23 Commits
Author SHA1 Message Date
rhetenor 4d9cd05f72 fix wokwi wifi 2026-09-02 20:31:37 +02:00
rhetenor 240e2b081d rewrite wifi crate 2026-09-02 20:11:40 +02:00
rhetenor 0aa1370a2b rework card storage to use nvs 2026-08-31 20:16:42 +02:00
rhetenor b814c61f45 more manuals 2026-08-31 20:14:26 +02:00
rhetenor 290758d203 add executer tracing for debug 2026-08-30 20:57:35 +02:00
ede1998 a77b7761cd add custom flash partitions 2026-08-30 17:15:09 +02:00
rhetenor 91948bdcf5 fix clippy warnings 2026-08-30 09:25:49 +00:00
rhetenor 3c657045ca pass outputs and state to nfc task so that they can show errors on their own 2026-08-30 09:18:53 +00:00
rhetenor 3d36885e11 flash_info_view: align content justified 2026-08-30 08:17:22 +00:00
rhetenor af964bcc37 default to debug log for now 2026-08-30 08:15:52 +00:00
rhetenor ccf16522bb flash_store: forgot to add offset when erasing before write 2026-08-30 08:15:52 +00:00
rhetenor 5ac8fe9610 error view: clear display 2026-08-30 08:15:52 +00:00
ede1998 9ee4b68306 vibe-code wokwi display ch1115 integration 2026-08-30 01:57:18 +02:00
ede1998 aa7fc94068 clippy fixes 2026-08-29 23:40:22 +02:00
ede1998 e2853bc9ab minor component fixes 2026-08-29 23:26:24 +02:00
ede1998andede1998 65fcda98ad model character display 2026-08-29 23:13:54 +02:00
ede1998andede1998 2f358075e6 model nfc reader 2026-08-29 23:13:54 +02:00
ede1998andede1998 056d1a414e re-model primary display 2026-08-29 23:13:54 +02:00
ede1998andede1998 6ce0b23f94 more accurate secondary display model 2026-08-29 23:13:54 +02:00
ede1998andede1998 12a91a7478 more accurate uC model 2026-08-29 23:13:54 +02:00
rhetenor 153acffb86 display views: return error instead of unwrapping 2026-08-29 21:09:09 +00:00
rhetenor ef10eec216 implement error view which displays all error on the display 2026-08-29 20:19:14 +00:00
rhetenor a31c818b37 add peripherals module which has shared state of all peripherals 2026-08-29 17:57:08 +00:00
41 changed files with 1617 additions and 614 deletions
+2 -4
View File
@@ -2,13 +2,11 @@
runner = "espflash flash --monitor --chip esp32s3"
[env]
ESP_LOG="info"
ESP_LOG = "debug"
WM_CONN = '{"ssid": "Wokwi-GUEST", "psk": "", "data": {}}'
[build]
rustflags = [
"-C", "link-arg=-nostartfiles",
]
rustflags = ["-C", "link-arg=-nostartfiles"]
target = "xtensa-esp32s3-none-elf"
+3
View File
@@ -32,3 +32,6 @@ creaturedex.wiki/
*.zip
*.lck
schematics/.history/
wokwi/wokwi-api.h
wokwi/ch1115.chip.wasm
Generated
+111 -111
View File
@@ -34,9 +34,9 @@ dependencies = [
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checksum = "c982642fa9e8606056828ee9a8505737230110bb1099153c79efe865c59d12ba"
dependencies = [
"memchr",
]
@@ -71,12 +71,6 @@ version = "1.2.1"
source = "registry+https://github.com/rust-lang/crates.io-index"
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[[package]]
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@@ -148,7 +142,7 @@ checksum = "c0cb6f3d4773a2107b94cbeccaa5b5f0b35a88389b5d522d13d659f64317b22d"
dependencies = [
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"quote",
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"syn 3.0.4",
]
[[package]]
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source = "registry+https://github.com/rust-lang/crates.io-index"
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@@ -336,9 +330,9 @@ checksum = "417bef24afe1460300965a25ff4a24b8b45ad011948302ec221e8a0a81eb2c79"
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@@ -347,14 +341,14 @@ dependencies = [
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"base64",
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"ch1115",
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"embedded-graphics",
"embedded-graphics-core",
@@ -363,10 +357,12 @@ dependencies = [
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"embedded-storage",
"embedded-text",
"esp-alloc",
"esp-bootloader-esp-idf",
"esp-hal",
"esp-hal-wifimanager",
"esp-nvs",
"esp-println",
"esp-rtos",
"esp-storage",
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source = "registry+https://github.com/rust-lang/crates.io-index"
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[[package]]
@@ -545,13 +541,13 @@ dependencies = [
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@@ -722,9 +718,9 @@ checksum = "466dfce9c2172a4e947b81b556f1f07a86029fbac679e323cfb66c738cc2faea"
[[package]]
name = "either"
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[[package]]
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@@ -1049,6 +1045,17 @@ dependencies = [
"embedded-storage",
]
[[package]]
name = "embedded-text"
version = "0.7.3"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "6cf5c72c52db2f7dbe4a9c1ed81cd21301e8d66311b194fa41c04fb4f71843ba"
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]
[[package]]
name = "enumset"
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@@ -1125,9 +1132,9 @@ dependencies = [
[[package]]
name = "esp-hal"
version = "1.1.1"
version = "1.1.2"
source = "registry+https://github.com/rust-lang/crates.io-index"
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checksum = "9e2874462a2a0faca8b6318a10b0db87d2b7cd74dded82b3dfd780c07a319038"
dependencies = [
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"bitflags 2.13.1",
@@ -1224,7 +1231,7 @@ dependencies = [
[[package]]
name = "esp-hal-wifimanager"
version = "0.3.1"
source = "git+https://github.com/InvisibleUSA/esp-hal-wifimanager#49050fdf44e9c2e1ec0be02b01301422c737519c"
source = "git+https://github.com/rhetenor/esp-hal-wifimanager.git#c35c2b35c9c4b724138f2c62a8aed9adf6365a7f"
dependencies = [
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"embassy-futures",
@@ -1518,18 +1525,19 @@ checksum = "da7c62ceae207dd37ea5b845da6a0696c799f85e97da1ab5b7910be3c1c80223"
[[package]]
name = "find-msvc-tools"
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dependencies = [
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"miniz_oxide",
"zlib-rs",
]
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@@ -1753,9 +1761,9 @@ dependencies = [
[[package]]
name = "indexmap"
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@@ -1774,15 +1782,15 @@ dependencies = [
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@@ -1847,9 +1855,9 @@ dependencies = [
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name = "js-sys"
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@@ -1937,9 +1945,9 @@ dependencies = [
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@@ -2023,9 +2031,9 @@ dependencies = [
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@@ -2130,6 +2138,12 @@ dependencies = [
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@@ -2781,9 +2795,9 @@ checksum = "46b71a9d9206e8b46714c74255adcaea8b11e0350c1d8456165073c3f75fc81a"
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source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "a2abe9b86193656635d2411dc43050282ca48aa31c2451210f4202550afb7526"
checksum = "1d38ac1cf9b95face32296c0a3ede1fdc270627c9d9c02a7274dd6d960dc4d56"
dependencies = [
"winnow",
]
@@ -3483,12 +3483,6 @@ version = "1.13.3"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "c6f5d3c3b1bf09027a88a6bc961fc00497d651009560b5463668dc81b0fa87a8"
[[package]]
name = "unicode-width"
version = "0.1.14"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "7dd6e30e90baa6f72411720665d41d89b9a3d039dc45b8faea1ddd07f617f6af"
[[package]]
name = "unicode-width"
version = "0.2.2"
@@ -3513,9 +3507,9 @@ dependencies = [
[[package]]
name = "uuid"
version = "1.24.0"
version = "1.26.0"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "bf3923a6f5c4c6382e0b653c4117f48d631ea17f38ed86e2a828e6f7412f5239"
checksum = "b5772d71c9be8a8a6ac2117d949c5b224c1b72241bb611d9a3012edcf8af7812"
dependencies = [
"js-sys",
"wasm-bindgen",
@@ -3574,9 +3568,9 @@ dependencies = [
[[package]]
name = "wasm-bindgen"
version = "0.2.126"
version = "0.2.127"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "4b067c0c11094aef6b7a801c1e34a26affafdf3d051dba08456b868789aaf9a4"
checksum = "1b70935747edd64d89de3efa29d73789b806c15798f8e7dca4d8ac356b50ce70"
dependencies = [
"cfg-if",
"once_cell",
@@ -3587,9 +3581,9 @@ dependencies = [
[[package]]
name = "wasm-bindgen-macro"
version = "0.2.126"
version = "0.2.127"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "167ce5e579f6bcf889c4f7175a8a5a585de84e8ff93976ce393efa5f2837aab1"
checksum = "77775f8f3f7217702089053b94958f8f54061a3f663417df76e19cbdcca29bc1"
dependencies = [
"quote",
"wasm-bindgen-macro-support",
@@ -3597,9 +3591,9 @@ dependencies = [
[[package]]
name = "wasm-bindgen-macro-support"
version = "0.2.126"
version = "0.2.127"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "f3997c7839262f4ef12cf90b818d6340c18e80f263f1a94bf157d0ec4420380e"
checksum = "e11d33f857dc2fb11b8bc75aee111aa9cbeb12cd9f25efd3d4c2a3dd4e235284"
dependencies = [
"bumpalo",
"proc-macro2",
@@ -3610,9 +3604,9 @@ dependencies = [
[[package]]
name = "wasm-bindgen-shared"
version = "0.2.126"
version = "0.2.127"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "dc1b4cb0cc549fcf58d7dfc081778139b3d283a081644e833e84682ad71cea24"
checksum = "7ef64dbcc55df09c7e5a46182d181c2cfa3e925f3da937ea764728b4bbb9dcbf"
dependencies = [
"unicode-ident",
]
@@ -3707,24 +3701,30 @@ dependencies = [
[[package]]
name = "zerocopy"
version = "0.8.55"
version = "0.8.56"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "b5a105cd7b140f6eeec8acff2ea38135d3cab283ada58540f629fe51e46696eb"
checksum = "556764e583adb45a9f8d413c2a147fa7e8d821e48e12b14fd560b607998b75eb"
dependencies = [
"zerocopy-derive",
]
[[package]]
name = "zerocopy-derive"
version = "0.8.55"
version = "0.8.56"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "0fe976fb70c78cd64cccfe3a6fc142244e8a77b70959b30faf9d0ac37ee228eb"
checksum = "f2ab42fc20575779bd240faa45f94a74256f755c0fa9e89f0ede20d91d0cdfc1"
dependencies = [
"proc-macro2",
"quote",
"syn 2.0.119",
]
[[package]]
name = "zlib-rs"
version = "0.6.7"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "34b31d188d9d685a4f9c7b46d6e36631b07058d2cfe190267adce54dc230bf12"
[[package]]
name = "zmij"
version = "1.0.23"
+8 -3
View File
@@ -28,11 +28,11 @@ log = "0.4.27"
critical-section = "1.2.0"
embedded-io = "0.7.1"
embassy-executor = { version = "0.10.0", features = [] }
embassy-executor = { version = "0.10.0", features = ["trace", "metadata-name"] }
embassy-time = { version = "0.5.1", default-features = false }
embassy-futures = "0.1.2"
esp-alloc = "0.10.0"
esp-hal-wifimanager = { git = "https://github.com/InvisibleUSA/esp-hal-wifimanager", default-features = false, features = [
esp-hal-wifimanager = { git = "https://github.com/rhetenor/esp-hal-wifimanager.git", default-features = false, features = [
"ap",
"esp32s3",
] }
@@ -46,7 +46,7 @@ embedded-graphics-core = "0.4.1"
base64 = { version = "0.23.1", default-features = false, features = ["alloc"] }
pn532 = "0.5.0"
num_enum = { version = "0.7.6", default-features = false }
embassy-sync = "0.8.0"
embassy-sync = "0.7.2"
embedded-hal-async = "1.0.0"
i2c-character-display = "0.5.1"
ch1115 = { version = "0.1.2", features = ["graphics"] }
@@ -54,6 +54,8 @@ esp-storage = "0.9.0"
embedded-storage = "0.3.1"
binary_serde = "1.0.25"
static_assertions = { version = "1.1.0", default-features = false }
embedded-text = "0.7.3"
esp-nvs = { version = "0.5.0", features = ["esp32s3"] }
[build-dependencies]
log = "0.4.27"
@@ -82,3 +84,6 @@ opt-level = 's'
[features]
default = []
wokwi = []
[lints.clippy]
manual_async_fn = "allow"
+23
View File
@@ -1,5 +1,6 @@
fn main() {
generate_filter_snippet();
compile_custom_wokwi_components();
linker_be_nice();
// make sure linkall.x is the last linker script (otherwise might cause problems with flip-link)
println!("cargo:rustc-link-arg=-Tlinkall.x");
@@ -70,6 +71,28 @@ fn linker_be_nice() {
);
}
fn compile_custom_wokwi_components() {
use std::process::Command;
if std::env::var("CARGO_FEATURE_WOKWI").is_ok() {
println!("cargo:rerun-if-changed=wokwi/ch1115.chip.c");
println!("cargo:rerun-if-changed=wokwi/ch1115.chip.json");
println!("cargo:rerun-if-changed=wokwi/Makefile");
let status = Command::new("make")
.current_dir("wokwi")
.status()
.expect("Failed to execute make command. Is 'make' installed?");
if !status.success() {
panic!(
"Wokwi custom chip compilation failed with status: {}",
status
);
}
}
}
// Taken over from esp_println because impossible to just extend their existing env logger.
