# Architecture How interpres is put together. Every file, package and arrow below exists in the source tree; nothing is aspirational. ## Overview interpres is one public library package, one command, and one example. The library implements the whole of TOML 1.0 and 1.1, decoding and encoding, in the standard library alone; the command wraps the parser for the toml-test compliance harness, against which it stands at 214 valid and 467 invalid cases with zero failures; the example demonstrates the API. ```mermaid flowchart TD CLI[cmd/interpres-decode
toml-test adapter] --> API EX[examples/basic
usage demo] --> API subgraph Lib [package interpres] API[interpres.go
public API and types] API --> P[parser.go
recursive-descent parser] API --> DEC[decode.go
tree onto Go values] API --> ENC[encode.go
Go values to TOML] P --> N[number.go
numeric tokens] P --> DT[datetime.go
date-time atoms and types] end ``` The public API in `interpres.go` is a thin facade: every entry point funnels into `ParseContext` for parsing and into the unexported `decoder` and `encoder` for the reflection work. `parser.go` owns the grammar; it leans on `number.go` and `datetime.go` for the two token families that need their own strict validation. ## Packages | Path | Responsibility | |---|---| | `.` (package `interpres`) | The whole library. `interpres.go` declares the exported surface (`Parse`, `Unmarshal`, `Marshal`, the `*Context` variants, `Decoder`, `Encoder`, `Marshaler`, `Unmarshaler`, `SyntaxError`, the local date-time types); everything below it is unexported. | | `cmd/interpres-decode` | The toml-test adapter. Reads TOML on stdin, writes tagged JSON on stdout. Owns no parsing logic. | | `examples/basic` | A runnable tour of the API. Documentation in executable form, not part of the library. | Inside the library package, one file owns one concern: | File | Responsibility | |---|---| | `parser.go` | The recursive-descent parser. Produces the `map[string]any` tree and enforces the structural rules of TOML 1.0 and 1.1 (table redefinitions, dotted keys, arrays of tables, multi-line inline tables). Reports a 1-based line on failure. | | `number.go` | Strict numeric tokens: integers in the four radixes with `_` separators, and floats including `inf` and `nan`. Rejects leading zeros, misplaced underscores and malformed fractions. | | `datetime.go` | The three local date-time wrapper types and `parseDateTime`, which classifies a token into the four date-time kinds under the strict TOML grammar. | | `decode.go` | Maps the parsed tree onto Go values by reflection: struct fields, maps, slices, scalar conversion with overflow checks, `Unmarshaler` dispatch. | | `encode.go` | The reverse walk: builds an intermediate `tomlDoc` per table (which is what preserves declaration order and enables the group-by-kind partition) and then emits it as TOML. | The boundary that matters: `parser.go` produces only untyped trees (`map[string]any`, `[]any`, `[]map[string]any`, scalars); `decode.go` and `encode.go` are the only files that touch `reflect`; the command never touches either, it consumes `Parse` alone. ## Data flow Decoding is parse, then one reflection walk. `SyntaxError` values are produced inside `parser.go` and returned as-is; conversion errors are produced inside `decode.go` and wrapped with the key path as they unwind. ```mermaid sequenceDiagram participant Caller participant API as interpres.go participant P as parser.go participant D as decode.go Caller->>API: Unmarshal(data, v) API->>P: ParseContext(ctx, data) P->>P: number and datetime atoms P-->>API: map tree or *SyntaxError API->>D: decode(tree, reflect value) D-->>API: nil or wrapped field error API-->>Caller: error ``` Encoding walks the other way. `encode.go` first builds a `tomlDoc` from the value, then emits it; the two phases are why `GroupByKind` can reorder entries without a second reflection pass, and why cancellation is checked during both. ```mermaid sequenceDiagram participant Caller participant API as interpres.go participant B as encode.go build participant E as encode.go emit Caller->>API: Marshal(v) API->>B: build tomlDoc from struct or map B-->>API: tomlDoc or error API->>E: emitDoc(doc) E-->>API: bytes or error API-->>Caller: bytes, error ``` ## State and lifetime - The exported `Decoder` and `Encoder` hold configuration only. Every `Decode`, `DecodeContext`, `Marshal` and `MarshalContext` call allocates its own unexported worker, so a configured type is safe for concurrent use; the setter methods are not, and must finish before the value is shared. - The parser is allocated per `ParseContext` call; the parser itself caches nothing between documents. - The one piece of shared state is the struct-schema cache in `decode.go`: a `sync.Map` keyed by `reflect.Type`, holding the flattened field layout the decoder and the encoder both consult. A schema is immutable once published, so concurrent callers only race to build an identical value, the same trade-off `encoding/json`'s field cache makes. The cache grows with the number of distinct struct types, never with document size. - The date-time wrappers are values, not pointers, and are immutable in use. - Nothing in the library starts goroutines; apart from the schema cache above, which never mutates a published entry, there is no shared mutable state. ## Dependencies None. `go.mod` declares the module and the Go version and carries no requires; the library imports the standard library only, which is the point of the project. The `toml-test` binary is a development and CI tool, never a module dependency.