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1 | ############################################################################# |
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1 | ############################################################################# | |
2 | # Makefile for building: bin/fsw |
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2 | # Makefile for building: bin/fsw | |
3 |
# Generated by qmake (2.01a) (Qt 4.8.5) on: |
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3 | # Generated by qmake (2.01a) (Qt 4.8.5) on: Tue Nov 19 13:58:57 2013 | |
4 | # Project: fsw-qt.pro |
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4 | # Project: fsw-qt.pro | |
5 | # Template: app |
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5 | # Template: app | |
6 | # Command: /usr/bin/qmake-qt4 -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro |
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6 | # Command: /usr/bin/qmake-qt4 -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro | |
7 | ############################################################################# |
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7 | ############################################################################# | |
8 |
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8 | |||
9 | ####### Compiler, tools and options |
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9 | ####### Compiler, tools and options | |
10 |
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10 | |||
11 | CC = sparc-rtems-gcc |
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11 | CC = sparc-rtems-gcc | |
12 | CXX = sparc-rtems-g++ |
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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 |
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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) |
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14 | CFLAGS = -pipe -O3 -Wall $(DEFINES) | |
15 | CXXFLAGS = -pipe -O3 -Wall $(DEFINES) |
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15 | CXXFLAGS = -pipe -O3 -Wall $(DEFINES) | |
16 | INCPATH = -I/usr/lib64/qt4/mkspecs/linux-g++ -I. -I../src -I../header |
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16 | INCPATH = -I/usr/lib64/qt4/mkspecs/linux-g++ -I. -I../src -I../header | |
17 | LINK = sparc-rtems-g++ |
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17 | LINK = sparc-rtems-g++ | |
18 | LFLAGS = |
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18 | LFLAGS = | |
19 | LIBS = $(SUBLIBS) |
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19 | LIBS = $(SUBLIBS) | |
20 | AR = sparc-rtems-ar rcs |
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20 | AR = sparc-rtems-ar rcs | |
21 | RANLIB = |
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21 | RANLIB = | |
22 | QMAKE = /usr/bin/qmake-qt4 |
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22 | QMAKE = /usr/bin/qmake-qt4 | |
23 | TAR = tar -cf |
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23 | TAR = tar -cf | |
24 | COMPRESS = gzip -9f |
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24 | COMPRESS = gzip -9f | |
25 | COPY = cp -f |
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25 | COPY = cp -f | |
26 | SED = sed |
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26 | SED = sed | |
27 | COPY_FILE = $(COPY) |
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27 | COPY_FILE = $(COPY) | |
28 | COPY_DIR = $(COPY) -r |
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28 | COPY_DIR = $(COPY) -r | |
29 | STRIP = sparc-rtems-strip |
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29 | STRIP = sparc-rtems-strip | |
30 | INSTALL_FILE = install -m 644 -p |
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30 | INSTALL_FILE = install -m 644 -p | |
31 | INSTALL_DIR = $(COPY_DIR) |
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31 | INSTALL_DIR = $(COPY_DIR) | |
32 | INSTALL_PROGRAM = install -m 755 -p |
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32 | INSTALL_PROGRAM = install -m 755 -p | |
33 | DEL_FILE = rm -f |
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33 | DEL_FILE = rm -f | |
34 | SYMLINK = ln -f -s |
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34 | SYMLINK = ln -f -s | |
35 | DEL_DIR = rmdir |
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35 | DEL_DIR = rmdir | |
36 | MOVE = mv -f |
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36 | MOVE = mv -f | |
37 | CHK_DIR_EXISTS= test -d |
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37 | CHK_DIR_EXISTS= test -d | |
38 | MKDIR = mkdir -p |
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38 | MKDIR = mkdir -p | |
39 |
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39 | |||
40 | ####### Output directory |
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40 | ####### Output directory | |
41 |
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41 | |||
42 | OBJECTS_DIR = obj/ |
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42 | OBJECTS_DIR = obj/ | |
43 |
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43 | |||
44 | ####### Files |
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44 | ####### Files | |
45 |
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45 | |||
46 | SOURCES = ../src/wf_handler.c \ |
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46 | SOURCES = ../src/wf_handler.c \ | |
47 | ../src/tc_handler.c \ |
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47 | ../src/tc_handler.c \ | |
48 | ../src/fsw_processing.c \ |
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48 | ../src/fsw_processing.c \ | |
49 | ../src/fsw_misc.c \ |
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49 | ../src/fsw_misc.c \ | |
50 | ../src/fsw_init.c \ |
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50 | ../src/fsw_init.c \ | |
51 | ../src/fsw_globals.c \ |
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51 | ../src/fsw_globals.c \ | |
52 | ../src/fsw_spacewire.c \ |
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52 | ../src/fsw_spacewire.c \ | |
53 | ../src/tc_load_dump_parameters.c \ |
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53 | ../src/tc_load_dump_parameters.c \ | |
54 | ../src/tm_lfr_tc_exe.c \ |
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54 | ../src/tm_lfr_tc_exe.c \ | |
55 | ../src/tc_acceptance.c |
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55 | ../src/tc_acceptance.c | |
56 | OBJECTS = obj/wf_handler.o \ |
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56 | OBJECTS = obj/wf_handler.o \ | |
57 | obj/tc_handler.o \ |
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57 | obj/tc_handler.o \ | |
58 | obj/fsw_processing.o \ |
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58 | obj/fsw_processing.o \ | |
59 | obj/fsw_misc.o \ |
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59 | obj/fsw_misc.o \ | |
60 | obj/fsw_init.o \ |
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60 | obj/fsw_init.o \ | |
61 | obj/fsw_globals.o \ |
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61 | obj/fsw_globals.o \ | |
62 | obj/fsw_spacewire.o \ |
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62 | obj/fsw_spacewire.o \ | |
63 | obj/tc_load_dump_parameters.o \ |
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63 | obj/tc_load_dump_parameters.o \ | |
64 | obj/tm_lfr_tc_exe.o \ |
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64 | obj/tm_lfr_tc_exe.o \ | |
65 | obj/tc_acceptance.o |
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65 | obj/tc_acceptance.o | |
66 | DIST = /usr/lib64/qt4/mkspecs/common/unix.conf \ |
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66 | DIST = /usr/lib64/qt4/mkspecs/common/unix.conf \ | |
67 | /usr/lib64/qt4/mkspecs/common/linux.conf \ |
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67 | /usr/lib64/qt4/mkspecs/common/linux.conf \ | |
68 | /usr/lib64/qt4/mkspecs/common/gcc-base.conf \ |
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68 | /usr/lib64/qt4/mkspecs/common/gcc-base.conf \ | |
69 | /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf \ |
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69 | /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf \ | |
70 | /usr/lib64/qt4/mkspecs/common/g++-base.conf \ |
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70 | /usr/lib64/qt4/mkspecs/common/g++-base.conf \ | |
71 | /usr/lib64/qt4/mkspecs/common/g++-unix.conf \ |
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71 | /usr/lib64/qt4/mkspecs/common/g++-unix.conf \ | |
72 | /usr/lib64/qt4/mkspecs/qconfig.pri \ |
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72 | /usr/lib64/qt4/mkspecs/qconfig.pri \ | |
73 | /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri \ |
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73 | /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri \ | |
74 | /usr/lib64/qt4/mkspecs/features/qt_functions.prf \ |
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74 | /usr/lib64/qt4/mkspecs/features/qt_functions.prf \ | |
75 | /usr/lib64/qt4/mkspecs/features/qt_config.prf \ |
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75 | /usr/lib64/qt4/mkspecs/features/qt_config.prf \ | |
76 | /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf \ |
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76 | /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf \ | |
77 | /usr/lib64/qt4/mkspecs/features/default_pre.prf \ |
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77 | /usr/lib64/qt4/mkspecs/features/default_pre.prf \ | |
78 | sparc.pri \ |
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78 | sparc.pri \ | |
79 | /usr/lib64/qt4/mkspecs/features/release.prf \ |
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79 | /usr/lib64/qt4/mkspecs/features/release.prf \ | |
80 | /usr/lib64/qt4/mkspecs/features/default_post.prf \ |
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80 | /usr/lib64/qt4/mkspecs/features/default_post.prf \ | |
81 | /usr/lib64/qt4/mkspecs/features/shared.prf \ |
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81 | /usr/lib64/qt4/mkspecs/features/shared.prf \ | |
82 | /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf \ |
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82 | /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf \ | |
83 | /usr/lib64/qt4/mkspecs/features/warn_on.prf \ |
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83 | /usr/lib64/qt4/mkspecs/features/warn_on.prf \ | |
84 | /usr/lib64/qt4/mkspecs/features/resources.prf \ |
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84 | /usr/lib64/qt4/mkspecs/features/resources.prf \ | |
85 | /usr/lib64/qt4/mkspecs/features/uic.prf \ |
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85 | /usr/lib64/qt4/mkspecs/features/uic.prf \ | |
86 | /usr/lib64/qt4/mkspecs/features/yacc.prf \ |
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86 | /usr/lib64/qt4/mkspecs/features/yacc.prf \ | |
87 | /usr/lib64/qt4/mkspecs/features/lex.prf \ |
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87 | /usr/lib64/qt4/mkspecs/features/lex.prf \ | |
88 | /usr/lib64/qt4/mkspecs/features/include_source_dir.prf \ |
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88 | /usr/lib64/qt4/mkspecs/features/include_source_dir.prf \ | |
89 | fsw-qt.pro |
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89 | fsw-qt.pro | |
90 | QMAKE_TARGET = fsw |
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90 | QMAKE_TARGET = fsw | |
91 | DESTDIR = bin/ |
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91 | DESTDIR = bin/ | |
92 | TARGET = bin/fsw |
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92 | TARGET = bin/fsw | |
93 |
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93 | |||
94 | first: all |
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94 | first: all | |
95 | ####### Implicit rules |
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95 | ####### Implicit rules | |
96 |
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96 | |||
97 | .SUFFIXES: .o .c .cpp .cc .cxx .C |
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97 | .SUFFIXES: .o .c .cpp .cc .cxx .C | |
98 |
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98 | |||
99 | .cpp.o: |
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99 | .cpp.o: | |
100 | $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<" |
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100 | $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<" | |
101 |
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101 | |||
102 | .cc.o: |
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102 | .cc.o: | |
103 | $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<" |
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103 | $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<" | |
104 |
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104 | |||
105 | .cxx.o: |
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105 | .cxx.o: | |
106 | $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<" |
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106 | $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<" | |
107 |
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107 | |||
108 | .C.o: |
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108 | .C.o: | |
109 | $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<" |
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109 | $(CXX) -c $(CXXFLAGS) $(INCPATH) -o "$@" "$<" | |
110 |
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110 | |||
111 | .c.o: |
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111 | .c.o: | |
112 | $(CC) -c $(CFLAGS) $(INCPATH) -o "$@" "$<" |
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112 | $(CC) -c $(CFLAGS) $(INCPATH) -o "$@" "$<" | |
113 |
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113 | |||
114 | ####### Build rules |
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114 | ####### Build rules | |
115 |
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115 | |||
116 | all: Makefile $(TARGET) |
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116 | all: Makefile $(TARGET) | |
117 |
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117 | |||
118 | $(TARGET): $(OBJECTS) |
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118 | $(TARGET): $(OBJECTS) | |
119 | @$(CHK_DIR_EXISTS) bin/ || $(MKDIR) bin/ |
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119 | @$(CHK_DIR_EXISTS) bin/ || $(MKDIR) bin/ | |
120 | $(LINK) $(LFLAGS) -o $(TARGET) $(OBJECTS) $(OBJCOMP) $(LIBS) |
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120 | $(LINK) $(LFLAGS) -o $(TARGET) $(OBJECTS) $(OBJCOMP) $(LIBS) | |
121 |
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121 | |||
122 | Makefile: fsw-qt.pro /usr/lib64/qt4/mkspecs/linux-g++/qmake.conf /usr/lib64/qt4/mkspecs/common/unix.conf \ |
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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 \ |
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123 | /usr/lib64/qt4/mkspecs/common/linux.conf \ | |
124 | /usr/lib64/qt4/mkspecs/common/gcc-base.conf \ |
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124 | /usr/lib64/qt4/mkspecs/common/gcc-base.conf \ | |
125 | /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf \ |
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125 | /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf \ | |
126 | /usr/lib64/qt4/mkspecs/common/g++-base.conf \ |
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126 | /usr/lib64/qt4/mkspecs/common/g++-base.conf \ | |
127 | /usr/lib64/qt4/mkspecs/common/g++-unix.conf \ |
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127 | /usr/lib64/qt4/mkspecs/common/g++-unix.conf \ | |
128 | /usr/lib64/qt4/mkspecs/qconfig.pri \ |
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128 | /usr/lib64/qt4/mkspecs/qconfig.pri \ | |
129 | /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri \ |
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129 | /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri \ | |
130 | /usr/lib64/qt4/mkspecs/features/qt_functions.prf \ |
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130 | /usr/lib64/qt4/mkspecs/features/qt_functions.prf \ | |
131 | /usr/lib64/qt4/mkspecs/features/qt_config.prf \ |
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131 | /usr/lib64/qt4/mkspecs/features/qt_config.prf \ | |
132 | /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf \ |
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132 | /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf \ | |
133 | /usr/lib64/qt4/mkspecs/features/default_pre.prf \ |
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133 | /usr/lib64/qt4/mkspecs/features/default_pre.prf \ | |
134 | sparc.pri \ |
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134 | sparc.pri \ | |
135 | /usr/lib64/qt4/mkspecs/features/release.prf \ |
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135 | /usr/lib64/qt4/mkspecs/features/release.prf \ | |
136 | /usr/lib64/qt4/mkspecs/features/default_post.prf \ |
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136 | /usr/lib64/qt4/mkspecs/features/default_post.prf \ | |
137 | /usr/lib64/qt4/mkspecs/features/shared.prf \ |
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137 | /usr/lib64/qt4/mkspecs/features/shared.prf \ | |
138 | /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf \ |
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138 | /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf \ | |
139 | /usr/lib64/qt4/mkspecs/features/warn_on.prf \ |
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139 | /usr/lib64/qt4/mkspecs/features/warn_on.prf \ | |
140 | /usr/lib64/qt4/mkspecs/features/resources.prf \ |
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140 | /usr/lib64/qt4/mkspecs/features/resources.prf \ | |
141 | /usr/lib64/qt4/mkspecs/features/uic.prf \ |
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141 | /usr/lib64/qt4/mkspecs/features/uic.prf \ | |
142 | /usr/lib64/qt4/mkspecs/features/yacc.prf \ |
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142 | /usr/lib64/qt4/mkspecs/features/yacc.prf \ | |
143 | /usr/lib64/qt4/mkspecs/features/lex.prf \ |
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143 | /usr/lib64/qt4/mkspecs/features/lex.prf \ | |
144 | /usr/lib64/qt4/mkspecs/features/include_source_dir.prf |
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144 | /usr/lib64/qt4/mkspecs/features/include_source_dir.prf | |
145 | $(QMAKE) -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro |
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145 | $(QMAKE) -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro | |
146 | /usr/lib64/qt4/mkspecs/common/unix.conf: |
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146 | /usr/lib64/qt4/mkspecs/common/unix.conf: | |
147 | /usr/lib64/qt4/mkspecs/common/linux.conf: |
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147 | /usr/lib64/qt4/mkspecs/common/linux.conf: | |
148 | /usr/lib64/qt4/mkspecs/common/gcc-base.conf: |
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148 | /usr/lib64/qt4/mkspecs/common/gcc-base.conf: | |
149 | /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf: |
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149 | /usr/lib64/qt4/mkspecs/common/gcc-base-unix.conf: | |
150 | /usr/lib64/qt4/mkspecs/common/g++-base.conf: |
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150 | /usr/lib64/qt4/mkspecs/common/g++-base.conf: | |
151 | /usr/lib64/qt4/mkspecs/common/g++-unix.conf: |
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151 | /usr/lib64/qt4/mkspecs/common/g++-unix.conf: | |
152 | /usr/lib64/qt4/mkspecs/qconfig.pri: |
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152 | /usr/lib64/qt4/mkspecs/qconfig.pri: | |
153 | /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri: |
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153 | /usr/lib64/qt4/mkspecs/modules/qt_webkit.pri: | |
154 | /usr/lib64/qt4/mkspecs/features/qt_functions.prf: |
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154 | /usr/lib64/qt4/mkspecs/features/qt_functions.prf: | |
155 | /usr/lib64/qt4/mkspecs/features/qt_config.prf: |
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155 | /usr/lib64/qt4/mkspecs/features/qt_config.prf: | |
156 | /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf: |
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156 | /usr/lib64/qt4/mkspecs/features/exclusive_builds.prf: | |
157 | /usr/lib64/qt4/mkspecs/features/default_pre.prf: |
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157 | /usr/lib64/qt4/mkspecs/features/default_pre.prf: | |
158 | sparc.pri: |
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158 | sparc.pri: | |
159 | /usr/lib64/qt4/mkspecs/features/release.prf: |
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159 | /usr/lib64/qt4/mkspecs/features/release.prf: | |
160 | /usr/lib64/qt4/mkspecs/features/default_post.prf: |
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160 | /usr/lib64/qt4/mkspecs/features/default_post.prf: | |
161 | /usr/lib64/qt4/mkspecs/features/shared.prf: |
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161 | /usr/lib64/qt4/mkspecs/features/shared.prf: | |
162 | /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf: |
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162 | /usr/lib64/qt4/mkspecs/features/unix/gdb_dwarf_index.prf: | |
163 | /usr/lib64/qt4/mkspecs/features/warn_on.prf: |
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163 | /usr/lib64/qt4/mkspecs/features/warn_on.prf: | |
164 | /usr/lib64/qt4/mkspecs/features/resources.prf: |
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164 | /usr/lib64/qt4/mkspecs/features/resources.prf: | |
165 | /usr/lib64/qt4/mkspecs/features/uic.prf: |
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165 | /usr/lib64/qt4/mkspecs/features/uic.prf: | |
166 | /usr/lib64/qt4/mkspecs/features/yacc.prf: |
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166 | /usr/lib64/qt4/mkspecs/features/yacc.prf: | |
167 | /usr/lib64/qt4/mkspecs/features/lex.prf: |
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167 | /usr/lib64/qt4/mkspecs/features/lex.prf: | |
168 | /usr/lib64/qt4/mkspecs/features/include_source_dir.prf: |
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168 | /usr/lib64/qt4/mkspecs/features/include_source_dir.prf: | |
169 | qmake: FORCE |
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169 | qmake: FORCE | |
170 | @$(QMAKE) -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro |
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170 | @$(QMAKE) -spec /usr/lib64/qt4/mkspecs/linux-g++ -o Makefile fsw-qt.pro | |
171 |
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171 | |||
172 | dist: |
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172 | dist: | |
173 | @$(CHK_DIR_EXISTS) obj/fsw1.0.0 || $(MKDIR) obj/fsw1.0.0 |
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173 | @$(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 |
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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 . && $(DEL_FILE) -r obj/fsw1.0.0 | |
175 |
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175 | |||
176 |
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176 | |||
177 | clean:compiler_clean |
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177 | clean:compiler_clean | |
178 | -$(DEL_FILE) $(OBJECTS) |
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178 | -$(DEL_FILE) $(OBJECTS) | |
179 | -$(DEL_FILE) *~ core *.core |
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179 | -$(DEL_FILE) *~ core *.core | |
180 |
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180 | |||
181 |
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181 | |||
182 | ####### Sub-libraries |
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182 | ####### Sub-libraries | |
183 |
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183 | |||
184 | distclean: clean |
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184 | distclean: clean | |
185 | -$(DEL_FILE) $(TARGET) |
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185 | -$(DEL_FILE) $(TARGET) | |
186 | -$(DEL_FILE) Makefile |
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186 | -$(DEL_FILE) Makefile | |
187 |
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187 | |||
188 |
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188 | |||
189 | grmon: |
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189 | grmon: | |
190 | cd bin && C:/opt/grmon-eval-2.0.29b/win32/bin/grmon.exe -uart COM4 -u |
|
190 | cd bin && C:/opt/grmon-eval-2.0.29b/win32/bin/grmon.exe -uart COM4 -u | |
191 |
|
191 | |||
192 | check: first |
|
192 | check: first | |
193 |
|
193 | |||
194 | compiler_rcc_make_all: |
|
194 | compiler_rcc_make_all: | |
195 | compiler_rcc_clean: |
|
195 | compiler_rcc_clean: | |
196 | compiler_uic_make_all: |
|
196 | compiler_uic_make_all: | |
197 | compiler_uic_clean: |
|
197 | compiler_uic_clean: | |
198 | compiler_image_collection_make_all: qmake_image_collection.cpp |
|
198 | compiler_image_collection_make_all: qmake_image_collection.cpp | |
199 | compiler_image_collection_clean: |
|
199 | compiler_image_collection_clean: | |
200 | -$(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 |
@@ -1,78 +1,78 | |||||
1 | TEMPLATE = app |
|
1 | TEMPLATE = app | |
2 | # CONFIG += console v8 sim |
|
2 | # CONFIG += console v8 sim | |
3 | # CONFIG options = verbose *** boot_messages *** debug_messages *** cpu_usage_report *** stack_report *** gsa |
|
3 | # CONFIG options = verbose *** boot_messages *** debug_messages *** cpu_usage_report *** stack_report *** gsa | |
4 |
CONFIG += console verbose |
|
4 | CONFIG += console verbose | |
5 | CONFIG -= qt |
|
5 | CONFIG -= qt | |
6 |
|
6 | |||
7 | include(./sparc.pri) |
|
7 | include(./sparc.pri) | |
8 |
|
8 | |||
9 | # flight software version |
|
9 | # flight software version | |
10 | SWVERSION=-0-22 |
|
10 | SWVERSION=-0-22 | |
11 | DEFINES += SW_VERSION_N1=0 |
|
11 | DEFINES += SW_VERSION_N1=0 | |
12 | DEFINES += SW_VERSION_N2=0 |
|
12 | DEFINES += SW_VERSION_N2=0 | |
13 | DEFINES += SW_VERSION_N3=0 |
|
13 | DEFINES += SW_VERSION_N3=0 | |
14 | DEFINES += SW_VERSION_N4=22 |
|
14 | DEFINES += SW_VERSION_N4=22 | |
15 |
|
15 | |||
16 | contains( CONFIG, verbose ) { |
|
16 | contains( CONFIG, verbose ) { | |
17 | DEFINES += PRINT_MESSAGES_ON_CONSOLE |
|
17 | DEFINES += PRINT_MESSAGES_ON_CONSOLE | |
18 | } |
|
18 | } | |
19 |
|
19 | |||
20 | contains( CONFIG, debug_messages ) { |
|
20 | contains( CONFIG, debug_messages ) { | |
21 | DEFINES += DEBUG_MESSAGES |
|
21 | DEFINES += DEBUG_MESSAGES | |
22 | } |
|
22 | } | |
23 |
|
23 | |||
24 | contains( CONFIG, cpu_usage_report ) { |
|
24 | contains( CONFIG, cpu_usage_report ) { | |
25 | DEFINES += PRINT_TASK_STATISTICS |
|
25 | DEFINES += PRINT_TASK_STATISTICS | |
26 | } |
|
26 | } | |
27 |
|
27 | |||
28 | contains( CONFIG, stack_report ) { |
|
28 | contains( CONFIG, stack_report ) { | |
29 | DEFINES += PRINT_STACK_REPORT |
|
29 | DEFINES += PRINT_STACK_REPORT | |
30 | } |
|
30 | } | |
31 |
|
31 | |||
32 | contains( CONFIG, boot_messages ) { |
|
32 | contains( CONFIG, boot_messages ) { | |
33 | DEFINES += BOOT_MESSAGES |
|
33 | DEFINES += BOOT_MESSAGES | |
34 | } |
|
34 | } | |
35 |
|
35 | |||
36 | #doxygen.target = doxygen |
|
36 | #doxygen.target = doxygen | |
37 | #doxygen.commands = doxygen ../doc/Doxyfile |
|
37 | #doxygen.commands = doxygen ../doc/Doxyfile | |
38 | #QMAKE_EXTRA_TARGETS += doxygen |
|
38 | #QMAKE_EXTRA_TARGETS += doxygen | |
39 |
|
39 | |||
40 | TARGET = fsw |
|
40 | TARGET = fsw | |
41 | contains( CONFIG, gsa ) { |
|
41 | contains( CONFIG, gsa ) { | |
42 | DEFINES += GSA |
|
42 | DEFINES += GSA | |
43 | TARGET = fsw-gsa |
|
43 | TARGET = fsw-gsa | |
44 | } |
|
44 | } | |
45 |
|
45 | |||
46 | INCLUDEPATH += \ |
|
46 | INCLUDEPATH += \ | |
47 | ../src \ |
|
47 | ../src \ | |
48 | ../header |
|
48 | ../header | |
49 |
|
49 | |||
50 | SOURCES += \ |
|
50 | SOURCES += \ | |
51 | ../src/wf_handler.c \ |
|
51 | ../src/wf_handler.c \ | |
52 | ../src/tc_handler.c \ |
|
52 | ../src/tc_handler.c \ | |
53 | ../src/fsw_processing.c \ |
|
53 | ../src/fsw_processing.c \ | |
54 | ../src/fsw_misc.c \ |
|
54 | ../src/fsw_misc.c \ | |
55 | ../src/fsw_init.c \ |
|
55 | ../src/fsw_init.c \ | |
56 | ../src/fsw_globals.c \ |
|
56 | ../src/fsw_globals.c \ | |
57 | ../src/fsw_spacewire.c \ |
|
57 | ../src/fsw_spacewire.c \ | |
58 | ../src/tc_load_dump_parameters.c \ |
|
58 | ../src/tc_load_dump_parameters.c \ | |
59 | ../src/tm_lfr_tc_exe.c \ |
|
59 | ../src/tm_lfr_tc_exe.c \ | |
60 | ../src/tc_acceptance.c |
|
60 | ../src/tc_acceptance.c | |
61 |
|
61 | |||
62 |
|
62 | |||
63 | HEADERS += \ |
|
63 | HEADERS += \ | |
64 | ../header/wf_handler.h \ |
|
64 | ../header/wf_handler.h \ | |
65 | ../header/tc_handler.h \ |
|
65 | ../header/tc_handler.h \ | |
66 | ../header/grlib_regs.h \ |
|
66 | ../header/grlib_regs.h \ | |
67 | ../header/fsw_processing.h \ |
|
67 | ../header/fsw_processing.h \ | |
68 | ../header/fsw_params.h \ |
|
68 | ../header/fsw_params.h \ | |
69 | ../header/fsw_misc.h \ |
|
69 | ../header/fsw_misc.h \ | |
70 | ../header/fsw_init.h \ |
|
70 | ../header/fsw_init.h \ | |
71 | ../header/ccsds_types.h \ |
|
71 | ../header/ccsds_types.h \ | |
72 | ../header/fsw_params_processing.h \ |
|
72 | ../header/fsw_params_processing.h \ | |
73 | ../header/fsw_spacewire.h \ |
|
73 | ../header/fsw_spacewire.h \ | |
74 | ../header/tm_byte_positions.h \ |
|
74 | ../header/tm_byte_positions.h \ | |
75 | ../header/tc_load_dump_parameters.h \ |
|
75 | ../header/tc_load_dump_parameters.h \ | |
76 | ../header/tm_lfr_tc_exe.h \ |
|
76 | ../header/tm_lfr_tc_exe.h \ | |
77 | ../header/tc_acceptance.h |
|
77 | ../header/tc_acceptance.h | |
78 |
|
78 |
@@ -1,305 +1,305 | |||||
1 | <?xml version="1.0" encoding="UTF-8"?> |
|
1 | <?xml version="1.0" encoding="UTF-8"?> | |
2 | <!DOCTYPE QtCreatorProject> |
|
2 | <!DOCTYPE QtCreatorProject> | |
3 |
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|
3 | <!-- Written by QtCreator 2.8.1, 2013-11-21T16:57:00. --> | |
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76 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value> | |
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78 | <value type="QString">-w</value> | |
79 | <value type="QString">-r</value> |
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79 | <value type="QString">-r</value> | |
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81 | <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">false</value> | |
82 | <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w -j 4</value> |
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82 | <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w -j 4</value> | |
83 | <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value> |
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83 | <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value> | |
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85 | <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">2</value> | |
86 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Build</value> |
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86 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Build</value> | |
87 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> |
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87 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
88 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Build</value> |
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88 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Build</value> | |
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92 | <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value> | |
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93 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value> | |
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95 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.MakeStep</value> | |
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100 | <value type="bool" key="Qt4ProjectManager.MakeStep.Clean">true</value> | |
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101 | <value type="QString" key="Qt4ProjectManager.MakeStep.MakeArguments">-r -w clean</value> | |
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102 | <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value> | |
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104 | <value type="int" key="ProjectExplorer.BuildStepList.StepsCount">1</value> | |
105 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Clean</value> |
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105 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Clean</value> | |
106 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> |
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106 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
107 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Clean</value> |
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107 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.BuildSteps.Clean</value> | |
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109 | <value type="int" key="ProjectExplorer.BuildConfiguration.BuildStepListCount">2</value> | |
110 | <value type="bool" key="ProjectExplorer.BuildConfiguration.ClearSystemEnvironment">false</value> |
