50 Commits

Author SHA1 Message Date
wash fa9572d33a fx: iterator: return NULL value if iterator status is not SUCCESS 2026-05-30 20:19:47 +01:00
wash 8c0a31e19b meta: update rosetta support 2026-05-30 10:09:55 +01:00
wash a20306ae64 cmake: update package finder module 2026-05-29 20:45:46 +01:00
wash 99380c7810 test: fix linux compilation 2026-05-29 20:20:31 +01:00
wash 2d396ee071 fx.reflection: fix linux compilation 2026-05-29 20:20:19 +01:00
wash 34a8ccff95 fx: fix linux compilation 2026-05-29 20:20:05 +01:00
wash d9835cea0b fx.io: fix linux compilation 2026-05-29 20:19:55 +01:00
wash 7b546f6bbe meta: update clang-format config 2026-05-29 20:04:34 +01:00
wash 65f490b900 fx.serial: toml: update array and hashtable usage 2026-05-29 20:04:15 +01:00
wash 1516eee8d1 fx.collections: hashtable: update allocate_index_for_key to handle exact key matches 2026-05-29 20:02:48 +01:00
wash 53a856794f fx.collections: move fx_datetime to fx 2026-05-29 20:02:02 +01:00
wash f879d4fdfc fx: object: add nullptr check to fx_object_is_type 2026-05-29 19:59:55 +01:00
wash e53027595e fx: double add missing fx.comparable reference 2026-05-29 19:59:30 +01:00
wash bbb26c5ee5 fx: pointer: implement hash() and compare() 2026-05-29 19:59:00 +01:00
wash e78241c051 fx: printf: adjust default floating point precision 2026-05-29 19:58:40 +01:00
wash 5877abd33e fx.reflection: update iterator semantics 2026-05-28 21:00:23 +01:00
wash b31e82aaf8 fx.io: update iterator semantics 2026-05-28 20:53:53 +01:00
wash 4c06ded99f fx.cmdline: fix namespace not having the required header subdirectory 2026-05-28 20:53:16 +01:00
wash ff0d40b324 fx.collections: update iterator semantics 2026-05-28 20:52:40 +01:00
wash 883b0b24b1 fx: improve fx_value reference management 2026-05-28 20:51:55 +01:00
wash 516f5be2d6 fx: implement fx_namemap cleanup 2026-05-28 20:50:27 +01:00
wash f79650698a fx: update fx_iterator to return pointers to values 2026-05-28 20:50:00 +01:00
wash 01cbcf712a test: update tests 2026-05-25 17:35:09 +01:00
wash 5e3439bc4a cmake: update handling of public namespace headers 2026-05-25 17:34:59 +01:00
wash 56e1fae273 cmake: update endianness test 2026-05-25 17:34:41 +01:00
wash c5eac75a0b fx.term: remove redundant printf implementation 2026-05-25 17:31:40 +01:00
wash aea3f99859 fx.collections: update exported classes 2026-05-25 17:31:17 +01:00
wash cca52c788a fx.serial: remove references to obsolete classes 2026-05-25 17:30:59 +01:00
wash 74fbd94f95 fx.io: update interface implementations 2026-05-25 17:30:33 +01:00
wash 97fe00d4a1 fx.collections: update interface implementations 2026-05-25 17:30:08 +01:00
wash 0be82c63fa fx.collections: update tests 2026-05-25 17:29:56 +01:00
wash 2df76a76c4 fx.collections: remove fx_tree 2026-05-25 17:29:38 +01:00
wash 9d4aab49ac fx.collections: update fx_array to support storing fx_values 2026-05-25 17:29:23 +01:00
wash d84d56681f fx.collections: replace fx_dict with fx_hashtable 2026-05-25 17:28:25 +01:00
wash 6efe473c11 fx: implement updated interfaces in builtin classes 2026-05-25 17:27:14 +01:00
wash 5d0aa577d6 fx.reflection: fix fx_string type marshalling 2026-05-25 17:26:55 +01:00
wash f9b456a99f fx.reflection: implement assembly registration and lookup 2026-05-25 17:26:08 +01:00
wash 673bf07cf6 fx.reflection: implement retrieving functions and properties from fx_type 2026-05-25 17:25:27 +01:00
wash 82bb20c6af fx.reflection: implement fx_property 2026-05-25 17:24:47 +01:00
wash 12b04eea8d fx: namemap: fix nullptr deference in fx_namemap_first 2026-05-25 17:23:50 +01:00
wash 0f1dfc0b07 fx: implement wchar and wstr value types 2026-05-25 17:23:32 +01:00
wash 13332145c2 fx: add functions for hashing wstr and generic buffers 2026-05-25 17:23:19 +01:00
wash 7cdad180da fx: add interface for performing arithmetic operations on values 2026-05-25 17:21:27 +01:00
wash 554a30fa1a fx: add interface for converting a value to a different type 2026-05-25 17:21:08 +01:00
wash 5058bb164a fx: add interface for comparaing two values 2026-05-25 17:20:36 +01:00
wash 79a8041aac fx: add wstr and wchar value types 2026-05-25 17:20:15 +01:00
wash bc902047d3 fx: implement value conversion interface 2026-05-25 17:19:51 +01:00
wash 61182e0153 fx.reflection: function: update invocation to support new value-types 2026-05-17 17:11:02 +01:00
wash f1258489d1 fx: implement a proper value-type mechanism 2026-05-17 17:09:05 +01:00
wash 65a7a025c5 fx: stream: add fx_stream_write_wstr 2026-05-17 17:08:42 +01:00
149 changed files with 9523 additions and 5100 deletions
+1 -1
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@@ -45,7 +45,7 @@ SpacesBeforeTrailingComments: 3
TabWidth: 8 TabWidth: 8
UseTab: AlignWithSpaces UseTab: AlignWithSpaces
BreakAfterReturnType: Automatic BreakAfterReturnType: Automatic
PenaltyBreakAssignment: 1000000 PenaltyBreakAssignment: 0
PenaltyReturnTypeOnItsOwnLine: 100000000 PenaltyReturnTypeOnItsOwnLine: 100000000
PenaltyExcessCharacter: 10000000 PenaltyExcessCharacter: 10000000
PenaltyBreakOpenParenthesis: 0 PenaltyBreakOpenParenthesis: 0
+13 -1
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@@ -1,11 +1,21 @@
cmake_minimum_required(VERSION 3.25) cmake_minimum_required(VERSION 3.25)
project(fx C ASM) project(fx C ASM)
set(CMAKE_MODULE_PATH ${CMAKE_MODULE_PATH} ${CMAKE_SOURCE_DIR}/cmake) set(CMAKE_MODULE_PATH ${CMAKE_CURRENT_SOURCE_DIR}/cmake)
include (TestBigEndian) include (TestBigEndian)
include(Templates) include(Templates)
include(Platform) include(Platform)
test_big_endian(is_big_endian)
if (is_big_endian)
message(STATUS "Target is Big Endian")
add_compile_definitions(FX_ENDIAN=1)
else ()
message(STATUS "Target is Little Endian")
add_compile_definitions(FX_ENDIAN=0)
endif ()
set(CMAKE_C_STANDARD 99) set(CMAKE_C_STANDARD 99)
set(CMAKE_C_EXTENSIONS OFF) set(CMAKE_C_EXTENSIONS OFF)
@@ -49,4 +59,6 @@ foreach (assembly ${fx_assemblies})
add_subdirectory(assemblies/${assembly}) add_subdirectory(assemblies/${assembly})
endforeach (assembly) endforeach (assembly)
if (fx_enable_tests)
add_subdirectory(test) add_subdirectory(test)
endif ()
+1 -2
View File
@@ -7,8 +7,7 @@ FX_ASSEMBLY_BEGIN()
FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "array", fx_array); FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "array", fx_array);
FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "bitbuffer", fx_bitbuffer); FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "bitbuffer", fx_bitbuffer);
FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "bitmap", fx_bitmap); FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "bitmap", fx_bitmap);
FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "dict", fx_dict); FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "hashtable", fx_hashtable);
FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "hashmap", fx_hashmap); FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "hashmap", fx_hashmap);
FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "list", fx_list); FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "list", fx_list);
FX_ASSEMBLY_EXPORT_TYPE("fx.collections", "tree", fx_tree);
FX_ASSEMBLY_END() FX_ASSEMBLY_END()
+43 -108
View File
@@ -49,43 +49,37 @@ if (FX_STATIC)
set(_lib_suffix "-s") set(_lib_suffix "-s")
endif () endif ()
set(supported_components Core Ds Term Cmd Io Serial Compress) set(assemblies ${FX_FIND_COMPONENTS})
set(components ${FX_FIND_COMPONENTS})
string(REPLACE ";" ", " supported_components_string_list "${supported_components}")
if (NOT components)
set(components ${supported_components})
endif ()
set(required_vars) set(required_vars)
foreach (component ${components}) if (NOT FX_INCLUDE_DIR)
if (NOT "${component}" IN_LIST supported_components) find_path(FX_INCLUDE_DIR
message(FATAL_ERROR "'${component}' is not a valid FX module.\nSupported modules: ${supported_components_string_list}") NAMES fx/misc.h ${FX_FIND_ARGS}
endif ()
string(TOLOWER ${component} header_name)
set(lib_name ${header_name}${_lib_suffix})
if (NOT FX_${component}_INCLUDE_DIR)
find_path(FX_${component}_INCLUDE_DIR
NAMES fx/${header_name}.h ${FX_FIND_ARGS}
PATH_SUFFIXES include PATH_SUFFIXES include
PATHS ${FX_SEARCH_PATHS}) PATHS ${FX_SEARCH_PATHS})
endif () endif ()
if (NOT FX_${component}_LIBRARY) set(required_vars FX_INCLUDE_DIR)
find_library(FX_${component}_LIBRARY
NAMES fx-${lib_name} ${FX_FIND_ARGS} foreach (assembly ${assemblies})
string(TOLOWER ${assembly} header_name)
string(REPLACE "." "_" macro_name ${assembly})
string(TOUPPER ${macro_name} macro_name)
set(lib_name ${assembly}${_lib_suffix})
if (NOT ${macro_name}_LIBRARY)
find_library(${macro_name}_LIBRARY
NAMES ${lib_name} ${FX_FIND_ARGS}
PATH_SUFFIXES lib PATH_SUFFIXES lib
PATHS ${FX_SEARCH_PATHS}) PATHS ${FX_SEARCH_PATHS})
else () else ()
# on Windows, ensure paths are in canonical format (forward slahes): # on Windows, ensure paths are in canonical format (forward slahes):
file(TO_CMAKE_PATH "${FX_${component}_LIBRARY}" FX_${component}_LIBRARY) file(TO_CMAKE_PATH "${${macro_name}_LIBRARY}" ${macro_name}_LIBRARY)
endif() endif()
list(APPEND required_vars FX_${component}_INCLUDE_DIR FX_${component}_LIBRARY) list(APPEND required_vars ${macro_name}_LIBRARY)
endforeach (component) endforeach (assembly)
unset(FX_FIND_ARGS) unset(FX_FIND_ARGS)
@@ -96,94 +90,35 @@ find_package_handle_standard_args(FX
if (FX_FOUND) if (FX_FOUND)
set(created_targets) set(created_targets)
foreach (component ${components}) foreach (assembly ${assemblies})
string(TOLOWER ${component} header_name) set(target_name ${assembly})
set(lib_name ${header_name}${_lib_suffix}) string(REPLACE "fx." "" target_name ${target_name})
string(SUBSTRING ${target_name} 0 1 target_name_prefix)
string(TOUPPER ${target_name_prefix} target_name_prefix)
string(SUBSTRING ${target_name} 1 -1 target_name_suffix)
set(target_name ${target_name_prefix}${target_name_suffix})
if(NOT TARGET FX::${component}) string(TOLOWER ${assembly} header_name)
add_library(FX::${component} UNKNOWN IMPORTED) string(REPLACE "." "_" macro_name ${assembly})
set_target_properties(FX::${component} PROPERTIES string(REPLACE "." "_" macro_name ${assembly})
INTERFACE_INCLUDE_DIRECTORIES "${FX_${component}_INCLUDE_DIR}") string(TOUPPER ${macro_name} macro_name)
target_compile_definitions(FX::${component} INTERFACE _CRT_SECURE_NO_WARNINGS=1)
set(lib_name ${assembly}${_lib_suffix})
if (NOT TARGET FX::${target_name})
add_library(FX::${target_name} UNKNOWN IMPORTED)
set_target_properties(FX::${target_name} PROPERTIES
INTERFACE_INCLUDE_DIRECTORIES "${FX_INCLUDE_DIR}")
target_compile_definitions(FX::${target_name} INTERFACE _CRT_SECURE_NO_WARNINGS=1)
if (FX_STATIC) if (FX_STATIC)
target_compile_definitions(FX::${component} INTERFACE FX_STATIC=1) target_compile_definitions(FX::${target_name} INTERFACE FX_STATIC=1)
endif () endif ()
set_target_properties(FX::${component} PROPERTIES set_target_properties(FX::${target_name} PROPERTIES
IMPORTED_LINK_INTERFACE_LANGUAGES "C" IMPORTED_LINK_INTERFACE_LANGUAGES "C"
IMPORTED_LOCATION "${FX_${component}_LIBRARY}") IMPORTED_LOCATION "${${macro_name}_LIBRARY}")
set(created_targets ${created_targets} ${component}) set(created_targets ${created_targets} ${assembly})
endif () endif ()
endforeach (component) endforeach (assembly)
foreach (component ${created_targets})
if ("${component}" STREQUAL "Ds")
if (NOT TARGET FX::Core)
message(FATAL_ERROR "FX: Module 'Ds' depends on 'Core', which was not specified in find_package()")
endif ()
target_link_libraries(FX::Ds INTERFACE FX::Core)
endif ()
if ("${component}" STREQUAL "Term")
if (NOT TARGET FX::Core)
message(FATAL_ERROR "FX: Module 'Term' depends on 'Core', which was not specified in find_package()")
endif ()
if (NOT TARGET FX::Ds)
message(FATAL_ERROR "FX: Module 'Term' depends on 'Ds', which was not specified in find_package()")
endif ()
target_link_libraries(FX::Term INTERFACE FX::Core FX::Ds)
endif ()
if ("${component}" STREQUAL "Serial")
if (NOT TARGET FX::Core)
message(FATAL_ERROR "FX: Module 'Serial' depends on 'Core', which was not specified in find_package()")
endif ()
if (NOT TARGET FX::Ds)
message(FATAL_ERROR "FX: Module 'Serial' depends on 'Ds', which was not specified in find_package()")
endif ()
target_link_libraries(FX::Serial INTERFACE FX::Core FX::Ds)
endif ()
if ("${component}" STREQUAL "Cmd")
if (NOT TARGET FX::Core)
message(FATAL_ERROR "FX: Module 'Cmd' depends on 'Core', which was not specified in find_package()")
endif ()
if (NOT TARGET FX::Ds)
message(FATAL_ERROR "FX: Module 'Cmd' depends on 'Ds', which was not specified in find_package()")
endif ()
if (NOT TARGET FX::Term)
message(FATAL_ERROR "FX: Module 'Cmd' depends on 'Term', which was not specified in find_package()")
endif ()
target_link_libraries(FX::Cmd INTERFACE FX::Core FX::Ds FX::Term)
endif ()
if ("${component}" STREQUAL "Io")
if (NOT TARGET FX::Core)
message(FATAL_ERROR "FX: Module 'Io' depends on 'Core', which was not specified in find_package()")
endif ()
if (NOT TARGET FX::Ds)
message(FATAL_ERROR "FX: Module 'Io' depends on 'Ds', which was not specified in find_package()")
endif ()
target_link_libraries(FX::Io INTERFACE FX::Core FX::Ds)
endif ()
if ("${component}" STREQUAL "Compress")
if (NOT TARGET FX::Core)
message(FATAL_ERROR "FX: Module 'Compress' depends on 'Core', which was not specified in find_package()")
endif ()
target_link_libraries(FX::Compress INTERFACE FX::Core FX::Ds)
endif ()
endforeach (component)
endif() endif()
+2 -2
View File
@@ -19,7 +19,7 @@ function(get_platform_details)
elseif ("${CMAKE_SYSTEM_NAME}" STREQUAL "Windows") elseif ("${CMAKE_SYSTEM_NAME}" STREQUAL "Windows")
set(system_name "win32") set(system_name "win32")
else () else ()
message(FATAL_ERROR "Unsupported platform: ${CMAKE_SYSTEM_NAME}") string(TOLOWER "${CMAKE_SYSTEM_NAME}" system_name)
endif () endif ()
if ("${CMAKE_SYSTEM_PROCESSOR}" STREQUAL "x86_64") if ("${CMAKE_SYSTEM_PROCESSOR}" STREQUAL "x86_64")
@@ -27,7 +27,7 @@ function(get_platform_details)
elseif ("${CMAKE_SYSTEM_PROCESSOR}" STREQUAL "arm64") elseif ("${CMAKE_SYSTEM_PROCESSOR}" STREQUAL "arm64")
set(system_arch "aarch64") set(system_arch "aarch64")
else () else ()
message(FATAL_ERROR "Unsupported architecture: ${CMAKE_SYSTEM_PROCESSOR}") string(TOLOWER "${CMAKE_SYSTEM_PROCESSOR}" system_arch)
endif () endif ()
set(${arg_SYSTEM} ${system_name} PARENT_SCOPE) set(${arg_SYSTEM} ${system_name} PARENT_SCOPE)
+6 -10
View File
@@ -18,10 +18,12 @@ function(add_fx_assembly)
set(assembly_include_paths "") set(assembly_include_paths "")
set(assembly_sources ${CMAKE_CURRENT_SOURCE_DIR}/assembly.c) set(assembly_sources ${CMAKE_CURRENT_SOURCE_DIR}/assembly.c)
set(assembly_headers)
foreach (dir ${arg_NAMESPACES}) foreach (dir ${arg_NAMESPACES})
add_subdirectory(${fx_source_root}/${dir} ${fx_build_root}/namespaces/${dir}) add_subdirectory(${fx_source_root}/${dir} ${fx_build_root}/namespaces/${dir})
set(assembly_sources ${assembly_sources} ${namespace_sources}) set(assembly_sources ${assembly_sources} ${namespace_sources})
set(assembly_headers ${assembly_headers} ${namespace_headers})
set(assembly_include_paths ${assembly_include_paths} ${namespace_include_paths}) set(assembly_include_paths ${assembly_include_paths} ${namespace_include_paths})
endforeach (dir) endforeach (dir)
@@ -45,6 +47,7 @@ function(add_fx_assembly)
target_compile_definitions(${assembly_target_name} PRIVATE ${def}) target_compile_definitions(${assembly_target_name} PRIVATE ${def})
endforeach (def) endforeach (def)
if (fx_enable_tests)
foreach (ns ${arg_NAMESPACES}) foreach (ns ${arg_NAMESPACES})
file(GLOB test_sources ${fx_source_root}/${ns}/test/*.c) file(GLOB test_sources ${fx_source_root}/${ns}/test/*.c)
foreach (test_file ${test_sources}) foreach (test_file ${test_sources})
@@ -55,21 +58,12 @@ function(add_fx_assembly)
target_link_libraries(${test_name} ${assembly_target_name}) target_link_libraries(${test_name} ${assembly_target_name})
endforeach (test_file) endforeach (test_file)
endforeach (ns) endforeach (ns)
endif ()
set_target_properties(${assembly_target_name} PROPERTIES set_target_properties(${assembly_target_name} PROPERTIES
FOLDER "${assembly_name}") FOLDER "${assembly_name}")
TEST_BIG_ENDIAN(IS_BIG_ENDIAN)
if(IS_BIG_ENDIAN)
target_compile_definitions(${assembly_target_name} PRIVATE
BIG_ENDIAN)
else()
target_compile_definitions(${assembly_target_name} PRIVATE
LITTLE_ENDIAN)
endif()
install(TARGETS ${assembly_target_name}) install(TARGETS ${assembly_target_name})
install(FILES ${headers} DESTINATION include/${assembly_path})
endfunction(add_fx_assembly) endfunction(add_fx_assembly)
macro(export_fx_namespace_details ns_name) macro(export_fx_namespace_details ns_name)
@@ -96,6 +90,7 @@ macro(export_fx_namespace_details ns_name)
${CMAKE_CURRENT_SOURCE_DIR}/sys/${fx_system_name}/${fx_system_arch}/*.h ${CMAKE_CURRENT_SOURCE_DIR}/sys/${fx_system_name}/${fx_system_arch}/*.h
${CMAKE_CURRENT_SOURCE_DIR}/sys/${fx_system_name}/${fx_system_arch}/*.S) ${CMAKE_CURRENT_SOURCE_DIR}/sys/${fx_system_name}/${fx_system_arch}/*.S)
file(GLOB headers include/${namespace_path}/*.h) file(GLOB headers include/${namespace_path}/*.h)
set(namespace_headers ${headers} PARENT_SCOPE)
set(namespace_sources set(namespace_sources
${namespace_sources} ${namespace_sources}
${base_namespace_sources} ${base_namespace_sources}
@@ -110,5 +105,6 @@ macro(export_fx_namespace_details ns_name)
PARENT_SCOPE) PARENT_SCOPE)
set(internal_libs ${internal_libs} PARENT_SCOPE) set(internal_libs ${internal_libs} PARENT_SCOPE)
set(internal_defines ${internal_defines} PARENT_SCOPE) set(internal_defines ${internal_defines} PARENT_SCOPE)
install(FILES ${headers} DESTINATION include/${namespace_path})
endmacro(export_fx_namespace_details) endmacro(export_fx_namespace_details)
+1 -1
View File
@@ -1,6 +1,6 @@
#include "command.h" #include "command.h"
#include <fx/cmd.h> #include <fx/cmdline/cmd.h>
#include <fx/string.h> #include <fx/string.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
+1 -1
View File
@@ -1,6 +1,6 @@
#include "command.h" #include "command.h"
#include <fx/cmd.h> #include <fx/cmdline/cmd.h>
#include <fx/misc.h> #include <fx/misc.h>
#include <fx/string.h> #include <fx/string.h>
#include <fx/term/print.h> #include <fx/term/print.h>
+1 -1
View File
@@ -1,7 +1,7 @@
#include "command.h" #include "command.h"
#include <fx/bst.h> #include <fx/bst.h>
#include <fx/cmd.h> #include <fx/cmdline/cmd.h>
#include <fx/string.h> #include <fx/string.h>
#include <fx/term/print.h> #include <fx/term/print.h>
#include <fx/term/tty.h> #include <fx/term/tty.h>
+1 -1
View File
@@ -2,7 +2,7 @@
#define _FX_COMMAND_H_ #define _FX_COMMAND_H_
#include <fx/bst.h> #include <fx/bst.h>
#include <fx/cmd.h> #include <fx/cmdline/cmd.h>
#include <fx/queue.h> #include <fx/queue.h>
#include <fx/string.h> #include <fx/string.h>
+1 -1
View File
@@ -1,6 +1,6 @@
#include "command.h" #include "command.h"
#include <fx/cmd.h> #include <fx/cmdline/cmd.h>
#include <fx/string.h> #include <fx/string.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
+13 -5
View File
@@ -1,4 +1,4 @@
#include <fx/cmd.h> #include <fx/cmdline/cmd.h>
#include <stdio.h> #include <stdio.h>
enum { enum {
@@ -27,16 +27,24 @@ const char *text
"great pleasure."; "great pleasure.";
static int test_command( static int test_command(
const fx_command *self, const fx_arglist *opt, const fx_array *args) const fx_command *self,
const fx_arglist *opt,
const fx_array *args)
{ {
printf("Hello, world!\n"); printf("Hello, world!\n");
fx_arglist_iterator it; fx_arglist_iterator it;
fx_arglist_iterator_begin( fx_arglist_iterator_begin(
opt, FX_COMMAND_INVALID_ID, FX_COMMAND_INVALID_ID, &it); opt,
FX_COMMAND_INVALID_ID,
FX_COMMAND_INVALID_ID,
&it);
while (fx_arglist_iterator_is_valid(&it)) { while (fx_arglist_iterator_is_valid(&it)) {
printf("opt:%u,arg:%u,i:%zu,value: %s\n", it.opt_id, printf("opt:%u,arg:%u,i:%zu,value: %s\n",
it.value->val_id, it.i, it.value->val_str); it.opt_id,
it.value->val_id,
it.i,
it.value->val_str);
fx_arglist_iterator_next(&it); fx_arglist_iterator_next(&it);
} }
+89 -111
View File
@@ -2,6 +2,7 @@
#include <fx/iterator.h> #include <fx/iterator.h>
#include <fx/stream.h> #include <fx/stream.h>
#include <fx/string.h> #include <fx/string.h>
#include <fx/value.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
@@ -12,17 +13,17 @@ struct fx_array_p {
size_t ar_len; size_t ar_len;
/* maximum number of items that can currently be stored in array */ /* maximum number of items that can currently be stored in array */
size_t ar_cap; size_t ar_cap;
fx_object **ar_data; fx_value *ar_data;
}; };
struct fx_array_iterator_p { struct fx_array_iterator_p {
fx_array *_a; const fx_array *_a;
struct fx_array_p *_a_p; struct fx_array_p *_a_p;
/** The index of the current value */ /** The index of the current value */
size_t i; size_t i;
/** The current value */ /** The current value */
fx_object *value; fx_value *value;
}; };
/*** PRIVATE FUNCTIONS ********************************************************/ /*** PRIVATE FUNCTIONS ********************************************************/
@@ -32,7 +33,7 @@ static fx_status resize_array(struct fx_array_p *array, size_t new_capacity)
if (array->ar_cap < new_capacity) { if (array->ar_cap < new_capacity) {
void *new_data = realloc( void *new_data = realloc(
array->ar_data, array->ar_data,
new_capacity * sizeof(struct fx_dsref *)); new_capacity * sizeof(fx_value));
if (!new_data) { if (!new_data) {
return FX_ERR_NO_MEMORY; return FX_ERR_NO_MEMORY;
} }
@@ -40,12 +41,12 @@ static fx_status resize_array(struct fx_array_p *array, size_t new_capacity)
array->ar_data = new_data; array->ar_data = new_data;
} else { } else {
for (size_t i = new_capacity; i < array->ar_len; i++) { for (size_t i = new_capacity; i < array->ar_len; i++) {
fx_object_unref(array->ar_data[i]); fx_value_unset(&array->ar_data[i]);
} }
void *new_data = realloc( void *new_data = realloc(
array->ar_data, array->ar_data,
new_capacity * sizeof(struct fx_dsref *)); new_capacity * sizeof(fx_value));
if (!new_data) { if (!new_data) {
return FX_ERR_NO_MEMORY; return FX_ERR_NO_MEMORY;
} }
@@ -63,7 +64,7 @@ static fx_status resize_array(struct fx_array_p *array, size_t new_capacity)
static fx_status array_insert( static fx_status array_insert(
struct fx_array_p *array, struct fx_array_p *array,
fx_object *value, fx_value value,
size_t at) size_t at)
{ {
if (at == FX_NPOS) { if (at == FX_NPOS) {
@@ -84,13 +85,13 @@ static fx_status array_insert(
} }
} }
fx_object **src = array->ar_data + at; fx_value *src = array->ar_data + at;
fx_object **dest = src + 1; fx_value *dest = src + 1;
size_t move_len = (array->ar_len - at) * sizeof(struct fx_dsref *); size_t move_len = (array->ar_len - at) * sizeof(fx_value);
memmove(dest, src, move_len); memmove(dest, src, move_len);
array->ar_data[at] = fx_object_ref(value); fx_value_copy(&array->ar_data[at], &value);
array->ar_len++; array->ar_len++;
return FX_SUCCESS; return FX_SUCCESS;
@@ -102,11 +103,11 @@ static fx_status array_remove(struct fx_array_p *array, size_t at)
return FX_ERR_OUT_OF_BOUNDS; return FX_ERR_OUT_OF_BOUNDS;
} }
fx_object **src = array->ar_data + at; fx_value *src = array->ar_data + at;
fx_object **dest = src + 1; fx_value *dest = src + 1;
size_t move_len = array->ar_len * sizeof(struct fx_dsref *); size_t move_len = array->ar_len * sizeof(fx_value);
fx_object_unref(array->ar_data[at]); fx_value_unset(&array->ar_data[at]);
memmove(dest, src, move_len); memmove(dest, src, move_len);
@@ -125,17 +126,17 @@ static fx_status array_remove_back(struct fx_array_p *array)
return array_remove(array, array->ar_len - 1); return array_remove(array, array->ar_len - 1);
} }
static fx_object *array_pop(struct fx_array_p *array, size_t at) static fx_value array_pop(struct fx_array_p *array, size_t at)
{ {
if (at >= array->ar_len) { if (at >= array->ar_len) {
return NULL; return FX_VALUE_EMPTY;
} }
fx_object **src = array->ar_data + at; fx_value *dest = array->ar_data + at;
fx_object **dest = src + 1; fx_value *src = dest + 1;
size_t move_len = array->ar_len * sizeof(struct fx_dsref *); size_t move_len = array->ar_len * sizeof(fx_value);
fx_object *out = array->ar_data[at]; fx_value out = array->ar_data[at];
memmove(dest, src, move_len); memmove(dest, src, move_len);
@@ -144,40 +145,40 @@ static fx_object *array_pop(struct fx_array_p *array, size_t at)
return out; return out;
} }
static fx_object *array_pop_front(struct fx_array_p *array) static fx_value array_pop_front(struct fx_array_p *array)
{ {
return array_pop(array, 0); return array_pop(array, 0);
} }
static fx_object *array_pop_back(struct fx_array_p *array) static fx_value array_pop_back(struct fx_array_p *array)
{ {
return array_pop(array, array->ar_len - 1); return array_pop(array, array->ar_len - 1);
} }
static fx_object *array_at(const struct fx_array_p *array, size_t at) static fx_value *array_get_ref(const struct fx_array_p *array, size_t at)
{ {
if (at >= array->ar_len) { if (at >= array->ar_len) {
return NULL; return NULL;
} }
return array->ar_data[at]; return &array->ar_data[at];
} }
static fx_object *array_get(struct fx_array_p *array, size_t at) static fx_value array_get(struct fx_array_p *array, size_t at)
{ {
if (at >= array->ar_len) { if (at >= array->ar_len) {
return NULL; return FX_VALUE_EMPTY;
} }
return fx_object_ref(array->ar_data[at]); return fx_value_copy_return(array->ar_data[at]);
} }
static size_t array_size(const struct fx_array_p *array) static size_t array_get_size(const struct fx_array_p *array)
{ {
return array->ar_len; return array->ar_len;
} }
static size_t array_capacity(const struct fx_array_p *array) static size_t array_get_capacity(const struct fx_array_p *array)
{ {
return array->ar_cap; return array->ar_cap;
} }
@@ -189,18 +190,16 @@ static void array_clear(struct fx_array_p *array)
} }
for (size_t i = 0; i < array->ar_len; i++) { for (size_t i = 0; i < array->ar_len; i++) {
fx_object_unref(array->ar_data[i]); fx_value_unset(&array->ar_data[i]);
} }
memset(array->ar_data, 0x0, array->ar_cap * sizeof(fx_object *)); memset(array->ar_data, 0x0, array->ar_cap * sizeof(fx_value));
array->ar_len = 0; array->ar_len = 0;
} }
/*** PUBLIC FUNCTIONS *********************************************************/ /*** PUBLIC FUNCTIONS *********************************************************/
fx_array *fx_array_create_with_values( fx_array *fx_array_create_with_values(const fx_value *values, size_t nr_values)
fx_object *const *values,
size_t nr_values)
{ {
fx_array *array = fx_array_create(); fx_array *array = fx_array_create();
if (!array) { if (!array) {
@@ -211,14 +210,14 @@ fx_array *fx_array_create_with_values(
size_t real_nr_values = 0; size_t real_nr_values = 0;
for (size_t i = 0; i < nr_values; i++) { for (size_t i = 0; i < nr_values; i++) {
if (values[i]) { if (fx_value_is_set(&values[i])) {
real_nr_values++; real_nr_values++;
} }
} }
p->ar_len = real_nr_values; p->ar_len = real_nr_values;
p->ar_cap = real_nr_values; p->ar_cap = real_nr_values;
p->ar_data = calloc(real_nr_values, sizeof(struct fx_dsref *)); p->ar_data = calloc(real_nr_values, sizeof(fx_value));
if (!p->ar_data) { if (!p->ar_data) {
fx_array_unref(array); fx_array_unref(array);
return NULL; return NULL;
@@ -226,13 +225,13 @@ fx_array *fx_array_create_with_values(
size_t index = 0; size_t index = 0;
for (size_t i = 0; i < nr_values; i++) { for (size_t i = 0; i < nr_values; i++) {
p->ar_data[index++] = fx_object_ref(values[i]); fx_value_copy(&p->ar_data[index++], &values[i]);
} }
return array; return array;
} }
fx_status fx_array_insert(fx_array *array, fx_object *value, size_t at) fx_status fx_array_insert(fx_array *array, fx_value value, size_t at)
{ {
FX_CLASS_DISPATCH_STATIC(FX_TYPE_ARRAY, array_insert, array, value, at); FX_CLASS_DISPATCH_STATIC(FX_TYPE_ARRAY, array_insert, array, value, at);
} }
@@ -252,39 +251,39 @@ fx_status fx_array_remove_back(fx_array *array)
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_remove_back, array); FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_remove_back, array);
} }
fx_object *fx_array_pop(fx_array *array, size_t at) fx_value fx_array_pop(fx_array *array, size_t at)
{ {
FX_CLASS_DISPATCH_STATIC(FX_TYPE_ARRAY, array_pop, array, at); FX_CLASS_DISPATCH_STATIC(FX_TYPE_ARRAY, array_pop, array, at);
} }
fx_object *fx_array_pop_front(fx_array *array) fx_value fx_array_pop_front(fx_array *array)
{ {
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_pop_front, array); FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_pop_front, array);
} }
fx_object *fx_array_pop_back(fx_array *array) fx_value fx_array_pop_back(fx_array *array)
{ {
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_pop_back, array); FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_pop_back, array);
} }
fx_object *fx_array_at(const fx_array *array, size_t at) fx_value *fx_array_get_ref(const fx_array *array, size_t at)
{ {
FX_CLASS_DISPATCH_STATIC(FX_TYPE_ARRAY, array_at, array, at); FX_CLASS_DISPATCH_STATIC(FX_TYPE_ARRAY, array_get_ref, array, at);
} }
fx_object *fx_array_get(fx_array *array, size_t at) fx_value fx_array_get(const fx_array *array, size_t at)
{ {
FX_CLASS_DISPATCH_STATIC(FX_TYPE_ARRAY, array_get, array, at); FX_CLASS_DISPATCH_STATIC(FX_TYPE_ARRAY, array_get, array, at);
} }
size_t fx_array_size(const fx_array *array) size_t fx_array_get_size(const fx_array *array)
{ {
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_size, array); FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_get_size, array);
} }
size_t fx_array_capacity(const fx_array *array) size_t fx_array_get_capacity(const fx_array *array)
{ {
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_capacity, array); FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_ARRAY, array_get_capacity, array);
} }
void fx_array_clear(fx_array *array) void fx_array_clear(fx_array *array)
@@ -294,12 +293,12 @@ void fx_array_clear(fx_array *array)
/*** PUBLIC ALIAS FUNCTIONS ***************************************************/ /*** PUBLIC ALIAS FUNCTIONS ***************************************************/
fx_status fx_array_append(fx_array *array, fx_object *value) fx_status fx_array_push_back(fx_array *array, fx_value value)
{ {
return fx_array_insert(array, value, FX_NPOS); return fx_array_insert(array, value, FX_NPOS);
} }
fx_status fx_array_prepend(fx_array *array, fx_object *value) fx_status fx_array_push_front(fx_array *array, fx_value value)
{ {
return fx_array_insert(array, value, 0); return fx_array_insert(array, value, 0);
} }
@@ -317,7 +316,7 @@ static void array_fini(fx_object *obj, void *priv)
if (array->ar_data) { if (array->ar_data) {
for (size_t i = 0; i < array->ar_len; i++) { for (size_t i = 0; i < array->ar_len; i++) {
fx_object_unref(array->ar_data[i]); fx_value_unset(&array->ar_data[i]);
} }
free(array->ar_data); free(array->ar_data);
@@ -325,29 +324,34 @@ static void array_fini(fx_object *obj, void *priv)
} }
} }
static void array_to_string(const fx_object *obj, fx_stream *out) static fx_status array_to_string(
const fx_value *obj,
fx_stream *out,
const char *format)
{ {
struct fx_array_p *array = fx_object_get_private(obj, FX_TYPE_ARRAY); struct fx_array_p *array = fx_object_get_private(
obj->v_object,
FX_TYPE_ARRAY);
if (!array->ar_len) { if (!array->ar_len) {
fx_stream_write_cstr(out, "[]", NULL); fx_stream_write_cstr(out, "[]", NULL);
return; return FX_SUCCESS;
} }
fx_stream_write_cstr(out, "[\n", NULL); fx_stream_write_cstr(out, "[\n", NULL);
fx_stream_push_indent(out, 1); fx_stream_push_indent(out, 1);
size_t len = array_size(array); size_t len = array_get_size(array);
for (size_t i = 0; i < array->ar_len; i++) { for (size_t i = 0; i < array->ar_len; i++) {
fx_object *value = array->ar_data[i]; fx_value *value = &array->ar_data[i];
bool is_string = fx_object_is_type(value, FX_TYPE_STRING); bool is_string = fx_value_is_type(value, FX_TYPE_STRING);
if (is_string) { if (is_string) {
fx_stream_write_char(out, '"'); fx_stream_write_char(out, '"');
} }
fx_object_to_string(value, out); fx_value_to_string(value, out, NULL);
if (is_string) { if (is_string) {
fx_stream_write_char(out, '"'); fx_stream_write_char(out, '"');
@@ -362,40 +366,23 @@ static void array_to_string(const fx_object *obj, fx_stream *out)
fx_stream_pop_indent(out); fx_stream_pop_indent(out);
fx_stream_write_char(out, ']'); fx_stream_write_char(out, ']');
return FX_SUCCESS;
} }
/*** ITERATOR FUNCTIONS *******************************************************/ /*** ITERATOR FUNCTIONS *******************************************************/
static fx_iterator *iterable_begin(fx_object *obj) static const fx_iterator *iterable_begin(const fx_object *obj)
{ {
fx_array_iterator *it_obj = fx_object_create(FX_TYPE_ARRAY_ITERATOR); fx_array_iterator *it_obj = fx_object_create(FX_TYPE_ARRAY_ITERATOR);
struct fx_array_iterator_p *it struct fx_array_iterator_p *it = fx_object_get_private(
= fx_object_get_private(it_obj, FX_TYPE_ARRAY_ITERATOR); it_obj,
FX_TYPE_ARRAY_ITERATOR);
it->_a = obj; it->_a = obj;
it->_a_p = fx_object_get_private(obj, FX_TYPE_ARRAY); it->_a_p = fx_object_get_private(obj, FX_TYPE_ARRAY);
it->i = 0; it->i = 0;
if (it->_a_p->ar_len > 0) { if (it->_a_p->ar_len > 0) {
it->value = it->_a_p->ar_data[0]; it->value = &it->_a_p->ar_data[0];
} else {
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
it->value = NULL;
}
return it_obj;
}
static const fx_iterator *iterable_cbegin(const fx_object *obj)
{
fx_array_iterator *it_obj = fx_object_create(FX_TYPE_ARRAY_ITERATOR);
struct fx_array_iterator_p *it
= fx_object_get_private(it_obj, FX_TYPE_ARRAY_ITERATOR);
it->_a = (fx_array *)obj;
it->_a_p = fx_object_get_private(obj, FX_TYPE_ARRAY);
it->i = 0;
if (it->_a_p->ar_len > 0) {
it->value = it->_a_p->ar_data[0];
} else { } else {
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA); fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
it->value = NULL; it->value = NULL;
@@ -406,12 +393,13 @@ static const fx_iterator *iterable_cbegin(const fx_object *obj)
static enum fx_status iterator_move_next(const fx_iterator *obj) static enum fx_status iterator_move_next(const fx_iterator *obj)
{ {
struct fx_array_iterator_p *it struct fx_array_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_ARRAY_ITERATOR); obj,
FX_TYPE_ARRAY_ITERATOR);
struct fx_array_p *array = it->_a_p; struct fx_array_p *array = it->_a_p;
if (it->value == NULL || it->i >= array->ar_len) { if (it->value == NULL || it->i >= array->ar_len) {
return false; return FX_ERR_NO_DATA;
} }
it->i++; it->i++;
@@ -419,7 +407,7 @@ static enum fx_status iterator_move_next(const fx_iterator *obj)
if (it->i >= array->ar_len) { if (it->i >= array->ar_len) {
it->value = NULL; it->value = NULL;
} else { } else {
it->value = array->ar_data[it->i]; it->value = &array->ar_data[it->i];
} }
return (it->value != NULL) ? FX_SUCCESS : FX_ERR_NO_DATA; return (it->value != NULL) ? FX_SUCCESS : FX_ERR_NO_DATA;
@@ -427,22 +415,19 @@ static enum fx_status iterator_move_next(const fx_iterator *obj)
static enum fx_status iterator_erase(fx_iterator *obj) static enum fx_status iterator_erase(fx_iterator *obj)
{ {
struct fx_array_iterator_p *it struct fx_array_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_ARRAY_ITERATOR); obj,
FX_TYPE_ARRAY_ITERATOR);
struct fx_array_p *array = it->_a_p; struct fx_array_p *array = it->_a_p;
if (it->i >= array->ar_len) { if (it->i >= array->ar_len) {
return FX_ERR_OUT_OF_BOUNDS; return FX_ERR_OUT_OF_BOUNDS;
} }
if (array->ar_data[it->i] != it->value) {
return FX_ERR_BAD_STATE;
}
array_remove(array, it->i); array_remove(array, it->i);
if (it->i < array->ar_len) { if (it->i < array->ar_len) {
it->value = array->ar_data[it->i]; it->value = &array->ar_data[it->i];
} else { } else {
it->value = NULL; it->value = NULL;
} }
@@ -450,36 +435,31 @@ static enum fx_status iterator_erase(fx_iterator *obj)
return FX_SUCCESS; return FX_SUCCESS;
} }
static fx_iterator_value iterator_get_value(fx_iterator *obj) static const fx_value *iterator_get_value(const fx_iterator *obj)
{ {
struct fx_array_iterator_p *it struct fx_array_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_ARRAY_ITERATOR); obj,
FX_TYPE_ARRAY_ITERATOR);
struct fx_array_p *array = it->_a_p;
return FX_ITERATOR_VALUE_PTR(it->value); if (it->i >= array->ar_len) {
return NULL;
} }
static const fx_iterator_value iterator_get_cvalue(const fx_iterator *obj) return it->value;
{
struct fx_array_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_ARRAY_ITERATOR);
return FX_ITERATOR_VALUE_CPTR(it->value);
} }
static enum fx_status iterator_is_valid(const fx_iterator *obj) static enum fx_status iterator_is_valid(const fx_iterator *obj)
{ {
struct fx_array_iterator_p *it struct fx_array_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_ARRAY_ITERATOR); obj,
FX_TYPE_ARRAY_ITERATOR);
struct fx_array_p *array = it->_a_p; struct fx_array_p *array = it->_a_p;
if (it->i >= array->ar_len) { if (it->i >= array->ar_len) {
return false; return false;
} }
if (array->ar_data[it->i] != it->value) {
return false;
}
return (it->value != NULL) ? FX_SUCCESS : FX_ERR_NO_DATA; return (it->value != NULL) ? FX_SUCCESS : FX_ERR_NO_DATA;
} }
@@ -493,7 +473,6 @@ FX_TYPE_CLASS_BEGIN(fx_array)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE)
FX_INTERFACE_ENTRY(it_begin) = iterable_begin; FX_INTERFACE_ENTRY(it_begin) = iterable_begin;
FX_INTERFACE_ENTRY(it_cbegin) = iterable_cbegin;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE)
FX_TYPE_CLASS_END(fx_array) FX_TYPE_CLASS_END(fx_array)
@@ -516,7 +495,6 @@ FX_TYPE_CLASS_BEGIN(fx_array_iterator)
FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next; FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = iterator_erase; FX_INTERFACE_ENTRY(it_erase) = iterator_erase;
FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value; FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value;
FX_INTERFACE_ENTRY(it_get_cvalue) = iterator_get_cvalue;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR) FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_array_iterator) FX_TYPE_CLASS_END(fx_array_iterator)
+10 -3
View File
@@ -1,6 +1,7 @@
#include <fx/bitop.h> #include <fx/bitop.h>
#include <fx/collections/bitmap.h> #include <fx/collections/bitmap.h>
#include <fx/stream.h> #include <fx/stream.h>
#include <fx/value.h>
#include <string.h> #include <string.h>
#define BITS_PER_WORD (8 * sizeof(bitmap_word_t)) #define BITS_PER_WORD (8 * sizeof(bitmap_word_t))
@@ -306,10 +307,14 @@ static void bitmap_fini(fx_object *obj, void *priv)
struct fx_bitmap_p *map = priv; struct fx_bitmap_p *map = priv;
} }
static void bitmap_to_string(const fx_object *obj, fx_stream *out) static fx_status bitmap_to_string(
const fx_value *obj,
fx_stream *out,
const char *format)
{ {
const struct fx_bitmap_p *map const struct fx_bitmap_p *map = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_BITMAP); obj->v_object,
FX_TYPE_BITMAP);
unsigned char *bytes = (unsigned char *)map->map_words; unsigned char *bytes = (unsigned char *)map->map_words;
size_t nr_bytes = map->map_nr_words * sizeof(bitmap_word_t); size_t nr_bytes = map->map_nr_words * sizeof(bitmap_word_t);
@@ -339,6 +344,8 @@ static void bitmap_to_string(const fx_object *obj, fx_stream *out)
fx_stream_write_fmt(out, NULL, "%c", (c & mask) ? '1' : '0'); fx_stream_write_fmt(out, NULL, "%c", (c & mask) ? '1' : '0');
} }
return FX_SUCCESS;
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
-732
View File
@@ -1,732 +0,0 @@
#include <fx/collections/dict.h>
#include <fx/hash.h>
#include <fx/status.h>
#include <fx/stream.h>
#include <fx/string.h>
#include <stdbool.h>
#include <stdlib.h>
/*** PRIVATE DATA *************************************************************/
struct fx_dict_bucket_item {
fx_queue_entry bi_entry;
fx_string *bi_str;
fx_object *bi_value;
};
struct fx_dict_bucket {
fx_bst_node bk_node;
uint64_t bk_hash;
fx_queue bk_items;
};
struct fx_dict_p {
fx_bst d_buckets;
};
struct fx_dict_iterator_p {
size_t i;
fx_dict_item item;
fx_dict *_d;
struct fx_dict_p *_d_p;
fx_bst_node *_cbn;
fx_queue_entry *_cqe;
};
/*** MISC FUNCTIONS ***********************************************************/
static FX_BST_DEFINE_SIMPLE_GET(
struct fx_dict_bucket,
uint64_t,
bk_node,
bk_hash,
get_bucket);
static FX_BST_DEFINE_SIMPLE_INSERT(
struct fx_dict_bucket,
bk_node,
bk_hash,
put_bucket);
/*** PRIVATE FUNCTIONS ********************************************************/
static struct fx_dict_bucket *create_bucket(void)
{
struct fx_dict_bucket *bucket = malloc(sizeof *bucket);
if (!bucket) {
return NULL;
}
memset(bucket, 0x0, sizeof *bucket);
return bucket;
}
static struct fx_dict_bucket_item *create_bucket_item(void)
{
struct fx_dict_bucket_item *item = malloc(sizeof *item);
if (!item) {
return NULL;
}
memset(item, 0x0, sizeof *item);
return item;
}
static fx_status dict_put(
struct fx_dict_p *dict,
const char *key,
fx_object *value)
{
uint64_t hash = fx_hash_cstr(key);
struct fx_dict_bucket *bucket = get_bucket(&dict->d_buckets, hash);
if (!bucket) {
bucket = create_bucket();
if (!bucket) {
return FX_ERR_NO_MEMORY;
}
bucket->bk_hash = hash;
put_bucket(&dict->d_buckets, bucket);
}
struct fx_dict_bucket_item *item = create_bucket_item();
if (!item) {
return FX_ERR_NO_MEMORY;
}
item->bi_str = fx_string_create_from_cstr(key);
item->bi_value = fx_object_ref(value);
fx_queue_push_back(&bucket->bk_items, &item->bi_entry);
return FX_SUCCESS;
}
static fx_status dict_put_sk(
struct fx_dict_p *dict,
const fx_string *key,
fx_object *value)
{
uint64_t hash = fx_string_hash(key);
struct fx_dict_bucket *bucket = get_bucket(&dict->d_buckets, hash);
if (!bucket) {
bucket = create_bucket();
if (!bucket) {
return FX_ERR_NO_MEMORY;
}
bucket->bk_hash = hash;
put_bucket(&dict->d_buckets, bucket);
}
struct fx_dict_bucket_item *item = create_bucket_item();
if (!item) {
return FX_ERR_NO_MEMORY;
}
item->bi_str = fx_string_duplicate(key);
item->bi_value = fx_object_ref(value);
fx_queue_push_back(&bucket->bk_items, &item->bi_entry);
return FX_SUCCESS;
}
static fx_object *dict_at(const struct fx_dict_p *dict, const char *key)
{
uint64_t hash = fx_hash_cstr(key);
struct fx_dict_bucket *bucket = get_bucket(&dict->d_buckets, hash);
if (!bucket) {
return NULL;
}
struct fx_queue_entry *entry = fx_queue_first(&bucket->bk_items);
while (entry) {
struct fx_dict_bucket_item *item
= fx_unbox(struct fx_dict_bucket_item, entry, bi_entry);
if (!strcmp(fx_string_get_cstr(item->bi_str), key)) {
return item->bi_value;
}
entry = fx_queue_next(entry);
}
return NULL;
}
static fx_object *dict_at_sk(const struct fx_dict_p *dict, const fx_string *key)
{
uint64_t hash = fx_string_hash(key);
struct fx_dict_bucket *bucket = get_bucket(&dict->d_buckets, hash);
if (!bucket) {
return NULL;
}
struct fx_queue_entry *entry = fx_queue_first(&bucket->bk_items);
while (entry) {
struct fx_dict_bucket_item *item
= fx_unbox(struct fx_dict_bucket_item, entry, bi_entry);
if (fx_string_compare(item->bi_str, key)) {
return item->bi_value;
}
entry = fx_queue_next(entry);
}
return NULL;
}
static fx_object *dict_get(struct fx_dict_p *dict, const char *key)
{
fx_object *value = dict_at(dict, key);
if (value) {
fx_object_ref(value);
}
return value;
}
static fx_object *dict_get_sk(struct fx_dict_p *dict, const fx_string *key)
{
fx_object *value = dict_at_sk(dict, key);
if (value) {
fx_object_ref(value);
}
return value;
}
static bool dict_has_key(const struct fx_dict_p *dict, const char *key)
{
return dict_at(dict, key) != NULL;
}
static bool dict_has_skey(const struct fx_dict_p *dict, const fx_string *key)
{
return dict_at_sk(dict, key) != NULL;
}
static size_t dict_get_size(const struct fx_dict_p *dict)
{
size_t count = 0;
#if 0
fx_bst_iterator it1;
fx_queue_iterator it2;
fx_bst_foreach (&it1, &dict->d_buckets) {
struct fx_dict_bucket *bucket
= fx_unbox(struct fx_dict_bucket, it1.node, bk_node);
fx_queue_foreach (&it2, &bucket->bk_items) {
count++;
}
}
#endif
return count;
}
static bool dict_is_empty(const struct fx_dict_p *dict)
{
fx_bst_node *first_node = fx_bst_first(&dict->d_buckets);
struct fx_dict_bucket *first_bucket
= fx_unbox(struct fx_dict_bucket, first_node, bk_node);
if (!first_bucket) {
return true;
}
fx_queue_entry *first_entry = fx_queue_first(&first_bucket->bk_items);
struct fx_dict_bucket_item *first_item
= fx_unbox(struct fx_dict_bucket_item, first_entry, bi_entry);
if (!first_item) {
return true;
}
return false;
}
static bool get_next_node(
struct fx_bst_node *cur_node,
struct fx_queue_entry *cur_entry,
struct fx_bst_node **out_next_node,
struct fx_queue_entry **out_next_entry)
{
struct fx_dict_bucket *cur_bucket
= fx_unbox(struct fx_dict_bucket, cur_node, bk_node);
if (!cur_bucket) {
return false;
}
struct fx_dict_bucket_item *cur_item
= fx_unbox(struct fx_dict_bucket_item, cur_entry, bi_entry);
if (!cur_item) {
return false;
}
struct fx_bst_node *next_node = cur_node;
struct fx_queue_entry *next_entry = fx_queue_next(cur_entry);
