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Run cargo fmt
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@ -21,7 +21,10 @@ fn rom_table_lookup<T>(table: *const u16, tag: RomFnTableCode) -> T {
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unsafe {
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let rom_table_lookup_ptr: *const u32 = rom_hword_as_ptr(ROM_TABLE_LOOKUP_PTR);
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let rom_table_lookup: RomTableLookupFn<T> = core::mem::transmute(rom_table_lookup_ptr);
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rom_table_lookup(rom_hword_as_ptr(table) as *const u16, u16::from_le_bytes(tag) as u32)
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rom_table_lookup(
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rom_hword_as_ptr(table) as *const u16,
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u16::from_le_bytes(tag) as u32,
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)
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}
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}
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@ -342,7 +345,7 @@ double_funcs! {
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0x40 dsin(angle: f64) -> f64;
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/// Return the tangent of angle. angle is in radians, and must be in the range -1024 to 1024
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0x44 dtan(angle: f64) -> f64;
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/// Return the exponential value of v, i.e. so
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/// Return the exponential value of v, i.e. so
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0x4c dexp(v: f64) -> f64;
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/// Return the natural logarithm of v. If v <= 0 return -Infinity
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0x50 dln(v: f64) -> f64;
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@ -371,7 +374,7 @@ double_funcs! {
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/// Convert a double to a signed fixed point 64-bit integer representation where n specifies the
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/// position of the binary point in the resulting fixed point representation - e.g. _double2fix(0.5f,
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/// 16) == 0x8000. This method rounds towards -Infinity, and clamps the resulting integer to lie
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/// within the range -0x8000000000000000 to 0x7FFFFFFFFFFFFFFF
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/// within the range -0x8000000000000000 to 0x7FFFFFFFFFFFFFFF
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0x70 double_to_fix64(v: f64, n: i32) -> i64;
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/// Convert a double to an unsigned 64-bit integer, rounding towards -Infinity, and clamping the
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/// result to lie within the range 0x0000000000000000 to 0xFFFFFFFFFFFFFFFF
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