// https://github.com/esp-rs/esp-hal/blob/8fa6d7e985e724d6ad998e34307429b0920da370/esp-println/build.rs
fn generate_filter_snippet() {
+34 -6
View File
@@ -59,19 +59,23 @@
"top": -291.2,
"left": -167.2,
"attrs": { "pins": "i2c" }
}
},
{ "type": "chip-ch1115", "id": "chip1", "top": 509.82, "left": -4.8, "attrs": {} },
{ "type": "chip-ch1115", "id": "chip2", "top": 625.02, "left": -4.8, "attrs": {} },
{ "type": "chip-ch1115", "id": "chip3", "top": 394.62, "left": -4.8, "attrs": {} },
{ "type": "wokwi-vcc", "id": "vcc1", "top": 39.16, "left": 316.8, "attrs": {} }
],
"connections": [
[ "esp1:TX", "$serialMonitor:RX", "", [] ],
[ "esp1:RX", "$serialMonitor:TX", "", [] ],
[ "lcd1:VCC", "esp1:3V3", "red", [ "v19.2", "h-57.6", "v-105.6", "h-124.95" ] ],
[ "lcd1:GND", "esp1:GND.2", "black", [ "v28.8", "h-76.8", "v-76.8" ] ],
[ "lcd1:CS", "esp1:11", "orange", [ "v0" ] ],
[ "lcd1:D/C", "esp1:12", "gold", [ "v0" ] ],
[ "lcd1:CS", "esp1:11", "orange", [ "v259.2", "h-729.6", "v-95.82" ] ],
[ "lcd1:D/C", "esp1:12", "gold", [ "v278.4", "h-729.6", "v-105.42" ] ],
[ "lcd1:RESET", "esp1:10", "brown", [ "v0" ] ],
[ "lcd1:MOSI", "esp1:35", "violet", [ "v105.6", "h-124.8", "v-144" ] ],
[ "lcd1:MOSI", "esp1:35", "violet", [ "v124.8", "h-124.8", "v0.18" ] ],
[ "lcd1:SCK", "esp1:36", "white", [ "v115.2", "h-144", "v-86.4" ] ],
[ "esp1:37", "lcd1:MISO", "magenta", [ "h57.6", "v105.6", "h172.8" ] ],
[ "esp1:37", "lcd1:MISO", "magenta", [ "h57.6", "v-0.18", "h594.94" ] ],
[ "btn-up:2.l", "esp1:38", "purple", [ "h-9.6", "v19.4" ] ],
[ "btn-up:1.l", "esp1:GND.2", "black", [ "h0" ] ],
[ "btn-down:1.l", "esp1:GND.2", "black", [ "h0" ] ],
@@ -87,7 +91,31 @@
[ "lcd2:GND", "esp1:GND.2", "black", [ "h0" ] ],
[ "lcd2:VCC", "esp1:3V3.1", "red", [ "h0" ] ],
[ "lcd2:SDA", "esp1:17", "green", [ "h-134.4", "v413" ] ],
[ "lcd2:SCL", "esp1:18", "green", [ "h-124.8", "v38.7" ] ]
[ "lcd2:SCL", "esp1:18", "green", [ "h-124.8", "v38.7" ] ],
[ "chip2:RES", "chip1:RES", "gray", [ "h-28.8", "v-115.2" ] ],
[ "chip1:RES", "chip3:RES", "gray", [ "h-28.8", "v-67.2" ] ],
[ "chip2:GND", "chip1:GND", "black", [ "h-48", "v-115.2" ] ],
[ "chip1:GND", "chip3:GND", "black", [ "h-48", "v-115.2" ] ],
[ "chip2:VCC", "chip1:VCC", "red", [ "h-38.4", "v-115.2" ] ],
[ "chip3:VCC", "chip1:VCC", "red", [ "h-38.4", "v115.2" ] ],
[ "chip2:DC", "chip1:DC", "gold", [ "h46.84", "v-115.2" ] ],
[ "chip1:DC", "chip3:DC", "gold", [ "h46.84", "v-115.2" ] ],
[ "chip2:SCL", "chip1:SCL", "white", [ "h56.44", "v-115.2" ] ],
[ "chip1:SCL", "chip3:SCL", "white", [ "h56.44", "v-115.2" ] ],
[ "chip3:SDA", "chip1:SDA", "violet", [ "h-1.16", "h67.2", "v57.6" ] ],
[ "chip1:SDA", "chip2:SDA", "violet", [ "h66.04", "v115.2" ] ],
[ "esp1:35", "chip3:SDA", "violet", [ "h364.53", "v153.42" ] ],
[ "chip3:SCL", "esp1:36", "white", [ "h56.44", "v-172.62" ] ],
[ "esp1:12", "chip3:DC", "gold", [ "h-29.12", "v105.42", "h460.8", "v67.2" ] ],
[ "esp1:GND.4", "chip3:GND", "black", [ "h18.93", "v19.02", "h105.6", "v48" ] ],
[ "esp1:3V3.1", "chip3:VCC", "red", [ "h-57.92", "v259.02" ] ],
[ "lcd1:VCC", "vcc1:VCC", "red", [ "v67.2", "h-48" ] ],
[ "lcd1:LED", "vcc1:VCC", "red", [ "v67.2", "h-144.01" ] ],
[ "lcd1:RST", "esp1:10", "gray", [ "v268.8", "h-729.6", "v-115.02" ] ],
[ "esp1:47", "chip3:RES", "gray", [ "h28.53", "v182.22" ] ],
[ "chip3:CS", "esp1:13", "blue", [ "h-278.4", "v-153.42" ] ],
[ "esp1:14", "chip1:CS", "magenta", [ "h-9.92", "v259.02" ] ],
[ "esp1:21", "chip2:CS", "#8f4814", [ "h95.73", "v316.62" ] ]
],
"dependencies": {}
}
Binary file not shown.
+2
View File
@@ -0,0 +1,2 @@
[idf_format_args]
partition_table = "partitions.csv"
+245 -24
View File
@@ -1,9 +1,77 @@
include <BOSL2/std.scad>
BASE_MODEL_SCALE = [1.1, 1, 1.1];
BASE_MODEL_TRANSLATE = [-0.4, 0, 16.978];
EPS = 0.01;
$fn = 50;
module main_display(){
// Outer dimensions, height currently unknown
cube([55.04, 89.3, 10]);
module pin_header(cols = 4, rows = 1, anchor = BOTTOM, spin = 0, orient = UP) {
// Standard pin header dimensions (in mm)
base_height = 2.54; // Height of the plastic base
pin_width = 0.64; // Width/thickness of the square pin
pin_length = 6.0; // Length of pin sticking up
pitch = 2.54;
// 1. The Plastic Base is the Parent
// It directly receives your anchor, spin, and orient arguments.
color("darkgrey")
cuboid([cols * pitch, rows * pitch, base_height], anchor=anchor, spin=spin, orient=orient) {
// 2. Metal Pins are the Children
// Placed relative to the center of the plastic base
color("silver")
xcopies(spacing=pitch, n=cols) {
ycopies(spacing=pitch, n=rows) {
up(base_height / 2)
cuboid([pin_width, pin_width, pin_length], anchor=BOTTOM);
}
}
// Allows attaching other objects to this header if needed
children();
}
}
module main_display(pin_header = false) {
// Outer dimensions
width = 55.04;
length = 89.35;
height = 2.7;
display_height = 3;
display_length = 77.6;
display_inset = 5.7;
sd_width = 26.6;
sd_height = 3;
sd_length = 16.6;
sd_inset = 29.4;
hole_diameter = 3;
hole_inset = 1.5;
difference() {
cuboid([length, width, height]) {
position(TOP + RIGHT)
left(display_inset)
color("black")
cuboid([display_length, width, display_height], anchor=BOTTOM + RIGHT);
position(BOTTOM + RIGHT + FRONT)
left(sd_inset)
cuboid([sd_width, sd_length, sd_height], anchor=TOP + RIGHT + FRONT);
position(BOTTOM + LEFT)
xrot(180)
pin_header(14, spin=90, anchor=BOTTOM + BACK);
}
xcopies(length - (2 * hole_inset) - hole_diameter) {
ycopies(width - (2 * hole_inset) - hole_diameter) {
zcyl(d=hole_diameter, h=height + EPS);
}
}
}
}
module pad() {
@@ -11,35 +79,188 @@ module pad(){
cube([20, 20, 10]);
}
module small_display_below_main()
{
module secondary_display(pin_header = false) {
// https://de.aliexpress.com/item/1005003753680706.html
cube([45.8, 20, 11.3]);
// old i2c variant:
//cube([43.5, 19.44, 4.5]);
length = 45.8;
width = 20;
height = 3.7;
// initial dimension ideas
// cube([38,16,4]);
// translate([150,0,0]) cube([22,5.5,4]);
hole_diameter = 2;
hole_inset = 1.5;
difference() {
cuboid([length, width, height]) {
if (pin_header)
position(LEFT + TOP)
pin_header(7, spin=90, anchor=BACK + BOTTOM);
}
module tertiary_display()
{
// https://de.aliexpress.com/item/1005006034531826.html
cube([80, 36, 10]);
right(length / 2 - hole_inset) {
ycopies(width - (2 * hole_inset) - hole_diameter) {
zcyl(d=hole_diameter, h=height + EPS, anchor=RIGHT);
}
}
}
}
module battery() {
module battery(anchor = BOTTOM) {
// 18650
rotate([0,90,0]) cylinder(d=18, h=65);
rotate([0, 90, 0]) cylinder(d=18, h=65, anchor=anchor);
}
module microcontroller() {
// width 32 including USB-C port
length = 91.5;
height = 20;
/// USB-C port and switch not 100% dimensionally accurate, take care!
module micro_controller(battery_holder = false, battery = false) {
pcb_length = 91.5;
pcb_height = 6.5; // including components, highest point: jst connector, followed by uC
pcb_height_no_components = 1.1;
pcb_width = 28.8;
hole_diameter = 2.5;
hole_inset = 1;
usb_protrusion = 1.7;
usb_width = 9;
usb_inset_from_pcb_end = 5;
power_switch_protrusion = 2.1;
power_switch_inset_from_pcb_end = 8.1;
power_switch_width = 4;
battery_holder_height = 15;
battery_holder_width = 21;
battery_holder_length = 77.3;
battery_length = 65;
delta = length - battery_length;
cube([length, 32, height]);
translate([delta / 2,16, 15]) battery();
battery_protrusion = 4.5;
difference() {
cuboid([pcb_length, pcb_width, pcb_height], rounding=2, edges="Z") {
if (battery_holder)
position(TOP)
cube([battery_holder_length, battery_holder_width, battery_holder_height], anchor=BOTTOM + CENTER) {
if (battery)
position(TOP)
up(battery_protrusion)
battery(anchor=CENTER + LEFT);
}
position(RIGHT + BOTTOM) {
position(FRONT)
left(usb_inset_from_pcb_end)
cube([usb_width, usb_protrusion, pcb_height - pcb_height_no_components], orient=FRONT, anchor=RIGHT + BOTTOM + FRONT);
position(BACK)
left(power_switch_inset_from_pcb_end)
cube([power_switch_width, power_switch_protrusion, pcb_height - pcb_height_no_components], orient=FRONT, anchor=RIGHT + TOP + FRONT);
}
}
xcopies(pcb_length - (2 * hole_inset) - hole_diameter) {
ycopies(pcb_width - (2 * hole_inset) - hole_diameter) {
cyl(d=hole_diameter, h=pcb_height + EPS, orient=UP);
}
}
}
}
module nfc(pin_header = true) {
length = 43;
width = 40.5;
height = 4;
pin_protrusion = 2.2;
hole_diameter = 3;
hole_inset = 6;
x_span = length - (2 * hole_inset) - hole_diameter;
y_span = width - (2 * hole_inset) - hole_diameter;
color("red")
difference() {
cuboid([length, width, height], rounding=2, edges="Z") {
// pin header is lower than highest other component -> in the cube.