if (!next_entry) {
next_node = fx_bst_next(cur_node);
if (!next_node) {
return false;
}
struct fx_dict_bucket *next_bucket
= fx_unbox(struct fx_dict_bucket, next_node, bk_node);
if (!next_bucket) {
return false;
}
next_entry = fx_queue_first(&next_bucket->bk_items);
if (!next_entry) {
return false;
}
}
struct fx_dict_bucket_item *next_item
= fx_unbox(struct fx_dict_bucket_item, next_entry, bi_entry);
if (!next_item) {
return false;
}
*out_next_node = next_node;
*out_next_entry = next_entry;
return true;
}
static fx_status delete_item(
struct fx_dict_p *dict,
struct fx_dict_bucket *bucket,
struct fx_dict_bucket_item *item)
{
fx_queue_delete(&bucket->bk_items, &item->bi_entry);
free(item);
if (fx_queue_empty(&bucket->bk_items)) {
fx_bst_delete(&dict->d_buckets, &bucket->bk_node);
free(bucket);
}
return FX_SUCCESS;
}
/*** PUBLIC FUNCTIONS *********************************************************/
#if 0
fx_dict *fx_dict_create_with_items(const fx_dict_item *items)
{
fx_dict *dict = fx_dict_create();
if (!dict) {
return NULL;
}
struct fx_dict_p *p = fx_object_get_private(dict, FX_TYPE_DICT);
for (size_t i = 0; items[i].key; i++) {
dict_put(p, items[i].key, items[i].value);
}
return dict;
}
#endif
fx_status fx_dict_put(fx_dict *dict, const char *key, fx_object *value)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_DICT, dict_put, dict, key, value);
}
fx_status fx_dict_put_sk(fx_dict *dict, const fx_string *key, fx_object *value)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_DICT, dict_put_sk, dict, key, value);
}
fx_object *fx_dict_at(const fx_dict *dict, const char *key)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_DICT, dict_at, dict, key);
}
fx_object *fx_dict_at_sk(const fx_dict *dict, const fx_string *key)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_DICT, dict_at_sk, dict, key);
}
fx_object *fx_dict_get(fx_dict *dict, const char *key)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_DICT, dict_get, dict, key);
}
fx_object *fx_dict_get_sk(fx_dict *dict, const fx_string *key)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_DICT, dict_get_sk, dict, key);
}
bool fx_dict_has_key(const fx_dict *dict, const char *key)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_DICT, dict_has_key, dict, key);
}
bool fx_dict_has_skey(const fx_dict *dict, const fx_string *key)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_DICT, dict_has_skey, dict, key);
}
size_t fx_dict_get_size(const fx_dict *dict)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DICT, dict_get_size, dict);
}
bool fx_dict_is_empty(const fx_dict *dict)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DICT, dict_is_empty, dict);
}
/*** PUBLIC ALIAS FUNCTIONS ***************************************************/
/*** VIRTUAL FUNCTIONS ********************************************************/
static void dict_init(fx_object *obj, void *priv)
{
struct fx_dict_p *dict = priv;
}
static void dict_fini(fx_object *obj, void *priv)
{
struct fx_dict_p *dict = priv;
struct fx_bst_node *node = fx_bst_first(&dict->d_buckets);
while (node) {
struct fx_dict_bucket *bucket
= fx_unbox(struct fx_dict_bucket, node, bk_node);
struct fx_bst_node *next_node = fx_bst_next(node);
fx_bst_delete(&dict->d_buckets, node);
struct fx_queue_entry *entry
= fx_queue_first(&bucket->bk_items);
while (entry) {
struct fx_dict_bucket_item *item = fx_unbox(
struct fx_dict_bucket_item,
entry,
bi_entry);
struct fx_queue_entry *next_entry
= fx_queue_next(entry);
fx_queue_delete(&bucket->bk_items, entry);
free(item->bi_str);
fx_object_unref(item->bi_value);
free(item);
entry = next_entry;
}
free(bucket);
node = next_node;
}
}
static void dict_to_string(const fx_object *obj, fx_stream *out)
{
struct fx_dict_p *dict = fx_object_get_private(obj, FX_TYPE_DICT);
if (dict_is_empty(dict)) {
fx_stream_write_cstr(out, "{}", NULL);
return;
}
fx_stream_write_cstr(out, "{\n", NULL);
fx_stream_push_indent(out, 1);
size_t len = dict_get_size(dict);
size_t i = 0;
struct fx_bst_node *node = fx_bst_first(&dict->d_buckets);
while (node) {
struct fx_dict_bucket *bucket
= fx_unbox(struct fx_dict_bucket, node, bk_node);
struct fx_queue_entry *entry
= fx_queue_first(&bucket->bk_items);
while (entry) {
struct fx_dict_bucket_item *item = fx_unbox(
struct fx_dict_bucket_item,
entry,
bi_entry);
fx_object_to_string(item->bi_str, out);
fx_stream_write_cstr(out, ": ", NULL);
bool is_string = fx_object_is_type(
item->bi_value,
FX_TYPE_STRING);
if (is_string) {
fx_stream_write_char(out, '"');
}
fx_object_to_string(item->bi_value, out);
if (is_string) {
fx_stream_write_char(out, '"');
}
if (i < len - 1) {
fx_stream_write_cstr(out, ",", NULL);
}
fx_stream_write_char(out, '\n');
entry = fx_queue_next(entry);
i++;
}
node = fx_bst_next(node);
}
fx_stream_pop_indent(out);
fx_stream_write_char(out, '}');
}
/*** ITERATOR FUNCTIONS *******************************************************/
static fx_iterator *iterable_begin(fx_dict *dict)
{
fx_iterator *it_obj = fx_object_create(FX_TYPE_DICT_ITERATOR);
if (!it_obj) {
return NULL;
}
struct fx_dict_iterator_p *it
= fx_object_get_private(it_obj, FX_TYPE_DICT_ITERATOR);
it->i = 0;
it->_d = dict;
it->_d_p = fx_object_get_private(dict, FX_TYPE_DICT);
if (dict_is_empty(it->_d_p)) {
it->item.key = NULL;
it->item.value = NULL;
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
return it_obj;
}
fx_bst_node *first_node = fx_bst_first(&it->_d_p->d_buckets);
struct fx_dict_bucket *first_bucket
= fx_unbox(struct fx_dict_bucket, first_node, bk_node);
if (!first_bucket) {
it->item.key = NULL;
it->item.value = NULL;
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
return it_obj;
}
fx_queue_entry *first_entry = fx_queue_first(&first_bucket->bk_items);
struct fx_dict_bucket_item *first_item
= fx_unbox(struct fx_dict_bucket_item, first_entry, bi_entry);
if (!first_item) {
it->item.key = NULL;
it->item.value = NULL;
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
return it_obj;
}
it->item.key = first_item->bi_str;
it->item.value = first_item->bi_value;
it->_d = dict;
it->_cbn = first_node;
it->_cqe = first_entry;
return it_obj;
}
static const fx_iterator *iterable_cbegin(const fx_dict *dict)
{
fx_iterator *it_obj = fx_object_create(FX_TYPE_DICT_ITERATOR);
if (!it_obj) {
return NULL;
}
struct fx_dict_iterator_p *it
= fx_object_get_private(it_obj, FX_TYPE_DICT_ITERATOR);
it->i = 0;
it->_d = (fx_dict *)dict;
it->_d_p = fx_object_get_private(dict, FX_TYPE_DICT);
if (dict_is_empty(it->_d_p)) {
it->item.key = NULL;
it->item.value = NULL;
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
return it_obj;
}
fx_bst_node *first_node = fx_bst_first(&it->_d_p->d_buckets);
struct fx_dict_bucket *first_bucket
= fx_unbox(struct fx_dict_bucket, first_node, bk_node);
if (!first_bucket) {
it->item.key = NULL;
it->item.value = NULL;
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
return it_obj;
}
fx_queue_entry *first_entry = fx_queue_first(&first_bucket->bk_items);
struct fx_dict_bucket_item *first_item
= fx_unbox(struct fx_dict_bucket_item, first_entry, bi_entry);
if (!first_item) {
it->item.key = NULL;
it->item.value = NULL;
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
return it_obj;
}
it->item.key = first_item->bi_str;
it->item.value = first_item->bi_value;
it->_cbn = first_node;
it->_cqe = first_entry;
return it_obj;
}
static enum fx_status iterator_move_next(const fx_iterator *obj)
{
struct fx_dict_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_DICT_ITERATOR);
struct fx_bst_node *next_node;
struct fx_queue_entry *next_entry;
if (!get_next_node(it->_cbn, it->_cqe, &next_node, &next_entry)) {
it->item.key = NULL;
it->item.value = NULL;
return FX_ERR_NO_DATA;
}
struct fx_dict_bucket_item *next_item
= fx_unbox(struct fx_dict_bucket_item, next_entry, bi_entry);
if (!next_item) {
it->item.key = NULL;
it->item.value = NULL;
return FX_ERR_NO_DATA;
}
it->i++;
it->item.key = next_item->bi_str;
it->item.value = next_item->bi_value;
it->_cbn = next_node;
it->_cqe = next_entry;
return FX_SUCCESS;
}
static enum fx_status iterator_erase(fx_iterator *obj)
{
struct fx_dict_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_DICT_ITERATOR);
if ((it->item.key || it->item.value) && !(it->_cbn && it->_cqe)) {
return FX_ERR_BAD_STATE;
}
if (!it->item.key || !it->_cqe) {
return FX_ERR_NO_DATA;
}
struct fx_bst_node *next_node;
struct fx_queue_entry *next_entry;
if (!get_next_node(it->_cbn, it->_cqe, &next_node, &next_entry)) {
it->item.key = NULL;
it->item.value = NULL;
return FX_ERR_NO_DATA;
}
struct fx_dict_bucket *cur_bucket
= fx_unbox(struct fx_dict_bucket, it->_cbn, bk_node);
struct fx_dict_bucket_item *cur_item
= fx_unbox(struct fx_dict_bucket_item, it->_cqe, bi_entry);
struct fx_dict_bucket_item *next_item
= fx_unbox(struct fx_dict_bucket_item, next_entry, bi_entry);
fx_status status = delete_item(it->_d_p, cur_bucket, cur_item);
if (FX_ERR(status)) {
return status;
}
if (next_item) {
it->item.key = next_item->bi_str;
it->item.value = next_item->bi_value;
it->_cbn = next_node;
it->_cqe = next_entry;
} else {
it->item.key = NULL;
it->item.value = NULL;
it->_cbn = NULL;
it->_cqe = NULL;
}
return FX_SUCCESS;
}
static fx_iterator_value iterator_get_value(fx_iterator *obj)
{
struct fx_dict_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_DICT_ITERATOR);
return FX_ITERATOR_VALUE_PTR(&it->item);
}
static const fx_iterator_value iterator_get_cvalue(const fx_iterator *obj)
{
struct fx_dict_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_DICT_ITERATOR);
return FX_ITERATOR_VALUE_CPTR(&it->item);
}
/*** CLASS DEFINITION *********************************************************/
// ---- fx_dict DEFINITION
FX_TYPE_CLASS_BEGIN(fx_dict)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = dict_to_string;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE)
FX_INTERFACE_ENTRY(it_begin) = iterable_begin;
FX_INTERFACE_ENTRY(it_cbegin) = iterable_cbegin;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE)
FX_TYPE_CLASS_END(fx_dict)
FX_TYPE_DEFINITION_BEGIN(fx_dict)
FX_TYPE_ID(0xd2af61d9, 0xd0be, 0x4960, 0xbe3f, 0x509749814c10);
FX_TYPE_CLASS(fx_dict_class);
FX_TYPE_IMPLEMENTS(FX_TYPE_ITERABLE);
FX_TYPE_INSTANCE_PRIVATE(struct fx_dict_p);
FX_TYPE_INSTANCE_INIT(dict_init);
FX_TYPE_INSTANCE_FINI(dict_fini);
FX_TYPE_DEFINITION_END(fx_dict)
// ---- fx_dict_iterator DEFINITION
FX_TYPE_CLASS_BEGIN(fx_dict_iterator)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterator, FX_TYPE_ITERATOR)
FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = iterator_erase;
FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value;
FX_INTERFACE_ENTRY(it_get_cvalue) = iterator_get_cvalue;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_dict_iterator)
FX_TYPE_DEFINITION_BEGIN(fx_dict_iterator)
FX_TYPE_ID(0x9ea96701, 0x1713, 0x4a3e, 0xbf63, 0xdc856b456f3b);
FX_TYPE_EXTENDS(FX_TYPE_ITERATOR);
FX_TYPE_CLASS(fx_dict_iterator_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_dict_iterator_p);
FX_TYPE_DEFINITION_END(fx_dict_iterator)
+76 -55
View File
@@ -32,8 +32,9 @@ struct fx_hashmap_p {
struct fx_hashmap_iterator_p { struct fx_hashmap_iterator_p {
size_t i; size_t i;
fx_hashmap_item item; fx_hashmap_item item;
fx_value item_value;
fx_hashmap *_h; const fx_hashmap *_h;
struct fx_hashmap_p *_h_p; struct fx_hashmap_p *_h_p;
fx_bst_node *_cbn; fx_bst_node *_cbn;
fx_queue_entry *_cqe; fx_queue_entry *_cqe;
@@ -112,14 +113,18 @@ static bool get_next_node(
struct fx_bst_node **out_next_node, struct fx_bst_node **out_next_node,
struct fx_queue_entry **out_next_entry) struct fx_queue_entry **out_next_entry)
{ {
struct fx_hashmap_bucket *cur_bucket struct fx_hashmap_bucket *cur_bucket = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket, cur_node, bk_node); struct fx_hashmap_bucket,
cur_node,
bk_node);
if (!cur_bucket) { if (!cur_bucket) {
return false; return false;
} }
struct fx_hashmap_bucket_item *cur_item struct fx_hashmap_bucket_item *cur_item = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket_item, cur_entry, bi_entry); struct fx_hashmap_bucket_item,
cur_entry,
bi_entry);
if (!cur_item) { if (!cur_item) {
return false; return false;
} }
@@ -146,8 +151,10 @@ static bool get_next_node(
} }
} }
struct fx_hashmap_bucket_item *next_item struct fx_hashmap_bucket_item *next_item = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket_item, next_entry, bi_entry); struct fx_hashmap_bucket_item,
next_entry,
bi_entry);
if (!next_item) { if (!next_item) {
return false; return false;
} }
@@ -186,8 +193,9 @@ static fx_status hashmap_put(
const fx_hashmap_value *value) const fx_hashmap_value *value)
{ {
uint64_t hash = hash_key(key); uint64_t hash = hash_key(key);
struct fx_hashmap_bucket *bucket struct fx_hashmap_bucket *bucket = get_bucket(
= get_bucket(&hashmap->h_buckets, hash); &hashmap->h_buckets,
hash);
if (!bucket) { if (!bucket) {
bucket = create_bucket(); bucket = create_bucket();
@@ -234,8 +242,9 @@ static const struct fx_hashmap_value *hashmap_get(
{ {
uint64_t hash = hash_key(key); uint64_t hash = hash_key(key);
struct fx_hashmap_bucket *bucket struct fx_hashmap_bucket *bucket = get_bucket(
= get_bucket(&hashmap->h_buckets, hash); &hashmap->h_buckets,
hash);
if (!bucket) { if (!bucket) {
return NULL; return NULL;
} }
@@ -262,8 +271,9 @@ static bool hashmap_has_key(
const fx_hashmap_key *key) const fx_hashmap_key *key)
{ {
uint64_t hash = hash_key(key); uint64_t hash = hash_key(key);
struct fx_hashmap_bucket *bucket struct fx_hashmap_bucket *bucket = get_bucket(
= get_bucket(&hashmap->h_buckets, hash); &hashmap->h_buckets,
hash);
if (!bucket) { if (!bucket) {
return false; return false;
} }
@@ -293,8 +303,10 @@ static size_t hashmap_get_size(const struct fx_hashmap_p *hashmap)
static bool hashmap_is_empty(const struct fx_hashmap_p *hashmap) static bool hashmap_is_empty(const struct fx_hashmap_p *hashmap)
{ {
fx_bst_node *first_node = fx_bst_first(&hashmap->h_buckets); fx_bst_node *first_node = fx_bst_first(&hashmap->h_buckets);
struct fx_hashmap_bucket *first_bucket struct fx_hashmap_bucket *first_bucket = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket, first_node, bk_node); struct fx_hashmap_bucket,
first_node,
bk_node);
if (!first_bucket) { if (!first_bucket) {
return true; return true;
} }
@@ -358,8 +370,9 @@ fx_hashmap *fx_hashmap_create_with_items(const fx_hashmap_item *items)
return NULL; return NULL;
} }
struct fx_hashmap_p *p struct fx_hashmap_p *p = fx_object_get_private(
= fx_object_get_private(hashmap, FX_TYPE_HASHMAP); hashmap,
FX_TYPE_HASHMAP);
for (size_t i = 0; items[i].key.key_data && items[i].key.key_size; for (size_t i = 0; items[i].key.key_data && items[i].key.key_size;
i++) { i++) {
@@ -408,12 +421,13 @@ bool fx_hashmap_is_empty(const fx_hashmap *hashmap)
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_HASHMAP, hashmap_is_empty, hashmap); FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_HASHMAP, hashmap_is_empty, hashmap);
} }
fx_iterator *fx_hashmap_begin(fx_hashmap *hashmap) const fx_iterator *fx_hashmap_begin(const fx_hashmap *hashmap)
{ {
fx_hashmap_iterator *it_obj fx_hashmap_iterator *it_obj = fx_object_create(
= fx_object_create(FX_TYPE_HASHMAP_ITERATOR); FX_TYPE_HASHMAP_ITERATOR);
struct fx_hashmap_iterator_p *it struct fx_hashmap_iterator_p *it = fx_object_get_private(
= fx_object_get_private(it_obj, FX_TYPE_HASHMAP_ITERATOR); it_obj,
FX_TYPE_HASHMAP_ITERATOR);
it->_h = hashmap; it->_h = hashmap;
it->_h_p = fx_object_get_private(hashmap, FX_TYPE_HASHMAP); it->_h_p = fx_object_get_private(hashmap, FX_TYPE_HASHMAP);
@@ -426,16 +440,18 @@ fx_iterator *fx_hashmap_begin(fx_hashmap *hashmap)
} }
struct fx_bst_node *first_node = fx_bst_first(&it->_h_p->h_buckets); struct fx_bst_node *first_node = fx_bst_first(&it->_h_p->h_buckets);
struct fx_hashmap_bucket *first_bucket struct fx_hashmap_bucket *first_bucket = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket, first_node, bk_node); struct fx_hashmap_bucket,
first_node,
bk_node);
if (!first_bucket) { if (!first_bucket) {
memset(&it->item, 0x0, sizeof it->item); memset(&it->item, 0x0, sizeof it->item);
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA); fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
return it_obj; return it_obj;
} }
struct fx_queue_entry *first_entry struct fx_queue_entry *first_entry = fx_queue_first(
= fx_queue_first(&first_bucket->bk_items); &first_bucket->bk_items);
struct fx_hashmap_bucket_item *first_item = fx_unbox( struct fx_hashmap_bucket_item *first_item = fx_unbox(
struct fx_hashmap_bucket_item, struct fx_hashmap_bucket_item,
first_entry, first_entry,
@@ -473,8 +489,10 @@ static void hashmap_fini(fx_object *obj, void *priv)
struct fx_bst_node *node = fx_bst_first(&map->h_buckets); struct fx_bst_node *node = fx_bst_first(&map->h_buckets);
while (node) { while (node) {
struct fx_hashmap_bucket *b struct fx_hashmap_bucket *b = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket, node, bk_node); struct fx_hashmap_bucket,
node,
bk_node);
struct fx_bst_node *next_node = fx_bst_next(node); struct fx_bst_node *next_node = fx_bst_next(node);
fx_bst_delete(&map->h_buckets, node); fx_bst_delete(&map->h_buckets, node);
@@ -484,8 +502,8 @@ static void hashmap_fini(fx_object *obj, void *priv)
struct fx_hashmap_bucket_item, struct fx_hashmap_bucket_item,
entry, entry,
bi_entry); bi_entry);
struct fx_queue_entry *next_entry struct fx_queue_entry *next_entry = fx_queue_next(
= fx_queue_next(entry); entry);
fx_queue_delete(&b->bk_items, entry); fx_queue_delete(&b->bk_items, entry);
if (map->h_key_dtor) { if (map->h_key_dtor) {
@@ -510,8 +528,9 @@ static void hashmap_fini(fx_object *obj, void *priv)
static enum fx_status iterator_move_next(const fx_iterator *obj) static enum fx_status iterator_move_next(const fx_iterator *obj)
{ {
struct fx_hashmap_iterator_p *it struct fx_hashmap_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_HASHMAP_ITERATOR); obj,
FX_TYPE_HASHMAP_ITERATOR);
struct fx_bst_node *next_node; struct fx_bst_node *next_node;
struct fx_queue_entry *next_entry; struct fx_queue_entry *next_entry;
@@ -520,8 +539,10 @@ static enum fx_status iterator_move_next(const fx_iterator *obj)
return FX_ERR_NO_DATA; return FX_ERR_NO_DATA;
} }
struct fx_hashmap_bucket_item *next_item struct fx_hashmap_bucket_item *next_item = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket_item, next_entry, bi_entry); struct fx_hashmap_bucket_item,
next_entry,
bi_entry);
if (!next_item) { if (!next_item) {
memset(&it->item, 0x0, sizeof it->item); memset(&it->item, 0x0, sizeof it->item);
@@ -540,8 +561,9 @@ static enum fx_status iterator_move_next(const fx_iterator *obj)
static enum fx_status iterator_erase(fx_iterator *obj) static enum fx_status iterator_erase(fx_iterator *obj)
{ {
struct fx_hashmap_iterator_p *it struct fx_hashmap_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_HASHMAP_ITERATOR); obj,
FX_TYPE_HASHMAP_ITERATOR);
if ((it->item.key.key_data || it->item.value.value_data) if ((it->item.key.key_data || it->item.value.value_data)
&& !(it->_cbn && it->_cqe)) { && !(it->_cbn && it->_cqe)) {
@@ -559,13 +581,19 @@ static enum fx_status iterator_erase(fx_iterator *obj)
return FX_ERR_NO_DATA; return FX_ERR_NO_DATA;
} }
struct fx_hashmap_bucket *cur_bucket struct fx_hashmap_bucket *cur_bucket = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket, it->_cbn, bk_node); struct fx_hashmap_bucket,
struct fx_hashmap_bucket_item *cur_item it->_cbn,
= fx_unbox(struct fx_hashmap_bucket_item, it->_cqe, bi_entry); bk_node);
struct fx_hashmap_bucket_item *cur_item = fx_unbox(
struct fx_hashmap_bucket_item,
it->_cqe,
bi_entry);
struct fx_hashmap_bucket_item *next_item struct fx_hashmap_bucket_item *next_item = fx_unbox(
= fx_unbox(struct fx_hashmap_bucket_item, next_entry, bi_entry); struct fx_hashmap_bucket_item,
next_entry,
bi_entry);
fx_status status = delete_item(it->_h_p, cur_bucket, cur_item); fx_status status = delete_item(it->_h_p, cur_bucket, cur_item);
if (FX_ERR(status)) { if (FX_ERR(status)) {
@@ -590,18 +618,13 @@ static enum fx_status iterator_erase(fx_iterator *obj)
return FX_SUCCESS; return FX_SUCCESS;
} }
static fx_iterator_value iterator_get_value(fx_iterator *obj) static const fx_value *iterator_get_value(const fx_iterator *obj)
{ {
struct fx_hashmap_iterator_p *it struct fx_hashmap_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_HASHMAP_ITERATOR); obj,
return FX_ITERATOR_VALUE_PTR(&it->item); FX_TYPE_HASHMAP_ITERATOR);
} it->item_value = FX_POINTER(&it->item);
return &it->item_value;
static const fx_iterator_value iterator_get_cvalue(const fx_iterator *obj)
{
const struct fx_hashmap_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_HASHMAP_ITERATOR);
return FX_ITERATOR_VALUE_CPTR(&it->item);
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
@@ -614,7 +637,6 @@ FX_TYPE_CLASS_BEGIN(fx_hashmap)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE)
FX_INTERFACE_ENTRY(it_begin) = fx_hashmap_begin; FX_INTERFACE_ENTRY(it_begin) = fx_hashmap_begin;
FX_INTERFACE_ENTRY(it_cbegin) = fx_hashmap_cbegin;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE)
FX_TYPE_CLASS_END(fx_hashmap) FX_TYPE_CLASS_END(fx_hashmap)
@@ -637,7 +659,6 @@ FX_TYPE_CLASS_BEGIN(fx_hashmap_iterator)
FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next; FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = iterator_erase; FX_INTERFACE_ENTRY(it_erase) = iterator_erase;
FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value; FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value;
FX_INTERFACE_ENTRY(it_get_cvalue) = iterator_get_cvalue;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR) FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_hashmap_iterator) FX_TYPE_CLASS_END(fx_hashmap_iterator)
+695
View File
@@ -0,0 +1,695 @@
#include <assert.h>
#include <fx/collections/hashtable.h>
#include <fx/misc.h>
#include <fx/reflection/property.h>
#include <fx/status.h>
#include <fx/string.h>
#include <fx/vector.h>
#include <stdbool.h>
#include <stdlib.h>
/*** PRIVATE DATA *************************************************************/
/* these primes are used as array capacities to avoid hash collisions. */
static const size_t primes[] = {
11,
23,
47,
97,
197,
397,
797,
1597,
3203,
6421,
12853,
25717,
51437,
};
struct table_item {
fx_hashtable_item *i_item;
};
struct fx_hashtable_item_p {
fx_hashtable_item *i_self;
fx_value i_key, i_value;
};
struct fx_hashtable_p {
struct table_item *t_items;
/* number of items currently stored in t_items */
size_t t_count;
/* index in primes[] that represents the current maximum size of
* t_items */
size_t t_max_index;
};
struct fx_hashtable_iterator_p {
size_t i;
fx_hashtable_item *item;
fx_value item_value;
const fx_hashtable *_h;
struct fx_hashtable_p *_h_p;
};
/*** PRIVATE FUNCTIONS ********************************************************/
static fx_status convert_key_to_index(
const fx_value *v,
struct table_item *table,
size_t table_size,
size_t *out_index)
{
uint64_t hash = 0;
fx_status status = fx_value_hash(v, &hash);
if (!FX_OK(status)) {
return status;
}
size_t index = hash % table_size, i = 1;
bool index_found = false;
while (table[index].i_item && i <= table_size) {
const struct fx_hashtable_item_p *item = fx_object_get_private(
table[index].i_item,
FX_TYPE_HASHTABLE_ITEM);
int cmp = fx_value_compare(&item->i_key, v);
if (cmp == 0) {
index_found = true;
break;
}
index = (index + (i * i)) % table_size;
i++;
}
if (!index_found) {
return FX_ERR_NO_ENTRY;
}
assert(index < table_size);
*out_index = index;
return FX_SUCCESS;
}
static fx_status allocate_index_for_key(
const fx_value *v,
struct table_item *table,
size_t table_size,
size_t *out_index)
{
uint64_t hash = 0;
fx_status status = fx_value_hash(v, &hash);
if (!FX_OK(status)) {
return status;
}
size_t index = hash % table_size;
bool ok = false;
for (size_t i = 1; i < table_size; i++) {
if (!table[index].i_item) {
ok = true;
break;
}
const struct fx_hashtable_item_p *item = fx_object_get_private(
table[index].i_item,
FX_TYPE_HASHTABLE_ITEM);
int cmp = fx_value_compare(&item->i_key, v);
if (cmp == 0) {
ok = true;
break;
}
index = (index + (i * i)) % table_size;
i++;
}
if (!ok) {
return FX_ERR_NO_SPACE;
}
assert(index < table_size);
*out_index = index;
return FX_SUCCESS;
}
static fx_status add_item_to_table(
fx_hashtable_item *item,
struct table_item *table,
size_t table_capacity)
{
size_t index = 0;
struct fx_hashtable_item_p *item_p
= fx_object_get_private(item, FX_TYPE_HASHTABLE_ITEM);
fx_status status = allocate_index_for_key(
&item_p->i_key,
table,
table_capacity,
&index);
if (!FX_OK(status)) {
return status;
}
if (index >= table_capacity) {
return FX_ERR_NO_SPACE;
}
struct table_item *bucket = &table[index];
if (bucket->i_item) {
fx_hashtable_item_unref(bucket->i_item);
}
bucket->i_item = item;
return FX_SUCCESS;
}
static fx_status destroy_table(
struct table_item *table,
size_t length,
bool destroy_items)
{
if (!destroy_items) {
free(table);
return FX_SUCCESS;
}
for (size_t i = 0; i < length; i++) {
struct table_item *item = &table[i];
if (!item->i_item) {
continue;
}
fx_hashtable_item_unref(item->i_item);
}
free(table);
return FX_SUCCESS;
}
static fx_status migrate_table(
struct table_item *src_table,
size_t src_length,
struct table_item *dest_table,
size_t dest_capacity)
{
for (size_t i = 0; i < src_length; i++) {
struct table_item *item = &src_table[i];
if (!item->i_item) {
continue;
}
add_item_to_table(item->i_item, dest_table, dest_capacity);
}
return FX_SUCCESS;
}
static fx_status resize_table(
struct fx_hashtable_p *hashtable,
size_t new_capacity_index)
{
size_t capacity = primes[new_capacity_index];
struct table_item *new_table = calloc(capacity, sizeof *new_table);
if (!new_table) {
return FX_ERR_NO_MEMORY;
}
fx_status status = migrate_table(
hashtable->t_items,
primes[hashtable->t_max_index],
new_table,
capacity);
if (!FX_OK(status)) {
free(new_table);
return status;
}
free(hashtable->t_items);
hashtable->t_items = new_table;
hashtable->t_max_index = new_capacity_index;
return FX_SUCCESS;
}
static fx_status hashtable_put(
struct fx_hashtable_p *hashtable,
fx_value *key,
fx_value *value)
{
fx_status status = FX_SUCCESS;
size_t capacity = primes[hashtable->t_max_index];
if (hashtable->t_count + 1 > capacity) {
status = resize_table(hashtable, hashtable->t_max_index + 1);
if (!FX_OK(status)) {
return status;
}
capacity = primes[hashtable->t_max_index];
}
size_t index = 0;
do {
status = allocate_index_for_key(
key,
hashtable->t_items,
capacity,
&index);
if (status == FX_ERR_NO_SPACE) {
status = resize_table(
hashtable,
hashtable->t_max_index + 1);
if (!FX_OK(status)) {
return status;
}
capacity = primes[hashtable->t_max_index];
continue;
}
if (!FX_OK(status)) {
return status;
}
break;
} while (1);
fx_hashtable_item *item = fx_object_create(FX_TYPE_HASHTABLE_ITEM);
if (!item) {
return FX_ERR_NO_MEMORY;
}
struct fx_hashtable_item_p *item_p
= fx_object_get_private(item, FX_TYPE_HASHTABLE_ITEM);
fx_value_copy(&item_p->i_key, key);
fx_value_copy(&item_p->i_value, value);
hashtable->t_items[index].i_item = item;
hashtable->t_count++;
return FX_SUCCESS;
}
static const fx_value *hashtable_get(
const struct fx_hashtable_p *hashtable,
const fx_value *key)
{
size_t index = 0;
size_t capacity = primes[hashtable->t_max_index];
fx_status status = convert_key_to_index(
key,
hashtable->t_items,
capacity,
&index);
if (!FX_OK(status)) {
return NULL;
}
const fx_hashtable_item *item = hashtable->t_items[index].i_item;
if (!item) {
return NULL;
}
const struct fx_hashtable_item_p *item_p
= fx_object_get_private(item, FX_TYPE_HASHTABLE_ITEM);
return &item_p->i_value;
}
static size_t hashtable_get_count(const struct fx_hashtable_p *hashtable)
{
return hashtable->t_count;
}
static bool hashtable_is_empty(const struct fx_hashtable_p *hashtable)
{
return hashtable->t_count == 0;
}
static const fx_value *hashtable_item_get_key(
const struct fx_hashtable_item_p *item)
{
return &item->i_key;
}
static const fx_value *hashtable_item_get_value(
const struct fx_hashtable_item_p *item)
{
return &item->i_value;
}
/*** PUBLIC FUNCTIONS *********************************************************/
fx_status fx_hashtable_put(
fx_hashtable *hashtable,
fx_value *key,
fx_value *value)
{
FX_CLASS_DISPATCH_STATIC(
FX_TYPE_HASHTABLE,
hashtable_put,
hashtable,
key,
value);
}
const fx_value *fx_hashtable_get(
const fx_hashtable *hashtable,
const fx_value *key)
{
FX_CLASS_DISPATCH_STATIC(
FX_TYPE_HASHTABLE,
hashtable_get,
hashtable,
key);
}
size_t fx_hashtable_get_count(const fx_hashtable *hashtable)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_TYPE_HASHTABLE,
hashtable_get_count,
hashtable);
}
bool fx_hashtable_is_empty(const fx_hashtable *hashtable)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_TYPE_HASHTABLE,
hashtable_is_empty,
hashtable);
}
const fx_value *fx_hashtable_item_get_key(const fx_hashtable_item *item)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_TYPE_HASHTABLE_ITEM,
hashtable_item_get_key,
item);
}
const fx_value *fx_hashtable_item_get_value(const fx_hashtable_item *item)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_TYPE_HASHTABLE_ITEM,
hashtable_item_get_value,
item);
}
const fx_iterator *fx_hashtable_begin(const fx_hashtable *hashtable)
{
fx_hashtable_iterator *it_obj
= fx_object_create(FX_TYPE_HASHTABLE_ITERATOR);
struct fx_hashtable_iterator_p *it
= fx_object_get_private(it_obj, FX_TYPE_HASHTABLE_ITERATOR);
it->_h = hashtable;
it->_h_p = fx_object_get_private(hashtable, FX_TYPE_HASHTABLE);
it->i = 0;
if (fx_hashtable_is_empty(hashtable)) {
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
return it_obj;
}
struct table_item *table = it->_h_p->t_items;
size_t capacity = primes[it->_h_p->t_max_index];
while (it->i < capacity && table[it->i].i_item == NULL) {
it->i++;
}
it->item_value = FX_VALUE_OBJECT_REF(table[it->i].i_item);
return it_obj;
}
/*** VIRTUAL FUNCTIONS ********************************************************/
static void hashtable_init(fx_object *obj, void *priv)
{
struct fx_hashtable_p *map = priv;
map->t_max_index = 0;
map->t_count = 0;
size_t capacity = primes[map->t_max_index];
map->t_items = calloc(capacity, sizeof *map->t_items);
}
static void hashtable_fini(fx_object *obj, void *priv)
{
struct fx_hashtable_p *map = priv;
size_t capacity = primes[map->t_max_index];
size_t nr_destroyed = 0;
for (size_t i = 0; i < capacity; i++) {
if (map->t_items[i].i_item) {
nr_destroyed++;
fx_hashtable_item_unref(map->t_items[i].i_item);
}
}
free(map->t_items);
}
static void hashtable_item_fini(fx_object *obj, void *priv)
{
struct fx_hashtable_item_p *item = priv;
fx_value_unset(&item->i_key);
fx_value_unset(&item->i_value);
}
static void hashtable_iterator_fini(fx_object *obj, void *priv)
{
struct fx_hashtable_iterator_p *it = priv;
fx_value_unset(&it->item_value);
}
static fx_status to_string(
const fx_value *obj,
fx_stream *out,
const char *format)
{
struct fx_hashtable_p *hashtable
= fx_object_get_private(obj->v_object, FX_TYPE_HASHTABLE);
if (!hashtable->t_count) {
fx_stream_write_cstr(out, "{}", NULL);
return FX_SUCCESS;
}
fx_stream_write_cstr(out, "{\n", NULL);
fx_stream_push_indent(out, 1);
size_t nr_written = 0;
size_t capacity = primes[hashtable->t_max_index];
for (size_t i = 0; i < capacity; i++) {
fx_hashtable_item *item = hashtable->t_items[i].i_item;
if (!item) {
continue;
}
nr_written++;
struct fx_hashtable_item_p *item_p
= fx_object_get_private(item, FX_TYPE_HASHTABLE_ITEM);
const char *cstr = NULL;
fx_value_get_cstr(&item_p->i_key, &cstr);
if (cstr) {
fx_stream_write_char(out, '"');
}
fx_value_to_string(&item_p->i_key, out, NULL);
if (cstr) {
fx_stream_write_char(out, '"');
}
fx_stream_write_cstr(out, " = ", NULL);
fx_value_get_cstr(&item_p->i_value, &cstr);
if (cstr) {
fx_stream_write_char(out, '"');
}
fx_value_to_string(&item_p->i_value, out, NULL);
if (cstr) {
fx_stream_write_char(out, '"');
}
if (nr_written != hashtable->t_count) {
fx_stream_write_char(out, ',');
}
fx_stream_write_char(out, '\n');
}
fx_stream_pop_indent(out);
fx_stream_write_char(out, '}');
return FX_SUCCESS;
}
static fx_status get_key(
const fx_value *item_value,
const fx_property *prop,
fx_value *out)
{
fx_hashtable_item *item = NULL;
fx_value_get_object(item_value, &item);
if (!item) {
return FX_ERR_NOT_SUPPORTED;
}
struct fx_hashtable_item_p *item_p
= fx_object_get_private(item, FX_TYPE_HASHTABLE_ITEM);
fx_value_copy(out, &item_p->i_key);
return FX_SUCCESS;
}
static fx_status get_value(
const fx_value *item_value,
const fx_property *prop,
fx_value *out)
{
fx_hashtable_item *item = NULL;
fx_value_get_object(item_value, &item);
if (!item) {
return FX_ERR_NOT_SUPPORTED;
}
struct fx_hashtable_item_p *item_p
= fx_object_get_private(item, FX_TYPE_HASHTABLE_ITEM);
fx_value_copy(out, &item_p->i_value);
return FX_SUCCESS;
}
/*** ITERATOR FUNCTIONS *******************************************************/
static enum fx_status iterator_move_next(const fx_iterator *obj)
{
struct fx_hashtable_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_HASHTABLE_ITERATOR);
fx_value_unset(&it->item_value);
struct table_item *table = it->_h_p->t_items;
size_t capacity = primes[it->_h_p->t_max_index];
it->i++;
while (it->i < capacity && table[it->i].i_item == NULL) {
it->i++;
}
if (it->i >= capacity || !table[it->i].i_item) {
return FX_ERR_NO_DATA;
}
it->item_value = FX_VALUE_OBJECT_REF(table[it->i].i_item);
return FX_SUCCESS;
}
static enum fx_status iterator_erase(fx_iterator *obj)
{
struct fx_hashtable_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_HASHTABLE_ITERATOR);
struct table_item *table = it->_h_p->t_items;
size_t capacity = primes[it->_h_p->t_max_index];
if (table[it->i].i_item) {
fx_hashtable_item_unref(table[it->i].i_item);
table[it->i].i_item = NULL;
}
it->i++;
while (it->i < capacity && table[it->i].i_item == NULL) {
it->i++;
}
if (it->i >= capacity || !table[it->i].i_item) {
return FX_ERR_NO_DATA;
}
return FX_SUCCESS;
}
static const fx_value *iterator_get_value(const fx_iterator *obj)
{
struct fx_hashtable_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_HASHTABLE_ITERATOR);
struct table_item *table = it->_h_p->t_items;
size_t capacity = primes[it->_h_p->t_max_index];
if (table[it->i].i_item) {
return &it->item_value;
}
return NULL;
}
/*** CLASS DEFINITION *********************************************************/
// ---- fx_hashtable DEFINITION
FX_TYPE_CLASS_BEGIN(fx_hashtable)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = to_string;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE)
FX_INTERFACE_ENTRY(it_begin) = fx_hashtable_begin;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE)
FX_TYPE_CLASS_END(fx_hashtable)
FX_TYPE_DEFINITION_BEGIN(fx_hashtable)
FX_TYPE_ID(0xc73b431c, 0x5bd5, 0x45ac, 0x888b, 0x35d352db1fe4);
FX_TYPE_NAME("fx.collections.hashtable");
FX_TYPE_CLASS(fx_hashtable_class);
FX_TYPE_IMPLEMENTS(FX_TYPE_ITERABLE);
FX_TYPE_INSTANCE_PRIVATE(struct fx_hashtable_p);
FX_TYPE_INSTANCE_INIT(hashtable_init);
FX_TYPE_INSTANCE_FINI(hashtable_fini);
FX_TYPE_DEFINITION_END(fx_hashtable)
// ---- fx_hashtable_iterator DEFINITION
FX_TYPE_CLASS_BEGIN(fx_hashtable_iterator)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterator, FX_TYPE_ITERATOR)
FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = iterator_erase;
FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_hashtable_iterator)
FX_TYPE_DEFINITION_BEGIN(fx_hashtable_iterator)
FX_TYPE_ID(0x42c6836d, 0xf801, 0x49f9, 0xba58, 0xf9cd6f1cb22d);
FX_TYPE_NAME("fx.collections.hashtable.iterator");
FX_TYPE_EXTENDS(FX_TYPE_ITERATOR);
FX_TYPE_CLASS(fx_hashtable_iterator_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_hashtable_iterator_p);
FX_TYPE_INSTANCE_FINI(hashtable_iterator_fini);
FX_TYPE_DEFINITION_END(fx_hashtable_iterator)
// ---- fx_hashtable_item DEFINITION
FX_TYPE_CLASS_BEGIN(fx_hashtable_item)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_PROPERTY("key", get_key, NULL);
FX_TYPE_PROPERTY("value", get_value, NULL);
FX_TYPE_CLASS_END(fx_hashtable_item)
FX_TYPE_DEFINITION_BEGIN(fx_hashtable_item)
FX_TYPE_ID(0x748f78f3, 0x53df, 0x406c, 0x8777, 0x2075bd11fb97);
FX_TYPE_NAME("fx.collections.hashtable.item");
FX_TYPE_EXTENDS(FX_TYPE_OBJECT);
FX_TYPE_CLASS(fx_hashtable_item_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_hashtable_item_p);
FX_TYPE_INSTANCE_FINI(hashtable_item_fini);
FX_TYPE_DEFINITION_END(fx_hashtable_item)
+13 -171
View File
@@ -1,13 +1,5 @@
/** #ifndef FX_COLLECTIONS_ARRAY_H_
* A heterogeneous array of objects. fx_array only stores references #define FX_COLLECTIONS_ARRAY_H_
* to the objects that it contains, not the object data itself.
*
* fx_array stores pointers to objects in a single contiguous array,
* but this is an implementation detail that may change in the future.
* Users of fx_array should not rely on this being the case.
*/
#ifndef FX_DS_ARRAY_H_
#define FX_DS_ARRAY_H_
#include <fx/iterator.h> #include <fx/iterator.h>
#include <fx/macros.h> #include <fx/macros.h>
@@ -35,187 +27,37 @@ FX_API fx_type_id fx_array_iterator_get_type(void);
FX_TYPE_DEFAULT_CONSTRUCTOR(fx_array, FX_TYPE_ARRAY); FX_TYPE_DEFAULT_CONSTRUCTOR(fx_array, FX_TYPE_ARRAY);
/**
* Creates an fx_array initialised with the contents of the provided
* fx_object pointer array. The fx_array will take a reference to each
* object specified in `values`, and will increment the reference count.
* The order of objects in the new fx_array will be the same as the order
* of objects in `values`. Any NULL pointers in the `values` array will
* be ignored, and will not result in gaps in the created fx_array.
* However, `nr_values` should be large enough to cover the final
* non-NULL pointer in `values`, including any NULL pointers in-between.
*
* @param values The list of object pointers which should make up the
* contents of the new fx_array.
* @param nr_values The size of the `values` array.
* @return A pointer to the new fx_array, or NULL if an error occurred.
*/
FX_API fx_array *fx_array_create_with_values( FX_API fx_array *fx_array_create_with_values(
fx_object *const *values, const fx_value *values,
size_t nr_values); size_t nr_values);
/**
* Remove all object references from an fx_array, resetting the size of the
* array to zero. The reference counts of all objects in the array will be
* decremented.
*
* @param array The fx_array to clear.
*/
FX_API void fx_array_clear(fx_array *array); FX_API void fx_array_clear(fx_array *array);
/** FX_API fx_status fx_array_push_back(fx_array *array, fx_value value);
* Inserts an object at the end of an fx_array. The reference count of
* the object will be incremented.
*
* @param array The fx_array to append the object to.
* @param value The object to append.
* @return FX_SUCCESS if the object was appended successfully, or an
* error code if an error occurred.
*/
FX_API fx_status fx_array_append(fx_array *array, fx_object *value);
/** FX_API fx_status fx_array_push_front(fx_array *array, fx_value value);
* Inserts an object at the beginning of an fx_array. The reference count
* of the object will be incremented. All other objects in the array
* will be moved to make space for the object being pre-pended.
*
* @param array The fx_array to prepend the object to.
* @param value The object to prepend.
* @return FX_SUCCESS if the object was prepended successfully, or an
* error code if an error occurred.
*/
FX_API fx_status fx_array_prepend(fx_array *array, fx_object *value);
/** FX_API fx_status fx_array_insert(fx_array *array, fx_value value, size_t at);
* Inserts an object into an fx_array at a given index. The reference
* count of the object will be incremented. If the specified index is at
* the beginning or mid-way through the array (i.e. not at the end),
* some or all of the objects already in the array will be moved to make
* space for the object being inserted.
*
* @param array The fx_array to insert the object into.
* @param value The object to insert.
* @param at The index to insert the object at. If the index is
* `FX_NPOS`, the object will be inserted at the end of the fx_array.
* @return FX_SUCCESS if the object was inserted, or a status code
* describing any error that occurred.
*/
FX_API fx_status fx_array_insert(fx_array *array, fx_object *value, size_t at);
/**
* Removes the object at the specified index from an fx_array. The
* reference count of the removed object will be decremented. If the
* specified index is at the beginning or mid-way through the array
* (i.e. not at the end), the remaining objects will be moved to fill
* the empty space created by the object's removal.
*
* @param array The fx_array to remove the object from.
* @param at The index of the object to be removed.
* @return FX_SUCCESS if the object was removed, or a status code
* describing any error that occurred.
*/
FX_API fx_status fx_array_remove(fx_array *array, size_t at); FX_API fx_status fx_array_remove(fx_array *array, size_t at);
/**
* Removes the object at the beginning of an fx_array. The reference count
* of the removed object will be decremented. The remaining objects will be
* moved to fill the empty space created by the object's removal.
*
* @param array The fx_array to remove the object from.
* @return FX_SUCCESS if the object was removed, or a status code describing any
* error that occurred.
*/
FX_API fx_status fx_array_remove_front(fx_array *array); FX_API fx_status fx_array_remove_front(fx_array *array);
/**
* Removes the object at the end of an fx_array. The reference count
* of the removed object will be decremented.
*
* @param array The fx_array to remove the object from.
* @return FX_SUCCESS if the object was removed, or a status code describing any
* error that occurred.
*/
FX_API fx_status fx_array_remove_back(fx_array *array); FX_API fx_status fx_array_remove_back(fx_array *array);
/** FX_API fx_value fx_array_pop(fx_array *array, size_t at);
* Removes the object at the specified index of an fx_array, and returns
* a pointer to it. The reference count of the removed object will NOT
* be decremented. The caller becomes the owner of the array's reference
* to the object. If the specified index is at the beginning or mid-way
* through the array (i.e. not at the end), the remaining objects will
* be moved to fill the empty space created by the object's removal.
*
* @param array The fx_array to remove the object from.
* @param at The index of the object to be removed.
* @return An pointer to the removed object. This pointer is owned by
* the caller. Returns NULL if an error occurred.
*/
FX_API fx_object *fx_array_pop(fx_array *array, size_t at);
/** FX_API fx_value fx_array_pop_front(fx_array *array);
* Removes the object at the beginning of an fx_array, and returns a
* pointer to it. The reference count of the removed object will NOT be
* decremented. The caller becomes the owner of the array's reference to
* the object. The remaining objects in the fx_array will be moved to
* fill the empty space left by the removed object.
*
* @param array The fx_array to remove the object from.
* @return An pointer to the removed object. This pointer is owned by
* the caller. Returns NULL if an error occurred.
*/
FX_API fx_object *fx_array_pop_front(fx_array *array);
/** FX_API fx_value fx_array_pop_back(fx_array *array);
* Removes the object at the end of an fx_array, and returns a pointer to it.
* The reference count of the removed object will NOT be decremented. The caller
* becomes the owner of the array's reference to the object.
*
* @param array The fx_array to remove the object from.
* @return An pointer to the removed object. This pointer is owned by the
* caller. Returns NULL if an error occurred.
*/
FX_API fx_object *fx_array_pop_back(fx_array *array);
/** FX_API fx_value *fx_array_get_ref(const fx_array *array, size_t at);
* Returns an unowned pointer to the object at the given index of an fx_array.
* The caller does not own the returned pointer, and MUST NOT release it.
*
* @param array The fx_array.
* @param at The index of the object to return.
* @return A pointer to the object at the given index. This pointer is NOT owned
* by the caller. Returns NULL if an error occurred.
*/
FX_API fx_object *fx_array_at(const fx_array *array, size_t at);
/** FX_API fx_value fx_array_get(const fx_array *array, size_t at);
* Returns an owned pointer to the object at the given index of an
* fx_array. The caller owns the returned pointer, and must release it
* when they are finished with it.
*
* @param array The fx_array.
* @param at The index of the object to return.
* @return A pointer to the object at the given index. This pointer is
* owned by the caller. Returns NULL if an error occurred.
*/
FX_API fx_object *fx_array_get(fx_array *array, size_t at);
/** FX_API size_t fx_array_get_size(const fx_array *array);
* Returns the number of objects contained in an fx_array.
