The pyScalar paragraph read as a universal over every beyond-safe-range
integral number, and three of its clauses have counterexamples inside
that very domain: String(2 ** 53) and String(1e20) are byte-identical to
BigInt's digits, so the "different integer or no integer literal at all"
split is not exhaustive, "the 16 digits" is 2 ** 60's instance count
rather than the mechanism (shortest round-trip is 1 to 17 significant
digits), and padded digits do name a held integer for 1e20. Say shortest
decimal string then padded to the exponent, give both counts, condition
the no-double-holds-it clause, and state the invariant that makes the
rule unconditional: where String is already exact the two agree, and
where it is not, BigInt is the exact one.
Also align one README.zh.md term: the same file already translates
"exotic names" as 特殊名称 in the SDK-section bullet.
The identifier test was ASCII-only, so an object with a `路径` field
degraded to dict[str, Any] -- dropping every sibling field's name,
requiredness and type, with no native schema behind it in Code Mode to
carry them. Python identifiers are `xid_start xid_continue*`, so match
that instead, and widen camelCase's split and head check to the same
sets (naming `_` explicitly in the split, since it is XID_Continue).
NFKC stability is a second and separate condition. CPython normalizes
identifiers at compile time while a JSON key is compared as written, so
a U+FB01 ligature key would be declared and reachable under its ASCII
expansion, a key the tool never accepts, and two keys that normalize
together would collapse
into one declaration. Those names take the subscript path. Generated
class names are normalized instead of rejected -- they are never matched
against a key. Astral characters can now reach the class-name cap, whose
slice counts UTF-16 code units, so drop a split surrogate half.
Also fix two comment claims. The note said one projection reads the
runtime twice per tool; the language-aware getters are installed on
run_code's own definition, so it is twice, both for that schema. And the
182-bracket site's reachability is an array reached from the root
through oneOf arms alone -- a union spine of any depth, not just one
root union; an object ancestor restarts the chain at the 181 site.
pyScalar's docstring attributed the rejection of a String-spelled
beyond-safe-range integer to "the Python runtime". No published backend
makes that call on this base. The fact that does not depend on one: the
padded digits name an integer no double holds, and passing it back would
have to cross the argument boundary as a JSON number. Say that, and say
why String rounds at all -- Number::toString is shortest round-trip, so
2 ** 60 emits the 16 digits that re-read to the same double and pads.
Mirror both in the test comment.
The note's Decision sentence said a test covers the flavor guard through
ctx.tools.schemas(). The test reads the definition's getter directly,
under a language absent from both tables; schemas() reaches the same
getter but has no assertion. Name what is read, and record that a
renderer-without-flavor language is drift this guards against rather
than an existing input -- the two key sets are identical today.
"Reachable only through a raw register() whose parameters is
array-rooted" was too narrow. A root oneOf reaches the same 182: the
union arm propagates listDepth unchanged because `A | B` opens no
bracket, so an array branch starts its chain at 0 exactly as an array
root does. Say "root opens an array chain -- rooted at the array, or at
an array branch of a root oneOf", in the JSDoc and the test comment,
and assert the union shape alongside the array-rooted one.
The note's Decision paragraph said the flavor guard is reached under
"a language that has a renderer but no flavor entry, and a test covers
it". The test uses ruby, absent from both tables, and the mechanism is
that schemas() reaches run_code's getters without passing
requireCodeRuntime -- so any language absent from the flavor table hits
it. State that instead.
The Consequences paragraph recorded the language-binding obligation as
two reads, assembly and execution. Within one projection there are more:
run_code's description and parameters getters each call
resolveFlavor(peekRuntime()) and schemaOf destructures both, so a reload
between them yields one schema whose halves name different languages.