if (pin_header)
right(6 - pin_protrusion) // ugly: 6mm is the pin height
position(LEFT + TOP)
yrot(-90)
pin_header(7, spin=90, anchor=FRONT + TOP);
}
move_copies(
[
[x_span / 2, -y_span / 2], // Bottom-Left corner
[-x_span / 2, y_span / 2], // Top-Right corner
]
) {
zcyl(d=hole_diameter, h=height + EPS);
}
}
}
module tertiary_display(pin_headers = true) {
// https://de.aliexpress.com/item/1005006034531826.html
pcb_length = 81;
pcb_width = 36.1;
pcb_height = 3.7;
hole_diameter = 2.8;
hole_inset = 1;
display_length = 71.2;
display_width = 24.4;
display_height = 7;
piggy_length = 41.8;
piggy_width = 19.1;
piggy_height = 8.5 - 2.6;
piggy_inset = 6.2;
jumper_protrusion = 6.6;
pin_protrusion = 6.2;
color("green")
difference() {
cuboid([pcb_length, pcb_width, pcb_height]) {
position(TOP)
cuboid([display_length, display_width, display_height], anchor=BOTTOM);
}
xcopies(pcb_length - (2 * hole_inset) - hole_diameter) {
ycopies(pcb_width - (2 * hole_inset) - hole_diameter) {
zcyl(d=hole_diameter, h=pcb_height + 1);
}
}
}
// Replaces position(BOTTOM + BACK + LEFT) so that difference cannot mess with color.
translate([-pcb_length / 2 + piggy_inset, pcb_width / 2, -pcb_height / 2]) {
color("black")
cuboid([piggy_length, piggy_width, piggy_height], anchor=TOP + BACK + LEFT);
if (pin_headers) {
// Replaces position(LEFT + BOTTOM) so that parent child cannot mess with color.
translate([0, -piggy_width / 2, -piggy_height])
right(6 - pin_protrusion)
yrot(-90)
pin_header(4, spin=90, anchor=BACK + TOP);
// Replaces position(RIGHT + BOTTOM) so that parent child cannot mess with color.
translate([piggy_length, -piggy_width / 2, -piggy_height])
left(6 - pin_protrusion)
yrot(90)
back(1.6)
pin_header(2, spin=-90, anchor=BACK + TOP);
// Replaces position(BACK + TOP) so that parent child cannot mess with color.
translate([piggy_length / 2, -EPS, 0])
pin_header(16, anchor=BACK + TOP);
}
}
}
// show different components as overview
if (false) {
back(30) tertiary_display(true);
back(80) yrot(180) secondary_display(true);
right(100) zrot(90) main_display(true);
fwd(20) micro_controller(true, true);
fwd(60) nfc(true);
}
+9
View File
@@ -0,0 +1,9 @@
# ESP-IDF Partition Table
# Name,Type,SubType,Offset,Size,Flags
nvs,data,nvs,0x9000,0x6000,
phy_init,data,phy,0xf000,0x1000,
# We keep the default layout more or less. But here we add a partition for more data before our application
more_nvs,data,nvs,0x10000,0xfa000,
# no offset given -> tool infers it for us
factory,app,factory, ,0xea6000,
1 # ESP-IDF Partition Table
2 # Name,Type,SubType,Offset,Size,Flags
3 nvs,data,nvs,0x9000,0x6000,
4 phy_init,data,phy,0xf000,0x1000,
5 # We keep the default layout more or less. But here we add a partition for more data before our application
6 more_nvs,data,nvs,0x10000,0xfa000,
7 # no offset given -> tool infers it for us
8 factory,app,factory, ,0xea6000,
+27 -7
View File
@@ -1,6 +1,10 @@
use crate::storage::cardstore::CardStore;
use crate::navigation::navigation::display_error;
use crate::{
navigation::{navigation::Mutex, outputs::Outputs, state::NavigationState},
peripherals::Peripherals,
};
use alloc::string::ToString;
use embedded_hal_bus::i2c::AtomicDevice;
use esp_hal::rtc_cntl::Rtc;
use esp_hal::{Blocking, i2c::master::I2c, time::Instant};
use crate::{
@@ -16,8 +20,9 @@ use crate::{
)]
pub async fn nfc_scanner(
mut nfc_driver: NfcPn532Driver<AtomicDevice<'static, I2c<'static, Blocking>>>,
mut card_store: CardStore,
rtc: Rtc<'static>,
outputs: &'static Mutex<Outputs>,
peripherals: &'static Peripherals,
navigation_state: &'static Mutex<NavigationState>,
) {
loop {
while CARD_DATA.lock().await.is_none() {
@@ -37,10 +42,25 @@ pub async fn nfc_scanner(
};
CARD_DATA.lock().await.replace(card);
match card_store.save_raw_card(split_data, rtc.current_time_us()) {
log::debug!("saving card to flash");
match peripherals
.store
.lock()
.await
.card_store
.save_raw_card(&split_data, peripherals.rtc.current_time_us())
.await
{
Ok(()) => {}
Err(error) => {
log::error!("Error storing card in flash: {:?}", error)
log::error!("Error storing card in flash: {:?}", error);
display_error(
error.to_string(),
navigation_state,
outputs,
peripherals,
)
.await;
}
}
@@ -56,6 +76,6 @@ pub async fn nfc_scanner(
}
}
}
embassy_time::Timer::after(embassy_time::Duration::from_millis(1000)).await;
embassy_time::Timer::after(embassy_time::Duration::from_millis(10)).await;
}
}
+82 -37
View File
@@ -7,19 +7,26 @@
)]
#![deny(clippy::large_stack_frames)]
use alloc::boxed::Box;
use alloc::sync::Arc;
use creaturedex::background_tasks;
use creaturedex::drivers::i2c_bus::I2cBusPinConfiguration;
use creaturedex::drivers::nfc_pn532::NfcPn532Driver;
use creaturedex::drivers::primary_lcd::PrimaryDisplay;
use creaturedex::drivers::secondary_oled::SecondaryDisplay;
use creaturedex::drivers::spi_bus;
use creaturedex::drivers::tertiary_lcd::{
BOX, EMPTY, EXAMPLE, HEART, TertiaryDisplay, TertiaryDisplayPinConfiguration,
};
use creaturedex::navigation::inputs::Inputs;
use creaturedex::navigation::navigation::Mutex;
use creaturedex::navigation::navigation::{self};
use creaturedex::navigation::outputs::Outputs;
use creaturedex::storage::cardstore::CardStore;
use creaturedex::storage::store::Store;
use creaturedex::navigation::state::NavigationState;
use creaturedex::network::wifi::setup_wifi;
use creaturedex::peripherals::Peripherals;
use creaturedex::peripherals::storage::cardstore::CardStore;
use creaturedex::peripherals::storage::store::Store;
use embassy_executor::Spawner;
use embedded_graphics::pixelcolor::BinaryColor;
use embedded_graphics::{
@@ -45,6 +52,9 @@ extern crate alloc;
const HEAP_SIZE: usize = 73744;
const NVS_PARTITION_OFFSET: usize = 0x10000;
const NVS_PARTITION_SIZE: usize = 0xfa000;
// This creates a default app-descriptor required by the esp-idf bootloader.
// For more information see: <https://docs.espressif.com/projects/esp-idf/en/stable/esp32/api-reference/system/app_image_format.html#application-description>
esp_bootloader_esp_idf::esp_app_desc!();
@@ -58,41 +68,44 @@ async fn main(spawner: Spawner) {
creaturedex::logging::init();
let config = esp_hal::Config::default().with_cpu_clock(CpuClock::max());
let peripherals = esp_hal::init(config);
let esp_peripherals = esp_hal::init(config);
esp_alloc::heap_allocator!(#[esp_hal::ram(reclaimed)] size: HEAP_SIZE);
let sw_interrupt =
esp_hal::interrupt::software::SoftwareInterruptControl::new(peripherals.SW_INTERRUPT);
let timg0 = TimerGroup::new(peripherals.TIMG0);
esp_hal::interrupt::software::SoftwareInterruptControl::new(esp_peripherals.SW_INTERRUPT);
let timg0 = TimerGroup::new(esp_peripherals.TIMG0);
esp_rtos::start(timg0.timer0, sw_interrupt.software_interrupt0);
let (primary, mut secondaries) = retry(
let (mut primary, mut secondaries) = retry(
5,
spi_bus::DisplayPinConfiguration {
spi_peripheral: peripherals.SPI2,
sck: peripherals.GPIO36,
mosi: peripherals.GPIO35,
miso: peripherals.GPIO37,
cs_primary: peripherals.GPIO11,
cs_secondary_1: peripherals.GPIO13,
cs_secondary_2: peripherals.GPIO14,
cs_secondary_3: peripherals.GPIO21,
reset_primary: peripherals.GPIO10,
reset_secondary: peripherals.GPIO47,
dc_pin: peripherals.GPIO12,
spi_peripheral: esp_peripherals.SPI2,
sck: esp_peripherals.GPIO36,
mosi: esp_peripherals.GPIO35,
miso: esp_peripherals.GPIO37,
cs_primary: esp_peripherals.GPIO11,
cs_secondary_1: esp_peripherals.GPIO13,
cs_secondary_2: esp_peripherals.GPIO14,
cs_secondary_3: esp_peripherals.GPIO21,
reset_primary: esp_peripherals.GPIO10,
reset_secondary: esp_peripherals.GPIO47,
dc_pin: esp_peripherals.GPIO12,
},
spi_bus::DisplayPinConfiguration::build,
);
// Initialize the shared I2C bus using the refactored i2c_bus module.
