##// END OF EJS Templates
Minor changes
paul -
r89:4ddc79d344bf nov2013
parent child
Show More
@@ -1,248 +1,248
1 #############################################################################
1 #############################################################################
2 # Makefile for building: bin/fsw
2 # Makefile for building: bin/fsw
3 # Generated by qmake (2.01a) (Qt 4.8.5) on: Thu Dec 12 07:45:06 2013
3 # Generated by qmake (2.01a) (Qt 4.8.5) on: Tue Jan 21 13:09:44 2014
4 # Project: fsw-qt.pro
4 # Project: fsw-qt.pro
5 # Template: app
5 # Template: app
6 # Command: /usr/bin/qmake-qt4 -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro
6 # Command: /usr/bin/qmake-qt4 -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro
7 #############################################################################
7 #############################################################################
8
8
9 ####### Compiler, tools and options
9 ####### Compiler, tools and options
10
10
11 CC = sparc-rtems-gcc
11 CC = sparc-rtems-gcc
12 CXX = sparc-rtems-g++
12 CXX = sparc-rtems-g++
13 DEFINES = -DSW_VERSION_N1=0 -DSW_VERSION_N2=0 -DSW_VERSION_N3=0 -DSW_VERSION_N4=22 -DPRINT_MESSAGES_ON_CONSOLE
13 DEFINES = -DSW_VERSION_N1=0 -DSW_VERSION_N2=0 -DSW_VERSION_N3=0 -DSW_VERSION_N4=22 -DPRINT_MESSAGES_ON_CONSOLE
14 CFLAGS = -pipe -O3 -Wall $(DEFINES)
14 CFLAGS = -pipe -O3 -Wall $(DEFINES)
15 CXXFLAGS = -pipe -O3 -Wall $(DEFINES)
15 CXXFLAGS = -pipe -O3 -Wall $(DEFINES)
16 INCPATH = -I/usr/lib64/qt4/mkspecs/linux-g++ -I. -I../src -I../header
16 INCPATH = -I/usr/lib64/qt4/mkspecs/linux-g++ -I. -I../src -I../header
17 LINK = sparc-rtems-g++
17 LINK = sparc-rtems-g++
18 LFLAGS =
18 LFLAGS =
19 LIBS = $(SUBLIBS)
19 LIBS = $(SUBLIBS)
20 AR = sparc-rtems-ar rcs
20 AR = sparc-rtems-ar rcs
21 RANLIB =
21 RANLIB =
22 QMAKE = /usr/bin/qmake-qt4
22 QMAKE = /usr/bin/qmake-qt4
23 TAR = tar -cf
23 TAR = tar -cf
24 COMPRESS = gzip -9f
24 COMPRESS = gzip -9f
25 COPY = cp -f
25 COPY = cp -f
26 SED = sed
26 SED = sed
27 COPY_FILE = $(COPY)
27 COPY_FILE = $(COPY)
28 COPY_DIR = $(COPY) -r
28 COPY_DIR = $(COPY) -r
29 STRIP = sparc-rtems-strip
29 STRIP = sparc-rtems-strip
30 INSTALL_FILE = install -m 644 -p
30 INSTALL_FILE = install -m 644 -p
31 INSTALL_DIR = $(COPY_DIR)
31 INSTALL_DIR = $(COPY_DIR)
32 INSTALL_PROGRAM = install -m 755 -p
32 INSTALL_PROGRAM = install -m 755 -p
33 DEL_FILE = rm -f
33 DEL_FILE = rm -f
34 SYMLINK = ln -f -s
34 SYMLINK = ln -f -s
35 DEL_DIR = rmdir
35 DEL_DIR = rmdir
36 MOVE = mv -f
36 MOVE = mv -f
37 CHK_DIR_EXISTS= test -d
37 CHK_DIR_EXISTS= test -d
38 MKDIR = mkdir -p
38 MKDIR = mkdir -p
39
39
40 ####### Output directory
40 ####### Output directory
41
41
42 OBJECTS_DIR = obj/
42 OBJECTS_DIR = obj/
43
43
44 ####### Files
44 ####### Files
45
45
46 SOURCES = ../src/wf_handler.c \
46 SOURCES = ../src/wf_handler.c \
47 ../src/tc_handler.c \
47 ../src/tc_handler.c \
48 ../src/fsw_processing.c \
48 ../src/fsw_processing.c \
49 ../src/fsw_misc.c \
49 ../src/fsw_misc.c \
50 ../src/fsw_init.c \
50 ../src/fsw_init.c \
51 ../src/fsw_globals.c \
51 ../src/fsw_globals.c \
52 ../src/fsw_spacewire.c \
52 ../src/fsw_spacewire.c \
53 ../src/tc_load_dump_parameters.c \
53 ../src/tc_load_dump_parameters.c \
54 ../src/tm_lfr_tc_exe.c \
54 ../src/tm_lfr_tc_exe.c \
55 ../src/tc_acceptance.c
55 ../src/tc_acceptance.c
56 OBJECTS = obj/wf_handler.o \
56 OBJECTS = obj/wf_handler.o \
57 obj/tc_handler.o \
57 obj/tc_handler.o \
58 obj/fsw_processing.o \
58 obj/fsw_processing.o \
59 obj/fsw_misc.o \
59 obj/fsw_misc.o \
60 obj/fsw_init.o \
60 obj/fsw_init.o \
61 obj/fsw_globals.o \
61 obj/fsw_globals.o \
62 obj/fsw_spacewire.o \
62 obj/fsw_spacewire.o \
63 obj/tc_load_dump_parameters.o \
63 obj/tc_load_dump_parameters.o \
64 obj/tm_lfr_tc_exe.o \
64 obj/tm_lfr_tc_exe.o \
65 obj/tc_acceptance.o
65 obj/tc_acceptance.o
66 DIST = /usr/lib64/qt4/mkspecs/common/unix.conf \
66 DIST = /usr/lib64/qt4/mkspecs/common/unix.conf \
67 /usr/lib64/qt4/mkspecs/common/linux.conf \
67 /usr/lib64/qt4/mkspecs/common/linux.conf \
68 /usr/lib64/qt4/mkspecs/common/gcc-base.conf \
68 /usr/lib64/qt4/mkspecs/common/gcc-base.conf \
69 /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf \
69 /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf \
70 /usr/lib64/qt4/mkspecs/common/g++-base.conf \
70 /usr/lib64/qt4/mkspecs/common/g++-base.conf \
71 /usr/lib64/qt4/mkspecs/common/g++-unix.conf \
71 /usr/lib64/qt4/mkspecs/common/g++-unix.conf \
72 /usr/lib64/qt4/mkspecs/qconfig.pri \
72 /usr/lib64/qt4/mkspecs/qconfig.pri \
73 /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri \
73 /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri \
74 /usr/lib64/qt4/mkspecs/features/qt_functions.prf \
74 /usr/lib64/qt4/mkspecs/features/qt_functions.prf \
75 /usr/lib64/qt4/mkspecs/features/qt_config.prf \
75 /usr/lib64/qt4/mkspecs/features/qt_config.prf \
76 /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf \
76 /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf \
77 /usr/lib64/qt4/mkspecs/features/default_pre.prf \
77 /usr/lib64/qt4/mkspecs/features/default_pre.prf \
78 sparc.pri \
78 sparc.pri \
79 /usr/lib64/qt4/mkspecs/features/release.prf \
79 /usr/lib64/qt4/mkspecs/features/release.prf \
80 /usr/lib64/qt4/mkspecs/features/default_post.prf \
80 /usr/lib64/qt4/mkspecs/features/default_post.prf \
81 /usr/lib64/qt4/mkspecs/features/shared.prf \
81 /usr/lib64/qt4/mkspecs/features/shared.prf \
82 /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf \
82 /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf \
83 /usr/lib64/qt4/mkspecs/features/warn_on.prf \
83 /usr/lib64/qt4/mkspecs/features/warn_on.prf \
84 /usr/lib64/qt4/mkspecs/features/resources.prf \
84 /usr/lib64/qt4/mkspecs/features/resources.prf \
85 /usr/lib64/qt4/mkspecs/features/uic.prf \
85 /usr/lib64/qt4/mkspecs/features/uic.prf \
86 /usr/lib64/qt4/mkspecs/features/yacc.prf \
86 /usr/lib64/qt4/mkspecs/features/yacc.prf \
87 /usr/lib64/qt4/mkspecs/features/lex.prf \
87 /usr/lib64/qt4/mkspecs/features/lex.prf \
88 /usr/lib64/qt4/mkspecs/features/include_source_dir.prf \
88 /usr/lib64/qt4/mkspecs/features/include_source_dir.prf \
89 fsw-qt.pro
89 fsw-qt.pro
90 QMAKE_TARGET = fsw
90 QMAKE_TARGET = fsw
91 DESTDIR = bin/
91 DESTDIR = bin/
92 TARGET = bin/fsw
92 TARGET = bin/fsw
93
93
94 first: all
94 first: all
95 ####### Implicit rules
95 ####### Implicit rules
96
96
97 .SUFFIXES: .o .c .cpp .cc .cxx .C
97 .SUFFIXES: .o .c .cpp .cc .cxx .C
98
98
99 .cpp.o:
99 .cpp.o:
100 $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<"
100 $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<"
101
101
102 .cc.o:
102 .cc.o:
103 $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<"
103 $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<"
104
104
105 .cxx.o:
105 .cxx.o:
106 $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<"
106 $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<"
107
107
108 .C.o:
108 .C.o:
109 $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<"
109 $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<"
110
110
111 .c.o:
111 .c.o:
112 $(CC) -c $(CFLAGS) $(INCPATH) -o "$@" "$<"
112 $(CC) -c $(CFLAGS) $(INCPATH) -o "$@" "$<"
113
113
114 ####### Build rules
114 ####### Build rules
115
115
116 all: Makefile $(TARGET)
116 all: Makefile $(TARGET)
117
117
118 $(TARGET): $(OBJECTS)
118 $(TARGET): $(OBJECTS)
119 @$(CHK_DIR_EXISTS) bin/ || $(MKDIR) bin/
119 @$(CHK_DIR_EXISTS) bin/ || $(MKDIR) bin/
120 $(LINK) $(LFLAGS) -o $(TARGET) $(OBJECTS) $(OBJCOMP) $(LIBS)
120 $(LINK) $(LFLAGS) -o $(TARGET) $(OBJECTS) $(OBJCOMP) $(LIBS)
121
121
122 Makefile: fsw-qt.pro /usr/lib64/qt4/mkspecs/linux-g++/qmake.conf /usr/lib64/qt4/mkspecs/common/unix.conf \
122 Makefile: fsw-qt.pro /usr/lib64/qt4/mkspecs/linux-g++/qmake.conf /usr/lib64/qt4/mkspecs/common/unix.conf \
123 /usr/lib64/qt4/mkspecs/common/linux.conf \
123 /usr/lib64/qt4/mkspecs/common/linux.conf \
124 /usr/lib64/qt4/mkspecs/common/gcc-base.conf \
124 /usr/lib64/qt4/mkspecs/common/gcc-base.conf \
125 /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf \
125 /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf \
126 /usr/lib64/qt4/mkspecs/common/g++-base.conf \
126 /usr/lib64/qt4/mkspecs/common/g++-base.conf \
127 /usr/lib64/qt4/mkspecs/common/g++-unix.conf \
127 /usr/lib64/qt4/mkspecs/common/g++-unix.conf \
128 /usr/lib64/qt4/mkspecs/qconfig.pri \
128 /usr/lib64/qt4/mkspecs/qconfig.pri \
129 /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri \
129 /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri \
130 /usr/lib64/qt4/mkspecs/features/qt_functions.prf \
130 /usr/lib64/qt4/mkspecs/features/qt_functions.prf \
131 /usr/lib64/qt4/mkspecs/features/qt_config.prf \
131 /usr/lib64/qt4/mkspecs/features/qt_config.prf \
132 /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf \
132 /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf \
133 /usr/lib64/qt4/mkspecs/features/default_pre.prf \
133 /usr/lib64/qt4/mkspecs/features/default_pre.prf \
134 sparc.pri \
134 sparc.pri \
135 /usr/lib64/qt4/mkspecs/features/release.prf \
135 /usr/lib64/qt4/mkspecs/features/release.prf \
136 /usr/lib64/qt4/mkspecs/features/default_post.prf \
136 /usr/lib64/qt4/mkspecs/features/default_post.prf \
137 /usr/lib64/qt4/mkspecs/features/shared.prf \
137 /usr/lib64/qt4/mkspecs/features/shared.prf \
138 /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf \
138 /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf \
139 /usr/lib64/qt4/mkspecs/features/warn_on.prf \
139 /usr/lib64/qt4/mkspecs/features/warn_on.prf \
140 /usr/lib64/qt4/mkspecs/features/resources.prf \
140 /usr/lib64/qt4/mkspecs/features/resources.prf \
141 /usr/lib64/qt4/mkspecs/features/uic.prf \
141 /usr/lib64/qt4/mkspecs/features/uic.prf \
142 /usr/lib64/qt4/mkspecs/features/yacc.prf \
142 /usr/lib64/qt4/mkspecs/features/yacc.prf \
143 /usr/lib64/qt4/mkspecs/features/lex.prf \
143 /usr/lib64/qt4/mkspecs/features/lex.prf \
144 /usr/lib64/qt4/mkspecs/features/include_source_dir.prf
144 /usr/lib64/qt4/mkspecs/features/include_source_dir.prf
145 $(QMAKE) -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro
145 $(QMAKE) -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro
146 /usr/lib64/qt4/mkspecs/common/unix.conf:
146 /usr/lib64/qt4/mkspecs/common/unix.conf:
147 /usr/lib64/qt4/mkspecs/common/linux.conf:
147 /usr/lib64/qt4/mkspecs/common/linux.conf:
148 /usr/lib64/qt4/mkspecs/common/gcc-base.conf:
148 /usr/lib64/qt4/mkspecs/common/gcc-base.conf:
149 /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf:
149 /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf:
150 /usr/lib64/qt4/mkspecs/common/g++-base.conf:
150 /usr/lib64/qt4/mkspecs/common/g++-base.conf:
151 /usr/lib64/qt4/mkspecs/common/g++-unix.conf:
151 /usr/lib64/qt4/mkspecs/common/g++-unix.conf:
152 /usr/lib64/qt4/mkspecs/qconfig.pri:
152 /usr/lib64/qt4/mkspecs/qconfig.pri:
153 /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri:
153 /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri:
154 /usr/lib64/qt4/mkspecs/features/qt_functions.prf:
154 /usr/lib64/qt4/mkspecs/features/qt_functions.prf:
155 /usr/lib64/qt4/mkspecs/features/qt_config.prf:
155 /usr/lib64/qt4/mkspecs/features/qt_config.prf:
156 /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf:
156 /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf:
157 /usr/lib64/qt4/mkspecs/features/default_pre.prf:
157 /usr/lib64/qt4/mkspecs/features/default_pre.prf:
158 sparc.pri:
158 sparc.pri:
159 /usr/lib64/qt4/mkspecs/features/release.prf:
159 /usr/lib64/qt4/mkspecs/features/release.prf:
160 /usr/lib64/qt4/mkspecs/features/default_post.prf:
160 /usr/lib64/qt4/mkspecs/features/default_post.prf:
161 /usr/lib64/qt4/mkspecs/features/shared.prf:
161 /usr/lib64/qt4/mkspecs/features/shared.prf:
162 /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf:
162 /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf:
163 /usr/lib64/qt4/mkspecs/features/warn_on.prf:
163 /usr/lib64/qt4/mkspecs/features/warn_on.prf:
164 /usr/lib64/qt4/mkspecs/features/resources.prf:
164 /usr/lib64/qt4/mkspecs/features/resources.prf:
165 /usr/lib64/qt4/mkspecs/features/uic.prf:
165 /usr/lib64/qt4/mkspecs/features/uic.prf:
166 /usr/lib64/qt4/mkspecs/features/yacc.prf:
166 /usr/lib64/qt4/mkspecs/features/yacc.prf:
167 /usr/lib64/qt4/mkspecs/features/lex.prf:
167 /usr/lib64/qt4/mkspecs/features/lex.prf:
168 /usr/lib64/qt4/mkspecs/features/include_source_dir.prf:
168 /usr/lib64/qt4/mkspecs/features/include_source_dir.prf:
169 qmake: FORCE
169 qmake: FORCE
170 @$(QMAKE) -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro
170 @$(QMAKE) -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro
171
171
172 dist:
172 dist:
173 @$(CHK_DIR_EXISTS) obj/fsw1.0.0 || $(MKDIR) obj/fsw1.0.0
173 @$(CHK_DIR_EXISTS) obj/fsw1.0.0 || $(MKDIR) obj/fsw1.0.0
174 $(COPY_FILE) --parents $(SOURCES) $(DIST) obj/fsw1.0.0/ && (cd `dirname obj/fsw1.0.0` && $(TAR) fsw1.0.0.tar fsw1.0.0 && $(COMPRESS) fsw1.0.0.tar) && $(MOVE) `dirname obj/fsw1.0.0`/fsw1.0.0.tar.gz . && $(DEL_FILE) -r obj/fsw1.0.0
174 $(COPY_FILE) --parents $(SOURCES) $(DIST) obj/fsw1.0.0/ && (cd `dirname obj/fsw1.0.0` && $(TAR) fsw1.0.0.tar fsw1.0.0 && $(COMPRESS) fsw1.0.0.tar) && $(MOVE) `dirname obj/fsw1.0.0`/fsw1.0.0.tar.gz . && $(DEL_FILE) -r obj/fsw1.0.0
175
175
176
176
177 clean:compiler_clean
177 clean:compiler_clean
178 -$(DEL_FILE) $(OBJECTS)
178 -$(DEL_FILE) $(OBJECTS)
179 -$(DEL_FILE) *~ core *.core
179 -$(DEL_FILE) *~ core *.core
180
180
181
181
182 ####### Sub-libraries
182 ####### Sub-libraries
183
183
184 distclean: clean
184 distclean: clean
185 -$(DEL_FILE) $(TARGET)
185 -$(DEL_FILE) $(TARGET)
186 -$(DEL_FILE) Makefile
186 -$(DEL_FILE) Makefile
187
187
188
188
189 grmon:
189 grmon:
190 cd bin && C:/opt/grmon-eval-2.0.29b/win32/bin/grmon.exe -uart COM4 -u
190 cd bin && C:/opt/grmon-eval-2.0.29b/win32/bin/grmon.exe -uart COM4 -u
191
191
192 check: first
192 check: first
193
193
194 compiler_rcc_make_all:
194 compiler_rcc_make_all:
195 compiler_rcc_clean:
195 compiler_rcc_clean:
196 compiler_uic_make_all:
196 compiler_uic_make_all:
197 compiler_uic_clean:
197 compiler_uic_clean:
198 compiler_image_collection_make_all: qmake_image_collection.cpp
198 compiler_image_collection_make_all: qmake_image_collection.cpp
199 compiler_image_collection_clean:
199 compiler_image_collection_clean:
200 -$(DEL_FILE) qmake_image_collection.cpp
200 -$(DEL_FILE) qmake_image_collection.cpp
201 compiler_yacc_decl_make_all:
201 compiler_yacc_decl_make_all:
202 compiler_yacc_decl_clean:
202 compiler_yacc_decl_clean:
203 compiler_yacc_impl_make_all:
203 compiler_yacc_impl_make_all:
204 compiler_yacc_impl_clean:
204 compiler_yacc_impl_clean:
205 compiler_lex_make_all:
205 compiler_lex_make_all:
206 compiler_lex_clean:
206 compiler_lex_clean:
207 compiler_clean:
207 compiler_clean:
208
208
209 ####### Compile
209 ####### Compile
210
210
211 obj/wf_handler.o: ../src/wf_handler.c
211 obj/wf_handler.o: ../src/wf_handler.c
212 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/wf_handler.o ../src/wf_handler.c
212 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/wf_handler.o ../src/wf_handler.c
213
213
214 obj/tc_handler.o: ../src/tc_handler.c
214 obj/tc_handler.o: ../src/tc_handler.c
215 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/tc_handler.o ../src/tc_handler.c
215 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/tc_handler.o ../src/tc_handler.c
216
216
217 obj/fsw_processing.o: ../src/fsw_processing.c ../src/fsw_processing_globals.c
217 obj/fsw_processing.o: ../src/fsw_processing.c ../src/fsw_processing_globals.c
218 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_processing.o ../src/fsw_processing.c
218 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_processing.o ../src/fsw_processing.c
219
219
220 obj/fsw_misc.o: ../src/fsw_misc.c
220 obj/fsw_misc.o: ../src/fsw_misc.c
221 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_misc.o ../src/fsw_misc.c
221 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_misc.o ../src/fsw_misc.c
222
222
223 obj/fsw_init.o: ../src/fsw_init.c ../src/fsw_config.c
223 obj/fsw_init.o: ../src/fsw_init.c ../src/fsw_config.c
224 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_init.o ../src/fsw_init.c
224 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_init.o ../src/fsw_init.c
225
225
226 obj/fsw_globals.o: ../src/fsw_globals.c
226 obj/fsw_globals.o: ../src/fsw_globals.c
227 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_globals.o ../src/fsw_globals.c
227 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_globals.o ../src/fsw_globals.c
228
228
229 obj/fsw_spacewire.o: ../src/fsw_spacewire.c
229 obj/fsw_spacewire.o: ../src/fsw_spacewire.c
230 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_spacewire.o ../src/fsw_spacewire.c
230 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/fsw_spacewire.o ../src/fsw_spacewire.c
231
231
232 obj/tc_load_dump_parameters.o: ../src/tc_load_dump_parameters.c
232 obj/tc_load_dump_parameters.o: ../src/tc_load_dump_parameters.c
233 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/tc_load_dump_parameters.o ../src/tc_load_dump_parameters.c
233 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/tc_load_dump_parameters.o ../src/tc_load_dump_parameters.c
234
234
235 obj/tm_lfr_tc_exe.o: ../src/tm_lfr_tc_exe.c
235 obj/tm_lfr_tc_exe.o: ../src/tm_lfr_tc_exe.c
236 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/tm_lfr_tc_exe.o ../src/tm_lfr_tc_exe.c
236 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/tm_lfr_tc_exe.o ../src/tm_lfr_tc_exe.c
237
237
238 obj/tc_acceptance.o: ../src/tc_acceptance.c
238 obj/tc_acceptance.o: ../src/tc_acceptance.c
239 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/tc_acceptance.o ../src/tc_acceptance.c
239 $(CC) -c $(CFLAGS) $(INCPATH) -o obj/tc_acceptance.o ../src/tc_acceptance.c
240
240
241 ####### Install
241 ####### Install
242
242
243 install: FORCE
243 install: FORCE
244
244
245 uninstall: FORCE
245 uninstall: FORCE
246
246
247 FORCE:
247 FORCE:
248
248
@@ -1,305 +1,311
1 <?xml version="1.0" encoding="UTF-8"?>
1 <?xml version="1.0" encoding="UTF-8"?>
2 <!DOCTYPE QtCreatorProject>
2 <!DOCTYPE QtCreatorProject>
3 <!-- Written by QtCreator 2.8.1, 2013-12-12T15:59:05. -->
3 <!-- Written by QtCreator 3.0.0, 2014-01-21T13:08:44. -->
4 <qtcreator>
4 <qtcreator>
5 <data>
5 <data>
6 <variable>ProjectExplorer.Project.ActiveTarget</variable>
6 <variable>ProjectExplorer.Project.ActiveTarget</variable>
7 <value type="int">0</value>
7 <value type="int">0</value>
8 </data>
8 </data>
9 <data>
9 <data>
10 <variable>ProjectExplorer.Project.EditorSettings</variable>
10 <variable>ProjectExplorer.Project.EditorSettings</variable>
11 <valuemap type="QVariantMap">
11 <valuemap type="QVariantMap">
12 <value type="bool" key="EditorConfiguration.AutoIndent">true</value>
12 <value type="bool" key="EditorConfiguration.AutoIndent">true</value>
13 <value type="bool" key="EditorConfiguration.AutoSpacesForTabs">false</value>
13 <value type="bool" key="EditorConfiguration.AutoSpacesForTabs">false</value>
14 <value type="bool" key="EditorConfiguration.CamelCaseNavigation">true</value>
14 <value type="bool" key="EditorConfiguration.CamelCaseNavigation">true</value>
