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nx_js_octane_richards.nx
buildroot/runtime/_hdl_build/nx_js_octane_richards.nx
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nx_js_octane_richards.nx -- MILESTONE: run the REAL Octane Richards benchmark (unmodified Google source,
harness stubbed) on our sovereign VM/JIT. Richards self-validates against V8's exact internal counts
(queueCount==2322, holdCount==928) and THROWS on mismatch -> a clean "RICHARDS_OK" return means we ran a
real Octane test AND matched V8's semantics. This proves the prototype-OOP + growable-array work is enough
to enter the feature-vs-feature competition. V8 (node v22, parse+20 runs, best-of-5) = 10983us on this box.
expect_exit: 0 license_tier: ORIGINAL
dependencies 1 imports · 0 importers
imports: nx_js_vm.nx
imported by: nobody (leaf or entry point)
call flow from main pre-order; caps 40 nodes / depth 6 declared; ↻ = already shown
structs
| none |
consts
| 8 | const K_MAGIC_262144: i64 = 262144 |
| 9 | const K_MAGIC_1204: i64 = 1204 |
functions
| 10 | func ow(s: *u8) -> i64 { var n: i64 = 0; while s[n] != (0 as u8) { n = n + 1 } sys_write(1, s, n); return 0 } called by 1: main |
| 11 | func on(v: i64) -> i64 { if v==0 { sys_write(1,"0" as *u8,1); return 0 } var m: i64=v; if m<0 { sys_write(1,"-" as *u8,1); m=0-m } let t: *u8=sys_mmap(24); var k: i64=0; while m>0 { t[k]=(48+(m%10)) as u8; m=m/10; k=k+1 } let o: *u8=sys_mmap(24); var q: i64=k-1; var x: i64=0; while q>=0 { o[x]=t[q]; x=x+1; q=q-1 } sys_write(1,o,x); return 0 } called by 1: main |
| 13 | func main(argc: i64, argv: *i64) -> i64 |