mirror of
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9b6b681624
Correct r226271 which should have used WITHOUT_BZIP2_SUPPORT per r166255. Obtained from: Juniper Networks
309 lines
7.9 KiB
Makefile
309 lines
7.9 KiB
Makefile
# $FreeBSD$
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.MAKE.MODE= normal
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# Test for broken LHS expansion.
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# This *must* cause make(1) to detect a recursive variable, and fail as such.
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.if make(lhs_expn)
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FOO= ${BAR}
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BAR${NIL}= ${FOO}
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FOO${BAR}= ${FOO}
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.endif
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DATA1= helllo
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DATA2:= ${DATA1}
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DATA3= ${DATA2:S/ll/rr/g}
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DATA4:= ${DATA2:S/ll/rr/g}
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DATA2?= allo
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DATA5:= ${DATA2:S/ll/ii/g} ${DATA1:S/ll/rr/g}
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DATA2= yello
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DATA1:= ${DATA5:S/l/r/g}
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NIL=
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SMAKE= MAKEFLAGS= ${MAKE} -C ${.CURDIR}
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all:
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@echo '1..16'
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@${SMAKE} C_check || { ${MAKE} -C ${.CURDIR} failure ; }
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@echo "ok 1 - C_check # Test of -C flag existence detected no regression."
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@echo 1:${DATA1} 2:${DATA2} 3:${DATA3} 4:${DATA4} 5:${DATA5} | \
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diff -u ${.CURDIR}/regress.variables.out - || \
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${SMAKE} failure
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@echo "ok 2 - test_variables # Test variables detected no regression, output matches."
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@${SMAKE} double 2>/dev/null || ${SMAKE} failure
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@echo "ok 3 - test_targets # Test targets detected no regression."
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@${SMAKE} sysvmatch || ${SMAKE} failure
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@echo "ok 4 - sysvmatch # Test sysvmatch detected no regression."
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@! ${SMAKE} lhs_expn && true || ${SMAKE} failure
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@echo "ok 5 lhs_expn # Test lhs_expn detected no regression."
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@${SMAKE} notdef || ${SMAKE} failure
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@echo "ok 6 - notdef # Test notdef detected no regression."
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@${SMAKE} modifiers || ${SMAKE} failure
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@echo "ok 7 - modifiers # Test modifiers detected no regression."
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@${SMAKE} arith_expr || ${SMAKE} failure
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@echo "ok 8 arith_expr # Test arith_expr detected no regression."
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@${SMAKE} PATH_exists || ${SMAKE} failure
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@echo "ok 9 PATH_exists # Test PATH_exists detected no regression."
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@${SMAKE} double_quotes || ${SMAKE} failure
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@echo "ok 10 double_quotes # Test double_quotes detected no regression."
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@! ${SMAKE} double_quotes2 >/dev/null 2>&1 && true || ${SMAKE} failure
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@echo "ok 11 double_quotes2 # Test double_quotes2 detected no regression."
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@${SMAKE} pass_cmd_vars || ${SMAKE} failure
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@echo "ok 12 pass_cmd_vars # Test pass_cmd_vars detected no regression."
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@${SMAKE} plus_flag || ${SMAKE} failure
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@echo "ok 13 plus_flag # Test plus_flag detected no regression."
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@! ${SMAKE} shell >/dev/null 2>&1 && true || ${SMAKE} failure
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@echo "ok 14 shell # Test shell detected no regression."
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@${SMAKE} shell_1 || ${SMAKE} failure
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@echo "ok 15 shell_1 # Test shell_1 detected no regression."
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.if !defined(.PARSEDIR)
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@${SMAKE} shell_2 || ${SMAKE} failure
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@echo "ok 16 shell_2 # Test shell_2 detected no regression."
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.endif
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.if make(C_check)
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C_check:
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.endif
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.if make(double)
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# Doubly-defined targets. make(1) will warn, but use the "right" one. If it
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# switches to using the "non-right" one, it breaks things worse than a little
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# regression test.
