Files
simplexcalc/internal/calc/calc_test.go
T
clawbot 3a8f1cc334
check / check (push) Successful in 1m14s
Exact remainders; refuse numbers held rounded (closes #3)
x % y is now y times the fractional part of x/y. The old form, x minus
y times the whole part of x/y, passed through a product that go/constant
could hold only rounded even when both operands and the remainder were
exact, and then replied 0.

A number whose numerator or denominator reaches 4096 bits, which
go/constant holds rounded, is now refused as too large wherever it
appears, literals included. A sum of such numbers could lose the answer,
and a rounded exponent near a whole number was computed as an exact
power. This replaces the separate check on a negative base's exponent.

Model: opus-5-5
2026-09-29 00:42:19 +00:00

300 lines
9.5 KiB
Go
Raw Blame History

This file contains ambiguous Unicode characters
This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.
package calc_test
import (
"errors"
"strings"
"testing"
"time"
"sneak.berlin/go/simplexcalc/internal/calc"
)
// TestEvaluate covers the two examples the bot was specified with, and
// the arithmetic around them.
func TestEvaluate(t *testing.T) {
t.Parallel()
expectResults(t, map[string]string{
// The specification's own examples.
"2 + 2": "4",
"5 * 5/2": "12.5",
"2+2": "4",
" 7 - 10 \n": "-3",
"-3 * 2": "-6",
"+4": "4",
"-(-4)": "4",
"(1 + 2) * 3": "9",
"1 + 2 * 3": "7",
"((2))": "2",
"8 / 2 / 2": "2",
"10 - 2 - 3": "5",
"7 / 2": "3.5",
"25/2": "12.5",
"1 / 3": "0.3333333333333333",
"2 / 3": "0.6666666666666666",
"0.1 + 0.2": "0.3",
"1.5 * 2": "3",
"2.50 * 2": "5",
".5 + .5": "1",
"3. * 2": "6",
"1e3 + 1": "1001",
"2.5e-1": "0.25",
"010 + 1": "11",
"-0": "0",
"0 / 5": "0",
// Exact: a float64 would print 99999999980000000000.
"9999999999 * 9999999999": "99999999980000000001",
"1e21": "1e+21",
"1e20": "100000000000000000000",
"1 / 1e7": "1e-07",
"1 / 1e6": "0.000001",
"1234567.5": "1234567.5",
"-1 / 4": "-0.25",
"1e300 * 1e8": "1e+308",
})
}
// TestEvaluatePowers: ^ and ** are one operator, binding tighter than
// * / % and a sign on its left, and grouping to the right.
func TestEvaluatePowers(t *testing.T) {
t.Parallel()
expectResults(t, map[string]string{
"2^3": "8",
"2**3": "8",
"2 ** 3 ^ 2": "512",
"2^3^2": "512",
"(2^3)^2": "64",
"-2^2": "-4",
"(-2)^2": "4",
"(-2)^3": "-8",
"(-2)^-3": "-0.125",
"2^-1": "0.5",
"2**-1": "0.5",
"-2^-2": "-0.25",
"2^-3^2": "0.001953125",
"2 * 3^2": "18",
"3^2 * 2": "18",
"2^3 / 2^2": "2",
"1 + 2^3 - 3^2": "0",
"010^2": "100",
"0.1^2": "0.01",
"2^100 - 2^100 + 1": "1",
"2^64": "18446744073709551616",
"0^0": "1",
"0^3": "0",
"1.5^2": "2.25",
"2^0.5": "1.4142135623730951",
"-2^0.5": "-1.4142135623730951",
"4^0.5": "2",
"0^0.5": "0",
"2^1023": "8.98846567431158e+307",
// Past 2^53 a float64 cannot tell odd from even.