"defineTool compiles an object root, so the annotation is a bare
TypedDict class name that opens nothing" is a false universal:
parameterSchemaSpecToJsonSchema compiles an OPEN object root, so an
empty parameter table and one with unrepresentable field names both
degrade to dict[str, Any], which opens one bracket. The conclusion the
sentence carries is unaffected -- 1 or 2 against a 182 cap -- so say
"a bare TypedDict class name or dict[str, Any], neither of which
carries a chain", in the JSDoc and the test comment that copied it.
pyScalar's docstring said the subscript tool-name comment quotes
"through the same call". It quotes through its own JSON.stringify call
site in renderToolsSdkPy and never reaches pyScalar, which only takes
const/enum scalars. Same function, different call site.
The mode-'both' test attributed assembly.tools to the public schemas().
That projection is wireSchemas, wired at ctx.systemPrompt.tools.
"the two code points CPython refuses" counted classes: NUL is one code
point, unpaired surrogates are the whole 2,048-wide D800-DFFF block. Say
kinds, in both the docstring and the test comment that mirrors it, and
restore the "odd" qualifier the test comment dropped -- an even trailing
backslash run does not eat the closing quote.
The soft-keyword test title still said "only special in statement
position", which the previous commit's own three-way split contradicts
for `case`: `case_block` is a clause head inside a `match` statement, not
a statement.
Add the case the subscript tool-name path lacked. A lone surrogate is
reachable in a name through JSON.parse of MCP wire JSON, and that path
has no UNPRINTABLE / LONE_SURROGATE fallback -- only the same ES2019
well-formed stringification the Literal path leans on.
The 182 the cap is chosen against had no direct case: the existing tests
cover the root chain and the TypedDict field, both of which start one
bracket lower. An array-rooted parameters schema reaches it from a plain
ToolSdkSchema literal, no raw register() needed. Exactly 180 arrays over
a const scalar is the worst case itself -- the root frame starts at
listDepth 0, so every list[ still emits and the innermost Literal[ is
reached rather than degraded; one deeper is where the item degrades.
Name the subscript tool-name comment in pyScalar's docstring: it quotes
through the same JSON.stringify call and inherits the same escapes and
the same pass-throughs.
pyScalar's docstring named only the two code points CPython refuses
anywhere in source. A bare quote, a trailing odd backslash, and a bare
LF/CR break the Literal line just as fatally, and JSON.stringify is what
covers those too. The argument also leaned on an unstated coincidence:
every escape JSON.stringify can emit is a Python escape for the same
character, which is why the emitted text both parses and decodes back to
the declared value. Say both, and assert the second class.
"statement head" does not describe `case`, whose clause block is not a
statement. Split the positions three ways.
Add the mode 'both' by python assembly, pinning the mode-by-language
matrix rather than leaving it to the shared code path.
trim and escape commute for every input, so the new whitespace test does
not pin their order: UNPRINTABLE and LONE_SURROGATE are disjoint from the
set trim() strips, and both escapes emit plain non-whitespace ASCII,
leaving the leading and trailing whitespace runs byte-identical. State that instead of the false causal clause.
pyScalar's Literal path escapes nothing itself -- JSON.stringify is what
keeps it parseable, covering NUL and, under ES2019 well-formed
stringification, unpaired surrogates. Record the dependency and turn it
into a checked invariant. Pin the docstring emission site for a lone
surrogate too, mirroring the NUL case.
Two docstring corrections: describe's caller enumeration omitted the
synthetic { description } wrapper docLines builds, and "special in
statement position" does not describe `_`, which is special in a match
pattern. Both keep the conclusion they support.
Note which of the two table guards fires depends on the entry point.
U+00AD is 0xAD, so "Cf cannot be addressed by \xNN" was false for the
first example in its own list. The real boundary is the category: one
\xNN form covers Cc exactly, and escaping the single addressable Cf
member would leave a rule that is neither category- nor
addressability-shaped.
