meta: add interactive draft URL

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2026-07-20 08:36:37 +02:00
parent bd7d805bde
commit 795f3bb714
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@@ -1,63 +1,284 @@
{ {
"$schema": "../../../tools/card-layouts/schemas/card-source.schema.json", "schema": "esc-card-source.v1", "$schema": "../../../tools/card-layouts/schemas/card-source.schema.json",
"schema": "esc-card-source.v1",
"card": { "card": {
"id": "mpabi-freertos-cpp-13-event-group", "series": "freertos-cpp", "series_title": "FreeRTOS C++", "number": "13", "count": "16", "slug": "event-group", "id": "mpabi-freertos-cpp-13-event-group",
"title": "EventGroup and Coordinated State", "topic": "Typed bit masks, any/all predicates, clear-on-exit and timeout snapshots", "project": "Freestanding C++ nad FreeRTOS", "subject": "Informatyka", "series": "freertos-cpp",
"level": "Rok 2 · L12 · RV32I/Hazard3", "revision_date": "2026-07-19T00:00:00+02:00", "status": "Gotowa", "version": "v00.01", "series_title": "FreeRTOS C++",
"uuid": "5fbcd7c6-3a73-4cd2-b76c-bdb016d1daaa", "author": "M. Pabiszczak", "year": "2026" "number": "13",
"count": "16",
"slug": "event-group",
"title": "EventGroup and Coordinated State",
"topic": "Typed bit masks, any/all predicates, clear-on-exit and timeout snapshots",
"project": "Freestanding C++ nad FreeRTOS",
"subject": "Informatyka",
"level": "Rok 2 · L12 · RV32I/Hazard3",
"revision_date": "2026-07-19T00:00:00+02:00",
"status": "Gotowa",
"version": "v00.01",
"uuid": "5fbcd7c6-3a73-4cd2-b76c-bdb016d1daaa",
"author": "M. Pabiszczak",
"year": "2026"
},
"generated": {
"tex": "doc/generated/main.tex",
"html": "web/index.html",
"html_css": "web/style.css",
"html_tree_inspector": false,
"react_app": true
}, },
"generated": {"tex": "doc/generated/main.tex", "html": "web/index.html", "html_css": "web/style.css", "html_tree_inspector": false, "react_app": true},
"template": "templates/karta-klasyczna.json", "template": "templates/karta-klasyczna.json",
"title_block": { "title_block": {
"category": "KARTA PRACY · INFORMATYKA", "prepared_by": "M. Pabiszczak", "prepared_on": "2026-07-19T00:00:00+02:00", "category": "KARTA PRACY · INFORMATYKA",
"title": "EventGroup and Coordinated State", "repository_url": "https://zsl-gitea.mpabi.pl/edu-freertos-cpp/lab-rv32i-freertos-event-group", "prepared_by": "M. Pabiszczak",
"revision": "v00.01", "issued_on": "2026-07-19T00:00:00+02:00", "series": "FREERTOS-CPP-13", "document_type": "karta pracy", "tool": "card-layouts", "prepared_on": "2026-07-19T00:00:00+02:00",
"show_qr": false, "show_repository_qr": false, "height_cm": 2.6, "repeat_on_every_page": true, "replace_front_matter": true "title": "EventGroup and Coordinated State",
"repository_url": "https://zsl-gitea.mpabi.pl/edu-freertos-cpp/lab-rv32i-freertos-event-group",
"revision": "v00.01",
"issued_on": "2026-07-19T00:00:00+02:00",
"series": "FREERTOS-CPP-13",
"document_type": "karta pracy",
"tool": "card-layouts",
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"url": "https://dce7fb9d-7b2f-5d49-96a2-3a30d3070b84.mpabi.pl/5fbcd7c6-3a73-4cd2-b76c-bdb016d1daaa"
}, },
"front_page_scope": { "front_page_scope": {
"title": "Cel karty", "content_tex": "Uczeń modeluje skoordynowany stan trzema typowanymi bitami, wybiera predykat any/all oraz mierzy snapshot, clear-on-exit i timeout.", "title": "Cel karty",
"scope_title": "Zakres karty", "scope_content_tex": "EventGroup przechowuje bity stanu, nie licznik zdarzeń ani payload. Wynik wait jest snapshotem i wymaga sprawdzenia wybranego predykatu." "content_tex": "Uczeń modeluje skoordynowany stan trzema typowanymi bitami, wybiera predykat any/all oraz mierzy snapshot, clear-on-exit i timeout.",
"scope_title": "Zakres karty",
"scope_content_tex": "EventGroup przechowuje bity stanu, nie licznik zdarzeń ani payload. Wynik wait jest snapshotem i wymaga sprawdzenia wybranego predykatu."