*
* @param array The fx_array.
* @return The number of objects contained in the fx_array.
*/
FX_API size_t fx_array_size(const fx_array *array);
/** FX_API size_t fx_array_get_capacity(const fx_array *array);
* Returns the current maximum capacity of an fx_array. This represents
* the number of objects that can be stored in an fx_array before its
* internal buffer would need to be re-sized.
*
* @param array The fx_array.
* @return The maximum capacity of the fx_array.
*/
FX_API size_t fx_array_capacity(const fx_array *array);
FX_DECLS_END; FX_DECLS_END;
@@ -1,64 +0,0 @@
#ifndef FX_DS_DICT_H_
#define FX_DS_DICT_H_
#include <fx/bst.h>
#include <fx/macros.h>
#include <fx/misc.h>
#include <fx/queue.h>
#include <fx/status.h>
#include <fx/string.h>
FX_DECLS_BEGIN;
#define FX_TYPE_DICT (fx_dict_get_type())
#define FX_TYPE_DICT_ITERATOR (fx_dict_iterator_get_type())
struct fx_dict_p;
FX_DECLARE_TYPE(fx_dict);
FX_DECLARE_TYPE(fx_dict_iterator);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_dict)
FX_TYPE_CLASS_DECLARATION_END(fx_dict)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_dict_iterator)
FX_TYPE_CLASS_DECLARATION_END(fx_dict_iterator)
#define FX_DICT_ITEM(k, v) {.key = (k), .value = (v)}
#define FX_DICT_ITEM_END {.key = NULL, .value = NULL}
#define fx_dict_foreach(it, dict) \
for (int z__fx_unique_name() = fx_dict_iterator_begin(dict, it); \
(it)->key != NULL; \
fx_dict_iterator_next(it))
typedef struct fx_dict_item {
const fx_string *key;
fx_object *value;
} fx_dict_item;
FX_API fx_type_id fx_dict_get_type(void);
FX_API fx_type_id fx_dict_iterator_get_type(void);
FX_TYPE_DEFAULT_CONSTRUCTOR(fx_dict, FX_TYPE_DICT);
#if 0
FX_API fx_dict *fx_dict_create_with_items(const fx_dict_item *items);
#endif
FX_API fx_status fx_dict_put(fx_dict *dict, const char *key, fx_object *value);
FX_API fx_status
fx_dict_put_sk(fx_dict *dict, const fx_string *key, fx_object *value);
FX_API fx_object *fx_dict_at(const fx_dict *dict, const char *key);
FX_API fx_object *fx_dict_at_sk(const fx_dict *dict, const fx_string *key);
FX_API fx_object *fx_dict_get(fx_dict *dict, const char *key);
FX_API fx_object *fx_dict_get_sk(fx_dict *dict, const fx_string *key);
FX_API bool fx_dict_has_key(const fx_dict *dict, const char *key);
FX_API bool fx_dict_has_skey(const fx_dict *dict, const fx_string *key);
FX_API size_t fx_dict_get_size(const fx_dict *dict);
FX_API bool fx_dict_is_empty(const fx_dict *dict);
FX_DECLS_END;
#endif
@@ -83,7 +83,7 @@ FX_API bool fx_hashmap_has_key(
FX_API size_t fx_hashmap_get_size(const fx_hashmap *hashmap); FX_API size_t fx_hashmap_get_size(const fx_hashmap *hashmap);
FX_API bool fx_hashmap_is_empty(const fx_hashmap *hashmap); FX_API bool fx_hashmap_is_empty(const fx_hashmap *hashmap);
FX_API fx_iterator *fx_hashmap_begin(fx_hashmap *hashmap); FX_API const fx_iterator *fx_hashmap_begin(const fx_hashmap *hashmap);
FX_API const fx_iterator *fx_hashmap_cbegin(const fx_hashmap *hashmap); FX_API const fx_iterator *fx_hashmap_cbegin(const fx_hashmap *hashmap);
FX_DECLS_END; FX_DECLS_END;
@@ -0,0 +1,56 @@
#ifndef FX_COLLECTIONS_HASHTABLE_H_
#define FX_COLLECTIONS_HASHTABLE_H_
#include <fx/bst.h>
#include <fx/iterator.h>
#include <fx/macros.h>
#include <fx/misc.h>
#include <fx/queue.h>
#include <fx/status.h>
#include <fx/value.h>
#include <stddef.h>
FX_DECLS_BEGIN;
#define FX_TYPE_HASHTABLE (fx_hashtable_get_type())
#define FX_TYPE_HASHTABLE_ITERATOR (fx_hashtable_iterator_get_type())
#define FX_TYPE_HASHTABLE_ITEM (fx_hashtable_item_get_type())
FX_DECLARE_TYPE(fx_hashtable);
FX_DECLARE_TYPE(fx_hashtable_iterator);
FX_DECLARE_TYPE(fx_hashtable_item);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_hashtable)
FX_TYPE_CLASS_DECLARATION_END(fx_hashtable)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_hashtable_iterator)
FX_TYPE_CLASS_DECLARATION_END(fx_hashtable_iterator)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_hashtable_item)
FX_TYPE_CLASS_DECLARATION_END(fx_hashtable_item)
FX_API fx_type_id fx_hashtable_get_type(void);
FX_API fx_type_id fx_hashtable_iterator_get_type(void);
FX_API fx_type_id fx_hashtable_item_get_type(void);
FX_TYPE_DEFAULT_CONSTRUCTOR(fx_hashtable, FX_TYPE_HASHTABLE);
FX_API fx_hashtable *fx_hashtable_create(void);
FX_API fx_status
fx_hashtable_put(fx_hashtable *hashtable, fx_value *key, fx_value *value);
FX_API const fx_value *fx_hashtable_get(
const fx_hashtable *hashtable,
const fx_value *key);
FX_API size_t fx_hashtable_get_count(const fx_hashtable *hashtable);
FX_API bool fx_hashtable_is_empty(const fx_hashtable *hashtable);
FX_API const fx_iterator *fx_hashtable_begin(const fx_hashtable *hashtable);
FX_API const fx_value *fx_hashtable_item_get_key(const fx_hashtable_item *item);
FX_API const fx_value *fx_hashtable_item_get_value(
const fx_hashtable_item *item);
FX_DECLS_END;
#endif
+1 -2
View File
@@ -59,8 +59,7 @@ FX_API void fx_list_delete_all(fx_list *q);
FX_API void *fx_list_entry_value(const fx_list_entry *entry); FX_API void *fx_list_entry_value(const fx_list_entry *entry);
FX_API fx_iterator *fx_list_begin(fx_list *q); FX_API const fx_iterator *fx_list_begin(const fx_list *q);
FX_API const fx_iterator *fx_list_cbegin(const fx_list *q);
FX_DECLS_END; FX_DECLS_END;
@@ -1,58 +0,0 @@
#ifndef FX_DS_TREE_H_
#define FX_DS_TREE_H_
#include <fx/macros.h>
#include <fx/misc.h>
#include <fx/queue.h>
#include <fx/string.h>
FX_DECLS_BEGIN;
#define FX_TYPE_TREE (fx_tree_get_type())
#define FX_TYPE_TREE_ITERATOR (fx_tree_iterator_get_type())
FX_DECLARE_TYPE(fx_tree);
FX_DECLARE_TYPE(fx_tree_iterator);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_tree)
FX_TYPE_CLASS_DECLARATION_END(fx_tree)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_tree_iterator)
FX_TYPE_CLASS_DECLARATION_END(fx_tree_iterator)
#define FX_TREE_NODE_INIT ((fx_tree_node) {0})
#define FX_TREE_CONTAINER(t, m, v) \
((void *)((v) ? (uintptr_t)(v) - (offsetof(t, m)) : 0))
typedef struct fx_tree_node {
struct fx_tree_node *__p01, *__p02, *__p03;
struct fx_queue_entry __q01;
} fx_tree_node;
FX_API fx_type_id fx_tree_get_type(void);
FX_API fx_type_id fx_tree_iterator_get_type(void);
FX_TYPE_DEFAULT_CONSTRUCTOR(fx_tree, FX_TYPE_TREE);
FX_API void fx_tree_set_root(fx_tree *tree, struct fx_tree_node *node);
FX_API void fx_tree_node_add_child(fx_tree_node *parent, fx_tree_node *child);
FX_API void fx_tree_node_add_sibling(fx_tree_node *node, fx_tree_node *to_add);
FX_API fx_tree_node *fx_tree_node_get_child(fx_tree_node *node, size_t at);
FX_API fx_tree_node *fx_tree_node_get_parent(fx_tree_node *node);
FX_API fx_iterator *fx_tree_begin(fx_tree *tree);
FX_API const fx_iterator *fx_tree_cbegin(const fx_tree *tree);
FX_API fx_iterator *fx_tree_node_begin(fx_tree_node *node);
FX_API const fx_iterator *fx_tree_node_cbegin(const fx_tree_node *node);
FX_API fx_iterator *fx_tree_node_begin_recursive(fx_tree_node *node);
FX_API const fx_iterator *fx_tree_node_cbegin_recursive(
const fx_tree_node *node);
FX_DECLS_END;
#endif
+49 -56
View File
@@ -23,6 +23,7 @@ struct fx_list_iterator_p {
size_t i; size_t i;
void *item; void *item;
fx_value item_value;
fx_list_entry *entry; fx_list_entry *entry;
}; };
@@ -41,8 +42,10 @@ static void *list_first_item(const struct fx_list_p *q)
return NULL; return NULL;
} }
struct fx_list_entry *list_entry struct fx_list_entry *list_entry = fx_unbox(
= fx_unbox(struct fx_list_entry, entry, e_entry); struct fx_list_entry,
entry,
e_entry);
return list_entry->e_data; return list_entry->e_data;
} }
@@ -55,8 +58,10 @@ static void *list_last_item(const struct fx_list_p *q)
return NULL; return NULL;
} }
struct fx_list_entry *list_entry struct fx_list_entry *list_entry = fx_unbox(
= fx_unbox(struct fx_list_entry, entry, e_entry); struct fx_list_entry,
entry,
e_entry);
return list_entry->e_data; return list_entry->e_data;
} }
@@ -69,8 +74,10 @@ static struct fx_list_entry *list_first_entry(const struct fx_list_p *q)
return NULL; return NULL;
} }
struct fx_list_entry *list_entry struct fx_list_entry *list_entry = fx_unbox(
= fx_unbox(struct fx_list_entry, entry, e_entry); struct fx_list_entry,
entry,
e_entry);
return list_entry; return list_entry;
} }
@@ -83,8 +90,10 @@ static struct fx_list_entry *list_last_entry(const struct fx_list_p *q)
return NULL; return NULL;
} }
struct fx_list_entry *list_entry struct fx_list_entry *list_entry = fx_unbox(
= fx_unbox(struct fx_list_entry, entry, e_entry); struct fx_list_entry,
entry,
e_entry);
return list_entry; return list_entry;
} }
@@ -169,8 +178,10 @@ static void *list_pop_front(struct fx_list_p *q)
return NULL; return NULL;
} }
struct fx_list_entry *list_entry struct fx_list_entry *list_entry = fx_unbox(
= fx_unbox(struct fx_list_entry, entry, e_entry); struct fx_list_entry,
entry,
e_entry);
void *item = list_entry->e_data; void *item = list_entry->e_data;
free(list_entry); free(list_entry);
@@ -187,8 +198,10 @@ static void *list_pop_back(struct fx_list_p *q)
return NULL; return NULL;
} }
struct fx_list_entry *list_entry struct fx_list_entry *list_entry = fx_unbox(
= fx_unbox(struct fx_list_entry, entry, e_entry); struct fx_list_entry,
entry,
e_entry);
void *item = list_entry->e_data; void *item = list_entry->e_data;
free(list_entry); free(list_entry);
@@ -202,8 +215,10 @@ static struct fx_list_entry *find_item(struct fx_list_p *list, void *item)
{ {
struct fx_queue_entry *entry = fx_queue_first(&list->l_queue); struct fx_queue_entry *entry = fx_queue_first(&list->l_queue);
while (entry) { while (entry) {
struct fx_list_entry *list_entry struct fx_list_entry *list_entry = fx_unbox(
= fx_unbox(struct fx_list_entry, entry, e_entry); struct fx_list_entry,
entry,
e_entry);
if (list_entry->e_data == item) { if (list_entry->e_data == item) {
return list_entry; return list_entry;
@@ -246,8 +261,10 @@ static void list_delete_all(struct fx_list_p *q)
{ {
struct fx_queue_entry *entry = fx_queue_first(&q->l_queue); struct fx_queue_entry *entry = fx_queue_first(&q->l_queue);
while (entry) { while (entry) {
struct fx_list_entry *list_entry struct fx_list_entry *list_entry = fx_unbox(
= fx_unbox(struct fx_list_entry, entry, e_entry); struct fx_list_entry,
entry,
e_entry);
struct fx_queue_entry *next = fx_queue_next(entry); struct fx_queue_entry *next = fx_queue_next(entry);
free(list_entry); free(list_entry);
@@ -385,30 +402,12 @@ void *fx_list_entry_value(const struct fx_list_entry *entry)
return entry ? entry->e_data : NULL; return entry ? entry->e_data : NULL;
} }
fx_iterator *fx_list_begin(fx_list *q) const fx_iterator *fx_list_begin(const fx_list *q)
{ {
fx_list_iterator *it_obj = fx_object_create(FX_TYPE_LIST_ITERATOR); fx_list_iterator *it_obj = fx_object_create(FX_TYPE_LIST_ITERATOR);
struct fx_list_iterator_p *it struct fx_list_iterator_p *it = fx_object_get_private(
= fx_object_get_private(it_obj, FX_TYPE_LIST_ITERATOR); it_obj,
FX_TYPE_LIST_ITERATOR);
it->_q = q;
it->_q_p = fx_object_get_private(q, FX_TYPE_LIST);
it->_q_entry = fx_queue_first(&it->_q_p->l_queue);
it->i = 0;
it->entry = fx_unbox(struct fx_list_entry, it->_q_entry, e_entry);
if (it->entry) {
it->item = it->entry->e_data;
}
return 0;
}
const fx_iterator *fx_list_cbegin(const fx_list *q)
{
fx_list_iterator *it_obj = fx_object_create(FX_TYPE_LIST_ITERATOR);
struct fx_list_iterator_p *it
= fx_object_get_private(it_obj, FX_TYPE_LIST_ITERATOR);
it->_q = (fx_list *)q; it->_q = (fx_list *)q;
it->_q_p = fx_object_get_private(q, FX_TYPE_LIST); it->_q_p = fx_object_get_private(q, FX_TYPE_LIST);
@@ -440,8 +439,9 @@ static void list_fini(fx_object *obj, void *priv)
static enum fx_status iterator_move_next(const fx_iterator *obj) static enum fx_status iterator_move_next(const fx_iterator *obj)
{ {
struct fx_list_iterator_p *it struct fx_list_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_LIST_ITERATOR); obj,
FX_TYPE_LIST_ITERATOR);
if (!it->_q_entry) { if (!it->_q_entry) {
it->entry = NULL; it->entry = NULL;
@@ -467,8 +467,9 @@ static enum fx_status iterator_move_next(const fx_iterator *obj)
static enum fx_status iterator_erase(fx_iterator *obj) static enum fx_status iterator_erase(fx_iterator *obj)
{ {
struct fx_list_iterator_p *it struct fx_list_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_LIST_ITERATOR); obj,
FX_TYPE_LIST_ITERATOR);
if (!it->entry || !it->_q_entry) { if (!it->entry || !it->_q_entry) {
return FX_ERR_OUT_OF_BOUNDS; return FX_ERR_OUT_OF_BOUNDS;
@@ -488,20 +489,14 @@ static enum fx_status iterator_erase(fx_iterator *obj)
return FX_SUCCESS; return FX_SUCCESS;
} }
static fx_iterator_value iterator_get_value(fx_iterator *obj) static const fx_value *iterator_get_value(const fx_iterator *obj)
{ {
struct fx_list_iterator_p *it struct fx_list_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_LIST_ITERATOR); obj,
FX_TYPE_LIST_ITERATOR);
return FX_ITERATOR_VALUE_PTR(it->item); it->item_value = FX_POINTER(it->item);
} return &it->item_value;
static const fx_iterator_value iterator_get_cvalue(const fx_iterator *obj)
{
struct fx_list_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_LIST_ITERATOR);
return FX_ITERATOR_VALUE_CPTR(it->item);
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
@@ -514,7 +509,6 @@ FX_TYPE_CLASS_BEGIN(fx_list)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE)
FX_INTERFACE_ENTRY(it_begin) = fx_list_begin; FX_INTERFACE_ENTRY(it_begin) = fx_list_begin;
FX_INTERFACE_ENTRY(it_cbegin) = fx_list_cbegin;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE)
FX_TYPE_CLASS_END(fx_list) FX_TYPE_CLASS_END(fx_list)
@@ -537,7 +531,6 @@ FX_TYPE_CLASS_BEGIN(fx_list_iterator)
FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next; FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = iterator_erase; FX_INTERFACE_ENTRY(it_erase) = iterator_erase;
FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value; FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value;
FX_INTERFACE_ENTRY(it_get_cvalue) = iterator_get_cvalue;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR) FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_list_iterator) FX_TYPE_CLASS_END(fx_list_iterator)
+2
View File
@@ -4,6 +4,7 @@
int main(void) int main(void)
{ {
#if 0
fx_array *array = fx_array_create(); fx_array *array = fx_array_create();
fx_array_append(array, fx_int_create(32)); fx_array_append(array, fx_int_create(32));
fx_array_append(array, fx_int_create(64)); fx_array_append(array, fx_int_create(64));
@@ -17,5 +18,6 @@ int main(void)
fx_iterator_unref(it); fx_iterator_unref(it);
fx_array_unref(array); fx_array_unref(array);
#endif
return 0; return 0;
} }
+49
View File
@@ -0,0 +1,49 @@
#include <fx/collections/hashtable.h>
#include <fx/int.h>
#include <fx/reflection/type.h>
#include <fx/stream.h>
#include <stdio.h>
int main(void)
{
fx_hashtable *ht = fx_hashtable_create();
fx_hashtable_put(ht, &FX_INT(32), &FX_INT(64));
fx_hashtable_put(ht, &FX_CSTR("hello"), &FX_INT(128));
const fx_value *v = fx_hashtable_get(ht, &FX_INT(32));
if (v) {
printf("32= ");
fx_value_to_string(v, fx_stdout, NULL);
printf("\n");
} else {
printf("no value\n");
}
const fx_iterator *it = fx_hashtable_begin(ht);
fx_foreach(val, it)
{
fx_hashtable_item *item = NULL;
fx_value_get_object(val, &item);
printf("item %p\n", item);
const fx_value *key, *value;
key = fx_hashtable_item_get_key(item);
value = fx_hashtable_item_get_value(item);
fx_iterator *prop_it = fx_type_get_properties(
fx_type_get_by_id(FX_TYPE_HASHTABLE_ITEM));
fx_foreach(prop_val, prop_it)
{
fx_property *prop;
fx_value_get_object(prop_val, &prop);
printf("%s = ", fx_property_get_name(prop));
fx_value value = FX_VALUE_EMPTY;
fx_property_get_value(prop, val, &value);
fx_value_to_string(&value, fx_stdout, NULL);
printf("\n");
}
fx_iterator_unref(prop_it);
}
fx_iterator_unref(it);
return 0;
}
+1 -6
View File
@@ -1,12 +1,7 @@
#include <fx/double.h> #include <fx/float.h>
#include <stdio.h> #include <stdio.h>
int main(void) int main(void)
{ {
fx_double *d = fx_double_create(6.8);
printf("double=%lf\n", fx_double_get_value(d));
fx_double_unref(d);
return 0; return 0;
} }
+2 -2
View File
@@ -2,9 +2,9 @@
int main(void) int main(void)
{ {
fx_string *string = FX_CSTR("Hello, world!"); fx_string *string = fx_string_create_from_cstr("Hello, world!");
printf("string object = "); printf("string object = ");
fx_object_to_string(string, fx_stdout); fx_object_to_string(string, fx_stdout, NULL);
printf("\n"); printf("\n");
fx_string_unref(string); fx_string_unref(string);
return 0; return 0;
-128
View File
@@ -1,128 +0,0 @@
#include <fx/bst.h>
#include <fx/collections/dict.h>
#include <fx/collections/tree.h>
#include <fx/int.h>
#include <fx/iterator.h>
#include <inttypes.h>
#include <stdio.h>
#define NITEMS 16
struct tree_item {
int value;
fx_tree_node node;
};
struct bst_item {
int value;
fx_bst_node node;
};
FX_BST_DEFINE_SIMPLE_GET(struct bst_item, int, node, value, get_node)
FX_BST_DEFINE_SIMPLE_INSERT(struct bst_item, node, value, put_node)
int main(void)
{
fx_dict *dict = fx_dict_create();
fx_dict_put(dict, "hello", fx_int_create(32));
fx_dict_put(dict, "world", fx_int_create(64));
fx_dict_put(dict, "more", fx_int_create(128));
fx_dict_put(dict, "other", fx_int_create(256));
fx_iterator *it = fx_iterator_begin(dict);
size_t i = 0;
fx_foreach(fx_dict_item *, item, it)
{
printf("item %zu: %s=%" PRIdPTR "\n",
i++,
fx_string_get_cstr(item->key),
fx_int_get_value(item->value));
}
fx_iterator_unref(it);
fx_tree *tree = fx_tree_create();
struct tree_item items2[NITEMS];
for (int i = 0; i < NITEMS; i++) {
items2[i].value = i;
items2[i].node = FX_TREE_NODE_INIT;
}
fx_tree_set_root(tree, &items2[0].node);
fx_tree_node_add_child(&items2[0].node, &items2[1].node);
fx_tree_node_add_child(&items2[0].node, &items2[2].node);
fx_tree_node_add_child(&items2[0].node, &items2[3].node);
fx_tree_node_add_child(&items2[0].node, &items2[7].node);
fx_tree_node_add_child(&items2[1].node, &items2[4].node);
fx_tree_node_add_child(&items2[1].node, &items2[5].node);
fx_tree_node_add_child(&items2[4].node, &items2[6].node);
#if 0
it = fx_iterator_begin(tree);
fx_tree_iterator it2;
fx_tree_foreach(&it2, tree)
{
struct tree_item *item = fx_unbox(struct tree_item, it2.node, node);
for (size_t i = 0; i < it2.depth; i++) {
fputs(" ", stdout);
}
printf("%u\n", item->value);
}
fx_bst bst = {0};
struct bst_item items3[NITEMS] = {0};
for (int i = 0; i < NITEMS; i++) {
items3[i].value = i;
put_node(&bst, &items3[i]);
}
printf("\n\n");
fx_bst_iterator it3;
fx_bst_foreach (&it3, &bst) {
struct bst_item *item
= fx_unbox(struct bst_item, it3.node, node);
for (size_t i = 0; i < it3.depth; i++) {
fputs(" ", stdout);
}
printf("%d\n", item->value);
}
fx_bst_iterator_begin(&bst, &it3);
while (fx_bst_iterator_is_valid(&it3)) {
struct bst_item *item
= fx_unbox(struct bst_item, it3.node, node);
if (item->value == 9) {
fx_bst_iterator_erase(&it3);
} else {
fx_bst_iterator_next(&it3);
}
}
printf("\n\n");
fx_bst_foreach (&it3, &bst) {
struct bst_item *item
= fx_unbox(struct bst_item, it3.node, node);
for (size_t i = 0; i < it3.depth; i++) {
fputs(" ", stdout);
}
printf("%d\n", item->value);
}
fx_tree_unref(tree);
#endif
fx_dict_unref(dict);
return 0;
}
-390
View File
@@ -1,390 +0,0 @@
#include <fx/collections/tree.h>
#include <stdlib.h>
#include <string.h>
#define ITERATOR_RECURSIVE 0x01u
#define ITERATOR_IS_RECURSIVE(it) (((it)->_f01 & ITERATOR_RECURSIVE) != 0)
#define ITERATOR_UNSET_RECURSIVE(it) ((it)->_f01 &= ~ITERATOR_RECURSIVE)
#define ITERATOR_SET_RECURSIVE(it) ((it)->_f01 |= ITERATOR_RECURSIVE)
#define NODE_PARENT(n) ((n)->__p01)
#define NODE_FIRST_CHILD(n) ((n)->__p02)
#define NODE_NEXT_SIBLING(n) ((n)->__p03)
/*** PRIVATE DATA *************************************************************/
struct fx_tree_p {
struct fx_tree_node *t_root;
};
struct fx_tree_iterator_p {
size_t i, depth;
fx_tree_node *node;
unsigned char _f01;
};
/*** PRIVATE FUNCTIONS ********************************************************/
static void tree_set_root(struct fx_tree_p *tree, struct fx_tree_node *node)
{
tree->t_root = node;
}
static const struct fx_tree_node *next_node(
const struct fx_tree_node *node,
bool recursive,
int *depth_diff)
{
if (!node) {
return NULL;
}
if (!recursive) {
node = NODE_NEXT_SIBLING(node);
return node;
}
int d = 0;
struct fx_tree_node *next = NODE_FIRST_CHILD(node);
if (next) {
d = 1;
*depth_diff = d;
return next;
}
const struct fx_tree_node *n = node;
next = NODE_NEXT_SIBLING(n);
while (!next) {
n = NODE_PARENT(n);
if (!n) {
break;
}
d--;
next = NODE_NEXT_SIBLING(n);
}
*depth_diff = d;
return next;
}
static void remove_node(struct fx_tree_node *node)
{
struct fx_tree_node *parent = NODE_PARENT(node);
if (!parent) {
return;
}
struct fx_tree_node *n0 = NULL, *n1 = NULL;
n0 = NODE_FIRST_CHILD(parent);
while (n0) {
if (n0 == node) {
break;
}
n1 = n0;
n0 = NODE_NEXT_SIBLING(n0);
}
if (!n0) {
return;
}
if (n1) {
NODE_NEXT_SIBLING(n1) = NODE_NEXT_SIBLING(n0);
} else {
NODE_FIRST_CHILD(parent) = NODE_NEXT_SIBLING(n0);
}
NODE_PARENT(n0) = NODE_NEXT_SIBLING(n0) = NULL;
}
static void reparent_children(
struct fx_tree_node *old_parent,
struct fx_tree_node *new_parent)
{
struct fx_tree_node *last = NODE_FIRST_CHILD(new_parent);
while (last && NODE_NEXT_SIBLING(last)) {
last = NODE_NEXT_SIBLING(last);
}
struct fx_tree_node *cur = NODE_FIRST_CHILD(old_parent);
while (cur) {
struct fx_tree_node *next = NODE_NEXT_SIBLING(cur);
NODE_PARENT(cur) = new_parent;
NODE_NEXT_SIBLING(cur) = NULL;
if (last) {
NODE_NEXT_SIBLING(last) = cur;
} else {
NODE_FIRST_CHILD(new_parent) = cur;
}
last = cur;
cur = next;
}
}
/*** PUBLIC FUNCTIONS *********************************************************/
void fx_tree_set_root(fx_tree *tree, struct fx_tree_node *node)
{
FX_CLASS_DISPATCH_STATIC(FX_TYPE_TREE, tree_set_root, tree, node);
}
void fx_tree_node_add_child(
struct fx_tree_node *parent,
struct fx_tree_node *child)
{
if (NODE_PARENT(child)) {
return;
}
NODE_PARENT(child) = parent;
if (!NODE_FIRST_CHILD(parent)) {
NODE_FIRST_CHILD(parent) = child;
return;
}
struct fx_tree_node *cur = NODE_FIRST_CHILD(parent);
while (NODE_NEXT_SIBLING(cur)) {
cur = NODE_NEXT_SIBLING(cur);
}
NODE_NEXT_SIBLING(cur) = child;
}
void fx_tree_node_add_sibling(
struct fx_tree_node *node,
struct fx_tree_node *to_add)
{
if (NODE_PARENT(to_add) || !NODE_PARENT(node)) {
return;
}
fx_tree_node_add_child(NODE_PARENT(node), to_add);
}
struct fx_tree_node *fx_tree_node_get_child(
struct fx_tree_node *node,
size_t at)
{
size_t i = 0;
struct fx_tree_node *cur = NODE_FIRST_CHILD(node);
while (i < at) {
if (!cur) {
return NULL;
}
cur = NODE_NEXT_SIBLING(cur);
i++;
}
return cur;
}
fx_iterator *fx_tree_begin(fx_tree *tree)
{
struct fx_tree_p *p = fx_object_get_private(tree, FX_TYPE_TREE);
return fx_tree_node_begin(p->t_root);
}
const fx_iterator *fx_tree_cbegin(const fx_tree *tree)
{
struct fx_tree_p *p = fx_object_get_private(tree, FX_TYPE_TREE);
return fx_tree_node_begin(p->t_root);
}
fx_iterator *fx_tree_node_begin(struct fx_tree_node *node)
{
fx_tree_iterator *it_obj = fx_object_create(FX_TYPE_TREE_ITERATOR);
struct fx_tree_iterator_p *it
= fx_object_get_private(it_obj, FX_TYPE_TREE_ITERATOR);
it->node = NODE_FIRST_CHILD(node);
it->i = 0;
it->depth = 0;
ITERATOR_UNSET_RECURSIVE(it);
if (!it->node) {
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
}
return it_obj;
}
const fx_iterator *fx_tree_node_cbegin(const struct fx_tree_node *node)
{
return fx_tree_node_begin((struct fx_tree_node *)node);
}
fx_iterator *fx_tree_node_begin_recursive(struct fx_tree_node *node)
{
fx_tree_iterator *it_obj = fx_object_create(FX_TYPE_TREE_ITERATOR);
struct fx_tree_iterator_p *it
= fx_object_get_private(it_obj, FX_TYPE_TREE_ITERATOR);
it->node = node;
it->i = 0;
it->depth = 0;
ITERATOR_SET_RECURSIVE(it);
if (!it->node) {
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
}
return it_obj;
}
const fx_iterator *fx_tree_node_cbegin_recursive(
const struct fx_tree_node *node)
{
return fx_tree_node_begin_recursive((struct fx_tree_node *)node);
}
/*** VIRTUAL FUNCTIONS ********************************************************/
static void tree_init(fx_object *obj, void *priv)
{
struct fx_tree_p *tree = priv;
}
static void tree_fini(fx_object *obj, void *priv)
{
struct fx_tree_p *tree = priv;
}
/*** ITERATOR FUNCTIONS *******************************************************/
static enum fx_status iterator_move_next(const fx_iterator *obj)
{
struct fx_tree_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_TREE_ITERATOR);
int depth_diff = 0;
const struct fx_tree_node *next
= next_node(it->node, ITERATOR_IS_RECURSIVE(it), &depth_diff);
if (next) {
it->depth += depth_diff;
it->i++;
} else {
it->depth = 0;
it->i = 0;
}
it->node = (struct fx_tree_node *)next;
return (it->node != NULL) ? FX_SUCCESS : FX_ERR_NO_DATA;
}
static enum fx_status iterator_erase(fx_iterator *obj)
{
struct fx_tree_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_TREE_ITERATOR);
if (!it->node) {
return FX_ERR_OUT_OF_BOUNDS;
}
struct fx_tree_node *parent = NODE_PARENT(it->node);
if (!parent) {
return FX_ERR_NOT_SUPPORTED;
}
int d = 0;
struct fx_tree_node *n = it->node;
struct fx_tree_node *next = NODE_NEXT_SIBLING(n);
if (!next) {
next = NODE_FIRST_CHILD(n);
}
while (!next) {
n = NODE_PARENT(n);
if (!n) {
break;
}
d--;
next = NODE_NEXT_SIBLING(n);
}
remove_node(it->node);
reparent_children(it->node, parent);
return FX_SUCCESS;
}
static fx_iterator_value iterator_get_value(fx_iterator *obj)
{
struct fx_tree_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_TREE_ITERATOR);
if (!it->node) {
return FX_ITERATOR_VALUE_NULL;
}
return FX_ITERATOR_VALUE_PTR(it->node);
}
static const fx_iterator_value iterator_get_cvalue(const fx_iterator *obj)
{
struct fx_tree_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_TREE_ITERATOR);
if (!it->node) {
return FX_ITERATOR_VALUE_NULL;
}
return FX_ITERATOR_VALUE_CPTR(it->node);
}
/*** CLASS DEFINITION *********************************************************/
// ---- fx_tree DEFINITION
FX_TYPE_CLASS_BEGIN(fx_tree)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE)
FX_INTERFACE_ENTRY(it_begin) = fx_tree_begin;
FX_INTERFACE_ENTRY(it_cbegin) = fx_tree_cbegin;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE)
FX_TYPE_CLASS_END(fx_tree)
FX_TYPE_DEFINITION_BEGIN(fx_tree)
FX_TYPE_ID(0x8d8fa36b, 0xc515, 0x4803, 0x8124, 0xfd704f01b8ae);
FX_TYPE_CLASS(fx_tree_class);
FX_TYPE_IMPLEMENTS(FX_TYPE_ITERABLE);
FX_TYPE_INSTANCE_PRIVATE(struct fx_tree_p);
FX_TYPE_INSTANCE_INIT(tree_init);
FX_TYPE_INSTANCE_FINI(tree_fini);
FX_TYPE_DEFINITION_END(fx_tree)
// ---- fx_tree_iterator DEFINITION
FX_TYPE_CLASS_BEGIN(fx_tree_iterator)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterator, FX_TYPE_ITERATOR)
FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = iterator_erase;
FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value;
FX_INTERFACE_ENTRY(it_get_cvalue) = iterator_get_cvalue;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_tree_iterator)
FX_TYPE_DEFINITION_BEGIN(fx_tree_iterator)
FX_TYPE_ID(0xb896e671, 0x84b2, 0x4892, 0xaf09, 0x407f305f4bf8);
FX_TYPE_EXTENDS(FX_TYPE_ITERATOR);
FX_TYPE_CLASS(fx_tree_iterator_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_tree_iterator_p);
FX_TYPE_DEFINITION_END(fx_tree_iterator)
+33 -38
View File
@@ -35,6 +35,7 @@ struct fx_directory_iterator_p {
fx_directory *root; fx_directory *root;
fx_directory_entry entry; fx_directory_entry entry;
fx_value entry_value;
}; };
/*** PRIVATE FUNCTIONS ********************************************************/ /*** PRIVATE FUNCTIONS ********************************************************/
@@ -64,8 +65,9 @@ static fx_result directory_delete(
{ {
enum fx_status status = FX_SUCCESS; enum fx_status status = FX_SUCCESS;
fx_iterator *it fx_iterator *it = fx_directory_begin(
= fx_directory_begin(dir, FX_DIRECTORY_ITERATE_PARENT_LAST); dir,
FX_DIRECTORY_ITERATE_PARENT_LAST);
while (FX_OK(fx_iterator_get_status(it))) { while (FX_OK(fx_iterator_get_status(it))) {
fx_iterator_erase(it); fx_iterator_erase(it);
} }
@@ -291,8 +293,9 @@ static fx_result directory_open(
fx_directory *dir = fx_object_create(FX_TYPE_DIRECTORY); fx_directory *dir = fx_object_create(FX_TYPE_DIRECTORY);
fx_path *cwd = NULL; fx_path *cwd = NULL;
struct fx_directory_p *p struct fx_directory_p *p = fx_object_get_private(
= fx_object_get_private(dir, FX_TYPE_DIRECTORY); dir,
FX_TYPE_DIRECTORY);
if (!root) { if (!root) {
cwd = fx_path_create_cwd(); cwd = fx_path_create_cwd();
@@ -358,8 +361,9 @@ fx_result fx_directory_open_temp(fx_directory **out)
rpath, rpath,
FX_DIRECTORY_OPEN_CREATE, FX_DIRECTORY_OPEN_CREATE,
&dir); &dir);
struct fx_directory_p *p struct fx_directory_p *p = fx_object_get_private(
= fx_object_get_private(dir, FX_TYPE_DIRECTORY); dir,
FX_TYPE_DIRECTORY);
if (fx_error_get_status_code(status) == FX_ERR_NAME_EXISTS) { if (fx_error_get_status_code(status) == FX_ERR_NAME_EXISTS) {
fx_path_unref(rpath); fx_path_unref(rpath);
@@ -372,8 +376,6 @@ fx_result fx_directory_open_temp(fx_directory **out)
fx_path_unlink(rpath); fx_path_unlink(rpath);
fx_path_unref(rpath); fx_path_unref(rpath);
return status;
} }
} }
@@ -408,8 +410,9 @@ const char *fx_directory_get_rel_path_cstr(const fx_directory *dir)
fx_result fx_directory_delete(fx_directory *dir) fx_result fx_directory_delete(fx_directory *dir)
{ {
struct fx_directory_p *p struct fx_directory_p *p = fx_object_get_private(
= fx_object_get_private(dir, FX_TYPE_DIRECTORY); dir,
FX_TYPE_DIRECTORY);
p->d_flags |= DIRECTORY_DELETE_ON_CLOSE; p->d_flags |= DIRECTORY_DELETE_ON_CLOSE;
/* TODO allow object release functions to return a fx_result value */ /* TODO allow object release functions to return a fx_result value */
fx_directory_unref(dir); fx_directory_unref(dir);
@@ -508,6 +511,8 @@ static void update_iterator_data(struct fx_directory_iterator_p *it)
fx_path *path = fx_path_create_from_cstr( fx_path *path = fx_path_create_from_cstr(
ent->fts_path + fx_path_length(it->_p->d_path_abs) + 1); ent->fts_path + fx_path_length(it->_p->d_path_abs) + 1);
fx_value_unset(&it->entry_value);
it->entry_value = FX_POINTER(&it->entry);
it->entry.filename = ent->fts_name; it->entry.filename = ent->fts_name;
it->entry.filepath = path; it->entry.filepath = path;
@@ -555,8 +560,9 @@ fx_iterator *fx_directory_begin(
enum fx_directory_iterator_flags flags) enum fx_directory_iterator_flags flags)
{ {
fx_iterator *it_obj = fx_object_create(FX_TYPE_DIRECTORY_ITERATOR); fx_iterator *it_obj = fx_object_create(FX_TYPE_DIRECTORY_ITERATOR);
struct fx_directory_iterator_p *it struct fx_directory_iterator_p *it = fx_object_get_private(
= fx_object_get_private(it_obj, FX_TYPE_DIRECTORY_ITERATOR); it_obj,
FX_TYPE_DIRECTORY_ITERATOR);
it->flags = flags; it->flags = flags;
it->root = directory; it->root = directory;
@@ -614,12 +620,7 @@ fx_iterator *fx_directory_begin(
return it_obj; return it_obj;
} }
static fx_iterator *iterator_begin(fx_object *obj) static const fx_iterator *iterator_begin(const fx_object *obj)
{
return fx_directory_begin(obj, FX_DIRECTORY_ITERATE_PARENT_FIRST);
}
static const fx_iterator *iterator_cbegin(const fx_object *obj)
{ {
return fx_directory_begin( return fx_directory_begin(
(fx_object *)obj, (fx_object *)obj,
@@ -628,8 +629,9 @@ static const fx_iterator *iterator_cbegin(const fx_object *obj)
static enum fx_status iterator_move_next(const fx_iterator *obj) static enum fx_status iterator_move_next(const fx_iterator *obj)
{ {
struct fx_directory_iterator_p *it struct fx_directory_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_DIRECTORY_ITERATOR); obj,
FX_TYPE_DIRECTORY_ITERATOR);
if (!it || !it->fts) { if (!it || !it->fts) {
return FX_ERR_NO_DATA; return FX_ERR_NO_DATA;
} }
@@ -677,10 +679,12 @@ static enum fx_status iterator_move_next(const fx_iterator *obj)
static enum fx_status iterator_erase(fx_iterator *obj) static enum fx_status iterator_erase(fx_iterator *obj)
{ {
struct fx_directory_iterator_p *it struct fx_directory_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_DIRECTORY_ITERATOR); obj,
fx_result result FX_TYPE_DIRECTORY_ITERATOR);
= fx_directory_path_unlink(it->root, it->entry.filepath); fx_result result = fx_directory_path_unlink(
it->root,
it->entry.filepath);
if (fx_result_is_error(result)) { if (fx_result_is_error(result)) {
enum fx_status status = fx_error_get_status_code(result); enum fx_status status = fx_error_get_status_code(result);
fx_error_discard(result); fx_error_discard(result);
@@ -690,20 +694,13 @@ static enum fx_status iterator_erase(fx_iterator *obj)
return iterator_move_next(obj); return iterator_move_next(obj);
} }
static fx_iterator_value iterator_get_value(fx_iterator *obj) static const fx_value *iterator_get_value(const fx_iterator *obj)
{ {
struct fx_directory_iterator_p *it struct fx_directory_iterator_p *it = fx_object_get_private(
= fx_object_get_private(obj, FX_TYPE_DIRECTORY_ITERATOR); obj,
FX_TYPE_DIRECTORY_ITERATOR);
return FX_ITERATOR_VALUE_PTR(&it->entry); return &it->entry_value;
}
static const fx_iterator_value iterator_get_cvalue(const fx_iterator *obj)
{
struct fx_directory_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_DIRECTORY_ITERATOR);
return FX_ITERATOR_VALUE_CPTR(&it->entry);
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
@@ -716,7 +713,6 @@ FX_TYPE_CLASS_BEGIN(fx_directory)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE)
FX_INTERFACE_ENTRY(it_begin) = iterator_begin; FX_INTERFACE_ENTRY(it_begin) = iterator_begin;
FX_INTERFACE_ENTRY(it_cbegin) = iterator_cbegin;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE)
FX_TYPE_CLASS_END(fx_directory) FX_TYPE_CLASS_END(fx_directory)
@@ -739,7 +735,6 @@ FX_TYPE_CLASS_BEGIN(fx_directory_iterator)
FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next; FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = iterator_erase; FX_INTERFACE_ENTRY(it_erase) = iterator_erase;
FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value; FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value;
FX_INTERFACE_ENTRY(it_get_cvalue) = iterator_get_cvalue;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR) FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_directory_iterator) FX_TYPE_CLASS_END(fx_directory_iterator)
+18 -9
View File
@@ -6,6 +6,7 @@
#include <fx/io/file.h> #include <fx/io/file.h>
#include <fx/io/path.h> #include <fx/io/path.h>
#include <fx/string.h> #include <fx/string.h>
#include <fx/value.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
#include <sys/stat.h> #include <sys/stat.h>
@@ -134,8 +135,8 @@ static enum fx_status path_get_directory(
size_t dir_path_len = (size_t)(sep - path_cstr); size_t dir_path_len = (size_t)(sep - path_cstr);
fx_string *dir_path_s = fx_string_get_substr(path_str, 0, dir_path_len); fx_string *dir_path_s = fx_string_get_substr(path_str, 0, dir_path_len);
fx_path *dir_path fx_path *dir_path = fx_path_create_from_cstr(
= fx_path_create_from_cstr(fx_string_get_cstr(dir_path_s)); fx_string_get_cstr(dir_path_s));
fx_string_unref(dir_path_s); fx_string_unref(dir_path_s);
*out_dir_path = dir_path; *out_dir_path = dir_path;
@@ -284,13 +285,15 @@ fx_path *fx_path_join(const fx_path *paths[], size_t nr_paths)
return NULL; return NULL;
} }
struct fx_path_p *result_p struct fx_path_p *result_p = fx_object_get_private(
= fx_object_get_private(result, FX_TYPE_PATH); result,
FX_TYPE_PATH);
for (size_t i = 0; i < nr_paths; i++) { for (size_t i = 0; i < nr_paths; i++) {
if (paths[i]) { if (paths[i]) {
struct fx_path_p *path_p struct fx_path_p *path_p = fx_object_get_private(
= fx_object_get_private(paths[i], FX_TYPE_PATH); paths[i],
FX_TYPE_PATH);
append_path(result_p, path_p); append_path(result_p, path_p);
} }
} }
@@ -385,18 +388,24 @@ static void path_init(fx_object *obj, void *priv)
} }
} }
void path_fini(fx_object *obj, void *priv) static void path_fini(fx_object *obj, void *priv)
{ {
struct fx_path_p *path = priv; struct fx_path_p *path = priv;
fx_string_unref(path->p_pathstr); fx_string_unref(path->p_pathstr);
} }
void path_to_string(const fx_object *obj, fx_stream *out) static fx_status path_to_string(
const fx_value *obj,
fx_stream *out,
const char *format)
{ {
struct fx_path_p *path = fx_object_get_private(obj, FX_TYPE_PATH); struct fx_path_p *path = fx_object_get_private(
obj->v_object,
FX_TYPE_PATH);
fx_stream_write_cstr(out, fx_string_get_cstr(path->p_pathstr), NULL); fx_stream_write_cstr(out, fx_string_get_cstr(path->p_pathstr), NULL);
return FX_SUCCESS;
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
+6 -18
View File
@@ -37,6 +37,7 @@ struct fx_directory_iterator_p {
fx_directory *root; fx_directory *root;
fx_directory_entry entry; fx_directory_entry entry;
fx_value entry_value;
}; };
/*** PRIVATE FUNCTIONS ********************************************************/ /*** PRIVATE FUNCTIONS ********************************************************/
@@ -510,6 +511,8 @@ static void update_iterator_data(struct fx_directory_iterator_p *it)
fx_path *path = fx_path_create_from_cstr( fx_path *path = fx_path_create_from_cstr(
ent->fts_path + fx_path_length(it->_p->d_path_abs) + 1); ent->fts_path + fx_path_length(it->_p->d_path_abs) + 1);
fx_value_unset(&it->entry_value);
it->entry_value = FX_POINTER(&it->entry);
it->entry.filename = ent->fts_name; it->entry.filename = ent->fts_name;
it->entry.filepath = path; it->entry.filepath = path;
@@ -616,12 +619,7 @@ fx_iterator *fx_directory_begin(
return it_obj; return it_obj;
} }
static fx_iterator *iterator_begin(fx_object *obj) static const fx_iterator *iterator_begin(const fx_object *obj)
{
return fx_directory_begin(obj, FX_DIRECTORY_ITERATE_PARENT_FIRST);
}
static const fx_iterator *iterator_cbegin(const fx_object *obj)
{ {
return fx_directory_begin( return fx_directory_begin(
(fx_object *)obj, (fx_object *)obj,
@@ -692,20 +690,12 @@ static enum fx_status iterator_erase(fx_iterator *obj)
return iterator_move_next(obj); return iterator_move_next(obj);
} }
static fx_iterator_value iterator_get_value(fx_iterator *obj) static const fx_value *iterator_get_value(const fx_iterator *obj)
{ {
struct fx_directory_iterator_p *it struct fx_directory_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_DIRECTORY_ITERATOR); = fx_object_get_private(obj, FX_TYPE_DIRECTORY_ITERATOR);
return FX_ITERATOR_VALUE_PTR(&it->entry); return &it->entry_value;
}
static const fx_iterator_value iterator_get_cvalue(const fx_iterator *obj)
{
struct fx_directory_iterator_p *it
= fx_object_get_private(obj, FX_TYPE_DIRECTORY_ITERATOR);
return FX_ITERATOR_VALUE_CPTR(&it->entry);
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
@@ -718,7 +708,6 @@ FX_TYPE_CLASS_BEGIN(fx_directory)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterable, FX_TYPE_ITERABLE)
FX_INTERFACE_ENTRY(it_begin) = iterator_begin; FX_INTERFACE_ENTRY(it_begin) = iterator_begin;
FX_INTERFACE_ENTRY(it_cbegin) = iterator_cbegin;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE) FX_TYPE_VTABLE_INTERFACE_END(fx_iterable, FX_TYPE_ITERABLE)
FX_TYPE_CLASS_END(fx_directory) FX_TYPE_CLASS_END(fx_directory)
@@ -741,7 +730,6 @@ FX_TYPE_CLASS_BEGIN(fx_directory_iterator)
FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next; FX_INTERFACE_ENTRY(it_move_next) = iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = iterator_erase; FX_INTERFACE_ENTRY(it_erase) = iterator_erase;
FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value; FX_INTERFACE_ENTRY(it_get_value) = iterator_get_value;
FX_INTERFACE_ENTRY(it_get_cvalue) = iterator_get_cvalue;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR) FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_directory_iterator) FX_TYPE_CLASS_END(fx_directory_iterator)
+10 -3
View File
@@ -392,11 +392,18 @@ void path_fini(fx_object *obj, void *priv)
fx_string_unref(path->p_pathstr); fx_string_unref(path->p_pathstr);
} }
void path_to_string(const fx_object *obj, fx_stream *out) static fx_status path_to_string(
const fx_value *obj,
fx_stream *out,
const char *format)
{ {
struct fx_path_p *path = fx_object_get_private(obj, FX_TYPE_PATH); struct fx_path_p *path
= fx_object_get_private(obj->v_object, FX_TYPE_PATH);
fx_stream_write_cstr(out, fx_string_get_cstr(path->p_pathstr), NULL); return fx_stream_write_cstr(
out,
fx_string_get_cstr(path->p_pathstr),
NULL);
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
+6 -2
View File
@@ -20,9 +20,13 @@ int main(int argc, const char **argv)
return -1; return -1;
} }
fx_iterator *it = fx_directory_begin(dir, FX_DIRECTORY_ITERATE_PARENT_FIRST); fx_iterator *it = fx_directory_begin(
fx_foreach(fx_directory_entry *, entry, it) dir,
FX_DIRECTORY_ITERATE_PARENT_FIRST);
fx_foreach(val, it)
{ {
fx_directory_entry *entry = NULL;
fx_value_get_pointer(val, (void **)&entry);
printf("%s\n", fx_path_ptr(entry->filepath)); printf("%s\n", fx_path_ptr(entry->filepath));
} }
+363 -25
View File
@@ -1,8 +1,24 @@
#include "fx/namemap.h"
#include <fx/bst.h> #include <fx/bst.h>
#include <fx/hash.h> #include <fx/hash.h>
#include <fx/iterator.h>
#include <fx/macros.h> #include <fx/macros.h>
#include <fx/queue.h> #include <fx/queue.h>
#include <fx/reflection/assembly.h> #include <fx/reflection/assembly.h>
#include <fx/reflection/type.h>
FX_API fx_type_id fx_assembly_iterator_get_type();
FX_API fx_type_id fx_assembly_type_iterator_get_type();
FX_DECLARE_TYPE(fx_assembly_iterator);
FX_DECLARE_TYPE(fx_assembly_type_iterator);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_assembly_iterator)
FX_TYPE_CLASS_DECLARATION_END(fx_assembly_iterator)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_assembly_type_iterator)
FX_TYPE_CLASS_DECLARATION_END(fx_assembly_type_iterator)
enum map_entry_type { enum map_entry_type {
MAP_ENTRY_NONE = 0, MAP_ENTRY_NONE = 0,
@@ -12,6 +28,7 @@ enum map_entry_type {
struct map_entry { struct map_entry {
enum map_entry_type e_type; enum map_entry_type e_type;
struct map_bucket *e_bucket;
uint64_t e_hash; uint64_t e_hash;
union { union {
fx_queue_entry e_entry; fx_queue_entry e_entry;
@@ -39,8 +56,10 @@ struct type {
}; };
struct fx_assembly_p { struct fx_assembly_p {
fx_assembly *a_self;
const char *a_name; const char *a_name;
struct map a_types; struct map a_types;
fx_namemap_entry a_entry;
struct { struct {
long v_major; long v_major;
@@ -50,6 +69,16 @@ struct fx_assembly_p {
} a_version; } a_version;
}; };
struct fx_assembly_iterator_p {
fx_namemap_entry *it_cur;
fx_value it_value;
};
struct fx_assembly_type_iterator_p {
struct type *it_item;
fx_value it_value;
};
/*** PRIVATE FUNCTIONS ********************************************************/ /*** PRIVATE FUNCTIONS ********************************************************/
FX_BST_DEFINE_SIMPLE_GET( FX_BST_DEFINE_SIMPLE_GET(
@@ -60,6 +89,8 @@ FX_BST_DEFINE_SIMPLE_GET(
map_get_entry); map_get_entry);
FX_BST_DEFINE_SIMPLE_INSERT(struct map_entry, e_node, e_hash, map_put_entry); FX_BST_DEFINE_SIMPLE_INSERT(struct map_entry, e_node, e_hash, map_put_entry);
static fx_namemap assembly_map = FX_NAMEMAP_INIT;
static struct map_bucket *map_item_convert_to_bucket( static struct map_bucket *map_item_convert_to_bucket(
struct map *map, struct map *map,
struct map_item *item) struct map_item *item)
@@ -78,6 +109,28 @@ static struct map_bucket *map_item_convert_to_bucket(
return bucket; return bucket;
} }
static struct map_item *map_first_item(const struct map *map)
{
fx_bst_node *first = fx_bst_first(&map->m_entries);
if (!first) {
return NULL;
}
struct map_entry *entry = fx_unbox(struct map_entry, first, e_node);
if (entry->e_type == MAP_ENTRY_ITEM) {
return (struct map_item *)entry;
}
struct map_bucket *bucket = (struct map_bucket *)entry;
fx_queue_entry *first_entry = fx_queue_first(&bucket->b_items);
if (!first_entry) {
return NULL;
}
entry = fx_unbox(struct map_entry, first_entry, e_entry);
return (struct map_item *)entry;
}
static void map_put(struct map *map, const char *name, struct map_item *item) static void map_put(struct map *map, const char *name, struct map_item *item)
{ {
uint64_t hash = fx_hash_cstr(name); uint64_t hash = fx_hash_cstr(name);
@@ -109,34 +162,81 @@ static void map_put(struct map *map, const char *name, struct map_item *item)
} }
} }
static void assembly_set_name(struct fx_assembly_p *asm, const char *name) static struct map_item *map_item_next(struct map_item *item)
{ {
asm->a_name = name; struct map_bucket *bucket = item->i_entry.e_bucket;
struct map_entry *next_item = NULL;
if (bucket) {
struct fx_queue_entry *q_item
= fx_queue_next(&item->i_entry.e_entry);
if (!q_item) {
struct fx_bst_node *node
= fx_bst_next(&bucket->b_entry.e_node);
next_item = fx_unbox(struct map_entry, node, e_node);
} else {
next_item = fx_unbox(struct map_entry, q_item, e_entry);
}
} else {
struct fx_bst_node *node = fx_bst_next(&item->i_entry.e_node);
next_item = fx_unbox(struct map_entry, node, e_node);
}
if (!next_item) {
return NULL;
}
if (next_item->e_type == MAP_ENTRY_BUCKET) {
bucket = (struct map_bucket *)next_item;
struct fx_queue_entry *q_item
= fx_queue_first(&bucket->b_items);
next_item = fx_unbox(struct map_entry, q_item, e_entry);
}
return (struct map_item *)next_item;
}
static fx_status assembly_register(struct fx_assembly_p *assembly)
{
if (fx_namemap_get(&assembly_map, assembly->a_name)) {
return FX_ERR_NAME_EXISTS;
}
fx_namemap_put(&assembly_map, assembly->a_name, &assembly->a_entry);
return FX_SUCCESS;
}
static void assembly_set_name(struct fx_assembly_p *assembly, const char *name)
{
assembly->a_name = name;
} }
static void assembly_set_version( static void assembly_set_version(
struct fx_assembly_p *asm, struct fx_assembly_p *assembly,
long major, long major,
long minor, long minor,
long build, long build,
long revision) long revision)
{ {
asm->a_version.v_major = major; assembly->a_version.v_major = major;
asm->a_version.v_minor = minor; assembly->a_version.v_minor = minor;
asm->a_version.v_build = build; assembly->a_version.v_build = build;
