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614 lines
18 KiB
614 lines
18 KiB
/** |
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* @file clx_render.cpp |
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* |
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* CL2 rendering. |
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*/ |
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#include "clx_render.hpp" |
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#include <algorithm> |
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#include "engine/point.hpp" |
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#include "engine/render/blit_impl.hpp" |
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#include "utils/attributes.h" |
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#include "utils/clx_decode.hpp" |
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#include "utils/static_vector.hpp" |
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#ifdef DEBUG_CLX |
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#include <fmt/format.h> |
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#include "utils/str_cat.hpp" |
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#endif |
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namespace devilution { |
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namespace { |
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/** |
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* CL2 is similar to CEL, with the following differences: |
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* |
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* 1. Transparent runs can cross line boundaries. |
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* 2. Control bytes are different, and the [0x80, 0xBE] control byte range |
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* indicates a fill-N command. |
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*/ |
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struct BlitCommandInfo { |
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const uint8_t *srcEnd; |
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unsigned length; |
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}; |
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BlitCommandInfo ClxBlitInfo(const uint8_t *src) |
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{ |
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const uint8_t control = *src; |
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if (!IsClxOpaque(control)) |
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return { src + 1, control }; |
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if (IsClxOpaqueFill(control)) { |
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const uint8_t width = GetClxOpaqueFillWidth(control); |
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return { src + 2, width }; |
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} |
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const uint8_t width = GetClxOpaquePixelsWidth(control); |
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return { src + 1 + width, width }; |
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} |
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struct ClipX { |
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int_fast16_t left; |
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int_fast16_t right; |
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int_fast16_t width; |
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}; |
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DVL_ALWAYS_INLINE DVL_ATTRIBUTE_HOT ClipX CalculateClipX(int_fast16_t x, std::size_t w, const Surface &out) |
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{ |
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ClipX clip; |
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clip.left = static_cast<int_fast16_t>(x < 0 ? -x : 0); |
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clip.right = static_cast<int_fast16_t>(static_cast<int_fast16_t>(x + w) > out.w() ? x + w - out.w() : 0); |
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clip.width = static_cast<int_fast16_t>(w - clip.left - clip.right); |
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return clip; |
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} |
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// Source data for rendering backwards: first line of input -> last line of output. |
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struct RenderSrc { |
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const uint8_t *begin; |
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const uint8_t *end; |
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uint_fast16_t width; |
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}; |
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DVL_ALWAYS_INLINE DVL_ATTRIBUTE_HOT const uint8_t *SkipRestOfLineWithOverrun( |
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const uint8_t *src, int_fast16_t srcWidth, SkipSize &skipSize) |
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{ |
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int_fast16_t remainingWidth = srcWidth - skipSize.xOffset; |
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while (remainingWidth > 0) { |
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const auto [srcEnd, length] = ClxBlitInfo(src); |
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src = srcEnd; |
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remainingWidth -= length; |
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} |
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skipSize = GetSkipSize(remainingWidth, srcWidth); |
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return src; |
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} |
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// Returns the horizontal overrun. |
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DVL_ALWAYS_INLINE DVL_ATTRIBUTE_HOT int_fast16_t SkipLinesForRenderBackwardsWithOverrun( |
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Point &position, RenderSrc &src, int_fast16_t dstHeight) |
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{ |
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SkipSize skipSize { 0, 0 }; |
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while (position.y >= dstHeight && src.begin != src.end) { |
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src.begin = SkipRestOfLineWithOverrun( |
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src.begin, static_cast<int_fast16_t>(src.width), skipSize); |
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position.y -= static_cast<int>(skipSize.wholeLines); |
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} |
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return skipSize.xOffset; |
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} |
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template <typename BlitFn> |
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void DoRenderBackwardsClipY( |
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const Surface &out, Point position, RenderSrc src, BlitFn &&blitFn) |
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{ |
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// Skip the bottom clipped lines. |