A lone surrogate is the NUL case rather than the invisible-character
case -- Python source must be UTF-8-encodable, and compile() raises
UnicodeEncodeError for one in a string literal or a # comment alike
(measured on 3.9). JSON.parse on a wire "\ud800" escape produces them,
so escape them as \uNNNN; the regex's u flag keeps well-formed astral
pairs intact.
Pin the whitespace-plus-surviving-control boundary, which also pins
trim-after-escape.
Unicode Cc is U+0000-U+001F plus U+007F-U+009F, and no C1 code point is
ECMAScript whitespace, so U+0080-U+009F all survived the collapse and
reached the docstring raw and invisible -- the gap the previous commit
closed for NEL alone. \xNN addresses the whole block, which is the same
reason the set stops at Cc, so widen the class to U+009F and pin
U+009B/U+009C/U+009F.
Windows-1252 bytes 0x80-0x9F decoded as Latin-1 produce exactly these.
Also: required TypedDict fields share the optional fields' listDepth
start, and a description of whitespace plus a surviving control
character is not absent.
The static-stub sentence over-generalized: `tools` and `ToolCallError`
ARE bound at run time, and a model reading "everything below is a stub"
could stop catching `ToolCallError`. State the boundary and pin both
halves in the fixed-instruction assertions.
UNPRINTABLE missed U+0085: it is Cc but not ECMAScript whitespace, so
it survived the collapse and reached the docstring raw and invisible.
Add it and scope the docstring to Cc, since the `\xNN` escape cannot
address the Cf formatting characters that pass through by design.
Record the backend PR's two runtime contracts -- inject only `tools`
and `ToolCallError`, and bind the assembly-time language to the
request -- in the Agent Note and at requireCodeRuntime.
A TypedDict reads as a constructible class, so a model that writes
FooArgs(field=1) fails with NameError before dispatch: the run request
injects only the tools namespace and ToolCallError. Say so in
SDK_INSTRUCTIONS and require plain dict/list JSON arguments. The TS
flavor needs no counterpart -- interface is visibly a type and its
"runs type-stripped" clause already covers erasure.
The list-nesting cap guards against a tokenizer SyntaxError, which makes the
text not Python. A long `A | B | …` union is valid at any length and only
defeats CPython's compile-time C recursion (measured: 1,000 branches compile,
5,000 raise RecursionError); nothing compiles this block, and capping would
retire the deep-chain tests pinning the walk's linear time. Records that
boundary at the `oneOf` arm and in the Agent Note (both languages).
Also documents that the context-free degrade marker reads the call's
className rather than the frame's — frames propagate a derived name, so a
per-frame read would declare classes the caller cannot receive — and pins
that path with oneOf-of-objects and array-of-oneOf assertions.
A schema nesting arrays past ~200 levels rendered a `list[list[...]]` chain
CPython's tokenizer rejects outright (`too many nested parentheses`), so the
SDK block was not valid Python at all — the failure docstring escaping in the
same file already guards against. The chain now degrades to `Any` at 180
levels; nesting restarts per TypedDict field, since a field annotation is its
own logical line. Unions and nested objects are unaffected: neither
accumulates open brackets.
Also aligns the unreachable SDK_RENDERERS guard message with the two reachable
ones, and corrects a test comment that still said class docstring.
A description was emitted above the `async def`, where Python treats the
first string as the `Tools` class docstring and every later one as a dead
expression — leaving each method undocumented in the model's only source of
tool semantics. Emit it as the first statement of the method body instead.
Also names the known languages in the run_code flavor guard (the reachable
rejection, symmetric with the SDK_RENDERERS guard) and corrects three doc
claims: the code-runtime group README no longer calls the generated SDK
TypeScript, the base Code Mode note states its serial dispatch in past
tense, and the tools README points at the rationale the language-dispatch
note actually carries.
The Python renderer partitioned identifier methods ahead of subscript
comments, so a tool set like {a-tool, z} emitted z first — contradicting
the documented lexicographic contract and the TypeScript flavor, which
quotes exotic keys in place. Interleave both kinds in one ordered stream
and track emitted statements for the pass fallback.
