQUAL_STRING("utf-8", h.parameter("charset").c_str());
TEST_ASSERT_TRUE(h.category() == Category::Success);
TEST_ASSERT_TRUE(parseHeader("20", h)); // no MIME type: text/gemini by default
TEST_ASSERT_EQUAL_STRING("text/gemini", h.mimeType().c_str());
TEST_ASSERT_TRUE(parseHeader("31 gemini://cosmos.skyjake.fi/", h));
TEST_ASSERT_TRUE(h.category() == Category::Redirect);
TEST_ASSERT_EQUAL_STRING("gemini://cosmos.skyjake.fi/", h.meta.c_str());
TEST_ASSERT_TRUE(parseHeader("11 Password", h));
TEST_ASSERT_TRUE(h.category() == Category::Input);
TEST_ASSERT_TRUE(h.sensitiveInput());
TEST_ASSERT_TRUE(parseHeader("51 Not found", h));
TEST_ASSERT_TRUE(h.category() == Category::PermanentFailure);
TEST_ASSERT_TRUE(parseHeader("60 Certificate required", h));
TEST_ASSERT_TRUE(h.category() == Category::ClientCertificate);
}
void test_malformed_headers_are_refused() {
Header h;
TEST_ASSERT_FALSE(parseHeader("", h));
TEST_ASSERT_FALSE(parseHeader("2 text/gemini", h));
TEST_ASSERT_FALSE(parseHeader("ab text/gemini", h));
TEST_ASSERT_FALSE(parseHeader("20text/gemini", h));
TEST_ASSERT_FALSE(parseHeader("20 " + std::string(1025, 'x'), h));
}
void test_gemtext_line_types() {
auto lines = parseGemtext(
"# Title\n## Sub\n### Subsub\nPlain text\n* item\n> quoted\n=> gemini://a/b Label here\n=>/rel\n"
"```ascii art\n# not a heading\n=> not a link\n```\nafter\n");
TEST_ASSERT_EQUAL(13, static_cast<int>(lines.size()));
TEST_ASSERT_TRUE(lines[0].type == LineType::Heading1);
TEST_ASSERT_EQUAL_STRING("Title", lines[0].text.c_str());
TEST_ASSERT_TRUE(lines[1].type == LineType::Heading2);
TEST_ASSERT_TRUE(lines[2].type == LineType::Heading3);
TEST_ASSERT_TRUE(lines[3].type == LineType::Text);
TEST_ASSERT_TRUE(lines[4].type == LineType::ListItem);
TEST_ASSERT_EQUAL_STRING("item", lines[4].text.c_str());
TEST_ASSERT_TRUE(lines[5].type == LineType::Quote);
TEST_ASSERT_EQUAL_STRING("quoted", lines[5].text.c_str());
TEST_ASSERT_TRUE(lines[6].type == LineType::Link);
TEST_ASSERT_EQUAL_STRING("gemini://a/b", lines[6].url.c_str());
TEST_ASSERT_EQUAL_STRING("Label here", lines[6].text.c_str());
TEST_ASSERT_TRUE(lines[7].type == LineType::Link);
TEST_ASSERT_EQUAL_STRING("/rel", lines[7].url.c_str());
TEST_ASSERT_EQUAL_STRING("/rel", lines[7].text.c_str()); // no label: the URL is the label
TEST_ASSERT_TRUE(lines[8].type == LineType::PreToggle);
TEST_ASSERT_EQUAL_STRING("ascii art", lines[8].text.c_str());
TEST_ASSERT_TRUE(lines[9].type == LineType::Preformatted);
TEST_ASSERT_EQUAL_STRING("# not a heading", lines[9].text.c_str());
TEST_ASSERT_TRUE(lines[10].type == LineType::Preformatted);
TEST_ASSERT_TRUE(lines[11].type == LineType::PreToggle);
TEST_ASSERT_TRUE(lines[12].type == LineType::Text);
}
void test_gemtext_handles_crlf_and_a_missing_last_newline() {
auto lines = parseGemtext("one\r\n=>\tgemini://x/\t spaced label \r\ntwo");
TEST_ASSERT_EQUAL(3, static_cast<int>(lines.size()));
TEST_ASSERT_EQUAL_STRING("one", lines[0].text.c_str());