15 <valuemap type="QVariantMap" key="EditorConfiguration.CodeStyle.0">
15 <valuemap type="QVariantMap" key="EditorConfiguration.CodeStyle.0">
16 <value type="QString" key="language">Cpp</value>
16 <value type="QString" key="language">Cpp</value>
17 <valuemap type="QVariantMap" key="value">
17 <valuemap type="QVariantMap" key="value">
18 <value type="QString" key="CurrentPreferences">CppGlobal</value>
18 <value type="QByteArray" key="CurrentPreferences">CppGlobal</value>
19 </valuemap>
19 </valuemap>
20 </valuemap>
20 </valuemap>
21 <valuemap type="QVariantMap" key="EditorConfiguration.CodeStyle.1">
21 <valuemap type="QVariantMap" key="EditorConfiguration.CodeStyle.1">
22 <value type="QString" key="language">QmlJS</value>
22 <value type="QString" key="language">QmlJS</value>
23 <valuemap type="QVariantMap" key="value">
23 <valuemap type="QVariantMap" key="value">
24 <value type="QString" key="CurrentPreferences">QmlJSGlobal</value>
24 <value type="QByteArray" key="CurrentPreferences">QmlJSGlobal</value>
25 </valuemap>
25 </valuemap>
26 </valuemap>
26 </valuemap>
27 <value type="int" key="EditorConfiguration.CodeStyle.Count">2</value>
27 <value type="int" key="EditorConfiguration.CodeStyle.Count">2</value>
28 <value type="QByteArray" key="EditorConfiguration.Codec">System</value>
28 <value type="QByteArray" key="EditorConfiguration.Codec">System</value>
29 <value type="bool" key="EditorConfiguration.ConstrainTooltips">false</value>
29 <value type="bool" key="EditorConfiguration.ConstrainTooltips">false</value>
30 <value type="int" key="EditorConfiguration.IndentSize">4</value>
30 <value type="int" key="EditorConfiguration.IndentSize">4</value>
31 <value type="bool" key="EditorConfiguration.KeyboardTooltips">false</value>
31 <value type="bool" key="EditorConfiguration.KeyboardTooltips">false</value>
32 <value type="bool" key="EditorConfiguration.MouseNavigation">true</value>
32 <value type="bool" key="EditorConfiguration.MouseNavigation">true</value>
33 <value type="int" key="EditorConfiguration.PaddingMode">1</value>
33 <value type="int" key="EditorConfiguration.PaddingMode">1</value>
34 <value type="bool" key="EditorConfiguration.ScrollWheelZooming">true</value>
34 <value type="bool" key="EditorConfiguration.ScrollWheelZooming">true</value>
35 <value type="int" key="EditorConfiguration.SmartBackspaceBehavior">0</value>
35 <value type="int" key="EditorConfiguration.SmartBackspaceBehavior">0</value>
36 <value type="bool" key="EditorConfiguration.SpacesForTabs">true</value>
36 <value type="bool" key="EditorConfiguration.SpacesForTabs">true</value>
37 <value type="int" key="EditorConfiguration.TabKeyBehavior">0</value>
37 <value type="int" key="EditorConfiguration.TabKeyBehavior">0</value>
38 <value type="int" key="EditorConfiguration.TabSize">8</value>
38 <value type="int" key="EditorConfiguration.TabSize">8</value>
39 <value type="bool" key="EditorConfiguration.UseGlobal">true</value>
39 <value type="bool" key="EditorConfiguration.UseGlobal">true</value>
40 <value type="int" key="EditorConfiguration.Utf8BomBehavior">1</value>
40 <value type="int" key="EditorConfiguration.Utf8BomBehavior">1</value>
41 <value type="bool" key="EditorConfiguration.addFinalNewLine">true</value>
41 <value type="bool" key="EditorConfiguration.addFinalNewLine">true</value>
42 <value type="bool" key="EditorConfiguration.cleanIndentation">true</value>
42 <value type="bool" key="EditorConfiguration.cleanIndentation">true</value>
43 <value type="bool" key="EditorConfiguration.cleanWhitespace">true</value>
43 <value type="bool" key="EditorConfiguration.cleanWhitespace">true</value>
44 <value type="bool" key="EditorConfiguration.inEntireDocument">false</value>
44 <value type="bool" key="EditorConfiguration.inEntireDocument">false</value>
45 </valuemap>
45 </valuemap>
46 </data>
46 </data>
47 <data>
47 <data>
48 <variable>ProjectExplorer.Project.PluginSettings</variable>
48 <variable>ProjectExplorer.Project.PluginSettings</variable>
49 <valuemap type="QVariantMap"/>
49 <valuemap type="QVariantMap"/>
50 </data>
50 </data>
51 <data>
51 <data>
52 <variable>ProjectExplorer.Project.Target.0</variable>
52 <variable>ProjectExplorer.Project.Target.0</variable>
53 <valuemap type="QVariantMap">
53 <valuemap type="QVariantMap">
54 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Desktop-Qt 4.8.2 in PATH (System)</value>
54 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Desktop-Qt 4.8.2 in PATH (System)</value>
55 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName">Desktop-Qt 4.8.2 in PATH (System)</value>
55 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName">Desktop-Qt 4.8.2 in PATH (System)</value>
56 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">{5289e843-9ef2-45ce-88c6-ad27d8e08def}</value>
56 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">{5289e843-9ef2-45ce-88c6-ad27d8e08def}</value>
57 <value type="int" key="ProjectExplorer.Target.ActiveBuildConfiguration">0</value>
57 <value type="int" key="ProjectExplorer.Target.ActiveBuildConfiguration">0</value>
58 <value type="int" key="ProjectExplorer.Target.ActiveDeployConfiguration">0</value>
58 <value type="int" key="ProjectExplorer.Target.ActiveDeployConfiguration">0</value>
59 <value type="int" key="ProjectExplorer.Target.ActiveRunConfiguration">1</value>
59 <value type="int" key="ProjectExplorer.Target.ActiveRunConfiguration">1</value>
60 <valuemap type="QVariantMap" key="ProjectExplorer.Target.BuildConfiguration.0">
60 <valuemap type="QVariantMap" key="ProjectExplorer.Target.BuildConfiguration.0">
61 <value type="QString" key="ProjectExplorer.BuildConfiguration.BuildDirectory">/opt/DEV_PLE/FSW-qt</value>
61 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.0">
62 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.0">
62 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0">
63 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0">
63 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
64 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
64 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">qmake</value>
65 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">qmake</value>
65 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
66 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
66 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">QtProjectManager.QMakeBuildStep</value>
67 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">QtProjectManager.QMakeBuildStep</value>
67 <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibrary">false</value>
68 <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibrary">false</value>
68 <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibraryAuto">true</value>
69 <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibraryAuto">true</value>
69 <value type="QString" key="QtProjectManager.QMakeBuildStep.QMakeArguments"></value>
70 <value type="QString" key="QtProjectManager.QMakeBuildStep.QMakeArguments"></value>
70 <value type="bool" key="QtProjectManager.QMakeBuildStep.QMakeForced">false</value>
71 <value type="bool" key="QtProjectManager.QMakeBuildStep.QMakeForced">false</value>
71 </valuemap>
72 </valuemap>
72 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.1">
73 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.1">
73 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
74 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
74 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value>
75 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value>
75 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
76 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
76 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value>
77 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value>
77 <valuelist type="QVariantList" key="Qt4ProjectManager.MakeStep.AutomaticallyAddedMakeArguments">
78 <valuelist type="QVariantList" key="Qt4ProjectManager.MakeStep.AutomaticallyAddedMakeArguments">
78 <value type="QString">-w</value>
79 <value type="QString">-w</value>
79 <value type="QString">-r</value>
80 <value type="QString">-r</value>
80 </valuelist>
81 </valuelist>
81 <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">false</value>
82 <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">false</value>
82 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w -j 4</value>
83 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w -j 4</value>
83 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value>
84 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value>
84 </valuemap>
85 </valuemap>
85 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">2</value>
86 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">2</value>
86 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Build</value>
87 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Build</value>
87 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
88 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
88 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Build</value>
89 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Build</value>
89 </valuemap>
90 </valuemap>
90 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.1">
91 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.1">
91 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0">
92 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0">
92 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
93 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
93 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value>
94 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value>
94 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
95 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
95 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value>
96 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value>
96 <valuelist type="QVariantList" key="Qt4ProjectManager.MakeStep.AutomaticallyAddedMakeArguments">
97 <valuelist type="QVariantList" key="Qt4ProjectManager.MakeStep.AutomaticallyAddedMakeArguments">
97 <value type="QString">-w</value>
98 <value type="QString">-w</value>
98 <value type="QString">-r</value>
99 <value type="QString">-r</value>
99 </valuelist>
100 </valuelist>
100 <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">true</value>
101 <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">true</value>
101 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w clean</value>
102 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w clean</value>
102 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value>
103 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value>
103 </valuemap>
104 </valuemap>
104 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">1</value>
105 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">1</value>
105 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Clean</value>
106 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Clean</value>
106 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
107 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
107 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Clean</value>
108 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Clean</value>
108 </valuemap>
109 </valuemap>
109 <value type="int" key="ProjectExplorer.BuildConfiguration.BuildStepListCount">2</value>
110 <value type="int" key="ProjectExplorer.BuildConfiguration.BuildStepListCount">2</value>
110 <value type="bool" key="ProjectExplorer.BuildConfiguration.ClearSystemEnvironment">false</value>
111 <value type="bool" key="ProjectExplorer.BuildConfiguration.ClearSystemEnvironment">false</value>
111 <valuelist type="QVariantList" key="ProjectExplorer.BuildConfiguration.UserEnvironmentChanges"/>
112 <valuelist type="QVariantList" key="ProjectExplorer.BuildConfiguration.UserEnvironmentChanges"/>
112 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Qt 4.8.2 in PATH (System) Release</value>
113 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Qt 4.8.2 in PATH (System) Release</value>
113 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
114 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
114 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4BuildConfiguration</value>
115 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4BuildConfiguration</value>
115 <value type="int" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildConfiguration">0</value>
116 <value type="int" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildConfiguration">0</value>
116 <value type="QString" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildDirectory">/opt/DEV_PLE/FSW-qt</value>
117 <value type="bool" key="Qt4ProjectManager.Qt4BuildConfiguration.UseShadowBuild">false</value>
117 <value type="bool" key="Qt4ProjectManager.Qt4BuildConfiguration.UseShadowBuild">false</value>
118 </valuemap>
118 </valuemap>
119 <valuemap type="QVariantMap" key="ProjectExplorer.Target.BuildConfiguration.1">
119 <valuemap type="QVariantMap" key="ProjectExplorer.Target.BuildConfiguration.1">
120 <value type="QString" key="ProjectExplorer.BuildConfiguration.BuildDirectory">/opt/DEV_PLE/FSW-qt</value>
120 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.0">
121 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.0">
121 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0">
122 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0">
122 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
123 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
123 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">qmake</value>
124 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">qmake</value>
124 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
125 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
125 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">QtProjectManager.QMakeBuildStep</value>
126 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">QtProjectManager.QMakeBuildStep</value>
126 <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibrary">false</value>
127 <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibrary">false</value>
127 <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibraryAuto">true</value>
128 <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibraryAuto">true</value>
128 <value type="QString" key="QtProjectManager.QMakeBuildStep.QMakeArguments"></value>
129 <value type="QString" key="QtProjectManager.QMakeBuildStep.QMakeArguments"></value>
129 <value type="bool" key="QtProjectManager.QMakeBuildStep.QMakeForced">false</value>
130 <value type="bool" key="QtProjectManager.QMakeBuildStep.QMakeForced">false</value>
130 </valuemap>
131 </valuemap>
131 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.1">
132 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.1">
132 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
133 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
133 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value>
134 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value>
134 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
135 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
135 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value>
136 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value>
136 <valuelist type="QVariantList" key="Qt4ProjectManager.MakeStep.AutomaticallyAddedMakeArguments">
137 <valuelist type="QVariantList" key="Qt4ProjectManager.MakeStep.AutomaticallyAddedMakeArguments">
137 <value type="QString">-w</value>
138 <value type="QString">-w</value>
138 <value type="QString">-r</value>
139 <value type="QString">-r</value>
139 </valuelist>
140 </valuelist>
140 <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">false</value>
141 <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">false</value>
141 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w </value>
142 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w </value>
142 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value>
143 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value>
143 </valuemap>
144 </valuemap>
144 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">2</value>
145 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">2</value>
145 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Build</value>
146 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Build</value>
146 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
147 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
147 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Build</value>
148 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Build</value>
148 </valuemap>
149 </valuemap>
149 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.1">
150 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.1">
150 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0">
151 <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0">
151 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
152 <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value>
152 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value>
153 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value>
153 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
154 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
154 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value>
155 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value>
155 <valuelist type="QVariantList" key="Qt4ProjectManager.MakeStep.AutomaticallyAddedMakeArguments">
156 <valuelist type="QVariantList" key="Qt4ProjectManager.MakeStep.AutomaticallyAddedMakeArguments">
156 <value type="QString">-w</value>
157 <value type="QString">-w</value>
157 <value type="QString">-r</value>
158 <value type="QString">-r</value>
158 </valuelist>
159 </valuelist>
159 <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">true</value>
160 <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">true</value>
160 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w clean</value>
161 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w clean</value>
161 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value>
162 <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value>
162 </valuemap>
163 </valuemap>
163 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">1</value>
164 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">1</value>
164 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Clean</value>
165 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Clean</value>
165 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
166 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
166 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Clean</value>
167 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Clean</value>
167 </valuemap>
168 </valuemap>
168 <value type="int" key="ProjectExplorer.BuildConfiguration.BuildStepListCount">2</value>
169 <value type="int" key="ProjectExplorer.BuildConfiguration.BuildStepListCount">2</value>
169 <value type="bool" key="ProjectExplorer.BuildConfiguration.ClearSystemEnvironment">false</value>
170 <value type="bool" key="ProjectExplorer.BuildConfiguration.ClearSystemEnvironment">false</value>
