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[diderot] Annotation of /branches/pure-cfg/TODO
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Annotation of /branches/pure-cfg/TODO

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Revision 949 - (view) (download)

1 : glk 781 ========================
2 :     SHORT TERM ============= (for curvature-based VR)
3 :     ========================
4 :    
5 : jhr 788 IL support for higher-order tensor values (matrices, etc).
6 : jhr 803 tensor construction [DONE]
7 :     tensor indexing [DONE]
8 :     tensor slicing
9 : jhr 853 verify that hessians work correctly [DONE]
10 : jhr 788
11 : jhr 821 Outer products [DONE]
12 : jhr 763
13 : jhr 813 Add M dot v, v dot M, and M dot N [DONE]
14 : jhr 763
15 : jhr 846 Identity matrix [DONE]
16 : jhr 763
17 : jhr 846 Zero tensor [DONE]
18 : jhr 822
19 : jhr 763 trace [DONE]
20 :    
21 : jhr 846 extend norm (|exp|) to tensor[3,3] [DONE]
22 : jhr 763
23 : jhr 846 Matrix addition, subtraction, and scaling [DONE]
24 : jhr 824
25 : jhr 788 Use ∇⊗ etc. syntax
26 : jhr 763 syntax [DONE]
27 :     typechecking
28 :     IL and codegen
29 :    
30 :     Add sequence types
31 :     syntax
32 :     types: ty '{' INT '}'
33 :     value construction: '{' e1 ',' … ',' en '}'
34 :     indexing: e '{' e '}'
35 :    
36 : jhr 784 Infix dot product and cross product [DONE]
37 : glk 781
38 : jhr 784 lerp on scalars and vectors [DONE]
39 :    
40 : jhr 824 Infix "^" operator for pow() [DONE]
41 :    
42 : jhr 897 Code generation support for 1D image data, such as RGBA transfer functions [DONE]
43 : jhr 853
44 : glk 781 ==============================
45 : glk 785 other SHORT TERM ============= (including needed for LIC)
46 : glk 781 ==============================
47 :    
48 : glk 927 test/uninit.diderot:
49 : glk 941 documents need for better compiler error messages when output variables
50 : glk 927 are not initialized; the current messages are very cryptic
51 :    
52 : glk 785 determinant ("det") for tensor[3,3]
53 :    
54 : jhr 897 extend norm (|exp|) to all tensor types [DONE for vectors and matrices]
55 : glk 785
56 : jhr 788 expand trace in mid to low translation
57 :    
58 :     value-numbering optimization
59 :    
60 :     Add type aliases for color types
61 :     rgb = real{3}
62 :     rgba = real{4}
63 :    
64 : glk 781 ==============================
65 : glk 891 MEDIUM TERM ================== (including needed for streamlines & tractography)
66 : glk 781 ==============================
67 :    
68 : glk 945 Want: allow X *= Y, X /= Y, X += Y, X -= Y to mean what they do in C,
69 :     provided that X*Y, X/Y, X+Y, X-Y are already supported.
70 :     Nearly every Diderot program would be simplified by this.
71 :    
72 :     Want: ability to apply "normalize" to a field itself, e.g.
73 :     field#1(2)[2] V = normalize(Vimg ⊛ ctmr);
74 :     so that V(x) = normalize((Vimg ⊛ ctmr)(x)).
75 :     (For now, it would be okay for the differentability of V to be 0;
76 :     later we can teach Diderot the quotient rule of derivatives.)
77 :     Having this would simplify expression of standard LIC method, and
78 :     would also help express other vector field expressions that arise
79 :     in vector field feature exraction
80 : glk 948 Related to this and possibly simpler:
81 :     image(2)[2] Vimg = load(...);
82 :     field#1(2)[] Vlen = |Vimg ⊛ ctmr|;
83 :     to get a scalar field of vector length, or
84 :     field#1(2)[] F = Fimg ⊛ ctmr;
85 :     field#1(2)[] Gmag = |∇F|;
86 :     to get a scalar field of gradient magnitude, or
87 :     field#1(2)[] F = Fimg ⊛ ctmr;
88 : glk 949 field#1(2)[] Gmsq = ∇F•∇F;
89 : glk 948 to get a scalar field of squared gradient magnitude
90 :     (which is simpler to differentiate)
91 : glk 945
92 : glk 941 ability to declare a field in such a way so that probe
93 :     positions are *always* clamped to the support of "inside";
94 :     there are many cases where this is the sensible behavior
95 :    
96 : glk 781 ability to emit/track/record variables into dynamically re-sized
97 :     runtime buffer
98 :    
99 :     evals & evecs for symmetric tensor[3,3]
