525112e32e
Tested the user's bracket-free ideas (indent, YAML) against the annotated-paren result. Hypothesis was that removing the closing token removes the repetition tail. The opposite held. Instrument note (the watch-out paid off twice): a real YAML library auto-quotes and gives *,-,true special meaning, which collides with the AILang operators — Qwen wrote `- *` (multiply), a YAML alias marker, and the library crashed. That is a measurement bug, not a model failure. Rebuilt with a hand-written literal indent parser (atoms verbatim, no quoting); `- *` then round-trips fine. With the instrument fixed, the result is monotone across four formats: format 4 annotated parens 7/8 > plain Form-A parens 6/8 > yamlish indent 3/8 > YAML library 2/8. More explicit structure marking helps this model; less hurts. Qwen's weakness is structure-tracking at depth, and indentation makes it track the nesting itself — as error-prone as matching parens but without the redundant cue. The bracket-free surfaces fail EARLIER (L3/L4), before the L7 repetition ceiling is even reached. Lever for an LLM-authored language: redundant explicit structure (depth- annotated brackets), not a lighter surface. Synthesis in format-findings.md; raw ladders qwen-yaml.md (PyYAML, discarded) and qwen-yamlish.md (own parser).
179 lines
8.7 KiB
Python
179 lines
8.7 KiB
Python
#!/usr/bin/env python3
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"""Format probe — YAML surface. Does encoding the tree as YAML (no parens,
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native nesting, massively in LLM training) help Qwen, esp. at depth where
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format 4 hit a closing-token repetition tail?
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Node `(head a b ...)` <-> YAML mapping `head: [a, b, ...]`; each arg is a
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scalar atom or another mapping. Converter uses the STANDARD PyYAML parser
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(round-trip-verified incl. the -,*,/,true,false special-char atoms) before
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judging any model output. Same ablation ladder as the other probes.
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Reads $IONOS_API_TOKEN (never printed). Live IONOS — run with consent.
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"""
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from __future__ import annotations
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import json, os, re, subprocess, urllib.request, yaml
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from pathlib import Path
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ENDPOINT="https://openai.inference.de-txl.ionos.com/v1/chat/completions"
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MODEL="Qwen/Qwen3-Coder-Next"
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REPO=Path(__file__).resolve().parents[2]
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AIL=os.environ.get("AIL_BIN", str(REPO/"target/debug/ail"))
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DOC=REPO/"experiments/2026-05-12-cross-model-authoring/qwen-yaml.md"
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# ---- S-expr <-> tree <-> YAML (verified converter) ----
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def tokenize(s):
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toks=[]; i=0
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while i<len(s):
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c=s[i]
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if c.isspace(): i+=1; continue
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if c in '()': toks.append(c); i+=1; continue
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if c=='"':
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j=i+1
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while j<len(s):
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if s[j]=='\\': j+=2; continue
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if s[j]=='"': break
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j+=1
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toks.append(s[i:j+1]); i=j+1; continue
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j=i
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while j<len(s) and not s[j].isspace() and s[j] not in '()"': j+=1
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toks.append(s[i:j]); i=j
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return toks
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def parse(toks):
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t=toks.pop(0)
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if t=='(':
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node=[]
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while toks and toks[0]!=')': node.append(parse(toks))
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if not toks: raise ValueError("unbalanced (")
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toks.pop(0); return node
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return t
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def to_tree(src):
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toks=tokenize(src); t=parse(toks)
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return t
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def emit(n): return '('+' '.join(emit(x) for x in n)+')' if isinstance(n,list) else n
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def to_yamlobj(n):
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if isinstance(n,list):
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if not n or not isinstance(n[0],str): raise ValueError("node head must be an atom")
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return {n[0]:[to_yamlobj(a) for a in n[1:]]}
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return n
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def from_yamlobj(o):
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if isinstance(o,dict):
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if len(o)!=1: raise ValueError(f"each node must be a single-key mapping, got keys {list(o)}")
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(k,v),=o.items()
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if v is None: v=[]
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if not isinstance(v,list): raise ValueError(f"value of `{k}` must be a list, got {type(v).__name__}")
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return [str(k)]+[from_yamlobj(x) for x in v]
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return str(o)
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def to_yaml(src): return yaml.dump(to_yamlobj(to_tree(src)),default_flow_style=False,sort_keys=False)
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def from_yaml(y):
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o=yaml.safe_load(y)
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return emit(from_yamlobj(o))
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A="""(module demo_a
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(fn double
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(type (fn-type (params (own (con Int))) (ret (own (con Int)))))
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(params x)
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(body (app + x x)))
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(fn main
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(type (fn-type (params) (ret (own (con Unit))) (effects IO)))
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(params)
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(body (seq (app print (app double 21)) (do io/print_str "\\n")))))"""
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B="""(module demo_b
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(data IntList (ctor Nil) (ctor Cons (con Int) (con IntList)))
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(fn sum
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(type (fn-type (params (own (con IntList))) (ret (own (con Int)))))
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(params xs)
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(body (match xs (case (pat-ctor Nil) 0) (case (pat-ctor Cons h t) (app + h (app sum t))))))
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(fn main
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(type (fn-type (params) (ret (own (con Unit))) (effects IO)))
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(params)
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(body (let xs (term-ctor IntList Cons 1 (term-ctor IntList Cons 2 (term-ctor IntList Nil)))
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(seq (app print (app sum xs)) (do io/print_str "\\n"))))))"""
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S="""(module demo_s
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(fn main