let shared_i2c = {
use alloc::boxed::Box;
let bus = retry(5, I2cBusPinConfiguration {
i2c_peripheral: peripherals.I2C0,
scl: peripherals.GPIO18,
sda: peripherals.GPIO17,
}, I2cBusPinConfiguration::build);
let bus = retry(
5,
I2cBusPinConfiguration {
i2c_peripheral: esp_peripherals.I2C0,
scl: esp_peripherals.GPIO18,
sda: esp_peripherals.GPIO17,
},
I2cBusPinConfiguration::build,
);
Box::leak(Box::new(bus))
};
@@ -113,11 +126,26 @@ async fn main(spawner: Spawner) {
);
}
let store = Store::new(peripherals.FLASH).expect("Could not initialize Flash Store");
let cardstore = CardStore::new(store).expect("Could not initialize Card Store");
let storage = esp_storage::FlashStorage::new(esp_peripherals.FLASH);
let rtc = Rtc::new(peripherals.LPWR);
//setup_wifi(peripherals.WIFI, peripherals.FLASH, &spawner).await;
let nvs = Arc::new(Mutex::new(
esp_nvs::Nvs::new(NVS_PARTITION_OFFSET, NVS_PARTITION_SIZE, storage)
.expect("failed to create nvs"),
));
setup_wifi(esp_peripherals.WIFI, Arc::clone(&nvs), &spawner).await;
let card_store = CardStore::new(nvs)
.await
.expect("Could not initialize Card Store");
let store = Store { card_store };
let rtc = Rtc::new(esp_peripherals.LPWR);
let peripherals = Box::leak(Box::new(Peripherals {
store: Mutex::new(store),
rtc,
}));
let mut nfc_driver = NfcPn532Driver::new(AtomicDevice::new(shared_i2c));
if nfc_driver.configure_sam().await.is_ok() {
@@ -128,19 +156,20 @@ async fn main(spawner: Spawner) {
let button_config = InputConfig::default().with_pull(Pull::Up);
let inputs = Inputs {
up: Input::new(peripherals.GPIO38, button_config),
down: Input::new(peripherals.GPIO39, button_config),
left: Input::new(peripherals.GPIO40, button_config),
right: Input::new(peripherals.GPIO41, button_config),
back: Input::new(peripherals.GPIO8, button_config),
ok: Input::new(peripherals.GPIO0, button_config),
up: Input::new(esp_peripherals.GPIO38, button_config),
down: Input::new(esp_peripherals.GPIO39, button_config),
left: Input::new(esp_peripherals.GPIO40, button_config),
right: Input::new(esp_peripherals.GPIO41, button_config),
back: Input::new(esp_peripherals.GPIO8, button_config),
ok: Input::new(esp_peripherals.GPIO0, button_config),
};
display_shit(&mut secondaries[0], "foo 1");
display_shit(&mut secondaries[1], "bar 1");
display_shit(&mut secondaries[2], "baz 1");
display_shit_prim(&mut primary, "Hello World");
let outputs = {
let outputs = Box::leak(Box::new(Mutex::new({
let [sec_1, sec_2, sec_3] = secondaries;
Outputs {
primary_display: primary,
@@ -150,13 +179,19 @@ async fn main(spawner: Spawner) {
tertiary_display: lcd,
_led_a: (),
}
};
})));
let navigation_state = Box::leak(Box::new(Mutex::new(NavigationState::new())));
log::info!("Setup complete, entering main loop");
spawner.spawn(navigation::run(inputs, outputs).expect("run task failed"));
spawner.spawn(
background_tasks::nfc_scanner(nfc_driver, cardstore, rtc).expect("nfc scanner task failed"),
navigation::run(inputs, outputs, peripherals, navigation_state).expect("run task failed"),
);
spawner.spawn(
background_tasks::nfc_scanner(nfc_driver, outputs, peripherals, navigation_state)
.expect("nfc scanner task failed"),
);
core::future::pending::<()>().await
}
@@ -170,6 +205,16 @@ fn display_shit(oled: &mut SecondaryDisplay<'static>, text: &str) {
oled.flush().unwrap();
}
fn display_shit_prim(main: &mut PrimaryDisplay<'static>, text: &str) {
use embedded_graphics::pixelcolor::Rgb565;
main.clear(Rgb565::BLACK).unwrap();
let text_style = MonoTextStyle::new(&FONT_6X10, Rgb565::WHITE);
Text::new(text, Point::new(10, 20), text_style)
.draw(main)
.unwrap();
}
fn retry<T, U, F: FnMut(T) -> Result<U, T>>(repetitions: u32, input: T, mut action: F) -> U {
let mut initial_state = input;
for iteration in 0..repetitions {
+34
View File
@@ -1,4 +1,6 @@
use base64::prelude::*;
use core::fmt::Display;
use esp_nvs::Key;
use alloc::{string::String, vec::Vec};
use num_enum::FromPrimitive;
@@ -22,6 +24,38 @@ pub struct RawCard {
pub _padding: [u8; 2],
}
impl Default for RawCard {
fn default() -> Self {
Self {
event_encoding: Default::default(),
card_type: Default::default(),
card_uuid: Default::default(),
_reserved: Default::default(),
sprite: [0; 722],
packed_card_text: [0; 54],
secret: Default::default(),
_opaque_trailer: [0; 49],
_padding: Default::default(),
}
}
}
impl RawCard {
pub fn get_uuid(&self) -> u32 {
((u16::from_ne_bytes(self.event_encoding) as u32) << 16)
| (u16::from_ne_bytes(self.card_uuid) as u32)
}
pub fn get_nvs_key(&self) -> Key {
let uuid = self.get_uuid();
Self::nvs_key_from_uuid(uuid)
}
pub fn nvs_key_from_uuid(uuid: u32) -> Key {
let base64 = BASE64_STANDARD.encode(uuid.to_ne_bytes());
Key::from_str(&base64)
}
}
static_assertions::const_assert!(RawCard::SERIALIZED_SIZE.is_multiple_of(4));
#[derive(Debug, Clone, Eq, PartialEq, FromPrimitive)]
+21 -1
View File
@@ -1,3 +1,6 @@
use core::error::Error;
use core::fmt::Debug;
use core::fmt::Display;
use display_interface_spi::SPIInterface;
use embedded_graphics::draw_target::DrawTarget;
use embedded_graphics::pixelcolor::Rgb565;
@@ -6,10 +9,27 @@ use embedded_hal_bus::spi::AtomicDevice;
use embedded_hal_bus::util::AtomicCell;
use esp_hal::delay::Delay;
use esp_hal::gpio::Output;
use ili9341::{DisplaySize240x320, Ili9341, Orientation};
use ili9341::{DisplayError, DisplaySize240x320, Ili9341, Orientation};
use crate::drivers::spi_bus::{DisplaySpiBus, SharedOutput};
#[derive(Debug)]
pub struct PrimaryDisplayError(DisplayError);
impl Display for PrimaryDisplayError {
fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
self.0.fmt(f)
}
}
impl Error for PrimaryDisplayError {}
impl From<DisplayError> for PrimaryDisplayError {
fn from(value: DisplayError) -> Self {
Self(value)
}
}
type GenericPrimaryDisplay<'a, BUS, DC, RES> =
Ili9341<SPIInterface<AtomicDevice<'a, BUS, Output<'a>, Delay>, DC>, RES>;
pub type PrimaryDisplay<'a> =
+9 -8
View File
@@ -158,14 +158,7 @@ where
OutputConfig::default(),
));
let primary = PrimaryDisplayPinConfiguration {
spi_bus: bus_static,
cs: low_active(self.cs_primary),
reset: low_active(self.reset_primary),
dc: dc.clone(),
}
.build();
// Secondary displays must come first or they don't work in wokwi for some reason.
let secondaries = SecondaryDisplayPinConfiguration {
spi_bus: bus_static,
cs_pins: [
@@ -174,6 +167,14 @@ where
low_active(self.cs_secondary_3),
],
res: reset_secondary,
dc: dc.clone(),
}
.build();
let primary = PrimaryDisplayPinConfiguration {
spi_bus: bus_static,
cs: low_active(self.cs_primary),
reset: low_active(self.reset_primary),
dc,
}
.build();
+67 -1
View File
@@ -10,5 +10,71 @@ pub mod drivers;
pub mod logging;
pub mod navigation;
pub mod network;
pub mod storage;
pub mod peripherals;
pub mod views;
#[unsafe(no_mangle)]
pub extern "Rust" fn _embassy_trace_poll_start(executor_id: u32) {}
/// This callback is called AFTER a task is initialized/allocated, and BEFORE
/// it is enqueued to run for the first time. If the task ends (and does not
/// loop "forever"), there will be a matching call to `_embassy_trace_task_end`.
///
/// Tasks start life in the SPAWNED state.
#[unsafe(no_mangle)]
pub extern "Rust" fn _embassy_trace_task_new(executor_id: u32, task_id: u32) {
log::debug!("Started new task on executer 0x{executor_id:x} with id 0x{task_id:x}")
}
/// This callback is called AFTER a task is destructed/freed. This will always
/// have a prior matching call to `_embassy_trace_task_new`.
#[unsafe(no_mangle)]
pub extern "Rust" fn _embassy_trace_task_end(executor_id: u32, task_id: u32) {
log::debug!("Ended task on executer 0x{executor_id:x} with id 0x{task_id:x}")
}
/// This callback is called AFTER a task has been dequeued from the runqueue,
/// and BEFORE the task is polled. There will always be a matching call to
/// `_embassy_trace_task_exec_end`.
///
/// This marks the TASK state transition from WAITING -> RUNNING
/// This marks the EXECUTOR state transition from SCHEDULING -> POLLING
#[unsafe(no_mangle)]
pub extern "Rust" fn _embassy_trace_task_exec_begin(executor_id: u32, task_id: u32) {}
/// This callback is called AFTER a task has completed polling. There will
/// always be a matching call to `_embassy_trace_task_exec_begin`.
///
/// This marks the TASK state transition from either:
/// * RUNNING -> IDLE - if there were no `_embassy_trace_task_ready_begin` events
/// for this task since the last `_embassy_trace_task_exec_begin` for THIS task
/// * RUNNING -> WAITING - if there WAS a `_embassy_trace_task_ready_begin` event
/// for this task since the last `_embassy_trace_task_exec_begin` for THIS task
///
/// This marks the EXECUTOR state transition from POLLING -> SCHEDULING
#[unsafe(no_mangle)]
pub extern "Rust" fn _embassy_trace_task_exec_end(excutor_id: u32, task_id: u32) {}
/// This callback is called AFTER the waker for a task is awoken, and BEFORE it
/// is added to the run queue.
///
/// If the given task is currently RUNNING, this marks no state change, BUT the
/// RUNNING task will then move to the WAITING stage when polling is complete.
///
/// If the given task is currently IDLE, this marks the TASK state transition
/// from IDLE -> WAITING.
///
/// NOTE: This may be called from an interrupt, outside the contpub ext of the current
/// task or executor.
#[unsafe(no_mangle)]
pub extern "Rust" fn _embassy_trace_task_ready_begin(executor_id: u32, task_id: u32) {}
/// This callback is called AFTER all dequeued tasks in a single call to poll
/// have been processed. This will always be paired with a call to
/// `_embassy_trace_executor_idle`.
///
///
/// This marks the EXECUTOR state transition from SCHEDULING -> IDLE
///
#[unsafe(no_mangle)]
pub extern "Rust" fn _embassy_trace_executor_idle(executor_id: u32) {}
+67 -9
View File
@@ -3,7 +3,13 @@ use crate::navigation::inputs::ButtonAction;
use crate::navigation::inputs::Inputs;
use crate::navigation::outputs::Outputs;
use crate::navigation::state::NavigationState;
use crate::peripherals::Peripherals;
use crate::views::error_view::ErrorView;
use crate::views::view::View;
use alloc::boxed::Box;
use alloc::string::String;
use alloc::string::ToString;
use core::error;
use embassy_futures::select::{Either, select};
use embassy_sync::blocking_mutex::raw::CriticalSectionRawMutex;
@@ -27,18 +33,64 @@ pub struct NewState {
}
pub trait Navigable {
fn display(&self, outputs: &mut Outputs) -> impl core::future::Future<Output = ()> + Send;
fn display(
&self,
outputs: &mut Outputs,
peripherals: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send;
fn handle_input(&self, input: Action) -> impl core::future::Future<Output = NewState> + Send;
}
pub async fn display_error(
error: String,
navigation_state: &Mutex<NavigationState>,
outputs: &Mutex<Outputs>,
peripherals: &Peripherals,
) -> () {
let error_view = ErrorView {
error: error.to_string(),
};
let mut state = navigation_state.lock().await;
state.screens.push(View::Error(error_view));
let mut outs = outputs.lock().await;
state
.screens
.last()
// Unwrap: we just pushed the state
.unwrap()
.display(&mut outs, peripherals)
.await
// Unwrap: display will panic on error in error view
.unwrap();
}
#[embassy_executor::task]
pub async fn run(mut inputs: Inputs, mut outputs: Outputs) {
pub async fn run(
mut inputs: Inputs,
outputs: &'static Mutex<Outputs>,
peripherals: &'static Peripherals,
navigation_state: &'static Mutex<NavigationState>,
) {
log::info!("starting navigation");
let mut state = NavigationState::new();
state.screens.last().unwrap().display(&mut outputs).await;
{
let mut outs = outputs.lock().await;
if let Err(error) = navigation_state
.lock()
.await
.screens
.last()
.unwrap()
.display(&mut outs, peripherals)
.await
{
display_error(error.to_string(), navigation_state, outputs, peripherals).await;
};
}
loop {
Timer::after(Duration::from_millis(DEBOUNCE_DURATION_MILLIS)).await;
let mut state = navigation_state.lock().await;
let selection = select(
inputs.wait_for_press(),
Timer::after(Duration::from_millis(DEBOUNCE_DURATION_MILLIS)),
@@ -81,10 +133,16 @@ pub async fn run(mut inputs: Inputs, mut outputs: Outputs) {
}
state.screens.push(new_state.view);
if action != Action::Timer || new_state.redraw {
state.screens.last().unwrap().display(&mut outputs).await;
}
Timer::after(Duration::from_millis(DEBOUNCE_DURATION_MILLIS)).await;
let mut outs = outputs.lock().await;
if (action != Action::Timer || new_state.redraw)
&& let Err(error) = state
.screens
.last()
.unwrap()
.display(&mut outs, peripherals)
.await
{
display_error(error.to_string(), navigation_state, outputs, peripherals).await;
}
}
}
+18 -18
View File
@@ -1,12 +1,15 @@
use crate::navigation::navigation::Mutex;
use crate::peripherals::storage::Nvs;
use alloc::sync::Arc;
use embassy_executor::Spawner;
#[cfg(not(feature = "wokwi"))]
pub async fn setup_wifi(
wifi: esp_hal::peripherals::WIFI<'static>,
flash: esp_hal::peripherals::FLASH<'static>,
nvs: Arc<Mutex<Nvs>>,
spawner: &Spawner,
) {
let nvs = esp_hal_wifimanager::Nvs::new(0x9000, 0x6000, flash).unwrap();
let espnvs = esp_hal_wifimanager::Nvs::new_from_nvs(nvs, 0, 0);
let mut wm_settings = esp_hal_wifimanager::WmSettings::default();
@@ -19,7 +22,8 @@ pub async fn setup_wifi(
wm_settings.wifi_conn_timeout = 30000;
wm_settings.esp_reset_timeout = Some(300000); // 5min
let wifi_res = esp_hal_wifimanager::init_wm(wm_settings, spawner, Some(&nvs), wifi, None).await;
let wifi_res =
esp_hal_wifimanager::init_wm(wm_settings, spawner, Some(&espnvs), wifi, None).await;
log::info!("wifi_res: {wifi_res:?}");
}
@@ -27,31 +31,27 @@ pub async fn setup_wifi(
#[cfg(feature = "wokwi")]
pub async fn setup_wifi(
wifi: esp_hal::peripherals::WIFI<'static>,
flash: esp_hal::peripherals::FLASH<'static>,
nvs: Arc<Mutex<Nvs>>,
spawner: &Spawner,
) {
log::info!("Wokwi mode active: pre-seeding WiFi Manager with Wokwi credentials");
// Preload connection data so init_wm can connect immediately without AP setup.
