ludic/selfhost/backend/emit_fence.ludic
Orkuncakilkaya 5aa7c03022 fence: declared bytes are never judged nor listed; the scan's sites sorted by bytes, as many as asked, and all to a file
What @alloc_ok covers (a function and its callees, a statement, a statement in a generic's body on
every instance) was counted apart in the frame's verdict, but its sites still carried the bytes the
report and the census rank by, so a declared site was listed as if the frame failed for it. Declared
bytes now have their own per-site counter and never enter live, a site's row or the verdict:
examples/lang/alloc_fence_declared.ludic, all three forms after warm-up, passes the failing fence
('bad 0 kept 0', 1488 bytes declared), with and without the arena, and an undeclared site in the same
frame is still the one listed.

The reachability scan's sites are now the largest first (R3D_ALLOC_SCAN_TOP, 24 by default), and
R3D_ALLOC_SCAN_FILE=<file> appends every site that holds unreachable bytes: the whole table to triage.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-09-28 18:03:00 +03:00

289 lines
13 KiB
Text

# emit_fence.ludic — the allocation fence (docs/plan 25.1). Every allocation the emitter writes
# goes through @lp_malloc / @lp_calloc / @lp_realloc / @lp_free, and before a Ludic-level one it
# stores the site's number in @lp_site. The runtime (emit_fence_ir.ludic) counts nothing until
# Mem.play(); then it tracks every block by site in a side table and, once play has settled,
# fails a frame that ends holding more than it began with (R3D_ALLOC_FENCE=off|count|warn|fail).
#
# A site is (function, file, line, kind). Site 0 is "unknown": an allocation inside a runtime
# helper the emitter reached without a site of its own inherits the last one set.
var g_site_fn: []pointer = new []pointer # per site: the function name's constant
var g_site_file: []pointer = new []pointer # the file name's constant
var g_site_line: []int = new []int
var g_site_kind: []pointer = new []pointer # the kind's constant
var g_site_owner: []int = new []int # 25.5c: the state that holds it (index + 1 into g_owner_names, 0: none)
var g_owner_names: []pointer = new []pointer
var g_cur_fn_name: pointer = "?" # the function being emitted
var g_site_fnc: pointer = null # its name's constant, made at its first site
var g_site_filen: pointer = null # the last file a site named, and its constant
var g_site_filec: pointer = null
var g_site_kinds: []pointer = new []pointer # kinds seen, and their constants
var g_site_kindc: []pointer = new []pointer
var g_site_next: pointer = null # a kind the next allocation takes (`new Foo`)
var g_atexit_declared: bool = false # @atexit is declared once: by the fence or by --coverage
var g_mzs_declared: bool = false # @malloc_zone_statistics: by the fence or by Os.heap_bytes
# the build's defaults (--fence=, --fence-warm=, --fence-census=, else a `fence` line in the nearest
# package.ludic); the environment overrides each at run time (R3D_ALLOC_FENCE, _WARM, _CENSUS)
var g_fence_mode: int = 0 # 0: headless fails, windowed fails only under R3D_DEV
var g_fence_warm: int = 600
var g_fence_census: pointer = null
var g_fence_flagged: bool = false # a flag said so: the manifest does not override it
var g_scan_roots: []pointer = new []pointer # 25.5b: the program's pointer globals, the states among them
var g_cap_keys: []pointer = new []pointer # 25.5a: `Type.field` declared @max(n) ...
