refactor copier.rs
This commit is contained in:
@@ -5,10 +5,6 @@ use std::ops::IndexMut;
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type Trail = Vec<(Ref, HeapCellValue)>;
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pub(crate) struct RedirectInfo {
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trail: Trail
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}
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pub(crate) trait CopierTarget: IndexMut<usize, Output=HeapCellValue>
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{
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fn source(&self) -> usize;
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@@ -17,159 +13,192 @@ pub(crate) trait CopierTarget: IndexMut<usize, Output=HeapCellValue>
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fn store(&self, Addr) -> Addr;
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fn deref(&self, Addr) -> Addr;
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fn stack(&mut self) -> &mut AndStack;
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}
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fn unwind_trail(&mut self, redirect: RedirectInfo)
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{
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for (r, hcv) in redirect.trail {
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match r {
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Ref::AttrVar(hc) | Ref::HeapCell(hc) => self[hc] = hcv.clone(),
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Ref::StackCell(fr, sc) => self.stack()[fr][sc] = hcv.as_addr(0)
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}
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pub(crate)
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fn copy_term<T: CopierTarget>(target: T, addr: Addr)
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{
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let mut copy_term_state = CopyTermState::new(target);
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copy_term_state.copy_term_impl(addr);
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}
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struct CopyTermState<T: CopierTarget> {
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trail: Trail,
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scan: usize,
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old_h: usize,
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target: T
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}
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impl<T: CopierTarget> CopyTermState<T> {
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fn new(target: T) -> Self {
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CopyTermState {
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trail: vec![],
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scan: target.source(),
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old_h: target.threshold(),
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target
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}
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}
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fn reinstantiate_var(&mut self, ra: Addr, scan: usize, trail: &mut Trail)
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#[inline]
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fn value_at_scan(&mut self) -> &mut HeapCellValue {
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let scan = self.scan;
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&mut self.target[scan]
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}
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fn reinstantiate_var(&mut self, addr: Addr, threshold: usize)
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{
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match ra {
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Addr::HeapCell(hc) => {
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self[scan] = HeapCellValue::Addr(Addr::HeapCell(scan));
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self[hc] = HeapCellValue::Addr(Addr::HeapCell(scan));
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trail.push((Ref::HeapCell(hc),
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HeapCellValue::Addr(Addr::HeapCell(hc))));
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match addr {
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Addr::HeapCell(h) => {
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self.target[threshold] = HeapCellValue::Addr(Addr::HeapCell(threshold));
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self.target[h] = HeapCellValue::Addr(Addr::HeapCell(threshold));
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self.trail.push((Ref::HeapCell(h), HeapCellValue::Addr(Addr::HeapCell(h))));
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},
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Addr::StackCell(fr, sc) => {
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self[scan] = HeapCellValue::Addr(Addr::HeapCell(scan));
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self.stack()[fr][sc] = Addr::HeapCell(scan);
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trail.push((Ref::StackCell(fr, sc),
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HeapCellValue::Addr(Addr::StackCell(fr, sc))));
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self.target[threshold] = HeapCellValue::Addr(Addr::HeapCell(threshold));
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self.target.stack()[fr][sc] = Addr::HeapCell(threshold);
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self.trail.push((Ref::StackCell(fr, sc), HeapCellValue::Addr(Addr::StackCell(fr, sc))));
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},
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Addr::AttrVar(hc) => {
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self[scan] = HeapCellValue::Addr(Addr::AttrVar(scan));
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self[hc] = HeapCellValue::Addr(Addr::AttrVar(scan));
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trail.push((Ref::AttrVar(hc),
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HeapCellValue::Addr(Addr::AttrVar(hc))));
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Addr::AttrVar(h) => {
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self.target[threshold] = HeapCellValue::Addr(Addr::AttrVar(threshold));
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self.target[h] = HeapCellValue::Addr(Addr::AttrVar(threshold));
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self.trail.push((Ref::AttrVar(h), HeapCellValue::Addr(Addr::AttrVar(h))));
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},
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_ => {}
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}
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}
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// duplicate_term_impl(L1, L2) uses Cheney's algorithm to copy the term
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// at L1 to L2. trail is kept to restore the innards of L1 after
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// it's been copied to L2.