TEST_ASSERT_EQUAL_STRING("gemini://x/", lines[1].url.c_str());
TEST_ASSERT_EQUAL_STRING("spaced label", lines[1].text.c_str());
TEST_ASSERT_EQUAL_STRING("two", lines[2].text.c_str());
}
void test_display_text_keeps_latin1_and_replaces_the_rest() {
TEST_ASSERT_EQUAL_STRING("caf\xC3\xA9", displayText("caf\xC3\xA9").c_str()); // é stays
TEST_ASSERT_EQUAL_STRING("? and ?", displayText("\xE2\x9C\x93 and \xF0\x9F\x99\x82").c_str()); // ✓ and 🙂
TEST_ASSERT_EQUAL_STRING("bad ? byte", displayText("bad \xFF byte").c_str());
TEST_ASSERT_EQUAL_STRING("a b", displayText("a\tb").c_str()); // tab: three spaces here
}
void test_saved_page_paths() {
TEST_ASSERT_EQUAL_STRING("/gemini/saved/example.org/index.gmi", savedPath("gemini://example.org/").c_str());
TEST_ASSERT_EQUAL_STRING("/gemini/saved/example.org/index.gmi", savedPath("gemini://example.org").c_str());
TEST_ASSERT_EQUAL_STRING("/gemini/saved/example.org/log/2026/post.gmi",
savedPath("gemini://example.org/log/2026/post.gmi").c_str());
TEST_ASSERT_EQUAL_STRING("/gemini/saved/example.org/log/index.gmi", savedPath("gemini://example.org/log/").c_str());
TEST_ASSERT_EQUAL_STRING("/gemini/saved/example.org/about.gmi", savedPath("gemini://example.org/about").c_str());
TEST_ASSERT_EQUAL_STRING("/gemini/saved/example.org_1966/a~q_x.gmi",
savedPath("gemini://example.org:1966/a?q:x#frag").c_str());
}
void test_text_buffer_keeps_lines_across_any_feed() {
TextBuffer b;
std::string doc = "# Title\r\nline two\n\nlast without end";
for (size_t i = 0; i < doc.size(); i += 3) b.append(doc.data() + i, std::min<size_t>(3, doc.size() - i));
b.finish();
TEST_ASSERT_EQUAL(4, static_cast<int>(b.lineCount()));
TEST_ASSERT_EQUAL_STRING("# Title", b.line(0).c_str());
TEST_ASSERT_EQUAL_STRING("line two", b.line(1).c_str());
TEST_ASSERT_EQUAL_STRING("", b.line(2).c_str());
TEST_ASSERT_EQUAL_STRING("last without end", b.line(3).c_str());
TEST_ASSERT_EQUAL(doc.size(), b.bytes());
}
void test_text_buffer_spreads_over_chunks_without_splitting_lines() {
TextBuffer b;
std::string line(1000, 'x');
for (int i = 0; i < 20; i++) {
std::string l = std::to_string(i) + line + "\n";
b.append(l.data(), l.size());
}
std::string big(6000, 'y'); // longer than a chunk
big += "\n";
b.append(big.data(), big.size());
TEST_ASSERT_EQUAL(21, static_cast<int>(b.lineCount()));
for (int i = 0; i < 20; i++) TEST_ASSERT_EQUAL_STRING((std::to_string(i) + line).c_str(), b.line(i).c_str());
TEST_ASSERT_EQUAL(6000, static_cast<int>(b.line(20).size()));
}
int main() {
UNITY_BEGIN();
RUN_TEST(test_rfc3986_normal_examples);
RUN_TEST(test_rfc3986_abnormal_examples);
RUN_TEST(test_parse_a_gemini_url);
RUN_TEST(test_the_request_drops_the_fragment_and_never_has_an_empty_path);
RUN_TEST(test_other_schemes_are_recognised);
RUN_TEST(test_query_encoding);
RUN_TEST(test_response_header);
RUN_TEST(test_malformed_headers_are_refused);
RUN_TEST(test_gemtext_line_types);
RUN_TEST(test_gemtext_handles_crlf_and_a_missing_last_newline);