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110 | <value type="bool" key="ProjectExplorer.BuildConfiguration.ClearSystemEnvironment">false</value> | |
111 | <valuelist type="QVariantList" key="ProjectExplorer.BuildConfiguration.UserEnvironmentChanges"/> |
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111 | <valuelist type="QVariantList" key="ProjectExplorer.BuildConfiguration.UserEnvironmentChanges"/> | |
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112 | <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> |
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113 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
114 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4BuildConfiguration</value> |
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114 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4BuildConfiguration</value> | |
115 | <value type="int" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildConfiguration">0</value> |
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115 | <value type="int" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildConfiguration">0</value> | |
116 | <value type="QString" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildDirectory">/opt/DEV_PLE/FSW-qt</value> |
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116 | <value type="QString" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildDirectory">/opt/DEV_PLE/FSW-qt</value> | |
117 | <value type="bool" key="Qt4ProjectManager.Qt4BuildConfiguration.UseShadowBuild">false</value> |
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117 | <value type="bool" key="Qt4ProjectManager.Qt4BuildConfiguration.UseShadowBuild">false</value> | |
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119 | <valuemap type="QVariantMap" key="ProjectExplorer.Target.BuildConfiguration.1"> |
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119 | <valuemap type="QVariantMap" key="ProjectExplorer.Target.BuildConfiguration.1"> | |
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120 | <valuemap type="QVariantMap" key="ProjectExplorer.BuildConfiguration.BuildStepList.0"> | |
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121 | <valuemap type="QVariantMap" key="ProjectExplorer.BuildStepList.Step.0"> | |
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122 | <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value> | |
123 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">qmake</value> |
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123 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">qmake</value> | |
124 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> |
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124 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
125 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">QtProjectManager.QMakeBuildStep</value> |
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125 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">QtProjectManager.QMakeBuildStep</value> | |
126 | <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibrary">false</value> |
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126 | <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibrary">false</value> | |
127 | <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibraryAuto">true</value> |
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127 | <value type="bool" key="QtProjectManager.QMakeBuildStep.LinkQmlDebuggingLibraryAuto">true</value> | |
128 | <value type="QString" key="QtProjectManager.QMakeBuildStep.QMakeArguments"></value> |
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128 | <value type="QString" key="QtProjectManager.QMakeBuildStep.QMakeArguments"></value> | |
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129 | <value type="bool" key="QtProjectManager.QMakeBuildStep.QMakeForced">false</value> | |
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132 | <value type="bool" key="ProjectExplorer.BuildStep.Enabled">true</value> | |
133 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value> |
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133 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Make</value> | |
134 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> |
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134 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
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142 | <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value> | |
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146 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
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161 | <value type="QString" key="Qt4ProjectManager.MakeStep.MakeCommand"></value> | |
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164 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Clean</value> | |
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165 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
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169 | <value type="bool" key="ProjectExplorer.BuildConfiguration.ClearSystemEnvironment">false</value> |
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171 | <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> |
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172 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
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173 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">Qt4ProjectManager.Qt4BuildConfiguration</value> | |
174 | <value type="int" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildConfiguration">2</value> |
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174 | <value type="int" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildConfiguration">2</value> | |
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175 | <value type="QString" key="Qt4ProjectManager.Qt4BuildConfiguration.BuildDirectory">/opt/DEV_PLE/FSW-qt</value> | |
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176 | <value type="bool" key="Qt4ProjectManager.Qt4BuildConfiguration.UseShadowBuild">false</value> | |
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178 | <value type="int" key="ProjectExplorer.Target.BuildConfigurationCount">2</value> |
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178 | <value type="int" key="ProjectExplorer.Target.BuildConfigurationCount">2</value> | |
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187 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">No deployment</value> | |
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188 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
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189 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.DefaultDeployConfiguration</value> | |
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191 | <value type="int" key="ProjectExplorer.Target.DeployConfigurationCount">1</value> | |
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197 | <value type="bool" key="Analyzer.Valgrind.Callgrind.CollectSystime">false</value> | |
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199 | <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableCacheSim">false</value> | |
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200 | <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableEventToolTips">true</value> | |
201 | <value type="double" key="Analyzer.Valgrind.Callgrind.MinimumCostRatio">0.01</value> |
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201 | <value type="double" key="Analyzer.Valgrind.Callgrind.MinimumCostRatio">0.01</value> | |
202 | <value type="double" key="Analyzer.Valgrind.Callgrind.VisualisationMinimumCostRatio">10</value> |
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202 | <value type="double" key="Analyzer.Valgrind.Callgrind.VisualisationMinimumCostRatio">10</value> | |
203 | <value type="bool" key="Analyzer.Valgrind.FilterExternalIssues">true</value> |
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203 | <value type="bool" key="Analyzer.Valgrind.FilterExternalIssues">true</value> | |
204 | <value type="int" key="Analyzer.Valgrind.NumCallers">25</value> |
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204 | <value type="int" key="Analyzer.Valgrind.NumCallers">25</value> | |
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206 | <value type="bool" key="Analyzer.Valgrind.TrackOrigins">true</value> | |
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207 | <value type="QString" key="Analyzer.Valgrind.ValgrindExecutable">valgrind</value> | |
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208 | <valuelist type="QVariantList" key="Analyzer.Valgrind.VisibleErrorKinds"> | |
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209 | <value type="int">0</value> | |
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210 | <value type="int">1</value> | |
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211 | <value type="int">2</value> | |
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213 | <value type="int">4</value> | |
214 | <value type="int">5</value> |
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214 | <value type="int">5</value> | |
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215 | <value type="int">6</value> | |
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216 | <value type="int">7</value> | |
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217 | <value type="int">8</value> | |
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218 | <value type="int">9</value> | |
219 | <value type="int">10</value> |
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219 | <value type="int">10</value> | |
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220 | <value type="int">11</value> | |
221 | <value type="int">12</value> |
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221 | <value type="int">12</value> | |
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222 | <value type="int">13</value> | |
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223 | <value type="int">14</value> | |
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249 | <value type="bool" key="Analyzer.Valgrind.Callgrind.EnableEventToolTips">true</value> | |
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251 | <value type="double" key="Analyzer.Valgrind.Callgrind.VisualisationMinimumCostRatio">10</value> |
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251 | <value type="double" key="Analyzer.Valgrind.Callgrind.VisualisationMinimumCostRatio">10</value> | |
252 | <value type="bool" key="Analyzer.Valgrind.FilterExternalIssues">true</value> |
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252 | <value type="bool" key="Analyzer.Valgrind.FilterExternalIssues">true</value> | |
253 | <value type="int" key="Analyzer.Valgrind.NumCallers">25</value> |
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253 | <value type="int" key="Analyzer.Valgrind.NumCallers">25</value> | |
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254 | <valuelist type="QVariantList" key="Analyzer.Valgrind.RemovedSuppressionFiles"/> | |
255 | <value type="bool" key="Analyzer.Valgrind.TrackOrigins">true</value> |
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272 | <value type="int">14</value> |
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275 | <valuelist type="QVariantList" key="PE.EnvironmentAspect.Changes"/> |
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276 | <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.Arguments"></value> |
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276 | <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.Arguments"></value> | |
277 | <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.Executable">doxygen</value> |
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277 | <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.Executable">doxygen</value> | |
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278 | <value type="bool" key="ProjectExplorer.CustomExecutableRunConfiguration.UseTerminal">true</value> | |
279 | <value type="QString" key="ProjectExplorer.CustomExecutableRunConfiguration.WorkingDirectory">/opt/DEV_PLE/doc</value> |
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280 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Run doxygen</value> |
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280 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DefaultDisplayName">Run doxygen</value> | |
281 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> |
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281 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.DisplayName"></value> | |
282 | <value type="QString" key="ProjectExplorer.ProjectConfiguration.Id">ProjectExplorer.CustomExecutableRunConfiguration</value> |
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283 | <value type="uint" key="RunConfiguration.QmlDebugServerPort">3768</value> |
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283 | <value type="uint" key="RunConfiguration.QmlDebugServerPort">3768</value> | |
284 | <value type="bool" key="RunConfiguration.UseCppDebugger">true</value> |
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284 | <value type="bool" key="RunConfiguration.UseCppDebugger">true</value> | |
285 | <value type="bool" key="RunConfiguration.UseCppDebuggerAuto">false</value> |
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285 | <value type="bool" key="RunConfiguration.UseCppDebuggerAuto">false</value> | |
286 | <value type="bool" key="RunConfiguration.UseMultiProcess">false</value> |
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286 | <value type="bool" key="RunConfiguration.UseMultiProcess">false</value> | |
287 | <value type="bool" key="RunConfiguration.UseQmlDebugger">false</value> |
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287 | <value type="bool" key="RunConfiguration.UseQmlDebugger">false</value> | |
288 | <value type="bool" key="RunConfiguration.UseQmlDebuggerAuto">true</value> |
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288 | <value type="bool" key="RunConfiguration.UseQmlDebuggerAuto">true</value> | |
289 | </valuemap> |
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289 | </valuemap> | |
290 | <value type="int" key="ProjectExplorer.Target.RunConfigurationCount">2</value> |
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290 | <value type="int" key="ProjectExplorer.Target.RunConfigurationCount">2</value> | |
291 | </valuemap> |
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291 | </valuemap> | |
292 | </data> |
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292 | </data> | |
293 | <data> |
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293 | <data> | |
294 | <variable>ProjectExplorer.Project.TargetCount</variable> |
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294 | <variable>ProjectExplorer.Project.TargetCount</variable> | |
295 | <value type="int">1</value> |
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295 | <value type="int">1</value> | |
296 | </data> |
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296 | </data> | |
297 | <data> |
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297 | <data> | |
298 | <variable>ProjectExplorer.Project.Updater.EnvironmentId</variable> |
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298 | <variable>ProjectExplorer.Project.Updater.EnvironmentId</variable> | |
299 | <value type="QByteArray">{2e58a81f-9962-4bba-ae6b-760177f0656c}</value> |
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299 | <value type="QByteArray">{2e58a81f-9962-4bba-ae6b-760177f0656c}</value> | |
300 | </data> |
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300 | </data> | |
301 | <data> |
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301 | <data> | |
302 | <variable>ProjectExplorer.Project.Updater.FileVersion</variable> |
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302 | <variable>ProjectExplorer.Project.Updater.FileVersion</variable> | |
303 | <value type="int">14</value> |
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303 | <value type="int">14</value> | |
304 | </data> |
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304 | </data> | |
305 | </qtcreator> |
|
305 | </qtcreator> |
@@ -1,211 +1,212 | |||||
1 | #ifndef FSW_PARAMS_H_INCLUDED |
|
1 | #ifndef FSW_PARAMS_H_INCLUDED | |
2 | #define FSW_PARAMS_H_INCLUDED |
|
2 | #define FSW_PARAMS_H_INCLUDED | |
3 |
|
3 | |||
4 | #include "grlib_regs.h" |
|
4 | #include "grlib_regs.h" | |
5 | #include "fsw_params_processing.h" |
|
5 | #include "fsw_params_processing.h" | |
6 | #include "tm_byte_positions.h" |
|
6 | #include "tm_byte_positions.h" | |
7 | #include "ccsds_types.h" |
|
7 | #include "ccsds_types.h" | |
8 |
|
8 | |||
9 | #define GRSPW_DEVICE_NAME "/dev/grspw0" |
|
9 | #define GRSPW_DEVICE_NAME "/dev/grspw0" | |
10 | #define UART_DEVICE_NAME "/dev/console" |
|
10 | #define UART_DEVICE_NAME "/dev/console" | |
11 |
|
11 | |||
12 | //************************ |
|
12 | //************************ | |
13 | // flight software version |
|
13 | // flight software version | |
14 | // this parameters is handled by the Qt project options |
|
14 | // this parameters is handled by the Qt project options | |
15 |
|
15 | |||
16 | //********** |
|
16 | //********** | |
17 | // LFR MODES |
|
17 | // LFR MODES | |
18 | #define LFR_MODE_STANDBY 0 |
|
18 | #define LFR_MODE_STANDBY 0 | |
19 | #define LFR_MODE_NORMAL 1 |
|
19 | #define LFR_MODE_NORMAL 1 | |
20 | #define LFR_MODE_BURST 2 |
|
20 | #define LFR_MODE_BURST 2 | |
21 | #define LFR_MODE_SBM1 3 |
|
21 | #define LFR_MODE_SBM1 3 | |
22 | #define LFR_MODE_SBM2 4 |
|
22 | #define LFR_MODE_SBM2 4 | |
23 | #define LFR_MODE_NORMAL_CWF_F3 5 |
|
23 | #define LFR_MODE_NORMAL_CWF_F3 5 | |
24 |
|
24 | |||
25 | #define RTEMS_EVENT_MODE_STANDBY RTEMS_EVENT_0 |
|
25 | #define RTEMS_EVENT_MODE_STANDBY RTEMS_EVENT_0 | |
26 | #define RTEMS_EVENT_MODE_NORMAL RTEMS_EVENT_1 |
|
26 | #define RTEMS_EVENT_MODE_NORMAL RTEMS_EVENT_1 | |
27 | #define RTEMS_EVENT_MODE_BURST RTEMS_EVENT_2 |
|
27 | #define RTEMS_EVENT_MODE_BURST RTEMS_EVENT_2 | |
28 | #define RTEMS_EVENT_MODE_SBM1 RTEMS_EVENT_3 |
|
28 | #define RTEMS_EVENT_MODE_SBM1 RTEMS_EVENT_3 | |
29 | #define RTEMS_EVENT_MODE_SBM2 RTEMS_EVENT_4 |
|
29 | #define RTEMS_EVENT_MODE_SBM2 RTEMS_EVENT_4 | |
30 | #define RTEMS_EVENT_MODE_SBM2_WFRM RTEMS_EVENT_5 |
|
30 | #define RTEMS_EVENT_MODE_SBM2_WFRM RTEMS_EVENT_5 | |
31 |
|
31 | |||
32 | //**************************** |
|
32 | //**************************** | |
33 | // LFR DEFAULT MODE PARAMETERS |
|
33 | // LFR DEFAULT MODE PARAMETERS | |
34 | // COMMON |
|
34 | // COMMON | |
35 | #define DEFAULT_SY_LFR_COMMON0 0x00 |
|
35 | #define DEFAULT_SY_LFR_COMMON0 0x00 | |
36 | #define DEFAULT_SY_LFR_COMMON1 0x10 // default value 0 0 0 1 0 0 0 0 |
|
36 | #define DEFAULT_SY_LFR_COMMON1 0x10 // default value 0 0 0 1 0 0 0 0 | |
37 | // NORM |
|
37 | // NORM | |
38 | #define SY_LFR_N_SWF_L 2048 // nb sample |
|
38 | #define SY_LFR_N_SWF_L 2048 // nb sample | |
39 | #define SY_LFR_N_SWF_P 296 // sec |
|
39 | #define SY_LFR_N_SWF_P 296 // sec | |
40 | #define SY_LFR_N_ASM_P 3600 // sec |
|
40 | #define SY_LFR_N_ASM_P 3600 // sec | |
41 | #define SY_LFR_N_BP_P0 4 // sec |
|
41 | #define SY_LFR_N_BP_P0 4 // sec | |
42 | #define SY_LFR_N_BP_P1 20 // sec |
|
42 | #define SY_LFR_N_BP_P1 20 // sec | |
43 | #define MIN_DELTA_SNAPSHOT 16 // sec |
|
43 | #define MIN_DELTA_SNAPSHOT 16 // sec | |
44 | // BURST |
|
44 | // BURST | |
45 | #define DEFAULT_SY_LFR_B_BP_P0 1 // sec |
|
45 | #define DEFAULT_SY_LFR_B_BP_P0 1 // sec | |
46 | #define DEFAULT_SY_LFR_B_BP_P1 5 // sec |
|
46 | #define DEFAULT_SY_LFR_B_BP_P1 5 // sec | |
47 | // SBM1 |
|
47 | // SBM1 | |
48 | #define DEFAULT_SY_LFR_S1_BP_P0 1 // sec |
|
48 | #define DEFAULT_SY_LFR_S1_BP_P0 1 // sec | |
49 | #define DEFAULT_SY_LFR_S1_BP_P1 1 // sec |
|
49 | #define DEFAULT_SY_LFR_S1_BP_P1 1 // sec | |
50 | // SBM2 |
|
50 | // SBM2 | |
51 | #define DEFAULT_SY_LFR_S2_BP_P0 1 // sec |
|
51 | #define DEFAULT_SY_LFR_S2_BP_P0 1 // sec | |
52 | #define DEFAULT_SY_LFR_S2_BP_P1 5 // sec |
|
52 | #define DEFAULT_SY_LFR_S2_BP_P1 5 // sec | |
53 | // ADDITIONAL PARAMETERS |
|
53 | // ADDITIONAL PARAMETERS | |
54 | #define TIME_BETWEEN_TWO_SWF_PACKETS 30 // nb x 10 ms => 300 ms |
|
54 | #define TIME_BETWEEN_TWO_SWF_PACKETS 30 // nb x 10 ms => 300 ms | |
55 | #define TIME_BETWEEN_TWO_CWF3_PACKETS 1000 // nb x 10 ms => 10 s |
|
55 | #define TIME_BETWEEN_TWO_CWF3_PACKETS 1000 // nb x 10 ms => 10 s | |
56 | // STATUS WORD |
|
56 | // STATUS WORD | |
57 | #define DEFAULT_STATUS_WORD_BYTE0 0x0d // [0000] [1] [101] mode 4 bits / SPW enabled 1 bit / state is run 3 bits |
|
57 | #define DEFAULT_STATUS_WORD_BYTE0 0x0d // [0000] [1] [101] mode 4 bits / SPW enabled 1 bit / state is run 3 bits | |
58 | #define DEFAULT_STATUS_WORD_BYTE1 0x00 |
|
58 | #define DEFAULT_STATUS_WORD_BYTE1 0x00 | |
59 | // |
|
59 | // | |
60 | #define SY_LFR_DPU_CONNECT_TIMEOUT 100 // 100 * 10 ms = 1 s |
|
60 | #define SY_LFR_DPU_CONNECT_TIMEOUT 100 // 100 * 10 ms = 1 s | |
61 | #define SY_LFR_DPU_CONNECT_ATTEMPT 3 |
|
61 | #define SY_LFR_DPU_CONNECT_ATTEMPT 3 | |
62 | //**************************** |
|
62 | //**************************** | |
63 |
|
63 | |||
64 | //***************************** |
|
64 | //***************************** | |
65 | // APB REGISTERS BASE ADDRESSES |
|
65 | // APB REGISTERS BASE ADDRESSES | |
66 | #define REGS_ADDR_APBUART 0x80000100 |
|
66 | #define REGS_ADDR_APBUART 0x80000100 | |
67 | #define REGS_ADDR_GPTIMER 0x80000300 |
|
67 | #define REGS_ADDR_GPTIMER 0x80000300 | |
68 | #define REGS_ADDR_GRSPW 0x80000500 |
|
68 | #define REGS_ADDR_GRSPW 0x80000500 | |
69 | #define REGS_ADDR_TIME_MANAGEMENT 0x80000600 |
|
69 | #define REGS_ADDR_TIME_MANAGEMENT 0x80000600 | |
70 | #define REGS_ADDR_SPECTRAL_MATRIX 0x80000f00 |
|
70 | #define REGS_ADDR_SPECTRAL_MATRIX 0x80000f00 | |
71 |
|
71 | |||
72 | #ifdef GSA |
|
72 | #ifdef GSA | |
73 | #else |
|
73 | #else | |
74 | #define REGS_ADDR_WAVEFORM_PICKER 0x80000f20 |
|
74 | #define REGS_ADDR_WAVEFORM_PICKER 0x80000f20 | |
75 | #endif |
|
75 | #endif | |
76 |
|
76 | |||
77 | #define APBUART_CTRL_REG_MASK_DB 0xfffff7ff |
|
77 | #define APBUART_CTRL_REG_MASK_DB 0xfffff7ff | |
78 | #define APBUART_SCALER_RELOAD_VALUE 0x00000050 // 25 MHz => about 38400 (0x50) |
|
78 | #define APBUART_SCALER_RELOAD_VALUE 0x00000050 // 25 MHz => about 38400 (0x50) | |
79 |
|
79 | |||
80 | //********** |
|
80 | //********** | |
81 | // IRQ LINES |
|
81 | // IRQ LINES | |
82 | #define IRQ_SM 9 |
|
82 | #define IRQ_SM 9 | |
83 | #define IRQ_SPARC_SM 0x19 // see sparcv8.pdf p.76 for interrupt levels |
|
83 | #define IRQ_SPARC_SM 0x19 // see sparcv8.pdf p.76 for interrupt levels | |
84 | #define IRQ_WF 10 |
|
84 | #define IRQ_WF 10 | |
85 | #define IRQ_SPARC_WF 0x1a // see sparcv8.pdf p.76 for interrupt levels |
|
85 | #define IRQ_SPARC_WF 0x1a // see sparcv8.pdf p.76 for interrupt levels | |
86 | #define IRQ_TIME1 12 |
|
86 | #define IRQ_TIME1 12 | |
87 | #define IRQ_SPARC_TIME1 0x1c // see sparcv8.pdf p.76 for interrupt levels |
|
87 | #define IRQ_SPARC_TIME1 0x1c // see sparcv8.pdf p.76 for interrupt levels | |
88 | #define IRQ_TIME2 13 |
|
88 | #define IRQ_TIME2 13 | |
89 | #define IRQ_SPARC_TIME2 0x1d // see sparcv8.pdf p.76 for interrupt levels |
|
89 | #define IRQ_SPARC_TIME2 0x1d // see sparcv8.pdf p.76 for interrupt levels | |
90 | #define IRQ_WAVEFORM_PICKER 14 |
|
90 | #define IRQ_WAVEFORM_PICKER 14 | |
91 | #define IRQ_SPARC_WAVEFORM_PICKER 0x1e // see sparcv8.pdf p.76 for interrupt levels |
|
91 | #define IRQ_SPARC_WAVEFORM_PICKER 0x1e // see sparcv8.pdf p.76 for interrupt levels | |
92 | #define IRQ_SPECTRAL_MATRIX 6 |
|
92 | #define IRQ_SPECTRAL_MATRIX 6 | |
93 | #define IRQ_SPARC_SPECTRAL_MATRIX 0x16 // see sparcv8.pdf p.76 for interrupt levels |
|
93 | #define IRQ_SPARC_SPECTRAL_MATRIX 0x16 // see sparcv8.pdf p.76 for interrupt levels | |
94 |
|
94 | |||
95 | //***** |
|
95 | //***** | |
96 | // TIME |
|
96 | // TIME | |
97 | #define CLKDIV_SM_SIMULATOR (10000 - 1) // 10 ms |
|
97 | #define CLKDIV_SM_SIMULATOR (10000 - 1) // 10 ms | |
98 | #define CLKDIV_WF_SIMULATOR (10000000 - 1) // 10 000 000 * 1 us = 10 s |
|
98 | #define CLKDIV_WF_SIMULATOR (10000000 - 1) // 10 000 000 * 1 us = 10 s | |
99 | #define TIMER_SM_SIMULATOR 1 |
|
99 | #define TIMER_SM_SIMULATOR 1 | |
100 | #define TIMER_WF_SIMULATOR 2 |
|
100 | #define TIMER_WF_SIMULATOR 2 | |
101 | #define HK_PERIOD 100 // 100 * 10ms => 1sec |
|
101 | #define HK_PERIOD 100 // 100 * 10ms => 1sec | |
102 |
|
102 | |||
103 | //********** |
|
103 | //********** | |
104 | // LPP CODES |
|
104 | // LPP CODES | |
105 | #define LFR_SUCCESSFUL 0 |
|
105 | #define LFR_SUCCESSFUL 0 | |
106 | #define LFR_DEFAULT 1 |
|
106 | #define LFR_DEFAULT 1 | |
107 |
|
107 | |||
108 | //****** |
|
108 | //****** | |
109 | // RTEMS |
|
109 | // RTEMS | |
110 | #define TASKID_RECV 1 |
|
110 | #define TASKID_RECV 1 | |
111 | #define TASKID_ACTN 2 |
|
111 | #define TASKID_ACTN 2 | |
112 | #define TASKID_SPIQ 3 |
|
112 | #define TASKID_SPIQ 3 | |
113 | #define TASKID_SMIQ 4 |
|
113 | #define TASKID_SMIQ 4 | |
114 | #define TASKID_STAT 5 |
|
114 | #define TASKID_STAT 5 | |
115 | #define TASKID_AVF0 6 |
|
115 | #define TASKID_AVF0 6 | |
116 | #define TASKID_BPF0 7 |
|
116 | #define TASKID_BPF0 7 | |
117 | #define TASKID_WFRM 8 |
|
117 | #define TASKID_WFRM 8 | |
118 | #define TASKID_DUMB 9 |
|
118 | #define TASKID_DUMB 9 | |
119 | #define TASKID_HOUS 10 |
|
119 | #define TASKID_HOUS 10 | |
120 | #define TASKID_MATR 11 |
|
120 | #define TASKID_MATR 11 | |
121 | #define TASKID_CWF3 12 |
|
121 | #define TASKID_CWF3 12 | |
122 | #define TASKID_CWF2 13 |
|
122 | #define TASKID_CWF2 13 | |
123 | #define TASKID_CWF1 14 |
|
123 | #define TASKID_CWF1 14 | |
124 | #define TASKID_SEND 15 |
|
124 | #define TASKID_SEND 15 | |
125 | #define TASKID_WTDG 16 |
|
125 | #define TASKID_WTDG 16 | |
126 |
|
126 | |||
127 | #define TASK_PRIORITY_SPIQ 5 |
|
127 | #define TASK_PRIORITY_SPIQ 5 | |
128 | #define TASK_PRIORITY_SMIQ 10 |
|
128 | #define TASK_PRIORITY_SMIQ 10 | |
129 | // |
|
129 | // | |
130 | #define TASK_PRIORITY_WTDG 20 |
|
130 | #define TASK_PRIORITY_WTDG 20 | |
131 | // |
|
131 | // | |
132 | #define TASK_PRIORITY_HOUS 30 |
|
132 | #define TASK_PRIORITY_HOUS 30 | |
133 | // |
|
133 | // | |
134 | #define TASK_PRIORITY_CWF1 35 // CWF1 and CWF2 are never running together |
|
134 | #define TASK_PRIORITY_CWF1 35 // CWF1 and CWF2 are never running together | |
135 | #define TASK_PRIORITY_CWF2 35 // |
|
135 | #define TASK_PRIORITY_CWF2 35 // | |
136 | // |
|
136 | // | |
137 | #define TASK_PRIORITY_WFRM 40 |
|
137 | #define TASK_PRIORITY_WFRM 40 | |
138 | #define TASK_PRIORITY_CWF3 40 // there is a printf in this function, be careful with its priority wrt CWF1 |
|
138 | #define TASK_PRIORITY_CWF3 40 // there is a printf in this function, be careful with its priority wrt CWF1 | |
139 | // |
|
139 | // | |
140 | #define TASK_PRIORITY_SEND 45 |
|
140 | #define TASK_PRIORITY_SEND 45 | |
141 | // |
|
141 | // | |
142 | #define TASK_PRIORITY_RECV 50 |
|
142 | #define TASK_PRIORITY_RECV 50 | |
143 | #define TASK_PRIORITY_ACTN 50 |
|
143 | #define TASK_PRIORITY_ACTN 50 | |
144 | // |
|
144 | // | |
145 | #define TASK_PRIORITY_AVF0 60 |
|
145 | #define TASK_PRIORITY_AVF0 60 | |
146 | #define TASK_PRIORITY_BPF0 60 |
|
146 | #define TASK_PRIORITY_BPF0 60 | |
147 | #define TASK_PRIORITY_MATR 100 |
|
147 | #define TASK_PRIORITY_MATR 100 | |
148 | #define TASK_PRIORITY_STAT 200 |
|
148 | #define TASK_PRIORITY_STAT 200 | |
149 | #define TASK_PRIORITY_DUMB 200 |
|
149 | #define TASK_PRIORITY_DUMB 200 | |
150 |
|
150 | |||
151 | #define SEMQ_PRIORITY_CEILING 30 |
|
151 | #define SEMQ_PRIORITY_CEILING 30 | |
152 |
|
152 | |||
153 | #define ACTION_MSG_QUEUE_COUNT 10 |
|
153 | #define ACTION_MSG_QUEUE_COUNT 10 | |
154 | #define ACTION_MSG_PKTS_COUNT 50 |
|
154 | #define ACTION_MSG_PKTS_COUNT 50 | |
155 | #define ACTION_MSG_PKTS_MAX_SIZE (PACKET_LENGTH_HK + CCSDS_TC_TM_PACKET_OFFSET + CCSDS_PROTOCOLE_EXTRA_BYTES) |
|
155 | #define ACTION_MSG_PKTS_MAX_SIZE (PACKET_LENGTH_HK + CCSDS_TC_TM_PACKET_OFFSET + CCSDS_PROTOCOLE_EXTRA_BYTES) | |
156 | #define ACTION_MSG_SPW_IOCTL_SEND_SIZE 24 // hlen *hdr dlen *data sent options |
|
156 | #define ACTION_MSG_SPW_IOCTL_SEND_SIZE 24 // hlen *hdr dlen *data sent options | |
157 |
|
157 | |||
158 | #define QUEUE_RECV 0 |
|
158 | #define QUEUE_RECV 0 | |
159 | #define QUEUE_SEND 1 |
|
159 | #define QUEUE_SEND 1 | |
160 |
|
160 | |||
161 | //******* |
|
161 | //******* | |
162 | // MACROS |
|
162 | // MACROS | |
163 | #ifdef PRINT_MESSAGES_ON_CONSOLE |
|
163 | #ifdef PRINT_MESSAGES_ON_CONSOLE | |
164 | #define PRINTF(x) printf(x); |
|
164 | #define PRINTF(x) printf(x); | |
165 | #define PRINTF1(x,y) printf(x,y); |
|
165 | #define PRINTF1(x,y) printf(x,y); | |
166 | #define PRINTF2(x,y,z) printf(x,y,z); |
|
166 | #define PRINTF2(x,y,z) printf(x,y,z); | |
167 | #else |
|
167 | #else | |
168 | #define PRINTF(x) ; |
|
168 | #define PRINTF(x) ; | |
169 | #define PRINTF1(x,y) ; |
|
169 | #define PRINTF1(x,y) ; | |
170 | #define PRINTF2(x,y,z) ; |
|
170 | #define PRINTF2(x,y,z) ; | |
171 | #endif |
|
171 | #endif | |
172 |
|
172 | |||
173 | #ifdef BOOT_MESSAGES |
|
173 | #ifdef BOOT_MESSAGES | |
174 | #define BOOT_PRINTF(x) printf(x); |
|
174 | #define BOOT_PRINTF(x) printf(x); | |
175 | #define BOOT_PRINTF1(x,y) printf(x,y); |
|
175 | #define BOOT_PRINTF1(x,y) printf(x,y); | |
176 | #define BOOT_PRINTF2(x,y,z) printf(x,y,z); |
|
176 | #define BOOT_PRINTF2(x,y,z) printf(x,y,z); | |
177 | #else |
|
177 | #else | |
178 | #define BOOT_PRINTF(x) ; |
|
178 | #define BOOT_PRINTF(x) ; | |
179 | #define BOOT_PRINTF1(x,y) ; |
|
179 | #define BOOT_PRINTF1(x,y) ; | |
180 | #define BOOT_PRINTF2(x,y,z) ; |
|
180 | #define BOOT_PRINTF2(x,y,z) ; | |
181 | #endif |
|
181 | #endif | |
182 |
|
182 | |||
183 | #ifdef DEBUG_MESSAGES |
|
183 | #ifdef DEBUG_MESSAGES | |
184 | #define DEBUG_PRINTF(x) printf(x); |
|
184 | #define DEBUG_PRINTF(x) printf(x); | |
185 | #define DEBUG_PRINTF1(x,y) printf(x,y); |
|
185 | #define DEBUG_PRINTF1(x,y) printf(x,y); | |
186 | #define DEBUG_PRINTF2(x,y,z) printf(x,y,z); |
|
186 | #define DEBUG_PRINTF2(x,y,z) printf(x,y,z); | |
187 | #else |
|
187 | #else | |
188 | #define DEBUG_PRINTF(x) ; |
|
188 | #define DEBUG_PRINTF(x) ; | |
189 | #define DEBUG_PRINTF1(x,y) ; |
|
189 | #define DEBUG_PRINTF1(x,y) ; | |
190 | #define DEBUG_PRINTF2(x,y,z) ; |
|
190 | #define DEBUG_PRINTF2(x,y,z) ; | |
191 | #endif |
|
191 | #endif | |
192 |
|
192 | |||
193 | #define CPU_USAGE_REPORT_PERIOD 6 // * 10 s = period |
|
193 | #define CPU_USAGE_REPORT_PERIOD 6 // * 10 s = period | |
194 |
|
194 | |||
195 | #define NB_SAMPLES_PER_SNAPSHOT 2048 |
|
195 | #define NB_SAMPLES_PER_SNAPSHOT 2048 | |
196 | #define TIME_OFFSET 2 |
|
196 | #define TIME_OFFSET 2 | |
|
197 | #define ALIGNEMENT_OFFSET 100 | |||
197 | #define WAVEFORM_EXTENDED_HEADER_OFFSET 22 |
|
198 | #define WAVEFORM_EXTENDED_HEADER_OFFSET 22 | |
198 | #define NB_BYTES_SWF_BLK (2 * 6) |
|
199 | #define NB_BYTES_SWF_BLK (2 * 6) | |
199 | #define NB_WORDS_SWF_BLK 3 |
|
200 | #define NB_WORDS_SWF_BLK 3 | |
200 | #define NB_BYTES_CWF3_LIGHT_BLK 6 |
|
201 | #define NB_BYTES_CWF3_LIGHT_BLK 6 | |
201 | #define WFRM_INDEX_OF_LAST_PACKET 6 // waveforms are transmitted in groups of 2048 blocks, 6 packets of 340 and 1 of 8 |
|
202 | #define WFRM_INDEX_OF_LAST_PACKET 6 // waveforms are transmitted in groups of 2048 blocks, 6 packets of 340 and 1 of 8 | |
202 |
|
203 | |||
203 | struct param_local_str{ |
|
204 | struct param_local_str{ | |
204 | unsigned int local_sbm1_nb_cwf_sent; |
|
205 | unsigned int local_sbm1_nb_cwf_sent; | |
205 | unsigned int local_sbm1_nb_cwf_max; |
|
206 | unsigned int local_sbm1_nb_cwf_max; | |
206 | unsigned int local_sbm2_nb_cwf_sent; |
|
207 | unsigned int local_sbm2_nb_cwf_sent; | |
207 | unsigned int local_sbm2_nb_cwf_max; |
|
208 | unsigned int local_sbm2_nb_cwf_max; | |
208 | unsigned int local_nb_interrupt_f0_MAX; |
|
209 | unsigned int local_nb_interrupt_f0_MAX; | |
209 | }; |
|
210 | }; | |
210 |
|
211 | |||
211 | #endif // FSW_PARAMS_H_INCLUDED |
|
212 | #endif // FSW_PARAMS_H_INCLUDED |
@@ -1,86 +1,87 | |||||
1 | #ifndef WF_HANDLER_H_INCLUDED |
|
1 | #ifndef WF_HANDLER_H_INCLUDED | |
2 | #define WF_HANDLER_H_INCLUDED |
|
2 | #define WF_HANDLER_H_INCLUDED | |
3 |
|
3 | |||
4 | #include <rtems.h> |
|
4 | #include <rtems.h> | |
5 | #include <grspw.h> |
|
5 | #include <grspw.h> | |
6 | #include <stdio.h> |
|
6 | #include <stdio.h> | |
7 | #include <math.h> |
|
7 | #include <math.h> | |
8 |
|
8 | |||
9 | #include "fsw_params.h" |
|
9 | #include "fsw_params.h" | |
10 |
|
10 | |||
11 | #define pi 3.1415 |
|
11 | #define pi 3.1415 | |
12 |
|
12 | |||
13 | extern int fdSPW; |
|
13 | extern int fdSPW; | |
14 | extern volatile int wf_snap_f0[ ]; |
|
14 | extern volatile int wf_snap_f0[ ]; | |
15 | // |
|
15 | // | |
16 | extern volatile int wf_snap_f1[ ]; |
|
16 | extern volatile int wf_snap_f1[ ]; | |
17 | extern volatile int wf_snap_f1_bis[ ]; |
|
17 | extern volatile int wf_snap_f1_bis[ ]; | |
18 | extern volatile int wf_snap_f1_norm[ ]; |
|
18 | extern volatile int wf_snap_f1_norm[ ]; | |
19 | // |
|
19 | // | |
20 | extern volatile int wf_snap_f2[ ]; |
|
20 | extern volatile int wf_snap_f2[ ]; | |
21 | extern volatile int wf_snap_f2_bis[ ]; |
|
21 | extern volatile int wf_snap_f2_bis[ ]; | |
22 | extern volatile int wf_snap_f2_norm[ ]; |
|
22 | extern volatile int wf_snap_f2_norm[ ]; | |
23 | // |
|
23 | // | |
24 | extern volatile int wf_cont_f3[ ]; |