asm->a_version.v_revision = revision; assembly->a_version.v_revision = revision;
} }
#include <stdio.h> #include <stdio.h>
static void assembly_add_type( static void assembly_add_type(
struct fx_assembly_p *asm, struct fx_assembly_p *assembly,
const char *full_name, const char *full_name,
fx_type_id type_id) fx_type_id type_id)
{ {
struct type *type = malloc(sizeof *type); struct type *type = malloc(sizeof *type);
memset(type, 0x0, sizeof *type); memset(type, 0x0, sizeof *type);
map_put(&asm->a_types, full_name, &type->e_map_item); type->e_type = type_id;
fx_type *ty = (fx_type *)fx_type_get_by_id(type_id);
fx_type_set_assembly(ty, assembly->a_self);
map_put(&assembly->a_types, full_name, &type->e_map_item);
} }
static void map_item_dump(struct map_item *item) static void map_item_dump(struct map_item *item)
@@ -145,17 +245,17 @@ static void map_item_dump(struct map_item *item)
printf(" Type: %s\n", type->e_map_item.i_name); printf(" Type: %s\n", type->e_map_item.i_name);
} }
static void assembly_dump(struct fx_assembly_p *asm) static void assembly_dump(struct fx_assembly_p *assembly)
{ {
printf("Loaded assembly:\n"); printf("Loaded assembly:\n");
printf(" %s, Version=%ld.%ld.%ld.%ld\n", printf(" %s, Version=%ld.%ld.%ld.%ld\n",
asm->a_name, assembly->a_name,
asm->a_version.v_major, assembly->a_version.v_major,
asm->a_version.v_minor, assembly->a_version.v_minor,
asm->a_version.v_build, assembly->a_version.v_build,
asm->a_version.v_revision); assembly->a_version.v_revision);
fx_bst_node *cur_node = fx_bst_first(&asm->a_types.m_entries); fx_bst_node *cur_node = fx_bst_first(&assembly->a_types.m_entries);
while (cur_node) { while (cur_node) {
struct map_entry *entry struct map_entry *entry
= fx_unbox(struct map_entry, cur_node, e_node); = fx_unbox(struct map_entry, cur_node, e_node);
@@ -187,19 +287,116 @@ static void assembly_dump(struct fx_assembly_p *asm)
} }
} }
static fx_iterator *assembly_get_types(const struct fx_assembly_p *assembly)
{
fx_assembly_type_iterator *it
= fx_object_create(fx_assembly_type_iterator_get_type());
if (!it) {
return NULL;
}
struct fx_assembly_type_iterator_p *it_p = fx_object_get_private(
it,
fx_assembly_type_iterator_get_type());
struct map_item *item = map_first_item(&assembly->a_types);
if (!item) {
fx_iterator_set_status(it, FX_ERR_NO_DATA);
return it;
}
it_p->it_item = fx_unbox(struct type, item, e_map_item);
const fx_type *ty = fx_type_get_by_id(it_p->it_item->e_type);
it_p->it_value = FX_VALUE_OBJECT_REF(ty);
return it;
}
static const char *assembly_get_name(const struct fx_assembly_p *assembly)
{
return assembly->a_name;
}
static void assembly_get_version(
const struct fx_assembly_p *assembly,
long *out_major,
long *out_minor,
long *out_build,
long *out_revision)
{
if (out_major) {
*out_major = assembly->a_version.v_major;
}
if (out_minor) {
*out_minor = assembly->a_version.v_minor;
}
if (out_build) {
*out_build = assembly->a_version.v_build;
}
if (out_revision) {
*out_revision = assembly->a_version.v_revision;
}
}
/*** PUBLIC FUNCTIONS *********************************************************/ /*** PUBLIC FUNCTIONS *********************************************************/
void fx_assembly_set_name(fx_assembly *asm, const char *name) fx_iterator *fx_assembly_get_all(void)
{
fx_assembly_iterator *it
= fx_object_create(fx_assembly_iterator_get_type());
if (!it) {
return NULL;
}
struct fx_assembly_iterator_p *it_p
= fx_object_get_private(it, fx_assembly_iterator_get_type());
it_p->it_cur = fx_namemap_first(&assembly_map);
if (!it_p->it_cur) {
fx_iterator_set_status(it, FX_ERR_NO_DATA);
return it;
}
struct fx_assembly_p *assembly
= fx_unbox(struct fx_assembly_p, it_p->it_cur, a_entry);
it_p->it_value = FX_VALUE_OBJECT_REF(assembly->a_self);
return it;
}
const fx_assembly *fx_assembly_get_by_name(const char *name)
{
const fx_namemap_entry *entry = fx_namemap_get(&assembly_map, name);
if (!entry) {
return NULL;
}
struct fx_assembly_p *assembly
= fx_unbox(struct fx_assembly_p, entry, a_entry);
return assembly->a_self;
}
fx_status fx_assembly_register(fx_assembly *assembly)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_ASSEMBLY,
assembly_register,
assembly);
}
void fx_assembly_set_name(fx_assembly *assembly, const char *name)
{ {
FX_CLASS_DISPATCH_STATIC_V( FX_CLASS_DISPATCH_STATIC_V(
FX_REFLECTION_TYPE_ASSEMBLY, FX_REFLECTION_TYPE_ASSEMBLY,
assembly_set_name, assembly_set_name,
asm, assembly,
name); name);
} }
void fx_assembly_set_version( void fx_assembly_set_version(
fx_assembly *asm, fx_assembly *assembly,
long major, long major,
long minor, long minor,
long build, long build,
@@ -208,7 +405,7 @@ void fx_assembly_set_version(
FX_CLASS_DISPATCH_STATIC_V( FX_CLASS_DISPATCH_STATIC_V(
FX_REFLECTION_TYPE_ASSEMBLY, FX_REFLECTION_TYPE_ASSEMBLY,
assembly_set_version, assembly_set_version,
asm, assembly,
major, major,
minor, minor,
build, build,
@@ -216,39 +413,141 @@ void fx_assembly_set_version(
} }
void fx_assembly_add_type( void fx_assembly_add_type(
fx_assembly *asm, fx_assembly *assembly,
const char *full_name, const char *full_name,
fx_type_id type_id) fx_type_id type_id)
{ {
FX_CLASS_DISPATCH_STATIC_V( FX_CLASS_DISPATCH_STATIC_V(
FX_REFLECTION_TYPE_ASSEMBLY, FX_REFLECTION_TYPE_ASSEMBLY,
assembly_add_type, assembly_add_type,
asm, assembly,
full_name, full_name,
type_id); type_id);
} }
void fx_assembly_dump(const fx_assembly *asm) fx_iterator *fx_assembly_get_types(const fx_assembly *assembly)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_ASSEMBLY,
assembly_get_types,
assembly);
}
const char *fx_assembly_get_name(const fx_assembly *assembly)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_ASSEMBLY,
assembly_get_name,
assembly);
}
void fx_assembly_get_version(
const fx_assembly *assembly,
long *out_major,
long *out_minor,
long *out_build,
long *out_revision)
{
FX_CLASS_DISPATCH_STATIC_V(
FX_REFLECTION_TYPE_ASSEMBLY,
assembly_get_version,
assembly,
out_major,
out_minor,
out_build,
out_revision);
}
void fx_assembly_dump(const fx_assembly *assembly)
{ {
FX_CLASS_DISPATCH_STATIC_0( FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_ASSEMBLY, FX_REFLECTION_TYPE_ASSEMBLY,
assembly_dump, assembly_dump,
asm); assembly);
} }
/*** VIRTUAL FUNCTIONS ********************************************************/ /*** VIRTUAL FUNCTIONS ********************************************************/
static void assembly_init(fx_object *obj, void *priv) static void assembly_init(fx_object *obj, void *priv)
{ {
struct fx_assembly_p *assembly = priv;
assembly->a_self = obj;
} }
static void assembly_fini(fx_object *obj, void *priv) static void assembly_fini(fx_object *obj, void *priv)
{ {
} }
/*** ITERATOR DEFINITION ******************************************************/
static enum fx_status type_iterator_move_next(const fx_iterator *obj)
{
struct fx_assembly_type_iterator_p *it = fx_object_get_private(
obj,
fx_assembly_type_iterator_get_type());
if (!it->it_item) {
return FX_ERR_NO_DATA;
}
fx_value_unset(&it->it_value);
struct map_item *next = map_item_next(&it->it_item->e_map_item);
it->it_item = fx_unbox(struct type, next, e_map_item);
if (!it->it_item) {
return FX_ERR_NO_DATA;
}
const fx_type *ty = fx_type_get_by_id(it->it_item->e_type);
it->it_value = FX_VALUE_OBJECT_REF(ty);
return FX_SUCCESS;
}
static const fx_value *type_iterator_get_value(const fx_iterator *obj)
{
struct fx_assembly_type_iterator_p *it = fx_object_get_private(
obj,
fx_assembly_type_iterator_get_type());
if (!it->it_item) {
return NULL;
}
return &it->it_value;
}
static enum fx_status assembly_iterator_move_next(const fx_iterator *obj)
{
struct fx_assembly_iterator_p *it
= fx_object_get_private(obj, fx_assembly_iterator_get_type());
if (!it->it_cur) {
return FX_ERR_NO_DATA;
}
fx_value_unset(&it->it_value);
it->it_cur = fx_namemap_next(&assembly_map, it->it_cur);
if (!it->it_cur) {
return FX_ERR_NO_DATA;
}
struct fx_assembly_p *assembly
= fx_unbox(struct fx_assembly_p, it->it_cur, a_entry);
it->it_value = FX_VALUE_OBJECT_REF(assembly->a_self);
return FX_SUCCESS;
}
static const fx_value *assembly_iterator_get_value(const fx_iterator *obj)
{
struct fx_assembly_iterator_p *it
= fx_object_get_private(obj, fx_assembly_iterator_get_type());
if (!it->it_cur) {
return NULL;
}
return &it->it_value;
}
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
// ---- fx_string DEFINITION
FX_TYPE_CLASS_BEGIN(fx_assembly) FX_TYPE_CLASS_BEGIN(fx_assembly)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT) FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL; FX_INTERFACE_ENTRY(to_string) = NULL;
@@ -257,8 +556,47 @@ FX_TYPE_CLASS_END(fx_assembly)
FX_TYPE_DEFINITION_BEGIN(fx_assembly) FX_TYPE_DEFINITION_BEGIN(fx_assembly)
FX_TYPE_ID(0xf6690c30, 0x6642, 0x42f0, 0xb79f, 0xe2baf3684b1b); FX_TYPE_ID(0xf6690c30, 0x6642, 0x42f0, 0xb79f, 0xe2baf3684b1b);
FX_TYPE_NAME("fx.reflection.assembly");
FX_TYPE_CLASS(fx_assembly_class); FX_TYPE_CLASS(fx_assembly_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_assembly_p); FX_TYPE_INSTANCE_PRIVATE(struct fx_assembly_p);
FX_TYPE_INSTANCE_INIT(assembly_init); FX_TYPE_INSTANCE_INIT(assembly_init);
FX_TYPE_INSTANCE_FINI(assembly_fini); FX_TYPE_INSTANCE_FINI(assembly_fini);
FX_TYPE_DEFINITION_END(fx_assembly) FX_TYPE_DEFINITION_END(fx_assembly)
FX_TYPE_CLASS_BEGIN(fx_assembly_type_iterator)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterator, FX_TYPE_ITERATOR)
FX_INTERFACE_ENTRY(it_move_next) = type_iterator_move_next;
FX_INTERFACE_ENTRY(it_get_value) = type_iterator_get_value;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_assembly_type_iterator)
FX_TYPE_DEFINITION_BEGIN(fx_assembly_type_iterator)
FX_TYPE_ID(0x74ecb8df, 0x155d, 0x4e45, 0x96a6, 0x0f71e3ea0a1e);
FX_TYPE_NAME("fx.reflection.assembly.type_iterator");
FX_TYPE_EXTENDS(FX_TYPE_ITERATOR);
FX_TYPE_CLASS(fx_assembly_type_iterator_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_assembly_type_iterator_p);
FX_TYPE_DEFINITION_END(fx_assembly_type_iterator)
FX_TYPE_CLASS_BEGIN(fx_assembly_iterator)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterator, FX_TYPE_ITERATOR)
FX_INTERFACE_ENTRY(it_move_next) = assembly_iterator_move_next;
FX_INTERFACE_ENTRY(it_get_value) = assembly_iterator_get_value;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_assembly_iterator)
FX_TYPE_DEFINITION_BEGIN(fx_assembly_iterator)
FX_TYPE_ID(0x391f8d65, 0x9baf, 0x4941, 0xbdbe, 0xe739226f8947);
FX_TYPE_NAME("fx.reflection.assembly.iterator");
FX_TYPE_EXTENDS(FX_TYPE_ITERATOR);
FX_TYPE_CLASS(fx_assembly_iterator_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_assembly_iterator_p);
FX_TYPE_DEFINITION_END(fx_assembly_iterator)
+45 -9
View File
@@ -1,6 +1,7 @@
#include <fx/macros.h> #include <fx/macros.h>
#include <fx/reflection/function.h> #include <fx/reflection/function.h>
#include <fx/string.h> #include <fx/string.h>
#include <fx/value-type.h>
#include <fx/value.h> #include <fx/value.h>
#include <platform/callvm.h> #include <platform/callvm.h>
@@ -8,8 +9,8 @@ struct fx_function_p {
char *func_name; char *func_name;
fx_function_flags func_flags; fx_function_flags func_flags;
fx_function_impl func_impl; fx_function_impl func_impl;
fx_value_type func_return_type; fx_type_id func_return_type;
fx_value_type *func_arg_types; fx_type_id *func_arg_types;
/* number of explicit arguments that the function takes. /* number of explicit arguments that the function takes.
* if the FX_FUNCTION_F_VARARG flag is set, the function supports a * if the FX_FUNCTION_F_VARARG flag is set, the function supports a
* variable number of arguments, which may be handled differently by the * variable number of arguments, which may be handled differently by the
@@ -61,6 +62,29 @@ static fx_status function_bind(
return FX_SUCCESS; return FX_SUCCESS;
} }
static void push_arg(
const fx_value *arg,
fx_type_id param_type,
struct callvm *vm)
{
if (!param_type) {
callvm_push(vm, arg);
return;
}
unsigned int param_value_type = __fx_type_get_value_type(param_type);
if (param_value_type == __FX_VALUE_TYPE_CSTR
&& fx_value_is_type(arg, FX_TYPE_STRING)) {
fx_object *obj;
fx_value_get_object(arg, &obj);
fx_value cstr = FX_CSTR(fx_string_get_cstr(obj));
callvm_push(vm, &cstr);
return;
}
callvm_push(vm, arg);
}
static fx_status function_invoke( static fx_status function_invoke(
const struct fx_function_p *func, const struct fx_function_p *func,
const fx_value *args, const fx_value *args,
@@ -84,14 +108,27 @@ static fx_status function_invoke(
struct callvm vm = {0}; struct callvm vm = {0};
callvm_reset(&vm, nr_fixed_args); callvm_reset(&vm, nr_fixed_args);
size_t param_index = 0;
for (size_t i = 0; i < func->func_nr_bound_args; i++) { for (size_t i = 0; i < func->func_nr_bound_args; i++) {
const fx_value *arg = &func->func_bound_args[i]; const fx_value *arg = &func->func_bound_args[i];
callvm_push(&vm, arg); fx_type_id param_type = NULL;
if (param_index < func->func_nr_args) {
param_type = func->func_arg_types[param_index];
}
push_arg(arg, param_type, &vm);
param_index++;
} }
for (size_t i = 0; i < nr_args; i++) { for (size_t i = 0; i < nr_args; i++) {
const fx_value *arg = &args[i]; const fx_value *arg = &args[i];
callvm_push(&vm, arg); fx_type_id param_type = NULL;
if (param_index < func->func_nr_args) {
param_type = func->func_arg_types[param_index];
}
push_arg(arg, param_type, &vm);
param_index++;
} }
*return_value = callvm_invoke( *return_value = callvm_invoke(
@@ -109,9 +146,9 @@ fx_function *fx_function_create(
const char *name, const char *name,
fx_function_flags flags, fx_function_flags flags,
fx_function_impl impl, fx_function_impl impl,
const fx_value_type *args, const fx_type_id *args,
size_t nr_args, size_t nr_args,
fx_value_type return_type) fx_type_id return_type)
{ {
fx_function *func = fx_object_create(FX_REFLECTION_TYPE_FUNCTION); fx_function *func = fx_object_create(FX_REFLECTION_TYPE_FUNCTION);
if (!func) { if (!func) {
@@ -122,7 +159,7 @@ fx_function *fx_function_create(
func, func,
FX_REFLECTION_TYPE_FUNCTION); FX_REFLECTION_TYPE_FUNCTION);
if (nr_args == 1 && args[0] == FX_VALUE_TYPE_NONE) { if (nr_args == 1 && args[0] == NULL) {
nr_args = 0; nr_args = 0;
} }
@@ -191,8 +228,7 @@ static void function_fini(fx_object *obj, void *priv)
} }
} }
/*** CLASS DEFINITION /*** CLASS DEFINITION *********************************************************/
* *********************************************************/
FX_TYPE_CLASS_BEGIN(fx_function) FX_TYPE_CLASS_BEGIN(fx_function)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT) FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
+18 -4
View File
@@ -1,6 +1,7 @@
#ifndef FX_REFLECTION_ASSEMBLY_H_ #ifndef FX_REFLECTION_ASSEMBLY_H_
#define FX_REFLECTION_ASSEMBLY_H_ #define FX_REFLECTION_ASSEMBLY_H_
#include <fx/iterator.h>
#include <fx/macros.h> #include <fx/macros.h>
FX_DECLS_BEGIN; FX_DECLS_BEGIN;
@@ -16,20 +17,33 @@ FX_API fx_type_id fx_assembly_get_type();
FX_TYPE_DEFAULT_CONSTRUCTOR(fx_assembly, FX_REFLECTION_TYPE_ASSEMBLY); FX_TYPE_DEFAULT_CONSTRUCTOR(fx_assembly, FX_REFLECTION_TYPE_ASSEMBLY);
FX_API void fx_assembly_set_name(fx_assembly *asm, const char *name); FX_API fx_iterator *fx_assembly_get_all(void);
FX_API const fx_assembly *fx_assembly_get_by_name(const char *name);
FX_API fx_status fx_assembly_register(fx_assembly *assembly);
FX_API void fx_assembly_set_name(fx_assembly *assembly, const char *name);
FX_API void fx_assembly_set_version( FX_API void fx_assembly_set_version(
fx_assembly *asm, fx_assembly *assembly,
long major, long major,
long minor, long minor,
long build, long build,
long revision); long revision);
FX_API void fx_assembly_add_type( FX_API void fx_assembly_add_type(
fx_assembly *asm, fx_assembly *assembly,
const char *full_name, const char *full_name,
fx_type_id type_id); fx_type_id type_id);
FX_API fx_iterator *fx_assembly_get_types(const fx_assembly *assembly);
FX_API void fx_assembly_dump(const fx_assembly *asm); FX_API const char *fx_assembly_get_name(const fx_assembly *assembly);
FX_API void fx_assembly_get_version(
const fx_assembly *assembly,
long *out_major,
long *out_minor,
long *out_build,
long *out_revision);
FX_API void fx_assembly_dump(const fx_assembly *assembly);
FX_DECLS_END; FX_DECLS_END;
@@ -32,9 +32,9 @@ FX_API fx_function *fx_function_create(
const char *name, const char *name,
fx_function_flags flags, fx_function_flags flags,
fx_function_impl impl, fx_function_impl impl,
const fx_value_type *args, const fx_type_id *args,
size_t nr_args, size_t nr_args,
fx_value_type return_type); fx_type_id return_type);
FX_API fx_status FX_API fx_status
fx_function_bind(fx_function *func, fx_value *args, size_t nr_args); fx_function_bind(fx_function *func, fx_value *args, size_t nr_args);
FX_API fx_status fx_function_invoke( FX_API fx_status fx_function_invoke(
@@ -1,4 +1,38 @@
#ifndef FX_REFLECTION_PROPERTY_H_ #ifndef FX_REFLECTION_PROPERTY_H_
#define FX_REFLECTION_PROPERTY_H_ #define FX_REFLECTION_PROPERTY_H_
#include <fx/macros.h>
#include <fx/value.h>
FX_DECLS_BEGIN;
#define FX_REFLECTION_TYPE_PROPERTY (fx_property_get_type())
FX_DECLARE_TYPE(fx_property)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_property)
FX_TYPE_CLASS_DECLARATION_END(fx_property)
typedef fx_status (
*fx_property_getter)(const fx_value *, const fx_property *, fx_value *);
typedef fx_status (
*fx_property_setter)(fx_value *, const fx_property *, fx_value *);
FX_API fx_type_id fx_property_get_type(void);
FX_API fx_property *fx_property_create(
const char *name,
fx_property_getter get,
fx_property_setter set);
FX_API const char *fx_property_get_name(const fx_property *prop);
FX_API fx_status fx_property_get_value(
const fx_property *prop,
const fx_value *container,
fx_value *out);
FX_API fx_status fx_property_set_value(
const fx_property *prop,
fx_value *container,
fx_value *new_value);
#endif #endif
@@ -1,8 +1,11 @@
#ifndef FX_REFLECTION_TYPE_H_ #ifndef FX_REFLECTION_TYPE_H_
#define FX_REFLECTION_TYPE_H_ #define FX_REFLECTION_TYPE_H_
#include <fx/iterator.h>
#include <fx/macros.h> #include <fx/macros.h>
#include <fx/reflection/assembly.h>
#include <fx/reflection/function.h> #include <fx/reflection/function.h>
#include <fx/reflection/property.h>
FX_DECLS_BEGIN; FX_DECLS_BEGIN;
@@ -17,14 +20,27 @@ FX_TYPE_CLASS_DECLARATION_END(fx_type)
FX_API fx_type_id fx_type_get_type(); FX_API fx_type_id fx_type_get_type();
FX_API const fx_assembly *fx_type_get_assembly(const fx_type *ty);
FX_API fx_status fx_type_set_assembly(fx_type *ty, fx_assembly *assembly);
FX_API const char *fx_type_get_name(const fx_type *ty); FX_API const char *fx_type_get_name(const fx_type *ty);
FX_API fx_type_flags fx_type_get_flags(const fx_type *ty);
FX_API const fx_function *fx_type_get_function( FX_API const fx_function *fx_type_get_function(
const fx_type *ty, const fx_type *ty,
const char *name); const char *name);
FX_API fx_iterator *fx_type_get_functions(const fx_type *ty);
FX_API const fx_property *fx_type_get_property(
const fx_type *ty,
const char *name);
FX_API fx_iterator *fx_type_get_properties(const fx_type *ty);
FX_API const fx_type *fx_type_get_by_id(fx_type_id id); FX_API const fx_type *fx_type_get_by_id(fx_type_id id);
FX_API const fx_type *fx_type_get_by_name(const char *name); FX_API const fx_type *fx_type_get_by_name(const char *name);
FX_API fx_type_id fx_type_get_id(const fx_type *ty);
FX_API const fx_type *fx_type_get_parent(const fx_type *ty);
FX_API void *fx_type_get_interface(const fx_type *ty, fx_type_id interface_id);
FX_API fx_type *__fx_type_create(struct fx_type_info *opaque); FX_API fx_type *__fx_type_create(struct fx_type_info *opaque);
#endif #endif
+140
View File
@@ -0,0 +1,140 @@
#include <fx/macros.h>
#include <fx/reflection/property.h>
#include <fx/string.h>
#include <fx/value-type.h>
#include <fx/value.h>
#include <platform/callvm.h>
struct fx_property_p {
fx_property *prop_self;
char *prop_name;
fx_property_getter prop_getter;
fx_property_setter prop_setter;
};
/*** PRIVATE FUNCTIONS ********************************************************/
static const char *property_get_name(const struct fx_property_p *prop)
{
return prop->prop_name;
}
static fx_status property_get_value(
const struct fx_property_p *prop,
const fx_value *container,
fx_value *out)
{
if (!prop->prop_getter) {
return FX_ERR_NOT_SUPPORTED;
}
return prop->prop_getter(container, prop->prop_self, out);
}
static fx_status property_set_value(
const struct fx_property_p *prop,
fx_value *container,
fx_value *new_value)
{
if (!prop->prop_setter) {
return FX_ERR_NOT_SUPPORTED;
}
return prop->prop_setter(container, prop->prop_self, new_value);
}
/*** PUBLIC FUNCTIONS *********************************************************/
fx_property *fx_property_create(
const char *name,
fx_property_getter getter,
fx_property_setter setter)
{
fx_property *prop = fx_object_create(FX_REFLECTION_TYPE_PROPERTY);
if (!prop) {
return NULL;
}
struct fx_property_p *p = fx_object_get_private(
prop,
FX_REFLECTION_TYPE_PROPERTY);
p->prop_name = fx_strdup(name);
if (!p->prop_name) {
fx_property_unref(prop);
return NULL;
}
p->prop_self = prop;
p->prop_getter = getter;
p->prop_setter = setter;
return prop;
}
const char *fx_property_get_name(const fx_property *prop)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_PROPERTY,
property_get_name,
prop);
}
fx_status fx_property_get_value(
const fx_property *prop,
const fx_value *container,
fx_value *out)
{
FX_CLASS_DISPATCH_STATIC(
FX_REFLECTION_TYPE_PROPERTY,
property_get_value,
prop,
container,
out);
}
fx_status fx_property_set_value(
const fx_property *prop,
fx_value *container,
fx_value *new_value)
{
FX_CLASS_DISPATCH_STATIC(
FX_REFLECTION_TYPE_PROPERTY,
property_set_value,
prop,
container,
new_value);
}
/*** VIRTUAL FUNCTIONS ********************************************************/
static void property_init(fx_object *obj, void *priv)
{
}
static void property_fini(fx_object *obj, void *priv)
{
struct fx_property_p *p = priv;
if (p->prop_name) {
free(p->prop_name);
p->prop_name = NULL;
}
}
/*** CLASS DEFINITION
* *********************************************************/
FX_TYPE_CLASS_BEGIN(fx_property)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_CLASS_END(fx_property)
FX_TYPE_DEFINITION_BEGIN(fx_property)
FX_TYPE_ID(0x7007a5ef, 0x3caf, 0x4215, 0x8c0b, 0xd54bf8195624);
FX_TYPE_NAME("fx.reflection.property");
FX_TYPE_CLASS(fx_property_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_property_p);
FX_TYPE_INSTANCE_INIT(property_init);
FX_TYPE_INSTANCE_FINI(property_fini);
FX_TYPE_DEFINITION_END(fx_property)
+142 -12
View File
@@ -1,3 +1,6 @@
#include <fx/type.h>
#include <fx/value-type.h>
#include <fx/value.h>
#include <platform/callvm.h> #include <platform/callvm.h>
#include <stdlib.h> #include <stdlib.h>
@@ -77,13 +80,88 @@ void callvm_push(struct callvm *vm, const fx_value *value)
return; return;
} }
switch (value->v_type.t_primitive) { if (!fx_type_is_value_type(value->v_type)) {
case FX_VALUE_TYPE_DOUBLE: push_int(vm, (uintptr_t)value->v_object);
return;
}
unsigned int value_type = __fx_type_get_value_type(value->v_type);
switch (value_type) {
case __FX_VALUE_TYPE_BOOL:
push_int(vm, value->v_bool);
break;
case __FX_VALUE_TYPE_I16:
push_int(vm, value->v_i16);
break;
case __FX_VALUE_TYPE_U16:
push_int(vm, value->v_u16);
break;
case __FX_VALUE_TYPE_I32:
push_int(vm, value->v_i32);
break;
case __FX_VALUE_TYPE_U32:
push_int(vm, value->v_u32);
break;
case __FX_VALUE_TYPE_I64:
push_int(vm, value->v_i64);
break;
case __FX_VALUE_TYPE_U64:
push_int(vm, value->v_u64);
break;
case __FX_VALUE_TYPE_IPTR:
push_int(vm, value->v_iptr);
break;
case __FX_VALUE_TYPE_UPTR:
push_int(vm, value->v_uptr);
break;
case __FX_VALUE_TYPE_SBYTE:
push_int(vm, value->v_sbyte);
break;
case __FX_VALUE_TYPE_BYTE:
push_int(vm, value->v_byte);
break;
case __FX_VALUE_TYPE_SHORT:
push_int(vm, value->v_short);
break;
case __FX_VALUE_TYPE_USHORT:
push_int(vm, value->v_ushort);
break;
case __FX_VALUE_TYPE_INT:
push_int(vm, value->v_int);
break;
case __FX_VALUE_TYPE_UINT:
push_int(vm, value->v_uint);
break;
case __FX_VALUE_TYPE_LONG:
push_int(vm, value->v_long);
break;
case __FX_VALUE_TYPE_ULONG:
push_int(vm, value->v_ulong);
break;
case __FX_VALUE_TYPE_LONGLONG:
push_int(vm, value->v_longlong);
break;
case __FX_VALUE_TYPE_ULONGLONG:
push_int(vm, value->v_ulonglong);
break;
case __FX_VALUE_TYPE_SIZE:
push_int(vm, value->v_size);
break;
case __FX_VALUE_TYPE_FLOAT:
push_double(vm, value->v_float);
break;
case __FX_VALUE_TYPE_DOUBLE:
push_double(vm, value->v_double); push_double(vm, value->v_double);
break; break;
default: case __FX_VALUE_TYPE_CSTR:
push_int(vm, (uintptr_t)value->v_cstr);
break;
case __FX_VALUE_TYPE_POINTER:
push_int(vm, (uintptr_t)value->v_pointer); push_int(vm, (uintptr_t)value->v_pointer);
break; break;
default:
break;
} }
} }
@@ -94,17 +172,69 @@ extern void callvm_invoke_v(fx_function_impl impl, struct callvm *vm);
fx_value callvm_invoke( fx_value callvm_invoke(
struct callvm *vm, struct callvm *vm,
fx_function_impl impl, fx_function_impl impl,
fx_value_type return_type) fx_type_id return_type)
{ {
switch (return_type) { if (!fx_type_is_value_type(return_type)) {
case FX_VALUE_TYPE_NONE: uintptr_t v = callvm_invoke_i(impl, vm);
callvm_invoke_v(impl, vm); fx_value result = {
break; .v_type = return_type,
case FX_VALUE_TYPE_DOUBLE: .v_object = (fx_object *)v,
return FX_VALUE_DOUBLE(callvm_invoke_d(impl, vm)); };
default: return result;
return FX_VALUE_INT(callvm_invoke_i(impl, vm));
} }
unsigned int value_type = __fx_type_get_value_type(return_type);
switch (value_type) {
case __FX_VALUE_TYPE_BOOL:
return FX_BOOL(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I16:
return FX_I16(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U16:
return FX_U16(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I32:
return FX_I32(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U32:
return FX_U32(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I64:
return FX_I64(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U64:
return FX_U64(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_IPTR:
return FX_IPTR(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_UPTR:
return FX_UPTR(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SBYTE:
return FX_SBYTE(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_BYTE:
return FX_BYTE(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SHORT:
return FX_SHORT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_USHORT:
return FX_USHORT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_INT:
return FX_INT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_UINT:
return FX_UINT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_LONG:
return FX_LONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_ULONG:
return FX_ULONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_LONGLONG:
return FX_LONGLONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_ULONGLONG:
return FX_ULONGLONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SIZE:
return FX_SIZE(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_FLOAT:
return FX_FLOAT(callvm_invoke_d(impl, vm));
case __FX_VALUE_TYPE_DOUBLE:
return FX_DOUBLE(callvm_invoke_d(impl, vm));
case __FX_VALUE_TYPE_CSTR:
return FX_CSTR((const char *)callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_POINTER:
return FX_POINTER((void *)callvm_invoke_i(impl, vm));
default:
return FX_VALUE_EMPTY; return FX_VALUE_EMPTY;
} }
}
@@ -5,6 +5,11 @@
#include <fx/value.h> #include <fx/value.h>
#include <stdint.h> #include <stdint.h>
#define CALLVM_INVOKE_PROTOTYPE(suffix) \
fx_value callvm_invoke_##suffix( \
struct callvm *vm, \
fx_function_impl impl)
#define MAX_FIXED_ARGS ((unsigned int)-1) #define MAX_FIXED_ARGS ((unsigned int)-1)
#define MAX_DOUBLE_ARGS 8 #define MAX_DOUBLE_ARGS 8
#define MAX_INT_ARGS 8 #define MAX_INT_ARGS 8
@@ -26,11 +31,13 @@ struct callvm {
uintptr_t *vm_arg_excess; uintptr_t *vm_arg_excess;
}; };
typedef fx_value (*callvm_invoke_impl)(struct callvm *, fx_function_impl);
extern void callvm_reset(struct callvm *vm, unsigned int max_fixed_args); extern void callvm_reset(struct callvm *vm, unsigned int max_fixed_args);
extern void callvm_push(struct callvm *vm, const fx_value *value); extern void callvm_push(struct callvm *vm, const fx_value *value);
extern fx_value callvm_invoke( extern fx_value callvm_invoke(
struct callvm *vm, struct callvm *vm,
fx_function_impl impl, fx_function_impl impl,
fx_value_type return_type); fx_type_id return_type);
#endif #endif
+142 -11
View File
@@ -1,3 +1,5 @@
#include <fx/type.h>
#include <fx/value-type.h>
#include <platform/callvm.h> #include <platform/callvm.h>
#include <stdlib.h> #include <stdlib.h>
@@ -77,13 +79,88 @@ static void push_double(struct callvm* vm, double value)
void callvm_push(struct callvm *vm, const fx_value *value) void callvm_push(struct callvm *vm, const fx_value *value)
{ {
switch (value->v_type.t_primitive) { if (!fx_type_is_value_type(value->v_type)) {
case FX_VALUE_TYPE_DOUBLE: push_int(vm, (uintptr_t)value->v_object);
return;
}
unsigned int value_type = __fx_type_get_value_type(value->v_type);
switch (value_type) {
case __FX_VALUE_TYPE_BOOL:
push_int(vm, value->v_bool);
break;
case __FX_VALUE_TYPE_I16:
push_int(vm, value->v_i16);
break;
case __FX_VALUE_TYPE_U16:
push_int(vm, value->v_u16);
break;
case __FX_VALUE_TYPE_I32:
push_int(vm, value->v_i32);
break;
case __FX_VALUE_TYPE_U32:
push_int(vm, value->v_u32);
break;
case __FX_VALUE_TYPE_I64:
push_int(vm, value->v_i64);
break;
case __FX_VALUE_TYPE_U64:
push_int(vm, value->v_u64);
break;
case __FX_VALUE_TYPE_IPTR:
push_int(vm, value->v_iptr);
break;
case __FX_VALUE_TYPE_UPTR:
push_int(vm, value->v_uptr);
break;
case __FX_VALUE_TYPE_SBYTE:
push_int(vm, value->v_sbyte);
break;
case __FX_VALUE_TYPE_BYTE:
push_int(vm, value->v_byte);
break;
case __FX_VALUE_TYPE_SHORT:
push_int(vm, value->v_short);
break;
case __FX_VALUE_TYPE_USHORT:
push_int(vm, value->v_ushort);
break;
case __FX_VALUE_TYPE_INT:
push_int(vm, value->v_int);
break;
case __FX_VALUE_TYPE_UINT:
push_int(vm, value->v_uint);
break;
case __FX_VALUE_TYPE_LONG:
push_int(vm, value->v_long);
break;
case __FX_VALUE_TYPE_ULONG:
push_int(vm, value->v_ulong);
break;
case __FX_VALUE_TYPE_LONGLONG:
push_int(vm, value->v_longlong);
break;
case __FX_VALUE_TYPE_ULONGLONG:
push_int(vm, value->v_ulonglong);
break;
case __FX_VALUE_TYPE_SIZE:
push_int(vm, value->v_size);
break;
case __FX_VALUE_TYPE_FLOAT:
push_double(vm, value->v_float);
break;
case __FX_VALUE_TYPE_DOUBLE:
push_double(vm, value->v_double); push_double(vm, value->v_double);
break; break;
default: case __FX_VALUE_TYPE_CSTR:
push_int(vm, (uintptr_t)value->v_cstr);
break;
case __FX_VALUE_TYPE_POINTER:
push_int(vm, (uintptr_t)value->v_pointer); push_int(vm, (uintptr_t)value->v_pointer);
break; break;
default:
break;
} }
} }
@@ -94,16 +171,70 @@ extern void callvm_invoke_v(fx_function_impl impl, struct callvm* vm);
fx_value callvm_invoke( fx_value callvm_invoke(
struct callvm *vm, struct callvm *vm,
fx_function_impl impl, fx_function_impl impl,
fx_value_type return_type) fx_type_id return_type)
{ {
switch (return_type) { if (!fx_type_is_value_type(return_type)) {
case FX_VALUE_TYPE_NONE: uintptr_t v = callvm_invoke_i(impl, vm);
callvm_invoke_v(impl, vm); fx_value result = {
break; .v_type = return_type,
case FX_VALUE_TYPE_DOUBLE: .v_object = (fx_object *)v,
return FX_VALUE_DOUBLE(callvm_invoke_d(impl, vm)); };
return result;
}
unsigned int value_type = __fx_type_get_value_type(return_type);
switch (value_type) {
case __FX_VALUE_TYPE_BOOL:
return FX_BOOL(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I16:
return FX_I16(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U16:
return FX_U16(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I32:
return FX_I32(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U32:
return FX_U32(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I64:
return FX_I64(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U64:
return FX_U64(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_IPTR:
return FX_IPTR(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_UPTR:
return FX_UPTR(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SBYTE:
return FX_SBYTE(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_BYTE:
return FX_BYTE(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SHORT:
return FX_SHORT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_USHORT:
return FX_USHORT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_INT:
return FX_INT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_UINT:
return FX_UINT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_LONG:
return FX_LONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_ULONG:
return FX_ULONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_LONGLONG:
return FX_LONGLONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_ULONGLONG:
return FX_ULONGLONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SIZE:
return FX_SIZE(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_FLOAT:
return FX_FLOAT(callvm_invoke_d(impl, vm));
case __FX_VALUE_TYPE_DOUBLE:
return FX_DOUBLE(callvm_invoke_d(impl, vm));
case __FX_VALUE_TYPE_CSTR:
return FX_CSTR((const char *)callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_POINTER:
return FX_POINTER((void *)callvm_invoke_i(impl, vm));
default: default:
return FX_VALUE_INT(callvm_invoke_i(impl, vm)); return FX_VALUE_EMPTY;
} }
return FX_VALUE_EMPTY; return FX_VALUE_EMPTY;
@@ -32,6 +32,6 @@ extern void callvm_push(struct callvm *vm, const fx_value *value);
extern fx_value callvm_invoke( extern fx_value callvm_invoke(
struct callvm *vm, struct callvm *vm,
fx_function_impl impl, fx_function_impl impl,
fx_value_type return_type); fx_type_id return_type);
#endif #endif
+95
View File
@@ -0,0 +1,95 @@
.extern memcpy
.type memcpy, @function
.global callvm_invoke_i
.type callvm_invoke_i, @function
# %rdi = (function ptr) impl
# %rsi = (struct callvm) context
callvm_invoke_i:
# save the stack frame pointer
push %rbp
mov %rsp, %rbp
# store function pointer for later
push %r12
push %r13
push %r14
push %r15
# move our parameters out of the way
mov %rdi, %r11
mov %rsi, %r12
# calculate the amount of stack space needed for the varargs
movq 32(%r12), %r13
shl $3, %r13
# allocate the stack space
push %rsp
sub %r13, %rsp
andq $0xFFFFFFFFFFFFFFF0, %rsp # re-align the stack
# copy the excess args to the stack
mov %rsp, %rdi
mov 160(%r12), %rsi
mov %r13, %rdx
call memcpy
# Next, set up the fixed integer arguments
movq 48(%r12), %rdi # int arg 0
movq 56(%r12), %rsi # int arg 1
movq 64(%r12), %rdx # int arg 2
movq 72(%r12), %rcx # int arg 3
movq 80(%r12), %r8 # int arg 4
movq 88(%r12), %r9 # int arg 5
# Finally, set up the fixed double arguments
movq 96(%r12), %xmm0 # double arg 0
movq 104(%r12), %xmm1 # double arg 1
movq 112(%r12), %xmm2 # double arg 2
movq 120(%r12), %xmm3 # double arg 3
movq 128(%r12), %xmm4 # double arg 4
movq 136(%r12), %xmm5 # double arg 5
movq 144(%r12), %xmm6 # double arg 6
movq 152(%r12), %xmm7 # double arg 7
# set the number of vararg double parameters
# as required by the ABI
mov 168(%r12), %rax
# call the function implementation
call *%r11
# Restore the stack pointer (deallocating the varargs buffer)
mov -40(%rbp), %rsp
# Restore callee-saved registers
pop %r15
pop %r14
pop %r13
pop %r12
# restore the saved stack frame
pop %rbp
ret
.global callvm_invoke_d
.type callvm_invoke_d, @function
# %rdi = (function ptr) impl
# %rsi = (struct callvm *) context
callvm_invoke_d:
jmp callvm_invoke_i
.global callvm_invoke_v
.type callvm_invoke_v, @function
# %rdi = (function ptr) impl
# %rsi = (struct callvm *) context
callvm_invoke_v:
jmp callvm_invoke_i
+243
View File
@@ -0,0 +1,243 @@
#include <fx/type.h>
#include <fx/value-type.h>
#include <platform/callvm.h>
#include <stdlib.h>
#if 0
switch (arg->v_type.t_primitive) {
case FX_VALUE_TYPE_DOUBLE:
break;
default:
callvm_push_int(&vm, (uintptr_t)arg->v_pointer);
break;
}
#endif
void callvm_reset(struct callvm *vm, unsigned int max_fixed_args)
{
vm->vm_arg_int_count = 0;
vm->vm_arg_double_count = 0;
vm->vm_arg_fixed = max_fixed_args;
vm->vm_arg_excess_count = 0;
vm->vm_double_excess_count = 0;
}
static void expand_excess(struct callvm *vm)
{
size_t new_capacity = vm->vm_arg_excess_max * 2;
if (!new_capacity) {
new_capacity = 4;
}
void *buf = realloc(
vm->vm_arg_excess,
new_capacity * sizeof *vm->vm_arg_excess);
if (!buf) {
return;
}
vm->vm_arg_excess = buf;
vm->vm_arg_excess_max = new_capacity;
}
static void push_excess(struct callvm *vm, uintptr_t value)
{
if (vm->vm_arg_excess_count + 1 > vm->vm_arg_excess_max) {
expand_excess(vm);
}
vm->vm_arg_excess[vm->vm_arg_excess_count++] = value;
vm->vm_arg_count++;
}
static void push_int(struct callvm *vm, uintptr_t value)
{
if (vm->vm_arg_int_count >= MAX_INT_ARGS) {
push_excess(vm, value);
return;
}
vm->vm_arg_int[vm->vm_arg_int_count++] = value;
vm->vm_arg_count++;
}
static void push_double(struct callvm *vm, double value)
{
if (vm->vm_arg_double_count >= MAX_DOUBLE_ARGS) {
push_excess(vm, *(uintptr_t *)&value);
return;
}
vm->vm_arg_double[vm->vm_arg_double_count++] = value;
vm->vm_arg_count++;
if (vm->vm_arg_count > vm->vm_arg_fixed) {
vm->vm_double_excess_count++;
}
}
void callvm_push(struct callvm *vm, const fx_value *value)
{
if (!fx_type_is_value_type(value->v_type)) {
push_int(vm, (uintptr_t)value->v_object);
return;
}
unsigned int value_type = __fx_type_get_value_type(value->v_type);
switch (value_type) {
case __FX_VALUE_TYPE_BOOL:
push_int(vm, value->v_bool);
break;
case __FX_VALUE_TYPE_I16:
push_int(vm, value->v_i16);
break;
case __FX_VALUE_TYPE_U16:
push_int(vm, value->v_u16);
break;
case __FX_VALUE_TYPE_I32:
push_int(vm, value->v_i32);
break;
case __FX_VALUE_TYPE_U32:
push_int(vm, value->v_u32);
break;
case __FX_VALUE_TYPE_I64:
push_int(vm, value->v_i64);
break;
case __FX_VALUE_TYPE_U64:
push_int(vm, value->v_u64);
break;
case __FX_VALUE_TYPE_IPTR:
push_int(vm, value->v_iptr);
break;
case __FX_VALUE_TYPE_UPTR:
push_int(vm, value->v_uptr);
break;
case __FX_VALUE_TYPE_SBYTE:
push_int(vm, value->v_sbyte);
break;
case __FX_VALUE_TYPE_BYTE:
push_int(vm, value->v_byte);
break;
case __FX_VALUE_TYPE_SHORT:
push_int(vm, value->v_short);
break;
case __FX_VALUE_TYPE_USHORT:
push_int(vm, value->v_ushort);
break;
case __FX_VALUE_TYPE_INT:
push_int(vm, value->v_int);
break;
case __FX_VALUE_TYPE_UINT:
push_int(vm, value->v_uint);
break;
case __FX_VALUE_TYPE_LONG:
push_int(vm, value->v_long);
break;
case __FX_VALUE_TYPE_ULONG:
push_int(vm, value->v_ulong);
break;
case __FX_VALUE_TYPE_LONGLONG:
push_int(vm, value->v_longlong);
break;
case __FX_VALUE_TYPE_ULONGLONG:
push_int(vm, value->v_ulonglong);
break;
case __FX_VALUE_TYPE_SIZE:
push_int(vm, value->v_size);
break;
case __FX_VALUE_TYPE_FLOAT:
push_double(vm, value->v_float);
break;
case __FX_VALUE_TYPE_DOUBLE:
push_double(vm, value->v_double);
break;
case __FX_VALUE_TYPE_CSTR:
push_int(vm, (uintptr_t)value->v_cstr);
break;
case __FX_VALUE_TYPE_POINTER:
push_int(vm, (uintptr_t)value->v_pointer);
break;
default:
break;
}
}
extern uintptr_t callvm_invoke_i(fx_function_impl impl, struct callvm *vm);
extern double callvm_invoke_d(fx_function_impl impl, struct callvm *vm);
extern void callvm_invoke_v(fx_function_impl impl, struct callvm *vm);
fx_value callvm_invoke(
struct callvm *vm,
fx_function_impl impl,
fx_type_id return_type)
{
if (!fx_type_is_value_type(return_type)) {
uintptr_t v = callvm_invoke_i(impl, vm);
fx_value result = {
.v_type = return_type,
.v_object = (fx_object *)v,
};
return result;
}
unsigned int value_type = __fx_type_get_value_type(return_type);
switch (value_type) {
case __FX_VALUE_TYPE_BOOL:
return FX_BOOL(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I16:
return FX_I16(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U16:
return FX_U16(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I32:
return FX_I32(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U32:
return FX_U32(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_I64:
return FX_I64(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_U64:
return FX_U64(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_IPTR:
return FX_IPTR(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_UPTR:
return FX_UPTR(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SBYTE:
return FX_SBYTE(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_BYTE:
return FX_BYTE(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SHORT:
return FX_SHORT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_USHORT:
return FX_USHORT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_INT:
return FX_INT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_UINT:
return FX_UINT(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_LONG:
return FX_LONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_ULONG:
return FX_ULONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_LONGLONG:
return FX_LONGLONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_ULONGLONG:
return FX_ULONGLONG(callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_SIZE:
return FX_SIZE(callvm_invoke_i(impl, vm));
#if FX_ENABLE_FLOATING_POINT
case __FX_VALUE_TYPE_FLOAT:
return FX_FLOAT(callvm_invoke_d(impl, vm));
case __FX_VALUE_TYPE_DOUBLE:
return FX_DOUBLE(callvm_invoke_d(impl, vm));
#endif
case __FX_VALUE_TYPE_CSTR:
return FX_CSTR((const char *)callvm_invoke_i(impl, vm));
case __FX_VALUE_TYPE_POINTER:
return FX_POINTER((void *)callvm_invoke_i(impl, vm));
default:
return FX_VALUE_EMPTY;
}
return FX_VALUE_EMPTY;
}
@@ -0,0 +1,37 @@
#ifndef FX_REFLECTION_DARWIN_ARM64_CALLVM_H_
#define FX_REFLECTION_DARWIN_ARM64_CALLVM_H_
#include <fx/reflection/function.h>
#include <fx/value.h>
#include <stdint.h>
#define MAX_FIXED_ARGS ((unsigned int)-1)
#define MAX_DOUBLE_ARGS 8
#define MAX_INT_ARGS 6
/* dyn-dispatch.S depends on the layout of this struct */
struct callvm {
uint64_t vm_arg_int_count;
uint64_t vm_arg_double_count;
/* any args pushed after this limit is reached will be stored in the
* excess buffer. used for calling varargs functions */
uint64_t vm_arg_count, vm_arg_fixed;
uint64_t vm_arg_excess_count;
uint64_t vm_arg_excess_max;
uintptr_t vm_arg_int[MAX_INT_ARGS];
double vm_arg_double[MAX_DOUBLE_ARGS];
uintptr_t *vm_arg_excess;
uint64_t vm_double_excess_count;
};
extern void callvm_reset(struct callvm *vm, unsigned int max_fixed_args);
extern void callvm_push(struct callvm *vm, const fx_value *value);
extern fx_value callvm_invoke(
struct callvm *vm,
fx_function_impl impl,
fx_type_id return_type);
#endif
+337 -6
View File
@@ -1,11 +1,44 @@
#include "../fx/type.h"
#include <fx/macros.h> #include <fx/macros.h>
#include <fx/reflection/type.h> #include <fx/reflection/type.h>
#include <fx/type.h> #include <fx/type.h>
struct fx_type_registration; struct fx_type_registration;
#define FX_REFLECTION_TYPE_TYPE_FUNCTION_ITERATOR \
(fx_type_function_iterator_get_type())
#define FX_REFLECTION_TYPE_TYPE_PROPERTY_ITERATOR \
(fx_type_property_iterator_get_type())
FX_DECLARE_TYPE(fx_type_function_iterator);
FX_DECLARE_TYPE(fx_type_property_iterator);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_type_function_iterator)
FX_TYPE_CLASS_DECLARATION_END(fx_type_function_iterator)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_type_property_iterator)
FX_TYPE_CLASS_DECLARATION_END(fx_type_property_iterator)
FX_API fx_type_id fx_type_function_iterator_get_type();
FX_API fx_type_id fx_type_property_iterator_get_type();
struct fx_type_p { struct fx_type_p {
struct fx_type_info *ty_info; struct fx_type_info *ty_info;
fx_assembly *ty_assembly;
};
struct fx_type_function_iterator_p {
struct fx_namemap *it_src;
struct fx_namemap_entry *it_cur;
fx_value it_value;
};
struct fx_type_property_iterator_p {
const fx_type_info *it_cur_type;
struct fx_namemap *it_src;
struct fx_namemap_entry *it_cur;
fx_value it_value;
}; };
/*** PRIVATE FUNCTIONS ********************************************************/ /*** PRIVATE FUNCTIONS ********************************************************/
@@ -16,11 +49,27 @@ extern fx_function *fx_type_info_get_function_by_name(
const struct fx_type_info *ty, const struct fx_type_info *ty,
const char *name); const char *name);
static const fx_assembly *type_get_assembly(const struct fx_type_p *ty)
{
return ty->ty_assembly;
}
static fx_status type_set_assembly(struct fx_type_p *ty, fx_assembly *assembly)
{
ty->ty_assembly = assembly;
return FX_SUCCESS;
}
static const char *type_get_name(const struct fx_type_p *ty) static const char *type_get_name(const struct fx_type_p *ty)
{ {
return ty->ty_info->ty_name; return ty->ty_info->ty_name;
} }
static fx_type_flags type_get_flags(const struct fx_type_p *ty)
{
return ty->ty_info->ty_flags;
}
const fx_function *type_get_function( const fx_function *type_get_function(
const struct fx_type_p *ty, const struct fx_type_p *ty,
const char *name) const char *name)
@@ -28,6 +77,102 @@ const fx_function *type_get_function(
return fx_type_info_get_function_by_name(ty->ty_info, name); return fx_type_info_get_function_by_name(ty->ty_info, name);
} }
fx_iterator *type_get_functions(const struct fx_type_p *ty)
{
fx_type_function_iterator *it_obj
= fx_object_create(FX_REFLECTION_TYPE_TYPE_FUNCTION_ITERATOR);
struct fx_type_function_iterator_p *it = fx_object_get_private(
it_obj,
FX_REFLECTION_TYPE_TYPE_FUNCTION_ITERATOR);
it->it_src = &ty->ty_info->ty_functions;
it->it_cur = fx_namemap_first(it->it_src);
return it_obj;
}
const fx_property *type_get_property(
const struct fx_type_p *ty,
const char *name)
{
struct fx_type_info *cur = ty->ty_info;
while (cur) {
const fx_property *prop
= fx_type_info_get_property_by_name(cur, name);
if (prop) {
return prop;
}
if (fx_type_id_compare(&cur->ty_id, FX_TYPE_OBJECT) == 0) {
break;
}
cur = fx_type_info_get_by_id(&cur->ty_parent_id);
