.. _devguide_statepoint: ====================================== State Point Binary File Specifications ====================================== ----------- Revision 11 ----------- **integer(4) FILETYPE_STATEPOINT** Flags whether this file is a statepoint file or a particle restart file. **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **character(255) path** Absolute path to directory containing input files. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch \* gen_per_batch* **real(8) k_generation(i)** k-effective for the i-th total generation *do i = 1, current_batch \* gen_per_batch* **real(8) entropy(i)** Shannon entropy for the i-th total generation **real(8) k_col_abs** Sum of product of collision/absorption estimates of k-effective **real(8) k_col_tra** Sum of product of collision/track-length estimates of k-effective **real(8) k_abs_tra** Sum of product of absorption/track-length estimates of k-effective **real(8) k_combined(2)** Mean and standard deviation of a combined estimate of k-effective **integer(4) cmfd_on** Flag that cmfd is on if (cmfd_on) **integer(4) cmfd % indices** Indices for cmfd mesh (i,j,k,g) **real(8) cmfd % k_cmfd(1:current_batch)** CMFD eigenvalues **real(8) cmfd % src(1:G,1:I,1:J,1:K)** CMFD fission source **real(8) cmfd % entropy(1:current_batch)** CMFD estimate of Shannon entropy **real(8) cmfd % balance(1:current_batch)** RMS of the residual neutron balance equation on CMFD mesh **real(8) cmfd % dom(1:current_batch)** CMFD estimate of dominance ratio **real(8) cmfd % scr_cmp(1:current_batch)** RMS comparison of difference between OpenMC and CMFD fission source **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % id** Unique ID of mesh. **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) tallies(i) % id** Unique ID of tally. **integer(4) tallies(i) % n_realizations** Number of realizations for the i-th tally. **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % scatt_order(j)** Scattering Order specified scoring bins. **integer(4) tallies(i) % n_score_bins** Number of scoring bins without accounting for those added by the scatter-pn command. **integer(4) source_present** Flag indicated if source bank is present in the file **integer(4) n_realizations** Number of realizations for global tallies. **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE and source_present) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ----------- Revision 10 ----------- **integer(4) FILETYPE_STATEPOINT** Flags whether this file is a statepoint file or a particle restart file. **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **character(255) path** Absolute path to directory containing input files. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch \* gen_per_batch* **real(8) k_generation(i)** k-effective for the i-th total generation *do i = 1, current_batch \* gen_per_batch* **real(8) entropy(i)** Shannon entropy for the i-th total generation **real(8) k_col_abs** Sum of product of collision/absorption estimates of k-effective **real(8) k_col_tra** Sum of product of collision/track-length estimates of k-effective **real(8) k_abs_tra** Sum of product of absorption/track-length estimates of k-effective **real(8) k_combined(2)** Mean and standard deviation of a combined estimate of k-effective **integer(4) cmfd_on** Flag that cmfd is on if (cmfd_on) **integer(4) cmfd % indices** Indices for cmfd mesh (i,j,k,g) **real(8) cmfd % k_cmfd(1:current_batch)** CMFD eigenvalues **real(8) cmfd % src(1:I,1:J,1:K,1:G)** CMFD fission source **real(8) cmfd % entropy(1:current_batch)** CMFD estimate of Shannon entropy **real(8) cmfd % balance(1:current_batch)** RMS of the residual neutron balance equation on CMFD mesh **real(8) cmfd % dom(1:current_batch)** CMFD estimate of dominance ratio **real(8) cmfd % scr_cmp(1:current_batch)** RMS comparison of difference between OpenMC and CMFD fission source **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % id** Unique ID of mesh. **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) tallies(i) % id** Unique ID of tally. **integer(4) tallies(i) % n_realizations** Number of realizations for the i-th tally. **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % scatt_order(j)** Scattering Order specified scoring bins. **integer(4) tallies(i) % n_score_bins** Number of scoring bins without accounting for those added by the scatter-pn command. **integer(4) n_realizations** Number of realizations for global tallies. **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ---------- Revision 9 ---------- **integer(4) FILETYPE_STATEPOINT** Flags whether this file is a statepoint file or a particle restart file. **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **character(255) path** Absolute path to directory containing input files. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch \* gen_per_batch* **real(8) k_generation(i)** k-effective for the i-th total generation *do i = 1, current_batch \* gen_per_batch* **real(8) entropy(i)** Shannon entropy for the i-th total generation **real(8) k_col_abs** Sum of product of collision/absorption estimates of k-effective **real(8) k_col_tra** Sum of product of collision/track-length estimates of k-effective **real(8) k_abs_tra** Sum of product of absorption/track-length estimates of k-effective **real(8) k_combined(2)** Mean and standard deviation of a combined estimate of k-effective **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % id** Unique ID of mesh. **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) tallies(i) % id** Unique ID of tally. **integer(4) tallies(i) % n_realizations** Number of realizations for the i-th tally. **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % scatt_order(j)** Scattering Order specified scoring bins. **integer(4) tallies(i) % n_score_bins** Number of scoring bins without accounting for those added by the scatter-pn command. **integer(4) n_realizations** Number of realizations for global tallies. **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ---------- Revision 8 ---------- **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **character(255) path** Absolute path to directory containing input files. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch* **real(8) k_batch(i)** k-effective for the i-th batch *do i = 1, current_batch \* gen_per_batch* **real(8) entropy(i)** Shannon entropy for the i-th batch **real(8) k_col_abs** Sum of product of collision/absorption estimates of k-effective **real(8) k_col_tra** Sum of product of collision/track-length estimates of k-effective **real(8) k_abs_tra** Sum of product of absorption/track-length estimates of k-effective **real(8) k_combined(2)** Mean and standard deviation of a combined estimate of k-effective **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % id** Unique ID of mesh. **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) tallies(i) % id** Unique ID of tally. **integer(4) tallies(i) % n_realizations** Number of realizations for the i-th tally. **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % scatt_order(j)** Scattering Order specified scoring bins. **integer(4) tallies(i) % n_score_bins** Number of scoring bins without accounting for those added by the scatter-pn command. **integer(4) n_realizations** Number of realizations for global tallies. **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ---------- Revision 7 ---------- **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **character(255) path** Absolute path to directory containing input files. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch* **real(8) k_batch(i)** k-effective for the i-th batch *do i = 1, current_batch \* gen_per_batch* **real(8) entropy(i)** Shannon entropy for the i-th batch **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % id** Unique ID of mesh. **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) tallies(i) % id** Unique ID of tally. **integer(4) tallies(i) % n_realizations** Number of realizations for the i-th tally. **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % scatt_order(j)** Scattering Order specified scoring bins. **integer(4) tallies(i) % n_score_bins** Number of scoring bins without accounting for those added by the scatter-pn command. **integer(4) n_realizations** Number of realizations for global tallies. **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ---------- Revision 6 ---------- **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **character(255) path** Absolute path to directory containing input files. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch* **real(8) k_batch(i)** k-effective for the i-th batch *do i = 1, current_batch* **real(8) entropy(i)** Shannon entropy for the i-th batch **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % id** Unique ID of mesh. **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) tallies(i) % id** Unique ID of tally. **integer(4) tallies(i) % n_realizations** Number of realizations for the i-th tally. **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). **integer(4) n_realizations** Number of realizations for global tallies. **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ---------- Revision 5 ---------- **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch* **real(8) k_batch(i)** k-effective for the i-th batch *do i = 1, current_batch* **real(8) entropy(i)** Shannon entropy for the i-th batch **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) tallies(i) % n_realizations** Number of realizations for the i-th tally. **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). **integer(4) n_realizations** Number of realizations for global tallies. **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ---------- Revision 4 ---------- **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch* **real(8) k_batch(i)** k-effective for the i-th batch *do i = 1, current_batch* **real(8) entropy(i)** Shannon