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int_fast16_t xOffset = SkipLinesForRenderBackwardsWithOverrun(position, src, out.h()); |
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if (src.begin >= src.end) |
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return; |
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auto *dst = &out[position]; |
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const auto *dstBegin = out.begin(); |
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const int dstPitch = out.pitch(); |
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while (src.begin != src.end && dst >= dstBegin) { |
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auto remainingWidth = static_cast<int_fast16_t>(src.width) - xOffset; |
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dst += xOffset; |
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while (remainingWidth > 0) { |
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uint8_t v = *src.begin++; |
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if (IsClxOpaque(v)) { |
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if (IsClxOpaqueFill(v)) { |
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v = GetClxOpaqueFillWidth(v); |
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const uint8_t color = *src.begin++; |
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blitFn(v, color, dst); |
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} else { |
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v = GetClxOpaquePixelsWidth(v); |
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blitFn(v, dst, src.begin); |
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src.begin += v; |
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} |
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} |
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dst += v; |
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remainingWidth -= v; |
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} |
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const SkipSize skipSize = GetSkipSize(remainingWidth, static_cast<int_fast16_t>(src.width)); |
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xOffset = skipSize.xOffset; |
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dst -= skipSize.wholeLines * dstPitch + src.width - remainingWidth; |
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} |
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} |
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template <typename BlitFn> |
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void DoRenderBackwardsClipXY( |
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const Surface &out, Point position, RenderSrc src, ClipX clipX, BlitFn &&blitFn) |
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{ |
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// Skip the bottom clipped lines. |
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int_fast16_t xOffset = SkipLinesForRenderBackwardsWithOverrun(position, src, out.h()); |
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if (src.begin >= src.end) |
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return; |
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position.x += static_cast<int>(clipX.left); |
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auto *dst = &out[position]; |
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const auto *dstBegin = out.begin(); |
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const int dstPitch = out.pitch(); |
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while (src.begin != src.end && dst >= dstBegin) { |
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// Skip initial src if clipping on the left. |
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// Handles overshoot, i.e. when the RLE segment goes into the unclipped area. |
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int_fast16_t remainingWidth = clipX.width; |
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int_fast16_t remainingLeftClip = clipX.left - xOffset; |
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if (remainingLeftClip < 0) { |
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dst += std::min<unsigned>(remainingWidth, -remainingLeftClip); |
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remainingWidth += remainingLeftClip; |
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} |
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while (remainingLeftClip > 0) { |
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auto [srcEnd, length] = ClxBlitInfo(src.begin); |
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if (static_cast<int_fast16_t>(length) > remainingLeftClip) { |
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const uint8_t control = *src.begin; |
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const auto overshoot = static_cast<int>(length - remainingLeftClip); |
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length = std::min<unsigned>(remainingWidth, overshoot); |
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if (IsClxOpaque(control)) { |
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if (IsClxOpaqueFill(control)) { |
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blitFn(length, src.begin[1], dst); |
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} else { |
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blitFn(length, dst, src.begin + 1 + remainingLeftClip); |
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} |
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} |
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dst += length; |
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remainingWidth -= overshoot; |
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src.begin = srcEnd; |
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break; |
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} |
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src.begin = srcEnd; |
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remainingLeftClip -= length; |
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} |
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while (remainingWidth > 0) { |
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auto [srcEnd, length] = ClxBlitInfo(src.begin); |
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const uint8_t control = *src.begin; |
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const unsigned unclippedLength = length; |
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length = std::min<unsigned>(remainingWidth, length); |
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if (IsClxOpaque(control)) { |
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if (IsClxOpaqueFill(control)) { |
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blitFn(length, src.begin[1], dst); |
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} else { |
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blitFn(length, dst, src.begin + 1); |
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} |
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} |
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src.begin = srcEnd; |
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dst += length; |
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remainingWidth -= unclippedLength; // result can be negative |
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} |
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// `remainingWidth` can be negative, in which case it is the amount of pixels |
