1 ################################################################################
2 # rebar package infrastructure for Erlang packages
4 # This file implements an infrastructure that eases development of
5 # package .mk files for rebar packages. It should be used for all
6 # packages that use rebar as their build system.
8 # In terms of implementation, this rebar infrastructure requires the
9 # .mk file to only specify metadata information about the package:
10 # name, version, download URL, etc.
12 # We still allow the package .mk file to override what the different
13 # steps are doing, if needed. For example, if <PKG>_BUILD_CMDS is
14 # already defined, it is used as the list of commands to perform to
15 # build the package, instead of the default rebar behaviour. The
16 # package can also define some post operation hooks.
18 ################################################################################
20 # Directories to store rebar dependencies in.
22 # These directories actually only contain symbolic links to Erlang
23 # applications in either $(HOST_DIR) or $(STAGING_DIR). One needs
24 # them to avoid rebar complaining about missing dependencies, as this
25 # infrastructure tells rebar to NOT download dependencies during
28 REBAR_HOST_DEPS_DIR
= $(HOST_DIR
)/usr
/share
/rebar
/deps
29 REBAR_TARGET_DEPS_DIR
= $(STAGING_DIR
)/usr
/share
/rebar
/deps
31 # Tell rebar where to find the dependencies
33 REBAR_HOST_DEPS_ENV
= \
34 ERL_COMPILER_OPTIONS
='{i, "$(REBAR_HOST_DEPS_DIR)"}' \
35 ERL_EI_LIBDIR
=$(HOST_DIR
)/usr
/lib
/erlang
/lib
/erl_interface-
$(ERLANG_EI_VSN
)/lib
36 REBAR_TARGET_DEPS_ENV
= \
37 ERL_COMPILER_OPTIONS
='{i, "$(REBAR_TARGET_DEPS_DIR)"}' \
38 ERL_EI_LIBDIR
=$(STAGING_DIR
)/usr
/lib
/erlang
/lib
/erl_interface-
$(ERLANG_EI_VSN
)/lib
40 ################################################################################
42 ################################################################################
44 # Install an Erlang application from $(@D).
46 # i.e., define a recipe that installs the "bin ebin priv $(2)" directories
47 # from $(@D) to $(1)$($(PKG)_ERLANG_LIBDIR).
49 # argument 1 should typically be $(HOST_DIR), $(TARGET_DIR),
51 # argument 2 is typically empty when installing in $(TARGET_DIR) and
52 # "include" when installing in $(HOST_DIR) or
55 # Note: calling this function must be done with $$(call ...) because it
56 # expands package-related variables.
58 define install-erlang-directories
59 $(INSTALL
) -d
$(1)/$($(PKG
)_ERLANG_LIBDIR
)
60 for
dir in bin ebin priv
$(2); do \
61 if
test -d
$(@D
)/$$dir; then \
62 cp
-r
$(@D
)/$$dir $(1)$($(PKG
)_ERLANG_LIBDIR
); \
67 # Setup a symbolic link in rebar's deps_dir to the actual location
68 # where an Erlang application is installed.
70 # i.e., define a recipe that creates a symbolic link
71 # from $($(PKG)_REBAR_DEPS_DIR)/$($(PKG)_ERLANG_APP)
72 # to $(1)$($(PKG)_ERLANG_LIBDIR).
74 # For target packages for example, one uses this to setup symbolic
75 # links from $(STAGING_DIR)/usr/share/rebar/deps/<erlang-app> to
76 # $(STAGING_DIR)/usr/lib/erlang/lib/<erlang-app>-<version>. This
77 # infrastructure points rebar at the former in order to tell rebar to
78 # NOT download dependencies during the build stage, and instead use
79 # the already available dependencies.
82 # argument 1 is $(HOST_DIR) (for host packages) or
83 # $(STAGING_DIR) (for target packages).
85 # argument 2 is HOST (for host packages) or
86 # TARGET (for target packages).
88 # Note: calling this function must be done with $$(call ...) because it
89 # expands package-related variables.
91 define install-rebar-deps
92 $(INSTALL
) -d
$(REBAR_
$(2)_DEPS_DIR
)
93 ln
-f
-s
$(1)/$($(PKG
)_ERLANG_LIBDIR
) \
94 $(REBAR_
$(2)_DEPS_DIR
)/$($(PKG
)_ERLANG_APP
)
97 ################################################################################
98 # inner-rebar-package -- defines how the configuration, compilation
99 # and installation of a rebar package should be done, implements a few
100 # hooks to tune the build process according to rebar specifities, and
101 # calls the generic package infrastructure to generate the necessary
104 # argument 1 is the lowercase package name
105 # argument 2 is the uppercase package name, including a HOST_ prefix
107 # argument 3 is the uppercase package name, without the HOST_ prefix
109 # argument 4 is the type (target or host)
111 ################################################################################
113 define inner-rebar-package
115 # Extract just the raw package name, lowercase without the leading
116 # erlang- or host- prefix, as this is used by rebar to find the
117 # dependencies a package specifies.