RUN_TEST(test_display_text_keeps_latin1_and_replaces_the_rest);
RUN_TEST(test_saved_page_paths);
RUN_TEST(test_text_buffer_keeps_lines_across_any_feed);
RUN_TEST(test_text_buffer_spreads_over_chunks_without_splitting_lines);
return UNITY_END();
}
+64
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@@ -0,0 +1,64 @@
#include <unity.h>
#include "geo_format.h"
using namespace roro::gnss;
void setUp() {}
void tearDown() {}
void test_decimal_degrees_with_hemisphere() {
TEST_ASSERT_EQUAL_STRING("50.86920° N", formatDecimal(50.8692034, true).c_str());
TEST_ASSERT_EQUAL_STRING("33.50000° S", formatDecimal(-33.5, true).c_str());
TEST_ASSERT_EQUAL_STRING("4.25350° E", formatDecimal(4.2535, false).c_str());
TEST_ASSERT_EQUAL_STRING("151.21000° W", formatDecimal(-151.21, false).c_str());
}
void test_degrees_minutes_seconds() {
TEST_ASSERT_EQUAL_STRING("50° 52' 09.1\" N", formatDms(50.8692034, true).c_str());
TEST_ASSERT_EQUAL_STRING("4° 15' 12.6\" E", formatDms(4.2535, false).c_str());
TEST_ASSERT_EQUAL_STRING("33° 30' 00.0\" S", formatDms(-33.5, true).c_str());
}
void test_seconds_that_round_up_carry_over() {
TEST_ASSERT_EQUAL_STRING("11° 00' 00.0\" N", formatDms(10.9999999, true).c_str());
}
void test_maidenhead_matches_known_locators() {
TEST_ASSERT_EQUAL_STRING("FN31pr", maidenhead(41.714775, -72.727260).c_str()); // W1AW
TEST_ASSERT_EQUAL_STRING("JN58td", maidenhead(48.14666, 11.60833).c_str()); // Munich
TEST_ASSERT_EQUAL_STRING("JJ00aa", maidenhead(0, 0).c_str());
TEST_ASSERT_EQUAL_STRING("AA00aa", maidenhead(-90, -180).c_str());
}
void test_maidenhead_stays_in_range_at_the_edges() {
TEST_ASSERT_EQUAL_STRING("RR99xx", maidenhead(90, 180).c_str());
}
void test_sky_projection() {
SkyPoint zenith = skyPosition(123, 90, 50, 60, 40);
TEST_ASSERT_EQUAL(50, zenith.x);
TEST_ASSERT_EQUAL(60, zenith.y);
SkyPoint north = skyPosition(0, 0, 50, 60, 40);
TEST_ASSERT_EQUAL(50, north.x);
TEST_ASSERT_EQUAL(20, north.y); // up
SkyPoint east = skyPosition(90, 0, 50, 60, 40);
TEST_ASSERT_EQUAL(90, east.x);
TEST_ASSERT_EQUAL(60, east.y);
SkyPoint south45 = skyPosition(180, 45, 50, 60, 40);
TEST_ASSERT_EQUAL(50, south45.x);
TEST_ASSERT_EQUAL(80, south45.y);
SkyPoint below = skyPosition(270, -5, 50, 60, 40); // just below the horizon: on the edge
TEST_ASSERT_EQUAL(10, below.x);
}
int main() {
UNITY_BEGIN();
RUN_TEST(test_decimal_degrees_with_hemisphere);
RUN_TEST(test_degrees_minutes_seconds);
RUN_TEST(test_seconds_that_round_up_carry_over);
RUN_TEST(test_maidenhead_matches_known_locators);
RUN_TEST(test_maidenhead_stays_in_range_at_the_edges);
RUN_TEST(test_sky_projection);
return UNITY_END();
}
+236
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@@ -0,0 +1,236 @@
#include <unity.h>
#include <cstdio>
#include <string>
#include <vector>
#include "nmea_parser.h"
using namespace roro;
using namespace roro::gnss;
void setUp() {}
void tearDown() {}
// "$<body>*<checksum>": the checksum is computed here, so scenarios stay readable.