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// that the source has overran the line. |
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remainingWidth += clipX.right; |
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SkipSize skipSize; |
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if (remainingWidth > 0) { |
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skipSize.xOffset = static_cast<int_fast16_t>(src.width) - remainingWidth; |
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src.begin = SkipRestOfLineWithOverrun( |
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src.begin, static_cast<int_fast16_t>(src.width), skipSize); |
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} else { |
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skipSize = GetSkipSize(remainingWidth, static_cast<int_fast16_t>(src.width)); |
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} |
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xOffset = skipSize.xOffset; |
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dst -= dstPitch * skipSize.wholeLines + clipX.width; |
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} |
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} |
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template <typename BlitFn> |
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void DoRenderBackwards( |
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const Surface &out, Point position, const uint8_t *src, size_t srcSize, |
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unsigned srcWidth, unsigned srcHeight, BlitFn &&blitFn) |
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{ |
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if (position.y < 0 || position.y + 1 >= static_cast<int>(out.h() + srcHeight)) |
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return; |
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const ClipX clipX = CalculateClipX(position.x, srcWidth, out); |
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if (clipX.width <= 0) |
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return; |
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RenderSrc srcForBackwards { src, src + srcSize, static_cast<uint_fast16_t>(srcWidth) }; |
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if (static_cast<std::size_t>(clipX.width) == srcWidth) { |
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DoRenderBackwardsClipY( |
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out, position, srcForBackwards, std::forward<BlitFn>(blitFn)); |
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} else { |
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DoRenderBackwardsClipXY( |
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out, position, srcForBackwards, clipX, std::forward<BlitFn>(blitFn)); |
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} |
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} |
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constexpr size_t MaxOutlinePixels = 4096; |
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constexpr size_t MaxOutlineSpriteWidth = 253; |
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using OutlinePixels = StaticVector<PointOf<uint8_t>, MaxOutlinePixels>; |
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using OutlineRowSolidRuns = StaticVector<std::pair<uint8_t, uint8_t>, MaxOutlineSpriteWidth / 2 + 1>; |
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struct OutlinePixelsCacheEntry { |
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OutlinePixels outlinePixels; |
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const void *spriteData = nullptr; |
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bool skipColorIndexZero; |
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}; |
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OutlinePixelsCacheEntry OutlinePixelsCache; |
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void PopulateOutlinePixelsForRow( |
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const OutlineRowSolidRuns &runs, |
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const bool *DVL_RESTRICT below, |
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bool *DVL_RESTRICT cur, |
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bool *DVL_RESTRICT above, |
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uint8_t y, |
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OutlinePixels &result) |
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{ |
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DVL_ASSUME(!runs.empty()); |
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for (const auto &[begin, end] : runs) { |
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if (!cur[static_cast<uint8_t>(begin - 1)]) { |
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result.emplace_back(static_cast<uint8_t>(begin - 1), y); |
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cur[static_cast<uint8_t>(begin - 1)] = true; |
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} |
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if (!cur[end]) { |
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result.emplace_back(end, y); |
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cur[end] = true; |
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} |
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for (uint8_t x = begin; x < end; ++x) { |
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if (!below[x]) { |
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result.emplace_back(x, static_cast<uint8_t>(y + 1)); |
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} |
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if (!above[x]) { |
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result.emplace_back(x, static_cast<uint8_t>(y - 1)); |
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above[x] = true; |
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} |
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} |
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} |
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} |
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void AppendOutlineRowSolidRuns(uint8_t x, uint8_t w, OutlineRowSolidRuns &solidRuns) |
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{ |
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if (solidRuns.empty() || solidRuns.back().second != x) { |
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solidRuns.emplace_back(x, x + w); |
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} else { |
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solidRuns.back().second = static_cast<uint8_t>(x + w); |
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} |
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} |
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template <bool SkipColorIndexZero> |
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void GetOutline(ClxSprite sprite, OutlinePixels &result) // NOLINT(readability-function-cognitive-complexity) |
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{ |
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const unsigned width = sprite.width(); |
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assert(width < MaxOutlineSpriteWidth); |
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int x = 1; |