let nvs = match esp_hal_wifimanager::Nvs::new(0x9000, 0x6000, flash) {
Ok(nvs) => nvs,
Err(e) => {
log::error!("Failed to initialize NVS for Wokwi: {e:?}");
return;
}
};
use esp_nvs::Key;
const WIFIMANAGER_NAMESPACE: Key = Key::from_str("wifimanager");
const WIFIMANAGER_NVS_KEY: Key = Key::from_str("WIFI_SETUP");
if let Err(e) = nvs
.set(
esp_hal_wifimanager::WIFI_NVS_KEY,
if let Err(e) = nvs.lock().await.set(
&WIFIMANAGER_NAMESPACE,
&WIFIMANAGER_NVS_KEY,
"{\"ssid\":\"Wokwi-GUEST\",\"psk\":\"\",\"data\":{}}",
)
.await
{
) {
log::error!("Failed to store Wokwi WiFi config in NVS: {e:?}");
return;
}
// Preload connection data so init_wm can connect immediately without AP setup.
let nvs = esp_hal_wifimanager::Nvs::new_from_nvs(nvs, 0, 0);
let mut wm_settings = esp_hal_wifimanager::WmSettings::default();
// Wokwi simulation uses a default open network called "Wokwi-GUEST"
+11
View File
@@ -0,0 +1,11 @@
pub mod storage;
use crate::navigation::navigation::Mutex;
use crate::peripherals::storage::store::Store;
use esp_hal::rtc_cntl::Rtc;
pub struct Peripherals {
pub store: Mutex<Store>,
pub rtc: Rtc<'static>,
}
+7
View File
@@ -0,0 +1,7 @@
use esp_storage::FlashStorage;
pub type Nvs = esp_nvs::Nvs<FlashStorage<'static>>;
pub mod cardstore;
pub mod settings;
pub mod store;
+303
View File
@@ -0,0 +1,303 @@
use crate::card::model::RawCard;
use crate::peripherals::Mutex;
use crate::peripherals::storage::Nvs;
use alloc::sync::Arc;
use alloc::vec::Vec;
use binary_serde::{BinarySerde, DeserializeError, Endianness};
use core::error::Error;
use core::fmt::Display;
use esp_nvs::Key;
const NVS_NAMESPACE_CARDSTORE: Key = Key::from_str("CARDSTORE");
const NVS_NAMESPACE_CARDSTORE_METADATA: Key = Key::from_str("CSMETA");
const NVS_NAMESPACE_CARDSTORE_CARDS: Key = Key::from_str("CSCARDS");
const NVS_CARDSTORE_INITIALIZED_KEY: Key = Key::from_str("INITIALIZED");
const NVS_CARDSTORE_CARDCOUNT_KEY: Key = Key::from_str("CARDCOUNT");
const NVS_CARDSTORE_DUMMY_KEY: Key = Key::from_str("DUMMY");
#[derive(Debug)]
pub enum CardStoreError {
Store(esp_nvs::error::Error),
CorruptedEntry(DeserializeError),
NoEntry(u32),
}
impl Error for CardStoreError {}
impl Display for CardStoreError {
fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
match self {
CardStoreError::Store(e) => e.fmt(f),
CardStoreError::CorruptedEntry(e) => e.fmt(f),
CardStoreError::NoEntry(uuid) => write!(f, "No Card Entry\nuuid: 0x{uuid:x}"),
}
}
}
impl From<esp_nvs::error::Error> for CardStoreError {
fn from(error: esp_nvs::error::Error) -> CardStoreError {
CardStoreError::Store(error)
}
}
impl From<DeserializeError> for CardStoreError {
fn from(error: DeserializeError) -> CardStoreError {
CardStoreError::CorruptedEntry(error)
}
}
#[derive(Debug, BinarySerde, PartialEq, Eq, Clone)]
pub struct CardStoreMetaData {
pub creation_date: u64,
pub last_read_date: u64,
// how often a card has been read by nfc
pub read_count: u32,
}
impl CardStoreMetaData {
fn new(creation_date: u64) -> Self {
Self {
creation_date: creation_date,
last_read_date: creation_date,
read_count: 0,
}
}
}
pub struct CardStore {
nvs: Arc<Mutex<Nvs>>,
}
impl CardStore {
pub async fn new(nvs: Arc<Mutex<Nvs>>) -> Result<Self, CardStoreError> {
if !Self::is_initialized(&nvs).await? {
log::info!("CardStore has not been initialized");
Self::initialize(&nvs).await?;
}
log::info!("CardStore has been initialized");
let card_count = nvs
.lock()
.await
.get::<u32>(&NVS_NAMESPACE_CARDSTORE, &NVS_CARDSTORE_CARDCOUNT_KEY)?;
log::info!("Cards stored in flash: {card_count}");
Ok(Self { nvs })
}
async fn is_initialized(nvs: &Mutex<Nvs>) -> Result<bool, CardStoreError> {
log::info!("check initialization");
let mut nvs_lock = nvs.lock().await;
match nvs_lock.get::<bool>(&NVS_NAMESPACE_CARDSTORE, &NVS_CARDSTORE_INITIALIZED_KEY) {
Ok(initialized) => {
log::debug!("initialization_check: initialized {initialized:?}");
return Ok(true);
}
Err(esp_nvs::error::Error::NamespaceNotFound) => {
log::debug!("initialization_check: error: namespace not found");
return Ok(false);
}
Err(esp_nvs::error::Error::KeyNotFound) => {
log::debug!("initialization_check: error: key not found");
return Ok(false);
}
Err(error) => return Err(error.into()),
};
}
// initializing cardstore with 0 cards, so that all namespaces exist and there
// are only keynotfound errors in the future
async fn initialize(nvs: &Mutex<Nvs>) -> Result<(), CardStoreError> {
log::info!("initializing card store");
Self::delete_all_cards(nvs).await?;
let mut nvs_lock = nvs.lock().await;
log::debug!("initialization: write card count");
// initialize card count
nvs_lock.set::<u32>(&NVS_NAMESPACE_CARDSTORE, &NVS_CARDSTORE_CARDCOUNT_KEY, 0)?;
// initialize card namespace
let dummy_card = RawCard::default();
let mut carddata_serialized: [u8; RawCard::SERIALIZED_SIZE] = [0; RawCard::SERIALIZED_SIZE];
dummy_card.binary_serialize(&mut carddata_serialized, Endianness::Little);
log::debug!("initialization: write dummy card");
nvs_lock.set::<&[u8]>(
&NVS_NAMESPACE_CARDSTORE_CARDS,
&NVS_CARDSTORE_DUMMY_KEY,
&carddata_serialized,
)?;
// initialize metadata namespace
log::debug!("initialization: write dummy metadata");
let dummy_metadata = CardStoreMetaData::new(0);
let mut metadata_serialized: [u8; CardStoreMetaData::SERIALIZED_SIZE] =
[0; CardStoreMetaData::SERIALIZED_SIZE];
dummy_metadata.binary_serialize(&mut metadata_serialized, Endianness::Little);
nvs_lock.set::<&[u8]>(
&NVS_NAMESPACE_CARDSTORE_METADATA,
&NVS_CARDSTORE_DUMMY_KEY,
&metadata_serialized,
)?;
// set initialized
log::debug!("initialization: write initialized");
nvs_lock.set::<bool>(
&NVS_NAMESPACE_CARDSTORE,
&NVS_CARDSTORE_INITIALIZED_KEY,
true,
)?;
Ok(())
}
async fn delete_all_cards(nvs: &Mutex<Nvs>) -> Result<(), CardStoreError> {
log::info!("delete all cards");
let mut nvs_lock = nvs.lock().await;
let keys = nvs_lock.keys().collect::<Result<Vec<_>, _>>()?;
for (namespace, key) in keys {
if namespace == NVS_NAMESPACE_CARDSTORE || namespace == NVS_NAMESPACE_CARDSTORE_METADATA
{
nvs_lock.delete(&namespace, &key)?;
}
}
Ok(())
}
pub async fn load_card_count(&self) -> Result<u32, CardStoreError> {
log::debug!("load card count");
let mut nvs_lock = self.nvs.lock().await;
let result = nvs_lock.get::<u32>(&NVS_NAMESPACE_CARDSTORE, &NVS_CARDSTORE_CARDCOUNT_KEY)?;
log::debug!("card count: {result}");
Ok(result)
}
pub async fn load_raw_card(&self, uuid: u32) -> Result<Option<RawCard>, CardStoreError> {
log::debug!("load raw card\nuuid: 0x{uuid:x}");
let nvs_key = RawCard::nvs_key_from_uuid(uuid);
let mut nvs_lock = self.nvs.lock().await;
let carddata_binary: Vec<u8> = match nvs_lock.get(&NVS_NAMESPACE_CARDSTORE_CARDS, &nvs_key)
{
Ok(carddata) => carddata,
Err(esp_nvs::error::Error::KeyNotFound) => return Ok(None),
Err(error) => return Err(error.into()),
};
let carddata = RawCard::binary_deserialize(carddata_binary.as_ref(), Endianness::Little)?;
Ok(Some(carddata))
}
async fn write_card(&self, nvs_key: Key, card: &RawCard) -> Result<(), CardStoreError> {
log::debug!("writing card...\nkey: {nvs_key:?}");
let mut carddata_serialized: [u8; RawCard::SERIALIZED_SIZE] = [0; RawCard::SERIALIZED_SIZE];
card.binary_serialize(&mut carddata_serialized, Endianness::Little);
self.nvs.lock().await.set::<&[u8]>(
&NVS_NAMESPACE_CARDSTORE_CARDS,
&nvs_key,
&carddata_serialized,
)?;
Ok(())
}
async fn update_card_metadata(
&self,
nvs_key: Key,
timestamp: u64,
) -> Result<bool, CardStoreError> {
log::debug!("updating card metadata...\nkey: {nvs_key:?}\ntimestamp: {timestamp}");
let mut is_new = false;
// update metadata
let metadata: CardStoreMetaData =
if let Some(mut metadata) = self.load_card_metadata(nvs_key).await? {
log::debug!("found existing card");
metadata.last_read_date = timestamp;
metadata.read_count += 1;
metadata
} else {
log::debug!("new card");
is_new = true;
CardStoreMetaData::new(timestamp)
};
let mut metadata_serialized: [u8; CardStoreMetaData::SERIALIZED_SIZE] =
[0; CardStoreMetaData::SERIALIZED_SIZE];
metadata.binary_serialize(&mut metadata_serialized, Endianness::Little);
self.nvs.lock().await.set::<&[u8]>(
&NVS_NAMESPACE_CARDSTORE_METADATA,
&nvs_key,
&metadata_serialized,
)?;
Ok(is_new)
}
async fn increment_card_count(&self) -> Result<(), CardStoreError> {
log::debug!("incrementing card count");
let card_count: u32 = self.load_card_count().await?;
log::debug!("previous card count: {card_count}");
self.nvs.lock().await.set::<u32>(
&NVS_NAMESPACE_CARDSTORE,
&NVS_CARDSTORE_CARDCOUNT_KEY,
card_count + 1,
)?;
let card_count = self
.nvs
.lock()
.await
.get::<u32>(&NVS_NAMESPACE_CARDSTORE, &NVS_CARDSTORE_CARDCOUNT_KEY)?;
log::info!("Cards stored in flash: {card_count}");
Ok(())
}
pub async fn save_raw_card(
&self,
card: &RawCard,
timestamp: u64,
) -> Result<(), CardStoreError> {
log::debug!("saving raw card\ntimestamp: {timestamp}");
