diff options
author | Rémi Verschelde <rverschelde@gmail.com> | 2020-05-10 12:56:01 +0200 |
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committer | Rémi Verschelde <rverschelde@gmail.com> | 2020-05-10 13:12:16 +0200 |
commit | e956e80c1fa1cc8aefcb1533e5acf5cf3c8ffdd9 (patch) | |
tree | 8f162f9162ca0dfa35841a9c734a0529764cb458 /core/math/geometry.h | |
parent | 03b13e0c695bb63043c3ca8665083bae1960aca4 (diff) |
Style: clang-format: Disable AllowShortIfStatementsOnASingleLine
Part of #33027, also discussed in #29848.
Enforcing the use of brackets even on single line statements would be
preferred, but `clang-format` doesn't have this functionality yet.
Diffstat (limited to 'core/math/geometry.h')
-rw-r--r-- | core/math/geometry.h | 24 |
1 files changed, 16 insertions, 8 deletions
diff --git a/core/math/geometry.h b/core/math/geometry.h index ea063a8a59..3bbd1911ee 100644 --- a/core/math/geometry.h +++ b/core/math/geometry.h @@ -113,10 +113,14 @@ public: real_t mub = (d_of(p1, q1, q2, q1) + mua * d_of(q2, q1, p2, p1)) / d_of(q2, q1, q2, q1); // Clip the value between [0..1] constraining the solution to lie on the original curves. - if (mua < 0) mua = 0; - if (mub < 0) mub = 0; - if (mua > 1) mua = 1; - if (mub > 1) mub = 1; + if (mua < 0) + mua = 0; + if (mub < 0) + mub = 0; + if (mua > 1) + mua = 1; + if (mub > 1) + mub = 1; c1 = p1.lerp(p2, mua); c2 = q1.lerp(q2, mub); } @@ -497,7 +501,8 @@ public: bool orientation = an.cross(bn) > 0; - if ((bn.cross(cn) > 0) != orientation) return false; + if ((bn.cross(cn) > 0) != orientation) + return false; return (cn.cross(an) > 0) == orientation; } @@ -683,7 +688,8 @@ public: // If the term we intend to square root is less than 0 then the answer won't be real, // so it definitely won't be t in the range 0 to 1. - if (sqrtterm < 0) return -1; + if (sqrtterm < 0) + return -1; // If we can assume that the line segment starts outside the circle (e.g. for continuous time collision detection) // then the following can be skipped and we can just return the equivalent of res1. @@ -691,8 +697,10 @@ public: real_t res1 = (-b - sqrtterm) / (2 * a); real_t res2 = (-b + sqrtterm) / (2 * a); - if (res1 >= 0 && res1 <= 1) return res1; - if (res2 >= 0 && res2 <= 1) return res2; + if (res1 >= 0 && res1 <= 1) + return res1; + if (res2 >= 0 && res2 <= 1) + return res2; return -1; } |