|
24 | extern volatile int wf_cont_f3[ ]; | |
25 | extern volatile int wf_cont_f3_bis[ ]; |
|
25 | extern volatile int wf_cont_f3_bis[ ]; | |
26 | extern char wf_cont_f3_light[ ]; |
|
26 | extern char wf_cont_f3_light[ ]; | |
27 | extern new_waveform_picker_regs_t *new_waveform_picker_regs; |
|
27 | extern new_waveform_picker_regs_t *new_waveform_picker_regs; | |
28 | extern time_management_regs_t *time_management_regs; |
|
28 | extern time_management_regs_t *time_management_regs; | |
29 | extern Packet_TM_LFR_HK_t housekeeping_packet; |
|
29 | extern Packet_TM_LFR_HK_t housekeeping_packet; | |
30 | extern Packet_TM_LFR_PARAMETER_DUMP_t parameter_dump_packet; |
|
30 | extern Packet_TM_LFR_PARAMETER_DUMP_t parameter_dump_packet; | |
31 | extern struct param_local_str param_local; |
|
31 | extern struct param_local_str param_local; | |
32 |
|
32 | |||
33 | extern unsigned short sequenceCounters_SCIENCE_NORMAL_BURST; |
|
33 | extern unsigned short sequenceCounters_SCIENCE_NORMAL_BURST; | |
34 | extern unsigned short sequenceCounters_SCIENCE_SBM1_SBM2; |
|
34 | extern unsigned short sequenceCounters_SCIENCE_SBM1_SBM2; | |
35 | extern unsigned short sequenceCounters_TC_EXE[]; |
|
35 | extern unsigned short sequenceCounters_TC_EXE[]; | |
36 |
|
36 | |||
37 | extern rtems_name misc_name[5]; |
|
37 | extern rtems_name misc_name[5]; | |
38 | extern rtems_name Task_name[20]; /* array of task ids */ |
|
38 | extern rtems_name Task_name[20]; /* array of task ids */ | |
39 | extern rtems_id Task_id[20]; /* array of task ids */ |
|
39 | extern rtems_id Task_id[20]; /* array of task ids */ | |
40 |
|
40 | |||
41 | extern unsigned char lfrCurrentMode; |
|
41 | extern unsigned char lfrCurrentMode; | |
42 |
|
42 | |||
43 | rtems_isr waveforms_isr( rtems_vector_number vector ); |
|
43 | rtems_isr waveforms_isr( rtems_vector_number vector ); | |
44 | rtems_isr waveforms_simulator_isr( rtems_vector_number vector ); |
|
44 | rtems_isr waveforms_simulator_isr( rtems_vector_number vector ); | |
45 | rtems_task wfrm_task( rtems_task_argument argument ); |
|
45 | rtems_task wfrm_task( rtems_task_argument argument ); | |
46 | rtems_task cwf3_task( rtems_task_argument argument ); |
|
46 | rtems_task cwf3_task( rtems_task_argument argument ); | |
47 | rtems_task cwf2_task( rtems_task_argument argument ); |
|
47 | rtems_task cwf2_task( rtems_task_argument argument ); | |
48 | rtems_task cwf1_task( rtems_task_argument argument ); |
|
48 | rtems_task cwf1_task( rtems_task_argument argument ); | |
49 |
|
49 | |||
50 | //****************** |
|
50 | //****************** | |
51 | // general functions |
|
51 | // general functions | |
52 | void init_waveforms( void ); |
|
52 | void init_waveforms( void ); | |
53 | // |
|
53 | // | |
54 | int init_header_snapshot_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_SWF_t *headerSWF ); |
|
54 | int init_header_snapshot_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_SWF_t *headerSWF ); | |
55 | int init_header_continuous_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF ); |
|
55 | int init_header_continuous_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF ); | |
56 | int init_header_continuous_wf3_light_table( Header_TM_LFR_SCIENCE_CWF_t *headerCWF ); |
|
56 | int init_header_continuous_wf3_light_table( Header_TM_LFR_SCIENCE_CWF_t *headerCWF ); | |
57 | // |
|
57 | // | |
58 | void reset_waveforms( void ); |
|
58 | void reset_waveforms( void ); | |
59 | // |
|
59 | // | |
60 | int send_waveform_SWF( volatile int *waveform, unsigned int sid, Header_TM_LFR_SCIENCE_SWF_t *headerSWF, rtems_id queue_id ); |
|
60 | int send_waveform_SWF( volatile int *waveform, unsigned int sid, Header_TM_LFR_SCIENCE_SWF_t *headerSWF, rtems_id queue_id ); | |
61 | int send_waveform_CWF( volatile int *waveform, unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id ); |
|
61 | int send_waveform_CWF( volatile int *waveform, unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id ); | |
62 | int send_waveform_CWF3( volatile int *waveform, unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id ); |
|
62 | int send_waveform_CWF3( volatile int *waveform, unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id ); | |
63 | int send_waveform_CWF3_light( volatile int *waveform, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id ); |
|
63 | int send_waveform_CWF3_light( volatile int *waveform, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id ); | |
64 | // |
|
64 | // | |
65 | rtems_id get_pkts_queue_id( void ); |
|
65 | rtems_id get_pkts_queue_id( void ); | |
66 |
|
66 | |||
67 | //************** |
|
67 | //************** | |
68 | // wfp registers |
|
68 | // wfp registers | |
69 | void set_wfp_data_shaping(); |
|
69 | void set_wfp_data_shaping(); | |
70 | char set_wfp_delta_snapshot(); |
|
70 | char set_wfp_delta_snapshot(); | |
71 | void set_wfp_burst_enable_register( unsigned char mode); |
|
71 | void set_wfp_burst_enable_register( unsigned char mode); | |
72 | void reset_wfp_run_burst_enable(); |
|
72 | void reset_wfp_run_burst_enable(); | |
73 | void reset_wfp_status(); |
|
73 | void reset_wfp_status(); | |
74 | void reset_new_waveform_picker_regs(); |
|
74 | void reset_new_waveform_picker_regs(); | |
|
75 | unsigned int address_alignment( volatile int *address); | |||
75 |
|
76 | |||
76 | //***************** |
|
77 | //***************** | |
77 | // local parameters |
|
78 | // local parameters | |
78 | void set_local_sbm1_nb_cwf_max(); |
|
79 | void set_local_sbm1_nb_cwf_max(); | |
79 | void set_local_sbm2_nb_cwf_max(); |
|
80 | void set_local_sbm2_nb_cwf_max(); | |
80 | void set_local_nb_interrupt_f0_MAX(); |
|
81 | void set_local_nb_interrupt_f0_MAX(); | |
81 | void reset_local_sbm1_nb_cwf_sent(); |
|
82 | void reset_local_sbm1_nb_cwf_sent(); | |
82 | void reset_local_sbm2_nb_cwf_sent(); |
|
83 | void reset_local_sbm2_nb_cwf_sent(); | |
83 |
|
84 | |||
84 | void increment_seq_counter_source_id( unsigned char *packet_sequence_control, unsigned int sid ); |
|
85 | void increment_seq_counter_source_id( unsigned char *packet_sequence_control, unsigned int sid ); | |
85 |
|
86 | |||
86 | #endif // WF_HANDLER_H_INCLUDED |
|
87 | #endif // WF_HANDLER_H_INCLUDED |
@@ -1,91 +1,91 | |||||
1 | /** Global variables of the LFR flight software. |
|
1 | /** Global variables of the LFR flight software. | |
2 | * |
|
2 | * | |
3 | * @file |
|
3 | * @file | |
4 | * @author P. LEROY |
|
4 | * @author P. LEROY | |
5 | * |
|
5 | * | |
6 | * Among global variables, there are: |
|
6 | * Among global variables, there are: | |
7 | * - RTEMS names and id. |
|
7 | * - RTEMS names and id. | |
8 | * - APB configuration registers. |
|
8 | * - APB configuration registers. | |
9 | * - waveforms global buffers, used by the waveform picker hardware module to store data. |
|
9 | * - waveforms global buffers, used by the waveform picker hardware module to store data. | |
10 | * - spectral matrices buffesr, used by the hardware module to store data. |
|
10 | * - spectral matrices buffesr, used by the hardware module to store data. | |
11 | * - variable related to LFR modes parameters. |
|
11 | * - variable related to LFR modes parameters. | |
12 | * - the global HK packet buffer. |
|
12 | * - the global HK packet buffer. | |
13 | * - the global dump parameter buffer. |
|
13 | * - the global dump parameter buffer. | |
14 | * |
|
14 | * | |
15 | */ |
|
15 | */ | |
16 |
|
16 | |||
17 | #include <rtems.h> |
|
17 | #include <rtems.h> | |
18 | #include <grspw.h> |
|
18 | #include <grspw.h> | |
19 |
|
19 | |||
20 | #include "ccsds_types.h" |
|
20 | #include "ccsds_types.h" | |
21 | #include "grlib_regs.h" |
|
21 | #include "grlib_regs.h" | |
22 | #include "fsw_params.h" |
|
22 | #include "fsw_params.h" | |
23 |
|
23 | |||
24 | // RTEMS GLOBAL VARIABLES |
|
24 | // RTEMS GLOBAL VARIABLES | |
25 | rtems_name misc_name[5]; |
|
25 | rtems_name misc_name[5]; | |
26 | rtems_id misc_id[5]; |
|
26 | rtems_id misc_id[5]; | |
27 | rtems_name Task_name[20]; /* array of task names */ |
|
27 | rtems_name Task_name[20]; /* array of task names */ | |
28 | rtems_id Task_id[20]; /* array of task ids */ |
|
28 | rtems_id Task_id[20]; /* array of task ids */ | |
29 | unsigned int maxCount; |
|
29 | unsigned int maxCount; | |
30 | int fdSPW = 0; |
|
30 | int fdSPW = 0; | |
31 | int fdUART = 0; |
|
31 | int fdUART = 0; | |
32 | unsigned char lfrCurrentMode; |
|
32 | unsigned char lfrCurrentMode; | |
33 |
|
33 | |||
34 | // APB CONFIGURATION REGISTERS |
|
34 | // APB CONFIGURATION REGISTERS | |
35 | time_management_regs_t *time_management_regs = (time_management_regs_t*) REGS_ADDR_TIME_MANAGEMENT; |
|
35 | time_management_regs_t *time_management_regs = (time_management_regs_t*) REGS_ADDR_TIME_MANAGEMENT; | |
36 | gptimer_regs_t *gptimer_regs = (gptimer_regs_t *) REGS_ADDR_GPTIMER; |
|
36 | gptimer_regs_t *gptimer_regs = (gptimer_regs_t *) REGS_ADDR_GPTIMER; | |
37 | #ifdef GSA |
|
37 | #ifdef GSA | |
38 | #else |
|
38 | #else | |
39 | new_waveform_picker_regs_t *new_waveform_picker_regs = (new_waveform_picker_regs_t*) REGS_ADDR_WAVEFORM_PICKER; |
|
39 | new_waveform_picker_regs_t *new_waveform_picker_regs = (new_waveform_picker_regs_t*) REGS_ADDR_WAVEFORM_PICKER; | |
40 | #endif |
|
40 | #endif | |
41 | spectral_matrix_regs_t *spectral_matrix_regs = (spectral_matrix_regs_t*) REGS_ADDR_SPECTRAL_MATRIX; |
|
41 | spectral_matrix_regs_t *spectral_matrix_regs = (spectral_matrix_regs_t*) REGS_ADDR_SPECTRAL_MATRIX; | |
42 |
|
42 | |||
43 | // WAVEFORMS GLOBAL VARIABLES // 2048 * 3 * 4 + 2 * 4 = 24576 + 8 bytes |
|
43 | // WAVEFORMS GLOBAL VARIABLES // 2048 * 3 * 4 + 2 * 4 = 24576 + 8 bytes | |
44 | volatile int wf_snap_f0[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
44 | volatile int wf_snap_f0[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
45 | // |
|
45 | // | |
46 | volatile int wf_snap_f1[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
46 | volatile int wf_snap_f1[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
47 | volatile int wf_snap_f1_bis[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
47 | volatile int wf_snap_f1_bis[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
48 | volatile int wf_snap_f1_norm[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
48 | volatile int wf_snap_f1_norm[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
49 | // |
|
49 | // | |
50 | volatile int wf_snap_f2[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
50 | volatile int wf_snap_f2[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
51 | volatile int wf_snap_f2_bis[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
51 | volatile int wf_snap_f2_bis[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
52 | volatile int wf_snap_f2_norm[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
52 | volatile int wf_snap_f2_norm[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
53 | // |
|
53 | // | |
54 | volatile int wf_cont_f3[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
54 | volatile int wf_cont_f3[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
55 | volatile int wf_cont_f3_bis[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET ]; |
|
55 | volatile int wf_cont_f3_bis[ NB_SAMPLES_PER_SNAPSHOT * NB_WORDS_SWF_BLK + TIME_OFFSET + ALIGNEMENT_OFFSET ]; | |
56 | char wf_cont_f3_light[ NB_SAMPLES_PER_SNAPSHOT * NB_BYTES_CWF3_LIGHT_BLK ]; |
|
56 | char wf_cont_f3_light[ NB_SAMPLES_PER_SNAPSHOT * NB_BYTES_CWF3_LIGHT_BLK + ALIGNEMENT_OFFSET ]; | |
57 |
|
57 | |||
58 | // SPECTRAL MATRICES GLOBAL VARIABLES |
|
58 | // SPECTRAL MATRICES GLOBAL VARIABLES | |
59 | volatile int spec_mat_f0_0[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
59 | volatile int spec_mat_f0_0[ SM_HEADER + TOTAL_SIZE_SM ]; | |
60 | volatile int spec_mat_f0_1[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
60 | volatile int spec_mat_f0_1[ SM_HEADER + TOTAL_SIZE_SM ]; | |
61 | volatile int spec_mat_f0_a[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
61 | volatile int spec_mat_f0_a[ SM_HEADER + TOTAL_SIZE_SM ]; | |
62 | volatile int spec_mat_f0_b[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
62 | volatile int spec_mat_f0_b[ SM_HEADER + TOTAL_SIZE_SM ]; | |
63 | volatile int spec_mat_f0_c[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
63 | volatile int spec_mat_f0_c[ SM_HEADER + TOTAL_SIZE_SM ]; | |
64 | volatile int spec_mat_f0_d[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
64 | volatile int spec_mat_f0_d[ SM_HEADER + TOTAL_SIZE_SM ]; | |
65 | volatile int spec_mat_f0_e[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
65 | volatile int spec_mat_f0_e[ SM_HEADER + TOTAL_SIZE_SM ]; | |
66 | volatile int spec_mat_f0_f[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
66 | volatile int spec_mat_f0_f[ SM_HEADER + TOTAL_SIZE_SM ]; | |
67 | volatile int spec_mat_f0_g[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
67 | volatile int spec_mat_f0_g[ SM_HEADER + TOTAL_SIZE_SM ]; | |
68 | volatile int spec_mat_f0_h[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
68 | volatile int spec_mat_f0_h[ SM_HEADER + TOTAL_SIZE_SM ]; | |
69 | volatile int spec_mat_f0_0_bis[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
69 | volatile int spec_mat_f0_0_bis[ SM_HEADER + TOTAL_SIZE_SM ]; | |
70 | volatile int spec_mat_f0_1_bis[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
70 | volatile int spec_mat_f0_1_bis[ SM_HEADER + TOTAL_SIZE_SM ]; | |
71 | // |
|
71 | // | |
72 | volatile int spec_mat_f1[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
72 | volatile int spec_mat_f1[ SM_HEADER + TOTAL_SIZE_SM ]; | |
73 | volatile int spec_mat_f1_bis[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
73 | volatile int spec_mat_f1_bis[ SM_HEADER + TOTAL_SIZE_SM ]; | |
74 | // |
|
74 | // | |
75 | volatile int spec_mat_f2[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
75 | volatile int spec_mat_f2[ SM_HEADER + TOTAL_SIZE_SM ]; | |
76 | volatile int spec_mat_f2_bis[ SM_HEADER + TOTAL_SIZE_SM ]; |
|
76 | volatile int spec_mat_f2_bis[ SM_HEADER + TOTAL_SIZE_SM ]; | |
77 |
|
77 | |||
78 | // MODE PARAMETERS |
|
78 | // MODE PARAMETERS | |
79 | Packet_TM_LFR_PARAMETER_DUMP_t parameter_dump_packet; |
|
79 | Packet_TM_LFR_PARAMETER_DUMP_t parameter_dump_packet; | |
80 | struct param_local_str param_local; |
|
80 | struct param_local_str param_local; | |
81 |
|
81 | |||
82 | // HK PACKETS |
|
82 | // HK PACKETS | |
83 | Packet_TM_LFR_HK_t housekeeping_packet; |
|
83 | Packet_TM_LFR_HK_t housekeeping_packet; | |
84 | // sequence counters are incremented by APID (PID + CAT) and destination ID |
|
84 | // sequence counters are incremented by APID (PID + CAT) and destination ID | |
85 | unsigned short sequenceCounters_SCIENCE_NORMAL_BURST; |
|
85 | unsigned short sequenceCounters_SCIENCE_NORMAL_BURST; | |
86 | unsigned short sequenceCounters_SCIENCE_SBM1_SBM2; |
|
86 | unsigned short sequenceCounters_SCIENCE_SBM1_SBM2; | |
87 | unsigned short sequenceCounters_TC_EXE[SEQ_CNT_NB_DEST_ID]; |
|
87 | unsigned short sequenceCounters_TC_EXE[SEQ_CNT_NB_DEST_ID]; | |
88 | spw_stats spacewire_stats; |
|
88 | spw_stats spacewire_stats; | |
89 | spw_stats spacewire_stats_backup; |
|
89 | spw_stats spacewire_stats_backup; | |
90 |
|
90 | |||
91 |
|
91 |
@@ -1,325 +1,328 | |||||
1 | /** General usage functions and RTEMS tasks. |
|
1 | /** General usage functions and RTEMS tasks. | |
2 | * |
|
2 | * | |
3 | * @file |
|
3 | * @file | |
4 | * @author P. LEROY |
|
4 | * @author P. LEROY | |
5 | * |
|
5 | * | |
6 | */ |
|
6 | */ | |
7 |
|
7 | |||
8 | #include "fsw_misc.h" |
|
8 | #include "fsw_misc.h" | |
9 |
|
9 | |||
10 |
char *DumbMessages[ |
|
10 | char *DumbMessages[9] = {"in DUMB *** default", // RTEMS_EVENT_0 | |
11 | "in DUMB *** timecode_irq_handler", // RTEMS_EVENT_1 |
|
11 | "in DUMB *** timecode_irq_handler", // RTEMS_EVENT_1 | |
12 | "in DUMB *** waveforms_isr", // RTEMS_EVENT_2 |
|
12 | "in DUMB *** waveforms_isr", // RTEMS_EVENT_2 | |
13 | "in DUMB *** in SMIQ *** Error sending event to AVF0", // RTEMS_EVENT_3 |
|
13 | "in DUMB *** in SMIQ *** Error sending event to AVF0", // RTEMS_EVENT_3 | |
14 | "in DUMB *** spectral_matrices_isr *** Error sending event to SMIQ", // RTEMS_EVENT_4 |
|
14 | "in DUMB *** spectral_matrices_isr *** Error sending event to SMIQ", // RTEMS_EVENT_4 | |
15 | "in DUMB *** waveforms_simulator_isr", // RTEMS_EVENT_5 |
|
15 | "in DUMB *** waveforms_simulator_isr", // RTEMS_EVENT_5 | |
16 |
"ERR HK" |
|
16 | "ERR HK", // RTEMS_EVENT_6 | |
|
17 | "full is 0", // RTEMS_EVENT_7 | |||
|
18 | "full is 1" // RTEMS_EVENT_8 | |||
17 | }; |
|
19 | }; | |
18 |
|
20 | |||
19 | int configure_timer(gptimer_regs_t *gptimer_regs, unsigned char timer, unsigned int clock_divider, |
|
21 | int configure_timer(gptimer_regs_t *gptimer_regs, unsigned char timer, unsigned int clock_divider, | |
20 | unsigned char interrupt_level, rtems_isr (*timer_isr)() ) |
|
22 | unsigned char interrupt_level, rtems_isr (*timer_isr)() ) | |
21 | { |
|
23 | { | |
22 | /** This function configures a GPTIMER timer instantiated in the VHDL design. |
|
24 | /** This function configures a GPTIMER timer instantiated in the VHDL design. | |
23 | * |
|
25 | * | |
24 | * @param gptimer_regs points to the APB registers of the GPTIMER IP core. |
|
26 | * @param gptimer_regs points to the APB registers of the GPTIMER IP core. | |
25 | * @param timer is the number of the timer in the IP core (several timers can be instantiated). |
|
27 | * @param timer is the number of the timer in the IP core (several timers can be instantiated). | |
26 | * @param clock_divider is the divider of the 1 MHz clock that will be configured. |
|
28 | * @param clock_divider is the divider of the 1 MHz clock that will be configured. | |
27 | * @param interrupt_level is the interrupt level that the timer drives. |
|
29 | * @param interrupt_level is the interrupt level that the timer drives. | |
28 | * @param timer_isr is the interrupt subroutine that will be attached to the IRQ driven by the timer. |
|
30 | * @param timer_isr is the interrupt subroutine that will be attached to the IRQ driven by the timer. | |
29 | * |
|
31 | * | |
30 | * @return |
|
32 | * @return | |
31 | * |
|
33 | * | |
32 | * Interrupt levels are described in the SPARC documentation sparcv8.pdf p.76 |
|
34 | * Interrupt levels are described in the SPARC documentation sparcv8.pdf p.76 | |
33 | * |
|
35 | * | |
34 | */ |
|
36 | */ | |
35 |
|
37 | |||
36 | rtems_status_code status; |
|
38 | rtems_status_code status; | |
37 | rtems_isr_entry old_isr_handler; |
|
39 | rtems_isr_entry old_isr_handler; | |
38 |
|
40 | |||
39 | status = rtems_interrupt_catch( timer_isr, interrupt_level, &old_isr_handler) ; // see sparcv8.pdf p.76 for interrupt levels |
|
41 | status = rtems_interrupt_catch( timer_isr, interrupt_level, &old_isr_handler) ; // see sparcv8.pdf p.76 for interrupt levels | |
40 | if (status!=RTEMS_SUCCESSFUL) |
|
42 | if (status!=RTEMS_SUCCESSFUL) | |
41 | { |
|
43 | { | |
42 | PRINTF("in configure_timer *** ERR rtems_interrupt_catch\n") |
|
44 | PRINTF("in configure_timer *** ERR rtems_interrupt_catch\n") | |
43 | } |
|
45 | } | |
44 |
|
46 | |||
45 | timer_set_clock_divider( gptimer_regs, timer, clock_divider); |
|
47 | timer_set_clock_divider( gptimer_regs, timer, clock_divider); | |
46 |
|
48 | |||
47 | return 1; |
|
49 | return 1; | |
48 | } |
|
50 | } | |
49 |
|
51 | |||
50 | int timer_start(gptimer_regs_t *gptimer_regs, unsigned char timer) |
|
52 | int timer_start(gptimer_regs_t *gptimer_regs, unsigned char timer) | |
51 | { |
|
53 | { | |
52 | /** This function starts a GPTIMER timer. |
|
54 | /** This function starts a GPTIMER timer. | |
53 | * |
|
55 | * | |
54 | * @param gptimer_regs points to the APB registers of the GPTIMER IP core. |
|
56 | * @param gptimer_regs points to the APB registers of the GPTIMER IP core. | |
55 | * @param timer is the number of the timer in the IP core (several timers can be instantiated). |
|
57 | * @param timer is the number of the timer in the IP core (several timers can be instantiated). | |
56 | * |
|
58 | * | |
57 | * @return 1 |
|
59 | * @return 1 | |
58 | * |
|
60 | * | |
59 | */ |
|
61 | */ | |
60 |
|
62 | |||
61 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000010; // clear pending IRQ if any |
|
63 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000010; // clear pending IRQ if any | |
62 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000004; // LD load value from the reload register |
|
64 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000004; // LD load value from the reload register | |
63 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000001; // EN enable the timer |
|
65 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000001; // EN enable the timer | |
64 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000002; // RS restart |
|
66 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000002; // RS restart | |
65 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000008; // IE interrupt enable |
|
67 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000008; // IE interrupt enable | |
66 |
|
68 | |||
67 | return 1; |
|
69 | return 1; | |
68 | } |
|
70 | } | |
69 |
|
71 | |||
70 | int timer_stop(gptimer_regs_t *gptimer_regs, unsigned char timer) |
|
72 | int timer_stop(gptimer_regs_t *gptimer_regs, unsigned char timer) | |
71 | { |
|
73 | { | |
72 | /** This function stops a GPTIMER timer. |
|
74 | /** This function stops a GPTIMER timer. | |
73 | * |
|
75 | * | |
74 | * @param gptimer_regs points to the APB registers of the GPTIMER IP core. |
|
76 | * @param gptimer_regs points to the APB registers of the GPTIMER IP core. | |
75 | * @param timer is the number of the timer in the IP core (several timers can be instantiated). |
|
77 | * @param timer is the number of the timer in the IP core (several timers can be instantiated). | |
76 | * |
|
78 | * | |
77 | * @return 1 |
|
79 | * @return 1 | |
78 | * |
|
80 | * | |
79 | */ |
|
81 | */ | |
80 |
|
82 | |||
81 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl & 0xfffffffe; // EN enable the timer |
|
83 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl & 0xfffffffe; // EN enable the timer | |
82 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl & 0xffffffef; // IE interrupt enable |
|
84 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl & 0xffffffef; // IE interrupt enable | |
83 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000010; // clear pending IRQ if any |
|
85 | gptimer_regs->timer[timer].ctrl = gptimer_regs->timer[timer].ctrl | 0x00000010; // clear pending IRQ if any | |
84 |
|
86 | |||
85 | return 1; |
|
87 | return 1; | |
86 | } |
|
88 | } | |
87 |
|
89 | |||
88 | int timer_set_clock_divider(gptimer_regs_t *gptimer_regs, unsigned char timer, unsigned int clock_divider) |
|
90 | int timer_set_clock_divider(gptimer_regs_t *gptimer_regs, unsigned char timer, unsigned int clock_divider) | |
89 | { |
|
91 | { | |
90 | /** This function sets the clock divider of a GPTIMER timer. |
|
92 | /** This function sets the clock divider of a GPTIMER timer. | |
91 | * |
|
93 | * | |
92 | * @param gptimer_regs points to the APB registers of the GPTIMER IP core. |
|
94 | * @param gptimer_regs points to the APB registers of the GPTIMER IP core. | |
93 | * @param timer is the number of the timer in the IP core (several timers can be instantiated). |
|
95 | * @param timer is the number of the timer in the IP core (several timers can be instantiated). | |
94 | * @param clock_divider is the divider of the 1 MHz clock that will be configured. |
|
96 | * @param clock_divider is the divider of the 1 MHz clock that will be configured. | |
95 | * |
|
97 | * | |
96 | * @return 1 |
|
98 | * @return 1 | |
97 | * |
|
99 | * | |
98 | */ |
|
100 | */ | |
99 |
|
101 | |||
100 | gptimer_regs->timer[timer].reload = clock_divider; // base clock frequency is 1 MHz |
|
102 | gptimer_regs->timer[timer].reload = clock_divider; // base clock frequency is 1 MHz | |
101 |
|
103 | |||
102 | return 1; |
|
104 | return 1; | |
103 | } |
|
105 | } | |
104 |
|
106 | |||
105 | int send_console_outputs_on_apbuart_port( void ) // Send the console outputs on the apbuart port |
|
107 | int send_console_outputs_on_apbuart_port( void ) // Send the console outputs on the apbuart port | |
106 | { |
|
108 | { | |
107 | struct apbuart_regs_str *apbuart_regs = (struct apbuart_regs_str *) REGS_ADDR_APBUART; |
|
109 | struct apbuart_regs_str *apbuart_regs = (struct apbuart_regs_str *) REGS_ADDR_APBUART; | |
108 |
|
110 | |||
109 | apbuart_regs->ctrl = apbuart_regs->ctrl & APBUART_CTRL_REG_MASK_DB; |
|
111 | apbuart_regs->ctrl = apbuart_regs->ctrl & APBUART_CTRL_REG_MASK_DB; | |
110 | PRINTF("\n\n\n\n\nIn INIT *** Now the console is on port COM1\n") |
|
112 | PRINTF("\n\n\n\n\nIn INIT *** Now the console is on port COM1\n") | |
111 |
|
113 | |||
112 | return 0; |
|
114 | return 0; | |
113 | } |
|
115 | } | |
114 |
|
116 | |||
115 | void set_apbuart_scaler_reload_register(unsigned int regs, unsigned int value) |
|
117 | void set_apbuart_scaler_reload_register(unsigned int regs, unsigned int value) | |
116 | { |
|
118 | { | |
117 | /** This function sets the scaler reload register of the apbuart module |
|
119 | /** This function sets the scaler reload register of the apbuart module | |
118 | * |
|
120 | * | |
119 | * @param regs is the address of the apbuart registers in memory |
|
121 | * @param regs is the address of the apbuart registers in memory | |
120 | * @param value is the value that will be stored in the scaler register |
|
122 | * @param value is the value that will be stored in the scaler register | |
121 | * |
|
123 | * | |
122 | * The value shall be set by the software to get data on the serial interface. |
|
124 | * The value shall be set by the software to get data on the serial interface. | |
123 | * |
|
125 | * | |
124 | */ |
|
126 | */ | |
125 |
|
127 | |||
126 | struct apbuart_regs_str *apbuart_regs = (struct apbuart_regs_str *) regs; |
|
128 | struct apbuart_regs_str *apbuart_regs = (struct apbuart_regs_str *) regs; | |
127 |
|
129 | |||
128 | apbuart_regs->scaler = value; |
|
130 | apbuart_regs->scaler = value; | |
129 | BOOT_PRINTF1("OK *** apbuart port scaler reload register set to 0x%x\n", value) |
|
131 | BOOT_PRINTF1("OK *** apbuart port scaler reload register set to 0x%x\n", value) | |
130 | } |
|
132 | } | |
131 |
|
133 | |||
132 | //************ |
|
134 | //************ | |
133 | // RTEMS TASKS |
|
135 | // RTEMS TASKS | |
134 |
|
136 | |||
135 | rtems_task stat_task(rtems_task_argument argument) |
|
137 | rtems_task stat_task(rtems_task_argument argument) | |
136 | { |
|
138 | { | |
137 | int i; |
|
139 | int i; | |
138 | int j; |
|
140 | int j; | |
139 | i = 0; |
|
141 | i = 0; | |
140 | j = 0; |
|
142 | j = 0; | |
141 | BOOT_PRINTF("in STAT *** \n") |
|
143 | BOOT_PRINTF("in STAT *** \n") | |
142 | while(1){ |
|
144 | while(1){ | |
143 | rtems_task_wake_after(1000); |
|
145 | rtems_task_wake_after(1000); | |
144 | PRINTF1("%d\n", j) |
|
146 | PRINTF1("%d\n", j) | |
145 | if (i == CPU_USAGE_REPORT_PERIOD) { |
|
147 | if (i == CPU_USAGE_REPORT_PERIOD) { | |
146 | // #ifdef PRINT_TASK_STATISTICS |
|
148 | // #ifdef PRINT_TASK_STATISTICS | |
147 | // rtems_cpu_usage_report(); |
|
149 | // rtems_cpu_usage_report(); | |
148 | // rtems_cpu_usage_reset(); |
|
150 | // rtems_cpu_usage_reset(); | |
149 | // #endif |
|
151 | // #endif | |
150 | i = 0; |
|
152 | i = 0; | |
151 | } |
|
153 | } | |
152 | else i++; |
|
154 | else i++; | |
153 | j++; |
|
155 | j++; | |
154 | } |
|
156 | } | |
155 | } |
|
157 | } | |
156 |
|
158 | |||
157 | rtems_task hous_task(rtems_task_argument argument) |
|
159 | rtems_task hous_task(rtems_task_argument argument) | |
158 | { |
|
160 | { | |
159 | rtems_status_code status; |
|
161 | rtems_status_code status; | |
160 | rtems_id queue_id; |
|
162 | rtems_id queue_id; | |
161 |
|
163 | |||
162 | status = rtems_message_queue_ident( misc_name[QUEUE_SEND], 0, &queue_id ); |
|
164 | status = rtems_message_queue_ident( misc_name[QUEUE_SEND], 0, &queue_id ); | |
163 | if (status != RTEMS_SUCCESSFUL) |
|
165 | if (status != RTEMS_SUCCESSFUL) | |
164 | { |
|
166 | { | |
165 | PRINTF1("in HOUS *** ERR %d\n", status) |
|
167 | PRINTF1("in HOUS *** ERR %d\n", status) | |
166 | } |
|
168 | } | |
167 |
|
169 | |||
168 | BOOT_PRINTF("in HOUS ***\n") |
|
170 | BOOT_PRINTF("in HOUS ***\n") | |
169 |
|
171 | |||
170 | if (rtems_rate_monotonic_ident( name_hk_rate_monotonic, &HK_id) != RTEMS_SUCCESSFUL) { |
|
172 | if (rtems_rate_monotonic_ident( name_hk_rate_monotonic, &HK_id) != RTEMS_SUCCESSFUL) { | |
171 | status = rtems_rate_monotonic_create( name_hk_rate_monotonic, &HK_id ); |
|
173 | status = rtems_rate_monotonic_create( name_hk_rate_monotonic, &HK_id ); | |
172 | if( status != RTEMS_SUCCESSFUL ) { |
|
174 | if( status != RTEMS_SUCCESSFUL ) { | |
173 | PRINTF1( "rtems_rate_monotonic_create failed with status of %d\n", status ) |
|
175 | PRINTF1( "rtems_rate_monotonic_create failed with status of %d\n", status ) | |
174 | } |
|
176 | } | |
175 | } |
|
177 | } | |
176 |
|
178 | |||
177 | housekeeping_packet.targetLogicalAddress = CCSDS_DESTINATION_ID; |
|
179 | housekeeping_packet.targetLogicalAddress = CCSDS_DESTINATION_ID; | |
178 | housekeeping_packet.protocolIdentifier = CCSDS_PROTOCOLE_ID; |
|
180 | housekeeping_packet.protocolIdentifier = CCSDS_PROTOCOLE_ID; | |
179 | housekeeping_packet.reserved = DEFAULT_RESERVED; |
|
181 | housekeeping_packet.reserved = DEFAULT_RESERVED; | |
180 | housekeeping_packet.userApplication = CCSDS_USER_APP; |
|
182 | housekeeping_packet.userApplication = CCSDS_USER_APP; | |
181 | housekeeping_packet.packetID[0] = (unsigned char) (TM_PACKET_ID_HK >> 8); |
|
183 | housekeeping_packet.packetID[0] = (unsigned char) (TM_PACKET_ID_HK >> 8); | |
182 | housekeeping_packet.packetID[1] = (unsigned char) (TM_PACKET_ID_HK); |
|
184 | housekeeping_packet.packetID[1] = (unsigned char) (TM_PACKET_ID_HK); | |
183 | housekeeping_packet.packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_STANDALONE; |
|
185 | housekeeping_packet.packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_STANDALONE; | |
184 | housekeeping_packet.packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT; |
|
186 | housekeeping_packet.packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT; | |
185 | housekeeping_packet.packetLength[0] = (unsigned char) (PACKET_LENGTH_HK >> 8); |
|
187 | housekeeping_packet.packetLength[0] = (unsigned char) (PACKET_LENGTH_HK >> 8); | |
186 | housekeeping_packet.packetLength[1] = (unsigned char) (PACKET_LENGTH_HK ); |
|
188 | housekeeping_packet.packetLength[1] = (unsigned char) (PACKET_LENGTH_HK ); | |
187 | housekeeping_packet.spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2; |
|
189 | housekeeping_packet.spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2; | |
188 | housekeeping_packet.serviceType = TM_TYPE_HK; |
|
190 | housekeeping_packet.serviceType = TM_TYPE_HK; | |
189 | housekeeping_packet.serviceSubType = TM_SUBTYPE_HK; |
|
191 | housekeeping_packet.serviceSubType = TM_SUBTYPE_HK; | |
190 | housekeeping_packet.destinationID = TM_DESTINATION_ID_GROUND; |
|
192 | housekeeping_packet.destinationID = TM_DESTINATION_ID_GROUND; | |
191 |
|
193 | |||
192 | status = rtems_rate_monotonic_cancel(HK_id); |
|
194 | status = rtems_rate_monotonic_cancel(HK_id); | |
193 | if( status != RTEMS_SUCCESSFUL ) { |
|
195 | if( status != RTEMS_SUCCESSFUL ) { | |
194 | PRINTF1( "ERR *** in HOUS *** rtems_rate_monotonic_cancel(HK_id) ***code: %d\n", status ) |
|
196 | PRINTF1( "ERR *** in HOUS *** rtems_rate_monotonic_cancel(HK_id) ***code: %d\n", status ) | |
195 | } |
|
197 | } | |
196 | else { |
|
198 | else { | |
197 | DEBUG_PRINTF("OK *** in HOUS *** rtems_rate_monotonic_cancel(HK_id)\n") |
|
199 | DEBUG_PRINTF("OK *** in HOUS *** rtems_rate_monotonic_cancel(HK_id)\n") | |
198 | } |
|
200 | } | |
199 |
|
201 | |||
200 | while(1){ // launch the rate monotonic task |
|
202 | while(1){ // launch the rate monotonic task | |
201 | status = rtems_rate_monotonic_period( HK_id, HK_PERIOD ); |
|
203 | status = rtems_rate_monotonic_period( HK_id, HK_PERIOD ); | |
202 | if ( status != RTEMS_SUCCESSFUL ) { |
|
204 | if ( status != RTEMS_SUCCESSFUL ) { | |
203 | PRINTF1( "in HOUS *** ERR period: %d\n", status); |
|
205 | PRINTF1( "in HOUS *** ERR period: %d\n", status); | |
204 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_6 ); |
|
206 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_6 ); | |
205 | } |
|
207 | } | |
206 | else { |
|
208 | else { | |
207 | increment_seq_counter( housekeeping_packet.packetSequenceControl ); |
|
209 | increment_seq_counter( housekeeping_packet.packetSequenceControl ); | |
208 | housekeeping_packet.time[0] = (unsigned char) (time_management_regs->coarse_time>>24); |
|
210 | housekeeping_packet.time[0] = (unsigned char) (time_management_regs->coarse_time>>24); | |
209 | housekeeping_packet.time[1] = (unsigned char) (time_management_regs->coarse_time>>16); |
|
211 | housekeeping_packet.time[1] = (unsigned char) (time_management_regs->coarse_time>>16); | |
210 | housekeeping_packet.time[2] = (unsigned char) (time_management_regs->coarse_time>>8); |
|
212 | housekeeping_packet.time[2] = (unsigned char) (time_management_regs->coarse_time>>8); | |
211 | housekeeping_packet.time[3] = (unsigned char) (time_management_regs->coarse_time); |
|
213 | housekeeping_packet.time[3] = (unsigned char) (time_management_regs->coarse_time); | |
212 | housekeeping_packet.time[4] = (unsigned char) (time_management_regs->fine_time>>8); |
|
214 | housekeeping_packet.time[4] = (unsigned char) (time_management_regs->fine_time>>8); | |
