first commit

This commit is contained in:
2026-09-13 22:23:14 +01:00
commit 6ccc800045
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version: 2
updates:
- package-ecosystem: "github-actions"
directory: "/"
schedule:
interval: "weekly"
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name: Build AlliedModders Extension
on:
push:
branches:
- master
- main
tags:
- "*"
pull_request:
branches:
- master
- main
jobs:
build-release-extension:
uses: srcdslab/ci-workflows/.github/workflows/shared_build_release_am_extension.yml@v1
with:
sdks: "sdk2013"
artifact-path: "libuv/dist"
submodules: "recursive"
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name: Dependabot auto-merge
on:
pull_request_target:
branches:
- master
- main
types:
- opened
permissions:
pull-requests: write
contents: write
jobs:
enableAutoMerge:
runs-on: ubuntu-latest
if: github.event.pull_request.user.login == 'dependabot[bot]'
steps:
- name: Enable auto-merge for Dependabot PRs
run: gh pr merge --auto --merge "$PR_URL"
env:
PR_URL: ${{ github.event.pull_request.html_url }}
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
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build
Containerfile
.venv
safetyhook
libuv
ambuild
*.env
*.ps1
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[submodule "sm-ext-common"]
path = sm-ext-common
url = https://github.com/srcdslab/sm-ext-common
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git clone --recursive https://github.com/srcdslab/sm-ext-SMjansson
git clone https://github.com/alliedmodders/hl2sdk-manifests
vim hl2sdk-manifests/manifests/css.json
remove -Wno-nontrivial-memcall
rm -r -f build; mkdir build; cd build; python ../sm-ext-common/configure.py --ext-root=.. --sdks css --enable-optimize; ambuild; cd ..
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stock bool Test_SetFilename(StringMap hTest, const char[] value) {
return hTest.SetString("filename", value);
}
stock bool Test_GetFilename(StringMap hTest, char[] value, int max_size) {
return hTest.GetString("filename", value, max_size);
}
stock bool Test_SetFails(StringMap hTest, int value) {
return hTest.SetValue("fails", value);
}
stock bool Test_GetFails(StringMap hTest, int &value) {
return hTest.GetValue("fails", value);
}
stock bool Test_SetTests(StringMap hTest, int value) {
return hTest.SetValue("tests", value);
}
stock bool Test_GetTests(StringMap hTest, int &value) {
return hTest.GetValue("tests", value);
}
stock bool Test_SetFile(StringMap hTest, Handle value) {
return hTest.SetValue("file", value);
}
stock bool Test_GetFile(StringMap hTest, Handle &value) {
return hTest.GetValue("file", value);
}
stock bool Test_SetProcessed(StringMap hTest, int value) {
return hTest.SetValue("processed", value);
}
stock bool Test_GetProcessed(StringMap hTest, int &value) {
return hTest.GetValue("processed", value);
}
stock void Test_Inherit(StringMap hObj, int count) {
int tests;
Test_GetTests(hObj, tests);
File file;
Test_GetFile(hObj, file);
tests = count;
file = null;
Test_SetTests(hObj, tests);
Test_SetFile(hObj, file);
}
stock StringMap Test_New(int count) {
StringMap hObj = new StringMap();
Test_Inherit(hObj, count);
return hObj;
}
stock void Test_Deherit(StringMap hObj) {
}
stock void Test_Destroy(StringMap hObj) {
Test_Deherit(hObj);
delete hObj;
}
stock void Test_Pass(StringMap hTest, const char[] sTest) {
int processed;
Test_GetProcessed(hTest, processed);
Test_LogThis(hTest, "ok %i - %s", processed, sTest);
processed++;
Test_SetProcessed(hTest, processed);
}
stock void Test_Fail(StringMap hTest, const char[] sTest) {
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
Test_LogThis(hTest, "not ok %i - %s", processed, sTest);
Test_LogThis(hTest, "# Failed test '%s'", sTest);
fails++;
processed++;
Test_SetFails(hTest, fails);
Test_SetProcessed(hTest, processed);
}
stock void Test_Is_String(StringMap hTest, const char[] got, const char[] expected, const char[] sTest) {
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
if (StrEqual(got, expected)) {
Test_LogThis(hTest, "ok %i - %s", processed, sTest);
}
else {
Test_LogThis(hTest, "not ok %i - %s", processed, sTest);
Test_LogThis(hTest, "# Failed test '%s'", sTest);
Test_LogThis(hTest, "# got: '%s'", got);
Test_LogThis(hTest, "# expected: '%s'", expected);
fails++;
}
processed++;
Test_SetFails(hTest, fails);
Test_SetProcessed(hTest, processed);
}
stock void Test_Is(StringMap hTest, any got, any expected, const char[] sTest) {
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
if (got == expected) {
Test_LogThis(hTest, "ok %i - %s", processed, sTest);
}
else {
Test_LogThis(hTest, "not ok %i - %s", processed, sTest);
Test_LogThis(hTest, "# Failed test '%s'", sTest);
Test_LogThis(hTest, "# got: '%i'", got);
Test_LogThis(hTest, "# expected: '%i'", expected);
fails++;
}
processed++;
Test_SetFails(hTest, fails);
Test_SetProcessed(hTest, processed);
}
stock void Test_IsNot(StringMap hTest, any got, any expected, const char[] sTest) {
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
if (got != expected) {
Test_LogThis(hTest, "ok %i - %s", processed, sTest);
}
else {
Test_LogThis(hTest, "not ok %i - %s", processed, sTest);
Test_LogThis(hTest, "# Failed test '%s'", sTest);
Test_LogThis(hTest, "# got: '%i'", got);
Test_LogThis(hTest, "# expected: '%i'", expected);
fails++;
}
processed++;
Test_SetFails(hTest, fails);
Test_SetProcessed(hTest, processed);
}
stock void Test_End(StringMap hTest) {
int tests;
Test_GetTests(hTest, tests);
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
File file;
Test_GetFile(hTest, file);
if (tests > processed) {
Test_LogThis(hTest, "# Looks like you planned to run %i tests, but only ran %i.", tests, processed);
}
if (tests < processed) {
Test_LogThis(hTest, "# Looks like you ran %i more tests than you originally planned.", processed - tests);
}
Test_LogThis(hTest, "# You ran %i of %i tests, %i failed, %i passed", processed, tests, fails, processed - fails);
if (file != null) {
delete file;
}
}
stock void Test_Ok(StringMap hTest, bool bOk, const char[] sTest) {
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
if (bOk) {
Test_LogThis(hTest, "ok %i - %s", processed, sTest);
}
else {
Test_LogThis(hTest, "not ok %i - %s", processed, sTest);
Test_LogThis(hTest, "# Failed test '%s'", sTest);
fails++;
}
processed++;
Test_SetFails(hTest, fails);
Test_SetProcessed(hTest, processed);
}
stock void Test_OkNot(StringMap hTest, bool bOkNot, const char[] sTest) {
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
if (!bOkNot) {
Test_LogThis(hTest, "ok %i - %s", processed, sTest);
}
else {
Test_LogThis(hTest, "not ok %i - %s", processed, sTest);
Test_LogThis(hTest, "# Failed test '%s'", sTest);
fails++;
}
processed++;
Test_SetFails(hTest, fails);
Test_SetProcessed(hTest, processed);
}
stock void Test_Is_Float(StringMap hTest, float got, float expected, const char[] sTest) {
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
if (got == expected) {
Test_LogThis(hTest, "ok %i - %s", processed, sTest);
}
else {
Test_LogThis(hTest, "not ok %i - %s", processed, sTest);
Test_LogThis(hTest, "# Failed test '%s'", sTest);
Test_LogThis(hTest, "# got: '%f'", got);
Test_LogThis(hTest, "# expected: '%f'", expected);
fails++;
}
processed++;
Test_SetFails(hTest, fails);
Test_SetProcessed(hTest, processed);
}
stock void Test_Like(StringMap hTest, const char[] got, const char[] pattern, const char[] sTest) {
int fails;
Test_GetFails(hTest, fails);
int processed;
Test_GetProcessed(hTest, processed);
Regex hRegEx = new Regex(pattern);
if (hRegEx.Match(got) > 0) {
Test_LogThis(hTest, "ok %i - %s", processed, sTest);
}
else {
Test_LogThis(hTest, "not ok %i - %s", processed, sTest);
Test_LogThis(hTest, "# Failed test '%s'", sTest);
Test_LogThis(hTest, "# got: '%s'", got);
Test_LogThis(hTest, "# pattern: '%s'", pattern);
fails++;
}
delete hRegEx;
processed++;
Test_SetFails(hTest, fails);
Test_SetProcessed(hTest, processed);
}
stock void Test_LogThis(StringMap hTest, const char[] format, any ...) {
char filename[PLATFORM_MAX_PATH];
Test_GetFilename(hTest, filename, PLATFORM_MAX_PATH);
File file;
Test_GetFile(hTest, file);
char sMessage[255];
VFormat(sMessage, sizeof(sMessage), format, 3);
if (StrEqual(filename, "")) {
PrintToServer(sMessage);
}
else {
if (file == null) {
file = OpenFile(filename, "a");
}
file.WriteLine(sMessage);
}
Test_SetFile(hTest, file);
}
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#pragma semicolon 1
#include <sourcemod>
#include <smjansson>
#include <test>
#define VERSION "0.0.2"
public Plugin myinfo = {
name = "SMJansson, Test, Create JSON",
author = "Thrawn",
description = "",
version = VERSION,
};
public void OnPluginStart() {
CreateConVar("sm_smjansson_test_version", VERSION, "Tests all SMJansson natives.", FCVAR_SPONLY|FCVAR_REPLICATED|FCVAR_NOTIFY|FCVAR_DONTRECORD);
bool bStepSuccess = false;
StringMap hTest = Test_New(103);
Test_Ok(hTest, LibraryExists("jansson"), "Library is loaded");
Handle hObj = json_object();
Test_IsNot(hTest, hObj, INVALID_HANDLE, "Creating JSON Object");
Test_Ok(hTest, json_is_object(hObj), "Type is Object");
Handle hString = json_string("value");
Test_IsNot(hTest, hString, INVALID_HANDLE, "Creating JSON String");
Test_Ok(hTest, json_is_string(hString), "Type is String");
char sString[32];
json_string_value(hString, sString, sizeof(sString));
Test_Is_String(hTest, sString, "value", "Checking created JSON String value");
Test_Ok(hTest, json_string_set(hString, "The answer is 42"), "Modifying string value");
json_string_value(hString, sString, sizeof(sString));
Test_Is_String(hTest, sString, "The answer is 42", "Checking modified JSON String value");
bStepSuccess = json_object_set(hObj, "__String", hString);
Test_Ok(hTest, bStepSuccess, "Attaching modified String to root object");
delete hString;
float fNumberValue;
float fReal;
Handle hReal = json_real(1.23456789);
Test_IsNot(hTest, hReal, INVALID_HANDLE, "Creating JSON Real");
Test_Is(hTest, json_typeof(hReal), view_as<int>(JSON_REAL), "Type is Real");
fReal = json_real_value(hReal);
Test_Is_Float(hTest, fReal, 1.23456789, "Checking created JSON Real value");
fNumberValue = json_number_value(hReal);
Test_Is_Float(hTest, fReal, 1.23456789, "Checking result of json_number_value");
Test_Ok(hTest, json_real_set(hReal, -444.556), "Modifying real value");
fReal = json_real_value(hReal);
Test_Is_Float(hTest, fReal, -444.556, "Checking modified JSON Real value");
fNumberValue = json_number_value(hReal);
Test_Is_Float(hTest, fReal, -444.556, "Checking result of json_number_value");
bStepSuccess = json_object_set(hObj, "__Float", hReal);
Test_Ok(hTest, bStepSuccess, "Attaching modified Real to root object");
delete hReal;
int iInteger;
Handle hInteger = json_integer(42);
Test_IsNot(hTest, hInteger, INVALID_HANDLE, "Creating JSON Integer");
Test_Is(hTest, json_typeof(hInteger), view_as<int>(JSON_INTEGER), "Type is Integer");
iInteger = json_integer_value(hInteger);
Test_Is(hTest, iInteger, 42, "Checking created JSON Integer value");
fNumberValue = json_number_value(hInteger);
Test_Is_Float(hTest, fNumberValue, 42.0, "Checking result of json_number_value");
Test_Ok(hTest, json_integer_set(hInteger, 1337), "Modifying integer value");
iInteger = json_integer_value(hInteger);
Test_Is(hTest, iInteger, 1337, "Checking modified JSON Integer value");
fNumberValue = json_number_value(hInteger);
Test_Is_Float(hTest, fNumberValue, 1337.0, "Checking result of json_number_value");
bStepSuccess = json_object_set(hObj, "__Integer", hInteger);
Test_Ok(hTest, bStepSuccess, "Attaching modified Integer to root object");
Test_Is(hTest, json_object_size(hObj), 3, "Object has the correct size");
delete hInteger;
char sShouldBe[128] = "{\"__Float\": -444.55599975585938, \"__String\": \"The answer is 42\", \"__Integer\": 1337}";
char sJSON[4096];
json_dump(hObj, sJSON, sizeof(sJSON), 0);
Test_Is_String(hTest, sJSON, sShouldBe, "Created JSON is ok");
Handle hObjNested = json_object();
bStepSuccess = json_object_set(hObj, "__NestedObject", hObjNested);
Test_Ok(hTest, bStepSuccess, "Attaching new Object to root object");
Test_Is(hTest, json_object_size(hObj), 4, "Object has the correct size");
bStepSuccess = json_object_set_new(hObjNested, "__NestedString", json_string("i am nested"));
Test_Ok(hTest, bStepSuccess, "Attaching new String to nested object (using reference stealing)");
Test_Ok(hTest, json_object_del(hObj, "__Float"), "Deleting __Float element from root object");
Test_Is(hTest, json_object_size(hObj), 3, "Object has the correct size");
Handle hArray = json_array();
Test_IsNot(hTest, hArray, INVALID_HANDLE, "Creating JSON Array");
Test_Is(hTest, json_typeof(hArray), view_as<int>(JSON_ARRAY), "Type is Array");
Handle hFirst_String = json_string("1");
Handle hSecond_Float = json_real(2.0);
Handle hThird_Integer = json_integer(3);
Handle hFourth_String = json_string("4");
Test_Ok(hTest, json_array_append(hArray, hFirst_String), "Appending String to Array");
delete hFirst_String;
Test_Is(hTest, json_array_size(hArray), 1, "Array has correct size");
Test_Ok(hTest, json_array_append(hArray, hSecond_Float), "Appending float to Array");
delete hSecond_Float;
Test_Is(hTest, json_array_size(hArray), 2, "Array has correct size");
Test_Ok(hTest, json_array_insert(hArray, 0, hThird_Integer), "Inserting Integer at position 0");
delete hThird_Integer;
Test_Is(hTest, json_array_size(hArray), 3, "Array has correct size");
Test_Ok(hTest, json_array_set(hArray, 1, hFourth_String), "Setting String at position 1");
delete hFourth_String;
Test_Is(hTest, json_array_size(hArray), 3, "Array has correct size");
bStepSuccess = json_object_set(hObjNested, "__Array", hArray);
Test_Ok(hTest, bStepSuccess, "Attaching Array to nested object");
delete hObjNested;
PrintToServer(" - Creating the same Array using reference stealing");
Handle hArrayStealing = json_array();
Test_Ok(hTest, json_array_append_new(hArrayStealing, json_string("1")), "Appending new String to Array");
Test_Ok(hTest, json_array_append_new(hArrayStealing, json_real(2.0)), "Appending new float to Array");
Test_Ok(hTest, json_array_insert_new(hArrayStealing, 0, json_integer(3)), "Inserting new Integer at position 0");
Test_Ok(hTest, json_array_set_new(hArrayStealing, 1, json_string("4")), "Setting new String at position 1");
Test_Ok(hTest, json_equal(hArray, hArrayStealing), "Arrays are equal.");
delete hArrayStealing;
delete hArray;
DeleteFile("testoutput.json");
bStepSuccess = json_dump_file(hObj, "testoutput.json", 2);
Test_Ok(hTest, bStepSuccess, "File written without errors");
Test_Ok(hTest, FileExists("testoutput.json"), "Testoutput file exists");
// Reload the written file
Handle hReloaded = json_load_file("testoutput.json");
Test_IsNot(hTest, hReloaded, INVALID_HANDLE, "Loading JSON from file.");
Test_Ok(hTest, json_equal(hReloaded, hObj), "Written file and data in memory are equal");
// Iterate over the reloaded file
Handle hIterator = json_object_iter(hReloaded);
Test_IsNot(hTest, hIterator, INVALID_HANDLE, "Creating an iterator for the reloaded object.");
// Expecting three values in random order
// Use a trie to look em up and delete them from it -> afterwards size must be 0
StringMap hTestTrie = new StringMap();
hTestTrie.SetValue("__String", view_as<int>(JSON_STRING));
hTestTrie.SetValue("__Integer", view_as<int>(JSON_INTEGER));
hTestTrie.SetValue("__NestedObject", view_as<int>(JSON_OBJECT));
while (hIterator != null) {
char sKey[128];
json_object_iter_key(hIterator, sKey, sizeof(sKey));
Handle hValue = json_object_iter_value(hIterator);
json_type xType = json_typeof(hValue);
char sType[32];
Stringify_json_type(xType, sType, sizeof(sType));
json_type xShouldBeType;
hTestTrie.GetValue(sKey, xShouldBeType);
PrintToServer(" - Found key: %s (Type: %s)", sKey, sType);
Test_Is(hTest, xShouldBeType, view_as<int>(xType), "Type is correct");
hTestTrie.Remove(sKey);
if (xType == JSON_INTEGER) {
Handle hIntegerOverwrite = json_integer(9001);
Test_Ok(hTest, json_object_iter_set(hReloaded, hIterator, hIntegerOverwrite), "Overwriting integer value at iterator position");
delete hIntegerOverwrite;
}
if (xType == JSON_STRING) {
Test_Ok(hTest, json_object_iter_set_new(hReloaded, hIterator, json_string("What is the \"Hitchhiker's guide to the galaxy\"?")), "Overwriting string value at iterator position (using reference stealing)");
}
if (xType == JSON_OBJECT) {
StringMap hTestTrieForArray = new StringMap();
hTestTrieForArray.SetValue("String", 0);
hTestTrieForArray.SetValue("Integer", 0);
hTestTrieForArray.SetValue("Real", 0);
Handle hReloadedArray = json_object_get(hValue, "__Array");
Test_IsNot(hTest, hReloadedArray, INVALID_HANDLE, "Getting JSON Array from reloaded object");
Test_Is(hTest, json_array_size(hReloadedArray), 3, "Array has correct size");
for (int iElement = 0; iElement < json_array_size(hReloadedArray); iElement++) {
Handle hElement = json_array_get(hReloadedArray, iElement);
char sArrayType[32];
Stringify_json_type(json_typeof(hElement), sArrayType, sizeof(sArrayType));
PrintToServer(" - Found element with type: %s", sArrayType);
hTestTrieForArray.Remove(sArrayType);
delete hElement;
}
Test_Is(hTest, hTestTrieForArray.Size, 0, "Looped over all array elements");
delete hTestTrieForArray;
Test_Ok(hTest, json_array_remove(hReloadedArray, 2), "Deleting 3rd element from array");
Test_Is(hTest, json_array_size(hReloadedArray), 2, "Array has correct size");
Handle hArrayForExtending = json_array();
Handle hStringForExtension = json_string("Extension 1");
Handle hStringForExtension2 = json_string("Extension 2");
json_array_append(hArrayForExtending, hStringForExtension);
json_array_append(hArrayForExtending, hStringForExtension2);
delete hStringForExtension;
delete hStringForExtension2;
Test_Ok(hTest, json_array_extend(hReloadedArray, hArrayForExtending), "Extending array");
Test_Is(hTest, json_array_size(hReloadedArray), 4, "Array has correct size");
Test_Ok(hTest, json_array_clear(hArrayForExtending), "Clearing array");
Test_Is(hTest, json_array_size(hArrayForExtending), 0, "Array is empty");
delete hArrayForExtending;
delete hReloadedArray;
}
delete hValue;
hIterator = json_object_iter_next(hReloaded, hIterator);
}
Test_Is(hTest, hTestTrie.Size, 0, "Iterator looped over all keys");
delete hTestTrie;
Test_OkNot(hTest, json_equal(hReloaded, hObj), "Written file and data in memory are not equal anymore");
PrintToServer(" - Creating the same object using json_pack");
ArrayList hParams = new ArrayList(64);
hParams.PushString("__String");
hParams.PushString("What is the \"Hitchhiker's guide to the galaxy\"?");
hParams.PushString("__Integer");
hParams.Push(9001);
hParams.PushString("__NestedObject");
hParams.PushString("__NestedString");
hParams.PushString("i am nested");
hParams.PushString("__Array");
hParams.Push(3);
hParams.PushString("4");
hParams.PushString("Extension 1");
hParams.PushString("Extension 2");
Handle hPacked = json_pack("{ss, s:is{sss:[isss]}}", hParams);
delete hParams;
Test_Ok(hTest, json_equal(hReloaded, hPacked), "Packed JSON is equal to manually created JSON");
delete hPacked;
PrintToServer(" - Testing all json_pack values");
ArrayList hParamsAll = new ArrayList(64);
hParamsAll.PushString("String");
hParamsAll.Push(42);
hParamsAll.Push(13.37);
hParamsAll.Push(20001.333);
hParamsAll.Push(true);
hParamsAll.Push(false);
Handle hPackAll = json_pack("[sifrbnb]", hParamsAll);
Test_Ok(hTest, json_is_array(hPackAll), "Packed JSON is an array");
char sElementOne[32];
json_array_get_string(hPackAll, 0, sElementOne, sizeof(sElementOne));
Test_Is_String(hTest, sElementOne, "String", "Element 1 has the correct string value");
Test_Is(hTest, json_array_get_int(hPackAll, 1), 42, "Element 2 has the correct integer value");
Test_Is(hTest, json_array_get_float(hPackAll, 2), 13.37, "Element 3 has the correct float value");
Test_Is(hTest, json_array_get_float(hPackAll, 3), 20001.333, "Element 4 has the correct float value");
Test_Is(hTest, json_array_get_bool(hPackAll, 4), true, "Element 5 is boolean true.");
Handle hElementFive = json_array_get(hPackAll, 5);
Test_Is(hTest, json_typeof(hElementFive), JSON_NULL, "Element 6 is null.");
delete hElementFive;
Test_Is(hTest, json_array_get_bool(hPackAll, 6), false, "Element 7 is boolean false.");
delete hParamsAll;
PrintToServer(" - Creating new object with 4 keys via load");
Handle hObjManipulation = json_load("{\"A\":1,\"B\":2,\"C\":3,\"D\":4}");
Test_Ok(hTest, json_object_del(hObjManipulation, "D"), "Deleting element from object");
Test_Is(hTest, json_object_size(hObjManipulation), 3, "Object size is correct");
PrintToServer(" - Creating new object to update the previous one");
Handle hObjUpdate = json_load("{\"A\":10,\"B\":20,\"C\":30,\"D\":40,\"E\":50,\"F\":60,\"G\":70}");
Test_Ok(hTest, json_object_update_existing(hObjManipulation, hObjUpdate), "Updating existing keys");
Handle hReadC = json_object_get(hObjManipulation, "C");
Test_Is(hTest, json_integer_value(hReadC), 30, "Element update successful");
Test_Is(hTest, json_object_size(hObjManipulation), 3, "Object size is correct");
delete hReadC;
Test_Ok(hTest, json_object_update_missing(hObjManipulation, hObjUpdate), "Updating missing keys");
Handle hReadF = json_object_get(hObjManipulation, "F");
Test_Is(hTest, json_integer_value(hReadF), 60, "Element insertion via update successful");
Test_Is(hTest, json_object_size(hObjManipulation), 7, "Object size is correct");
delete hReadF;
Test_Ok(hTest, json_object_clear(hObjManipulation), "Clearing new object");
Test_Is(hTest, json_object_size(hObjManipulation), 0, "Object is empty");
PrintToServer(" - Adding one of the original four keys");
Handle hBNew = json_integer(2);
json_object_set(hObjManipulation, "B", hBNew);
Test_Ok(hTest, json_object_update(hObjManipulation, hObjUpdate), "Updating all keys");
delete hBNew;
delete hObjUpdate;
Handle hReadB = json_object_get(hObjManipulation, "B");
Test_Is(hTest, json_integer_value(hReadB), 20, "Element update successful");
delete hReadB;
Test_Is(hTest, json_object_size(hObjManipulation), 7, "Object size is correct");
PrintToServer(" - Creating and adding an array to the object");
Handle hCopyArray = json_array();
Handle hNoMoreVariableNames = json_string("no more!");
Handle hEvenLessVariableNames = json_string("less n less!");
json_array_append(hCopyArray, hNoMoreVariableNames);
json_array_append(hCopyArray, hEvenLessVariableNames);
json_object_set(hObjManipulation, "Array", hCopyArray);
Handle hCopy = json_copy(hObjManipulation);
Test_IsNot(hTest, hCopy, INVALID_HANDLE, "Creating copy of JSON Object");
Test_Is(hTest, json_object_size(hCopy), 8, "Object size is correct");
Test_Ok(hTest, json_equal(hCopy, hObjManipulation), "Objects are equal");
PrintToServer(" - Modifying the array of the original Object");
Handle hEmptyVariableNames = json_string("empty!");
json_array_append(hCopyArray, hEmptyVariableNames);
Test_Ok(hTest, json_equal(hCopy, hObjManipulation), "Content of copy is still identical (was a shallow copy)");
Handle hDeepCopy = json_deep_copy(hObjManipulation);
Test_IsNot(hTest, hDeepCopy, INVALID_HANDLE, "Creating deep copy of JSON Object");
Test_Is(hTest, json_object_size(hDeepCopy), 8, "Object size is correct");
Test_Ok(hTest, json_equal(hDeepCopy, hObjManipulation), "Objects are equal");
PrintToServer(" - Modifying the array of the original Object");
Handle hDeadVariableNames = json_string("dead!");
json_array_append(hCopyArray, hDeadVariableNames);
delete hCopyArray;
Test_OkNot(hTest, json_equal(hDeepCopy, hObjManipulation), "Content of copy is not identical anymore (was a deep copy)");
Handle hBooleanObject = json_object();
json_object_set_new(hBooleanObject, "true1", json_true());
json_object_set_new(hBooleanObject, "false1", json_false());
json_object_set_new(hBooleanObject, "true2", json_boolean(true));
json_object_set_new(hBooleanObject, "false2", json_boolean(false));
json_object_set_new(hBooleanObject, "null", json_null());
char sBooleanObjectDump[4096];
json_dump(hBooleanObject, sBooleanObjectDump, sizeof(sBooleanObjectDump), 0);
char sBooleanShouldBe[4096] = "{\"false2\": false, \"true1\": true, \"false1\": false, \"true2\": true, \"null\": null}";
Test_Is_String(hTest, sBooleanObjectDump, sBooleanShouldBe, "Created JSON matches");
delete hBooleanObject;
char sErrorMsg[255];
int iLine = -1;
int iColumn = -1;
Handle hNoObj = json_load_ex("{\"apple\": 3 \"banana\": 0, \"error\": \"missing a comma\"}", sErrorMsg, sizeof(sErrorMsg), iLine, iColumn);
if (hNoObj == null) {
Test_Is(hTest, iLine, 1, "Correct error line");
Test_Is(hTest, iColumn, 20, "Correct error column");
Test_Ok(hTest, strlen(sErrorMsg) > 0, "Error message is not empty");
}
else {
delete hNoObj;
}
json_dump(hObj, sJSON, sizeof(sJSON));
PrintToServer("\nJSON 1:\n-------------\n%s\n-------------\n", sJSON);
char sJSONReloaded[4096];
json_dump(hReloaded, sJSONReloaded, sizeof(sJSONReloaded), 2);
PrintToServer("JSON 2:\n-------------\n%s\n-------------\n", sJSONReloaded);
char sJSONManipulated[4096];
json_dump(hObjManipulation, sJSONManipulated, sizeof(sJSONManipulated), 0);
PrintToServer("JSON 3:\n-------------\n%s\n-------------\n", sJSONManipulated);
PrintToServer("JSON 4:\n-------------\n%s\n-------------\n", sBooleanObjectDump);
char sJSONPackAll[4096];
json_dump(hPackAll, sJSONPackAll, sizeof(sJSONPackAll), 4);
PrintToServer("JSON 5:\n-------------\n%s\n-------------\n", sJSONPackAll);
delete hPackAll;
delete hObj;
delete hObjManipulation;
delete hReloaded;
// Finish testing
Test_End(hTest);
delete hTest;
}
+1
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1.0.1
+5
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build
Containerfile
.venv
safetyhook
AMBuilder
+515
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# vim: set sts=2 ts=8 sw=2 tw=99 et ft=python:
import os, sys, shutil
def ResolveEnvPath(env, folder):
if env in os.environ:
path = os.environ[env]
if os.path.isdir(path):
return path
return None
head = os.getcwd()
oldhead = None
while head != None and head != oldhead:
path = os.path.join(head, folder)
if os.path.isdir(path):
return path
oldhead = head
head, tail = os.path.split(head)
return None
def Normalize(path):
return os.path.abspath(os.path.normpath(path))
def SetArchFlags(compiler):
if compiler.behavior == 'gcc':
if compiler.target.arch == 'x86_64':
compiler.cflags += ['-fPIC']
elif compiler.like('msvc'):
if compiler.target.arch == 'x86_64':
compiler.defines += ['WIN64']
class ExtensionConfig(object):
def __init__(self):
self.sdk_manifests = []
self.sdks = {}
self.sdk_targets = []
self.binaries = []
self.extensions = []
self.generated_headers = None
self.ext_root = None
self.sdk_helper = None
self.hl2sdk_manifests_path = None
self.mms_root = None
self.sm_root = None
self.all_targets = []
self.target_archs = set()
self.libsafetyhook = {}
if builder.options.targets:
target_archs = builder.options.targets.split(',')
else:
target_archs = ['x86', 'x86_64']
for arch in target_archs:
try:
cxx = builder.DetectCxx(target_arch = arch)
self.target_archs.add(cxx.target.arch)
except Exception as e:
# Error if archs were manually overridden.
if builder.options.targets:
raise
print('Skipping target {}: {}'.format(arch, e))
continue
self.all_targets.append(cxx)
if not self.all_targets:
raise Exception('No suitable C/C++ compiler was found.')
def use_auto_versioning(self):
if builder.backend != 'amb2':
return False
return not getattr(builder.options, 'disable_auto_versioning', False)
def AddVersioning(self, binary, project):
if binary.compiler.target.platform == 'windows':
binary.sources += [
os.path.join(builder.sourcePath, 'src', 'version.rc')
]
binary.compiler.rcdefines += [
'PROJECT_NAME="{0}"'.format(project.name),
'BINARY_NAME="{0}"'.format(binary.outputFile),
'RC_COMPILE',
]
elif binary.compiler.target.platform == 'mac':
if binary.type == 'library':
binary.compiler.postlink += [
'-compatibility_version', '1.0.0',
'-current_version', self.productVersion
]
if self.use_auto_versioning():
binary.compiler.sourcedeps += self.generated_headers
return binary
@property
def tag(self):
if builder.options.debug == '1':
return 'Debug'
return 'Release'
def detectProductVersion(self):
product_version_path = os.path.join(self.ext_root, 'product.version')
builder.AddConfigureFile(product_version_path)
# For OS X dylib versioning
import re
with open(product_version_path, 'r') as fp:
productContents = fp.read()
m = re.match(r'(\\d+)\.(\\d+)\.(\\d+).*', productContents)
if m == None:
self.productVersion = '1.0.0'
else:
major, minor, release = m.groups()
self.productVersion = '{0}.{1}.{2}'.format(major, minor, release)
def findSdkPath(self, sdk_name):
dir_name = 'hl2sdk-{}'.format(sdk_name)
if builder.options.hl2sdk_root:
sdk_path = os.path.join(builder.options.hl2sdk_root, dir_name)
else:
sdk_path = ResolveEnvPath('HL2SDK{}'.format(sdk_name.upper()), dir_name)
if not sdk_path or not os.path.isdir(sdk_path):
raise Exception('Could not find a source copy of HL2 SDK: {}'.format(sdk_name))
sdk_path = Normalize(sdk_path)
return sdk_path
def shouldIncludeSdk(self, sdk):
return not sdk.get('source2', False)
def detectExtensionRoot(self):
if builder.options.ext_root:
self.ext_root = os.path.realpath(builder.options.ext_root)
if not self.ext_root or not os.path.isdir(self.ext_root):
raise Exception('Could not find a source copy of extension')
self.ext_root = Normalize(self.ext_root)
def detectSDKs(self):
sdk_list = builder.options.sdks.split(' ')
if builder.options.hl2sdk_manifests_path:
self.hl2sdk_manifests_path = os.path.realpath(builder.options.hl2sdk_manifests_path)
else:
self.hl2sdk_manifests_path = ResolveEnvPath('HL2SDK_MANIFESTS', 'hl2sdk-manifests')
if not self.hl2sdk_manifests_path or not os.path.isdir(self.hl2sdk_manifests_path):
raise Exception('Could not find a source copy of HL2SDK manifests')
self.hl2sdk_manifests_path = Normalize(self.hl2sdk_manifests_path)
hl2sdk_manifests_ambuild_path = os.path.join(self.hl2sdk_manifests_path, 'SdkHelpers.ambuild')
if not os.path.exists(hl2sdk_manifests_ambuild_path):
raise Exception('Could not find SdkHelpers.ambuild in the given HL2SDK Manifest path!')