entropy for the i-th batch **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) **integer(4) n_realizations** Number of realizations for tally random variables. *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ---------- Revision 3 ---------- **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **character(19) time_stamp** Date and time the state point was written. **integer(8) seed** Pseudo-random number generator seed. **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) current_batch** The number of batches already simulated. if (run_mode == MODE_EIGENVALUE) **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations *do i = 1, current_batch* **real(8) k_batch(i)** k-effective for the i-th batch *do i = 1, current_batch* **real(8) entropy(i)** Shannon entropy for the i-th batch **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) n_meshes** Number of meshes in tallies.xml file *do i = 1, n_meshes* **integer(4) meshes(i) % type** Type of mesh. **integer(4) meshes(i) % n_dimension** Number of dimensions for mesh (2 or 3). **integer(4) meshes(i) % dimension(:)** Number of mesh cells in each dimension. **real(8) meshes(i) % lower_left(:)** Coordinates of lower-left corner of mesh. **real(8) meshes(i) % upper_right(:)** Coordinates of upper-right corner of mesh. **real(8) meshes(i) % width(:)** Width of each mesh cell in each dimension. **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally **integer(4) tallies(i) % n_filters** *do j = 1, tallies(i) % n_filters* **integer(4) tallies(i) % filter(j) % type** Type of tally filter. **integer(4) tallies(i) % filter(j) % n_bins** Number of bins for filter. **integer(4)/real(8) tallies(i) % filter(j) % bins(:)** Value for each filter bin of this type. **integer(4) tallies(i) % n_nuclide_bins** Number of nuclide bins. If none are specified, this is just one. *do j = 1, tallies(i) % n_nuclide_bins* **integer(4) tallies(i) % nuclide_bins(j)** Values of specified nuclide bins **integer(4) tallies(i) % n_score_bins** Number of scoring bins. *do j = 1, tallies(i) % n_score_bins* **integer(4) tallies(i) % score_bins(j)** Values of specified scoring bins (e.g. SCORE_FLUX). **integer(4) tallies_on** Flag indicated if tallies are present in the file. if (tallies_on > 0) *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally if (run_mode == MODE_EIGENVALUE) *do i = 1, n_particles* **real(8) source_bank(i) % wgt** Weight of the i-th source particle **real(8) source_bank(i) % xyz(1:3)** Coordinates of the i-th source particle. **real(8) source_bank(i) % uvw(1:3)** Direction of the i-th source particle **real(8) source_bank(i) % E** Energy of the i-th source particle. ---------- Revision 2 ---------- **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations **integer(4) current_batch** The number of batches already simulated. *do i = 1, current_batch* **real(8) k_batch(i)** k-effective for the i-th batch if (entropy_on) **real(8) entropy(i)** Shannon entropy for the i-th batch **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally *do i = 1, n_tallies* *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally ---------- Revision 1 ---------- **integer(4) REVISION_STATEPOINT** Revision of the binary state point file. Any time a change is made in the format of the state-point file, this integer is incremented. **integer(4) VERSION_MAJOR** Major version number for OpenMC **integer(4) VERSION_MINOR** Minor version number for OpenMC **integer(4) VERSION_RELEASE** Release version number for OpenMC **integer(4) run_mode** run mode used. The modes are described in constants.F90. **integer(8) n_particles** Number of particles used per generation. **integer(4) n_batches** Total number of batches (active + inactive). **integer(4) n_inactive** Number of inactive batches **integer(4) gen_per_batch** Number of generations per batch for criticality calculations **integer(4) current_batch** The number of batches already simulated. *do i = 1, current_batch* **real(8) k_batch(i)** k-effective for the i-th batch if (entropy_on) **real(8) entropy(i)** Shannon entropy for the i-th batch **integer(4) N_GLOBAL_TALLIES** Number of global tally scores *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum** Accumulated sum for the i-th global tally *do i = 1, N_GLOBAL_TALLIES* **real(8) global_tallies(i) % sum_sq** Accumulated sum of squares for the i-th global tally **integer(4) n_tallies** *do i = 1, n_tallies* **integer(4) size(tallies(i) % scores, 1)** Total number of score bins for the i-th tally **integer(4) size(tallies(i) % scores, 2)** Total number of filter bins for the i-th tally *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum** Accumulated sum for the j-th score and k-th filter of the i-th tally *do k = 1, size(tallies(i) % scores, 2)* *do j = 1, size(tallies(i) % scores, 1)* **real(8) tallies(i) % scores(j,k) % sum_sq** Accumulated sum of squares for the j-th score and k-th filter of the i-th tally