Running cognitect aws-api's pure test namespaces (signing/shapes/protocols/ util/retry/endpoints) surfaced general gaps: - extend-protocol/extend-type accept a computed class type, e.g. (Class/forName "[B") for the byte-array class — the byte-array idiom data.json and aws-api use. The macro grouping handled only symbol/nil heads (it crashed on a list type); type->name resolves a Class value via .getName; a byte-array dispatches on the "[B" host tag. - java.nio.ByteBuffer over a jolt byte-array (wrap/allocate/get/put/array/ remaining/position/limit/duplicate/flip), plus extend-protocol to it. - java.util.Arrays (equals/copyOf/copyOfRange/fill) and java.util.Random (nextBytes/nextInt/…). - java.net.URI/create and clojure.lang.RT/baseLoader statics. - clojure.core.async/promise-chan (deliver-once, peek-don't-pop). - a failed java.time parse throws DateTimeParseException (typed), so (catch DateTimeParseException …) matches it instead of leaking an untyped condition. The XML side lives in the jolt-lang/xml library (libxml2 over jolt.ffi); ByteBuffer stays in core as a generic java.nio primitive. Gate: make test green (corpus +6 JVM-certified rows, 0 NEW divergence; unit 553/553; SCI 211).
410 lines
22 KiB
Scheme
410 lines
22 KiB
Scheme
;; The minimal Chez RT the emitted Scheme rests on.
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;;
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;; Sits above the value model (values.ss) and below an emitted program. Adds the
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;; two things the back end's output references that aren't in the value layer:
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;; 1. the var-cell late-binding registry (Clojure vars — a global root that a
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;; reference reads at call time, so redefinition / mutual recursion work);
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;; 2. the rt primitive shims the emitter names (jolt-inc/dec/not) and jolt's
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;; number printing (all jolt numbers model Clojure doubles; integer-valued
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;; print without a trailing ".0").
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;;
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;; Emitted programs do `(load "host/chez/rt.ss")`; this loads values.ss in turn.
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(load "host/chez/values.ss")
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(load "host/chez/collections.ss")
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(load "host/chez/seq.ss")
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;; --- rt arithmetic / logic shims (named in the emitter's native-ops) ----------
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(define (jolt-inc x) (+ x 1))
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(define (jolt-dec x) (- x 1))
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;; Coerce a ^long-hinted argument to a fixnum at fn entry, the way the JVM's
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;; longCast coerces a primitive-long parameter: truncate a flonum toward zero,
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;; pass an exact integer through, error if it doesn't fit a fixnum or isn't a
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;; number. The hint is a promise the value is a fixnum-range long; the body's fx*
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;; ops rely on it. (^double params coerce with the built-in exact->inexact.)
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(define (jolt->fx x)
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(let ((n (cond ((fixnum? x) x)
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((flonum? x) (exact (truncate x)))
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((rational? x) (exact (truncate x)))
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(else (error 'jolt "^long hint: not a number" x)))))
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(if (fixnum? n) n (error 'jolt "^long hint: value out of fixnum range" x))))
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;; jolt `not`: only nil and false are falsey.
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(define (jolt-not x) (if (jolt-truthy? x) #f #t))
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;; --- exceptions --------------------------------------------------------------
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;; throw raises the jolt value RAW (no envelope);
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;; catch (emitted as `guard`) binds it directly. Chez `raise` accepts any
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;; object, so a thrown number/map/ex-info all work; uncaught -> non-zero exit.
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(define (jolt-throw v) (raise v))
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;; ex-info builds the tagged map {:jolt/type :jolt/ex-info :message :data :cause}
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;; — a real jolt-hash-map, so the ex-data/ex-message/ex-cause tier fns read it
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;; via jolt-get for free. Arity 2 (msg data) or 3 (msg data cause).
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(define jolt-kw-ex-type (keyword "jolt" "type"))
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(define jolt-kw-ex-info (keyword "jolt" "ex-info"))
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(define jolt-kw-message (keyword #f "message"))
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(define jolt-kw-data (keyword #f "data"))
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(define jolt-kw-cause (keyword #f "cause"))
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(define (jolt-ex-info msg data . more)
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(jolt-hash-map jolt-kw-ex-type jolt-kw-ex-info
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jolt-kw-message msg
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jolt-kw-data data
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jolt-kw-cause (if (null? more) jolt-nil (car more))))
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;; A host-constructed throwable (RuntimeException. etc.): an ex-info-shaped map
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;; carrying its canonical JVM :jolt/class, so (class …) / instance? / .getMessage /
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;; ex-message all reflect the real type. Plain ex-info has no :jolt/class (its class
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;; defaults to clojure.lang.ExceptionInfo), so those maps stay byte-identical.