hl2sdk_manifests_ambuild_path = Normalize(hl2sdk_manifests_ambuild_path)
self.sdk_helper = builder.Eval(hl2sdk_manifests_ambuild_path, {
'Project': 'sm-extension'
})
self.sdk_helper.sdk_filter = self.shouldIncludeSdk
self.sdk_helper.find_sdk_path = self.findSdkPath
self.sdk_helper.findSdks(builder, self.all_targets, sdk_list)
self.sdks = self.sdk_helper.sdks
self.sdk_manifests = self.sdk_helper.sdk_manifests
self.sdk_targets = self.sdk_helper.sdk_targets
if len(self.sdks) < 1 and len(sdk_list) and not use_none:
raise Exception('No applicable SDKs were found, nothing to do')
if builder.options.sm_path:
self.sm_root = os.path.realpath(builder.options.sm_path)
else:
self.sm_root = ResolveEnvPath('SOURCEMOD112', 'sourcemod-1.12')
if not self.sm_root:
self.sm_root = ResolveEnvPath('SOURCEMOD', 'sourcemod')
if not self.sm_root:
self.sm_root = ResolveEnvPath('SOURCEMOD_DEV', 'sourcemod-central')
if not self.sm_root or not os.path.isdir(self.sm_root):
raise Exception('Could not find a source copy of SourceMod')
self.sm_root = Normalize(self.sm_root)
if builder.options.mms_path:
self.mms_root = builder.options.mms_path
else:
self.mms_root = ResolveEnvPath('MMSOURCE112', 'mmsource-1.12')
if not self.mms_root:
self.mms_root = ResolveEnvPath('MMSOURCE', 'metamod-source')
if not self.mms_root:
self.mms_root = ResolveEnvPath('MMSOURCE_DEV', 'mmsource-central')
if not self.mms_root or not os.path.isdir(self.mms_root):
raise Exception('Could not find a source copy of Metamod:Source')
self.mms_root = Normalize(self.mms_root)
def configure(self):
if not set(self.target_archs).issubset(['x86', 'x86_64']):
raise Exception('Unknown target architecture: {0}'.format(self.target_archs))
for cxx in self.all_targets:
self.configure_cxx(cxx)
def configure_cxx(self, cxx):
if cxx.family == 'msvc':
if cxx.version < 1914 and builder.options.generator != 'vs':
raise Exception(f'Only MSVC 2017 15.7 and later are supported, full C++17 support is required. ({str(cxx.version)} < 1914)')
elif cxx.family == 'gcc':
if cxx.version < 'gcc-9':
raise Exception('Only GCC versions 9 or later are supported, full C++17 support is required.')
elif cxx.family == 'clang':
if cxx.version < 'clang-5':
raise Exception('Only clang versions 5 or later are supported, full C++17 support is required.')
if cxx.like('gcc'):
self.configure_gcc(cxx)
elif cxx.family == 'msvc':
self.configure_msvc(cxx)
# Optimizaiton
if builder.options.opt == '1':
cxx.defines += ['NDEBUG']
# Debugging
if builder.options.debug == '1':
cxx.defines += ['DEBUG', '_DEBUG']
# Platform-specifics
if cxx.target.platform == 'linux':
self.configure_linux(cxx)
elif cxx.target.platform == 'mac':
self.configure_mac(cxx)
elif cxx.target.platform == 'windows':
self.configure_windows(cxx)
cxx.includes += [
os.path.join(self.sm_root, 'public'),
]
if self.use_auto_versioning():
cxx.defines += ['SM_GENERATED_BUILD']
cxx.includes += [
os.path.join(builder.buildPath, 'includes')
]
def configure_gcc(self, cxx):
cxx.defines += [
'stricmp=strcasecmp',
'_stricmp=strcasecmp',
'_snprintf=snprintf',
'_vsnprintf=vsnprintf',
'HAVE_STDINT_H',
'GNUC',
]
cxx.cflags += [
'-pipe',
'-fno-strict-aliasing',
'-Wall',
'-Werror',
'-Wno-unused',
'-Wno-switch',
'-Wno-array-bounds',
'-msse',
'-Wno-unknown-pragmas',
'-Wno-dangling-else',
'-fvisibility=hidden',
]
cxx.cxxflags += [
'-std=c++17',
'-fno-threadsafe-statics',
'-Wno-non-virtual-dtor',
'-Wno-overloaded-virtual',
'-Wno-register',
'-fvisibility-inlines-hidden',
]
have_gcc = cxx.family == 'gcc'
have_clang = cxx.family == 'clang'
if cxx.version >= 'clang-3.9' or cxx.version == 'clang-3.4' or cxx.version > 'apple-clang-6.0':
cxx.cxxflags += ['-Wno-expansion-to-defined']
if cxx.version == 'clang-3.9' or cxx.version == 'apple-clang-8.0':
cxx.cflags += ['-Wno-varargs']
if cxx.version >= 'clang-3.4' or cxx.version >= 'apple-clang-7.0':
cxx.cxxflags += ['-Wno-inconsistent-missing-override']
if cxx.version >= 'clang-2.9' or cxx.version >= 'apple-clang-3.0':
cxx.cxxflags += ['-Wno-null-dereference']
if have_clang or (cxx.version >= 'gcc-4.6'):
cxx.cflags += ['-Wno-narrowing']
if have_clang or (cxx.version >= 'gcc-4.7'):
cxx.cxxflags += ['-Wno-delete-non-virtual-dtor']
if cxx.version >= 'gcc-4.8':
cxx.cflags += ['-Wno-unused-result']
if cxx.version >= 'gcc-9.0':
cxx.cxxflags += ['-Wno-class-memaccess', '-Wno-packed-not-aligned']
if have_clang:
cxx.cxxflags += ['-Wno-implicit-exception-spec-mismatch']
if cxx.version >= 'apple-clang-5.1' or cxx.version >= 'clang-3.4':
cxx.cxxflags += ['-Wno-deprecated-register']
else:
cxx.cxxflags += ['-Wno-deprecated']
cxx.cflags += ['-Wno-sometimes-uninitialized']
# Work around SDK warnings.
if cxx.version >= 'clang-10.0' or cxx.version >= 'apple-clang-12.0':
cxx.cflags += [
'-Wno-implicit-int-float-conversion',
'-Wno-tautological-overlap-compare',
]
if have_gcc:
cxx.cflags += ['-mfpmath=sse']
cxx.cflags += ['-Wno-maybe-uninitialized']
if builder.options.opt == '1':
cxx.cflags += ['-O3']
def configure_msvc(self, cxx):
if builder.options.debug == '1':
cxx.cflags += ['/MTd']
cxx.linkflags += ['/NODEFAULTLIB:libcmt']
else:
cxx.cflags += ['/MT']
cxx.defines += [
'_CRT_SECURE_NO_DEPRECATE',
'_CRT_SECURE_NO_WARNINGS',
'_CRT_NONSTDC_NO_DEPRECATE',
'_ITERATOR_DEBUG_LEVEL=0',
]
cxx.cflags += [
'/W3',
]
cxx.cxxflags += [
'/EHsc',
'/GR-',
'/TP',
'/std:c++17',
]
cxx.linkflags += [
'kernel32.lib',
'user32.lib',
'gdi32.lib',
'winspool.lib',
'comdlg32.lib',
'advapi32.lib',
'shell32.lib',
'ole32.lib',
'oleaut32.lib',
'uuid.lib',
'odbc32.lib',
'odbccp32.lib',
]
if builder.options.opt == '1':
cxx.cflags += ['/Ox', '/Zo']
cxx.linkflags += ['/OPT:ICF', '/OPT:REF']
if builder.options.debug == '1':
cxx.cflags += ['/Od', '/RTC1']
# This needs to be after our optimization flags which could otherwise disable it.
# Don't omit the frame pointer.
cxx.cflags += ['/Oy-']
def configure_linux(self, cxx):
cxx.defines += ['LINUX', '_LINUX', 'POSIX', '_FILE_OFFSET_BITS=64']
cxx.linkflags += ['-lm']
if cxx.family == 'gcc':
cxx.linkflags += ['-static-libgcc']
elif cxx.family == 'clang':
cxx.linkflags += ['-lgcc_eh']
def configure_mac(self, cxx):
cxx.defines += ['OSX', '_OSX', 'POSIX', 'KE_ABSOLUTELY_NO_STL']
cxx.cflags += ['-mmacosx-version-min=10.7']
cxx.linkflags += [
'-mmacosx-version-min=10.7',
'-stdlib=libc++',
'-lc++',
]
cxx.cxxflags += ['-stdlib=libc++']
def configure_windows(self, cxx):
cxx.defines += ['WIN32', '_WINDOWS']
def ConfigureForExtension(self, context, binary):
binary.compiler.cxxincludes += [
os.path.join(context.sourcePath),
os.path.join(context.sourcePath, 'src'),
os.path.join(context.sourcePath, 'sdk'),
os.path.join(self.ext_root, 'src'),
os.path.join(self.sm_root, 'public'),
os.path.join(self.sm_root, 'public', 'extensions'),
os.path.join(self.sm_root, 'sourcepawn', 'include'),
os.path.join(self.sm_root, 'public', 'amtl', 'amtl'),
os.path.join(self.sm_root, 'public', 'amtl'),
]
return binary
def ConfigureForHL2(self, context, binary, sdk):
compiler = binary.compiler
SetArchFlags(compiler)
compiler.cxxincludes += [
os.path.join(self.mms_root, 'core'),
os.path.join(self.mms_root, 'core', 'sourcehook'),
]
defines = ['RAD_TELEMETRY_DISABLED']
for other_sdk in self.sdk_manifests:
defines += ['SE_{}={}'.format(other_sdk['define'], other_sdk['code'])]
compiler.defines += defines
self.sdk_helper.configureCxx(context, binary, sdk)
for i in range(len(compiler.cxxincludes)):
compiler.cxxincludes[i] = Normalize(compiler.cxxincludes[i])
return binary
def AddCDetour(self, binary):
sm_public_path = os.path.join(self.sm_root, 'public')
if os.path.exists(os.path.join(sm_public_path, 'safetyhook')):
binary.sources += [ os.path.join(sm_public_path, 'CDetour', 'detours.cpp') ]
binary.compiler.cxxincludes += [ os.path.join(builder.sourcePath, 'safetyhook', 'include') ]
for task in self.libsafetyhook:
if task.target.arch == binary.compiler.target.arch:
binary.compiler.linkflags += [task.binary]
return
raise Exception('No suitable build of safetyhook was found.')
else:
binary.sources += [
os.path.join(sm_public_path, 'CDetour', 'detours.cpp'),
os.path.join(sm_public_path, 'asm', 'asm.c'),
]
# sm1.10+
libudis_folder = os.path.join(sm_public_path, 'libudis86')
if os.path.isdir(libudis_folder):
binary.compiler.defines += ['HAVE_STRING_H']
binary.sources += [
os.path.join(libudis_folder, 'decode.c'),
os.path.join(libudis_folder, 'itab.c'),
os.path.join(libudis_folder, 'syn-att.c'),
os.path.join(libudis_folder, 'syn-intel.c'),
os.path.join(libudis_folder, 'syn.c'),
os.path.join(libudis_folder, 'udis86.c'),
]
def HL2Config(self, project, context, compiler, name, sdk):
binary = project.Configure(compiler, name,
'{0} - {1} {2}'.format(self.tag, sdk['name'], compiler.target.arch))
self.AddVersioning(binary, project)
return self.ConfigureForHL2(context, binary, sdk)
def HL2ExtConfig(self, project, context, compiler, name, sdk):
binary = project.Configure(compiler, name,
'{0} - {1} {2}'.format(self.tag, sdk['name'], compiler.target.arch))
self.AddVersioning(binary, project)
self.ConfigureForHL2(context, binary, sdk)
self.ConfigureForExtension(context, binary)
return binary
class SafetyHookShim(object):
def __init__(self):
self.all_targets = {}
self.libsafetyhook = {}
if getattr(builder, 'target', None) is not None:
sys.stderr.write("Your output folder was configured for AMBuild 2.1.\n")
sys.stderr.write("Please remove your output folder and reconfigure to continue.\n")
os._exit(1)
Extension = ExtensionConfig()
Extension.detectExtensionRoot()
Extension.detectProductVersion()
Extension.detectSDKs()
Extension.configure()
if Extension.use_auto_versioning():
Extension.generated_headers = builder.Build(os.path.join('buildbot', 'Versioning'), { 'Extension': Extension })
if os.path.exists(os.path.join(Extension.sm_root, 'public', 'safetyhook')):
# we need to pull safetyhook in locally because ambuild does not take kindly to outside relpaths
safetyhook_dest = os.path.join(builder.sourcePath, 'safetyhook')
shutil.copytree(os.path.join(Extension.sm_root, 'public', 'safetyhook'), safetyhook_dest, dirs_exist_ok=True)
SafetyHook = SafetyHookShim()
SafetyHook.all_targets = Extension.all_targets
builder.Build(os.path.join('safetyhook', 'AMBuilder'), { 'SafetyHook': SafetyHook })
Extension.libsafetyhook = SafetyHook.libsafetyhook
# This will clone the list and each cxx object as we recurse, preventing child
# scripts from messing up global state.
builder.targets = builder.CloneableList(Extension.all_targets)
# Hack to please ambuild because it does not handle having outside ambuilder
# https://github.com/alliedmodders/ambuild/blob/7736f4b155851fa354d88a6d9103e284c7d7ddc7/ambuild2/frontend/v2_2/cpp/builders.py#L298
# self.outputPath is wrongly built
ext_ambuilder_src_path = os.path.join(Extension.ext_root, 'src', 'AMBuilder')
ext_ambuilder_dest_path = os.path.join(builder.sourcePath, 'src', 'AMBuilder')
if os.path.exists(ext_ambuilder_src_path):
shutil.copy(ext_ambuilder_src_path, ext_ambuilder_dest_path)
# Add additional buildscripts here
BuildScripts = [
os.path.join('src', 'AMBuilder'),
os.path.join('buildbot', 'PackageScript'),
os.path.join('buildbot', 'BreakpadSymbols'),
]
builder.Build(BuildScripts, { 'Extension': Extension })
+11
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@@ -0,0 +1,11 @@
# sm-ext-common
AlliedModders extension helper to:
- factorize ambuild scripts
- common helpers
## Compile an extension using this project
```bash
python3 ../sm-ext-common/configure.py --enable-optimize --enable-auto-versioning --ext-root="../" --sdks="$SDKS" --mms-path="$CACHE_PATH/metamod-source" --hl2sdk-manifest-path="$CACHE_PATH/hl2sdk-manifests" --hl2sdk-root="$CACHE_PATH" --sm-path="$CACHE_PATH/sourcemod"
```
+39
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@@ -0,0 +1,39 @@
# vim: set ts=2 sw=2 tw=99 noet ft=python:
import os, sys
UPLOAD_SCRIPT = os.path.join(Extension.sm_root, 'tools', 'buildbot', 'upload_symbols.py')
if 'BREAKPAD_SYMBOL_SERVER' in os.environ:
symbolServer = os.environ['BREAKPAD_SYMBOL_SERVER']
builder.SetBuildFolder('breakpad-symbols')
for cxx_task in Extension.extensions:
if cxx_task.target.platform in ['windows']:
debug_entry = cxx_task.debug
else:
debug_entry = cxx_task.binary
debug_file = os.path.join(builder.buildPath, debug_entry.path)
if cxx_task.target.platform == 'linux':
argv = ['dump_syms', debug_file, os.path.dirname(debug_file)]
elif cxx_task.target.platform == 'mac':
# Required once dump_syms is updated on the slaves.
#argv = ['dump_syms', '-g', debug_file + '.dSYM', debug_file]
argv = ['dump_syms', debug_file + '.dSYM']
elif cxx_task.target.platform == 'windows':
argv = ['dump_syms.exe', debug_file]
plat_dir = os.path.dirname(debug_file)
bin_dir = os.path.split(plat_dir)[0]
symbol_file = '{}-{}-{}.breakpad'.format(
os.path.split(bin_dir)[1],
cxx_task.target.platform,
cxx_task.target.arch)
argv = [sys.executable, UPLOAD_SCRIPT, symbol_file] + argv
builder.AddCommand(
inputs = [UPLOAD_SCRIPT, debug_entry],
argv = argv,
outputs = [symbol_file]
)
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import os
builder.SetBuildFolder('package')
def CreateFolders(folders):
folder_dict = {}
for folder in folders:
path = os.path.normpath(folder)
folder_dict[folder] = builder.AddFolder(path)
return folder_dict
def CopyFiles(src, dest):
if os.path.isfile(src):
builder.AddCopy(src, dest)
return
if os.path.isdir(src):
for root, _, files in os.walk(src):
for file in files:
file_path = os.path.join(root, file)
relative_path = os.path.relpath(file_path, src)
destination = os.path.join(dest, relative_path)
builder.AddCopy(file_path, destination)
folders = CreateFolders([
'addons/sourcemod/extensions',
'addons/sourcemod/extensions/x64',
'addons/sourcemod/gamedata',
'addons/sourcemod/scripting',
'addons/sourcemod/scripting/include'
])
pdblog = open(os.path.join(builder.buildPath, 'pdblog.txt'), 'wt')
for cxx_task in Extension.extensions:
if cxx_task.target.arch == 'x86_64':
builder.AddCopy(cxx_task.binary, folders['addons/sourcemod/extensions/x64'])
else:
builder.AddCopy(cxx_task.binary, folders['addons/sourcemod/extensions'])
pdblog.write(cxx_task.debug.path + '\n')
pdblog.close()
def distribute_package_files():
package_path = os.path.join(Extension.ext_root, "package")
if not os.path.isdir(package_path):
return
for root, _, files in os.walk(package_path):
for file in files:
file_path = os.path.join(root, file)
relative_path = os.path.relpath(file_path, package_path)
for folder in folders:
if relative_path.startswith(folder):
builder.AddCopy(file_path, folders[folder])
break
distribute_package_files()
debug_info = []
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# vim: set ts=8 sts=2 sw=2 tw=99 et ft=python:
import os, sys
import re
builder.SetBuildFolder('/')
includes = builder.AddFolder('includes')
argv = [
sys.executable,
os.path.join(builder.sourcePath, 'buildbot', 'generate_header.py'),
os.path.join(Extension.ext_root),
os.path.join(builder.buildPath, 'includes'),
]
outputs = [
os.path.join(builder.buildFolder, 'includes', 'version_auto.h')
]
repo_head_path = os.path.join(Extension.ext_root, 'product.version')
if os.path.exists(os.path.join(Extension.ext_root, '.git')):
with open(os.path.join(Extension.ext_root, '.git', 'HEAD')) as fp:
head_contents = fp.read().strip()
if re.search('^[a-fA-F0-9]{40}$', head_contents):
repo_head_path = os.path.join(Extension.ext_root, '.git', 'HEAD')
else:
git_state = head_contents.split(':')[1].strip()
repo_head_path = os.path.join(Extension.ext_root, '.git', git_state)
if not os.path.exists(repo_head_path):
repo_head_path = os.path.join(Extension.ext_root, '.git', 'HEAD')
sources = [
os.path.join(Extension.ext_root, 'product.version'),
repo_head_path,
argv[1]
]
for source in sources:
if not os.path.exists(source):
print(source)
for source in sources:
if not os.path.exists(source):
print(source)
output_nodes = builder.AddCommand(
inputs=sources,
argv=argv,
outputs=outputs
)
rvalue = output_nodes
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# vim: set ts=2 sw=2 tw=99 noet ft=python:
import os, sys
import re
import subprocess
argv = sys.argv[1:]
if len(argv) < 2:
sys.stderr.write('Usage: generate_header.py <source_path> <output_folder>\n')
sys.exit(1)
SourceFolder = os.path.abspath(os.path.normpath(argv[0]))
OutputFolder = os.path.abspath(os.path.normpath(argv[1]))
def run_and_return(argv):
text = subprocess.check_output(argv)
if str != bytes:
text = str(text, 'utf-8')
return text.strip()
def GetGHVersion():
p = run_and_return(['hg', 'parent', '-R', SourceFolder])
m = re.match(r'changeset:\s+(\d+):(.+)', p.stdoutText)
if m == None:
raise Exception('Could not determine repository version')
return m.groups()
def GetGitVersion():
revision_count = run_and_return(['git', 'rev-list', '--count', 'HEAD'])
revision_hash = run_and_return(['git', 'log', '--pretty=format:%h:%H', '-n', '1'])
shorthash, longhash = revision_hash.split(':')
return revision_count, shorthash
rev = None
cset = None
rev, cset = GetGitVersion()
productFile = open(os.path.join(SourceFolder, 'product.version'), 'r')
productContents = productFile.read()
productFile.close()
m = re.match(r'(\d+)\.(\d+)\.(\d+)(.*)', productContents)
if m == None:
raise Exception('Could not determine product version')
major, minor, release, tag = m.groups()
version_auto_path = os.path.join(OutputFolder, 'version_auto.h')
incFile = open(version_auto_path, 'w')
incFile.write("""
#ifndef _AUTO_VERSION_INFORMATION_H_
#define _AUTO_VERSION_INFORMATION_H_
#define SM_BUILD_TAG \"{0}\"
#define SM_BUILD_UNIQUEID \"{1}:{2}\" SM_BUILD_TAG
#define SM_VERSION \"{3}.{4}.{5}\"
#define SM_FULL_VERSION SM_VERSION SM_BUILD_TAG
#define SM_FILE_VERSION {6},{7},{8},0
#endif /* _AUTO_VERSION_INFORMATION_H_ */
""".format(tag, rev, cset, major, minor, release, major, minor, release))
incFile.close()
filename_versioning_path = os.path.join(OutputFolder, 'filename_versioning.txt')
filename_versioning = open(filename_versioning_path, 'w')
filename_versioning.write("{0}.{1}.{2}-git{3}-{4}".format(major, minor, release, rev, cset))
filename_versioning.close()
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# vim: set sts=2 ts=8 sw=2 tw=99 et:
import sys
from ambuild2 import run
parser = run.BuildParser(sourcePath = sys.path[0], api='2.2')
parser.options.add_argument('--ext-root', type=str, dest='ext_root', default=None,
help='Root folder for extension')
parser.options.add_argument('--hl2sdk-root', type=str, dest='hl2sdk_root', default=None,
help='Root search folder for HL2SDKs')
parser.options.add_argument('--hl2sdk-manifests-path', type=str, dest='hl2sdk_manifests_path', default=None,
help='Path to HL2SDK Manifests')
parser.options.add_argument('--mms-path', type=str, dest='mms_path', default=None,
help='Path to Metamod:Source')
parser.options.add_argument('--sm-path', type=str, dest='sm_path', default=None,
help='Path to SourceMod')
parser.options.add_argument('--enable-debug', action='store_const', const='1', dest='debug',
help='Enable debugging symbols')
parser.options.add_argument('--enable-optimize', action='store_const', const='1', dest='opt',
help='Enable optimization')
parser.options.add_argument('--enable-auto-versioning', action='store_false', dest='disable_auto_versioning',
default=True, help='Enables the auto versioning script')
parser.options.add_argument('-s', '--sdks', default='all', dest='sdks',
help='Build against specified SDKs; valid args are "all", "present", or '
'space-delimited list of engine names (default: %default)')
parser.options.add_argument('--targets', type=str, dest='targets', default=None,
help="Override the target architecture (use commas to separate multiple targets).")
parser.Configure()
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#ifndef _INCLUDE_SOURCEMOD_EXTENSION_HELPER_H_
#define _INCLUDE_SOURCEMOD_EXTENSION_HELPER_H_
#include "smsdk_ext.h"
#undef max
#undef min
#include <list>
#include <string>
#include <iostream>
#include <fstream>
typedef std::list<ConVar *> ConVarList;
ConVarList g_ConVarList;
void ExecConfig(ICvar *icvar, const char *absolutePath, const char *name, ConVarList *myConVarList)
{
std::ifstream input(absolutePath);
std::string line;
const char *pBuffer;
char token[1024];
while (std::getline(input, line)) {
pBuffer = engine->ParseFile(line.c_str(), token, sizeof(token));
if (strlen(token) <= 0)
continue;
ConVarList::iterator iter;
for (iter = myConVarList->begin(); iter != myConVarList->end(); iter++)
{
ConVar *cvar = (*iter);
if (strcmp(cvar->GetName(), token) == 0)
{
pBuffer = engine->ParseFile(pBuffer, token, sizeof(token));
cvar->SetValue(token);
break;
}
}
}
}
void AutoExecConfig(ICvar *icvar, bool autoCreate, const char *name, ConVarList *myConVarList)
{
#ifdef PLATFORM_WINDOWS
char szSMPath[256] = "cfg\\sourcemod\\";
#elif defined PLATFORM_LINUX || defined PLATFORM_APPLE
char szSMPath[256] = "cfg/sourcemod/";
#endif
char szName[128] = "";
if (name != NULL)
strcat(szName, name);
else
{
strcat(szName, "extension.");
strcat(szName, SMEXT_CONF_NAME);
strcat(szName, ".cfg");
}
strcat(szSMPath, szName);
char szPath[256];
g_pSM->BuildPath(Path_Game, szPath, sizeof(szPath), szSMPath);
FILE *fp = fopen(szPath, "r");
if (fp != NULL)
{
ExecConfig(icvar, szPath, szName, myConVarList);
return;
}
fp = fopen(szPath, "w");
if (fp == NULL)
{
smutils->LogError(myself, "Failed to create config file %s.", szPath);
return;
}
fprintf(fp, "// This file was auto-generated\n");
fprintf(fp, "// ConVars for extension \"%s\"\n", SMEXT_CONF_NAME);
fprintf(fp, "\n\n");
ConVarList::iterator iter;
float x;
for (iter = myConVarList->begin(); iter != myConVarList->end(); iter++)
{
const ConVar *cvar = (*iter);
#if SOURCE_ENGINE >= SE_ORANGEBOX
if (cvar->IsFlagSet(FCVAR_DONTRECORD))
#else
if (cvar->IsBitSet(FCVAR_DONTRECORD))
#endif
{
continue;
}
char descr[255];
char *dptr = descr;
/* Print comments until there is no more */
ke::SafeStrcpy(descr, sizeof(descr), cvar->GetHelpText());
while (*dptr != '\0')
{
/* Find the next line */
char *next_ptr = dptr;
while (*next_ptr != '\0')
{
if (*next_ptr == '\n')
{
*next_ptr = '\0';
next_ptr++;
break;
}
next_ptr++;
}
fprintf(fp, "// %s\n", dptr);
dptr = next_ptr;
}
fprintf(fp, "// -\n");
fprintf(fp, "// Default: \"%s\"\n", cvar->GetDefault());
if (cvar->GetMin(x))
{
fprintf(fp, "// Minimum: \"%02f\"\n", x);
}
if (cvar->GetMax(x))
{
fprintf(fp, "// Maximum: \"%02f\"\n", x);
}
fprintf(fp, "%s \"%s\"\n", cvar->GetName(), cvar->GetDefault());
fprintf(fp, "\n");
}
fprintf(fp, "\n");
fclose(fp);
ExecConfig(icvar, szPath, szName, myConVarList);
}
void AutoExecConfig(ICvar *icvar, bool autoCreate, const char *name = NULL)
{
AutoExecConfig(icvar, autoCreate, name, &g_ConVarList);
}
void AddConVar(ConVar *conVar)
{
g_ConVarList.push_back(conVar);
}
ConVar *CreateConVar(const char *name, const char *defaultVal, int flags = 0, const char *description = "", bool hasMin = false, float min = 0.0, bool hasMax = false, float max = 0.0)
{
ConVar *myConVar = new ConVar(strdup(name), strdup(defaultVal), flags, strdup(description), hasMin, min, hasMax, max);
AddConVar(myConVar);
return myConVar;
}
#endif // _INCLUDE_SOURCEMOD_EXTENSION_PROPER_H_
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// GCC9 Developers broke compatibility with math options so we need to redeclare them
// https://stackoverflow.com/questions/63261220/link-errors-with-ffast-math-ffinite-math-only-and-glibc-2-31
// https://forums.developer.nvidia.com/t/problems-on-ubuntu-20-04-linuxpower/136507/3
#include <math.h>
double __acos_finite(double x) { return acos(x); }
float __acosf_finite(float x) { return acosf(x); }
double __acosh_finite(double x) { return acosh(x); }
float __acoshf_finite(float x) { return acoshf(x); }
double __asin_finite(double x) { return asin(x); }
float __asinf_finite(float x) { return asinf(x); }
double __atanh_finite(double x) { return atanh(x); }
float __atanhf_finite(float x) { return atanhf(x); }
double __cosh_finite(double x) { return cosh(x); }
float __coshf_finite(float x) { return coshf(x); }
double __sinh_finite(double x) { return sinh(x); }
float __sinhf_finite(float x) { return sinhf(x); }
double __exp_finite(double x) { return exp(x); }
float __expf_finite(float x) { return expf(x); }
double __log10_finite(double x) { return log10(x); }
float __log10f_finite(float x) { return log10f(x); }
double __log_finite(double x) { return log(x); }
float __logf_finite(float x) { return logf(x); }
double __atan2_finite(double x, double y) { return atan2(x,y); }
float __atan2f_finite(float x, double y) { return atan2f(x,y); }
double __pow_finite(double x, double y) { return pow(x,y); }
float __powf_finite(float x, double y) { return powf(x,y); }
double __remainder_finite(double x, double y) { return remainder(x,y); }
float __remainderf_finite(float x, double y) { return remainderf(x,y); }
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#ifndef _INCLUDE_VERSION_INFORMATION_H_
#define _INCLUDE_VERSION_INFORMATION_H_
/**
* @file Contains version information.
* @brief This file will redirect to an autogenerated version if being compiled via
* the build scripts.