213 | housekeeping_packet.time[5] = (unsigned char) (time_management_regs->fine_time); |
|
215 | housekeeping_packet.time[5] = (unsigned char) (time_management_regs->fine_time); | |
214 | housekeeping_packet.sid = SID_HK; |
|
216 | housekeeping_packet.sid = SID_HK; | |
215 |
|
217 | |||
216 | spacewire_update_statistics(); |
|
218 | spacewire_update_statistics(); | |
217 |
|
219 | |||
218 | // SEND PACKET |
|
220 | // SEND PACKET | |
219 | status = rtems_message_queue_send( queue_id, &housekeeping_packet, |
|
221 | status = rtems_message_queue_send( queue_id, &housekeeping_packet, | |
220 | PACKET_LENGTH_HK + CCSDS_TC_TM_PACKET_OFFSET + CCSDS_PROTOCOLE_EXTRA_BYTES); |
|
222 | PACKET_LENGTH_HK + CCSDS_TC_TM_PACKET_OFFSET + CCSDS_PROTOCOLE_EXTRA_BYTES); | |
221 | if (status != RTEMS_SUCCESSFUL) { |
|
223 | if (status != RTEMS_SUCCESSFUL) { | |
222 | PRINTF1("in HOUS *** ERR send: %d\n", status) |
|
224 | PRINTF1("in HOUS *** ERR send: %d\n", status) | |
223 | } |
|
225 | } | |
224 | } |
|
226 | } | |
225 | } |
|
227 | } | |
226 |
|
228 | |||
227 | PRINTF("in HOUS *** deleting task\n") |
|
229 | PRINTF("in HOUS *** deleting task\n") | |
228 |
|
230 | |||
229 | status = rtems_task_delete( RTEMS_SELF ); // should not return |
|
231 | status = rtems_task_delete( RTEMS_SELF ); // should not return | |
230 | printf( "rtems_task_delete returned with status of %d.\n", status ); |
|
232 | printf( "rtems_task_delete returned with status of %d.\n", status ); | |
231 | return; |
|
233 | return; | |
232 | } |
|
234 | } | |
233 |
|
235 | |||
234 | rtems_task dumb_task( rtems_task_argument unused ) |
|
236 | rtems_task dumb_task( rtems_task_argument unused ) | |
235 | { |
|
237 | { | |
236 | /** This RTEMS taks is used to print messages without affecting the general behaviour of the software. |
|
238 | /** This RTEMS taks is used to print messages without affecting the general behaviour of the software. | |
237 | * |
|
239 | * | |
238 | * @param unused is the starting argument of the RTEMS task |
|
240 | * @param unused is the starting argument of the RTEMS task | |
239 | * |
|
241 | * | |
240 | * The DUMB taks waits for RTEMS events and print messages depending on the incoming events. |
|
242 | * The DUMB taks waits for RTEMS events and print messages depending on the incoming events. | |
241 | * |
|
243 | * | |
242 | */ |
|
244 | */ | |
243 |
|
245 | |||
244 | unsigned int i; |
|
246 | unsigned int i; | |
245 | unsigned int intEventOut; |
|
247 | unsigned int intEventOut; | |
246 | unsigned int coarse_time = 0; |
|
248 | unsigned int coarse_time = 0; | |
247 | unsigned int fine_time = 0; |
|
249 | unsigned int fine_time = 0; | |
248 | rtems_event_set event_out; |
|
250 | rtems_event_set event_out; | |
249 |
|
251 | |||
250 | BOOT_PRINTF("in DUMB *** \n") |
|
252 | BOOT_PRINTF("in DUMB *** \n") | |
251 |
|
253 | |||
252 | while(1){ |
|
254 | while(1){ | |
253 | rtems_event_receive(RTEMS_EVENT_0 | RTEMS_EVENT_1 | RTEMS_EVENT_2 | RTEMS_EVENT_3 |
|
255 | rtems_event_receive(RTEMS_EVENT_0 | RTEMS_EVENT_1 | RTEMS_EVENT_2 | RTEMS_EVENT_3 | |
254 |
|
|
256 | | RTEMS_EVENT_4 | RTEMS_EVENT_5 | RTEMS_EVENT_6 | |
|
257 | | RTEMS_EVENT_7 | RTEMS_EVENT_8 | RTEMS_EVENT_9 , | |||
255 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); // wait for an RTEMS_EVENT |
|
258 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); // wait for an RTEMS_EVENT | |
256 | intEventOut = (unsigned int) event_out; |
|
259 | intEventOut = (unsigned int) event_out; | |
257 | for ( i=0; i<32; i++) |
|
260 | for ( i=0; i<32; i++) | |
258 | { |
|
261 | { | |
259 | if ( ((intEventOut >> i) & 0x0001) != 0) |
|
262 | if ( ((intEventOut >> i) & 0x0001) != 0) | |
260 | { |
|
263 | { | |
261 | coarse_time = time_management_regs->coarse_time; |
|
264 | coarse_time = time_management_regs->coarse_time; | |
262 | fine_time = time_management_regs->fine_time; |
|
265 | fine_time = time_management_regs->fine_time; | |
263 | printf("in DUMB *** coarse: %x, fine: %x, %s\n", coarse_time, fine_time, DumbMessages[i]); |
|
266 | printf("in DUMB *** coarse: %x, fine: %x, %s\n", coarse_time, fine_time, DumbMessages[i]); | |
264 | } |
|
267 | } | |
265 | } |
|
268 | } | |
266 | } |
|
269 | } | |
267 | } |
|
270 | } | |
268 |
|
271 | |||
269 | //***************************** |
|
272 | //***************************** | |
270 | // init housekeeping parameters |
|
273 | // init housekeeping parameters | |
271 |
|
274 | |||
272 | void init_housekeeping_parameters( void ) |
|
275 | void init_housekeeping_parameters( void ) | |
273 | { |
|
276 | { | |
274 | /** This function initialize the housekeeping_packet global variable with default values. |
|
277 | /** This function initialize the housekeeping_packet global variable with default values. | |
275 | * |
|
278 | * | |
276 | */ |
|
279 | */ | |
277 |
|
280 | |||
278 | unsigned int i = 0; |
|
281 | unsigned int i = 0; | |
279 | char *parameters; |
|
282 | char *parameters; | |
280 |
|
283 | |||
281 | parameters = (char*) &housekeeping_packet.lfr_status_word; |
|
284 | parameters = (char*) &housekeeping_packet.lfr_status_word; | |
282 | for(i = 0; i< SIZE_HK_PARAMETERS; i++) |
|
285 | for(i = 0; i< SIZE_HK_PARAMETERS; i++) | |
283 | { |
|
286 | { | |
284 | parameters[i] = 0x00; |
|
287 | parameters[i] = 0x00; | |
285 | } |
|
288 | } | |
286 | // init status word |
|
289 | // init status word | |
287 | housekeeping_packet.lfr_status_word[0] = DEFAULT_STATUS_WORD_BYTE0; |
|
290 | housekeeping_packet.lfr_status_word[0] = DEFAULT_STATUS_WORD_BYTE0; | |
288 | housekeeping_packet.lfr_status_word[1] = DEFAULT_STATUS_WORD_BYTE1; |
|
291 | housekeeping_packet.lfr_status_word[1] = DEFAULT_STATUS_WORD_BYTE1; | |
289 | // init software version |
|
292 | // init software version | |
290 | housekeeping_packet.lfr_sw_version[0] = SW_VERSION_N1; |
|
293 | housekeeping_packet.lfr_sw_version[0] = SW_VERSION_N1; | |
291 | housekeeping_packet.lfr_sw_version[1] = SW_VERSION_N2; |
|
294 | housekeeping_packet.lfr_sw_version[1] = SW_VERSION_N2; | |
292 | housekeeping_packet.lfr_sw_version[2] = SW_VERSION_N3; |
|
295 | housekeeping_packet.lfr_sw_version[2] = SW_VERSION_N3; | |
293 | housekeeping_packet.lfr_sw_version[3] = SW_VERSION_N4; |
|
296 | housekeeping_packet.lfr_sw_version[3] = SW_VERSION_N4; | |
294 |
|
297 | |||
295 | } |
|
298 | } | |
296 |
|
299 | |||
297 | void increment_seq_counter( unsigned char *packet_sequence_control) |
|
300 | void increment_seq_counter( unsigned char *packet_sequence_control) | |
298 | { |
|
301 | { | |
299 | unsigned short sequence_cnt; |
|
302 | unsigned short sequence_cnt; | |
300 | unsigned short segmentation_grouping_flag; |
|
303 | unsigned short segmentation_grouping_flag; | |
301 | unsigned short new_packet_sequence_control; |
|
304 | unsigned short new_packet_sequence_control; | |
302 |
|
305 | |||
303 | segmentation_grouping_flag = (unsigned short) ( (packet_sequence_control[0] & 0xc0) << 8 ); // keep bits 7 downto 6 |
|
306 | segmentation_grouping_flag = (unsigned short) ( (packet_sequence_control[0] & 0xc0) << 8 ); // keep bits 7 downto 6 | |
304 | sequence_cnt = (unsigned short) ( |
|
307 | sequence_cnt = (unsigned short) ( | |
305 | ( (packet_sequence_control[0] & 0x3f) << 8 ) // keep bits 5 downto 0 |
|
308 | ( (packet_sequence_control[0] & 0x3f) << 8 ) // keep bits 5 downto 0 | |
306 | + packet_sequence_control[1] |
|
309 | + packet_sequence_control[1] | |
307 | ); |
|
310 | ); | |
308 |
|
311 | |||
309 | if ( sequence_cnt < SEQ_CNT_MAX) |
|
312 | if ( sequence_cnt < SEQ_CNT_MAX) | |
310 | { |
|
313 | { | |
311 | sequence_cnt = sequence_cnt + 1; |
|
314 | sequence_cnt = sequence_cnt + 1; | |
312 | } |
|
315 | } | |
313 | else |
|
316 | else | |
314 | { |
|
317 | { | |
315 | sequence_cnt = 0; |
|
318 | sequence_cnt = 0; | |
316 | } |
|
319 | } | |
317 |
|
320 | |||
318 | new_packet_sequence_control = segmentation_grouping_flag | sequence_cnt ; |
|
321 | new_packet_sequence_control = segmentation_grouping_flag | sequence_cnt ; | |
319 |
|
322 | |||
320 | packet_sequence_control[0] = (unsigned char) (new_packet_sequence_control >> 8); |
|
323 | packet_sequence_control[0] = (unsigned char) (new_packet_sequence_control >> 8); | |
321 | packet_sequence_control[1] = (unsigned char) (new_packet_sequence_control ); |
|
324 | packet_sequence_control[1] = (unsigned char) (new_packet_sequence_control ); | |
322 | } |
|
325 | } | |
323 |
|
326 | |||
324 |
|
327 | |||
325 |
|
328 |
@@ -1,772 +1,772 | |||||
1 | /** Functions and tasks related to TeleCommand handling. |
|
1 | /** Functions and tasks related to TeleCommand handling. | |
2 | * |
|
2 | * | |
3 | * @file |
|
3 | * @file | |
4 | * @author P. LEROY |
|
4 | * @author P. LEROY | |
5 | * |
|
5 | * | |
6 | * A group of functions to handle TeleCommands:\n |
|
6 | * A group of functions to handle TeleCommands:\n | |
7 | * action launching\n |
|
7 | * action launching\n | |
8 | * TC parsing\n |
|
8 | * TC parsing\n | |
9 | * ... |
|
9 | * ... | |
10 | * |
|
10 | * | |
11 | */ |
|
11 | */ | |
12 |
|
12 | |||
13 | #include "tc_handler.h" |
|
13 | #include "tc_handler.h" | |
14 |
|
14 | |||
15 | //*********** |
|
15 | //*********** | |
16 | // RTEMS TASK |
|
16 | // RTEMS TASK | |
17 |
|
17 | |||
18 | rtems_task actn_task( rtems_task_argument unused ) |
|
18 | rtems_task actn_task( rtems_task_argument unused ) | |
19 | { |
|
19 | { | |
20 | /** This RTEMS task is responsible for launching actions upton the reception of valid TeleCommands. |
|
20 | /** This RTEMS task is responsible for launching actions upton the reception of valid TeleCommands. | |
21 | * |
|
21 | * | |
22 | * @param unused is the starting argument of the RTEMS task |
|
22 | * @param unused is the starting argument of the RTEMS task | |
23 | * |
|
23 | * | |
24 | * The ACTN task waits for data coming from an RTEMS msesage queue. When data arrives, it launches specific actions depending |
|
24 | * The ACTN task waits for data coming from an RTEMS msesage queue. When data arrives, it launches specific actions depending | |
25 | * on the incoming TeleCommand. |
|
25 | * on the incoming TeleCommand. | |
26 | * |
|
26 | * | |
27 | */ |
|
27 | */ | |
28 |
|
28 | |||
29 | int result; |
|
29 | int result; | |
30 | rtems_status_code status; // RTEMS status code |
|
30 | rtems_status_code status; // RTEMS status code | |
31 | ccsdsTelecommandPacket_t TC; // TC sent to the ACTN task |
|
31 | ccsdsTelecommandPacket_t TC; // TC sent to the ACTN task | |
32 | size_t size; // size of the incoming TC packet |
|
32 | size_t size; // size of the incoming TC packet | |
33 | unsigned char subtype; // subtype of the current TC packet |
|
33 | unsigned char subtype; // subtype of the current TC packet | |
34 | rtems_id queue_rcv_id; |
|
34 | rtems_id queue_rcv_id; | |
35 | rtems_id queue_snd_id; |
|
35 | rtems_id queue_snd_id; | |
36 |
|
36 | |||
37 | status = rtems_message_queue_ident( misc_name[QUEUE_RECV], 0, &queue_rcv_id ); |
|
37 | status = rtems_message_queue_ident( misc_name[QUEUE_RECV], 0, &queue_rcv_id ); | |
38 | if (status != RTEMS_SUCCESSFUL) |
|
38 | if (status != RTEMS_SUCCESSFUL) | |
39 | { |
|
39 | { | |
40 | PRINTF1("in ACTN *** ERR getting queue_rcv_id %d\n", status) |
|
40 | PRINTF1("in ACTN *** ERR getting queue_rcv_id %d\n", status) | |
41 | } |
|
41 | } | |
42 |
|
42 | |||
43 | status = rtems_message_queue_ident( misc_name[QUEUE_SEND], 0, &queue_snd_id ); |
|
43 | status = rtems_message_queue_ident( misc_name[QUEUE_SEND], 0, &queue_snd_id ); | |
44 | if (status != RTEMS_SUCCESSFUL) |
|
44 | if (status != RTEMS_SUCCESSFUL) | |
45 | { |
|
45 | { | |
46 | PRINTF1("in ACTN *** ERR getting queue_snd_id %d\n", status) |
|
46 | PRINTF1("in ACTN *** ERR getting queue_snd_id %d\n", status) | |
47 | } |
|
47 | } | |
48 |
|
48 | |||
49 | result = LFR_SUCCESSFUL; |
|
49 | result = LFR_SUCCESSFUL; | |
50 | subtype = 0; // subtype of the current TC packet |
|
50 | subtype = 0; // subtype of the current TC packet | |
51 |
|
51 | |||
52 | BOOT_PRINTF("in ACTN *** \n") |
|
52 | BOOT_PRINTF("in ACTN *** \n") | |
53 |
|
53 | |||
54 | while(1) |
|
54 | while(1) | |
55 | { |
|
55 | { | |
56 | status = rtems_message_queue_receive( queue_rcv_id, (char*) &TC, &size, |
|
56 | status = rtems_message_queue_receive( queue_rcv_id, (char*) &TC, &size, | |
57 | RTEMS_WAIT, RTEMS_NO_TIMEOUT); |
|
57 | RTEMS_WAIT, RTEMS_NO_TIMEOUT); | |
58 | if (status!=RTEMS_SUCCESSFUL) PRINTF1("ERR *** in task ACTN *** error receiving a message, code %d \n", status) |
|
58 | if (status!=RTEMS_SUCCESSFUL) PRINTF1("ERR *** in task ACTN *** error receiving a message, code %d \n", status) | |
59 | else |
|
59 | else | |
60 | { |
|
60 | { | |
61 | subtype = TC.serviceSubType; |
|
61 | subtype = TC.serviceSubType; | |
62 | switch(subtype) |
|
62 | switch(subtype) | |
63 | { |
|
63 | { | |
64 | case TC_SUBTYPE_RESET: |
|
64 | case TC_SUBTYPE_RESET: | |
65 | result = action_reset( &TC, queue_snd_id ); |
|
65 | result = action_reset( &TC, queue_snd_id ); | |
66 | close_action( &TC, result, queue_snd_id ); |
|
66 | close_action( &TC, result, queue_snd_id ); | |
67 | break; |
|
67 | break; | |
68 | // |
|
68 | // | |
69 | case TC_SUBTYPE_LOAD_COMM: |
|
69 | case TC_SUBTYPE_LOAD_COMM: | |
70 | result = action_load_common_par( &TC ); |
|
70 | result = action_load_common_par( &TC ); | |
71 | close_action( &TC, result, queue_snd_id ); |
|
71 | close_action( &TC, result, queue_snd_id ); | |
72 | break; |
|
72 | break; | |
73 | // |
|
73 | // | |
74 | case TC_SUBTYPE_LOAD_NORM: |
|
74 | case TC_SUBTYPE_LOAD_NORM: | |
75 | result = action_load_normal_par( &TC, queue_snd_id ); |
|
75 | result = action_load_normal_par( &TC, queue_snd_id ); | |
76 | close_action( &TC, result, queue_snd_id ); |
|
76 | close_action( &TC, result, queue_snd_id ); | |
77 | break; |
|
77 | break; | |
78 | // |
|
78 | // | |
79 | case TC_SUBTYPE_LOAD_BURST: |
|
79 | case TC_SUBTYPE_LOAD_BURST: | |
80 | result = action_load_burst_par( &TC, queue_snd_id ); |
|
80 | result = action_load_burst_par( &TC, queue_snd_id ); | |
81 | close_action( &TC, result, queue_snd_id ); |
|
81 | close_action( &TC, result, queue_snd_id ); | |
82 | break; |
|
82 | break; | |
83 | // |
|
83 | // | |
84 | case TC_SUBTYPE_LOAD_SBM1: |
|
84 | case TC_SUBTYPE_LOAD_SBM1: | |
85 | result = action_load_sbm1_par( &TC, queue_snd_id ); |
|
85 | result = action_load_sbm1_par( &TC, queue_snd_id ); | |
86 | close_action( &TC, result, queue_snd_id ); |
|
86 | close_action( &TC, result, queue_snd_id ); | |
87 | break; |
|
87 | break; | |
88 | // |
|
88 | // | |
89 | case TC_SUBTYPE_LOAD_SBM2: |
|
89 | case TC_SUBTYPE_LOAD_SBM2: | |
90 | result = action_load_sbm2_par( &TC, queue_snd_id ); |
|
90 | result = action_load_sbm2_par( &TC, queue_snd_id ); | |
91 | close_action( &TC, result, queue_snd_id ); |
|
91 | close_action( &TC, result, queue_snd_id ); | |
92 | break; |
|
92 | break; | |
93 | // |
|
93 | // | |
94 | case TC_SUBTYPE_DUMP: |
|
94 | case TC_SUBTYPE_DUMP: | |
95 | result = action_dump_par( queue_snd_id ); |
|
95 | result = action_dump_par( queue_snd_id ); | |
96 | close_action( &TC, result, queue_snd_id ); |
|
96 | close_action( &TC, result, queue_snd_id ); | |
97 | break; |
|
97 | break; | |
98 | // |
|
98 | // | |
99 | case TC_SUBTYPE_ENTER: |
|
99 | case TC_SUBTYPE_ENTER: | |
100 | result = action_enter_mode( &TC, queue_snd_id ); |
|
100 | result = action_enter_mode( &TC, queue_snd_id ); | |
101 | close_action( &TC, result, queue_snd_id ); |
|
101 | close_action( &TC, result, queue_snd_id ); | |
102 | break; |
|
102 | break; | |
103 | // |
|
103 | // | |
104 | case TC_SUBTYPE_UPDT_INFO: |
|
104 | case TC_SUBTYPE_UPDT_INFO: | |
105 | result = action_update_info( &TC, queue_snd_id ); |
|
105 | result = action_update_info( &TC, queue_snd_id ); | |
106 | close_action( &TC, result, queue_snd_id ); |
|
106 | close_action( &TC, result, queue_snd_id ); | |
107 | break; |
|
107 | break; | |
108 | // |
|
108 | // | |
109 | case TC_SUBTYPE_EN_CAL: |
|
109 | case TC_SUBTYPE_EN_CAL: | |
110 | result = action_enable_calibration( &TC, queue_snd_id ); |
|
110 | result = action_enable_calibration( &TC, queue_snd_id ); | |
111 | close_action( &TC, result, queue_snd_id ); |
|
111 | close_action( &TC, result, queue_snd_id ); | |
112 | break; |
|
112 | break; | |
113 | // |
|
113 | // | |
114 | case TC_SUBTYPE_DIS_CAL: |
|
114 | case TC_SUBTYPE_DIS_CAL: | |
115 | result = action_disable_calibration( &TC, queue_snd_id ); |
|
115 | result = action_disable_calibration( &TC, queue_snd_id ); | |
116 | close_action( &TC, result, queue_snd_id ); |
|
116 | close_action( &TC, result, queue_snd_id ); | |
117 | break; |
|
117 | break; | |
118 | // |
|
118 | // | |
119 | case TC_SUBTYPE_UPDT_TIME: |
|
119 | case TC_SUBTYPE_UPDT_TIME: | |
120 | result = action_update_time( &TC ); |
|
120 | result = action_update_time( &TC ); | |
121 | close_action( &TC, result, queue_snd_id ); |
|
121 | close_action( &TC, result, queue_snd_id ); | |
122 | break; |
|
122 | break; | |
123 | // |
|
123 | // | |
124 | default: |
|
124 | default: | |
125 | break; |
|
125 | break; | |
126 | } |
|
126 | } | |
127 | } |
|
127 | } | |
128 | } |
|
128 | } | |
129 | } |
|
129 | } | |
130 |
|
130 | |||
131 | //*********** |
|
131 | //*********** | |
132 | // TC ACTIONS |
|
132 | // TC ACTIONS | |
133 |
|
133 | |||
134 | int action_reset(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) |
|
134 | int action_reset(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) | |
135 | { |
|
135 | { | |
136 | /** This function executes specific actions when a TC_LFR_RESET TeleCommand has been received. |
|
136 | /** This function executes specific actions when a TC_LFR_RESET TeleCommand has been received. | |
137 | * |
|
137 | * | |
138 | * @param TC points to the TeleCommand packet that is being processed |
|
138 | * @param TC points to the TeleCommand packet that is being processed | |
139 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver |
|
139 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver | |
140 | * |
|
140 | * | |
141 | */ |
|
141 | */ | |
142 |
|
142 | |||
143 | send_tm_lfr_tc_exe_not_implemented( TC, queue_id ); |
|
143 | send_tm_lfr_tc_exe_not_implemented( TC, queue_id ); | |
144 | return LFR_DEFAULT; |
|
144 | return LFR_DEFAULT; | |
145 | } |
|
145 | } | |
146 |
|
146 | |||
147 | int action_enter_mode(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) |
|
147 | int action_enter_mode(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) | |
148 | { |
|
148 | { | |
149 | /** This function executes specific actions when a TC_LFR_ENTER_MODE TeleCommand has been received. |
|
149 | /** This function executes specific actions when a TC_LFR_ENTER_MODE TeleCommand has been received. | |
150 | * |
|
150 | * | |
151 | * @param TC points to the TeleCommand packet that is being processed |
|
151 | * @param TC points to the TeleCommand packet that is being processed | |
152 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver |
|
152 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver | |
153 | * |
|
153 | * | |
154 | */ |
|
154 | */ | |
155 |
|
155 | |||
156 | rtems_status_code status; |
|
156 | rtems_status_code status; | |
157 | unsigned char requestedMode; |
|
157 | unsigned char requestedMode; | |
158 |
|
158 | |||
159 | requestedMode = TC->dataAndCRC[1]; |
|
159 | requestedMode = TC->dataAndCRC[1]; | |
160 |
|
160 | |||
161 | if ( (requestedMode != LFR_MODE_STANDBY) |
|
161 | if ( (requestedMode != LFR_MODE_STANDBY) | |
162 | && (requestedMode != LFR_MODE_NORMAL) && (requestedMode != LFR_MODE_BURST) |
|
162 | && (requestedMode != LFR_MODE_NORMAL) && (requestedMode != LFR_MODE_BURST) | |
163 | && (requestedMode != LFR_MODE_SBM1) && (requestedMode != LFR_MODE_SBM2) ) |
|
163 | && (requestedMode != LFR_MODE_SBM1) && (requestedMode != LFR_MODE_SBM2) ) | |
164 | { |
|
164 | { | |
165 | status = RTEMS_UNSATISFIED; |
|
165 | status = RTEMS_UNSATISFIED; | |
166 | send_tm_lfr_tc_exe_inconsistent( TC, queue_id, BYTE_POS_CP_LFR_MODE, requestedMode ); |
|
166 | send_tm_lfr_tc_exe_inconsistent( TC, queue_id, BYTE_POS_CP_LFR_MODE, requestedMode ); | |
167 | } |
|
167 | } | |
168 | else |
|
168 | else | |
169 | { |
|
169 | { | |
170 | printf("try to enter mode %d\n", requestedMode); |
|
170 | printf("try to enter mode %d\n", requestedMode); | |
171 |
|
171 | |||
172 | #ifdef PRINT_TASK_STATISTICS |
|
172 | #ifdef PRINT_TASK_STATISTICS | |
173 | if (requestedMode != LFR_MODE_STANDBY) |
|
173 | if (requestedMode != LFR_MODE_STANDBY) | |
174 | { |
|
174 | { | |
175 | rtems_cpu_usage_reset(); |
|
175 | rtems_cpu_usage_reset(); | |
176 | maxCount = 0; |
|
176 | maxCount = 0; | |
177 | } |
|
177 | } | |
178 | #endif |
|
178 | #endif | |
179 |
|
179 | |||
180 | status = transition_validation(requestedMode); |
|
180 | status = transition_validation(requestedMode); | |
181 |
|
181 | |||
182 | if ( status == LFR_SUCCESSFUL ) { |
|
182 | if ( status == LFR_SUCCESSFUL ) { | |
183 | if ( lfrCurrentMode != LFR_MODE_STANDBY) |
|
183 | if ( lfrCurrentMode != LFR_MODE_STANDBY) | |
184 | { |
|
184 | { | |
185 | status = stop_current_mode(); |
|
185 | status = stop_current_mode(); | |
186 | } |
|
186 | } | |
187 | if (status != RTEMS_SUCCESSFUL) |
|
187 | if (status != RTEMS_SUCCESSFUL) | |
188 | { |
|
188 | { | |
189 | PRINTF("ERR *** in action_enter *** stop_current_mode\n") |
|
189 | PRINTF("ERR *** in action_enter *** stop_current_mode\n") | |
190 | } |
|
190 | } | |
191 | status = enter_mode(requestedMode, TC); |
|
191 | status = enter_mode(requestedMode, TC); | |
192 | } |
|
192 | } | |
193 | else |
|
193 | else | |
194 | { |
|
194 | { | |
195 | PRINTF("ERR *** in action_enter *** transition rejected\n") |
|
195 | PRINTF("ERR *** in action_enter *** transition rejected\n") | |
196 | send_tm_lfr_tc_exe_not_executable( TC, queue_id ); |
|
196 | send_tm_lfr_tc_exe_not_executable( TC, queue_id ); | |
197 | } |
|
197 | } | |
198 | } |
|
198 | } | |
199 |
|
199 | |||
200 | return status; |
|
200 | return status; | |
201 | } |
|
201 | } | |
202 |
|
202 | |||
203 | int action_update_info(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) |
|
203 | int action_update_info(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) | |
204 | { |
|
204 | { | |
205 | /** This function executes specific actions when a TC_LFR_UPDATE_INFO TeleCommand has been received. |
|
205 | /** This function executes specific actions when a TC_LFR_UPDATE_INFO TeleCommand has been received. | |
206 | * |
|
206 | * | |
207 | * @param TC points to the TeleCommand packet that is being processed |
|
207 | * @param TC points to the TeleCommand packet that is being processed | |
208 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver |
|
208 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver | |
209 | * |
|
209 | * | |
210 | * @return LFR directive status code: |
|
210 | * @return LFR directive status code: | |
211 | * - LFR_DEFAULT |
|
211 | * - LFR_DEFAULT | |
212 | * - LFR_SUCCESSFUL |
|
212 | * - LFR_SUCCESSFUL | |
213 | * |
|
213 | * | |
214 | */ |
|
214 | */ | |
215 |
|
215 | |||
216 | unsigned int val; |
|
216 | unsigned int val; | |
217 | int result; |
|
217 | int result; | |
218 |
|
218 | |||
219 | result = LFR_DEFAULT; |
|
219 | result = LFR_DEFAULT; | |
220 |
|
220 | |||
221 | val = housekeeping_packet.hk_lfr_update_info_tc_cnt[0] * 256 |
|
221 | val = housekeeping_packet.hk_lfr_update_info_tc_cnt[0] * 256 | |
222 | + housekeeping_packet.hk_lfr_update_info_tc_cnt[1]; |
|
222 | + housekeeping_packet.hk_lfr_update_info_tc_cnt[1]; | |
223 | val++; |
|
223 | val++; | |
224 | housekeeping_packet.hk_lfr_update_info_tc_cnt[0] = (unsigned char) (val >> 8); |
|
224 | housekeeping_packet.hk_lfr_update_info_tc_cnt[0] = (unsigned char) (val >> 8); | |
225 | housekeeping_packet.hk_lfr_update_info_tc_cnt[1] = (unsigned char) (val); |
|
225 | housekeeping_packet.hk_lfr_update_info_tc_cnt[1] = (unsigned char) (val); | |
226 |
|
226 | |||
227 | return result; |
|
227 | return result; | |
228 | } |
|
228 | } | |
229 |
|
229 | |||
230 | int action_enable_calibration(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) |
|
230 | int action_enable_calibration(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) | |
231 | { |
|
231 | { | |
232 | /** This function executes specific actions when a TC_LFR_ENABLE_CALIBRATION TeleCommand has been received. |
|
232 | /** This function executes specific actions when a TC_LFR_ENABLE_CALIBRATION TeleCommand has been received. | |
233 | * |
|
233 | * | |
234 | * @param TC points to the TeleCommand packet that is being processed |
|
234 | * @param TC points to the TeleCommand packet that is being processed | |
235 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver |
|
235 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver | |
236 | * |
|
236 | * | |
237 | */ |
|
237 | */ | |
238 |
|
238 | |||
239 | int result; |
|
239 | int result; | |
240 | unsigned char lfrMode; |
|
240 | unsigned char lfrMode; | |
241 |
|
241 | |||
242 | result = LFR_DEFAULT; |
|
242 | result = LFR_DEFAULT; | |
243 | lfrMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4; |
|
243 | lfrMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4; | |
244 |
|
244 | |||
245 | if ( (lfrMode == LFR_MODE_STANDBY) || (lfrMode == LFR_MODE_BURST) || (lfrMode == LFR_MODE_SBM2) ) { |
|
245 | if ( (lfrMode == LFR_MODE_STANDBY) || (lfrMode == LFR_MODE_BURST) || (lfrMode == LFR_MODE_SBM2) ) { | |
246 | send_tm_lfr_tc_exe_not_executable( TC, queue_id ); |
|
246 | send_tm_lfr_tc_exe_not_executable( TC, queue_id ); | |
247 | result = LFR_DEFAULT; |
|
247 | result = LFR_DEFAULT; | |
248 | } |
|
248 | } | |
249 | else { |
|
249 | else { | |
250 | send_tm_lfr_tc_exe_not_implemented( TC, queue_id ); |
|
250 | send_tm_lfr_tc_exe_not_implemented( TC, queue_id ); | |
251 | result = LFR_DEFAULT; |
|
251 | result = LFR_DEFAULT; | |
252 | } |
|
252 | } | |
253 | return result; |
|
253 | return result; | |
254 | } |
|
254 | } | |
255 |
|
255 | |||
256 | int action_disable_calibration(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) |
|
256 | int action_disable_calibration(ccsdsTelecommandPacket_t *TC, rtems_id queue_id) | |
257 | { |
|
257 | { | |
258 | /** This function executes specific actions when a TC_LFR_DISABLE_CALIBRATION TeleCommand has been received. |
|
258 | /** This function executes specific actions when a TC_LFR_DISABLE_CALIBRATION TeleCommand has been received. | |
259 | * |
|
259 | * | |
260 | * @param TC points to the TeleCommand packet that is being processed |
|
260 | * @param TC points to the TeleCommand packet that is being processed | |
261 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver |
|
261 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver | |
262 | * |
|
262 | * | |
263 | */ |
|
263 | */ | |
264 |
|
264 | |||
265 | int result; |
|
265 | int result; | |
266 | unsigned char lfrMode; |
|
266 | unsigned char lfrMode; | |
267 |
|
267 | |||
268 | result = LFR_DEFAULT; |
|
268 | result = LFR_DEFAULT; | |
269 | lfrMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4; |
|
269 | lfrMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4; | |
270 |
|
270 | |||
271 | if ( (lfrMode == LFR_MODE_STANDBY) || (lfrMode == LFR_MODE_BURST) || (lfrMode == LFR_MODE_SBM2) ) { |
|
271 | if ( (lfrMode == LFR_MODE_STANDBY) || (lfrMode == LFR_MODE_BURST) || (lfrMode == LFR_MODE_SBM2) ) { | |
272 | send_tm_lfr_tc_exe_not_executable( TC, queue_id ); |
|
272 | send_tm_lfr_tc_exe_not_executable( TC, queue_id ); | |
273 | result = LFR_DEFAULT; |
|
273 | result = LFR_DEFAULT; | |
274 | } |
|
274 | } | |
275 | else { |
|
275 | else { | |
276 | send_tm_lfr_tc_exe_not_implemented( TC, queue_id ); |
|
276 | send_tm_lfr_tc_exe_not_implemented( TC, queue_id ); | |
277 | result = LFR_DEFAULT; |
|
277 | result = LFR_DEFAULT; | |
278 | } |
|
278 | } | |
279 | return result; |
|
279 | return result; | |
280 | } |
|
280 | } | |
281 |
|
281 | |||
282 | int action_update_time(ccsdsTelecommandPacket_t *TC) |
|
282 | int action_update_time(ccsdsTelecommandPacket_t *TC) | |
283 | { |
|
283 | { | |
284 | /** This function executes specific actions when a TC_LFR_UPDATE_TIME TeleCommand has been received. |
|
284 | /** This function executes specific actions when a TC_LFR_UPDATE_TIME TeleCommand has been received. | |
285 | * |
|
285 | * | |
286 | * @param TC points to the TeleCommand packet that is being processed |
|
286 | * @param TC points to the TeleCommand packet that is being processed | |
287 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver |
|
287 | * @param queue_id is the id of the queue which handles TM transmission by the SpaceWire driver | |
288 | * |
|
288 | * | |
289 | * @return LFR_SUCCESSFUL |
|
289 | * @return LFR_SUCCESSFUL | |
290 | * |
|
290 | * | |
291 | */ |
|
291 | */ | |
292 |
|
292 | |||
293 | unsigned int val; |
|
293 | unsigned int val; | |
294 |
|
294 | |||
295 | time_management_regs->coarse_time_load = (TC->dataAndCRC[0] << 24) |
|
295 | time_management_regs->coarse_time_load = (TC->dataAndCRC[0] << 24) | |
296 | + (TC->dataAndCRC[1] << 16) |
|
296 | + (TC->dataAndCRC[1] << 16) | |
297 | + (TC->dataAndCRC[2] << 8) |
|
297 | + (TC->dataAndCRC[2] << 8) | |
298 | + TC->dataAndCRC[3]; |
|
298 | + TC->dataAndCRC[3]; | |
299 | val = housekeeping_packet.hk_lfr_update_time_tc_cnt[0] * 256 |
|
299 | val = housekeeping_packet.hk_lfr_update_time_tc_cnt[0] * 256 | |
300 | + housekeeping_packet.hk_lfr_update_time_tc_cnt[1]; |
|
300 | + housekeeping_packet.hk_lfr_update_time_tc_cnt[1]; | |
301 | val++; |
|
301 | val++; | |
302 | housekeeping_packet.hk_lfr_update_time_tc_cnt[0] = (unsigned char) (val >> 8); |
|
302 | housekeeping_packet.hk_lfr_update_time_tc_cnt[0] = (unsigned char) (val >> 8); | |
303 | housekeeping_packet.hk_lfr_update_time_tc_cnt[1] = (unsigned char) (val); |
|
303 | housekeeping_packet.hk_lfr_update_time_tc_cnt[1] = (unsigned char) (val); | |
304 | time_management_regs->ctrl = time_management_regs->ctrl | 1; |
|
304 | time_management_regs->ctrl = time_management_regs->ctrl | 1; | |
305 |
|
305 | |||
306 | return LFR_SUCCESSFUL; |
|
306 | return LFR_SUCCESSFUL; | |
307 | } |
|
307 | } | |
308 |
|
308 | |||
309 | //******************* |
|
309 | //******************* | |
310 | // ENTERING THE MODES |
|
310 | // ENTERING THE MODES | |
311 |
|
311 | |||
312 | int transition_validation(unsigned char requestedMode) |
|
312 | int transition_validation(unsigned char requestedMode) | |
313 | { |
|
313 | { | |
314 | int status; |
|
314 | int status; | |
315 |
|
315 | |||
316 | switch (requestedMode) |
|
316 | switch (requestedMode) | |
317 | { |
|
317 | { | |
318 | case LFR_MODE_STANDBY: |
|
318 | case LFR_MODE_STANDBY: | |
319 | if ( lfrCurrentMode == LFR_MODE_STANDBY ) { |
|
319 | if ( lfrCurrentMode == LFR_MODE_STANDBY ) { | |
320 | status = LFR_DEFAULT; |
|
320 | status = LFR_DEFAULT; | |
321 | } |
|
321 | } | |
322 | else |
|
322 | else | |
323 | { |
|
323 | { | |
324 | status = LFR_SUCCESSFUL; |
|
324 | status = LFR_SUCCESSFUL; | |
325 | } |
|
325 | } | |
326 | break; |
|
326 | break; | |
327 | case LFR_MODE_NORMAL: |
|
327 | case LFR_MODE_NORMAL: | |
328 | if ( lfrCurrentMode == LFR_MODE_NORMAL ) { |
|
328 | if ( lfrCurrentMode == LFR_MODE_NORMAL ) { | |
329 | status = LFR_DEFAULT; |
|
329 | status = LFR_DEFAULT; | |
330 | } |
|
330 | } | |
331 | else { |
|
331 | else { | |
332 | status = LFR_SUCCESSFUL; |
|
332 | status = LFR_SUCCESSFUL; | |
333 | } |
|
333 | } | |
334 | break; |
|
334 | break; | |
335 | case LFR_MODE_BURST: |
|
335 | case LFR_MODE_BURST: | |
336 | if ( lfrCurrentMode == LFR_MODE_BURST ) { |
|
336 | if ( lfrCurrentMode == LFR_MODE_BURST ) { | |
337 | status = LFR_DEFAULT; |
|
337 | status = LFR_DEFAULT; | |
338 | } |
|
338 | } | |
339 | else { |
|
339 | else { | |
340 | status = LFR_SUCCESSFUL; |
|
340 | status = LFR_SUCCESSFUL; | |
341 | } |
|
341 | } | |
342 | break; |
|
342 | break; | |
343 | case LFR_MODE_SBM1: |
|
343 | case LFR_MODE_SBM1: | |
344 | if ( lfrCurrentMode == LFR_MODE_SBM1 ) { |
|
344 | if ( lfrCurrentMode == LFR_MODE_SBM1 ) { | |
345 | status = LFR_DEFAULT; |
|
345 | status = LFR_DEFAULT; | |
346 | } |
|
346 | } | |
347 | else { |
|
347 | else { | |
348 | status = LFR_SUCCESSFUL; |
|
348 | status = LFR_SUCCESSFUL; | |
349 | } |
|
349 | } | |
350 | break; |
|
350 | break; | |
351 | case LFR_MODE_SBM2: |
|
351 | case LFR_MODE_SBM2: | |
352 | if ( lfrCurrentMode == LFR_MODE_SBM2 ) { |
|
352 | if ( lfrCurrentMode == LFR_MODE_SBM2 ) { | |
353 | status = LFR_DEFAULT; |
|
353 | status = LFR_DEFAULT; | |
354 | } |
|
354 | } | |
355 | else { |
|
355 | else { | |
356 | status = LFR_SUCCESSFUL; |
|
356 | status = LFR_SUCCESSFUL; | |
357 | } |
|
357 | } | |
358 | break; |
|
358 | break; | |
359 | default: |
|
359 | default: | |
360 | status = LFR_DEFAULT; |
|
360 | status = LFR_DEFAULT; | |
361 | break; |
|
361 | break; | |
362 | } |
|
362 | } | |
363 |
|
363 | |||
364 | return status; |
|
364 | return status; | |
365 | } |
|
365 | } | |
366 |
|
366 | |||
367 | int stop_current_mode() |
|
367 | int stop_current_mode() | |
368 | { |
|
368 | { | |
369 | /** This function stops the current mode by masking interrupt lines and suspending science tasks. |
|
369 | /** This function stops the current mode by masking interrupt lines and suspending science tasks. | |
370 | * |
|
370 | * | |
371 | * @return RTEMS directive status codes: |
|
371 | * @return RTEMS directive status codes: | |
372 | * - RTEMS_SUCCESSFUL - task restarted successfully |
|
372 | * - RTEMS_SUCCESSFUL - task restarted successfully | |
373 | * - RTEMS_INVALID_ID - task id invalid |
|
373 | * - RTEMS_INVALID_ID - task id invalid | |
374 | * - RTEMS_ALREADY_SUSPENDED - task already suspended |
|
374 | * - RTEMS_ALREADY_SUSPENDED - task already suspended | |
375 | * |
|
375 | * | |