170 <valuelist type="QVariantList" key="ProjectExplorer.BuildConfiguration.UserEnvironmentChanges"/>
171 <valuelist type="QVariantList" key="ProjectExplorer.BuildConfiguration.UserEnvironmentChanges"/>
171 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Qt 4.8.2 in PATH (System) Debug</value>
172 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Qt 4.8.2 in PATH (System) Debug</value>
172 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
173 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
173 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4BuildConfiguration</value>
174 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4BuildConfiguration</value>
174 <value type="int" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildConfiguration">2</value>
175 <value type="int" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildConfiguration">2</value>
175 <value type="QString" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildDirectory">/opt/DEV_PLE/FSW-qt</value>
176 <value type="bool" key="Qt4ProjectManager.Qt4BuildConfiguration.UseShadowBuild">false</value>
176 <value type="bool" key="Qt4ProjectManager.Qt4BuildConfiguration.UseShadowBuild">false</value>
177 </valuemap>
177 </valuemap>
178 <value type="int" key="ProjectExplorer.Target.BuildConfigurationCount">2</value>
178 <value type="int" key="ProjectExplorer.Target.BuildConfigurationCount">2</value>
179 <valuemap type="QVariantMap" key="ProjectExplorer.Target.DeployConfiguration.0">
179 <valuemap type="QVariantMap" key="ProjectExplorer.Target.DeployConfiguration.0">
180 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.0">
180 <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.0">
181 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">0</value>
181 <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">0</value>
182 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Deploy</value>
182 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Deploy</value>
183 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
183 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
184 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Deploy</value>
184 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Deploy</value>
185 </valuemap>
185 </valuemap>
186 <value type="int" key="ProjectExplorer.BuildConfiguration.BuildStepListCount">1</value>
186 <value type="int" key="ProjectExplorer.BuildConfiguration.BuildStepListCount">1</value>
187 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">No deployment</value>
187 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">No deployment</value>
188 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
188 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
189 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.DefaultDeployConfiguration</value>
189 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.DefaultDeployConfiguration</value>
190 </valuemap>
190 </valuemap>
191 <value type="int" key="ProjectExplorer.Target.DeployConfigurationCount">1</value>
191 <value type="int" key="ProjectExplorer.Target.DeployConfigurationCount">1</value>
192 <valuemap type="QVariantMap" key="ProjectExplorer.Target.PluginSettings"/>
192 <valuemap type="QVariantMap" key="ProjectExplorer.Target.PluginSettings"/>
193 <valuemap type="QVariantMap" key="ProjectExplorer.Target.RunConfiguration.0">
193 <valuemap type="QVariantMap" key="ProjectExplorer.Target.RunConfiguration.0">
194 <value type="bool" key="Analyzer.Project.UseGlobal">true</value>
195 <valuelist type="QVariantList" key="Analyzer.Valgrind.AddedSuppressionFiles"/>
194 <valuelist type="QVariantList" key="Analyzer.Valgrind.AddedSuppressionFiles"/>
196 <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectBusEvents">false</value>
195 <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectBusEvents">false</value>
197 <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectSystime">false</value>
196 <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectSystime">false</value>
198 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableBranchSim">false</value>
197 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableBranchSim">false</value>
199 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableCacheSim">false</value>
198 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableCacheSim">false</value>
200 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableEventToolTips">true</value>
199 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableEventToolTips">true</value>
201 <value type="double" key="Analyzer.Valgrind.Callgrind.MinimumCostRatio">0.01</value>
200 <value type="double" key="Analyzer.Valgrind.Callgrind.MinimumCostRatio">0.01</value>
202 <value type="double" key="Analyzer.Valgrind.Callgrind.VisualisationMinimumCostRatio">10</value>
201 <value type="double" key="Analyzer.Valgrind.Callgrind.VisualisationMinimumCostRatio">10</value>
203 <value type="bool" key="Analyzer.Valgrind.FilterExternalIssues">true</value>
202 <value type="bool" key="Analyzer.Valgrind.FilterExternalIssues">true</value>
203 <value type="int" key="Analyzer.Valgrind.LeakCheckOnFinish">1</value>
204 <value type="int" key="Analyzer.Valgrind.NumCallers">25</value>
204 <value type="int" key="Analyzer.Valgrind.NumCallers">25</value>
205 <valuelist type="QVariantList" key="Analyzer.Valgrind.RemovedSuppressionFiles"/>
205 <valuelist type="QVariantList" key="Analyzer.Valgrind.RemovedSuppressionFiles"/>
206 <value type="int" key="Analyzer.Valgrind.SelfModifyingCodeDetection">1</value>
207 <value type="bool" key="Analyzer.Valgrind.Settings.UseGlobalSettings">true</value>
208 <value type="bool" key="Analyzer.Valgrind.ShowReachable">false</value>
206 <value type="bool" key="Analyzer.Valgrind.TrackOrigins">true</value>
209 <value type="bool" key="Analyzer.Valgrind.TrackOrigins">true</value>
207 <value type="QString" key="Analyzer.Valgrind.ValgrindExecutable">valgrind</value>
210 <value type="QString" key="Analyzer.Valgrind.ValgrindExecutable">valgrind</value>
208 <valuelist type="QVariantList" key="Analyzer.Valgrind.VisibleErrorKinds">
211 <valuelist type="QVariantList" key="Analyzer.Valgrind.VisibleErrorKinds">
209 <value type="int">0</value>
212 <value type="int">0</value>
210 <value type="int">1</value>
213 <value type="int">1</value>
211 <value type="int">2</value>
214 <value type="int">2</value>
212 <value type="int">3</value>
215 <value type="int">3</value>
213 <value type="int">4</value>
216 <value type="int">4</value>
214 <value type="int">5</value>
217 <value type="int">5</value>
215 <value type="int">6</value>
218 <value type="int">6</value>
216 <value type="int">7</value>
219 <value type="int">7</value>
217 <value type="int">8</value>
220 <value type="int">8</value>
218 <value type="int">9</value>
221 <value type="int">9</value>
219 <value type="int">10</value>
222 <value type="int">10</value>
220 <value type="int">11</value>
223 <value type="int">11</value>
221 <value type="int">12</value>
224 <value type="int">12</value>
222 <value type="int">13</value>
225 <value type="int">13</value>
223 <value type="int">14</value>
226 <value type="int">14</value>
224 </valuelist>
227 </valuelist>
225 <value type="int" key="PE.EnvironmentAspect.Base">2</value>
228 <value type="int" key="PE.EnvironmentAspect.Base">2</value>
226 <valuelist type="QVariantList" key="PE.EnvironmentAspect.Changes"/>
229 <valuelist type="QVariantList" key="PE.EnvironmentAspect.Changes"/>
227 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">fsw-qt</value>
230 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">fsw-qt</value>
228 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
231 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
229 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4RunConfiguration:/opt/DEV_PLE/FSW-qt/fsw-qt.pro</value>
232 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4RunConfiguration:/opt/DEV_PLE/FSW-qt/fsw-qt.pro</value>
230 <value type="QString" key="Qt4ProjectManager.Qt4RunConfiguration.CommandLineArguments"></value>
233 <value type="QString" key="Qt4ProjectManager.Qt4RunConfiguration.CommandLineArguments"></value>
231 <value type="QString" key="Qt4ProjectManager.Qt4RunConfiguration.ProFile">fsw-qt.pro</value>
234 <value type="QString" key="Qt4ProjectManager.Qt4RunConfiguration.ProFile">fsw-qt.pro</value>
232 <value type="bool" key="Qt4ProjectManager.Qt4RunConfiguration.UseDyldImageSuffix">false</value>
235 <value type="bool" key="Qt4ProjectManager.Qt4RunConfiguration.UseDyldImageSuffix">false</value>
233 <value type="bool" key="Qt4ProjectManager.Qt4RunConfiguration.UseTerminal">true</value>
236 <value type="bool" key="Qt4ProjectManager.Qt4RunConfiguration.UseTerminal">true</value>
234 <value type="QString" key="Qt4ProjectManager.Qt4RunConfiguration.UserWorkingDirectory"></value>
237 <value type="QString" key="Qt4ProjectManager.Qt4RunConfiguration.UserWorkingDirectory"></value>
235 <value type="uint" key="RunConfiguration.QmlDebugServerPort">3768</value>
238 <value type="uint" key="RunConfiguration.QmlDebugServerPort">3768</value>
236 <value type="bool" key="RunConfiguration.UseCppDebugger">true</value>
239 <value type="bool" key="RunConfiguration.UseCppDebugger">true</value>
237 <value type="bool" key="RunConfiguration.UseCppDebuggerAuto">false</value>
240 <value type="bool" key="RunConfiguration.UseCppDebuggerAuto">false</value>
238 <value type="bool" key="RunConfiguration.UseMultiProcess">false</value>
241 <value type="bool" key="RunConfiguration.UseMultiProcess">false</value>
239 <value type="bool" key="RunConfiguration.UseQmlDebugger">false</value>
242 <value type="bool" key="RunConfiguration.UseQmlDebugger">false</value>
240 <value type="bool" key="RunConfiguration.UseQmlDebuggerAuto">false</value>
243 <value type="bool" key="RunConfiguration.UseQmlDebuggerAuto">false</value>
241 </valuemap>
244 </valuemap>
242 <valuemap type="QVariantMap" key="ProjectExplorer.Target.RunConfiguration.1">
245 <valuemap type="QVariantMap" key="ProjectExplorer.Target.RunConfiguration.1">
243 <value type="bool" key="Analyzer.Project.UseGlobal">true</value>
244 <valuelist type="QVariantList" key="Analyzer.Valgrind.AddedSuppressionFiles"/>
246 <valuelist type="QVariantList" key="Analyzer.Valgrind.AddedSuppressionFiles"/>
245 <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectBusEvents">false</value>
247 <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectBusEvents">false</value>
246 <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectSystime">false</value>
248 <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectSystime">false</value>
247 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableBranchSim">false</value>
249 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableBranchSim">false</value>
248 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableCacheSim">false</value>
250 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableCacheSim">false</value>
249 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableEventToolTips">true</value>
251 <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableEventToolTips">true</value>
250 <value type="double" key="Analyzer.Valgrind.Callgrind.MinimumCostRatio">0.01</value>
252 <value type="double" key="Analyzer.Valgrind.Callgrind.MinimumCostRatio">0.01</value>
251 <value type="double" key="Analyzer.Valgrind.Callgrind.VisualisationMinimumCostRatio">10</value>
253 <value type="double" key="Analyzer.Valgrind.Callgrind.VisualisationMinimumCostRatio">10</value>
252 <value type="bool" key="Analyzer.Valgrind.FilterExternalIssues">true</value>
254 <value type="bool" key="Analyzer.Valgrind.FilterExternalIssues">true</value>
255 <value type="int" key="Analyzer.Valgrind.LeakCheckOnFinish">1</value>
253 <value type="int" key="Analyzer.Valgrind.NumCallers">25</value>
256 <value type="int" key="Analyzer.Valgrind.NumCallers">25</value>
254 <valuelist type="QVariantList" key="Analyzer.Valgrind.RemovedSuppressionFiles"/>
257 <valuelist type="QVariantList" key="Analyzer.Valgrind.RemovedSuppressionFiles"/>
258 <value type="int" key="Analyzer.Valgrind.SelfModifyingCodeDetection">1</value>
259 <value type="bool" key="Analyzer.Valgrind.Settings.UseGlobalSettings">true</value>
260 <value type="bool" key="Analyzer.Valgrind.ShowReachable">false</value>
255 <value type="bool" key="Analyzer.Valgrind.TrackOrigins">true</value>
261 <value type="bool" key="Analyzer.Valgrind.TrackOrigins">true</value>
256 <value type="QString" key="Analyzer.Valgrind.ValgrindExecutable">valgrind</value>
262 <value type="QString" key="Analyzer.Valgrind.ValgrindExecutable">valgrind</value>
257 <valuelist type="QVariantList" key="Analyzer.Valgrind.VisibleErrorKinds">
263 <valuelist type="QVariantList" key="Analyzer.Valgrind.VisibleErrorKinds">
258 <value type="int">0</value>
264 <value type="int">0</value>
259 <value type="int">1</value>
265 <value type="int">1</value>
260 <value type="int">2</value>
266 <value type="int">2</value>
261 <value type="int">3</value>
267 <value type="int">3</value>
262 <value type="int">4</value>
268 <value type="int">4</value>
263 <value type="int">5</value>
269 <value type="int">5</value>
264 <value type="int">6</value>
270 <value type="int">6</value>
265 <value type="int">7</value>
271 <value type="int">7</value>
266 <value type="int">8</value>
272 <value type="int">8</value>
267 <value type="int">9</value>
273 <value type="int">9</value>
268 <value type="int">10</value>
274 <value type="int">10</value>
269 <value type="int">11</value>
275 <value type="int">11</value>
270 <value type="int">12</value>
276 <value type="int">12</value>
271 <value type="int">13</value>
277 <value type="int">13</value>
272 <value type="int">14</value>
278 <value type="int">14</value>
273 </valuelist>
279 </valuelist>
274 <value type="int" key="PE.EnvironmentAspect.Base">2</value>
280 <value type="int" key="PE.EnvironmentAspect.Base">2</value>
275 <valuelist type="QVariantList" key="PE.EnvironmentAspect.Changes"/>
281 <valuelist type="QVariantList" key="PE.EnvironmentAspect.Changes"/>
276 <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.Arguments"></value>
282 <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.Arguments"></value>
277 <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.Executable">doxygen</value>
283 <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.Executable">doxygen</value>
278 <value type="bool" key="ProjectExplorer.CustomExecutableRunConfiguration.UseTerminal">true</value>
284 <value type="bool" key="ProjectExplorer.CustomExecutableRunConfiguration.UseTerminal">true</value>
279 <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.WorkingDirectory">/opt/DEV_PLE/doc</value>
285 <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.WorkingDirectory">/opt/DEV_PLE/doc</value>
280 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Run doxygen</value>
286 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Run doxygen</value>
281 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
287 <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value>
282 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.CustomExecutableRunConfiguration</value>
288 <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.CustomExecutableRunConfiguration</value>
283 <value type="uint" key="RunConfiguration.QmlDebugServerPort">3768</value>
289 <value type="uint" key="RunConfiguration.QmlDebugServerPort">3768</value>
284 <value type="bool" key="RunConfiguration.UseCppDebugger">true</value>
290 <value type="bool" key="RunConfiguration.UseCppDebugger">true</value>
285 <value type="bool" key="RunConfiguration.UseCppDebuggerAuto">false</value>
291 <value type="bool" key="RunConfiguration.UseCppDebuggerAuto">false</value>
286 <value type="bool" key="RunConfiguration.UseMultiProcess">false</value>
292 <value type="bool" key="RunConfiguration.UseMultiProcess">false</value>
287 <value type="bool" key="RunConfiguration.UseQmlDebugger">false</value>
293 <value type="bool" key="RunConfiguration.UseQmlDebugger">false</value>
288 <value type="bool" key="RunConfiguration.UseQmlDebuggerAuto">true</value>
294 <value type="bool" key="RunConfiguration.UseQmlDebuggerAuto">true</value>
289 </valuemap>
295 </valuemap>
290 <value type="int" key="ProjectExplorer.Target.RunConfigurationCount">2</value>
296 <value type="int" key="ProjectExplorer.Target.RunConfigurationCount">2</value>
291 </valuemap>
297 </valuemap>
292 </data>
298 </data>
293 <data>
299 <data>
294 <variable>ProjectExplorer.Project.TargetCount</variable>
300 <variable>ProjectExplorer.Project.TargetCount</variable>
295 <value type="int">1</value>
301 <value type="int">1</value>
296 </data>
302 </data>
297 <data>
303 <data>
298 <variable>ProjectExplorer.Project.Updater.EnvironmentId</variable>
304 <variable>ProjectExplorer.Project.Updater.EnvironmentId</variable>
299 <value type="QByteArray">{2e58a81f-9962-4bba-ae6b-760177f0656c}</value>
305 <value type="QByteArray">{2e58a81f-9962-4bba-ae6b-760177f0656c}</value>
300 </data>
306 </data>
301 <data>
307 <data>
302 <variable>ProjectExplorer.Project.Updater.FileVersion</variable>
308 <variable>ProjectExplorer.Project.Updater.FileVersion</variable>
303 <value type="int">14</value>
309 <value type="int">15</value>
304 </data>
310 </data>
305 </qtcreator>
311 </qtcreator>
@@ -1,1242 +1,1242
1 /** Functions and tasks related to waveform packet generation.
1 /** Functions and tasks related to waveform packet generation.
2 *
2 *
3 * @file
3 * @file
4 * @author P. LEROY
4 * @author P. LEROY
5 *
5 *
6 * A group of functions to handle waveforms, in snapshot or continuous format.\n
6 * A group of functions to handle waveforms, in snapshot or continuous format.\n
7 *
7 *
8 */
8 */
9
9
10 #include "wf_handler.h"
10 #include "wf_handler.h"
11
11
12 // SWF
12 // SWF
13 Header_TM_LFR_SCIENCE_SWF_t headerSWF_F0[7];
13 Header_TM_LFR_SCIENCE_SWF_t headerSWF_F0[7];
14 Header_TM_LFR_SCIENCE_SWF_t headerSWF_F1[7];
14 Header_TM_LFR_SCIENCE_SWF_t headerSWF_F1[7];
15 Header_TM_LFR_SCIENCE_SWF_t headerSWF_F2[7];
15 Header_TM_LFR_SCIENCE_SWF_t headerSWF_F2[7];
16 // CWF
16 // CWF
17 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F1[7];
17 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F1[7];
18 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F2_BURST[7];
18 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F2_BURST[7];
19 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F2_SBM2[7];
19 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F2_SBM2[7];
20 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F3[7];
20 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F3[7];
21 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F3_light[7];
21 Header_TM_LFR_SCIENCE_CWF_t headerCWF_F3_light[7];
22
22
23 unsigned char doubleSendCWF1 = 0;
23 unsigned char doubleSendCWF1 = 0;
24 unsigned char doubleSendCWF2 = 0;
24 unsigned char doubleSendCWF2 = 0;
25 unsigned char fullRecord;
25 unsigned char fullRecord;
26
26
27 rtems_isr waveforms_isr( rtems_vector_number vector )
27 rtems_isr waveforms_isr( rtems_vector_number vector )
28 {
28 {
29 unsigned int statusReg;
29 unsigned int statusReg;
30
30
31 /** This is the interrupt sub routine called by the waveform picker core.