*/
#if defined SM_GENERATED_BUILD
#include "version_auto.h"
#else
#ifndef SM_GENERATED_BUILD
#define PROJECT_NAME "Extension\0"
#endif
#ifndef SM_GENERATED_BUILD
#undef BINARY_NAME
#define BINARY_NAME "extension.ext.dll\0"
#endif
#define SM_BUILD_TAG "-manual"
#define SM_BUILD_UNIQUEID "[MANUAL BUILD]"
#define SM_VERSION "0.0.0"
#define SM_FULL_VERSION SM_VERSION SM_EXT_BUILD_TAG
#define SM_FILE_VERSION 0,0,0,0
#endif
#endif /* _INCLUDE_VERSION_INFORMATION_H_ */
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#include "winres.h"
#include "version.h"
#if !defined(AFX_RESOURCE_DLL) || defined(AFX_TARG_ENU)
LANGUAGE LANG_ENGLISH, SUBLANG_ENGLISH_US
#pragma code_page(1252)
#endif
#ifndef SM_GENERATED_BUILD
#define PROJECT_NAME "Extension\0"
#endif
#ifndef SM_GENERATED_BUILD
#define BINARY_NAME "extension.ext.dll\0"
#endif
VS_VERSION_INFO VERSIONINFO
FILEVERSION SM_FILE_VERSION
PRODUCTVERSION SM_FILE_VERSION
FILEFLAGSMASK 0x17L
#ifdef _DEBUG
FILEFLAGS 0x1L
#else
FILEFLAGS 0x0L
#endif
FILEOS 0x4L
FILETYPE 0x2L
FILESUBTYPE 0x0L
BEGIN
BLOCK "StringFileInfo"
BEGIN
BLOCK "040904b0"
BEGIN
VALUE "Comments", PROJECT_NAME
VALUE "FileDescription", PROJECT_NAME
VALUE "FileVersion", SM_BUILD_UNIQUEID
VALUE "InternalName", PROJECT_NAME
VALUE "LegalCopyright", "Copyright (c) 2025, SRCDSLab"
VALUE "OriginalFilename", BINARY_NAME
VALUE "ProductName", PROJECT_NAME
VALUE "ProductVersion", SM_FULL_VERSION
END
END
BLOCK "VarFileInfo"
BEGIN
VALUE "Translation", 0x0409, 0x04B0
END
END
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# vim: set sts=2 ts=8 sw=2 tw=99 et ft=python:
import os
projectName = 'smjansson'
project = builder.LibraryProject(projectName)
# Resolve extension source file
ext_source = os.path.join(Extension.ext_root, 'src', 'extension.cpp')
if not os.path.exists(ext_source):
ext_source = os.path.join(Extension.ext_root, 'extension.cpp')
# Source files to compile
project.sources += [
ext_source,
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'dump.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'error.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'hashtable.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'hashtable_seed.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'load.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'memory.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'pack_unpack.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'strbuffer.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'strconv.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'utf.c'),
os.path.join(Extension.ext_root, 'src', 'jansson', 'src', 'value.c'),
os.path.join(Extension.sm_root, 'public', 'smsdk_ext.cpp'),
]
# Include paths for Jansson headers
jansson_inc = [
os.path.join(Extension.ext_root, 'src', 'jansson', 'src'),
os.path.join(Extension.ext_root, 'src', 'jansson'),
]
for sdk_name in Extension.sdks:
sdk = Extension.sdks[sdk_name]
if sdk['name'] in ['mock']:
continue
for cxx in builder.targets:
if not cxx.target.arch in sdk['platforms'][cxx.target.platform]:
continue
binary = Extension.HL2ExtConfig(
project, builder, cxx, projectName + '.ext', sdk
)
binary.compiler.includes += jansson_inc
binary.compiler.cxxincludes += jansson_inc
# Cross-platform mandatory defines
binary.compiler.defines += [
'HAVE_STDINT_H',
'HAVE_STRING_H',
'SOURCEMOD_BUILD',
]
if cxx.target.platform == 'linux':
binary.compiler.postlink += ['-lpthread', '-lrt']
elif cxx.target.platform == 'mac':
binary.compiler.cflags += ['-Wno-deprecated-declarations']
binary.compiler.postlink += ['-framework', 'CoreServices']
if cxx.family == 'gcc' or cxx.family == 'clang':
binary.compiler.cxxflags += ['-fno-rtti']
elif cxx.family == 'msvc':
binary.compiler.cxxflags += ['/GR-']
binary.compiler.defines += [
'_CRT_SECURE_NO_WARNINGS',
'WIN32',
'_WIN32',
'WIN32_LEAN_AND_MEAN',
'HAVE_WIN32_THREADS',
]
binary.compiler.cflags += ['/FIwindows.h']
Extension.extensions += builder.Add(project)
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#ifndef CONFIG_H
#define CONFIG_H
#define FORCE_THREAD_UNSAFE_SEED 1
typedef __int32 int32_t;
#endif
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/**
* vim: set ts=4 :
* =============================================================================
* SourceMod Sample Extension
* Copyright (C) 2004-2008 AlliedModders LLC. All rights reserved.
* =============================================================================
*
* This program is free software; you can redistribute it and/or modify it under
* the terms of the GNU General Public License, version 3.0, as published by the
* Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
* FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
* details.
*
* You should have received a copy of the GNU General Public License along with
* this program. If not, see <http://www.gnu.org/licenses/>.
*
* As a special exception, AlliedModders LLC gives you permission to link the
* code of this program (as well as its derivative works) to "Half-Life 2," the
* "Source Engine," the "SourcePawn JIT," and any Game MODs that run on software
* by the Valve Corporation. You must obey the GNU General Public License in
* all respects for all other code used. Additionally, AlliedModders LLC grants
* this exception to all derivative works. AlliedModders LLC defines further
* exceptions, found in LICENSE.txt (as of this writing, version JULY-31-2007),
* or <http://www.sourcemod.net/license.php>.
*
* Version: $Id$
*/
// To make this compile on windows with the github's CI
#if defined(_MSC_VER) || defined(_WIN32)
#ifndef WIN32_LEAN_AND_MEAN
#define WIN32_LEAN_AND_MEAN
#endif
#include <windows.h>
#include <intrin.h>
#pragma intrinsic(_InterlockedIncrement)
#pragma comment(lib, "kernel32.lib")
#pragma comment(lib, "user32.lib")
#endif
#ifndef _INCLUDE_SOURCEMOD_EXTENSION_PROPER_H_
#define _INCLUDE_SOURCEMOD_EXTENSION_PROPER_H_
/**
* @file extension.h
* @brief Sample extension code header.
*/
#include "smsdk_ext.h"
/**
* @brief Sample implementation of the SDK Extension.
* Note: Uncomment one of the pre-defined virtual functions in order to use it.
*/
class SMJansson : public SDKExtension
{
public:
/**
* @brief This is called after the initial loading sequence has been processed.
*
* @param error Error message buffer.
* @param maxlength Size of error message buffer.
* @param late Whether or not the module was loaded after map load.
* @return True to succeed loading, false to fail.
*/
virtual bool SDK_OnLoad(char *error, size_t maxlength, bool late);
/**
* @brief This is called right before the extension is unloaded.
*/
//virtual void SDK_OnUnload();
/**
* @brief This is called once all known extensions have been loaded.
* Note: It is is a good idea to add natives here, if any are provided.
*/
//virtual void SDK_OnAllLoaded();
/**
* @brief Called when the pause state is changed.
*/
//virtual void SDK_OnPauseChange(bool paused);
/**
* @brief this is called when Core wants to know if your extension is working.
*
* @param error Error message buffer.
* @param maxlength Size of error message buffer.
* @return True if working, false otherwise.
*/
//virtual bool QueryRunning(char *error, size_t maxlength);
public:
#if defined SMEXT_CONF_METAMOD
/**
* @brief Called when Metamod is attached, before the extension version is called.
*
* @param error Error buffer.
* @param maxlength Maximum size of error buffer.
* @param late Whether or not Metamod considers this a late load.
* @return True to succeed, false to fail.
*/
//virtual bool SDK_OnMetamodLoad(ISmmAPI *ismm, char *error, size_t maxlength, bool late);
/**
* @brief Called when Metamod is detaching, after the extension version is called.
* NOTE: By default this is blocked unless sent from SourceMod.
*
* @param error Error buffer.
* @param maxlength Maximum size of error buffer.
* @return True to succeed, false to fail.
*/
//virtual bool SDK_OnMetamodUnload(char *error, size_t maxlength);
/**
* @brief Called when Metamod's pause state is changing.
* NOTE: By default this is blocked unless sent from SourceMod.
*
* @param paused Pause state being set.
* @param error Error buffer.
* @param maxlength Maximum size of error buffer.
* @return True to succeed, false to fail.
*/
//virtual bool SDK_OnMetamodPauseChange(bool paused, char *error, size_t maxlength);
#endif
};
class JanssonObjectHandler : public IHandleTypeDispatch
{
public:
void OnHandleDestroy(HandleType_t type, void *object);
};
extern JanssonObjectHandler g_JanssonObjectHandler;
class JanssonIteratorHandler : public IHandleTypeDispatch
{
public:
void OnHandleDestroy(HandleType_t type, void *object);
};
extern JanssonIteratorHandler g_JanssonIteratorHandler;
extern const sp_nativeinfo_t json_natives[];
#endif // _INCLUDE_SOURCEMOD_EXTENSION_PROPER_H_
+583
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@@ -0,0 +1,583 @@
Version 2.6
===========
Released 2014-02-11
* Security:
- CVE-2013-6401: The hash function used by the hashtable
implementation has been changed, and is automatically seeded with
random data when the first JSON object is created. This prevents
an attacker from causing large JSON objects with specially crafted
keys perform poorly.
* New features:
- `json_object_seed()`: Set the seed value of the hash function.
* Bug fixes:
- Include CMake specific files in the release tarball.
* Documentation:
- Fix tutorial source to send a User-Agent header, which is now
required by the GitHub API.
- Set all memory to zero in secure_free() example.
Version 2.5
===========
Released 2013-09-19
* New features:
- `json_pack()` and friends: Add format specifiers ``s#``, ``+`` and
``+#``.
- Add ``JSON_DECODE_INT_AS_REAL`` decoding flag to treat all numbers
as real in the decoder (#123).
- Add `json_array_foreach()`, paralleling `json_object_foreach()`
(#118).
* Bug fixes:
- `json_dumps()` and friends: Don't crash if json is *NULL* and
``JSON_ENCODE_ANY`` is set.
- Fix a theoretical integer overflow in `jsonp_strdup()`.
- Fix `l_isxdigit()` macro (#97).
- Fix an off-by-one error in `json_array_remove()`.
* Build:
- Support CMake in addition to GNU Autotools (#106, #107, #112,
#115, #120, #127).
- Support building for Android (#109).
- Don't use ``-Werror`` by default.
- Support building and testing with VPATH (#93).
- Fix compilation when ``NDEBUG`` is defined (#128)
* Tests:
- Fix a refleak in ``test/bin/json_process.c``.
* Documentation:
- Clarify the return value of `json_load_callback_t`.
- Document how to circumvent problems with separate heaps on Windows.
- Fix memory leaks and warnings in ``github_commits.c``.
- Use `json_decref()` properly in tutorial.
* Other:
- Make it possible to forward declare ``struct json_t``.
Version 2.4
===========
Released 2012-09-23
* New features:
- Add `json_boolean()` macro that returns the JSON true or false
value based on its argument (#86).
- Add `json_load_callback()` that calls a callback function
repeatedly to read the JSON input (#57).
- Add JSON_ESCAPE_SLASH encoding flag to escape all occurences of
``/`` with ``\/``.
* Bug fixes:
- Check for and reject NaN and Inf values for reals. Encoding these
values resulted in invalid JSON.
- Fix `json_real_set()` to return -1 on error.
* Build:
- Jansson now builds on Windows with Visual Studio 2010, and
includes solution and project files in ``win32/vs2010/``
directory.
- Fix build warnings (#77, #78).
- Add ``-no-undefined`` to LDFLAGS (#90).
* Tests:
- Fix the symbol exports test on Linux/PPC64 (#88).
* Documentation:
- Fix typos (#73, #84).
Version 2.3.1
=============
Released 2012-04-20
* Build issues:
- Only use ``long long`` if ``strtoll()`` is also available.
* Documentation:
- Fix the names of library version constants in documentation. (#52)
- Change the tutorial to use GitHub API v3. (#65)
* Tests:
- Make some tests locale independent. (#51)
- Distribute the library exports test in the tarball.
- Make test run on shells that don't support the ``export FOO=bar``
syntax.
Version 2.3
===========
Released 2012-01-27
* New features:
- `json_unpack()` and friends: Add support for optional object keys
with the ``{s?o}`` syntax.
- Add `json_object_update_existing()` and
`json_object_update_missing()`, for updating only existing keys or
only adding missing keys to an object. (#37)
- Add `json_object_foreach()` for more convenient iteration over
objects. (#45, #46)
- When decoding JSON, write the number of bytes that were read from
input to ``error.position`` also on success. This is handy with
``JSON_DISABLE_EOF_CHECK``.
- Add support for decoding any JSON value, not just arrays or
objects. The support is enabled with the new ``JSON_DECODE_ANY``
flag. Patch by Andrea Marchesini. (#4)
* Bug fixes
- Avoid problems with object's serial number growing too big. (#40,
#41)
- Decoding functions now return NULL if the first argument is NULL.
Patch by Andrea Marchesini.
- Include ``jansson_config.h.win32`` in the distribution tarball.
- Remove ``+`` and leading zeros from exponents in the encoder.
(#39)
- Make Jansson build and work on MinGW. (#39, #38)
* Documentation
- Note that the same JSON values must not be encoded in parallel by
separate threads. (#42)
- Document MinGW support.
Version 2.2.1
=============
Released 2011-10-06
* Bug fixes:
- Fix real number encoding and decoding under non-C locales. (#32)
- Fix identifier decoding under non-UTF-8 locales. (#35)
- `json_load_file()`: Open the input file in binary mode for maximum
compatiblity.
* Documentation:
- Clarify the lifecycle of the result of the ``s`` fromat of
`json_unpack()`. (#31)
- Add some portability info. (#36)
- Little clarifications here and there.
* Other:
- Some style fixes, issues detected by static analyzers.
Version 2.2
===========
Released 2011-09-03
* New features:
- `json_dump_callback()`: Pass the encoder output to a callback
function in chunks.
* Bug fixes:
- `json_string_set()`: Check that target is a string and value is
not NULL.
* Other:
- Documentation typo fixes and clarifications.
Version 2.1
===========
Released 2011-06-10
* New features:
- `json_loadb()`: Decode a string with a given size, useful if the
string is not null terminated.
- Add ``JSON_ENCODE_ANY`` encoding flag to allow encoding any JSON
value. By default, only arrays and objects can be encoded. (#19)
- Add ``JSON_REJECT_DUPLICATES`` decoding flag to issue a decoding
error if any JSON object in the input contins duplicate keys. (#3)
- Add ``JSON_DISABLE_EOF_CHECK`` decoding flag to stop decoding after a
valid JSON input. This allows other data after the JSON data.
* Bug fixes:
- Fix an additional memory leak when memory allocation fails in
`json_object_set()` and friends.
- Clear errno before calling `strtod()` for better portability. (#27)
* Building:
- Avoid set-but-not-used warning/error in a test. (#20)
* Other:
- Minor clarifications to documentation.
Version 2.0.1
=============
Released 2011-03-31
* Bug fixes:
- Replace a few `malloc()` and `free()` calls with their
counterparts that support custom memory management.
- Fix object key hashing in json_unpack() strict checking mode.
- Fix the parentheses in ``JANSSON_VERSION_HEX`` macro.
- Fix `json_object_size()` return value.
- Fix a few compilation issues.
* Portability:
- Enhance portability of `va_copy()`.
- Test framework portability enhancements.
* Documentation:
- Distribute ``doc/upgrading.rst`` with the source tarball.
- Build documentation in strict mode in ``make distcheck``.
Version 2.0
===========
Released 2011-02-28
This release is backwards incompatible with the 1.x release series.
See the chapter "Upgrading from older versions" in documentation for
details.
* Backwards incompatible changes:
- Unify unsigned integer usage in the API: All occurences of
unsigned int and unsigned long have been replaced with size_t.
- Change JSON integer's underlying type to the widest signed integer
type available, i.e. long long if it's supported, otherwise long.
Add a typedef json_int_t that defines the type.
- Change the maximum indentation depth to 31 spaces in encoder. This
frees up bits from the flags parameter of encoding functions
`json_dumpf()`, `json_dumps()` and `json_dump_file()`.
- For future needs, add a flags parameter to all decoding functions
`json_loadf()`, `json_loads()` and `json_load_file()`.
* New features
- `json_pack()`, `json_pack_ex()`, `json_vpack_ex()`: Create JSON
values based on a format string.
- `json_unpack()`, `json_unpack_ex()`, `json_vunpack_ex()`: Simple
value extraction and validation functionality based on a format
string.
- Add column, position and source fields to the ``json_error_t``
struct.
- Enhance error reporting in the decoder.
- ``JANSSON_VERSION`` et al.: Preprocessor constants that define the
library version.
- `json_set_alloc_funcs()`: Set custom memory allocation functions.
* Fix many portability issues, especially on Windows.
* Configuration
- Add file ``jansson_config.h`` that contains site specific
configuration. It's created automatically by the configure script,
or can be created by hand if the configure script cannot be used.
The file ``jansson_config.h.win32`` can be used without
modifications on Windows systems.
- Add a section to documentation describing how to build Jansson on
Windows.
- Documentation now requires Sphinx 1.0 or newer.
Version 1.3
===========
Released 2010-06-13
* New functions:
- `json_object_iter_set()`, `json_object_iter_set_new()`: Change
object contents while iterating over it.
- `json_object_iter_at()`: Return an iterator that points to a
specific object item.
* New encoding flags:
- ``JSON_PRESERVE_ORDER``: Preserve the insertion order of object
keys.
* Bug fixes:
- Fix an error that occured when an array or object was first
encoded as empty, then populated with some data, and then
re-encoded
- Fix the situation like above, but when the first encoding resulted
in an error
* Documentation:
- Clarify the documentation on reference stealing, providing an
example usage pattern
Version 1.2.1
=============
Released 2010-04-03
* Bug fixes:
- Fix reference counting on ``true``, ``false`` and ``null``
- Estimate real number underflows in decoder with 0.0 instead of
issuing an error
* Portability:
- Make ``int32_t`` available on all systems
- Support compilers that don't have the ``inline`` keyword
- Require Autoconf 2.60 (for ``int32_t``)
* Tests:
- Print test names correctly when ``VERBOSE=1``
- ``test/suites/api``: Fail when a test fails
- Enhance tests for iterators
- Enhance tests for decoding texts that contain null bytes
* Documentation:
- Don't remove ``changes.rst`` in ``make clean``
- Add a chapter on RFC conformance
Version 1.2
===========
Released 2010-01-21
* New functions:
- `json_equal()`: Test whether two JSON values are equal
- `json_copy()` and `json_deep_copy()`: Make shallow and deep copies
of JSON values
- Add a version of all functions taking a string argument that
doesn't check for valid UTF-8: `json_string_nocheck()`,
`json_string_set_nocheck()`, `json_object_set_nocheck()`,
`json_object_set_new_nocheck()`
* New encoding flags:
- ``JSON_SORT_KEYS``: Sort objects by key
- ``JSON_ENSURE_ASCII``: Escape all non-ASCII Unicode characters
- ``JSON_COMPACT``: Use a compact representation with all unneeded
whitespace stripped
* Bug fixes:
- Revise and unify whitespace usage in encoder: Add spaces between
array and object items, never append newline to output.
- Remove const qualifier from the ``json_t`` parameter in
`json_string_set()`, `json_integer_set()` and `json_real_set`.
- Use ``int32_t`` internally for representing Unicode code points
(int is not enough on all platforms)
* Other changes:
- Convert ``CHANGES`` (this file) to reStructured text and add it to
HTML documentation
- The test system has been refactored. Python is no longer required
to run the tests.
- Documentation can now be built by invoking ``make html``
- Support for pkg-config
Version 1.1.3
=============
Released 2009-12-18
* Encode reals correctly, so that first encoding and then decoding a
real always produces the same value
* Don't export private symbols in ``libjansson.so``
Version 1.1.2
=============
Released 2009-11-08
* Fix a bug where an error message was not produced if the input file
could not be opened in `json_load_file()`
* Fix an assertion failure in decoder caused by a minus sign without a
digit after it
* Remove an unneeded include of ``stdint.h`` in ``jansson.h``
Version 1.1.1
=============
Released 2009-10-26
* All documentation files were not distributed with v1.1; build
documentation in make distcheck to prevent this in the future
* Fix v1.1 release date in ``CHANGES``
Version 1.1
===========
Released 2009-10-20
* API additions and improvements:
- Extend array and object APIs
- Add functions to modify integer, real and string values
- Improve argument validation
- Use unsigned int instead of ``uint32_t`` for encoding flags
* Enhance documentation
- Add getting started guide and tutorial
- Fix some typos
- General clarifications and cleanup
* Check for integer and real overflows and underflows in decoder
* Make singleton values thread-safe (``true``, ``false`` and ``null``)
* Enhance circular reference handling
* Don't define ``-std=c99`` in ``AM_CFLAGS``
* Add C++ guards to ``jansson.h``
* Minor performance and portability improvements
* Expand test coverage
Version 1.0.4
=============
Released 2009-10-11
* Relax Autoconf version requirement to 2.59
* Make Jansson compile on platforms where plain ``char`` is unsigned
* Fix API tests for object
Version 1.0.3
=============
Released 2009-09-14
* Check for integer and real overflows and underflows in decoder
* Use the Python json module for tests, or simplejson if the json
module is not found
* Distribute changelog (this file)
Version 1.0.2
=============
Released 2009-09-08
* Handle EOF correctly in decoder
Version 1.0.1
=============
Released 2009-09-04
* Fixed broken `json_is_boolean()`
Version 1.0
===========
Released 2009-08-25
* Initial release
+510
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@@ -0,0 +1,510 @@
# Notes:
#
# Author: Paul Harris, June 2012
# Additions: Joakim Soderberg, Febuary 2013
#
# Supports: building static/shared, release/debug/etc, can also build html docs
# and some of the tests.
# Note that its designed for out-of-tree builds, so it will not pollute your
# source tree.
#
# TODO 1: Finish implementing tests. api tests are working, but the valgrind
# variants are not flagging problems.
#
# TODO 2: There is a check_exports script that would try and incorporate.
#
# TODO 3: Consolidate version numbers, currently the version number is written
# into: * cmake (here) * autotools (the configure) * source code header files.
# Should not be written directly into header files, autotools/cmake can do
# that job.
#
# Brief intro on how to use cmake:
# > mkdir build (somewhere - we do out-of-tree builds)
# > use cmake, ccmake, or cmake-gui to configure the project. for linux, you
# can only choose one variant: release,debug,etc... and static or shared.
# >> example:
# >> cd build
# >> ccmake -i ../path_to_jansson_dir
# >> inside, configure your options. press C until there are no lines
# with * next to them.
# >> note, I like to configure the 'install' path to ../install, so I get
# self-contained clean installs I can point other projects to.
# >> press G to 'generate' the project files.
# >> make (to build the project)
# >> make install
# >> make test (to run the tests, if you enabled them)
#
# Brief description on how it works:
# There is a small heirachy of CMakeLists.txt files which define how the
# project is built.
# Header file detection etc is done, and the results are written into config.h
# and jansson_config.h, which are generated from the corresponding
# config.h.cmake and jansson_config.h.cmake template files.
# The generated header files end up in the build directory - not in
# the source directory.
# The rest is down to the usual make process.
cmake_minimum_required (VERSION 2.8)
# required for exports? cmake_minimum_required (VERSION 2.8.6)
project (jansson C)
# Options
OPTION (BUILD_SHARED_LIBS "Build shared libraries." OFF)
OPTION (USE_URANDOM "Use /dev/urandom to seed the hash function." ON)
OPTION (USE_WINDOWS_CRYPTOAPI "Use CryptGenRandom to seed the hash function." ON)
if (MSVC)
# This option must match the settings used in your program, in particular if you
# are linking statically
OPTION( STATIC_CRT "Link the static CRT libraries" OFF )
endif ()
# Set some nicer output dirs.
SET(CMAKE_RUNTIME_OUTPUT_DIRECTORY ${PROJECT_BINARY_DIR}/bin)
SET(CMAKE_LIBRARY_OUTPUT_DIRECTORY ${PROJECT_BINARY_DIR}/lib)
SET(CMAKE_ARCHIVE_OUTPUT_DIRECTORY ${PROJECT_BINARY_DIR}/lib)
# Give the debug version a different postfix for windows,
# so both the debug and release version can be built in the
# same build-tree on Windows (MSVC).
if (WIN32)
SET (CMAKE_DEBUG_POSTFIX "_d")
else (WIN32)
endif (WIN32)
# This is how I thought it should go
# set (JANSSON_VERSION "2.3.1")
# set (JANSSON_SOVERSION 2)
set(JANSSON_DISPLAY_VERSION "2.6")
# This is what is required to match the same numbers as automake's
set (JANSSON_VERSION "4.6.0")
set (JANSSON_SOVERSION 4)
# for CheckFunctionKeywords
set(CMAKE_MODULE_PATH "${CMAKE_CURRENT_SOURCE_DIR}/cmake")
INCLUDE (CheckCSourceCompiles)
include (CheckFunctionExists)
include (CheckFunctionKeywords)
include (CheckIncludeFiles)
include (CheckTypeSize)
if (MSVC)
# Turn off Microsofts "security" warnings.
add_definitions( "/W3 /D_CRT_SECURE_NO_WARNINGS /wd4005 /wd4996 /nologo" )
if (STATIC_CRT)
set(CMAKE_C_FLAGS_RELEASE "/MT")
set(CMAKE_C_FLAGS_DEBUG "/MTd")
endif()
endif()
if (CMAKE_COMPILER_IS_GNUCC OR CMAKE_COMPILER_IS_GNUCXX)
set(CMAKE_C_FLAGS "-fPIC")
endif()
check_include_files (endian.h HAVE_ENDIAN_H)
check_include_files (fcntl.h HAVE_FCNTL_H)
check_include_files (sched.h HAVE_SCHED_H)
check_include_files (unistd.h HAVE_UNISTD_H)
check_include_files (sys/param.h HAVE_SYS_PARAM_H)
check_include_files (sys/stat.h HAVE_SYS_STAT_H)
check_include_files (sys/time.h HAVE_SYS_TIME_H)
check_include_files (sys/time.h HAVE_SYS_TYPES_H)
check_function_exists (close HAVE_CLOSE)
check_function_exists (getpid HAVE_GETPID)
check_function_exists (gettimeofday HAVE_GETTIMEOFDAY)
check_function_exists (open HAVE_OPEN)
check_function_exists (read HAVE_READ)
check_function_exists (sched_yield HAVE_SCHED_YIELD)
# Check for the int-type includes
check_include_files (stdint.h HAVE_STDINT_H)
# Check our 64 bit integer sizes
check_type_size (__int64 __INT64)
check_type_size (int64_t INT64_T)
check_type_size ("long long" LONG_LONG_INT)
# Check our 32 bit integer sizes
check_type_size (int32_t INT32_T)
check_type_size (__int32 __INT32)
check_type_size ("long" LONG_INT)
check_type_size ("int" INT)
if (HAVE_INT32_T)
set (JSON_INT32 int32_t)
elseif (HAVE___INT32)
set (JSON_INT32 __int32)
elseif (HAVE_LONG_INT AND (${LONG_INT} EQUAL 4))
set (JSON_INT32 long)
elseif (HAVE_INT AND (${INT} EQUAL 4))
set (JSON_INT32 int)
else ()
message (FATAL_ERROR "Could not detect a valid 32-bit integer type")
endif ()
check_type_size (uint32_t UINT32_T)
check_type_size (__uint32 __UINT32)
check_type_size ("unsigned long" UNSIGNED_LONG_INT)
check_type_size ("unsigned int" UNSIGNED_INT)
if (HAVE_UINT32_T)
set (JSON_UINT32 uint32_t)
elseif (HAVE___UINT32)
set (JSON_UINT32 __uint32)
elseif (HAVE_UNSIGNED_LONG_INT AND (${UNSIGNED_LONG_INT} EQUAL 4))
set (JSON_UINT32 "unsigned long")
elseif (HAVE_UNSIGNED_INT AND (${UNSIGNED_INT} EQUAL 4))
set (JSON_UINT32 "unsigned int")
else ()
message (FATAL_ERROR "Could not detect a valid unsigned 32-bit integer type")
endif ()
# Check for ssize_t and SSIZE_T existance.
check_type_size(ssize_t SSIZE_T)
check_type_size(SSIZE_T UPPERCASE_SSIZE_T)
if(NOT HAVE_SSIZE_T)
if(HAVE_UPPERCASE_SSIZE_T)
set(JSON_SSIZE SSIZE_T)
else()
set(JSON_SSIZE int)
endif()
endif()
set(CMAKE_EXTRA_INCLUDE_FILES "")
# Check for all the variants of strtoll
check_function_exists (strtoll HAVE_STRTOLL)
check_function_exists (strtoq HAVE_STRTOQ)
check_function_exists (_strtoi64 HAVE__STRTOI64)
# Figure out what variant we should use
if (HAVE_STRTOLL)
set (JSON_STRTOINT strtoll)
elseif (HAVE_STRTOQ)
set (JSON_STRTOINT strtoq)
elseif (HAVE__STRTOI64)
set (JSON_STRTOINT _strtoi64)
else ()
# fallback to strtol (32 bit)
# this will set all the required variables
set (JSON_STRTOINT strtol)
set (JSON_INT_T long)
set (JSON_INTEGER_FORMAT "\"ld\"")
endif ()
# if we haven't defined JSON_INT_T, then we have a 64 bit conversion function.
# detect what to use for the 64 bit type.
# Note: I will prefer long long if I can get it, as that is what the automake system aimed for.
if (NOT DEFINED JSON_INT_T)
if (HAVE_LONG_LONG_INT AND (${LONG_LONG_INT} EQUAL 8))
set (JSON_INT_T "long long")
elseif (HAVE_INT64_T)
set (JSON_INT_T int64_t)
elseif (HAVE___INT64)
set (JSON_INT_T __int64)
else ()
message (FATAL_ERROR "Could not detect 64 bit type, although I detected the strtoll equivalent")
endif ()
# Apparently, Borland BCC and MSVC wants I64d,
# Borland BCC could also accept LD
# and gcc wants ldd,
# I am not sure what cygwin will want, so I will assume I64d
if (WIN32) # matches both msvc and cygwin
set (JSON_INTEGER_FORMAT "\"I64d\"")
else ()
set (JSON_INTEGER_FORMAT "\"lld\"")
endif ()
endif ()
# If locale.h and localeconv() are available, define to 1, otherwise to 0.
check_include_files (locale.h HAVE_LOCALE_H)
check_function_exists (localeconv HAVE_LOCALECONV)
if (HAVE_LOCALECONV AND HAVE_LOCALE_H)
set (JSON_HAVE_LOCALECONV 1)
else ()
set (JSON_HAVE_LOCALECONV 0)
endif ()
# check if we have setlocale
check_function_exists (setlocale HAVE_SETLOCALE)
# Check what the inline keyword is.
# Note that the original JSON_INLINE was always set to just 'inline', so this goes further.
check_function_keywords("inline")
check_function_keywords("__inline")
check_function_keywords("__inline__")
if (HAVE_INLINE)
set (JSON_INLINE inline)
elseif (HAVE___INLINE)
set (JSON_INLINE __inline)
elseif (HAVE___INLINE__)
set (JSON_INLINE __inline__)
else (HAVE_INLINE)
# no inline on this platform
set (JSON_INLINE)
endif (HAVE_INLINE)
# Find our snprintf
check_function_exists (snprintf HAVE_SNPRINTF)
check_function_exists (_snprintf HAVE__SNPRINTF)
if (HAVE_SNPRINTF)
set (JSON_SNPRINTF snprintf)
elseif (HAVE__SNPRINTF)
set (JSON_SNPRINTF _snprintf)
endif ()
check_c_source_compiles ("int main() { unsigned long val; __sync_bool_compare_and_swap(&val, 0, 1); return 0; } " HAVE_SYNC_BUILTINS)
check_c_source_compiles ("int main() { char l; unsigned long v; __atomic_test_and_set(&l, __ATOMIC_RELAXED); __atomic_store_n(&v, 1, __ATOMIC_ACQ_REL); __atomic_load_n(&v, __ATOMIC_ACQUIRE); return 0; }" HAVE_ATOMIC_BUILTINS)
# Create pkg-conf file.
# (We use the same files as ./configure does, so we
# have to defined the same variables used there).
if(NOT DEFINED CMAKE_INSTALL_LIBDIR)
set(CMAKE_INSTALL_LIBDIR lib)
endif(NOT DEFINED CMAKE_INSTALL_LIBDIR)
set(prefix ${CMAKE_INSTALL_PREFIX})
set(exec_prefix ${CMAKE_INSTALL_PREFIX})
set(libdir ${CMAKE_INSTALL_PREFIX}/${CMAKE_INSTALL_LIBDIR})
set(VERSION ${JANSSON_DISPLAY_VERSION})
configure_file(${CMAKE_CURRENT_SOURCE_DIR}/jansson.pc.in
${CMAKE_CURRENT_BINARY_DIR}/jansson.pc @ONLY)
# configure the public config file
configure_file (${CMAKE_CURRENT_SOURCE_DIR}/cmake/jansson_config.h.cmake
${CMAKE_CURRENT_BINARY_DIR}/include/jansson_config.h)
# Copy the jansson.h file to the public include folder
file (COPY ${CMAKE_CURRENT_SOURCE_DIR}/src/jansson.h
DESTINATION ${CMAKE_CURRENT_BINARY_DIR}/include/)
# configure the private config file
configure_file (${CMAKE_CURRENT_SOURCE_DIR}/cmake/config.h.cmake
${CMAKE_CURRENT_BINARY_DIR}/private_include/config.h)
# and tell the source code to include it
add_definitions (-DHAVE_CONFIG_H)
include_directories (${CMAKE_CURRENT_BINARY_DIR}/include)
include_directories (${CMAKE_CURRENT_BINARY_DIR}/private_include)
# Add the lib sources.
file (GLOB C_FILES src/*.c)
if (BUILD_SHARED_LIBS)
add_library (jansson SHARED ${C_FILES} src/jansson.def)
set_target_properties (jansson PROPERTIES
VERSION ${JANSSON_VERSION}
SOVERSION ${JANSSON_SOVERSION})
else ()
add_library (jansson ${C_FILES})
endif ()
# LIBRARY for linux
# RUNTIME for windows (when building shared)
install (TARGETS jansson
ARCHIVE DESTINATION ${CMAKE_INSTALL_LIBDIR}
LIBRARY DESTINATION ${CMAKE_INSTALL_LIBDIR}
RUNTIME DESTINATION bin
)
install (FILES
${CMAKE_CURRENT_BINARY_DIR}/include/jansson_config.h
${CMAKE_CURRENT_SOURCE_DIR}/src/jansson.h
DESTINATION include)
install (FILES
${CMAKE_CURRENT_BINARY_DIR}/jansson.pc
DESTINATION ${CMAKE_INSTALL_LIBDIR}/pkgconfig)
# For building Documentation (uses Sphinx)
OPTION (BUILD_DOCS "Build documentation (uses python-sphinx)." ON)
if (BUILD_DOCS)
find_package(Sphinx)
if (NOT SPHINX_FOUND)
message(WARNING "Sphinx not found. Cannot generate documentation!