119 $(2)_ERLANG_APP
= $(subst -,_
,$(patsubst erlang-
%,%,$(patsubst host-
%,%,$(1))))
121 # Path where to store the package's libs, relative to either $(HOST_DIR)
122 # for host packages, or $(STAGING_DIR) for target packages.
124 $(2)_ERLANG_LIBDIR
= \
125 /usr
/lib
/erlang
/lib
/$$($$(PKG
)_ERLANG_APP
)-$$($$(PKG
)_VERSION
)
127 # If a host package, inherit <pkg>_USE_BUNDLED_REBAR from the target
128 # package, if not explicitly defined. Otherwise, default to NO.
129 ifndef $(2)_USE_BUNDLED_REBAR
130 ifdef $(3)_USE_BUNDLED_REBAR
131 $(2)_USE_BUNDLED_REBAR
= $$($(3)_USE_BUNDLED_REBAR
)
133 $(2)_USE_BUNDLED_REBAR ?
= NO
137 # If a host package, inherit <pkg>_USE_AUTOCONF from the target
138 # package, if not explicitly defined. Otherwise, default to NO.
139 ifndef $(2)_USE_AUTOCONF
140 ifdef $(3)_USE_AUTOCONF
141 $(2)_USE_AUTOCONF
= $$($(3)_USE_AUTOCONF
)
143 $(2)_USE_AUTOCONF ?
= NO
147 # Define the build and install commands
151 # Target packages need the erlang interpreter on the target
152 $(2)_DEPENDENCIES
+= erlang
154 # Used only if the package uses autotools underneath; otherwise, ignored
155 $(2)_CONF_ENV
+= $$(REBAR_TARGET_DEPS_ENV
)
157 ifndef $(2)_BUILD_CMDS
158 define $(2)_BUILD_CMDS
161 CXX
="$$(TARGET_CXX)" \
162 CFLAGS
="$$(TARGET_CFLAGS)" \
163 CXXFLAGS
="$$(TARGET_CXXFLAGS)" \
164 LDFLAGS
="$$(TARGET_LDFLAGS)" \
165 $$(REBAR_TARGET_DEPS_ENV
) \
166 $$(TARGET_MAKE_ENV
) \
167 $$($$(PKG
)_REBAR_ENV
) $$($$(PKG
)_REBAR
) deps_dir
=$$(REBAR_TARGET_DEPS_DIR
) compile \
172 # We need to double-$ the 'call' because it wants to expand
173 # package-related variables
174 ifndef $(2)_INSTALL_STAGING_CMDS
175 define $(2)_INSTALL_STAGING_CMDS
176 $$(call install-erlang-directories
,$$(STAGING_DIR
),include)
177 $$(call install-rebar-deps
,$$(STAGING_DIR
),TARGET
)
181 # We need to double-$ the 'call' because it wants to expand
182 # package-related variables
183 ifndef $(2)_INSTALL_TARGET_CMDS
184 define $(2)_INSTALL_TARGET_CMDS
185 $$(call install-erlang-directories
,$$(TARGET_DIR
))
191 # Host packages need the erlang interpreter on the host
192 $(2)_DEPENDENCIES
+= host-erlang
194 # Used only if the package uses autotools underneath; otherwise, ignored
195 $(2)_CONF_ENV
+= $$(REBAR_HOST_DEPS_ENV
)
197 ifndef $(2)_BUILD_CMDS
198 define $(2)_BUILD_CMDS
201 CFLAGS
="$$(HOST_CFLAGS)" \
202 LDFLAGS
="$$(HOST_LDFLAGS)" \
203 $$(REBAR_HOST_DEPS_ENV
) \
205 $$($$(PKG
)_REBAR_ENV
) $$($$(PKG
)_REBAR
) deps_dir
=$$(REBAR_HOST_DEPS_DIR
) compile \
210 # We need to double-$ the 'call' because it wants to expand
211 # package-related variables
212 ifndef $(2)_INSTALL_CMDS
213 define $(2)_INSTALL_CMDS
214 $$(call install-erlang-directories
,$$(HOST_DIR
),include)
215 $$(call install-rebar-deps
,$$(HOST_DIR
),HOST
)
221 # Whether to use the generic rebar or the package's bundled rebar
223 ifeq ($$($(2)_USE_BUNDLED_REBAR
),YES
)
227 $(2)_DEPENDENCIES
+= host-erlang-rebar
230 # The package sub-infra to use
232 ifeq ($$($(2)_USE_AUTOCONF
),YES
)
233 $(call inner-autotools-package
,$(1),$(2),$(3),$(4))
235 $(call inner-generic-package
,$(1),$(2),$(3),$(4))
238 endef # inner-rebar-package
240 rebar-package
= $(call inner-rebar-package
,$(pkgname
),$(call UPPERCASE
,$(pkgname
)),$(call UPPERCASE
,$(pkgname
)),target
)
241 host-rebar-package
= $(call inner-rebar-package
,host-
$(pkgname
),$(call UPPERCASE
,host-
$(pkgname
)),$(call UPPERCASE
,$(pkgname
)),host
)