376 | */ |
|
376 | */ | |
377 |
|
377 | |||
378 | rtems_status_code status; |
|
378 | rtems_status_code status; | |
379 |
|
379 | |||
380 | status = RTEMS_SUCCESSFUL; |
|
380 | status = RTEMS_SUCCESSFUL; | |
381 |
|
381 | |||
382 | #ifdef GSA |
|
382 | #ifdef GSA | |
383 | LEON_Mask_interrupt( IRQ_WF ); // mask waveform interrupt (coming from the timer VHDL IP) |
|
383 | LEON_Mask_interrupt( IRQ_WF ); // mask waveform interrupt (coming from the timer VHDL IP) | |
384 | LEON_Clear_interrupt( IRQ_WF ); // clear waveform interrupt (coming from the timer VHDL IP) |
|
384 | LEON_Clear_interrupt( IRQ_WF ); // clear waveform interrupt (coming from the timer VHDL IP) | |
385 | timer_stop( (gptimer_regs_t*) REGS_ADDR_GPTIMER, TIMER_WF_SIMULATOR ); |
|
385 | timer_stop( (gptimer_regs_t*) REGS_ADDR_GPTIMER, TIMER_WF_SIMULATOR ); | |
386 | #else |
|
386 | #else | |
387 | // mask interruptions |
|
387 | // mask interruptions | |
388 | LEON_Mask_interrupt( IRQ_WAVEFORM_PICKER ); // mask waveform picker interrupt |
|
388 | LEON_Mask_interrupt( IRQ_WAVEFORM_PICKER ); // mask waveform picker interrupt | |
389 | LEON_Mask_interrupt( IRQ_SPECTRAL_MATRIX ); // mask spectral matrix interrupt |
|
389 | LEON_Mask_interrupt( IRQ_SPECTRAL_MATRIX ); // mask spectral matrix interrupt | |
390 | // reset registers |
|
390 | // reset registers | |
391 | reset_wfp_run_burst_enable(); // reset run, burst and enable bits, [r b2 b1 b0 e3 e2 e1 e0] |
|
391 | reset_wfp_run_burst_enable(); // reset run, burst and enable bits, [r b2 b1 b0 e3 e2 e1 e0] | |
392 | reset_wfp_status(); // reset all the status bits |
|
392 | reset_wfp_status(); // reset all the status bits | |
393 | // creal interruptions |
|
393 | // creal interruptions | |
394 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); // clear waveform picker interrupt |
|
394 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); // clear waveform picker interrupt | |
395 | LEON_Clear_interrupt( IRQ_SPECTRAL_MATRIX ); // clear spectarl matrix interrupt |
|
395 | LEON_Clear_interrupt( IRQ_SPECTRAL_MATRIX ); // clear spectarl matrix interrupt | |
396 | #endif |
|
396 | #endif | |
397 | //********************** |
|
397 | //********************** | |
398 | // suspend several tasks |
|
398 | // suspend several tasks | |
399 | if (lfrCurrentMode != LFR_MODE_STANDBY) { |
|
399 | if (lfrCurrentMode != LFR_MODE_STANDBY) { | |
400 | status = suspend_science_tasks(); |
|
400 | status = suspend_science_tasks(); | |
401 | } |
|
401 | } | |
402 |
|
402 | |||
403 | if (status != RTEMS_SUCCESSFUL) |
|
403 | if (status != RTEMS_SUCCESSFUL) | |
404 | { |
|
404 | { | |
405 | PRINTF1("in stop_current_mode *** in suspend_science_tasks *** ERR code: %d\n", status) |
|
405 | PRINTF1("in stop_current_mode *** in suspend_science_tasks *** ERR code: %d\n", status) | |
406 | } |
|
406 | } | |
407 |
|
407 | |||
408 | return status; |
|
408 | return status; | |
409 | } |
|
409 | } | |
410 |
|
410 | |||
411 | int enter_mode(unsigned char mode, ccsdsTelecommandPacket_t *TC ) |
|
411 | int enter_mode(unsigned char mode, ccsdsTelecommandPacket_t *TC ) | |
412 | { |
|
412 | { | |
413 | rtems_status_code status; |
|
413 | rtems_status_code status; | |
414 |
|
414 | |||
415 | status = RTEMS_UNSATISFIED; |
|
415 | status = RTEMS_UNSATISFIED; | |
416 |
|
416 | |||
417 | housekeeping_packet.lfr_status_word[0] = (unsigned char) ((mode << 4) + 0x0d); |
|
417 | housekeeping_packet.lfr_status_word[0] = (unsigned char) ((mode << 4) + 0x0d); | |
418 | updateLFRCurrentMode(); |
|
418 | updateLFRCurrentMode(); | |
419 |
|
419 | |||
420 | switch(mode){ |
|
420 | switch(mode){ | |
421 | case LFR_MODE_STANDBY: |
|
421 | case LFR_MODE_STANDBY: | |
422 | status = enter_standby_mode( ); |
|
422 | status = enter_standby_mode( ); | |
423 | break; |
|
423 | break; | |
424 | case LFR_MODE_NORMAL: |
|
424 | case LFR_MODE_NORMAL: | |
425 | status = enter_normal_mode( ); |
|
425 | status = enter_normal_mode( ); | |
426 | break; |
|
426 | break; | |
427 | case LFR_MODE_BURST: |
|
427 | case LFR_MODE_BURST: | |
428 | status = enter_burst_mode( ); |
|
428 | status = enter_burst_mode( ); | |
429 | break; |
|
429 | break; | |
430 | case LFR_MODE_SBM1: |
|
430 | case LFR_MODE_SBM1: | |
431 | status = enter_sbm1_mode( ); |
|
431 | status = enter_sbm1_mode( ); | |
432 | break; |
|
432 | break; | |
433 | case LFR_MODE_SBM2: |
|
433 | case LFR_MODE_SBM2: | |
434 | status = enter_sbm2_mode( ); |
|
434 | status = enter_sbm2_mode( ); | |
435 | break; |
|
435 | break; | |
436 | default: |
|
436 | default: | |
437 | status = RTEMS_UNSATISFIED; |
|
437 | status = RTEMS_UNSATISFIED; | |
438 | } |
|
438 | } | |
439 |
|
439 | |||
440 | if (status != RTEMS_SUCCESSFUL) |
|
440 | if (status != RTEMS_SUCCESSFUL) | |
441 | { |
|
441 | { | |
442 | PRINTF("in enter_mode *** ERR\n") |
|
442 | PRINTF("in enter_mode *** ERR\n") | |
443 | status = RTEMS_UNSATISFIED; |
|
443 | status = RTEMS_UNSATISFIED; | |
444 | } |
|
444 | } | |
445 |
|
445 | |||
446 | return status; |
|
446 | return status; | |
447 | } |
|
447 | } | |
448 |
|
448 | |||
449 | int enter_standby_mode() |
|
449 | int enter_standby_mode() | |
450 | { |
|
450 | { | |
451 | PRINTF1("maxCount = %d\n", maxCount) |
|
451 | PRINTF1("maxCount = %d\n", maxCount) | |
452 |
|
452 | |||
453 | #ifdef PRINT_TASK_STATISTICS |
|
453 | #ifdef PRINT_TASK_STATISTICS | |
454 | rtems_cpu_usage_report(); |
|
454 | rtems_cpu_usage_report(); | |
455 | #endif |
|
455 | #endif | |
456 |
|
456 | |||
457 | #ifdef PRINT_STACK_REPORT |
|
457 | #ifdef PRINT_STACK_REPORT | |
458 | rtems_stack_checker_report_usage(); |
|
458 | rtems_stack_checker_report_usage(); | |
459 | #endif |
|
459 | #endif | |
460 |
|
460 | |||
461 | return LFR_SUCCESSFUL; |
|
461 | return LFR_SUCCESSFUL; | |
462 | } |
|
462 | } | |
463 |
|
463 | |||
464 | int enter_normal_mode() |
|
464 | int enter_normal_mode() | |
465 | { |
|
465 | { | |
466 | rtems_status_code status; |
|
466 | rtems_status_code status; | |
467 | int startDate; |
|
467 | int startDate; | |
468 |
|
468 | |||
469 | status = restart_science_tasks(); |
|
469 | status = restart_science_tasks(); | |
470 |
|
470 | |||
471 | #ifdef GSA |
|
471 | #ifdef GSA | |
472 | timer_start( (gptimer_regs_t*) REGS_ADDR_GPTIMER, TIMER_WF_SIMULATOR ); |
|
472 | timer_start( (gptimer_regs_t*) REGS_ADDR_GPTIMER, TIMER_WF_SIMULATOR ); | |
473 | timer_start( (gptimer_regs_t*) REGS_ADDR_GPTIMER, TIMER_SM_SIMULATOR ); |
|
473 | timer_start( (gptimer_regs_t*) REGS_ADDR_GPTIMER, TIMER_SM_SIMULATOR ); | |
474 | LEON_Clear_interrupt( IRQ_WF ); |
|
474 | LEON_Clear_interrupt( IRQ_WF ); | |
475 | LEON_Unmask_interrupt( IRQ_WF ); |
|
475 | LEON_Unmask_interrupt( IRQ_WF ); | |
476 | // |
|
476 | // | |
477 | set_local_nb_interrupt_f0_MAX(); |
|
477 | set_local_nb_interrupt_f0_MAX(); | |
478 | LEON_Clear_interrupt( IRQ_SM ); // the IRQ_SM seems to be incompatible with the IRQ_WF on the xilinx board |
|
478 | LEON_Clear_interrupt( IRQ_SM ); // the IRQ_SM seems to be incompatible with the IRQ_WF on the xilinx board | |
479 | LEON_Unmask_interrupt( IRQ_SM ); |
|
479 | LEON_Unmask_interrupt( IRQ_SM ); | |
480 | #else |
|
480 | #else | |
481 | //**************** |
|
481 | //**************** | |
482 | // waveform picker |
|
482 | // waveform picker | |
483 | reset_new_waveform_picker_regs(); |
|
483 | reset_new_waveform_picker_regs(); | |
484 | set_wfp_burst_enable_register(LFR_MODE_NORMAL); |
|
484 | set_wfp_burst_enable_register( LFR_MODE_NORMAL ); | |
485 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); |
|
485 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); | |
486 | LEON_Unmask_interrupt( IRQ_WAVEFORM_PICKER ); |
|
486 | LEON_Unmask_interrupt( IRQ_WAVEFORM_PICKER ); | |
487 | startDate = time_management_regs->coarse_time + 2; |
|
487 | startDate = time_management_regs->coarse_time + 2; | |
|
488 | new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x80; // [1000 0000] | |||
488 | new_waveform_picker_regs->start_date = startDate; |
|
489 | new_waveform_picker_regs->start_date = startDate; | |
489 | new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x80; // [1000 0000] |
|
|||
490 | //**************** |
|
490 | //**************** | |
491 | // spectral matrix |
|
491 | // spectral matrix | |
492 | #endif |
|
492 | #endif | |
493 |
|
493 | |||
494 | return status; |
|
494 | return status; | |
495 | } |
|
495 | } | |
496 |
|
496 | |||
497 | int enter_burst_mode() |
|
497 | int enter_burst_mode() | |
498 | { |
|
498 | { | |
499 | rtems_status_code status; |
|
499 | rtems_status_code status; | |
500 |
|
500 | |||
501 | status = restart_science_tasks(); |
|
501 | status = restart_science_tasks(); | |
502 |
|
502 | |||
503 | #ifdef GSA |
|
503 | #ifdef GSA | |
504 | LEON_Unmask_interrupt( IRQ_SM ); |
|
504 | LEON_Unmask_interrupt( IRQ_SM ); | |
505 | #else |
|
505 | #else | |
506 | reset_new_waveform_picker_regs(); |
|
506 | reset_new_waveform_picker_regs(); | |
507 | set_wfp_burst_enable_register(LFR_MODE_BURST); |
|
507 | set_wfp_burst_enable_register(LFR_MODE_BURST); | |
508 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); |
|
508 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); | |
509 | LEON_Unmask_interrupt( IRQ_WAVEFORM_PICKER ); |
|
509 | LEON_Unmask_interrupt( IRQ_WAVEFORM_PICKER ); | |
510 | #endif |
|
510 | #endif | |
511 |
|
511 | |||
512 | return status; |
|
512 | return status; | |
513 | } |
|
513 | } | |
514 |
|
514 | |||
515 | int enter_sbm1_mode() |
|
515 | int enter_sbm1_mode() | |
516 | { |
|
516 | { | |
517 | rtems_status_code status; |
|
517 | rtems_status_code status; | |
518 |
|
518 | |||
519 | status = restart_science_tasks(); |
|
519 | status = restart_science_tasks(); | |
520 |
|
520 | |||
521 | set_local_sbm1_nb_cwf_max(); |
|
521 | set_local_sbm1_nb_cwf_max(); | |
522 |
|
522 | |||
523 | reset_local_sbm1_nb_cwf_sent(); |
|
523 | reset_local_sbm1_nb_cwf_sent(); | |
524 |
|
524 | |||
525 | #ifdef GSA |
|
525 | #ifdef GSA | |
526 | LEON_Unmask_interrupt( IRQ_SM ); |
|
526 | LEON_Unmask_interrupt( IRQ_SM ); | |
527 | #else |
|
527 | #else | |
528 | reset_new_waveform_picker_regs(); |
|
528 | reset_new_waveform_picker_regs(); | |
529 | set_wfp_burst_enable_register(LFR_MODE_SBM1); |
|
529 | set_wfp_burst_enable_register(LFR_MODE_SBM1); | |
530 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); |
|
530 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); | |
531 | LEON_Unmask_interrupt( IRQ_WAVEFORM_PICKER ); |
|
531 | LEON_Unmask_interrupt( IRQ_WAVEFORM_PICKER ); | |
532 | // SM simulation |
|
532 | // SM simulation | |
533 | // timer_start( (gptimer_regs_t*) REGS_ADDR_GPTIMER, TIMER_SM_SIMULATOR ); |
|
533 | // timer_start( (gptimer_regs_t*) REGS_ADDR_GPTIMER, TIMER_SM_SIMULATOR ); | |
534 | // LEON_Clear_interrupt( IRQ_SM ); // the IRQ_SM seems to be incompatible with the IRQ_WF on the xilinx board |
|
534 | // LEON_Clear_interrupt( IRQ_SM ); // the IRQ_SM seems to be incompatible with the IRQ_WF on the xilinx board | |
535 | // LEON_Unmask_interrupt( IRQ_SM ); |
|
535 | // LEON_Unmask_interrupt( IRQ_SM ); | |
536 | #endif |
|
536 | #endif | |
537 |
|
537 | |||
538 | return status; |
|
538 | return status; | |
539 | } |
|
539 | } | |
540 |
|
540 | |||
541 | int enter_sbm2_mode() |
|
541 | int enter_sbm2_mode() | |
542 | { |
|
542 | { | |
543 | rtems_status_code status; |
|
543 | rtems_status_code status; | |
544 |
|
544 | |||
545 | status = restart_science_tasks(); |
|
545 | status = restart_science_tasks(); | |
546 |
|
546 | |||
547 | set_local_sbm2_nb_cwf_max(); |
|
547 | set_local_sbm2_nb_cwf_max(); | |
548 |
|
548 | |||
549 | reset_local_sbm2_nb_cwf_sent(); |
|
549 | reset_local_sbm2_nb_cwf_sent(); | |
550 |
|
550 | |||
551 | #ifdef GSA |
|
551 | #ifdef GSA | |
552 | LEON_Unmask_interrupt( IRQ_SM ); |
|
552 | LEON_Unmask_interrupt( IRQ_SM ); | |
553 | #else |
|
553 | #else | |
554 | reset_new_waveform_picker_regs(); |
|
554 | reset_new_waveform_picker_regs(); | |
555 | set_wfp_burst_enable_register(LFR_MODE_SBM2); |
|
555 | set_wfp_burst_enable_register(LFR_MODE_SBM2); | |
556 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); |
|
556 | LEON_Clear_interrupt( IRQ_WAVEFORM_PICKER ); | |
557 | LEON_Unmask_interrupt( IRQ_WAVEFORM_PICKER ); |
|
557 | LEON_Unmask_interrupt( IRQ_WAVEFORM_PICKER ); | |
558 | #endif |
|
558 | #endif | |
559 |
|
559 | |||
560 | return status; |
|
560 | return status; | |
561 | } |
|
561 | } | |
562 |
|
562 | |||
563 | int restart_science_tasks() |
|
563 | int restart_science_tasks() | |
564 | { |
|
564 | { | |
565 | rtems_status_code status[6]; |
|
565 | rtems_status_code status[6]; | |
566 | rtems_status_code ret; |
|
566 | rtems_status_code ret; | |
567 |
|
567 | |||
568 | ret = RTEMS_SUCCESSFUL; |
|
568 | ret = RTEMS_SUCCESSFUL; | |
569 |
|
569 | |||
570 | status[0] = rtems_task_restart( Task_id[TASKID_AVF0], 1 ); |
|
570 | status[0] = rtems_task_restart( Task_id[TASKID_AVF0], 1 ); | |
571 | if (status[0] != RTEMS_SUCCESSFUL) |
|
571 | if (status[0] != RTEMS_SUCCESSFUL) | |
572 | { |
|
572 | { | |
573 | PRINTF1("in restart_science_task *** 0 ERR %d\n", status[0]) |
|
573 | PRINTF1("in restart_science_task *** 0 ERR %d\n", status[0]) | |
574 | } |
|
574 | } | |
575 |
|
575 | |||
576 | status[1] = rtems_task_restart( Task_id[TASKID_BPF0],1 ); |
|
576 | status[1] = rtems_task_restart( Task_id[TASKID_BPF0],1 ); | |
577 | if (status[1] != RTEMS_SUCCESSFUL) |
|
577 | if (status[1] != RTEMS_SUCCESSFUL) | |
578 | { |
|
578 | { | |
579 | PRINTF1("in restart_science_task *** 1 ERR %d\n", status[1]) |
|
579 | PRINTF1("in restart_science_task *** 1 ERR %d\n", status[1]) | |
580 | } |
|
580 | } | |
581 |
|
581 | |||
582 | status[2] = rtems_task_restart( Task_id[TASKID_WFRM],1 ); |
|
582 | status[2] = rtems_task_restart( Task_id[TASKID_WFRM],1 ); | |
583 | if (status[2] != RTEMS_SUCCESSFUL) |
|
583 | if (status[2] != RTEMS_SUCCESSFUL) | |
584 | { |
|
584 | { | |
585 | PRINTF1("in restart_science_task *** 2 ERR %d\n", status[2]) |
|
585 | PRINTF1("in restart_science_task *** 2 ERR %d\n", status[2]) | |
586 | } |
|
586 | } | |
587 |
|
587 | |||
588 | status[3] = rtems_task_restart( Task_id[TASKID_CWF3],1 ); |
|
588 | status[3] = rtems_task_restart( Task_id[TASKID_CWF3],1 ); | |
589 | if (status[3] != RTEMS_SUCCESSFUL) |
|
589 | if (status[3] != RTEMS_SUCCESSFUL) | |
590 | { |
|
590 | { | |
591 | PRINTF1("in restart_science_task *** 3 ERR %d\n", status[3]) |
|
591 | PRINTF1("in restart_science_task *** 3 ERR %d\n", status[3]) | |
592 | } |
|
592 | } | |
593 |
|
593 | |||
594 | status[4] = rtems_task_restart( Task_id[TASKID_CWF2],1 ); |
|
594 | status[4] = rtems_task_restart( Task_id[TASKID_CWF2],1 ); | |
595 | if (status[4] != RTEMS_SUCCESSFUL) |
|
595 | if (status[4] != RTEMS_SUCCESSFUL) | |
596 | { |
|
596 | { | |
597 | PRINTF1("in restart_science_task *** 4 ERR %d\n", status[4]) |
|
597 | PRINTF1("in restart_science_task *** 4 ERR %d\n", status[4]) | |
598 | } |
|
598 | } | |
599 |
|
599 | |||
600 | status[5] = rtems_task_restart( Task_id[TASKID_CWF1],1 ); |
|
600 | status[5] = rtems_task_restart( Task_id[TASKID_CWF1],1 ); | |
601 | if (status[5] != RTEMS_SUCCESSFUL) |
|
601 | if (status[5] != RTEMS_SUCCESSFUL) | |
602 | { |
|
602 | { | |
603 | PRINTF1("in restart_science_task *** 5 ERR %d\n", status[5]) |
|
603 | PRINTF1("in restart_science_task *** 5 ERR %d\n", status[5]) | |
604 | } |
|
604 | } | |
605 |
|
605 | |||
606 | if ( (status[0] != RTEMS_SUCCESSFUL) || (status[1] != RTEMS_SUCCESSFUL) || (status[2] != RTEMS_SUCCESSFUL) || |
|
606 | if ( (status[0] != RTEMS_SUCCESSFUL) || (status[1] != RTEMS_SUCCESSFUL) || (status[2] != RTEMS_SUCCESSFUL) || | |
607 | (status[3] != RTEMS_SUCCESSFUL) || (status[4] != RTEMS_SUCCESSFUL) || (status[5] != RTEMS_SUCCESSFUL) ) |
|
607 | (status[3] != RTEMS_SUCCESSFUL) || (status[4] != RTEMS_SUCCESSFUL) || (status[5] != RTEMS_SUCCESSFUL) ) | |
608 | { |
|
608 | { | |
609 | ret = RTEMS_UNSATISFIED; |
|
609 | ret = RTEMS_UNSATISFIED; | |
610 | } |
|
610 | } | |
611 |
|
611 | |||
612 | return ret; |
|
612 | return ret; | |
613 | } |
|
613 | } | |
614 |
|
614 | |||
615 | int suspend_science_tasks() |
|
615 | int suspend_science_tasks() | |
616 | { |
|
616 | { | |
617 | /** This function suspends the science tasks. |
|
617 | /** This function suspends the science tasks. | |
618 | * |
|
618 | * | |
619 | * @return RTEMS directive status codes: |
|
619 | * @return RTEMS directive status codes: | |
620 | * - RTEMS_SUCCESSFUL - task restarted successfully |
|
620 | * - RTEMS_SUCCESSFUL - task restarted successfully | |
621 | * - RTEMS_INVALID_ID - task id invalid |
|
621 | * - RTEMS_INVALID_ID - task id invalid | |
622 | * - RTEMS_ALREADY_SUSPENDED - task already suspended |
|
622 | * - RTEMS_ALREADY_SUSPENDED - task already suspended | |
623 | * |
|
623 | * | |
624 | */ |
|
624 | */ | |
625 |
|
625 | |||
626 | rtems_status_code status; |
|
626 | rtems_status_code status; | |
627 |
|
627 | |||
628 | status = rtems_task_suspend( Task_id[TASKID_AVF0] ); |
|
628 | status = rtems_task_suspend( Task_id[TASKID_AVF0] ); | |
629 | if (status != RTEMS_SUCCESSFUL) |
|
629 | if (status != RTEMS_SUCCESSFUL) | |
630 | { |
|
630 | { | |
631 | PRINTF1("in suspend_science_task *** AVF0 ERR %d\n", status) |
|
631 | PRINTF1("in suspend_science_task *** AVF0 ERR %d\n", status) | |
632 | } |
|
632 | } | |
633 |
|
633 | |||
634 | if (status == RTEMS_SUCCESSFUL) // suspend BPF0 |
|
634 | if (status == RTEMS_SUCCESSFUL) // suspend BPF0 | |
635 | { |
|
635 | { | |
636 | status = rtems_task_suspend( Task_id[TASKID_BPF0] ); |
|
636 | status = rtems_task_suspend( Task_id[TASKID_BPF0] ); | |
637 | if (status != RTEMS_SUCCESSFUL) |
|
637 | if (status != RTEMS_SUCCESSFUL) | |
638 | { |
|
638 | { | |
639 | PRINTF1("in suspend_science_task *** BPF0 ERR %d\n", status) |
|
639 | PRINTF1("in suspend_science_task *** BPF0 ERR %d\n", status) | |
640 | } |
|
640 | } | |
641 | } |
|
641 | } | |
642 |
|
642 | |||
643 | if (status == RTEMS_SUCCESSFUL) // suspend WFRM |
|
643 | if (status == RTEMS_SUCCESSFUL) // suspend WFRM | |
644 | { |
|
644 | { | |
645 | status = rtems_task_suspend( Task_id[TASKID_WFRM] ); |
|
645 | status = rtems_task_suspend( Task_id[TASKID_WFRM] ); | |
646 | if (status != RTEMS_SUCCESSFUL) |
|
646 | if (status != RTEMS_SUCCESSFUL) | |
647 | { |
|
647 | { | |
648 | PRINTF1("in suspend_science_task *** WFRM ERR %d\n", status) |
|
648 | PRINTF1("in suspend_science_task *** WFRM ERR %d\n", status) | |
649 | } |
|
649 | } | |
650 | } |
|
650 | } | |
651 |
|
651 | |||
652 | if (status == RTEMS_SUCCESSFUL) // suspend CWF3 |
|
652 | if (status == RTEMS_SUCCESSFUL) // suspend CWF3 | |
653 | { |
|
653 | { | |
654 | status = rtems_task_suspend( Task_id[TASKID_CWF3] ); |
|
654 | status = rtems_task_suspend( Task_id[TASKID_CWF3] ); | |
655 | if (status != RTEMS_SUCCESSFUL) |
|
655 | if (status != RTEMS_SUCCESSFUL) | |
656 | { |
|
656 | { | |
657 | PRINTF1("in suspend_science_task *** CWF3 ERR %d\n", status) |
|
657 | PRINTF1("in suspend_science_task *** CWF3 ERR %d\n", status) | |
658 | } |
|
658 | } | |
659 | } |
|
659 | } | |
660 |
|
660 | |||
661 | if (status == RTEMS_SUCCESSFUL) // suspend CWF2 |
|
661 | if (status == RTEMS_SUCCESSFUL) // suspend CWF2 | |
662 | { |
|
662 | { | |
663 | status = rtems_task_suspend( Task_id[TASKID_CWF2] ); |
|
663 | status = rtems_task_suspend( Task_id[TASKID_CWF2] ); | |
664 | if (status != RTEMS_SUCCESSFUL) |
|
664 | if (status != RTEMS_SUCCESSFUL) | |
665 | { |
|
665 | { | |
666 | PRINTF1("in suspend_science_task *** CWF2 ERR %d\n", status) |
|
666 | PRINTF1("in suspend_science_task *** CWF2 ERR %d\n", status) | |
667 | } |
|
667 | } | |
668 | } |
|
668 | } | |
669 |
|
669 | |||
670 | if (status == RTEMS_SUCCESSFUL) // suspend CWF1 |
|
670 | if (status == RTEMS_SUCCESSFUL) // suspend CWF1 | |
671 | { |
|
671 | { | |
672 | status = rtems_task_suspend( Task_id[TASKID_CWF1] ); |
|
672 | status = rtems_task_suspend( Task_id[TASKID_CWF1] ); | |
673 | if (status != RTEMS_SUCCESSFUL) |
|
673 | if (status != RTEMS_SUCCESSFUL) | |
674 | { |
|
674 | { | |
675 | PRINTF1("in suspend_science_task *** CWF1 ERR %d\n", status) |
|
675 | PRINTF1("in suspend_science_task *** CWF1 ERR %d\n", status) | |
676 | } |
|
676 | } | |
677 | } |
|
677 | } | |
678 |
|
678 | |||
679 | return status; |
|
679 | return status; | |
680 | } |
|
680 | } | |
681 |
|
681 | |||
682 | //**************** |
|
682 | //**************** | |
683 | // CLOSING ACTIONS |
|
683 | // CLOSING ACTIONS | |
684 | void update_last_TC_exe(ccsdsTelecommandPacket_t *TC) |
|
684 | void update_last_TC_exe(ccsdsTelecommandPacket_t *TC) | |
685 | { |
|
685 | { | |
686 | housekeeping_packet.hk_lfr_last_exe_tc_id[0] = TC->packetID[0]; |
|
686 | housekeeping_packet.hk_lfr_last_exe_tc_id[0] = TC->packetID[0]; | |
687 | housekeeping_packet.hk_lfr_last_exe_tc_id[1] = TC->packetID[1]; |
|
687 | housekeeping_packet.hk_lfr_last_exe_tc_id[1] = TC->packetID[1]; | |
688 | housekeeping_packet.hk_lfr_last_exe_tc_type[0] = 0x00; |
|
688 | housekeeping_packet.hk_lfr_last_exe_tc_type[0] = 0x00; | |
689 | housekeeping_packet.hk_lfr_last_exe_tc_type[1] = TC->serviceType; |
|
689 | housekeeping_packet.hk_lfr_last_exe_tc_type[1] = TC->serviceType; | |
690 | housekeeping_packet.hk_lfr_last_exe_tc_subtype[0] = 0x00; |
|
690 | housekeeping_packet.hk_lfr_last_exe_tc_subtype[0] = 0x00; | |
691 | housekeeping_packet.hk_lfr_last_exe_tc_subtype[1] = TC->serviceSubType; |
|
691 | housekeeping_packet.hk_lfr_last_exe_tc_subtype[1] = TC->serviceSubType; | |
692 | housekeeping_packet.hk_lfr_last_exe_tc_time[0] = (unsigned char) (time_management_regs->coarse_time>>24); |
|
692 | housekeeping_packet.hk_lfr_last_exe_tc_time[0] = (unsigned char) (time_management_regs->coarse_time>>24); | |
693 | housekeeping_packet.hk_lfr_last_exe_tc_time[1] = (unsigned char) (time_management_regs->coarse_time>>16); |
|
693 | housekeeping_packet.hk_lfr_last_exe_tc_time[1] = (unsigned char) (time_management_regs->coarse_time>>16); | |
694 | housekeeping_packet.hk_lfr_last_exe_tc_time[2] = (unsigned char) (time_management_regs->coarse_time>>8); |
|
694 | housekeeping_packet.hk_lfr_last_exe_tc_time[2] = (unsigned char) (time_management_regs->coarse_time>>8); | |
695 | housekeeping_packet.hk_lfr_last_exe_tc_time[3] = (unsigned char) (time_management_regs->coarse_time); |
|
695 | housekeeping_packet.hk_lfr_last_exe_tc_time[3] = (unsigned char) (time_management_regs->coarse_time); | |
696 | housekeeping_packet.hk_lfr_last_exe_tc_time[4] = (unsigned char) (time_management_regs->fine_time>>8); |
|
696 | housekeeping_packet.hk_lfr_last_exe_tc_time[4] = (unsigned char) (time_management_regs->fine_time>>8); | |
697 | housekeeping_packet.hk_lfr_last_exe_tc_time[5] = (unsigned char) (time_management_regs->fine_time); |
|
697 | housekeeping_packet.hk_lfr_last_exe_tc_time[5] = (unsigned char) (time_management_regs->fine_time); | |
698 | } |
|
698 | } | |
699 |
|
699 | |||
700 | void update_last_TC_rej(ccsdsTelecommandPacket_t *TC) |
|
700 | void update_last_TC_rej(ccsdsTelecommandPacket_t *TC) | |
701 | { |
|
701 | { | |
702 | housekeeping_packet.hk_lfr_last_rej_tc_id[0] = TC->packetID[0]; |
|
702 | housekeeping_packet.hk_lfr_last_rej_tc_id[0] = TC->packetID[0]; | |
703 | housekeeping_packet.hk_lfr_last_rej_tc_id[1] = TC->packetID[1]; |
|
703 | housekeeping_packet.hk_lfr_last_rej_tc_id[1] = TC->packetID[1]; | |
704 | housekeeping_packet.hk_lfr_last_rej_tc_type[0] = 0x00; |
|
704 | housekeeping_packet.hk_lfr_last_rej_tc_type[0] = 0x00; | |
705 | housekeeping_packet.hk_lfr_last_rej_tc_type[1] = TC->serviceType; |
|
705 | housekeeping_packet.hk_lfr_last_rej_tc_type[1] = TC->serviceType; | |
706 | housekeeping_packet.hk_lfr_last_rej_tc_subtype[0] = 0x00; |
|
706 | housekeeping_packet.hk_lfr_last_rej_tc_subtype[0] = 0x00; | |
707 | housekeeping_packet.hk_lfr_last_rej_tc_subtype[1] = TC->serviceSubType; |
|
707 | housekeeping_packet.hk_lfr_last_rej_tc_subtype[1] = TC->serviceSubType; | |
708 | housekeeping_packet.hk_lfr_last_rej_tc_time[0] = (unsigned char) (time_management_regs->coarse_time>>24); |
|
708 | housekeeping_packet.hk_lfr_last_rej_tc_time[0] = (unsigned char) (time_management_regs->coarse_time>>24); | |
709 | housekeeping_packet.hk_lfr_last_rej_tc_time[1] = (unsigned char) (time_management_regs->coarse_time>>16); |
|
709 | housekeeping_packet.hk_lfr_last_rej_tc_time[1] = (unsigned char) (time_management_regs->coarse_time>>16); | |
710 | housekeeping_packet.hk_lfr_last_rej_tc_time[2] = (unsigned char) (time_management_regs->coarse_time>>8); |
|
710 | housekeeping_packet.hk_lfr_last_rej_tc_time[2] = (unsigned char) (time_management_regs->coarse_time>>8); | |
711 | housekeeping_packet.hk_lfr_last_rej_tc_time[3] = (unsigned char) (time_management_regs->coarse_time); |
|
711 | housekeeping_packet.hk_lfr_last_rej_tc_time[3] = (unsigned char) (time_management_regs->coarse_time); | |
712 | housekeeping_packet.hk_lfr_last_rej_tc_time[4] = (unsigned char) (time_management_regs->fine_time>>8); |
|
712 | housekeeping_packet.hk_lfr_last_rej_tc_time[4] = (unsigned char) (time_management_regs->fine_time>>8); | |
713 | housekeeping_packet.hk_lfr_last_rej_tc_time[5] = (unsigned char) (time_management_regs->fine_time); |
|
713 | housekeeping_packet.hk_lfr_last_rej_tc_time[5] = (unsigned char) (time_management_regs->fine_time); | |
714 | } |
|
714 | } | |
715 |
|
715 | |||
716 | void close_action(ccsdsTelecommandPacket_t *TC, int result, rtems_id queue_id) |
|
716 | void close_action(ccsdsTelecommandPacket_t *TC, int result, rtems_id queue_id) | |
717 | { |
|
717 | { | |
718 | unsigned int val = 0; |
|
718 | unsigned int val = 0; | |
719 | if (result == LFR_SUCCESSFUL) |
|
719 | if (result == LFR_SUCCESSFUL) | |
720 | { |
|
720 | { | |
721 | if ( !( (TC->serviceType==TC_TYPE_TIME) && (TC->serviceSubType==TC_SUBTYPE_UPDT_TIME) ) |
|
721 | if ( !( (TC->serviceType==TC_TYPE_TIME) && (TC->serviceSubType==TC_SUBTYPE_UPDT_TIME) ) | |
722 | && |
|
722 | && | |
723 | !( (TC->serviceType==TC_TYPE_GEN) && (TC->serviceSubType==TC_SUBTYPE_UPDT_INFO)) |
|
723 | !( (TC->serviceType==TC_TYPE_GEN) && (TC->serviceSubType==TC_SUBTYPE_UPDT_INFO)) | |
724 | ) |
|
724 | ) | |
725 | { |
|
725 | { | |
726 | send_tm_lfr_tc_exe_success( TC, queue_id ); |
|
726 | send_tm_lfr_tc_exe_success( TC, queue_id ); | |
727 | } |
|
727 | } | |
728 | update_last_TC_exe( TC ); |
|
728 | update_last_TC_exe( TC ); | |
729 | val = housekeeping_packet.hk_dpu_exe_tc_lfr_cnt[0] * 256 + housekeeping_packet.hk_dpu_exe_tc_lfr_cnt[1]; |
|
729 | val = housekeeping_packet.hk_dpu_exe_tc_lfr_cnt[0] * 256 + housekeeping_packet.hk_dpu_exe_tc_lfr_cnt[1]; | |
730 | val++; |
|
730 | val++; | |
731 | housekeeping_packet.hk_dpu_exe_tc_lfr_cnt[0] = (unsigned char) (val >> 8); |
|
731 | housekeeping_packet.hk_dpu_exe_tc_lfr_cnt[0] = (unsigned char) (val >> 8); | |
732 | housekeeping_packet.hk_dpu_exe_tc_lfr_cnt[1] = (unsigned char) (val); |
|
732 | housekeeping_packet.hk_dpu_exe_tc_lfr_cnt[1] = (unsigned char) (val); | |
733 | } |
|
733 | } | |
734 | else |
|
734 | else | |
735 | { |
|
735 | { | |
736 | update_last_TC_rej( TC ); |
|
736 | update_last_TC_rej( TC ); | |
737 | val = housekeeping_packet.hk_dpu_rej_tc_lfr_cnt[0] * 256 + housekeeping_packet.hk_dpu_rej_tc_lfr_cnt[1]; |
|
737 | val = housekeeping_packet.hk_dpu_rej_tc_lfr_cnt[0] * 256 + housekeeping_packet.hk_dpu_rej_tc_lfr_cnt[1]; | |
738 | val++; |
|
738 | val++; | |
739 | housekeeping_packet.hk_dpu_rej_tc_lfr_cnt[0] = (unsigned char) (val >> 8); |
|
739 | housekeeping_packet.hk_dpu_rej_tc_lfr_cnt[0] = (unsigned char) (val >> 8); | |
740 | housekeeping_packet.hk_dpu_rej_tc_lfr_cnt[1] = (unsigned char) (val); |
|
740 | housekeeping_packet.hk_dpu_rej_tc_lfr_cnt[1] = (unsigned char) (val); | |
741 | } |
|
741 | } | |
742 | } |
|
742 | } | |
743 |
|
743 | |||
744 | //*************************** |
|
744 | //*************************** | |
745 | // Interrupt Service Routines |
|
745 | // Interrupt Service Routines | |
746 | rtems_isr commutation_isr1( rtems_vector_number vector ) |
|
746 | rtems_isr commutation_isr1( rtems_vector_number vector ) | |
747 | { |
|
747 | { | |
748 | if (rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_0 ) != RTEMS_SUCCESSFUL) { |
|
748 | if (rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_0 ) != RTEMS_SUCCESSFUL) { | |
749 | printf("In commutation_isr1 *** Error sending event to DUMB\n"); |
|
749 | printf("In commutation_isr1 *** Error sending event to DUMB\n"); | |
750 | } |
|
750 | } | |
751 | } |
|
751 | } | |
752 |
|
752 | |||
753 | rtems_isr commutation_isr2( rtems_vector_number vector ) |
|
753 | rtems_isr commutation_isr2( rtems_vector_number vector ) | |
754 | { |
|
754 | { | |
755 | if (rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_0 ) != RTEMS_SUCCESSFUL) { |
|
755 | if (rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_0 ) != RTEMS_SUCCESSFUL) { | |
756 | printf("In commutation_isr2 *** Error sending event to DUMB\n"); |
|
756 | printf("In commutation_isr2 *** Error sending event to DUMB\n"); | |
757 | } |
|
757 | } | |
758 | } |
|
758 | } | |
759 |
|
759 | |||
760 | //**************** |
|
760 | //**************** | |
761 | // OTHER FUNCTIONS |
|
761 | // OTHER FUNCTIONS | |
762 | void updateLFRCurrentMode() |
|
762 | void updateLFRCurrentMode() | |
763 | { |
|
763 | { | |
764 | /** This function updates the value of the global variable lfrCurrentMode. |
|
764 | /** This function updates the value of the global variable lfrCurrentMode. | |
765 | * |
|
765 | * | |
766 | * lfrCurrentMode is a parameter used by several functions to know in which mode LFR is running. |
|
766 | * lfrCurrentMode is a parameter used by several functions to know in which mode LFR is running. | |
767 | * |
|
767 | * | |
768 | */ |
|
768 | */ | |
769 | // update the local value of lfrCurrentMode with the value contained in the housekeeping_packet structure |
|
769 | // update the local value of lfrCurrentMode with the value contained in the housekeeping_packet structure | |
770 | lfrCurrentMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4; |
|
770 | lfrCurrentMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4; | |
771 | } |
|
771 | } | |
772 |
|
772 |
@@ -1,1251 +1,1351 | |||||
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 |
if ( (new_waveform_picker_regs->status & 0x1) == 0x1 ) |
|
79 | // if ( (new_waveform_picker_regs->status & 0x1) == 0x1 ) // f0 is full | |
|
80 | if ( (new_waveform_picker_regs->status & 0x4) == 0x4 ) // f2 is full | |||
|
81 | { | |||
80 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) { |
|
82 | 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 ); |
|
83 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); | |
82 | } |
|
84 | } | |
83 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff888; |
|
85 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff888; | |
|
86 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff888; | |||
|
87 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff888; | |||
|
88 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff888; | |||
|
89 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffff888; | |||
|
90 | // if ( (new_waveform_picker_regs->status & 0x1) == 0x1 ) | |||
|
91 | if ( (new_waveform_picker_regs->status & 0x4) == 0x4 ) // f2 is full | |||
|
92 | { | |||
|
93 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_8 ); | |||
|
94 | } | |||
|
95 | // if ( (new_waveform_picker_regs->status & 0x1) == 0x0 ) | |||
|
96 | if ( (new_waveform_picker_regs->status & 0x4) == 0x0 ) | |||
|
97 | { | |||
|
98 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_7 ); | |||
|
99 | } | |||
84 | } |
|
100 | } | |
85 | // if ( fullRecord == 0x7 ){ // f2 f1 and f0 are full |
|
|||
86 | // if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) { |
|
|||
87 | // rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); |
|
|||
88 | // } |
|
|||
89 | // fullRecord = 0x00; |
|
|||
90 | // } |
|
|||
91 | // new_waveform_picker_regs->status = ( new_waveform_picker_regs->status & (~statusReg) ) |
|
|||
92 | // | ( new_waveform_picker_regs->status & 0xfffffff8 ); |
|
|||
93 | #endif |
|
101 | #endif | |
94 | break; |
|
102 | break; | |
95 |
|
103 | |||
96 | //****** |
|
104 | //****** | |
97 | // BURST |
|
105 | // BURST | |
98 | case(LFR_MODE_BURST): |
|
106 | case(LFR_MODE_BURST): | |
99 | #ifdef GSA |
|
107 | #ifdef GSA | |
100 | PRINTF("in waveform_isr *** unexpected waveform picker interruption\n") |
|
108 | PRINTF("in waveform_isr *** unexpected waveform picker interruption\n") | |
101 | #else |
|
109 | #else | |
102 | if ((new_waveform_picker_regs->status & 0x04) == 0x04){ // [0100] check the f2 full bit |
|
110 | if ((new_waveform_picker_regs->status & 0x04) == 0x04){ // [0100] check the f2 full bit | |
103 | // (1) change the receiving buffer for the waveform picker |
|
111 | // (1) change the receiving buffer for the waveform picker | |
104 | if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) { |
|
112 | if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) { | |
105 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_bis); |
|
113 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_bis); | |
106 | } |
|
114 | } | |
107 | else { |
|
115 | else { | |
108 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); |
|
116 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); | |
109 | } |
|
117 | } | |
110 | // (2) send an event for the waveforms transmission |
|
118 | // (2) send an event for the waveforms transmission | |
111 | if (rtems_event_send( Task_id[TASKID_CWF2], RTEMS_EVENT_MODE_BURST ) != RTEMS_SUCCESSFUL) { |
|
119 | if (rtems_event_send( Task_id[TASKID_CWF2], RTEMS_EVENT_MODE_BURST ) != RTEMS_SUCCESSFUL) { | |
112 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); |
|
