mirror of
https://github.com/pocketpy/pocketpy
synced 2025-10-20 03:20:18 +00:00
some important changes
1. add `colorsys` 2. handle `__all__` in modules 3. `is_pod` for c++17/20
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8
docs/modules/colorsys.md
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8
docs/modules/colorsys.md
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@ -0,0 +1,8 @@
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---
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icon: package
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label: colorsys
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---
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The same as the standard library module `colorsys` in python 3.11.
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https://github.com/python/cpython/blob/3.11/Lib/colorsys.py
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@ -83,7 +83,7 @@ struct C99Struct{
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template<typename T>
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C99Struct(std::monostate _, const T& data): C99Struct(sizeof(T)){
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static_assert(std::is_pod_v<T>);
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static_assert(is_pod<T>::value);
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static_assert(!std::is_pointer_v<T>);
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memcpy(p, &data, this->size);
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}
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@ -156,13 +156,13 @@ T to_void_p(VM* vm, PyObject* var){
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template<typename T>
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T to_c99_struct(VM* vm, PyObject* var){
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static_assert(std::is_pod_v<T>);
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static_assert(is_pod<T>::value);
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C99Struct& pod = CAST(C99Struct&, var);
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return *reinterpret_cast<T*>(pod.p);
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}
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template<typename T>
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std::enable_if_t<std::is_pod_v<T> && !std::is_pointer_v<T>, PyObject*> py_var(VM* vm, const T& data){
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std::enable_if_t<is_pod<T>::value && !std::is_pointer_v<T>, PyObject*> py_var(VM* vm, const T& data){
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return VAR_T(C99Struct, std::monostate(), data);
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}
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/*****************************************************************/
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@ -156,4 +156,11 @@ inline bool is_both_float(PyObject* a, PyObject* b) noexcept {
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inline PyObject* const PY_NULL = (PyObject*)0b000011; // tagged null
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inline PyObject* const PY_OP_CALL = (PyObject*)0b100011;
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inline PyObject* const PY_OP_YIELD = (PyObject*)0b110011;
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// is_pod<> for c++17 and c++20
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template<typename T>
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struct is_pod {
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static constexpr bool value = std::is_trivially_copyable_v<T> && std::is_standard_layout_v<T>;
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};
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} // namespace pkpy
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@ -19,7 +19,7 @@ struct NameDictImpl {
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using Item = std::pair<StrName, T>;
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static constexpr uint16_t __Capacity = 8;
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// ensure the initial capacity is ok for memory pool
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static_assert(std::is_pod_v<T>);
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static_assert(is_pod<T>::value);
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static_assert(sizeof(Item) * __Capacity <= 128);
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float _load_factor;
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@ -214,7 +214,7 @@ __T py_cast(VM* vm, PyObject* obj) {
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}else if constexpr(is_py_class<T>::value){
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T::_check_type(vm, obj);
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return PK_OBJ_GET(T, obj);
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}else if constexpr(std::is_pod_v<T>){
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}else if constexpr(is_pod<T>::value){
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return to_c99_struct<T>(vm, obj);
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}else {
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return Discarded();
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@ -230,7 +230,7 @@ __T _py_cast(VM* vm, PyObject* obj) {
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return to_void_p<__T>(vm, obj);
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}else if constexpr(is_py_class<T>::value){
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return PK_OBJ_GET(T, obj);
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}else if constexpr(std::is_pod_v<T>){
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}else if constexpr(is_pod<T>::value){
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return to_c99_struct<T>(vm, obj);
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}else {
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return Discarded();
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@ -182,6 +182,7 @@ const StrName __divmod__ = StrName::get("__divmod__");
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const StrName __enter__ = StrName::get("__enter__");
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const StrName __exit__ = StrName::get("__exit__");
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const StrName __name__ = StrName::get("__name__");
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const StrName __all__ = StrName::get("__all__");
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const StrName pk_id_add = StrName::get("add");
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const StrName pk_id_set = StrName::get("set");
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@ -8,7 +8,7 @@ namespace pkpy{
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template<typename T>
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struct pod_vector{
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static_assert(64 % sizeof(T) == 0);
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static_assert(std::is_pod_v<T>);
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static_assert(is_pod<T>::value);
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static constexpr int N = 64 / sizeof(T);
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static_assert(N >= 4);
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int _size;
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166
python/colorsys.py
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166
python/colorsys.py
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@ -0,0 +1,166 @@
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"""Conversion functions between RGB and other color systems.
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This modules provides two functions for each color system ABC:
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rgb_to_abc(r, g, b) --> a, b, c
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abc_to_rgb(a, b, c) --> r, g, b
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All inputs and outputs are triples of floats in the range [0.0...1.0]
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(with the exception of I and Q, which covers a slightly larger range).
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Inputs outside the valid range may cause exceptions or invalid outputs.
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Supported color systems:
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RGB: Red, Green, Blue components
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YIQ: Luminance, Chrominance (used by composite video signals)
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HLS: Hue, Luminance, Saturation
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HSV: Hue, Saturation, Value
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"""
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# References:
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# http://en.wikipedia.org/wiki/YIQ
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# http://en.wikipedia.org/wiki/HLS_color_space
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# http://en.wikipedia.org/wiki/HSV_color_space
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__all__ = ["rgb_to_yiq","yiq_to_rgb","rgb_to_hls","hls_to_rgb",
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"rgb_to_hsv","hsv_to_rgb"]
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# Some floating point constants
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ONE_THIRD = 1.0/3.0
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ONE_SIXTH = 1.0/6.0
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TWO_THIRD = 2.0/3.0
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# YIQ: used by composite video signals (linear combinations of RGB)
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# Y: perceived grey level (0.0 == black, 1.0 == white)
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# I, Q: color components
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#
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# There are a great many versions of the constants used in these formulae.