Set -DBUILD_DOCS=0 to get rid of this message.")
else()
if (Sphinx_VERSION_STRING VERSION_LESS 1.0)
message(WARNING "Your Sphinx version is too old!
This project requires Sphinx v1.0 or above to produce
proper documentation (you have v${Sphinx_VERSION_STRING}).
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set(CMAKE_MEMORYCHECK_COMMAND_OPTIONS
"--leak-check=full --show-reachable=yes --track-origins=yes -q")
set(MEMCHECK_COMMAND
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#
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test_array
test_copy
test_dump
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test_equal
test_load
test_loadb
test_number
test_object
test_pack
test_simple
test_unpack)
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target_link_libraries(${name} jansson)
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endif ()
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endforeach ()
add_custom_target(check COMMAND ${CMAKE_CTEST_COMMAND}
DEPENDS json_process ${api_tests})
endif ()
+19
View File
@@ -0,0 +1,19 @@
Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
+15
View File
@@ -0,0 +1,15 @@
EXTRA_DIST = CHANGES LICENSE README.rst win32 CMakeLists.txt cmake
SUBDIRS = doc src test
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+825
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@@ -0,0 +1,825 @@
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if ($(ETAGS) --etags-include --version) >/dev/null 2>&1; then \
include_option=--etags-include; \
empty_fix=.; \
else \
include_option=--include; \
empty_fix=; \
fi; \
list='$(SUBDIRS)'; for subdir in $$list; do \
if test "$$subdir" = .; then :; else \
test ! -f $$subdir/TAGS || \
set "$$@" "$$include_option=$$here/$$subdir/TAGS"; \
fi; \
done; \
list='$(SOURCES) $(HEADERS) config.h.in $(LISP) $(TAGS_FILES)'; \
unique=`for i in $$list; do \
if test -f "$$i"; then echo $$i; else echo $(srcdir)/$$i; fi; \
done | \
$(AWK) '{ files[$$0] = 1; nonempty = 1; } \
END { if (nonempty) { for (i in files) print i; }; }'`; \
shift; \
if test -z "$(ETAGS_ARGS)$$*$$unique"; then :; else \
test -n "$$unique" || unique=$$empty_fix; \
if test $$# -gt 0; then \
$(ETAGS) $(ETAGSFLAGS) $(AM_ETAGSFLAGS) $(ETAGS_ARGS) \
"$$@" $$unique; \
else \
$(ETAGS) $(ETAGSFLAGS) $(AM_ETAGSFLAGS) $(ETAGS_ARGS) \
$$unique; \
fi; \
fi
ctags: CTAGS
CTAGS: ctags-recursive $(HEADERS) $(SOURCES) config.h.in $(TAGS_DEPENDENCIES) \
$(TAGS_FILES) $(LISP)
list='$(SOURCES) $(HEADERS) config.h.in $(LISP) $(TAGS_FILES)'; \
unique=`for i in $$list; do \
if test -f "$$i"; then echo $$i; else echo $(srcdir)/$$i; fi; \
done | \
$(AWK) '{ files[$$0] = 1; nonempty = 1; } \
END { if (nonempty) { for (i in files) print i; }; }'`; \
test -z "$(CTAGS_ARGS)$$unique" \
|| $(CTAGS) $(CTAGSFLAGS) $(AM_CTAGSFLAGS) $(CTAGS_ARGS) \
$$unique
GTAGS:
here=`$(am__cd) $(top_builddir) && pwd` \
&& $(am__cd) $(top_srcdir) \
&& gtags -i $(GTAGS_ARGS) "$$here"
distclean-tags:
-rm -f TAGS ID GTAGS GRTAGS GSYMS GPATH tags
distdir: $(DISTFILES)
$(am__remove_distdir)
test -d "$(distdir)" || mkdir "$(distdir)"
@srcdirstrip=`echo "$(srcdir)" | sed 's/[].[^$$\\*]/\\\\&/g'`; \
topsrcdirstrip=`echo "$(top_srcdir)" | sed 's/[].[^$$\\*]/\\\\&/g'`; \
list='$(DISTFILES)'; \
dist_files=`for file in $$list; do echo $$file; done | \
sed -e "s|^$$srcdirstrip/||;t" \
-e "s|^$$topsrcdirstrip/|$(top_builddir)/|;t"`; \
case $$dist_files in \
*/*) $(MKDIR_P) `echo "$$dist_files" | \
sed '/\//!d;s|^|$(distdir)/|;s,/[^/]*$$,,' | \
sort -u` ;; \
esac; \
for file in $$dist_files; do \
if test -f $$file || test -d $$file; then d=.; else d=$(srcdir); fi; \
if test -d $$d/$$file; then \
dir=`echo "/$$file" | sed -e 's,/[^/]*$$,,'`; \
if test -d "$(distdir)/$$file"; then \
find "$(distdir)/$$file" -type d ! -perm -700 -exec chmod u+rwx {} \;; \
fi; \
if test -d $(srcdir)/$$file && test $$d != $(srcdir); then \
cp -fpR $(srcdir)/$$file "$(distdir)$$dir" || exit 1; \
find "$(distdir)/$$file" -type d ! -perm -700 -exec chmod u+rwx {} \;; \
fi; \
cp -fpR $$d/$$file "$(distdir)$$dir" || exit 1; \
else \
test -f "$(distdir)/$$file" \
|| cp -p $$d/$$file "$(distdir)/$$file" \
|| exit 1; \
fi; \
done
@list='$(DIST_SUBDIRS)'; for subdir in $$list; do \
if test "$$subdir" = .; then :; else \
$(am__make_dryrun) \
|| test -d "$(distdir)/$$subdir" \
|| $(MKDIR_P) "$(distdir)/$$subdir" \
|| exit 1; \
dir1=$$subdir; dir2="$(distdir)/$$subdir"; \
$(am__relativize); \
new_distdir=$$reldir; \
dir1=$$subdir; dir2="$(top_distdir)"; \
$(am__relativize); \
new_top_distdir=$$reldir; \
echo " (cd $$subdir && $(MAKE) $(AM_MAKEFLAGS) top_distdir="$$new_top_distdir" distdir="$$new_distdir" \\"; \
echo " am__remove_distdir=: am__skip_length_check=: am__skip_mode_fix=: distdir)"; \
($(am__cd) $$subdir && \
$(MAKE) $(AM_MAKEFLAGS) \
top_distdir="$$new_top_distdir" \
distdir="$$new_distdir" \
am__remove_distdir=: \
am__skip_length_check=: \
am__skip_mode_fix=: \
distdir) \
|| exit 1; \
fi; \
done
-test -n "$(am__skip_mode_fix)" \
|| find "$(distdir)" -type d ! -perm -755 \
-exec chmod u+rwx,go+rx {} \; -o \
! -type d ! -perm -444 -links 1 -exec chmod a+r {} \; -o \
! -type d ! -perm -400 -exec chmod a+r {} \; -o \
! -type d ! -perm -444 -exec $(install_sh) -c -m a+r {} {} \; \
|| chmod -R a+r "$(distdir)"
dist-gzip: distdir
tardir=$(distdir) && $(am__tar) | GZIP=$(GZIP_ENV) gzip -c >$(distdir).tar.gz
$(am__remove_distdir)
dist-bzip2: distdir
tardir=$(distdir) && $(am__tar) | BZIP2=$${BZIP2--9} bzip2 -c >$(distdir).tar.bz2
$(am__remove_distdir)
dist-lzip: distdir
tardir=$(distdir) && $(am__tar) | lzip -c $${LZIP_OPT--9} >$(distdir).tar.lz
$(am__remove_distdir)
dist-lzma: distdir
tardir=$(distdir) && $(am__tar) | lzma -9 -c >$(distdir).tar.lzma
$(am__remove_distdir)
dist-xz: distdir
tardir=$(distdir) && $(am__tar) | XZ_OPT=$${XZ_OPT--e} xz -c >$(distdir).tar.xz
$(am__remove_distdir)
dist-tarZ: distdir
tardir=$(distdir) && $(am__tar) | compress -c >$(distdir).tar.Z
$(am__remove_distdir)
dist-shar: distdir
shar $(distdir) | GZIP=$(GZIP_ENV) gzip -c >$(distdir).shar.gz
$(am__remove_distdir)
dist-zip: distdir
-rm -f $(distdir).zip
zip -rq $(distdir).zip $(distdir)
$(am__remove_distdir)
dist dist-all: distdir
tardir=$(distdir) && $(am__tar) | GZIP=$(GZIP_ENV) gzip -c >$(distdir).tar.gz
$(am__remove_distdir)
# This target untars the dist file and tries a VPATH configuration. Then
# it guarantees that the distribution is self-contained by making another
# tarfile.
distcheck: dist
case '$(DIST_ARCHIVES)' in \
*.tar.gz*) \
GZIP=$(GZIP_ENV) gzip -dc $(distdir).tar.gz | $(am__untar) ;;\
*.tar.bz2*) \
bzip2 -dc $(distdir).tar.bz2 | $(am__untar) ;;\
*.tar.lzma*) \
lzma -dc $(distdir).tar.lzma | $(am__untar) ;;\
*.tar.lz*) \
lzip -dc $(distdir).tar.lz | $(am__untar) ;;\
*.tar.xz*) \
xz -dc $(distdir).tar.xz | $(am__untar) ;;\
*.tar.Z*) \
uncompress -c $(distdir).tar.Z | $(am__untar) ;;\
*.shar.gz*) \
GZIP=$(GZIP_ENV) gzip -dc $(distdir).shar.gz | unshar ;;\
*.zip*) \
unzip $(distdir).zip ;;\
esac
chmod -R a-w $(distdir); chmod u+w $(distdir)
mkdir $(distdir)/_build
mkdir $(distdir)/_inst
chmod a-w $(distdir)
test -d $(distdir)/_build || exit 0; \
dc_install_base=`$(am__cd) $(distdir)/_inst && pwd | sed -e 's,^[^:\\/]:[\\/],/,'` \
&& dc_destdir="$${TMPDIR-/tmp}/am-dc-$$$$/" \
&& am__cwd=`pwd` \
&& $(am__cd) $(distdir)/_build \
&& ../configure --srcdir=.. --prefix="$$dc_install_base" \
$(AM_DISTCHECK_CONFIGURE_FLAGS) \
$(DISTCHECK_CONFIGURE_FLAGS) \
&& $(MAKE) $(AM_MAKEFLAGS) \
&& $(MAKE) $(AM_MAKEFLAGS) dvi \
&& $(MAKE) $(AM_MAKEFLAGS) check \
&& $(MAKE) $(AM_MAKEFLAGS) install \
&& $(MAKE) $(AM_MAKEFLAGS) installcheck \
&& $(MAKE) $(AM_MAKEFLAGS) uninstall \
&& $(MAKE) $(AM_MAKEFLAGS) distuninstallcheck_dir="$$dc_install_base" \
distuninstallcheck \
&& chmod -R a-w "$$dc_install_base" \
&& ({ \
(cd ../.. && umask 077 && mkdir "$$dc_destdir") \
&& $(MAKE) $(AM_MAKEFLAGS) DESTDIR="$$dc_destdir" install \
&& $(MAKE) $(AM_MAKEFLAGS) DESTDIR="$$dc_destdir" uninstall \
&& $(MAKE) $(AM_MAKEFLAGS) DESTDIR="$$dc_destdir" \
distuninstallcheck_dir="$$dc_destdir" distuninstallcheck; \
} || { rm -rf "$$dc_destdir"; exit 1; }) \
&& rm -rf "$$dc_destdir" \
&& $(MAKE) $(AM_MAKEFLAGS) dist \
&& rm -rf $(DIST_ARCHIVES) \
&& $(MAKE) $(AM_MAKEFLAGS) distcleancheck \
&& cd "$$am__cwd" \
|| exit 1
$(am__remove_distdir)
@(echo "$(distdir) archives ready for distribution: "; \
list='$(DIST_ARCHIVES)'; for i in $$list; do echo $$i; done) | \
sed -e 1h -e 1s/./=/g -e 1p -e 1x -e '$$p' -e '$$x'
distuninstallcheck:
@test -n '$(distuninstallcheck_dir)' || { \
echo 'ERROR: trying to run $@ with an empty' \
'$$(distuninstallcheck_dir)' >&2; \
exit 1; \
}; \
$(am__cd) '$(distuninstallcheck_dir)' || { \
echo 'ERROR: cannot chdir into $(distuninstallcheck_dir)' >&2; \
exit 1; \
}; \
test `$(am__distuninstallcheck_listfiles) | wc -l` -eq 0 \
|| { echo "ERROR: files left after uninstall:" ; \
if test -n "$(DESTDIR)"; then \
echo " (check DESTDIR support)"; \
fi ; \
$(distuninstallcheck_listfiles) ; \
exit 1; } >&2
distcleancheck: distclean
@if test '$(srcdir)' = . ; then \
echo "ERROR: distcleancheck can only run from a VPATH build" ; \
exit 1 ; \
fi
@test `$(distcleancheck_listfiles) | wc -l` -eq 0 \
|| { echo "ERROR: files left in build directory after distclean:" ; \
$(distcleancheck_listfiles) ; \
exit 1; } >&2
check-am: all-am
check: check-recursive
all-am: Makefile $(DATA) config.h
installdirs: installdirs-recursive
installdirs-am:
for dir in "$(DESTDIR)$(pkgconfigdir)"; do \
test -z "$$dir" || $(MKDIR_P) "$$dir"; \
done
install: install-recursive
install-exec: install-exec-recursive
install-data: install-data-recursive
uninstall: uninstall-recursive
install-am: all-am
@$(MAKE) $(AM_MAKEFLAGS) install-exec-am install-data-am
installcheck: installcheck-recursive
install-strip:
if test -z '$(STRIP)'; then \
$(MAKE) $(AM_MAKEFLAGS) INSTALL_PROGRAM="$(INSTALL_STRIP_PROGRAM)" \
install_sh_PROGRAM="$(INSTALL_STRIP_PROGRAM)" INSTALL_STRIP_FLAG=-s \
install; \
else \
$(MAKE) $(AM_MAKEFLAGS) INSTALL_PROGRAM="$(INSTALL_STRIP_PROGRAM)" \
install_sh_PROGRAM="$(INSTALL_STRIP_PROGRAM)" INSTALL_STRIP_FLAG=-s \
"INSTALL_PROGRAM_ENV=STRIPPROG='$(STRIP)'" install; \
fi
mostlyclean-generic:
clean-generic:
distclean-generic:
-test -z "$(CONFIG_CLEAN_FILES)" || rm -f $(CONFIG_CLEAN_FILES)
-test . = "$(srcdir)" || test -z "$(CONFIG_CLEAN_VPATH_FILES)" || rm -f $(CONFIG_CLEAN_VPATH_FILES)
maintainer-clean-generic:
@echo "This command is intended for maintainers to use"
@echo "it deletes files that may require special tools to rebuild."
clean: clean-recursive
clean-am: clean-generic clean-libtool mostlyclean-am
distclean: distclean-recursive
-rm -f $(am__CONFIG_DISTCLEAN_FILES)
-rm -f Makefile
distclean-am: clean-am distclean-generic distclean-hdr \
distclean-libtool distclean-tags
dvi-am:
html: html-recursive
html-am:
info: info-recursive
info-am:
install-data-am: install-pkgconfigDATA
install-dvi: install-dvi-recursive
install-dvi-am:
install-exec-am:
install-html: install-html-recursive
install-html-am:
install-info: install-info-recursive
install-info-am:
install-man:
install-pdf: install-pdf-recursive
install-pdf-am:
install-ps: install-ps-recursive
install-ps-am:
installcheck-am:
maintainer-clean: maintainer-clean-recursive
-rm -f $(am__CONFIG_DISTCLEAN_FILES)
-rm -rf $(top_srcdir)/autom4te.cache
-rm -f Makefile
maintainer-clean-am: distclean-am maintainer-clean-generic
mostlyclean: mostlyclean-recursive
mostlyclean-am: mostlyclean-generic mostlyclean-libtool
pdf: pdf-recursive
pdf-am:
ps: ps-recursive
ps-am:
uninstall-am: uninstall-pkgconfigDATA
.MAKE: $(RECURSIVE_CLEAN_TARGETS) $(RECURSIVE_TARGETS) all \
ctags-recursive install-am install-strip tags-recursive
.PHONY: $(RECURSIVE_CLEAN_TARGETS) $(RECURSIVE_TARGETS) CTAGS GTAGS \
all all-am am--refresh check check-am clean clean-generic \
clean-libtool ctags ctags-recursive dist dist-all dist-bzip2 \
dist-gzip dist-lzip dist-lzma dist-shar dist-tarZ dist-xz \
dist-zip distcheck distclean distclean-generic distclean-hdr \
distclean-libtool distclean-tags distcleancheck distdir \
distuninstallcheck dvi dvi-am html html-am info info-am \
install install-am install-data install-data-am install-dvi \
install-dvi-am install-exec install-exec-am install-html \
install-html-am install-info install-info-am install-man \
install-pdf install-pdf-am install-pkgconfigDATA install-ps \
install-ps-am install-strip installcheck installcheck-am \
installdirs installdirs-am maintainer-clean \
maintainer-clean-generic mostlyclean mostlyclean-generic \
mostlyclean-libtool pdf pdf-am ps ps-am tags tags-recursive \
uninstall uninstall-am uninstall-pkgconfigDATA
# "make distcheck" builds the dvi target, so use it to check that the
# documentation is built correctly.
dvi:
$(MAKE) SPHINXOPTS_EXTRA=-W html
# These flags are gcc specific
@GCC_TRUE@export AM_CFLAGS = -Wall -Wextra -Wdeclaration-after-statement
# Tell versions [3.59,3.63) of GNU make to not export all variables.
# Otherwise a system limit (for SysV at least) may be exceeded.
.NOEXPORT:
+63
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@@ -0,0 +1,63 @@
Jansson README
==============
.. image:: https://travis-ci.org/akheron/jansson.png
:alt: Build status
:target: https://travis-ci.org/akheron/jansson
Jansson_ is a C library for encoding, decoding and manipulating JSON
data. Its main features and design principles are:
- Simple and intuitive API and data model
- Comprehensive documentation
- No dependencies on other libraries
- Full Unicode support (UTF-8)
- Extensive test suite
Jansson is licensed under the `MIT license`_; see LICENSE in the
source distribution for details.
Compilation and Installation
----------------------------
If you obtained a source tarball, just use the standard autotools
commands::
$ ./configure
$ make
$ make install
To run the test suite, invoke::
$ make check
If the source has been checked out from a Git repository, the
./configure script has to be generated first. The easiest way is to
use autoreconf::
$ autoreconf -i
Documentation
-------------
Prebuilt HTML documentation is available at
http://www.digip.org/jansson/doc/.
The documentation source is in the ``doc/`` subdirectory. To generate
HTML documentation, invoke::
$ make html
Then, point your browser to ``doc/_build/html/index.html``. Sphinx_
1.0 or newer is required to generate the documentation.
.. _Jansson: http://www.digip.org/jansson/
.. _`MIT license`: http://www.opensource.org/licenses/mit-license.php
.. _Sphinx: http://sphinx.pocoo.org/
+9666
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File diff suppressed because it is too large Load Diff
@@ -0,0 +1,15 @@
include(CheckCSourceCompiles)
macro(check_function_keywords _wordlist)
set(${_result} "")
foreach(flag ${_wordlist})
string(REGEX REPLACE "[-+/ ()]" "_" flagname "${flag}")
string(TOUPPER "${flagname}" flagname)
set(have_flag "HAVE_${flagname}")
check_c_source_compiles("${flag} void func(); void func() { } int main() { func(); return 0; }" ${have_flag})
if(${have_flag} AND NOT ${_result})
set(${_result} "${flag}")
# break()
endif(${have_flag} AND NOT ${_result})
endforeach(flag)
endmacro(check_function_keywords)
+301
View File
@@ -0,0 +1,301 @@
#
# PART B. DOWNLOADING AGREEMENT - LICENSE FROM SBIA WITH RIGHT TO SUBLICENSE ("SOFTWARE LICENSE").
# ------------------------------------------------------------------------------------------------
#
# 1. As used in this Software License, "you" means the individual downloading and/or
# using, reproducing, modifying, displaying and/or distributing the Software and
# the institution or entity which employs or is otherwise affiliated with such
# individual in connection therewith. The Section of Biomedical Image Analysis,
# Department of Radiology at the Universiy of Pennsylvania ("SBIA") hereby grants
# you, with right to sublicense, with respect to SBIA's rights in the software,
# and data, if any, which is the subject of this Software License (collectively,
# the "Software"), a royalty-free, non-exclusive license to use, reproduce, make
# derivative works of, display and distribute the Software, provided that:
# (a) you accept and adhere to all of the terms and conditions of this Software
# License; (b) in connection with any copy of or sublicense of all or any portion
# of the Software, all of the terms and conditions in this Software License shall
# appear in and shall apply to such copy and such sublicense, including without
# limitation all source and executable forms and on any user documentation,
# prefaced with the following words: "All or portions of this licensed product
# (such portions are the "Software") have been obtained under license from the
# Section of Biomedical Image Analysis, Department of Radiology at the University
# of Pennsylvania and are subject to the following terms and conditions:"
# (c) you preserve and maintain all applicable attributions, copyright notices
# and licenses included in or applicable to the Software; (d) modified versions
# of the Software must be clearly identified and marked as such, and must not
# be misrepresented as being the original Software; and (e) you consider making,
# but are under no obligation to make, the source code of any of your modifications
# to the Software freely available to others on an open source basis.
#
# 2. The license granted in this Software License includes without limitation the
# right to (i) incorporate the Software into proprietary programs (subject to
# any restrictions applicable to such programs), (ii) add your own copyright
# statement to your modifications of the Software, and (iii) provide additional
# or different license terms and conditions in your sublicenses of modifications
# of the Software; provided that in each case your use, reproduction or
# distribution of such modifications otherwise complies with the conditions
# stated in this Software License.
#
# 3. This Software License does not grant any rights with respect to third party
# software, except those rights that SBIA has been authorized by a third
# party to grant to you, and accordingly you are solely responsible for
# (i) obtaining any permissions from third parties that you need to use,
# reproduce, make derivative works of, display and distribute the Software,
# and (ii) informing your sublicensees, including without limitation your
# end-users, of their obligations to secure any such required permissions.
#
# 4. The Software has been designed for research purposes only and has not been
# reviewed or approved by the Food and Drug Administration or by any other
# agency. YOU ACKNOWLEDGE AND AGREE THAT CLINICAL APPLICATIONS ARE NEITHER
# RECOMMENDED NOR ADVISED. Any commercialization of the Software is at the
# sole risk of the party or parties engaged in such commercialization.
# You further agree to use, reproduce, make derivative works of, display
# and distribute the Software in compliance with all applicable governmental
# laws, regulations and orders, including without limitation those relating
# to export and import control.
#
# 5. The Software is provided "AS IS" and neither SBIA nor any contributor to
# the software (each a "Contributor") shall have any obligation to provide
# maintenance, support, updates, enhancements or modifications thereto.
# SBIA AND ALL CONTRIBUTORS SPECIFICALLY DISCLAIM ALL EXPRESS AND IMPLIED
# WARRANTIES OF ANY KIND INCLUDING, BUT NOT LIMITED TO, ANY WARRANTIES OF
# MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
# IN NO EVENT SHALL SBIA OR ANY CONTRIBUTOR BE LIABLE TO ANY PARTY FOR
# DIRECT, INDIRECT, SPECIAL, INCIDENTAL, EXEMPLARY OR CONSEQUENTIAL DAMAGES
# HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY ARISING IN ANY WAY RELATED
# TO THE SOFTWARE, EVEN IF SBIA OR ANY CONTRIBUTOR HAS BEEN ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGES. TO THE MAXIMUM EXTENT NOT PROHIBITED BY LAW OR
# REGULATION, YOU FURTHER ASSUME ALL LIABILITY FOR YOUR USE, REPRODUCTION,
# MAKING OF DERIVATIVE WORKS, DISPLAY, LICENSE OR DISTRIBUTION OF THE SOFTWARE
# AND AGREE TO INDEMNIFY AND HOLD HARMLESS SBIA AND ALL CONTRIBUTORS FROM
# AND AGAINST ANY AND ALL CLAIMS, SUITS, ACTIONS, DEMANDS AND JUDGMENTS ARISING
# THEREFROM.
#
# 6. None of the names, logos or trademarks of SBIA or any of SBIA's affiliates
# or any of the Contributors, or any funding agency, may be used to endorse
# or promote products produced in whole or in part by operation of the Software
# or derived from or based on the Software without specific prior written
# permission from the applicable party.
#
# 7. Any use, reproduction or distribution of the Software which is not in accordance
# with this Software License shall automatically revoke all rights granted to you
# under this Software License and render Paragraphs 1 and 2 of this Software
# License null and void.
#
# 8. This Software License does not grant any rights in or to any intellectual
# property owned by SBIA or any Contributor except those rights expressly
# granted hereunder.
#
#
# PART C. MISCELLANEOUS
# ---------------------
#
# This Agreement shall be governed by and construed in accordance with the laws
# of The Commonwealth of Pennsylvania without regard to principles of conflicts
# of law. This Agreement shall supercede and replace any license terms that you
# may have agreed to previously with respect to Software from SBIA.
#
##############################################################################
# @file FindSphinx.cmake
# @brief Find Sphinx documentation build tools.
#
# @par Input variables:
# <table border="0">
# <tr>
# @tp @b Sphinx_DIR @endtp
# <td>Installation directory of Sphinx tools. Can also be set as environment variable.</td>
# </tr>
# <tr>
# @tp @b SPHINX_DIR @endtp
# <td>Alternative environment variable for @c Sphinx_DIR.</td>
# </tr>
# <tr>
# @tp @b Sphinx_FIND_COMPONENTS @endtp
# <td>Sphinx build tools to look for, i.e., 'apidoc' and/or 'build'.</td>
# </tr>
# </table>
#
# @par Output variables:
# <table border="0">
# <tr>
# @tp @b Sphinx_FOUND @endtp
# <td>Whether all or only the requested Sphinx build tools were found.</td>
# </tr>
# <tr>
# @tp @b SPHINX_FOUND @endtp
# <td>Alias for @c Sphinx_FOUND.<td>
# </tr>
# <tr>
# @tp @b SPHINX_EXECUTABLE @endtp
# <td>Non-cached alias for @c Sphinx-build_EXECUTABLE.</td>
# </tr>
# <tr>
# @tp @b Sphinx_PYTHON_EXECUTABLE @endtp
# <td>Python executable used to run sphinx-build. This is either the
# by default found Python interpreter or a specific version as
# specified by the shebang (#!) of the sphinx-build script.</td>
# </tr>
# <tr>
# @tp @b Sphinx_PYTHON_OPTIONS @endtp
# <td>A list of Python options extracted from the shebang (#!) of the
# sphinx-build script. The -E option is added by this module
# if the Python executable is not the system default to avoid
# problems with a differing setting of the @c PYTHONHOME.</td>
# </tr>
# <tr>
# @tp @b Sphinx-build_EXECUTABLE @endtp
# <td>Absolute path of the found sphinx-build tool.</td>
# </tr>
# <tr>
# @tp @b Sphinx-apidoc_EXECUTABLE @endtp
# <td>Absolute path of the found sphinx-apidoc tool.</td>
# </tr>
# <tr>
# @tp @b Sphinx_VERSION_STRING @endtp
# <td>Sphinx version found e.g. 1.1.2.</td>
# </tr>
# <tr>
# @tp @b Sphinx_VERSION_MAJOR @endtp
# <td>Sphinx major version found e.g. 1.</td>
# </tr>
# <tr>
# @tp @b Sphinx_VERSION_MINOR @endtp
# <td>Sphinx minor version found e.g. 1.</td>
# </tr>
# <tr>
# @tp @b Sphinx_VERSION_PATCH @endtp
# <td>Sphinx patch version found e.g. 2.</td>
# </tr>
# </table>
#
# @ingroup CMakeFindModules
##############################################################################
set (_Sphinx_REQUIRED_VARS)
# ----------------------------------------------------------------------------
# initialize search
if (NOT Sphinx_DIR)
if (NOT $ENV{Sphinx_DIR} STREQUAL "")
set (Sphinx_DIR "$ENV{Sphinx_DIR}" CACHE PATH "Installation prefix of Sphinx (docutils)." FORCE)
else ()
set (Sphinx_DIR "$ENV{SPHINX_DIR}" CACHE PATH "Installation prefix of Sphinx (docutils)." FORCE)
endif ()
endif ()
# ----------------------------------------------------------------------------
# default components to look for
if (NOT Sphinx_FIND_COMPONENTS)
set (Sphinx_FIND_COMPONENTS "build")
elseif (NOT Sphinx_FIND_COMPONENTS MATCHES "^(build|apidoc)$")
message (FATAL_ERROR "Invalid Sphinx component in: ${Sphinx_FIND_COMPONENTS}")
endif ()
# ----------------------------------------------------------------------------
# find components, i.e., build tools
foreach (_Sphinx_TOOL IN LISTS Sphinx_FIND_COMPONENTS)
if (Sphinx_DIR)
find_program (
Sphinx-${_Sphinx_TOOL}_EXECUTABLE
NAMES sphinx-${_Sphinx_TOOL} sphinx-${_Sphinx_TOOL}.py
HINTS "${Sphinx_DIR}"
PATH_SUFFIXES bin
DOC "The sphinx-${_Sphinx_TOOL} Python script."
NO_DEFAULT_PATH
)
else ()
find_program (
Sphinx-${_Sphinx_TOOL}_EXECUTABLE
NAMES sphinx-${_Sphinx_TOOL} sphinx-${_Sphinx_TOOL}.py
DOC "The sphinx-${_Sphinx_TOOL} Python script."