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(define jolt-kw-class (keyword "jolt" "class"))
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(define (jolt-host-throwable class-name msg . more)
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(jolt-hash-map jolt-kw-ex-type jolt-kw-ex-info
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jolt-kw-class class-name
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jolt-kw-message msg
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jolt-kw-data jolt-nil
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jolt-kw-cause (if (null? more) jolt-nil (car more))))
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;; --- host interop ------------------------------------------------------------
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;; (.method target arg*) lowers to (jolt-host-call "method" target arg*). JVM
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;; interop has no general Chez analog, but the few methods jolt-core's io tier
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;; calls map onto Chez equivalents: a writer's .write is a port display; a File's
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;; .isDirectory / .listFiles work over a path string (Chez has no File type, so
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;; file-seq's File branch is unreachable here — these keep the forms honest). An
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;; unsupported method raises rather than silently returning nil.
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(define (jolt-host-call method target . args)
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(cond
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((string=? method "write") (display (car args) target) jolt-nil)
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((string=? method "isDirectory") (if (file-directory? target) #t #f))
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((string=? method "listFiles") (list->cseq (directory-list target)))
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(else (error 'jolt-host-call (string-append "unsupported host method: ." method)))))
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;; --- var cells: late-bound global roots (Clojure vars) -----------------------
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;; A var is a mutable cell keyed by "ns/name". A `:def` sets the root; a `:var`
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;; reference reads it at use time (late binding), so a forward/mutually-recursive
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;; reference resolves to whatever the cell holds when the call actually runs.
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;; declare / (def name) with no init reserves a cell holding this placeholder
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;; until the real def overwrites it (a forward reference resolves to the cell, and
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;; correct code never reads it before the binding def runs).
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(define jolt-unbound (string->symbol "#<jolt-unbound>"))
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;; `defined?` distinguishes a genuinely interned var (def / declare / a native-op
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;; cell) from a cell lazily materialised by a forward `var-deref` / `(var x)` on a
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;; not-yet-defined name — `resolve` returns the cell iff defined?.
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;; ns-unmap clears it. Avoids the (def x nil) edge of probing the root.
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(define-record-type var-cell (fields ns name (mutable root) (mutable defined?)) (nongenerative var-cell-v2))
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(define var-table (make-hashtable string-hash string=?))
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(define (jolt-var ns name)
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(let ((k (string-append ns "/" name)))
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(or (hashtable-ref var-table k #f)
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(let ((c (make-var-cell ns name jolt-nil #f)))
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(hashtable-set! var-table k c)
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c))))
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;; non-creating lookup (resolve / find-var / ns-unmap): #f when absent, so a
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;; probe never interns an empty cell.
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(define (var-cell-lookup ns name) (hashtable-ref var-table (string-append ns "/" name) #f))
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(define (var-deref ns name) (var-cell-root (jolt-var ns name)))
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;; def-var! / declare-var! return the VAR CELL, not the value — Clojure's `def`
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;; evaluates to #'ns/name (a first-class var), so (var? (def x 1)) is true and
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;; (pr-str (def x 1)) is "#'ns/x". The prelude's def-var! forms discard the
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;; return, so this is transparent there.
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(define (def-var! ns name v) (let ((c (jolt-var ns name))) (var-cell-root-set! c v) (var-cell-defined?-set! c #t) c))
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;; var def-time metadata: the :def emit passes the def's reader meta
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;; (^:private / ^Type tag / docstring -> {:doc}) here, stored in an eq side-table
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;; keyed by the cell. jolt-meta (natives-meta.ss) merges it onto {:ns :name},
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;; which it derives from the cell — so EVERY var (plain def, native-op, declare)
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;; reports {:ns :name} like Clojure, with the user meta layered on when present.
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(define var-meta-table (make-eq-hashtable))
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(define jolt-kw-var-ns (keyword #f "ns"))
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(define jolt-kw-var-name (keyword #f "name"))
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(define (def-var-with-meta! ns name v m)
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(let ((c (def-var! ns name v))) (hashtable-set! var-meta-table c m) c))
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;; runtime-macro registry: a var whose root holds a macro
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;; expander fn is flagged here, so the ON-CHEZ analyzer's form-macro?/form-expand-1
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;; (host-contract.ss) expand it. The prelude emits each core/stdlib defmacro as a
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;; def-var! of its (cross-compiled) expander followed by (mark-macro! ns name).