"(-1)^(2^53 + 1)": "-1",
"(-1)^(10^30)": "1",
})
}
// TestEvaluateModulo: % sits with * and /, left to right, and its result
// takes the sign of the divisor.
func TestEvaluateModulo(t *testing.T) {
t.Parallel()
expectResults(t, map[string]string{
"7 % 3": "1",
"-7 % 3": "2",
"7 % -3": "-2",
"-7 % -3": "-1",
"6 % 3": "0",
"-6 % 3": "0",
"7.5 % 2": "1.5",
"0.3 % 0.1": "0",
"-0.3 % 0.2": "0.1",
"10 % 4 * 3": "6",
"2 * 7 % 4": "2",
"1 + 7 % 3": "2",
"2^10 % 7": "2",
"10^400 % 7": "4",
"1e-30 % 1": "1e-30",
"-1e-30 % 1": "1",
"10 / 8 % 1": "0.25",
"(7 % 3)^2": "1",
"7 % (3 ^ 2)": "7",
// Both operands and their quotient are held exactly, but y times
// the whole part of x/y is too large to be.
"(5^860*3^630/7) % (5^860/2^998/2^998)": "0.5179219763783696",
})
}
// expectResults checks that each expression evaluates to its result.
func expectResults(t *testing.T, cases map[string]string) {
t.Helper()
for in, want := range cases {
t.Run(in, func(t *testing.T) {
t.Parallel()
got, err := calc.Evaluate(in)
if err != nil {
t.Fatalf("Evaluate(%q) failed: %v", in, err)
}
if got != want {
t.Errorf("Evaluate(%q) = %q, want %q", in, got, want)
}
})
}
}
// TestEvaluateRefuses covers what must be answered with an error rather
// than a number, and never with a panic.
func TestEvaluateRefuses(t *testing.T) {
t.Parallel()
cases := map[string]error{
"": calc.ErrNotArithmetic,
" ": calc.ErrNotArithmetic,
"hello": calc.ErrNotArithmetic,
"/help": calc.ErrNotArithmetic,
"2 +": calc.ErrNotArithmetic,
"2 2": calc.ErrNotArithmetic,
"2 + 2 =": calc.ErrNotArithmetic,
"x + 1": calc.ErrNotArithmetic,
"len(\"abc\")": calc.ErrNotArithmetic,
"\"a\" + \"b\"": calc.ErrNotArithmetic,
"'a' + 1": calc.ErrNotArithmetic,
"2i * 2i": calc.ErrNotArithmetic,
"0x10 + 1": calc.ErrNotArithmetic,
"1_000 + 1": calc.ErrNotArithmetic,
"1 << 10": calc.ErrNotArithmetic,
"1 == 1": calc.ErrNotArithmetic,
"!1": calc.ErrNotArithmetic,
"func() int { return 1 }()": calc.ErrNotArithmetic,
"(1 + 2": calc.ErrNotArithmetic,
"1 + 2)": calc.ErrNotArithmetic,
"()": calc.ErrNotArithmetic,
"(2)(3)": calc.ErrNotArithmetic,
"2 ^": calc.ErrNotArithmetic,
"^ 2": calc.ErrNotArithmetic,
"2 ^^ 3": calc.ErrNotArithmetic,
"2 *** 3": calc.ErrNotArithmetic,
"2 * * 3": calc.ErrNotArithmetic,
"% 3": calc.ErrNotArithmetic,
"50%": calc.ErrNotArithmetic,
"2 × 3": calc.ErrNotArithmetic,
"1 / 0": calc.ErrDivisionByZero,
"1 / (2 - 2)": calc.ErrDivisionByZero,
"5 / 0.0": calc.ErrDivisionByZero,
"7 % 0": calc.ErrDivisionByZero,
"7.5 % (1 - 1)": calc.ErrDivisionByZero,
"0^-1": calc.ErrDivisionByZero,
"0^-0.5": calc.ErrDivisionByZero,
"(-2)^0.5": calc.ErrNoRealResult,
"(-8)^(1/3)": calc.ErrNoRealResult,
"(-1)^-0.5": calc.ErrNoRealResult,
"1e400": calc.ErrTooLarge,
"1e300 * 1e300": calc.ErrTooLarge,
"1e999999999 * 1e999999999": calc.ErrTooLarge,
"1 / 1e-400": calc.ErrTooLarge,
"2^1024": calc.ErrTooLarge,
"2^5000": calc.ErrTooLarge,
"(-2)^5001": calc.ErrTooLarge,
"0.5^-5000": calc.ErrTooLarge,
// go/constant holds numbers of this size rounded. A sum of them
// can lose the answer (this one would be 0), and so can a
// remainder or the sign of -1 to such a power.