static std::string nmea(const std::string& body) {
uint8_t sum = 0;
for (char c : body) sum ^= static_cast<uint8_t>(c);
char tail[4];
std::snprintf(tail, sizeof tail, "*%02X", sum);
return "$" + body + tail;
}
static void feedLine(NmeaParser& p, const std::string& line) {
std::string withEnd = line + "\r\n";
p.feed(withEnd.data(), withEnd.size());
}
void test_checksum_is_verified() {
NmeaParser p;
TEST_ASSERT_TRUE(p.sentence("$GNVTG,,,,,,,,,N*2E")); // captured from the device
TEST_ASSERT_FALSE(p.sentence("$GNVTG,,,,,,,,,N*2F"));
TEST_ASSERT_FALSE(p.sentence("$GNVTG,,,,,,,,,N"));
TEST_ASSERT_FALSE(p.sentence("GNVTG,,,,,,,,,N*2E"));
TEST_ASSERT_EQUAL_UINT32(3, p.badSentences());
TEST_ASSERT_EQUAL_UINT32(1, p.goodSentences());
}
void test_no_fix_as_captured_indoors() {
NmeaParser p;
feedLine(p, "$GNRMC,200231.00,V,,,,,,,041026,,,N,V*1A");
feedLine(p, "$GNGGA,200231.00,,,,,0,00,25.5,,,,,,*48");
feedLine(p, "$GNGSA,A,1,,,,,,,,,,,,,25.5,25.5,25.5,1*01");
feedLine(p, "$GPGSV,1,1,01,25,41,108,17,1*58");
feedLine(p, "$GLGSV,1,1,00,1*78");
const GnssState& s = p.state();
TEST_ASSERT_TRUE(s.fix == FixType::None);
TEST_ASSERT_FALSE(s.positionValid);
TEST_ASSERT_FALSE(s.timeValid); // a time without a Fix isn't trusted
TEST_ASSERT_EQUAL(1, static_cast<int>(s.satellites.size()));
TEST_ASSERT_TRUE(s.satellites[0].system == Constellation::Gps);
TEST_ASSERT_EQUAL(25, s.satellites[0].prn);
TEST_ASSERT_EQUAL(41, s.satellites[0].elevation);
TEST_ASSERT_EQUAL(108, s.satellites[0].azimuth);
TEST_ASSERT_EQUAL(17, s.satellites[0].snr);
TEST_ASSERT_FALSE(s.satellites[0].used);
}
void test_rmc_with_a_fix_gives_position_time_speed_course() {
NmeaParser p;
feedLine(p, nmea("GNRMC,123519.00,A,5050.8136,N,00421.1532,E,10.0,84.4,041026,,,A,V"));
const GnssState& s = p.state();
TEST_ASSERT_TRUE(s.positionValid);
TEST_ASSERT_FLOAT_WITHIN(1e-6, 50.0 + 50.8136 / 60.0, s.latitude);
TEST_ASSERT_FLOAT_WITHIN(1e-6, 4.0 + 21.1532 / 60.0, s.longitude);
TEST_ASSERT_TRUE(s.timeValid);
TEST_ASSERT_EQUAL(2026, s.year);
TEST_ASSERT_EQUAL(10, s.month);
TEST_ASSERT_EQUAL(4, s.day);
TEST_ASSERT_EQUAL(12, s.hour);
TEST_ASSERT_EQUAL(35, s.minute);
TEST_ASSERT_EQUAL(19, s.second);
TEST_ASSERT_FLOAT_WITHIN(0.01, 18.52, s.speedKmh); // 10 knots
TEST_ASSERT_TRUE(s.courseValid);
TEST_ASSERT_FLOAT_WITHIN(0.01, 84.4, s.courseDeg);
}
void test_southern_and_western_hemispheres_are_negative() {
NmeaParser p;
feedLine(p, nmea("GNRMC,000000.00,A,3352.0000,S,15112.6000,W,0.0,,010126,,,A,V"));
TEST_ASSERT_FLOAT_WITHIN(1e-6, -(33.0 + 52.0 / 60.0), p.state().latitude);
TEST_ASSERT_FLOAT_WITHIN(1e-6, -(151.0 + 12.6 / 60.0), p.state().longitude);