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auto y = static_cast<uint8_t>(sprite.height()); |
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bool rows[3][MaxOutlineSpriteWidth + 2] = { {}, {}, {} }; |
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bool *rowAbove = rows[0]; |
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bool *row = rows[1]; |
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bool *rowBelow = rows[2]; |
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OutlineRowSolidRuns solidRuns[2]; |
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OutlineRowSolidRuns *solidRunAbove = &solidRuns[0]; |
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OutlineRowSolidRuns *solidRun = &solidRuns[1]; |
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const uint8_t *src = sprite.pixelData(); |
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const uint8_t *const end = src + sprite.pixelDataSize(); |
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while (src < end) { |
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while (x <= static_cast<int>(width)) { |
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const auto v = static_cast<uint8_t>(*src++); |
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uint8_t w; |
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if (IsClxOpaque(v)) { |
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if constexpr (SkipColorIndexZero) { |
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if (IsClxOpaqueFill(v)) { |
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w = GetClxOpaqueFillWidth(v); |
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const auto color = static_cast<uint8_t>(*src++); |
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if (color != 0) { |
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AppendOutlineRowSolidRuns(x, w, *solidRunAbove); |
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} |
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} else { |
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w = GetClxOpaquePixelsWidth(v); |
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bool prevZero = solidRunAbove->empty() || solidRunAbove->back().second != x; |
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for (unsigned i = 0; i < w; ++i) { |
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const auto color = static_cast<uint8_t>(src[i]); |
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if (color == 0) { |
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if (!prevZero) ++solidRunAbove->back().second; |
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prevZero = true; |
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} else { |
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if (prevZero) solidRunAbove->emplace_back(x + i, x + i); |
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++solidRunAbove->back().second; |
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prevZero = false; |
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} |
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} |
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src += w; |
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} |
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} else { |
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if (IsClxOpaqueFill(v)) { |
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w = GetClxOpaqueFillWidth(v); |
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++src; |
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} else { |
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w = GetClxOpaquePixelsWidth(v); |
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src += w; |
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} |
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AppendOutlineRowSolidRuns(x, w, *solidRunAbove); |
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} |
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} else { |
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w = v; |
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} |
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x += w; |
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} |
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for (const auto &[xBegin, xEnd] : *solidRunAbove) { |
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std::fill(rowAbove + xBegin, rowAbove + xEnd, true); |
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} |
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if (!solidRun->empty()) { |
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PopulateOutlinePixelsForRow(*solidRun, rowBelow, row, rowAbove, static_cast<uint8_t>(y + 1), result); |
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} |
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// (0, 1, 2) => (2, 0, 1) |
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std::swap(row, rowBelow); |
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std::swap(row, rowAbove); |
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std::fill_n(rowAbove, width, false); |
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std::swap(solidRunAbove, solidRun); |
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solidRunAbove->clear(); |
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if (x > static_cast<int>(width + 1)) { |
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// Transparent overrun. |
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const unsigned numWholeTransparentLines = (x - 1) / width; |
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if (numWholeTransparentLines > 1) { |
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if (!solidRun->empty()) { |
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PopulateOutlinePixelsForRow(*solidRun, rowBelow, row, rowAbove, y, result); |
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} |
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solidRun->clear(); |
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std::fill_n(row, width, false); |
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} |
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if (numWholeTransparentLines > 2) std::fill_n(rowBelow, width, false); |
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y -= static_cast<uint8_t>(numWholeTransparentLines); |
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x = static_cast<int>((x - 1) % width) + 1; |
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} else { |
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--y; |
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x = 1; |
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} |
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} |
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std::fill_n(rowAbove, width, false); |
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if (!solidRun->empty()) { |
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PopulateOutlinePixelsForRow(*solidRun, rowBelow, row, rowAbove, static_cast<uint8_t>(y + 1), result); |
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} |
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} |
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template <bool SkipColorIndexZero> |
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void UpdateOutlinePixelsCache(ClxSprite sprite) |
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{ |
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if (OutlinePixelsCache.spriteData == sprite.pixelData() |