let nvs_key = card.get_nvs_key();
self.write_card(nvs_key, card).await?;
let new_card = self.update_card_metadata(nvs_key, timestamp).await?;
if new_card {
self.increment_card_count().await?;
}
Ok(())
}
pub async fn load_card_metadata(
&self,
nvs_key: Key,
) -> Result<Option<CardStoreMetaData>, CardStoreError> {
log::debug!("load card meta data\nkey: {nvs_key:?}");
let mut nvs_lock = self.nvs.lock().await;
let metadata_binary: Vec<u8> =
match nvs_lock.get(&NVS_NAMESPACE_CARDSTORE_METADATA, &nvs_key) {
Ok(metadata) => metadata,
Err(esp_nvs::error::Error::KeyNotFound) => return Ok(None),
Err(error) => return Err(error.into()),
};
let metadata =
CardStoreMetaData::binary_deserialize(metadata_binary.as_ref(), Endianness::Little)?;
Ok(Some(metadata))
}
}
@@ -1,22 +1,41 @@
use core::error::Error;
use core::fmt::Display;
use crate::navigation::navigation::Mutex;
use embedded_storage::nor_flash::NorFlash;
use embedded_storage::nor_flash::ReadNorFlash;
use esp_storage::{FlashStorage, FlashStorageError};
use crate::storage::MAGIC_REGION;
use crate::peripherals::storage::MAGIC_REGION;
pub type StoreError = FlashStorageError;
#[derive(Debug)]
pub struct FlashStoreError(FlashStorageError);
const FLASH_ADDR: u32 = 0x9000;
impl From<FlashStorageError> for FlashStoreError {
fn from(value: FlashStorageError) -> Self {
Self(value)
}
}
impl Error for FlashStoreError {}
impl Display for FlashStoreError {
fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
write!(f, "FlashStoreError:\n{:?}", self.0)
}
}
const FLASH_ADDR: u32 = 0x200000;
const INITIALIZATION_SIZE: usize = 0x1000;
const FLASH_INITIALIZE_MAGIC: u32 = 0xde6de6de;
pub struct Store {
pub storage: FlashStorage<'static>,
pub struct FlashStore {
pub storage: Mutex<FlashStorage<'static>>,
}
impl Store {
pub fn new(flash: esp_hal::peripherals::FLASH<'static>) -> Result<Self, StoreError> {
impl FlashStore {
pub fn new(flash: esp_hal::peripherals::FLASH<'static>) -> Result<Self, FlashStoreError> {
let mut storage = FlashStorage::new(flash);
let mut magic: [u8; 4] = [0, 0, 0, 0];
@@ -30,29 +49,42 @@ impl Store {
Self::initialize_flash(&mut storage)?;
}
Ok(Self { storage })
Ok(Self {
storage: Mutex::new(storage),
})
}
pub fn read(&mut self, offset: u32, bytes: &mut [u8]) -> Result<(), StoreError> {
self.storage.read(FLASH_ADDR + offset, bytes)
pub async fn read(&self, offset: u32, bytes: &mut [u8]) -> Result<(), FlashStoreError> {
self.storage.lock().await.read(FLASH_ADDR + offset, bytes)?;
Ok(())
}
pub fn write(&mut self, offset: u32, bytes: &mut [u8]) -> Result<(), StoreError> {
pub async fn write(&self, offset: u32, bytes: &mut [u8]) -> Result<(), FlashStoreError> {
log::debug!("Writing {} bytes at offset 0x{offset:08x}", bytes.len());
self.storage.write(FLASH_ADDR + offset, bytes)
self.storage
.lock()
.await
.write(FLASH_ADDR + offset, bytes)?;
Ok(())
}
pub fn write_erase(&mut self, offset: u32, bytes: &mut [u8]) -> Result<(), StoreError> {
pub async fn write_erase(&self, offset: u32, bytes: &mut [u8]) -> Result<(), FlashStoreError> {
log::debug!(
"Erasing and Writing {} bytes at offset 0x{offset:08x}",
bytes.len()
);
self.storage
.erase(FLASH_ADDR + offset, FLASH_ADDR + bytes.len() as u32)?;
self.storage.write(FLASH_ADDR + offset, bytes)
let mut lock = self.storage.lock().await;
let addr = FLASH_ADDR + offset;
let to = FLASH_ADDR + offset + bytes.len() as u32;
log::debug!("Erasing from 0x{addr:x} to 0x{to:x}");
//lock.erase(addr, to)?;
log::debug!("Writing bytes...");
lock.write(addr, bytes)?;
Ok(())
}
pub fn has_magic_bytes(storage: &mut FlashStorage) -> Result<bool, StoreError> {
pub fn has_magic_bytes(storage: &mut FlashStorage) -> Result<bool, FlashStoreError> {
let mut magic: [u8; 4] = [0, 0, 0, 0];
storage.read(FLASH_ADDR + MAGIC_REGION.offset, &mut magic)?;
log::debug!("Magic bytes are {magic:?}");
@@ -60,7 +92,7 @@ impl Store {
Ok(u32::from_ne_bytes(magic) == FLASH_INITIALIZE_MAGIC)
}
pub fn initialize_flash(storage: &mut FlashStorage) -> Result<(), StoreError> {
pub fn initialize_flash(storage: &mut FlashStorage) -> Result<(), FlashStoreError> {
storage.erase(FLASH_ADDR, FLASH_ADDR + INITIALIZATION_SIZE as u32)?;
let zeros: [u8; INITIALIZATION_SIZE] = [0; INITIALIZATION_SIZE];
storage.write(FLASH_ADDR + MAGIC_REGION.end() as u32, &zeros)?;
@@ -72,7 +104,9 @@ impl Store {
if Self::has_magic_bytes(storage)? {
Ok(())
} else {
Err(StoreError::Other(FLASH_INITIALIZE_MAGIC as i32))
Err(FlashStoreError(FlashStorageError::Other(
FLASH_INITIALIZE_MAGIC as i32,
)))
}
}
}
+5
View File
@@ -0,0 +1,5 @@
use crate::peripherals::storage::cardstore::CardStore;
pub struct Store {
pub card_store: CardStore,
}
-31
View File
@@ -1,31 +0,0 @@
pub struct MemoryRegion {
offset: u32,
size: usize,
}
impl MemoryRegion {
pub const fn new(offset: u32, size: usize) -> Self {
assert!(offset.is_multiple_of(4), "Flash requires 4 bytes alignment");
assert!(size.is_multiple_of(4), "Flash requires 4 bytes alignment");
Self { offset, size }
}
pub const fn end(&self) -> usize {
self.offset as usize + self.size
}
}
const MAX_FLASH: usize = 16 * 1024 * 1024;
const MAGIC_REGION: MemoryRegion = MemoryRegion::new(0, 4);
const SETTINGS_REGION: MemoryRegion = MemoryRegion::new(MAGIC_REGION.end() as u32, 1024);
const CARDSTORE_REGION: MemoryRegion = MemoryRegion::new(
SETTINGS_REGION.end() as u32,
MAX_FLASH - SETTINGS_REGION.end(),
);
pub mod cardstore;
pub mod settings;
pub mod store;
-214
View File
@@ -1,214 +0,0 @@
use alloc::collections::BTreeMap;
use alloc::vec::Vec;
use binary_serde::{BinarySerde, DeserializeError, Endianness};
//use crate::card::model::Nfcraw_card;
use crate::card::model::RawCard;
use crate::storage::store::{Store, StoreError};
use crate::storage::{CARDSTORE_REGION, MemoryRegion};
const MAX_CARDS: usize = 20000;
pub const COUNT_REGION: MemoryRegion = MemoryRegion::new(CARDSTORE_REGION.offset, size_of::<u32>());
const ALLOCATION_TABLE_REGION: MemoryRegion = MemoryRegion::new(
COUNT_REGION.end() as u32,
MAX_CARDS * AllocationTableEntry::SERIALIZED_SIZE,
);
const CARDS_REGION: MemoryRegion = MemoryRegion::new(
ALLOCATION_TABLE_REGION.end() as u32,
CARDSTORE_REGION.size - ALLOCATION_TABLE_REGION.end(),
);
#[derive(Debug, BinarySerde, PartialEq, Eq, Clone)]
#[repr(C)]
pub struct AllocationTableEntry {
uuid: u32,
// this is the numeric offset of the AllocationTableEntry
// as well as the card entry in flash memory
// size_of::<AllocationTableEntry>() * offset
// size_of::<RawCard>() * offset
offset: u32,
creation_date: u64,
last_read_date: u64,
// how often a card has been read by nfc
read_count: u32,
deleted: bool,
reserved: [u64; 4],
_padding: [u8; 3],
}
static_assertions::const_assert!(AllocationTableEntry::SERIALIZED_SIZE.is_multiple_of(4));
impl AllocationTableEntry {
fn new(uuid: u32, offset: u32, timestamp: u64) -> Self {
Self {
uuid,
offset,
creation_date: timestamp,
last_read_date: timestamp,
read_count: 0,
deleted: true,
reserved: Default::default(),
_padding: Default::default(),
}
}
}
#[derive(Debug)]
pub enum CardStoreError {
Store(StoreError),
CorruptedEntry(DeserializeError),
NoEntry,
}
impl From<StoreError> for CardStoreError {
fn from(error: StoreError) -> CardStoreError {
CardStoreError::Store(error)
}
}
impl From<DeserializeError> for CardStoreError {
fn from(error: DeserializeError) -> CardStoreError {
CardStoreError::CorruptedEntry(error)
}
}
pub struct CardStore {
store: Store,
count: u32,
pub allocation_table: BTreeMap<u32, AllocationTableEntry>,
}
impl CardStore {
pub fn new(mut store: Store) -> Result<Self, CardStoreError> {
let mut count_bytes: [u8; COUNT_REGION.size] = [0; COUNT_REGION.size];
store.read(COUNT_REGION.offset, &mut count_bytes)?;
let count: u32 = u32::from_ne_bytes(count_bytes);
log::info!("Found {count} cards in flash.");
let mut allocation_table_entries: Vec<u8> =
Vec::with_capacity(AllocationTableEntry::SERIALIZED_SIZE * count as usize);
store.read(
ALLOCATION_TABLE_REGION.offset,
&mut allocation_table_entries,
)?;
let chunks =
allocation_table_entries.into_chunks::<{ AllocationTableEntry::SERIALIZED_SIZE }>();
let mut allocation_table = BTreeMap::<u32, AllocationTableEntry>::new();
for chunk in chunks {
let allocation_table_entry =
AllocationTableEntry::binary_deserialize(chunk.as_ref(), Endianness::Little)?;
allocation_table.insert(allocation_table_entry.uuid, allocation_table_entry);
}
Ok(Self {
store,
count,
allocation_table,
})
}
pub fn get_card_by_uuid(&mut self, uuid: u32) -> Result<RawCard, CardStoreError> {
let entry = self
.allocation_table
.get(&uuid)
.ok_or(CardStoreError::NoEntry)?;
let mut raw_card: [u8; size_of::<RawCard>()] = [0; size_of::<RawCard>()];
self.store.read(entry.offset, &mut raw_card)?;
Ok(RawCard::binary_deserialize(
raw_card.as_ref(),
Endianness::Little,
)?)
