Files
Odin/core/rexcode/ir/wasm/module.odin
2026-07-13 15:56:25 +01:00

228 lines
7.1 KiB
Odin

// rexcode · Brendan Punsky (dotbmp@github), original author
// Ginger Bill (gingerBill@github)
package rexcode_wasm
import "core:rexcode/ir"
// =============================================================================
// SECTION: Module (the WASM module -- ir core + WASM's own container sections)
// =============================================================================
//
// `wasm.Module` is the `ir.Module` STACK core (functions -> blocks -> operations,
// dataflow = .STACK) plus the WASM binary-container sections the shared core has
// no slot for. A concrete IR carries those "alongside the core" per
// docs/ir_design.md §3; here that is literal -- `using base: ir.Module` embeds
// the core so `m.functions`, `m.globals`, ... read straight through -- exactly
// the shape `spirv.Module` uses for its preamble / debug / annotation sections.
//
// Mapping the WASM container onto the ir core:
//
// * A WASM function body is one `expr` (a flat instruction stream). It lowers
// to a single `ir.Block` of `ir.Operation`s under one `ir.Function`; the
// structured control ops (block/loop/if/else/end) remain *operations* within
// that block rather than nested `ir.Block`s -- WASM's structure is carried
// by those ops and their label depths, matching how the decoder produced a
// flat stream. (Nesting into regions is a valid later refinement.)
//
// * WASM function signatures are `[]Value_Type -> []Value_Type`, not the ir
// type table's `Type_Kind`. Rather than lower every primitive into
// `ir.Module.types`, WASM keeps its value-typed signatures in the parallel
// `func_types` side table (analogous to how `spirv.Module` keeps
// `opaque_info` for what the shared core does not slot). `ir.Function.
// signature` indexes `func_types` by convention.
Section_Id :: enum u8 { // Binary section ids (WebAssembly core spec §5.5.2).
CUSTOM = 0,
TYPE = 1,
IMPORT = 2,
FUNCTION = 3,
TABLE = 4,
MEMORY = 5,
GLOBAL = 6,
EXPORT = 7,
START = 8,
ELEMENT = 9,
CODE = 10,
DATA = 11,
DATA_COUNT = 12,
}
External_Kind :: enum u8 {
FUNC = 0,
TABLE = 1,
MEMORY = 2,
GLOBAL = 3,
}
// A parsed binary section header: where its *contents* live in the file and how
// many entries it declares. Kept so sections the ir core does not model
// structurally (table/memory/global/element/data) stay re-readable from `data`.
Section :: struct {
id: Section_Id,
offset: u32, // file offset of the section contents
size: u32, // contents length in bytes
count: u32, // declared element count (0 for CUSTOM / START)
name: string, // custom-section name (borrowed from `data`)
}
// A WASM function signature: value-typed params and results.
Func_Type :: struct {
params: []Value_Type,
results: []Value_Type,
}
Import :: struct {
kind: External_Kind,
module_name: string,
field_name: string,
index: u32, // typeidx for FUNC, 0 for other kinds
}
Export :: struct {
kind: External_Kind,
name: string,
index: u32,
}
// The WASM module -- the unit the verbs operate on. Embeds the ir core; adds the
// container metadata parsed from / emitted to the binary sections.
//
// After `decode`, `base.functions` spans the whole WASM function index space:
// imported functions occupy the low indices (their `blocks` are empty -- an
// import has no body) followed by the module-defined functions (each a single
// `ir.Block` whose ops are the decoded body). `ir.Function.signature` is the
// function's typeidx (an index into `func_types`, by convention), and its
// `name` is resolved from the export and "name" custom sections.
Module :: struct {
using base: ir.Module, // functions, globals, symbols, dataflow (= .STACK), target
version: u32, // WASM_VERSION if 0 on encode
// --- container sections (the WASM-specific data the ir core has no slot for) ---
func_types: []Func_Type, // the type section; ir.Function.signature indexes here
imports: []Import,
exports: []Export,
start: i64, // -1 if absent, else the start funcidx
customs: []Custom_Section,
// --- side tables parallel to the ir core arrays ---
// A WASM function's declared locals (the code section's local groups), kept
// parallel to base.functions since ir.Function has no locals slot.
function_locals: [][]Value_Type,
// --- preserved binary framing (so nothing decoded is lost / is re-readable) ---
sections: []Section, // every section header, in file order
relocations: []Reloc_Group, // object-file relocations, grouped by target section
data: []u8, // borrowed whole-file bytes (table/memory/... re-readable)
}
// A freshly-made WASM module declares STACK dataflow so the shared verbs and the
// printer pick the stack-machine path (no SSA results, no value refs).
@(require_results)
make_module :: proc "contextless" () -> Module {
m: Module
m.base.dataflow = .STACK
m.version = WASM_VERSION
m.start = -1
return m
}
// -----------------------------------------------------------------------------
// Custom Section Layout
// -----------------------------------------------------------------------------
Custom_Section :: struct {
section: Section,
payload: []byte, // borrowed, m.data[section.offset:][:section.size]
variant: union {
Custom_Section_Name,
Custom_Section_Target_Features,
},
}
Custom_Section_Name_Function :: struct {
id: u32,
name: string, // borrowed
}
Custom_Section_Name_Local :: struct {
idx: u32,
name: string, // borrowed
}
Custom_Section_Name_Function_Locals :: struct {
func_idx: u32,
locals: []Custom_Section_Name_Local,
}
Custom_Section_Name :: struct {
module_name: string,
functions: []Custom_Section_Name_Function,
locals: []Custom_Section_Name_Function_Locals,
}
Custom_Section_Target_Feature_Prefix :: enum u8 {
Used = '+',
Disallowed = '-',
Required = '=',
}
Custom_Section_Target_Feature :: struct {
prefix: Custom_Section_Target_Feature_Prefix,
feature: string, // borrowed
}
Custom_Section_Target_Features :: struct {
features: []Custom_Section_Target_Feature,
}
@(require_results)
section_name :: #force_inline proc "contextless" (id: Section_Id) -> string {
switch id {
case .CUSTOM: return "custom"
case .TYPE: return "type"
case .IMPORT: return "import"
case .FUNCTION: return "function"
case .TABLE: return "table"
case .MEMORY: return "memory"
case .GLOBAL: return "global"
case .EXPORT: return "export"
case .START: return "start"
case .ELEMENT: return "element"
case .CODE: return "code"
case .DATA: return "data"
case .DATA_COUNT: return "data.count"
}
return "unknown"
}
@(require_results)
count_import_kind :: proc "contextless" (m: Module, k: External_Kind) -> u32 {
n: u32 = 0
for imp in m.imports {
if imp.kind == k {
n += 1
}
}
return n
}
@(require_results)
module_name :: proc "contextless" (m: Module) -> (string, bool) {
for c in m.customs {
#partial switch v in c.variant {
case Custom_Section_Name:
if v.module_name != "" {
return v.module_name, true
}
}
}
return "", false
}