Also correct four stale serialization claims in the base Code Mode note
that the live-parallel scheduler superseded.
- fromRequest placeholder: the last two braces of a consecutive } run now
terminate the placeholder, so patterns may end with a brace quantifier
(bot warning; the truncated pattern could even silently mis-match since
an unclosed { is literal in JS regexes)
- document that derived JSONL entries pass through the same resolution
- widen ToolRunContext/deferContext seam docs beyond composite-only usage
(source JSDoc, README pair, core-data-structures type-equiv blocks)
- pin direct-human blocked as uninstructed, completing the
goal-round/direct-human x complete/blocked test quadrant
The 60k oneOf-object test had only one object node (the innermost), so the
pre-fix code called allocateClassName once — linear, never tripping the
timeout, so it did not cover the class-name Θ(depth²) it named. Give every
level an object branch (both oneOf arms are objects) so each level propagates
a one-segment-longer class name; the pre-fix rope slice is then Θ(depth²)
(~9.5s, past the 5s default) while the capped path stays linear. Also extract
the shared cap expression into capClassNameBase (used by allocateClassName and
childClassName). py-types.ts stays at 100% per-file coverage.
The oneOf perf fix left a second Θ(depth²): a deep oneOf chain whose branches
are named objects propagated an ever-growing ConsString as the class-name
base, which allocateClassName then re-materialized (.length/.slice) at every
level. A childClassName helper now caps the base AT PROPAGATION, so each level
is O(1) and the walk is linear; the collision counter still makes truncated
bases unique. Also reword the oneOf comment (it said `+` but the code uses a
template literal — both are ConsString) and strengthen the tests: the deep
oneOf test now runs 100k levels (a quadratic regression trips the 5s timeout),
plus a 60k oneOf-object chain and a >120-char tool-name cap case. py-types.ts
stays at 100% per-file coverage.
A deep oneOf chain joined the accumulated union string at every level
(Array.join forces materialization), making it Theta(depth^2) — a
50,000-level chain took ~7.6s. Concatenate with `+` instead: V8 builds a
lazy ConsString that materializes once at the root, matching the array
arm's template-literal laziness and ts-types' composable-document approach.
The whole walk is now linear in depth. Adds a 20,000-level oneOf test
alongside the existing deep-array one; py-types.ts stays at 100% coverage.
The SDK_RENDERERS JSDoc kept the circular "a renderer here … plus the
renderer itself" phrasing the note already fixed, and its
{@link RUN_CODE_FLAVORS} pointed at a non-exported const in another module
(unresolvable). Reword to "an entry here and a RUN_CODE_FLAVORS entry in
code-mode.ts … plus the renderer function this table points at".
Follow-ups from the bot's review of the trusted-after-validation revert:
- renderType's Frame now carries JsonSchemaNode (the root schema is asserted
before any frame is built), dropping the `as Record<string, unknown>` casts,
the `node.oneOf as unknown[]` cast, and the runtime `required` filter — the
same typed-frame shape as the sibling ts-types renderer, so the "symmetric
with ts-types" claim holds structurally, not just behaviorally.
- The language-dispatch note broadens the trusted-input argument to cover all
real sources (first-party defineTool/raw registration and wire-derived plain
JSON), and the zh side uses full-width punctuation per translation-rules.md.
py-types.ts stays at 100% per-file coverage.