var g_cap_vals: []int = new []int # ... and its n
var g_push_cap: int = 0 # the list being pushed to is capped (emit_push -> emit_push_into)
var g_push_capname: pointer = null
var g_arena: bool = false # 25.3: --arena / `arena on` - LOCAL sites allocate from the frame's scratch
var g_mmap_declared: bool = false # @mmap: by the fence's arena or by the asset pack
var g_es_node: Node = null # the expression being emitted, when it is a LOCAL site
function fence_reset() -> void {
g_site_fn = new []pointer; g_site_file = new []pointer; g_site_line = new []int; g_site_kind = new []pointer
g_site_kinds = new []pointer; g_site_kindc = new []pointer
g_site_owner = new []int; g_owner_names = new []pointer
g_atexit_declared = false
g_mzs_declared = false
g_mmap_declared = false
g_es_node = null
g_scan_roots = new []pointer
g_cur_fn_name = "?"; g_site_fnc = null; g_site_filen = null; g_site_filec = null; g_site_next = null
push(g_site_fn, null); push(g_site_file, null); push(g_site_line, 0); push(g_site_kind, null) # site 0, named at the end
push(g_site_owner, 0)
}
# the function the next sites belong to (emit_fn, emit_system_fn); a LOCAL mark is honoured only
# while emitting a function the escape analysis walked (a default's node is also emitted elsewhere)
var g_es_walked: bool = false
function fence_enter(name: pointer) -> void {
g_cur_fn_name = name
g_site_fnc = null
g_es_walked = g_es_done and (es_fn(name) >= 0 or str_starts(name, "@On("))
}
function fence_owner_index(own: pointer) -> int {
if own == null { return 0 }
var i = 0
while i < len(g_owner_names) { if (g_owner_names[i] == own) { return i + 1 }; i += 1 }
push(g_owner_names, own)
return len(g_owner_names)
}
function fence_kind_const(kind: pointer) -> pointer {
var i = 0
while i < len(g_site_kinds) { if (g_site_kinds[i] == kind) { return g_site_kindc[i] }; i += 1 }
push(g_site_kinds, kind)
push(g_site_kindc, emit_str_const(kind))
return g_site_kindc[len(g_site_kindc) - 1]
}
# a new site for the allocation about to be emitted, stored into @lp_site
function emit_site(kind: pointer) -> void {
var k = kind
if g_site_next != null { k = g_site_next; g_site_next = null }
if g_site_fnc == null { g_site_fnc = emit_str_const(g_cur_fn_name) }
var file = g_err_file
if file == null { file = "?" }
if (g_site_filen == null) or not (g_site_filen == file) {
g_site_filen = file
g_site_filec = emit_str_const(file)
}
let id = len(g_site_line)
push(g_site_fn, g_site_fnc)
push(g_site_file, g_site_filec)
push(g_site_line, g_err_line)
push(g_site_kind, fence_kind_const(k))
push(g_site_owner, fence_owner_index(es_owner_at(file, g_err_line)))
emit(` store i32 {itoa(id)}, ptr @lp_site\n`)
}
# emit_bind's hook: a call that allocates gets a site first, its kind read off the callee; when the
# expression being emitted is a LOCAL site (25.3) it also raises @lp_want for that one call
function fence_bind(rest: pointer) -> bool {
if not str_starts(rest, "call ptr @lp_") { return false }
var alloc = true
if str_starts(rest, "call ptr @lp_malloc(") { emit_site("alloc") }
else if str_starts(rest, "call ptr @lp_calloc(") { emit_site("slice data") }
else if str_starts(rest, "call ptr @lp_realloc(") { emit_site("grow") }
else if str_starts(rest, "call ptr @lp_str_concat(") { emit_site("concat") }
else if str_starts(rest, "call ptr @lp_int_str(") or str_starts(rest, "call ptr @lp_long_str(") { emit_site("string(n)") }
else if str_starts(rest, "call ptr @lp_fp_str(") { emit_site("string(x)") }
else if str_starts(rest, "call ptr @lp_str_slice(") { emit_site("substring") }
else if str_starts(rest, "call ptr @lp_text_") { emit_site("Text"); alloc = false }
else { alloc = false }
if alloc and g_arena and g_es_walked and g_es_node != null {
emit(" store i8 1, ptr @lp_want\n")
return true
}
return false
}
function fence_int(s: pointer) -> int {
var n = 0
var neg = false
var i = 0
if (len(s) > 0) and (s[0] == '-') { neg = true; i = 1 }
while (i < len(s)) and char_is_digit(s[i]) { n = n * 10 + (s[i] - '0'); i += 1 }
if neg { return 0 - n }
return n
}
function fence_mode_of(s: pointer) -> int {