},
"side_margin_tree_layout": {
"columns": [
{
"id": "zawodowe",
"label": "TECH",
"side": "left",
"tree": "WE -> EK -> KW",
"description": "Task states, bit transitions, timeout i clear policy."
},
{
"id": "ogolne",
"label": "OG",
"side": "right",
"tree": "WE -> EN -> KW",
"description": "State versus count/payload oraz any/all semantics."
}
]
}, },
"side_margin_tree_layout": {"columns": [
{"id": "zawodowe", "label": "TECH", "side": "left", "tree": "WE -> EK -> KW", "description": "Task states, bit transitions, timeout i clear policy."},
{"id": "ogolne", "label": "OG", "side": "right", "tree": "WE -> EN -> KW", "description": "State versus count/payload oraz any/all semantics."}
]},
"learning_effects": { "learning_effects": {
"K13.EN01": {"bloom_level": "Analiza", "label": "Semantyka bitów", "text": "Uczeń odróżnia bit stanu od licznika i payloadu oraz analizuje race przy clear-on-exit.", "assessment_criteria": ["K13.KW01"]}, "K13.EN01": {
"K13.EK01": {"bloom_level": "Zastosowanie", "label": "Koordynacja any/all", "text": "Uczeń buduje typed mask, mierzy wait all/any, snapshot timeoutu i jawne czyszczenie bitów.", "assessment_criteria": ["K13.KW01"]} "bloom_level": "Analiza",
"label": "Semantyka bitów",
"text": "Uczeń odróżnia bit stanu od licznika i payloadu oraz analizuje race przy clear-on-exit.",
"assessment_criteria": [
"K13.KW01"
]
},
"K13.EK01": {
"bloom_level": "Zastosowanie",
"label": "Koordynacja any/all",
"text": "Uczeń buduje typed mask, mierzy wait all/any, snapshot timeoutu i jawne czyszczenie bitów.",
"assessment_criteria": [
"K13.KW01"
]
}
}, },
"assessment_criteria": { "assessment_criteria": {
"K13.KW01": {"text": "Program kończy się PASS; maska all=0x7, repeated UART=0x1, clear GPIO daje 0x7->0x5, timeout 3 zwraca snapshot 0x5/false, a any clear kończy maską 0x0 bez zmiany heapu.", "learning_effects": ["K13.EN01", "K13.EK01"]} "K13.KW01": {
"text": "Program kończy się PASS; maska all=0x7, repeated UART=0x1, clear GPIO daje 0x7->0x5, timeout 3 zwraca snapshot 0x5/false, a any clear kończy maską 0x0 bez zmiany heapu.",
"learning_effects": [
"K13.EN01",
"K13.EK01"
]
}
}, },
"educational_requirements": { "educational_requirements": {
"K13.WE01": { "K13.WE01": {
"text": "Implementacja i pomiar EventGroup jako współdzielonego bitowego stanu.", "label": "EventGroup i koordynacja", "learning_effects": ["K13.EN01", "K13.EK01"], "text": "Implementacja i pomiar EventGroup jako współdzielonego bitowego stanu.",
"label": "EventGroup i koordynacja",
"learning_effects": [
"K13.EN01",
"K13.EK01"
],
"learning_tree": { "learning_tree": {
"schema": "we-learning-tree.v1", "policy": "Każdy wait ma jawną maskę, predykat any/all, politykę clear oraz timeout.", "schema": "we-learning-tree.v1",
"ogolne": [{"effect_ref": "K13.EN01", "display": "EN LOCAL RTOS.EVENT.01", "source": "LOCAL", "official": "RTOS.EVENT", "local": "01", "kind": "EN", "tree_id": "K13.WE01.OG.LOCAL.RTOS.EVENT.01", "text": "Analizuje stan bitowy, utratę informacji i granice EventGroup.", "kw": [{"criterion_ref": "K13.KW01", "display": "KW LOCAL RTOS.EVENT.01", "source": "LOCAL", "kind": "KW", "official": "RTOS.EVENT", "local": "01", "text": "Nie używa bitów jako licznika ani payloadu i uzasadnia race clear-on-exit."}]}], "policy": "Każdy wait ma jawną maskę, predykat any/all, politykę clear oraz timeout.",
"zawodowe": [{"effect_ref": "K13.EK01", "display": "EK LOCAL DBG.EVENT.01", "source": "LOCAL", "official": "DBG.EVENT", "local": "01", "kind": "EK", "tree_id": "K13.WE01.TECH.LOCAL.DBG.EVENT.01", "text": "Mierzy transitions, task blocking, snapshots i timeout ticks.", "kw": [{"criterion_ref": "K13.KW01", "display": "KW LOCAL DBG.EVENT.01", "source": "LOCAL", "kind": "KW", "official": "DBG.EVENT", "local": "01", "text": "Pokazuje 0x7, 0x5, timeout false, final 0x0 i PASS."}]}] "ogolne": [
{
"effect_ref": "K13.EN01",
"display": "EN LOCAL RTOS.EVENT.01",
"source": "LOCAL",
"official": "RTOS.EVENT",
"local": "01",
"kind": "EN",
"tree_id": "K13.WE01.OG.LOCAL.RTOS.EVENT.01",
"text": "Analizuje stan bitowy, utratę informacji i granice EventGroup.",
"kw": [
{
"criterion_ref": "K13.KW01",
"display": "KW LOCAL RTOS.EVENT.01",
"source": "LOCAL",
"kind": "KW",
"official": "RTOS.EVENT",
"local": "01",
"text": "Nie używa bitów jako licznika ani payloadu i uzasadnia race clear-on-exit."
