Try to debug error
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@ -6,6 +6,7 @@ from libc.math cimport sin, cos, abs, floor, sqrt
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import numpy as np
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cimport numpy as npx
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cimport cython
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from copy cimport *
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ctypedef npx.float64_t DTYPE_t
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DTYPE=np.float64
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@ -560,11 +561,11 @@ cdef DTYPE_t cube_integral_trilin(DTYPE_t u[3], DTYPE_t u0[3], int r[1], DTYPE_t
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alpha_max = tmp_a
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j = i
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if (u0[i] < 0 or u0[i] > 1):
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err[0] = 1
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with gil:
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print("Bouh! u0[%d] = %lg" % (i, u0[i]))
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return 0
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# if (u0[i] < 0 or u0[i] > 1):
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# err[0] = 1
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# with gil:
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# print("Bouh! u0[%d] = %lg" % (i, u0[i]))
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# return 0
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I = compute_projection(vertex_value, u, u0, alpha_max)
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@ -595,10 +596,6 @@ cdef DTYPE_t integrator1(DTYPE_t[:,:,:] density,
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cdef int i
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for i in xrange(3):
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# if u[i] < 0:
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# a[i][0] = iu0[i]-1
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# a[i][1] = iu0[i]
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# else:
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a[i][0] = iu0[i]
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a[i][1] = iu0[i]+1
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@ -658,17 +655,19 @@ cdef DTYPE_t C_line_of_sight_projection(DTYPE_t[:,:,:] density,
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u0[i] = a_u[i]*min_distance
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ifu0[i] = half_N+u0[i]+shifter[i]
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if (ifu0[i] <= 0 or ifu0[i] >= N):
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with gil:
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print "BLABLA"
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return 0
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iu0[i] = int(floor(ifu0[i]))
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u0[i] = ifu0[i]-iu0[i]
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u_delta[i] = 1 if iu0[i] > 0 else -1
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if (not ((iu0[i]>= 0) and (iu0[i] < N))):
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out_err[0] = 1
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return 0
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# if (not ((iu0[i]>= 0) and (iu0[i] < N))):
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# out_err[0] = 1
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# return 0
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if (not (u0[i]>=0 and u0[i]<=1)):
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out_err[0] = 1
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return 0
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# if (not (u0[i]>=0 and u0[i]<=1)):
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# out_err[0] = 1
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# return 0
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completed = 0
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if ((iu0[0] >= N) or (iu0[0] <= 0) or
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@ -682,11 +681,11 @@ cdef DTYPE_t C_line_of_sight_projection(DTYPE_t[:,:,:] density,
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err[0] = 0
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I0 += integrator(density, u, u0, u_delta, iu0, jumper, err)
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if err[0] == 1:
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with gil:
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print("Bah! error!")
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out_err[0] = 1
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return 0
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# if err[0] == 1:
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# with gil:
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# print("Bah! error!")
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# out_err[0] = 1
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# return 0
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if u[jumper[0]] < 0:
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iu0[jumper[0]] -= 1
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@ -703,7 +702,7 @@ cdef DTYPE_t C_line_of_sight_projection(DTYPE_t[:,:,:] density,
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else:
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dist2 = 0
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for i in range(3):
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delta = iu0[i]+u0[i]-half_N
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delta = iu0[i]+u0[i]-half_N-shifter[i]
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dist2 += delta*delta
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if (dist2 > max_distance2):
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@ -731,8 +730,8 @@ def line_of_sight_projection(DTYPE_t[:,:,:] density not None,
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u,
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min_distance,
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max_distance, shifter, integrator_id, out_err)
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if out_err[0] == 1:
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raise RuntimeError("Error occured during integration")
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# if out_err[0] == 1:
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# raise RuntimeError("Error occured during integration")
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return v
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cdef double _spherical_projloop(double theta, double phi, DTYPE_t[:,:,:] density,
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@ -747,24 +746,6 @@ cdef double _spherical_projloop(double theta, double phi, DTYPE_t[:,:,:] density
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return C_line_of_sight_projection(density, u0, min_distance, max_distance, shifter, integrator_id, out_err)
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ctypedef fused sum_type:
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cython.int
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cython.float
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npx.uint64_t
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npx.uint32_t
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@cython.boundscheck(False)
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cdef sum_type _mysum(sum_type[:] jobs) nogil:
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cdef sum_type s
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cdef npx.uint64_t N
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cdef int i
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s = 0
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N = jobs.shape[0]
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for i in xrange(N):
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s += jobs[i]
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return s
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@cython.boundscheck(False)
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def spherical_projection(int Nside,
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@ -808,7 +789,7 @@ def spherical_projection(int Nside,
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if omp_get_thread_num() == 0 and progress != 0 and (i%booster) == 0:
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with gil:
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p.update(_mysum(job_done))
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out_err[0] = 0
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# out_err[0] = 0
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outm[i] = _spherical_projloop(theta[i], phi[i], density_view, min_distance, max_distance, shifter, integrator_id, out_err)
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job_done[omp_get_thread_num()] = i
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22
python/copy.pxd
Normal file
22
python/copy.pxd
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@ -0,0 +1,22 @@
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cimport cython
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cimport numpy as npx
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ctypedef fused sum_type:
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cython.int
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cython.float
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npx.uint64_t
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npx.uint32_t
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@cython.boundscheck(False)
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cdef inline sum_type _mysum(sum_type[:] jobs) nogil:
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cdef sum_type s
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cdef npx.uint64_t N
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cdef int i
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s = 0
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N = jobs.shape[0]
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for i in xrange(N):
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s += jobs[i]
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return s
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