code wiki / _hdl_build / nx_simlab_wasm_vm_gate.nx
nx_simlab_wasm_vm_gate.nx
buildroot/runtime/_hdl_build/nx_simlab_wasm_vm_gate.nx
about
nx_simlab_wasm_vm_gate.nx -- RUN (not just compile) the browser sim's wasm in our OWN sovereign WASM VM
(nx_wasm_vm), no browser / node / wasmtime. Loads web_assets/nx_simlab.wasm, instantiates, calls the exported
init()/tick(0)/render() (the VM supports i64 div, so the integer leapfrog orbit physics executes), then reads
the framebuffer + step counter back out of the VM's linear memory and checks them. This closes the
compile-vs-execute gap: the shipped wasm bytes genuinely COMPUTE the orbit, sovereignly verified. GREEN iff 6/6.
license_tier: ORIGINAL
dependencies 2 imports · 0 importers
imports: nx_syscalls.nxnx_wasm_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
| none |
functions
| 10 | func g_w(s: *u8) -> i64 { var n: i64=0; while s[n]!=(0 as u8){n=n+1} sys_write(1,s,n); return 0 } |
| 11 | func g_n(v: i64) -> i64 { var m: i64=v; if m<0{g_w("-");m=0-m} let t:*u8=sys_mmap(24); var k:i64=0; if m==0{t[0]=48 as u8;k=1}; while m>0{t[k]=(48+(m%10)) as u8;m=m/10;k=k+1}; var i:i64=0; let o:*u8=sys_mmap(24); while i<k{o[i]=t[k-1-i];i=i+1}; sys_write(1,o,k); return 0 } |
| 12 | func g_row(id: *u8, ok: i64, pass: *i64) -> i64 { g_w(" "); g_w(id); g_w(": "); if ok==1 { g_w("OK\n"); pass[0]=pass[0]+1 } else { g_w("FAIL\n") } return 0 } |
| 13 | func rd64(m: *u8, o: i64) -> i64 { var v: i64=0; var i: i64=0; while i<8 { v = v | ((m[o+i] as i64) << (i*8)); i=i+1 } return v } called by 1: main |
| 15 | func main() -> i64 |