}
pub fn save_raw_card(
&mut self,
raw_card: RawCard,
timestamp: u64,
) -> Result<(), CardStoreError> {
let uuid: u32 = (u16::from_ne_bytes(raw_card.event_encoding) as u32) << 16
| (u16::from_ne_bytes(raw_card.card_uuid) as u32);
log::info!("Saving card with uuid {:x}", uuid);
// check if we already got the card
// if not find the next deleted entry,
// if none create a new one at the end
let (entry, is_new) = match self.allocation_table.get_mut(&uuid) {
Some(entry) => {
log::debug!("old entry");
(entry, false)
}
None => match self
.allocation_table
.values_mut()
.find(|entry| entry.deleted)
{
Some(entry) => {
log::debug!("deleted entry");
(entry, true)
}
None => {
log::debug!("new entry");
let entry = AllocationTableEntry::new(uuid, self.count + 1, timestamp);
self.allocation_table.insert(uuid, entry);
(
self.allocation_table
.get_mut(&uuid)
.expect("entry was just inserted"),
true,
)
}
},
};
// only write card data if it is new. else it is already written in flash
if is_new {
log::debug!("writing RawCard to flash");
let mut serialized_card: [u8; RawCard::SERIALIZED_SIZE] = [0; RawCard::SERIALIZED_SIZE];
raw_card.binary_serialize(&mut serialized_card, Endianness::Little);
self.store.write_erase(
CARDS_REGION.offset + entry.offset * RawCard::SERIALIZED_SIZE as u32,
&mut serialized_card,
)?;
} else {
entry.last_read_date = timestamp;
entry.read_count += 1;
}
entry.deleted = false;
log::debug!("writing AllocationTableEntry to flash");
let mut serialized_entry: [u8; AllocationTableEntry::SERIALIZED_SIZE] =
[0; AllocationTableEntry::SERIALIZED_SIZE];
entry.binary_serialize(&mut serialized_entry, Endianness::Little);
self.store.write_erase(
ALLOCATION_TABLE_REGION.offset
+ entry.offset * AllocationTableEntry::SERIALIZED_SIZE as u32,
&mut serialized_entry,
)?;
self.count += 1;
log::debug!("writing card count to flash");
let mut serialized_count: [u8; 4] = self.count.to_le_bytes();
self.store
.write(COUNT_REGION.offset, serialized_count.as_mut_slice())?;
Ok(())
}
}
+1
View File
@@ -1,4 +1,5 @@
pub mod card_view;
pub mod error_view;
pub mod flash_info_view;
pub mod journal_view;
pub mod main_menu;
+21 -10
View File
@@ -1,7 +1,11 @@
use crate::display::sprite::render_sprite_onto_ili9341;
use crate::drivers::primary_lcd::PrimaryDisplayError;
use crate::navigation::navigation::NewState;
use crate::navigation::outputs::Outputs;
use crate::peripherals::Peripherals;
use alloc::boxed::Box;
use alloc::format;
use core::error;
use embedded_graphics::mono_font::MonoTextStyle;
use embedded_graphics::mono_font::ascii::FONT_6X10;
use embedded_graphics::pixelcolor::Rgb565;
@@ -25,10 +29,16 @@ pub struct CardView {
}
impl Navigable for CardView {
fn display(&self, outputs: &mut Outputs) -> impl core::future::Future<Output = ()> + Send {
fn display(
&self,
outputs: &mut Outputs,
_: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send {
async move {
let display = &mut outputs.primary_display;
display.clear(Rgb565::BLACK).unwrap();
display
.clear(Rgb565::BLACK)
.map_err(PrimaryDisplayError::from)?;
let background = Rectangle::new(Point::new(0, 0), Size::new(240, 320));
let bg_color = self.card.cardtype.clone().into();
@@ -42,59 +52,60 @@ impl Navigable for CardView {
style,
)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
Text::new(
&format!("Type: {}", self.card.cardtype),
Point::new(20, 250),
style,
)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
Text::new(
&format!("Event: {}", self.card.event),
Point::new(20, 260),
style,
)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
Text::new(
&format!("UUID: {}", self.card.uuid),
Point::new(20, 270),
style,
)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
Text::new(
&format!("Trait1: {}", self.card.trait1),
Point::new(20, 280),
style,
)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
Text::new(
&format!("Trait2: {}", self.card.trait2),
Point::new(20, 290),
style,
)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
Text::new(
&format!("Trait3: {}", self.card.trait3),
Point::new(20, 300),
style,
)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
Text::new(
&format!("Secret: {}", self.card.secret),
Point::new(20, 310),
style,
)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
let palette: Palette = self.card.cardtype.clone().into();
render_sprite_onto_ili9341(display, self.card.sprite.data.as_slice(), &palette);
Ok(())
}
}
+101
View File
@@ -0,0 +1,101 @@
use crate::navigation::navigation::Action;
use crate::navigation::navigation::Navigable;
use crate::navigation::navigation::NewState;
use crate::navigation::outputs::Outputs;
use crate::peripherals::Peripherals;
use crate::views::view::View;
use alloc::boxed::Box;
use alloc::string::String;
use alloc::string::ToString;
use core::error;
use embedded_graphics::{
Drawable,
mono_font::{MonoTextStyle, ascii::FONT_10X20},
pixelcolor::Rgb565,
prelude::*,
primitives::Rectangle,
text::Text,
};
use embedded_text::{
TextBox,
alignment::HorizontalAlignment,
style::{HeightMode, TextBoxStyleBuilder},
};
#[derive(Debug, Clone)]
pub struct ErrorView {
pub error: String,
}
impl Navigable for ErrorView {
fn display(
&self,
outputs: &mut Outputs,
_: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send {
async move {
outputs
.primary_display
.clear(Rgb565::BLACK)
.unwrap_or_else(|error| {
panic!(
"Error: {error:?}\nDraw error while rendering ErrorView: {}",
self.error
)
});
let style = MonoTextStyle::new(&FONT_10X20, Rgb565::RED);
let display_area = outputs.primary_display.bounding_box();
Text::new(
"Error",
Point::new((display_area.size.width / 2 - 25) as i32, 30),
style,
)
.draw(&mut outputs.primary_display)
.unwrap_or_else(|error| {
panic!(
"Error: {error:?}\nDraw error while rendering ErrorView: {}",
self.error
)
});
let style = MonoTextStyle::new(&FONT_10X20, Rgb565::WHITE);
let textbox_style = TextBoxStyleBuilder::new()
.height_mode(HeightMode::FitToText)
.alignment(HorizontalAlignment::Center)
.build();
let bounds = Rectangle::new(Point::new(0, 50), display_area.size);
TextBox::with_textbox_style(&self.error.to_string(), bounds, style, textbox_style)
.draw(&mut outputs.primary_display)
.unwrap_or_else(|error| {
panic!(
"Error: {error:?}\nDraw error while rendering ErrorView: {}",
self.error
)
});
Ok(())
}
}
fn handle_input(&self, input: Action) -> impl core::future::Future<Output = NewState> + Send {
async move {
let new_menu = View::Error(self.clone());
match input {
Action::Button(_) => NewState {
replace_view: matches!(new_menu, View::FlashInfo(_)),
view: new_menu,
redraw: true,
},
Action::Timer => {
// Skip timer inputs
NewState {
view: new_menu,
replace_view: true,
redraw: false,
}
}
}
}
}
}
+70 -26
View File
@@ -1,48 +1,92 @@
use crate::navigation::inputs::ButtonAction;
use crate::drivers::primary_lcd::PrimaryDisplayError;
use crate::navigation::navigation::Action;
use crate::navigation::navigation::Navigable;
use crate::navigation::navigation::NewState;
use crate::navigation::outputs::Outputs;
use crate::peripherals::Peripherals;
use crate::views::view::View;
use embedded_graphics::mono_font::MonoTextStyle;
use embedded_graphics::mono_font::ascii::FONT_10X20;
use embedded_graphics::pixelcolor::Rgb565;
use embedded_graphics::prelude::DrawTarget;
use embedded_graphics::prelude::RgbColor;
use embedded_graphics::text::Text;
use alloc::boxed::Box;
use core::error;
use embedded_graphics::prelude::Point;
use embedded_graphics::{
Drawable,
mono_font::{MonoTextStyle, ascii::FONT_10X20},
pixelcolor::Rgb565,
prelude::*,
primitives::Rectangle,
};
use alloc::format;
use embedded_text::{
TextBox,
alignment::HorizontalAlignment,
style::{HeightMode, TextBoxStyleBuilder},
};
#[derive(Debug, Clone)]
pub struct FlashInfoView {}
impl Navigable for FlashInfoView {
fn display(&self, outputs: &mut Outputs) -> impl core::future::Future<Output = ()> + Send {
let style = MonoTextStyle::new(&FONT_10X20, Rgb565::WHITE);
Text::new("Flash Initialized: {:?}", Point::new(40, 40), style);
fn display(
&self,
outputs: &mut Outputs,
peripherals: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send {
async move {
outputs
.primary_display
.clear(Rgb565::BLACK)
.map_err(PrimaryDisplayError::from)?;
let _style = MonoTextStyle::new(&FONT_10X20, Rgb565::WHITE);
core::future::ready(())
let style = MonoTextStyle::new(&FONT_10X20, Rgb565::WHITE);
let textbox_style = TextBoxStyleBuilder::new()
.height_mode(HeightMode::FitToText)
.alignment(HorizontalAlignment::Justified)
.build();
let display_area = outputs.primary_display.bounding_box();
let bounds = Rectangle::new(Point::new(0, 30), display_area.size);
log::debug!("locking store");
let store = peripherals.store.lock().await;
log::debug!("getting card count");
let card_count = store.card_store.load_card_count().await?;
TextBox::with_textbox_style(
&format!(
"
Card Count: {}\n
",
card_count
),
bounds,
style,
textbox_style,
)
.draw(&mut outputs.primary_display)
.map_err(PrimaryDisplayError::from)?;
Ok(())
}
}
fn handle_input(&self, input: Action) -> impl core::future::Future<Output = NewState> + Send {
async move {
let Action::Button(input) = input else {
// Skip timer inputs
return NewState {
view: View::FlashInfo(self.clone()),
replace_view: true,
redraw: false,
};
};
let new_menu = match input {
_ => View::FlashInfo(self.clone()),
};
NewState {
let new_menu = View::FlashInfo(self.clone());
match input {
Action::Button(_) => NewState {
replace_view: matches!(new_menu, View::FlashInfo(_)),
view: new_menu,
redraw: true,
},
Action::Timer => {
// Skip timer inputs
NewState {
view: new_menu,
replace_view: true,
redraw: false,
}
}
}
}
}
+14 -2
View File
@@ -1,3 +1,7 @@
use crate::drivers::primary_lcd::PrimaryDisplayError;
use crate::peripherals::Peripherals;
use alloc::boxed::Box;
use core::error;
use core::future;
use alloc::vec::Vec;
@@ -22,9 +26,17 @@ pub struct JournalView {
}
impl Navigable for JournalView {
fn display(&self, outputs: &mut Outputs) -> impl core::future::Future<Output = ()> + Send {
fn display(
&self,
outputs: &mut Outputs,
_: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send {
async move {
outputs.primary_display.clear(Rgb565::BLACK).unwrap();
outputs
.primary_display
.clear(Rgb565::BLACK)
.map_err(PrimaryDisplayError::from)?;
Ok(())
}
}
+20 -6
View File
@@ -1,4 +1,8 @@
use crate::drivers::primary_lcd::PrimaryDisplayError;
use crate::peripherals::Peripherals;
use alloc::boxed::Box;
use alloc::vec;
use core::error;
use crate::card::model::Card;
use crate::card::{decoder::split_nfc_hex, mock::*};
@@ -22,16 +26,26 @@ pub struct MainMenu {
}
impl Navigable for MainMenu {
fn display(&self, outputs: &mut Outputs) -> impl core::future::Future<Output = ()> + Send {
fn display(
&self,
outputs: &mut Outputs,
_: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send {
async move {
let display = &mut outputs.primary_display;
display.clear(Rgb565::BLACK).unwrap();
menu_item::show(display, "Scan card", 0, self.selected);
menu_item::show(display, "Last card", 1, self.selected);
menu_item::show(display, "Journal", 2, self.selected);
menu_item::show(display, "Settings", 3, self.selected);
menu_item::show(display, "Scan card", 0, self.selected)
.map_err(PrimaryDisplayError::from)?;
menu_item::show(display, "Last card", 1, self.selected)
.map_err(PrimaryDisplayError::from)?;
menu_item::show(display, "Journal", 2, self.selected)
.map_err(PrimaryDisplayError::from)?;
menu_item::show(display, "Settings", 3, self.selected)
.map_err(PrimaryDisplayError::from)?;
core::future::ready(())
Ok(())
}
}
fn handle_input(&self, input: Action) -> impl core::future::Future<Output = NewState> + Send {
+3 -3
View File
@@ -7,7 +7,7 @@ use embedded_graphics::prelude::Point;
use embedded_graphics::prelude::RgbColor;
use embedded_graphics::text::Text;
pub fn show<D>(display: &mut D, name: &str, position: i32, selected: i32)
pub fn show<D>(display: &mut D, name: &str, position: i32, selected: i32) -> Result<(), D::Error>
where
D: DrawTarget<Color = Rgb565>,
D::Error: core::fmt::Debug,
@@ -24,6 +24,6 @@ where
style
},
)
.draw(display)
.unwrap();
.draw(display)?;
Ok(())
}
+18 -7
View File
@@ -1,7 +1,11 @@
use crate::drivers::primary_lcd::PrimaryDisplayError;
use crate::navigation::inputs::ButtonAction;
use crate::navigation::navigation::CARD_DATA;
use crate::navigation::navigation::NewState;
use crate::navigation::outputs::Outputs;
use crate::peripherals::Peripherals;
use alloc::boxed::Box;
use core::error;
use alloc::format;
use embedded_graphics::Drawable;
@@ -33,16 +37,23 @@ pub struct ScanMenu {
}
impl Navigable for ScanMenu {
fn display(&self, outputs: &mut Outputs) -> impl core::future::Future<Output = ()> + Send {
fn display(
&self,
outputs: &mut Outputs,
_: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send {
async move {
let display = &mut outputs.primary_display;
let style = MonoTextStyle::new(&FONT_10X20, Rgb565::WHITE);
display.clear(Rgb565::BLACK).unwrap();
display
.clear(Rgb565::BLACK)
.map_err(PrimaryDisplayError::from)?;
let display_area = display.bounding_box();
Text::new("Scanning...", Point::new(20, 30), style)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
// Create styles used by the drawing operations.