)
endif ()
mark_as_advanced (Sphinx-${_Sphinx_TOOL}_EXECUTABLE)
list (APPEND _Sphinx_REQUIRED_VARS Sphinx-${_Sphinx_TOOL}_EXECUTABLE)
endforeach ()
# ----------------------------------------------------------------------------
# determine Python executable used by Sphinx
if (Sphinx-build_EXECUTABLE)
# extract python executable from shebang of sphinx-build
find_package (PythonInterp QUIET)
set (Sphinx_PYTHON_EXECUTABLE "${PYTHON_EXECUTABLE}")
set (Sphinx_PYTHON_OPTIONS)
file (STRINGS "${Sphinx-build_EXECUTABLE}" FIRST_LINE LIMIT_COUNT 1)
if (FIRST_LINE MATCHES "^#!(.*/python.*)") # does not match "#!/usr/bin/env python" !
string (REGEX REPLACE "^ +| +$" "" Sphinx_PYTHON_EXECUTABLE "${CMAKE_MATCH_1}")
if (Sphinx_PYTHON_EXECUTABLE MATCHES "([^ ]+) (.*)")
set (Sphinx_PYTHON_EXECUTABLE "${CMAKE_MATCH_1}")
string (REGEX REPLACE " +" ";" Sphinx_PYTHON_OPTIONS "${CMAKE_MATCH_2}")
endif ()
endif ()
# this is done to avoid problems with multiple Python versions being installed
# remember: CMake command if(STR EQUAL STR) is bad and may cause many troubles !
string (REGEX REPLACE "([.+*?^$])" "\\\\\\1" _Sphinx_PYTHON_EXECUTABLE_RE "${PYTHON_EXECUTABLE}")
list (FIND Sphinx_PYTHON_OPTIONS -E IDX)
if (IDX EQUAL -1 AND NOT Sphinx_PYTHON_EXECUTABLE MATCHES "^${_Sphinx_PYTHON_EXECUTABLE_RE}$")
list (INSERT Sphinx_PYTHON_OPTIONS 0 -E)
endif ()
unset (_Sphinx_PYTHON_EXECUTABLE_RE)
endif ()
# ----------------------------------------------------------------------------
# determine Sphinx version
if (Sphinx-build_EXECUTABLE)
# intentionally use invalid -h option here as the help that is shown then
# will include the Sphinx version information
if (Sphinx_PYTHON_EXECUTABLE)
execute_process (
COMMAND "${Sphinx_PYTHON_EXECUTABLE}" ${Sphinx_PYTHON_OPTIONS} "${Sphinx-build_EXECUTABLE}" -h
OUTPUT_VARIABLE _Sphinx_VERSION
ERROR_VARIABLE _Sphinx_VERSION
)
elseif (UNIX)
execute_process (
COMMAND "${Sphinx-build_EXECUTABLE}" -h
OUTPUT_VARIABLE _Sphinx_VERSION
ERROR_VARIABLE _Sphinx_VERSION
)
endif ()
# The sphinx version can also contain a "b" instead of the last dot.
# For example "Sphinx v1.2b1" so we cannot just split on "."
if (_Sphinx_VERSION MATCHES "Sphinx v([0-9]+\\.[0-9]+(\\.|b)[0-9]+)")
set (Sphinx_VERSION_STRING "${CMAKE_MATCH_1}")
string(REGEX REPLACE "([0-9]+)\\.[0-9]+(\\.|b)[0-9]+" "\\1" Sphinx_VERSION_MAJOR ${Sphinx_VERSION_STRING})
string(REGEX REPLACE "[0-9]+\\.([0-9]+)(\\.|b)[0-9]+" "\\1" Sphinx_VERSION_MINOR ${Sphinx_VERSION_STRING})
string(REGEX REPLACE "[0-9]+\\.[0-9]+(\\.|b)([0-9]+)" "\\1" Sphinx_VERSION_PATCH ${Sphinx_VERSION_STRING})
# v1.2.0 -> v1.2
if (Sphinx_VERSION_PATCH EQUAL 0)
string (REGEX REPLACE "\\.0$" "" Sphinx_VERSION_STRING "${Sphinx_VERSION_STRING}")
endif ()
endif()
endif ()
# ----------------------------------------------------------------------------
# compatibility with FindPythonInterp.cmake and FindPerl.cmake
set (SPHINX_EXECUTABLE "${Sphinx-build_EXECUTABLE}")
# ----------------------------------------------------------------------------
# handle the QUIETLY and REQUIRED arguments and set SPHINX_FOUND to TRUE if
# all listed variables are TRUE
include (FindPackageHandleStandardArgs)
FIND_PACKAGE_HANDLE_STANDARD_ARGS (
Sphinx
REQUIRED_VARS
${_Sphinx_REQUIRED_VARS}
# VERSION_VAR # This isn't available until CMake 2.8.8 so don't use it.
Sphinx_VERSION_STRING
)
# ----------------------------------------------------------------------------
# set Sphinx_DIR
if (NOT Sphinx_DIR AND Sphinx-build_EXECUTABLE)
get_filename_component (Sphinx_DIR "${Sphinx-build_EXECUTABLE}" PATH)
string (REGEX REPLACE "/bin/?" "" Sphinx_DIR "${Sphinx_DIR}")
set (Sphinx_DIR "${Sphinx_DIR}" CACHE PATH "Installation directory of Sphinx tools." FORCE)
endif ()
unset (_Sphinx_VERSION)
unset (_Sphinx_REQUIRED_VARS)
+49
View File
@@ -0,0 +1,49 @@
#cmakedefine HAVE_ENDIAN_H 1
#cmakedefine HAVE_FCNTL_H 1
#cmakedefine HAVE_SCHED_H 1
#cmakedefine HAVE_UNISTD_H 1
#cmakedefine HAVE_SYS_PARAM_H 1
#cmakedefine HAVE_SYS_STAT_H 1
#cmakedefine HAVE_SYS_TIME_H 1
#cmakedefine HAVE_SYS_TYPES_H 1
#cmakedefine HAVE_STDINT_H 1
#cmakedefine HAVE_CLOSE 1
#cmakedefine HAVE_GETPID 1
#cmakedefine HAVE_GETTIMEOFDAY 1
#cmakedefine HAVE_OPEN 1
#cmakedefine HAVE_READ 1
#cmakedefine HAVE_SCHED_YIELD 1
#cmakedefine HAVE_SYNC_BUILTINS 1
#cmakedefine HAVE_ATOMIC_BUILTINS 1
#cmakedefine HAVE_LOCALE_H 1
#cmakedefine HAVE_SETLOCALE 1
#cmakedefine HAVE_INT32_T 1
#ifndef HAVE_INT32_T
# define int32_t @JSON_INT32@
#endif
#cmakedefine HAVE_UINT32_T 1
#ifndef HAVE_UINT32_T
# define uint32_t @JSON_UINT32@
#endif
#cmakedefine HAVE_SSIZE_T 1
#ifndef HAVE_SSIZE_T
# define ssize_t @JSON_SSIZE@
#endif
#cmakedefine HAVE_SNPRINTF 1
#ifndef HAVE_SNPRINTF
# define snprintf @JSON_SNPRINTF@
#endif
#cmakedefine HAVE_VSNPRINTF
#cmakedefine USE_URANDOM 1
#cmakedefine USE_WINDOWS_CRYPTOAPI 1
+62
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@@ -0,0 +1,62 @@
/*
* Copyright (c) 2010-2013 Petri Lehtinen <petri@digip.org>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*
*
* This file specifies a part of the site-specific configuration for
* Jansson, namely those things that affect the public API in
* jansson.h.
*
* The CMake system will generate the jansson_config.h file and
* copy it to the build and install directories.
*/
#ifndef JANSSON_CONFIG_H
#define JANSSON_CONFIG_H
/* Define this so that we can disable scattered automake configuration in source files */
#define JANSSON_USING_CMAKE
/* Note: when using cmake, JSON_INTEGER_IS_LONG_LONG is not defined nor used,
* as we will also check for __int64 etc types.
* (the definition was used in the automake system) */
/* Bring in the cmake-detected defines */
#cmakedefine HAVE_STDINT_H 1
#cmakedefine HAVE_INTTYPES_H 1
#cmakedefine HAVE_SYS_TYPES_H 1
/* Include our standard type header for the integer typedef */
#if defined(HAVE_STDINT_H)
# include <stdint.h>
#elif defined(HAVE_INTTYPES_H)
# include <inttypes.h>
#elif defined(HAVE_SYS_TYPES_H)
# include <sys/types.h>
#endif
/* If your compiler supports the inline keyword in C, JSON_INLINE is
defined to `inline', otherwise empty. In C++, the inline is always
supported. */
#ifdef __cplusplus
#define JSON_INLINE inline
#else
#define JSON_INLINE @JSON_INLINE@
#endif
#define json_int_t @JSON_INT_T@
#define json_strtoint @JSON_STRTOINT@
#define JSON_INTEGER_FORMAT @JSON_INTEGER_FORMAT@
/* If locale.h and localeconv() are available, define to 1, otherwise to 0. */
#define JSON_HAVE_LOCALECONV @JSON_HAVE_LOCALECONV@
#endif
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+139
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@@ -0,0 +1,139 @@
/* config.h.in. Generated from configure.ac by autoheader. */
/* Define to 1 if gcc's __atomic builtins are available */
#undef HAVE_ATOMIC_BUILTINS
/* Define to 1 if you have the `close' function. */
#undef HAVE_CLOSE
/* Define to 1 if you have the <dlfcn.h> header file. */
#undef HAVE_DLFCN_H
/* Define to 1 if you have the <endian.h> header file. */
#undef HAVE_ENDIAN_H
/* Define to 1 if you have the <fcntl.h> header file. */
#undef HAVE_FCNTL_H
/* Define to 1 if you have the `getpid' function. */
#undef HAVE_GETPID
/* Define to 1 if you have the `gettimeofday' function. */
#undef HAVE_GETTIMEOFDAY
/* Define to 1 if you have the <inttypes.h> header file. */
#undef HAVE_INTTYPES_H
/* Define to 1 if you have the `localeconv' function. */
#undef HAVE_LOCALECONV
/* Define to 1 if you have the <locale.h> header file. */
#undef HAVE_LOCALE_H
/* Define to 1 if the system has the type `long long int'. */
#undef HAVE_LONG_LONG_INT
/* Define to 1 if you have the <memory.h> header file. */
#undef HAVE_MEMORY_H
/* Define to 1 if you have the `open' function. */
#undef HAVE_OPEN
/* Define to 1 if you have the `read' function. */
#undef HAVE_READ
/* Define to 1 if you have the <sched.h> header file. */
#undef HAVE_SCHED_H
/* Define to 1 if you have the `sched_yield' function. */
#undef HAVE_SCHED_YIELD
/* Define to 1 if you have the <stdint.h> header file. */
#undef HAVE_STDINT_H
/* Define to 1 if you have the <stdlib.h> header file. */
#undef HAVE_STDLIB_H
/* Define to 1 if you have the <strings.h> header file. */
#undef HAVE_STRINGS_H
/* Define to 1 if you have the <string.h> header file. */
#undef HAVE_STRING_H
/* Define to 1 if you have the `strtoll' function. */
#undef HAVE_STRTOLL
/* Define to 1 if gcc's __sync builtins are available */
#undef HAVE_SYNC_BUILTINS
/* Define to 1 if you have the <sys/param.h> header file. */
#undef HAVE_SYS_PARAM_H
/* Define to 1 if you have the <sys/stat.h> header file. */
#undef HAVE_SYS_STAT_H
/* Define to 1 if you have the <sys/time.h> header file. */
#undef HAVE_SYS_TIME_H
/* Define to 1 if you have the <sys/types.h> header file. */
#undef HAVE_SYS_TYPES_H
/* Define to 1 if you have the <unistd.h> header file. */
#undef HAVE_UNISTD_H
/* Define to the sub-directory in which libtool stores uninstalled libraries.
*/
#undef LT_OBJDIR
/* Name of package */
#undef PACKAGE
/* Define to the address where bug reports for this package should be sent. */
#undef PACKAGE_BUGREPORT
/* Define to the full name of this package. */
#undef PACKAGE_NAME
/* Define to the full name and version of this package. */
#undef PACKAGE_STRING
/* Define to the one symbol short name of this package. */
#undef PACKAGE_TARNAME
/* Define to the home page for this package. */
#undef PACKAGE_URL
/* Define to the version of this package. */
#undef PACKAGE_VERSION
/* Define to 1 if you have the ANSI C header files. */
#undef STDC_HEADERS
/* Define to 1 if /dev/urandom should be used for seeding the hash function */
#undef USE_URANDOM
/* Define to 1 if CryptGenRandom should be used for seeding the hash function
*/
#undef USE_WINDOWS_CRYPTOAPI
/* Version number of package */
#undef VERSION
/* Define for Solaris 2.5.1 so the uint32_t typedef from <sys/synch.h>,
<pthread.h>, or <semaphore.h> is not used. If the typedef were allowed, the
#define below would cause a syntax error. */
#undef _UINT32_T
/* Define to `__inline__' or `__inline' if that's what the C compiler
calls it, or to nothing if 'inline' is not supported under any name. */
#ifndef __cplusplus
#undef inline
#endif
/* Define to the type of a signed integer type of width exactly 32 bits if
such a type exists and the standard includes do not define it. */
#undef int32_t
/* Define to the type of an unsigned integer type of width exactly 32 bits if
such a type exists and the standard includes do not define it. */
#undef uint32_t
+1782
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+14080
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+103
View File
@@ -0,0 +1,103 @@
AC_PREREQ([2.60])
AC_INIT([jansson], [2.6], [[email protected]])
AM_INIT_AUTOMAKE([1.10 foreign])
AC_CONFIG_SRCDIR([src/value.c])
AC_CONFIG_HEADERS([config.h])
# Checks for programs.
AC_PROG_CC
AC_PROG_LIBTOOL
AM_CONDITIONAL([GCC], [test x$GCC = xyes])
# Checks for libraries.
# Checks for header files.
AC_CHECK_HEADERS([endian.h fcntl.h locale.h sched.h unistd.h sys/param.h sys/stat.h sys/time.h sys/types.h])
# Checks for typedefs, structures, and compiler characteristics.
AC_TYPE_INT32_T
AC_TYPE_UINT32_T
AC_TYPE_LONG_LONG_INT
AC_C_INLINE
case $ac_cv_c_inline in
yes) json_inline=inline;;
no) json_inline=;;
*) json_inline=$ac_cv_c_inline;;
esac
AC_SUBST([json_inline])
# Checks for library functions.
AC_CHECK_FUNCS([close getpid gettimeofday localeconv open read sched_yield strtoll])
AC_MSG_CHECKING([for gcc __sync builtins])
have_sync_builtins=no
AC_TRY_LINK(
[], [unsigned long val; __sync_bool_compare_and_swap(&val, 0, 1);],
[have_sync_builtins=yes],
)
if test "x$have_sync_builtins" = "xyes"; then
AC_DEFINE([HAVE_SYNC_BUILTINS], [1],
[Define to 1 if gcc's __sync builtins are available])
fi
AC_MSG_RESULT([$have_sync_builtins])
AC_MSG_CHECKING([for gcc __atomic builtins])
have_atomic_builtins=no
AC_TRY_LINK(
[], [char l; unsigned long v; __atomic_test_and_set(&l, __ATOMIC_RELAXED); __atomic_store_n(&v, 1, __ATOMIC_ACQ_REL); __atomic_load_n(&v, __ATOMIC_ACQUIRE);],
[have_atomic_builtins=yes],
)
if test "x$have_atomic_builtins" = "xyes"; then
AC_DEFINE([HAVE_ATOMIC_BUILTINS], [1],
[Define to 1 if gcc's __atomic builtins are available])
fi
AC_MSG_RESULT([$have_atomic_builtins])
case "$ac_cv_type_long_long_int$ac_cv_func_strtoll" in
yesyes) json_have_long_long=1;;
*) json_have_long_long=0;;
esac
AC_SUBST([json_have_long_long])
case "$ac_cv_header_locale_h$ac_cv_func_localeconv" in
yesyes) json_have_localeconv=1;;
*) json_have_localeconv=0;;
esac
AC_SUBST([json_have_localeconv])
# Features
AC_ARG_ENABLE([urandom],
[AS_HELP_STRING([--disable-urandom],
[Don't use /dev/urandom to seed the hash function])],
[use_urandom=$enableval], [use_urandom=yes])
if test "x$use_urandom" = xyes; then
AC_DEFINE([USE_URANDOM], [1],
[Define to 1 if /dev/urandom should be used for seeding the hash function])
fi
AC_ARG_ENABLE([windows-cryptoapi],
[AS_HELP_STRING([--disable-windows-cryptoapi],
[Don't use CryptGenRandom to seed the hash function])],
[use_windows_cryptoapi=$enableval], [use_windows_cryptoapi=yes])
if test "x$use_windows_cryptoapi" = xyes; then
AC_DEFINE([USE_WINDOWS_CRYPTOAPI], [1],
[Define to 1 if CryptGenRandom should be used for seeding the hash function])
fi
AC_CONFIG_FILES([
jansson.pc
Makefile
doc/Makefile
src/Makefile
src/jansson_config.h
test/Makefile
test/bin/Makefile
test/suites/Makefile
test/suites/api/Makefile
])
AC_OUTPUT
+708
View File
@@ -0,0 +1,708 @@
#! /bin/sh
# depcomp - compile a program generating dependencies as side-effects
scriptversion=2012-03-27.16; # UTC
# Copyright (C) 1999, 2000, 2003, 2004, 2005, 2006, 2007, 2009, 2010,
# 2011, 2012 Free Software Foundation, Inc.
# This program is free software; you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation; either version 2, or (at your option)
# any later version.
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
# You should have received a copy of the GNU General Public License
# along with this program. If not, see <http://www.gnu.org/licenses/>.
# As a special exception to the GNU General Public License, if you
# distribute this file as part of a program that contains a
# configuration script generated by Autoconf, you may include it under
# the same distribution terms that you use for the rest of that program.
# Originally written by Alexandre Oliva <[email protected]>.
case $1 in
'')
echo "$0: No command. Try '$0 --help' for more information." 1>&2
exit 1;
;;
-h | --h*)
cat <<\EOF
Usage: depcomp [--help] [--version] PROGRAM [ARGS]
Run PROGRAMS ARGS to compile a file, generating dependencies
as side-effects.
Environment variables:
depmode Dependency tracking mode.
source Source file read by 'PROGRAMS ARGS'.
object Object file output by 'PROGRAMS ARGS'.
DEPDIR directory where to store dependencies.
depfile Dependency file to output.
tmpdepfile Temporary file to use when outputting dependencies.
libtool Whether libtool is used (yes/no).
Report bugs to <[email protected]>.
EOF
exit $?
;;
-v | --v*)
echo "depcomp $scriptversion"
exit $?
;;
esac
# A tabulation character.
tab=' '
# A newline character.
nl='
'
if test -z "$depmode" || test -z "$source" || test -z "$object"; then
echo "depcomp: Variables source, object and depmode must be set" 1>&2
exit 1
fi
# Dependencies for sub/bar.o or sub/bar.obj go into sub/.deps/bar.Po.
depfile=${depfile-`echo "$object" |
sed 's|[^\\/]*$|'${DEPDIR-.deps}'/&|;s|\.\([^.]*\)$|.P\1|;s|Pobj$|Po|'`}
tmpdepfile=${tmpdepfile-`echo "$depfile" | sed 's/\.\([^.]*\)$/.T\1/'`}
rm -f "$tmpdepfile"
# Some modes work just like other modes, but use different flags. We
# parameterize here, but still list the modes in the big case below,
# to make depend.m4 easier to write. Note that we *cannot* use a case
# here, because this file can only contain one case statement.
if test "$depmode" = hp; then
# HP compiler uses -M and no extra arg.
gccflag=-M
depmode=gcc
fi
if test "$depmode" = dashXmstdout; then
# This is just like dashmstdout with a different argument.
dashmflag=-xM
depmode=dashmstdout
fi
cygpath_u="cygpath -u -f -"
if test "$depmode" = msvcmsys; then
# This is just like msvisualcpp but w/o cygpath translation.
# Just convert the backslash-escaped backslashes to single forward
# slashes to satisfy depend.m4
cygpath_u='sed s,\\\\,/,g'
depmode=msvisualcpp
fi
if test "$depmode" = msvc7msys; then
# This is just like msvc7 but w/o cygpath translation.
# Just convert the backslash-escaped backslashes to single forward
# slashes to satisfy depend.m4
cygpath_u='sed s,\\\\,/,g'
depmode=msvc7
fi
if test "$depmode" = xlc; then
# IBM C/C++ Compilers xlc/xlC can output gcc-like dependency informations.
gccflag=-qmakedep=gcc,-MF
depmode=gcc
fi
case "$depmode" in
gcc3)
## gcc 3 implements dependency tracking that does exactly what
## we want. Yay! Note: for some reason libtool 1.4 doesn't like
## it if -MD -MP comes after the -MF stuff. Hmm.
## Unfortunately, FreeBSD c89 acceptance of flags depends upon
## the command line argument order; so add the flags where they
## appear in depend2.am. Note that the slowdown incurred here
## affects only configure: in makefiles, %FASTDEP% shortcuts this.
for arg
do
case $arg in
-c) set fnord "$@" -MT "$object" -MD -MP -MF "$tmpdepfile" "$arg" ;;
*) set fnord "$@" "$arg" ;;
esac
shift # fnord
shift # $arg
done
"$@"
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
mv "$tmpdepfile" "$depfile"
;;
gcc)
## There are various ways to get dependency output from gcc. Here's
## why we pick this rather obscure method:
## - Don't want to use -MD because we'd like the dependencies to end
## up in a subdir. Having to rename by hand is ugly.
## (We might end up doing this anyway to support other compilers.)
## - The DEPENDENCIES_OUTPUT environment variable makes gcc act like
## -MM, not -M (despite what the docs say).
## - Using -M directly means running the compiler twice (even worse
## than renaming).
if test -z "$gccflag"; then
gccflag=-MD,
fi
"$@" -Wp,"$gccflag$tmpdepfile"
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
rm -f "$depfile"
echo "$object : \\" > "$depfile"
alpha=ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz
## The second -e expression handles DOS-style file names with drive letters.
sed -e 's/^[^:]*: / /' \
-e 's/^['$alpha']:\/[^:]*: / /' < "$tmpdepfile" >> "$depfile"
## This next piece of magic avoids the "deleted header file" problem.
## The problem is that when a header file which appears in a .P file
## is deleted, the dependency causes make to die (because there is
## typically no way to rebuild the header). We avoid this by adding
## dummy dependencies for each header file. Too bad gcc doesn't do
## this for us directly.
tr ' ' "$nl" < "$tmpdepfile" |
## Some versions of gcc put a space before the ':'. On the theory
## that the space means something, we add a space to the output as
## well. hp depmode also adds that space, but also prefixes the VPATH
## to the object. Take care to not repeat it in the output.
## Some versions of the HPUX 10.20 sed can't process this invocation
## correctly. Breaking it into two sed invocations is a workaround.
sed -e 's/^\\$//' -e '/^$/d' -e "s|.*$object$||" -e '/:$/d' \
| sed -e 's/$/ :/' >> "$depfile"
rm -f "$tmpdepfile"
;;
hp)
# This case exists only to let depend.m4 do its work. It works by
# looking at the text of this script. This case will never be run,
# since it is checked for above.
exit 1
;;
sgi)
if test "$libtool" = yes; then
"$@" "-Wp,-MDupdate,$tmpdepfile"
else
"$@" -MDupdate "$tmpdepfile"
fi
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
rm -f "$depfile"
if test -f "$tmpdepfile"; then # yes, the sourcefile depend on other files
echo "$object : \\" > "$depfile"
# Clip off the initial element (the dependent). Don't try to be
# clever and replace this with sed code, as IRIX sed won't handle
# lines with more than a fixed number of characters (4096 in
# IRIX 6.2 sed, 8192 in IRIX 6.5). We also remove comment lines;
# the IRIX cc adds comments like '#:fec' to the end of the
# dependency line.
tr ' ' "$nl" < "$tmpdepfile" \
| sed -e 's/^.*\.o://' -e 's/#.*$//' -e '/^$/ d' | \
tr "$nl" ' ' >> "$depfile"
echo >> "$depfile"
# The second pass generates a dummy entry for each header file.
tr ' ' "$nl" < "$tmpdepfile" \
| sed -e 's/^.*\.o://' -e 's/#.*$//' -e '/^$/ d' -e 's/$/:/' \
>> "$depfile"
else
# The sourcefile does not contain any dependencies, so just
# store a dummy comment line, to avoid errors with the Makefile
# "include basename.Plo" scheme.
echo "#dummy" > "$depfile"
fi
rm -f "$tmpdepfile"
;;
xlc)
# This case exists only to let depend.m4 do its work. It works by
# looking at the text of this script. This case will never be run,
# since it is checked for above.
exit 1
;;
aix)
# The C for AIX Compiler uses -M and outputs the dependencies
# in a .u file. In older versions, this file always lives in the
# current directory. Also, the AIX compiler puts '$object:' at the
# start of each line; $object doesn't have directory information.
# Version 6 uses the directory in both cases.
dir=`echo "$object" | sed -e 's|/[^/]*$|/|'`
test "x$dir" = "x$object" && dir=
base=`echo "$object" | sed -e 's|^.*/||' -e 's/\.o$//' -e 's/\.lo$//'`
if test "$libtool" = yes; then
tmpdepfile1=$dir$base.u
tmpdepfile2=$base.u
tmpdepfile3=$dir.libs/$base.u
"$@" -Wc,-M
else
tmpdepfile1=$dir$base.u
tmpdepfile2=$dir$base.u
tmpdepfile3=$dir$base.u
"$@" -M
fi
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile1" "$tmpdepfile2" "$tmpdepfile3"
exit $stat
fi
for tmpdepfile in "$tmpdepfile1" "$tmpdepfile2" "$tmpdepfile3"
do
test -f "$tmpdepfile" && break
done
if test -f "$tmpdepfile"; then
# Each line is of the form 'foo.o: dependent.h'.
# Do two passes, one to just change these to
# '$object: dependent.h' and one to simply 'dependent.h:'.
sed -e "s,^.*\.[a-z]*:,$object:," < "$tmpdepfile" > "$depfile"
sed -e 's,^.*\.[a-z]*:['"$tab"' ]*,,' -e 's,$,:,' < "$tmpdepfile" >> "$depfile"
else
# The sourcefile does not contain any dependencies, so just
# store a dummy comment line, to avoid errors with the Makefile
# "include basename.Plo" scheme.
echo "#dummy" > "$depfile"
fi
rm -f "$tmpdepfile"
;;
icc)
# Intel's C compiler anf tcc (Tiny C Compiler) understand '-MD -MF file'.
# However on
# $CC -MD -MF foo.d -c -o sub/foo.o sub/foo.c
# ICC 7.0 will fill foo.d with something like
# foo.o: sub/foo.c
# foo.o: sub/foo.h
# which is wrong. We want
# sub/foo.o: sub/foo.c
# sub/foo.o: sub/foo.h
# sub/foo.c:
# sub/foo.h:
# ICC 7.1 will output
# foo.o: sub/foo.c sub/foo.h
# and will wrap long lines using '\':
# foo.o: sub/foo.c ... \
# sub/foo.h ... \
# ...
# tcc 0.9.26 (FIXME still under development at the moment of writing)
# will emit a similar output, but also prepend the continuation lines
# with horizontal tabulation characters.
"$@" -MD -MF "$tmpdepfile"
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
rm -f "$depfile"
# Each line is of the form 'foo.o: dependent.h',
# or 'foo.o: dep1.h dep2.h \', or ' dep3.h dep4.h \'.
# Do two passes, one to just change these to
# '$object: dependent.h' and one to simply 'dependent.h:'.
sed -e "s/^[ $tab][ $tab]*/ /" -e "s,^[^:]*:,$object :," \
< "$tmpdepfile" > "$depfile"
sed '
s/[ '"$tab"'][ '"$tab"']*/ /g
s/^ *//
s/ *\\*$//
s/^[^:]*: *//
/^$/d
/:$/d
s/$/ :/
' < "$tmpdepfile" >> "$depfile"
rm -f "$tmpdepfile"
;;
hp2)
# The "hp" stanza above does not work with aCC (C++) and HP's ia64
# compilers, which have integrated preprocessors. The correct option
# to use with these is +Maked; it writes dependencies to a file named
# 'foo.d', which lands next to the object file, wherever that
# happens to be.
# Much of this is similar to the tru64 case; see comments there.
dir=`echo "$object" | sed -e 's|/[^/]*$|/|'`
test "x$dir" = "x$object" && dir=
base=`echo "$object" | sed -e 's|^.*/||' -e 's/\.o$//' -e 's/\.lo$//'`
if test "$libtool" = yes; then
tmpdepfile1=$dir$base.d
tmpdepfile2=$dir.libs/$base.d
"$@" -Wc,+Maked
else
tmpdepfile1=$dir$base.d
tmpdepfile2=$dir$base.d
"$@" +Maked
fi
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile1" "$tmpdepfile2"
exit $stat
fi
for tmpdepfile in "$tmpdepfile1" "$tmpdepfile2"
do
test -f "$tmpdepfile" && break
done
if test -f "$tmpdepfile"; then
sed -e "s,^.*\.[a-z]*:,$object:," "$tmpdepfile" > "$depfile"
# Add 'dependent.h:' lines.
sed -ne '2,${
s/^ *//
s/ \\*$//
s/$/:/
p
}' "$tmpdepfile" >> "$depfile"
else
echo "#dummy" > "$depfile"
fi
rm -f "$tmpdepfile" "$tmpdepfile2"
;;
tru64)
# The Tru64 compiler uses -MD to generate dependencies as a side
# effect. 'cc -MD -o foo.o ...' puts the dependencies into 'foo.o.d'.
# At least on Alpha/Redhat 6.1, Compaq CCC V6.2-504 seems to put
# dependencies in 'foo.d' instead, so we check for that too.
# Subdirectories are respected.
dir=`echo "$object" | sed -e 's|/[^/]*$|/|'`
test "x$dir" = "x$object" && dir=
base=`echo "$object" | sed -e 's|^.*/||' -e 's/\.o$//' -e 's/\.lo$//'`
if test "$libtool" = yes; then
# With Tru64 cc, shared objects can also be used to make a
# static library. This mechanism is used in libtool 1.4 series to
# handle both shared and static libraries in a single compilation.
# With libtool 1.4, dependencies were output in $dir.libs/$base.lo.d.
#
# With libtool 1.5 this exception was removed, and libtool now
# generates 2 separate objects for the 2 libraries. These two
# compilations output dependencies in $dir.libs/$base.o.d and
# in $dir$base.o.d. We have to check for both files, because
# one of the two compilations can be disabled. We should prefer
# $dir$base.o.d over $dir.libs/$base.o.d because the latter is
# automatically cleaned when .libs/ is deleted, while ignoring
# the former would cause a distcleancheck panic.
tmpdepfile1=$dir.libs/$base.lo.d # libtool 1.4
tmpdepfile2=$dir$base.o.d # libtool 1.5
tmpdepfile3=$dir.libs/$base.o.d # libtool 1.5
tmpdepfile4=$dir.libs/$base.d # Compaq CCC V6.2-504
"$@" -Wc,-MD
else
tmpdepfile1=$dir$base.o.d
tmpdepfile2=$dir$base.d
tmpdepfile3=$dir$base.d
tmpdepfile4=$dir$base.d
"$@" -MD
fi
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile1" "$tmpdepfile2" "$tmpdepfile3" "$tmpdepfile4"
exit $stat
fi
for tmpdepfile in "$tmpdepfile1" "$tmpdepfile2" "$tmpdepfile3" "$tmpdepfile4"
do
test -f "$tmpdepfile" && break
done
if test -f "$tmpdepfile"; then
sed -e "s,^.*\.[a-z]*:,$object:," < "$tmpdepfile" > "$depfile"
sed -e 's,^.*\.[a-z]*:['"$tab"' ]*,,' -e 's,$,:,' < "$tmpdepfile" >> "$depfile"
else
echo "#dummy" > "$depfile"
fi
rm -f "$tmpdepfile"
;;
msvc7)
if test "$libtool" = yes; then
showIncludes=-Wc,-showIncludes
else
showIncludes=-showIncludes
fi
"$@" $showIncludes > "$tmpdepfile"
stat=$?
grep -v '^Note: including file: ' "$tmpdepfile"
if test "$stat" = 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
rm -f "$depfile"
echo "$object : \\" > "$depfile"
# The first sed program below extracts the file names and escapes
# backslashes for cygpath. The second sed program outputs the file
# name when reading, but also accumulates all include files in the
# hold buffer in order to output them again at the end. This only
# works with sed implementations that can handle large buffers.
sed < "$tmpdepfile" -n '
/^Note: including file: *\(.*\)/ {
s//\1/
s/\\/\\\\/g
p
}' | $cygpath_u | sort -u | sed -n '
s/ /\\ /g
s/\(.*\)/'"$tab"'\1 \\/p
s/.\(.*\) \\/\1:/
H
$ {
s/.*/'"$tab"'/
G
p
}' >> "$depfile"
rm -f "$tmpdepfile"
;;
msvc7msys)
# This case exists only to let depend.m4 do its work. It works by
# looking at the text of this script. This case will never be run,
# since it is checked for above.
exit 1
;;
#nosideeffect)
# This comment above is used by automake to tell side-effect
# dependency tracking mechanisms from slower ones.
dashmstdout)
# Important note: in order to support this mode, a compiler *must*
# always write the preprocessed file to stdout, regardless of -o.
"$@" || exit $?