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;; Keyed by cell (eq), like var-meta-table — survives a later (def name ...) that
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;; replaces the expander but keeps the same cell, matching Clojure (a defmacro IS a
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;; def whose var carries :macro).
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(define var-macro-table (make-eq-hashtable))
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(define (mark-macro! ns name)
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(let ((c (jolt-var ns name))) (hashtable-set! var-macro-table c #t) c))
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(define (macro-var? cell) (and cell (hashtable-ref var-macro-table cell #f) #t))
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;; declare / (def name) with no init: reserve the cell ONLY if absent. An
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;; existing root is left intact — Clojure's (def x) with no init does not clobber
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;; a prior binding (do (def x 7) (def x) x) => 7. Returns the cell either way.
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(define (declare-var! ns name)
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(let ((k (string-append ns "/" name)))
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(or (hashtable-ref var-table k #f)
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(let ((c (make-var-cell ns name jolt-unbound #t))) ; declared => interned/resolvable
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(hashtable-set! var-table k c)
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c))))
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;; regex: defines regex-t + the re-* fns (def-var!'d into
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;; clojure.core), so it loads after def-var! and before the printer below (which
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;; renders a regex-t as #"source").
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(load "host/chez/regex.ss")
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;; atoms: host-coupled mutable cells; def-var!'d into clojure.core
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;; (atom/deref/swap!/reset! + the compare/vals kernel). Loads after def-var! and
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;; jolt-invoke (seq.ss) / jolt= (values.ss) / jolt-vector (collections.ss).
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(load "host/chez/atoms.ss")
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;; type predicates + simple accessors: seed natives the overlay
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;; assumes (map?/vector?/nil?/number?/.../name/namespace), def-var!'d into
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;; clojure.core. Loads after the value-model record predicates they wrap.
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(load "host/chez/predicates.ss")
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;; --- jolt number printing ----------------------------------------------------
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;; jolt has a numeric tower (exact integer / ratio / double, distinguished by
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;; class). Exact integer-valued values print without a ".0" ((+ 1 2) -> "3");
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;; a double prints with one ((* 1.0 5) -> "5.0", as the JVM does).
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(define (jolt-num->string x)
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(cond
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;; the -e / element printer renders the infinities and NaN in READABLE form
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;; (##Inf reads back, like Clojure's REPL/pr); str/print uses "Infinity"/"NaN"
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;; (see jolt-str-render-one in converters.ss).
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((and (flonum? x) (fl= x +inf.0)) "##Inf")
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((and (flonum? x) (fl= x -inf.0)) "##-Inf")
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((and (flonum? x) (not (fl= x x))) "##NaN")
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((and (exact? x) (integer? x)) (number->string x))
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(else (number->string x))))
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;; Program-final-value printer. jolt's `-e` prints in str-style: strings raw (no
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;; quotes), chars as `\c`/`\newline`, collections recursively. NOTE: maps/sets
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;; render in HAMT-iteration order, which is not a stable insertion order —
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;; so unordered values are compared via `=` (true/false), not printed form.
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(define (jolt-str-join strs)
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(cond ((null? strs) "") ((null? (cdr strs)) (car strs))
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(else (string-append (car strs) " " (jolt-str-join (cdr strs))))))
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(define (jolt-char->string c)
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(string-append "\\" (case c ((#\newline) "newline") ((#\space) "space") ((#\tab) "tab")
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((#\return) "return") (else (string c)))))
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;; Program-final printer: jolt's `-e` is str-style at the top level, where a
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;; bare nil renders as the empty string (a nil ELEMENT inside a collection still
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;; prints "nil", which jolt-pr-str handles).
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(define (jolt-final-str x) (if (jolt-nil? x) "" (jolt-pr-str x)))
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;; A host shim registers a type's str-style rendering via register-pr-str-arm! (or
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;; register-pr-arm! in printing.ss for both printers at once) instead of
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;; set!-wrapping jolt-pr-str. Disjoint types, checked before the base cases.