31 /** This is the interrupt sub routine called by the waveform picker core.
32 *
32 *
33 * This ISR launch different actions depending mainly on two pieces of information:
33 * This ISR launch different actions depending mainly on two pieces of information:
34 * 1. the values read in the registers of the waveform picker.
34 * 1. the values read in the registers of the waveform picker.
35 * 2. the current LFR mode.
35 * 2. the current LFR mode.
36 *
36 *
37 */
37 */
38
38
39 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff00f; // clear new_err and full_err
39 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff00f; // clear new_err and full_err
40
40
41 #ifdef GSA
41 #ifdef GSA
42 #else
42 #else
43 if ( (lfrCurrentMode == LFR_MODE_NORMAL)
43 if ( (lfrCurrentMode == LFR_MODE_NORMAL)
44 || (lfrCurrentMode == LFR_MODE_SBM1) || (lfrCurrentMode == LFR_MODE_SBM2) )
44 || (lfrCurrentMode == LFR_MODE_SBM1) || (lfrCurrentMode == LFR_MODE_SBM2) )
45 { // in modes other than STANDBY and BURST, send the CWF_F3 data
45 { // in modes other than STANDBY and BURST, send the CWF_F3 data
46 if ((new_waveform_picker_regs->status & 0x08) == 0x08){ // [1000] f3 is full
46 if ((new_waveform_picker_regs->status & 0x08) == 0x08){ // [1000] f3 is full
47 // (1) change the receiving buffer for the waveform picker
47 // (1) change the receiving buffer for the waveform picker
48 if (new_waveform_picker_regs->addr_data_f3 == (int) wf_cont_f3) {
48 if (new_waveform_picker_regs->addr_data_f3 == (int) wf_cont_f3) {
49 new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3_bis);
49 new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3_bis);
50 }
50 }
51 else {
51 else {
52 new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3);
52 new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3);
53 }
53 }
54 // (2) send an event for the waveforms transmission
54 // (2) send an event for the waveforms transmission
55 if (rtems_event_send( Task_id[TASKID_CWF3], RTEMS_EVENT_0 ) != RTEMS_SUCCESSFUL) {
55 if (rtems_event_send( Task_id[TASKID_CWF3], RTEMS_EVENT_0 ) != RTEMS_SUCCESSFUL) {
56 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
56 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
57 }
57 }
58 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff777; // reset f3 bits to 0, [1111 0111 0111 0111]
58 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff777; // reset f3 bits to 0, [1111 0111 0111 0111]
59 }
59 }
60 }
60 }
61 #endif
61 #endif
62
62
63 switch(lfrCurrentMode)
63 switch(lfrCurrentMode)
64 {
64 {
65 //********
65 //********
66 // STANDBY
66 // STANDBY
67 case(LFR_MODE_STANDBY):
67 case(LFR_MODE_STANDBY):
68 break;
68 break;
69
69
70 //******
70 //******
71 // NORMAL
71 // NORMAL
72 case(LFR_MODE_NORMAL):
72 case(LFR_MODE_NORMAL):
73 #ifdef GSA
73 #ifdef GSA
74 PRINTF("in waveform_isr *** unexpected waveform picker interruption\n")
74 PRINTF("in waveform_isr *** unexpected waveform picker interruption\n")
75 #else
75 #else
76 statusReg = new_waveform_picker_regs->status;
76 statusReg = new_waveform_picker_regs->status;
77 fullRecord = fullRecord | ( statusReg & 0x7 );
77 fullRecord = fullRecord | ( statusReg & 0x7 );
78 if ( (new_waveform_picker_regs->status & 0x7) == 0x7 ) // f2 f1 and f0 are full
78 if ( (new_waveform_picker_regs->status & 0x7) == 0x7 ) // f2 f1 and f0 are full
79 {
79 {
80 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) {
80 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) {
81 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
81 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
82 }
82 }
83 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff888;
83 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff888;
84 }
84 }
85 #endif
85 #endif
86 break;
86 break;
87
87
88 //******
88 //******
89 // BURST
89 // BURST
90 case(LFR_MODE_BURST):
90 case(LFR_MODE_BURST):
91 #ifdef GSA
91 #ifdef GSA
92 PRINTF("in waveform_isr *** unexpected waveform picker interruption\n")
92 PRINTF("in waveform_isr *** unexpected waveform picker interruption\n")
93 #else
93 #else
94 if ((new_waveform_picker_regs->status & 0x04) == 0x04){ // [0100] check the f2 full bit
94 if ((new_waveform_picker_regs->status & 0x04) == 0x04){ // [0100] check the f2 full bit
95 // (1) change the receiving buffer for the waveform picker
95 // (1) change the receiving buffer for the waveform picker
96 if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) {
96 if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) {
97 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_bis);
97 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_bis);
98 }
98 }
99 else {
99 else {
100 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2);
100 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2);
101 }
101 }
102 // (2) send an event for the waveforms transmission
102 // (2) send an event for the waveforms transmission
103 if (rtems_event_send( Task_id[TASKID_CWF2], RTEMS_EVENT_MODE_BURST ) != RTEMS_SUCCESSFUL) {
103 if (rtems_event_send( Task_id[TASKID_CWF2], RTEMS_EVENT_MODE_BURST ) != RTEMS_SUCCESSFUL) {
104 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
104 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
105 }
105 }
106 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffbbb; // [1111 1011 1011 1011] f2 bits = 0
106 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffbbb; // [1111 1011 1011 1011] f2 bits = 0
107 }
107 }
108 #endif
108 #endif
109 break;
109 break;
110
110
111 //*****
111 //*****
112 // SBM1
112 // SBM1
113 case(LFR_MODE_SBM1):
113 case(LFR_MODE_SBM1):
114 #ifdef GSA
114 #ifdef GSA
115 PRINTF("in waveform_isr *** unexpected waveform picker interruption\n")
115 PRINTF("in waveform_isr *** unexpected waveform picker interruption\n")
116 #else
116 #else
117 if ((new_waveform_picker_regs->status & 0x02) == 0x02){ // [0010] check the f1 full bit
117 if ((new_waveform_picker_regs->status & 0x02) == 0x02){ // [0010] check the f1 full bit
118 // (1) change the receiving buffer for the waveform picker
118 // (1) change the receiving buffer for the waveform picker
119 if ( param_local.local_sbm1_nb_cwf_sent == (param_local.local_sbm1_nb_cwf_max-1) )
119 if ( param_local.local_sbm1_nb_cwf_sent == (param_local.local_sbm1_nb_cwf_max-1) )
120 {
120 {
121 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_norm);
121 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_norm);
122 }
122 }
123 else if ( new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1_norm )
123 else if ( new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1_norm )
124 {
124 {
125 doubleSendCWF1 = 1;
125 doubleSendCWF1 = 1;
126 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1);
126 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1);
127 }
127 }
128 else if ( new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1 ) {
128 else if ( new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1 ) {
129 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_bis);
129 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_bis);
130 }
130 }
131 else {
131 else {
132 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1);
132 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1);
133 }
133 }
134 // (2) send an event for the waveforms transmission
134 // (2) send an event for the waveforms transmission
135 if (rtems_event_send( Task_id[TASKID_CWF1], RTEMS_EVENT_MODE_SBM1 ) != RTEMS_SUCCESSFUL) {
135 if (rtems_event_send( Task_id[TASKID_CWF1], RTEMS_EVENT_MODE_SBM1 ) != RTEMS_SUCCESSFUL) {
136 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
136 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
137 }
137 }
138 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffddd; // [1111 1101 1101 1101] f1 bit = 0
138 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffddd; // [1111 1101 1101 1101] f1 bit = 0
139 }
139 }
140 if ( ( (new_waveform_picker_regs->status & 0x05) == 0x05 ) ) { // [0101] check the f2 and f0 full bit
140 if ( ( (new_waveform_picker_regs->status & 0x05) == 0x05 ) ) { // [0101] check the f2 and f0 full bit
141 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) {
141 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) {
142 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
142 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
143 }
143 }
144 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffaaa; // [1111 1010 1010 1010] f2 and f0 bits = 0
144 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffaaa; // [1111 1010 1010 1010] f2 and f0 bits = 0
145 reset_local_sbm1_nb_cwf_sent();
145 reset_local_sbm1_nb_cwf_sent();
146 }
146 }
147
147
148 #endif
148 #endif
149 break;
149 break;
150
150
151 //*****
151 //*****
152 // SBM2
152 // SBM2
153 case(LFR_MODE_SBM2):
153 case(LFR_MODE_SBM2):
154 #ifdef GSA
154 #ifdef GSA
155 PRINTF("in waveform_isr *** unexpected waveform picker interruption\n")
155 PRINTF("in waveform_isr *** unexpected waveform picker interruption\n")
156 #else
156 #else
157 if ((new_waveform_picker_regs->status & 0x04) == 0x04){ // [0100] check the f2 full bit
157 if ((new_waveform_picker_regs->status & 0x04) == 0x04){ // [0100] check the f2 full bit
158 // (1) change the receiving buffer for the waveform picker
158 // (1) change the receiving buffer for the waveform picker
159 if ( param_local.local_sbm2_nb_cwf_sent == (param_local.local_sbm2_nb_cwf_max-1) )
159 if ( param_local.local_sbm2_nb_cwf_sent == (param_local.local_sbm2_nb_cwf_max-1) )
160 {
160 {
161 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_norm);
161 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_norm);
162 }
162 }
163 else if ( new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2_norm ) {
163 else if ( new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2_norm ) {
164 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2);
164 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2);
165 doubleSendCWF2 = 1;
165 doubleSendCWF2 = 1;
166 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_SBM2_WFRM ) != RTEMS_SUCCESSFUL) {
166 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_SBM2_WFRM ) != RTEMS_SUCCESSFUL) {
167 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
167 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
168 }
168 }
169 reset_local_sbm2_nb_cwf_sent();
169 reset_local_sbm2_nb_cwf_sent();
170 }
170 }
171 else if ( new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2 ) {
171 else if ( new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2 ) {
172 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_bis);
172 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_bis);
173 }
173 }
174 else {
174 else {
175 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2);
175 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2);
176 }
176 }
177 // (2) send an event for the waveforms transmission
177 // (2) send an event for the waveforms transmission
178 if (rtems_event_send( Task_id[TASKID_CWF2], RTEMS_EVENT_MODE_SBM2 ) != RTEMS_SUCCESSFUL) {
178 if (rtems_event_send( Task_id[TASKID_CWF2], RTEMS_EVENT_MODE_SBM2 ) != RTEMS_SUCCESSFUL) {
179 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
179 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
180 }
180 }
181 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffbbb; // [1111 1011 1011 1011] f2 bit = 0
181 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffbbb; // [1111 1011 1011 1011] f2 bit = 0
182 }
182 }
183 if ( ( (new_waveform_picker_regs->status & 0x03) == 0x03 ) ) { // [0011] f3 f2 f1 f0, f1 and f0 are full
183 if ( ( (new_waveform_picker_regs->status & 0x03) == 0x03 ) ) { // [0011] f3 f2 f1 f0, f1 and f0 are full
184 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_SBM2 ) != RTEMS_SUCCESSFUL) {
184 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_SBM2 ) != RTEMS_SUCCESSFUL) {
185 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
185 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 );
186 }
186 }
187 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffccc; // [1111 1100 1100 1100] f1, f0 bits = 0
187 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffccc; // [1111 1100 1100 1100] f1, f0 bits = 0
188 }
188 }
189 #endif
189 #endif
190 break;
190 break;
191
191
192 //********
192 //********
193 // DEFAULT
193 // DEFAULT
194 default:
194 default:
195 break;
195 break;
196 }
196 }
197 }
197 }
198
198
199 rtems_isr waveforms_simulator_isr( rtems_vector_number vector )
199 rtems_isr waveforms_simulator_isr( rtems_vector_number vector )
200 {
200 {
201 /** This is the interrupt sub routine called by the waveform picker simulator.
201 /** This is the interrupt sub routine called by the waveform picker simulator.
202 *
202 *
203 * This ISR is for debug purpose only.
203 * This ISR is for debug purpose only.
204 *
204 *
205 */
205 */
206
206
207 unsigned char lfrMode;
207 unsigned char lfrMode;
208 lfrMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4;
208 lfrMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4;
209
209
210 switch(lfrMode) {
210 switch(lfrMode) {
211 case (LFR_MODE_STANDBY):
211 case (LFR_MODE_STANDBY):
212 break;
212 break;
213 case (LFR_MODE_NORMAL):
213 case (LFR_MODE_NORMAL):
214 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) {
214 if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) {
215 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_5 );
215 rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_5 );
216 }
216 }
217 break;
217 break;
218 case (LFR_MODE_BURST):
218 case (LFR_MODE_BURST):
219 break;
219 break;
220 case (LFR_MODE_SBM1):
220 case (LFR_MODE_SBM1):
221 break;
221 break;
222 case (LFR_MODE_SBM2):
222 case (LFR_MODE_SBM2):
223 break;
223 break;
224 }
224 }
225 }
225 }
226
226
227 rtems_task wfrm_task(rtems_task_argument argument) //used with the waveform picker VHDL IP
227 rtems_task wfrm_task(rtems_task_argument argument) //used with the waveform picker VHDL IP
228 {
228 {
229 /** This RTEMS task is dedicated to the transmission of snapshots of the NORMAL mode.
229 /** This RTEMS task is dedicated to the transmission of snapshots of the NORMAL mode.
230 *
230 *
231 * @param unused is the starting argument of the RTEMS task
231 * @param unused is the starting argument of the RTEMS task
232 *
232 *
233 * The following data packets are sent by this task:
233 * The following data packets are sent by this task:
234 * - TM_LFR_SCIENCE_NORMAL_SWF_F0
234 * - TM_LFR_SCIENCE_NORMAL_SWF_F0
235 * - TM_LFR_SCIENCE_NORMAL_SWF_F1
235 * - TM_LFR_SCIENCE_NORMAL_SWF_F1
236 * - TM_LFR_SCIENCE_NORMAL_SWF_F2
236 * - TM_LFR_SCIENCE_NORMAL_SWF_F2
237 *
237 *
238 */
238 */
239
239
240 rtems_event_set event_out;
240 rtems_event_set event_out;
241 rtems_id queue_id;
241 rtems_id queue_id;
242
242
243 init_header_snapshot_wf_table( SID_NORM_SWF_F0, headerSWF_F0 );
243 init_header_snapshot_wf_table( SID_NORM_SWF_F0, headerSWF_F0 );
244 init_header_snapshot_wf_table( SID_NORM_SWF_F1, headerSWF_F1 );
244 init_header_snapshot_wf_table( SID_NORM_SWF_F1, headerSWF_F1 );
245 init_header_snapshot_wf_table( SID_NORM_SWF_F2, headerSWF_F2 );
245 init_header_snapshot_wf_table( SID_NORM_SWF_F2, headerSWF_F2 );
246
246
247 init_waveforms();
247 init_waveforms();
248
248
249 queue_id = get_pkts_queue_id();
249 queue_id = get_pkts_queue_id();
250
250
251 BOOT_PRINTF("in WFRM ***\n")
251 BOOT_PRINTF("in WFRM ***\n")
252
252
253 while(1){
253 while(1){
254 // wait for an RTEMS_EVENT
254 // wait for an RTEMS_EVENT
255 rtems_event_receive(RTEMS_EVENT_MODE_NORMAL | RTEMS_EVENT_MODE_SBM1
255 rtems_event_receive(RTEMS_EVENT_MODE_NORMAL | RTEMS_EVENT_MODE_SBM1
256 | RTEMS_EVENT_MODE_SBM2 | RTEMS_EVENT_MODE_SBM2_WFRM,
256 | RTEMS_EVENT_MODE_SBM2 | RTEMS_EVENT_MODE_SBM2_WFRM,
257 RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out);
257 RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out);
258
258
259 if (event_out == RTEMS_EVENT_MODE_NORMAL)
259 if (event_out == RTEMS_EVENT_MODE_NORMAL)
260 {
260 {
261 send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id);
261 send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id);
262 send_waveform_SWF(wf_snap_f1, SID_NORM_SWF_F1, headerSWF_F1, queue_id);
262 send_waveform_SWF(wf_snap_f1, SID_NORM_SWF_F1, headerSWF_F1, queue_id);
263 send_waveform_SWF(wf_snap_f2, SID_NORM_SWF_F2, headerSWF_F2, queue_id);
263 send_waveform_SWF(wf_snap_f2, SID_NORM_SWF_F2, headerSWF_F2, queue_id);
264 #ifdef GSA
264 #ifdef GSA
265 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xf888; // [1111 1000 1000 1000] f2, f1, f0 bits =0
265 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xf888; // [1111 1000 1000 1000] f2, f1, f0 bits =0
266 #endif
266 #endif
267 }
267 }
268 else if (event_out == RTEMS_EVENT_MODE_SBM1)
268 else if (event_out == RTEMS_EVENT_MODE_SBM1)
269 {
269 {
270 send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id);
270 send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id);
271 send_waveform_SWF(wf_snap_f1_norm, SID_NORM_SWF_F1, headerSWF_F1, queue_id);
271 send_waveform_SWF(wf_snap_f1_norm, SID_NORM_SWF_F1, headerSWF_F1, queue_id);
272 send_waveform_SWF(wf_snap_f2, SID_NORM_SWF_F2, headerSWF_F2, queue_id);
272 send_waveform_SWF(wf_snap_f2, SID_NORM_SWF_F2, headerSWF_F2, queue_id);
273 #ifdef GSA
273 #ifdef GSA
274 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffaaa; // [1111 1010 1010 1010] f2, f0 bits = 0
274 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffaaa; // [1111 1010 1010 1010] f2, f0 bits = 0
275 #endif
275 #endif
276 }
276 }
277 else if (event_out == RTEMS_EVENT_MODE_SBM2)
277 else if (event_out == RTEMS_EVENT_MODE_SBM2)
278 {
278 {
279 send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id);
279 send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id);
280 send_waveform_SWF(wf_snap_f1, SID_NORM_SWF_F1, headerSWF_F1, queue_id);
280 send_waveform_SWF(wf_snap_f1, SID_NORM_SWF_F1, headerSWF_F1, queue_id);
281 #ifdef GSA
281 #ifdef GSA
282 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffccc; // [1111 1100 1100 1100] f1, f0 bits = 0
282 new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffccc; // [1111 1100 1100 1100] f1, f0 bits = 0
283 #endif
283 #endif
284 }
284 }
285 else if (event_out == RTEMS_EVENT_MODE_SBM2_WFRM)
285 else if (event_out == RTEMS_EVENT_MODE_SBM2_WFRM)
286 {
286 {
287 send_waveform_SWF(wf_snap_f2_norm, SID_NORM_SWF_F2, headerSWF_F2, queue_id);
287 send_waveform_SWF(wf_snap_f2_norm, SID_NORM_SWF_F2, headerSWF_F2, queue_id);
288 }
288 }
289 else
289 else
290 {
290 {
291 PRINTF("in WFRM *** unexpected event")
291 PRINTF("in WFRM *** unexpected event")
292 }
292 }
293
293
294
294
295 #ifdef GSA
295 #ifdef GSA
296 // irq processed, reset the related register of the timer unit
296 // irq processed, reset the related register of the timer unit
297 gptimer_regs->timer[TIMER_WF_SIMULATOR].ctrl = gptimer_regs->timer[TIMER_WF_SIMULATOR].ctrl | 0x00000010;
297 gptimer_regs->timer[TIMER_WF_SIMULATOR].ctrl = gptimer_regs->timer[TIMER_WF_SIMULATOR].ctrl | 0x00000010;
298 // clear the interruption
298 // clear the interruption
299 LEON_Unmask_interrupt( IRQ_WF );
299 LEON_Unmask_interrupt( IRQ_WF );
300 #endif
300 #endif
301 }
301 }
302 }
302 }
303
303
304 rtems_task cwf3_task(rtems_task_argument argument) //used with the waveform picker VHDL IP
304 rtems_task cwf3_task(rtems_task_argument argument) //used with the waveform picker VHDL IP
305 {
305 {
306 /** This RTEMS task is dedicated to the transmission of continuous waveforms at f3.