# Remove the call to Libtool.
if test "$libtool" = yes; then
while test "X$1" != 'X--mode=compile'; do
shift
done
shift
fi
# Remove '-o $object'.
IFS=" "
for arg
do
case $arg in
-o)
shift
;;
$object)
shift
;;
*)
set fnord "$@" "$arg"
shift # fnord
shift # $arg
;;
esac
done
test -z "$dashmflag" && dashmflag=-M
# Require at least two characters before searching for ':'
# in the target name. This is to cope with DOS-style filenames:
# a dependency such as 'c:/foo/bar' could be seen as target 'c' otherwise.
"$@" $dashmflag |
sed 's:^['"$tab"' ]*[^:'"$tab"' ][^:][^:]*\:['"$tab"' ]*:'"$object"'\: :' > "$tmpdepfile"
rm -f "$depfile"
cat < "$tmpdepfile" > "$depfile"
tr ' ' "$nl" < "$tmpdepfile" | \
## Some versions of the HPUX 10.20 sed can't process this invocation
## correctly. Breaking it into two sed invocations is a workaround.
sed -e 's/^\\$//' -e '/^$/d' -e '/:$/d' | sed -e 's/$/ :/' >> "$depfile"
rm -f "$tmpdepfile"
;;
dashXmstdout)
# This case only exists to satisfy depend.m4. It is never actually
# run, as this mode is specially recognized in the preamble.
exit 1
;;
makedepend)
"$@" || exit $?
# Remove any Libtool call
if test "$libtool" = yes; then
while test "X$1" != 'X--mode=compile'; do
shift
done
shift
fi
# X makedepend
shift
cleared=no eat=no
for arg
do
case $cleared in
no)
set ""; shift
cleared=yes ;;
esac
if test $eat = yes; then
eat=no
continue
fi
case "$arg" in
-D*|-I*)
set fnord "$@" "$arg"; shift ;;
# Strip any option that makedepend may not understand. Remove
# the object too, otherwise makedepend will parse it as a source file.
-arch)
eat=yes ;;
-*|$object)
;;
*)
set fnord "$@" "$arg"; shift ;;
esac
done
obj_suffix=`echo "$object" | sed 's/^.*\././'`
touch "$tmpdepfile"
${MAKEDEPEND-makedepend} -o"$obj_suffix" -f"$tmpdepfile" "$@"
rm -f "$depfile"
# makedepend may prepend the VPATH from the source file name to the object.
# No need to regex-escape $object, excess matching of '.' is harmless.
sed "s|^.*\($object *:\)|\1|" "$tmpdepfile" > "$depfile"
sed '1,2d' "$tmpdepfile" | tr ' ' "$nl" | \
## Some versions of the HPUX 10.20 sed can't process this invocation
## correctly. Breaking it into two sed invocations is a workaround.
sed -e 's/^\\$//' -e '/^$/d' -e '/:$/d' | sed -e 's/$/ :/' >> "$depfile"
rm -f "$tmpdepfile" "$tmpdepfile".bak
;;
cpp)
# Important note: in order to support this mode, a compiler *must*
# always write the preprocessed file to stdout.
"$@" || exit $?
# Remove the call to Libtool.
if test "$libtool" = yes; then
while test "X$1" != 'X--mode=compile'; do
shift
done
shift
fi
# Remove '-o $object'.
IFS=" "
for arg
do
case $arg in
-o)
shift
;;
$object)
shift
;;
*)
set fnord "$@" "$arg"
shift # fnord
shift # $arg
;;
esac
done
"$@" -E |
sed -n -e '/^# [0-9][0-9]* "\([^"]*\)".*/ s:: \1 \\:p' \
-e '/^#line [0-9][0-9]* "\([^"]*\)".*/ s:: \1 \\:p' |
sed '$ s: \\$::' > "$tmpdepfile"
rm -f "$depfile"
echo "$object : \\" > "$depfile"
cat < "$tmpdepfile" >> "$depfile"
sed < "$tmpdepfile" '/^$/d;s/^ //;s/ \\$//;s/$/ :/' >> "$depfile"
rm -f "$tmpdepfile"
;;
msvisualcpp)
# Important note: in order to support this mode, a compiler *must*
# always write the preprocessed file to stdout.
"$@" || exit $?
# Remove the call to Libtool.
if test "$libtool" = yes; then
while test "X$1" != 'X--mode=compile'; do
shift
done
shift
fi
IFS=" "
for arg
do
case "$arg" in
-o)
shift
;;
$object)
shift
;;
"-Gm"|"/Gm"|"-Gi"|"/Gi"|"-ZI"|"/ZI")
set fnord "$@"
shift
shift
;;
*)
set fnord "$@" "$arg"
shift
shift
;;
esac
done
"$@" -E 2>/dev/null |
sed -n '/^#line [0-9][0-9]* "\([^"]*\)"/ s::\1:p' | $cygpath_u | sort -u > "$tmpdepfile"
rm -f "$depfile"
echo "$object : \\" > "$depfile"
sed < "$tmpdepfile" -n -e 's% %\\ %g' -e '/^\(.*\)$/ s::'"$tab"'\1 \\:p' >> "$depfile"
echo "$tab" >> "$depfile"
sed < "$tmpdepfile" -n -e 's% %\\ %g' -e '/^\(.*\)$/ s::\1\::p' >> "$depfile"
rm -f "$tmpdepfile"
;;
msvcmsys)
# This case exists only to let depend.m4 do its work. It works by
# looking at the text of this script. This case will never be run,
# since it is checked for above.
exit 1
;;
none)
exec "$@"
;;
*)
echo "Unknown depmode $depmode" 1>&2
exit 1
;;
esac
exit 0
# Local Variables:
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# sh-indentation: 2
# eval: (add-hook 'write-file-hooks 'time-stamp)
# time-stamp-start: "scriptversion="
# time-stamp-format: "%:y-%02m-%02d.%02H"
# time-stamp-time-zone: "UTC"
# time-stamp-end: "; # UTC"
# End:
+20
View File
@@ -0,0 +1,20 @@
EXTRA_DIST = conf.py apiref.rst changes.rst conformance.rst \
gettingstarted.rst github_commits.c index.rst portability.rst \
tutorial.rst upgrading.rst ext/refcounting.py
SPHINXBUILD = sphinx-build
SPHINXOPTS = -d _build/doctrees $(SPHINXOPTS_EXTRA)
html-local:
$(SPHINXBUILD) -b html $(SPHINXOPTS) $(srcdir) _build/html
install-html-local: html
mkdir -p $(DESTDIR)$(htmldir)
cp -r _build/html $(DESTDIR)$(htmldir)
uninstall-local:
rm -rf $(DESTDIR)$(htmldir)
clean-local:
rm -rf _build
rm -f ext/refcounting.pyc
+401
View File
@@ -0,0 +1,401 @@
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tutorial.rst upgrading.rst ext/refcounting.py
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-e "s|^$$topsrcdirstrip/|$(top_builddir)/|;t"`; \
case $$dist_files in \
*/*) $(MKDIR_P) `echo "$$dist_files" | \
sed '/\//!d;s|^|$(distdir)/|;s,/[^/]*$$,,' | \
sort -u` ;; \
esac; \
for file in $$dist_files; do \
if test -f $$file || test -d $$file; then d=.; else d=$(srcdir); fi; \
if test -d $$d/$$file; then \
dir=`echo "/$$file" | sed -e 's,/[^/]*$$,,'`; \
if test -d "$(distdir)/$$file"; then \
find "$(distdir)/$$file" -type d ! -perm -700 -exec chmod u+rwx {} \;; \
fi; \
if test -d $(srcdir)/$$file && test $$d != $(srcdir); then \
cp -fpR $(srcdir)/$$file "$(distdir)$$dir" || exit 1; \
find "$(distdir)/$$file" -type d ! -perm -700 -exec chmod u+rwx {} \;; \
fi; \
cp -fpR $$d/$$file "$(distdir)$$dir" || exit 1; \
else \
test -f "$(distdir)/$$file" \
|| cp -p $$d/$$file "$(distdir)/$$file" \
|| exit 1; \
fi; \
done
check-am: all-am
check: check-am
all-am: Makefile
installdirs:
install: install-am
install-exec: install-exec-am
install-data: install-data-am
uninstall: uninstall-am
install-am: all-am
@$(MAKE) $(AM_MAKEFLAGS) install-exec-am install-data-am
installcheck: installcheck-am
install-strip:
if test -z '$(STRIP)'; then \
$(MAKE) $(AM_MAKEFLAGS) INSTALL_PROGRAM="$(INSTALL_STRIP_PROGRAM)" \
install_sh_PROGRAM="$(INSTALL_STRIP_PROGRAM)" INSTALL_STRIP_FLAG=-s \
install; \
else \
$(MAKE) $(AM_MAKEFLAGS) INSTALL_PROGRAM="$(INSTALL_STRIP_PROGRAM)" \
install_sh_PROGRAM="$(INSTALL_STRIP_PROGRAM)" INSTALL_STRIP_FLAG=-s \
"INSTALL_PROGRAM_ENV=STRIPPROG='$(STRIP)'" install; \
fi
mostlyclean-generic:
clean-generic:
distclean-generic:
-test -z "$(CONFIG_CLEAN_FILES)" || rm -f $(CONFIG_CLEAN_FILES)
-test . = "$(srcdir)" || test -z "$(CONFIG_CLEAN_VPATH_FILES)" || rm -f $(CONFIG_CLEAN_VPATH_FILES)
maintainer-clean-generic:
@echo "This command is intended for maintainers to use"
@echo "it deletes files that may require special tools to rebuild."
clean: clean-am
clean-am: clean-generic clean-libtool clean-local mostlyclean-am
distclean: distclean-am
-rm -f Makefile
distclean-am: clean-am distclean-generic
dvi: dvi-am
dvi-am:
html: html-am
html-am: html-local
info: info-am
info-am:
install-data-am:
install-dvi: install-dvi-am
install-dvi-am:
install-exec-am:
install-html: install-html-am
install-html-am: install-html-local
install-info: install-info-am
install-info-am:
install-man:
install-pdf: install-pdf-am
install-pdf-am:
install-ps: install-ps-am
install-ps-am:
installcheck-am:
maintainer-clean: maintainer-clean-am
-rm -f Makefile
maintainer-clean-am: distclean-am maintainer-clean-generic
mostlyclean: mostlyclean-am
mostlyclean-am: mostlyclean-generic mostlyclean-libtool
pdf: pdf-am
pdf-am:
ps: ps-am
ps-am:
uninstall-am: uninstall-local
.MAKE: install-am install-strip
.PHONY: all all-am check check-am clean clean-generic clean-libtool \
clean-local distclean distclean-generic distclean-libtool \
distdir dvi dvi-am html html-am html-local info info-am \
install install-am install-data install-data-am install-dvi \
install-dvi-am install-exec install-exec-am install-html \
install-html-am install-html-local install-info \
install-info-am install-man install-pdf install-pdf-am \
install-ps install-ps-am install-strip installcheck \
installcheck-am installdirs maintainer-clean \
maintainer-clean-generic mostlyclean mostlyclean-generic \
mostlyclean-libtool pdf pdf-am ps ps-am uninstall uninstall-am \
uninstall-local
html-local:
$(SPHINXBUILD) -b html $(SPHINXOPTS) $(srcdir) _build/html
install-html-local: html
mkdir -p $(DESTDIR)$(htmldir)
cp -r _build/html $(DESTDIR)$(htmldir)
uninstall-local:
rm -rf $(DESTDIR)$(htmldir)
clean-local:
rm -rf _build
rm -f ext/refcounting.pyc
# Tell versions [3.59,3.63) of GNU make to not export all variables.
# Otherwise a system limit (for SysV at least) may be exceeded.
.NOEXPORT:
+5
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@@ -0,0 +1,5 @@
To build the documentation, invoke
make html
Then point your browser to _build/html/index.html.
File diff suppressed because it is too large Load Diff
+5
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@@ -0,0 +1,5 @@
******************
Changes in Jansson
******************
.. include:: ../CHANGES
+217
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@@ -0,0 +1,217 @@
# -*- coding: utf-8 -*-
#
# Jansson documentation build configuration file, created by
# sphinx-quickstart on Sun Sep 5 21:47:20 2010.
#
# This file is execfile()d with the current directory set to its containing dir.
#
# Note that not all possible configuration values are present in this
# autogenerated file.
#
# All configuration values have a default; values that are commented out
# serve to show the default.
import sys, os
# If extensions (or modules to document with autodoc) are in another directory,
# add these directories to sys.path here. If the directory is relative to the
# documentation root, use os.path.abspath to make it absolute, like shown here.
sys.path.insert(0, os.path.abspath('ext'))
# -- General configuration -----------------------------------------------------
# If your documentation needs a minimal Sphinx version, state it here.
needs_sphinx = '1.0'
# Add any Sphinx extension module names here, as strings. They can be extensions
# coming with Sphinx (named 'sphinx.ext.*') or your custom ones.
extensions = ['refcounting']
# Add any paths that contain templates here, relative to this directory.
templates_path = ['_templates']
# The suffix of source filenames.
source_suffix = '.rst'
# The encoding of source files.
#source_encoding = 'utf-8-sig'
# The master toctree document.
master_doc = 'index'
# General information about the project.
project = u'Jansson'
copyright = u'2009-2013, Petri Lehtinen'
# The version info for the project you're documenting, acts as replacement for
# |version| and |release|, also used in various other places throughout the
# built documents.
#
# The short X.Y version.
version = '2.6'
# The full version, including alpha/beta/rc tags.
release = version
# The language for content autogenerated by Sphinx. Refer to documentation
# for a list of supported languages.
#language = None
# There are two options for replacing |today|: either, you set today to some
# non-false value, then it is used:
#today = ''
# Else, today_fmt is used as the format for a strftime call.
#today_fmt = '%B %d, %Y'
# List of patterns, relative to source directory, that match files and
# directories to ignore when looking for source files.
exclude_patterns = ['_build']
# The reST default role (used for this markup: `text`) to use for all documents.
default_role = 'c:func'
primary_domain = 'c'
# If true, '()' will be appended to :func: etc. cross-reference text.
#add_function_parentheses = True
# If true, the current module name will be prepended to all description
# unit titles (such as .. function::).
#add_module_names = True
# If true, sectionauthor and moduleauthor directives will be shown in the
# output. They are ignored by default.
#show_authors = False
# The name of the Pygments (syntax highlighting) style to use.
pygments_style = 'sphinx'
# A list of ignored prefixes for module index sorting.
#modindex_common_prefix = []
# -- Options for HTML output ---------------------------------------------------
# The theme to use for HTML and HTML Help pages. See the documentation for
# a list of builtin themes.
#html_theme = 'default'
# Theme options are theme-specific and customize the look and feel of a theme
# further. For a list of options available for each theme, see the
# documentation.
#html_theme_options = {}
# Add any paths that contain custom themes here, relative to this directory.
#html_theme_path = []
# The name for this set of Sphinx documents. If None, it defaults to
# "<project> v<release> documentation".
#html_title = None
# A shorter title for the navigation bar. Default is the same as html_title.
#html_short_title = None
# The name of an image file (relative to this directory) to place at the top
# of the sidebar.
#html_logo = None
# The name of an image file (within the static path) to use as favicon of the
# docs. This file should be a Windows icon file (.ico) being 16x16 or 32x32
# pixels large.
#html_favicon = None
# Add any paths that contain custom static files (such as style sheets) here,
# relative to this directory. They are copied after the builtin static files,
# so a file named "default.css" will overwrite the builtin "default.css".
#html_static_path = ['_static']
# If not '', a 'Last updated on:' timestamp is inserted at every page bottom,
# using the given strftime format.
#html_last_updated_fmt = '%b %d, %Y'
# If true, SmartyPants will be used to convert quotes and dashes to
# typographically correct entities.
#html_use_smartypants = True
# Custom sidebar templates, maps document names to template names.
#html_sidebars = {}
# Additional templates that should be rendered to pages, maps page names to
# template names.
#html_additional_pages = {}
# If false, no module index is generated.
#html_domain_indices = True
# If false, no index is generated.
#html_use_index = True
# If true, the index is split into individual pages for each letter.
#html_split_index = False
# If true, links to the reST sources are added to the pages.
#html_show_sourcelink = True
# If true, "Created using Sphinx" is shown in the HTML footer. Default is True.
#html_show_sphinx = True
# If true, "(C) Copyright ..." is shown in the HTML footer. Default is True.
#html_show_copyright = True
# If true, an OpenSearch description file will be output, and all pages will
# contain a <link> tag referring to it. The value of this option must be the
# base URL from which the finished HTML is served.
#html_use_opensearch = ''
# This is the file name suffix for HTML files (e.g. ".xhtml").
#html_file_suffix = None
# Output file base name for HTML help builder.
htmlhelp_basename = 'Janssondoc'
# -- Options for LaTeX output --------------------------------------------------
# The paper size ('letter' or 'a4').
#latex_paper_size = 'letter'
# The font size ('10pt', '11pt' or '12pt').
#latex_font_size = '10pt'
# Grouping the document tree into LaTeX files. List of tuples
# (source start file, target name, title, author, documentclass [howto/manual]).
latex_documents = [
('index', 'Jansson.tex', u'Jansson Documentation',
u'Petri Lehtinen', 'manual'),
]
# The name of an image file (relative to this directory) to place at the top of
# the title page.
#latex_logo = None
# For "manual" documents, if this is true, then toplevel headings are parts,
# not chapters.
#latex_use_parts = False
# If true, show page references after internal links.
#latex_show_pagerefs = False
# If true, show URL addresses after external links.
#latex_show_urls = False
# Additional stuff for the LaTeX preamble.
#latex_preamble = ''
# Documents to append as an appendix to all manuals.
#latex_appendices = []
# If false, no module index is generated.
#latex_domain_indices = True
# -- Options for manual page output --------------------------------------------
# One entry per manual page. List of tuples
# (source start file, name, description, authors, manual section).
man_pages = [
('index', 'jansson', u'Jansson Documentation',
[u'Petri Lehtinen'], 1)
]
+114
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@@ -0,0 +1,114 @@
.. _rfc-conformance:
***************
RFC Conformance
***************
JSON is specified in :rfc:`4627`, *"The application/json Media Type
for JavaScript Object Notation (JSON)"*.
Character Encoding
==================
Jansson only supports UTF-8 encoded JSON texts. It does not support or
auto-detect any of the other encodings mentioned in the RFC, namely
UTF-16LE, UTF-16BE, UTF-32LE or UTF-32BE. Pure ASCII is supported, as
it's a subset of UTF-8.
Strings
=======
JSON strings are mapped to C-style null-terminated character arrays,
and UTF-8 encoding is used internally. Strings may not contain
embedded null characters, not even escaped ones.
For example, trying to decode the following JSON text leads to a parse
error::
["this string contains the null character: \u0000"]
All other Unicode codepoints U+0001 through U+10FFFF are allowed.
Unicode normalization or any other transformation is never performed
on any strings (string values or object keys). When checking for
equivalence of strings or object keys, the comparison is performed
byte by byte between the original UTF-8 representations of the
strings.
Numbers
=======
.. _real-vs-integer:
Real vs. Integer
----------------
JSON makes no distinction between real and integer numbers; Jansson
does. Real numbers are mapped to the ``double`` type and integers to
the ``json_int_t`` type, which is a typedef of ``long long`` or
``long``, depending on whether ``long long`` is supported by your
compiler or not.
A JSON number is considered to be a real number if its lexical
representation includes one of ``e``, ``E``, or ``.``; regardless if
its actual numeric value is a true integer (e.g., all of ``1E6``,
``3.0``, ``400E-2``, and ``3.14E3`` are mathematical integers, but
will be treated as real values). With the ``JSON_DECODE_INT_AS_REAL``
decoder flag set all numbers are interpreted as real.
All other JSON numbers are considered integers.
When encoding to JSON, real values are always represented
with a fractional part; e.g., the ``double`` value 3.0 will be
represented in JSON as ``3.0``, not ``3``.
Overflow, Underflow & Precision
-------------------------------
Real numbers whose absolute values are too small to be represented in
a C ``double`` will be silently estimated with 0.0. Thus, depending on
platform, JSON numbers very close to zero such as 1E-999 may result in
0.0.
Real numbers whose absolute values are too large to be represented in
a C ``double`` will result in an overflow error (a JSON decoding
error). Thus, depending on platform, JSON numbers like 1E+999 or
-1E+999 may result in a parsing error.
Likewise, integer numbers whose absolute values are too large to be
represented in the ``json_int_t`` type (see above) will result in an
overflow error (a JSON decoding error). Thus, depending on platform,
JSON numbers like 1000000000000000 may result in parsing error.
Parsing JSON real numbers may result in a loss of precision. As long
as overflow does not occur (i.e. a total loss of precision), the
rounded approximate value is silently used. Thus the JSON number
1.000000000000000005 may, depending on platform, result in the
``double`` value 1.0.
Signed zeros
------------
JSON makes no statement about what a number means; however Javascript
(ECMAscript) does state that +0.0 and -0.0 must be treated as being
distinct values, i.e. -0.0 |not-equal| 0.0. Jansson relies on the
underlying floating point library in the C environment in which it is
compiled. Therefore it is platform-dependent whether 0.0 and -0.0 will
be distinct values. Most platforms that use the IEEE 754
floating-point standard will support signed zeros.
Note that this only applies to floating-point; neither JSON, C, or
IEEE support the concept of signed integer zeros.
.. |not-equal| unicode:: U+2260
Types
-----
No support is provided in Jansson for any C numeric types other than
``json_int_t`` and ``double``. This excludes things such as unsigned
types, ``long double``, etc. Obviously, shorter types like ``short``,
``int``, ``long`` (if ``json_int_t`` is ``long long``) and ``float``
are implicitly handled via the ordinary C type coercion rules (subject
to overflow semantics). Also, no support or hooks are provided for any
supplemental "bignum" type add-on packages.
+59
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@@ -0,0 +1,59 @@
"""
refcounting
~~~~~~~~~~~
Reference count annotations for C API functions. Has the same
result as the sphinx.ext.refcounting extension but works for all
functions regardless of the signature, and the reference counting
information is written inline with the documentation instead of a
separate file.
Adds a new directive "refcounting". The directive has no content
and one required positional parameter:: "new" or "borrow".
Example:
.. cfunction:: json_t *json_object(void)
.. refcounting:: new
<description of the json_object function>
:copyright: Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
:license: MIT, see LICENSE for details.
"""
from docutils import nodes
class refcounting(nodes.emphasis): pass
def visit(self, node):
self.visit_emphasis(node)
def depart(self, node):
self.depart_emphasis(node)
def html_visit(self, node):
self.body.append(self.starttag(node, 'em', '', CLASS='refcount'))
def html_depart(self, node):
self.body.append('</em>')
def refcounting_directive(name, arguments, options, content, lineno,
content_offset, block_text, state, state_machine):
if arguments[0] == 'borrow':
text = 'Return value: Borrowed reference.'
elif arguments[0] == 'new':
text = 'Return value: New reference.'
else:
raise Error('Valid arguments: new, borrow')
return [refcounting(text, text)]
def setup(app):
app.add_node(refcounting,
html=(html_visit, html_depart),
latex=(visit, depart),
text=(visit, depart))
app.add_directive('refcounting', refcounting_directive, 0, (1, 0, 0))
+237
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@@ -0,0 +1,237 @@
***************
Getting Started
***************
.. highlight:: c
Compiling and Installing Jansson
================================
The Jansson source is available at
http://www.digip.org/jansson/releases/.
Unix-like systems (including MinGW)
-----------------------------------
Unpack the source tarball and change to the source directory:
.. parsed-literal::
bunzip2 -c jansson-|release|.tar.bz2 | tar xf -
cd jansson-|release|
The source uses GNU Autotools (autoconf_, automake_, libtool_), so
compiling and installing is extremely simple::
./configure
make
make check
make install
To change the destination directory (``/usr/local`` by default), use
the ``--prefix=DIR`` argument to ``./configure``. See ``./configure
--help`` for the list of all possible installation options. (There are
no options to customize the resulting Jansson binary.)
The command ``make check`` runs the test suite distributed with
Jansson. This step is not strictly necessary, but it may find possible
problems that Jansson has on your platform. If any problems are found,
please report them.
If you obtained the source from a Git repository (or any other source
control system), there's no ``./configure`` script as it's not kept in
version control. To create the script, the build system needs to be
bootstrapped. There are many ways to do this, but the easiest one is
to use ``autoreconf``::
autoreconf -vi
This command creates the ``./configure`` script, which can then be
used as described above.
.. _autoconf: http://www.gnu.org/software/autoconf/
.. _automake: http://www.gnu.org/software/automake/
.. _libtool: http://www.gnu.org/software/libtool/
.. _build-cmake:
CMake (various platforms, including Windows)
--------------------------------------------
Jansson can be built using CMake_. Create a build directory for an
out-of-tree build, change to that directory, and run ``cmake`` (or ``ccmake``,
``cmake-gui``, or similar) to configure the project.
See the examples below for more detailed information.
.. note:: In the below examples ``..`` is used as an argument for ``cmake``.
This is simply the path to the jansson project root directory.
In the example it is assumed you've created a sub-directory ``build``
and are using that. You could use any path you want.
.. _build-cmake-unix:
Unix (Make files)
^^^^^^^^^^^^^^^^^
Generating make files on unix:
.. parsed-literal::
bunzip2 -c jansson-|release|.tar.bz2 | tar xf -
cd jansson-|release|
mkdir build
cd build
cmake .. # or `ccmake ..` for a GUI.
Then to build::
make
make check
make install
Windows (Visual Studio)
^^^^^^^^^^^^^^^^^^^^^^^
Creating Visual Studio project files from the command line:
.. parsed-literal::
<unpack>
cd jansson-|release|
md build
cd build
cmake -G "Visual Studio 10" ..
You will now have a *Visual Studio Solution* in your build directory.
To run the unit tests build the ``RUN_TESTS`` project.
If you prefer a GUI the ``cmake`` line in the above example can
be replaced with::
cmake-gui ..
For command line help (including a list of available generators)
for CMake_ simply run::
cmake
To list available CMake_ settings (and what they are currently set to)
for the project, run::
cmake -LH ..
Mac OSX (Xcode)
^^^^^^^^^^^^^^^
If you prefer using Xcode instead of make files on OSX,
do the following. (Use the same steps as
for :ref:`Unix <build-cmake-unix>`)::
...
cmake -G "Xcode" ..
Additional CMake settings
^^^^^^^^^^^^^^^^^^^^^^^^^
Shared library
""""""""""""""
By default the CMake_ project will generate build files for building the
static library. To build the shared version use::
...
cmake -DBUILD_SHARED=1 ..
Changing install directory (same as autoconf --prefix)
""""""""""""""""""""""""""""""""""""""""""""""""""""""
Just as with the autoconf_ project you can change the destination directory
for ``make install``. The equivalent for autoconfs ``./configure --prefix``
in CMake_ is::
...
cmake -DCMAKE_INSTALL_PREFIX:PATH=/some/other/path ..
make install
.. _CMake: http://www.cmake.org
Android
-------
Jansson can be built for Android platforms. Android.mk is in the
source root directory. The configuration header file is located in the
``android`` directory in the source distribution.
Windows
-------
**This method is deprecated**. Using :ref:`CMake <build-cmake>` is now
preferred.
Jansson can be built with Visual Studio 2010 (and probably newer
versions, too). The solution and project files are in the
``win32/vs2010/`` directory in the source distribution.
Other Systems
-------------
On non Unix-like systems, you may be unable to run the ``./configure``
script. In this case, follow these steps. All the files mentioned can
be found in the ``src/`` directory.
1. Create ``jansson_config.h`` (which has some platform-specific
parameters that are normally filled in by the ``./configure``
script). Edit ``jansson_config.h.in``, replacing all ``@variable@``
placeholders, and rename the file to ``jansson_config.h``.
2. Make ``jansson.h`` and ``jansson_config.h`` available to the
compiler, so that they can be found when compiling programs that
use Jansson.
3. Compile all the ``.c`` files (in the ``src/`` directory) into a
library file. Make the library available to the compiler, as in
step 2.
Building the Documentation
--------------------------
(This subsection describes how to build the HTML documentation you are
currently reading, so it can be safely skipped.)
Documentation is in the ``doc/`` subdirectory. It's written in
reStructuredText_ with Sphinx_ annotations. To generate the HTML
documentation, invoke::
make html
and point your browser to ``doc/_build/html/index.html``. Sphinx_ 1.0
or newer is required to generate the documentation.
.. _reStructuredText: http://docutils.sourceforge.net/rst.html
.. _Sphinx: http://sphinx.pocoo.org/
Compiling Programs that Use Jansson
===================================
Jansson involves one C header file, :file:`jansson.h`, so it's enough
to put the line
::
#include <jansson.h>
in the beginning of every source file that uses Jansson.
There's also just one library to link with, ``libjansson``. Compile and
link the program as follows::
cc -o prog prog.c -ljansson
Starting from version 1.2, there's also support for pkg-config_::
cc -o prog prog.c `pkg-config --cflags --libs jansson`
.. _pkg-config: http://pkg-config.freedesktop.org/
+201
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/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#include <stdlib.h>
#include <string.h>
#include <jansson.h>
#include <curl/curl.h>
#define BUFFER_SIZE (256 * 1024) /* 256 KB */
#define URL_FORMAT "https://api.github.com/repos/%s/%s/commits"
#define URL_SIZE 256
/* Return the offset of the first newline in text or the length of
text if there's no newline */
static int newline_offset(const char *text)
{
const char *newline = strchr(text, '\n');
if(!newline)
return strlen(text);
else
return (int)(newline - text);
}
struct write_result
{
char *data;
int pos;
};
static size_t write_response(void *ptr, size_t size, size_t nmemb, void *stream)
{
struct write_result *result = (struct write_result *)stream;
if(result->pos + size * nmemb >= BUFFER_SIZE - 1)
{
fprintf(stderr, "error: too small buffer\n");
return 0;
}
memcpy(result->data + result->pos, ptr, size * nmemb);
result->pos += size * nmemb;
return size * nmemb;
}
static char *request(const char *url)
{
CURL *curl = NULL;
CURLcode status;
struct curl_slist *headers = NULL;
char *data = NULL;
long code;
curl_global_init(CURL_GLOBAL_ALL);
curl = curl_easy_init();
if(!curl)
goto error;
data = malloc(BUFFER_SIZE);
if(!data)
goto error;
struct write_result write_result = {
.data = data,
.pos = 0
};
curl_easy_setopt(curl, CURLOPT_URL, url);
/* GitHub commits API v3 requires a User-Agent header */
headers = curl_slist_append(headers, "User-Agent: Jansson-Tutorial");
curl_easy_setopt(curl, CURLOPT_HTTPHEADER, headers);
curl_easy_setopt(curl, CURLOPT_WRITEFUNCTION, write_response);
curl_easy_setopt(curl, CURLOPT_WRITEDATA, &write_result);
status = curl_easy_perform(curl);
if(status != 0)
{
fprintf(stderr, "error: unable to request data from %s:\n", url);
fprintf(stderr, "%s\n", curl_easy_strerror(status));
goto error;
}
curl_easy_getinfo(curl, CURLINFO_RESPONSE_CODE, &code);
if(code != 200)
{
fprintf(stderr, "error: server responded with code %ld\n", code);
goto error;
}
curl_easy_cleanup(curl);
curl_slist_free_all(headers);
curl_global_cleanup();
/* zero-terminate the result */
data[write_result.pos] = '\0';
return data;
error:
if(data)
free(data);
if(curl)
curl_easy_cleanup(curl);
if(headers)
curl_slist_free_all(headers);
curl_global_cleanup();
return NULL;
}
int main(int argc, char *argv[])
{
size_t i;
char *text;
char url[URL_SIZE];
json_t *root;
json_error_t error;
if(argc != 3)
{
fprintf(stderr, "usage: %s USER REPOSITORY\n\n", argv[0]);
fprintf(stderr, "List commits at USER's REPOSITORY.\n\n");
return 2;
}
snprintf(url, URL_SIZE, URL_FORMAT, argv[1], argv[2]);
text = request(url);
if(!text)
return 1;
root = json_loads(text, 0, &error);
free(text);
if(!root)
{
fprintf(stderr, "error: on line %d: %s\n", error.line, error.text);
return 1;
}
if(!json_is_array(root))
{
fprintf(stderr, "error: root is not an array\n");
json_decref(root);
return 1;
}
for(i = 0; i < json_array_size(root); i++)
{
json_t *data, *sha, *commit, *message;
const char *message_text;
data = json_array_get(root, i);
if(!json_is_object(data))
{
fprintf(stderr, "error: commit data %d is not an object\n", (int)(i + 1));
json_decref(root);
return 1;
}
sha = json_object_get(data, "sha");
if(!json_is_string(sha))
{
fprintf(stderr, "error: commit %d: sha is not a string\n", (int)(i + 1));
return 1;
}
commit = json_object_get(data, "commit");
if(!json_is_object(commit))
{
fprintf(stderr, "error: commit %d: commit is not an object\n", (int)(i + 1));
json_decref(root);
return 1;
}
message = json_object_get(commit, "message");
if(!json_is_string(message))
{
fprintf(stderr, "error: commit %d: message is not a string\n", (int)(i + 1));
json_decref(root);
return 1;
}
message_text = json_string_value(message);
printf("%.8s %.*s\n",
json_string_value(sha),
newline_offset(message_text),
message_text);
}
json_decref(root);
return 0;
}
+53
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Jansson Documentation
=====================
This is the documentation for Jansson_ |release|, last updated |today|.