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double:
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@true
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double:
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@false
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.endif
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.if make(sysvmatch)
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# Some versions of FreeBSD make(1) do not handle a nil LHS in sysvsubst.
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sysvmatch:
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@echo EMPTY ${NIL:=foo} LHS | \
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diff -u ${.CURDIR}/regress.sysvmatch.out - || false
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.endif
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# A bogus target for the lhs_expn test; If this is reached, then the make(1)
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# program has not errored out because of the recursion caused by not expanding
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# the left-hand-side's embedded variables above.
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lhs_expn:
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@true
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.if make(notdef)
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# make(1) claims to only evaluate a conditional as far as is necessary
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# to determine its value; that was not always the case.
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.undef notdef
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notdef:
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.if defined(notdef) && ${notdef:M/}
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.endif
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.endif
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.if make(modifiers)
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.if defined(.PARSEDIR)
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# check if bmake can expand plain variables
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.MAKE.EXPAND_VARIABLES= yes
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x!= ${SMAKE} -V .CURDIR:H
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modifiers:
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.if ${.CURDIR:H} != "$x"
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@false
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.endif
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.else
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# See if make(1) supports the C modifier.
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modifiers: dollarV
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@if ${SMAKE} -V .CURDIR:C/.// 2>&1 >/dev/null | \
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grep -q "Unknown modifier 'C'"; then \
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false; \
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fi
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# check that make -V '${VAR}' works
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V_expn != V_OK=ok ${SMAKE} -r -f /dev/null -V '$${V_OK}'
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dollarV:
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.if ${V_expn} == ""
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@false
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.endif
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.endif
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.endif
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.if make(arith_expr)
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arith_expr:
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# See if arithmetic expression parsing is broken.
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# The different spacing below is intentional.
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VALUE= 0
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.if (${VALUE} < 0)||(${VALUE}>0)
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.endif
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.endif
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.if make(PATH_exists)
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PATH_exists:
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.PATH: ${.CURDIR}
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.if !exists(${.CURDIR}/) || !exists(${.CURDIR}/.) || !exists(${.CURDIR}/..)
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.error exists() failed
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.endif
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.endif
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.if make(double_quotes)
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VALUE= foo ""
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double_quotes:
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.if ${VALUE:S/$//} != ${VALUE}
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.error "" reduced to "
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.endif
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.endif
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.if make(double_quotes2)
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double_quotes2:
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@cat /dev/null ""
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.endif
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#
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# Check passing of variable via MAKEFLAGS
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#
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.if make(pass_cmd_vars)
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pass_cmd_vars:
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@${SMAKE} CMD1=cmd1 CMD2=cmd2 pass_cmd_vars_1
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@${SMAKE} CMD1=cmd1 CMD2=cmd2 pass_cmd_vars_2
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@${SMAKE} CMD1=cmd1 CMD2=cmd2 pass_cmd_vars_3
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@${SMAKE} CMD1=cmd1 CMD2=cmd2 pass_cmd_vars_4
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.endif
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#
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# Check that the variable definition arrived from the calling make
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#
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.if make(pass_cmd_vars_1)
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# These values should get overridden by the commandline
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CMD1=oops1
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CMD2=oops2
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pass_cmd_vars_1:
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@:
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.if ${CMD1} != cmd1 || ${CMD2} != cmd2
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.error variables not passed through MAKEFLAGS
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.endif
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.endif
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.if make(pass_cmd_vars_2)
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# Check that we cannot override the passed variables
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CMD1=foo1
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CMD2=foo2
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.if ${CMD1} != cmd1 || ${CMD2} != cmd2
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.error MAKEFLAGS-passed variables overridden
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.endif
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pass_cmd_vars_2:
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@:
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.endif
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.if make(pass_cmd_vars_3)
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# Check that we can override the passed variables on the next sub-make's
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# command line
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pass_cmd_vars_3:
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@${SMAKE} CMD1=foo1 pass_cmd_vars_3_1
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.endif
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.if make(pass_cmd_vars_3_1)
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.if ${CMD1} != foo1 || ${CMD2} != cmd2
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.error MAKEFLAGS-passed variables not overridden on command line
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.endif
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pass_cmd_vars_3_1:
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@:
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.endif
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.if make(pass_cmd_vars_4)
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# Ensure that a variable assignment passed via MAKEFLAGS may be overwritten
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# by evaluating the .MAKEFLAGS target.