}
]
}
],
"zawodowe": [
{
"effect_ref": "K13.EK01",
"display": "EK LOCAL DBG.EVENT.01",
"source": "LOCAL",
"official": "DBG.EVENT",
"local": "01",
"kind": "EK",
"tree_id": "K13.WE01.TECH.LOCAL.DBG.EVENT.01",
"text": "Mierzy transitions, task blocking, snapshots i timeout ticks.",
"kw": [
{
"criterion_ref": "K13.KW01",
"display": "KW LOCAL DBG.EVENT.01",
"source": "LOCAL",
"kind": "KW",
"official": "DBG.EVENT",
"local": "01",
"text": "Pokazuje 0x7, 0x5, timeout false, final 0x0 i PASS."
}
]
}
]
} }
} }
}, },
"sections": [ "sections": [
{"title": "Typed masks i wait all", "content_kind": "prose", "content_tex": "Zbuduj maskę UART/GPIO/APP, zablokuj coordinator, opublikuj trzy stany i zachowaj maskę po wait all.", "educational_requirement_refs": ["K13.WE01"], "learning_effect_refs": ["K13.EK01"], "assessment_criterion_refs": ["K13.KW01"], "area_tree_refs": ["K13.WE01.TECH.LOCAL.DBG.EVENT.01"], "steps": [ {
{"id": "S01", "title": "Potwierdź Blocked oraz set 1, 2 i 4.", "tree_refs": ["K13.WE01.TECH.LOCAL.DBG.EVENT.01"]}, "title": "Typed masks i wait all",
{"id": "S02", "title": "Zapisz all snapshot i current 0x7.", "tree_refs": ["K13.WE01.TECH.LOCAL.DBG.EVENT.01"]} "content_kind": "prose",
]}, "content_tex": "Zbuduj maskę UART/GPIO/APP, zablokuj coordinator, opublikuj trzy stany i zachowaj maskę po wait all.",
{"title": "Clear, timeout i wait any", "content_kind": "prose", "content_tex": "Usuń GPIO, zmierz timeout all z częściową maską, a następnie skonsumuj UART i APP przez any/clear-on-exit.", "educational_requirement_refs": ["K13.WE01"], "learning_effect_refs": ["K13.EK01"], "assessment_criterion_refs": ["K13.KW01"], "area_tree_refs": ["K13.WE01.TECH.LOCAL.DBG.EVENT.01"], "steps": [ "educational_requirement_refs": [
{"id": "S03", "title": "Pokaż transition 0x7 do 0x5.", "tree_refs": ["K13.WE01.TECH.LOCAL.DBG.EVENT.01"]}, "K13.WE01"
{"id": "S04", "title": "Zmierz timeout 3 i final mask 0x0.", "tree_refs": ["K13.WE01.TECH.LOCAL.DBG.EVENT.01"]}
]},
{"title": "Stan, licznik i race", "content_kind": "prose", "content_tex": "Wyjaśnij, dlaczego repeated set pozostaje 0x1, dlaczego result!=0 nie dowodzi wait all i jak clear-on-exit wpływa na drugiego waitera.", "educational_requirement_refs": ["K13.WE01"], "learning_effect_refs": ["K13.EN01"], "assessment_criterion_refs": ["K13.KW01"], "area_tree_refs": ["K13.WE01.OG.LOCAL.RTOS.EVENT.01"], "steps": [
{"id": "S05", "title": "Dobierz queue/counter dla wielokrotnych zdarzeń.", "tree_refs": ["K13.WE01.OG.LOCAL.RTOS.EVENT.01"]},
{"id": "S06", "title": "Przeanalizuj dwóch waiterów z clear-on-exit.", "tree_refs": ["K13.WE01.OG.LOCAL.RTOS.EVENT.01"]}
]}
], ],
"tasks": {"task01": { "learning_effect_refs": [
"title": "Typed EventGroup i trzy źródła stanu", "uuid": "5fbcd7c6-3a73-4cd2-b76c-bdb016d1daaa", "K13.EK01"