Introduction
------------
Jansson_ is a C library for encoding, decoding and manipulating JSON
data. Its main features and design principles are:
- Simple and intuitive API and data model
- Comprehensive documentation
- No dependencies on other libraries
- Full Unicode support (UTF-8)
- Extensive test suite
Jansson is licensed under the `MIT license`_; see LICENSE in the
source distribution for details.
Jansson is used in production and its API is stable. It works on
numerous platforms, including numerous Unix like systems and Windows.
It's suitable for use on any system, including desktop, server, and
small embedded systems.
.. _`MIT license`: http://www.opensource.org/licenses/mit-license.php
.. _Jansson: http://www.digip.org/jansson/
Contents
--------
.. toctree::
:maxdepth: 2
gettingstarted
upgrading
tutorial
conformance
portability
apiref
changes
Indices and Tables
==================
* :ref:`genindex`
* :ref:`search`
+83
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***********
Portability
***********
.. _portability-thread-safety:
Thread safety
-------------
Jansson is thread safe and has no mutable global state. The only
exceptions are the hash function seed and memory allocation functions,
see below.
There's no locking performed inside Jansson's code, so a multithreaded
program must perform its own locking if JSON values are shared by
multiple threads. Jansson's reference counting semantics may make this
a bit harder than it seems, as it's possible to have a reference to a
value that's also stored inside a list or object. Modifying the
container (adding or removing values) may trigger concurrent access to
such values, as containers manage the reference count of their
contained values. Bugs involving concurrent incrementing or
decrementing of deference counts may be hard to track.
The encoding functions (:func:`json_dumps()` and friends) track
reference loops by modifying the internal state of objects and arrays.
For this reason, encoding functions must not be run on the same JSON
values in two separate threads at the same time. As already noted
above, be especially careful if two arrays or objects share their
contained values with another array or object.
If you want to make sure that two JSON value hierarchies do not
contain shared values, use :func:`json_deep_copy()` to make copies.
Hash function seed
==================
To prevent an attacker from intentionally causing large JSON objects
with specially crafted keys to perform very slow, the hash function
used by Jansson is randomized using a seed value. The seed is
automatically generated on the first explicit or implicit call to
:func:`json_object()`, if :func:`json_object_seed()` has not been
called beforehand.
The seed is generated by using operating system's entropy sources if
they are available (``/dev/urandom``, ``CryptGenRandom()``). The
initialization is done in as thread safe manner as possible, by using
architecture specific lockless operations if provided by the platform
or the compiler.
If you're using threads, it's recommended to autoseed the hashtable
explicitly before spawning any threads by calling
``json_object_seed(0)`` , especially if you're unsure whether the
initialization is thread safe on your platform.
Memory allocation functions
===========================
Memory allocation functions should be set at most once, and only on
program startup. See :ref:`apiref-custom-memory-allocation`.
Locale
------
Jansson works fine under any locale.
However, if the host program is multithreaded and uses ``setlocale()``
to switch the locale in one thread while Jansson is currently encoding
or decoding JSON data in another thread, the result may be wrong or
the program may even crash.
Jansson uses locale specific functions for certain string conversions
in the encoder and decoder, and then converts the locale specific
values to/from the JSON representation. This fails if the locale
changes between the string conversion and the locale-to-JSON
conversion. This can only happen in multithreaded programs that use
``setlocale()``, because ``setlocale()`` switches the locale for all
running threads, not only the thread that calls ``setlocale()``.
If your program uses ``setlocale()`` as described above, consider
using the thread-safe ``uselocale()`` instead.
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.. _tutorial:
********
Tutorial
********
.. highlight:: c
In this tutorial, we create a program that fetches the latest commits
of a repository in GitHub_ over the web. `GitHub API`_ uses JSON, so
the result can be parsed using Jansson.
To stick to the the scope of this tutorial, we will only cover the the
parts of the program related to handling JSON data. For the best user
experience, the full source code is available:
:download:`github_commits.c`. To compile it (on Unix-like systems with
gcc), use the following command::
gcc -o github_commits github_commits.c -ljansson -lcurl
libcurl_ is used to communicate over the web, so it is required to
compile the program.
The command line syntax is::
github_commits USER REPOSITORY
``USER`` is a GitHub user ID and ``REPOSITORY`` is the repository
name. Please note that the GitHub API is rate limited, so if you run
the program too many times within a short period of time, the sever
starts to respond with an error.
.. _GitHub: https://github.com/
.. _GitHub API: http://developer.github.com/
.. _libcurl: http://curl.haxx.se/
.. _tutorial-github-commits-api:
The GitHub Repo Commits API
===========================
The `GitHub Repo Commits API`_ is used by sending HTTP requests to
URLs like ``https://api.github.com/repos/USER/REPOSITORY/commits``,
where ``USER`` and ``REPOSITORY`` are the GitHub user ID and the name
of the repository whose commits are to be listed, respectively.
GitHub responds with a JSON array of the following form:
.. code-block:: none
[
{
"sha": "<the commit ID>",
"commit": {
"message": "<the commit message>",
<more fields, not important to this tutorial...>
},
<more fields...>
},
{
"sha": "<the commit ID>",
"commit": {
"message": "<the commit message>",
<more fields...>
},
<more fields...>
},
<more commits...>
]
In our program, the HTTP request is sent using the following
function::
static char *request(const char *url);
It takes the URL as a parameter, preforms a HTTP GET request, and
returns a newly allocated string that contains the response body. If
the request fails, an error message is printed to stderr and the
return value is *NULL*. For full details, refer to :download:`the code
<github_commits.c>`, as the actual implementation is not important
here.
.. _GitHub Repo Commits API: http://developer.github.com/v3/repos/commits/
.. _tutorial-the-program:
The Program
===========
First the includes::
#include <string.h>
#include <jansson.h>
Like all the programs using Jansson, we need to include
:file:`jansson.h`.
The following definitions are used to build the GitHub API request
URL::
#define URL_FORMAT "https://api.github.com/repos/%s/%s/commits"
#define URL_SIZE 256
The following function is used when formatting the result to find the
first newline in the commit message::
/* Return the offset of the first newline in text or the length of
text if there's no newline */
static int newline_offset(const char *text)
{
const char *newline = strchr(text, '\n');
if(!newline)
return strlen(text);
else
return (int)(newline - text);
}
The main function follows. In the beginning, we first declare a bunch
of variables and check the command line parameters::
int main(int argc, char *argv[])
{
size_t i;
char *text;
char url[URL_SIZE];
json_t *root;
json_error_t error;
if(argc != 3)
{
fprintf(stderr, "usage: %s USER REPOSITORY\n\n", argv[0]);
fprintf(stderr, "List commits at USER's REPOSITORY.\n\n");
return 2;
}
Then we build the request URL using the user and repository names
given as command line parameters::
snprintf(url, URL_SIZE, URL_FORMAT, argv[1], argv[2]);
This uses the ``URL_SIZE`` and ``URL_FORMAT`` constants defined above.
Now we're ready to actually request the JSON data over the web::
text = request(url);
if(!text)
return 1;
If an error occurs, our function ``request`` prints the error and
returns *NULL*, so it's enough to just return 1 from the main
function.
Next we'll call :func:`json_loads()` to decode the JSON text we got
as a response::
root = json_loads(text, 0, &error);
free(text);
if(!root)
{
fprintf(stderr, "error: on line %d: %s\n", error.line, error.text);
return 1;
}
We don't need the JSON text anymore, so we can free the ``text``
variable right after decoding it. If :func:`json_loads()` fails, it
returns *NULL* and sets error information to the :type:`json_error_t`
structure given as the second parameter. In this case, our program
prints the error information out and returns 1 from the main function.
Now we're ready to extract the data out of the decoded JSON response.
The structure of the response JSON was explained in section
:ref:`tutorial-github-commits-api`.
We check that the returned value really is an array::
if(!json_is_array(root))
{
fprintf(stderr, "error: root is not an array\n");
json_decref(root);
return 1;
}
Then we proceed to loop over all the commits in the array::
for(i = 0; i < json_array_size(root); i++)
{
json_t *data, *sha, *commit, *message;
const char *message_text;
data = json_array_get(root, i);
if(!json_is_object(data))
{
fprintf(stderr, "error: commit data %d is not an object\n", i + 1);
json_decref(root);
return 1;
}
...
The function :func:`json_array_size()` returns the size of a JSON
array. First, we again declare some variables and then extract the
i'th element of the ``root`` array using :func:`json_array_get()`.
We also check that the resulting value is a JSON object.
Next we'll extract the commit ID (a hexadecimal SHA-1 sum),
intermediate commit info object, and the commit message from that
object. We also do proper type checks::
sha = json_object_get(data, "sha");
if(!json_is_string(sha))
{
fprintf(stderr, "error: commit %d: sha is not a string\n", i + 1);
json_decref(root);
return 1;
}
commit = json_object_get(data, "commit");
if(!json_is_object(commit))
{
fprintf(stderr, "error: commit %d: commit is not an object\n", i + 1);
json_decref(root);
return 1;
}
message = json_object_get(commit, "message");
if(!json_is_string(message))
{
fprintf(stderr, "error: commit %d: message is not a string\n", i + 1);
json_decref(root);
return 1;
}
...
And finally, we'll print the first 8 characters of the commit ID and
the first line of the commit message. A C-style string is extracted
from a JSON string using :func:`json_string_value()`::
message_text = json_string_value(message);
printf("%.8s %.*s\n",
json_string_value(id),
newline_offset(message_text),
message_text);
}
After sending the HTTP request, we decoded the JSON text using
:func:`json_loads()`, remember? It returns a *new reference* to the
JSON value it decodes. When we're finished with the value, we'll need
to decrease the reference count using :func:`json_decref()`. This way
Jansson can release the resources::
json_decref(root);
return 0;
For a detailed explanation of reference counting in Jansson, see
:ref:`apiref-reference-count` in :ref:`apiref`.
The program's ready, let's test it and view the latest commits in
Jansson's repository::
$ ./github_commits akheron jansson
1581f26a Merge branch '2.3'
aabfd493 load: Change buffer_pos to be a size_t
bd72efbd load: Avoid unexpected behaviour in macro expansion
e8fd3e30 Document and tweak json_load_callback()
873eddaf Merge pull request #60 from rogerz/contrib
bd2c0c73 Ignore the binary test_load_callback
17a51a4b Merge branch '2.3'
09c39adc Add json_load_callback to the list of exported symbols
cbb80baf Merge pull request #57 from rogerz/contrib
040bd7b0 Add json_load_callback()
2637faa4 Make test stripping locale independent
<...>
Conclusion
==========
In this tutorial, we implemented a program that fetches the latest
commits of a GitHub repository using the GitHub Repo Commits API.
Jansson was used to decode the JSON response and to extract the commit
data.
This tutorial only covered a small part of Jansson. For example, we
did not create or manipulate JSON values at all. Proceed to
:ref:`apiref` to explore all features of Jansson.
+76
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.. highlight:: c
******************
Upgrading from 1.x
******************
This chapter lists the backwards incompatible changes introduced in
Jansson 2.0, and the steps that are needed for upgrading your code.
**The incompatibilities are not dramatic.** The biggest change is that
all decoding functions now require and extra parameter. Most programs
can be modified to work with 2.0 by adding a ``0`` as the second
parameter to all calls of :func:`json_loads()`, :func:`json_loadf()`
and :func:`json_load_file()`.
Compatibility
=============
Jansson 2.0 is backwards incompatible with the Jansson 1.x releases.
It is ABI incompatible, i.e. all programs dynamically linking to the
Jansson library need to be recompiled. It's also API incompatible,
i.e. the source code of programs using Jansson 1.x may need
modifications to make them compile against Jansson 2.0.
All the 2.x releases are guaranteed to be backwards compatible for
both ABI and API, so no recompilation or source changes are needed
when upgrading from 2.x to 2.y.
List of Incompatible Changes
============================
**Decoding flags**
For future needs, a ``flags`` parameter was added as the second
parameter to all decoding functions, i.e. :func:`json_loads()`,
:func:`json_loadf()` and :func:`json_load_file()`. All calls to
these functions need to be changed by adding a ``0`` as the second
argument. For example::
/* old code */
json_loads(input, &error);
/* new code */
json_loads(input, 0, &error);
**Underlying type of JSON integers**
The underlying C type of JSON integers has been changed from
:type:`int` to the widest available signed integer type, i.e.
:type:`long long` or :type:`long`, depending on whether
:type:`long long` is supported on your system or not. This makes
the whole 64-bit integer range available on most modern systems.
``jansson.h`` has a typedef :type:`json_int_t` to the underlying
integer type. :type:`int` should still be used in most cases when
dealing with smallish JSON integers, as the compiler handles
implicit type coercion. Only when the full 64-bit range is needed,
:type:`json_int_t` should be explicitly used.
**Maximum encoder indentation depth**
The maximum argument of the ``JSON_INDENT()`` macro has been
changed from 255 to 31, to free up bits from the ``flags``
parameter of :func:`json_dumps()`, :func:`json_dumpf()` and
:func:`json_dump_file()`. If your code uses a bigger indentation
than 31, it needs to be changed.
**Unsigned integers in API functions**
Version 2.0 unifies unsigned integer usage in the API. All uses of
:type:`unsigned int` and :type:`unsigned long` have been replaced
with :type:`size_t`. This includes flags, container sizes, etc.
This should not require source code changes, as both
:type:`unsigned int` and :type:`unsigned long` are usually
compatible with :type:`size_t`.
+527
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@@ -0,0 +1,527 @@
#!/bin/sh
# install - install a program, script, or datafile
scriptversion=2011-01-19.21; # UTC
# This originates from X11R5 (mit/util/scripts/install.sh), which was
# later released in X11R6 (xc/config/util/install.sh) with the
# following copyright and license.
#
# Copyright (C) 1994 X Consortium
#
# 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
# X CONSORTIUM BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
# AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNEC-
# TION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
#
# Except as contained in this notice, the name of the X Consortium shall not
# be used in advertising or otherwise to promote the sale, use or other deal-
# ings in this Software without prior written authorization from the X Consor-
# tium.
#
#
# FSF changes to this file are in the public domain.
#
# Calling this script install-sh is preferred over install.sh, to prevent
# `make' implicit rules from creating a file called install from it
# when there is no Makefile.
#
# This script is compatible with the BSD install script, but was written
# from scratch.
nl='
'
IFS=" "" $nl"
# set DOITPROG to echo to test this script
# Don't use :- since 4.3BSD and earlier shells don't like it.
doit=${DOITPROG-}
if test -z "$doit"; then
doit_exec=exec
else
doit_exec=$doit
fi
# Put in absolute file names if you don't have them in your path;
# or use environment vars.
chgrpprog=${CHGRPPROG-chgrp}
chmodprog=${CHMODPROG-chmod}
chownprog=${CHOWNPROG-chown}
cmpprog=${CMPPROG-cmp}
cpprog=${CPPROG-cp}
mkdirprog=${MKDIRPROG-mkdir}
mvprog=${MVPROG-mv}
rmprog=${RMPROG-rm}
stripprog=${STRIPPROG-strip}
posix_glob='?'
initialize_posix_glob='
test "$posix_glob" != "?" || {
if (set -f) 2>/dev/null; then
posix_glob=
else
posix_glob=:
fi
}
'
posix_mkdir=
# Desired mode of installed file.
mode=0755
chgrpcmd=
chmodcmd=$chmodprog
chowncmd=
mvcmd=$mvprog
rmcmd="$rmprog -f"
stripcmd=
src=
dst=
dir_arg=
dst_arg=
copy_on_change=false
no_target_directory=
usage="\
Usage: $0 [OPTION]... [-T] SRCFILE DSTFILE
or: $0 [OPTION]... SRCFILES... DIRECTORY
or: $0 [OPTION]... -t DIRECTORY SRCFILES...
or: $0 [OPTION]... -d DIRECTORIES...
In the 1st form, copy SRCFILE to DSTFILE.
In the 2nd and 3rd, copy all SRCFILES to DIRECTORY.
In the 4th, create DIRECTORIES.
Options:
--help display this help and exit.
--version display version info and exit.
-c (ignored)
-C install only if different (preserve the last data modification time)
-d create directories instead of installing files.
-g GROUP $chgrpprog installed files to GROUP.
-m MODE $chmodprog installed files to MODE.
-o USER $chownprog installed files to USER.
-s $stripprog installed files.
-t DIRECTORY install into DIRECTORY.
-T report an error if DSTFILE is a directory.
Environment variables override the default commands:
CHGRPPROG CHMODPROG CHOWNPROG CMPPROG CPPROG MKDIRPROG MVPROG
RMPROG STRIPPROG
"
while test $# -ne 0; do
case $1 in
-c) ;;
-C) copy_on_change=true;;
-d) dir_arg=true;;
-g) chgrpcmd="$chgrpprog $2"
shift;;
--help) echo "$usage"; exit $?;;
-m) mode=$2
case $mode in
*' '* | *' '* | *'
'* | *'*'* | *'?'* | *'['*)
echo "$0: invalid mode: $mode" >&2
exit 1;;
esac
shift;;
-o) chowncmd="$chownprog $2"
shift;;
-s) stripcmd=$stripprog;;
-t) dst_arg=$2
# Protect names problematic for `test' and other utilities.
case $dst_arg in
-* | [=\(\)!]) dst_arg=./$dst_arg;;
esac
shift;;
-T) no_target_directory=true;;
--version) echo "$0 $scriptversion"; exit $?;;
--) shift
break;;
-*) echo "$0: invalid option: $1" >&2
exit 1;;
*) break;;
esac
shift
done
if test $# -ne 0 && test -z "$dir_arg$dst_arg"; then
# When -d is used, all remaining arguments are directories to create.
# When -t is used, the destination is already specified.
# Otherwise, the last argument is the destination. Remove it from $@.
for arg
do
if test -n "$dst_arg"; then
# $@ is not empty: it contains at least $arg.
set fnord "$@" "$dst_arg"
shift # fnord
fi
shift # arg
dst_arg=$arg
# Protect names problematic for `test' and other utilities.
case $dst_arg in
-* | [=\(\)!]) dst_arg=./$dst_arg;;
esac
done
fi
if test $# -eq 0; then
if test -z "$dir_arg"; then
echo "$0: no input file specified." >&2
exit 1
fi
# It's OK to call `install-sh -d' without argument.
# This can happen when creating conditional directories.
exit 0
fi
if test -z "$dir_arg"; then
do_exit='(exit $ret); exit $ret'
trap "ret=129; $do_exit" 1
trap "ret=130; $do_exit" 2
trap "ret=141; $do_exit" 13
trap "ret=143; $do_exit" 15
# Set umask so as not to create temps with too-generous modes.
# However, 'strip' requires both read and write access to temps.
case $mode in
# Optimize common cases.
*644) cp_umask=133;;
*755) cp_umask=22;;
*[0-7])
if test -z "$stripcmd"; then
u_plus_rw=
else
u_plus_rw='% 200'
fi
cp_umask=`expr '(' 777 - $mode % 1000 ')' $u_plus_rw`;;
*)
if test -z "$stripcmd"; then
u_plus_rw=
else
u_plus_rw=,u+rw
fi
cp_umask=$mode$u_plus_rw;;
esac
fi
for src
do
# Protect names problematic for `test' and other utilities.
case $src in
-* | [=\(\)!]) src=./$src;;
esac
if test -n "$dir_arg"; then
dst=$src
dstdir=$dst
test -d "$dstdir"
dstdir_status=$?
else
# Waiting for this to be detected by the "$cpprog $src $dsttmp" command
# might cause directories to be created, which would be especially bad
# if $src (and thus $dsttmp) contains '*'.
if test ! -f "$src" && test ! -d "$src"; then
echo "$0: $src does not exist." >&2
exit 1
fi
if test -z "$dst_arg"; then
echo "$0: no destination specified." >&2
exit 1
fi
dst=$dst_arg
# If destination is a directory, append the input filename; won't work
# if double slashes aren't ignored.
if test -d "$dst"; then
if test -n "$no_target_directory"; then
echo "$0: $dst_arg: Is a directory" >&2
exit 1
fi
dstdir=$dst
dst=$dstdir/`basename "$src"`
dstdir_status=0
else
# Prefer dirname, but fall back on a substitute if dirname fails.
dstdir=`
(dirname "$dst") 2>/dev/null ||
expr X"$dst" : 'X\(.*[^/]\)//*[^/][^/]*/*$' \| \
X"$dst" : 'X\(//\)[^/]' \| \
X"$dst" : 'X\(//\)$' \| \
X"$dst" : 'X\(/\)' \| . 2>/dev/null ||
echo X"$dst" |
sed '/^X\(.*[^/]\)\/\/*[^/][^/]*\/*$/{
s//\1/
q
}
/^X\(\/\/\)[^/].*/{
s//\1/
q
}
/^X\(\/\/\)$/{
s//\1/
q
}
/^X\(\/\).*/{
s//\1/
q
}
s/.*/./; q'
`
test -d "$dstdir"
dstdir_status=$?
fi
fi
obsolete_mkdir_used=false
if test $dstdir_status != 0; then
case $posix_mkdir in
'')
# Create intermediate dirs using mode 755 as modified by the umask.
# This is like FreeBSD 'install' as of 1997-10-28.
umask=`umask`
case $stripcmd.$umask in
# Optimize common cases.
*[2367][2367]) mkdir_umask=$umask;;
.*0[02][02] | .[02][02] | .[02]) mkdir_umask=22;;
*[0-7])
mkdir_umask=`expr $umask + 22 \
- $umask % 100 % 40 + $umask % 20 \
- $umask % 10 % 4 + $umask % 2
`;;
*) mkdir_umask=$umask,go-w;;
esac
# With -d, create the new directory with the user-specified mode.
# Otherwise, rely on $mkdir_umask.
if test -n "$dir_arg"; then
mkdir_mode=-m$mode
else
mkdir_mode=
fi
posix_mkdir=false
case $umask in
*[123567][0-7][0-7])
# POSIX mkdir -p sets u+wx bits regardless of umask, which
# is incompatible with FreeBSD 'install' when (umask & 300) != 0.
;;
*)
tmpdir=${TMPDIR-/tmp}/ins$RANDOM-$$
trap 'ret=$?; rmdir "$tmpdir/d" "$tmpdir" 2>/dev/null; exit $ret' 0
if (umask $mkdir_umask &&
exec $mkdirprog $mkdir_mode -p -- "$tmpdir/d") >/dev/null 2>&1
then
if test -z "$dir_arg" || {
# Check for POSIX incompatibilities with -m.
# HP-UX 11.23 and IRIX 6.5 mkdir -m -p sets group- or
# other-writeable bit of parent directory when it shouldn't.
# FreeBSD 6.1 mkdir -m -p sets mode of existing directory.
ls_ld_tmpdir=`ls -ld "$tmpdir"`
case $ls_ld_tmpdir in
d????-?r-*) different_mode=700;;
d????-?--*) different_mode=755;;
*) false;;
esac &&
$mkdirprog -m$different_mode -p -- "$tmpdir" && {
ls_ld_tmpdir_1=`ls -ld "$tmpdir"`
test "$ls_ld_tmpdir" = "$ls_ld_tmpdir_1"
}
}
then posix_mkdir=:
fi
rmdir "$tmpdir/d" "$tmpdir"
else
# Remove any dirs left behind by ancient mkdir implementations.
rmdir ./$mkdir_mode ./-p ./-- 2>/dev/null
fi
trap '' 0;;
esac;;
esac
if
$posix_mkdir && (
umask $mkdir_umask &&
$doit_exec $mkdirprog $mkdir_mode -p -- "$dstdir"
)
then :
else
# The umask is ridiculous, or mkdir does not conform to POSIX,
# or it failed possibly due to a race condition. Create the
# directory the slow way, step by step, checking for races as we go.
case $dstdir in
/*) prefix='/';;
[-=\(\)!]*) prefix='./';;
*) prefix='';;
esac
eval "$initialize_posix_glob"
oIFS=$IFS
IFS=/
$posix_glob set -f
set fnord $dstdir
shift
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IFS=$oIFS
prefixes=
for d
do
test X"$d" = X && continue
prefix=$prefix$d
if test -d "$prefix"; then
prefixes=
else
if $posix_mkdir; then
(umask=$mkdir_umask &&
$doit_exec $mkdirprog $mkdir_mode -p -- "$dstdir") && break
# Don't fail if two instances are running concurrently.
test -d "$prefix" || exit 1
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*) qprefix=$prefix;;
esac
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if test -n "$prefixes"; then
# Don't fail if two instances are running concurrently.
(umask $mkdir_umask &&
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test -d "$dstdir" || exit 1
obsolete_mkdir_used=true
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{ test "$obsolete_mkdir_used$chowncmd$chgrpcmd" = false ||
test -z "$chmodcmd" || $doit $chmodcmd $mode "$dst"; } || exit 1
else
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rmtmp=$dstdir/_rm.$$_
# Trap to clean up those temp files at exit.
trap 'ret=$?; rm -f "$dsttmp" "$rmtmp" && exit $ret' 0
# Copy the file name to the temp name.
(umask $cp_umask && $doit_exec $cpprog "$src" "$dsttmp") &&
# and set any options; do chmod last to preserve setuid bits.
#
# If any of these fail, we abort the whole thing. If we want to
# ignore errors from any of these, just make sure not to ignore
# errors from the above "$doit $cpprog $src $dsttmp" command.
#
{ test -z "$chowncmd" || $doit $chowncmd "$dsttmp"; } &&
{ test -z "$chgrpcmd" || $doit $chgrpcmd "$dsttmp"; } &&
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old=`LC_ALL=C ls -dlL "$dst" 2>/dev/null` &&
new=`LC_ALL=C ls -dlL "$dsttmp" 2>/dev/null` &&
eval "$initialize_posix_glob" &&
$posix_glob set -f &&
set X $old && old=:$2:$4:$5:$6 &&
set X $new && new=:$2:$4:$5:$6 &&
$posix_glob set +f &&
test "$old" = "$new" &&
$cmpprog "$dst" "$dsttmp" >/dev/null 2>&1
then
rm -f "$dsttmp"
else
# Rename the file to the real destination.
$doit $mvcmd -f "$dsttmp" "$dst" 2>/dev/null ||
# The rename failed, perhaps because mv can't rename something else
# to itself, or perhaps because mv is so ancient that it does not
# support -f.
{
# Now remove or move aside any old file at destination location.
# We try this two ways since rm can't unlink itself on some
# systems and the destination file might be busy for other
# reasons. In this case, the final cleanup might fail but the new
# file should still install successfully.
{
test ! -f "$dst" ||
$doit $rmcmd -f "$dst" 2>/dev/null ||
{ $doit $mvcmd -f "$dst" "$rmtmp" 2>/dev/null &&
{ $doit $rmcmd -f "$rmtmp" 2>/dev/null; :; }
} ||
{ echo "$0: cannot unlink or rename $dst" >&2
(exit 1); exit 1
}
} &&
# Now rename the file to the real destination.
$doit $mvcmd "$dsttmp" "$dst"
}
fi || exit 1
trap '' 0
fi
done
# Local variables:
# eval: (add-hook 'write-file-hooks 'time-stamp)
# time-stamp-start: "scriptversion="
# time-stamp-format: "%:y-%02m-%02d.%02H"
# time-stamp-time-zone: "UTC"
# time-stamp-end: "; # UTC"
# End:
+10
View File
@@ -0,0 +1,10 @@
prefix=@prefix@
exec_prefix=@exec_prefix@
libdir=@libdir@
includedir=${prefix}/include
Name: Jansson
Description: Library for encoding, decoding and manipulating JSON data
Version: @VERSION@
Libs: -L${libdir} -ljansson
Cflags: -I${includedir}
File diff suppressed because it is too large Load Diff
+331
View File
@@ -0,0 +1,331 @@
#! /bin/sh
# Common stub for a few missing GNU programs while installing.
scriptversion=2012-01-06.13; # UTC
# Copyright (C) 1996, 1997, 1999, 2000, 2002, 2003, 2004, 2005, 2006,
# 2008, 2009, 2010, 2011, 2012 Free Software Foundation, Inc.
# Originally by Fran,cois Pinard <[email protected]>, 1996.
# This program is free software; you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation; either version 2, or (at your option)
# any later version.
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
# You should have received a copy of the GNU General Public License
# along with this program. If not, see <http://www.gnu.org/licenses/>.
# As a special exception to the GNU General Public License, if you
# distribute this file as part of a program that contains a
# configuration script generated by Autoconf, you may include it under
# the same distribution terms that you use for the rest of that program.
if test $# -eq 0; then
echo 1>&2 "Try \`$0 --help' for more information"
exit 1
fi
run=:
sed_output='s/.* --output[ =]\([^ ]*\).*/\1/p'
sed_minuso='s/.* -o \([^ ]*\).*/\1/p'
# In the cases where this matters, `missing' is being run in the
# srcdir already.
if test -f configure.ac; then
configure_ac=configure.ac
else
configure_ac=configure.in
fi
msg="missing on your system"
case $1 in
--run)
# Try to run requested program, and just exit if it succeeds.
run=
shift
"$@" && exit 0
# Exit code 63 means version mismatch. This often happens
# when the user try to use an ancient version of a tool on
# a file that requires a minimum version. In this case we
# we should proceed has if the program had been absent, or
# if --run hadn't been passed.
if test $? = 63; then
run=:
msg="probably too old"
fi
;;
-h|--h|--he|--hel|--help)
echo "\
$0 [OPTION]... PROGRAM [ARGUMENT]...
Handle \`PROGRAM [ARGUMENT]...' for when PROGRAM is missing, or return an
error status if there is no known handling for PROGRAM.
Options:
-h, --help display this help and exit
-v, --version output version information and exit
--run try to run the given command, and emulate it if it fails
Supported PROGRAM values:
aclocal touch file \`aclocal.m4'
autoconf touch file \`configure'
autoheader touch file \`config.h.in'
autom4te touch the output file, or create a stub one
automake touch all \`Makefile.in' files
bison create \`y.tab.[ch]', if possible, from existing .[ch]
flex create \`lex.yy.c', if possible, from existing .c
help2man touch the output file
lex create \`lex.yy.c', if possible, from existing .c
makeinfo touch the output file
yacc create \`y.tab.[ch]', if possible, from existing .[ch]
Version suffixes to PROGRAM as well as the prefixes \`gnu-', \`gnu', and
\`g' are ignored when checking the name.
Send bug reports to <[email protected]>."
exit $?
;;
-v|--v|--ve|--ver|--vers|--versi|--versio|--version)
echo "missing $scriptversion (GNU Automake)"
exit $?