306 /** This RTEMS task is dedicated to the transmission of continuous waveforms at f3.
307 *
307 *
308 * @param unused is the starting argument of the RTEMS task
308 * @param unused is the starting argument of the RTEMS task
309 *
309 *
310 * The following data packet is sent by this task:
310 * The following data packet is sent by this task:
311 * - TM_LFR_SCIENCE_NORMAL_CWF_F3
311 * - TM_LFR_SCIENCE_NORMAL_CWF_F3
312 *
312 *
313 */
313 */
314
314
315 rtems_event_set event_out;
315 rtems_event_set event_out;
316 rtems_id queue_id;
316 rtems_id queue_id;
317
317
318 init_header_continuous_wf_table( SID_NORM_CWF_F3, headerCWF_F3 );
318 init_header_continuous_wf_table( SID_NORM_CWF_F3, headerCWF_F3 );
319 init_header_continuous_wf3_light_table( headerCWF_F3_light );
319 init_header_continuous_wf3_light_table( headerCWF_F3_light );
320
320
321 queue_id = get_pkts_queue_id();
321 queue_id = get_pkts_queue_id();
322
322
323 BOOT_PRINTF("in CWF3 ***\n")
323 BOOT_PRINTF("in CWF3 ***\n")
324
324
325 while(1){
325 while(1){
326 // wait for an RTEMS_EVENT
326 // wait for an RTEMS_EVENT
327 rtems_event_receive( RTEMS_EVENT_0,
327 rtems_event_receive( RTEMS_EVENT_0,
328 RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out);
328 RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out);
329 PRINTF("send CWF F3 \n")
329 PRINTF("send CWF F3 \n")
330 #ifdef GSA
330 #ifdef GSA
331 #else
331 #else
332 if (new_waveform_picker_regs->addr_data_f3 == (int) wf_cont_f3) {
332 if (new_waveform_picker_regs->addr_data_f3 == (int) wf_cont_f3) {
333 send_waveform_CWF3_light( wf_cont_f3_bis, headerCWF_F3_light, queue_id );
333 send_waveform_CWF3_light( wf_cont_f3_bis, headerCWF_F3_light, queue_id );
334 }
334 }
335 else {
335 else {
336 send_waveform_CWF3_light( wf_cont_f3, headerCWF_F3_light, queue_id );
336 send_waveform_CWF3_light( wf_cont_f3, headerCWF_F3_light, queue_id );
337 }
337 }
338 #endif
338 #endif
339 }
339 }
340 }
340 }
341
341
342 rtems_task cwf2_task(rtems_task_argument argument) // ONLY USED IN BURST AND SBM2
342 rtems_task cwf2_task(rtems_task_argument argument) // ONLY USED IN BURST AND SBM2
343 {
343 {
344 /** This RTEMS task is dedicated to the transmission of continuous waveforms at f2.
344 /** This RTEMS task is dedicated to the transmission of continuous waveforms at f2.
345 *
345 *
346 * @param unused is the starting argument of the RTEMS task
346 * @param unused is the starting argument of the RTEMS task
347 *
347 *
348 * The following data packet is sent by this function:
348 * The following data packet is sent by this function:
349 * - TM_LFR_SCIENCE_BURST_CWF_F2
349 * - TM_LFR_SCIENCE_BURST_CWF_F2
350 * - TM_LFR_SCIENCE_SBM2_CWF_F2
350 * - TM_LFR_SCIENCE_SBM2_CWF_F2
351 *
351 *
352 */
352 */
353
353
354 rtems_event_set event_out;
354 rtems_event_set event_out;
355 rtems_id queue_id;
355 rtems_id queue_id;
356
356
357 init_header_continuous_wf_table( SID_BURST_CWF_F2, headerCWF_F2_BURST );
357 init_header_continuous_wf_table( SID_BURST_CWF_F2, headerCWF_F2_BURST );
358 init_header_continuous_wf_table( SID_SBM2_CWF_F2, headerCWF_F2_SBM2 );
358 init_header_continuous_wf_table( SID_SBM2_CWF_F2, headerCWF_F2_SBM2 );
359
359
360 queue_id = get_pkts_queue_id();
360 queue_id = get_pkts_queue_id();
361
361
362 BOOT_PRINTF("in CWF2 ***\n")
362 BOOT_PRINTF("in CWF2 ***\n")
363
363
364 while(1){
364 while(1){
365 // wait for an RTEMS_EVENT
365 // wait for an RTEMS_EVENT
366 rtems_event_receive( RTEMS_EVENT_MODE_BURST | RTEMS_EVENT_MODE_SBM2,
366 rtems_event_receive( RTEMS_EVENT_MODE_BURST | RTEMS_EVENT_MODE_SBM2,
367 RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out);
367 RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out);
368
368
369 if (event_out == RTEMS_EVENT_MODE_BURST)
369 if (event_out == RTEMS_EVENT_MODE_BURST)
370 {
370 {
371 // F2
371 // F2
372 #ifdef GSA
372 #ifdef GSA
373 #else
373 #else
374 if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) {
374 if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) {
375 send_waveform_CWF( wf_snap_f2_bis, SID_BURST_CWF_F2, headerCWF_F2_BURST, queue_id );
375 send_waveform_CWF( wf_snap_f2_bis, SID_BURST_CWF_F2, headerCWF_F2_BURST, queue_id );
376 }
376 }
377 else {
377 else {
378 send_waveform_CWF( wf_snap_f2, SID_BURST_CWF_F2, headerCWF_F2_BURST, queue_id );
378 send_waveform_CWF( wf_snap_f2, SID_BURST_CWF_F2, headerCWF_F2_BURST, queue_id );
379 }
379 }
380 #endif
380 #endif
381 }
381 }
382
382
383 else if (event_out == RTEMS_EVENT_MODE_SBM2)
383 else if (event_out == RTEMS_EVENT_MODE_SBM2)
384 {
384 {
385 #ifdef GSA
385 #ifdef GSA
386 #else
386 #else
387 if (doubleSendCWF2 == 1)
387 if (doubleSendCWF2 == 1)
388 {
388 {
389 doubleSendCWF2 = 0;
389 doubleSendCWF2 = 0;
390 send_waveform_CWF( wf_snap_f2_norm, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id );
390 send_waveform_CWF( wf_snap_f2_norm, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id );
391 }
391 }
392 else if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) {
392 else if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) {
393 send_waveform_CWF( wf_snap_f2_bis, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id );
393 send_waveform_CWF( wf_snap_f2_bis, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id );
394 }
394 }
395 else {
395 else {
396 send_waveform_CWF( wf_snap_f2, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id );
396 send_waveform_CWF( wf_snap_f2, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id );
397 }
397 }
398 param_local.local_sbm2_nb_cwf_sent ++;
398 param_local.local_sbm2_nb_cwf_sent ++;
399 #endif
399 #endif
400 }
400 }
401 else
401 else
402 {
402 {
403 PRINTF1("in CWF2 *** ERR mode = %d\n", lfrCurrentMode)
403 PRINTF1("in CWF2 *** ERR mode = %d\n", lfrCurrentMode)
404 }
404 }
405 }
405 }
406 }
406 }
407
407
408 rtems_task cwf1_task(rtems_task_argument argument) // ONLY USED IN SBM1
408 rtems_task cwf1_task(rtems_task_argument argument) // ONLY USED IN SBM1
409 {
409 {
410 /** This RTEMS task is dedicated to the transmission of continuous waveforms at f1.
410 /** This RTEMS task is dedicated to the transmission of continuous waveforms at f1.
411 *
411 *
412 * @param unused is the starting argument of the RTEMS task
412 * @param unused is the starting argument of the RTEMS task
413 *
413 *
414 * The following data packet is sent by this function:
414 * The following data packet is sent by this function:
415 * - TM_LFR_SCIENCE_SBM1_CWF_F1
415 * - TM_LFR_SCIENCE_SBM1_CWF_F1
416 *
416 *
417 */
417 */
418
418
419 rtems_event_set event_out;
419 rtems_event_set event_out;
420 rtems_id queue_id;
420 rtems_id queue_id;
421
421
422 init_header_continuous_wf_table( SID_SBM1_CWF_F1, headerCWF_F1 );
422 init_header_continuous_wf_table( SID_SBM1_CWF_F1, headerCWF_F1 );
423
423
424 queue_id = get_pkts_queue_id();
424 queue_id = get_pkts_queue_id();
425
425
426 BOOT_PRINTF("in CWF1 ***\n")
426 BOOT_PRINTF("in CWF1 ***\n")
427
427
428 while(1){
428 while(1){
429 // wait for an RTEMS_EVENT
429 // wait for an RTEMS_EVENT
430 rtems_event_receive( RTEMS_EVENT_MODE_SBM1,
430 rtems_event_receive( RTEMS_EVENT_MODE_SBM1,
431 RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out);
431 RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out);
432 if (event_out == RTEMS_EVENT_MODE_SBM1)
432 if (event_out == RTEMS_EVENT_MODE_SBM1)
433 {
433 {
434 #ifdef GSA
434 #ifdef GSA
435 #else
435 #else
436 if (doubleSendCWF1 == 1)
436 if (doubleSendCWF1 == 1)
437 {
437 {
438 doubleSendCWF1 = 0;
438 doubleSendCWF1 = 0;
439 send_waveform_CWF( wf_snap_f1_norm, SID_SBM1_CWF_F1, headerCWF_F1, queue_id );
439 send_waveform_CWF( wf_snap_f1_norm, SID_SBM1_CWF_F1, headerCWF_F1, queue_id );
440 }
440 }
441 else if (new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1) {
441 else if (new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1) {
442 send_waveform_CWF( wf_snap_f1_bis, SID_SBM1_CWF_F1, headerCWF_F1, queue_id );
442 send_waveform_CWF( wf_snap_f1_bis, SID_SBM1_CWF_F1, headerCWF_F1, queue_id );
443 }
443 }
444 else {
444 else {
445 send_waveform_CWF( wf_snap_f1, SID_SBM1_CWF_F1, headerCWF_F1, queue_id );
445 send_waveform_CWF( wf_snap_f1, SID_SBM1_CWF_F1, headerCWF_F1, queue_id );
446 }
446 }
447 param_local.local_sbm1_nb_cwf_sent ++;
447 param_local.local_sbm1_nb_cwf_sent ++;
448 #endif
448 #endif
449 }
449 }
450 else
450 else
451 {
451 {
452 PRINTF1("in CWF1 *** ERR mode = %d\n", lfrCurrentMode)
452 PRINTF1("in CWF1 *** ERR mode = %d\n", lfrCurrentMode)
453 }
453 }
454 }
454 }
455 }
455 }
456
456
457 //******************
457 //******************
458 // general functions
458 // general functions
459 void init_waveforms( void )
459 void init_waveforms( void )
460 {
460 {
461 int i = 0;
461 int i = 0;
462
462
463 for (i=0; i< NB_SAMPLES_PER_SNAPSHOT; i++)
463 for (i=0; i< NB_SAMPLES_PER_SNAPSHOT; i++)
464 {
464 {
465 // //***
465 // //***
466 // // F0
466 // // F0
467 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x88887777; //
467 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x88887777; //
468 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x22221111; //
468 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x22221111; //
469 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x44443333; //
469 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x44443333; //
470
470
471 //***
471 //***
472 // F1
472 // F1
473 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x22221111;
473 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x22221111;
474 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x44443333;
474 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x44443333;
475 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0xaaaa0000;
475 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0xaaaa0000;
476
476
477 //***
477 //***
478 // F2
478 // F2
479 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0xffffffff;
479 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0xffffffff;
480 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0xffffffff;
480 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0xffffffff;
481 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0xffffffff;
481 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0xffffffff;
482
482
483 //***
483 //***
484 // F0
484 // F0
485 // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0; //
485 // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0; //
486 // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0; //
486 // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0; //
487 // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0; //
487 // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0; //
488
488
489 // //***
489 // //***
490 // // F1
490 // // F1
491 // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0;
491 // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0;
492 // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0;
492 // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0;
493 // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0;
493 // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0;
494
494
495 // //***
495 // //***
496 // // F2
496 // // F2
497 // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0;
497 // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0;
498 // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0;
498 // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0;
499 // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0;
499 // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0;
500
500
501 //***
501 //***
502 // F3
502 // F3
503 //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 0 ] = val1;
503 //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 0 ] = val1;
504 //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 1 ] = val2;
504 //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 1 ] = val2;
505 //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 2 ] = 0xaaaa0000;
505 //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 2 ] = 0xaaaa0000;
506 }
506 }
507 }
507 }
508
508
509 int init_header_snapshot_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_SWF_t *headerSWF)
509 int init_header_snapshot_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_SWF_t *headerSWF)
510 {
510 {
511 unsigned char i;
511 unsigned char i;
512
512
513 for (i=0; i<7; i++)
513 for (i=0; i<7; i++)
514 {
514 {
515 headerSWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID;
515 headerSWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID;
516 headerSWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID;
516 headerSWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID;
517 headerSWF[ i ].reserved = DEFAULT_RESERVED;
517 headerSWF[ i ].reserved = DEFAULT_RESERVED;
518 headerSWF[ i ].userApplication = CCSDS_USER_APP;
518 headerSWF[ i ].userApplication = CCSDS_USER_APP;
519 headerSWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8);
519 headerSWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8);
520 headerSWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST);
520 headerSWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST);
521 if (i == 0)
521 if (i == 0)
522 {
522 {
523 headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST;
523 headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST;
524 headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_340 >> 8);
524 headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_340 >> 8);
525 headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_340 );
525 headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_340 );
526 headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
526 headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
527 headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
527 headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
528 }
528 }
529 else if (i == 6)
529 else if (i == 6)
530 {
530 {
531 headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST;
531 headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST;
532 headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_8 >> 8);
532 headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_8 >> 8);
533 headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_8 );
533 headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_8 );
534 headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8);
534 headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8);
535 headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 );
535 headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 );
536 }
536 }
537 else
537 else
538 {
538 {
539 headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION;
539 headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION;
540 headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_340 >> 8);
540 headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_340 >> 8);
541 headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_340 );
541 headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_340 );
542 headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
542 headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
543 headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
543 headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
544 }
544 }
545 headerSWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT;
545 headerSWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT;
546 headerSWF[ i ].pktCnt = DEFAULT_PKTCNT; // PKT_CNT
546 headerSWF[ i ].pktCnt = DEFAULT_PKTCNT; // PKT_CNT
547 headerSWF[ i ].pktNr = i+1; // PKT_NR
547 headerSWF[ i ].pktNr = i+1; // PKT_NR
548 // DATA FIELD HEADER
548 // DATA FIELD HEADER
549 headerSWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2;
549 headerSWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2;
550 headerSWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type
550 headerSWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type
551 headerSWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype
551 headerSWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype
552 headerSWF[ i ].destinationID = TM_DESTINATION_ID_GROUND;
552 headerSWF[ i ].destinationID = TM_DESTINATION_ID_GROUND;
553 // AUXILIARY DATA HEADER
553 // AUXILIARY DATA HEADER
554 headerSWF[ i ].sid = sid;
554 headerSWF[ i ].sid = sid;
555 headerSWF[ i ].hkBIA = DEFAULT_HKBIA;
555 headerSWF[ i ].hkBIA = DEFAULT_HKBIA;
556 headerSWF[ i ].time[0] = 0x00;
556 headerSWF[ i ].time[0] = 0x00;
557 headerSWF[ i ].time[0] = 0x00;
557 headerSWF[ i ].time[0] = 0x00;
558 headerSWF[ i ].time[0] = 0x00;
558 headerSWF[ i ].time[0] = 0x00;
559 headerSWF[ i ].time[0] = 0x00;
559 headerSWF[ i ].time[0] = 0x00;
560 headerSWF[ i ].time[0] = 0x00;
560 headerSWF[ i ].time[0] = 0x00;
561 headerSWF[ i ].time[0] = 0x00;
561 headerSWF[ i ].time[0] = 0x00;
562 }
562 }
563 return LFR_SUCCESSFUL;
563 return LFR_SUCCESSFUL;
564 }
564 }
565
565
566 int init_header_continuous_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF )
566 int init_header_continuous_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF )
567 {
567 {
568 unsigned int i;
568 unsigned int i;
569
569
570 for (i=0; i<7; i++)
570 for (i=0; i<7; i++)
571 {
571 {
572 headerCWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID;
572 headerCWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID;
573 headerCWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID;
573 headerCWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID;
574 headerCWF[ i ].reserved = DEFAULT_RESERVED;
574 headerCWF[ i ].reserved = DEFAULT_RESERVED;
575 headerCWF[ i ].userApplication = CCSDS_USER_APP;
575 headerCWF[ i ].userApplication = CCSDS_USER_APP;
576 if ( (sid == SID_SBM1_CWF_F1) || (sid == SID_SBM2_CWF_F2) )
576 if ( (sid == SID_SBM1_CWF_F1) || (sid == SID_SBM2_CWF_F2) )
577 {
577 {
578 headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_SBM1_SBM2 >> 8);
578 headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_SBM1_SBM2 >> 8);
579 headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_SBM1_SBM2);
579 headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_SBM1_SBM2);
580 }
580 }
581 else
581 else
582 {
582 {
583 headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8);
583 headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8);
584 headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST);
584 headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST);
585 }
585 }
586 if (i == 0)
586 if (i == 0)
587 {
587 {
588 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST;
588 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST;
589 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_340 >> 8);
589 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_340 >> 8);
590 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_340 );
590 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_340 );
591 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
591 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
592 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
592 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
593 }
593 }
594 else if (i == 6)
594 else if (i == 6)
595 {
595 {
596 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST;
596 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST;
597 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_8 >> 8);
597 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_8 >> 8);
598 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_8 );
598 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_8 );
599 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8);
599 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8);
600 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 );
600 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 );
601 }
601 }
602 else
602 else
603 {
603 {
604 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION;
604 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION;
605 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_340 >> 8);
605 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_340 >> 8);
606 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_340 );
606 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_340 );
607 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
607 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
608 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
608 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
609 }
609 }
610 headerCWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT;