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.MAKEFLAGS: CMD1=baz1
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pass_cmd_vars_4:
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@${SMAKE} pass_cmd_vars_4_1
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.if ${CMD1} != baz1 || ${CMD2} != cmd2
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.error MAKEFLAGS-passed variables not overridden via .MAKEFLAGS target
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.endif
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.endif
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.if make(pass_cmd_vars_4_1)
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.if ${CMD1} != baz1 || ${CMD2} != cmd2
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.error MAKEFLAGS-passed variables not overridden via .MAKEFLAGS target (2)
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.endif
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pass_cmd_vars_4_1:
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@:
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.endif
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#
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# Test whether make supports the '+' flag (meaning: execute even with -n)
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#
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.if make(plus_flag)
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OUT != ${SMAKE} -n plus_flag_1
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.if ${OUT:M/tmp} != "/tmp"
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.error make doesn't handle + flag
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.endif
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plus_flag:
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@:
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.endif
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.if make(plus_flag_1)
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plus_flag_1:
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+@cd /tmp; pwd
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.endif
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.if make(shell)
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# Test if make fully supports the .SHELL specification.
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.SHELL: path=/nonexistent
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A!= echo ok
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shell:
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.endif
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.if make(shell_1)
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# Test if setting the shell by name only works. Because we have no ksh
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# in the base system we test that we can set sh and csh. We try only exact
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# matching names and do not exercise the rather strange matching algorithm.
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shell_1:
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@${SMAKE} shell_1_csh
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@${SMAKE} shell_1_sh
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.endif
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.if make(shell_1_csh)
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.SHELL: name="csh"
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shell_1_csh:
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@ps -ax -opid,command | awk '$$1=="'$$$$'" { print $$2 }' | grep -E -q '^(/bin/)?csh$$'
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.endif
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.if make(shell_1_sh)
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.SHELL: name="sh"
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shell_1_sh:
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@ps -ax -opid,command | awk '$$1=="'$$$$'" { print $$2 }' | grep -E -q '^(/bin/)?sh$$'
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.endif
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.if make(shell_2)
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# Test if we can replace the shell specification. We do this by using
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# a shell scripts that prints us its arguments and standard input as the shell
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shell_2: shell_test
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@${SMAKE} -B shell_2B | \
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diff -u ${.CURDIR}/regress.shell_2B.out - || false
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@${SMAKE} -j1 shell_2j | \
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diff -u ${.CURDIR}/regress.shell_2j.out - || false
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.endif
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.if make(shell_2B)
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.SHELL: name="echo" path="${.OBJDIR}/shell_test" quiet="be quiet" echo="be verbose" filter="be verbose" echoFlag="x" errFlag="y" hasErrCtl=y check="check errors" ignore="ignore errors"
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shell_2B:
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-@funny $$
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funnier $$
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.endif
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.if make(shell_2j)
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.SHELL: name="echo" path="${.OBJDIR}/shell_test" quiet="be quiet" echo="be verbose" filter="be verbose" echoFlag="x" errFlag="y" hasErrCtl=y check="check errors" ignore="ignore errors"
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shell_2j:
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-@funny $$
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funnier $$
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.endif
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failure:
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@echo "not ok # Test failed: regression detected. See above."
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@false
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CLEANFILES= shell_test
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.include <bsd.obj.mk>
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