120 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); | |
113 | } |
|
121 | } | |
114 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffbbb; // [1111 1011 1011 1011] f2 bits = 0 |
|
122 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffbbb; // [1111 1011 1011 1011] f2 bits = 0 | |
115 | } |
|
123 | } | |
116 | #endif |
|
124 | #endif | |
117 | break; |
|
125 | break; | |
118 |
|
126 | |||
119 | //***** |
|
127 | //***** | |
120 | // SBM1 |
|
128 | // SBM1 | |
121 | case(LFR_MODE_SBM1): |
|
129 | case(LFR_MODE_SBM1): | |
122 | #ifdef GSA |
|
130 | #ifdef GSA | |
123 | PRINTF("in waveform_isr *** unexpected waveform picker interruption\n") |
|
131 | PRINTF("in waveform_isr *** unexpected waveform picker interruption\n") | |
124 | #else |
|
132 | #else | |
125 | if ((new_waveform_picker_regs->status & 0x02) == 0x02){ // [0010] check the f1 full bit |
|
133 | if ((new_waveform_picker_regs->status & 0x02) == 0x02){ // [0010] check the f1 full bit | |
126 | // (1) change the receiving buffer for the waveform picker |
|
134 | // (1) change the receiving buffer for the waveform picker | |
127 | if ( param_local.local_sbm1_nb_cwf_sent == (param_local.local_sbm1_nb_cwf_max-1) ) |
|
135 | if ( param_local.local_sbm1_nb_cwf_sent == (param_local.local_sbm1_nb_cwf_max-1) ) | |
128 | { |
|
136 | { | |
129 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_norm); |
|
137 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_norm); | |
130 | } |
|
138 | } | |
131 | else if ( new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1_norm ) |
|
139 | else if ( new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1_norm ) | |
132 | { |
|
140 | { | |
133 | doubleSendCWF1 = 1; |
|
141 | doubleSendCWF1 = 1; | |
134 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1); |
|
142 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1); | |
135 | } |
|
143 | } | |
136 | else if ( new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1 ) { |
|
144 | else if ( new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1 ) { | |
137 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_bis); |
|
145 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_bis); | |
138 | } |
|
146 | } | |
139 | else { |
|
147 | else { | |
140 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1); |
|
148 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1); | |
141 | } |
|
149 | } | |
142 | // (2) send an event for the waveforms transmission |
|
150 | // (2) send an event for the waveforms transmission | |
143 | if (rtems_event_send( Task_id[TASKID_CWF1], RTEMS_EVENT_MODE_SBM1 ) != RTEMS_SUCCESSFUL) { |
|
151 | if (rtems_event_send( Task_id[TASKID_CWF1], RTEMS_EVENT_MODE_SBM1 ) != RTEMS_SUCCESSFUL) { | |
144 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); |
|
152 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); | |
145 | } |
|
153 | } | |
146 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffddd; // [1111 1101 1101 1101] f1 bit = 0 |
|
154 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffddd; // [1111 1101 1101 1101] f1 bit = 0 | |
147 | } |
|
155 | } | |
148 | if ( ( (new_waveform_picker_regs->status & 0x05) == 0x05 ) ) { // [0101] check the f2 and f0 full bit |
|
156 | if ( ( (new_waveform_picker_regs->status & 0x05) == 0x05 ) ) { // [0101] check the f2 and f0 full bit | |
149 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) { |
|
157 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) { | |
150 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); |
|
158 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); | |
151 | } |
|
159 | } | |
152 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffaaa; // [1111 1010 1010 1010] f2 and f0 bits = 0 |
|
160 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffaaa; // [1111 1010 1010 1010] f2 and f0 bits = 0 | |
153 | reset_local_sbm1_nb_cwf_sent(); |
|
161 | reset_local_sbm1_nb_cwf_sent(); | |
154 | } |
|
162 | } | |
155 |
|
163 | |||
156 | #endif |
|
164 | #endif | |
157 | break; |
|
165 | break; | |
158 |
|
166 | |||
159 | //***** |
|
167 | //***** | |
160 | // SBM2 |
|
168 | // SBM2 | |
161 | case(LFR_MODE_SBM2): |
|
169 | case(LFR_MODE_SBM2): | |
162 | #ifdef GSA |
|
170 | #ifdef GSA | |
163 | PRINTF("in waveform_isr *** unexpected waveform picker interruption\n") |
|
171 | PRINTF("in waveform_isr *** unexpected waveform picker interruption\n") | |
164 | #else |
|
172 | #else | |
165 | if ((new_waveform_picker_regs->status & 0x04) == 0x04){ // [0100] check the f2 full bit |
|
173 | if ((new_waveform_picker_regs->status & 0x04) == 0x04){ // [0100] check the f2 full bit | |
166 | // (1) change the receiving buffer for the waveform picker |
|
174 | // (1) change the receiving buffer for the waveform picker | |
167 | if ( param_local.local_sbm2_nb_cwf_sent == (param_local.local_sbm2_nb_cwf_max-1) ) |
|
175 | if ( param_local.local_sbm2_nb_cwf_sent == (param_local.local_sbm2_nb_cwf_max-1) ) | |
168 | { |
|
176 | { | |
169 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_norm); |
|
177 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_norm); | |
170 | } |
|
178 | } | |
171 | else if ( new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2_norm ) { |
|
179 | else if ( new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2_norm ) { | |
172 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); |
|
180 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); | |
173 | doubleSendCWF2 = 1; |
|
181 | doubleSendCWF2 = 1; | |
174 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_SBM2_WFRM ) != RTEMS_SUCCESSFUL) { |
|
182 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_SBM2_WFRM ) != RTEMS_SUCCESSFUL) { | |
175 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); |
|
183 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); | |
176 | } |
|
184 | } | |
177 | reset_local_sbm2_nb_cwf_sent(); |
|
185 | reset_local_sbm2_nb_cwf_sent(); | |
178 | } |
|
186 | } | |
179 | else if ( new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2 ) { |
|
187 | else if ( new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2 ) { | |
180 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_bis); |
|
188 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_bis); | |
181 | } |
|
189 | } | |
182 | else { |
|
190 | else { | |
183 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); |
|
191 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); | |
184 | } |
|
192 | } | |
185 | // (2) send an event for the waveforms transmission |
|
193 | // (2) send an event for the waveforms transmission | |
186 | if (rtems_event_send( Task_id[TASKID_CWF2], RTEMS_EVENT_MODE_SBM2 ) != RTEMS_SUCCESSFUL) { |
|
194 | if (rtems_event_send( Task_id[TASKID_CWF2], RTEMS_EVENT_MODE_SBM2 ) != RTEMS_SUCCESSFUL) { | |
187 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); |
|
195 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); | |
188 | } |
|
196 | } | |
189 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffbbb; // [1111 1011 1011 1011] f2 bit = 0 |
|
197 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffbbb; // [1111 1011 1011 1011] f2 bit = 0 | |
190 | } |
|
198 | } | |
191 | if ( ( (new_waveform_picker_regs->status & 0x03) == 0x03 ) ) { // [0011] f3 f2 f1 f0, f1 and f0 are full |
|
199 | if ( ( (new_waveform_picker_regs->status & 0x03) == 0x03 ) ) { // [0011] f3 f2 f1 f0, f1 and f0 are full | |
192 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_SBM2 ) != RTEMS_SUCCESSFUL) { |
|
200 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_SBM2 ) != RTEMS_SUCCESSFUL) { | |
193 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); |
|
201 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_2 ); | |
194 | } |
|
202 | } | |
195 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffccc; // [1111 1100 1100 1100] f1, f0 bits = 0 |
|
203 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffccc; // [1111 1100 1100 1100] f1, f0 bits = 0 | |
196 | } |
|
204 | } | |
197 | #endif |
|
205 | #endif | |
198 | break; |
|
206 | break; | |
199 |
|
207 | |||
200 | //******** |
|
208 | //******** | |
201 | // DEFAULT |
|
209 | // DEFAULT | |
202 | default: |
|
210 | default: | |
203 | break; |
|
211 | break; | |
204 | } |
|
212 | } | |
205 | } |
|
213 | } | |
206 |
|
214 | |||
207 | rtems_isr waveforms_simulator_isr( rtems_vector_number vector ) |
|
215 | rtems_isr waveforms_simulator_isr( rtems_vector_number vector ) | |
208 | { |
|
216 | { | |
209 | /** This is the interrupt sub routine called by the waveform picker simulator. |
|
217 | /** This is the interrupt sub routine called by the waveform picker simulator. | |
210 | * |
|
218 | * | |
211 | * This ISR is for debug purpose only. |
|
219 | * This ISR is for debug purpose only. | |
212 | * |
|
220 | * | |
213 | */ |
|
221 | */ | |
214 |
|
222 | |||
215 | unsigned char lfrMode; |
|
223 | unsigned char lfrMode; | |
216 | lfrMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4; |
|
224 | lfrMode = (housekeeping_packet.lfr_status_word[0] & 0xf0) >> 4; | |
217 |
|
225 | |||
218 | switch(lfrMode) { |
|
226 | switch(lfrMode) { | |
219 | case (LFR_MODE_STANDBY): |
|
227 | case (LFR_MODE_STANDBY): | |
220 | break; |
|
228 | break; | |
221 | case (LFR_MODE_NORMAL): |
|
229 | case (LFR_MODE_NORMAL): | |
222 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) { |
|
230 | if (rtems_event_send( Task_id[TASKID_WFRM], RTEMS_EVENT_MODE_NORMAL ) != RTEMS_SUCCESSFUL) { | |
223 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_5 ); |
|
231 | rtems_event_send( Task_id[TASKID_DUMB], RTEMS_EVENT_5 ); | |
224 | } |
|
232 | } | |
225 | break; |
|
233 | break; | |
226 | case (LFR_MODE_BURST): |
|
234 | case (LFR_MODE_BURST): | |
227 | break; |
|
235 | break; | |
228 | case (LFR_MODE_SBM1): |
|
236 | case (LFR_MODE_SBM1): | |
229 | break; |
|
237 | break; | |
230 | case (LFR_MODE_SBM2): |
|
238 | case (LFR_MODE_SBM2): | |
231 | break; |
|
239 | break; | |
232 | } |
|
240 | } | |
233 | } |
|
241 | } | |
234 |
|
242 | |||
235 | rtems_task wfrm_task(rtems_task_argument argument) //used with the waveform picker VHDL IP |
|
243 | rtems_task wfrm_task(rtems_task_argument argument) //used with the waveform picker VHDL IP | |
236 | { |
|
244 | { | |
237 | /** This RTEMS task is dedicated to the transmission of snapshots of the NORMAL mode. |
|
245 | /** This RTEMS task is dedicated to the transmission of snapshots of the NORMAL mode. | |
238 | * |
|
246 | * | |
239 | * @param unused is the starting argument of the RTEMS task |
|
247 | * @param unused is the starting argument of the RTEMS task | |
240 | * |
|
248 | * | |
241 | * The following data packets are sent by this task: |
|
249 | * The following data packets are sent by this task: | |
242 | * - TM_LFR_SCIENCE_NORMAL_SWF_F0 |
|
250 | * - TM_LFR_SCIENCE_NORMAL_SWF_F0 | |
243 | * - TM_LFR_SCIENCE_NORMAL_SWF_F1 |
|
251 | * - TM_LFR_SCIENCE_NORMAL_SWF_F1 | |
244 | * - TM_LFR_SCIENCE_NORMAL_SWF_F2 |
|
252 | * - TM_LFR_SCIENCE_NORMAL_SWF_F2 | |
245 | * |
|
253 | * | |
246 | */ |
|
254 | */ | |
247 |
|
255 | |||
248 | rtems_event_set event_out; |
|
256 | rtems_event_set event_out; | |
249 | rtems_id queue_id; |
|
257 | rtems_id queue_id; | |
250 |
|
258 | |||
251 | init_header_snapshot_wf_table( SID_NORM_SWF_F0, headerSWF_F0 ); |
|
259 | init_header_snapshot_wf_table( SID_NORM_SWF_F0, headerSWF_F0 ); | |
252 | init_header_snapshot_wf_table( SID_NORM_SWF_F1, headerSWF_F1 ); |
|
260 | init_header_snapshot_wf_table( SID_NORM_SWF_F1, headerSWF_F1 ); | |
253 | init_header_snapshot_wf_table( SID_NORM_SWF_F2, headerSWF_F2 ); |
|
261 | init_header_snapshot_wf_table( SID_NORM_SWF_F2, headerSWF_F2 ); | |
254 |
|
262 | |||
255 | init_waveforms(); |
|
263 | init_waveforms(); | |
256 |
|
264 | |||
257 | queue_id = get_pkts_queue_id(); |
|
265 | queue_id = get_pkts_queue_id(); | |
258 |
|
266 | |||
259 | BOOT_PRINTF("in WFRM ***\n") |
|
267 | BOOT_PRINTF("in WFRM ***\n") | |
260 |
|
268 | |||
261 | while(1){ |
|
269 | while(1){ | |
262 | // wait for an RTEMS_EVENT |
|
270 | // wait for an RTEMS_EVENT | |
263 | rtems_event_receive(RTEMS_EVENT_MODE_NORMAL | RTEMS_EVENT_MODE_SBM1 |
|
271 | rtems_event_receive(RTEMS_EVENT_MODE_NORMAL | RTEMS_EVENT_MODE_SBM1 | |
264 | | RTEMS_EVENT_MODE_SBM2 | RTEMS_EVENT_MODE_SBM2_WFRM, |
|
272 | | RTEMS_EVENT_MODE_SBM2 | RTEMS_EVENT_MODE_SBM2_WFRM, | |
265 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); |
|
273 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); | |
266 |
|
274 | |||
267 | if (event_out == RTEMS_EVENT_MODE_NORMAL) |
|
275 | if (event_out == RTEMS_EVENT_MODE_NORMAL) | |
268 | { |
|
276 | { | |
269 | send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id); |
|
277 | //send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id); | |
270 | send_waveform_SWF(wf_snap_f1, SID_NORM_SWF_F1, headerSWF_F1, queue_id); |
|
278 | //send_waveform_SWF(wf_snap_f1, SID_NORM_SWF_F1, headerSWF_F1, queue_id); | |
271 | send_waveform_SWF(wf_snap_f2, SID_NORM_SWF_F2, headerSWF_F2, queue_id); |
|
279 | send_waveform_SWF(wf_snap_f2, SID_NORM_SWF_F2, headerSWF_F2, queue_id); | |
272 | #ifdef GSA |
|
280 | #ifdef GSA | |
273 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xf888; // [1111 1000 1000 1000] f2, f1, f0 bits =0 |
|
281 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xf888; // [1111 1000 1000 1000] f2, f1, f0 bits =0 | |
274 | #endif |
|
282 | #endif | |
275 | } |
|
283 | } | |
276 | else if (event_out == RTEMS_EVENT_MODE_SBM1) |
|
284 | else if (event_out == RTEMS_EVENT_MODE_SBM1) | |
277 | { |
|
285 | { | |
278 | send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id); |
|
286 | send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id); | |
279 | send_waveform_SWF(wf_snap_f1_norm, SID_NORM_SWF_F1, headerSWF_F1, queue_id); |
|
287 | send_waveform_SWF(wf_snap_f1_norm, SID_NORM_SWF_F1, headerSWF_F1, queue_id); | |
280 | send_waveform_SWF(wf_snap_f2, SID_NORM_SWF_F2, headerSWF_F2, queue_id); |
|
288 | send_waveform_SWF(wf_snap_f2, SID_NORM_SWF_F2, headerSWF_F2, queue_id); | |
281 | #ifdef GSA |
|
289 | #ifdef GSA | |
282 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffaaa; // [1111 1010 1010 1010] f2, f0 bits = 0 |
|
290 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffaaa; // [1111 1010 1010 1010] f2, f0 bits = 0 | |
283 | #endif |
|
291 | #endif | |
284 | } |
|
292 | } | |
285 | else if (event_out == RTEMS_EVENT_MODE_SBM2) |
|
293 | else if (event_out == RTEMS_EVENT_MODE_SBM2) | |
286 | { |
|
294 | { | |
287 | send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id); |
|
295 | send_waveform_SWF(wf_snap_f0, SID_NORM_SWF_F0, headerSWF_F0, queue_id); | |
288 | send_waveform_SWF(wf_snap_f1, SID_NORM_SWF_F1, headerSWF_F1, queue_id); |
|
296 | send_waveform_SWF(wf_snap_f1, SID_NORM_SWF_F1, headerSWF_F1, queue_id); | |
289 | #ifdef GSA |
|
297 | #ifdef GSA | |
290 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffccc; // [1111 1100 1100 1100] f1, f0 bits = 0 |
|
298 | new_waveform_picker_regs->status = new_waveform_picker_regs->status & 0xfffffccc; // [1111 1100 1100 1100] f1, f0 bits = 0 | |
291 | #endif |
|
299 | #endif | |
292 | } |
|
300 | } | |
293 | else if (event_out == RTEMS_EVENT_MODE_SBM2_WFRM) |
|
301 | else if (event_out == RTEMS_EVENT_MODE_SBM2_WFRM) | |
294 | { |
|
302 | { | |
295 | send_waveform_SWF(wf_snap_f2_norm, SID_NORM_SWF_F2, headerSWF_F2, queue_id); |
|
303 | send_waveform_SWF(wf_snap_f2_norm, SID_NORM_SWF_F2, headerSWF_F2, queue_id); | |
296 | } |
|
304 | } | |
297 | else |
|
305 | else | |
298 | { |
|
306 | { | |
299 | PRINTF("in WFRM *** unexpected event") |
|
307 | PRINTF("in WFRM *** unexpected event") | |
300 | } |
|
308 | } | |
301 |
|
309 | |||
302 |
|
310 | |||
303 | #ifdef GSA |
|
311 | #ifdef GSA | |
304 | // irq processed, reset the related register of the timer unit |
|
312 | // irq processed, reset the related register of the timer unit | |
305 | gptimer_regs->timer[TIMER_WF_SIMULATOR].ctrl = gptimer_regs->timer[TIMER_WF_SIMULATOR].ctrl | 0x00000010; |
|
313 | gptimer_regs->timer[TIMER_WF_SIMULATOR].ctrl = gptimer_regs->timer[TIMER_WF_SIMULATOR].ctrl | 0x00000010; | |
306 | // clear the interruption |
|
314 | // clear the interruption | |
307 | LEON_Unmask_interrupt( IRQ_WF ); |
|
315 | LEON_Unmask_interrupt( IRQ_WF ); | |
308 | #endif |
|
316 | #endif | |
309 | } |
|
317 | } | |
310 | } |
|
318 | } | |
311 |
|
319 | |||
312 | rtems_task cwf3_task(rtems_task_argument argument) //used with the waveform picker VHDL IP |
|
320 | rtems_task cwf3_task(rtems_task_argument argument) //used with the waveform picker VHDL IP | |
313 | { |
|
321 | { | |
314 | /** This RTEMS task is dedicated to the transmission of continuous waveforms at f3. |
|
322 | /** This RTEMS task is dedicated to the transmission of continuous waveforms at f3. | |
315 | * |
|
323 | * | |
316 | * @param unused is the starting argument of the RTEMS task |
|
324 | * @param unused is the starting argument of the RTEMS task | |
317 | * |
|
325 | * | |
318 | * The following data packet is sent by this task: |
|
326 | * The following data packet is sent by this task: | |
319 | * - TM_LFR_SCIENCE_NORMAL_CWF_F3 |
|
327 | * - TM_LFR_SCIENCE_NORMAL_CWF_F3 | |
320 | * |
|
328 | * | |
321 | */ |
|
329 | */ | |
322 |
|
330 | |||
323 | rtems_event_set event_out; |
|
331 | rtems_event_set event_out; | |
324 | rtems_id queue_id; |
|
332 | rtems_id queue_id; | |
325 |
|
333 | |||
326 | init_header_continuous_wf_table( SID_NORM_CWF_F3, headerCWF_F3 ); |
|
334 | init_header_continuous_wf_table( SID_NORM_CWF_F3, headerCWF_F3 ); | |
327 | init_header_continuous_wf3_light_table( headerCWF_F3_light ); |
|
335 | init_header_continuous_wf3_light_table( headerCWF_F3_light ); | |
328 |
|
336 | |||
329 | queue_id = get_pkts_queue_id(); |
|
337 | queue_id = get_pkts_queue_id(); | |
330 |
|
338 | |||
331 | BOOT_PRINTF("in CWF3 ***\n") |
|
339 | BOOT_PRINTF("in CWF3 ***\n") | |
332 |
|
340 | |||
333 | while(1){ |
|
341 | while(1){ | |
334 | // wait for an RTEMS_EVENT |
|
342 | // wait for an RTEMS_EVENT | |
335 | rtems_event_receive( RTEMS_EVENT_0, |
|
343 | rtems_event_receive( RTEMS_EVENT_0, | |
336 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); |
|
344 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); | |
337 | PRINTF("send CWF F3 \n") |
|
345 | PRINTF("send CWF F3 \n") | |
338 | #ifdef GSA |
|
346 | #ifdef GSA | |
339 | #else |
|
347 | #else | |
340 | if (new_waveform_picker_regs->addr_data_f3 == (int) wf_cont_f3) { |
|
348 | if (new_waveform_picker_regs->addr_data_f3 == (int) wf_cont_f3) { | |
341 | send_waveform_CWF3_light( wf_cont_f3_bis, headerCWF_F3_light, queue_id ); |
|
349 | send_waveform_CWF3_light( wf_cont_f3_bis, headerCWF_F3_light, queue_id ); | |
342 | } |
|
350 | } | |
343 | else { |
|
351 | else { | |
344 | send_waveform_CWF3_light( wf_cont_f3, headerCWF_F3_light, queue_id ); |
|
352 | send_waveform_CWF3_light( wf_cont_f3, headerCWF_F3_light, queue_id ); | |
345 | } |
|
353 | } | |
346 | #endif |
|
354 | #endif | |
347 | } |
|
355 | } | |
348 | } |
|
356 | } | |
349 |
|
357 | |||
350 | rtems_task cwf2_task(rtems_task_argument argument) // ONLY USED IN BURST AND SBM2 |
|
358 | rtems_task cwf2_task(rtems_task_argument argument) // ONLY USED IN BURST AND SBM2 | |
351 | { |
|
359 | { | |
352 | /** This RTEMS task is dedicated to the transmission of continuous waveforms at f2. |
|
360 | /** This RTEMS task is dedicated to the transmission of continuous waveforms at f2. | |
353 | * |
|
361 | * | |
354 | * @param unused is the starting argument of the RTEMS task |
|
362 | * @param unused is the starting argument of the RTEMS task | |
355 | * |
|
363 | * | |
356 | * The following data packet is sent by this function: |
|
364 | * The following data packet is sent by this function: | |
357 | * - TM_LFR_SCIENCE_BURST_CWF_F2 |
|
365 | * - TM_LFR_SCIENCE_BURST_CWF_F2 | |
358 | * - TM_LFR_SCIENCE_SBM2_CWF_F2 |
|
366 | * - TM_LFR_SCIENCE_SBM2_CWF_F2 | |
359 | * |
|
367 | * | |
360 | */ |
|
368 | */ | |
361 |
|
369 | |||
362 | rtems_event_set event_out; |
|
370 | rtems_event_set event_out; | |
363 | rtems_id queue_id; |
|
371 | rtems_id queue_id; | |
364 |
|
372 | |||
365 | init_header_continuous_wf_table( SID_BURST_CWF_F2, headerCWF_F2_BURST ); |
|
373 | init_header_continuous_wf_table( SID_BURST_CWF_F2, headerCWF_F2_BURST ); | |
366 | init_header_continuous_wf_table( SID_SBM2_CWF_F2, headerCWF_F2_SBM2 ); |
|
374 | init_header_continuous_wf_table( SID_SBM2_CWF_F2, headerCWF_F2_SBM2 ); | |
367 |
|
375 | |||
368 | queue_id = get_pkts_queue_id(); |
|
376 | queue_id = get_pkts_queue_id(); | |
369 |
|
377 | |||
370 | BOOT_PRINTF("in CWF2 ***\n") |
|
378 | BOOT_PRINTF("in CWF2 ***\n") | |
371 |
|
379 | |||
372 | while(1){ |
|
380 | while(1){ | |
373 | // wait for an RTEMS_EVENT |
|
381 | // wait for an RTEMS_EVENT | |
374 | rtems_event_receive( RTEMS_EVENT_MODE_BURST | RTEMS_EVENT_MODE_SBM2, |
|
382 | rtems_event_receive( RTEMS_EVENT_MODE_BURST | RTEMS_EVENT_MODE_SBM2, | |
375 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); |
|
383 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); | |
376 |
|
384 | |||
377 | if (event_out == RTEMS_EVENT_MODE_BURST) |
|
385 | if (event_out == RTEMS_EVENT_MODE_BURST) | |
378 | { |
|
386 | { | |
379 | // F2 |
|
387 | // F2 | |
380 | #ifdef GSA |
|
388 | #ifdef GSA | |
381 | #else |
|
389 | #else | |
382 | if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) { |
|
390 | if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) { | |
383 | send_waveform_CWF( wf_snap_f2_bis, SID_BURST_CWF_F2, headerCWF_F2_BURST, queue_id ); |
|
391 | send_waveform_CWF( wf_snap_f2_bis, SID_BURST_CWF_F2, headerCWF_F2_BURST, queue_id ); | |
384 | } |
|
392 | } | |
385 | else { |
|
393 | else { | |
386 | send_waveform_CWF( wf_snap_f2, SID_BURST_CWF_F2, headerCWF_F2_BURST, queue_id ); |
|
394 | send_waveform_CWF( wf_snap_f2, SID_BURST_CWF_F2, headerCWF_F2_BURST, queue_id ); | |
387 | } |
|
395 | } | |
388 | #endif |
|
396 | #endif | |
389 | } |
|
397 | } | |
390 |
|
398 | |||
391 | else if (event_out == RTEMS_EVENT_MODE_SBM2) |
|
399 | else if (event_out == RTEMS_EVENT_MODE_SBM2) | |
392 | { |
|
400 | { | |
393 | #ifdef GSA |
|
401 | #ifdef GSA | |
394 | #else |
|
402 | #else | |
395 | if (doubleSendCWF2 == 1) |
|
403 | if (doubleSendCWF2 == 1) | |
396 | { |
|
404 | { | |
397 | doubleSendCWF2 = 0; |
|
405 | doubleSendCWF2 = 0; | |
398 | send_waveform_CWF( wf_snap_f2_norm, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id ); |
|
406 | send_waveform_CWF( wf_snap_f2_norm, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id ); | |
399 | } |
|
407 | } | |
400 | else if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) { |
|
408 | else if (new_waveform_picker_regs->addr_data_f2 == (int) wf_snap_f2) { | |
401 | send_waveform_CWF( wf_snap_f2_bis, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id ); |
|
409 | send_waveform_CWF( wf_snap_f2_bis, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id ); | |
402 | } |
|
410 | } | |
403 | else { |
|
411 | else { | |
404 | send_waveform_CWF( wf_snap_f2, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id ); |
|
412 | send_waveform_CWF( wf_snap_f2, SID_SBM2_CWF_F2, headerCWF_F2_SBM2, queue_id ); | |
405 | } |
|
413 | } | |
406 | param_local.local_sbm2_nb_cwf_sent ++; |
|
414 | param_local.local_sbm2_nb_cwf_sent ++; | |
407 | #endif |
|
415 | #endif | |
408 | } |
|
416 | } | |
409 | else |
|
417 | else | |
410 | { |
|
418 | { | |
411 | PRINTF1("in CWF2 *** ERR mode = %d\n", lfrCurrentMode) |
|
419 | PRINTF1("in CWF2 *** ERR mode = %d\n", lfrCurrentMode) | |
412 | } |
|
420 | } | |
413 | } |
|
421 | } | |
414 | } |
|
422 | } | |
415 |
|
423 | |||
416 | rtems_task cwf1_task(rtems_task_argument argument) // ONLY USED IN SBM1 |
|
424 | rtems_task cwf1_task(rtems_task_argument argument) // ONLY USED IN SBM1 | |
417 | { |
|
425 | { | |
418 | /** This RTEMS task is dedicated to the transmission of continuous waveforms at f1. |
|
426 | /** This RTEMS task is dedicated to the transmission of continuous waveforms at f1. | |
419 | * |
|
427 | * | |
420 | * @param unused is the starting argument of the RTEMS task |
|
428 | * @param unused is the starting argument of the RTEMS task | |
421 | * |
|
429 | * | |
422 | * The following data packet is sent by this function: |
|
430 | * The following data packet is sent by this function: | |
423 | * - TM_LFR_SCIENCE_SBM1_CWF_F1 |
|
431 | * - TM_LFR_SCIENCE_SBM1_CWF_F1 | |
424 | * |
|
432 | * | |
425 | */ |
|
433 | */ | |
426 |
|
434 | |||
427 | rtems_event_set event_out; |
|
435 | rtems_event_set event_out; | |
428 | rtems_id queue_id; |
|
436 | rtems_id queue_id; | |
429 |
|
437 | |||
430 | init_header_continuous_wf_table( SID_SBM1_CWF_F1, headerCWF_F1 ); |
|
438 | init_header_continuous_wf_table( SID_SBM1_CWF_F1, headerCWF_F1 ); | |
431 |
|
439 | |||
432 | queue_id = get_pkts_queue_id(); |
|
440 | queue_id = get_pkts_queue_id(); | |
433 |
|
441 | |||
434 | BOOT_PRINTF("in CWF1 ***\n") |
|
442 | BOOT_PRINTF("in CWF1 ***\n") | |
435 |
|
443 | |||
436 | while(1){ |
|
444 | while(1){ | |
437 | // wait for an RTEMS_EVENT |
|
445 | // wait for an RTEMS_EVENT | |
438 | rtems_event_receive( RTEMS_EVENT_MODE_SBM1, |
|
446 | rtems_event_receive( RTEMS_EVENT_MODE_SBM1, | |
439 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); |
|
447 | RTEMS_WAIT | RTEMS_EVENT_ANY, RTEMS_NO_TIMEOUT, &event_out); | |
440 | if (event_out == RTEMS_EVENT_MODE_SBM1) |
|
448 | if (event_out == RTEMS_EVENT_MODE_SBM1) | |
441 | { |
|
449 | { | |
442 | #ifdef GSA |
|
450 | #ifdef GSA | |
443 | #else |
|
451 | #else | |
444 | if (doubleSendCWF1 == 1) |
|
452 | if (doubleSendCWF1 == 1) | |
445 | { |
|
453 | { | |
446 | doubleSendCWF1 = 0; |
|
454 | doubleSendCWF1 = 0; | |
447 | send_waveform_CWF( wf_snap_f1_norm, SID_SBM1_CWF_F1, headerCWF_F1, queue_id ); |
|
455 | send_waveform_CWF( wf_snap_f1_norm, SID_SBM1_CWF_F1, headerCWF_F1, queue_id ); | |
448 | } |
|
456 | } | |
449 | else if (new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1) { |
|
457 | else if (new_waveform_picker_regs->addr_data_f1 == (int) wf_snap_f1) { | |
450 | send_waveform_CWF( wf_snap_f1_bis, SID_SBM1_CWF_F1, headerCWF_F1, queue_id ); |
|
458 | send_waveform_CWF( wf_snap_f1_bis, SID_SBM1_CWF_F1, headerCWF_F1, queue_id ); | |
451 | } |
|
459 | } | |
452 | else { |
|
460 | else { | |
453 | send_waveform_CWF( wf_snap_f1, SID_SBM1_CWF_F1, headerCWF_F1, queue_id ); |
|
461 | send_waveform_CWF( wf_snap_f1, SID_SBM1_CWF_F1, headerCWF_F1, queue_id ); | |
454 | } |
|
462 | } | |
455 | param_local.local_sbm1_nb_cwf_sent ++; |
|
463 | param_local.local_sbm1_nb_cwf_sent ++; | |
456 | #endif |
|
464 | #endif | |
457 | } |
|
465 | } | |
458 | else |
|
466 | else | |
459 | { |
|
467 | { | |
460 | PRINTF1("in CWF1 *** ERR mode = %d\n", lfrCurrentMode) |
|
468 | PRINTF1("in CWF1 *** ERR mode = %d\n", lfrCurrentMode) | |
461 | } |
|
469 | } | |
462 | } |
|
470 | } | |
463 | } |
|
471 | } | |
464 |
|
472 | |||
465 | //****************** |
|
473 | //****************** | |
466 | // general functions |
|
474 | // general functions | |
467 | void init_waveforms( void ) |
|
475 | void init_waveforms( void ) | |
468 | { |
|
476 | { | |
469 | int i = 0; |
|
477 | int i = 0; | |
470 |
|
478 | |||
471 | for (i=0; i< NB_SAMPLES_PER_SNAPSHOT; i++) |
|
479 | for (i=0; i< NB_SAMPLES_PER_SNAPSHOT; i++) | |
472 | { |
|
480 | { | |
473 | // //*** |
|
481 | // //*** | |
474 | // // F0 |
|
482 | // // F0 | |
475 | // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x88887777; // |
|
483 | // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x88887777; // | |
476 | // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x22221111; // |
|
484 | // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x22221111; // | |
477 | // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x44443333; // |
|
485 | // wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x44443333; // | |
478 |
|
486 | |||
479 | // //*** |
|
487 | // //*** | |
480 | // // F1 |
|
488 | // // F1 | |
481 | // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x22221111; |
|
489 | // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x22221111; | |
482 | // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x44443333; |
|
490 | // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x44443333; | |
483 | // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0xaaaa0000; |
|
491 | // wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0xaaaa0000; | |
484 |
|
492 | |||
485 | // //*** |
|
493 | // //*** | |
486 | // // F2 |
|
494 | // // F2 | |
487 | // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x44443333; |
|
495 | // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x44443333; | |
488 | // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x22221111; |
|
496 | // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x22221111; | |
489 | // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0xaaaa0000; |
|
497 | // wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0xaaaa0000; | |
490 |
|
498 | |||
491 | //*** |
|
499 | //*** | |
492 | // F0 |
|
500 | // F0 | |
493 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0; // |
|
501 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0; // | |
494 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0; // |
|
502 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0; // | |
495 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0; // |
|
503 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0; // | |
496 |
|
504 | |||
497 | //*** |
|
505 | //*** | |
498 | // F1 |
|
506 | // F1 | |
499 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0; |
|
507 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0; | |
500 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0; |
|
508 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0; | |
501 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0; |
|
509 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0; | |
502 |
|
510 | |||
503 | //*** |
|
511 | //*** | |
504 | // F2 |
|
512 | // F2 | |
505 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0; |
|
513 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET ] = 0x0; | |
506 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0; |
|
514 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET ] = 0x0; | |
507 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0; |
|
515 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET ] = 0x0; | |
508 |
|
516 | |||
509 | //*** |
|
517 | //*** | |
510 | // F3 |
|
518 | // F3 | |
511 | //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 0 ] = val1; |
|
519 | //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 0 ] = val1; | |
512 | //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 1 ] = val2; |
|
520 | //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 1 ] = val2; | |
513 | //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 2 ] = 0xaaaa0000; |
|
521 | //wf_cont_f3[ (i* NB_WORDS_SWF_BLK) + 2 ] = 0xaaaa0000; | |
514 | } |
|
522 | } | |
515 | } |
|
523 | } | |
516 |
|
524 | |||
517 | int init_header_snapshot_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_SWF_t *headerSWF) |
|
525 | int init_header_snapshot_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_SWF_t *headerSWF) | |
518 | { |
|
526 | { | |
519 | unsigned char i; |
|
527 | unsigned char i; | |
520 |
|
528 | |||
521 | for (i=0; i<7; i++) |
|
529 | for (i=0; i<7; i++) | |
522 | { |
|
530 | { | |
523 | headerSWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID; |
|
531 | headerSWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID; | |
524 | headerSWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID; |
|
532 | headerSWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID; | |
525 | headerSWF[ i ].reserved = DEFAULT_RESERVED; |
|
533 | headerSWF[ i ].reserved = DEFAULT_RESERVED; | |
526 | headerSWF[ i ].userApplication = CCSDS_USER_APP; |
|
534 | headerSWF[ i ].userApplication = CCSDS_USER_APP; | |
527 | headerSWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8); |
|
535 | headerSWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8); | |
528 | headerSWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST); |
|
536 | headerSWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST); | |
529 | if (i == 0) |
|
537 | if (i == 0) | |
530 | { |
|
538 | { | |
531 | headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST; |
|
539 | headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST; | |
532 | 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); | |
533 | headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_340 ); |
|
541 | headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_340 ); | |
534 | headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); |
|
542 | headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); | |
535 | headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); |
|
543 | headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); | |
536 | } |
|
544 | } | |
537 | else if (i == 6) |
|
545 | else if (i == 6) | |
538 | { |
|
546 | { | |
539 | headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST; |
|
547 | headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST; | |
540 | headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_8 >> 8); |
|
548 | headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_8 >> 8); | |
541 | headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_8 ); |
|
549 | headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_8 ); | |
542 | headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8); |
|
550 | headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8); | |
543 | headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 ); |
|