Rounds 6-9 of the bot review kept finding adjacent hostile-getter variants
(post-validation cycles, TOCTOU on const/enum/oneOf, self-referential
functions) because the renderer had grown per-shape runtime defenses the
sibling ts-types renderer does not have. Those inputs are unreachable: the
schema is a first-party defineTool object literal that already passed
assertSupportedJsonSchema, and per AGENTS.md "Trust TypeScript at typed
same-process seams" a typed same-process seam does not add hostile-input
handling for values the static interface forbids.
renderType now validates the whole tree once and trusts it, wrapping the walk
in one try/catch that degrades to Any — byte-for-byte the stance of the
ts-types sibling. This removes the cycle-tracking (activeSchemas/hasIdentity),
the const/enum/oneOf read snapshots, the isPyScalar re-check, the typing
rollback, and the pyScalar null->None re-read handling; the corresponding
hostile-getter tests are removed. Behavior fixes that hold for legitimate
input are kept: RESERVED soft-keyword exclusion, closed-empty-object TypedDict,
class-name cap + per-base collision counter, BigInt digits for beyond-safe
integers. py-types.ts stays at 100% per-file coverage.
The language-dispatch Agent Note documents the stance and its symmetry with
ts-types so the boundary is not re-litigated.
Address ds-review-bot v5/v6 review round 8. The prior guards re-read a
stateful getter's value between the check and the spelling, so a getter
returning different values across reads could still emit invalid Python:
- renderConstrainedScalar reads node.const ONCE into a local, then checks and
spells that snapshot; a third-read switch can no longer produce
Literal[[object Object]].
- The enum path snapshots via [...raw] (reading each element exactly once,
covering accessor-property elements) and requires the snapshot be a non-empty
all-scalar array; an emptied re-read no longer spells Literal[], and a
non-array re-read degrades.
- The oneOf branch build guards a non-array or empty re-read to Any instead of
joining to '' (a missing type).
- pyScalar spells null as None; its JSDoc no longer claims null cannot reach it.
Tests cover each re-read shape; py-types.ts stays at 100% coverage.
Address ds-review-bot v5/v6 review round 7:
- The render-walk cycle guard tracked only plain objects; a function has
typeof 'function' yet carries own properties and can reference itself, so a
post-validation getter returning a self-referential function bypassed the
guard and looped forever. A hasIdentity() helper now covers objects AND
functions, applied symmetrically at the three sites (root add, finish remove,
child check).
- renderConstrainedScalar re-reads const/enum at render time; a stateful getter
that validated as a scalar could return an object, spelling the invalid
Literal[[object Object]]. It now degrades to the broad type when the re-read
value is not a scalar (or the enum not an all-scalar array).
- The activeSchemas comment notes the out-of-scope boundary: a getter
fabricating a fresh node per read never repeats an ancestor and is
indistinguishable from a legitimately unbounded-depth schema.
Tests cover the function cycle and non-scalar const/enum re-reads; py-types.ts
stays at 100% per-file coverage.
Address ds-review-bot v5/v6 review round 6:
- renderType tracks the active ancestor schemas by object identity (the frame
stack is the DFS path). A stateful getter can mutate the graph after
validation so a child returns an ancestor at render time; without this the
walk pushed frames forever instead of degrading. A repeated ancestor now
degrades to Any, honoring the never-throw contract; distinct nodes in a
legitimately deep chain are different objects, so it stays O(1) per push and
O(depth) memory.
- The multiline allocateClassName JSDoc was still attached to the
MAX_CLASS_NAME_BASE constant (a self-referential @link, and the function had
no doc). Move the doc onto the function and give the constant its own
one-liner.
- Tests cover the post-validation cycle and a non-object render-time child;
py-types.ts stays at 100% per-file coverage.
Address ds-review-bot v5/v6 review round 5:
- allocateClassName: keep a per-base collision counter (state.nextClassCounter)
so a deep single-field chain sharing one capped base allocates in amortized
O(1) instead of rescanning from 2 each time (Theta(depth^2) time); remove the
stale one-line JSDoc left above the multiline one and attach the doc to the
function, not the constant.
- renderType's catch rolls back the typing symbols the discarded subtree added
(not just the classes) so the import line still lists exactly the symbols the
surviving output uses; the comment now names that the same path also degrades
this module's internal-invariant throws to Any, the trade for never throwing.