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(define jolt-pr-str-arms '())
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(define (register-pr-str-arm! pred render)
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(set! jolt-pr-str-arms (cons (cons pred render) jolt-pr-str-arms)))
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(define (jolt-pr-str-base x)
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(cond
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((jolt-nil? x) "nil")
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((eq? x #t) "true")
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((eq? x #f) "false")
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((number? x) (jolt-num->string x))
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((string? x) x)
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((char? x) (jolt-char->string x))
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((keyword? x) (let ((ns (keyword-t-ns x)))
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(if ns (string-append ":" ns "/" (keyword-t-name x)) (string-append ":" (keyword-t-name x)))))
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((jolt-symbol? x) (let ((ns (symbol-t-ns x)))
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(if (or (jolt-nil? ns) (not ns) (eq? ns '())) (symbol-t-name x)
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(string-append ns "/" (symbol-t-name x)))))
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((regex-t? x) (string-append "#\"" (regex-t-source x) "\""))
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((pvec? x) (let ((acc '())) (let loop ((i (fx- (pvec-count x) 1)))
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(when (fx>=? i 0) (set! acc (cons (jolt-pr-str (pvec-nth-d x i jolt-nil)) acc)) (loop (fx- i 1))))
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(string-append "[" (jolt-str-join acc) "]")))
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((pset? x) (string-append "#{" (jolt-str-join (pset-fold x (lambda (e a) (cons (jolt-pr-str e) a)) '())) "}"))
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((pmap? x) (string-append "{" (jolt-str-join
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(pmap-fold x (lambda (k v a) (cons (string-append (jolt-pr-str k) " " (jolt-pr-str v)) a)) '())) "}"))
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;; lists / cons / lazy seqs all print as (...) — forces a finite seq.
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((empty-list-t? x) "()")
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((cseq? x) (string-append "(" (jolt-str-join
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(let loop ((s x) (acc '()))
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(if (jolt-nil? s) (reverse acc)
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(loop (jolt-seq (seq-more s)) (cons (jolt-pr-str (seq-first s)) acc))))) ")"))
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(else (format "~a" x))))
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(define (jolt-pr-str x)
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(let loop ((as jolt-pr-str-arms))
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(cond ((null? as) (jolt-pr-str-base x))
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(((caar as) x) ((cdar as) x))
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(else (loop (cdr as))))))
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;; converters + string ops: str/subs/vec/keyword/symbol/compare/int/
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;; double/gensym — host-coupled seed natives def-var!'d into clojure.core. Loaded
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;; LAST because `str` reuses jolt-pr-str (defined just above).
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(load "host/chez/converters.ss")
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;; transients: copy-on-write transient collections + persistent disj;
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;; extends get/count/contains? to see through a transient. After collections.ss
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;; (the persistent ops it delegates to).
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(load "host/chez/transients.ss")
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;; seq-native shims: mapcat/take-while/drop-while/partition/sort +
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;; reduced/reduced?/identical? — seed-native fns the overlay assumes are core
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;; natives. Over the seq layer + jolt-compare, so loaded after converters.ss.
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(load "host/chez/natives-seq.ss")
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;; readable printer + output seams: __pr-str1/__write/
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;; __with-out-str/__eprint/__eprintf — the host seams the overlay print family
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;; (pr-str/pr/prn/print/println/*-str) is built on. After converters.ss (uses
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;; jolt-pr-str/jolt-str-join) + seq.ss (jolt-invoke).
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(load "host/chez/printing.ss")
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;; collection constructors + rand: bind the public
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;; clojure.core names hash-map/hash-set/array-map/set/rand to the existing
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;; pmap/pset ctors. After collections.ss (the ctors) + seq.ss (seq->list).
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(load "host/chez/natives-coll.ss")
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;; bit ops + parse-long/parse-double: host-coupled scalar
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;; seed natives over the all-flonum number model.
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(load "host/chez/natives-num.ss")
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;; multimethods: defmulti/defmethod dispatch runtime. Needs jolt-invoke
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;; (seq.ss), jolt=/key-hash/jolt-hash-map (collections.ss), jolt-atom? (atoms.ss),
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;; jolt-pr-str (above), and the var-cell machinery — so loaded last.
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(load "host/chez/multimethods.ss")
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;; records + protocols: defrecord/deftype/defprotocol/
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;; extend-type/reify. A jrec record type set!-extended into the collection
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;; dispatchers + a protocol registry. After multimethods.ss (chez-current-ns) and
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;; the dispatchers/printers it wraps (collections/seq/values/converters/printing/
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;; transients).
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(load "host/chez/records.ss")
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(load "host/chez/records-interop.ss") ; exception hierarchy + instance-check taxonomy
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;; metadata: meta / with-meta over an identity-keyed
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;; side-table. After records.ss (jrec) + the collection ctors it copies.