610 headerCWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT;
611 // PKT_CNT
611 // PKT_CNT
612 // PKT_NR
612 // PKT_NR
613 // DATA FIELD HEADER
613 // DATA FIELD HEADER
614 headerCWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2;
614 headerCWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2;
615 headerCWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type
615 headerCWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type
616 headerCWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype
616 headerCWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype
617 headerCWF[ i ].destinationID = TM_DESTINATION_ID_GROUND;
617 headerCWF[ i ].destinationID = TM_DESTINATION_ID_GROUND;
618 // AUXILIARY DATA HEADER
618 // AUXILIARY DATA HEADER
619 headerCWF[ i ].sid = sid;
619 headerCWF[ i ].sid = sid;
620 headerCWF[ i ].hkBIA = DEFAULT_HKBIA;
620 headerCWF[ i ].hkBIA = DEFAULT_HKBIA;
621 headerCWF[ i ].time[0] = 0x00;
621 headerCWF[ i ].time[0] = 0x00;
622 headerCWF[ i ].time[0] = 0x00;
622 headerCWF[ i ].time[0] = 0x00;
623 headerCWF[ i ].time[0] = 0x00;
623 headerCWF[ i ].time[0] = 0x00;
624 headerCWF[ i ].time[0] = 0x00;
624 headerCWF[ i ].time[0] = 0x00;
625 headerCWF[ i ].time[0] = 0x00;
625 headerCWF[ i ].time[0] = 0x00;
626 headerCWF[ i ].time[0] = 0x00;
626 headerCWF[ i ].time[0] = 0x00;
627 }
627 }
628 return LFR_SUCCESSFUL;
628 return LFR_SUCCESSFUL;
629 }
629 }
630
630
631 int init_header_continuous_wf3_light_table( Header_TM_LFR_SCIENCE_CWF_t *headerCWF )
631 int init_header_continuous_wf3_light_table( Header_TM_LFR_SCIENCE_CWF_t *headerCWF )
632 {
632 {
633 unsigned int i;
633 unsigned int i;
634
634
635 for (i=0; i<7; i++)
635 for (i=0; i<7; i++)
636 {
636 {
637 headerCWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID;
637 headerCWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID;
638 headerCWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID;
638 headerCWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID;
639 headerCWF[ i ].reserved = DEFAULT_RESERVED;
639 headerCWF[ i ].reserved = DEFAULT_RESERVED;
640 headerCWF[ i ].userApplication = CCSDS_USER_APP;
640 headerCWF[ i ].userApplication = CCSDS_USER_APP;
641
641
642 headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8);
642 headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8);
643 headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST);
643 headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST);
644 if (i == 0)
644 if (i == 0)
645 {
645 {
646 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST;
646 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST;
647 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 >> 8);
647 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 >> 8);
648 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 );
648 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 );
649 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
649 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
650 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
650 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
651 }
651 }
652 else if (i == 6)
652 else if (i == 6)
653 {
653 {
654 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST;
654 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST;
655 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_8 >> 8);
655 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_8 >> 8);
656 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_8 );
656 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_8 );
657 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8);
657 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8);
658 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 );
658 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 );
659 }
659 }
660 else
660 else
661 {
661 {
662 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION;
662 headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION;
663 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 >> 8);
663 headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 >> 8);
664 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 );
664 headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 );
665 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
665 headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8);
666 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
666 headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 );
667 }
667 }
668 headerCWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT;
668 headerCWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT;
669 // DATA FIELD HEADER
669 // DATA FIELD HEADER
670 headerCWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2;
670 headerCWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2;
671 headerCWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type
671 headerCWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type
672 headerCWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype
672 headerCWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype
673 headerCWF[ i ].destinationID = TM_DESTINATION_ID_GROUND;
673 headerCWF[ i ].destinationID = TM_DESTINATION_ID_GROUND;
674 // AUXILIARY DATA HEADER
674 // AUXILIARY DATA HEADER
675 headerCWF[ i ].sid = SID_NORM_CWF_F3;
675 headerCWF[ i ].sid = SID_NORM_CWF_F3;
676 headerCWF[ i ].hkBIA = DEFAULT_HKBIA;
676 headerCWF[ i ].hkBIA = DEFAULT_HKBIA;
677 headerCWF[ i ].time[0] = 0x00;
677 headerCWF[ i ].time[0] = 0x00;
678 headerCWF[ i ].time[0] = 0x00;
678 headerCWF[ i ].time[0] = 0x00;
679 headerCWF[ i ].time[0] = 0x00;
679 headerCWF[ i ].time[0] = 0x00;
680 headerCWF[ i ].time[0] = 0x00;
680 headerCWF[ i ].time[0] = 0x00;
681 headerCWF[ i ].time[0] = 0x00;
681 headerCWF[ i ].time[0] = 0x00;
682 headerCWF[ i ].time[0] = 0x00;
682 headerCWF[ i ].time[0] = 0x00;
683 }
683 }
684 return LFR_SUCCESSFUL;
684 return LFR_SUCCESSFUL;
685 }
685 }
686
686
687 void reset_waveforms( void )
687 void reset_waveforms( void )
688 {
688 {
689 int i = 0;
689 int i = 0;
690
690
691 for (i=0; i< NB_SAMPLES_PER_SNAPSHOT; i++)
691 for (i=0; i< NB_SAMPLES_PER_SNAPSHOT; i++)
692 {
692 {
693 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x10002000;
693 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x10002000;
694 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0x20001000;
694 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0x20001000;
695 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x40008000;
695 wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x40008000;
696
696
697 //***
697 //***
698 // F1
698 // F1
699 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x1000f000;
699 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x1000f000;
700 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0xf0001000;
700 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0xf0001000;
701 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x40008000;
701 wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x40008000;
702
702
703 //***
703 //***
704 // F2
704 // F2
705 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x40008000;
705 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x40008000;
706 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0x20001000;
706 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0x20001000;
707 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x10002000;
707 wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x10002000;
708
708
709 //***
709 //***
710 // F3
710 // F3
711 /*wf_cont_f3[ i* NB_WORDS_SWF_BLK + 0 ] = build_value( i, i ); // v and 1
711 /*wf_cont_f3[ i* NB_WORDS_SWF_BLK + 0 ] = build_value( i, i ); // v and 1
712 wf_cont_f3[ i* NB_WORDS_SWF_BLK + 1 ] = build_value( i, i ); // e2 and b1
712 wf_cont_f3[ i* NB_WORDS_SWF_BLK + 1 ] = build_value( i, i ); // e2 and b1
713 wf_cont_f3[ i* NB_WORDS_SWF_BLK + 2 ] = build_value( i, i ); // b2 and b3*/
713 wf_cont_f3[ i* NB_WORDS_SWF_BLK + 2 ] = build_value( i, i ); // b2 and b3*/
714 }
714 }
715 }
715 }
716
716
717 int send_waveform_SWF( volatile int *waveform, unsigned int sid,
717 int send_waveform_SWF( volatile int *waveform, unsigned int sid,
718 Header_TM_LFR_SCIENCE_SWF_t *headerSWF, rtems_id queue_id )
718 Header_TM_LFR_SCIENCE_SWF_t *headerSWF, rtems_id queue_id )
719 {
719 {
720 /** This function sends SWF CCSDS packets (F2, F1 or F0).
720 /** This function sends SWF CCSDS packets (F2, F1 or F0).
721 *
721 *
722 * @param waveform points to the buffer containing the data that will be send.
722 * @param waveform points to the buffer containing the data that will be send.
723 * @param sid is the source identifier of the data that will be sent.
723 * @param sid is the source identifier of the data that will be sent.
724 * @param headerSWF points to a table of headers that have been prepared for the data transmission.
724 * @param headerSWF points to a table of headers that have been prepared for the data transmission.
725 * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures
725 * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures
726 * contain information to setup the transmission of the data packets.
726 * contain information to setup the transmission of the data packets.
727 *
727 *
728 * One group of 2048 samples is sent as 7 consecutive packets, 6 packets containing 340 blocks and 8 packets containing 8 blocks.
728 * One group of 2048 samples is sent as 7 consecutive packets, 6 packets containing 340 blocks and 8 packets containing 8 blocks.
729 *
729 *
730 */
730 */
731
731
732 unsigned int i;
732 unsigned int i;
733 int ret;
733 int ret;
734 rtems_status_code status;
734 rtems_status_code status;
735 spw_ioctl_pkt_send spw_ioctl_send_SWF;
735 spw_ioctl_pkt_send spw_ioctl_send_SWF;
736
736
737 spw_ioctl_send_SWF.hlen = TM_HEADER_LEN + 4 + 12; // + 4 is for the protocole extra header, + 12 is for the auxiliary header
737 spw_ioctl_send_SWF.hlen = TM_HEADER_LEN + 4 + 12; // + 4 is for the protocole extra header, + 12 is for the auxiliary header
738 spw_ioctl_send_SWF.options = 0;
738 spw_ioctl_send_SWF.options = 0;
739
739
740 ret = LFR_DEFAULT;
740 ret = LFR_DEFAULT;
741
741
742 for (i=0; i<7; i++) // send waveform
742 for (i=0; i<7; i++) // send waveform
743 {
743 {
744 spw_ioctl_send_SWF.data = (char*) &waveform[ (i * 340 * NB_WORDS_SWF_BLK) + TIME_OFFSET ];
744 spw_ioctl_send_SWF.data = (char*) &waveform[ (i * 340 * NB_WORDS_SWF_BLK) + TIME_OFFSET ];
745 spw_ioctl_send_SWF.hdr = (char*) &headerSWF[ i ];
745 spw_ioctl_send_SWF.hdr = (char*) &headerSWF[ i ];
746 // BUILD THE DATA
746 // BUILD THE DATA
747 if (i==6) {
747 if (i==6) {
748 spw_ioctl_send_SWF.dlen = 8 * NB_BYTES_SWF_BLK;
748 spw_ioctl_send_SWF.dlen = 8 * NB_BYTES_SWF_BLK;
749 }
749 }
750 else {
750 else {
751 spw_ioctl_send_SWF.dlen = 340 * NB_BYTES_SWF_BLK;
751 spw_ioctl_send_SWF.dlen = 340 * NB_BYTES_SWF_BLK;
752 }
752 }
753 // SET PACKET SEQUENCE COUNTER
753 // SET PACKET SEQUENCE COUNTER
754 increment_seq_counter_source_id( headerSWF[ i ].packetSequenceControl, sid );
754 increment_seq_counter_source_id( headerSWF[ i ].packetSequenceControl, sid );
755 // SET PACKET TIME
755 // SET PACKET TIME
756 headerSWF[ i ].acquisitionTime[0] = (unsigned char) (time_management_regs->coarse_time>>24);
756 headerSWF[ i ].acquisitionTime[0] = (unsigned char) (time_management_regs->coarse_time>>24);
757 headerSWF[ i ].acquisitionTime[1] = (unsigned char) (time_management_regs->coarse_time>>16);
757 headerSWF[ i ].acquisitionTime[1] = (unsigned char) (time_management_regs->coarse_time>>16);
758 headerSWF[ i ].acquisitionTime[2] = (unsigned char) (time_management_regs->coarse_time>>8);
758 headerSWF[ i ].acquisitionTime[2] = (unsigned char) (time_management_regs->coarse_time>>8);
759 headerSWF[ i ].acquisitionTime[3] = (unsigned char) (time_management_regs->coarse_time);
759 headerSWF[ i ].acquisitionTime[3] = (unsigned char) (time_management_regs->coarse_time);
760 headerSWF[ i ].acquisitionTime[4] = (unsigned char) (time_management_regs->fine_time>>8);
760 headerSWF[ i ].acquisitionTime[4] = (unsigned char) (time_management_regs->fine_time>>8);
761 headerSWF[ i ].acquisitionTime[5] = (unsigned char) (time_management_regs->fine_time);
761 headerSWF[ i ].acquisitionTime[5] = (unsigned char) (time_management_regs->fine_time);
762 headerSWF[ i ].time[0] = (unsigned char) (time_management_regs->coarse_time>>24);
762 headerSWF[ i ].time[0] = (unsigned char) (time_management_regs->coarse_time>>24);
763 headerSWF[ i ].time[1] = (unsigned char) (time_management_regs->coarse_time>>16);
763 headerSWF[ i ].time[1] = (unsigned char) (time_management_regs->coarse_time>>16);
764 headerSWF[ i ].time[2] = (unsigned char) (time_management_regs->coarse_time>>8);
764 headerSWF[ i ].time[2] = (unsigned char) (time_management_regs->coarse_time>>8);
765 headerSWF[ i ].time[3] = (unsigned char) (time_management_regs->coarse_time);
765 headerSWF[ i ].time[3] = (unsigned char) (time_management_regs->coarse_time);
766 headerSWF[ i ].time[4] = (unsigned char) (time_management_regs->fine_time>>8);
766 headerSWF[ i ].time[4] = (unsigned char) (time_management_regs->fine_time>>8);
767 headerSWF[ i ].time[5] = (unsigned char) (time_management_regs->fine_time);
767 headerSWF[ i ].time[5] = (unsigned char) (time_management_regs->fine_time);
768 // SEND PACKET
768 // SEND PACKET
769 status = rtems_message_queue_send( queue_id, &spw_ioctl_send_SWF, ACTION_MSG_SPW_IOCTL_SEND_SIZE);
769 status = rtems_message_queue_send( queue_id, &spw_ioctl_send_SWF, ACTION_MSG_SPW_IOCTL_SEND_SIZE);
770 if (status != RTEMS_SUCCESSFUL) {
770 if (status != RTEMS_SUCCESSFUL) {
771 printf("%d-%d, ERR %d\n", sid, i, (int) status);
771 printf("%d-%d, ERR %d\n", sid, i, (int) status);
772 ret = LFR_DEFAULT;
772 ret = LFR_DEFAULT;
773 }
773 }
774 rtems_task_wake_after(TIME_BETWEEN_TWO_SWF_PACKETS); // 300 ms between each packet => 7 * 3 = 21 packets => 6.3 seconds
774 rtems_task_wake_after(TIME_BETWEEN_TWO_SWF_PACKETS); // 300 ms between each packet => 7 * 3 = 21 packets => 6.3 seconds
775 }
775 }
776
776
777 return ret;
777 return ret;
778 }
778 }
779
779
780 int send_waveform_CWF(volatile int *waveform, unsigned int sid,
780 int send_waveform_CWF(volatile int *waveform, unsigned int sid,
781 Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id)
781 Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id)
782 {
782 {
783 /** This function sends CWF CCSDS packets (F2, F1 or F0).
783 /** This function sends CWF CCSDS packets (F2, F1 or F0).
784 *
784 *
785 * @param waveform points to the buffer containing the data that will be send.
785 * @param waveform points to the buffer containing the data that will be send.
786 * @param sid is the source identifier of the data that will be sent.
786 * @param sid is the source identifier of the data that will be sent.
787 * @param headerCWF points to a table of headers that have been prepared for the data transmission.
787 * @param headerCWF points to a table of headers that have been prepared for the data transmission.
788 * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures
788 * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures
789 * contain information to setup the transmission of the data packets.
789 * contain information to setup the transmission of the data packets.
790 *
790 *
791 * One group of 2048 samples is sent as 7 consecutive packets, 6 packets containing 340 blocks and 8 packets containing 8 blocks.
791 * One group of 2048 samples is sent as 7 consecutive packets, 6 packets containing 340 blocks and 8 packets containing 8 blocks.
792 *
792 *
793 */
793 */
794
794
795 unsigned int i;
795 unsigned int i;
796 int ret;
796 int ret;
797 rtems_status_code status;
797 rtems_status_code status;
798 spw_ioctl_pkt_send spw_ioctl_send_CWF;
798 spw_ioctl_pkt_send spw_ioctl_send_CWF;
799
799
800 spw_ioctl_send_CWF.hlen = TM_HEADER_LEN + 4 + 10; // + 4 is for the protocole extra header, + 10 is for the auxiliary header
800 spw_ioctl_send_CWF.hlen = TM_HEADER_LEN + 4 + 10; // + 4 is for the protocole extra header, + 10 is for the auxiliary header
801 spw_ioctl_send_CWF.options = 0;
801 spw_ioctl_send_CWF.options = 0;
802
802
803 ret = LFR_DEFAULT;
803 ret = LFR_DEFAULT;
804
804
805 for (i=0; i<7; i++) // send waveform
805 for (i=0; i<7; i++) // send waveform
806 {
806 {
807 int coarseTime = 0x00;
807 int coarseTime = 0x00;
808 int fineTime = 0x00;
808 int fineTime = 0x00;
809 spw_ioctl_send_CWF.data = (char*) &waveform[ (i * 340 * NB_WORDS_SWF_BLK) ];
809 spw_ioctl_send_CWF.data = (char*) &waveform[ (i * 340 * NB_WORDS_SWF_BLK) ];
810 spw_ioctl_send_CWF.hdr = (char*) &headerCWF[ i ];
810 spw_ioctl_send_CWF.hdr = (char*) &headerCWF[ i ];
811 // BUILD THE DATA
811 // BUILD THE DATA
812 if (i==6) {
812 if (i==6) {
813 spw_ioctl_send_CWF.dlen = 8 * NB_BYTES_SWF_BLK;
813 spw_ioctl_send_CWF.dlen = 8 * NB_BYTES_SWF_BLK;
814 }
814 }
815 else {
815 else {
816 spw_ioctl_send_CWF.dlen = 340 * NB_BYTES_SWF_BLK;
816 spw_ioctl_send_CWF.dlen = 340 * NB_BYTES_SWF_BLK;
817 }
817 }
818 // SET PACKET SEQUENCE COUNTER
818 // SET PACKET SEQUENCE COUNTER
819 increment_seq_counter_source_id( headerCWF[ i ].packetSequenceControl, sid );
819 increment_seq_counter_source_id( headerCWF[ i ].packetSequenceControl, sid );
820 // SET PACKET TIME
820 // SET PACKET TIME
821 coarseTime = time_management_regs->coarse_time;
821 coarseTime = time_management_regs->coarse_time;
822 fineTime = time_management_regs->fine_time;
822 fineTime = time_management_regs->fine_time;
823 headerCWF[ i ].acquisitionTime[0] = (unsigned char) (coarseTime>>24);
823 headerCWF[ i ].acquisitionTime[0] = (unsigned char) (coarseTime>>24);
824 headerCWF[ i ].acquisitionTime[1] = (unsigned char) (coarseTime>>16);
824 headerCWF[ i ].acquisitionTime[1] = (unsigned char) (coarseTime>>16);
825 headerCWF[ i ].acquisitionTime[2] = (unsigned char) (coarseTime>>8);
825 headerCWF[ i ].acquisitionTime[2] = (unsigned char) (coarseTime>>8);
826 headerCWF[ i ].acquisitionTime[3] = (unsigned char) (coarseTime);
826 headerCWF[ i ].acquisitionTime[3] = (unsigned char) (coarseTime);
827 headerCWF[ i ].acquisitionTime[4] = (unsigned char) (fineTime>>8);
827 headerCWF[ i ].acquisitionTime[4] = (unsigned char) (fineTime>>8);
828 headerCWF[ i ].acquisitionTime[5] = (unsigned char) (fineTime);
828 headerCWF[ i ].acquisitionTime[5] = (unsigned char) (fineTime);
829 headerCWF[ i ].time[0] = (unsigned char) (coarseTime>>24);
829 headerCWF[ i ].time[0] = (unsigned char) (coarseTime>>24);
830 headerCWF[ i ].time[1] = (unsigned char) (coarseTime>>16);
830 headerCWF[ i ].time[1] = (unsigned char) (coarseTime>>16);
831 headerCWF[ i ].time[2] = (unsigned char) (coarseTime>>8);
831 headerCWF[ i ].time[2] = (unsigned char) (coarseTime>>8);
832 headerCWF[ i ].time[3] = (unsigned char) (coarseTime);
832 headerCWF[ i ].time[3] = (unsigned char) (coarseTime);
833 headerCWF[ i ].time[4] = (unsigned char) (fineTime>>8);
833 headerCWF[ i ].time[4] = (unsigned char) (fineTime>>8);
834 headerCWF[ i ].time[5] = (unsigned char) (fineTime);
834 headerCWF[ i ].time[5] = (unsigned char) (fineTime);
835 // SEND PACKET
835 // SEND PACKET
836 if (sid == SID_NORM_CWF_F3)
836 if (sid == SID_NORM_CWF_F3)
837 {
837 {
838 status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF));
838 status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF));
839 if (status != RTEMS_SUCCESSFUL) {
839 if (status != RTEMS_SUCCESSFUL) {
840 printf("%d-%d, ERR %d\n", sid, i, (int) status);
840 printf("%d-%d, ERR %d\n", sid, i, (int) status);
841 ret = LFR_DEFAULT;
841 ret = LFR_DEFAULT;
842 }
842 }
843 rtems_task_wake_after(TIME_BETWEEN_TWO_CWF3_PACKETS);
843 rtems_task_wake_after(TIME_BETWEEN_TWO_CWF3_PACKETS);
844 }
844 }
845 else
845 else
846 {
846 {
847 status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF));
847 status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF));
848 if (status != RTEMS_SUCCESSFUL) {
848 if (status != RTEMS_SUCCESSFUL) {
849 printf("%d-%d, ERR %d\n", sid, i, (int) status);
849 printf("%d-%d, ERR %d\n", sid, i, (int) status);
850 ret = LFR_DEFAULT;
850 ret = LFR_DEFAULT;
851 }
851 }
852 }
852 }
853 }
853 }
854
854
855 return ret;
855 return ret;
856 }
856 }
857
857
858 int send_waveform_CWF3_light(volatile int *waveform, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id)
858 int send_waveform_CWF3_light(volatile int *waveform, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id)
859 {
859 {
860 /** This function sends CWF_F3 CCSDS packets without the b1, b2 and b3 data.