if (s == "off") { return 1 }
if (s == "count") { return 2 }
if (s == "warn") { return 3 }
if (s == "fail") { return 4 }
perr(`the fence is off, count, warn or fail, not {s}`)
return 0
}
# ludicc's --fence flags; true when `a` was one of them
function fence_flag(a: pointer) -> bool {
if str_starts(a, "--fence=") { g_fence_mode = fence_mode_of(a[8..len(a)]); g_fence_flagged = true; return true }
if str_starts(a, "--fence-warm=") { g_fence_warm = fence_int(a[13..len(a)]); g_fence_flagged = true; return true }
if str_starts(a, "--fence-census=") { g_fence_census = a[15..len(a)]; g_fence_flagged = true; return true }
if (a == "--arena") { g_arena = true; return true }
if (a == "--arena-strict") { g_arena = true; g_arena_strict = true; return true }
return false
}
# `fence fail`, `fence warm 900`, `fence census "build/fence.txt"` in the package.ludic nearest the
# program, looked for up to four directories above it
function fence_manifest(entry: pointer) -> void {
if g_fence_flagged { return }
var dir = dir_of(entry)
var up = 0
while up < 5 {
var root = dir
if len(root) > 0 { root = root + "/" }
let txt = read_file(root + "package.ludic")
if txt != null { fence_manifest_read(txt); return }
if len(dir) == 0 { dir = ".." } else { dir = dir + "/.." }
up += 1
}
}
function fence_manifest_read(txt: pointer) -> void {
var i = 0
let tn = len(txt)
while i < tn {
var e = i
while (e < tn) and (txt[e] != '\n') { e += 1 }
var le = e
if (le > i) and (txt[le - 1] == 13) { le -= 1 }
let ws = native_words(txt[i..le])
if (len(ws) == 2) and (ws[0] == "fence") { g_fence_mode = fence_mode_of(ws[1]) }
if (len(ws) == 3) and (ws[0] == "fence") and (ws[1] == "warm") { g_fence_warm = fence_int(ws[2]) }
if (len(ws) == 3) and (ws[0] == "fence") and (ws[1] == "census") { g_fence_census = ws[2] }
if (len(ws) == 2) and (ws[0] == "arena") and (ws[1] == "on") { g_arena = true }
if (len(ws) == 2) and (ws[0] == "arena") and (ws[1] == "strict") { g_arena = true; g_arena_strict = true }
i = e + 1
}
}
# Mem.play() / Mem.rewarm() / Mem.settled() / Mem.frame() / Mem.kept() / Mem.bad_frames()
function is_mem_fence_ns(meth: pointer) -> bool {
return (meth == "play") or (meth == "rewarm") or (meth == "settled") or (meth == "over") or (meth == "scan") or (meth == "frame") or (meth == "kept") or (meth == "bad_frames")
}
function emit_mem_fence_ns(meth: pointer, e: Node) -> Val {
if (meth == "kept") { return val(emit_bind("call i64 @lp_mem_kept()"), "long") }
if (meth == "bad_frames") { return val(emit_bind("call i64 @lp_mem_bad_frames()"), "long") }
if (meth == "scan") { return val(emit_bind("call i64 @lp_mem_scan()"), "long") }
if (meth == "rewarm") { emit(" call void @lp_mem_play()\n"); return val("0", "void") }
if (meth == "over") { # 25.5a: Mem.over("what") - a package's table is full
let nm = emit_expr(e.kids[0])
emit(` call void @lp_cap_over(ptr {nm.code}, i32 0, i32 0)\n`)
return val("0", "void")
}
emit(` call void @lp_mem_{meth}()\n`)
return val("0", "void")
}
function fence_table(name: pointer, ty: pointer, vals: []pointer) -> void {
emith(`{name} = global [{itoa(len(vals))} x {ty}] [`)
var i = 0
while i < len(vals) {
if i > 0 { emith(", ") }
emith(ty); emith(" "); emith(vals[i])
i += 1
}
emith("]\n")
}
# the runtime, and the tables this program's sites size
function emit_fence_runtime() -> void {
emit_fence_intern()
if g_target_win { emit_fence_win(); return }
if not g_fprintf_declared { emith("declare i32 @fprintf(ptr, ptr, ...)\n"); g_fprintf_declared = true }
if not g_atexit_declared { emith("declare i32 @atexit(ptr)\n"); g_atexit_declared = true }
if not g_mzs_declared { emith("declare extern_weak void @malloc_zone_statistics(ptr, ptr)\n"); g_mzs_declared = true }
if not g_mmap_declared { emith("declare ptr @mmap(ptr, i64, i32, i32, i32, i64)\n"); g_mmap_declared = true }
var ard = "0"
if g_arena { ard = "1" }
emith(`@lp_ardef = global i8 {ard}\n`)
emit_fence_globals()
emit_fence_entry()
emit_fence_table()
emit_fence_control()
emit_fence_report()
emit_fence_frame()
let unknown = emit_str_const("?")