TEST_ASSERT_FALSE(p.state().courseValid); // empty course field
}
void test_utc_seconds_from_the_fix_time() {
NmeaParser p;
feedLine(p, nmea("GNRMC,123519.00,A,5050.8136,N,00421.1532,E,0.0,,041026,,,A,V"));
TEST_ASSERT_EQUAL_INT64(1791117319LL, p.state().utcSeconds()); // 2026-10-04 12:35:19 UTC
}
void test_gga_gives_fix_quality_altitude_satellites_and_hdop() {
NmeaParser p;
feedLine(p, nmea("GNGGA,123519.00,5050.8136,N,00421.1532,E,1,09,0.9,61.4,M,46.9,M,,"));
feedLine(p, nmea("GNGSA,A,3,05,13,15,18,23,,,,,,,,1.6,0.9,1.3,1"));
const GnssState& s = p.state();
TEST_ASSERT_TRUE(s.positionValid);
TEST_ASSERT_EQUAL(9, s.satellitesUsed);
TEST_ASSERT_FLOAT_WITHIN(0.01, 0.9, s.hdop);
TEST_ASSERT_TRUE(s.altitudeValid);
TEST_ASSERT_FLOAT_WITHIN(0.01, 61.4, s.altitudeM);
TEST_ASSERT_TRUE(s.fix == FixType::ThreeD);
}
void test_fix_type_comes_from_gsa_mode() {
NmeaParser p;
feedLine(p, nmea("GNGSA,A,2,05,13,15,,,,,,,,,,2.1,1.9,1.0,1"));
TEST_ASSERT_TRUE(p.state().fix == FixType::TwoD);
feedLine(p, nmea("GNGSA,A,1,,,,,,,,,,,,,25.5,25.5,25.5,1"));
TEST_ASSERT_TRUE(p.state().fix == FixType::None);
}
void test_losing_the_fix_drops_the_position() {
NmeaParser p;
feedLine(p, nmea("GNRMC,123519.00,A,5050.8136,N,00421.1532,E,0.0,,041026,,,A,V"));
TEST_ASSERT_TRUE(p.state().positionValid);
feedLine(p, nmea("GNRMC,123520.00,V,,,,,,,041026,,,N,V"));
TEST_ASSERT_FALSE(p.state().positionValid);
TEST_ASSERT_FALSE(p.state().timeValid);
}
void test_gsv_sequence_spans_several_messages() {
NmeaParser p;
feedLine(p, nmea("GPGSV,2,1,05,05,60,120,40,13,45,200,35,15,30,300,30,18,20,050,25,1"));
TEST_ASSERT_EQUAL(0, static_cast<int>(p.state().satellites.size())); // committed at the last message
feedLine(p, nmea("GPGSV,2,2,05,23,10,010,,1"));
const auto& sats = p.state().satellites;
TEST_ASSERT_EQUAL(5, static_cast<int>(sats.size()));
TEST_ASSERT_EQUAL(-1, sats[4].snr); // not tracked: empty SNR
}
void test_each_constellation_keeps_its_own_satellites() {
NmeaParser p;
feedLine(p, nmea("GPGSV,1,1,01,05,60,120,40,1"));
feedLine(p, nmea("GLGSV,1,1,01,70,30,90,33,1"));
feedLine(p, nmea("GAGSV,1,1,01,11,20,45,28,7"));
feedLine(p, nmea("GBGSV,1,1,01,24,50,270,36,1"));
feedLine(p, nmea("GQGSV,1,1,01,02,70,180,41,1"));
const auto& sats = p.state().satellites;
TEST_ASSERT_EQUAL(5, static_cast<int>(sats.size()));
int seen[8] = {};
for (auto& s : sats) seen[static_cast<int>(s.system)]++;
TEST_ASSERT_EQUAL(1, seen[static_cast<int>(Constellation::Gps)]);
TEST_ASSERT_EQUAL(1, seen[static_cast<int>(Constellation::Glonass)]);
TEST_ASSERT_EQUAL(1, seen[static_cast<int>(Constellation::Galileo)]);
TEST_ASSERT_EQUAL(1, seen[static_cast<int>(Constellation::BeiDou)]);