551 | headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 ); | |
544 | } |
|
552 | } | |
545 | else |
|
553 | else | |
546 | { |
|
554 | { | |
547 | headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION; |
|
555 | headerSWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION; | |
548 | headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_340 >> 8); |
|
556 | headerSWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_SWF_340 >> 8); | |
549 | headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_340 ); |
|
557 | headerSWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_SWF_340 ); | |
550 | headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); |
|
558 | headerSWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); | |
551 | headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); |
|
559 | headerSWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); | |
552 | } |
|
560 | } | |
553 | headerSWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT; |
|
561 | headerSWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT; | |
554 | headerSWF[ i ].pktCnt = DEFAULT_PKTCNT; // PKT_CNT |
|
562 | headerSWF[ i ].pktCnt = DEFAULT_PKTCNT; // PKT_CNT | |
555 | headerSWF[ i ].pktNr = i+1; // PKT_NR |
|
563 | headerSWF[ i ].pktNr = i+1; // PKT_NR | |
556 | // DATA FIELD HEADER |
|
564 | // DATA FIELD HEADER | |
557 | headerSWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2; |
|
565 | headerSWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2; | |
558 | headerSWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type |
|
566 | headerSWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type | |
559 | headerSWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype |
|
567 | headerSWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype | |
560 | headerSWF[ i ].destinationID = TM_DESTINATION_ID_GROUND; |
|
568 | headerSWF[ i ].destinationID = TM_DESTINATION_ID_GROUND; | |
561 | // AUXILIARY DATA HEADER |
|
569 | // AUXILIARY DATA HEADER | |
562 | headerSWF[ i ].sid = sid; |
|
570 | headerSWF[ i ].sid = sid; | |
563 | headerSWF[ i ].hkBIA = DEFAULT_HKBIA; |
|
571 | headerSWF[ i ].hkBIA = DEFAULT_HKBIA; | |
564 | headerSWF[ i ].time[0] = 0x00; |
|
572 | headerSWF[ i ].time[0] = 0x00; | |
565 | headerSWF[ i ].time[0] = 0x00; |
|
573 | headerSWF[ i ].time[0] = 0x00; | |
566 | headerSWF[ i ].time[0] = 0x00; |
|
574 | headerSWF[ i ].time[0] = 0x00; | |
567 | headerSWF[ i ].time[0] = 0x00; |
|
575 | headerSWF[ i ].time[0] = 0x00; | |
568 | headerSWF[ i ].time[0] = 0x00; |
|
576 | headerSWF[ i ].time[0] = 0x00; | |
569 | headerSWF[ i ].time[0] = 0x00; |
|
577 | headerSWF[ i ].time[0] = 0x00; | |
570 | } |
|
578 | } | |
571 | return LFR_SUCCESSFUL; |
|
579 | return LFR_SUCCESSFUL; | |
572 | } |
|
580 | } | |
573 |
|
581 | |||
574 | int init_header_continuous_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF ) |
|
582 | int init_header_continuous_wf_table( unsigned int sid, Header_TM_LFR_SCIENCE_CWF_t *headerCWF ) | |
575 | { |
|
583 | { | |
576 | unsigned int i; |
|
584 | unsigned int i; | |
577 |
|
585 | |||
578 | for (i=0; i<7; i++) |
|
586 | for (i=0; i<7; i++) | |
579 | { |
|
587 | { | |
580 | headerCWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID; |
|
588 | headerCWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID; | |
581 | headerCWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID; |
|
589 | headerCWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID; | |
582 | headerCWF[ i ].reserved = DEFAULT_RESERVED; |
|
590 | headerCWF[ i ].reserved = DEFAULT_RESERVED; | |
583 | headerCWF[ i ].userApplication = CCSDS_USER_APP; |
|
591 | headerCWF[ i ].userApplication = CCSDS_USER_APP; | |
584 | if ( (sid == SID_SBM1_CWF_F1) || (sid == SID_SBM2_CWF_F2) ) |
|
592 | if ( (sid == SID_SBM1_CWF_F1) || (sid == SID_SBM2_CWF_F2) ) | |
585 | { |
|
593 | { | |
586 | headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_SBM1_SBM2 >> 8); |
|
594 | headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_SBM1_SBM2 >> 8); | |
587 | headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_SBM1_SBM2); |
|
595 | headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_SBM1_SBM2); | |
588 | } |
|
596 | } | |
589 | else |
|
597 | else | |
590 | { |
|
598 | { | |
591 | headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8); |
|
599 | headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8); | |
592 | headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST); |
|
600 | headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST); | |
593 | } |
|
601 | } | |
594 | if (i == 0) |
|
602 | if (i == 0) | |
595 | { |
|
603 | { | |
596 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST; |
|
604 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST; | |
597 | 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); | |
598 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_340 ); |
|
606 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_340 ); | |
599 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); |
|
607 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); | |
600 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); |
|
608 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); | |
601 | } |
|
609 | } | |
602 | else if (i == 6) |
|
610 | else if (i == 6) | |
603 | { |
|
611 | { | |
604 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST; |
|
612 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST; | |
605 | headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_8 >> 8); |
|
613 | headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_8 >> 8); | |
606 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_8 ); |
|
614 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_8 ); | |
607 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8); |
|
615 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8); | |
608 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 ); |
|
616 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 ); | |
609 | } |
|
617 | } | |
610 | else |
|
618 | else | |
611 | { |
|
619 | { | |
612 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION; |
|
620 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION; | |
613 | headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_340 >> 8); |
|
621 | headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF_340 >> 8); | |
614 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_340 ); |
|
622 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF_340 ); | |
615 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); |
|
623 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); | |
616 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); |
|
624 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); | |
617 | } |
|
625 | } | |
618 | headerCWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT; |
|
626 | headerCWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT; | |
619 | // PKT_CNT |
|
627 | // PKT_CNT | |
620 | // PKT_NR |
|
628 | // PKT_NR | |
621 | // DATA FIELD HEADER |
|
629 | // DATA FIELD HEADER | |
622 | headerCWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2; |
|
630 | headerCWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2; | |
623 | headerCWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type |
|
631 | headerCWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type | |
624 | headerCWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype |
|
632 | headerCWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype | |
625 | headerCWF[ i ].destinationID = TM_DESTINATION_ID_GROUND; |
|
633 | headerCWF[ i ].destinationID = TM_DESTINATION_ID_GROUND; | |
626 | // AUXILIARY DATA HEADER |
|
634 | // AUXILIARY DATA HEADER | |
627 | headerCWF[ i ].sid = sid; |
|
635 | headerCWF[ i ].sid = sid; | |
628 | headerCWF[ i ].hkBIA = DEFAULT_HKBIA; |
|
636 | headerCWF[ i ].hkBIA = DEFAULT_HKBIA; | |
629 | headerCWF[ i ].time[0] = 0x00; |
|
637 | headerCWF[ i ].time[0] = 0x00; | |
630 | headerCWF[ i ].time[0] = 0x00; |
|
638 | headerCWF[ i ].time[0] = 0x00; | |
631 | headerCWF[ i ].time[0] = 0x00; |
|
639 | headerCWF[ i ].time[0] = 0x00; | |
632 | headerCWF[ i ].time[0] = 0x00; |
|
640 | headerCWF[ i ].time[0] = 0x00; | |
633 | headerCWF[ i ].time[0] = 0x00; |
|
641 | headerCWF[ i ].time[0] = 0x00; | |
634 | headerCWF[ i ].time[0] = 0x00; |
|
642 | headerCWF[ i ].time[0] = 0x00; | |
635 | } |
|
643 | } | |
636 | return LFR_SUCCESSFUL; |
|
644 | return LFR_SUCCESSFUL; | |
637 | } |
|
645 | } | |
638 |
|
646 | |||
639 | int init_header_continuous_wf3_light_table( Header_TM_LFR_SCIENCE_CWF_t *headerCWF ) |
|
647 | int init_header_continuous_wf3_light_table( Header_TM_LFR_SCIENCE_CWF_t *headerCWF ) | |
640 | { |
|
648 | { | |
641 | unsigned int i; |
|
649 | unsigned int i; | |
642 |
|
650 | |||
643 | for (i=0; i<7; i++) |
|
651 | for (i=0; i<7; i++) | |
644 | { |
|
652 | { | |
645 | headerCWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID; |
|
653 | headerCWF[ i ].targetLogicalAddress = CCSDS_DESTINATION_ID; | |
646 | headerCWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID; |
|
654 | headerCWF[ i ].protocolIdentifier = CCSDS_PROTOCOLE_ID; | |
647 | headerCWF[ i ].reserved = DEFAULT_RESERVED; |
|
655 | headerCWF[ i ].reserved = DEFAULT_RESERVED; | |
648 | headerCWF[ i ].userApplication = CCSDS_USER_APP; |
|
656 | headerCWF[ i ].userApplication = CCSDS_USER_APP; | |
649 |
|
657 | |||
650 | headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8); |
|
658 | headerCWF[ i ].packetID[0] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST >> 8); | |
651 | headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST); |
|
659 | headerCWF[ i ].packetID[1] = (unsigned char) (TM_PACKET_ID_SCIENCE_NORMAL_BURST); | |
652 | if (i == 0) |
|
660 | if (i == 0) | |
653 | { |
|
661 | { | |
654 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST; |
|
662 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_FIRST; | |
655 | 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); | |
656 | 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 ); | |
657 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); |
|
665 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); | |
658 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); |
|
666 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); | |
659 | } |
|
667 | } | |
660 | else if (i == 6) |
|
668 | else if (i == 6) | |
661 | { |
|
669 | { | |
662 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST; |
|
670 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_LAST; | |
663 | headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_8 >> 8); |
|
671 | headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_8 >> 8); | |
664 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_8 ); |
|
672 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_8 ); | |
665 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8); |
|
673 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_8 >> 8); | |
666 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 ); |
|
674 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_8 ); | |
667 | } |
|
675 | } | |
668 | else |
|
676 | else | |
669 | { |
|
677 | { | |
670 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION; |
|
678 | headerCWF[ i ].packetSequenceControl[0] = TM_PACKET_SEQ_CTRL_CONTINUATION; | |
671 | headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 >> 8); |
|
679 | headerCWF[ i ].packetLength[0] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 >> 8); | |
672 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 ); |
|
680 | headerCWF[ i ].packetLength[1] = (unsigned char) (TM_LEN_SCI_CWF3_LIGHT_340 ); | |
673 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); |
|
681 | headerCWF[ i ].blkNr[0] = (unsigned char) (BLK_NR_340 >> 8); | |
674 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); |
|
682 | headerCWF[ i ].blkNr[1] = (unsigned char) (BLK_NR_340 ); | |
675 | } |
|
683 | } | |
676 | headerCWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT; |
|
684 | headerCWF[ i ].packetSequenceControl[1] = TM_PACKET_SEQ_CNT_DEFAULT; | |
677 | // DATA FIELD HEADER |
|
685 | // DATA FIELD HEADER | |
678 | headerCWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2; |
|
686 | headerCWF[ i ].spare1_pusVersion_spare2 = DEFAULT_SPARE1_PUSVERSION_SPARE2; | |
679 | headerCWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type |
|
687 | headerCWF[ i ].serviceType = TM_TYPE_LFR_SCIENCE; // service type | |
680 | headerCWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype |
|
688 | headerCWF[ i ].serviceSubType = TM_SUBTYPE_LFR_SCIENCE; // service subtype | |
681 | headerCWF[ i ].destinationID = TM_DESTINATION_ID_GROUND; |
|
689 | headerCWF[ i ].destinationID = TM_DESTINATION_ID_GROUND; | |
682 | // AUXILIARY DATA HEADER |
|
690 | // AUXILIARY DATA HEADER | |
683 | headerCWF[ i ].sid = SID_NORM_CWF_F3; |
|
691 | headerCWF[ i ].sid = SID_NORM_CWF_F3; | |
684 | headerCWF[ i ].hkBIA = DEFAULT_HKBIA; |
|
692 | headerCWF[ i ].hkBIA = DEFAULT_HKBIA; | |
685 | headerCWF[ i ].time[0] = 0x00; |
|
693 | headerCWF[ i ].time[0] = 0x00; | |
686 | headerCWF[ i ].time[0] = 0x00; |
|
694 | headerCWF[ i ].time[0] = 0x00; | |
687 | headerCWF[ i ].time[0] = 0x00; |
|
695 | headerCWF[ i ].time[0] = 0x00; | |
688 | headerCWF[ i ].time[0] = 0x00; |
|
696 | headerCWF[ i ].time[0] = 0x00; | |
689 | headerCWF[ i ].time[0] = 0x00; |
|
697 | headerCWF[ i ].time[0] = 0x00; | |
690 | headerCWF[ i ].time[0] = 0x00; |
|
698 | headerCWF[ i ].time[0] = 0x00; | |
691 | } |
|
699 | } | |
692 | return LFR_SUCCESSFUL; |
|
700 | return LFR_SUCCESSFUL; | |
693 | } |
|
701 | } | |
694 |
|
702 | |||
695 | void reset_waveforms( void ) |
|
703 | void reset_waveforms( void ) | |
696 | { |
|
704 | { | |
697 | int i = 0; |
|
705 | int i = 0; | |
698 |
|
706 | |||
699 | for (i=0; i< NB_SAMPLES_PER_SNAPSHOT; i++) |
|
707 | for (i=0; i< NB_SAMPLES_PER_SNAPSHOT; i++) | |
700 | { |
|
708 | { | |
701 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x10002000; |
|
709 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x10002000; | |
702 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0x20001000; |
|
710 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0x20001000; | |
703 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x40008000; |
|
711 | wf_snap_f0[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x40008000; | |
704 |
|
712 | |||
705 | //*** |
|
713 | //*** | |
706 | // F1 |
|
714 | // F1 | |
707 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x1000f000; |
|
715 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x1000f000; | |
708 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0xf0001000; |
|
716 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0xf0001000; | |
709 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x40008000; |
|
717 | wf_snap_f1[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x40008000; | |
710 |
|
718 | |||
711 | //*** |
|
719 | //*** | |
712 | // F2 |
|
720 | // F2 | |
713 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x40008000; |
|
721 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 0 + TIME_OFFSET] = 0x40008000; | |
714 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0x20001000; |
|
722 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 1 + TIME_OFFSET] = 0x20001000; | |
715 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x10002000; |
|
723 | wf_snap_f2[ (i* NB_WORDS_SWF_BLK) + 2 + TIME_OFFSET] = 0x10002000; | |
716 |
|
724 | |||
717 | //*** |
|
725 | //*** | |
718 | // F3 |
|
726 | // F3 | |
719 | /*wf_cont_f3[ i* NB_WORDS_SWF_BLK + 0 ] = build_value( i, i ); // v and 1 |
|
727 | /*wf_cont_f3[ i* NB_WORDS_SWF_BLK + 0 ] = build_value( i, i ); // v and 1 | |
720 | wf_cont_f3[ i* NB_WORDS_SWF_BLK + 1 ] = build_value( i, i ); // e2 and b1 |
|
728 | wf_cont_f3[ i* NB_WORDS_SWF_BLK + 1 ] = build_value( i, i ); // e2 and b1 | |
721 | wf_cont_f3[ i* NB_WORDS_SWF_BLK + 2 ] = build_value( i, i ); // b2 and b3*/ |
|
729 | wf_cont_f3[ i* NB_WORDS_SWF_BLK + 2 ] = build_value( i, i ); // b2 and b3*/ | |
722 | } |
|
730 | } | |
723 | } |
|
731 | } | |
724 |
|
732 | |||
725 | int send_waveform_SWF( volatile int *waveform, unsigned int sid, |
|
733 | int send_waveform_SWF( volatile int *waveform, unsigned int sid, | |
726 | Header_TM_LFR_SCIENCE_SWF_t *headerSWF, rtems_id queue_id ) |
|
734 | Header_TM_LFR_SCIENCE_SWF_t *headerSWF, rtems_id queue_id ) | |
727 | { |
|
735 | { | |
728 | /** This function sends SWF CCSDS packets (F2, F1 or F0). |
|
736 | /** This function sends SWF CCSDS packets (F2, F1 or F0). | |
729 | * |
|
737 | * | |
730 | * @param waveform points to the buffer containing the data that will be send. |
|
738 | * @param waveform points to the buffer containing the data that will be send. | |
731 | * @param sid is the source identifier of the data that will be sent. |
|
739 | * @param sid is the source identifier of the data that will be sent. | |
732 | * @param headerSWF points to a table of headers that have been prepared for the data transmission. |
|
740 | * @param headerSWF points to a table of headers that have been prepared for the data transmission. | |
733 | * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures |
|
741 | * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures | |
734 | * contain information to setup the transmission of the data packets. |
|
742 | * contain information to setup the transmission of the data packets. | |
735 | * |
|
743 | * | |
736 | * One group of 2048 samples is sent as 7 consecutive packets, 6 packets containing 340 blocks and 8 packets containing 8 blocks. |
|
744 | * One group of 2048 samples is sent as 7 consecutive packets, 6 packets containing 340 blocks and 8 packets containing 8 blocks. | |
737 | * |
|
745 | * | |
738 | */ |
|
746 | */ | |
739 |
|
747 | |||
740 | unsigned int i; |
|
748 | unsigned int i; | |
741 | int ret; |
|
749 | int ret; | |
742 | rtems_status_code status; |
|
750 | rtems_status_code status; | |
743 | spw_ioctl_pkt_send spw_ioctl_send_SWF; |
|
751 | spw_ioctl_pkt_send spw_ioctl_send_SWF; | |
744 |
|
752 | |||
745 | spw_ioctl_send_SWF.hlen = TM_HEADER_LEN + 4 + 12; // + 4 is for the protocole extra header, + 12 is for the auxiliary header |
|
753 | spw_ioctl_send_SWF.hlen = TM_HEADER_LEN + 4 + 12; // + 4 is for the protocole extra header, + 12 is for the auxiliary header | |
746 | spw_ioctl_send_SWF.options = 0; |
|
754 | spw_ioctl_send_SWF.options = 0; | |
747 |
|
755 | |||
748 | ret = LFR_DEFAULT; |
|
756 | ret = LFR_DEFAULT; | |
749 |
|
757 | |||
750 | for (i=0; i<7; i++) // send waveform |
|
758 | for (i=0; i<7; i++) // send waveform | |
751 | { |
|
759 | { | |
752 | spw_ioctl_send_SWF.data = (char*) &waveform[ (i * 340 * NB_WORDS_SWF_BLK) + TIME_OFFSET ]; |
|
760 | spw_ioctl_send_SWF.data = (char*) &waveform[ (i * 340 * NB_WORDS_SWF_BLK) + TIME_OFFSET ]; | |
753 | spw_ioctl_send_SWF.hdr = (char*) &headerSWF[ i ]; |
|
761 | spw_ioctl_send_SWF.hdr = (char*) &headerSWF[ i ]; | |
754 | // BUILD THE DATA |
|
762 | // BUILD THE DATA | |
755 | if (i==6) { |
|
763 | if (i==6) { | |
756 | spw_ioctl_send_SWF.dlen = 8 * NB_BYTES_SWF_BLK; |
|
764 | spw_ioctl_send_SWF.dlen = 8 * NB_BYTES_SWF_BLK; | |
757 | } |
|
765 | } | |
758 | else { |
|
766 | else { | |
759 | spw_ioctl_send_SWF.dlen = 340 * NB_BYTES_SWF_BLK; |
|
767 | spw_ioctl_send_SWF.dlen = 340 * NB_BYTES_SWF_BLK; | |
760 | } |
|
768 | } | |
761 | // SET PACKET SEQUENCE COUNTER |
|
769 | // SET PACKET SEQUENCE COUNTER | |
762 | increment_seq_counter_source_id( headerSWF[ i ].packetSequenceControl, sid ); |
|
770 | increment_seq_counter_source_id( headerSWF[ i ].packetSequenceControl, sid ); | |
763 | // SET PACKET TIME |
|
771 | // SET PACKET TIME | |
764 | headerSWF[ i ].acquisitionTime[0] = (unsigned char) (time_management_regs->coarse_time>>24); |
|
772 | headerSWF[ i ].acquisitionTime[0] = (unsigned char) (time_management_regs->coarse_time>>24); | |
765 | headerSWF[ i ].acquisitionTime[1] = (unsigned char) (time_management_regs->coarse_time>>16); |
|
773 | headerSWF[ i ].acquisitionTime[1] = (unsigned char) (time_management_regs->coarse_time>>16); | |
766 | headerSWF[ i ].acquisitionTime[2] = (unsigned char) (time_management_regs->coarse_time>>8); |
|
774 | headerSWF[ i ].acquisitionTime[2] = (unsigned char) (time_management_regs->coarse_time>>8); | |
767 | headerSWF[ i ].acquisitionTime[3] = (unsigned char) (time_management_regs->coarse_time); |
|
775 | headerSWF[ i ].acquisitionTime[3] = (unsigned char) (time_management_regs->coarse_time); | |
768 | headerSWF[ i ].acquisitionTime[4] = (unsigned char) (time_management_regs->fine_time>>8); |
|
776 | headerSWF[ i ].acquisitionTime[4] = (unsigned char) (time_management_regs->fine_time>>8); | |
769 | headerSWF[ i ].acquisitionTime[5] = (unsigned char) (time_management_regs->fine_time); |
|
777 | headerSWF[ i ].acquisitionTime[5] = (unsigned char) (time_management_regs->fine_time); | |
770 | headerSWF[ i ].time[0] = (unsigned char) (time_management_regs->coarse_time>>24); |
|
778 | headerSWF[ i ].time[0] = (unsigned char) (time_management_regs->coarse_time>>24); | |
771 | headerSWF[ i ].time[1] = (unsigned char) (time_management_regs->coarse_time>>16); |
|
779 | headerSWF[ i ].time[1] = (unsigned char) (time_management_regs->coarse_time>>16); | |
772 | headerSWF[ i ].time[2] = (unsigned char) (time_management_regs->coarse_time>>8); |
|
780 | headerSWF[ i ].time[2] = (unsigned char) (time_management_regs->coarse_time>>8); | |
773 | headerSWF[ i ].time[3] = (unsigned char) (time_management_regs->coarse_time); |
|
781 | headerSWF[ i ].time[3] = (unsigned char) (time_management_regs->coarse_time); | |
774 | headerSWF[ i ].time[4] = (unsigned char) (time_management_regs->fine_time>>8); |
|
782 | headerSWF[ i ].time[4] = (unsigned char) (time_management_regs->fine_time>>8); | |
775 | headerSWF[ i ].time[5] = (unsigned char) (time_management_regs->fine_time); |
|
783 | headerSWF[ i ].time[5] = (unsigned char) (time_management_regs->fine_time); | |
776 | // SEND PACKET |
|
784 | // SEND PACKET | |
777 | status = rtems_message_queue_send( queue_id, &spw_ioctl_send_SWF, ACTION_MSG_SPW_IOCTL_SEND_SIZE); |
|
785 | status = rtems_message_queue_send( queue_id, &spw_ioctl_send_SWF, ACTION_MSG_SPW_IOCTL_SEND_SIZE); | |
778 | if (status != RTEMS_SUCCESSFUL) { |
|
786 | if (status != RTEMS_SUCCESSFUL) { | |
779 | printf("%d-%d, ERR %d\n", sid, i, (int) status); |
|
787 | printf("%d-%d, ERR %d\n", sid, i, (int) status); | |
780 | ret = LFR_DEFAULT; |
|
788 | ret = LFR_DEFAULT; | |
781 | } |
|
789 | } | |
782 | rtems_task_wake_after(TIME_BETWEEN_TWO_SWF_PACKETS); // 300 ms between each packet => 7 * 3 = 21 packets => 6.3 seconds |
|
790 | rtems_task_wake_after(TIME_BETWEEN_TWO_SWF_PACKETS); // 300 ms between each packet => 7 * 3 = 21 packets => 6.3 seconds | |
783 | } |
|
791 | } | |
784 |
|
792 | |||
785 | return ret; |
|
793 | return ret; | |
786 | } |
|
794 | } | |
787 |
|
795 | |||
788 | int send_waveform_CWF(volatile int *waveform, unsigned int sid, |
|
796 | int send_waveform_CWF(volatile int *waveform, unsigned int sid, | |
789 | Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id) |
|
797 | Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id) | |
790 | { |
|
798 | { | |
791 | /** This function sends CWF CCSDS packets (F2, F1 or F0). |
|
799 | /** This function sends CWF CCSDS packets (F2, F1 or F0). | |
792 | * |
|
800 | * | |
793 | * @param waveform points to the buffer containing the data that will be send. |
|
801 | * @param waveform points to the buffer containing the data that will be send. | |
794 | * @param sid is the source identifier of the data that will be sent. |
|
802 | * @param sid is the source identifier of the data that will be sent. | |
795 | * @param headerCWF points to a table of headers that have been prepared for the data transmission. |
|
803 | * @param headerCWF points to a table of headers that have been prepared for the data transmission. | |
796 | * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures |
|
804 | * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures | |
797 | * contain information to setup the transmission of the data packets. |
|
805 | * contain information to setup the transmission of the data packets. | |
798 | * |
|
806 | * | |
799 | * One group of 2048 samples is sent as 7 consecutive packets, 6 packets containing 340 blocks and 8 packets containing 8 blocks. |
|
807 | * One group of 2048 samples is sent as 7 consecutive packets, 6 packets containing 340 blocks and 8 packets containing 8 blocks. | |
800 | * |
|
808 | * | |
801 | */ |
|
809 | */ | |
802 |
|
810 | |||
803 | unsigned int i; |
|
811 | unsigned int i; | |
804 | int ret; |
|
812 | int ret; | |
805 | rtems_status_code status; |
|
813 | rtems_status_code status; | |
806 | spw_ioctl_pkt_send spw_ioctl_send_CWF; |
|
814 | spw_ioctl_pkt_send spw_ioctl_send_CWF; | |
807 |
|
815 | |||
808 | spw_ioctl_send_CWF.hlen = TM_HEADER_LEN + 4 + 10; // + 4 is for the protocole extra header, + 10 is for the auxiliary header |
|
816 | spw_ioctl_send_CWF.hlen = TM_HEADER_LEN + 4 + 10; // + 4 is for the protocole extra header, + 10 is for the auxiliary header | |
809 | spw_ioctl_send_CWF.options = 0; |
|
817 | spw_ioctl_send_CWF.options = 0; | |
810 |
|
818 | |||
811 | ret = LFR_DEFAULT; |
|
819 | ret = LFR_DEFAULT; | |
812 |
|
820 | |||
813 | for (i=0; i<7; i++) // send waveform |
|
821 | for (i=0; i<7; i++) // send waveform | |
814 | { |
|
822 | { | |
815 | int coarseTime = 0x00; |
|
823 | int coarseTime = 0x00; | |
816 | int fineTime = 0x00; |
|
824 | int fineTime = 0x00; | |
817 | spw_ioctl_send_CWF.data = (char*) &waveform[ (i * 340 * NB_WORDS_SWF_BLK) ]; |
|
825 | spw_ioctl_send_CWF.data = (char*) &waveform[ (i * 340 * NB_WORDS_SWF_BLK) ]; | |
818 | spw_ioctl_send_CWF.hdr = (char*) &headerCWF[ i ]; |
|
826 | spw_ioctl_send_CWF.hdr = (char*) &headerCWF[ i ]; | |
819 | // BUILD THE DATA |
|
827 | // BUILD THE DATA | |
820 | if (i==6) { |
|
828 | if (i==6) { | |
821 | spw_ioctl_send_CWF.dlen = 8 * NB_BYTES_SWF_BLK; |
|
829 | spw_ioctl_send_CWF.dlen = 8 * NB_BYTES_SWF_BLK; | |
822 | } |
|
830 | } | |
823 | else { |
|
831 | else { | |
824 | spw_ioctl_send_CWF.dlen = 340 * NB_BYTES_SWF_BLK; |
|
832 | spw_ioctl_send_CWF.dlen = 340 * NB_BYTES_SWF_BLK; | |
825 | } |
|
833 | } | |
826 | // SET PACKET SEQUENCE COUNTER |
|
834 | // SET PACKET SEQUENCE COUNTER | |
827 | increment_seq_counter_source_id( headerCWF[ i ].packetSequenceControl, sid ); |
|
835 | increment_seq_counter_source_id( headerCWF[ i ].packetSequenceControl, sid ); | |
828 | // SET PACKET TIME |
|
836 | // SET PACKET TIME | |
829 | coarseTime = time_management_regs->coarse_time; |
|
837 | coarseTime = time_management_regs->coarse_time; | |
830 | fineTime = time_management_regs->fine_time; |
|
838 | fineTime = time_management_regs->fine_time; | |
831 | headerCWF[ i ].acquisitionTime[0] = (unsigned char) (coarseTime>>24); |
|
839 | headerCWF[ i ].acquisitionTime[0] = (unsigned char) (coarseTime>>24); | |
832 | headerCWF[ i ].acquisitionTime[1] = (unsigned char) (coarseTime>>16); |
|
840 | headerCWF[ i ].acquisitionTime[1] = (unsigned char) (coarseTime>>16); | |
833 | headerCWF[ i ].acquisitionTime[2] = (unsigned char) (coarseTime>>8); |
|
841 | headerCWF[ i ].acquisitionTime[2] = (unsigned char) (coarseTime>>8); | |
834 | headerCWF[ i ].acquisitionTime[3] = (unsigned char) (coarseTime); |
|
842 | headerCWF[ i ].acquisitionTime[3] = (unsigned char) (coarseTime); | |
835 | headerCWF[ i ].acquisitionTime[4] = (unsigned char) (fineTime>>8); |
|
843 | headerCWF[ i ].acquisitionTime[4] = (unsigned char) (fineTime>>8); | |
836 | headerCWF[ i ].acquisitionTime[5] = (unsigned char) (fineTime); |
|
844 | headerCWF[ i ].acquisitionTime[5] = (unsigned char) (fineTime); | |
837 | headerCWF[ i ].time[0] = (unsigned char) (coarseTime>>24); |
|
845 | headerCWF[ i ].time[0] = (unsigned char) (coarseTime>>24); | |
838 | headerCWF[ i ].time[1] = (unsigned char) (coarseTime>>16); |
|
846 | headerCWF[ i ].time[1] = (unsigned char) (coarseTime>>16); | |
839 | headerCWF[ i ].time[2] = (unsigned char) (coarseTime>>8); |
|
847 | headerCWF[ i ].time[2] = (unsigned char) (coarseTime>>8); | |
840 | headerCWF[ i ].time[3] = (unsigned char) (coarseTime); |
|
848 | headerCWF[ i ].time[3] = (unsigned char) (coarseTime); | |
841 | headerCWF[ i ].time[4] = (unsigned char) (fineTime>>8); |
|
849 | headerCWF[ i ].time[4] = (unsigned char) (fineTime>>8); | |
842 | headerCWF[ i ].time[5] = (unsigned char) (fineTime); |
|
850 | headerCWF[ i ].time[5] = (unsigned char) (fineTime); | |
843 | // SEND PACKET |
|
851 | // SEND PACKET | |
844 | if (sid == SID_NORM_CWF_F3) |
|
852 | if (sid == SID_NORM_CWF_F3) | |
845 | { |
|
853 | { | |
846 | status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF)); |
|
854 | status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF)); | |
847 | if (status != RTEMS_SUCCESSFUL) { |
|
855 | if (status != RTEMS_SUCCESSFUL) { | |
848 | printf("%d-%d, ERR %d\n", sid, i, (int) status); |
|
856 | printf("%d-%d, ERR %d\n", sid, i, (int) status); | |
849 | ret = LFR_DEFAULT; |
|
857 | ret = LFR_DEFAULT; | |
850 | } |
|
858 | } | |
851 | rtems_task_wake_after(TIME_BETWEEN_TWO_CWF3_PACKETS); |
|
859 | rtems_task_wake_after(TIME_BETWEEN_TWO_CWF3_PACKETS); | |
852 | } |
|
860 | } | |
853 | else |
|
861 | else | |
854 | { |
|
862 | { | |
855 | status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF)); |
|
863 | status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF)); | |
856 | if (status != RTEMS_SUCCESSFUL) { |
|
864 | if (status != RTEMS_SUCCESSFUL) { | |
857 | printf("%d-%d, ERR %d\n", sid, i, (int) status); |
|
865 | printf("%d-%d, ERR %d\n", sid, i, (int) status); | |
858 | ret = LFR_DEFAULT; |
|
866 | ret = LFR_DEFAULT; | |
859 | } |
|
867 | } | |
860 | } |
|
868 | } | |
861 | } |
|
869 | } | |
862 |
|
870 | |||
863 | return ret; |
|
871 | return ret; | |
864 | } |
|
872 | } | |
865 |
|
873 | |||
866 | int send_waveform_CWF3_light(volatile int *waveform, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id) |
|
874 | int send_waveform_CWF3_light(volatile int *waveform, Header_TM_LFR_SCIENCE_CWF_t *headerCWF, rtems_id queue_id) | |
867 | { |
|
875 | { | |
868 | /** This function sends CWF_F3 CCSDS packets without the b1, b2 and b3 data. |
|
876 | /** This function sends CWF_F3 CCSDS packets without the b1, b2 and b3 data. | |
869 | * |
|
877 | * | |
870 | * @param waveform points to the buffer containing the data that will be send. |
|
878 | * @param waveform points to the buffer containing the data that will be send. | |
871 | * @param headerCWF points to a table of headers that have been prepared for the data transmission. |
|
879 | * @param headerCWF points to a table of headers that have been prepared for the data transmission. | |
872 | * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures |
|
880 | * @param queue_id is the id of the rtems queue to which spw_ioctl_pkt_send structures will be send. The structures | |
873 | * contain information to setup the transmission of the data packets. |
|
881 | * contain information to setup the transmission of the data packets. | |
874 | * |
|
882 | * | |
875 | * By default, CWF_F3 packet are send without the b1, b2 and b3 data. This function rebuilds a data buffer |
|
883 | * By default, CWF_F3 packet are send without the b1, b2 and b3 data. This function rebuilds a data buffer | |
876 | * from the incoming data and sends it in 7 packets, 6 containing 340 blocks and 1 one containing 8 blocks. |
|
884 | * from the incoming data and sends it in 7 packets, 6 containing 340 blocks and 1 one containing 8 blocks. | |
877 | * |
|
885 | * | |
878 | */ |
|
886 | */ | |
879 |
|
887 | |||
880 | unsigned int i; |
|
888 | unsigned int i; | |
881 | int ret; |
|
889 | int ret; | |
882 | rtems_status_code status; |
|
890 | rtems_status_code status; | |
883 | spw_ioctl_pkt_send spw_ioctl_send_CWF; |
|
891 | spw_ioctl_pkt_send spw_ioctl_send_CWF; | |
884 | char *sample; |
|
892 | char *sample; | |
885 |
|
893 | |||
886 | spw_ioctl_send_CWF.hlen = TM_HEADER_LEN + 4 + 10; // + 4 is for the protocole extra header, + 10 is for the auxiliary header |
|
894 | spw_ioctl_send_CWF.hlen = TM_HEADER_LEN + 4 + 10; // + 4 is for the protocole extra header, + 10 is for the auxiliary header | |
887 | spw_ioctl_send_CWF.options = 0; |
|
895 | spw_ioctl_send_CWF.options = 0; | |
888 |
|
896 | |||
889 | ret = LFR_DEFAULT; |
|
897 | ret = LFR_DEFAULT; | |
890 |
|
898 | |||
891 | //********************** |
|
899 | //********************** | |
892 | // BUILD CWF3_light DATA |
|
900 | // BUILD CWF3_light DATA | |
893 | for ( i=0; i< 2048; i++) |
|
901 | for ( i=0; i< 2048; i++) | |
894 | { |
|
902 | { | |
895 | sample = (char*) &waveform[ i * NB_WORDS_SWF_BLK ]; |
|
903 | sample = (char*) &waveform[ i * NB_WORDS_SWF_BLK ]; | |
896 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) ] = sample[ 0 ]; |
|
904 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) ] = sample[ 0 ]; | |
897 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 1 ] = sample[ 1 ]; |
|
905 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 1 ] = sample[ 1 ]; | |
898 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 2 ] = sample[ 2 ]; |
|
906 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 2 ] = sample[ 2 ]; | |
899 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 3 ] = sample[ 3 ]; |
|
907 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 3 ] = sample[ 3 ]; | |
900 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 4 ] = sample[ 4 ]; |
|
908 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 4 ] = sample[ 4 ]; | |