g_site_fn[0] = unknown; g_site_file[0] = unknown; g_site_kind[0] = unknown
let n = len(g_site_line)
let sn = itoa(n)
var dflt = itoa(g_fence_mode)
if (g_fence_mode == 0) and not g_windowed { dflt = "4" }
emith(`@lp_fdef = global i8 {dflt}\n`)
emith(`@lp_warm = global i64 {itoa(g_fence_warm)}\n`)
if g_fence_census == null { emith("@lp_census_def = global ptr null\n") }
else { emith(`@lp_census_def = global ptr {emit_str_const(g_fence_census)}\n`) }
emith(`@lp_site_n = global i32 {sn}\n`)
fence_table("@lp_site_fn", "ptr", g_site_fn)
fence_table("@lp_site_file", "ptr", g_site_file)
fence_table("@lp_site_kind", "ptr", g_site_kind)
let lines = new []pointer
var i = 0
while i < n { push(lines, itoa(g_site_line[i])); i += 1 }
fence_table("@lp_site_line", "i32", lines)
emith(`@lp_site_live = global [{sn} x i64] zeroinitializer\n`)
emith(`@lp_site_mark = global [{sn} x i64] zeroinitializer\n`)
emith(`@lp_site_stamp = global [{sn} x i64] zeroinitializer\n`)
emith(`@lp_site_base = global [{sn} x i64] zeroinitializer\n`)
emith(`@lp_site_scan = global [{sn} x i64] zeroinitializer\n`)
emith(`@lp_site_dlive = global [{sn} x i64] zeroinitializer\n`)
let owns = new []pointer
var w = 0
while w < n { push(owns, itoa(g_site_owner[w])); w += 1 }
fence_table("@lp_site_owner", "i32", owns)
let onames = new []pointer
var q = 0
while q < len(g_owner_names) { push(onames, emit_str_const(g_owner_names[q])); q += 1 }
if len(onames) == 0 { push(onames, "null") }
fence_table("@lp_owner_name", "ptr", onames)
emith(`@lp_nowners = global i32 {itoa(len(g_owner_names))}\n`)
let roots = new []pointer
var r = 0
while r < len(g_scan_roots) { push(roots, `@g_{g_scan_roots[r]}`); r += 1 }
if len(roots) == 0 { push(roots, "null") }
fence_table("@lp_roots", "ptr", roots)
emith(`@lp_nroots = global i32 {itoa(len(g_scan_roots))}\n`)
emith(`@lp_site_ra = global [{itoa(n * 6)} x ptr] zeroinitializer\n`)
}
# @max(n) on the list a push grows: its cap and its name, or 0
function fence_cap_of(target: Node) -> int {
g_push_capname = null
if target == null or target.kind != E_MEMBER or target.a == null or len(g_cap_keys) == 0 { return 0 }
let t = static_type(target.a)
if t == null { return 0 }
let key = `{t}.{target.s}`
var i = 0
while i < len(g_cap_keys) {
if (g_cap_keys[i] == key) {
g_push_capname = key
return g_cap_vals[i]
}
i += 1
}
return 0
}