Add tests to check that affinities work with != operators on virtual table
[sqlite.git] / tool / mkopcodeh.tcl
bloba12d1901eeba23191e3116e3a8cba6745fe1b662
1 #!/usr/bin/tclsh
3 # Generate the file opcodes.h.
5 # This TCL script scans a concatenation of the parse.h output file from the
6 # parser and the vdbe.c source file in order to generate the opcodes numbers
7 # for all opcodes.
9 # The lines of the vdbe.c that we are interested in are of the form:
11 # case OP_aaaa: /* same as TK_bbbbb */
13 # The TK_ comment is optional. If it is present, then the value assigned to
14 # the OP_ is the same as the TK_ value. If missing, the OP_ value is assigned
15 # a small integer that is different from every other OP_ value.
17 # We go to the trouble of making some OP_ values the same as TK_ values
18 # as an optimization. During parsing, things like expression operators
19 # are coded with TK_ values such as TK_ADD, TK_DIVIDE, and so forth. Later
20 # during code generation, we need to generate corresponding opcodes like
21 # OP_Add and OP_Divide. By making TK_ADD==OP_Add and TK_DIVIDE==OP_Divide,
22 # code to translate from one to the other is avoided. This makes the
23 # code generator smaller and faster.
25 # This script also scans for lines of the form:
27 # case OP_aaaa: /* jump, in1, in2, in3, out2-prerelease, out3 */
29 # When such comments are found on an opcode, it means that certain
30 # properties apply to that opcode. Set corresponding flags using the
31 # OPFLG_INITIALIZER macro.
34 set in stdin
35 set currentOp {}
36 set nOp 0
37 while {![eof $in]} {
38 set line [gets $in]
40 # Remember the TK_ values from the parse.h file.
41 # NB: The "TK_" prefix stands for "ToKen", not the graphical Tk toolkit
42 # commonly associated with TCL.
44 if {[regexp {^#define TK_} $line]} {
45 set tk([lindex $line 1]) [lindex $line 2]
46 continue
49 # Find "/* Opcode: " lines in the vdbe.c file. Each one introduces
50 # a new opcode. Remember which parameters are used.
52 if {[regexp {^.. Opcode: } $line]} {
53 set currentOp OP_[lindex $line 2]
54 set m 0
55 foreach term $line {
56 switch $term {
57 P1 {incr m 1}
58 P2 {incr m 2}
59 P3 {incr m 4}
60 P4 {incr m 8}
61 P5 {incr m 16}
64 set paramused($currentOp) $m
67 # Find "** Synopsis: " lines that follow Opcode:
69 if {[regexp {^.. Synopsis: (.*)} $line all x] && $currentOp!=""} {
70 set synopsis($currentOp) [string trim $x]
73 # Scan for "case OP_aaaa:" lines in the vdbe.c file
75 if {[regexp {^case OP_} $line]} {
76 set line [split $line]
77 set name [string trim [lindex $line 1] :]
78 set op($name) -1
79 set jump($name) 0
80 set in1($name) 0
81 set in2($name) 0
82 set in3($name) 0
83 set out2($name) 0
84 set out3($name) 0
85 for {set i 3} {$i<[llength $line]-1} {incr i} {
86 switch [string trim [lindex $line $i] ,] {
87 same {
88 incr i
89 if {[lindex $line $i]=="as"} {
90 incr i
91 set sym [string trim [lindex $line $i] ,]
92 set val $tk($sym)
93 set op($name) $val
94 set used($val) 1
95 set sameas($val) $sym
96 set def($val) $name
99 jump {set jump($name) 1}
100 in1 {set in1($name) 1}
101 in2 {set in2($name) 1}
102 in3 {set in3($name) 1}
103 out2 {set out2($name) 1}
104 out3 {set out3($name) 1}
107 set order($nOp) $name
108 incr nOp
112 # Assign numbers to all opcodes and output the result.
114 puts "/* Automatically generated. Do not edit */"
115 puts "/* See the tool/mkopcodeh.tcl script for details */"
116 foreach name {OP_Noop OP_Explain} {
117 set jump($name) 0
118 set in1($name) 0
119 set in2($name) 0
120 set in3($name) 0
121 set out2($name) 0
122 set out3($name) 0
123 set op($name) -1
124 set order($nOp) $name
125 incr nOp
128 # The following are the opcodes that are processed by resolveP2Values()
130 set rp2v_ops {
131 OP_Transaction
132 OP_AutoCommit
133 OP_Savepoint
134 OP_Checkpoint
135 OP_Vacuum
136 OP_JournalMode
137 OP_VUpdate
138 OP_VFilter
139 OP_Next
140 OP_NextIfOpen
141 OP_SorterNext
142 OP_Prev
143 OP_PrevIfOpen
146 # Assign small values to opcodes that are processed by resolveP2Values()
147 # to make code generation for the switch() statement smaller and faster.