860 /** This function sends CWF_F3 CCSDS packets without the b1, b2 and b3 data.
861 *
861 *
862 * @param waveform points to the buffer containing the data that will be send.
862 * @param waveform points to the buffer containing the data that will be send.
863 * @param headerCWF points to a table of headers that have been prepared for the data transmission.
863 * @param headerCWF points to a table of headers that have been prepared for the data transmission.
864 * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures
864 * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures
865 * contain information to setup the transmission of the data packets.
865 * contain information to setup the transmission of the data packets.
866 *
866 *
867 * By default, CWF_F3 packet are send without the b1, b2 and b3 data. This function rebuilds a data buffer
867 * By default, CWF_F3 packet are send without the b1, b2 and b3 data. This function rebuilds a data buffer
868 * from the incoming data and sends it in 7 packets, 6 containing 340 blocks and 1 one containing 8 blocks.
868 * from the incoming data and sends it in 7 packets, 6 containing 340 blocks and 1 one containing 8 blocks.
869 *
869 *
870 */
870 */
871
871
872 unsigned int i;
872 unsigned int i;
873 int ret;
873 int ret;
874 rtems_status_code status;
874 rtems_status_code status;
875 spw_ioctl_pkt_send spw_ioctl_send_CWF;
875 spw_ioctl_pkt_send spw_ioctl_send_CWF;
876 char *sample;
876 char *sample;
877
877
878 spw_ioctl_send_CWF.hlen = TM_HEADER_LEN + 4 + 10; // + 4 is for the protocole extra header, + 10 is for the auxiliary header
878 spw_ioctl_send_CWF.hlen = TM_HEADER_LEN + 4 + 10; // + 4 is for the protocole extra header, + 10 is for the auxiliary header
879 spw_ioctl_send_CWF.options = 0;
879 spw_ioctl_send_CWF.options = 0;
880
880
881 ret = LFR_DEFAULT;
881 ret = LFR_DEFAULT;
882
882
883 //**********************
883 //**********************
884 // BUILD CWF3_light DATA
884 // BUILD CWF3_light DATA
885 for ( i=0; i< 2048; i++)
885 for ( i=0; i< 2048; i++)
886 {
886 {
887 sample = (char*) &waveform[ i * NB_WORDS_SWF_BLK ];
887 sample = (char*) &waveform[ i * NB_WORDS_SWF_BLK ];
888 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) ] = sample[ 0 ];
888 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) ] = sample[ 0 ];
889 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 1 ] = sample[ 1 ];
889 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 1 ] = sample[ 1 ];
890 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 2 ] = sample[ 2 ];
890 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 2 ] = sample[ 2 ];
891 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 3 ] = sample[ 3 ];
891 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 3 ] = sample[ 3 ];
892 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 4 ] = sample[ 4 ];
892 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 4 ] = sample[ 4 ];
893 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 5 ] = sample[ 5 ];
893 wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 5 ] = sample[ 5 ];
894 }
894 }
895
895
896 //*********************
896 //*********************
897 // SEND CWF3_light DATA
897 // SEND CWF3_light DATA
898
898
899 for (i=0; i<7; i++) // send waveform
899 for (i=0; i<7; i++) // send waveform
900 {
900 {
901 int coarseTime = 0x00;
901 int coarseTime = 0x00;
902 int fineTime = 0x00;
902 int fineTime = 0x00;
903 spw_ioctl_send_CWF.data = (char*) &wf_cont_f3_light[ (i * 340 * NB_BYTES_CWF3_LIGHT_BLK) ];
903 spw_ioctl_send_CWF.data = (char*) &wf_cont_f3_light[ (i * 340 * NB_BYTES_CWF3_LIGHT_BLK) ];
904 spw_ioctl_send_CWF.hdr = (char*) &headerCWF[ i ];
904 spw_ioctl_send_CWF.hdr = (char*) &headerCWF[ i ];
905 // BUILD THE DATA
905 // BUILD THE DATA
906 if ( i == WFRM_INDEX_OF_LAST_PACKET ) {
906 if ( i == WFRM_INDEX_OF_LAST_PACKET ) {
907 spw_ioctl_send_CWF.dlen = 8 * NB_BYTES_CWF3_LIGHT_BLK;
907 spw_ioctl_send_CWF.dlen = 8 * NB_BYTES_CWF3_LIGHT_BLK;
908 }
908 }
909 else {
909 else {
910 spw_ioctl_send_CWF.dlen = 340 * NB_BYTES_CWF3_LIGHT_BLK;
910 spw_ioctl_send_CWF.dlen = 340 * NB_BYTES_CWF3_LIGHT_BLK;
911 }
911 }
912 // SET PACKET SEQUENCE COUNTER
912 // SET PACKET SEQUENCE COUNTER
913 increment_seq_counter_source_id( headerCWF[ i ].packetSequenceControl, SID_NORM_CWF_F3 );
913 increment_seq_counter_source_id( headerCWF[ i ].packetSequenceControl, SID_NORM_CWF_F3 );
914 // SET PACKET TIME
914 // SET PACKET TIME
915 coarseTime = time_management_regs->coarse_time;
915 coarseTime = time_management_regs->coarse_time;
916 fineTime = time_management_regs->fine_time;
916 fineTime = time_management_regs->fine_time;
917 headerCWF[ i ].acquisitionTime[0] = (unsigned char) (coarseTime>>24);
917 headerCWF[ i ].acquisitionTime[0] = (unsigned char) (coarseTime>>24);
918 headerCWF[ i ].acquisitionTime[1] = (unsigned char) (coarseTime>>16);
918 headerCWF[ i ].acquisitionTime[1] = (unsigned char) (coarseTime>>16);
919 headerCWF[ i ].acquisitionTime[2] = (unsigned char) (coarseTime>>8);
919 headerCWF[ i ].acquisitionTime[2] = (unsigned char) (coarseTime>>8);
920 headerCWF[ i ].acquisitionTime[3] = (unsigned char) (coarseTime);
920 headerCWF[ i ].acquisitionTime[3] = (unsigned char) (coarseTime);
921 headerCWF[ i ].acquisitionTime[4] = (unsigned char) (fineTime>>8);
921 headerCWF[ i ].acquisitionTime[4] = (unsigned char) (fineTime>>8);
922 headerCWF[ i ].acquisitionTime[5] = (unsigned char) (fineTime);
922 headerCWF[ i ].acquisitionTime[5] = (unsigned char) (fineTime);
923 headerCWF[ i ].time[0] = (unsigned char) (coarseTime>>24);
923 headerCWF[ i ].time[0] = (unsigned char) (coarseTime>>24);
924 headerCWF[ i ].time[1] = (unsigned char) (coarseTime>>16);
924 headerCWF[ i ].time[1] = (unsigned char) (coarseTime>>16);
925 headerCWF[ i ].time[2] = (unsigned char) (coarseTime>>8);
925 headerCWF[ i ].time[2] = (unsigned char) (coarseTime>>8);
926 headerCWF[ i ].time[3] = (unsigned char) (coarseTime);
926 headerCWF[ i ].time[3] = (unsigned char) (coarseTime);
927 headerCWF[ i ].time[4] = (unsigned char) (fineTime>>8);
927 headerCWF[ i ].time[4] = (unsigned char) (fineTime>>8);
928 headerCWF[ i ].time[5] = (unsigned char) (fineTime);
928 headerCWF[ i ].time[5] = (unsigned char) (fineTime);
929 // SEND PACKET
929 // SEND PACKET
930 status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF));
930 status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF));
931 if (status != RTEMS_SUCCESSFUL) {
931 if (status != RTEMS_SUCCESSFUL) {
932 printf("%d-%d, ERR %d\n", SID_NORM_CWF_F3, i, (int) status);
932 printf("%d-%d, ERR %d\n", SID_NORM_CWF_F3, i, (int) status);
933 ret = LFR_DEFAULT;
933 ret = LFR_DEFAULT;
934 }
934 }
935 rtems_task_wake_after(TIME_BETWEEN_TWO_CWF3_PACKETS);
935 rtems_task_wake_after(TIME_BETWEEN_TWO_CWF3_PACKETS);
936 }
936 }
937
937
938 return ret;
938 return ret;
939 }
939 }
940
940
941
941
942 //**************
942 //**************
943 // wfp registers
943 // wfp registers
944 void set_wfp_data_shaping()
944 void set_wfp_data_shaping()
945 {
945 {
946 /** This function sets the data_shaping register of the waveform picker module.
946 /** This function sets the data_shaping register of the waveform picker module.
947 *
947 *
948 * The value is read from one field of the parameter_dump_packet structure:\n
948 * The value is read from one field of the parameter_dump_packet structure:\n
949 * bw_sp0_sp1_r0_r1
949 * bw_sp0_sp1_r0_r1
950 *
950 *
951 */
951 */
952
952
953 unsigned char data_shaping;
953 unsigned char data_shaping;
954
954
955 // get the parameters for the data shaping [BW SP0 SP1 R0 R1] in sy_lfr_common1 and configure the register
955 // get the parameters for the data shaping [BW SP0 SP1 R0 R1] in sy_lfr_common1 and configure the register
956 // waveform picker : [R1 R0 SP1 SP0 BW]
956 // waveform picker : [R1 R0 SP1 SP0 BW]
957
957
958 data_shaping = parameter_dump_packet.bw_sp0_sp1_r0_r1;
958 data_shaping = parameter_dump_packet.bw_sp0_sp1_r0_r1;
959
959
960 #ifdef GSA
960 #ifdef GSA
961 #else
961 #else
962 new_waveform_picker_regs->data_shaping =
962 new_waveform_picker_regs->data_shaping =
963 ( (data_shaping & 0x10) >> 4 ) // BW
963 ( (data_shaping & 0x10) >> 4 ) // BW
964 + ( (data_shaping & 0x08) >> 2 ) // SP0
964 + ( (data_shaping & 0x08) >> 2 ) // SP0
965 + ( (data_shaping & 0x04) ) // SP1
965 + ( (data_shaping & 0x04) ) // SP1
966 + ( (data_shaping & 0x02) << 2 ) // R0
966 + ( (data_shaping & 0x02) << 2 ) // R0
967 + ( (data_shaping & 0x01) << 4 ); // R1
967 + ( (data_shaping & 0x01) << 4 ); // R1
968 #endif
968 #endif
969 }
969 }
970
970
971 char set_wfp_delta_snapshot()
971 char set_wfp_delta_snapshot()
972 {
972 {
973 /** This function sets the delta_snapshot register of the waveform picker module.
973 /** This function sets the delta_snapshot register of the waveform picker module.
974 *
974 *
975 * The value is read from two (unsigned char) of the parameter_dump_packet structure:
975 * The value is read from two (unsigned char) of the parameter_dump_packet structure:
976 * - sy_lfr_n_swf_p[0]
976 * - sy_lfr_n_swf_p[0]
977 * - sy_lfr_n_swf_p[1]
977 * - sy_lfr_n_swf_p[1]
978 *
978 *
979 */
979 */
980
980
981 char ret;
981 char ret;
982 unsigned int delta_snapshot;
982 unsigned int delta_snapshot;
983 unsigned int aux;
983 unsigned int aux;
984
984
985 aux = 0;
985 aux = 0;
986 ret = LFR_DEFAULT;
986 ret = LFR_DEFAULT;
987
987
988 delta_snapshot = parameter_dump_packet.sy_lfr_n_swf_p[0]*256
988 delta_snapshot = parameter_dump_packet.sy_lfr_n_swf_p[0]*256
989 + parameter_dump_packet.sy_lfr_n_swf_p[1];
989 + parameter_dump_packet.sy_lfr_n_swf_p[1];
990
990
991 #ifdef GSA
991 #ifdef GSA
992 #else
992 #else
993 if ( delta_snapshot < MIN_DELTA_SNAPSHOT )
993 if ( delta_snapshot < MIN_DELTA_SNAPSHOT )
994 {
994 {
995 aux = MIN_DELTA_SNAPSHOT;
995 aux = MIN_DELTA_SNAPSHOT;
996 ret = LFR_DEFAULT;
996 ret = LFR_DEFAULT;
997 }
997 }
998 else
998 else
999 {
999 {
1000 aux = delta_snapshot ;
1000 aux = delta_snapshot ;
1001 ret = LFR_SUCCESSFUL;
1001 ret = LFR_SUCCESSFUL;
1002 }
1002 }
1003 new_waveform_picker_regs->delta_snapshot = aux - 1; // max 2 bytes
1003 new_waveform_picker_regs->delta_snapshot = aux - 1; // max 2 bytes
1004 #endif
1004 #endif
1005
1005
1006 return ret;
1006 return ret;
1007 }
1007 }
1008
1008
1009 void set_wfp_burst_enable_register( unsigned char mode)
1009 void set_wfp_burst_enable_register( unsigned char mode)
1010 {
1010 {
1011 /** This function sets the waveform picker burst_enable register depending on the mode.
1011 /** This function sets the waveform picker burst_enable register depending on the mode.
1012 *
1012 *
1013 * @param mode is the LFR mode to launch.
1013 * @param mode is the LFR mode to launch.
1014 *
1014 *
1015 * The burst bits shall be before the enable bits.
1015 * The burst bits shall be before the enable bits.
1016 *
1016 *
1017 */
1017 */
1018
1018
1019 #ifdef GSA
1019 #ifdef GSA
1020 #else
1020 #else
1021 // [0000 0000] burst f2, f1, f0 enable f3 f2 f1 f0
1021 // [0000 0000] burst f2, f1, f0 enable f3 f2 f1 f0
1022 // the burst bits shall be set first, before the enable bits
1022 // the burst bits shall be set first, before the enable bits
1023 switch(mode) {
1023 switch(mode) {
1024 case(LFR_MODE_NORMAL):
1024 case(LFR_MODE_NORMAL):
1025 new_waveform_picker_regs->run_burst_enable = 0x80; // [1000 0000] f3 burst enable
1025 new_waveform_picker_regs->run_burst_enable = 0x80; // [1000 0000] f3 burst enable
1026 new_waveform_picker_regs->run_burst_enable = 0x0f; // [0000 1111] enable f3 f2 f1 f0
1026 new_waveform_picker_regs->run_burst_enable = 0x0f; // [0000 1111] enable f3 f2 f1 f0
1027 break;
1027 break;
1028 case(LFR_MODE_BURST):
1028 case(LFR_MODE_BURST):
1029 new_waveform_picker_regs->run_burst_enable = 0x40; // [0100 0000] f2 burst enabled
1029 new_waveform_picker_regs->run_burst_enable = 0x40; // [0100 0000] f2 burst enabled
1030 new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x04; // [0100] enable f2
1030 new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x04; // [0100] enable f2
1031 break;
1031 break;
1032 case(LFR_MODE_SBM1):
1032 case(LFR_MODE_SBM1):
1033 new_waveform_picker_regs->run_burst_enable = 0x20; // [0010 0000] f1 burst enabled
1033 new_waveform_picker_regs->run_burst_enable = 0x20; // [0010 0000] f1 burst enabled
1034 new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x0f; // [1111] enable f3 f2 f1 f0
1034 new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x0f; // [1111] enable f3 f2 f1 f0
1035 break;
1035 break;
1036 case(LFR_MODE_SBM2):
1036 case(LFR_MODE_SBM2):
1037 new_waveform_picker_regs->run_burst_enable = 0x40; // [0100 0000] f2 burst enabled
1037 new_waveform_picker_regs->run_burst_enable = 0x40; // [0100 0000] f2 burst enabled
1038 new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x0f; // [1111] enable f3 f2 f1 f0
1038 new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x0f; // [1111] enable f3 f2 f1 f0
1039 break;
1039 break;
1040 default:
1040 default:
1041 new_waveform_picker_regs->run_burst_enable = 0x00; // [0000 0000] no burst enabled, no waveform enabled
1041 new_waveform_picker_regs->run_burst_enable = 0x00; // [0000 0000] no burst enabled, no waveform enabled
1042 break;
1042 break;
1043 }
1043 }
1044 #endif
1044 #endif
1045 }
1045 }
1046
1046
1047 void reset_wfp_run_burst_enable()
1047 void reset_wfp_run_burst_enable()
1048 {
1048 {
1049 /** This function resets the waveform picker burst_enable register.
