code wiki / _hdl_build / nx_imatrix_test.nx

nx_imatrix_test.nx

buildroot/runtime/_hdl_build/nx_imatrix_test.nx

3068 B38 linesdepth 3pulls 3 transitivereach 0 importersview sourcekind gate/proof
docsdependenciesstructsconstsfunctions

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nx_imatrix_test.nx -- prove importance-weighted water-filling beats uniform quantization at the SAME total bit budget: bits flow to the high-importance weights, cutting the quality-relevant (importance-weighted) error -- the rate-distortion-optimal allocation, the imatrix win. Exit 0 if water-fill spends the same bits but achieves materially lower weighted error, and protects the most-important group. license_tier: ORIGINAL

dependencies 2 imports · 0 importers

nx_imatrix.nx nx_syscalls.nx nx_imatrix_test.nx

imports: nx_imatrix.nxnx_syscalls.nx

imported by: nobody (leaf or entry point)

call flow from main pre-order; caps 40 nodes / depth 6 declared; ↻ = already shown

main it_puts sys_write sys_mmap imat_uniform imat_waterfill imat_err2 imat_weighted_error imat_err2 ↻ it_num sys_mmap ↻ sys_write ↻ imat_total_bits sys_exit

structs

none

consts

none

functions

10func it_puts(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 calls 1: sys_write
11func it_num(v: i64) -> i64 { let bb: *u8 = sys_mmap(28); var m: i64=v; if m<0 {m=0-m}; let t: *u8 = sys_mmap(28); var k: i64=0; if m==0 {t[0]=48;k=1}; while m>0 {t[k]=48+(m%10); m=m/10; k=k+1}; var i: i64=0; while i<k {bb[i]=t[k-1-i]; i=i+1}; sys_write(1, bb, k); return 0 }
called by 1: main calls 2: sys_mmapsys_write
13func main() -> i64