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&& OutlinePixelsCache.skipColorIndexZero == SkipColorIndexZero) { |
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return; |
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} |
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OutlinePixelsCache.skipColorIndexZero = SkipColorIndexZero; |
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OutlinePixelsCache.spriteData = sprite.pixelData(); |
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OutlinePixelsCache.outlinePixels.clear(); |
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GetOutline<SkipColorIndexZero>(sprite, OutlinePixelsCache.outlinePixels); |
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} |
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template <bool SkipColorIndexZero> |
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void RenderClxOutline(const Surface &out, Point position, ClxSprite sprite, uint8_t color) |
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{ |
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UpdateOutlinePixelsCache<SkipColorIndexZero>(sprite); |
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--position.x; |
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position.y -= sprite.height(); |
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if (position.x >= 0 && position.x + sprite.width() + 2 < out.w() |
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&& position.y >= 0 && position.y + sprite.height() + 2 < out.h()) { |
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for (const auto &[x, y] : OutlinePixelsCache.outlinePixels) { |
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*out.at(position.x + x, position.y + y) = color; |
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} |
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} else { |
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for (const auto &[x, y] : OutlinePixelsCache.outlinePixels) { |
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out.SetPixel(Point(position.x + x, position.y + y), color); |
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} |
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} |
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} |
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void ClxApplyTrans(ClxSprite sprite, const uint8_t *trn) |
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{ |
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// A bit of a hack but this is the only place in the code where we need mutable sprites. |
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auto *dst = const_cast<uint8_t *>(sprite.pixelData()); |
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uint16_t remaining = sprite.pixelDataSize(); |
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while (remaining != 0) { |
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uint8_t val = *dst++; |
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--remaining; |
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if (!IsClxOpaque(val)) |
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continue; |
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if (IsClxOpaqueFill(val)) { |
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--remaining; |
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*dst = trn[*dst]; |
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dst++; |
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} else { |
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val = GetClxOpaquePixelsWidth(val); |
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remaining -= val; |
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while (val-- > 0) { |
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*dst = trn[*dst]; |
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dst++; |
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} |
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} |
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} |
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} |
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} // namespace |
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void ClxApplyTrans(ClxSpriteList list, const uint8_t *trn) |
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{ |
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for (ClxSprite sprite : list) { |
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ClxApplyTrans(sprite, trn); |
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} |
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} |
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void ClxApplyTrans(ClxSpriteSheet sheet, const uint8_t *trn) |
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{ |
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for (ClxSpriteList list : sheet) { |
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ClxApplyTrans(list, trn); |
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} |
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} |
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bool IsPointWithinClx(Point position, ClxSprite clx) |
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{ |
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const uint8_t *src = clx.pixelData(); |
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const uint8_t *end = src + clx.pixelDataSize(); |
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const uint16_t width = clx.width(); |
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int xCur = 0; |
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int yCur = clx.height() - 1; |
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while (src < end) { |
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if (yCur != position.y) { |
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SkipSize skipSize {}; |
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skipSize.xOffset = xCur; |
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src = SkipRestOfLineWithOverrun(src, width, skipSize); |
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yCur -= skipSize.wholeLines; |
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xCur = skipSize.xOffset; |
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if (yCur < position.y) |
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return false; |
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continue; |
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} |
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while (xCur < width) { |
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uint8_t val = *src++; |
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if (!IsClxOpaque(val)) { |
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// ignore transparent |
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xCur += val; |
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if (xCur > position.x) |
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return false; |
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continue; |
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} |
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if (IsClxOpaqueFill(val)) { |
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val = GetClxOpaqueFillWidth(val); |
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uint8_t color = *src++; |
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if (xCur <= position.x && position.x < xCur + val) |