- README (both languages) no longer describes an installable
dsh-code-runtime-python package: the Python renderer is built in and drives
any runtime reporting language: 'python'; the first-party backend ships
separately.
- Tests: assert the render-phase degrade on the first call, assert the import
line after rollback, and cover the collision-skip loop; py-types.ts stays at
100% per-file coverage.
Address ds-review-bot v5/v6 review round 4:
- renderType now holds the no-throw contract across the whole walk, not
just root validation: a stateful getter that passes validation and then
throws in the render phase degrades the node to Any, rolling back any
classes the call had begun emitting, instead of escaping.
- allocateClassName caps the accumulated base name. Child class names
derive from their parent's, so an unbounded single-field object chain
grew the sum of names to Theta(depth^2) (a 5000-deep schema produced a
~25MB SDK); the cap keeps total emitted text linear, the collision
counter still makes truncated bases unique.
- The language-dispatch note's Consequences first sentence and the zh
guard paragraph are corrected: two table entries (not one), and
full-width Chinese punctuation per translation-rules.md.
Address ds-review-bot v5/v6 review round 3:
- Config.mode JSDoc and the regenerated config-catalog no longer claim Code
Mode requires a TypeScript runtime; both now say a language with a
registered SDK renderer.
- The active 2026-06-15-code-mode base note (both languages) follows shipped
reality: the SDK renders the loaded runtime's language, dsh-tools accepts
any language with a renderer and run_code flavor, and it cross-links the
language-dispatch note.
- The language-dispatch note distinguishes the two Object.hasOwn guards'
reachability and documents the peekRuntime no-runtime degrade vs the
rejected silent fallback.
- SDK_RENDERERS comment: adding a language is two table entries, not one.
- py-types: document the deliberate PEP 586 deviation for float Literals;
add oneOf-object-branch tests (named union classes and context-free
degrade), keeping py-types.ts at 100% per-file coverage.
Address ds-review-bot v5/v6 review on the Python SDK renderer:
- resolveFlavor now takes a peekRuntime() reader: undefined (no runtime,
the doc-catalog harvest) degrades to the TS flavor, but a mounted
runtime whose language is absent from RUN_CODE_FLAVORS fails loud. This
removes the try/catch that silently swallowed the invalid-language path
and drops the /* v8 ignore */ that hid the flavor guard from coverage;
wireSchemas validates the runtime before projecting schemas so the
renderer-table rejection stays the canonical assembly error.
- py-types RESERVED drops the soft keywords match/case: they are legal as
TypedDict fields and methods, so keeping them needlessly degraded
common search/regex arg objects to dict[str, Any].
- py-types treats an object with omitted properties as {} like the unified
validator and TS renderer do, so a closed empty object declares an empty
TypedDict instead of a permissive dict[str, Any].
- README: symmetric jsonSchemaToPy->Any note; a stale zh SDK bullet and
limitation corrected; link the service-wide-language limitation to its
Agent Note.
Address ds-review-bot suggestions on the Python SDK renderer PR:
- resolveFlavor: widen the JSDoc and catch comment to name the
invalid-language path the doc-catalog harvest also degrades through.
- wireSchemas: note the requireCodeRuntime() call is an intentional
single gate, redundant with the per-getter resolveFlavor path.
- README: link the service-wide-language limitation to its Agent Note,
and correct the Chinese bullet that still claimed TypeScript-only.
Code Mode generated only a TypeScript SDK and rejected any runtime whose
language was not "typescript". Add py-types.ts (jsonSchemaToPy /
renderToolsSdkPy) and select the SDK-section renderer and the run_code
schema flavor by ctx.codeRuntime.language through two parallel tables
(SDK_RENDERERS, RUN_CODE_FLAVORS), read with Object.hasOwn and failing
loud on a language with no renderer. The tool layer depends only on the
code-runtime seam's language field, so it lands independently of the
Python protocol and backend.
