[style](trx-ftx): use iterators in LDPC single-index loops
clippy needless_range_loop (rust 1.97) flagged the loops in ldpc_check and ldpc_decode that use a range only to index one array. Replace them with iterator/enumerate forms. The belief-propagation loops that index several arrays by the same variable are left as-is (not flagged). Behaviour is unchanged; the transformations are index-for-index equivalent. Verified the lib compiles and is clippy-clean; the crate's LDPC tests run in the CI test job (they need a dev-dependency not available in the local offline sandbox). Assisted-By: Claude Code (claude-opus-4) Claude-Session: https://claude.ai/code/session_01NFpGtGTWUEYXLwZeZs2RAV Signed-off-by: Stan Grams <sjg@haxx.space>
This commit was merged in pull request #2.
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@@ -42,8 +42,8 @@ pub(crate) fn ldpc_check(codeword: &[u8; FTX_LDPC_N]) -> i32 {
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for m in 0..FTX_LDPC_M {
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let mut x: u8 = 0;
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let num_rows = FTX_LDPC_NUM_ROWS[m] as usize;
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for i in 0..num_rows {
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x ^= codeword[FTX_LDPC_NM[m][i] as usize - 1];
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for &nm in FTX_LDPC_NM[m].iter().take(num_rows) {
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x ^= codeword[nm as usize - 1];
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}
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if x != 0 {
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errors += 1;
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@@ -81,11 +81,11 @@ pub fn ldpc_decode(
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for j in 0..FTX_LDPC_M {
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let num_rows = FTX_LDPC_NUM_ROWS[j] as usize;
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let m_row = j * FTX_LDPC_N;
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for ii1 in 0..num_rows {
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let i1 = FTX_LDPC_NM[j][ii1] as usize - 1;
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for &nm1 in FTX_LDPC_NM[j].iter().take(num_rows) {
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let i1 = nm1 as usize - 1;
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let mut a = 1.0f32;
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for ii2 in 0..num_rows {
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let i2 = FTX_LDPC_NM[j][ii2] as usize - 1;
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for &nm2 in FTX_LDPC_NM[j].iter().take(num_rows) {
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let i2 = nm2 as usize - 1;
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if i2 != i1 {
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a *= fast_tanh(-m_matrix[m_row + i2] / 2.0f32);
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}
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@@ -97,8 +97,8 @@ pub fn ldpc_decode(
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// Hard decisions
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for i in 0..FTX_LDPC_N {
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let mut l = codeword[i];
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for j in 0..3 {
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l += e_matrix[(FTX_LDPC_MN[i][j] as usize - 1) * FTX_LDPC_N + i];
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for &mn in FTX_LDPC_MN[i].iter().take(3) {
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l += e_matrix[(mn as usize - 1) * FTX_LDPC_N + i];
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}
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plain[i] = if l > 0.0 { 1 } else { 0 };
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}
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@@ -113,12 +113,12 @@ pub fn ldpc_decode(
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// Update m[][] from e[][]
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for i in 0..FTX_LDPC_N {
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for ji1 in 0..3 {
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let j1 = FTX_LDPC_MN[i][ji1] as usize - 1;
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for (ji1, &mn1) in FTX_LDPC_MN[i].iter().enumerate().take(3) {
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let j1 = mn1 as usize - 1;
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let mut l = codeword[i];
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for ji2 in 0..3 {
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for (ji2, &mn2) in FTX_LDPC_MN[i].iter().enumerate().take(3) {
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if ji1 != ji2 {
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let j2 = FTX_LDPC_MN[i][ji2] as usize - 1;
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let j2 = mn2 as usize - 1;
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l += e_matrix[j2 * FTX_LDPC_N + i];
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}
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}
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