One has to go the numpy route?
import numpy as np
import arcpy
#source http://forums.arcgis.com/threads/865-quot-built-in-quot-rasters-in-python-map-algebra
#with some fiddling
# Setup some rasters of rows and columns
# (like old $$ROWMAP and $$COLMAP)
arcpy.env.workspace = "c:/temp"
arcpy.env.overwriteOutput = 1
nprows = np.indices((10,10))[0]
npcols = np.indices((10,10))[1]
# Convert the numpy arrays to ESRI rasters (ie Raster objects)
# called 'rows' and 'cols'
row_ras = arcpy.NumPyArrayToRaster(nprows)
row_ras.save("rowraster")
col_ras = arcpy.NumPyArrayToRaster(npcols)
col_ras.save("colraster")
print row_ras
print col_ras
import arcgisscripting gp = arcgisscripting.create(9.3) #This works in ArcGIS 10!!! expr=gp.getparameterastext(0) output=gp.getparameterastext(1) result=gp.SingleOutputMapAlgebra(expr,output)
Luke -- arcgisscripting is still there under arcpy. (You probably know this by know as this post was 2011!)
So this works (for now anyway).
import arcpy
arcpy.env.scratchWorkspace = r"D:\Users\cprice\work"
arcpy.CheckOutExtension("spatial")
arcpy.env.extent = arcpy.Extent(0, 0, 10, 10)
arcpy.env.cellSize = 1
arcpy.gp.SingleOutputMapAlgebra_sa("$$ROWMAP"), "rowmap")
The best workaround I found in that environment was to compute flow accumulations for constant direction grids (and unit weights): $$ColMap is the flow accumulation of a grid filled with 1's and $$RowMap is the flow accumulation of a grid filled with 4's.
I did an implementation of this idea in arcpy map algebra here:
arcpy map algebra $$ROWMAP, $$COLMAP