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(load "host/chez/natives-meta.ss")
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;; host class tokens: bare class names (String/Keyword/File...) ->
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;; canonical JVM class-name strings + (class x). After natives-meta.ss (jolt-type)
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;; and the printer (jolt-str-render-one).
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(load "host/chez/host-class.ss")
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;; dynamic vars: *clojure-version* / *unchecked-math* constants the host
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;; binds natively. After collections.ss (jolt-hash-map) + def-var!.
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(load "host/chez/dynamic-var-defaults.ss")
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;; host tables + sorted collections: jolt.host/tagged-table/
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;; ref-put!/ref-get + the 25-sorted tier's runtime (sorted-map/sorted-set routed
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;; through their :ops table). Loaded LAST — wraps the jrec-extended dispatchers
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;; (records.ss), jolt-disj (transients.ss), and value-host-tags (records.ss).
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(load "host/chez/host-table.ss")
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;; lazy-seq bridge: make-lazy-seq / coll->cells over the
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;; cseq model — unblocks every overlay fn built on the lazy-seq macro (repeat/
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;; iterate/cycle/dedupe/take-nth/keep/interpose/reductions/tree-seq/lazy-cat).
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;; Loaded LAST so %ls-seq captures the fully-extended (sorted-aware) jolt-seq.
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(load "host/chez/lazy-bridge.ss")
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;; transducer surface: native volatile boxes, cat, +
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;; the transduce/sequence entry points over into-xform/reduce-seq. After
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;; natives-seq.ss (into-xform), seq.ss (reduce-seq) + atoms.ss (deref).
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(load "host/chez/natives-transduce.ss")
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;; vars as first-class objects: var?/var-get/deref/invoke/=/
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;; pr-str over the rt.ss var-cell. After natives-transduce.ss (chains deref) + the
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;; printers. emit lowers :the-var to (jolt-var ns name).
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(load "host/chez/vars.ss")
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;; misc scalar natives: UUID (random-uuid/parse-uuid/uuid?), format/
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;; printf, tagged-literal, bigint. After the printers + converters (str/pr-str of
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;; a uuid). Overlay names (uuid?/random-uuid/parse-uuid/tagged-literal?) re-asserted
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;; in post-prelude.ss.
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(load "host/chez/natives-misc.ss")
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;; format / printf: the %-directive engine. After natives-misc.ss + converters.ss
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;; (jolt-str-render-one).
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(load "host/chez/natives-format.ss")
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;; namespaces: the namespace value model — find-ns/ns-name/
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;; all-ns/the-ns/create-ns/in-ns/ns-publics/ns-map/ns-interns/ns-aliases/resolve/
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;; find-var/ns-unmap/*ns*, over the var-table + chez-current-ns. Loaded LAST: needs
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;; var-cell + var-cell-defined?, jolt-symbol/jolt-hash-map/jolt-assoc, chez-current-ns
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;; (multimethods.ss), list->cseq (seq.ss), and the fully-patched printers (vars.ss).
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(load "host/chez/ns.ss")
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;; dynamic var binding: the per-thread binding stack +
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;; push/pop/get-thread-bindings/__thread-bound?/var-set/alter-var-root/__local-var.
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;; Chains var-deref (rt.ss) and jolt-var-get (vars.ss) onto the stack, so a `binding`
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;; frame is seen by every var read. Loaded LAST: needs the fully-extended var-read
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;; paths + jolt-hash-map/pmap-fold/pmap-assoc (collections.ss).
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(load "host/chez/dyn-binding.ss")
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;; java.lang.String method interop: jolt-string-method, the
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;; portable String/CharSequence surface record-method-dispatch falls through to on
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;; a string target. After regex.ss (jolt-re-pattern/regex-t-irx) + records.ss
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;; (which references jolt-string-method).
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(load "host/chez/natives-str.ss")
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;; host class statics + constructors: host-static-ref/
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;; host-static-call/host-new + the jhost method registry. Loads LAST — it extends
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;; record-method-dispatch (records.ss) and reuses natives-str helpers (str-trim,
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;; ascii-string-down, re-split, str-split-drop-trailing) + the regex-t accessors.