],
"assessment_criterion_refs": [
"K13.KW01"
],
"area_tree_refs": [
"K13.WE01.TECH.LOCAL.DBG.EVENT.01"
],
"steps": [
{
"id": "S01",
"title": "Potwierdź Blocked oraz set 1, 2 i 4.",
"tree_refs": [
"K13.WE01.TECH.LOCAL.DBG.EVENT.01"
]
},
{
"id": "S02",
"title": "Zapisz all snapshot i current 0x7.",
"tree_refs": [
"K13.WE01.TECH.LOCAL.DBG.EVENT.01"
]
}
]
},
{
"title": "Clear, timeout i wait any",
"content_kind": "prose",
"content_tex": "Usuń GPIO, zmierz timeout all z częściową maską, a następnie skonsumuj UART i APP przez any/clear-on-exit.",
"educational_requirement_refs": [
"K13.WE01"
],
"learning_effect_refs": [
"K13.EK01"
],
"assessment_criterion_refs": [
"K13.KW01"
],
"area_tree_refs": [
"K13.WE01.TECH.LOCAL.DBG.EVENT.01"
],
"steps": [
{
"id": "S03",
"title": "Pokaż transition 0x7 do 0x5.",
"tree_refs": [
"K13.WE01.TECH.LOCAL.DBG.EVENT.01"
]
},
{
"id": "S04",
"title": "Zmierz timeout 3 i final mask 0x0.",
"tree_refs": [
"K13.WE01.TECH.LOCAL.DBG.EVENT.01"
]
}
]
},
{
"title": "Stan, licznik i race",
"content_kind": "prose",
"content_tex": "Wyjaśnij, dlaczego repeated set pozostaje 0x1, dlaczego result!=0 nie dowodzi wait all i jak clear-on-exit wpływa na drugiego waitera.",
"educational_requirement_refs": [
"K13.WE01"
],
"learning_effect_refs": [
"K13.EN01"
],
"assessment_criterion_refs": [
"K13.KW01"
],
"area_tree_refs": [
"K13.WE01.OG.LOCAL.RTOS.EVENT.01"
],
"steps": [
{
"id": "S05",
"title": "Dobierz queue/counter dla wielokrotnych zdarzeń.",
"tree_refs": [
"K13.WE01.OG.LOCAL.RTOS.EVENT.01"
]
},
{
"id": "S06",
"title": "Przeanalizuj dwóch waiterów z clear-on-exit.",
"tree_refs": [
"K13.WE01.OG.LOCAL.RTOS.EVENT.01"
]
}
]
}
],
"tasks": {
"task01": {
"title": "Typed EventGroup i trzy źródła stanu",
"uuid": "5fbcd7c6-3a73-4cd2-b76c-bdb016d1daaa",
"prompt_tex": "Skoordynuj UART/GPIO/APP przez typed mask, wait all/any, keep/clear-on-exit oraz timeout snapshot i udowodnij granicę state versus count.", "prompt_tex": "Skoordynuj UART/GPIO/APP przez typed mask, wait all/any, keep/clear-on-exit oraz timeout snapshot i udowodnij granicę state versus count.",
"criterion": "All 0x7; repeated 0x1; clear 0x7->0x5; timeout 3/snapshot 0x5/false; any snapshot 0x5/final 0; heap delta 0; pass=1.", "criterion": "All 0x7; repeated 0x1; clear 0x7->0x5; timeout 3/snapshot 0x5/false; any snapshot 0x5/final 0; heap delta 0; pass=1.",
"educational_requirement_refs": ["K13.WE01"], "learning_effect_refs": ["K13.EN01", "K13.EK01"], "assessment_criterion_ref": "K13.KW01", "links": {"equations": [], "figures": []} "educational_requirement_refs": [
}}, "K13.WE01"
"tasks_order": ["task01"] ],
"learning_effect_refs": [
"K13.EN01",
"K13.EK01"
],
"assessment_criterion_ref": "K13.KW01",
"links": {
"equations": [],
"figures": []
}
}
},
"tasks_order": [
"task01"
]
} }