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fn duplicate_term_impl(&mut self, addr: Addr) -> RedirectInfo
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{
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let mut trail = Trail::new();
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let mut scan = self.source();
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let old_h = self.threshold();
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fn copied_list(&mut self, addr: usize) -> bool {
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if let HeapCellValue::Addr(Addr::Lis(addr)) = self.target[addr].clone() {
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if addr >= self.old_h {
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*self.value_at_scan() = HeapCellValue::Addr(Addr::Lis(addr));
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self.scan += 1;
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return true;
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}
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}
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self.push(HeapCellValue::Addr(addr));
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false
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}
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while scan < self.threshold() {
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match self[scan].clone() {
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fn copy_list(&mut self, addr: usize) {
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if self.copied_list(addr) {
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return;
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}
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let threshold = self.target.threshold();
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*self.value_at_scan() = HeapCellValue::Addr(Addr::Lis(threshold));
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let hcv = self.target[addr].clone();
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self.target.push(hcv.clone());
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let ra = hcv.as_addr(threshold);
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let rd = self.target.store(self.target.deref(ra));
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match rd.clone() {
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Addr::AttrVar(h) | Addr::HeapCell(h) if h >= self.old_h =>
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self.target[threshold] = HeapCellValue::Addr(rd),
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ra @ Addr::AttrVar(_) | ra @ Addr::HeapCell(..) | ra @ Addr::StackCell(..) =>
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if ra == rd {
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self.reinstantiate_var(ra, threshold);
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} else {
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self.target[threshold] = HeapCellValue::Addr(ra);
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},
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_ => {
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self.trail.push((Ref::HeapCell(addr), self.target[addr].clone()));
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self.target[addr] = HeapCellValue::Addr(Addr::Lis(threshold))
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}
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};
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let hcv = self.target[addr + 1].clone();
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self.target.push(hcv);
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self.scan += 1;
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}
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fn copy_var(&mut self, addr: Addr) {
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let rd = self.target.store(self.target.deref(addr.clone()));
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match rd.clone() {
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Addr::AttrVar(h) | Addr::HeapCell(h) if h >= self.old_h => {
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*self.value_at_scan() = HeapCellValue::Addr(rd);
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self.scan += 1;
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},
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Addr::AttrVar(h) if addr == rd => {
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let threshold = self.target.threshold();
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self.target.push(HeapCellValue::Addr(Addr::AttrVar(threshold)));
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let list_val = self.target[h + 1].clone();
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self.target.push(list_val);
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self.reinstantiate_var(addr, threshold);
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*self.value_at_scan() = HeapCellValue::Addr(Addr::AttrVar(threshold));
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},
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_ if addr == rd => {
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let scan = self.scan;
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self.reinstantiate_var(addr, scan);
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self.scan += 1;
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},
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_ => *self.value_at_scan() = HeapCellValue::Addr(rd)
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}
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}
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fn copy_structure(&mut self, addr: usize) {
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match self.target[addr].clone() {
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HeapCellValue::NamedStr(arity, name, fixity) => {
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let threshold = self.target.threshold();
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*self.value_at_scan() = HeapCellValue::Addr(Addr::Str(threshold));
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self.target[addr] = HeapCellValue::Addr(Addr::Str(threshold));
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self.trail.push((Ref::HeapCell(addr),
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HeapCellValue::NamedStr(arity, name.clone(), fixity)));
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self.target.push(HeapCellValue::NamedStr(arity, name, fixity));
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for i in 0 .. arity {
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let hcv = self.target[addr + 1 + i].clone();
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self.target.push(hcv);
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}
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},
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HeapCellValue::Addr(Addr::Str(addr)) =>
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*self.value_at_scan() = HeapCellValue::Addr(Addr::Str(addr)),
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_ => {}
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}
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self.scan += 1;
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}
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fn copy_term_impl(&mut self, addr: Addr) {
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self.target.push(HeapCellValue::Addr(addr));
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while self.scan < self.target.threshold() {
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match self.value_at_scan().clone() {
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HeapCellValue::NamedStr(..) =>
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scan += 1,
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HeapCellValue::Addr(a) =>
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match a.clone() {
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Addr::Lis(a) => {
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if let HeapCellValue::Addr(Addr::Lis(b)) = self[a].clone() {
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if b >= old_h {
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self[scan] = HeapCellValue::Addr(Addr::Lis(b));
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scan += 1;
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continue;
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}
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}
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let threshold = self.threshold();
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self[scan] = HeapCellValue::Addr(Addr::Lis(threshold));
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let hcv = self[a].clone();
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self.push(hcv.clone());
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let ra = hcv.as_addr(threshold);
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let rd = self.store(self.deref(ra));
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match rd.clone() {
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Addr::AttrVar(h) | Addr::HeapCell(h) if h >= old_h =>