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# The ones in this library uses constants from the FCC version of NTSC.
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def rgb_to_yiq(r, g, b):
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y = 0.30*r + 0.59*g + 0.11*b
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i = 0.74*(r-y) - 0.27*(b-y)
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q = 0.48*(r-y) + 0.41*(b-y)
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return (y, i, q)
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def yiq_to_rgb(y, i, q):
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# r = y + (0.27*q + 0.41*i) / (0.74*0.41 + 0.27*0.48)
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# b = y + (0.74*q - 0.48*i) / (0.74*0.41 + 0.27*0.48)
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# g = y - (0.30*(r-y) + 0.11*(b-y)) / 0.59
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r = y + 0.9468822170900693*i + 0.6235565819861433*q
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g = y - 0.27478764629897834*i - 0.6356910791873801*q
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b = y - 1.1085450346420322*i + 1.7090069284064666*q
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if r < 0.0:
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r = 0.0
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if g < 0.0:
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g = 0.0
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if b < 0.0:
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b = 0.0
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if r > 1.0:
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r = 1.0
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if g > 1.0:
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g = 1.0
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if b > 1.0:
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b = 1.0
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return (r, g, b)
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# HLS: Hue, Luminance, Saturation
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# H: position in the spectrum
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# L: color lightness
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# S: color saturation
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def rgb_to_hls(r, g, b):
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maxc = max(r, g, b)
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minc = min(r, g, b)
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sumc = (maxc+minc)
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rangec = (maxc-minc)
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l = sumc/2.0
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if minc == maxc:
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return 0.0, l, 0.0
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if l <= 0.5:
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s = rangec / sumc
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else:
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s = rangec / (2.0-maxc-minc) # Not always 2.0-sumc: gh-106498.
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rc = (maxc-r) / rangec
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gc = (maxc-g) / rangec
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bc = (maxc-b) / rangec
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if r == maxc:
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h = bc-gc
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elif g == maxc:
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h = 2.0+rc-bc
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else:
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h = 4.0+gc-rc
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h = (h/6.0) % 1.0
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return h, l, s
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def hls_to_rgb(h, l, s):
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if s == 0.0:
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return l, l, l
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if l <= 0.5:
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m2 = l * (1.0+s)
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else:
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m2 = l+s-(l*s)
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m1 = 2.0*l - m2
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return (_v(m1, m2, h+ONE_THIRD), _v(m1, m2, h), _v(m1, m2, h-ONE_THIRD))
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def _v(m1, m2, hue):
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hue = hue % 1.0
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if hue < ONE_SIXTH:
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return m1 + (m2-m1)*hue*6.0
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if hue < 0.5:
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return m2
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if hue < TWO_THIRD:
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return m1 + (m2-m1)*(TWO_THIRD-hue)*6.0
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return m1
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# HSV: Hue, Saturation, Value
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# H: position in the spectrum
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# S: color saturation ("purity")
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# V: color brightness
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def rgb_to_hsv(r, g, b):
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maxc = max(r, g, b)
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minc = min(r, g, b)
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rangec = (maxc-minc)
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v = maxc
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if minc == maxc:
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return 0.0, 0.0, v
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s = rangec / maxc
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rc = (maxc-r) / rangec
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gc = (maxc-g) / rangec
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bc = (maxc-b) / rangec
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if r == maxc:
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h = bc-gc
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elif g == maxc:
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h = 2.0+rc-bc
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else:
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h = 4.0+gc-rc
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h = (h/6.0) % 1.0
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return h, s, v
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def hsv_to_rgb(h, s, v):
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if s == 0.0:
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return v, v, v
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i = int(h*6.0) # XXX assume int() truncates!
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f = (h*6.0) - i
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p = v*(1.0 - s)
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q = v*(1.0 - s*f)
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t = v*(1.0 - s*(1.0-f))
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i = i%6
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if i == 0:
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return v, t, p
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if i == 1:
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return q, v, p
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if i == 2:
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return p, v, t
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if i == 3:
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return p, q, v
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if i == 4:
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return t, p, v
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if i == 5:
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return v, p, q
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# Cannot get here
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_name = StrName(byte.arg);
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PUSH(py_import(_name, true));
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DISPATCH();
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TARGET(IMPORT_STAR)
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TARGET(IMPORT_STAR) {
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_0 = POPX();
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_1 = _0->attr().try_get(__all__);
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if(_1 != nullptr){
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for(PyObject* key: CAST(List&, _1)){
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_name = StrName::get(CAST(Str&, key).sv());
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PyObject* value = _0->attr().try_get(_name);
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if(value == nullptr){
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_error("ImportError", fmt("cannot import name ", _name.escape()));
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}else{
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frame->f_globals().set(_name, value);
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}
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}
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}else{
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for(auto& [name, value]: _0->attr().items()){
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std::string_view s = name.sv();
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if(s.empty() || s[0] == '_') continue;
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frame->f_globals().set(name, value);
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}
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}
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frame->f_globals()._try_perfect_rehash();
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DISPATCH();
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} DISPATCH();
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/*****************************************/
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TARGET(UNPACK_SEQUENCE){
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auto _lock = heap.gc_scope_lock(); // lock the gc via RAII!!
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@ -1489,7 +1489,7 @@ void VM::post_init(){
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add_module_base64(this);
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add_module_timeit(this);
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for(const char* name: {"this", "functools", "collections", "heapq", "bisect", "pickle", "_long"}){
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for(const char* name: {"this", "functools", "collections", "heapq", "bisect", "pickle", "_long", "colorsys"}){
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_lazy_modules[name] = kPythonLibs[name];
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}
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