An empty read window (byte cap below the first selected line: `lines: []`
with `totalLines > 0`) dropped `offset` from the persisted presentation
meta, so a replayed read card could not report where the window starts or
where a continuation resumes. Carry `offset` on `FsReadMeta`,
`ReadResultView`, and the `presentationMeta` projection, and validate it in
`readMetaFromMeta` (1-based integer; the first line number may not fall
below it). Re-record the ACP fixtures and the cordis api catalog.
Also correct the Note's `parallel-file-reads` golden path
(examples/tui-agent -> apps/cli) and record the pre-card replay-degradation
tradeoff in the Decision section.
Address the review of the search render card:
- The search result view carries no `content`: it was a no-op for every
consumer and serialized the whole search text twice. A UI without a search
card falls back to the raw tool/result content; the TUI stays byte-identical
to the pre-search-card generic fallback.
- Bound the serialized presentationMeta with a configurable searchMetaMaxBytes
(default 64 KiB): the inline item cap does not bound bytes, and spill-policy
only shrinks content, never meta. capMetaBytes drops trailing groups/paths.
- Share one retention pass (retainGrepMatches/retainGlobPaths in search-core)
between the model-facing render and the meta projection; remove the second
cap/preview implementation and the presentation<->grep module cycle by
moving GrepMatch/previewLine to search-core.
- Rename the result-view discriminant kind -> shape so it no longer collides
with GenericCallView.kind (ToolCallKind, whose values include 'search').
- Narrow the entry export surface to consumed symbols.
- Sync the three bilingual ToolResultView doc pairs and the Agent Note pair;
document the deliberate empty-card acceptance vs diffsFromMeta.
- Regenerate config/tool/cordis catalogs for the new config field.
Address the code-review bot findings on the web result card:
- web_fetch's card truncated now derives from the shared renderFetchOutput
helper, matching the effective truncation the model-facing text reflects
(provider cap, source cut, or output cap), instead of the provider-only flag.
- Drop the redundant content copy from both web result views; a UI without the
web capability falls back to the raw tool/result content. Narrow the TUI
transcript view.content access accordingly.
- Set the result-state title from the call args (query/url) so a window-
truncated replay keeps a title.
- Project meta from the seam result types rather than hand-rolled value types.
- Sync the card vocabulary across core tools README, docs/core-data-structures,
the adding-a-tool cookbook, and the tool-web package README (both languages,
re-recorded pairings); regenerate the cordis api-catalog and cordis-inspect
snapshot; revise the Agent Note.
web_search and web_fetch returned only model-facing text, whose markdown source
list is lossy (title-or-hostname label, snippet and date concatenated), so a
client could not recover the structured sources. Add a card:'web' result view
with a kind discriminant ('search' carrying structured sources + answer +
truncated, 'fetch' carrying url + statusCode + truncated), projected through
each tool's output.presentationMeta and read back in presentResult. A UI
without the web card falls back to content; the TUI is unchanged. The web
consumer is a follow-up.
grep and glob returned only model-facing text; the structured matches/paths
never reached the client. Add a card:'search' result view with a kind
discriminant ('matches' grouped by file for grep, 'paths' for glob), projected
through each tool's output.presentationMeta and read back in presentResult. The
projections re-apply the same inline cap and per-line budget as the render text
and report total + truncated, so a UI never presents a capped page as complete.
A UI without the search card falls back to content; the TUI is unchanged. The
web consumer is a follow-up.
The read tool's result carries structured numbered lines, but only the
model-facing envelope text reached the client. Add a card:'read' result view
(ReadResultView) projecting {path, lines, totalLines, lang} through the tool's
output.presentationMeta so presentResult reproduces it on live and replay
paths; the pending call stays a generic read card. A UI without the read
capability falls back to the envelope-stripped content, so the TUI is
unchanged. The web consumer that renders the line-numbered view is a follow-up.