prop/lib/mix/tasks/backtest.ex
Graham McIntire 7630934bcb Accept CamelCase feature names in mix backtest
mix backtest --feature NaiveGradient now resolves to the same function
as --feature naive_gradient. Names are normalized via Macro.underscore,
so any casing works. Also prints the available functions when an
unknown feature is requested so typos don't produce an opaque
UndefinedFunctionError deep in the Enum.map stack.
2026-04-09 16:15:01 -05:00

105 lines
3.5 KiB
Elixir

defmodule Mix.Tasks.Backtest do
@shortdoc "Evaluate a propagation feature against the QSO corpus"
@moduledoc """
Runs `Microwaveprop.Backtest.evaluate/2` (plus the distance and band
breakdowns) for a named feature function and prints a Markdown report
to stdout.
## Usage
mix backtest --feature naive_gradient
mix backtest --feature NaiveGradient # CamelCase also works
mix backtest --feature Microwaveprop.Backtest.Features.naive_gradient
mix backtest --feature naive_gradient --sample 1000 --out priv/backtest_reports/naive.md
## Options
* `--feature` (required) — fully-qualified `Module.function` or a
short name that lives on `Microwaveprop.Backtest.Features`. Names
are normalized via `Macro.underscore/1`, so `NaiveGradient`,
`naive_gradient`, and `naiveGradient` all resolve to the same
function.
* `--sample` — max number of QSOs to evaluate (default: 5000).
* `--baseline` — random-baseline sample size (default: same as `--sample`).
* `--out` — optional file path to write the report to in addition
to printing it. Useful for saving baseline reports into
`priv/backtest_reports/`.
"""
use Mix.Task
alias Microwaveprop.Backtest
@impl Mix.Task
def run(argv) do
Mix.Task.run("app.start")
{opts, _, _} =
OptionParser.parse(argv,
switches: [feature: :string, sample: :integer, baseline: :integer, out: :string]
)
feature_spec = Keyword.fetch!(opts, :feature)
sample_size = Keyword.get(opts, :sample, 5000)
baseline_size = Keyword.get(opts, :baseline, sample_size)
out_path = Keyword.get(opts, :out)
{feature_fun, feature_name} = resolve_feature(feature_spec)
report =
Backtest.evaluate(feature_fun,
sample_size: sample_size,
baseline_size: baseline_size,
feature_name: feature_name
)
distance_bins = Backtest.lift_by_distance(feature_fun, sample_size: sample_size)
band_stats = Backtest.lift_by_band(feature_fun, sample_size: sample_size)
markdown =
Backtest.to_markdown(report, distance_bins: distance_bins, band_stats: band_stats)
IO.puts(markdown)
if out_path do
File.mkdir_p!(Path.dirname(out_path))
File.write!(out_path, markdown)
Mix.shell().info("Wrote report to #{out_path}")
end
end
defp resolve_feature(spec) do
case String.split(spec, ".") do
[name] ->
fun = resolve_function_atom!(Microwaveprop.Backtest.Features, name)
feature_fun = &apply(Microwaveprop.Backtest.Features, fun, [&1, &2, &3])
{feature_fun, "Microwaveprop.Backtest.Features.#{fun}"}
parts ->
{fun_name, mod_parts} = List.pop_at(parts, -1)
module = Module.concat(mod_parts)
fun = resolve_function_atom!(module, fun_name)
feature_fun = &apply(module, fun, [&1, &2, &3])
{feature_fun, "#{inspect(module)}.#{fun}"}
end
end
# Accept both `naive_gradient` and `NaiveGradient` and anything in between.
defp resolve_function_atom!(module, name) do
Code.ensure_loaded!(module)
normalized = Macro.underscore(name)
fun = String.to_atom(normalized)
if function_exported?(module, fun, 3) do
fun
else
exported =
module.__info__(:functions)
|> Enum.filter(fn {_f, arity} -> arity == 3 end)
|> Enum.map_join(", ", fn {f, _} -> to_string(f) end)
Mix.raise(
"Feature #{inspect(module)}.#{normalized}/3 is not defined.\nAvailable 3-arity functions: #{exported}"
)
end
end
end