TEST_ASSERT_EQUAL(1, seen[static_cast<int>(Constellation::Qzss)]);
}
void test_a_satellite_on_two_bands_counts_once_with_the_stronger_signal() {
NmeaParser p;
feedLine(p, nmea("GPGSV,1,1,01,05,60,120,30,1")); // L1
feedLine(p, nmea("GPGSV,1,1,01,05,60,120,42,8")); // L5
const auto& sats = p.state().satellites;
TEST_ASSERT_EQUAL(1, static_cast<int>(sats.size()));
TEST_ASSERT_EQUAL(42, sats[0].snr);
}
void test_an_empty_gsv_clears_that_constellation() {
NmeaParser p;
feedLine(p, nmea("GLGSV,1,1,01,70,30,90,33,1"));
TEST_ASSERT_EQUAL(1, static_cast<int>(p.state().satellites.size()));
feedLine(p, "$GLGSV,1,1,00,1*78"); // captured
TEST_ASSERT_EQUAL(0, static_cast<int>(p.state().satellites.size()));
}
void test_gsa_marks_the_satellites_used_per_system() {
NmeaParser p;
feedLine(p, nmea("GPGSV,1,1,02,05,60,120,40,13,45,200,35,1"));
feedLine(p, nmea("GBGSV,1,1,01,05,50,270,36,1")); // BeiDou 5, not GPS 5
feedLine(p, nmea("GNGSA,A,3,05,,,,,,,,,,,,1.6,0.9,1.3,1")); // GPS: 5 used
feedLine(p, nmea("GNGSA,A,3,,,,,,,,,,,,,1.6,0.9,1.3,4")); // BeiDou: none
for (auto& s : p.state().satellites) {
bool expected = s.system == Constellation::Gps && s.prn == 5;
TEST_ASSERT_EQUAL(expected, s.used);
}
}
void test_split_feeds_and_noise_are_handled() {
NmeaParser p;
std::string a = "garbage\r\n" + nmea("GNGGA,123519.00,5050.8136,N,00421.1532,E,1,09,0.9,61.4,M,46.9,M,,");
std::string b = "\r\n";
p.feed(a.data(), 20);
p.feed(a.data() + 20, a.size() - 20);
TEST_ASSERT_FALSE(p.state().positionValid); // no line end yet
p.feed(b.data(), b.size());
TEST_ASSERT_TRUE(p.state().positionValid);
}
void test_an_overlong_line_is_dropped() {
NmeaParser p;
std::string junk(300, 'x');
junk += "\r\n";
p.feed(junk.data(), junk.size());
feedLine(p, nmea("GNGGA,123519.00,5050.8136,N,00421.1532,E,1,09,0.9,61.4,M,46.9,M,,"));
TEST_ASSERT_TRUE(p.state().positionValid);
}
void test_every_complete_line_reaches_the_echo() {
NmeaParser p;
std::vector<std::string> seen;
p.onLine = [&](const std::string& l) { seen.push_back(l); };
std::string data = "$GNVTG,,,,,,,,,N*2E\r\nbroken\r\n$GN";
p.feed(data.data(), data.size());
TEST_ASSERT_EQUAL(2, static_cast<int>(seen.size()));
TEST_ASSERT_EQUAL_STRING("$GNVTG,,,,,,,,,N*2E", seen[0].c_str());
TEST_ASSERT_EQUAL_STRING("broken", seen[1].c_str());
}
void test_constellation_names() {
TEST_ASSERT_EQUAL_STRING("GPS", constellationName(Constellation::Gps));
TEST_ASSERT_EQUAL_STRING("Galileo", constellationName(Constellation::Galileo));
TEST_ASSERT_EQUAL_STRING("BeiDou", constellationName(Constellation::BeiDou));
}
int main() {
UNITY_BEGIN();
RUN_TEST(test_checksum_is_verified);
RUN_TEST(test_no_fix_as_captured_indoors);