let arc_stroke = PrimitiveStyleBuilder::new()
@@ -72,15 +83,15 @@ impl Navigable for ScanMenu {
)
.into_styled(arc_stroke)
.draw(display)
.unwrap();
.map_err(PrimaryDisplayError::from)?;
// Draw centered text.
let text = format!("{:.2}%", 100. * (self.progress as f32) / 255.);
Text::with_text_style(&text, display_area.center(), character_style, text_style)
.draw(display)
.unwrap();
core::future::ready(())
.map_err(PrimaryDisplayError::from)?;
Ok(())
}
}
fn handle_input(&self, input: Action) -> impl core::future::Future<Output = NewState> + Send {
+22 -8
View File
@@ -1,6 +1,10 @@
use crate::drivers::primary_lcd::PrimaryDisplayError;
use crate::navigation::navigation::{Action, Navigable, NewState};
use crate::navigation::outputs::Outputs;
use crate::peripherals::Peripherals;
use crate::views::{flash_info_view::FlashInfoView, menu_item, view::View};
use alloc::boxed::Box;
use core::error;
use crate::navigation::inputs::ButtonAction;
@@ -8,7 +12,7 @@ use embedded_graphics::pixelcolor::Rgb565;
use embedded_graphics::prelude::RgbColor;
use embedded_graphics_core::draw_target::DrawTarget;
pub const MAX_SELECTED: i32 = 2;
pub const MAX_SELECTED: i32 = 3;
#[derive(Debug, Clone)]
pub struct SettingsMenu {
@@ -16,14 +20,24 @@ pub struct SettingsMenu {
}
impl Navigable for SettingsMenu {
fn display(&self, outputs: &mut Outputs) -> impl core::future::Future<Output = ()> + Send {
fn display(
&self,
outputs: &mut Outputs,
_: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send {
async move {
let display = &mut outputs.primary_display;
display.clear(Rgb565::BLACK).unwrap();
menu_item::show(display, "System Inforation", 0, self.selected);
menu_item::show(display, "Wifi Information", 1, self.selected);
menu_item::show(display, "Flash Information", 2, self.selected);
core::future::ready(())
display
.clear(Rgb565::BLACK)
.map_err(PrimaryDisplayError::from)?;
menu_item::show(display, "System Inforation", 0, self.selected)
.map_err(PrimaryDisplayError::from)?;
menu_item::show(display, "Wifi Information", 1, self.selected)
.map_err(PrimaryDisplayError::from)?;
menu_item::show(display, "Flash Information", 2, self.selected)
.map_err(PrimaryDisplayError::from)?;
Ok(())
}
}
fn handle_input(&self, input: Action) -> impl core::future::Future<Output = NewState> + Send {
+21 -9
View File
@@ -1,14 +1,18 @@
use crate::navigation::outputs::Outputs;
use crate::peripherals::Peripherals;
use crate::views::card_view::CardView;
use crate::views::{
flash_info_view::FlashInfoView, journal_view::JournalView, main_menu::MainMenu,
scan_menu::ScanMenu, settings_menu::SettingsMenu,
error_view::ErrorView, flash_info_view::FlashInfoView, journal_view::JournalView,
main_menu::MainMenu, scan_menu::ScanMenu, settings_menu::SettingsMenu,
};
use alloc::boxed::Box;
use core::error;
use crate::navigation::navigation::{Navigable, NewState};
#[derive(Debug, Clone)]
pub enum View {
Error(ErrorView),
Main(MainMenu),
Scan(ScanMenu),
Settings(SettingsMenu),
@@ -18,15 +22,22 @@ pub enum View {
}
impl Navigable for View {
fn display(&self, outputs: &mut Outputs) -> impl core::future::Future<Output = ()> + Send {
fn display(
&self,
outputs: &mut Outputs,
peripherals: &Peripherals,
) -> impl core::future::Future<Output = Result<(), Box<dyn error::Error>>> + Send {
async move {
match self {
View::Main(main_menu) => main_menu.display(outputs).await,
View::Scan(scan_menu) => scan_menu.display(outputs).await,
View::Settings(settings_menu) => settings_menu.display(outputs).await,
View::Journal(journal_view) => journal_view.display(outputs).await,
View::Card(card_view) => card_view.display(outputs).await,
View::FlashInfo(flash_info_view) => flash_info_view.display(outputs).await,
View::Error(error_view) => error_view.display(outputs, peripherals).await,
View::Main(main_menu) => main_menu.display(outputs, peripherals).await,
View::Scan(scan_menu) => scan_menu.display(outputs, peripherals).await,
View::Settings(settings_menu) => settings_menu.display(outputs, peripherals).await,
View::Journal(journal_view) => journal_view.display(outputs, peripherals).await,
View::Card(card_view) => card_view.display(outputs, peripherals).await,
View::FlashInfo(flash_info_view) => {
flash_info_view.display(outputs, peripherals).await
}
}
}
}
@@ -37,6 +48,7 @@ impl Navigable for View {
) -> impl core::future::Future<Output = NewState> + Send {
async move {
match self {
View::Error(error_view) => error_view.handle_input(input).await,
View::Main(main_menu) => main_menu.handle_input(input).await,
View::Scan(scan_menu) => scan_menu.handle_input(input).await,
View::Settings(settings_menu) => settings_menu.handle_input(input).await,
+4
View File
@@ -3,3 +3,7 @@ version = 1
gdbServerPort = 3333
elf = "target/xtensa-esp32s3-none-elf/debug/creaturedex"
firmware = "target/xtensa-esp32s3-none-elf/debug/creaturedex"
[[chip]]
name = 'ch1115'
binary = 'wokwi/ch1115.chip.wasm'
+36
View File
@@ -0,0 +1,36 @@
.PHONY: all auto native docker clean
# Configuration
SRC = ch1115.chip.c
OUT = ch1115.chip.wasm
# Check if wokwi-cli exists in PATH
WOKWI_CLI := $(shell command -v wokwi-cli 2> /dev/null)
HOST_UID := $(shell id -u)
HOST_GID := $(shell id -g)
# Default target runs the auto-detection
all: auto
auto:
ifeq ($(WOKWI_CLI),)
@echo "wokwi-cli not found in PATH. Falling back to Docker build..."
$(MAKE) docker
else
@echo "Found wokwi-cli at $(WOKWI_CLI). Using native build..."
$(MAKE) native
endif
native:
wokwi-cli chip compile $(SRC) -o $(OUT)
docker:
docker run --rm -v $(CURDIR):/workspace -w /workspace ubuntu:latest \
bash -c "apt-get update && apt-get install -y --no-install-recommends curl ca-certificates && \
curl -L https://wokwi.com/ci/install.sh | sh && \
~/.wokwi/bin/wokwi-cli chip compile $(SRC) -o $(OUT) && \
chown $(HOST_UID):$(HOST_GID) $(OUT)"
clean:
rm -f $(OUT)
+86
View File
@@ -0,0 +1,86 @@
#include "wokwi-api.h"
#include <stdlib.h>
#include <stdio.h>
typedef struct {
pin_t cs, dc, res;
spi_dev_t spi;
buffer_t fb;
uint32_t width, height;
uint8_t spi_buffer[1];
uint8_t page;
uint8_t col;
} chip_state_t;
// Forward declarations
static void on_cs_change(void *user_data, pin_t pin, uint32_t value);
static void chip_spi_done(void *user_data, uint8_t *buffer, uint32_t count);
void chip_init(void) {
printf("Initing CH1115 chip\n");
fflush(stdout);
chip_state_t *chip = malloc(sizeof(chip_state_t));
chip->fb = framebuffer_init(&chip->width, &chip->height);
chip->cs = pin_init("CS", INPUT_PULLUP);
chip->dc = pin_init("DC", INPUT);
chip->res = pin_init("RES", INPUT_PULLUP);
const spi_config_t spi_cfg = {
.sck = pin_init("SCL", INPUT),
.mosi = pin_init("SDA", INPUT),
.miso = NO_PIN,
.mode = 0,
.done = chip_spi_done,
.user_data = chip,
};
chip->spi = spi_init(&spi_cfg);
const pin_watch_config_t cs_watch = {
.edge = BOTH,
.pin_change = on_cs_change,
.user_data = chip,
};
pin_watch(chip->cs, &cs_watch);
}
static void on_cs_change(void *user_data, pin_t pin, uint32_t value) {
chip_state_t *chip = (chip_state_t*)user_data;
if (value == LOW) {
// Start receiving 1 byte at a time
spi_start(chip->spi, chip->spi_buffer, 1);
} else {
spi_stop(chip->spi);
}
}
static void chip_spi_done(void *user_data, uint8_t *buffer, uint32_t count) {
chip_state_t *chip = (chip_state_t*)user_data;
if (!count) return;
uint8_t val = buffer[0];
bool is_data = pin_read(chip->dc) == HIGH;
if (is_data) {
// Write 8 vertical pixels to the Wokwi RGBA Framebuffer
for (int i = 0; i < 8; i++) {
// 0xFFFFFFFF = White, 0x000000FF = Black
uint32_t color = (val & (1 << i)) ? 0xFFFFFFFF : 0x000000FF;
uint32_t y = (chip->page * 8) + i;
uint32_t offset = (y * chip->width + chip->col) * 4;
buffer_write(chip->fb, offset, &color, 4);
}
chip->col++; // Auto-increment column
} else {
// CH1115 Core Commands
if ((val & 0xB0) == 0xB0) chip->page = val & 0x0F; // Set Page Start
else if ((val & 0xF0) == 0x00) chip->col = (chip->col & 0xF0) | (val & 0x0F); // Lower Col
else if ((val & 0xF0) == 0x10) chip->col = (chip->col & 0x0F) | ((val & 0x0F) << 4); // Upper Col
}
// Continue receiving if CS is still active
if (pin_read(chip->cs) == LOW) {
spi_start(chip->spi, chip->spi_buffer, 1);
}
}
+9
View File
@@ -0,0 +1,9 @@
{
"name": "CH1115 OLED",
"author": "ede1998",
"pins": ["VCC", "GND", "CS", "RES", "DC", "SCL", "SDA"],
"display": {
"width": 128,
"height": 64
}
}