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self[threshold] = HeapCellValue::Addr(rd),
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ra @ Addr::AttrVar(_) | ra @ Addr::HeapCell(..) | ra @ Addr::StackCell(..) =>
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if ra == rd {
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self.reinstantiate_var(ra, threshold, &mut trail);
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} else {
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self[threshold] = HeapCellValue::Addr(ra);
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},
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_ => {
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trail.push((Ref::HeapCell(a), self[a].clone()));
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self[a] = HeapCellValue::Addr(Addr::Lis(threshold))
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}
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};
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let hcv = self[a+1].clone();
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self.push(hcv);
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scan += 1;
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},
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Addr::AttrVar(_) | Addr::HeapCell(_) | Addr::StackCell(_, _) => {
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let ra = a;
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let rd = self.store(self.deref(ra.clone()));
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match rd.clone() {
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Addr::AttrVar(h) | Addr::HeapCell(h) if h >= old_h => {
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self[scan] = HeapCellValue::Addr(rd);
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scan += 1;
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},
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Addr::AttrVar(h) if ra == rd => {
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let threshold = self.threshold();
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self.push(HeapCellValue::Addr(Addr::AttrVar(threshold)));
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let list_val = self[h+1].clone();
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self.push(list_val);
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self.reinstantiate_var(ra, threshold, &mut trail);
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self[scan] = HeapCellValue::Addr(Addr::AttrVar(threshold));
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},
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_ if ra == rd => {
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self.reinstantiate_var(ra, scan, &mut trail);
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scan += 1;
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},
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_ => self[scan] = HeapCellValue::Addr(rd)
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};
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},
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Addr::Str(s) => {
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match self[s].clone() {
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HeapCellValue::NamedStr(arity, name, fixity) => {
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let threshold = self.threshold();
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self[scan] = HeapCellValue::Addr(Addr::Str(threshold));
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self[s] = HeapCellValue::Addr(Addr::Str(threshold));
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trail.push((Ref::HeapCell(s),
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HeapCellValue::NamedStr(arity, name.clone(), fixity)));
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self.push(HeapCellValue::NamedStr(arity, name, fixity));
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for i in 0 .. arity {
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let hcv = self[s + 1 + i].clone();
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self.push(hcv);
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}
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},
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HeapCellValue::Addr(Addr::Str(o)) =>
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self[scan] = HeapCellValue::Addr(Addr::Str(o)),
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_ => {}
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};
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scan += 1;
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},
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Addr::Con(_) => scan += 1
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self.scan += 1,
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HeapCellValue::Addr(addr) =>
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match addr.clone() {
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Addr::Lis(addr) =>
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self.copy_list(addr),
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Addr::AttrVar(_) | Addr::HeapCell(_) | Addr::StackCell(..) =>
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self.copy_var(addr),
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Addr::Str(addr) =>
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self.copy_structure(addr),
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Addr::Con(_) =>
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self.scan += 1
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}
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}
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}
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RedirectInfo { trail }
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self.unwind_trail();
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}
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fn duplicate_term(&mut self, addr: Addr)
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{
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let redirect = self.duplicate_term_impl(addr);
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self.unwind_trail(redirect);
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fn unwind_trail(&mut self) {
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for (r, value) in self.trail.drain(0 ..) {
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match r {
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Ref::AttrVar(h) | Ref::HeapCell(h) =>
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self.target[h] = value.clone(),
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Ref::StackCell(fr, sc) =>
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self.target.stack()[fr][sc] = value.as_addr(0)
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}
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}
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}
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}
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@@ -33,17 +33,17 @@ impl Ball {
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}
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}
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pub(super) struct DuplicateTerm<'a> {
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pub(super) struct CopyTerm<'a> {
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state: &'a mut MachineState
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}
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impl<'a> DuplicateTerm<'a> {
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impl<'a> CopyTerm<'a> {
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pub(super) fn new(state: &'a mut MachineState) -> Self {
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DuplicateTerm { state: state }
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CopyTerm { state: state }
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}
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}
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impl<'a> Index<usize> for DuplicateTerm<'a> {
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impl<'a> Index<usize> for CopyTerm<'a> {
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type Output = HeapCellValue;
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fn index(&self, index: usize) -> &Self::Output {
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@@ -51,14 +51,14 @@ impl<'a> Index<usize> for DuplicateTerm<'a> {
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}
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}
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impl<'a> IndexMut<usize> for DuplicateTerm<'a> {
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impl<'a> IndexMut<usize> for CopyTerm<'a> {
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fn index_mut(&mut self, index: usize) -> &mut Self::Output {
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&mut self.state.heap[index]
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}
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}
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// the ordinary, heap term copier, used by duplicate_term.