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return color != 0; // ignore shadows |
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xCur += val; |
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} else { |
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val = GetClxOpaquePixelsWidth(val); |
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for (uint8_t pixel = 0; pixel < val; pixel++) { |
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uint8_t color = *src++; |
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if (xCur == position.x) |
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return color != 0; // ignore shadows |
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xCur++; |
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} |
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} |
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} |
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return false; |
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} |
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return false; |
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} |
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std::pair<int, int> ClxMeasureSolidHorizontalBounds(ClxSprite clx) |
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{ |
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const uint8_t *src = clx.pixelData(); |
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const uint8_t *end = src + clx.pixelDataSize(); |
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const uint16_t width = clx.width(); |
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int xBegin = width; |
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int xEnd = 0; |
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int xCur = 0; |
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while (src < end) { |
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while (xCur < width) { |
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auto val = *src++; |
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if (!IsClxOpaque(val)) { |
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xCur += val; |
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continue; |
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} |
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if (IsClxOpaqueFill(val)) { |
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val = GetClxOpaqueFillWidth(val); |
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++src; |
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} else { |
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val = GetClxOpaquePixelsWidth(val); |
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src += val; |
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} |
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xBegin = std::min(xBegin, xCur); |
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xCur += val; |
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xEnd = std::max(xEnd, xCur); |
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} |
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while (xCur >= width) |
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xCur -= width; |
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if (xBegin == 0 && xEnd == width) |
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break; |
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} |
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return { xBegin, xEnd }; |
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} |
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#ifdef DEBUG_CLX |
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std::string ClxDescribe(ClxSprite clx) |
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{ |
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std::string out = StrCat( |
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"CLX sprite: ", clx.width(), "x", clx.height(), " pixelDataSize=", clx.pixelDataSize(), |
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"b\n\n" |
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"command | width | bytes | color(s)\n" |
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"--------|------:|------:|---------\n"); |
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const uint8_t *src = clx.pixelData(); |
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const uint8_t *end = src + clx.pixelDataSize(); |
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while (src < end) { |
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const uint8_t control = *src++; |
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if (IsClxOpaque(control)) { |
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if (IsClxOpaqueFill(control)) { |
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const uint8_t length = GetClxOpaqueFillWidth(control); |
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out.append(fmt::format("Fill | {:>5} | {:>5} | {}\n", length, 2, src[1])); |
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++src; |
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} else { |
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const uint8_t length = GetClxOpaquePixelsWidth(control); |
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out.append(fmt::format("Pixels | {:>5} | {:>5} | {}\n", length, length + 1, fmt::join(src + 1, src + 1 + length, " "))); |
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src += length; |
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} |
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} else { |
|
out.append(fmt::format("Transp. | {:>5} | {:>5} |\n", control, 1)); |
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} |
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} |
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return out; |
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} |
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#endif // DEBUG_CLX |
|
|
|
void ClxDraw(const Surface &out, Point position, ClxSprite clx) |
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{ |
|
DoRenderBackwards(out, position, clx.pixelData(), clx.pixelDataSize(), clx.width(), clx.height(), BlitDirect {}); |
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} |
|
|
|
void ClxDrawTRN(const Surface &out, Point position, ClxSprite clx, const uint8_t *trn) |
|
{ |
|
DoRenderBackwards(out, position, clx.pixelData(), clx.pixelDataSize(), clx.width(), clx.height(), BlitWithMap { trn }); |
|
} |
|
|
|
void ClxDrawBlended(const Surface &out, Point position, ClxSprite clx) |
|
{ |
|
DoRenderBackwards(out, position, clx.pixelData(), clx.pixelDataSize(), clx.width(), clx.height(), BlitBlended {}); |
|
} |
|
|
|
void ClxDrawBlendedTRN(const Surface &out, Point position, ClxSprite clx, const uint8_t *trn) |
|
{ |
|
DoRenderBackwards(out, position, clx.pixelData(), clx.pixelDataSize(), clx.width(), clx.height(), BlitBlendedWithMap { trn }); |
|
} |
|
|
|
void ClxDrawOutline(const Surface &out, uint8_t col, Point position, ClxSprite clx) |
|
{ |
|
RenderClxOutline</*SkipColorIndexZero=*/false>(out, position, clx, col); |
|
} |
|
|
|
void ClxDrawOutlineSkipColorZero(const Surface &out, uint8_t col, Point position, ClxSprite clx) |
|
{ |
|
RenderClxOutline</*SkipColorIndexZero=*/true>(out, position, clx, col); |
|
} |
|
|
|
void ClearClxDrawCache() |
|
{ |
|
OutlinePixelsCache.spriteData = nullptr; |
|
} |
|
|
|
} // namespace devilution
|
|
|