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62 lines
2.3 KiB
Python
62 lines
2.3 KiB
Python
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import math
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import struct
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# From mips_to_c: https://github.com/matt-kempster/mips_to_c/blob/d208400cca045113dada3e16c0d59c50cdac4529/src/translate.py#L2085
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def format_f32_imm(num: int) -> str:
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packed = struct.pack(">I", num & (2 ** 32 - 1))
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value = struct.unpack(">f", packed)[0]
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if not value or value == 4294967296.0:
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# Zero, negative zero, nan, or INT_MAX.
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return str(value)
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# Write values smaller than 1e-7 / greater than 1e7 using scientific notation,
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# and values in between using fixed point.
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if abs(math.log10(abs(value))) > 6.9:
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fmt_char = "e"
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elif abs(value) < 1:
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fmt_char = "f"
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else:
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fmt_char = "g"
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def fmt(prec: int) -> str:
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"""Format 'value' with 'prec' significant digits/decimals, in either scientific
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or regular notation depending on 'fmt_char'."""
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ret = ("{:." + str(prec) + fmt_char + "}").format(value)
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if fmt_char == "e":
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return ret.replace("e+", "e").replace("e0", "e").replace("e-0", "e-")
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if "e" in ret:
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# The "g" format character can sometimes introduce scientific notation if
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# formatting with too few decimals. If this happens, return an incorrect
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# value to prevent the result from being used.
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#
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# Since the value we are formatting is within (1e-7, 1e7) in absolute
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# value, it will at least be possible to format with 7 decimals, which is
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# less than float precision. Thus, this annoying Python limitation won't
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# lead to us outputting numbers with more precision than we really have.
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return "0"
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return ret
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# 20 decimals is more than enough for a float. Start there, then try to shrink it.
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prec = 20
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while prec > 0:
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prec -= 1
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value2 = float(fmt(prec))
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if struct.pack(">f", value2) != packed:
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prec += 1
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break
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if prec == 20:
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# Uh oh, even the original value didn't format correctly. Fall back to str(),
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# which ought to work.
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return str(value)
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ret = fmt(prec)
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if "." not in ret:
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ret += ".0"
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return ret
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def format_f64_imm(num: int) -> str:
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(value,) = struct.unpack(">d", struct.pack(">Q", num & (2 ** 64 - 1)))
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return str(value) |