901 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 5 ] = sample[ 5 ]; |
|
909 | wf_cont_f3_light[ (i * NB_BYTES_CWF3_LIGHT_BLK) + 5 ] = sample[ 5 ]; | |
902 | } |
|
910 | } | |
903 |
|
911 | |||
904 | //********************* |
|
912 | //********************* | |
905 | // SEND CWF3_light DATA |
|
913 | // SEND CWF3_light DATA | |
906 |
|
914 | |||
907 | for (i=0; i<7; i++) // send waveform |
|
915 | for (i=0; i<7; i++) // send waveform | |
908 | { |
|
916 | { | |
909 | int coarseTime = 0x00; |
|
917 | int coarseTime = 0x00; | |
910 | int fineTime = 0x00; |
|
918 | int fineTime = 0x00; | |
911 | spw_ioctl_send_CWF.data = (char*) &wf_cont_f3_light[ (i * 340 * NB_BYTES_CWF3_LIGHT_BLK) ]; |
|
919 | spw_ioctl_send_CWF.data = (char*) &wf_cont_f3_light[ (i * 340 * NB_BYTES_CWF3_LIGHT_BLK) ]; | |
912 | spw_ioctl_send_CWF.hdr = (char*) &headerCWF[ i ]; |
|
920 | spw_ioctl_send_CWF.hdr = (char*) &headerCWF[ i ]; | |
913 | // BUILD THE DATA |
|
921 | // BUILD THE DATA | |
914 | if ( i == WFRM_INDEX_OF_LAST_PACKET ) { |
|
922 | if ( i == WFRM_INDEX_OF_LAST_PACKET ) { | |
915 | spw_ioctl_send_CWF.dlen = 8 * NB_BYTES_CWF3_LIGHT_BLK; |
|
923 | spw_ioctl_send_CWF.dlen = 8 * NB_BYTES_CWF3_LIGHT_BLK; | |
916 | } |
|
924 | } | |
917 | else { |
|
925 | else { | |
918 | spw_ioctl_send_CWF.dlen = 340 * NB_BYTES_CWF3_LIGHT_BLK; |
|
926 | spw_ioctl_send_CWF.dlen = 340 * NB_BYTES_CWF3_LIGHT_BLK; | |
919 | } |
|
927 | } | |
920 | // SET PACKET SEQUENCE COUNTER |
|
928 | // SET PACKET SEQUENCE COUNTER | |
921 | increment_seq_counter_source_id( headerCWF[ i ].packetSequenceControl, SID_NORM_CWF_F3 ); |
|
929 | increment_seq_counter_source_id( headerCWF[ i ].packetSequenceControl, SID_NORM_CWF_F3 ); | |
922 | // SET PACKET TIME |
|
930 | // SET PACKET TIME | |
923 | coarseTime = time_management_regs->coarse_time; |
|
931 | coarseTime = time_management_regs->coarse_time; | |
924 | fineTime = time_management_regs->fine_time; |
|
932 | fineTime = time_management_regs->fine_time; | |
925 | headerCWF[ i ].acquisitionTime[0] = (unsigned char) (coarseTime>>24); |
|
933 | headerCWF[ i ].acquisitionTime[0] = (unsigned char) (coarseTime>>24); | |
926 | headerCWF[ i ].acquisitionTime[1] = (unsigned char) (coarseTime>>16); |
|
934 | headerCWF[ i ].acquisitionTime[1] = (unsigned char) (coarseTime>>16); | |
927 | headerCWF[ i ].acquisitionTime[2] = (unsigned char) (coarseTime>>8); |
|
935 | headerCWF[ i ].acquisitionTime[2] = (unsigned char) (coarseTime>>8); | |
928 | headerCWF[ i ].acquisitionTime[3] = (unsigned char) (coarseTime); |
|
936 | headerCWF[ i ].acquisitionTime[3] = (unsigned char) (coarseTime); | |
929 | headerCWF[ i ].acquisitionTime[4] = (unsigned char) (fineTime>>8); |
|
937 | headerCWF[ i ].acquisitionTime[4] = (unsigned char) (fineTime>>8); | |
930 | headerCWF[ i ].acquisitionTime[5] = (unsigned char) (fineTime); |
|
938 | headerCWF[ i ].acquisitionTime[5] = (unsigned char) (fineTime); | |
931 | headerCWF[ i ].time[0] = (unsigned char) (coarseTime>>24); |
|
939 | headerCWF[ i ].time[0] = (unsigned char) (coarseTime>>24); | |
932 | headerCWF[ i ].time[1] = (unsigned char) (coarseTime>>16); |
|
940 | headerCWF[ i ].time[1] = (unsigned char) (coarseTime>>16); | |
933 | headerCWF[ i ].time[2] = (unsigned char) (coarseTime>>8); |
|
941 | headerCWF[ i ].time[2] = (unsigned char) (coarseTime>>8); | |
934 | headerCWF[ i ].time[3] = (unsigned char) (coarseTime); |
|
942 | headerCWF[ i ].time[3] = (unsigned char) (coarseTime); | |
935 | headerCWF[ i ].time[4] = (unsigned char) (fineTime>>8); |
|
943 | headerCWF[ i ].time[4] = (unsigned char) (fineTime>>8); | |
936 | headerCWF[ i ].time[5] = (unsigned char) (fineTime); |
|
944 | headerCWF[ i ].time[5] = (unsigned char) (fineTime); | |
937 | // SEND PACKET |
|
945 | // SEND PACKET | |
938 | status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF)); |
|
946 | status = rtems_message_queue_send( queue_id, &spw_ioctl_send_CWF, sizeof(spw_ioctl_send_CWF)); | |
939 | if (status != RTEMS_SUCCESSFUL) { |
|
947 | if (status != RTEMS_SUCCESSFUL) { | |
940 | printf("%d-%d, ERR %d\n", SID_NORM_CWF_F3, i, (int) status); |
|
948 | printf("%d-%d, ERR %d\n", SID_NORM_CWF_F3, i, (int) status); | |
941 | ret = LFR_DEFAULT; |
|
949 | ret = LFR_DEFAULT; | |
942 | } |
|
950 | } | |
943 | rtems_task_wake_after(TIME_BETWEEN_TWO_CWF3_PACKETS); |
|
951 | rtems_task_wake_after(TIME_BETWEEN_TWO_CWF3_PACKETS); | |
944 | } |
|
952 | } | |
945 |
|
953 | |||
946 | return ret; |
|
954 | return ret; | |
947 | } |
|
955 | } | |
948 |
|
956 | |||
949 |
|
957 | |||
950 | //************** |
|
958 | //************** | |
951 | // wfp registers |
|
959 | // wfp registers | |
952 | void set_wfp_data_shaping() |
|
960 | void set_wfp_data_shaping() | |
953 | { |
|
961 | { | |
954 | /** This function sets the data_shaping register of the waveform picker module. |
|
962 | /** This function sets the data_shaping register of the waveform picker module. | |
955 | * |
|
963 | * | |
956 | * The value is read from one field of the parameter_dump_packet structure:\n |
|
964 | * The value is read from one field of the parameter_dump_packet structure:\n | |
957 | * bw_sp0_sp1_r0_r1 |
|
965 | * bw_sp0_sp1_r0_r1 | |
958 | * |
|
966 | * | |
959 | */ |
|
967 | */ | |
960 |
|
968 | |||
961 | unsigned char data_shaping; |
|
969 | unsigned char data_shaping; | |
962 |
|
970 | |||
963 | // get the parameters for the data shaping [BW SP0 SP1 R0 R1] in sy_lfr_common1 and configure the register |
|
971 | // get the parameters for the data shaping [BW SP0 SP1 R0 R1] in sy_lfr_common1 and configure the register | |
964 | // waveform picker : [R1 R0 SP1 SP0 BW] |
|
972 | // waveform picker : [R1 R0 SP1 SP0 BW] | |
965 |
|
973 | |||
966 | data_shaping = parameter_dump_packet.bw_sp0_sp1_r0_r1; |
|
974 | data_shaping = parameter_dump_packet.bw_sp0_sp1_r0_r1; | |
967 |
|
975 | |||
968 | #ifdef GSA |
|
976 | #ifdef GSA | |
969 | #else |
|
977 | #else | |
970 | new_waveform_picker_regs->data_shaping = |
|
978 | new_waveform_picker_regs->data_shaping = | |
971 | ( (data_shaping & 0x10) >> 4 ) // BW |
|
979 | ( (data_shaping & 0x10) >> 4 ) // BW | |
972 | + ( (data_shaping & 0x08) >> 2 ) // SP0 |
|
980 | + ( (data_shaping & 0x08) >> 2 ) // SP0 | |
973 | + ( (data_shaping & 0x04) ) // SP1 |
|
981 | + ( (data_shaping & 0x04) ) // SP1 | |
974 | + ( (data_shaping & 0x02) << 2 ) // R0 |
|
982 | + ( (data_shaping & 0x02) << 2 ) // R0 | |
975 | + ( (data_shaping & 0x01) << 4 ); // R1 |
|
983 | + ( (data_shaping & 0x01) << 4 ); // R1 | |
976 | #endif |
|
984 | #endif | |
977 | } |
|
985 | } | |
978 |
|
986 | |||
979 | char set_wfp_delta_snapshot() |
|
987 | char set_wfp_delta_snapshot() | |
980 | { |
|
988 | { | |
981 | /** This function sets the delta_snapshot register of the waveform picker module. |
|
989 | /** This function sets the delta_snapshot register of the waveform picker module. | |
982 | * |
|
990 | * | |
983 | * The value is read from two (unsigned char) of the parameter_dump_packet structure: |
|
991 | * The value is read from two (unsigned char) of the parameter_dump_packet structure: | |
984 | * - sy_lfr_n_swf_p[0] |
|
992 | * - sy_lfr_n_swf_p[0] | |
985 | * - sy_lfr_n_swf_p[1] |
|
993 | * - sy_lfr_n_swf_p[1] | |
986 | * |
|
994 | * | |
987 | */ |
|
995 | */ | |
988 |
|
996 | |||
989 | char ret; |
|
997 | char ret; | |
990 | unsigned int delta_snapshot; |
|
998 | unsigned int delta_snapshot; | |
991 | unsigned int aux; |
|
999 | unsigned int aux; | |
992 |
|
1000 | |||
993 | aux = 0; |
|
1001 | aux = 0; | |
994 | ret = LFR_DEFAULT; |
|
1002 | ret = LFR_DEFAULT; | |
995 |
|
1003 | |||
996 | delta_snapshot = parameter_dump_packet.sy_lfr_n_swf_p[0]*256 |
|
1004 | delta_snapshot = parameter_dump_packet.sy_lfr_n_swf_p[0]*256 | |
997 | + parameter_dump_packet.sy_lfr_n_swf_p[1]; |
|
1005 | + parameter_dump_packet.sy_lfr_n_swf_p[1]; | |
998 |
|
1006 | |||
999 | #ifdef GSA |
|
1007 | #ifdef GSA | |
1000 | #else |
|
1008 | #else | |
1001 | if ( delta_snapshot < MIN_DELTA_SNAPSHOT ) |
|
1009 | if ( delta_snapshot < MIN_DELTA_SNAPSHOT ) | |
1002 | { |
|
1010 | { | |
1003 | aux = MIN_DELTA_SNAPSHOT; |
|
1011 | aux = MIN_DELTA_SNAPSHOT; | |
1004 | ret = LFR_DEFAULT; |
|
1012 | ret = LFR_DEFAULT; | |
1005 | } |
|
1013 | } | |
1006 | else |
|
1014 | else | |
1007 | { |
|
1015 | { | |
1008 | aux = delta_snapshot ; |
|
1016 | aux = delta_snapshot ; | |
1009 | ret = LFR_SUCCESSFUL; |
|
1017 | ret = LFR_SUCCESSFUL; | |
1010 | } |
|
1018 | } | |
1011 | new_waveform_picker_regs->delta_snapshot = aux - 1; // max 2 bytes |
|
1019 | new_waveform_picker_regs->delta_snapshot = aux - 1; // max 2 bytes | |
1012 | #endif |
|
1020 | #endif | |
1013 |
|
1021 | |||
1014 | return ret; |
|
1022 | return ret; | |
1015 | } |
|
1023 | } | |
1016 |
|
1024 | |||
1017 | void set_wfp_burst_enable_register( unsigned char mode) |
|
1025 | void set_wfp_burst_enable_register( unsigned char mode) | |
1018 | { |
|
1026 | { | |
1019 | /** This function sets the waveform picker burst_enable register depending on the mode. |
|
1027 | /** This function sets the waveform picker burst_enable register depending on the mode. | |
1020 | * |
|
1028 | * | |
1021 | * @param mode is the LFR mode to launch. |
|
1029 | * @param mode is the LFR mode to launch. | |
1022 | * |
|
1030 | * | |
1023 | * The burst bits shall be before the enable bits. |
|
1031 | * The burst bits shall be before the enable bits. | |
1024 | * |
|
1032 | * | |
1025 | */ |
|
1033 | */ | |
1026 |
|
1034 | |||
1027 | #ifdef GSA |
|
1035 | #ifdef GSA | |
1028 | #else |
|
1036 | #else | |
1029 | // [0000 0000] burst f2, f1, f0 enable f3 f2 f1 f0 |
|
1037 | // [0000 0000] burst f2, f1, f0 enable f3 f2 f1 f0 | |
1030 | // the burst bits shall be set first, before the enable bits |
|
1038 | // the burst bits shall be set first, before the enable bits | |
1031 | switch(mode) { |
|
1039 | switch(mode) { | |
1032 | case(LFR_MODE_NORMAL): |
|
1040 | case(LFR_MODE_NORMAL): | |
1033 | new_waveform_picker_regs->run_burst_enable = 0x00; // [0000 0000] no burst enable |
|
1041 | new_waveform_picker_regs->run_burst_enable = 0x00; // [0000 0000] no burst enable | |
1034 | // new_waveform_picker_regs->run_burst_enable = 0x0f; // [0000 1111] enable f3 f2 f1 f0 |
|
1042 | // new_waveform_picker_regs->run_burst_enable = 0x0f; // [0000 1111] enable f3 f2 f1 f0 | |
1035 | // new_waveform_picker_regs->run_burst_enable = 0x07; // [0000 0111] enable f2 f1 f0 |
|
1043 | // new_waveform_picker_regs->run_burst_enable = 0x07; // [0000 0111] enable f2 f1 f0 | |
1036 |
new_waveform_picker_regs->run_burst_enable = 0x01; // [0000 0 |
|
1044 | // new_waveform_picker_regs->run_burst_enable = 0x01; // [0000 0001] enable f0 | |
|
1045 | new_waveform_picker_regs->run_burst_enable = 0x04; // [0000 0100] enable f0 | |||
1037 | break; |
|
1046 | break; | |
1038 | case(LFR_MODE_BURST): |
|
1047 | case(LFR_MODE_BURST): | |
1039 | new_waveform_picker_regs->run_burst_enable = 0x40; // [0100 0000] f2 burst enabled |
|
1048 | new_waveform_picker_regs->run_burst_enable = 0x40; // [0100 0000] f2 burst enabled | |
1040 | new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x04; // [0100] enable f2 |
|
1049 | new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x04; // [0100] enable f2 | |
1041 | break; |
|
1050 | break; | |
1042 | case(LFR_MODE_SBM1): |
|
1051 | case(LFR_MODE_SBM1): | |
1043 | new_waveform_picker_regs->run_burst_enable = 0x20; // [0010 0000] f1 burst enabled |
|
1052 | new_waveform_picker_regs->run_burst_enable = 0x20; // [0010 0000] f1 burst enabled | |
1044 | new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x0f; // [1111] enable f3 f2 f1 f0 |
|
1053 | new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x0f; // [1111] enable f3 f2 f1 f0 | |
1045 | break; |
|
1054 | break; | |
1046 | case(LFR_MODE_SBM2): |
|
1055 | case(LFR_MODE_SBM2): | |
1047 | new_waveform_picker_regs->run_burst_enable = 0x40; // [0100 0000] f2 burst enabled |
|
1056 | new_waveform_picker_regs->run_burst_enable = 0x40; // [0100 0000] f2 burst enabled | |
1048 | new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x0f; // [1111] enable f3 f2 f1 f0 |
|
1057 | new_waveform_picker_regs->run_burst_enable = new_waveform_picker_regs->run_burst_enable | 0x0f; // [1111] enable f3 f2 f1 f0 | |
1049 | break; |
|
1058 | break; | |
1050 | default: |
|
1059 | default: | |
1051 | new_waveform_picker_regs->run_burst_enable = 0x00; // [0000 0000] no burst enabled, no waveform enabled |
|
1060 | new_waveform_picker_regs->run_burst_enable = 0x00; // [0000 0000] no burst enabled, no waveform enabled | |
1052 | break; |
|
1061 | break; | |
1053 | } |
|
1062 | } | |
1054 | #endif |
|
1063 | #endif | |
1055 | } |
|
1064 | } | |
1056 |
|
1065 | |||
1057 | void reset_wfp_run_burst_enable() |
|
1066 | void reset_wfp_run_burst_enable() | |
1058 | { |
|
1067 | { | |
1059 | /** This function resets the waveform picker burst_enable register. |
|
1068 | /** This function resets the waveform picker burst_enable register. | |
1060 | * |
|
1069 | * | |
1061 | * The burst bits [f2 f1 f0] and the enable bits [f3 f2 f1 f0] are set to 0. |
|
1070 | * The burst bits [f2 f1 f0] and the enable bits [f3 f2 f1 f0] are set to 0. | |
1062 | * |
|
1071 | * | |
1063 | */ |
|
1072 | */ | |
1064 |
|
1073 | |||
1065 | #ifdef GSA |
|
1074 | #ifdef GSA | |
1066 | #else |
|
1075 | #else | |
1067 | new_waveform_picker_regs->run_burst_enable = 0x00; // burst f2, f1, f0 enable f3, f2, f1, f0 |
|
1076 | new_waveform_picker_regs->run_burst_enable = 0x00; // burst f2, f1, f0 enable f3, f2, f1, f0 | |
1068 | #endif |
|
1077 | #endif | |
1069 | } |
|
1078 | } | |
1070 |
|
1079 | |||
1071 | void reset_wfp_status() |
|
1080 | void reset_wfp_status() | |
1072 | { |
|
1081 | { | |
1073 | /** This function resets the waveform picker status register. |
|
1082 | /** This function resets the waveform picker status register. | |
1074 | * |
|
1083 | * | |
1075 | * All status bits are set to 0 [new_err full_err full]. |
|
1084 | * All status bits are set to 0 [new_err full_err full]. | |
1076 | * |
|
1085 | * | |
1077 | */ |
|
1086 | */ | |
1078 |
|
1087 | |||
1079 | #ifdef GSA |
|
1088 | #ifdef GSA | |
1080 | #else |
|
1089 | #else | |
1081 | new_waveform_picker_regs->status = 0x00; // burst f2, f1, f0 enable f3, f2, f1, f0 |
|
1090 | new_waveform_picker_regs->status = 0x00; // burst f2, f1, f0 enable f3, f2, f1, f0 | |
1082 | #endif |
|
1091 | #endif | |
1083 | } |
|
1092 | } | |
1084 |
|
1093 | |||
1085 | void reset_new_waveform_picker_regs() |
|
1094 | void reset_new_waveform_picker_regs() | |
1086 | { |
|
1095 | { | |
1087 | /** This function resets the waveform picker module registers. |
|
1096 | /** This function resets the waveform picker module registers. | |
1088 | * |
|
1097 | * | |
1089 | * The registers affected by this function are located at the following offset addresses: |
|
1098 | * The registers affected by this function are located at the following offset addresses: | |
1090 | * - 0x00 data_shaping |
|
1099 | * - 0x00 data_shaping | |
1091 | * - 0x04 run_burst_enable |
|
1100 | * - 0x04 run_burst_enable | |
1092 | * - 0x08 addr_data_f0 |
|
1101 | * - 0x08 addr_data_f0 | |
1093 | * - 0x0C addr_data_f1 |
|
1102 | * - 0x0C addr_data_f1 | |
1094 | * - 0x10 addr_data_f2 |
|
1103 | * - 0x10 addr_data_f2 | |
1095 | * - 0x14 addr_data_f3 |
|
1104 | * - 0x14 addr_data_f3 | |
1096 | * - 0x18 status |
|
1105 | * - 0x18 status | |
1097 | * - 0x1C delta_snapshot |
|
1106 | * - 0x1C delta_snapshot | |
1098 | * - 0x20 delta_f0 |
|
1107 | * - 0x20 delta_f0 | |
1099 | * - 0x24 delta_f0_2 |
|
1108 | * - 0x24 delta_f0_2 | |
1100 | * - 0x28 delta_f1 |
|
1109 | * - 0x28 delta_f1 | |
1101 | * - 0x2c delta_f2 |
|
1110 | * - 0x2c delta_f2 | |
1102 | * - 0x30 nb_data_by_buffer |
|
1111 | * - 0x30 nb_data_by_buffer | |
1103 | * - 0x34 nb_snapshot_param |
|
1112 | * - 0x34 nb_snapshot_param | |
1104 | * - 0x38 start_date |
|
1113 | * - 0x38 start_date | |
1105 | * - 0x3c nb_word_in_buffer |
|
1114 | * - 0x3c nb_word_in_buffer | |
1106 | * |
|
1115 | * | |
1107 | */ |
|
1116 | */ | |
1108 |
|
1117 | |||
|
1118 | unsigned int wf_snap_f0_aligned; | |||
|
1119 | unsigned int wf_snap_f1_aligned; | |||
|
1120 | unsigned int wf_snap_f2_aligned; | |||
|
1121 | unsigned int wf_cont_f3_aligned; | |||
|
1122 | ||||
1109 | new_waveform_picker_regs->data_shaping = 0x01; // 0x00 *** R1 R0 SP1 SP0 BW |
|
1123 | new_waveform_picker_regs->data_shaping = 0x01; // 0x00 *** R1 R0 SP1 SP0 BW | |
1110 | new_waveform_picker_regs->run_burst_enable = 0x00; // 0x04 *** [run *** burst f2, f1, f0 *** enable f3, f2, f1, f0 ] |
|
1124 | new_waveform_picker_regs->run_burst_enable = 0x00; // 0x04 *** [run *** burst f2, f1, f0 *** enable f3, f2, f1, f0 ] | |
1111 | new_waveform_picker_regs->addr_data_f0 = (int) (wf_snap_f0); // 0x08 |
|
1125 | wf_snap_f0_aligned = address_alignment( wf_snap_f0 ); | |
1112 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1); // 0x0c |
|
1126 | wf_snap_f1_aligned = address_alignment( wf_snap_f1 ); | |
1113 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2); // 0x10 |
|
1127 | wf_snap_f2_aligned = address_alignment( wf_snap_f2 ); | |
1114 | new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3); // 0x14 |
|
1128 | wf_cont_f3_aligned = address_alignment( wf_cont_f3 ); | |
|
1129 | new_waveform_picker_regs->addr_data_f0 = (int) (wf_snap_f0_aligned); // 0x08 | |||
|
1130 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_aligned); // 0x0c | |||
|
1131 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_aligned); // 0x10 | |||
|
1132 | new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3_aligned); // 0x14 | |||
|
1133 | new_waveform_picker_regs->status = 0x00; // 0x18 | |||
|
1134 | // new_waveform_picker_regs->delta_snapshot = 0x12800; // 0x1c 296 * 256 = 75776 | |||
|
1135 | // new_waveform_picker_regs->delta_snapshot = 0x1000; // 0x1c 16 * 256 = 4096 | |||
|
1136 | new_waveform_picker_regs->delta_snapshot = 0x2000; // 0x1c 32 * 256 = 8192 | |||
|
1137 | new_waveform_picker_regs->delta_f0 = 0xbf5; // 0x20 *** 1013 | |||
|
1138 | new_waveform_picker_regs->delta_f0_2 = 0x7; // 0x24 *** 7 [7 bits] | |||
|
1139 | new_waveform_picker_regs->delta_f1 = 0xbc0; // 0x28 *** 960 | |||
|
1140 | // new_waveform_picker_regs->delta_f2 = 0x12200; // 0x2c *** 74240 | |||
|
1141 | new_waveform_picker_regs->delta_f2 = 0xc00; // 0x2c *** 12 * 256 = 3072 | |||
|
1142 | new_waveform_picker_regs->nb_data_by_buffer = 0x7ff; // 0x30 *** 2048 -1 => nb samples -1 | |||
|
1143 | new_waveform_picker_regs->snapshot_param = 0x800; // 0x34 *** 2048 => nb samples | |||
|
1144 | new_waveform_picker_regs->start_date = 0x00; // 0x38 | |||
|
1145 | new_waveform_picker_regs->nb_word_in_buffer = 0x1802; // 0x3c *** 2048 * 3 + 2 = 6146 | |||
|
1146 | } | |||
|
1147 | ||||
|
1148 | void reset_new_waveform_picker_regs_alt() | |||
|
1149 | { | |||
|
1150 | /** This function resets the waveform picker module registers. | |||
|
1151 | * | |||
|
1152 | * The registers affected by this function are located at the following offset addresses: | |||
|
1153 | * - 0x00 data_shaping | |||
|
1154 | * - 0x04 run_burst_enable | |||
|
1155 | * - 0x08 addr_data_f0 | |||
|
1156 | * - 0x0C addr_data_f1 | |||
|
1157 | * - 0x10 addr_data_f2 | |||
|
1158 | * - 0x14 addr_data_f3 | |||
|
1159 | * - 0x18 status | |||
|
1160 | * - 0x1C delta_snapshot | |||
|
1161 | * - 0x20 delta_f0 | |||
|
1162 | * - 0x24 delta_f0_2 | |||
|
1163 | * - 0x28 delta_f1 | |||
|
1164 | * - 0x2c delta_f2 | |||
|
1165 | * - 0x30 nb_data_by_buffer | |||
|
1166 | * - 0x34 nb_snapshot_param | |||
|
1167 | * - 0x38 start_date | |||
|
1168 | * - 0x3c nb_word_in_buffer | |||
|
1169 | * | |||
|
1170 | */ | |||
|
1171 | ||||
|
1172 | unsigned int wf_snap_f0_aligned; | |||
|
1173 | unsigned int wf_snap_f1_aligned; | |||
|
1174 | unsigned int wf_snap_f2_aligned; | |||
|
1175 | unsigned int wf_cont_f3_aligned; | |||
|
1176 | ||||
|
1177 | new_waveform_picker_regs->data_shaping = 0x01; // 0x00 *** R1 R0 SP1 SP0 BW | |||
|
1178 | new_waveform_picker_regs->run_burst_enable = 0x00; // 0x04 *** [run *** burst f2, f1, f0 *** enable f3, f2, f1, f0 ] | |||
|
1179 | wf_snap_f0_aligned = address_alignment( wf_snap_f0 ); | |||
|
1180 | wf_snap_f1_aligned = address_alignment( wf_snap_f1 ); | |||
|
1181 | wf_snap_f2_aligned = address_alignment( wf_snap_f2 ); | |||
|
1182 | wf_cont_f3_aligned = address_alignment( wf_cont_f3 ); | |||
|
1183 | new_waveform_picker_regs->addr_data_f0 = (int) (wf_snap_f0_aligned); // 0x08 | |||
|
1184 | new_waveform_picker_regs->addr_data_f1 = (int) (wf_snap_f1_aligned); // 0x0c | |||
|
1185 | new_waveform_picker_regs->addr_data_f2 = (int) (wf_snap_f2_aligned); // 0x10 | |||
|
1186 | new_waveform_picker_regs->addr_data_f3 = (int) (wf_cont_f3_aligned); // 0x14 | |||
1115 | new_waveform_picker_regs->status = 0x00; // 0x18 |
|
1187 | new_waveform_picker_regs->status = 0x00; // 0x18 | |
1116 | // new_waveform_picker_regs->delta_snapshot = 0x12800; // 0x1c 296 * 256 = 75776 |
|
1188 | // new_waveform_picker_regs->delta_snapshot = 0x12800; // 0x1c 296 * 256 = 75776 | |
1117 | new_waveform_picker_regs->delta_snapshot = 0x1000; // 0x1c 16 * 256 = 4096 |
|
1189 | new_waveform_picker_regs->delta_snapshot = 0x1000; // 0x1c 16 * 256 = 4096 | |
1118 |
new_waveform_picker_regs->delta_f0 = 0x |
|
1190 | new_waveform_picker_regs->delta_f0 = 0xbf5; // 0x20 *** 1013 | |
1119 | new_waveform_picker_regs->delta_f0_2 = 0x7; // 0x24 *** 7 [7 bits] |
|
1191 | new_waveform_picker_regs->delta_f0_2 = 0x7; // 0x24 *** 7 [7 bits] | |
1120 |
new_waveform_picker_regs->delta_f1 = 0x |
|
1192 | new_waveform_picker_regs->delta_f1 = 0xbc0; // 0x28 *** 960 | |
1121 | // new_waveform_picker_regs->delta_f2 = 0x12200; // 0x2c *** 74240 |
|
1193 | // new_waveform_picker_regs->delta_f2 = 0x12200; // 0x2c *** 74240 | |
1122 | new_waveform_picker_regs->delta_f2 = 0xc00; // 0x2c *** 12 * 256 = 3072 |
|
1194 | new_waveform_picker_regs->delta_f2 = 0xc00; // 0x2c *** 12 * 256 = 3072 | |
1123 |
new_waveform_picker_regs->nb_data_by_buffer = 0x7 |
|
1195 | new_waveform_picker_regs->nb_data_by_buffer = 0x07; // 0x30 *** 7 | |
1124 |
new_waveform_picker_regs->snapshot_param = 0x |
|
1196 | new_waveform_picker_regs->snapshot_param = 0x10; // 0x34 *** 16 | |
1125 | new_waveform_picker_regs->start_date = 0x00; // 0x38 |
|
1197 | new_waveform_picker_regs->start_date = 0x00; // 0x38 | |
1126 |
new_waveform_picker_regs->nb_word_in_buffer = 0x |
|
1198 | new_waveform_picker_regs->nb_word_in_buffer = 0x34; // 0x3c *** (3 * 8 + 2) * 2 | |
1127 | } |
|
1199 | } | |
1128 |
|
1200 | |||
1129 | //***************** |
|
1201 | //***************** | |
1130 | // local parameters |
|
1202 | // local parameters | |
1131 | void set_local_sbm1_nb_cwf_max() |
|
1203 | void set_local_sbm1_nb_cwf_max() | |
1132 | { |
|
1204 | { | |
1133 | /** This function sets the value of the sbm1_nb_cwf_max local parameter. |
|
1205 | /** This function sets the value of the sbm1_nb_cwf_max local parameter. | |
1134 | * |
|
1206 | * | |
1135 | * The sbm1_nb_cwf_max parameter counts the number of CWF_F1 records that have been sent.\n |
|
1207 | * The sbm1_nb_cwf_max parameter counts the number of CWF_F1 records that have been sent.\n | |
1136 | * This parameter is used to send CWF_F1 data as normal data when the SBM1 is active.\n\n |
|
1208 | * This parameter is used to send CWF_F1 data as normal data when the SBM1 is active.\n\n | |
1137 | * (2 snapshots of 2048 points per seconds) * (period of the NORM snashots) - 8 s (duration of the f2 snapshot) |
|
1209 | * (2 snapshots of 2048 points per seconds) * (period of the NORM snashots) - 8 s (duration of the f2 snapshot) | |
1138 | * |
|
1210 | * | |
1139 | */ |
|
1211 | */ | |
1140 | param_local.local_sbm1_nb_cwf_max = 2 * |
|
1212 | param_local.local_sbm1_nb_cwf_max = 2 * | |
1141 | (parameter_dump_packet.sy_lfr_n_swf_p[0] * 256 |
|
1213 | (parameter_dump_packet.sy_lfr_n_swf_p[0] * 256 | |
1142 | + parameter_dump_packet.sy_lfr_n_swf_p[1]) - 8; // 16 CWF1 parts during 1 SWF2 |
|
1214 | + parameter_dump_packet.sy_lfr_n_swf_p[1]) - 8; // 16 CWF1 parts during 1 SWF2 | |
1143 | } |
|
1215 | } | |
1144 |
|
1216 | |||
1145 | void set_local_sbm2_nb_cwf_max() |
|
1217 | void set_local_sbm2_nb_cwf_max() | |
1146 | { |
|
1218 | { | |
1147 | /** This function sets the value of the sbm1_nb_cwf_max local parameter. |
|
1219 | /** This function sets the value of the sbm1_nb_cwf_max local parameter. | |
1148 | * |
|
1220 | * | |
1149 | * The sbm1_nb_cwf_max parameter counts the number of CWF_F1 records that have been sent.\n |
|
1221 | * The sbm1_nb_cwf_max parameter counts the number of CWF_F1 records that have been sent.\n | |
1150 | * This parameter is used to send CWF_F2 data as normal data when the SBM2 is active.\n\n |
|
1222 | * This parameter is used to send CWF_F2 data as normal data when the SBM2 is active.\n\n | |
1151 | * (period of the NORM snashots) / (8 seconds per snapshot at f2 = 256 Hz) |
|
1223 | * (period of the NORM snashots) / (8 seconds per snapshot at f2 = 256 Hz) | |
1152 | * |
|
1224 | * | |
1153 | */ |
|
1225 | */ | |
1154 |
|
1226 | |||
1155 | param_local.local_sbm2_nb_cwf_max = (parameter_dump_packet.sy_lfr_n_swf_p[0] * 256 |
|
1227 | param_local.local_sbm2_nb_cwf_max = (parameter_dump_packet.sy_lfr_n_swf_p[0] * 256 | |
1156 | + parameter_dump_packet.sy_lfr_n_swf_p[1]) / 8; |
|
1228 | + parameter_dump_packet.sy_lfr_n_swf_p[1]) / 8; | |
1157 | } |
|
1229 | } | |
1158 |
|
1230 | |||
1159 | void set_local_nb_interrupt_f0_MAX() |
|
1231 | void set_local_nb_interrupt_f0_MAX() | |
1160 | { |
|
1232 | { | |
1161 | /** This function sets the value of the nb_interrupt_f0_MAX local parameter. |
|
1233 | /** This function sets the value of the nb_interrupt_f0_MAX local parameter. | |
1162 | * |
|
1234 | * | |
1163 | * This parameter is used for the SM validation only.\n |
|
1235 | * This parameter is used for the SM validation only.\n | |
1164 | * The software waits param_local.local_nb_interrupt_f0_MAX interruptions from the spectral matrices |
|
1236 | * The software waits param_local.local_nb_interrupt_f0_MAX interruptions from the spectral matrices | |
1165 | * module before launching a basic processing. |
|
1237 | * module before launching a basic processing. | |
1166 | * |
|
1238 | * | |
1167 | */ |
|
1239 | */ | |
1168 |
|
1240 | |||
1169 | param_local.local_nb_interrupt_f0_MAX = ( (parameter_dump_packet.sy_lfr_n_asm_p[0]) * 256 |
|
1241 | param_local.local_nb_interrupt_f0_MAX = ( (parameter_dump_packet.sy_lfr_n_asm_p[0]) * 256 | |
1170 | + parameter_dump_packet.sy_lfr_n_asm_p[1] ) * 100; |
|
1242 | + parameter_dump_packet.sy_lfr_n_asm_p[1] ) * 100; | |
1171 | } |
|
1243 | } | |
1172 |
|
1244 | |||
1173 | void reset_local_sbm1_nb_cwf_sent() |
|
1245 | void reset_local_sbm1_nb_cwf_sent() | |
1174 | { |
|
1246 | { | |
1175 | /** This function resets the value of the sbm1_nb_cwf_sent local parameter. |
|
1247 | /** This function resets the value of the sbm1_nb_cwf_sent local parameter. | |
1176 | * |
|
1248 | * | |
1177 | * The sbm1_nb_cwf_sent parameter counts the number of CWF_F1 records that have been sent.\n |
|
1249 | * The sbm1_nb_cwf_sent parameter counts the number of CWF_F1 records that have been sent.\n | |
1178 | * This parameter is used to send CWF_F1 data as normal data when the SBM1 is active. |
|
1250 | * This parameter is used to send CWF_F1 data as normal data when the SBM1 is active. | |
1179 | * |
|
1251 | * | |
1180 | */ |
|
1252 | */ | |
1181 |
|
1253 | |||
1182 | param_local.local_sbm1_nb_cwf_sent = 0; |
|
1254 | param_local.local_sbm1_nb_cwf_sent = 0; | |
1183 | } |
|
1255 | } | |
1184 |
|
1256 | |||
1185 | void reset_local_sbm2_nb_cwf_sent() |
|
1257 | void reset_local_sbm2_nb_cwf_sent() | |
1186 | { |
|
1258 | { | |
1187 | /** This function resets the value of the sbm2_nb_cwf_sent local parameter. |
|
1259 | /** This function resets the value of the sbm2_nb_cwf_sent local parameter. | |
1188 | * |
|
1260 | * | |
1189 | * The sbm2_nb_cwf_sent parameter counts the number of CWF_F2 records that have been sent.\n |
|
1261 | * The sbm2_nb_cwf_sent parameter counts the number of CWF_F2 records that have been sent.\n | |
1190 | * This parameter is used to send CWF_F2 data as normal data when the SBM2 mode is active. |
|
1262 | * This parameter is used to send CWF_F2 data as normal data when the SBM2 mode is active. | |
1191 | * |
|
1263 | * | |
1192 | */ |
|
1264 | */ | |
1193 |
|
1265 | |||
1194 | param_local.local_sbm2_nb_cwf_sent = 0; |
|
1266 | param_local.local_sbm2_nb_cwf_sent = 0; | |
1195 | } |
|
1267 | } | |
1196 |
|
1268 | |||
1197 | rtems_id get_pkts_queue_id( void ) |
|
1269 | rtems_id get_pkts_queue_id( void ) | |
1198 | { |
|
1270 | { | |
1199 | rtems_id queue_id; |
|
1271 | rtems_id queue_id; | |
1200 | rtems_status_code status; |
|
1272 | rtems_status_code status; | |
1201 | rtems_name queue_send_name; |
|
1273 | rtems_name queue_send_name; | |
1202 |
|
1274 | |||
1203 | queue_send_name = rtems_build_name( 'Q', '_', 'S', 'D' ); |
|
1275 | queue_send_name = rtems_build_name( 'Q', '_', 'S', 'D' ); | |
1204 |
|
1276 | |||
1205 | status = rtems_message_queue_ident( queue_send_name, 0, &queue_id ); |
|
1277 | status = rtems_message_queue_ident( queue_send_name, 0, &queue_id ); | |
1206 | if (status != RTEMS_SUCCESSFUL) |
|
1278 | if (status != RTEMS_SUCCESSFUL) | |
1207 | { |
|
1279 | { | |
1208 | PRINTF1("in get_pkts_queue_id *** ERR %d\n", status) |
|
1280 | PRINTF1("in get_pkts_queue_id *** ERR %d\n", status) | |
1209 | } |
|
1281 | } | |
1210 | return queue_id; |
|
1282 | return queue_id; | |
1211 | } |
|
1283 | } | |
1212 |
|
1284 | |||
1213 | void increment_seq_counter_source_id( unsigned char *packet_sequence_control, unsigned int sid ) |
|
1285 | void increment_seq_counter_source_id( unsigned char *packet_sequence_control, unsigned int sid ) | |
1214 | { |
|
1286 | { | |
1215 | unsigned short *sequence_cnt; |
|
1287 | unsigned short *sequence_cnt; | |
1216 | unsigned short segmentation_grouping_flag; |
|
1288 | unsigned short segmentation_grouping_flag; | |
1217 | unsigned short new_packet_sequence_control; |
|
1289 | unsigned short new_packet_sequence_control; | |
1218 |
|
1290 | |||
1219 | if ( (sid ==SID_NORM_SWF_F0) || (sid ==SID_NORM_SWF_F1) || (sid ==SID_NORM_SWF_F2) |
|
1291 | if ( (sid ==SID_NORM_SWF_F0) || (sid ==SID_NORM_SWF_F1) || (sid ==SID_NORM_SWF_F2) | |
1220 | || (sid ==SID_NORM_CWF_F3) || (sid ==SID_BURST_CWF_F2) ) |
|
1292 | || (sid ==SID_NORM_CWF_F3) || (sid ==SID_BURST_CWF_F2) ) | |
1221 | { |
|
1293 | { | |
1222 | sequence_cnt = &sequenceCounters_SCIENCE_NORMAL_BURST; |
|
1294 | sequence_cnt = &sequenceCounters_SCIENCE_NORMAL_BURST; | |
1223 | } |
|
1295 | } | |
1224 | else if ( (sid ==SID_SBM1_CWF_F1) || (sid ==SID_SBM2_CWF_F2) ) |
|
1296 | else if ( (sid ==SID_SBM1_CWF_F1) || (sid ==SID_SBM2_CWF_F2) ) | |
1225 | { |
|
1297 | { | |
1226 | sequence_cnt = &sequenceCounters_SCIENCE_SBM1_SBM2; |
|
1298 | sequence_cnt = &sequenceCounters_SCIENCE_SBM1_SBM2; | |
1227 | } |
|
1299 | } | |
1228 | else |
|
1300 | else | |
1229 | { |
|
1301 | { | |
1230 | sequence_cnt = &sequenceCounters_TC_EXE[ UNKNOWN ]; |
|
1302 | sequence_cnt = &sequenceCounters_TC_EXE[ UNKNOWN ]; | |
1231 | PRINTF1("in increment_seq_counter_source_id *** ERR apid_destid %d not known\n", sid) |
|
1303 | PRINTF1("in increment_seq_counter_source_id *** ERR apid_destid %d not known\n", sid) | |
1232 | } |
|
1304 | } | |
1233 |
|
1305 | |||
1234 | segmentation_grouping_flag = (packet_sequence_control[ 0 ] & 0xc0) << 8; |
|
1306 | segmentation_grouping_flag = (packet_sequence_control[ 0 ] & 0xc0) << 8; | |
1235 | *sequence_cnt = (*sequence_cnt) & 0x3fff; |
|
1307 | *sequence_cnt = (*sequence_cnt) & 0x3fff; | |
1236 |
|
1308 | |||
1237 | new_packet_sequence_control = segmentation_grouping_flag | *sequence_cnt ; |
|
1309 | new_packet_sequence_control = segmentation_grouping_flag | *sequence_cnt ; | |
1238 |
|
1310 | |||
1239 | packet_sequence_control[0] = (unsigned char) (new_packet_sequence_control >> 8); |
|
1311 | packet_sequence_control[0] = (unsigned char) (new_packet_sequence_control >> 8); | |
1240 | packet_sequence_control[1] = (unsigned char) (new_packet_sequence_control ); |
|
1312 | packet_sequence_control[1] = (unsigned char) (new_packet_sequence_control ); | |
1241 |
|
1313 | |||
1242 | // increment the sequence counter for the next packet |
|
1314 | // increment the sequence counter for the next packet | |
1243 | if ( *sequence_cnt < SEQ_CNT_MAX) |
|
1315 | if ( *sequence_cnt < SEQ_CNT_MAX) | |
1244 | { |
|
1316 | { | |
1245 | *sequence_cnt = *sequence_cnt + 1; |
|
1317 | *sequence_cnt = *sequence_cnt + 1; | |
1246 | } |
|
1318 | } | |
1247 | else |
|
1319 | else | |
1248 | { |
|
1320 | { | |
1249 | *sequence_cnt = 0; |
|
1321 | *sequence_cnt = 0; | |
1250 | } |
|
1322 | } | |
1251 | } |
|
1323 | } | |
|
1324 | ||||
|
1325 | unsigned int address_alignment( volatile int *address) | |||
|
1326 | { | |||
|
1327 | unsigned char i; | |||
|
1328 | unsigned char lastByte; | |||
|
1329 | unsigned int addressAligned; | |||
|
1330 | ||||
|
1331 | addressAligned = (unsigned int) address; | |||
|
1332 | ||||
|
1333 | PRINTF1("address %x\n", addressAligned ); | |||
|
1334 | ||||
|
1335 | for (i=0; i<256; i++) | |||
|
1336 | { | |||
|
1337 | lastByte = (unsigned char) ( addressAligned & 0x000000ff ) ; | |||
|
1338 | if (lastByte == 0x00) | |||
|
1339 | { | |||
|
1340 | break; | |||
|
1341 | } | |||
|
1342 | else | |||
|
1343 | { | |||
|
1344 | addressAligned = addressAligned + 1; | |||
|
1345 | } | |||
|
1346 | } | |||
|
1347 | ||||
|
1348 | PRINTF2("i = %d, address %x\n", i, (int) addressAligned); | |||
|
1349 | ||||
|
1350 | return addressAligned; | |||
|
1351 | } |
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