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(load "host/chez/host-static.ss") ; registries + jhost + coercion helpers
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(load "host/chez/host-static-methods.ss") ; Class/member static methods + fields
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(load "host/chez/host-static-classes.ss") ; instantiable host object classes
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(load "host/chez/byte-buffer.ss") ; java.nio.ByteBuffer over a byte-array
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;; generic dot-form dispatch: field access + map/vector member access
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;; for the `.` / `.-field` desugar. Loads after host-static.ss so it wraps every
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;; record-method-dispatch arm (jhost/number/regex/jrec/string) and falls through.
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(load "host/chez/dot-forms.ss")
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;; java.io.File + host file I/O: path-backed jfile record, slurp/spit/
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;; flush, file-seq dir primitives, clojure.java.io/file. Loads LAST so its jfile
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;; arm wraps the fully-built record-method-dispatch and the str/type/instance-check
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;; extensions sit over every prior shim.
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(load "host/chez/io.ss")
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;; #inst values + java.time formatting: jinst (RFC3339 ms) +
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;; DateTimeFormatter/Instant/ZoneId/LocalDateTime/FormatStyle/Locale/Date. Loads
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;; LAST — it extends record-method-dispatch / jolt-get / jolt= / jolt-hash /
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;; jolt-pr-str / jolt-type / instance-check and uses host-static.ss's registries.
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(load "host/chez/inst-time.ss")
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;; java.time value types: LocalDate / LocalTime / LocalDateTime / Instant as
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;; tz-free jhost values (epoch-day / nano-of-day / epoch-ms). Loads after
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;; inst-time.ss — it reuses its civil<->days helpers, the jhost registries, and
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;; re-registers a few LocalDateTime/Instant statics to use the richer reps.
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(load "host/chez/java-time.ss")
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;; Chez-side data reader: read-string / __parse-next /
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;; __read-tagged. Loads after inst-time.ss — __read-tagged reuses its #uuid/#inst
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;; constructors, and the reader needs the full value/collection layer above.
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(load "host/chez/reader.ss")
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;; clojure.math: native flonum-math shims def-var!'d into the
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;; clojure.math ns. Self-contained (only def-var! + Chez math), order-independent.
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(load "host/chez/math.ss")
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;; reader/macro runtime support: #?() feature set, reader-conditional + re-matcher
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;; tagged-map ctors, macroexpand. After ns.ss; macroexpand call-time-refs the macro
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;; table (host-contract) + analyzer ctx.
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(load "host/chez/natives-reader.ss")
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;; Java-style arrays: object/typed array constructors + a jolt-array
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;; backing; extends count/nth/seq/get/ref-put! so the overlay aget/aset/alength see
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;; it. After the dispatchers it chains.
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(load "host/chez/natives-array.ss")
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;; java.io byte/char streams (FileInputStream/…/ByteArrayOutputStream/Buffered*)
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;; over Chez ports. After io.ss (extends its slurp/__close/reader-jhost?) and
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;; natives-array.ss (the byte-array <-> bytevector bridge).
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(load "host/chez/io-streams.ss")
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;; clojure.lang.PersistentQueue: a functional queue + EMPTY static.
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;; Chains seq/count/empty?/peek/pop/conj/sequential?/class/instance?/printer, so
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;; load after natives-array (the dispatchers it extends).
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(load "host/chez/natives-queue.ss")
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;; syntax-quote form builders: __sqcat/__sqvec/__sqmap/__sqset/
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;; __sq1, def-var!'d into clojure.core. A cross-compiled macro expander (analyzer
|
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;; on Chez) calls these to build its expansion as reader forms. Needs the
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;; collection/seq layer + def-var!; order-independent past those.
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(load "host/chez/syntax-quote.ss")
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;; concurrency: real OS-thread futures + blocking promises, shared-heap
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;; (JVM) semantics. Loaded LAST — chains the fully-built jolt-deref and conveys the
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;; thread-local binding stack (dyn-binding.ss) into workers. pmap/pcalls/pvalues
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;; (overlay, over `future`) light up once future-call exists here.
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(load "host/chez/concurrency.ss")
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;; clojure.core.async: real-thread blocking channels + go/go-loop/
|
|
;; thread macros, def-var!'d into clojure.core.async. After concurrency.ss (reuses
|
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;; ms->duration) and the collection/seq layer.
|
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(load "host/chez/async.ss")
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;; BigDecimal: the jbigdec value type + bigdec/decimal?/class/equality/
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;; printing. Loads LAST so its set!-wraps of jolt-class/jolt=2/the printers sit
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;; outermost over every earlier extension.
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(load "host/chez/bigdec.ss")
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