| 1 | module principal_cshift_m |
|---|
| 2 | |
|---|
| 3 | IMPLICIT NONE |
|---|
| 4 | |
|---|
| 5 | CONTAINS |
|---|
| 6 | |
|---|
| 7 | SUBROUTINE principal_cshift(is2, xlon, xprimm) |
|---|
| 8 | |
|---|
| 9 | ! Add or subtract 2 pi so that xlon is near [-pi, pi], then cshift |
|---|
| 10 | ! so that xlon is in ascending order. Make the same cshift on |
|---|
| 11 | ! xprimm. |
|---|
| 12 | |
|---|
| 13 | USE lmdz_dimensions, ONLY: iim, jjm, llm, ndm |
|---|
| 14 | USE lmdz_physical_constants, ONLY: twopi |
|---|
| 15 | USE serre_mod, ONLY: clon |
|---|
| 16 | |
|---|
| 17 | |
|---|
| 18 | ! for iim |
|---|
| 19 | |
|---|
| 20 | INTEGER, INTENT(IN):: is2 |
|---|
| 21 | REAL, INTENT(INOUT):: xlon(:), xprimm(:) ! (iim + 1) |
|---|
| 22 | |
|---|
| 23 | !----------------------------------------------------- |
|---|
| 24 | |
|---|
| 25 | IF (is2 /= 0) THEN |
|---|
| 26 | IF (clon <= 0.) THEN |
|---|
| 27 | IF (is2 /= 1) THEN |
|---|
| 28 | xlon(:is2 - 1) = xlon(:is2 - 1) + twopi |
|---|
| 29 | xlon(:iim) = cshift(xlon(:iim), shift = is2 - 1) |
|---|
| 30 | xprimm(:iim) = cshift(xprimm(:iim), shift = is2 - 1) |
|---|
| 31 | END IF |
|---|
| 32 | else |
|---|
| 33 | xlon(is2 + 1:iim) = xlon(is2 + 1:iim) - twopi |
|---|
| 34 | xlon(:iim) = cshift(xlon(:iim), shift = is2) |
|---|
| 35 | xprimm(:iim) = cshift(xprimm(:iim), shift = is2) |
|---|
| 36 | end IF |
|---|
| 37 | end if |
|---|
| 38 | |
|---|
| 39 | xlon(iim + 1) = xlon(1) + twopi |
|---|
| 40 | xprimm(iim + 1) = xprimm(1) |
|---|
| 41 | |
|---|
| 42 | END SUBROUTINE principal_cshift |
|---|
| 43 | |
|---|
| 44 | END MODULE principal_cshift_m |
|---|