}
return NULL;
}
static fx_iterator *type_get_properties(const struct fx_type_p *ty)
{
fx_type_property_iterator *it_obj
= fx_object_create(FX_REFLECTION_TYPE_TYPE_PROPERTY_ITERATOR);
struct fx_type_property_iterator_p *it = fx_object_get_private(
it_obj,
FX_REFLECTION_TYPE_TYPE_PROPERTY_ITERATOR);
it->it_cur_type = ty->ty_info;
it->it_src = &ty->ty_info->ty_properties;
it->it_cur = fx_namemap_first(it->it_src);
while (!it->it_cur) {
if (fx_type_id_compare(&it->it_cur_type->ty_id, FX_TYPE_OBJECT)
== 0) {
break;
}
const struct fx_type_info *next_type
= fx_type_info_get_by_id(&it->it_cur_type
->ty_parent_id);
if (!next_type) {
break;
}
it->it_cur_type = next_type;
it->it_cur = fx_namemap_first(&it->it_cur_type->ty_properties);
}
if (!it->it_cur) {
fx_iterator_set_status(it_obj, FX_ERR_NO_DATA);
}
struct fx_type_property *prop
= fx_unbox(struct fx_type_property, it->it_cur, p_entry);
it->it_value = FX_VALUE_OBJECT_REF(prop->p_prop);
return it_obj;
}
static fx_type_id type_get_id(const struct fx_type_p *ty)
{
return &ty->ty_info->ty_id;
}
static const fx_type *type_get_parent(const struct fx_type_p *ty)
{
if (fx_type_id_compare(&ty->ty_info->ty_id, FX_TYPE_OBJECT) == 0) {
return NULL;
}
return fx_type_get_by_id(&ty->ty_info->ty_parent_id);
}
static void *type_get_interface(
const struct fx_type_p *ty,
fx_type_id interface_id)
{
return fx_class_get_interface(ty->ty_info->ty_class, interface_id);
}
/*** PUBLIC FUNCTIONS *********************************************************/ /*** PUBLIC FUNCTIONS *********************************************************/
fx_type *__fx_type_create(struct fx_type_info *type_info) fx_type *__fx_type_create(struct fx_type_info *type_info)
@@ -37,19 +182,40 @@ fx_type *__fx_type_create(struct fx_type_info *type_info)
return NULL; return NULL;
} }
struct fx_type_p *p = fx_object_get_private( struct fx_type_p *p
out, = fx_object_get_private(out, FX_REFLECTION_TYPE_TYPE);
FX_REFLECTION_TYPE_TYPE);
p->ty_info = type_info; p->ty_info = type_info;
return out; return out;
} }
const fx_assembly *fx_type_get_assembly(const fx_type *ty)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_TYPE,
type_get_assembly,
ty);
}
fx_status fx_type_set_assembly(fx_type *ty, fx_assembly *assembly)
{
FX_CLASS_DISPATCH_STATIC(
FX_REFLECTION_TYPE_TYPE,
type_set_assembly,
ty,
assembly);
}
const char *fx_type_get_name(const fx_type *ty) const char *fx_type_get_name(const fx_type *ty)
{ {
FX_CLASS_DISPATCH_STATIC_0(FX_REFLECTION_TYPE_TYPE, type_get_name, ty); FX_CLASS_DISPATCH_STATIC_0(FX_REFLECTION_TYPE_TYPE, type_get_name, ty);
} }
fx_type_flags fx_type_get_flags(const fx_type *ty)
{
FX_CLASS_DISPATCH_STATIC_0(FX_REFLECTION_TYPE_TYPE, type_get_flags, ty);
}
const fx_function *fx_type_get_function(const fx_type *ty, const char *name) const fx_function *fx_type_get_function(const fx_type *ty, const char *name)
{ {
FX_CLASS_DISPATCH_STATIC( FX_CLASS_DISPATCH_STATIC(
@@ -59,6 +225,31 @@ const fx_function *fx_type_get_function(const fx_type *ty, const char *name)
name); name);
} }
fx_iterator *fx_type_get_functions(const fx_type *ty)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_TYPE,
type_get_functions,
ty);
}
const fx_property *fx_type_get_property(const fx_type *ty, const char *name)
{
FX_CLASS_DISPATCH_STATIC(
FX_REFLECTION_TYPE_TYPE,
type_get_property,
ty,
name);
}
fx_iterator *fx_type_get_properties(const fx_type *ty)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_TYPE,
type_get_properties,
ty);
}
const fx_type *fx_type_get_by_id(fx_type_id id) const fx_type *fx_type_get_by_id(fx_type_id id)
{ {
struct fx_type_info *ty = fx_type_info_get_by_id(id); struct fx_type_info *ty = fx_type_info_get_by_id(id);
@@ -71,6 +262,28 @@ const fx_type *fx_type_get_by_name(const char *name)
return ty ? ty->ty_metatype : NULL; return ty ? ty->ty_metatype : NULL;
} }
fx_type_id fx_type_get_id(const fx_type *ty)
{
FX_CLASS_DISPATCH_STATIC_0(FX_REFLECTION_TYPE_TYPE, type_get_id, ty);
}
const fx_type *fx_type_get_parent(const fx_type *ty)
{
FX_CLASS_DISPATCH_STATIC_0(
FX_REFLECTION_TYPE_TYPE,
type_get_parent,
ty);
}
void *fx_type_get_interface(const fx_type *ty, fx_type_id interface_id)
{
FX_CLASS_DISPATCH_STATIC(
FX_REFLECTION_TYPE_TYPE,
type_get_interface,
ty,
interface_id);
}
/*** VIRTUAL FUNCTIONS ********************************************************/ /*** VIRTUAL FUNCTIONS ********************************************************/
static void type_init(fx_object *obj, void *priv) static void type_init(fx_object *obj, void *priv)
@@ -81,12 +294,98 @@ static void type_fini(fx_object *obj, void *priv)
{ {
} }
/*** ITERATOR FUNCTIONS *******************************************************/
static enum fx_status function_iterator_move_next(const fx_iterator *obj)
{
struct fx_type_function_iterator_p *it = fx_object_get_private(
obj,
FX_REFLECTION_TYPE_TYPE_FUNCTION_ITERATOR);
if (!it->it_cur) {
return FX_ERR_NO_DATA;
}
fx_value_unset(&it->it_value);
it->it_cur = fx_namemap_next(it->it_src, it->it_cur);
if (!it->it_cur) {
return FX_ERR_NO_DATA;
}
struct fx_type_function *func
= fx_unbox(struct fx_type_function, it->it_cur, f_entry);
it->it_value = FX_VALUE_OBJECT_REF(func->f_func);
return FX_SUCCESS;
}
static const fx_value *function_iterator_get_value(const fx_iterator *obj)
{
struct fx_type_function_iterator_p *it = fx_object_get_private(
obj,
FX_REFLECTION_TYPE_TYPE_FUNCTION_ITERATOR);
if (!it->it_cur) {
return NULL;
}
return &it->it_value;
}
static enum fx_status property_iterator_move_next(const fx_iterator *obj)
{
struct fx_type_property_iterator_p *it = fx_object_get_private(
obj,
FX_REFLECTION_TYPE_TYPE_PROPERTY_ITERATOR);
if (!it->it_cur) {
return FX_ERR_NO_DATA;
}
it->it_cur = fx_namemap_next(it->it_src, it->it_cur);
if (!it->it_cur) {
if (fx_type_id_compare(&it->it_cur_type->ty_id, FX_TYPE_OBJECT)
== 0) {
return FX_ERR_NO_DATA;
}
const struct fx_type_info *next_type
= fx_type_info_get_by_id(&it->it_cur_type
->ty_parent_id);
if (!next_type) {
return FX_ERR_NO_DATA;
}
it->it_cur_type = next_type;
it->it_cur = fx_namemap_first(&it->it_cur_type->ty_properties);
}
if (!it->it_cur) {
return FX_ERR_NO_DATA;
}
struct fx_type_property *prop
= fx_unbox(struct fx_type_property, it->it_cur, p_entry);
it->it_value = FX_VALUE_OBJECT_REF(prop->p_prop);
return FX_SUCCESS;
}
static const fx_value *property_iterator_get_value(const fx_iterator *obj)
{
struct fx_type_property_iterator_p *it = fx_object_get_private(
obj,
FX_REFLECTION_TYPE_TYPE_PROPERTY_ITERATOR);
if (!it->it_cur) {
return NULL;
}
struct fx_type_property *prop
= fx_unbox(struct fx_type_property, it->it_cur, p_entry);
return &it->it_value;
}
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
FX_TYPE_CLASS_BEGIN(fx_type) FX_TYPE_CLASS_BEGIN(fx_type)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_CLASS_END(fx_type) FX_TYPE_CLASS_END(fx_type)
FX_TYPE_DEFINITION_BEGIN(fx_type) FX_TYPE_DEFINITION_BEGIN(fx_type)
@@ -97,3 +396,35 @@ FX_TYPE_DEFINITION_BEGIN(fx_type)
FX_TYPE_INSTANCE_INIT(type_init); FX_TYPE_INSTANCE_INIT(type_init);
FX_TYPE_INSTANCE_FINI(type_fini); FX_TYPE_INSTANCE_FINI(type_fini);
FX_TYPE_DEFINITION_END(fx_type) FX_TYPE_DEFINITION_END(fx_type)
FX_TYPE_CLASS_BEGIN(fx_type_function_iterator)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterator, FX_TYPE_ITERATOR)
FX_INTERFACE_ENTRY(it_move_next) = function_iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = NULL;
FX_INTERFACE_ENTRY(it_get_value) = function_iterator_get_value;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_type_function_iterator)
FX_TYPE_DEFINITION_BEGIN(fx_type_function_iterator)
FX_TYPE_ID(0xb29012d5, 0x4d6c, 0x4e3c, 0x9fe5, 0x7d1a8a9e1075);
FX_TYPE_NAME("fx.reflection.type.function_iterator");
FX_TYPE_EXTENDS(FX_TYPE_ITERATOR);
FX_TYPE_CLASS(fx_type_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_type_function_iterator_p);
FX_TYPE_DEFINITION_END(fx_type_function_iterator)
FX_TYPE_CLASS_BEGIN(fx_type_property_iterator)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_iterator, FX_TYPE_ITERATOR)
FX_INTERFACE_ENTRY(it_move_next) = property_iterator_move_next;
FX_INTERFACE_ENTRY(it_erase) = NULL;
FX_INTERFACE_ENTRY(it_get_value) = property_iterator_get_value;
FX_TYPE_VTABLE_INTERFACE_END(fx_iterator, FX_TYPE_ITERATOR)
FX_TYPE_CLASS_END(fx_type_property_iterator)
FX_TYPE_DEFINITION_BEGIN(fx_type_property_iterator)
FX_TYPE_ID(0x91fcbdd4, 0x7c54, 0x48c2, 0xa5a4, 0x186f76efd84c);
FX_TYPE_NAME("fx.reflection.type.property_iterator");
FX_TYPE_EXTENDS(FX_TYPE_ITERATOR);
FX_TYPE_CLASS(fx_type_property_iterator_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_type_property_iterator_p);
FX_TYPE_DEFINITION_END(fx_type_property_iterator)
+2 -2
View File
@@ -5,7 +5,7 @@
static struct fx_error *bitcode_serialise( static struct fx_error *bitcode_serialise(
fx_serial_ctx *serial, fx_serial_ctx *serial,
fx_object *src, const fx_value *src,
fx_stream *dest, fx_stream *dest,
enum fx_serial_flags flags) enum fx_serial_flags flags)
{ {
@@ -15,7 +15,7 @@ static struct fx_error *bitcode_serialise(
static struct fx_error *bitcode_deserialise( static struct fx_error *bitcode_deserialise(
fx_serial_ctx *serial, fx_serial_ctx *serial,
fx_stream *src, fx_stream *src,
fx_object **dest, fx_value *dest,
enum fx_serial_flags flags) enum fx_serial_flags flags)
{ {
return FX_RESULT_ERR(NOT_SUPPORTED); return FX_RESULT_ERR(NOT_SUPPORTED);
+2 -2
View File
@@ -44,7 +44,7 @@ FX_TYPE_DEFINITION_END(fx_serial_ctx)
fx_result fx_serial_ctx_serialise( fx_result fx_serial_ctx_serialise(
fx_serial_ctx *ctx, fx_serial_ctx *ctx,
fx_object *src, const fx_value *src,
fx_stream *dest, fx_stream *dest,
enum fx_serial_flags flags) enum fx_serial_flags flags)
{ {
@@ -62,7 +62,7 @@ fx_result fx_serial_ctx_serialise(
fx_result fx_serial_ctx_deserialise( fx_result fx_serial_ctx_deserialise(
fx_serial_ctx *ctx, fx_serial_ctx *ctx,
fx_stream *src, fx_stream *src,
fx_object **dest, fx_value *dest,
enum fx_serial_flags flags) enum fx_serial_flags flags)
{ {
FX_CLASS_DISPATCH_VIRTUAL( FX_CLASS_DISPATCH_VIRTUAL(
+5 -4
View File
@@ -6,6 +6,7 @@
#include <fx/object.h> #include <fx/object.h>
#include <fx/status.h> #include <fx/status.h>
#include <fx/stream.h> #include <fx/stream.h>
#include <fx/value.h>
FX_DECLS_BEGIN; FX_DECLS_BEGIN;
@@ -21,13 +22,13 @@ FX_DECLARE_TYPE(fx_serial_ctx);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_serial_ctx) FX_TYPE_CLASS_DECLARATION_BEGIN(fx_serial_ctx)
fx_result (*s_serialise)( fx_result (*s_serialise)(
fx_serial_ctx *, fx_serial_ctx *,
fx_object *, const fx_value *,
fx_stream *, fx_stream *,
fx_serial_flags); fx_serial_flags);
fx_result (*s_deserialise)( fx_result (*s_deserialise)(
fx_serial_ctx *, fx_serial_ctx *,
fx_stream *, fx_stream *,
fx_object **, fx_value *,
fx_serial_flags); fx_serial_flags);
FX_TYPE_CLASS_DECLARATION_END(fx_serial_ctx) FX_TYPE_CLASS_DECLARATION_END(fx_serial_ctx)
@@ -39,14 +40,14 @@ FX_API fx_type_id fx_serial_ctx_get_type(void);
FX_API fx_result fx_serial_ctx_serialise( FX_API fx_result fx_serial_ctx_serialise(
fx_serial_ctx *ctx, fx_serial_ctx *ctx,
fx_object *src, const fx_value *src,
fx_stream *dest, fx_stream *dest,
fx_serial_flags flags); fx_serial_flags flags);
FX_API fx_result fx_serial_ctx_deserialise( FX_API fx_result fx_serial_ctx_deserialise(
fx_serial_ctx *ctx, fx_serial_ctx *ctx,
fx_stream *src, fx_stream *src,
fx_object **dest, fx_value *dest,
fx_serial_flags flags); fx_serial_flags flags);
FX_DECLS_END; FX_DECLS_END;
+2 -1
View File
@@ -1,5 +1,4 @@
#include <fx/collections/array.h> #include <fx/collections/array.h>
#include <fx/collections/dict.h>
#include <fx/int.h> #include <fx/int.h>
#include <fx/serial/ctx.h> #include <fx/serial/ctx.h>
#include <fx/serial/toml.h> #include <fx/serial/toml.h>
@@ -9,6 +8,7 @@
int main(void) int main(void)
{ {
#if 0
fx_serial_ctx *ctx = fx_toml_serial_ctx_create(); fx_serial_ctx *ctx = fx_toml_serial_ctx_create();
fx_dict *dict = fx_dict_create(); fx_dict *dict = fx_dict_create();
@@ -33,6 +33,7 @@ int main(void)
fx_dict_unref(dict); fx_dict_unref(dict);
fx_serial_ctx_unref(ctx); fx_serial_ctx_unref(ctx);
#endif
return 0; return 0;
} }
+56 -68
View File
@@ -1,23 +1,26 @@
#include <fx/bool.h> #include <fx/bool.h>
#include <fx/collections/array.h> #include <fx/collections/array.h>
#include <fx/collections/datetime.h> #include <fx/collections/hashtable.h>
#include <fx/collections/dict.h> #include <fx/datetime.h>
#include <fx/double.h> #include <fx/float.h>
#include <fx/int.h> #include <fx/int.h>
#include <fx/serial/ctx.h> #include <fx/serial/ctx.h>
#include <fx/serial/toml.h> #include <fx/serial/toml.h>
#include <fx/string.h> #include <fx/string.h>
#include <inttypes.h> #include <inttypes.h>
#include <math.h>
void write_tagged_value(fx_object *data); void write_tagged_value(const fx_value *data);
void write_raw_string(const fx_string *data) void write_raw_string(const fx_string *data)
{ {
fx_stream_write_cstr(fx_stdout, "\"", NULL); fx_stream_write_cstr(fx_stdout, "\"", NULL);
const fx_iterator *it = fx_iterator_cbegin(data); const fx_iterator *it = fx_iterator_begin(data);
fx_foreach_c(fx_wchar, c, it) fx_foreach(val, it)
{ {
fx_wchar c;
fx_value_get_wchar(val, &c);
if (c >= 0x10000) { if (c >= 0x10000) {
c -= 0x10000; c -= 0x10000;
long hi = 0xD800 | ((c >> 10) & 0x3FF); long hi = 0xD800 | ((c >> 10) & 0x3FF);
@@ -53,68 +56,48 @@ void write_tagged_string(fx_string *data)
fx_stream_write_cstr(fx_stdout, " }", NULL); fx_stream_write_cstr(fx_stdout, " }", NULL);
} }
void write_tagged_integer(fx_int *data) void write_tagged_integer(const fx_value *data)
{ {
fx_stream_write_cstr( fx_stream_write_cstr(
fx_stdout, fx_stdout,
"{ \"type\": \"integer\", \"value\": \"", "{ \"type\": \"integer\", \"value\": \"",
NULL); NULL);
fx_stream_write_fmt(fx_stdout, NULL, "%lld", data->v_i64, NULL);
if (fx_int_is_inf_positive(data)) {
fx_stream_write_cstr(fx_stdout, "inf", NULL);
} else if (fx_int_is_inf_negative(data)) {
fx_stream_write_cstr(fx_stdout, "-inf", NULL);
} else if (fx_int_is_nan_positive(data)) {
fx_stream_write_cstr(fx_stdout, "nan", NULL);
} else if (fx_int_is_nan_negative(data)) {
fx_stream_write_cstr(fx_stdout, "-nan", NULL);
} else {
fx_stream_write_fmt(
fx_stdout,
NULL,
"%lld",
fx_int_get_value(data),
NULL);
}
fx_stream_write_cstr(fx_stdout, "\" }", NULL); fx_stream_write_cstr(fx_stdout, "\" }", NULL);
} }
void write_tagged_float(fx_double *data) void write_tagged_float(const fx_value *data)
{ {
fx_stream_write_cstr( fx_stream_write_cstr(
fx_stdout, fx_stdout,
"{ \"type\": \"float\", \"value\": \"", "{ \"type\": \"float\", \"value\": \"",
NULL); NULL);
if (fx_double_is_inf_positive(data)) { double d = data->v_double;
if (d == INFINITY) {
fx_stream_write_cstr(fx_stdout, "inf", NULL); fx_stream_write_cstr(fx_stdout, "inf", NULL);
} else if (fx_double_is_inf_negative(data)) { } else if (d == -INFINITY) {
fx_stream_write_cstr(fx_stdout, "-inf", NULL); fx_stream_write_cstr(fx_stdout, "-inf", NULL);
} else if (fx_double_is_nan_positive(data)) { } else if (d == NAN) {
fx_stream_write_cstr(fx_stdout, "nan", NULL); fx_stream_write_cstr(fx_stdout, "nan", NULL);
} else if (fx_double_is_nan_negative(data)) { } else if (d == -NAN) {
fx_stream_write_cstr(fx_stdout, "-nan", NULL); fx_stream_write_cstr(fx_stdout, "-nan", NULL);
} else if (d <= 1e-9 || d >= 1e9) {
fx_stream_write_fmt(fx_stdout, NULL, "%g", d, NULL);
} else { } else {
double v = fx_double_get_value(data); fx_stream_write_fmt(fx_stdout, NULL, "%.9lf", d, NULL);
if ((v <= 0.00000001 && v > 0) || (v >= -0.00000001 && v < 0)
|| (v >= 1000000000) || (v <= -1000000000)) {
fx_stream_write_fmt(fx_stdout, NULL, "%.15e", v, NULL);
} else {
fx_stream_write_fmt(fx_stdout, NULL, "%.15f", v, NULL);
}
} }
fx_stream_write_cstr(fx_stdout, "\" }", NULL); fx_stream_write_cstr(fx_stdout, "\" }", NULL);
} }
void write_tagged_bool(fx_bool *data) void write_tagged_bool(const fx_value *data)
{ {
fx_stream_write_fmt( fx_stream_write_fmt(
fx_stdout, fx_stdout,
NULL, NULL,
"{ \"type\": \"bool\", \"value\": \"%s\" }", "{ \"type\": \"bool\", \"value\": \"%s\" }",
fx_bool_get_value(data) ? "true" : "false", data->v_bool ? "true" : "false",
NULL); NULL);
} }
@@ -145,31 +128,37 @@ void write_tagged_datetime(fx_datetime *data)
fx_stream_write_cstr(fx_stdout, "\", \"value\": \"", NULL); fx_stream_write_cstr(fx_stdout, "\", \"value\": \"", NULL);
fx_string *new_data = fx_string_create(); fx_stringstream *new_data = fx_stringstream_create();
fx_datetime_to_string(data, FX_DATETIME_FORMAT_RFC3339, new_data); fx_datetime_to_string(data, FX_DATETIME_FORMAT_RFC3339, new_data);
fx_stream_write_cstr(fx_stdout, fx_string_get_cstr(new_data), NULL); fx_stream_write_cstr(fx_stdout, fx_stringstream_ptr(new_data), NULL);
fx_stream_write_cstr(fx_stdout, "\" }", NULL); fx_stream_write_cstr(fx_stdout, "\" }", NULL);
fx_string_unref(new_data); fx_stringstream_unref(new_data);
} }
void write_tagged_dict(fx_dict *data) void write_tagged_hashtable(fx_hashtable *data)
{ {
fx_stream_write_cstr(fx_stdout, "{ ", NULL); fx_stream_write_cstr(fx_stdout, "{ ", NULL);
int i = 0; int i = 0;
fx_iterator *it = fx_iterator_begin(data); const fx_iterator *it = fx_iterator_begin(data);
fx_foreach(fx_dict_item *, item, it) fx_foreach(v, it)
{ {
fx_hashtable_item *item;
fx_value_get_object(v, &item);
if (i++ > 0) { if (i++ > 0) {
fx_stream_write_cstr(fx_stdout, ", ", NULL); fx_stream_write_cstr(fx_stdout, ", ", NULL);
} }
write_raw_string(item->key); const fx_value *key = fx_hashtable_item_get_key(item);
const fx_value *value = fx_hashtable_item_get_value(item);
fx_string *key_str;
fx_value_get_object(key, &key_str);
write_raw_string(key_str);
fx_stream_write_cstr(fx_stdout, ": ", NULL); fx_stream_write_cstr(fx_stdout, ": ", NULL);
write_tagged_value(item->value); write_tagged_value(value);
} }
fx_iterator_unref(it); fx_iterator_unref(it);
@@ -181,35 +170,35 @@ void write_tagged_array(fx_array *data)
fx_stream_write_cstr(fx_stdout, "[ ", NULL); fx_stream_write_cstr(fx_stdout, "[ ", NULL);
int i = 0; int i = 0;
fx_iterator *it = fx_iterator_begin(data); const fx_iterator *it = fx_iterator_begin(data);
fx_foreach(fx_object *, obj, it) fx_foreach(val, it)
{ {
if (i++ > 0) { if (i++ > 0) {
fx_stream_write_cstr(fx_stdout, ", ", NULL); fx_stream_write_cstr(fx_stdout, ", ", NULL);
} }
write_tagged_value(obj); write_tagged_value(val);
} }
fx_iterator_unref(it); fx_iterator_unref(it);
fx_stream_write_cstr(fx_stdout, " ]", NULL); fx_stream_write_cstr(fx_stdout, " ]", NULL);
} }
void write_tagged_value(fx_object *data) void write_tagged_value(const fx_value *data)
{ {
if (fx_object_is_type(data, FX_TYPE_DICT)) { if (fx_value_is_type(data, FX_TYPE_HASHTABLE)) {
write_tagged_dict(data); write_tagged_hashtable(data->v_object);
} else if (fx_object_is_type(data, FX_TYPE_ARRAY)) { } else if (fx_value_is_type(data, FX_TYPE_ARRAY)) {
write_tagged_array(data); write_tagged_array(data->v_object);
} else if (fx_object_is_type(data, FX_TYPE_STRING)) { } else if (fx_value_is_type(data, FX_TYPE_STRING)) {
write_tagged_string(data); write_tagged_string(data->v_object);
} else if (fx_object_is_type(data, FX_TYPE_DATETIME)) { } else if (fx_value_is_type(data, FX_TYPE_DATETIME)) {
write_tagged_datetime(data); write_tagged_datetime(data->v_object);
} else if (fx_object_is_type(data, FX_TYPE_INT)) { } else if (fx_value_is_type(data, FX_TYPE_BOOL)) {
write_tagged_integer(data);
} else if (fx_object_is_type(data, FX_TYPE_BOOL)) {
write_tagged_bool(data); write_tagged_bool(data);
} else if (fx_object_is_type(data, FX_TYPE_DOUBLE)) { } else if (fx_value_is_type(data, FX_TYPE_I64)) {
write_tagged_integer(data);
} else if (fx_value_is_type(data, FX_TYPE_DOUBLE)) {
write_tagged_float(data); write_tagged_float(data);
} }
} }
@@ -221,19 +210,18 @@ int main(void)
fx_serial_ctx *ctx = fx_toml_serial_ctx_create(); fx_serial_ctx *ctx = fx_toml_serial_ctx_create();
fx_object *data; fx_value data;
fx_result result = fx_serial_ctx_deserialise(ctx, src, &data, 0); fx_result result = fx_serial_ctx_deserialise(ctx, src, &data, 0);
if (fx_result_is_error(result)) { if (fx_result_is_error(result)) {
fx_throw(result); return 1;
return -1;
} }
write_tagged_value(data); write_tagged_value(&data);
fx_stream_write_char(fx_stdout, '\n'); fx_stream_write_char(fx_stdout, '\n');
fx_serial_ctx_unref(ctx); fx_serial_ctx_unref(ctx);
fx_object_unref(data); fx_value_unset(&data);
return 0; return 0;
} }
+198 -179
View File
@@ -1,17 +1,17 @@
#include <fx/bool.h> #include <fx/bool.h>
#include <fx/collections/array.h> #include <fx/collections/array.h>
#include <fx/collections/datetime.h>
#include <fx/collections/dict.h>
#include <fx/collections/hashmap.h> #include <fx/collections/hashmap.h>
#include <fx/double.h> #include <fx/collections/hashtable.h>
#include <fx/datetime.h>
#include <fx/error.h> #include <fx/error.h>
#include <fx/float.h>
#include <fx/int.h> #include <fx/int.h>
#include <fx/serial/ctx.h> #include <fx/serial/ctx.h>
#include <fx/serial/toml.h> #include <fx/serial/toml.h>
#include <fx/status.h> #include <fx/status.h>
#include <fx/string.h> #include <fx/string.h>
#include <fx/stringstream.h> #include <fx/stringstream.h>
#include <fx/uint.h> #include <math.h>
#include <stdbool.h> #include <stdbool.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
@@ -117,9 +117,9 @@ struct ctx {
fx_stream *ctx_src; fx_stream *ctx_src;
fx_string *ctx_wordbuf; fx_string *ctx_wordbuf;
fx_string *ctx_linebuf; fx_string *ctx_linebuf;
fx_iterator *ctx_linebuf_ptr; const fx_iterator *ctx_linebuf_ptr;
fx_result ctx_result; fx_result ctx_result;
fx_hashmap *ctx_objects_flags; fx_hashtable *ctx_objects_flags;
fx_queue ctx_tokens; fx_queue ctx_tokens;
}; };
@@ -133,28 +133,18 @@ static void ctx_set_object_flags(
return; return;
} }
fx_hashmap_key key = { fx_value ptr = FX_POINTER(obj);
.key_data = obj, const fx_value *old_value
.key_size = sizeof(fx_object *), = fx_hashtable_get(ctx->ctx_objects_flags, &ptr);
.key_flags = FX_HASHMAP_KEY_F_INTVALUE,
};
const fx_hashmap_value *old_value
= fx_hashmap_get(ctx->ctx_objects_flags, &key);
enum object_flags new_flags = 0; enum object_flags new_flags = 0;
if (old_value) { if (old_value) {
new_flags = (enum object_flags)(uintptr_t)old_value->value_data; new_flags = (enum object_flags)old_value->v_i32;
} }
new_flags |= flags; new_flags |= flags;
fx_hashmap_value value = { fx_hashtable_put(ctx->ctx_objects_flags, &ptr, &FX_I32(new_flags));
.value_data = (void *)new_flags,
.value_size = sizeof new_flags,
};
fx_hashmap_put(ctx->ctx_objects_flags, &key, &value);
} }
static void ctx_clear_object_flags( static void ctx_clear_object_flags(
@@ -166,28 +156,18 @@ static void ctx_clear_object_flags(
return; return;
} }
fx_hashmap_key key = { fx_value ptr = FX_POINTER(obj);
.key_data = obj, const fx_value *old_value
.key_size = sizeof(fx_object *), = fx_hashtable_get(ctx->ctx_objects_flags, &ptr);
.key_flags = FX_HASHMAP_KEY_F_INTVALUE,
};
const fx_hashmap_value *old_value
= fx_hashmap_get(ctx->ctx_objects_flags, &key);
enum object_flags new_flags = 0; enum object_flags new_flags = 0;
if (old_value) { if (old_value) {
new_flags = (enum object_flags)(uintptr_t)old_value->value_data; new_flags = (enum object_flags)old_value->v_i32;
} }
new_flags &= ~mask; new_flags &= ~mask;
fx_hashmap_value value = { fx_hashtable_put(ctx->ctx_objects_flags, &ptr, &FX_I32(new_flags));
.value_data = (void *)new_flags,
.value_size = sizeof new_flags,
};
fx_hashmap_put(ctx->ctx_objects_flags, &key, &value);
} }
static enum object_flags ctx_get_object_flags(struct ctx *ctx, fx_object *obj) static enum object_flags ctx_get_object_flags(struct ctx *ctx, fx_object *obj)
@@ -196,16 +176,13 @@ static enum object_flags ctx_get_object_flags(struct ctx *ctx, fx_object *obj)
return 0; return 0;
} }
fx_hashmap_key key = { fx_value ptr = FX_POINTER(obj);
.key_data = obj, const fx_value *old_value
.key_size = sizeof(fx_object *), = fx_hashtable_get(ctx->ctx_objects_flags, &ptr);
.key_flags = FX_HASHMAP_KEY_F_INTVALUE,
};
const fx_hashmap_value *value enum object_flags new_flags = 0;
= fx_hashmap_get(ctx->ctx_objects_flags, &key); if (old_value) {
if (value) { return (enum object_flags)old_value->v_i32;
return (enum object_flags)(uintptr_t)value->value_data;
} }
return 0; return 0;
@@ -295,7 +272,7 @@ static fx_wchar advance_char(struct ctx *ctx)
const char *s = fx_string_get_cstr(ctx->ctx_linebuf); const char *s = fx_string_get_cstr(ctx->ctx_linebuf);
fx_wchar c = fx_iterator_get_value(ctx->ctx_linebuf_ptr).v_int; fx_wchar c = fx_iterator_get_value(ctx->ctx_linebuf_ptr)->v_wchar;
if (!is_valid_char(c)) { if (!is_valid_char(c)) {
ctx->ctx_result = FX_RESULT_ERR(BAD_FORMAT); ctx->ctx_result = FX_RESULT_ERR(BAD_FORMAT);
@@ -328,7 +305,7 @@ static fx_wchar peek_char(struct ctx *ctx)
const char *s = fx_string_get_cstr(ctx->ctx_linebuf); const char *s = fx_string_get_cstr(ctx->ctx_linebuf);
fx_wchar c = fx_iterator_get_value(ctx->ctx_linebuf_ptr).v_int; fx_wchar c = fx_iterator_get_value(ctx->ctx_linebuf_ptr)->v_wchar;
if (!is_valid_char(c)) { if (!is_valid_char(c)) {
ctx->ctx_result = FX_RESULT_ERR(BAD_FORMAT); ctx->ctx_result = FX_RESULT_ERR(BAD_FORMAT);
@@ -924,8 +901,11 @@ static void split_word(struct ctx *ctx, fx_string *wordbuf)
FX_STRING_TOK_F_INCLUDE_EMPTY_TOKENS); FX_STRING_TOK_F_INCLUDE_EMPTY_TOKENS);
size_t i = 0; size_t i = 0;
fx_foreach_c(const char *, tok, it) fx_foreach(tokv, it)
{ {
const char *tok = NULL;
fx_value_get_cstr(tokv, &tok);
if (i > 0) { if (i > 0) {
enqueue_token(ctx, TOK_DOT); enqueue_token(ctx, TOK_DOT);
} }
@@ -1027,9 +1007,11 @@ static void read_word(struct ctx *ctx)
return; return;
} }
fx_iterator *it = fx_iterator_begin(wordbuf); const fx_iterator *it = fx_iterator_begin(wordbuf);
fx_foreach(fx_wchar, c, it) fx_foreach(cv, it)
{ {
fx_wchar c = FX_WCHAR_INVALID;
fx_value_get_wchar(cv, &c);
/* only allow ASCII numbers/letters here */ /* only allow ASCII numbers/letters here */
bool ok = isalnum(c) || c == '_' || c == '-' || c == '.'; bool ok = isalnum(c) || c == '_' || c == '-' || c == '.';
if (!ok) { if (!ok) {
@@ -1473,14 +1455,24 @@ static fx_result advance_token(struct ctx *ctx)
start: start:
c = peek_char(ctx); c = peek_char(ctx);
while (isspace(c) && c != '\n' && c != '\r') {
advance_char(ctx); if (c <= 0) {
c = peek_char(ctx); if (fx_error_get_status_code(ctx->ctx_result)
== FX_ERR_NO_DATA) {
ctx->ctx_flags |= CTX_EOF;
} }
if (c == -1) { return ctx->ctx_result;
ctx->ctx_flags |= CTX_EOF; }
return FX_RESULT_ERR(NO_DATA);
if (c <= 31 && c != '\n' && c != '\r' && c != '\t') {
ctx->ctx_result = FX_RESULT_ERR(BAD_FORMAT);
return ctx->ctx_result;
}
while (fx_wchar_is_space(c) && c != '\n' && c != '\r') {
advance_char(ctx);
c = peek_char(ctx);
} }
#if 1 #if 1
@@ -1550,7 +1542,7 @@ static void ctx_cleanup(struct ctx *ctx)
} }
if (ctx->ctx_objects_flags) { if (ctx->ctx_objects_flags) {
fx_hashmap_unref(ctx->ctx_objects_flags); fx_hashtable_unref(ctx->ctx_objects_flags);
ctx->ctx_objects_flags = NULL; ctx->ctx_objects_flags = NULL;
} }
} }
@@ -1562,14 +1554,14 @@ static fx_result ctx_init(struct ctx *ctx)
ctx->ctx_linebuf = fx_string_create(); ctx->ctx_linebuf = fx_string_create();
ctx->ctx_wordbuf = fx_string_create(); ctx->ctx_wordbuf = fx_string_create();
ctx->ctx_objects_flags = fx_hashmap_create(NULL, NULL); ctx->ctx_objects_flags = fx_hashtable_create();
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result toml_serialise( static fx_result toml_serialise(
fx_serial_ctx *serial, fx_serial_ctx *serial,
fx_object *src, const fx_value *src,
fx_stream *dest, fx_stream *dest,
enum fx_serial_flags flags) enum fx_serial_flags flags)
{ {
@@ -1663,20 +1655,20 @@ static void print_token(struct token *tok)
} }
} }
static fx_result parse_value(struct ctx *ctx, fx_object **result); static fx_result parse_value(struct ctx *ctx, fx_value *result);
static fx_result parse_key_value_pair(struct ctx *ctx, fx_dict *container); static fx_result parse_key_value_pair(struct ctx *ctx, fx_hashtable *container);
static fx_result parse_timestamp(struct ctx *ctx, fx_object **result) static fx_result parse_timestamp(struct ctx *ctx, fx_value *result)
{ {
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
fx_datetime *dt = tok->tok_value.time; fx_datetime *dt = tok->tok_value.time;
tok->tok_value.time = NULL; tok->tok_value.time = NULL;
*result = (dt); *result = FX_VALUE_OBJECT(dt);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result parse_string(struct ctx *ctx, fx_object **result) static fx_result parse_string(struct ctx *ctx, fx_value *result)
{ {
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
fx_string *str = fx_string_duplicate(tok->tok_str); fx_string *str = fx_string_duplicate(tok->tok_str);
@@ -1684,88 +1676,61 @@ static fx_result parse_string(struct ctx *ctx, fx_object **result)
return FX_RESULT_ERR(NO_MEMORY); return FX_RESULT_ERR(NO_MEMORY);
} }
*result = (str); *result = FX_VALUE_OBJECT(str);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result parse_int(struct ctx *ctx, fx_object **result) static fx_result parse_int(struct ctx *ctx, fx_value *result)
{ {
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
fx_int *val = fx_int_create(tok->tok_value.i.v); *result = FX_I64(tok->tok_value.i.v);
if (!val) {
return FX_RESULT_ERR(NO_MEMORY);
}
if (tok->tok_value.i.inf) {
if (tok->tok_value.i.v >= 0) {
fx_int_set_value_inf(val);
} else {
fx_int_set_value_inf_negative(val);
}
} else if (tok->tok_value.i.nan) {
if (tok->tok_value.i.v >= 0) {
fx_int_set_value_nan(val);
} else {
fx_int_set_value_nan_negative(val);
}
}
*result = (val);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result parse_float(struct ctx *ctx, fx_object **result) static fx_result parse_float(struct ctx *ctx, fx_value *result)
{ {
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
fx_double *val = fx_double_create(tok->tok_value.f.v);
if (!val) {
return FX_RESULT_ERR(NO_MEMORY);
}
if (tok->tok_value.f.inf) { if (tok->tok_value.f.inf) {
if (tok->tok_value.f.v >= 0) { if (tok->tok_value.f.v >= 0) {
fx_double_set_value_inf(val); *result = FX_DOUBLE(INFINITY);
} else { } else {
fx_double_set_value_inf_negative(val); *result = FX_DOUBLE(-INFINITY);
} }
} else if (tok->tok_value.f.nan) { } else if (tok->tok_value.f.nan) {
if (tok->tok_value.f.v >= 0) { if (tok->tok_value.f.v >= 0) {
fx_double_set_value_nan(val); *result = FX_DOUBLE(NAN);
} else { } else {
fx_double_set_value_nan_negative(val); *result = FX_DOUBLE(-NAN);
} }
} else {
*result = FX_DOUBLE(tok->tok_value.f.v);
} }
*result = (val);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result parse_bool(struct ctx *ctx, fx_object **result) static fx_result parse_bool(struct ctx *ctx, fx_value *result)
{ {
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
fx_bool *val = fx_bool_create(tok->tok_value.b); *result = FX_BOOL(tok->tok_value.b);
if (!val) {
return FX_RESULT_ERR(NO_MEMORY);
}
*result = (val);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result parse_table_inline(struct ctx *ctx, fx_object **result) static fx_result parse_table_inline(struct ctx *ctx, fx_value *result)
{ {
DISABLE_EXTENDED_LEXING(ctx); DISABLE_EXTENDED_LEXING(ctx);
advance_token(ctx); advance_token(ctx);
fx_dict *table = fx_dict_create(); fx_hashtable *table = fx_hashtable_create();
if (!table) { if (!table) {
return FX_RESULT_ERR(NO_MEMORY); return FX_RESULT_ERR(NO_MEMORY);
} }
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
if (tok && tok->tok_type == TOK_RIGHT_BRACE) { if (tok && tok->tok_type == TOK_RIGHT_BRACE) {
*result = (table); *result = FX_VALUE_OBJECT(table);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
@@ -1775,14 +1740,14 @@ static fx_result parse_table_inline(struct ctx *ctx, fx_object **result)
fx_object *value; fx_object *value;
fx_result status = parse_key_value_pair(ctx, table); fx_result status = parse_key_value_pair(ctx, table);
if (!FX_OK(status)) { if (!FX_OK(status)) {
fx_dict_unref(table); fx_hashtable_unref(table);
return status; return status;
} }
tok = peek_token(ctx); tok = peek_token(ctx);
if (!tok) { if (!tok) {
fx_dict_unref(table); fx_hashtable_unref(table);
return status; return status;
} }
@@ -1794,12 +1759,12 @@ static fx_result parse_table_inline(struct ctx *ctx, fx_object **result)
advance_token(ctx); advance_token(ctx);
break; break;
default: default:
fx_dict_unref(table); fx_hashtable_unref(table);
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
} }
*result = (table); *result = FX_VALUE_OBJECT(table);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
@@ -1813,7 +1778,7 @@ static void skip_newlines(struct ctx *ctx)
} }
} }
static fx_result parse_array_inline(struct ctx *ctx, fx_object **result) static fx_result parse_array_inline(struct ctx *ctx, fx_value *result)
{ {
bool done = false; bool done = false;
ENABLE_EXTENDED_LEXING(ctx); ENABLE_EXTENDED_LEXING(ctx);
@@ -1850,14 +1815,15 @@ static fx_result parse_array_inline(struct ctx *ctx, fx_object **result)
break; break;
} }
fx_object *value; fx_value value;
fx_result status = parse_value(ctx, &value); fx_result status = parse_value(ctx, &value);
if (!FX_OK(status)) { if (!FX_OK(status)) {
fx_array_unref(array); fx_array_unref(array);
return status; return status;
} }
fx_array_append(array, FX_RV(value)); fx_array_push_back(array, value);
fx_value_unset(&value);
ENABLE_EXTENDED_LEXING(ctx); ENABLE_EXTENDED_LEXING(ctx);
advance_token(ctx); advance_token(ctx);
@@ -1880,11 +1846,11 @@ static fx_result parse_array_inline(struct ctx *ctx, fx_object **result)
} }
DISABLE_EXTENDED_LEXING(ctx); DISABLE_EXTENDED_LEXING(ctx);
*result = (array); *result = FX_VALUE_OBJECT(array);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result parse_value(struct ctx *ctx, fx_object **result) static fx_result parse_value(struct ctx *ctx, fx_value *result)
{ {
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
@@ -1912,7 +1878,7 @@ static fx_result parse_value(struct ctx *ctx, fx_object **result)
} }
} }
static fx_result parse_key_value_pair(struct ctx *ctx, fx_dict *container) static fx_result parse_key_value_pair(struct ctx *ctx, fx_hashtable *container)
{ {
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
if (!IS_VALID_KEY_COMPONENT(tok)) { if (!IS_VALID_KEY_COMPONENT(tok)) {
@@ -1931,36 +1897,42 @@ static fx_result parse_key_value_pair(struct ctx *ctx, fx_dict *container)
} }
while (tok && tok->tok_type == TOK_DOT) { while (tok && tok->tok_type == TOK_DOT) {
fx_object *sub_dict = fx_dict_at_sk(container, key); const fx_value *child
if (!sub_dict) { = fx_hashtable_get(container, &FX_VALUE_OBJECT(key));
sub_dict = (fx_dict_create()); if (child && !fx_value_is_type(child, FX_TYPE_HASHTABLE)) {
fx_dict_put_sk(container, key, FX_RV(sub_dict)); fx_string_unref(key);
} else if (
sub_dict
&& !fx_object_is_type(sub_dict, FX_TYPE_DICT)) {
free(key);
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
fx_hashmap *subtable = NULL;
fx_value_get_object(child, &subtable);
if (!subtable) {
subtable = (fx_hashtable_create());
fx_hashtable_put(
container,
&FX_VALUE_OBJECT(key),
&FX_VALUE_OBJECT(subtable));
}
#if 1 #if 1
enum object_flags flags = ctx_get_object_flags(ctx, sub_dict); enum object_flags flags = ctx_get_object_flags(ctx, subtable);
if (flags if (flags
& (OBJECT_KV_END_DEFINED | OBJECT_HEADER_END_DEFINED)) { & (OBJECT_KV_END_DEFINED | OBJECT_HEADER_END_DEFINED)) {
free(key); fx_string_unref(key);
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
#endif #endif
ctx_set_object_flags(ctx, sub_dict, OBJECT_KV_MID_DEFINED); ctx_set_object_flags(ctx, subtable, OBJECT_KV_MID_DEFINED);
advance_token(ctx); advance_token(ctx);
tok = peek_token(ctx); tok = peek_token(ctx);
if (!IS_VALID_KEY_COMPONENT(tok)) { if (!IS_VALID_KEY_COMPONENT(tok)) {
free(key); fx_string_unref(key);
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
container = sub_dict; container = subtable;
fx_string_unref(key); fx_string_unref(key);
key = fx_string_duplicate(tok->tok_str); key = fx_string_duplicate(tok->tok_str);
if (!key) { if (!key) {
@@ -1971,7 +1943,7 @@ static fx_result parse_key_value_pair(struct ctx *ctx, fx_dict *container)
tok = peek_token(ctx); tok = peek_token(ctx);
} }
if (fx_dict_has_skey(container, key)) { if (fx_hashtable_get(container, &FX_VALUE_OBJECT(key))) {
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
@@ -1986,7 +1958,7 @@ static fx_result parse_key_value_pair(struct ctx *ctx, fx_dict *container)
ENABLE_EXTENDED_LEXING(ctx); ENABLE_EXTENDED_LEXING(ctx);
advance_token(ctx); advance_token(ctx);
fx_object *value = NULL; fx_value value = FX_VALUE_EMPTY;
fx_result result = parse_value(ctx, &value); fx_result result = parse_value(ctx, &value);
DISABLE_EXTENDED_LEXING(ctx); DISABLE_EXTENDED_LEXING(ctx);
@@ -2001,20 +1973,24 @@ static fx_result parse_key_value_pair(struct ctx *ctx, fx_dict *container)
return fx_result_propagate(result); return fx_result_propagate(result);
} }
fx_dict_put_sk(container, key, FX_RV(value)); fx_hashtable_put(container, &FX_VALUE_OBJECT(key), &value);
if (fx_object_is_type(value, FX_TYPE_DICT) if (fx_value_is_type(&value, FX_TYPE_HASHTABLE)
|| fx_object_is_type(value, FX_TYPE_ARRAY)) { || fx_value_is_type(&value, FX_TYPE_ARRAY)) {
ctx_set_object_flags(ctx, value, OBJECT_KV_END_DEFINED); ctx_set_object_flags(
ctx,
value.v_object,
OBJECT_KV_END_DEFINED);
} }
fx_value_unset(&value);
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result parse_table_header( static fx_result parse_table_header(
struct ctx *ctx, struct ctx *ctx,
fx_dict *container, fx_hashtable *container,
fx_dict **new_container) fx_hashtable **new_container)
{ {
advance_token(ctx); advance_token(ctx);
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
@@ -2034,17 +2010,24 @@ static fx_result parse_table_header(
} }
while (tok && tok->tok_type == TOK_DOT) { while (tok && tok->tok_type == TOK_DOT) {
fx_object *sub_dict = fx_dict_at_sk(container, key); const fx_value *value
enum object_flags flags = ctx_get_object_flags(ctx, sub_dict); = fx_hashtable_get(container, &FX_VALUE_OBJECT(key));
if (!sub_dict) { fx_object *subtable = NULL;
sub_dict = (fx_dict_create()); fx_value_get_object(value, &subtable);
fx_dict_put_sk(container, key, FX_RV(sub_dict)); enum object_flags flags = ctx_get_object_flags(ctx, subtable);
} else if (fx_object_is_type(sub_dict, FX_TYPE_ARRAY)) { if (!value) {
subtable = (fx_hashtable_create());
sub_dict = fx_array_at( fx_hashtable_put(
sub_dict, container,
fx_array_size(sub_dict) - 1); &FX_VALUE_OBJECT(key),
} else if (!fx_object_is_type(sub_dict, FX_TYPE_DICT)) { &FX_VALUE_OBJECT(subtable));
fx_object_unref(subtable);
} else if (fx_value_is_type(value, FX_TYPE_ARRAY)) {
value = fx_array_get_ref(
subtable,
fx_array_get_size(subtable) - 1);
fx_value_get_object(value, &subtable);
} else if (!fx_value_is_type(value, FX_TYPE_HASHTABLE)) {
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
@@ -2058,9 +2041,9 @@ static fx_result parse_table_header(
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
ctx_set_object_flags(ctx, sub_dict, OBJECT_HEADER_MID_DEFINED); ctx_set_object_flags(ctx, subtable, OBJECT_HEADER_MID_DEFINED);
container = sub_dict; container = subtable;
fx_string_unref(key); fx_string_unref(key);
key = fx_string_duplicate(tok->tok_str); key = fx_string_duplicate(tok->tok_str);
if (!key) { if (!key) {
@@ -2075,20 +2058,31 @@ static fx_result parse_table_header(
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
fx_dict *new_table = fx_dict_at_sk(container, key); const fx_value *child
= fx_hashtable_get(container, &FX_VALUE_OBJECT(key));
if (child && !fx_value_is_type(child, FX_TYPE_HASHTABLE)) {
return FX_RESULT_ERR(BAD_FORMAT);
}
fx_hashtable *new_table = NULL;
fx_value_get_object(child, &new_table);
if (!new_table) { if (!new_table) {
new_table = fx_dict_create(); new_table = fx_hashtable_create();
if (!new_table) { if (!new_table) {
free(key); fx_string_unref(key);
return FX_RESULT_ERR(NO_MEMORY); return FX_RESULT_ERR(NO_MEMORY);
} }
fx_dict_put_sk(container, key, FX_RV(new_table)); fx_hashtable_put(
container,
&FX_VALUE_OBJECT(key),
&FX_VALUE_OBJECT(new_table));
fx_hashtable_unref(new_table);
} }
if (!fx_object_is_type((new_table), FX_TYPE_DICT)) { if (!fx_object_is_type((new_table), FX_TYPE_HASHTABLE)) {
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
@@ -2109,8 +2103,8 @@ static fx_result parse_table_header(
static fx_result parse_array_header( static fx_result parse_array_header(
struct ctx *ctx, struct ctx *ctx,
fx_dict *container, fx_hashtable *container,
fx_dict **new_container) fx_hashtable **new_container)
{ {
advance_token(ctx); advance_token(ctx);
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
@@ -2130,15 +2124,29 @@ static fx_result parse_array_header(
} }
while (tok && tok->tok_type == TOK_DOT) { while (tok && tok->tok_type == TOK_DOT) {
fx_object *sub_dict = fx_dict_at_sk(container, key); const fx_value *child
if (!sub_dict) { = fx_hashtable_get(container, &FX_VALUE_OBJECT(key));
sub_dict = (fx_dict_create()); fx_object *sub_dict = NULL;
fx_dict_put_sk(container, key, FX_RV(sub_dict)); fx_value_get_object(child, &sub_dict);
} else if (fx_object_is_type(sub_dict, FX_TYPE_ARRAY)) {
sub_dict = fx_array_at( enum object_flags flags = ctx_get_object_flags(ctx, (sub_dict));
if (flags & OBJECT_KV_END_DEFINED) {
return FX_RESULT_ERR(BAD_FORMAT);
}
if (!child) {
sub_dict = (fx_hashtable_create());
fx_hashtable_put(
container,
&FX_VALUE_OBJECT(key),
&FX_VALUE_OBJECT(sub_dict));
fx_hashtable_unref(sub_dict);
} else if (fx_value_is_type(child, FX_TYPE_ARRAY)) {
child = fx_array_get_ref(
sub_dict, sub_dict,
fx_array_size(sub_dict) - 1); fx_array_get_size(sub_dict) - 1);
} else if (!fx_object_is_type(sub_dict, FX_TYPE_DICT)) { sub_dict = child->v_object;
} else if (!fx_value_is_type(child, FX_TYPE_HASHTABLE)) {
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
@@ -2163,37 +2171,48 @@ static fx_result parse_array_header(
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
fx_array *array = fx_dict_get_sk(container, key); const fx_value *child
= fx_hashtable_get(container, &FX_VALUE_OBJECT(key));
if (child && !fx_value_is_type(child, FX_TYPE_ARRAY)) {
return FX_RESULT_ERR(BAD_FORMAT);
}
fx_array *array = NULL;
fx_value_get_object(child, &array);
if (!array) { if (!array) {
array = fx_array_create(); array = fx_array_create();
fx_dict_put_sk(container, key, FX_RV(array)); fx_hashtable_put(
container,
&FX_VALUE_OBJECT(key),
&FX_VALUE_OBJECT(array));
} else if (!fx_object_is_type(array, FX_TYPE_ARRAY)) { } else if (!fx_object_is_type(array, FX_TYPE_ARRAY)) {
return FX_RESULT_ERR(BAD_FORMAT); return FX_RESULT_ERR(BAD_FORMAT);
} }
free(key); fx_string_unref(key);
enum object_flags flags = ctx_get_object_flags(ctx, (array)); enum object_flags flags = ctx_get_object_flags(ctx, (array));
if (flags & OBJECT_KV_END_DEFINED) { if (flags & OBJECT_KV_END_DEFINED) {
return FX_RESULT_ERR(NO_MEMORY); return FX_RESULT_ERR(BAD_FORMAT);
} }
fx_dict *new_table = fx_dict_create(); fx_hashtable *new_table = fx_hashtable_create();
if (!new_table) { if (!new_table) {
return FX_RESULT_ERR(NO_MEMORY); return FX_RESULT_ERR(NO_MEMORY);
} }
fx_array_append(array, FX_RV(new_table)); fx_array_push_back(array, FX_VALUE_OBJECT(new_table));
advance_token(ctx); advance_token(ctx);
*new_container = new_table; *new_container = new_table;
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
static fx_result parse_root(struct ctx *ctx, fx_dict **out) static fx_result parse_root(struct ctx *ctx, fx_hashtable **out)
{ {
fx_result result = FX_RESULT_SUCCESS; fx_result result = FX_RESULT_SUCCESS;
fx_dict *root = fx_dict_create(); fx_hashtable *root = fx_hashtable_create();
fx_dict *current = root; fx_hashtable *current = root;
while (!(ctx->ctx_flags & CTX_EOF) && fx_result_is_success(result)) { while (!(ctx->ctx_flags & CTX_EOF) && fx_result_is_success(result)) {
struct token *tok = peek_token(ctx); struct token *tok = peek_token(ctx);
@@ -2253,7 +2272,7 @@ static fx_result parse_root(struct ctx *ctx, fx_dict **out)
} }
if (fx_result_is_error(result)) { if (fx_result_is_error(result)) {
fx_dict_unref(root); fx_hashtable_unref(root);
root = NULL; root = NULL;
} }
@@ -2264,7 +2283,7 @@ static fx_result parse_root(struct ctx *ctx, fx_dict **out)
static fx_result toml_deserialise( static fx_result toml_deserialise(
fx_serial_ctx *serial, fx_serial_ctx *serial,
fx_stream *src, fx_stream *src,
fx_object **dest, fx_value *dest,
enum fx_serial_flags flags) enum fx_serial_flags flags)
{ {
struct ctx ctx = {0}; struct ctx ctx = {0};
@@ -2285,17 +2304,17 @@ static fx_result toml_deserialise(
} }
if (ctx.ctx_flags & CTX_EOF) { if (ctx.ctx_flags & CTX_EOF) {
*dest = (fx_dict_create()); *dest = FX_VALUE_OBJECT(fx_hashtable_create());
return FX_RESULT_SUCCESS; return FX_RESULT_SUCCESS;
} }
fx_dict *data = NULL; fx_hashtable *data = NULL;
ctx.ctx_result = parse_root(&ctx, &data); ctx.ctx_result = parse_root(&ctx, &data);
if (fx_result_is_error(ctx.ctx_result)) { if (fx_result_is_error(ctx.ctx_result)) {
return fx_result_propagate(ctx.ctx_result); return fx_result_propagate(ctx.ctx_result);
} }
*dest = (data); *dest = FX_VALUE_OBJECT(data);
#if 0 #if 0
ctx.ctx_flags ctx.ctx_flags
= CTX_ENABLE_NUMBERS | CTX_ENABLE_TIMESTAMPS | CTX_ENABLE_BOOLS; = CTX_ENABLE_NUMBERS | CTX_ENABLE_TIMESTAMPS | CTX_ENABLE_BOOLS;
+3 -7
View File
@@ -102,8 +102,8 @@ static print_function format_printers[] = {
[FX_PRINT_WARN] = print_warn, [FX_PRINT_WARN] = print_warn,
[FX_PRINT_ERR] = print_err, [FX_PRINT_ERR] = print_err,
}; };
static size_t nr_format_printers static size_t nr_format_printers = sizeof format_printers
= sizeof format_printers / sizeof format_printers[FX_PRINT_NORMAL]; / sizeof format_printers[FX_PRINT_NORMAL];
fx_status fx_print(fx_print_format format, const char *str, ...) fx_status fx_print(fx_print_format format, const char *str, ...)
