f960257c14
Soong has support for building system modules. Use the directories produced by Soong with --system to replace -bootclasspath arguments when using javac -target 1.9. Since soong can't generate current SDK stubs yet, and no existing SDK stubs need -target, only use -target 1.9 for modules that are not compiling against the SDK. That means in practice the only system modules that will be used for now is the default one, core-system-modules. Bug: 63986449 Test: m -j EXPERIMENTAL_USE_OPENJDK9=true makes some progress Change-Id: I350ef50aedf36fdd72458c23d4fe8a2edf1a9a02
152 lines
5.2 KiB
Makefile
152 lines
5.2 KiB
Makefile
#
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# Copyright (C) 2017 The Android Open Source Project
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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#
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###########################################################
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# Basic math functions for positive integers <= 100
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#
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# (SDK versions for example)
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###########################################################
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__MATH_NUMBERS := 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 \
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21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 \
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41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 \
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61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 \
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81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100
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# Returns true if $(1) is a positive integer <= 100, otherwise returns nothing.
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define math_is_number
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$(strip \
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$(if $(1),,$(error Argument missing)) \
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$(if $(word 2,$(1)),$(error Multiple words in a single argument: $(1))) \
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$(if $(filter $(1),$(__MATH_NUMBERS)),true))
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endef
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#$(warning true == $(call math_is_number,2))
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#$(warning == $(call math_is_number,foo))
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#$(call math_is_number,1 2)
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#$(call math_is_number,no 2)
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define _math_check_valid
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$(if $(call math_is_number,$(1)),,$(error Only positive integers <= 100 are supported (not $(1))))
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endef
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# return a list containing integers ranging from [$(1),$(2)]
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define int_range_list
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$(call _math_check_valid,$(1))$(call _math_check_valid,$(2))$(wordlist $(1),$(2),$(__MATH_NUMBERS))
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endef
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#$(call _math_check_valid,0)
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#$(call _math_check_valid,1)
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#$(call _math_check_valid,100)
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#$(call _math_check_valid,101)
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#$(call _math_check_valid,)
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#$(call _math_check_valid,1 2)
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# Returns the greater of $1 or $2.
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# If $1 or $2 is not a positive integer <= 100, then an error is generated.
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define math_max
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$(strip $(call _math_check_valid,$(1)) $(call _math_check_valid,$(2)) \
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$(lastword $(filter $(1) $(2),$(__MATH_NUMBERS))))
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endef
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#$(call math_max)
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#$(call math_max,1)
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#$(call math_max,1 2,3)
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#$(warning 1 == $(call math_max,1,1))
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#$(warning 42 == $(call math_max,5,42))
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#$(warning 42 == $(call math_max,42,5))
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define math_gt_or_eq
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$(if $(filter $(1),$(call math_max,$(1),$(2))),true)
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endef
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define math_lt
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$(if $(call math_gt_or_eq,$(1),$(2)),,true)
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endef
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#$(warning $(call math_gt_or_eq, 2, 1))
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#$(warning $(call math_gt_or_eq, 1, 1))
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#$(warning $(if $(call math_gt_or_eq, 1, 2),false,true))
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# $1 is the variable name to increment
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define inc_and_print
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$(strip $(eval $(1) := $($(1)) .)$(words $($(1))))
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endef
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# Returns the words in $2 that are numbers and are less than $1
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define numbers_less_than
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$(strip \
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$(foreach n,$2, \
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$(if $(call math_is_number,$(n)), \
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$(if $(call math_lt,$(n),$(1)), \
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$(n)))))
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endef
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_INT_LIMIT_WORDS := $(foreach a,x x,$(foreach b,x x x x x x x x x x x x x x x x,\
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$(foreach c,x x x x x x x x x x x x x x x x,x x x x x x x x x x x x x x x x)))
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define _int_encode
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$(if $(filter $(words x $(_INT_LIMIT_WORDS)),$(words $(wordlist 1,$(1),x $(_INT_LIMIT_WORDS)))),\
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$(call pretty-error,integer greater than $(words $(_INT_LIMIT_WORDS)) is not supported!),\
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$(wordlist 1,$(1),$(_INT_LIMIT_WORDS)))
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endef
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# _int_max returns the maximum of the two arguments
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# input: two (x) lists; output: one (x) list
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# integer cannot be passed in directly. It has to be converted using _int_encode.
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define _int_max
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$(subst xx,x,$(join $(1),$(2)))
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endef
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# first argument is greater than second argument
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# output: non-empty if true
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# integer cannot be passed in directly. It has to be converted using _int_encode.
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define _int_greater-than
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$(filter-out $(words $(2)),$(words $(call _int_max,$(1),$(2))))
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endef
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# first argument equals to second argument
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# output: non-empty if true
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# integer cannot be passed in directly. It has to be converted using _int_encode.
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define _int_equal
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$(filter $(words $(1)),$(words $(2)))
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endef
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# first argument is greater than or equal to second argument
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# output: non-empty if true
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# integer cannot be passed in directly. It has to be converted using _int_encode.
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define _int_greater-or-equal
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$(call _int_greater-than,$(1),$(2))$(call _int_equal,$(1),$(2))
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endef
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define int_plus
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$(words $(call _int_encode,$(1)) $(call _int_encode,$(2)))
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endef
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define int_subtract
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$(if $(call _int_greater-or-equal,$(call _int_encode,$(1)),$(call _int_encode,$(2))),\
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$(words $(filter-out xx,$(join $(call _int_encode,$(1)),$(call _int_encode,$(2))))),\
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$(call pretty-error,$(1) subtract underflow $(2)))
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endef
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define int_multiply
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$(words $(foreach a,$(call _int_encode,$(1)),$(call _int_encode,$(2))))
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endef
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define int_divide
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$(if $(filter 0,$(2)),$(call pretty-error,division by zero is not allowed!),$(strip \
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$(if $(call _int_greater-or-equal,$(call _int_encode,$(1)),$(call _int_encode,$(2))), \
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$(call int_plus,$(call int_divide,$(call int_subtract,$(1),$(2)),$(2)),1),0)))
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endef
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