1049 /** This function resets the waveform picker burst_enable register.
1050 *
1050 *
1051 * The burst bits [f2 f1 f0] and the enable bits [f3 f2 f1 f0] are set to 0.
1051 * The burst bits [f2 f1 f0] and the enable bits [f3 f2 f1 f0] are set to 0.
1052 *
1052 *
1053 */
1053 */
1054
1054
1055 #ifdef GSA
1055 #ifdef GSA
1056 #else
1056 #else
1057 new_waveform_picker_regs->run_burst_enable = 0x00; // burst f2, f1, f0 enable f3, f2, f1, f0
1057 new_waveform_picker_regs->run_burst_enable = 0x00; // burst f2, f1, f0 enable f3, f2, f1, f0
1058 #endif
1058 #endif
1059 }
1059 }
1060
1060
1061 void reset_wfp_status()
1061 void reset_wfp_status()
1062 {
1062 {
1063 /** This function resets the waveform picker status register.
1063 /** This function resets the waveform picker status register.
1064 *
1064 *
1065 * All status bits are set to 0 [new_err full_err full].
1065 * All status bits are set to 0 [new_err full_err full].
1066 *
1066 *
1067 */
1067 */
1068
1068
1069 #ifdef GSA
1069 #ifdef GSA
1070 #else
1070 #else
1071 new_waveform_picker_regs->status = 0x00; // burst f2, f1, f0 enable f3, f2, f1, f0
1071 new_waveform_picker_regs->status = 0x00; // burst f2, f1, f0 enable f3, f2, f1, f0
1072 #endif
1072 #endif
1073 }
1073 }
1074
1074
1075 void reset_new_waveform_picker_regs()
1075 void reset_new_waveform_picker_regs()
1076 {
1076 {
1077 /** This function resets the waveform picker module registers.
1077 /** This function resets the waveform picker module registers.
1078 *
1078 *
1079 * The registers affected by this function are located at the following offset addresses:
1079 * The registers affected by this function are located at the following offset addresses:
1080 * - 0x00 data_shaping
1080 * - 0x00 data_shaping
1081 * - 0x04 run_burst_enable
1081 * - 0x04 run_burst_enable
1082 * - 0x08 addr_data_f0
1082 * - 0x08 addr_data_f0
1083 * - 0x0C addr_data_f1
1083 * - 0x0C addr_data_f1
1084 * - 0x10 addr_data_f2
1084 * - 0x10 addr_data_f2
1085 * - 0x14 addr_data_f3
1085 * - 0x14 addr_data_f3
1086 * - 0x18 status
1086 * - 0x18 status
1087 * - 0x1C delta_snapshot
1087 * - 0x1C delta_snapshot
1088 * - 0x20 delta_f0
1088 * - 0x20 delta_f0
1089 * - 0x24 delta_f0_2
1089 * - 0x24 delta_f0_2
1090 * - 0x28 delta_f1
1090 * - 0x28 delta_f1
1091 * - 0x2c delta_f2
1091 * - 0x2c delta_f2
1092 * - 0x30 nb_data_by_buffer
1092 * - 0x30 nb_data_by_buffer
1093 * - 0x34 nb_snapshot_param
1093 * - 0x34 nb_snapshot_param
1094 * - 0x38 start_date
1094 * - 0x38 start_date
1095 * - 0x3c nb_word_in_buffer
1095 * - 0x3c nb_word_in_buffer
1096 *
1096 *
1097 */
1097 */
1098
1098
1099 new_waveform_picker_regs->data_shaping = 0x01; // 0x00 *** R1 R0 SP1 SP0 BW
1099 new_waveform_picker_regs->data_shaping = 0x01; // 0x00 *** R1 R0 SP1 SP0 BW
1100 new_waveform_picker_regs->run_burst_enable = 0x00; // 0x04 *** [run *** burst f2, f1, f0 *** enable f3, f2, f1, f0 ]
1100 new_waveform_picker_regs->run_burst_enable = 0x00; // 0x04 *** [run *** burst f2, f1, f0 *** enable f3, f2, f1, f0 ]
1101 new_waveform_picker_regs->addr_data_f0 = (int) (wf_snap_f0); // 0x08
1101 new_waveform_picker_regs->addr_data_f0 = (int) (wf_snap_f0); // 0x08
1102 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1); // 0x0c
1102 new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1); // 0x0c
1103 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); // 0x10
1103 new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); // 0x10
1104 new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3); // 0x14
1104 new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3); // 0x14
1105 new_waveform_picker_regs->status = 0x00; // 0x18
1105 new_waveform_picker_regs->status = 0x00; // 0x18
1106 // new_waveform_picker_regs->delta_snapshot = 0x12800; // 0x1c 296 * 256 = 75776
1106 // new_waveform_picker_regs->delta_snapshot = 0x12800; // 0x1c 296 * 256 = 75776
1107 // new_waveform_picker_regs->delta_snapshot = 0x1000; // 0x1c 16 * 256 = 4096
1107 // new_waveform_picker_regs->delta_snapshot = 0x1000; // 0x1c 16 * 256 = 4096
1108 new_waveform_picker_regs->delta_snapshot = 0x2000; // 0x1c 32 * 256 = 8192
1108 new_waveform_picker_regs->delta_snapshot = 0x2000; // 0x1c 32 * 256 = 8192
1109 new_waveform_picker_regs->delta_f0 = 0xbf5; // 0x20 *** 1013
1109 new_waveform_picker_regs->delta_f0 = 0xbf5; // 0x20 *** 1013
1110 new_waveform_picker_regs->delta_f0_2 = 0x7; // 0x24 *** 7 [7 bits]
1110 new_waveform_picker_regs->delta_f0_2 = 0x7; // 0x24 *** 7 [7 bits]
1111 new_waveform_picker_regs->delta_f1 = 0xbc0; // 0x28 *** 960
1111 new_waveform_picker_regs->delta_f1 = 0xbc0; // 0x28 *** 960
1112 // new_waveform_picker_regs->delta_f2 = 0x12200; // 0x2c *** 74240
1112 // new_waveform_picker_regs->delta_f2 = 0x12200; // 0x2c *** 290 * 256 = 74240
1113 new_waveform_picker_regs->delta_f2 = 0xc00; // 0x2c *** 12 * 256 = 3072
1113 new_waveform_picker_regs->delta_f2 = 0xc00; // 0x2c *** 12 * 256 = 3072
1114 new_waveform_picker_regs->nb_data_by_buffer = 0x7ff; // 0x30 *** 2048 -1 => nb samples -1
1114 new_waveform_picker_regs->nb_data_by_buffer = 0x7ff; // 0x30 *** 2048 -1 => nb samples -1
1115 new_waveform_picker_regs->snapshot_param = 0x800; // 0x34 *** 2048 => nb samples
1115 new_waveform_picker_regs->snapshot_param = 0x800; // 0x34 *** 2048 => nb samples
1116 new_waveform_picker_regs->start_date = 0x00; // 0x38
1116 new_waveform_picker_regs->start_date = 0x00; // 0x38
1117 new_waveform_picker_regs->nb_word_in_buffer = 0x1802; // 0x3c *** 2048 * 3 + 2 = 6146
1117 new_waveform_picker_regs->nb_word_in_buffer = 0x1802; // 0x3c *** 2048 * 3 + 2 = 6146
1118 }
1118 }
1119
1119
1120 //*****************
1120 //*****************
1121 // local parameters
1121 // local parameters
1122 void set_local_sbm1_nb_cwf_max()
1122 void set_local_sbm1_nb_cwf_max()
1123 {
1123 {
1124 /** This function sets the value of the sbm1_nb_cwf_max local parameter.
1124 /** This function sets the value of the sbm1_nb_cwf_max local parameter.
1125 *
1125 *
1126 * The sbm1_nb_cwf_max parameter counts the number of CWF_F1 records that have been sent.\n
1126 * The sbm1_nb_cwf_max parameter counts the number of CWF_F1 records that have been sent.\n
1127 * This parameter is used to send CWF_F1 data as normal data when the SBM1 is active.\n\n
1127 * This parameter is used to send CWF_F1 data as normal data when the SBM1 is active.\n\n
1128 * (2 snapshots of 2048 points per seconds) * (period of the NORM snashots) - 8 s (duration of the f2 snapshot)
1128 * (2 snapshots of 2048 points per seconds) * (period of the NORM snashots) - 8 s (duration of the f2 snapshot)
1129 *
1129 *
1130 */
1130 */
1131 param_local.local_sbm1_nb_cwf_max = 2 *
1131 param_local.local_sbm1_nb_cwf_max = 2 *
1132 (parameter_dump_packet.sy_lfr_n_swf_p[0] * 256
1132 (parameter_dump_packet.sy_lfr_n_swf_p[0] * 256
1133 + parameter_dump_packet.sy_lfr_n_swf_p[1]) - 8; // 16 CWF1 parts during 1 SWF2
1133 + parameter_dump_packet.sy_lfr_n_swf_p[1]) - 8; // 16 CWF1 parts during 1 SWF2
1134 }
1134 }
1135
1135
1136 void set_local_sbm2_nb_cwf_max()
1136 void set_local_sbm2_nb_cwf_max()
1137 {
1137 {
1138 /** This function sets the value of the sbm1_nb_cwf_max local parameter.
1138 /** This function sets the value of the sbm1_nb_cwf_max local parameter.
1139 *
1139 *
1140 * The sbm1_nb_cwf_max parameter counts the number of CWF_F1 records that have been sent.\n
1140 * The sbm1_nb_cwf_max parameter counts the number of CWF_F1 records that have been sent.\n
1141 * This parameter is used to send CWF_F2 data as normal data when the SBM2 is active.\n\n
1141 * This parameter is used to send CWF_F2 data as normal data when the SBM2 is active.\n\n
1142 * (period of the NORM snashots) / (8 seconds per snapshot at f2 = 256 Hz)
1142 * (period of the NORM snashots) / (8 seconds per snapshot at f2 = 256 Hz)
1143 *
1143 *
1144 */
1144 */
1145
1145
1146 param_local.local_sbm2_nb_cwf_max = (parameter_dump_packet.sy_lfr_n_swf_p[0] * 256
1146 param_local.local_sbm2_nb_cwf_max = (parameter_dump_packet.sy_lfr_n_swf_p[0] * 256
1147 + parameter_dump_packet.sy_lfr_n_swf_p[1]) / 8;
1147 + parameter_dump_packet.sy_lfr_n_swf_p[1]) / 8;
1148 }
1148 }
1149
1149
1150 void set_local_nb_interrupt_f0_MAX()
1150 void set_local_nb_interrupt_f0_MAX()
1151 {
1151 {
1152 /** This function sets the value of the nb_interrupt_f0_MAX local parameter.
1152 /** This function sets the value of the nb_interrupt_f0_MAX local parameter.
1153 *
1153 *
1154 * This parameter is used for the SM validation only.\n
1154 * This parameter is used for the SM validation only.\n
1155 * The software waits param_local.local_nb_interrupt_f0_MAX interruptions from the spectral matrices
1155 * The software waits param_local.local_nb_interrupt_f0_MAX interruptions from the spectral matrices
1156 * module before launching a basic processing.
1156 * module before launching a basic processing.
1157 *
1157 *
1158 */
1158 */
1159
1159
1160 param_local.local_nb_interrupt_f0_MAX = ( (parameter_dump_packet.sy_lfr_n_asm_p[0]) * 256
1160 param_local.local_nb_interrupt_f0_MAX = ( (parameter_dump_packet.sy_lfr_n_asm_p[0]) * 256
1161 + parameter_dump_packet.sy_lfr_n_asm_p[1] ) * 100;
1161 + parameter_dump_packet.sy_lfr_n_asm_p[1] ) * 100;
1162 }
1162 }
1163
1163
1164 void reset_local_sbm1_nb_cwf_sent()
1164 void reset_local_sbm1_nb_cwf_sent()
1165 {
1165 {
1166 /** This function resets the value of the sbm1_nb_cwf_sent local parameter.
1166 /** This function resets the value of the sbm1_nb_cwf_sent local parameter.
1167 *
1167 *
1168 * The sbm1_nb_cwf_sent parameter counts the number of CWF_F1 records that have been sent.\n
1168 * The sbm1_nb_cwf_sent parameter counts the number of CWF_F1 records that have been sent.\n
1169 * This parameter is used to send CWF_F1 data as normal data when the SBM1 is active.
1169 * This parameter is used to send CWF_F1 data as normal data when the SBM1 is active.
1170 *
1170 *
1171 */
1171 */
1172
1172
1173 param_local.local_sbm1_nb_cwf_sent = 0;
1173 param_local.local_sbm1_nb_cwf_sent = 0;
1174 }
1174 }
1175
1175
1176 void reset_local_sbm2_nb_cwf_sent()
1176 void reset_local_sbm2_nb_cwf_sent()
1177 {
1177 {
1178 /** This function resets the value of the sbm2_nb_cwf_sent local parameter.
1178 /** This function resets the value of the sbm2_nb_cwf_sent local parameter.
1179 *
1179 *
1180 * The sbm2_nb_cwf_sent parameter counts the number of CWF_F2 records that have been sent.\n
1180 * The sbm2_nb_cwf_sent parameter counts the number of CWF_F2 records that have been sent.\n
1181 * This parameter is used to send CWF_F2 data as normal data when the SBM2 mode is active.
1181 * This parameter is used to send CWF_F2 data as normal data when the SBM2 mode is active.
1182 *
1182 *
1183 */
1183 */
1184
1184
1185 param_local.local_sbm2_nb_cwf_sent = 0;
1185 param_local.local_sbm2_nb_cwf_sent = 0;
1186 }
1186 }
1187
1187
1188 rtems_id get_pkts_queue_id( void )
1188 rtems_id get_pkts_queue_id( void )
1189 {
1189 {
1190 rtems_id queue_id;
1190 rtems_id queue_id;
1191 rtems_status_code status;
1191 rtems_status_code status;
1192 rtems_name queue_send_name;
1192 rtems_name queue_send_name;
1193
1193
1194 queue_send_name = rtems_build_name( 'Q', '_', 'S', 'D' );
1194 queue_send_name = rtems_build_name( 'Q', '_', 'S', 'D' );
1195
1195
1196 status = rtems_message_queue_ident( queue_send_name, 0, &queue_id );
1196 status = rtems_message_queue_ident( queue_send_name, 0, &queue_id );
1197 if (status != RTEMS_SUCCESSFUL)
1197 if (status != RTEMS_SUCCESSFUL)
1198 {
1198 {
1199 PRINTF1("in get_pkts_queue_id *** ERR %d\n", status)
1199 PRINTF1("in get_pkts_queue_id *** ERR %d\n", status)
1200 }
1200 }
1201 return queue_id;
1201 return queue_id;
1202 }
1202 }
1203
1203
1204 void increment_seq_counter_source_id( unsigned char *packet_sequence_control, unsigned int sid )
1204 void increment_seq_counter_source_id( unsigned char *packet_sequence_control, unsigned int sid )
1205 {
1205 {
1206 unsigned short *sequence_cnt;
1206 unsigned short *sequence_cnt;
1207 unsigned short segmentation_grouping_flag;
1207 unsigned short segmentation_grouping_flag;
1208 unsigned short new_packet_sequence_control;
1208 unsigned short new_packet_sequence_control;
1209
1209
1210 if ( (sid ==SID_NORM_SWF_F0) || (sid ==SID_NORM_SWF_F1) || (sid ==SID_NORM_SWF_F2)
1210 if ( (sid ==SID_NORM_SWF_F0) || (sid ==SID_NORM_SWF_F1) || (sid ==SID_NORM_SWF_F2)
1211 || (sid ==SID_NORM_CWF_F3) || (sid ==SID_BURST_CWF_F2) )
1211 || (sid ==SID_NORM_CWF_F3) || (sid ==SID_BURST_CWF_F2) )
1212 {
1212 {
1213 sequence_cnt = &sequenceCounters_SCIENCE_NORMAL_BURST;
1213 sequence_cnt = &sequenceCounters_SCIENCE_NORMAL_BURST;
1214 }
1214 }
1215 else if ( (sid ==SID_SBM1_CWF_F1) || (sid ==SID_SBM2_CWF_F2) )
1215 else if ( (sid ==SID_SBM1_CWF_F1) || (sid ==SID_SBM2_CWF_F2) )
1216 {
1216 {
1217 sequence_cnt = &sequenceCounters_SCIENCE_SBM1_SBM2;
1217 sequence_cnt = &sequenceCounters_SCIENCE_SBM1_SBM2;
1218 }
1218 }
1219 else
1219 else
1220 {
1220 {
1221 sequence_cnt = &sequenceCounters_TC_EXE[ UNKNOWN ];
1221 sequence_cnt = &sequenceCounters_TC_EXE[ UNKNOWN ];
1222 PRINTF1("in increment_seq_counter_source_id *** ERR apid_destid %d not known\n", sid)
1222 PRINTF1("in increment_seq_counter_source_id *** ERR apid_destid %d not known\n", sid)
1223 }
1223 }
1224
1224
1225 segmentation_grouping_flag = (packet_sequence_control[ 0 ] & 0xc0) << 8;
1225 segmentation_grouping_flag = (packet_sequence_control[ 0 ] & 0xc0) << 8;
1226 *sequence_cnt = (*sequence_cnt) & 0x3fff;
1226 *sequence_cnt = (*sequence_cnt) & 0x3fff;
1227
1227
1228 new_packet_sequence_control = segmentation_grouping_flag | *sequence_cnt ;
1228 new_packet_sequence_control = segmentation_grouping_flag | *sequence_cnt ;
1229
1229
1230 packet_sequence_control[0] = (unsigned char) (new_packet_sequence_control >> 8);
1230 packet_sequence_control[0] = (unsigned char) (new_packet_sequence_control >> 8);
1231 packet_sequence_control[1] = (unsigned char) (new_packet_sequence_control );
1231 packet_sequence_control[1] = (unsigned char) (new_packet_sequence_control );
1232
1232
1233 // increment the sequence counter for the next packet
1233 // increment the sequence counter for the next packet
1234 if ( *sequence_cnt < SEQ_CNT_MAX)
1234 if ( *sequence_cnt < SEQ_CNT_MAX)
1235 {
1235 {
1236 *sequence_cnt = *sequence_cnt + 1;
1236 *sequence_cnt = *sequence_cnt + 1;
1237 }
1237 }
1238 else
1238 else
1239 {
1239 {
1240 *sequence_cnt = 0;
1240 *sequence_cnt = 0;
1241 }
1241 }
1242 }
1242 }
General Comments 0
You need to be logged in to leave comments. Login now