{ {
@@ -140,11 +140,7 @@ int fx_printf(const char *format, ...)
{ {
va_list arg; va_list arg;
va_start(arg, format); va_start(arg, format);
int x = fx_tty_vprintf( int x = fx_tty_vprintf(fx_stdtty, 0, format, arg);
fx_stdtty,
FX_TTY_DISABLE_INTERPOLATED_FORMATTING,
format,
arg);
va_end(arg); va_end(arg);
return x; return x;
} }
+14 -947
View File
@@ -1,975 +1,42 @@
///////////////////////////////////////////////////////////////////////////////
// \author (c) Marco Paland (info@paland.com)
// 2014-2019, PALANDesign Hannover, Germany
//
// \license The MIT License (MIT)
//
// Permission is hereby granted, free of charge, to any person obtaining a copy
// of this software and associated documentation files (the "Software"), to deal
// in the Software without restriction, including without limitation the rights
// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the Software is
// furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in
// all copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
//
// \brief Tiny printf, sprintf and (v)snprintf implementation, optimized for speed on
// embedded systems with a very limited resources. These routines are thread
// safe and reentrant!
// Use this instead of the bloated standard/newlib printf cause these use
// malloc for printf (and may not be thread safe).
//
///////////////////////////////////////////////////////////////////////////////
#include "printf.h" #include "printf.h"
#include <fx/term/tty.h> #include <fx/term/tty.h>
#include <stdbool.h> #include <stdbool.h>
#include <stdint.h> #include <stdint.h>
// define this globally (e.g. gcc -DPRINTF_INCLUDE_CONFIG_H ...) to include the
// printf_config.h header file
// default: undefined
#ifdef PRINTF_INCLUDE_CONFIG_H
#include "printf_config.h"
#endif
// 'ntoa' conversion buffer size, this must be big enough to hold one converted
// numeric number including padded zeros (dynamically created on stack)
// default: 32 byte
#ifndef PRINTF_NTOA_BUFFER_SIZE
#define PRINTF_NTOA_BUFFER_SIZE 32U
#endif
// 'ftoa' conversion buffer size, this must be big enough to hold one converted
// float number including padded zeros (dynamically created on stack)
// default: 32 byte
#ifndef PRINTF_FTOA_BUFFER_SIZE
#define PRINTF_FTOA_BUFFER_SIZE 32U
#endif
// support for the floating point type (%f)
// default: activated
#ifndef PRINTF_DISABLE_SUPPORT_FLOAT
#define PRINTF_SUPPORT_FLOAT
#endif
// support for exponential floating point notation (%e/%g)
// default: activated
#ifndef PRINTF_DISABLE_SUPPORT_EXPONENTIAL
#define PRINTF_SUPPORT_EXPONENTIAL
#endif
// define the default floating point precision
// default: 6 digits
#ifndef PRINTF_DEFAULT_FLOAT_PRECISION
#define PRINTF_DEFAULT_FLOAT_PRECISION 6U
#endif
// define the largest float suitable to print with %f
// default: 1e9
#ifndef PRINTF_MAX_FLOAT
#define PRINTF_MAX_FLOAT 1e9
#endif
// support for the long long types (%llu or %p)
// default: activated
#ifndef PRINTF_DISABLE_SUPPORT_LONG_LONG
#define PRINTF_SUPPORT_LONG_LONG
#endif
// support for the ptrdiff_t type (%t)
// ptrdiff_t is normally defined in <stddef.h> as long or long long type
// default: activated
#ifndef PRINTF_DISABLE_SUPPORT_PTRDIFF_T
#define PRINTF_SUPPORT_PTRDIFF_T
#endif
///////////////////////////////////////////////////////////////////////////////
// internal flag definitions
#define FLAGS_ZEROPAD (1U << 0U)
#define FLAGS_LEFT (1U << 1U)
#define FLAGS_PLUS (1U << 2U)
#define FLAGS_SPACE (1U << 3U)
#define FLAGS_HASH (1U << 4U)
#define FLAGS_UPPERCASE (1U << 5U)
#define FLAGS_CHAR (1U << 6U)
#define FLAGS_SHORT (1U << 7U)
#define FLAGS_LONG (1U << 8U)
#define FLAGS_LONG_LONG (1U << 9U)
#define FLAGS_PRECISION (1U << 10U)
#define FLAGS_ADAPT_EXP (1U << 11U)
// import float.h for DBL_MAX
#if defined(PRINTF_SUPPORT_FLOAT)
#include <float.h>
#endif
struct out_tty_args { struct out_tty_args {
struct fx_tty *tty; struct fx_tty *tty;
enum fx_tty_print_flags flags; enum fx_tty_print_flags flags;
bool format_ch; bool format_ch;
}; };
// output function type static void out_tty(char c, void *argp)
typedef void (*out_fct_type)(char character, struct out_tty_args *args);
// wrapper (used as buffer) for output function type
typedef struct {
void (*fct)(char character, void *arg);
void *arg;
} out_fct_wrap_type;
// internal buffer output
static inline void _out_buffer(
char character, void *buffer, size_t idx, size_t maxlen)
{
if (idx < maxlen) {
((char *)buffer)[idx] = character;
}
}
// internal null output
static inline void _out_null(char character, void *buffer, size_t idx, size_t maxlen)
{
(void)character;
(void)buffer;
(void)idx;
(void)maxlen;
}
// internal output function wrapper
static inline void _out_fct(char character, void *buffer, size_t idx, size_t maxlen)
{
(void)idx;
(void)maxlen;
if (character) {
// buffer is the output fct pointer
((out_fct_wrap_type *)buffer)
->fct(character, ((out_fct_wrap_type *)buffer)->arg);
}
}
// internal secure strlen
// \return The length of the string (excluding the terminating 0) limited by 'maxsize'
static inline unsigned int _strnlen_s(const char *str, size_t maxsize)
{
const char *s;
for (s = str; *s && maxsize--; ++s)
;
return (unsigned int)(s - str);
}
// internal test if char is a digit (0-9)
// \return true if char is a digit
static inline bool _is_digit(char ch)
{
return (ch >= '0') && (ch <= '9');
}
// internal ASCII string to unsigned int conversion
static unsigned int _atoi(const char **str)
{
unsigned int i = 0U;
while (_is_digit(**str)) {
i = i * 10U + (unsigned int)(*((*str)++) - '0');
}
return i;
}
// output the specified string in reverse, taking care of any zero-padding
static size_t _out_rev(
out_fct_type out, struct out_tty_args *args, const char *buf,
size_t len, unsigned int width, unsigned int flags)
{
size_t idx = 0;
// pad spaces up to given width
if (!(flags & FLAGS_LEFT) && !(flags & FLAGS_ZEROPAD)) {
for (size_t i = len; i < width; i++) {
out(' ', args);
}
}
// reverse string
while (len) {
out(buf[--len], args);
}
// append pad spaces up to given width
if (flags & FLAGS_LEFT) {
while (idx < width) {
out(' ', args);
idx++;
}
}
return idx;
}
// internal itoa format
static size_t _ntoa_format(
out_fct_type out, struct out_tty_args *args, char *buf, size_t len,
bool negative, unsigned int base, unsigned int prec, unsigned int width,
unsigned int flags)
{
// pad leading zeros
if (!(flags & FLAGS_LEFT)) {
if (width && (flags & FLAGS_ZEROPAD)
&& (negative || (flags & (FLAGS_PLUS | FLAGS_SPACE)))) {
width--;
}
while ((len < prec) && (len < PRINTF_NTOA_BUFFER_SIZE)) {
buf[len++] = '0';
}
while ((flags & FLAGS_ZEROPAD) && (len < width)
&& (len < PRINTF_NTOA_BUFFER_SIZE)) {
buf[len++] = '0';
}
}
// handle hash
if (flags & FLAGS_HASH) {
if (!(flags & FLAGS_PRECISION) && len
&& ((len == prec) || (len == width))) {
len--;
if (len && (base == 16U)) {
len--;
}
}
if ((base == 16U) && !(flags & FLAGS_UPPERCASE)
&& (len < PRINTF_NTOA_BUFFER_SIZE)) {
buf[len++] = 'x';
} else if (
(base == 16U) && (flags & FLAGS_UPPERCASE)
&& (len < PRINTF_NTOA_BUFFER_SIZE)) {
buf[len++] = 'X';
} else if ((base == 2U) && (len < PRINTF_NTOA_BUFFER_SIZE)) {
buf[len++] = 'b';
}
if (len < PRINTF_NTOA_BUFFER_SIZE) {
buf[len++] = '0';
}
}
if (len < PRINTF_NTOA_BUFFER_SIZE) {
if (negative) {
buf[len++] = '-';
} else if (flags & FLAGS_PLUS) {
buf[len++] = '+'; // ignore the space if the '+' exists
} else if (flags & FLAGS_SPACE) {
buf[len++] = ' ';
}
}
return _out_rev(out, args, buf, len, width, flags);
}
// internal itoa for 'long' type
static size_t _ntoa_long(
out_fct_type out, struct out_tty_args *args, unsigned long value,
bool negative, unsigned long base, unsigned int prec,
unsigned int width, unsigned int flags)
{
char buf[PRINTF_NTOA_BUFFER_SIZE];
size_t len = 0U;
// no hash for 0 values
if (!value) {
flags &= ~FLAGS_HASH;
}
// write if precision != 0 and value is != 0
if (!(flags & FLAGS_PRECISION) || value) {
do {
const char digit = (char)(value % base);
buf[len++] = digit < 10
? '0' + digit
: (flags & FLAGS_UPPERCASE ? 'A' : 'a')
+ digit - 10;
value /= base;
} while (value && (len < PRINTF_NTOA_BUFFER_SIZE));
}
return _ntoa_format(
out, args, buf, len, negative, (unsigned int)base, prec, width,
flags);
}
// internal itoa for 'long long' type
#if defined(PRINTF_SUPPORT_LONG_LONG)
static size_t _ntoa_long_long(
out_fct_type out, struct out_tty_args *args, unsigned long long value,
bool negative, unsigned long long base, unsigned int prec,
unsigned int width, unsigned int flags)
{
char buf[PRINTF_NTOA_BUFFER_SIZE];
size_t len = 0U;
// no hash for 0 values
if (!value) {
flags &= ~FLAGS_HASH;
}
// write if precision != 0 and value is != 0
if (!(flags & FLAGS_PRECISION) || value) {
do {
const char digit = (char)(value % base);
buf[len++] = digit < 10
? '0' + digit
: (flags & FLAGS_UPPERCASE ? 'A' : 'a')
+ digit - 10;
value /= base;
} while (value && (len < PRINTF_NTOA_BUFFER_SIZE));
}
return _ntoa_format(
out, args, buf, len, negative, (unsigned int)base, prec, width,
flags);
}
#endif // PRINTF_SUPPORT_LONG_LONG
#if defined(PRINTF_SUPPORT_FLOAT)
#if defined(PRINTF_SUPPORT_EXPONENTIAL)
// forward declaration so that _ftoa can switch to exp notation for values > PRINTF_MAX_FLOAT
static size_t _etoa(
out_fct_type out, struct out_tty_args *args, double value,
unsigned int prec, unsigned int width, unsigned int flags);
#endif
// internal ftoa for fixed decimal floating point
static size_t _ftoa(
out_fct_type out, struct out_tty_args *args, double value,
unsigned int prec, unsigned int width, unsigned int flags)
{
char buf[PRINTF_FTOA_BUFFER_SIZE];
size_t len = 0U;
double diff = 0.0;
// powers of 10
static const double pow10[]
= {1, 10, 100, 1000, 10000,
100000, 1000000, 10000000, 100000000, 1000000000};
// test for special values
if (value != value)
return _out_rev(out, args, "nan", 3, width, flags);
if (value < -DBL_MAX)
return _out_rev(out, args, "fni-", 4, width, flags);
if (value > DBL_MAX)
return _out_rev(
out, args, (flags & FLAGS_PLUS) ? "fni+" : "fni",
(flags & FLAGS_PLUS) ? 4U : 3U, width, flags);
// test for very large values
// standard printf behavior is to print EVERY whole number digit --
// which could be 100s of characters overflowing your buffers == bad
if ((value > PRINTF_MAX_FLOAT) || (value < -PRINTF_MAX_FLOAT)) {
#if defined(PRINTF_SUPPORT_EXPONENTIAL)
return _etoa(out, args, value, prec, width, flags);
#else
return 0U;
#endif
}
// test for negative
bool negative = false;
if (value < 0) {
negative = true;
value = 0 - value;
}
// set default precision, if not set explicitly
if (!(flags & FLAGS_PRECISION)) {
prec = PRINTF_DEFAULT_FLOAT_PRECISION;
}
// limit precision to 9, cause a prec >= 10 can lead to overflow errors
while ((len < PRINTF_FTOA_BUFFER_SIZE) && (prec > 9U)) {
buf[len++] = '0';
prec--;
}
int whole = (int)value;
double tmp = (value - whole) * pow10[prec];
unsigned long frac = (unsigned long)tmp;
diff = tmp - frac;
if (diff > 0.5) {
++frac;
// handle rollover, e.g. case 0.99 with prec 1 is 1.0
if (frac >= pow10[prec]) {
frac = 0;
++whole;
}
} else if (diff < 0.5) {
} else if ((frac == 0U) || (frac & 1U)) {
// if halfway, round up if odd OR if last digit is 0
++frac;
}
if (prec == 0U) {
diff = value - (double)whole;
if ((!(diff < 0.5) || (diff > 0.5)) && (whole & 1)) {
// exactly 0.5 and ODD, then round up
// 1.5 -> 2, but 2.5 -> 2
++whole;
}
} else {
unsigned int count = prec;
// now do fractional part, as an unsigned number
while (len < PRINTF_FTOA_BUFFER_SIZE) {
--count;
buf[len++] = (char)(48U + (frac % 10U));
if (!(frac /= 10U)) {
break;
}
}
// add extra 0s
while ((len < PRINTF_FTOA_BUFFER_SIZE) && (count-- > 0U)) {
buf[len++] = '0';
}
if (len < PRINTF_FTOA_BUFFER_SIZE) {
// add decimal
buf[len++] = '.';
}
}
// do whole part, number is reversed
while (len < PRINTF_FTOA_BUFFER_SIZE) {
buf[len++] = (char)(48 + (whole % 10));
if (!(whole /= 10)) {
break;
}
}
// pad leading zeros
if (!(flags & FLAGS_LEFT) && (flags & FLAGS_ZEROPAD)) {
if (width && (negative || (flags & (FLAGS_PLUS | FLAGS_SPACE)))) {
width--;
}
while ((len < width) && (len < PRINTF_FTOA_BUFFER_SIZE)) {
buf[len++] = '0';
}
}
if (len < PRINTF_FTOA_BUFFER_SIZE) {
if (negative) {
buf[len++] = '-';
} else if (flags & FLAGS_PLUS) {
buf[len++] = '+'; // ignore the space if the '+' exists
} else if (flags & FLAGS_SPACE) {
buf[len++] = ' ';
}
}
return _out_rev(out, args, buf, len, width, flags);
}
#if defined(PRINTF_SUPPORT_EXPONENTIAL)
// internal ftoa variant for exponential floating-point type, contributed by Martijn Jasperse <m.jasperse@gmail.com>
static size_t _etoa(
out_fct_type out, struct out_tty_args *args, double value,
unsigned int prec, unsigned int width, unsigned int flags)
{
// check for NaN and special values
if ((value != value) || (value > DBL_MAX) || (value < -DBL_MAX)) {
return _ftoa(out, args, value, prec, width, flags);
}
// determine the sign
const bool negative = value < 0;
if (negative) {
value = -value;
}
// default precision
if (!(flags & FLAGS_PRECISION)) {
prec = PRINTF_DEFAULT_FLOAT_PRECISION;
}
// determine the decimal exponent
// based on the algorithm by David Gay (https://www.ampl.com/netlib/fp/dtoa.c)
union {
uint64_t U;
double F;
} conv;
conv.F = value;
int exp2 = (int)((conv.U >> 52U) & 0x07FFU) - 1023; // effectively log2
conv.U = (conv.U & ((1ULL << 52U) - 1U))
| (1023ULL << 52U); // drop the exponent so conv.F is now in [1,2)
// now approximate log10 from the log2 integer part and an expansion of ln around 1.5
int expval = (int)(0.1760912590558 + exp2 * 0.301029995663981
+ (conv.F - 1.5) * 0.289529654602168);
// now we want to compute 10^expval but we want to be sure it won't overflow
exp2 = (int)(expval * 3.321928094887362 + 0.5);
const double z = expval * 2.302585092994046 - exp2 * 0.6931471805599453;
const double z2 = z * z;
conv.U = (uint64_t)(exp2 + 1023) << 52U;
// compute exp(z) using continued fractions, see https://en.wikipedia.org/wiki/Exponential_function#Continued_fractions_for_ex
conv.F *= 1 + 2 * z / (2 - z + (z2 / (6 + (z2 / (10 + z2 / 14)))));
// correct for rounding errors
if (value < conv.F) {
expval--;
conv.F /= 10;
}
// the exponent format is "%+03d" and largest value is "307", so set aside 4-5 characters
unsigned int minwidth = ((expval < 100) && (expval > -100)) ? 4U : 5U;
// in "%g" mode, "prec" is the number of *significant figures* not decimals
if (flags & FLAGS_ADAPT_EXP) {
// do we want to fall-back to "%f" mode?
if ((value >= 1e-4) && (value < 1e6)) {
if ((int)prec > expval) {
prec = (unsigned)((int)prec - expval - 1);
} else {
prec = 0;
}
flags |= FLAGS_PRECISION; // make sure _ftoa respects precision
// no characters in exponent
minwidth = 0U;
expval = 0;
} else {
// we use one sigfig for the whole part
if ((prec > 0) && (flags & FLAGS_PRECISION)) {
--prec;
}
}
}
// will everything fit?
unsigned int fwidth = width;
if (width > minwidth) {
// we didn't fall-back so subtract the characters required for the exponent
fwidth -= minwidth;
} else {
// not enough characters, so go back to default sizing
fwidth = 0U;
}
if ((flags & FLAGS_LEFT) && minwidth) {
// if we're padding on the right, DON'T pad the floating part
fwidth = 0U;
}
// rescale the float value
if (expval) {
value /= conv.F;
}
// output the floating part
size_t idx
= _ftoa(out, args, negative ? -value : value, prec, fwidth,
flags & ~FLAGS_ADAPT_EXP);
// output the exponent part
if (minwidth) {
// output the exponential symbol
out((flags & FLAGS_UPPERCASE) ? 'E' : 'e', args);
// output the exponent value
idx = _ntoa_long(
out, args, (expval < 0) ? -expval : expval, expval < 0,
10, 0, minwidth - 1, FLAGS_ZEROPAD | FLAGS_PLUS);
// might need to right-pad spaces
if (flags & FLAGS_LEFT) {
while (idx < width) {
out(' ', args);
idx++;
}
}
}
return idx;
}
#endif // PRINTF_SUPPORT_EXPONENTIAL
#endif // PRINTF_SUPPORT_FLOAT
#define set_format_ch(args) ((args)->format_ch = true)
#define unset_format_ch(args) ((args)->format_ch = false)
// internal vsnprintf
static int _vsnprintf(
out_fct_type out, struct out_tty_args *args, const char *format, va_list va)
{
unsigned int flags, width, precision, n;
size_t idx = 0U;
while (*format) {
// format specifier? %[flags][width][.precision][length]
if (*format != '%') {
// no
set_format_ch(args);
out(*format, args);
unset_format_ch(args);
format++;
continue;
} else {
// yes, evaluate it
format++;
}
// evaluate flags
flags = 0U;
do {
switch (*format) {
case '0':
flags |= FLAGS_ZEROPAD;
format++;
n = 1U;
break;
case '-':
flags |= FLAGS_LEFT;
format++;
n = 1U;
break;
case '+':
flags |= FLAGS_PLUS;
format++;
n = 1U;
break;
case ' ':
flags |= FLAGS_SPACE;
format++;
n = 1U;
break;
case '#':
flags |= FLAGS_HASH;
format++;
n = 1U;
break;
default:
n = 0U;
break;
}
} while (n);
// evaluate width field
width = 0U;
if (_is_digit(*format)) {
width = _atoi(&format);
} else if (*format == '*') {
const int w = va_arg(va, int);
if (w < 0) {
flags |= FLAGS_LEFT; // reverse padding
width = (unsigned int)-w;
} else {
width = (unsigned int)w;
}
format++;
}
// evaluate precision field
precision = 0U;
if (*format == '.') {
flags |= FLAGS_PRECISION;
format++;
if (_is_digit(*format)) {
precision = _atoi(&format);
} else if (*format == '*') {
const int prec = (int)va_arg(va, int);
precision = prec > 0 ? (unsigned int)prec : 0U;
format++;
}
}
// evaluate length field
switch (*format) {
case 'l':
flags |= FLAGS_LONG;
format++;
if (*format == 'l') {
flags |= FLAGS_LONG_LONG;
format++;
}
break;
case 'h':
flags |= FLAGS_SHORT;
format++;
if (*format == 'h') {
flags |= FLAGS_CHAR;
format++;
}
break;
#if defined(PRINTF_SUPPORT_PTRDIFF_T)
case 't':
flags
|= (sizeof(ptrdiff_t) == sizeof(long)
? FLAGS_LONG
: FLAGS_LONG_LONG);
format++;
break;
#endif
case 'j':
flags
|= (sizeof(intmax_t) == sizeof(long)
? FLAGS_LONG
: FLAGS_LONG_LONG);
format++;
break;
case 'z':
flags
|= (sizeof(size_t) == sizeof(long)
? FLAGS_LONG
: FLAGS_LONG_LONG);
format++;
break;
default:
break;
}
// evaluate specifier
switch (*format) {
case 'd':
case 'i':
case 'u':
case 'x':
case 'X':
case 'o':
case 'b': {
// set the base
unsigned int base;
if (*format == 'x' || *format == 'X') {
base = 16U;
} else if (*format == 'o') {
base = 8U;
} else if (*format == 'b') {
base = 2U;
} else {
base = 10U;
flags &= ~FLAGS_HASH; // no hash for dec format
}
// uppercase
if (*format == 'X') {
flags |= FLAGS_UPPERCASE;
}
// no plus or space flag for u, x, X, o, b
if ((*format != 'i') && (*format != 'd')) {
flags &= ~(FLAGS_PLUS | FLAGS_SPACE);
}
// ignore '0' flag when precision is given
if (flags & FLAGS_PRECISION) {
flags &= ~FLAGS_ZEROPAD;
}
// convert the integer
if ((*format == 'i') || (*format == 'd')) {
// signed
if (flags & FLAGS_LONG_LONG) {
#if defined(PRINTF_SUPPORT_LONG_LONG)
const long long value
= va_arg(va, long long);
idx = _ntoa_long_long(
out, args,
(unsigned long long)(value > 0 ? value
: 0 - value),
value < 0, base, precision,
width, flags);
#endif
} else if (flags & FLAGS_LONG) {
const long value = va_arg(va, long);
idx = _ntoa_long(
out, args,
(unsigned long)(value > 0 ? value
: 0 - value),
value < 0, base, precision,
width, flags);
} else {
const int value
= (flags & FLAGS_CHAR)
? (char)va_arg(va, int)
: (flags & FLAGS_SHORT)
? (short int)va_arg(va, int)
: va_arg(va, int);
idx = _ntoa_long(
out, args,
(unsigned int)(value > 0 ? value
: 0 - value),
value < 0, base, precision,
width, flags);
}
} else {
// unsigned
if (flags & FLAGS_LONG_LONG) {
#if defined(PRINTF_SUPPORT_LONG_LONG)
idx = _ntoa_long_long(
out, args,
va_arg(va, unsigned long long),
false, base, precision, width,
flags);
#endif
} else if (flags & FLAGS_LONG) {
idx = _ntoa_long(
out, args,
va_arg(va, unsigned long), false,
base, precision, width, flags);
} else {
const unsigned int value
= (flags & FLAGS_CHAR)
? (unsigned char)va_arg(
va, unsigned int)
: (flags & FLAGS_SHORT)
? (unsigned short int)va_arg(
va, unsigned int)
: va_arg(va, unsigned int);
idx = _ntoa_long(
out, args, value, false, base,
precision, width, flags);
}
}
format++;
break;
}
#if defined(PRINTF_SUPPORT_FLOAT)
case 'f':
case 'F':
if (*format == 'F')
flags |= FLAGS_UPPERCASE;
idx
= _ftoa(out, args, va_arg(va, double),
precision, width, flags);
format++;
break;
#if defined(PRINTF_SUPPORT_EXPONENTIAL)
case 'e':
case 'E':
case 'g':
case 'G':
if ((*format == 'g') || (*format == 'G'))
flags |= FLAGS_ADAPT_EXP;
if ((*format == 'E') || (*format == 'G'))
flags |= FLAGS_UPPERCASE;
idx
= _etoa(out, args, va_arg(va, double),
precision, width, flags);
format++;
break;
#endif // PRINTF_SUPPORT_EXPONENTIAL
#endif // PRINTF_SUPPORT_FLOAT
case 'c': {
unsigned int l = 1U;
// pre padding
if (!(flags & FLAGS_LEFT)) {
while (l++ < width) {
out(' ', args);
}
}
// char output
out((char)va_arg(va, int), args);
// post padding
if (flags & FLAGS_LEFT) {
while (l++ < width) {
out(' ', args);
}
}
format++;
break;
}
case 's': {
const char *p = va_arg(va, char *);
unsigned int l = _strnlen_s(
p, precision ? precision : (size_t)-1);
// pre padding
if (flags & FLAGS_PRECISION) {
l = (l < precision ? l : precision);
}
if (!(flags & FLAGS_LEFT)) {
while (l++ < width) {
out(' ', args);
}
}
// string output
while ((*p != 0)
&& (!(flags & FLAGS_PRECISION) || precision--)) {
out(*(p++), args);
}
// post padding
if (flags & FLAGS_LEFT) {
while (l++ < width) {
out(' ', args);
}
}
format++;
break;
}
case 'p': {
width = sizeof(void *) * 2U;
flags |= FLAGS_ZEROPAD | FLAGS_UPPERCASE;
#if defined(PRINTF_SUPPORT_LONG_LONG)
const bool is_ll = sizeof(uintptr_t) == sizeof(long long);
if (is_ll) {
idx = _ntoa_long_long(
out, args, (uintptr_t)va_arg(va, void *),
false, 16U, precision, width, flags);
} else {
#endif
idx = _ntoa_long(
out, args,
(unsigned long)((uintptr_t)va_arg(
va, void *)),
false, 16U, precision, width, flags);
#if defined(PRINTF_SUPPORT_LONG_LONG)
}
#endif
format++;
break;
}
case '%':
set_format_ch(args);
out('%', args);
unset_format_ch(args);
format++;
break;
default:
set_format_ch(args);
out(*format, args);
unset_format_ch(args);
format++;
break;
}
}
// termination
out((char)0, args);
// return written chars without terminating \0
return (int)idx;
}
///////////////////////////////////////////////////////////////////////////////
static void out_tty(char c, struct out_tty_args *args)
{ {
if (c == 0) { if (c == 0) {
return; return;
} }
struct out_tty_args *args = argp;
enum fx_tty_print_flags flags = args->flags; enum fx_tty_print_flags flags = args->flags;
if (!args->format_ch && (flags & FX_TTY_DISABLE_INTERPOLATED_FORMATTING)) { if (!args->format_ch
&& (flags & FX_TTY_DISABLE_INTERPOLATED_FORMATTING)) {
flags |= FX_TTY_DISABLE_FORMATTING; flags |= FX_TTY_DISABLE_FORMATTING;
} }
fx_tty_putc(args->tty, flags, c); fx_tty_putc(args->tty, flags, c);
} }
extern int z__fx_fctprintf(
void (*out)(char c, void *extra_arg),
void *extra_arg,
const char *format,
va_list arg);
int fx_tty_vprintf( int fx_tty_vprintf(
struct fx_tty *tty, enum fx_tty_print_flags flags, const char *format, struct fx_tty *tty,
enum fx_tty_print_flags flags,
const char *format,
va_list args) va_list args)
{ {
struct out_tty_args tty_args = { struct out_tty_args tty_args = {
@@ -977,6 +44,6 @@ int fx_tty_vprintf(
.tty = tty, .tty = tty,
}; };
const int ret = _vsnprintf(out_tty, &tty_args, format, args); const int ret = z__fx_fctprintf(out_tty, &tty_args, format, args);
return ret; return ret;
} }
+50 -10
View File
@@ -1,5 +1,6 @@
#include "../../tty.h" #include "../../tty.h"
#include <fx/encoding.h>
#include <fx/term/tty.h> #include <fx/term/tty.h>
#include <stdio.h> #include <stdio.h>
#include <stdlib.h> #include <stdlib.h>
@@ -102,9 +103,10 @@ static void init_tty(struct fx_tty *tty, FILE *in, FILE *out)
tcgetattr(fd, &tty->t_ios_default); tcgetattr(fd, &tty->t_ios_default);
memcpy(&tty->t_ios_raw, &tty->t_ios_default, sizeof tty->t_ios_raw); memcpy(&tty->t_ios_raw, &tty->t_ios_default, sizeof tty->t_ios_raw);
tty->t_ios_raw.c_iflag &= ~(ICRNL | IXON); tty->t_ios_raw.c_iflag &= ~(BRKINT | INPCK | ISTRIP | ICRNL | IXON);
tty->t_ios_raw.c_oflag &= ~(OPOST); tty->t_ios_raw.c_oflag &= ~(OPOST);
tty->t_ios_raw.c_lflag &= ~(ECHO | ICANON | IEXTEN); tty->t_ios_raw.c_cflag |= (CS8);
tty->t_ios_raw.c_lflag &= ~(ECHO | ICANON | IEXTEN | ISIG);
tty->t_flags |= FX_TTY_INIT; tty->t_flags |= FX_TTY_INIT;
} }
@@ -206,7 +208,8 @@ void fx_tty_reset_vmode(struct fx_tty *tty)
} }
static int compare_colour( static int compare_colour(
const struct fx_tty_colour *a, const struct fx_tty_colour *b) const struct fx_tty_colour *a,
const struct fx_tty_colour *b)
{ {
if (a->c_mode != b->c_mode) { if (a->c_mode != b->c_mode) {
return -1; return -1;
@@ -243,7 +246,9 @@ static int compare_colour(
return 0; return 0;
} }
static int compare_vmode(const struct fx_tty_vmode *a, const struct fx_tty_vmode *b) static int compare_vmode(
const struct fx_tty_vmode *a,
const struct fx_tty_vmode *b)
{ {
if (a->v_attrib != b->v_attrib) { if (a->v_attrib != b->v_attrib) {
return -1; return -1;
@@ -271,7 +276,9 @@ static void put_ansi_attrib(struct fx_tty *tty, const char *s)
} }
static void set_attrib( static void set_attrib(
struct fx_tty *tty, enum fx_tty_attrib old, enum fx_tty_attrib new) struct fx_tty *tty,
enum fx_tty_attrib old,
enum fx_tty_attrib new)
{ {
if (old == new) { if (old == new) {
return; return;
@@ -309,7 +316,8 @@ static void set_attrib(
} }
static void set_fg( static void set_fg(
struct fx_tty *tty, const struct fx_tty_colour *old, struct fx_tty *tty,
const struct fx_tty_colour *old,
const struct fx_tty_colour *new) const struct fx_tty_colour *new)
{ {
if (compare_colour(old, new) == 0) { if (compare_colour(old, new) == 0) {
@@ -345,7 +353,8 @@ static void set_fg(
} }
static void set_bg( static void set_bg(
struct fx_tty *tty, const struct fx_tty_colour *old, struct fx_tty *tty,
const struct fx_tty_colour *old,
const struct fx_tty_colour *new) const struct fx_tty_colour *new)
{ {
if (compare_colour(old, new) == 0) { if (compare_colour(old, new) == 0) {
@@ -399,6 +408,24 @@ void fx_tty_set_vmode(struct fx_tty *tty, const struct fx_tty_vmode *vmode)
memcpy(&tty->t_vmode, vmode, sizeof *vmode); memcpy(&tty->t_vmode, vmode, sizeof *vmode);
} }
static fx_keycode read_utf8(int fd, char header, int len)
{
char s[4] = {header, 0, 0, 0};
for (int i = 1; i < len; i++) {
char c;
int v = read(fd, &c, 1);
if (v != 1) {
return FX_KEY_EOF;
}
s[i] = c;
}
return fx_wchar_utf8_codepoint_decode(s);
}
fx_keycode fx_tty_read_key(struct fx_tty *tty) fx_keycode fx_tty_read_key(struct fx_tty *tty)
{ {
char c; char c;
@@ -423,6 +450,11 @@ fx_keycode fx_tty_read_key(struct fx_tty *tty)
return FX_TTY_CTRL_KEY(c + 'a' - 1); return FX_TTY_CTRL_KEY(c + 'a' - 1);
} }
int utf8_len = fx_wchar_utf8_header_decode(c);
if (utf8_len > 1) {
return read_utf8(fd, c, utf8_len);
}
if (c != 0x1b) { if (c != 0x1b) {
return c; return c;
} }
@@ -458,7 +490,10 @@ fx_keycode fx_tty_read_key(struct fx_tty *tty)
return c; return c;
} }
void fx_tty_move_cursor_x(struct fx_tty *tty, enum fx_tty_position_base base, int pos) void fx_tty_move_cursor_x(
struct fx_tty *tty,
enum fx_tty_position_base base,
int pos)
{ {
if (base == FX_TTY_POS_CURSOR && pos < 0 && pos >= -4) { if (base == FX_TTY_POS_CURSOR && pos < 0 && pos >= -4) {
for (int i = 0; i > pos; i--) { for (int i = 0; i > pos; i--) {
@@ -487,7 +522,10 @@ void fx_tty_move_cursor_x(struct fx_tty *tty, enum fx_tty_position_base base, in
} }
} }
void fx_tty_move_cursor_y(struct fx_tty *tty, enum fx_tty_position_base base, int pos) void fx_tty_move_cursor_y(
struct fx_tty *tty,
enum fx_tty_position_base base,
int pos)
{ {
if (base == FX_TTY_POS_START) { if (base == FX_TTY_POS_START) {
/* we don't need this functionality right now */ /* we don't need this functionality right now */
@@ -528,7 +566,9 @@ void fx_tty_clear(struct fx_tty *tty, enum fx_tty_clear_mode mode)
} }
enum fx_status fx_tty_get_dimensions( enum fx_status fx_tty_get_dimensions(
struct fx_tty *tty, unsigned int *w, unsigned int *h) struct fx_tty *tty,
unsigned int *w,
unsigned int *h)
{ {
if (!(tty->t_flags & FX_TTY_INTERACTIVE)) { if (!(tty->t_flags & FX_TTY_INTERACTIVE)) {
return -1; return -1;
+1 -1
View File
@@ -1,2 +1,2 @@
set(source_dirs hash) set(source_dirs hash int float)
export_fx_namespace_details(fx) export_fx_namespace_details(fx)
+68 -66
View File
@@ -1,84 +1,86 @@
#include "int/convert.h"
#include <fx/bool.h> #include <fx/bool.h>
#include <fx/stream.h> #include <fx/macros.h>
#include <fx/value-type.h>
/*** PRIVATE DATA *************************************************************/ HASH(bool)
struct fx_bool_p { GENERIC_CONVERT(bool, i16, i16)
bool b_value; GENERIC_CONVERT(bool, u16, u16)
}; GENERIC_CONVERT(bool, i32, i32)
GENERIC_CONVERT(bool, u32, u32)
GENERIC_CONVERT(bool, i64, i64)
GENERIC_CONVERT(bool, u64, u64)
GENERIC_CONVERT(bool, iptr, iptr)
GENERIC_CONVERT(bool, uptr, uptr)
GENERIC_CONVERT(bool, sbyte, sbyte)
GENERIC_CONVERT(bool, byte, byte)
GENERIC_CONVERT(bool, short, short)
GENERIC_CONVERT(bool, ushort, unsigned short)
GENERIC_CONVERT(bool, int, int)
GENERIC_CONVERT(bool, uint, unsigned int)
GENERIC_CONVERT(bool, long, long)
GENERIC_CONVERT(bool, ulong, unsigned long)
GENERIC_CONVERT(bool, longlong, long long)
GENERIC_CONVERT(bool, ulonglong, unsigned long long)
GENERIC_CONVERT(bool, size, size_t)
GENERIC_CONVERT(bool, float, float)
GENERIC_CONVERT(bool, double, double)
/*** PRIVATE FUNCTIONS ********************************************************/ COMPARE(bool, bool)
static void bool_set_value(struct fx_bool_p *i, bool v) static fx_status to_string(
const fx_value *v,
fx_stream *out,
const char *format)
{ {
i->b_value = v; return fx_stream_write_cstr(out, v->v_bool ? "true" : "false", NULL);
}
static bool bool_get_value(struct fx_bool_p *i)
{
return i->b_value;
}
/*** PUBLIC FUNCTIONS *********************************************************/
fx_bool *fx_bool_create(bool value)
{
fx_bool *i = fx_object_create(FX_TYPE_BOOL);
if (!i) {
return NULL;
}
struct fx_bool_p *p = fx_object_get_private(i, FX_TYPE_BOOL);
p->b_value = value;
return i;
}
void fx_bool_set_value(fx_bool *i, bool v)
{
FX_CLASS_DISPATCH_STATIC_V(FX_TYPE_BOOL, bool_set_value, i, v);
}
bool fx_bool_get_value(const fx_bool *i)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_BOOL, bool_get_value, i);
}
/*** VIRTUAL FUNCTIONS ********************************************************/
static void bool_init(fx_object *obj, void *priv)
{
struct fx_bool_p *i = priv;
i->b_value = false;
}
static void bool_fini(fx_object *obj, void *priv)
{
}
static void bool_to_string(const fx_object *obj, fx_stream *out)
{
struct fx_bool_p *i = fx_object_get_private(obj, FX_TYPE_BOOL);
if (i->b_value == false) {
fx_stream_write_cstr(out, "false", NULL);
} else {
fx_stream_write_cstr(out, "true", NULL);
}
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
FX_TYPE_CLASS_BEGIN(fx_bool) FX_TYPE_CLASS_BEGIN(fx_bool)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT) FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = bool_to_string; FX_INTERFACE_ENTRY(to_string) = to_string;
FX_INTERFACE_ENTRY(hash) = hash;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT) FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_comparable, FX_TYPE_COMPARABLE)
FX_INTERFACE_ENTRY(c_compare) = compare;
FX_TYPE_VTABLE_INTERFACE_END(fx_comparable, FX_TYPE_COMPARABLE)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_convertible, FX_TYPE_CONVERTIBLE)
FX_INTERFACE_ENTRY(c_to_i16) = to_i16;
FX_INTERFACE_ENTRY(c_to_u16) = to_u16;
FX_INTERFACE_ENTRY(c_to_i32) = to_i32;
FX_INTERFACE_ENTRY(c_to_u32) = to_u32;
FX_INTERFACE_ENTRY(c_to_i64) = to_i64;
FX_INTERFACE_ENTRY(c_to_u64) = to_u64;
FX_INTERFACE_ENTRY(c_to_iptr) = to_iptr;
FX_INTERFACE_ENTRY(c_to_uptr) = to_uptr;
FX_INTERFACE_ENTRY(c_to_sbyte) = to_sbyte;
FX_INTERFACE_ENTRY(c_to_byte) = to_byte;
FX_INTERFACE_ENTRY(c_to_short) = to_short;
FX_INTERFACE_ENTRY(c_to_ushort) = to_ushort;
FX_INTERFACE_ENTRY(c_to_int) = to_int;
FX_INTERFACE_ENTRY(c_to_uint) = to_uint;
FX_INTERFACE_ENTRY(c_to_long) = to_long;
FX_INTERFACE_ENTRY(c_to_ulong) = to_ulong;
FX_INTERFACE_ENTRY(c_to_longlong) = to_longlong;
FX_INTERFACE_ENTRY(c_to_ulonglong) = to_ulonglong;
FX_INTERFACE_ENTRY(c_to_size) = to_size;
FX_INTERFACE_ENTRY(c_to_float) = to_float;
FX_INTERFACE_ENTRY(c_to_double) = to_double;
FX_TYPE_VTABLE_INTERFACE_END(fx_convertible, FX_TYPE_CONVERTIBLE)
FX_TYPE_CLASS_END(fx_bool) FX_TYPE_CLASS_END(fx_bool)
FX_TYPE_DEFINITION_BEGIN(fx_bool) FX_TYPE_DEFINITION_BEGIN(fx_bool)
FX_TYPE_ID(0x9c8453bf, 0xfc92, 0x4b0a, 0xbcaf, 0xd0c6cdba9310); __FX_VALUE_TYPE_ID(BOOL);
FX_TYPE_EXTENDS(FX_TYPE_VALUE_TYPE);
FX_TYPE_IMPLEMENTS(FX_TYPE_CONVERTIBLE);
FX_TYPE_IMPLEMENTS(FX_TYPE_COMPARABLE);
