basic for loop + examples -> era3

This commit is contained in:
Neemek 2026-07-13 10:01:13 +02:00
parent dd7af341a3
commit 0bc8b2ef55
Signed by: neemek
GPG key ID: 84FFE4D7D40AB25E
24 changed files with 222 additions and 201 deletions

View file

@ -1,5 +1,5 @@
fn map(list: [any], f: fn(any) -> any) -> [any] {
fn (l: list) map(list: [any], f: fn(any) -> any) -> [any] {
out := []
i := 0

View file

@ -9,7 +9,7 @@ E := 2.718281828459045235360287471352
# returned value is x.
fn absf(x: float) -> float {
# if the number is negative
if x < 0 {
if x < 0.0 {
# negate it so it's positive
return -x
}
@ -26,7 +26,7 @@ fn absi(n: int) -> int {
}
DERIVE_DX := 0.00000001
fn derive(f: fn(float) -> float, x: float) float {
fn derive(f: fn(float) -> float, x: float) -> float {
return (f(x + DERIVE_DX) - f(x))/DERIVE_DX
}
@ -35,7 +35,7 @@ fn newtons(f: fn(float) -> float) -> float {
pg := 0.0
g := 1.0
while abs(g - pg) > NEWTONS_ACC {
while absf(g - pg) > NEWTONS_ACC {
pg = g
g = pg - f(pg) / derive(f, pg)
}
@ -53,12 +53,14 @@ fn sqrt(x: float) -> float {
ng := x
g := 1.0
while abs(g - ng) > MAX_SQRT_DX {
while absf(g - ng) > MAX_SQRT_DX {
g = ng
# create new guess
ng = (g + x / g) / 2
ng = (g + x / g) / 2.0
}
g
}
# floor(x)
@ -82,7 +84,7 @@ fn round(x: float) -> float {
f := floor(x)
if x - f > 0.5 {
return f + 1
return f + 1.0
}
return f
@ -93,16 +95,16 @@ fn round(x: float) -> float {
# n: number; the number to divide by
# Return the rest from a division of x by n.
fn mod(x: float, n: float) -> float {
if x == 0 {
return 0
if x == 0.0 {
return 0.0
}
if x < 0 {
while x + n <= 0 {
if x < 0.0 {
while x + n <= 0.0 {
x = x + n
}
} else {
while x - n >= 0 {
while x - n >= 0.0 {
x = x - n
}
}
@ -123,7 +125,7 @@ fn sm_exp(x: float) -> float {
x_pow := x
f := 1.0
while abs(tot - p_tot) > SM_EXP_ACC {
while absf(tot - p_tot) > SM_EXP_ACC {
p_tot = tot
t := x_pow / f
tot = tot + t
@ -139,18 +141,18 @@ fn sm_exp(x: float) -> float {
# x: number; any number
# Get an approximate value of e raised to the power of x.
fn exp(x: float) -> float {
n := abs(x)
n := absf(x)
tot := 1.0
while n >= 1 {
while n >= 1.0 {
tot = tot * E
n = n - 1
n = n - 1.0
}
if n > 0.0 {
tot = tot * sm_exp(n)
}
if x < 0 {
if x < 0.0 {
1.0/tot
} else {
tot
@ -166,9 +168,9 @@ fn ln(x: float) -> float {
pg := 0.0
g := 1.0
while abs(pg - g) > LN_ACC {
while absf(pg - g) > LN_ACC {
pg = g
g = pg + x / exp(pg) - 1
g = pg + x / exp(pg) - 1.0
}
return g
@ -194,7 +196,7 @@ fn log(a: float, b: float) -> float {
pg := 0.0
g := 1.0
while abs(g - pg) > LOG_ACC {
while absf(g - pg) > LOG_ACC {
pg = g
g = pg - 1.0/ln_b - a/(ln_b*pow(b, pg))
}
@ -211,7 +213,7 @@ fn sin(x: float) -> float {
x = mod(x, 2.0*PI)
if x > PI {
x = PI - x
f = -1
f = -1.0
}
# compute sine with a taylor series mock function of sine (valid between -pi and +pi)
@ -220,7 +222,7 @@ fn sin(x: float) -> float {
i := 1.0
s := -1.0
while i <= 19 {
while i <= 19.0 {
i = i + 2.0
l = s * l * x / i / (i-1.0)
@ -235,13 +237,15 @@ fn sin(x: float) -> float {
# cos(x)
# x: number; an angle in radians
# Get the cosine of an angle (in radians). https://en.wikipedia.org/wiki/Sine_and_cosine
func cos(x: number) number {
fn cos(x: float) -> float {
# todo
0.0
}
# tan(x)
# x: number; an angle in radians
# Get the tangent of an angle. https://en.wikipedia.org/wiki/Tangent
func tan(x: number) number {
fn tan(x: float) -> float {
# todo
0.0
}