100 :    
101 :     tensor fields: convolution on general tensor images
102 :    
103 : glk 891 Use of Teem's "hest" command-line parser for getting
104 :     any input variables that are not defined in the source file
105 :    
106 :     Save Diderot output to nrrd, instead of "mip.txt"
107 :     For grid of strands, save to similarly-shaped array
108 :     For list of strands, save to long 1-D (or 2-D for non-scalar output) list
109 :     For ragged things (like tractography output), will need to save both
110 :     complete list of values, as well as list of start indices and lengths
111 :     to index into complete list
112 :    
113 : glk 781 ==============================
114 :     other MEDIUM TERM ============ (needed for particles)
115 :     ==============================
116 :    
117 :     run-time birth and death of strands
118 :    
119 :     "initially" supports lists
120 :    
121 :     "initially" supports lists of positions output from
122 :     different initalization Diderot program
123 :    
124 :     spatial data structure that permits strands' queries of neighbors
125 :    
126 : jhr 784 proper handling of stabilize method
127 :    
128 : glk 891 test/vr-kcomp2.diderot: Add support for code like
129 : jhr 796
130 :     (F1 if x else F2)@pos
131 :    
132 :     This will require duplication of the continuation of the conditional (but we should only
133 :     duplicate over the live-range of the result of the conditional.
134 :    
135 : glk 781 ==============================
136 : jhr 797 other MEDIUM TERM ============
137 :     ==============================
138 :    
139 : glk 927 want: warnings when "D" (reserved for differentiation) is declared as
140 :     a variable name (get confusing error messages now)
141 : jhr 797
142 : jhr 824 support for Python interop and GUI
143 :    
144 : jhr 797 ==============================
145 : glk 781 LONG TERM ====================
146 :     ==============================
147 :    
148 : glk 927 Better handling of variables that determines the scope of a variable
149 :     based on its actual use, instead of where the user defined it. So,
150 :     for example, we should lift strand-invariant variables to global
151 :     scope. Also prune out useless variables, which should include field
152 :     variables after the translation to mid-il.
153 : jhr 796
154 : glk 781 co- vs contra- index distinction
155 :    
156 : glk 783 add ":" for tensor dot product (contracts out two indices
157 :     instead of one like •), valid for all pairs of tensors with
158 :     at least two indices
159 :    
160 : glk 781 some indication of tensor symmetry
161 :     (have to identify the group of index permutations that are symmetries)
162 :    
163 :     dot works on all tensors
164 :    
165 :     outer works on all tensors
166 :    
167 :     Einstein summation notation
168 :    
169 :     "tensor comprehension" (like list comprehension)
170 : jhr 784
171 : glk 818 Python/ctypes interface to run-timez
172 :    
173 : jhr 784 ======================
174 :     BUGS =================
175 :     ======================
176 :    
177 : glk 941 test/fields.diderot:
178 :     documents various bugs/questions associated with field expressions
179 :    
180 : jhr 784 test/mip-cam.diderot:
181 :     // generated C code looks like "(float)p_ui_0--0.5e0f"
182 :     //real rayU = 2.0*camUmax*(real(ui) - -0.5)/real(imgResU) - camUmax;
183 :    
184 :     test/vr-kcomp.diderot:
185 :     // HEY (scoping BUG): the strand parameters (e.g. ui, vi) ...
186 :    
187 :     test/zslice2.diderot:
188 :     // but is this not valid syntax for creating field in one shot?
189 :     //field#2(3)[] F = (load("../data/zimg112.nrrd")) ⊛ bspln3;
190 :     // It is valid syntax, but there is a bug in the conversion from HighIL to MidIL
191 :    
192 :     test/zslice2.diderot:
193 :     // HEY (bug) bspln5 leads to problems ...
194 :     // uncaught exception Size [size]
195 :     // raised at c-target/c-target.sml:47.15-47.19
196 :     //field#4(3)[] F = img ⊛ bspln5;

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