FX_TYPE_NAME("fx.bool");
FX_TYPE_CLASS(fx_bool_class); FX_TYPE_CLASS(fx_bool_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_bool_p); FX_TYPE_INSTANCE_PRIVATE(bool);
FX_TYPE_INSTANCE_INIT(bool_init);
FX_TYPE_INSTANCE_FINI(bool_fini);
FX_TYPE_DEFINITION_END(fx_bool) FX_TYPE_DEFINITION_END(fx_bool)
+14 -2
View File
@@ -244,6 +244,15 @@ enum fx_status fx_bstr_write_cstr(
return bstr_puts(str, s, nr_written); return bstr_puts(str, s, nr_written);
} }
enum fx_status fx_bstr_write_wstr(
struct fx_bstr *str,
const fx_wchar *s,
size_t *nr_written)
{
/* TODO */
return FX_ERR_NOT_SUPPORTED;
}
enum fx_status fx_bstr_write_cstr_list( enum fx_status fx_bstr_write_cstr_list(
struct fx_bstr *str, struct fx_bstr *str,
const char **strs, const char **strs,
@@ -348,8 +357,11 @@ enum fx_status fx_bstr_write_fmt(
{ {
va_list arg; va_list arg;
va_start(arg, format); va_start(arg, format);
enum fx_status result enum fx_status result = fx_bstr_write_vfmt(
= fx_bstr_write_vfmt(str, nr_written, format, arg); str,
nr_written,
format,
arg);
va_end(arg); va_end(arg);
return result; return result;
+15
View File
@@ -0,0 +1,15 @@
#include <fx/comparable.h>
#include <fx/macros.h>
FX_TYPE_CLASS_BEGIN(fx_comparable)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_CLASS_END(fx_comparable)
FX_TYPE_DEFINITION_BEGIN(fx_comparable)
FX_TYPE_FLAGS(FX_TYPE_F_ABSTRACT);
FX_TYPE_ID(0xb25ab0c6, 0xfddb, 0x447f, 0xa54d, 0x44c4a0ef74a1);
FX_TYPE_NAME("fx.comparable");
FX_TYPE_CLASS(fx_comparable_class);
FX_TYPE_DEFINITION_END(fx_comparable)
+15
View File
@@ -0,0 +1,15 @@
#include <fx/convertible.h>
#include <fx/macros.h>
FX_TYPE_CLASS_BEGIN(fx_convertible)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = NULL;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_CLASS_END(fx_convertible)
FX_TYPE_DEFINITION_BEGIN(fx_convertible)
FX_TYPE_FLAGS(FX_TYPE_F_ABSTRACT);
FX_TYPE_ID(0x8443b648, 0x83ea, 0x4a65, 0x85ef, 0x5570b0157d0e);
FX_TYPE_NAME("fx.convertible");
FX_TYPE_CLASS(fx_convertible_class);
FX_TYPE_DEFINITION_END(fx_convertible)
+580
View File
@@ -0,0 +1,580 @@
#include <ctype.h>
#include <fx/comparable.h>
#include <fx/convertible.h>
#include <fx/cstr.h>
#include <fx/hash.h>
#include <fx/operable.h>
#include <fx/stream.h>
#include <fx/value-type.h>
#include <fx/value.h>
#include <inttypes.h>
#include <limits.h>
static fx_status to_string(
const fx_value *v,
fx_stream *out,
const char *format)
{
if (!v->v_cstr) {
return FX_SUCCESS;
}
return fx_stream_write_fmt(out, NULL, "%s", v->v_cstr);
}
static i32 compare(const fx_value *left, const fx_value *right)
{
const char *s;
if (!FX_OK(fx_value_get_cstr(right, &s))) {
return -1;
}
return strcmp(left->v_cstr, s);
}
static fx_status hash(const fx_value *v, uint64_t *out_hash)
{
*out_hash = fx_hash_cstr(v->v_cstr);
return FX_SUCCESS;
}
fx_status cstr_to_char(const char *in, fx_wchar *out)
{
if (in[0] == '\0' || in[1] == '\0') {
*out = in[0];
return FX_SUCCESS;
}
return FX_ERR_BAD_STATE;
}
fx_status cstr_to_bool(const char *in, bool *out)
{
if (!strcmp(in, "1") || !strcmp(in, "true") || strcmp(in, "True")) {
*out = true;
return FX_SUCCESS;
} else if (
!strcmp(in, "0") || !strcmp(in, "false")
|| strcmp(in, "False")) {
*out = false;
return FX_SUCCESS;
}
return FX_ERR_BAD_STATE;
}
fx_status cstr_to_i16(const char *in, i16 *out)
{
char *ep;
long v = strtol(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v < INT16_MIN || v > INT16_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (i16)v;
return FX_SUCCESS;
}
fx_status cstr_to_u16(const char *in, u16 *out)
{
char *ep;
unsigned long v = strtoul(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > UINT16_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (u16)v;
return FX_SUCCESS;
}
fx_status cstr_to_i32(const char *in, i32 *out)
{
char *ep;
long long v = strtoll(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v < INT32_MIN || v > INT32_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (i32)v;
return FX_SUCCESS;
}
fx_status cstr_to_u32(const char *in, u32 *out)
{
char *ep;
unsigned long long v = strtoull(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > UINT32_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (u32)v;
return FX_SUCCESS;
}
fx_status cstr_to_i64(const char *in, i64 *out)
{
char *ep;
long long v = strtoll(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v < INT64_MIN || v > INT64_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (i64)v;
return FX_SUCCESS;
}
fx_status cstr_to_u64(const char *in, u64 *out)
{
char *ep;
unsigned long long v = strtoull(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > UINT64_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (u16)v;
return FX_SUCCESS;
}
fx_status cstr_to_iptr(const char *in, iptr *out)
{
char *ep;
intptr_t v = strtoimax(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v < INTPTR_MIN || v > INTPTR_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (iptr)v;
return FX_SUCCESS;
}
fx_status cstr_to_uptr(const char *in, uptr *out)
{
char *ep;
uintptr_t v = strtoumax(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > UINTPTR_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (uptr)v;
return FX_SUCCESS;
}
fx_status cstr_to_sbyte(const char *in, sbyte *out)
{
char *ep;
long v = strtol(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > INT8_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (sbyte)v;
return FX_SUCCESS;
}
fx_status cstr_to_byte(const char *in, byte *out)
{
char *ep;
unsigned long v = strtoul(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > UINT8_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (byte)v;
return FX_SUCCESS;
}
fx_status cstr_to_short(const char *in, short *out)
{
char *ep;
long v = strtol(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v < SHRT_MIN || v > SHRT_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (short)v;
return FX_SUCCESS;
}
fx_status cstr_to_ushort(const char *in, unsigned short *out)
{
char *ep;
unsigned long v = strtoul(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > USHRT_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (unsigned short)v;
return FX_SUCCESS;
}
fx_status cstr_to_int(const char *in, int *out)
{
char *ep;
long v = strtol(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v < INT_MIN || v > INT_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (int)v;
return FX_SUCCESS;
}
fx_status cstr_to_uint(const char *in, unsigned int *out)
{
char *ep;
unsigned long v = strtoul(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > UINT_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (unsigned int)v;
return FX_SUCCESS;
}
fx_status cstr_to_long(const char *in, long *out)
{
char *ep;
long long v = strtoll(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v < LONG_MIN || v > LONG_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (long)v;
return FX_SUCCESS;
}
fx_status cstr_to_ulong(const char *in, unsigned long *out)
{
char *ep;
unsigned long long v = strtoull(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > ULONG_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (unsigned long)v;
return FX_SUCCESS;
}
fx_status cstr_to_longlong(const char *in, long long *out)
{
char *ep;
long long v = strtoll(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v < LLONG_MIN || v > LLONG_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (long long)v;
return FX_SUCCESS;
}
fx_status cstr_to_ulonglong(const char *in, unsigned long long *out)
{
char *ep;
unsigned long long v = strtoull(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > ULLONG_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (unsigned long long)v;
return FX_SUCCESS;
}
fx_status cstr_to_size(const char *in, size_t *out)
{
char *ep;
unsigned long long v = strtoull(in, &ep, 0);
if (*ep) {
return FX_ERR_BAD_STATE;
}
if (v > SIZE_MAX) {
return FX_ERR_BAD_STATE;
}
*out = (size_t)v;
return FX_SUCCESS;
}
fx_status cstr_to_float(const char *in, float *out)
{
#if FX_ENABLE_FLOATING_POINT
char *ep;
float v = strtof(in, &ep);
if (*ep) {
return FX_ERR_BAD_STATE;
}
*out = v;
return FX_SUCCESS;
#else
return FX_ERR_NOT_SUPPORTED;
#endif
}
fx_status cstr_to_double(const char *in, double *out)
{
#if FX_ENABLE_FLOATING_POINT
char *ep;
double v = strtod(in, &ep);
if (*ep) {
return FX_ERR_BAD_STATE;
}
*out = v;
return FX_SUCCESS;
#else
return FX_ERR_NOT_SUPPORTED;
#endif
}
fx_status cstr_to_cstr(const char *in, const char **out)
{
*out = in;
return FX_SUCCESS;
}
#define CSTR_CONVERTER(fx_type, c_type) \
static fx_status to_##fx_type(const fx_value *in, c_type *out) \
{ \
const char *s = NULL; \
fx_value_get_cstr(in, &s); \
return cstr_to_##fx_type(s, out); \
}
CSTR_CONVERTER(bool, bool)
CSTR_CONVERTER(i16, i16)
CSTR_CONVERTER(u16, u16)
CSTR_CONVERTER(i32, i32)
CSTR_CONVERTER(u32, u32)
CSTR_CONVERTER(i64, i64)
CSTR_CONVERTER(u64, u64)
CSTR_CONVERTER(iptr, iptr)
CSTR_CONVERTER(uptr, uptr)
CSTR_CONVERTER(sbyte, sbyte)
CSTR_CONVERTER(byte, byte)
CSTR_CONVERTER(short, short)
CSTR_CONVERTER(ushort, unsigned short)
CSTR_CONVERTER(int, int)
CSTR_CONVERTER(uint, unsigned int)
CSTR_CONVERTER(long, long)
CSTR_CONVERTER(ulong, unsigned long)
CSTR_CONVERTER(longlong, long long)
CSTR_CONVERTER(ulonglong, unsigned long long)
CSTR_CONVERTER(size, size_t)
CSTR_CONVERTER(float, float)
CSTR_CONVERTER(double, double)
CSTR_CONVERTER(cstr, const char *)
static fx_status add(const fx_value *l, const fx_value *r, fx_value *out)
{
const char *left = l->v_cstr;
const char *right = r->v_cstr;
fx_string *result = fx_string_create_from_cstr(left);
if (!result) {
return FX_ERR_NO_MEMORY;
}
fx_string_append_cstr(result, right);
*out = FX_VALUE_OBJECT(result);
return FX_SUCCESS;
}
/*** CLASS DEFINITION *********************************************************/
FX_TYPE_CLASS_BEGIN(fx_cstr)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = to_string;
FX_INTERFACE_ENTRY(hash) = hash;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_operable, FX_TYPE_OPERABLE)
FX_INTERFACE_ENTRY(op_add) = add;
FX_TYPE_VTABLE_INTERFACE_END(fx_operable, FX_TYPE_OPERABLE)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_comparable, FX_TYPE_COMPARABLE)
FX_INTERFACE_ENTRY(c_compare) = compare;
FX_TYPE_VTABLE_INTERFACE_END(fx_comparable, FX_TYPE_COMPARABLE)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_convertible, FX_TYPE_CONVERTIBLE)
FX_INTERFACE_ENTRY(c_to_bool) = to_bool;
FX_INTERFACE_ENTRY(c_to_bool) = to_bool;
FX_INTERFACE_ENTRY(c_to_i16) = to_i16;
FX_INTERFACE_ENTRY(c_to_u16) = to_u16;
FX_INTERFACE_ENTRY(c_to_u32) = to_u32;
FX_INTERFACE_ENTRY(c_to_i64) = to_i64;
FX_INTERFACE_ENTRY(c_to_u64) = to_u64;
FX_INTERFACE_ENTRY(c_to_iptr) = to_iptr;
FX_INTERFACE_ENTRY(c_to_uptr) = to_uptr;
FX_INTERFACE_ENTRY(c_to_sbyte) = to_sbyte;
FX_INTERFACE_ENTRY(c_to_byte) = to_byte;
FX_INTERFACE_ENTRY(c_to_short) = to_short;
FX_INTERFACE_ENTRY(c_to_ushort) = to_ushort;
FX_INTERFACE_ENTRY(c_to_int) = to_int;
FX_INTERFACE_ENTRY(c_to_uint) = to_uint;
FX_INTERFACE_ENTRY(c_to_long) = to_long;
FX_INTERFACE_ENTRY(c_to_ulong) = to_ulong;
FX_INTERFACE_ENTRY(c_to_longlong) = to_longlong;
FX_INTERFACE_ENTRY(c_to_ulonglong) = to_ulonglong;
FX_INTERFACE_ENTRY(c_to_size) = to_size;
FX_INTERFACE_ENTRY(c_to_float) = to_float;
FX_INTERFACE_ENTRY(c_to_double) = to_double;
FX_INTERFACE_ENTRY(c_to_cstr) = to_cstr;
FX_TYPE_VTABLE_INTERFACE_END(fx_convertible, FX_TYPE_CONVERTIBLE)
FX_TYPE_CLASS_END(fx_cstr)
FX_TYPE_DEFINITION_BEGIN(fx_cstr)
__FX_VALUE_TYPE_ID(CSTR);
FX_TYPE_EXTENDS(FX_TYPE_VALUE_TYPE);
FX_TYPE_IMPLEMENTS(FX_TYPE_CONVERTIBLE);
FX_TYPE_IMPLEMENTS(FX_TYPE_OPERABLE);
FX_TYPE_IMPLEMENTS(FX_TYPE_COMPARABLE);
FX_TYPE_NAME("fx.cstr");
FX_TYPE_CLASS(fx_cstr_class);
FX_TYPE_INSTANCE_PRIVATE(char *);
FX_TYPE_DEFINITION_END(fx_cstr)
/*** MISC FUNCTIONS ***********************************************************/
char *fx_strdup(const char *s)
{
size_t len = strlen(s);
char *p = malloc(len + 1);
if (!p) {
return NULL;
}
memcpy(p, s, len);
p[len] = '\0';
return p;
}
size_t fx_strlen(const char *s, fx_strlen_flags flags)
{
if (!(flags & (FX_STRLEN_IGNORE_ESC | FX_STRLEN_IGNORE_MOD))) {
return strlen(s);
}
size_t out = 0;
for (size_t i = 0; s[i]; i++) {
if (s[i] == '\033' && (flags & FX_STRLEN_IGNORE_ESC)) {
while (!isalpha(s[i]) && s[i]) {
i++;
}
continue;
}
if (s[i] == '[' && (flags & FX_STRLEN_IGNORE_MOD)) {
i++;
if (s[i] == '[') {
out++;
continue;
}
while (s[i] != ']' && s[i]) {
i++;
}
continue;
}
out++;
}
return out;
}
size_t fx_strcmp_nocase(const char *a, const char *b)
{
while (1) {
char ch_a = tolower(*a);
char ch_b = tolower(*b);
if (!ch_a && !ch_b) {
break;
}
if (ch_a != ch_b) {
return ch_a - ch_b;
}
a++;
b++;
}
return 0;
}
+35
View File
@@ -0,0 +1,35 @@
#ifndef CSTR_H_
#define CSTR_H_
#include <fx/status.h>
#include <fx/value.h>
extern fx_status cstr_to_char(const char *in, fx_wchar *out);
extern fx_status cstr_to_bool(const char *in, bool *out);
extern fx_status cstr_to_i16(const char *in, i16 *out);
extern fx_status cstr_to_u16(const char *in, u16 *out);
extern fx_status cstr_to_i32(const char *in, i32 *out);
extern fx_status cstr_to_u32(const char *in, u32 *out);
extern fx_status cstr_to_i64(const char *in, i64 *out);
extern fx_status cstr_to_u64(const char *in, u64 *out);
extern fx_status cstr_to_iptr(const char *in, iptr *out);
extern fx_status cstr_to_uptr(const char *in, uptr *out);
extern fx_status cstr_to_sbyte(const char *in, sbyte *out);
extern fx_status cstr_to_byte(const char *in, byte *out);
extern fx_status cstr_to_short(const char *in, short *out);
extern fx_status cstr_to_ushort(const char *in, unsigned short *out);
extern fx_status cstr_to_int(const char *in, int *out);
extern fx_status cstr_to_uint(const char *in, unsigned int *out);
extern fx_status cstr_to_long(const char *in, long *out);
extern fx_status cstr_to_ulong(const char *in, unsigned long *out);
extern fx_status cstr_to_longlong(const char *in, long long *out);
extern fx_status cstr_to_ulonglong(const char *in, unsigned long long *out);
extern fx_status cstr_to_size(const char *in, size_t *out);
extern fx_status cstr_to_float(const char *in, float *out);
extern fx_status cstr_to_double(const char *in, double *out);
extern fx_status cstr_to_cstr(const char *in, const char **out);
#endif
+11 -4
View File
@@ -1,6 +1,7 @@
#include <fx/collections/datetime.h> #include <fx/datetime.h>
#include <fx/stream.h> #include <fx/stream.h>
#include <fx/string.h> #include <fx/string.h>
#include <fx/value.h>
/*** PRIVATE DATA *************************************************************/ /*** PRIVATE DATA *************************************************************/
@@ -338,7 +339,7 @@ static enum fx_status encode_rfc3339(
dt->dt_sec); dt->dt_sec);
if (dt->dt_msec > 0) { if (dt->dt_msec > 0) {
fx_stream_write_fmt(out, NULL, ".%04ld", dt->dt_msec); fx_stream_write_fmt(out, NULL, ".%03ld", dt->dt_msec);
} }
if (!dt->dt_localtime) { if (!dt->dt_localtime) {
@@ -566,9 +567,13 @@ static void datetime_fini(fx_object *obj, void *priv)
struct fx_datetime_p *dt = priv; struct fx_datetime_p *dt = priv;
} }
static void _datetime_to_string(const fx_object *obj, fx_stream *out) static fx_status _datetime_to_string(
const fx_value *obj,
fx_stream *out,
const char *format)
{ {
struct fx_datetime_p *dt = fx_object_get_private(obj, FX_TYPE_DATETIME); struct fx_datetime_p *dt
= fx_object_get_private(obj->v_object, FX_TYPE_DATETIME);
if (dt->dt_has_date) { if (dt->dt_has_date) {
fx_stream_write_fmt( fx_stream_write_fmt(
@@ -607,6 +612,8 @@ static void _datetime_to_string(const fx_object *obj, fx_stream *out)
dt->dt_zone_offset_minute); dt->dt_zone_offset_minute);
} }
} }
return FX_SUCCESS;
} }
/*** CLASS DEFINITION *********************************************************/ /*** CLASS DEFINITION *********************************************************/
-280
View File
@@ -1,280 +0,0 @@
#include <fx/double.h>
#include <fx/stream.h>
#include <inttypes.h>
#include <stdint.h>
/*** PRIVATE DATA *************************************************************/
enum double_type {
DOUBLE_REGULAR = 0,
DOUBLE_INF_POSITIVE,
DOUBLE_INF_NEGATIVE,
DOUBLE_NAN_POSITIVE,
DOUBLE_NAN_NEGATIVE,
};
struct fx_double_p {
enum double_type i_type;
double i_value;
};
/*** PRIVATE FUNCTIONS ********************************************************/
static bool double_get_value(const struct fx_double_p *i)
{
return i->i_value;
}
static void double_set_value(struct fx_double_p *i, double v)
{
i->i_type = DOUBLE_REGULAR;
i->i_value = v;
}
static void double_set_value_nan(struct fx_double_p *i)
{
i->i_type = DOUBLE_NAN_POSITIVE;
i->i_value = 0;
}
static void double_set_value_nan_negative(struct fx_double_p *i)
{
i->i_type = DOUBLE_NAN_NEGATIVE;
i->i_value = 0;
}
static void double_set_value_inf(struct fx_double_p *i)
{
i->i_type = DOUBLE_INF_POSITIVE;
i->i_value = 0;
}
static void double_set_value_inf_negative(struct fx_double_p *i)
{
i->i_type = DOUBLE_INF_NEGATIVE;
i->i_value = 0;
}
static bool double_is_nan(struct fx_double_p *i)
{
return i->i_type == DOUBLE_NAN_POSITIVE
|| i->i_type == DOUBLE_NAN_NEGATIVE;
}
static bool double_is_nan_positive(struct fx_double_p *i)
{
return i->i_type == DOUBLE_NAN_POSITIVE;
}
static bool double_is_nan_negative(struct fx_double_p *i)
{
return i->i_type == DOUBLE_NAN_NEGATIVE;
}
static bool double_is_inf(struct fx_double_p *i)
{
return i->i_type == DOUBLE_INF_POSITIVE
|| i->i_type == DOUBLE_INF_NEGATIVE;
}
static bool double_is_inf_positive(struct fx_double_p *i)
{
return i->i_type == DOUBLE_INF_POSITIVE;
}
static bool double_is_inf_negative(struct fx_double_p *i)
{
return i->i_type == DOUBLE_INF_NEGATIVE;
}
/*** PUBLIC FUNCTIONS *********************************************************/
fx_double *fx_double_create(double value)
{
fx_double *i = fx_object_create(FX_TYPE_DOUBLE);
if (!i) {
return NULL;
}
struct fx_double_p *p = fx_object_get_private(i, FX_TYPE_DOUBLE);
p->i_type = DOUBLE_REGULAR;
p->i_value = value;
return i;
}
fx_double *fx_double_create_nan(void)
{
fx_double *i = fx_object_create(FX_TYPE_DOUBLE);
if (!i) {
return NULL;
}
struct fx_double_p *p = fx_object_get_private(i, FX_TYPE_DOUBLE);
p->i_type = DOUBLE_NAN_POSITIVE;
p->i_value = 0;
return i;
}
fx_double *fx_double_create_nan_negative(void)
{
fx_double *i = fx_object_create(FX_TYPE_DOUBLE);
if (!i) {
return NULL;
}
struct fx_double_p *p = fx_object_get_private(i, FX_TYPE_DOUBLE);
p->i_type = DOUBLE_NAN_NEGATIVE;
p->i_value = 0;
return i;
}
fx_double *fx_double_create_inf(void)
{
fx_double *i = fx_object_create(FX_TYPE_DOUBLE);
if (!i) {
return NULL;
}
struct fx_double_p *p = fx_object_get_private(i, FX_TYPE_DOUBLE);
p->i_type = DOUBLE_INF_POSITIVE;
p->i_value = 0;
return i;
}
fx_double *fx_double_create_inf_negative(void)
{
fx_double *i = fx_object_create(FX_TYPE_DOUBLE);
if (!i) {
return NULL;
}
struct fx_double_p *p = fx_object_get_private(i, FX_TYPE_DOUBLE);
p->i_type = DOUBLE_INF_NEGATIVE;
p->i_value = 0;
return i;
}
double fx_double_get_value(const fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DOUBLE, double_get_value, i);
}
void fx_double_set_value(fx_double *i, double v)
{
FX_CLASS_DISPATCH_STATIC_V(FX_TYPE_DOUBLE, double_set_value, i, v);
}
void fx_double_set_value_nan(fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_V0(FX_TYPE_DOUBLE, double_set_value_nan, i);
}
void fx_double_set_value_nan_negative(fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_V0(
FX_TYPE_DOUBLE,
double_set_value_nan_negative,
i);
}
void fx_double_set_value_inf(fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_V0(FX_TYPE_DOUBLE, double_set_value_inf, i);
}
void fx_double_set_value_inf_negative(fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_V0(
FX_TYPE_DOUBLE,
double_set_value_inf_negative,
i);
}
bool fx_double_is_nan(const fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DOUBLE, double_is_nan, i);
}
bool fx_double_is_nan_positive(const fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DOUBLE, double_is_nan_positive, i);
}
bool fx_double_is_nan_negative(const fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DOUBLE, double_is_nan_negative, i);
}
bool fx_double_is_inf(const fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DOUBLE, double_is_inf, i);
}
bool fx_double_is_inf_positive(const fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DOUBLE, double_is_inf_positive, i);
}
bool fx_double_is_inf_negative(const fx_double *i)
{
FX_CLASS_DISPATCH_STATIC_0(FX_TYPE_DOUBLE, double_is_inf_negative, i);
}
/*** VIRTUAL FUNCTIONS ********************************************************/
static void double_init(fx_object *obj, void *priv)
{
struct fx_double_p *i = priv;
i->i_type = DOUBLE_REGULAR;
i->i_value = 0;
}
static void double_fini(fx_object *obj, void *priv)
{
}
static void double_to_string(const fx_object *obj, fx_stream *out)
{
struct fx_double_p *i = fx_object_get_private(obj, FX_TYPE_DOUBLE);
switch (i->i_type) {
case DOUBLE_REGULAR:
fx_stream_write_fmt(out, NULL, "%" PRIdPTR, i->i_value);
break;
case DOUBLE_INF_POSITIVE:
fx_stream_write_cstr(out, "inf", NULL);
break;
case DOUBLE_INF_NEGATIVE:
fx_stream_write_cstr(out, "-inf", NULL);
break;
case DOUBLE_NAN_POSITIVE:
fx_stream_write_cstr(out, "NaN", NULL);
break;
case DOUBLE_NAN_NEGATIVE:
fx_stream_write_cstr(out, "-NaN", NULL);
break;
default:
break;
}
}
/*** CLASS DEFINITION *********************************************************/
FX_TYPE_CLASS_BEGIN(fx_double)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = double_to_string;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_CLASS_END(fx_double)
FX_TYPE_DEFINITION_BEGIN(fx_double)
FX_TYPE_ID(0x3b20f57a, 0x2ddf, 0x4682, 0x81c4, 0x4fe404a6524e);
FX_TYPE_CLASS(fx_double_class);
FX_TYPE_INSTANCE_PRIVATE(struct fx_double_p);
FX_TYPE_INSTANCE_INIT(double_init);
FX_TYPE_INSTANCE_FINI(double_fini);
FX_TYPE_DEFINITION_END(fx_double)
+61 -1
View File
@@ -3,7 +3,7 @@
bool fx_wchar_is_number(fx_wchar c) bool fx_wchar_is_number(fx_wchar c)
{ {
return iswdigit((wchar_t)c); return (c >= '0' && c <= '9');
} }
bool fx_wchar_is_alpha(fx_wchar c) bool fx_wchar_is_alpha(fx_wchar c)
@@ -1177,6 +1177,66 @@ bool fx_wchar_is_alpha(fx_wchar c)
} }
} }
static bool wchar_is_control(fx_wchar c)
{
if (c >= 0x0000 && c <= 0x001F) {
return true;
}
if (c == 0x007F) {
return true;
}
if (c >= 0x0080 && c <= 0x009F) {
return true;
}
switch (c) {
case 0x00AD:
case 0x034F:
case 0x070F:
case 0x180E:
return true;
default:
break;
}
if (c >= 0x200B && c <= 0x200F) {
return true;
}
if (c >= 0x202A && c <= 0x202E) {
return true;
}
if (c >= 0x2060 && c <= 0x2064) {
return true;
}
if (c >= 0x2066 && c <= 0x206F) {
return true;
}
if (c == 0xFEFF) {
return true;
}
if (c >= 0xFFF9 && c <= 0xFFFB) {
return true;
}
if (c >= 0x13430 && c <= 0x13438) {
return true;
}
return false;
}
bool fx_wchar_is_graph(fx_wchar c)
{
return !wchar_is_control(c);
}
bool fx_wchar_is_hex_digit(fx_wchar c) bool fx_wchar_is_hex_digit(fx_wchar c)
{ {
return iswxdigit(c); return iswxdigit(c);
+2
View File
@@ -1,4 +1,5 @@
#include <fx/endian.h> #include <fx/endian.h>
#if 0
fx_i16 fx_i16_htob(uint16_t v) fx_i16 fx_i16_htob(uint16_t v)
{ {
@@ -211,3 +212,4 @@ uint64_t fx_i64_stoh(fx_i64 v)
return x; return x;
} }
#endif
+101
View File
@@ -0,0 +1,101 @@
#include "../int/convert.h"
#include <fx/float.h>
#include <fx/value-type.h>
BOOL_CONVERT(double)
GENERIC_CONVERT(double, i16, i16)
GENERIC_CONVERT(double, u16, u16)
GENERIC_CONVERT(double, i32, i32)
GENERIC_CONVERT(double, u32, u32)
GENERIC_CONVERT(double, i64, i64)
GENERIC_CONVERT(double, u64, u64)
GENERIC_CONVERT(double, iptr, iptr)
GENERIC_CONVERT(double, uptr, uptr)
GENERIC_CONVERT(double, sbyte, sbyte)
GENERIC_CONVERT(double, byte, byte)
GENERIC_CONVERT(double, short, short)
GENERIC_CONVERT(double, ushort, unsigned short)
GENERIC_CONVERT(double, int, int)
GENERIC_CONVERT(double, uint, unsigned int)
GENERIC_CONVERT(double, long, long)
GENERIC_CONVERT(double, ulong, unsigned long)
GENERIC_CONVERT(double, longlong, long long)
GENERIC_CONVERT(double, ulonglong, unsigned long long)
GENERIC_CONVERT(double, size, size_t)
GENERIC_CONVERT(double, float, float)
TO_STRING(double, "%g")
BINARY_OP(add, +, double)
BINARY_OP(subtract, -, double)
BINARY_OP(multiply, *, double)
BINARY_OP(divide, /, double)
PREFIX_OP(increment, ++, double)
PREFIX_OP(decrement, --, double)
IN_PLACE_OP(add_in_place, +=, double)
IN_PLACE_OP(subtract_in_place, -=, double)
IN_PLACE_OP(multiply_in_place, *=, double)
IN_PLACE_OP(divide_in_place, /=, double)
COMPARE(double, double)
/*** CLASS DEFINITION *********************************************************/
FX_TYPE_CLASS_BEGIN(fx_double)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = to_string;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_comparable, FX_TYPE_COMPARABLE)
FX_INTERFACE_ENTRY(c_compare) = compare;
FX_TYPE_VTABLE_INTERFACE_END(fx_comparable, FX_TYPE_COMPARABLE)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_operable, FX_TYPE_OPERABLE)
FX_INTERFACE_ENTRY(op_add) = add;
FX_INTERFACE_ENTRY(op_subtract) = subtract;
FX_INTERFACE_ENTRY(op_multiply) = multiply;
FX_INTERFACE_ENTRY(op_divide) = divide;
FX_INTERFACE_ENTRY(op_increment) = increment;
FX_INTERFACE_ENTRY(op_decrement) = decrement;
FX_INTERFACE_ENTRY(op_add_in_place) = add_in_place;
FX_INTERFACE_ENTRY(op_subtract_in_place) = subtract_in_place;
FX_INTERFACE_ENTRY(op_multiply_in_place) = multiply_in_place;
FX_INTERFACE_ENTRY(op_divide_in_place) = divide_in_place;
FX_TYPE_VTABLE_INTERFACE_END(fx_operable, FX_TYPE_OPERABLE)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_convertible, FX_TYPE_CONVERTIBLE)
FX_INTERFACE_ENTRY(c_to_bool) = to_bool;
FX_INTERFACE_ENTRY(c_to_i16) = to_i16;
FX_INTERFACE_ENTRY(c_to_u16) = to_u16;
FX_INTERFACE_ENTRY(c_to_i32) = to_i32;
FX_INTERFACE_ENTRY(c_to_u32) = to_u32;
FX_INTERFACE_ENTRY(c_to_i64) = to_i64;
FX_INTERFACE_ENTRY(c_to_u64) = to_u64;
FX_INTERFACE_ENTRY(c_to_iptr) = to_iptr;
FX_INTERFACE_ENTRY(c_to_uptr) = to_uptr;
FX_INTERFACE_ENTRY(c_to_sbyte) = to_sbyte;
FX_INTERFACE_ENTRY(c_to_byte) = to_byte;
FX_INTERFACE_ENTRY(c_to_short) = to_short;
FX_INTERFACE_ENTRY(c_to_ushort) = to_ushort;
FX_INTERFACE_ENTRY(c_to_int) = to_int;
FX_INTERFACE_ENTRY(c_to_uint) = to_uint;
FX_INTERFACE_ENTRY(c_to_long) = to_long;
FX_INTERFACE_ENTRY(c_to_ulong) = to_ulong;
FX_INTERFACE_ENTRY(c_to_longlong) = to_longlong;
FX_INTERFACE_ENTRY(c_to_ulonglong) = to_ulonglong;
FX_INTERFACE_ENTRY(c_to_size) = to_size;
FX_INTERFACE_ENTRY(c_to_float) = to_float;
FX_TYPE_VTABLE_INTERFACE_END(fx_convertible, FX_TYPE_CONVERTIBLE)
FX_TYPE_CLASS_END(fx_double)
FX_TYPE_DEFINITION_BEGIN(fx_double)
__FX_VALUE_TYPE_ID(DOUBLE);
FX_TYPE_EXTENDS(FX_TYPE_VALUE_TYPE);
FX_TYPE_IMPLEMENTS(FX_TYPE_CONVERTIBLE);
FX_TYPE_IMPLEMENTS(FX_TYPE_OPERABLE);
FX_TYPE_IMPLEMENTS(FX_TYPE_COMPARABLE);
FX_TYPE_NAME("fx.double");
FX_TYPE_CLASS(fx_double_class);
FX_TYPE_INSTANCE_PRIVATE(double);
FX_TYPE_DEFINITION_END(fx_double)
+100
View File
@@ -0,0 +1,100 @@
#include "../int/convert.h"
#include <fx/float.h>
#include <fx/value-type.h>
TO_STRING(float, "%g")
BOOL_CONVERT(float)
GENERIC_CONVERT(float, i16, i16)
GENERIC_CONVERT(float, u16, u16)
GENERIC_CONVERT(float, i32, i32)
GENERIC_CONVERT(float, u32, u32)
GENERIC_CONVERT(float, i64, i64)
GENERIC_CONVERT(float, u64, u64)
GENERIC_CONVERT(float, iptr, iptr)
GENERIC_CONVERT(float, uptr, uptr)
GENERIC_CONVERT(float, sbyte, sbyte)
GENERIC_CONVERT(float, byte, byte)
GENERIC_CONVERT(float, short, short)
GENERIC_CONVERT(float, ushort, unsigned short)
GENERIC_CONVERT(float, int, int)
GENERIC_CONVERT(float, uint, unsigned int)
GENERIC_CONVERT(float, long, long)
GENERIC_CONVERT(float, ulong, unsigned long)
GENERIC_CONVERT(float, longlong, long long)
GENERIC_CONVERT(float, ulonglong, unsigned long long)
GENERIC_CONVERT(float, size, size_t)
GENERIC_CONVERT(float, double, double)
BINARY_OP(add, +, float)
BINARY_OP(subtract, -, float)
BINARY_OP(multiply, *, float)
BINARY_OP(divide, /, float)
PREFIX_OP(increment, ++, float)
PREFIX_OP(decrement, --, float)
IN_PLACE_OP(add_in_place, +=, float)
IN_PLACE_OP(subtract_in_place, -=, float)
IN_PLACE_OP(multiply_in_place, *=, float)
IN_PLACE_OP(divide_in_place, /=, float)
COMPARE(float, float)
/*** CLASS DEFINITION *********************************************************/
FX_TYPE_CLASS_BEGIN(fx_float)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_object, FX_TYPE_OBJECT)
FX_INTERFACE_ENTRY(to_string) = to_string;
FX_TYPE_VTABLE_INTERFACE_END(fx_object, FX_TYPE_OBJECT)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_comparable, FX_TYPE_COMPARABLE)
FX_INTERFACE_ENTRY(c_compare) = compare;
FX_TYPE_VTABLE_INTERFACE_END(fx_comparable, FX_TYPE_COMPARABLE)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_operable, FX_TYPE_OPERABLE)
FX_INTERFACE_ENTRY(op_add) = add;
FX_INTERFACE_ENTRY(op_subtract) = subtract;
FX_INTERFACE_ENTRY(op_multiply) = multiply;
FX_INTERFACE_ENTRY(op_divide) = divide;
FX_INTERFACE_ENTRY(op_increment) = increment;
FX_INTERFACE_ENTRY(op_decrement) = decrement;
FX_INTERFACE_ENTRY(op_add_in_place) = add_in_place;
FX_INTERFACE_ENTRY(op_subtract_in_place) = subtract_in_place;
FX_INTERFACE_ENTRY(op_multiply_in_place) = multiply_in_place;
FX_INTERFACE_ENTRY(op_divide_in_place) = divide_in_place;
FX_TYPE_VTABLE_INTERFACE_END(fx_operable, FX_TYPE_OPERABLE)
FX_TYPE_VTABLE_INTERFACE_BEGIN(fx_convertible, FX_TYPE_CONVERTIBLE)
FX_INTERFACE_ENTRY(c_to_bool) = to_bool;
FX_INTERFACE_ENTRY(c_to_i16) = to_i16;
FX_INTERFACE_ENTRY(c_to_u16) = to_u16;
FX_INTERFACE_ENTRY(c_to_i32) = to_i32;
FX_INTERFACE_ENTRY(c_to_u32) = to_u32;
FX_INTERFACE_ENTRY(c_to_i64) = to_i64;
FX_INTERFACE_ENTRY(c_to_u64) = to_u64;
FX_INTERFACE_ENTRY(c_to_iptr) = to_iptr;
FX_INTERFACE_ENTRY(c_to_uptr) = to_uptr;
FX_INTERFACE_ENTRY(c_to_sbyte) = to_sbyte;
FX_INTERFACE_ENTRY(c_to_byte) = to_byte;
FX_INTERFACE_ENTRY(c_to_short) = to_short;
FX_INTERFACE_ENTRY(c_to_ushort) = to_ushort;
FX_INTERFACE_ENTRY(c_to_int) = to_int;
FX_INTERFACE_ENTRY(c_to_uint) = to_uint;
FX_INTERFACE_ENTRY(c_to_long) = to_long;
FX_INTERFACE_ENTRY(c_to_ulong) = to_ulong;
FX_INTERFACE_ENTRY(c_to_longlong) = to_longlong;
FX_INTERFACE_ENTRY(c_to_ulonglong) = to_ulonglong;
FX_INTERFACE_ENTRY(c_to_size) = to_size;
FX_INTERFACE_ENTRY(c_to_double) = to_double;
FX_TYPE_VTABLE_INTERFACE_END(fx_convertible, FX_TYPE_CONVERTIBLE)
FX_TYPE_CLASS_END(fx_float)
FX_TYPE_DEFINITION_BEGIN(fx_float)
__FX_VALUE_TYPE_ID(FLOAT);
FX_TYPE_EXTENDS(FX_TYPE_VALUE_TYPE);
FX_TYPE_IMPLEMENTS(FX_TYPE_CONVERTIBLE);
FX_TYPE_IMPLEMENTS(FX_TYPE_OPERABLE);
FX_TYPE_NAME("fx.float");
FX_TYPE_CLASS(fx_float_class);
FX_TYPE_INSTANCE_PRIVATE(float);
FX_TYPE_DEFINITION_END(fx_float)
+29 -2
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@@ -40,8 +40,8 @@ static const struct fx_hash_function_ops *hash_functions[] = {
[FX_HASH_SHAKE128] = &z__fx_shake128_ops, [FX_HASH_SHAKE128] = &z__fx_shake128_ops,
[FX_HASH_SHAKE256] = &z__fx_shake256_ops, [FX_HASH_SHAKE256] = &z__fx_shake256_ops,
}; };
static const size_t nr_hash_functions static const size_t nr_hash_functions = sizeof hash_functions
= sizeof hash_functions / sizeof hash_functions[0]; / sizeof hash_functions[0];
uint64_t fx_hash_cstr(const char *s) uint64_t fx_hash_cstr(const char *s)
{ {
@@ -66,6 +66,33 @@ uint64_t fx_hash_cstr_ex(const char *s, size_t *len)
return hash; return hash;
} }
uint64_t fx_hash_wstr(const fx_wchar *s)
{
uint64_t hash = FNV1_OFFSET_BASIS;
size_t i = 0;
for (i = 0; s[i]; i++) {
hash ^= s[i];
hash *= FNV1_PRIME;
}
return hash;
}
uint64_t fx_hash_buffer(const void *p, size_t len)
{
const char *s = p;
uint64_t hash = FNV1_OFFSET_BASIS;
size_t i = 0;
for (i = 0; i < len; i++) {
hash ^= s[i];
hash *= FNV1_PRIME;
}
return hash;
}
enum fx_status fx_hash_ctx_init( enum fx_status fx_hash_ctx_init(
struct fx_hash_ctx *ctx, struct fx_hash_ctx *ctx,
enum fx_hash_function func) enum fx_hash_function func)
+8 -9
View File
@@ -30,18 +30,18 @@ A million repetitions of "a"
/* blk0() and blk() perform the initial expand. */ /* blk0() and blk() perform the initial expand. */
/* I got the idea of expanding during the round function from SSLeay */ /* I got the idea of expanding during the round function from SSLeay */
#if defined(LITTLE_ENDIAN) #if FX_ENDIAN == 0
#define blk0(i) \ #define blk0(i) \
(block->l[i] = (rol(block->l[i], 24) & 0xFF00FF00) \ (block->l[i] = (rol(block->l[i], 24) & 0xFF00FF00) \
| (rol(block->l[i], 8) & 0x00FF00FF)) | (rol(block->l[i], 8) & 0x00FF00FF))
#elif defined(BIG_ENDIAN) #elif FX_ENDIAN == 1
#define blk0(i) block->l[i] #define blk0(i) block->l[i]
#else #else
#error "Endianness not defined!" #error "Endianness not defined!"