"7^1000 * 7^1000 + 5 - 7^1000 * 7^1000": calc.ErrTooLarge,
"7^1000 * 7^1000 / 7^1000 % 10": calc.ErrTooLarge,
"(-1)^(3^1365 * 3^1365 / 3^1365)": calc.ErrTooLarge,
"(-1)^1e1300": calc.ErrTooLarge,
"1e-1300": calc.ErrTooLarge,
// Both operands are held exactly, but their quotient is not.
"3^1365 % 7^-1000": calc.ErrTooLarge,
}
for in, want := range cases {
t.Run(in, func(t *testing.T) {
t.Parallel()
got, err := calc.Evaluate(in)
if !errors.Is(err, want) {
t.Errorf("Evaluate(%q) = %q, %v; want error %v", in, got, err, want)
}
})
}
}
// TestEvaluateBoundsWork: computed exactly, each of these powers would
// need more time and memory than any machine has. They must be answered
// at once.
func TestEvaluateBoundsWork(t *testing.T) {
t.Parallel()
cases := []struct {
in string
want string
err error
}{
{in: "9^9^9^9^9", err: calc.ErrTooLarge},
{in: "((9^999)^999)^999", err: calc.ErrTooLarge},
{in: "1.0000001^99999", want: "1.01005006557947"},
{in: "0.5^99999999999999999999", want: "0"},
{in: "(-1)^99999999999999999999", want: "-1"},
// The longest tower that fits.
{in: strings.Repeat("9^", 127) + "9", err: calc.ErrTooLarge},
// The largest power computed exactly, as often as fits.
{in: "0" + strings.Repeat("*3^1365", 36), want: "0"},
}
for _, c := range cases {
t.Run(c.in, func(t *testing.T) {
t.Parallel()
start := time.Now()
got, err := calc.Evaluate(c.in)
if elapsed := time.Since(start); elapsed > time.Second {
t.Errorf("Evaluate(%q) took %v", c.in, elapsed)
}
if !errors.Is(err, c.err) || got != c.want {
t.Errorf("Evaluate(%q) = %q, %v; want %q, %v", c.in, got, err, c.want, c.err)
}
})
}
}
// TestEvaluateCapsInput: the length cap is what bounds the work a
// message can cause, so it must hold exactly at the boundary.
func TestEvaluateCapsInput(t *testing.T) {
t.Parallel()
// "1+1+...+1" with the last term padded to land exactly on the cap.
longest := strings.Repeat("1+", calc.MaxInputLength/2-1) + "10"
if len(longest) != calc.MaxInputLength {
t.Fatalf("test setup: expression is %d bytes, want %d",
len(longest), calc.MaxInputLength)
}
got, err := calc.Evaluate(longest)
if err != nil {
t.Fatalf("an expression of exactly MaxInputLength bytes was refused: %v", err)
}
if want := "137"; got != want {
t.Errorf("Evaluate(longest) = %q, want %q", got, want)
}
_, err = calc.Evaluate(longest + "0")
if !errors.Is(err, calc.ErrTooLong) {
t.Errorf("an expression over MaxInputLength gave %v, want ErrTooLong", err)
}
// Surrounding whitespace is not part of the expression.
_, err = calc.Evaluate(" " + longest + "\n")
if err != nil {
t.Errorf("whitespace around a maximal expression counted against the cap: %v", err)
}
}