RUN_TEST(test_rmc_with_a_fix_gives_position_time_speed_course);
RUN_TEST(test_southern_and_western_hemispheres_are_negative);
RUN_TEST(test_utc_seconds_from_the_fix_time);
RUN_TEST(test_gga_gives_fix_quality_altitude_satellites_and_hdop);
RUN_TEST(test_fix_type_comes_from_gsa_mode);
RUN_TEST(test_losing_the_fix_drops_the_position);
RUN_TEST(test_gsv_sequence_spans_several_messages);
RUN_TEST(test_each_constellation_keeps_its_own_satellites);
RUN_TEST(test_a_satellite_on_two_bands_counts_once_with_the_stronger_signal);
RUN_TEST(test_an_empty_gsv_clears_that_constellation);
RUN_TEST(test_gsa_marks_the_satellites_used_per_system);
RUN_TEST(test_split_feeds_and_noise_are_handled);
RUN_TEST(test_an_overlong_line_is_dropped);
RUN_TEST(test_every_complete_line_reaches_the_echo);
RUN_TEST(test_constellation_names);
return UNITY_END();
}
+2
View File
@@ -26,6 +26,8 @@ void test_defaults_when_store_is_empty() {
TEST_ASSERT_TRUE(s.getBool(Setting::Sound));
TEST_ASSERT_TRUE(s.getBool(Setting::ProbeMacRaw));
TEST_ASSERT_TRUE(s.getBool(Setting::WifiEnabled));
TEST_ASSERT_TRUE(s.getBool(Setting::GnssEnabled)); // Q58: on by default
TEST_ASSERT_FALSE(s.getBool(Setting::CoordinatesDms)); // Q64: decimal degrees
TEST_ASSERT_EQUAL_STRING("EU868", s.getString(Setting::Region).c_str());
TEST_ASSERT_EQUAL_STRING("CET-1CEST,M3.5.0,M10.5.0/3", s.getString(Setting::Timezone).c_str());
}
@@ -107,6 +107,19 @@ void test_names_are_text_rows_with_their_byte_limits() {
TEST_ASSERT_EQUAL_STRING("RORO", f.menu.value(shortName).c_str());
}
void test_gnss_and_coordinate_rows_toggle() {
Fixture f;
int gnss = f.row(SettingsMenu::Row::Gnss), coords = f.row(SettingsMenu::Row::Coordinates);
TEST_ASSERT_EQUAL_STRING("On", f.menu.value(gnss).c_str());
TEST_ASSERT_EQUAL_STRING("Decimal", f.menu.value(coords).c_str());
f.menu.toggle(gnss);
f.menu.toggle(coords);
TEST_ASSERT_FALSE(f.settings.getBool(Setting::GnssEnabled));
TEST_ASSERT_TRUE(f.settings.getBool(Setting::CoordinatesDms));
TEST_ASSERT_EQUAL_STRING("Off", f.menu.value(gnss).c_str());
TEST_ASSERT_EQUAL_STRING("Deg min sec", f.menu.value(coords).c_str());
}
int main() {
UNITY_BEGIN();
RUN_TEST(test_every_row_has_a_label);
@@ -118,5 +131,6 @@ int main() {
RUN_TEST(test_brightness_steps_with_left_right_within_bounds);
RUN_TEST(test_wifi_is_a_page);
RUN_TEST(test_names_are_text_rows_with_their_byte_limits);
RUN_TEST(test_gnss_and_coordinate_rows_toggle);
return UNITY_END();
}
+78
View File
@@ -0,0 +1,78 @@
#include <unity.h>
#include <string>
#include "track.h"
using namespace roro::gnss;
void setUp() {}
void tearDown() {}
void test_distance_is_haversine() {
// One minute of latitude is one nautical mile.