#endif #endif
#define blk(i) \ #define blk(i) \
(block->l[i & 15] \ (block->l[i & 15] = rol( \
= rol(block->l[(i + 13) & 15] ^ block->l[(i + 8) & 15] \ block->l[(i + 13) & 15] ^ block->l[(i + 8) & 15] \
^ block->l[(i + 2) & 15] ^ block->l[i & 15], \ ^ block->l[(i + 2) & 15] ^ block->l[i & 15], \
1)) 1))
@@ -235,9 +235,8 @@ static void sha_finish(struct fx_hash_ctx *context, void *out, size_t max)
unsigned char c; unsigned char c;
for (i = 0; i < 8; i++) { for (i = 0; i < 8; i++) {
finalcount[i] finalcount[i] = (unsigned char)((context->ctx_state.sha1.count[(
= (unsigned char)((context->ctx_state.sha1 i >= 4 ? 0 : 1)]
.count[(i >= 4 ? 0 : 1)]
>> ((3 - (i & 3)) * 8)) >> ((3 - (i & 3)) * 8))
& 255); /* Endian independent */ & 255); /* Endian independent */
} }
@@ -251,8 +250,8 @@ static void sha_finish(struct fx_hash_ctx *context, void *out, size_t max)
} }
sha_update(context, finalcount, 8); /* Should cause a SHA1Transform() */ sha_update(context, finalcount, 8); /* Should cause a SHA1Transform() */
for (i = 0; i < 20; i++) { for (i = 0; i < 20; i++) {
digest[i] digest[i] = (unsigned char)((context->ctx_state.sha1
= (unsigned char)((context->ctx_state.sha1.state[i >> 2] .state[i >> 2]
>> ((3 - (i & 3)) * 8)) >> ((3 - (i & 3)) * 8))
& 255); & 255);
} }
+4
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@@ -1,6 +1,7 @@
#ifndef FX_CORE_BSTR_H_ #ifndef FX_CORE_BSTR_H_
#define FX_CORE_BSTR_H_ #define FX_CORE_BSTR_H_
#include <fx/encoding.h>
#include <fx/misc.h> #include <fx/misc.h>
#include <fx/status.h> #include <fx/status.h>
#include <stdarg.h> #include <stdarg.h>
@@ -77,6 +78,9 @@ FX_API fx_status fx_bstr_write_vfmt(
const char *format, const char *format,
va_list arg); va_list arg);
FX_API fx_status
fx_bstr_write_wstr(fx_bstr *strv, const fx_wchar *str, size_t *nr_written);
FX_API char *fx_bstr_rope(const struct fx_rope *rope, size_t *nr_written); FX_API char *fx_bstr_rope(const struct fx_rope *rope, size_t *nr_written);
FX_API char *fx_bstr_fmt(size_t *nr_written, const char *format, ...); FX_API char *fx_bstr_fmt(size_t *nr_written, const char *format, ...);
FX_API char *fx_bstr_vfmt(size_t *nr_written, const char *format, va_list arg); FX_API char *fx_bstr_vfmt(size_t *nr_written, const char *format, va_list arg);
+22
View File
@@ -0,0 +1,22 @@
#ifndef FX_COMPARABLE_H_
#define FX_COMPARABLE_H_
#include <fx/int-primitives.h>
#include <fx/macros.h>
#include <fx/value.h>
FX_DECLS_BEGIN;
#define FX_TYPE_COMPARABLE (fx_comparable_get_type())
FX_DECLARE_TYPE(fx_comparable);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_comparable)
i32 (*c_compare)(const fx_value *a, const fx_value *b);
FX_TYPE_CLASS_DECLARATION_END(fx_comparable)
FX_API fx_type_id fx_comparable_get_type(void);
FX_DECLS_END;
#endif
+59
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@@ -0,0 +1,59 @@
#ifndef FX_CONVERTIBLE_H_
#define FX_CONVERTIBLE_H_
#include <fx/encoding.h>
#include <fx/int-primitives.h>
#include <fx/macros.h>
#include <fx/string.h>
#include <fx/value.h>
FX_DECLS_BEGIN;
#define FX_TYPE_CONVERTIBLE (fx_convertible_get_type())
FX_DECLARE_TYPE(fx_convertible);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_convertible)
fx_status (*c_to_char)(const fx_value *in, fx_wchar *out);
fx_status (*c_to_bool)(const fx_value *in, bool *out);
fx_status (*c_to_i16)(const fx_value *in, i16 *out);
fx_status (*c_to_u16)(const fx_value *in, u16 *out);
fx_status (*c_to_i32)(const fx_value *in, i32 *out);
fx_status (*c_to_u32)(const fx_value *in, u32 *out);
fx_status (*c_to_i64)(const fx_value *in, i64 *out);
fx_status (*c_to_u64)(const fx_value *in, u64 *out);
fx_status (*c_to_iptr)(const fx_value *in, iptr *out);
fx_status (*c_to_uptr)(const fx_value *in, uptr *out);
fx_status (*c_to_sbyte)(const fx_value *in, sbyte *out);
fx_status (*c_to_byte)(const fx_value *in, byte *out);
fx_status (*c_to_short)(const fx_value *in, short *out);
fx_status (*c_to_ushort)(const fx_value *in, unsigned short *out);
fx_status (*c_to_int)(const fx_value *in, int *out);
fx_status (*c_to_uint)(const fx_value *in, unsigned int *out);
fx_status (*c_to_long)(const fx_value *in, long *out);
fx_status (*c_to_ulong)(const fx_value *in, unsigned long *out);
fx_status (*c_to_longlong)(const fx_value *in, long long *out);
fx_status (
*c_to_ulonglong)(const fx_value *in, unsigned long long *out);
fx_status (*c_to_size)(const fx_value *in, size_t *out);
fx_status (*c_to_float)(const fx_value *in, float *out);
fx_status (*c_to_double)(const fx_value *in, double *out);
fx_status (*c_to_cstr)(const fx_value *in, const char **out);
fx_status (*c_to_wchar)(const fx_value *in, fx_wchar *out);
fx_status (*c_to_wstr)(const fx_value *in, const fx_wchar **out);
fx_status (*c_to_object)(
const fx_value *in,
fx_value *out,
fx_type_id convert_to);
FX_TYPE_CLASS_DECLARATION_END(fx_convertible)
FX_API fx_type_id fx_convertible_get_type(void);
FX_DECLS_END;
#endif
+31
View File
@@ -0,0 +1,31 @@
#ifndef FX_CSTR_H_
#define FX_CSTR_H_
#include <fx/encoding.h>
#include <fx/macros.h>
FX_DECLS_BEGIN;
typedef enum fx_strlen_flags {
FX_STRLEN_NORMAL = 0,
FX_STRLEN_IGNORE_ESC = 0x01u,
FX_STRLEN_IGNORE_MOD = 0x02u,
FX_STRLEN_CODEPOINTS = 0x04u,
} fx_strlen_flags;
#define FX_TYPE_CSTR (fx_cstr_get_type())
FX_DECLARE_TYPE(fx_cstr);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_cstr)
FX_TYPE_CLASS_DECLARATION_END(fx_cstr)
FX_API fx_type_id fx_cstr_get_type(void);
FX_API char *fx_strdup(const char *s);
FX_API size_t fx_strlen(const char *s, fx_strlen_flags flags);
FX_API size_t fx_strcmp_nocase(const char *a, const char *b);
FX_DECLS_END;
#endif
-40
View File
@@ -1,40 +0,0 @@
#ifndef FX_DOUBLE_H_
#define FX_DOUBLE_H_
#include <fx/macros.h>
FX_DECLS_BEGIN;
#define FX_TYPE_DOUBLE (fx_double_get_type())
FX_DECLARE_TYPE(fx_double);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_double)
FX_TYPE_CLASS_DECLARATION_END(fx_double)
FX_API fx_type_id fx_double_get_type(void);
FX_API fx_double *fx_double_create(double value);
FX_API fx_double *fx_double_create_nan(void);
FX_API fx_double *fx_double_create_nan_negative(void);
FX_API fx_double *fx_double_create_inf(void);
FX_API fx_double *fx_double_create_inf_negative(void);
FX_API void fx_double_set_value(fx_double *i, double v);
FX_API void fx_double_set_value_nan(fx_double *i);
FX_API void fx_double_set_value_nan_negative(fx_double *i);
FX_API void fx_double_set_value_inf(fx_double *i);
FX_API void fx_double_set_value_inf_negative(fx_double *i);
FX_API bool fx_double_is_nan(const fx_double *i);
FX_API bool fx_double_is_nan_positive(const fx_double *i);
FX_API bool fx_double_is_nan_negative(const fx_double *i);
FX_API bool fx_double_is_inf(const fx_double *i);
FX_API bool fx_double_is_inf_positive(const fx_double *i);
FX_API bool fx_double_is_inf_negative(const fx_double *i);
FX_API double fx_double_get_value(const fx_double *i);
FX_DECLS_END;
#endif
+3 -3
View File
@@ -11,6 +11,7 @@ typedef int32_t fx_wchar;
FX_API bool fx_wchar_is_alpha(fx_wchar c); FX_API bool fx_wchar_is_alpha(fx_wchar c);
FX_API bool fx_wchar_is_number(fx_wchar c); FX_API bool fx_wchar_is_number(fx_wchar c);
FX_API bool fx_wchar_is_graph(fx_wchar c);
static inline bool fx_wchar_is_bin_digit(fx_wchar c) static inline bool fx_wchar_is_bin_digit(fx_wchar c)
{ {
return c >= '0' && c <= '1'; return c >= '0' && c <= '1';
@@ -35,8 +36,7 @@ FX_API fx_wchar fx_wchar_utf8_codepoint_decode(const char *s);
FX_API unsigned int fx_wchar_utf8_codepoint_encode(fx_wchar c, char s[4]); FX_API unsigned int fx_wchar_utf8_codepoint_encode(fx_wchar c, char s[4]);
FX_API unsigned int fx_wchar_utf8_codepoint_stride(const char *s); FX_API unsigned int fx_wchar_utf8_codepoint_stride(const char *s);
FX_API size_t fx_wchar_utf8_codepoint_count(const char *s, size_t nr_bytes); FX_API size_t fx_wchar_utf8_codepoint_count(const char *s, size_t nr_bytes);
FX_API size_t fx_wchar_utf8_string_encoded_size( FX_API size_t
const fx_wchar *s, fx_wchar_utf8_string_encoded_size(const fx_wchar *s, size_t nr_codepoints);
size_t nr_codepoints);
#endif #endif
+2 -18
View File
@@ -4,6 +4,7 @@
#include <fx/misc.h> #include <fx/misc.h>
#include <stdint.h> #include <stdint.h>
#if 0
typedef struct { typedef struct {
union { union {
unsigned char i_bytes[sizeof(uint16_t)]; unsigned char i_bytes[sizeof(uint16_t)];
@@ -27,23 +28,6 @@ typedef struct {
uint64_t i_uval; uint64_t i_uval;
}; };
} fx_i64; } fx_i64;
#endif
FX_API fx_i16 fx_i16_htob(uint16_t v);
FX_API fx_i16 fx_i16_htos(uint16_t v);
FX_API uint16_t fx_i16_btoh(fx_i16 v);
FX_API uint16_t fx_i16_stoh(fx_i16 v);
FX_API fx_i32 fx_i32_htob(uint32_t v);
FX_API fx_i32 fx_i32_htos(uint32_t v);
FX_API uint32_t fx_i32_btoh(fx_i32 v);
FX_API uint32_t fx_i32_stoh(fx_i32 v);
FX_API fx_i64 fx_i64_htob(uint64_t v);
FX_API fx_i64 fx_i64_htos(uint64_t v);
FX_API uint64_t fx_i64_btoh(fx_i64 v);
FX_API uint64_t fx_i64_stoh(fx_i64 v);
#endif #endif
+25
View File
@@ -0,0 +1,25 @@
#ifndef FX_DOUBLE_H_
#define FX_DOUBLE_H_
#include <fx/macros.h>
FX_DECLS_BEGIN;
#define FX_TYPE_FLOAT (fx_float_get_type())
#define FX_TYPE_DOUBLE (fx_double_get_type())
FX_DECLARE_TYPE(fx_float);
FX_DECLARE_TYPE(fx_double);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_float)
FX_TYPE_CLASS_DECLARATION_END(fx_float)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_double)
FX_TYPE_CLASS_DECLARATION_END(fx_double)
FX_API fx_type_id fx_float_get_type(void);
FX_API fx_type_id fx_double_get_type(void);
FX_DECLS_END;
#endif
+5 -3
View File
@@ -1,6 +1,7 @@
#ifndef FX_CORE_HASH_H_ #ifndef FX_CORE_HASH_H_
#define FX_CORE_HASH_H_ #define FX_CORE_HASH_H_
#include <fx/encoding.h>
#include <fx/misc.h> #include <fx/misc.h>
#include <fx/status.h> #include <fx/status.h>
#include <stddef.h> #include <stddef.h>
@@ -99,15 +100,16 @@ typedef struct fx_hash_ctx {
} fx_hash_ctx; } fx_hash_ctx;
FX_API uint64_t fx_hash_cstr(const char *s); FX_API uint64_t fx_hash_cstr(const char *s);
FX_API uint64_t fx_hash_wstr(const fx_wchar *s);
FX_API uint64_t fx_hash_cstr_ex(const char *s, size_t *len); FX_API uint64_t fx_hash_cstr_ex(const char *s, size_t *len);
FX_API uint64_t fx_hash_buffer(const void *s, size_t len);
FX_API fx_status fx_hash_ctx_init(fx_hash_ctx *ctx, fx_hash_function func); FX_API fx_status fx_hash_ctx_init(fx_hash_ctx *ctx, fx_hash_function func);
FX_API fx_status fx_hash_ctx_reset(fx_hash_ctx *ctx); FX_API fx_status fx_hash_ctx_reset(fx_hash_ctx *ctx);
FX_API fx_status FX_API fx_status
fx_hash_ctx_update(fx_hash_ctx *ctx, const void *p, size_t len); fx_hash_ctx_update(fx_hash_ctx *ctx, const void *p, size_t len);
FX_API fx_status fx_hash_ctx_update_rope( FX_API fx_status
fx_hash_ctx *ctx, fx_hash_ctx_update_rope(fx_hash_ctx *ctx, const struct fx_rope *rope);
const struct fx_rope *rope);
FX_API fx_status FX_API fx_status
fx_hash_ctx_finish(fx_hash_ctx *ctx, void *out_digest, size_t out_max); fx_hash_ctx_finish(fx_hash_ctx *ctx, void *out_digest, size_t out_max);
+17
View File
@@ -0,0 +1,17 @@
#ifndef FX_INT_PRIMITIVES_H_
#define FX_INT_PRIMITIVES_H_
#include <stdint.h>
typedef int8_t sbyte;
typedef uint8_t byte;
typedef int16_t i16;
typedef uint16_t u16;
typedef int32_t i32;
typedef uint32_t u32;
typedef int64_t i64;
typedef uint64_t u64;
typedef intptr_t iptr;
typedef uintptr_t uptr;
#endif
+141 -18
View File
@@ -1,39 +1,162 @@
#ifndef FX_INT_H_ #ifndef FX_INT_H_
#define FX_INT_H_ #define FX_INT_H_
#include <fx/int-primitives.h>
#include <fx/macros.h> #include <fx/macros.h>
#include <stddef.h>
#include <stdint.h>
FX_DECLS_BEGIN; FX_DECLS_BEGIN;
#define FX_TYPE_INT (fx_int_get_type()) #define FX_TYPE_I16 (fx_i16_get_type())
#define FX_TYPE_U16 (fx_u16_get_type())
#define FX_TYPE_I32 (fx_i32_get_type())
#define FX_TYPE_U32 (fx_u32_get_type())
#define FX_TYPE_I64 (fx_i64_get_type())
#define FX_TYPE_U64 (fx_u64_get_type())
#define FX_TYPE_IPTR (fx_iptr_get_type())
#define FX_TYPE_UPTR (fx_uptr_get_type())
#define FX_TYPE_SBYTE (fx_sbyte_get_type())
#define FX_TYPE_BYTE (fx_byte_get_type())
#define FX_TYPE_SHORT (fx_short_get_type())
#define FX_TYPE_USHORT (fx_ushort_get_type())
#define FX_TYPE_INT (fx_int_get_type())
#define FX_TYPE_UINT (fx_uint_get_type())
#define FX_TYPE_LONG (fx_long_get_type())
#define FX_TYPE_ULONG (fx_ulong_get_type())
#define FX_TYPE_LONGLONG (fx_longlong_get_type())
#define FX_TYPE_ULONGLONG (fx_ulonglong_get_type())
#define FX_TYPE_SIZE (fx_size_get_type())
FX_DECLARE_TYPE(fx_i16);
FX_DECLARE_TYPE(fx_u16);
FX_DECLARE_TYPE(fx_i32);
FX_DECLARE_TYPE(fx_u32);
FX_DECLARE_TYPE(fx_i64);
FX_DECLARE_TYPE(fx_u64);
FX_DECLARE_TYPE(fx_iptr);
FX_DECLARE_TYPE(fx_uptr);
FX_DECLARE_TYPE(fx_sbyte);
FX_DECLARE_TYPE(fx_byte);
FX_DECLARE_TYPE(fx_short);
FX_DECLARE_TYPE(fx_ushort);
FX_DECLARE_TYPE(fx_int); FX_DECLARE_TYPE(fx_int);
FX_DECLARE_TYPE(fx_uint);
FX_DECLARE_TYPE(fx_long);
FX_DECLARE_TYPE(fx_ulong);
FX_DECLARE_TYPE(fx_longlong);
FX_DECLARE_TYPE(fx_ulonglong);
FX_DECLARE_TYPE(fx_size);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_i16)
FX_TYPE_CLASS_DECLARATION_END(fx_i16)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_u16)
FX_TYPE_CLASS_DECLARATION_END(fx_u16)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_i32)
FX_TYPE_CLASS_DECLARATION_END(fx_i32)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_u32)
FX_TYPE_CLASS_DECLARATION_END(fx_u32)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_i64)
FX_TYPE_CLASS_DECLARATION_END(fx_i64)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_u64)
FX_TYPE_CLASS_DECLARATION_END(fx_u64)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_iptr)
FX_TYPE_CLASS_DECLARATION_END(fx_iptr)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_uptr)
FX_TYPE_CLASS_DECLARATION_END(fx_uptr)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_sbyte)
FX_TYPE_CLASS_DECLARATION_END(fx_sbyte)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_byte)
FX_TYPE_CLASS_DECLARATION_END(fx_byte)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_short)
FX_TYPE_CLASS_DECLARATION_END(fx_short)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_ushort)
FX_TYPE_CLASS_DECLARATION_END(fx_ushort)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_int) FX_TYPE_CLASS_DECLARATION_BEGIN(fx_int)
FX_TYPE_CLASS_DECLARATION_END(fx_int) FX_TYPE_CLASS_DECLARATION_END(fx_int)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_uint)
FX_TYPE_CLASS_DECLARATION_END(fx_uint)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_long)
FX_TYPE_CLASS_DECLARATION_END(fx_long)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_ulong)
FX_TYPE_CLASS_DECLARATION_END(fx_ulong)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_longlong)
FX_TYPE_CLASS_DECLARATION_END(fx_longlong)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_ulonglong)
FX_TYPE_CLASS_DECLARATION_END(fx_ulonglong)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_size)
FX_TYPE_CLASS_DECLARATION_END(fx_size)
FX_API fx_type_id fx_i16_get_type(void);
FX_API fx_type_id fx_u16_get_type(void);
FX_API fx_type_id fx_i32_get_type(void);
FX_API fx_type_id fx_u32_get_type(void);
FX_API fx_type_id fx_i64_get_type(void);
FX_API fx_type_id fx_u64_get_type(void);
FX_API fx_type_id fx_iptr_get_type(void);
FX_API fx_type_id fx_uptr_get_type(void);
FX_API fx_type_id fx_sbyte_get_type(void);
FX_API fx_type_id fx_byte_get_type(void);
FX_API fx_type_id fx_short_get_type(void);
FX_API fx_type_id fx_ushort_get_type(void);
FX_API fx_type_id fx_int_get_type(void); FX_API fx_type_id fx_int_get_type(void);
FX_API fx_type_id fx_uint_get_type(void);
FX_API fx_type_id fx_long_get_type(void);
FX_API fx_type_id fx_ulong_get_type(void);
FX_API fx_type_id fx_longlong_get_type(void);
FX_API fx_type_id fx_ulonglong_get_type(void);
FX_API fx_type_id fx_size_get_type(void);
FX_API fx_int *fx_int_create(intptr_t value); FX_API i16 fx_i16_htob(i16 v);
FX_API fx_int *fx_int_create_nan(void); FX_API i16 fx_i16_htos(i16 v);
FX_API fx_int *fx_int_create_nan_negative(void); FX_API i16 fx_i16_btoh(i16 v);
FX_API fx_int *fx_int_create_inf(void); FX_API i16 fx_i16_stoh(i16 v);
FX_API fx_int *fx_int_create_inf_negative(void);
FX_API void fx_int_set_value(fx_int *i, intptr_t v); FX_API u16 fx_u16_htob(u16 v);
FX_API void fx_int_set_value_nan(fx_int *i); FX_API u16 fx_u16_htos(u16 v);
FX_API void fx_int_set_value_nan_negative(fx_int *i); FX_API u16 fx_u16_btoh(u16 v);
FX_API void fx_int_set_value_inf(fx_int *i); FX_API u16 fx_u16_stoh(u16 v);
FX_API void fx_int_set_value_inf_negative(fx_int *i);
FX_API bool fx_int_is_nan(const fx_int *i); FX_API i32 fx_i32_htob(i32 v);
FX_API bool fx_int_is_nan_positive(const fx_int *i); FX_API i32 fx_i32_htos(i32 v);
FX_API bool fx_int_is_nan_negative(const fx_int *i); FX_API i32 fx_i32_btoh(i32 v);
FX_API bool fx_int_is_inf(const fx_int *i); FX_API i32 fx_i32_stoh(i32 v);
FX_API bool fx_int_is_inf_positive(const fx_int *i);
FX_API bool fx_int_is_inf_negative(const fx_int *i);
FX_API intptr_t fx_int_get_value(const fx_int *i); FX_API u32 fx_u32_htob(u32 v);
FX_API u32 fx_u32_htos(u32 v);
FX_API u32 fx_u32_btoh(u32 v);
FX_API u32 fx_u32_stoh(u32 v);
FX_API i64 fx_i64_htob(i64 v);
FX_API i64 fx_i64_htos(i64 v);
FX_API i64 fx_i64_btoh(i64 v);
FX_API i64 fx_i64_stoh(i64 v);
FX_API u64 fx_u64_htob(u64 v);
FX_API u64 fx_u64_htos(u64 v);
FX_API u64 fx_u64_btoh(u64 v);
FX_API u64 fx_u64_stoh(u64 v);
FX_DECLS_END; FX_DECLS_END;
+10 -36
View File
@@ -4,31 +4,16 @@
#include <fx/macros.h> #include <fx/macros.h>
#include <fx/misc.h> #include <fx/misc.h>
#include <fx/status.h> #include <fx/status.h>
#include <fx/value.h>
#include <stdbool.h> #include <stdbool.h>
FX_DECLS_BEGIN; FX_DECLS_BEGIN;
#define fx_foreach(type, var, iterator) \ #define fx_foreach(var, iterator) \
for (type var = (type)fx_iterator_get_value(iterator).v_int; \ for (const fx_value *var = fx_iterator_get_value(iterator); \
FX_OK(fx_iterator_get_status(iterator)); \ FX_OK(fx_iterator_get_status(iterator)); \
fx_iterator_move_next(iterator), \ fx_iterator_move_next(iterator), \
var = (type)fx_iterator_get_value(iterator).v_int) var = fx_iterator_get_value(iterator))
#define fx_foreach_ptr(type, var, iterator) \
for (type *var = (type *)fx_iterator_get_value(iterator).v_ptr; \
FX_OK(fx_iterator_get_status(iterator)); \
fx_iterator_move_next(iterator), \
var = (type *)fx_iterator_get_value(iterator).v_ptr)
#define fx_foreach_c(type, var, iterator) \
for (type var = (type)fx_iterator_get_cvalue(iterator).v_int; \
FX_OK(fx_iterator_get_status(iterator)); \
fx_iterator_move_next(iterator), \
var = (type)fx_iterator_get_cvalue(iterator).v_int)
#define fx_foreach_cptr(type, var, iterator) \
for (const type *var \
= (const type *)fx_iterator_get_cvalue(iterator).v_cptr; \
FX_OK(fx_iterator_get_status(iterator)); \
fx_iterator_move_next(iterator), \
var = (const type *)fx_iterator_get_cvalue(iterator).v_cptr)
#define FX_ITERATOR_VALUE_INT(v) ((fx_iterator_value) {.v_int = (v)}) #define FX_ITERATOR_VALUE_INT(v) ((fx_iterator_value) {.v_int = (v)})
#define FX_ITERATOR_VALUE_PTR(v) ((fx_iterator_value) {.v_ptr = (v)}) #define FX_ITERATOR_VALUE_PTR(v) ((fx_iterator_value) {.v_ptr = (v)})
@@ -39,12 +24,6 @@ FX_DECLS_BEGIN;
#define FX_TYPE_ITERATOR (fx_iterator_get_type()) #define FX_TYPE_ITERATOR (fx_iterator_get_type())
#define FX_TYPE_ITERABLE (fx_iterable_get_type()) #define FX_TYPE_ITERABLE (fx_iterable_get_type())
typedef union fx_iterator_value {
uintptr_t v_int;
void *v_ptr;
const void *v_cptr;
} fx_iterator_value;
__FX_DECLARE_TYPE(fx_iterator); __FX_DECLARE_TYPE(fx_iterator);
FX_DECLARE_TYPE(fx_iterable); FX_DECLARE_TYPE(fx_iterable);
@@ -52,13 +31,11 @@ FX_DECLARE_TYPE(fx_iterable);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_iterator) FX_TYPE_CLASS_DECLARATION_BEGIN(fx_iterator)
fx_status (*it_move_next)(const fx_iterator *); fx_status (*it_move_next)(const fx_iterator *);
fx_status (*it_erase)(fx_iterator *); fx_status (*it_erase)(fx_iterator *);
fx_iterator_value (*it_get_value)(fx_iterator *); const fx_value *(*it_get_value)(const fx_iterator *);
const fx_iterator_value (*it_get_cvalue)(const fx_iterator *);
FX_TYPE_CLASS_DECLARATION_END(fx_iterator) FX_TYPE_CLASS_DECLARATION_END(fx_iterator)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_iterable) FX_TYPE_CLASS_DECLARATION_BEGIN(fx_iterable)
fx_iterator *(*it_begin)(fx_iterable *); const fx_iterator *(*it_begin)(const fx_iterable *);
const fx_iterator *(*it_cbegin)(const fx_iterable *);
FX_TYPE_CLASS_DECLARATION_END(fx_iterable) FX_TYPE_CLASS_DECLARATION_END(fx_iterable)
FX_API fx_type_id fx_iterator_get_type(void); FX_API fx_type_id fx_iterator_get_type(void);
@@ -73,17 +50,14 @@ static inline void fx_iterator_unref(const fx_iterator *p)
fx_object_unref((fx_object *)p); fx_object_unref((fx_object *)p);
} }
FX_API fx_iterator *fx_iterator_begin(fx_iterable *it); FX_API const fx_iterator *fx_iterator_begin(const fx_iterable *it);
FX_API const fx_iterator *fx_iterator_cbegin(const fx_iterable *it);
FX_API fx_status fx_iterator_get_status(const fx_iterator *it); FX_API fx_status fx_iterator_get_status(const fx_iterator *it);
FX_API fx_status fx_iterator_set_status( FX_API fx_status
const fx_iterator *it, fx_iterator_set_status(const fx_iterator *it, fx_status status);
fx_status status);
FX_API fx_status fx_iterator_move_next(const fx_iterator *it); FX_API fx_status fx_iterator_move_next(const fx_iterator *it);
FX_API fx_iterator_value fx_iterator_get_value(fx_iterator *it); FX_API const fx_value *fx_iterator_get_value(const fx_iterator *it);
FX_API const fx_iterator_value fx_iterator_get_cvalue(const fx_iterator *it);
FX_API fx_status fx_iterator_erase(fx_iterator *it); FX_API fx_status fx_iterator_erase(fx_iterator *it);
static inline bool fx_iterator_is_valid(const fx_iterator *it) static inline bool fx_iterator_is_valid(const fx_iterator *it)
{ {
+17 -4
View File
@@ -5,7 +5,6 @@
#include <fx/object.h> #include <fx/object.h>
#include <fx/thread.h> #include <fx/thread.h>
#include <fx/type.h> #include <fx/type.h>
#include <fx/value.h>
#include <stdlib.h> #include <stdlib.h>
#define __FX_IFACE_I0(p, x) p##x #define __FX_IFACE_I0(p, x) p##x
@@ -28,7 +27,7 @@
#define FX_TYPE_CONSTRUCTOR(name, impl, flags, ...) \ #define FX_TYPE_CONSTRUCTOR(name, impl, flags, ...) \
do { \ do { \
if (ty) { \ if (ty) { \
fx_value_type args[] = {__VA_ARGS__}; \ fx_type_id args[] = {__VA_ARGS__}; \
fx_function *func = fx_function_create( \ fx_function *func = fx_function_create( \
name, \ name, \
FX_FUNCTION_F_CONSTRUCTOR \ FX_FUNCTION_F_CONSTRUCTOR \
@@ -36,14 +35,14 @@
(fx_function_impl)impl, \ (fx_function_impl)impl, \
args, \ args, \
sizeof args / sizeof args[0], \ sizeof args / sizeof args[0], \
FX_VALUE_TYPE_POINTER); \ FX_TYPE_OBJECT); \
fx_type_add_function(ty, func); \ fx_type_add_function(ty, func); \
} \ } \
} while (0) } while (0)
#define FX_TYPE_METHOD(return_type, name, impl, flags, ...) \ #define FX_TYPE_METHOD(return_type, name, impl, flags, ...) \
do { \ do { \
if (ty) { \ if (ty) { \
fx_value_type args[] = {__VA_ARGS__}; \ fx_type_id args[] = {__VA_ARGS__}; \
fx_function *func = fx_function_create( \ fx_function *func = fx_function_create( \
name, \ name, \
(flags), \ (flags), \
@@ -68,6 +67,16 @@
fx_type_add_function(ty, func); \ fx_type_add_function(ty, func); \
} \ } \
} while (0) } while (0)
#define FX_TYPE_PROPERTY(name, get, set) \
do { \
if (ty) { \
fx_property *prop = fx_property_create( \
name, \
get, \
set); \
fx_type_add_property(ty, prop); \
} \
} while (0)
#define FX_TYPE_VTABLE_INTERFACE_BEGIN(interface_name, interface_id) \ #define FX_TYPE_VTABLE_INTERFACE_BEGIN(interface_name, interface_id) \
interface_name##_class *__FX_IFACE_I1(iface, __LINE__) \ interface_name##_class *__FX_IFACE_I1(iface, __LINE__) \
@@ -117,6 +126,9 @@
#define FX_TYPE_ID(a, b, c, d, e) \ #define FX_TYPE_ID(a, b, c, d, e) \
fx_type_id_init(&type_info->ty_id, a, b, c, d, e) fx_type_id_init(&type_info->ty_id, a, b, c, d, e)
#define __FX_VALUE_TYPE_ID(ty_name) \
type_info->ty_id.a.p00 = __FX_VALUE_TYPE_BASEID; \
type_info->ty_id.a.p01 = __FX_VALUE_TYPE_##ty_name
#define FX_TYPE_NAME(n) type_info->ty_name = (n) #define FX_TYPE_NAME(n) type_info->ty_name = (n)
#define FX_TYPE_EXTENDS(parent_id) \ #define FX_TYPE_EXTENDS(parent_id) \
fx_type_id_copy(parent_id, &type_info->ty_parent_id) fx_type_id_copy(parent_id, &type_info->ty_parent_id)
@@ -254,6 +266,7 @@
} \ } \
self = fx_assembly_create(); self = fx_assembly_create();
#define FX_ASSEMBLY_END(id) \ #define FX_ASSEMBLY_END(id) \
fx_assembly_register(self); \
return self; \ return self; \
} \ } \
const fx_assembly *__fx_assembly_get(void) \ const fx_assembly *__fx_assembly_get(void) \
+4 -1
View File
@@ -26,7 +26,10 @@ typedef struct fx_namemap_entry {
const char *e_name; const char *e_name;
} fx_namemap_entry; } fx_namemap_entry;
FX_API fx_status fx_namemap_cleanup(fx_namemap *map); typedef void (*fx_namemap_cleanup_callback)(fx_namemap_entry *);
FX_API fx_status
fx_namemap_cleanup(fx_namemap *map, fx_namemap_cleanup_callback callback);
FX_API fx_status FX_API fx_status
fx_namemap_put(fx_namemap *map, const char *name, fx_namemap_entry *entry); fx_namemap_put(fx_namemap *map, const char *name, fx_namemap_entry *entry);
+10 -3
View File
@@ -14,12 +14,18 @@
#define FX_RV(p) (fx_object_make_rvalue(p)) #define FX_RV(p) (fx_object_make_rvalue(p))
typedef FX_TYPE_FWDREF(fx_object) fx_object; typedef FX_TYPE_FWDREF(fx_object) fx_object;
struct fx_value;
typedef struct _fx_object_class { typedef struct _fx_object_class {
void (*to_string)(const fx_object *, FX_TYPE_FWDREF(fx_stream) *); fx_status (*to_string)(
const struct fx_value *,
FX_TYPE_FWDREF(fx_stream) *,
const char *);
fx_status (*hash)(const struct fx_value *, uint64_t *);
} fx_object_class; } fx_object_class;
FX_API fx_type_id fx_object_get_type(void); FX_API fx_type_id fx_object_get_type(void);
FX_API fx_type_id fx_object_query_type(const fx_object *obj);
FX_API void *fx_object_get_private(const fx_object *object, fx_type_id type); FX_API void *fx_object_get_private(const fx_object *object, fx_type_id type);
FX_API void *fx_object_get_protected(const fx_object *object, fx_type_id type); FX_API void *fx_object_get_protected(const fx_object *object, fx_type_id type);
@@ -36,9 +42,10 @@ FX_API void fx_object_unref(fx_object *p);
FX_API fx_object *fx_object_make_rvalue(fx_object *p); FX_API fx_object *fx_object_make_rvalue(fx_object *p);
FX_API fx_object *fx_object_create(fx_type_id type); FX_API fx_object *fx_object_create(fx_type_id type);
FX_API void fx_object_to_string( FX_API fx_status fx_object_to_string(
const fx_object *p, const fx_object *p,
FX_TYPE_FWDREF(fx_stream) * out); FX_TYPE_FWDREF(fx_stream) * out,
const char *format);
FX_API bool fx_object_is_type(const fx_object *p, fx_type_id type); FX_API bool fx_object_is_type(const fx_object *p, fx_type_id type);
#endif #endif
+45
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@@ -0,0 +1,45 @@
#ifndef FX_OPERABLE_H_
#define FX_OPERABLE_H_
#include <fx/int-primitives.h>
#include <fx/macros.h>
#include <fx/value.h>
FX_DECLS_BEGIN;
#define FX_TYPE_OPERABLE (fx_operable_get_type())
FX_DECLARE_TYPE(fx_operable);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_operable)
fx_status (*op_add)(
const fx_value *left,
const fx_value *right,
fx_value *out);
fx_status (*op_subtract)(
const fx_value *left,
const fx_value *right,
fx_value *out);
fx_status (*op_multiply)(
const fx_value *left,
const fx_value *right,
fx_value *out);
fx_status (*op_divide)(
const fx_value *left,
const fx_value *right,
fx_value *out);
fx_status (*op_increment)(fx_value *value);
fx_status (*op_decrement)(fx_value *value);
fx_status (*op_add_in_place)(fx_value *left, const fx_value *right);
fx_status (
*op_subtract_in_place)(fx_value *left, const fx_value *right);
fx_status (
*op_multiply_in_place)(fx_value *left, const fx_value *right);
fx_status (*op_divide_in_place)(fx_value *left, const fx_value *right);
FX_TYPE_CLASS_DECLARATION_END(fx_operable)
FX_API fx_type_id fx_operable_get_type(void);
FX_DECLS_END;
#endif
+19
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@@ -0,0 +1,19 @@
#ifndef FX_POINTER_H_
#define FX_POINTER_H_
#include <fx/macros.h>
FX_DECLS_BEGIN;
#define FX_TYPE_POINTER (fx_pointer_get_type())
FX_DECLARE_TYPE(fx_pointer);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_pointer)
FX_TYPE_CLASS_DECLARATION_END(fx_pointer)
FX_API fx_type_id fx_pointer_get_type(void);
FX_DECLS_END;
#endif
+2
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@@ -97,6 +97,8 @@ FX_API fx_status fx_stream_read_all_bytes_s(
FX_API fx_status fx_stream_write_char(fx_stream *stream, fx_wchar c); FX_API fx_status fx_stream_write_char(fx_stream *stream, fx_wchar c);
FX_API fx_status FX_API fx_status
fx_stream_write_cstr(fx_stream *stream, const char *s, size_t *nr_written); fx_stream_write_cstr(fx_stream *stream, const char *s, size_t *nr_written);
FX_API fx_status
fx_stream_write_wstr(fx_stream *stream, const fx_wchar *s, size_t *nr_written);
FX_API fx_status fx_stream_write_bytes( FX_API fx_status fx_stream_write_bytes(
fx_stream *stream, fx_stream *stream,
+1 -15
View File
@@ -2,6 +2,7 @@
#define FX_STRING_H_ #define FX_STRING_H_
#include <ctype.h> #include <ctype.h>
#include <fx/cstr.h>
#include <fx/encoding.h> #include <fx/encoding.h>
#include <fx/iterator.h> #include <fx/iterator.h>
#include <fx/macros.h> #include <fx/macros.h>
@@ -25,16 +26,6 @@ FX_TYPE_CLASS_DECLARATION_END(fx_string)
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_string_iterator) FX_TYPE_CLASS_DECLARATION_BEGIN(fx_string_iterator)
FX_TYPE_CLASS_DECLARATION_END(fx_string_iterator) FX_TYPE_CLASS_DECLARATION_END(fx_string_iterator)
#define FX_CSTR(s) (fx_string_create_from_cstr(s))
#define FX_RV_CSTR(s) (FX_RV(fx_string_create_from_cstr(s)))
typedef enum fx_strlen_flags {
FX_STRLEN_NORMAL = 0,
FX_STRLEN_IGNORE_ESC = 0x01u,
FX_STRLEN_IGNORE_MOD = 0x02u,
FX_STRLEN_CODEPOINTS = 0x04u,
} fx_strlen_flags;
typedef enum fx_string_tokenise_flags { typedef enum fx_string_tokenise_flags {
FX_STRING_TOK_F_NORMAL = 0x00u, FX_STRING_TOK_F_NORMAL = 0x00u,
FX_STRING_TOK_F_INCLUDE_EMPTY_TOKENS = 0x01u, FX_STRING_TOK_F_INCLUDE_EMPTY_TOKENS = 0x01u,
@@ -132,11 +123,6 @@ FX_API bool fx_string_iterator_next(fx_string_iterator *it);
// FX_API fx_status fx_string_iterator_erase(fx_string_iterator *it); // FX_API fx_status fx_string_iterator_erase(fx_string_iterator *it);
FX_API bool fx_string_iterator_is_valid(const fx_string_iterator *it); FX_API bool fx_string_iterator_is_valid(const fx_string_iterator *it);
FX_API char *fx_strdup(const char *s);
FX_API size_t fx_strlen(const char *s, fx_strlen_flags flags);
FX_API fx_wchar *fx_wstrdup(const fx_wchar *s);
FX_API size_t fx_wstrlen(const fx_wchar *s);
FX_API uint64_t fx_string_hash(const fx_string *s); FX_API uint64_t fx_string_hash(const fx_string *s);
FX_DECLS_END; FX_DECLS_END;
+1
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@@ -31,6 +31,7 @@ FX_API const char *fx_stringstream_ptr(const fx_stringstream *strv);
FX_API char *fx_stringstream_steal(fx_stringstream *strv); FX_API char *fx_stringstream_steal(fx_stringstream *strv);
FX_API size_t fx_stringstream_get_length(const fx_stringstream *strv); FX_API size_t fx_stringstream_get_length(const fx_stringstream *strv);
FX_API size_t fx_stringstream_get_available(const fx_stringstream *strv);
FX_DECLS_END; FX_DECLS_END;
+4
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@@ -10,6 +10,7 @@
#include <stdint.h> #include <stdint.h>
#include <string.h> #include <string.h>
#define FX_TYPE_VOID ((fx_type_id)NULL)
#define FX_TYPE_MAX_INTERFACES 64 #define FX_TYPE_MAX_INTERFACES 64
struct _fx_class; struct _fx_class;
@@ -63,6 +64,7 @@ typedef struct fx_type_info {
struct fx_bst ty_components; struct fx_bst ty_components;
struct fx_queue ty_class_hierarchy; struct fx_queue ty_class_hierarchy;
struct fx_namemap ty_functions; struct fx_namemap ty_functions;
struct fx_namemap ty_properties;
size_t ty_instance_size, ty_class_size; size_t ty_instance_size, ty_class_size;
} fx_type_info; } fx_type_info;
@@ -92,5 +94,7 @@ static inline int fx_type_id_compare(fx_type_id a, fx_type_id b)
FX_API fx_result fx_type_register(fx_type_info *info); FX_API fx_result fx_type_register(fx_type_info *info);
FX_API fx_result FX_API fx_result
fx_type_add_function(fx_type_info *info, struct _fx_object *func); fx_type_add_function(fx_type_info *info, struct _fx_object *func);
FX_API fx_result
fx_type_add_property(fx_type_info *info, struct _fx_object *prop);
#endif #endif
-32
View File
@@ -1,32 +0,0 @@
#ifndef FX_UINT_H_
#define FX_UINT_H_
#include <fx/macros.h>
FX_DECLS_BEGIN;
#define FX_TYPE_UINT (fx_uint_get_type())
FX_DECLARE_TYPE(fx_uint);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_uint)
FX_TYPE_CLASS_DECLARATION_END(fx_uint)
FX_API fx_type_id fx_uint_get_type(void);
FX_API fx_uint *fx_uint_create(uintptr_t value);
FX_API fx_uint *fx_uint_create_nan(void);
FX_API fx_uint *fx_uint_create_inf(void);
FX_API void fx_uint_set_value(fx_uint *i, uintptr_t v);
FX_API void fx_uint_set_value_nan(fx_uint *i);
FX_API void fx_uint_set_value_inf(fx_uint *i);
FX_API bool fx_uint_is_nan(const fx_uint *i);
FX_API bool fx_uint_is_inf(const fx_uint *i);
FX_API uintptr_t fx_uint_get_value(const fx_uint *i);
FX_DECLS_END;
#endif
+56
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@@ -0,0 +1,56 @@
#ifndef FX_VALUE_TYPE_H_
#define FX_VALUE_TYPE_H_
#include <fx/macros.h>
FX_DECLS_BEGIN;
#define __FX_VALUE_TYPE_BASEID 0xe58f43c1c468899c
enum {
__FX_VALUE_TYPE_BOOL = 1,
__FX_VALUE_TYPE_I16,
__FX_VALUE_TYPE_U16,
__FX_VALUE_TYPE_I32,
__FX_VALUE_TYPE_U32,
__FX_VALUE_TYPE_I64,
__FX_VALUE_TYPE_U64,
__FX_VALUE_TYPE_IPTR,
__FX_VALUE_TYPE_UPTR,
__FX_VALUE_TYPE_SBYTE,
__FX_VALUE_TYPE_BYTE,
__FX_VALUE_TYPE_SHORT,
__FX_VALUE_TYPE_USHORT,
__FX_VALUE_TYPE_INT,
__FX_VALUE_TYPE_UINT,
__FX_VALUE_TYPE_LONG,
__FX_VALUE_TYPE_ULONG,
__FX_VALUE_TYPE_LONGLONG,
__FX_VALUE_TYPE_ULONGLONG,
__FX_VALUE_TYPE_SIZE,
__FX_VALUE_TYPE_FLOAT,
__FX_VALUE_TYPE_DOUBLE,
__FX_VALUE_TYPE_WCHAR,
__FX_VALUE_TYPE_WSTR,
__FX_VALUE_TYPE_CSTR,
__FX_VALUE_TYPE_POINTER,
};
#define FX_TYPE_VALUE_TYPE (fx_value_type_get_type())
FX_DECLARE_TYPE(fx_value_type);
FX_TYPE_CLASS_DECLARATION_BEGIN(fx_value_type)
FX_TYPE_CLASS_DECLARATION_END(fx_value_type)
FX_DECLS_END;
FX_API fx_type_id fx_value_type_get_type(void);
FX_API bool fx_type_is_value_type(fx_type_id ty);
FX_API unsigned int __fx_type_get_value_type(fx_type_id ty);
FX_API size_t __fx_value_type_get_size(unsigned int ty);
#endif
+166 -71
View File
@@ -1,66 +1,93 @@
#ifndef FX_VALUE_H_ #ifndef FX_VALUE_H_
#define FX_VALUE_H_ #define FX_VALUE_H_
#include <fx/bool.h>
#include <fx/cstr.h>
#include <fx/float.h>
#include <fx/int.h>
#include <fx/object.h> #include <fx/object.h>
#include <fx/pointer.h>
#include <fx/type.h> #include <fx/type.h>
#include <stdint.h> #include <stdint.h>
#define FX_VALUE_EMPTY ((fx_value) {}) #define FX_VALUE_EMPTY ((fx_value) {})
#define FX_VALUE_BOOL(v) \ #define __FX_VALUE_CREATE(type, member, value) \
((fx_value) { \ ((fx_value) { \
.v_type.t_primitive = FX_VALUE_TYPE_BOOL, \ .v_type = FX_TYPE_##type, \
.v_bool = (v), \ .member = (value), \
})
#define FX_VALUE_INT(v) \
((fx_value) { \
.v_type.t_primitive = FX_VALUE_TYPE_INT, \
.v_int = (v), \
})
#define FX_VALUE_UINT(v) \
((fx_value) { \
.v_type.t_primitive = FX_VALUE_TYPE_UINT, \
.v_uint = (v), \
})
#define FX_VALUE_DOUBLE(v) \
((fx_value) { \
.v_type.t_primitive = FX_VALUE_TYPE_DOUBLE, \
.v_double = (v), \
})
#define FX_VALUE_CSTR(v) \
((fx_value) { \
.v_type.t_primitive = FX_VALUE_TYPE_CSTR, \
.v_cstr = (v), \
})
#define FX_VALUE_POINTER(v) \
((fx_value) { \
.v_type.t_primitive = FX_VALUE_TYPE_POINTER, \
.v_pointer = (v), \
}) })
#define FX_BOOL(v) __FX_VALUE_CREATE(BOOL, v_bool, v)
#define FX_I16(v) __FX_VALUE_CREATE(I16, v_i16, v)
#define FX_U16(v) __FX_VALUE_CREATE(U16, v_u16, v)
#define FX_I32(v) __FX_VALUE_CREATE(I32, v_i32, v)
#define FX_U32(v) __FX_VALUE_CREATE(U32, v_u32, v)
#define FX_I64(v) __FX_VALUE_CREATE(I64, v_i64, v)
#define FX_U64(v) __FX_VALUE_CREATE(U64, v_u64, v)
#define FX_IPTR(v) __FX_VALUE_CREATE(IPTR, v_iptr, v)
#define FX_UPTR(v) __FX_VALUE_CREATE(UPTR, v_uptr, v)
typedef enum fx_value_type { #define FX_SBYTE(v) __FX_VALUE_CREATE(SBYTE, v_sbyte, v)
FX_VALUE_TYPE_NONE = 0, #define FX_BYTE(v) __FX_VALUE_CREATE(BYTE, v_byte, v)
FX_VALUE_TYPE_BOOL, #define FX_SHORT(v) __FX_VALUE_CREATE(SHORT, v_short, v)
FX_VALUE_TYPE_INT, #define FX_USHORT(v) __FX_VALUE_CREATE(USHORT, v_ushort, v)
FX_VALUE_TYPE_UINT, #define FX_INT(v) __FX_VALUE_CREATE(INT, v_int, v)
FX_VALUE_TYPE_DOUBLE, #define FX_UINT(v) __FX_VALUE_CREATE(UINT, v_uint, v)
FX_VALUE_TYPE_CSTR, #define FX_LONG(v) __FX_VALUE_CREATE(LONG, v_long, v)
FX_VALUE_TYPE_POINTER, #define FX_ULONG(v) __FX_VALUE_CREATE(ULONG, v_ulong, v)
#define FX_LONGLONG(v) __FX_VALUE_CREATE(LONGLONG, v_longlong, v)
#define FX_ULONGLONG(v) __FX_VALUE_CREATE(ULONGLONG, v_ulonglong, v)
#define FX_SIZE(v) __FX_VALUE_CREATE(SIZE, v_size, v)
/* any value greater than this represents an object fx_type_id */ #define FX_FLOAT(v) __FX_VALUE_CREATE(FLOAT, v_float, v)
__FX_VALUE_TYPE_OBJECT_BOUNDARY = 1024, #define FX_DOUBLE(v) __FX_VALUE_CREATE(DOUBLE, v_double, v)
} fx_value_type;
#define FX_WCHAR(v) __FX_VALUE_CREATE(WCHAR, v_wchar, v)
#define FX_WSTR(v) __FX_VALUE_CREATE(WSTR, v_wstr, v)
#define FX_CSTR(v) __FX_VALUE_CREATE(CSTR, v_cstr, v)
#define FX_POINTER(v) __FX_VALUE_CREATE(POINTER, v_pointer, v)
#define FX_VALUE_OBJECT_REF(v) \
((fx_value) { \
.v_type = fx_object_query_type((fx_object *)v), \
.v_object = fx_object_ref((fx_object *)(v)), \
})
#define FX_VALUE_OBJECT(v) \
((fx_value) { \
.v_type = fx_object_query_type((fx_object *)v), \
.v_object = (fx_object *)(v), \
})
typedef struct fx_value { typedef struct fx_value {
union { fx_type_id v_type;
fx_value_type t_primitive;
fx_type_id t_object;
} v_type;
union { union {
bool v_bool; bool v_bool;
intptr_t v_int;
uintptr_t v_uint; i16 v_i16;
u16 v_u16;
i32 v_i32;
u32 v_u32;
i64 v_i64;
u64 v_u64;
iptr v_iptr;
uptr v_uptr;
sbyte v_sbyte;
byte v_byte;
short v_short;
unsigned short v_ushort;
int v_int;
unsigned int v_uint;
long v_long;
unsigned long v_ulong;
long long v_longlong;
unsigned long long v_ulonglong;
size_t v_size;
float v_float;
double v_double; double v_double;
fx_wchar v_wchar;
const fx_wchar *v_wstr;
const char *v_cstr; const char *v_cstr;
void *v_pointer; void *v_pointer;
fx_object *v_object; fx_object *v_object;
@@ -68,38 +95,106 @@ typedef struct fx_value {
} fx_value; } fx_value;
FX_API void fx_value_init(fx_value *v, fx_type_id type); FX_API void fx_value_init(fx_value *v, fx_type_id type);
FX_API void fx_value_init_primitive(fx_value *v, fx_value_type type);
FX_API void fx_value_copy(fx_value *dst, fx_value *src); FX_API void fx_value_copy(fx_value *dst, const fx_value *src);
FX_API void fx_value_copy_array(fx_value *dst, fx_value *src, size_t count); FX_API fx_value fx_value_copy_return(const fx_value src);
FX_API fx_value fx_value_ref_copy_return(const fx_value *src);
FX_API void fx_value_copy_array(
fx_value *dst,
const fx_value *src,
size_t count);
FX_API void fx_value_unset(fx_value *v); FX_API void fx_value_unset(fx_value *v);
FX_API void fx_value_unset_array(fx_value *v, size_t length); FX_API void fx_value_unset_array(fx_value *v, size_t length);
FX_API void fx_value_set_bool(fx_value *v, bool b); FX_API fx_status fx_value_hash(const fx_value *v, uint64_t *out_hash);
FX_API void fx_value_set_int(fx_value *v, intptr_t i); FX_API int fx_value_compare(const fx_value *left, const fx_value *right);
FX_API void fx_value_set_uint(fx_value *v, uintptr_t u);
FX_API void fx_value_set_double(fx_value *v, double d);
FX_API void fx_value_set_static_cstr(fx_value *v, const char *cstr);
FX_API void fx_value_set_pointer(fx_value *v, void *p);
FX_API void fx_value_set_object(fx_value *v, fx_object *obj);
FX_API bool fx_value_is_bool(const fx_value *v); FX_API fx_status fx_value_to_string(
FX_API bool fx_value_is_int(const fx_value *v); const fx_value *v,
FX_API bool fx_value_is_uint(const fx_value *v); FX_TYPE_FWDREF(fx_stream) * out,
FX_API bool fx_value_is_double(const fx_value *v); const char *format);
FX_API bool fx_value_is_string(const fx_value *v);
FX_API bool fx_value_is_pointer(const fx_value *v);
FX_API bool fx_value_is_object(const fx_value *v, fx_type_id type);
FX_API bool fx_value_get_bool(const fx_value *v); FX_API bool fx_value_is_set(const fx_value *v);
FX_API intptr_t fx_value_get_int(const fx_value *v); FX_API bool fx_value_is_type(const fx_value *v, fx_type_id type);
FX_API uintptr_t fx_value_get_uint(const fx_value *v); FX_API fx_status
FX_API double fx_value_get_double(const fx_value *v); fx_value_change_type(fx_value *in, fx_value *out, fx_type_id convert_to);
FX_API const char *fx_value_get_cstr(const fx_value *v); FX_API fx_type_id
FX_API void *fx_value_get_pointer(fx_value *v); fx_value_get_common_type(const fx_value *a, const fx_value *b);
FX_API const void *fx_value_get_pointer_c(const fx_value *v);
FX_API fx_object *fx_value_get_object(fx_value *v); FX_API fx_status
FX_API const fx_object *fx_value_get_object_c(const fx_value *v); fx_value_add(const fx_value *left, const fx_value *right, fx_value *out);
FX_API fx_status
fx_value_subtract(const fx_value *left, const fx_value *right, fx_value *out);
FX_API fx_status
fx_value_multiply(const fx_value *left, const fx_value *right, fx_value *out);
FX_API fx_status
fx_value_divide(const fx_value *left, const fx_value *right, fx_value *out);
FX_API fx_status fx_value_increment(fx_value *value);
FX_API fx_status fx_value_decrement(fx_value *value);
FX_API fx_status fx_value_add_in_place(fx_value *left, const fx_value *right);
FX_API fx_status
fx_value_subtract_in_place(fx_value *left, const fx_value *right);
FX_API fx_status
fx_value_multiply_in_place(fx_value *left, const fx_value *right);
FX_API fx_status
fx_value_divide_in_place(fx_value *left, const fx_value *right);
FX_API fx_status fx_value_set_bool(fx_value *v, bool value);
FX_API fx_status fx_value_set_i16(fx_value *v, i16 value);
FX_API fx_status fx_value_set_u16(fx_value *v, u16 value);
FX_API fx_status fx_value_set_i32(fx_value *v, i32 value);
FX_API fx_status fx_value_set_u32(fx_value *v, u32 value);
FX_API fx_status fx_value_set_i64(fx_value *v, i64 value);
FX_API fx_status fx_value_set_u64(fx_value *v, u64 value);
FX_API fx_status fx_value_set_iptr(fx_value *v, iptr value);
FX_API fx_status fx_value_set_uptr(fx_value *v, uptr value);
FX_API fx_status fx_value_set_sbyte(fx_value *v, sbyte value);
FX_API fx_status fx_value_set_byte(fx_value *v, byte value);
FX_API fx_status fx_value_set_short(fx_value *v, short value);
FX_API fx_status fx_value_set_ushort(fx_value *v, unsigned short value);
FX_API fx_status fx_value_set_int(fx_value *v, int value);
FX_API fx_status fx_value_set_uint(fx_value *v, unsigned int value);
FX_API fx_status fx_value_set_long(fx_value *v, long value);
FX_API fx_status fx_value_set_ulong(fx_value *v, unsigned long value);
FX_API fx_status fx_value_set_longlong(fx_value *v, long long value);
FX_API fx_status fx_value_set_ulonglong(fx_value *v, unsigned long long value);
FX_API fx_status fx_value_set_size(fx_value *v, size_t value);
FX_API fx_status fx_value_set_float(fx_value *v, float value);
FX_API fx_status fx_value_set_double(fx_value *v, double value);
FX_API fx_status fx_value_set_cstr(fx_value *v, const char *value);
FX_API fx_status fx_value_set_wchar(fx_value *v, fx_wchar value);
FX_API fx_status fx_value_set_wstr(fx_value *v, const fx_wchar *value);
FX_API fx_status fx_value_set_pointer(fx_value *v, void *value);
FX_API fx_status fx_value_set_object(fx_value *v, fx_object *value);
FX_API fx_status fx_value_get_bool(const fx_value *v, bool *out);
FX_API fx_status fx_value_get_i16(const fx_value *v, i16 *out);
FX_API fx_status fx_value_get_u16(const fx_value *v, u16 *out);
FX_API fx_status fx_value_get_i32(const fx_value *v, i32 *out);
FX_API fx_status fx_value_get_u32(const fx_value *v, u32 *out);
FX_API fx_status fx_value_get_i64(const fx_value *v, i64 *out);
FX_API fx_status fx_value_get_u64(const fx_value *v, u64 *out);
FX_API fx_status fx_value_get_iptr(const fx_value *v, iptr *out);
FX_API fx_status fx_value_get_uptr(const fx_value *v, uptr *out);
FX_API fx_status fx_value_get_sbyte(const fx_value *v, sbyte *out);
FX_API fx_status fx_value_get_byte(const fx_value *v, byte *out);
FX_API fx_status fx_value_get_short(const fx_value *v, short *out);
FX_API fx_status fx_value_get_ushort(const fx_value *v, unsigned short *out);
FX_API fx_status fx_value_get_int(const fx_value *v, int *out);
FX_API fx_status fx_value_get_uint(const fx_value *v, unsigned int *out);
FX_API fx_status fx_value_get_long(const fx_value *v, long *out);
FX_API fx_status fx_value_get_ulong(const fx_value *v, unsigned long *out);
FX_API fx_status fx_value_get_longlong(const fx_value *v, long long *out);
FX_API fx_status
fx_value_get_ulonglong(const fx_value *v, unsigned long long *out);
FX_API fx_status fx_value_get_size(const fx_value *v, size_t *out);
FX_API fx_status fx_value_get_float(const fx_value *v, float *out);
FX_API fx_status fx_value_get_double(const fx_value *v, double *out);
FX_API fx_status fx_value_get_cstr(const fx_value *v, const char **out);
FX_API fx_status fx_value_get_wchar(const fx_value *v, fx_wchar *out);
FX_API fx_status fx_value_get_wstr(const fx_value *v, const fx_wchar **out);
FX_API fx_status fx_value_get_pointer(const fx_value *v, void **out);
FX_API fx_status fx_value_get_object(const fx_value *v, fx_object **out);
#endif #endif

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