149 set cnt -1
150 for {set i 0} {$i<$nOp} {incr i} {
151 set name $order($i)
152 if {[lsearch $rp2v_ops $name]>=0} {
153 incr cnt
154 while {[info exists used($cnt)]} {incr cnt}
155 set op($name) $cnt
156 set used($cnt) 1
157 set def($cnt) $name
161 # Assign the next group of values to JUMP opcodes
163 for {set i 0} {$i<$nOp} {incr i} {
164 set name $order($i)
165 if {$op($name)>=0} continue
166 if {!$jump($name)} continue
167 incr cnt
168 while {[info exists used($cnt)]} {incr cnt}
169 set op($name) $cnt
170 set used($cnt) 1
171 set def($cnt) $name
174 # Find the numeric value for the largest JUMP opcode
176 set mxJump -1
177 for {set i 0} {$i<$nOp} {incr i} {
178 set name $order($i)
179 if {$jump($name) && $op($name)>$mxJump} {set mxJump $op($name)}
183 # Generate the numeric values for all remaining opcodes
185 for {set i 0} {$i<$nOp} {incr i} {
186 set name $order($i)
187 if {$op($name)<0} {
188 incr cnt
189 while {[info exists used($cnt)]} {incr cnt}
190 set op($name) $cnt
191 set used($cnt) 1
192 set def($cnt) $name
196 set max [lindex [lsort -decr -integer [array names used]] 0]
197 for {set i 0} {$i<=$max} {incr i} {
198 if {![info exists used($i)]} {
199 set def($i) "OP_NotUsed_$i"
201 if {$i>$max} {set max $i}
202 set name $def($i)
203 puts -nonewline [format {#define %-16s %3d} $name $i]
204 set com {}
205 if {$jump($name)} {
206 lappend com "jump"
208 if {[info exists sameas($i)]} {
209 lappend com "same as $sameas($i)"
211 if {[info exists synopsis($name)]} {
212 lappend com "synopsis: $synopsis($name)"
214 if {[llength $com]} {
215 puts -nonewline [format " /* %-42s */" [join $com {, }]]
217 puts ""
220 if {$max>255} {
221 error "More than 255 opcodes - VdbeOp.opcode is of type u8!"
224 # Generate the bitvectors:
226 set bv(0) 0
227 for {set i 0} {$i<=$max} {incr i} {
228 set x 0
229 set name $def($i)
230 if {[string match OP_NotUsed* $name]==0} {
231 if {$jump($name)} {incr x 1}
232 if {$in1($name)} {incr x 2}
233 if {$in2($name)} {incr x 4}
234 if {$in3($name)} {incr x 8}
235 if {$out2($name)} {incr x 16}
236 if {$out3($name)} {incr x 32}
238 set bv($i) $x
240 puts ""
241 puts "/* Properties such as \"out2\" or \"jump\" that are specified in"
242 puts "** comments following the \"case\" for each opcode in the vdbe.c"
243 puts "** are encoded into bitvectors as follows:"
244 puts "*/"
245 puts "#define OPFLG_JUMP 0x01 /* jump: P2 holds jmp target */"
246 puts "#define OPFLG_IN1 0x02 /* in1: P1 is an input */"
247 puts "#define OPFLG_IN2 0x04 /* in2: P2 is an input */"
248 puts "#define OPFLG_IN3 0x08 /* in3: P3 is an input */"
249 puts "#define OPFLG_OUT2 0x10 /* out2: P2 is an output */"
250 puts "#define OPFLG_OUT3 0x20 /* out3: P3 is an output */"
251 puts "#define OPFLG_INITIALIZER \173\\"
252 for {set i 0} {$i<=$max} {incr i} {
253 if {$i%8==0} {
254 puts -nonewline [format "/* %3d */" $i]
256 puts -nonewline [format " 0x%02x," $bv($i)]
257 if {$i%8==7} {
258 puts "\\"
261 puts "\175"
262 puts ""
263 puts "/* The sqlite3P2Values() routine is able to run faster if it knows"
264 puts "** the value of the largest JUMP opcode. The smaller the maximum"
265 puts "** JUMP opcode the better, so the mkopcodeh.tcl script that"
266 puts "** generated this include file strives to group all JUMP opcodes"
267 puts "** together near the beginning of the list."
268 puts "*/"
269 puts "#define SQLITE_MX_JUMP_OPCODE $mxJump /* Maximum JUMP opcode */"