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impl<'a> CopierTarget for DuplicateTerm<'a> {
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impl<'a> CopierTarget for CopyTerm<'a> {
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fn source(&self) -> usize {
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self.state.heap.h
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}
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@@ -84,19 +84,19 @@ impl<'a> CopierTarget for DuplicateTerm<'a> {
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}
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}
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pub(super) struct DuplicateBallTerm<'a> {
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pub(super) struct CopyBallTerm<'a> {
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state: &'a mut MachineState,
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heap_boundary: usize
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}
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impl<'a> DuplicateBallTerm<'a> {
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impl<'a> CopyBallTerm<'a> {
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pub(super) fn new(state: &'a mut MachineState) -> Self {
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let hb = state.heap.len();
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DuplicateBallTerm { state, heap_boundary: hb }
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CopyBallTerm { state, heap_boundary: hb }
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}
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}
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impl<'a> Index<usize> for DuplicateBallTerm<'a> {
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impl<'a> Index<usize> for CopyBallTerm<'a> {
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type Output = HeapCellValue;
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fn index(&self, index: usize) -> &Self::Output {
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@@ -109,7 +109,7 @@ impl<'a> Index<usize> for DuplicateBallTerm<'a> {
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}
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}
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impl<'a> IndexMut<usize> for DuplicateBallTerm<'a> {
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impl<'a> IndexMut<usize> for CopyBallTerm<'a> {
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fn index_mut(&mut self, index: usize) -> &mut Self::Output {
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if index < self.heap_boundary {
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&mut self.state.heap[index]
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@@ -121,7 +121,7 @@ impl<'a> IndexMut<usize> for DuplicateBallTerm<'a> {
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}
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// the ordinary, heap term copier, used by duplicate_term.
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impl<'a> CopierTarget for DuplicateBallTerm<'a> {
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impl<'a> CopierTarget for CopyBallTerm<'a> {
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fn source(&self) -> usize {
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self.heap_boundary
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}
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@@ -182,7 +182,8 @@ impl MachineState {
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-> Outputter
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where Outputter: HCValueOutputter
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{
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let printer = HCPrinter::from_heap_locs(&self, output, var_dict);
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let mut printer = HCPrinter::from_heap_locs(&self, output, var_dict);
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printer.see_all_locs();
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printer.print(addr)
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}
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@@ -1348,8 +1349,8 @@ impl MachineState {
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let addr = self[temp_v!(1)].clone();
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self.ball.boundary = self.heap.h;
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let mut duplicator = DuplicateBallTerm::new(self);
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duplicator.duplicate_term(addr);
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let duplicator = CopyBallTerm::new(self);
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copy_term(duplicator, addr);
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}
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pub(super) fn setup_call_n(&mut self, arity: usize) -> Option<PredicateKey>
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@@ -2031,8 +2032,8 @@ impl MachineState {
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// drop the mutable references contained in gadget
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// once the term has been duplicated.
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{
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let mut gadget = DuplicateTerm::new(self);
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gadget.duplicate_term(a1);
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let gadget = CopyTerm::new(self);
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copy_term(gadget, a1);
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}
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self.unify(Addr::HeapCell(old_h), a2);
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