TEST_ASSERT_FLOAT_WITHIN(2.0, 1852.0, distanceMeters(50.0, 4.0, 50.0 + 1.0 / 60, 4.0));
TEST_ASSERT_FLOAT_WITHIN(0.01, 0.0, distanceMeters(50.0, 4.0, 50.0, 4.0));
// A degree of longitude shrinks with latitude: cos(60°) = 0.5.
TEST_ASSERT_FLOAT_WITHIN(60.0, 55597.0, distanceMeters(60.0, 0.0, 60.0, 1.0));
}
void test_first_point_is_always_recorded() {
TrackRule rule;
TEST_ASSERT_TRUE(rule.due(1000, 50.0, 4.0));
}
void test_a_point_needs_5_seconds_and_5_metres() {
TrackRule rule;
rule.due(0, 50.0, 4.0);
double tenMetres = 10.0 / 111195.0; // degrees of latitude
TEST_ASSERT_FALSE(rule.due(4999, 50.0 + tenMetres, 4.0)); // too soon
TEST_ASSERT_FALSE(rule.due(5000, 50.0 + 1e-6, 4.0)); // too close (standing still)
TEST_ASSERT_TRUE(rule.due(5000, 50.0 + tenMetres, 4.0));
TEST_ASSERT_FALSE(rule.due(6000, 50.0 + 3 * tenMetres, 4.0)); // 5 s from the last point
TEST_ASSERT_TRUE(rule.due(10000, 50.0 + 3 * tenMetres, 4.0));
}
void test_reset_starts_over() {
TrackRule rule;
rule.due(0, 50.0, 4.0);
rule.reset();
TEST_ASSERT_TRUE(rule.due(100, 50.0, 4.0));
}
void test_file_name_from_utc() {
TEST_ASSERT_EQUAL_STRING("/gnss/tracks/20261004-203447.gpx", trackPath(1791146087LL).c_str()); // 20:34:47 UTC
}
void test_gpx_header_point_and_footer() {
std::string h = gpx::header("20261004-203447");
TEST_ASSERT_TRUE(h.find("<?xml version=\"1.0\" encoding=\"UTF-8\"?>") == 0);
TEST_ASSERT_TRUE(h.find("<gpx version=\"1.1\" creator=\"roro9stack\"") != std::string::npos);
TEST_ASSERT_TRUE(h.find("<name>20261004-203447</name>") != std::string::npos);
TEST_ASSERT_TRUE(h.find("<trkseg>") != std::string::npos);
TEST_ASSERT_EQUAL_STRING(
"<trkpt lat=\"50.8692030\" lon=\"-4.2535070\"><ele>42.5</ele><time>2026-10-04T20:34:47Z</time></trkpt>",
gpx::point(50.869203, -4.253507, true, 42.5f, 1791146087LL).c_str());
TEST_ASSERT_EQUAL_STRING("<trkpt lat=\"50.8692030\" lon=\"4.2535070\"><time>2026-10-04T20:34:47Z</time></trkpt>",
gpx::point(50.869203, 4.253507, false, 0, 1791146087LL).c_str());
TEST_ASSERT_EQUAL_STRING("</trkseg></trk></gpx>", gpx::footer().c_str());
}
void test_an_unfinished_file_is_recognised() {
TEST_ASSERT_TRUE(gpx::finished("...<time>x</time></trkpt>\n</trkseg></trk></gpx>\n"));
TEST_ASSERT_TRUE(gpx::finished("</trkseg></trk></gpx>"));
TEST_ASSERT_FALSE(gpx::finished("...<time>x</time></trkpt>\n"));
TEST_ASSERT_FALSE(gpx::finished(""));
}
int main() {
UNITY_BEGIN();
RUN_TEST(test_distance_is_haversine);
RUN_TEST(test_first_point_is_always_recorded);
RUN_TEST(test_a_point_needs_5_seconds_and_5_metres);
RUN_TEST(test_reset_starts_over);
RUN_TEST(test_file_name_from_utc);
RUN_TEST(test_gpx_header_point_and_footer);
RUN_TEST(test_an_unfinished_file_is_recognised);
return UNITY_END();
}