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(type (fn-type (params) (ret (own (con Unit))) (effects IO)))
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(params)
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(body (let s (new Series (con Float) 3)
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(let s2 (app Series.push s 1.0)
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(let s3 (app Series.push s2 2.0)
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(seq (app print (app Series.len s3)) (do io/print_str "\\n"))))))))"""
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INTRO=("This programming language is written as YAML. Every node is a single-key "
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"mapping `head:` whose value is a LIST of its arguments; each argument is "
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"either a scalar atom (a number, name, or operator like `+`) or another "
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"single-key mapping. An empty argument list is `[]`. Study these complete, "
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"valid examples, then write the requested program in the SAME YAML "
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"structure. Return ONLY the YAML, no prose, no fences.\n\n")
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BASE=INTRO+"Example 1:\n"+to_yaml(A)+"\nExample 2:\n"+to_yaml(B)+"\n"
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SERIES=(BASE+"\nExample 3 (Series ring-buffer library: `new` with head `new`, "
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"args `Series`, a `con` Float type, and capacity N; `Series.push` takes "
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"an owned series and an element, returns the new series; `Series.at` "
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"takes a series and an Int index (0=newest); `Series.len` / "
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"`Series.total_count` take a series, return Int):\n"+to_yaml(S)+"\n")
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SMA_OUT="3.0\n5.33333\n5.66667\n5.33333\n"
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SMA_TASK=("Write a program `m` computing a simple moving average, window 3, over the "
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"float stream 1.0, 5.0, 3.0, 8.0, 6.0, 2.0 using the Series library: create "
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"a Float Series lookback 3, push each value in turn, and after each push once "
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"at least 3 values have been pushed, print the average of the most recent 3 "
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"(their sum divided by 3.0) on its own line. Expected:\n"+SMA_OUT)
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STAGES=[
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("L0_const",BASE,"Write a program `m` with a function `answer` taking no parameters that returns the Int 42.",None),
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("L1_arith",BASE,"Write a program `m` with a function `triple` taking one Int parameter, returning it multiplied by 3.",None),
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("L2_print",BASE,"Write a program `m` whose `main` prints the Int 7 on its own line.","7\n"),
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("L3_adt",BASE,"Write a program `m` with an ADT `Light` (ctors Red, Green) and a function `code` returning Int 0 for Red and 1 for Green via match.",None),
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("L4_rec",BASE,"Write a program `m` with an IntList ADT (Nil/Cons), a function `length` counting elements by recursion, and a `main` that prints the length of the list [1,2,3] on its own line.","3\n"),
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("L5_series_len",SERIES,"Write a program `m` using the Series library: create a Float Series lookback 3, push 1.0 then 2.0 then 3.0, then print its Series.len on its own line.","3\n"),
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("L6_series_at",SERIES,"Write a program `m` using the Series library: create a Float Series lookback 3, push 1.0 then 2.0 then 3.0, then print (Series.at on index 0, the newest) on its own line.","3.0\n"),
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("L7_sma",SERIES,SMA_TASK,SMA_OUT),
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]
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def call(system,task):
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body=json.dumps({"model":MODEL,"temperature":0.2,"max_tokens":2000,
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"messages":[{"role":"system","content":system},{"role":"user","content":task}]}).encode()
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req=urllib.request.Request(ENDPOINT,data=body,headers={
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"Authorization":f"Bearer {os.environ['IONOS_API_TOKEN']}","Content-Type":"application/json"})
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with urllib.request.urlopen(req,timeout=120) as r: d=json.loads(r.read())
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return d["choices"][0]["message"]["content"], d.get("usage",{})
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def extract_yaml(resp):
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m=re.search(r"```(?:ya?ml)?\n(.*?)```",resp,re.S)
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return (m.group(1) if m else resp).strip()
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def evaluate(yaml_src,expected):
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try:
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plain=from_yaml(yaml_src)
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except Exception as e:
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return "yaml-convert",f"converter rejected model YAML: {e}",""
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m=re.search(r"\(module\s+([A-Za-z_][A-Za-z0-9_]*)",plain)
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name=m.group(1) if m else "m"
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f=Path(f"/tmp/abl/{name}.ail"); f.parent.mkdir(exist_ok=True); f.write_text(plain+"\n")
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chk=subprocess.run([AIL,"check",str(f)],capture_output=True,text=True)
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if chk.returncode!=0: return "check",(chk.stderr or chk.stdout).strip(),plain
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if expected is None: return "green","(check-only)",plain
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run=subprocess.run([AIL,"run",str(f)],capture_output=True,text=True)
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if run.returncode!=0: return "run",(run.stderr or run.stdout).strip(),plain
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if run.stdout!=expected: return "output",f"got {run.stdout!r}, expected {expected!r}",plain
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return "green",run.stdout,plain
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def main():
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log=["# Qwen format probe — YAML surface\n",
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f"**Model:** {MODEL}; single-shot; YAML dialect; converted via verified PyYAML round-trip.\n","---\n"]
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summary=[]
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for sid,ctx,task,exp in STAGES:
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resp,usage=call(ctx,task)
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y=extract_yaml(resp)
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stage,fb,plain=evaluate(y,exp)
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ok=stage=="green"; mark="✅ green" if ok else f"❌ {stage}"
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summary.append((sid,mark)); print(f"{sid}: {mark}")
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log+=[f"## {sid} — {mark}",
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f"\ntokens: prompt={usage.get('prompt_tokens','?')} completion={usage.get('completion_tokens','?')}\n",
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"model YAML:\n```yaml\n"+y[:1500]+"\n```\n",
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("converted Form-A:\n```\n"+plain[:1200]+"\n```\n" if plain else ""),
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("" if ok else f"**{stage}:**\n```\n{fb[:600]}\n```\n")]
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log+=["\n---\n## Ladder\n"]+[f"- {s}: {m}" for s,m in summary]
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DOC.write_text("\n".join(log)); print("doc →",DOC)
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if __name__=="__main__":
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main()
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