Reshape
Reorder the axes of a frame, then re-cut the entries into a new shape.
input
out
- Type name
signal:Reshape- Plane
signal- Tags
transform- Language
rust- Tier
native- Bundle
signal- Source
node-bundles/signal/Reshape.rs- Availability
- available
Slots
| Slot | Direction | Type | |
|---|---|---|---|
input | input | ARRAY | |
out | output | ARRAY |
Parameters
reshape
| Name | Type | Default | Range | Doc |
|---|---|---|---|---|
axes | string | "" | The new order of the axes, as their old numbers separated by commas: `1,0` swaps the two axes of a grid. Empty keeps the order. | |
shape | string | "" | The shape to re-cut the entries into, separated by commas, with one -1 for the length to work out. Empty keeps the shape. |
common
| Name | Type | Default | Range | Doc |
|---|---|---|---|---|
autotrigger | bool | false | Run on the node's own schedule, instead of waiting for an input frame. Turn this on for sources; leave it off for transforms driven by their input. | |
max_frequency | float | 0 | 0 … 100 | Rate cap for this node, read through `frequency_mode`. 0 means uncapped — the node runs as often as the scheduler and its inputs allow. |
frequency_mode | string | updates_per_second | updates_per_second | seconds_per_update | How to read `max_frequency`: as a rate in Hz (updates per second), or as a period in seconds between updates — convenient for very slow nodes. |
Source
The current source of this node, as it stands in the goofi repository at node-bundles/signal/Reshape.rs.
//! Reshape — reorder the axes, then re-cut the frame into a new shape. A reorder carries the
//! labels with it; a re-cut cannot, because the entries it makes are not the entries it was given.
use goofi_core::{Axes, Data, Meta, SlotType};
use goofi_signal_sdk::{Inputs, Manifest, Node, NodeCtx, NodeResult, OutputDecl, Outputs, ParamDecl, Params, ParamSpec, SlotDecl, Tag};
#[derive(Default)]
struct Reshape;
/// `"1,0"` as a permutation of `ndim` axes; empty keeps the order.
fn permutation(text: &str, ndim: usize) -> Result<Vec<usize>, String> {
let parts: Vec<&str> = text.split(',').map(str::trim).filter(|s| !s.is_empty()).collect();
if parts.is_empty() {
return Ok((0..ndim).collect());
}
if parts.len() != ndim {
return Err(format!("`axes` names {} axes for a frame of {ndim}", parts.len()));
}
let mut perm = Vec::with_capacity(ndim);
for part in parts {
let at: usize = part.parse().map_err(|_| format!("`axes` takes axis numbers, not `{part}`"))?;
if at >= ndim || perm.contains(&at) {
return Err(format!("`axes` names axis {at} out of range or twice"));
}
perm.push(at);
}
Ok(perm)
}
/// `"4,-1"` as lengths for `count` entries; empty keeps the shape.
fn lengths(text: &str, count: usize, current: &[usize]) -> Result<Vec<usize>, String> {
let parts: Vec<&str> = text.split(',').map(str::trim).filter(|s| !s.is_empty()).collect();
if parts.is_empty() {
return Ok(current.to_vec());
}
let mut shape = Vec::with_capacity(parts.len());
let mut free = None;
for (at, part) in parts.iter().enumerate() {
let n: i64 = part.parse().map_err(|_| format!("`shape` takes whole numbers, not `{part}`"))?;
match n {
-1 if free.is_none() => {
free = Some(at);
shape.push(1);
}
-1 => return Err("`shape` takes one -1 at most".to_string()),
n if n > 0 => shape.push(n as usize),
_ => return Err(format!("`shape` takes lengths of one or more, not `{n}`")),
}
}
let known: usize = shape.iter().product();
if let Some(at) = free {
if known == 0 || count % known != 0 {
return Err(format!("{count} entries do not divide into the shape given"));
}
shape[at] = count / known;
}
if shape.iter().product::<usize>() != count {
return Err(format!("`shape` asks for {} entries, and the frame has {count}", shape.iter().product::<usize>()));
}
Ok(shape)
}
impl Node for Reshape {
fn process(
&mut self,
inp: &Inputs<'_>,
out: &mut Outputs<'_>,
_c: &mut NodeCtx,
p: &Params<'_>,
) -> NodeResult {
let d = inp.get("input").ok_or("`input` is required")?;
let a = d.assert_ndims().at_least(1)?;
let shape = a.shape();
let perm = permutation(p.str("reshape", "axes").unwrap_or(""), shape.len())?;
let moved: Vec<usize> = perm.iter().map(|&at| shape[at]).collect();
let src = a.as_bytes();
let mut buf = vec![0u8; src.len()];
if perm.iter().enumerate().any(|(at, &from)| at != from) {
// Strides of the SOURCE, read in the permuted order, so one walk fills the output.
let mut stride = vec![1usize; shape.len()];
for at in (0..shape.len().saturating_sub(1)).rev() {
stride[at] = stride[at + 1] * shape[at + 1];
}
let count: usize = shape.iter().product();
let mut index = vec![0usize; moved.len()];
for at in 0..count {
let from: usize = index.iter().enumerate().map(|(k, &i)| i * stride[perm[k]]).sum();
buf[at * 4..at * 4 + 4].copy_from_slice(&src[from * 4..from * 4 + 4]);
for k in (0..index.len()).rev() {
index[k] += 1;
if index[k] < moved[k] {
break;
}
index[k] = 0;
}
}
} else {
buf.copy_from_slice(src);
}
let mut meta = d.meta().clone();
let mut axes = Axes::new();
for (at, &from) in perm.iter().enumerate() {
if let Some(axis) = meta.channels().get(from) {
axes = axes.with(at, axis.clone());
}
}
meta.set_channels(axes);
let count: usize = moved.iter().product();
let cut = lengths(p.str("reshape", "shape").unwrap_or(""), count, &moved)?;
if cut != moved {
// A re-cut makes entries the input never had, so no label and no rate survives it.
meta = Meta::new();
}
out.set("out", Data::array_f32(cut, buf, meta).map_err(|e| e.to_string())?);
Ok(())
}
}
static PARAMS: &[ParamDecl] = &[
ParamDecl {
group: "reshape",
name: "axes",
spec: ParamSpec::Str { default: "", options: &[], refresh: false },
expression: None,
doc: Some(
"The new order of the axes, as their old numbers separated by commas: `1,0` swaps the \
two axes of a grid. Empty keeps the order.",
),
},
ParamDecl {
group: "reshape",
name: "shape",
spec: ParamSpec::Str { default: "", options: &[], refresh: false },
expression: None,
doc: Some(
"The shape to re-cut the entries into, separated by commas, with one -1 for the length \
to work out. Empty keeps the shape.",
),
},
];
static INPUTS: &[SlotDecl] = &[SlotDecl {
name: "input",
kind: SlotType::Array,
trigger_process: true,
multi: false,
required: true,
}];
static OUTPUTS: &[OutputDecl] = &[OutputDecl { name: "out", kind: SlotType::Array }];
static MANIFEST: Manifest = Manifest {
tags: &[Tag::Transform],
doc: "Reorder the axes of a frame, then re-cut the entries into a new shape.",
inputs: INPUTS,
outputs: OUTPUTS,
params: PARAMS,
producer: false,
};
goofi_signal_sdk::export!(Reshape, MANIFEST);This reference describes goofi 3.1.0(537cd394), generated from a running instance on 2026-09-06.