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Remove DPRKN6 interpolations as a check for crash fixing #2216

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146 changes: 1 addition & 145 deletions src/dense/interpolants.jl
Original file line number Diff line number Diff line change
Expand Up @@ -2878,148 +2878,4 @@ end
Θ * (-6 * k[6][idxs] + 18 * k[7][idxs] -
7 * k[7][idxs] * Θ)))))
out
end

"""
"""
@def dprkn6unpack begin
if cache isa OrdinaryDiffEqMutableCache
@unpack r14, r13, r12, r11, r10, r34, r33, r32, r31, r44, r43, r42, r41, r54, r53, r52, r51, r64, r63, r62, r61, rp14, rp13, rp12, rp11, rp10, rp34, rp33, rp32, rp31, rp44, rp43, rp42, rp41, rp54, rp53, rp52, rp51, rp64, rp63, rp62, rp61 = cache.tab
else
@unpack r14, r13, r12, r11, r10, r34, r33, r32, r31, r44, r43, r42, r41, r54, r53, r52, r51, r64, r63, r62, r61, rp14, rp13, rp12, rp11, rp10, rp34, rp33, rp32, rp31, rp44, rp43, rp42, rp41, rp54, rp53, rp52, rp51, rp64, rp63, rp62, rp61 = cache
end
end

@def dprkn6pre0 begin
@dprkn6unpack
b1Θ = @evalpoly(Θ, r10, r11, r12, r13, r14)
b3Θ = Θ * @evalpoly(Θ, r31, r32, r33, r34)
b4Θ = Θ * @evalpoly(Θ, r41, r42, r43, r44)
b5Θ = Θ * @evalpoly(Θ, r51, r52, r53, r54)
b6Θ = Θ * @evalpoly(Θ, r61, r62, r63, r64)

bp1Θ = @evalpoly(Θ, rp10, rp11, rp12, rp13, rp14)
bp3Θ = Θ * @evalpoly(Θ, rp31, rp32, rp33, rp34)
bp4Θ = Θ * @evalpoly(Θ, rp41, rp42, rp43, rp44)
bp5Θ = Θ * @evalpoly(Θ, rp51, rp52, rp53, rp54)
bp6Θ = Θ * @evalpoly(Θ, rp61, rp62, rp63, rp64)

kk1, kk2, kk3 = k
k1, k2 = kk1.x
k3, k4 = kk2.x
k5, k6 = kk3.x

duprev, uprev = y₀.x
dtsq = dt^2
end

@muladd function _ode_interpolant(Θ, dt, y₀, y₁, k,
cache::Union{DPRKN6ConstantCache, DPRKN6Cache},
idxs::Nothing, T::Type{Val{0}}, differential_vars::Nothing)
@dprkn6pre0
return ArrayPartition(
duprev +
dt * Θ *
(bp1Θ * k1 + bp3Θ * k3 +
bp4Θ * k4 + bp5Θ * k5 + bp6Θ * k6),
uprev +
dt * Θ *
(duprev +
dt * Θ * (b1Θ * k1 + b3Θ * k3 +
b4Θ * k4 + b5Θ * k5 + b6Θ * k6)))
end

@muladd function _ode_interpolant(Θ, dt, y₀, y₁, k,
cache::Union{DPRKN6ConstantCache, DPRKN6Cache}, idxs,
T::Type{Val{0}}, differential_vars::Nothing)
@dprkn6pre0
return ArrayPartition(
duprev[idxs] +
dt * Θ *
(bp1Θ * k1[idxs] + bp3Θ * k3[idxs] +
bp4Θ * k4[idxs] + bp5Θ * k5[idxs] + bp6Θ * k6[idxs]),
uprev[idxs] +
dt * Θ *
(duprev[idxs] +
dt * Θ *
(b1Θ * k1[idxs] +
b3Θ * k3[idxs] +
b4Θ * k4[idxs] + b5Θ * k5[idxs] + b6Θ * k6[idxs])))
end

@muladd function _ode_interpolant(Θ, dt, y₀, y₁, k,
cache::Union{DPRKN6ConstantCache, DPRKN6Cache}, idxs::Number,
T::Type{Val{0}}, differential_vars::Nothing)
@dprkn6pre0
halfsize = length(y₀) ÷ 2
if idxs <= halfsize
duprev[idxs] +
dt * Θ *
(bp1Θ * k1[idxs] + bp3Θ * k3[idxs] +
bp4Θ * k4[idxs] + bp5Θ * k5[idxs] + bp6Θ * k6[idxs])
else
idxs = idxs - halfsize
uprev[idxs] +
dt * Θ *
(duprev[idxs] +
dt * Θ *
(b1Θ * k1[idxs] +
b3Θ * k3[idxs] +
b4Θ * k4[idxs] + b5Θ * k5[idxs] + b6Θ * k6[idxs]))
end
end

@muladd function _ode_interpolant!(out, Θ, dt, y₀, y₁, k,
cache::Union{DPRKN6ConstantCache, DPRKN6Cache},
idxs::Nothing, T::Type{Val{0}}, differential_vars::Nothing)
@dprkn6pre0
@inbounds @.. broadcast=false out.x[2]=uprev +
dt * Θ *
(duprev +
dt * Θ *
(b1Θ * k1 +
b3Θ * k3 +
b4Θ * k4 + b5Θ * k5 + b6Θ * k6))
@inbounds @.. broadcast=false out.x[1]=duprev +
dt * Θ *
(bp1Θ * k1 + bp3Θ * k3 +
bp4Θ * k4 + bp5Θ * k5 + bp6Θ * k6)
#for i in eachindex(out.x[1])
# out.x[2][i] = uprev[i] + dt*Θ*(duprev[i] + dt*Θ*(b1Θ*k1[i] +
# b3Θ*k3[i] +
# b4Θ*k4[i] + b5Θ*k5[i] + b6Θ*k6[i]))
# out.x[1][i] = duprev[i] + dt*Θ*(bp1Θ*k1[i] + bp3Θ*k3[i] +
# bp4Θ*k4[i] + bp5Θ*k5[i] + bp6Θ*k6[i])
#end
out
end

@muladd function _ode_interpolant!(out, Θ, dt, y₀, y₁, k,
cache::Union{DPRKN6ConstantCache, DPRKN6Cache}, idxs,
T::Type{Val{0}}, differential_vars::Nothing)
@dprkn6pre0
halfsize = length(y₀) ÷ 2
isfirsthalf = idxs .<= halfsize
secondhalf = idxs .> halfsize
firstidxs = idxs[isfirsthalf]
secondidxs_shifted = idxs[secondhalf]
secondidxs = secondidxs_shifted .- halfsize

@views @.. broadcast=false out[secondhalf]=uprev[secondidxs] +
dt * Θ *
(duprev[secondidxs] +
dt * Θ *
(b1Θ * k1[secondidxs] +
b3Θ * k3[secondidxs] +
b4Θ * k4[secondidxs] +
b5Θ * k5[secondidxs] +
b6Θ * k6[secondidxs]))
@views @.. broadcast=false out[isfirsthalf]=duprev[firstidxs] +
dt * Θ *
(bp1Θ * k1[firstidxs] +
bp3Θ * k3[firstidxs] +
bp4Θ * k4[firstidxs] +
bp5Θ * k5[firstidxs] +
bp6Θ * k6[firstidxs])
out
end
end
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