;;
-*)
echo 1>&2 "$0: Unknown \`$1' option"
echo 1>&2 "Try \`$0 --help' for more information"
exit 1
;;
esac
# normalize program name to check for.
program=`echo "$1" | sed '
s/^gnu-//; t
s/^gnu//; t
s/^g//; t'`
# Now exit if we have it, but it failed. Also exit now if we
# don't have it and --version was passed (most likely to detect
# the program). This is about non-GNU programs, so use $1 not
# $program.
case $1 in
lex*|yacc*)
# Not GNU programs, they don't have --version.
;;
*)
if test -z "$run" && ($1 --version) > /dev/null 2>&1; then
# We have it, but it failed.
exit 1
elif test "x$2" = "x--version" || test "x$2" = "x--help"; then
# Could not run --version or --help. This is probably someone
# running `$TOOL --version' or `$TOOL --help' to check whether
# $TOOL exists and not knowing $TOOL uses missing.
exit 1
fi
;;
esac
# If it does not exist, or fails to run (possibly an outdated version),
# try to emulate it.
case $program in
aclocal*)
echo 1>&2 "\
WARNING: \`$1' is $msg. You should only need it if
you modified \`acinclude.m4' or \`${configure_ac}'. You might want
to install the \`Automake' and \`Perl' packages. Grab them from
any GNU archive site."
touch aclocal.m4
;;
autoconf*)
echo 1>&2 "\
WARNING: \`$1' is $msg. You should only need it if
you modified \`${configure_ac}'. You might want to install the
\`Autoconf' and \`GNU m4' packages. Grab them from any GNU
archive site."
touch configure
;;
autoheader*)
echo 1>&2 "\
WARNING: \`$1' is $msg. You should only need it if
you modified \`acconfig.h' or \`${configure_ac}'. You might want
to install the \`Autoconf' and \`GNU m4' packages. Grab them
from any GNU archive site."
files=`sed -n 's/^[ ]*A[CM]_CONFIG_HEADER(\([^)]*\)).*/\1/p' ${configure_ac}`
test -z "$files" && files="config.h"
touch_files=
for f in $files; do
case $f in
*:*) touch_files="$touch_files "`echo "$f" |
sed -e 's/^[^:]*://' -e 's/:.*//'`;;
*) touch_files="$touch_files $f.in";;
esac
done
touch $touch_files
;;
automake*)
echo 1>&2 "\
WARNING: \`$1' is $msg. You should only need it if
you modified \`Makefile.am', \`acinclude.m4' or \`${configure_ac}'.
You might want to install the \`Automake' and \`Perl' packages.
Grab them from any GNU archive site."
find . -type f -name Makefile.am -print |
sed 's/\.am$/.in/' |
while read f; do touch "$f"; done
;;
autom4te*)
echo 1>&2 "\
WARNING: \`$1' is needed, but is $msg.
You might have modified some files without having the
proper tools for further handling them.
You can get \`$1' as part of \`Autoconf' from any GNU
archive site."
file=`echo "$*" | sed -n "$sed_output"`
test -z "$file" && file=`echo "$*" | sed -n "$sed_minuso"`
if test -f "$file"; then
touch $file
else
test -z "$file" || exec >$file
echo "#! /bin/sh"
echo "# Created by GNU Automake missing as a replacement of"
echo "# $ $@"
echo "exit 0"
chmod +x $file
exit 1
fi
;;
bison*|yacc*)
echo 1>&2 "\
WARNING: \`$1' $msg. You should only need it if
you modified a \`.y' file. You may need the \`Bison' package
in order for those modifications to take effect. You can get
\`Bison' from any GNU archive site."
rm -f y.tab.c y.tab.h
if test $# -ne 1; then
eval LASTARG=\${$#}
case $LASTARG in
*.y)
SRCFILE=`echo "$LASTARG" | sed 's/y$/c/'`
if test -f "$SRCFILE"; then
cp "$SRCFILE" y.tab.c
fi
SRCFILE=`echo "$LASTARG" | sed 's/y$/h/'`
if test -f "$SRCFILE"; then
cp "$SRCFILE" y.tab.h
fi
;;
esac
fi
if test ! -f y.tab.h; then
echo >y.tab.h
fi
if test ! -f y.tab.c; then
echo 'main() { return 0; }' >y.tab.c
fi
;;
lex*|flex*)
echo 1>&2 "\
WARNING: \`$1' is $msg. You should only need it if
you modified a \`.l' file. You may need the \`Flex' package
in order for those modifications to take effect. You can get
\`Flex' from any GNU archive site."
rm -f lex.yy.c
if test $# -ne 1; then
eval LASTARG=\${$#}
case $LASTARG in
*.l)
SRCFILE=`echo "$LASTARG" | sed 's/l$/c/'`
if test -f "$SRCFILE"; then
cp "$SRCFILE" lex.yy.c
fi
;;
esac
fi
if test ! -f lex.yy.c; then
echo 'main() { return 0; }' >lex.yy.c
fi
;;
help2man*)
echo 1>&2 "\
WARNING: \`$1' is $msg. You should only need it if
you modified a dependency of a manual page. You may need the
\`Help2man' package in order for those modifications to take
effect. You can get \`Help2man' from any GNU archive site."
file=`echo "$*" | sed -n "$sed_output"`
test -z "$file" && file=`echo "$*" | sed -n "$sed_minuso"`
if test -f "$file"; then
touch $file
else
test -z "$file" || exec >$file
echo ".ab help2man is required to generate this page"
exit $?
fi
;;
makeinfo*)
echo 1>&2 "\
WARNING: \`$1' is $msg. You should only need it if
you modified a \`.texi' or \`.texinfo' file, or any other file
indirectly affecting the aspect of the manual. The spurious
call might also be the consequence of using a buggy \`make' (AIX,
DU, IRIX). You might want to install the \`Texinfo' package or
the \`GNU make' package. Grab either from any GNU archive site."
# The file to touch is that specified with -o ...
file=`echo "$*" | sed -n "$sed_output"`
test -z "$file" && file=`echo "$*" | sed -n "$sed_minuso"`
if test -z "$file"; then
# ... or it is the one specified with @setfilename ...
infile=`echo "$*" | sed 's/.* \([^ ]*\) *$/\1/'`
file=`sed -n '
/^@setfilename/{
s/.* \([^ ]*\) *$/\1/
p
q
}' $infile`
# ... or it is derived from the source name (dir/f.texi becomes f.info)
test -z "$file" && file=`echo "$infile" | sed 's,.*/,,;s,.[^.]*$,,'`.info
fi
# If the file does not exist, the user really needs makeinfo;
# let's fail without touching anything.
test -f $file || exit 1
touch $file
;;
*)
echo 1>&2 "\
WARNING: \`$1' is needed, and is $msg.
You might have modified some files without having the
proper tools for further handling them. Check the \`README' file,
it often tells you about the needed prerequisites for installing
this package. You may also peek at any GNU archive site, in case
some other package would contain this missing \`$1' program."
exit 1
;;
esac
exit 0
# Local variables:
# eval: (add-hook 'write-file-hooks 'time-stamp)
# time-stamp-start: "scriptversion="
# time-stamp-format: "%:y-%02m-%02d.%02H"
# time-stamp-time-zone: "UTC"
# time-stamp-end: "; # UTC"
# End:
+26
View File
@@ -0,0 +1,26 @@
EXTRA_DIST = jansson.def
include_HEADERS = jansson.h jansson_config.h
lib_LTLIBRARIES = libjansson.la
libjansson_la_SOURCES = \
dump.c \
error.c \
hashtable.c \
hashtable.h \
hashtable_seed.c \
jansson_private.h \
load.c \
lookup3.h \
memory.c \
pack_unpack.c \
strbuffer.c \
strbuffer.h \
strconv.c \
utf.c \
utf.h \
value.c
libjansson_la_LDFLAGS = \
-no-undefined \
-export-symbols-regex '^json_' \
-version-info 10:0:6
+616
View File
@@ -0,0 +1,616 @@
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# Tell versions [3.59,3.63) of GNU make to not export all variables.
# Otherwise a system limit (for SysV at least) may be exceeded.
.NOEXPORT:
+456
View File
@@ -0,0 +1,456 @@
/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef _GNU_SOURCE
#define _GNU_SOURCE
#endif
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <assert.h>
#include "jansson.h"
#include "jansson_private.h"
#include "strbuffer.h"
#include "utf.h"
#define MAX_INTEGER_STR_LENGTH 100
#define MAX_REAL_STR_LENGTH 100
struct object_key {
size_t serial;
const char *key;
};
static int dump_to_strbuffer(const char *buffer, size_t size, void *data)
{
return strbuffer_append_bytes((strbuffer_t *)data, buffer, size);
}
static int dump_to_file(const char *buffer, size_t size, void *data)
{
FILE *dest = (FILE *)data;
if(fwrite(buffer, size, 1, dest) != 1)
return -1;
return 0;
}
/* 32 spaces (the maximum indentation size) */
static const char whitespace[] = " ";
static int dump_indent(size_t flags, int depth, int space, json_dump_callback_t dump, void *data)
{
if(JSON_INDENT(flags) > 0)
{
int i, ws_count = JSON_INDENT(flags);
if(dump("\n", 1, data))
return -1;
for(i = 0; i < depth; i++)
{
if(dump(whitespace, ws_count, data))
return -1;
}
}
else if(space && !(flags & JSON_COMPACT))
{
return dump(" ", 1, data);
}
return 0;
}
static int dump_string(const char *str, json_dump_callback_t dump, void *data, size_t flags)
{
const char *pos, *end;
int32_t codepoint;
if(dump("\"", 1, data))
return -1;
end = pos = str;
while(1)
{
const char *text;
char seq[13];
int length;
while(*end)
{
end = utf8_iterate(pos, &codepoint);
if(!end)
return -1;
/* mandatory escape or control char */
if(codepoint == '\\' || codepoint == '"' || codepoint < 0x20)
break;
/* slash */
if((flags & JSON_ESCAPE_SLASH) && codepoint == '/')
break;
/* non-ASCII */
if((flags & JSON_ENSURE_ASCII) && codepoint > 0x7F)
break;
pos = end;
}
if(pos != str) {
if(dump(str, pos - str, data))
return -1;
}
if(end == pos)
break;
/* handle \, /, ", and control codes */
length = 2;
switch(codepoint)
{
case '\\': text = "\\\\"; break;
case '\"': text = "\\\""; break;
case '\b': text = "\\b"; break;
case '\f': text = "\\f"; break;
case '\n': text = "\\n"; break;
case '\r': text = "\\r"; break;
case '\t': text = "\\t"; break;
case '/': text = "\\/"; break;
default:
{
/* codepoint is in BMP */
if(codepoint < 0x10000)
{
sprintf(seq, "\\u%04x", codepoint);
length = 6;
}
/* not in BMP -> construct a UTF-16 surrogate pair */
else
{
int32_t first, last;
codepoint -= 0x10000;
first = 0xD800 | ((codepoint & 0xffc00) >> 10);
last = 0xDC00 | (codepoint & 0x003ff);
sprintf(seq, "\\u%04x\\u%04x", first, last);
length = 12;
}
text = seq;
break;
}
}
if(dump(text, length, data))
return -1;
str = pos = end;
}
return dump("\"", 1, data);
}
static int object_key_compare_keys(const void *key1, const void *key2)
{
return strcmp(((const struct object_key *)key1)->key,
((const struct object_key *)key2)->key);
}
static int object_key_compare_serials(const void *key1, const void *key2)
{
size_t a = ((const struct object_key *)key1)->serial;
size_t b = ((const struct object_key *)key2)->serial;
return a < b ? -1 : a == b ? 0 : 1;
}
static int do_dump(const json_t *json, size_t flags, int depth,
json_dump_callback_t dump, void *data)
{
if(!json)
return -1;
switch(json_typeof(json)) {
case JSON_NULL:
return dump("null", 4, data);
case JSON_TRUE:
return dump("true", 4, data);
case JSON_FALSE:
return dump("false", 5, data);
case JSON_INTEGER:
{
char buffer[MAX_INTEGER_STR_LENGTH];
int size;
size = snprintf(buffer, MAX_INTEGER_STR_LENGTH,
"%" JSON_INTEGER_FORMAT,
json_integer_value(json));
if(size < 0 || size >= MAX_INTEGER_STR_LENGTH)
return -1;
return dump(buffer, size, data);
}
case JSON_REAL:
{
char buffer[MAX_REAL_STR_LENGTH];
int size;
double value = json_real_value(json);
size = jsonp_dtostr(buffer, MAX_REAL_STR_LENGTH, value);
if(size < 0)
return -1;
return dump(buffer, size, data);
}
case JSON_STRING:
return dump_string(json_string_value(json), dump, data, flags);
case JSON_ARRAY:
{
int i;
int n;
json_array_t *array;
/* detect circular references */
array = json_to_array(json);
if(array->visited)
goto array_error;
array->visited = 1;
n = json_array_size(json);
if(dump("[", 1, data))
goto array_error;
if(n == 0) {
array->visited = 0;
return dump("]", 1, data);
}
if(dump_indent(flags, depth + 1, 0, dump, data))
goto array_error;
for(i = 0; i < n; ++i) {
if(do_dump(json_array_get(json, i), flags, depth + 1,
dump, data))
goto array_error;
if(i < n - 1)
{
if(dump(",", 1, data) ||
dump_indent(flags, depth + 1, 1, dump, data))
goto array_error;
}
else
{
if(dump_indent(flags, depth, 0, dump, data))
goto array_error;
}
}
array->visited = 0;
return dump("]", 1, data);
array_error:
array->visited = 0;
return -1;
}
case JSON_OBJECT:
{
json_object_t *object;
void *iter;
const char *separator;
int separator_length;
if(flags & JSON_COMPACT) {
separator = ":";
separator_length = 1;
}
else {
separator = ": ";
separator_length = 2;
}
/* detect circular references */
object = json_to_object(json);
if(object->visited)
goto object_error;
object->visited = 1;
iter = json_object_iter((json_t *)json);
if(dump("{", 1, data))
goto object_error;
if(!iter) {
object->visited = 0;
return dump("}", 1, data);
}
if(dump_indent(flags, depth + 1, 0, dump, data))
goto object_error;
if(flags & JSON_SORT_KEYS || flags & JSON_PRESERVE_ORDER)
{
struct object_key *keys;
size_t size, i;
int (*cmp_func)(const void *, const void *);
size = json_object_size(json);
keys = jsonp_malloc(size * sizeof(struct object_key));
if(!keys)
goto object_error;
i = 0;
while(iter)
{
keys[i].serial = hashtable_iter_serial(iter);
keys[i].key = json_object_iter_key(iter);
iter = json_object_iter_next((json_t *)json, iter);
i++;
}
assert(i == size);
if(flags & JSON_SORT_KEYS)
cmp_func = object_key_compare_keys;
else
cmp_func = object_key_compare_serials;
qsort(keys, size, sizeof(struct object_key), cmp_func);
for(i = 0; i < size; i++)
{
const char *key;
json_t *value;
key = keys[i].key;
value = json_object_get(json, key);
assert(value);
dump_string(key, dump, data, flags);
if(dump(separator, separator_length, data) ||
do_dump(value, flags, depth + 1, dump, data))
{
jsonp_free(keys);
goto object_error;
}
if(i < size - 1)
{
if(dump(",", 1, data) ||
dump_indent(flags, depth + 1, 1, dump, data))
{
jsonp_free(keys);
goto object_error;
}
}
else
{
if(dump_indent(flags, depth, 0, dump, data))
{
jsonp_free(keys);
goto object_error;
}
}
}
jsonp_free(keys);
}
else
{
/* Don't sort keys */
while(iter)
{
void *next = json_object_iter_next((json_t *)json, iter);
dump_string(json_object_iter_key(iter), dump, data, flags);
if(dump(separator, separator_length, data) ||
do_dump(json_object_iter_value(iter), flags, depth + 1,
dump, data))
goto object_error;
if(next)
{
if(dump(",", 1, data) ||
dump_indent(flags, depth + 1, 1, dump, data))
goto object_error;
}
else
{
if(dump_indent(flags, depth, 0, dump, data))
goto object_error;
}
iter = next;
}
}
object->visited = 0;
return dump("}", 1, data);
object_error:
object->visited = 0;
return -1;
}
default:
/* not reached */
return -1;
}
}
char *json_dumps(const json_t *json, size_t flags)
{
strbuffer_t strbuff;
char *result;
if(strbuffer_init(&strbuff))
return NULL;
if(json_dump_callback(json, dump_to_strbuffer, (void *)&strbuff, flags))
result = NULL;
else
result = jsonp_strdup(strbuffer_value(&strbuff));
strbuffer_close(&strbuff);
return result;
}
int json_dumpf(const json_t *json, FILE *output, size_t flags)
{
return json_dump_callback(json, dump_to_file, (void *)output, flags);
}
int json_dump_file(const json_t *json, const char *path, size_t flags)
{
int result;
FILE *output = fopen(path, "w");
if(!output)
return -1;
result = json_dumpf(json, output, flags);
fclose(output);
return result;
}
int json_dump_callback(const json_t *json, json_dump_callback_t callback, void *data, size_t flags)
{
if(!(flags & JSON_ENCODE_ANY)) {
if(!json_is_array(json) && !json_is_object(json))
return -1;
}
return do_dump(json, flags, 0, callback, data);
}
+63
View File
@@ -0,0 +1,63 @@
#include <string.h>
#include "jansson_private.h"
void jsonp_error_init(json_error_t *error, const char *source)
{
if(error)
{
error->text[0] = '\0';
error->line = -1;
error->column = -1;
error->position = 0;
if(source)
jsonp_error_set_source(error, source);
else
error->source[0] = '\0';
}
}
void jsonp_error_set_source(json_error_t *error, const char *source)
{
size_t length;
if(!error || !source)
return;
length = strlen(source);
if(length < JSON_ERROR_SOURCE_LENGTH)
strcpy(error->source, source);
else {
size_t extra = length - JSON_ERROR_SOURCE_LENGTH + 4;
strcpy(error->source, "...");
strcpy(error->source + 3, source + extra);
}
}
void jsonp_error_set(json_error_t *error, int line, int column,
size_t position, const char *msg, ...)
{
va_list ap;
va_start(ap, msg);
jsonp_error_vset(error, line, column, position, msg, ap);
va_end(ap);
}
void jsonp_error_vset(json_error_t *error, int line, int column,
size_t position, const char *msg, va_list ap)
{
if(!error)
return;
if(error->text[0] != '\0') {
/* error already set */
return;
}
error->line = line;
error->column = column;
error->position = position;
vsnprintf(error->text, JSON_ERROR_TEXT_LENGTH, msg, ap);
error->text[JSON_ERROR_TEXT_LENGTH - 1] = '\0';
}
+345
View File
@@ -0,0 +1,345 @@
/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* This library is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#if HAVE_CONFIG_H
#include <config.h>
#endif
#include <stdlib.h>
#include <string.h>
#if HAVE_STDINT_H
#include <stdint.h>
#endif
#include <jansson_config.h> /* for JSON_INLINE */
#include "jansson_private.h" /* for container_of() */
#include "hashtable.h"
typedef struct hashtable_list list_t;
typedef struct hashtable_pair pair_t;
typedef struct hashtable_bucket bucket_t;
extern volatile uint32_t hashtable_seed;
/* Implementation of the hash function */
#include "lookup3.h"
#define list_to_pair(list_) container_of(list_, pair_t, list)
#define hash_str(key) ((size_t)hashlittle((key), strlen(key), hashtable_seed))
static JSON_INLINE void list_init(list_t *list)
{
list->next = list;
list->prev = list;
}
static JSON_INLINE void list_insert(list_t *list, list_t *node)
{
node->next = list;
node->prev = list->prev;
list->prev->next = node;
list->prev = node;
}
static JSON_INLINE void list_remove(list_t *list)
{
list->prev->next = list->next;
list->next->prev = list->prev;
}
static JSON_INLINE int bucket_is_empty(hashtable_t *hashtable, bucket_t *bucket)
{
return bucket->first == &hashtable->list && bucket->first == bucket->last;
}
static void insert_to_bucket(hashtable_t *hashtable, bucket_t *bucket,
list_t *list)
{
if(bucket_is_empty(hashtable, bucket))
{
list_insert(&hashtable->list, list);
bucket->first = bucket->last = list;
}
else
{
list_insert(bucket->first, list);
bucket->first = list;
}
}
static pair_t *hashtable_find_pair(hashtable_t *hashtable, bucket_t *bucket,
const char *key, size_t hash)
{
list_t *list;
pair_t *pair;
if(bucket_is_empty(hashtable, bucket))
return NULL;
list = bucket->first;
while(1)
{
pair = list_to_pair(list);
if(pair->hash == hash && strcmp(pair->key, key) == 0)
return pair;
if(list == bucket->last)
break;
list = list->next;
}
return NULL;
}
/* returns 0 on success, -1 if key was not found */
static int hashtable_do_del(hashtable_t *hashtable,
const char *key, size_t hash)
{
pair_t *pair;
bucket_t *bucket;
size_t index;
index = hash & hashmask(hashtable->order);
bucket = &hashtable->buckets[index];
pair = hashtable_find_pair(hashtable, bucket, key, hash);
if(!pair)
return -1;
if(&pair->list == bucket->first && &pair->list == bucket->last)
bucket->first = bucket->last = &hashtable->list;
else if(&pair->list == bucket->first)
bucket->first = pair->list.next;
else if(&pair->list == bucket->last)
bucket->last = pair->list.prev;
list_remove(&pair->list);
json_decref(pair->value);
jsonp_free(pair);
hashtable->size--;
return 0;
}
static void hashtable_do_clear(hashtable_t *hashtable)
{
list_t *list, *next;
pair_t *pair;
for(list = hashtable->list.next; list != &hashtable->list; list = next)
{
next = list->next;
pair = list_to_pair(list);
json_decref(pair->value);
jsonp_free(pair);
}
}
static int hashtable_do_rehash(hashtable_t *hashtable)
{
list_t *list, *next;
pair_t *pair;
size_t i, index, new_size;
jsonp_free(hashtable->buckets);
hashtable->order++;
new_size = hashsize(hashtable->order);
hashtable->buckets = jsonp_malloc(new_size * sizeof(bucket_t));
if(!hashtable->buckets)
return -1;
for(i = 0; i < hashsize(hashtable->order); i++)
{
hashtable->buckets[i].first = hashtable->buckets[i].last =
&hashtable->list;
}
list = hashtable->list.next;
list_init(&hashtable->list);
for(; list != &hashtable->list; list = next) {
next = list->next;
pair = list_to_pair(list);
index = pair->hash % new_size;
insert_to_bucket(hashtable, &hashtable->buckets[index], &pair->list);
}
return 0;
}
int hashtable_init(hashtable_t *hashtable)
{
size_t i;
hashtable->size = 0;
hashtable->order = 3;
hashtable->buckets = jsonp_malloc(hashsize(hashtable->order) * sizeof(bucket_t));
if(!hashtable->buckets)
return -1;
list_init(&hashtable->list);
for(i = 0; i < hashsize(hashtable->order); i++)
{
hashtable->buckets[i].first = hashtable->buckets[i].last =
&hashtable->list;
}
return 0;
}
void hashtable_close(hashtable_t *hashtable)
{
hashtable_do_clear(hashtable);
jsonp_free(hashtable->buckets);
}
int hashtable_set(hashtable_t *hashtable,
const char *key, size_t serial,
json_t *value)
{
pair_t *pair;
bucket_t *bucket;
size_t hash, index;
/* rehash if the load ratio exceeds 1 */
if(hashtable->size >= hashsize(hashtable->order))
if(hashtable_do_rehash(hashtable))
return -1;
hash = hash_str(key);
index = hash & hashmask(hashtable->order);
bucket = &hashtable->buckets[index];
pair = hashtable_find_pair(hashtable, bucket, key, hash);
if(pair)
{
json_decref(pair->value);
pair->value = value;
}
else
{
/* offsetof(...) returns the size of pair_t without the last,
flexible member. This way, the correct amount is
allocated. */
pair = jsonp_malloc(offsetof(pair_t, key) + strlen(key) + 1);
if(!pair)
return -1;
pair->hash = hash;
pair->serial = serial;
strcpy(pair->key, key);
pair->value = value;
list_init(&pair->list);
insert_to_bucket(hashtable, bucket, &pair->list);
hashtable->size++;
}
return 0;
}
void *hashtable_get(hashtable_t *hashtable, const char *key)
{
pair_t *pair;
size_t hash;
bucket_t *bucket;
hash = hash_str(key);
bucket = &hashtable->buckets[hash & hashmask(hashtable->order)];
pair = hashtable_find_pair(hashtable, bucket, key, hash);
if(!pair)
return NULL;
return pair->value;
}
int hashtable_del(hashtable_t *hashtable, const char *key)
{
size_t hash = hash_str(key);
return hashtable_do_del(hashtable, key, hash);
}
void hashtable_clear(hashtable_t *hashtable)
{
size_t i;
hashtable_do_clear(hashtable);
for(i = 0; i < hashsize(hashtable->order); i++)
{
hashtable->buckets[i].first = hashtable->buckets[i].last =
&hashtable->list;
}
list_init(&hashtable->list);
hashtable->size = 0;
}
void *hashtable_iter(hashtable_t *hashtable)
{
return hashtable_iter_next(hashtable, &hashtable->list);
}
void *hashtable_iter_at(hashtable_t *hashtable, const char *key)
{
pair_t *pair;
size_t hash;
bucket_t *bucket;
hash = hash_str(key);
bucket = &hashtable->buckets[hash & hashmask(hashtable->order)];
pair = hashtable_find_pair(hashtable, bucket, key, hash);
if(!pair)
return NULL;
return &pair->list;
}
void *hashtable_iter_next(hashtable_t *hashtable, void *iter)
{
list_t *list = (list_t *)iter;
if(list->next == &hashtable->list)
return NULL;
return list->next;
}
void *hashtable_iter_key(void *iter)
{
pair_t *pair = list_to_pair((list_t *)iter);
return pair->key;
}
size_t hashtable_iter_serial(void *iter)
{
pair_t *pair = list_to_pair((list_t *)iter);
return pair->serial;
}
void *hashtable_iter_value(void *iter)
{
pair_t *pair = list_to_pair((list_t *)iter);
return pair->value;
}
void hashtable_iter_set(void *iter, json_t *value)
{
pair_t *pair = list_to_pair((list_t *)iter);
json_decref(pair->value);
pair->value = value;
}
+181
View File
@@ -0,0 +1,181 @@
/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* This library is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef HASHTABLE_H
#define HASHTABLE_H
struct hashtable_list {
struct hashtable_list *prev;
struct hashtable_list *next;
};
/* "pair" may be a bit confusing a name, but think of it as a
key-value pair. In this case, it just encodes some extra data,
too */
struct hashtable_pair {
size_t hash;
struct hashtable_list list;
json_t *value;
size_t serial;
char key[1];
};
struct hashtable_bucket {
struct hashtable_list *first;
struct hashtable_list *last;
};
typedef struct hashtable {
size_t size;
struct hashtable_bucket *buckets;
size_t order; /* hashtable has pow(2, order) buckets */
struct hashtable_list list;
} hashtable_t;
#define hashtable_key_to_iter(key_) \
(&(container_of(key_, struct hashtable_pair, key)->list))
/**
* hashtable_init - Initialize a hashtable object
*
* @hashtable: The (statically allocated) hashtable object
*
* Initializes a statically allocated hashtable object. The object
* should be cleared with hashtable_close when it's no longer used.
*
* Returns 0 on success, -1 on error (out of memory).
*/
int hashtable_init(hashtable_t *hashtable);
/**
* hashtable_close - Release all resources used by a hashtable object
*
* @hashtable: The hashtable
*
* Destroys a statically allocated hashtable object.
*/
void hashtable_close(hashtable_t *hashtable);
/**
* hashtable_set - Add/modify value in hashtable
*
* @hashtable: The hashtable object
* @key: The key
* @serial: For addition order of keys
* @value: The value
*
* If a value with the given key already exists, its value is replaced
* with the new value. Value is "stealed" in the sense that hashtable
* doesn't increment its refcount but decreases the refcount when the
* value is no longer needed.
*
* Returns 0 on success, -1 on failure (out of memory).
*/
int hashtable_set(hashtable_t *hashtable,
const char *key, size_t serial,
json_t *value);
/**
* hashtable_get - Get a value associated with a key
*
* @hashtable: The hashtable object
* @key: The key
*
* Returns value if it is found, or NULL otherwise.
*/
void *hashtable_get(hashtable_t *hashtable, const char *key);
/**
* hashtable_del - Remove a value from the hashtable
*
* @hashtable: The hashtable object
* @key: The key
*
* Returns 0 on success, or -1 if the key was not found.
*/
int hashtable_del(hashtable_t *hashtable, const char *key);
/**
* hashtable_clear - Clear hashtable
*
* @hashtable: The hashtable object
*
* Removes all items from the hashtable.
*/
void hashtable_clear(hashtable_t *hashtable);
/**
* hashtable_iter - Iterate over hashtable
*
* @hashtable: The hashtable object
*
* Returns an opaque iterator to the first element in the hashtable.
* The iterator should be passed to hashtable_iter_* functions.
* The hashtable items are not iterated over in any particular order.
*
* There's no need to free the iterator in any way. The iterator is
* valid as long as the item that is referenced by the iterator is not
* deleted. Other values may be added or deleted. In particular,
* hashtable_iter_next() may be called on an iterator, and after that
* the key/value pair pointed by the old iterator may be deleted.
*/
void *hashtable_iter(hashtable_t *hashtable);
/**
* hashtable_iter_at - Return an iterator at a specific key
*
* @hashtable: The hashtable object
* @key: The key that the iterator should point to
*
* Like hashtable_iter() but returns an iterator pointing to a
* specific key.
*/
void *hashtable_iter_at(hashtable_t *hashtable, const char *key);
/**
* hashtable_iter_next - Advance an iterator
*
* @hashtable: The hashtable object
* @iter: The iterator
*
* Returns a new iterator pointing to the next element in the
* hashtable or NULL if the whole hastable has been iterated over.
*/
void *hashtable_iter_next(hashtable_t *hashtable, void *iter);
/**
* hashtable_iter_key - Retrieve the key pointed by an iterator
*
* @iter: The iterator
*/
void *hashtable_iter_key(void *iter);
/**
* hashtable_iter_serial - Retrieve the serial number pointed to by an iterator
*
* @iter: The iterator
*/
size_t hashtable_iter_serial(void *iter);
/**
* hashtable_iter_value - Retrieve the value pointed by an iterator
*
* @iter: The iterator
*/
void *hashtable_iter_value(void *iter);
/**
* hashtable_iter_set - Set the value pointed by an iterator
*
* @iter: The iterator
* @value: The value to set
*/
void hashtable_iter_set(void *iter, json_t *value);
#endif
+278
View File
@@ -0,0 +1,278 @@
/* Generate sizeof(uint32_t) bytes of as random data as possible to seed
the hash function.
*/
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#include <stdio.h>
#include <time.h>
#ifdef HAVE_STDINT_H
#include <stdint.h>
#endif
#ifdef HAVE_FCNTL_H
#include <fcntl.h>
#endif
#ifdef HAVE_SCHED_H
#include <sched.h>
#endif
#ifdef HAVE_UNISTD_H
#include <unistd.h>
#endif
#ifdef HAVE_SYS_STAT_H
#include <sys/stat.h>
#endif
#ifdef HAVE_SYS_TIME_H
#include <sys/time.h>
#endif
#ifdef HAVE_SYS_TYPES_H
#include <sys/types.h>
#endif
#if defined(_WIN32)
/* For _getpid() */
#include <process.h>
#endif
#include "jansson.h"
static uint32_t buf_to_uint32(char *data) {
size_t i;
uint32_t result = 0;
for (i = 0; i < sizeof(uint32_t); i++)
result = (result << 8) | (unsigned char)data[i];
return result;
}
/* /dev/urandom */
#if !defined(_WIN32) && defined(USE_URANDOM)
static int seed_from_urandom(uint32_t *seed) {
/* Use unbuffered I/O if we have open(), close() and read(). Otherwise
fall back to fopen() */
char data[sizeof(uint32_t)];
int ok;
#if defined(HAVE_OPEN) && defined(HAVE_CLOSE) && defined(HAVE_READ)
int urandom;
urandom = open("/dev/urandom", O_RDONLY);
if (urandom == -1)
return 1;
ok = read(urandom, data, sizeof(uint32_t)) == sizeof(uint32_t);
close(urandom);
#else
FILE *urandom;
urandom = fopen("/dev/urandom", "rb");
if (!urandom)
return 1;
ok = fread(data, 1, sizeof(uint32_t), urandom) == sizeof(uint32_t);
fclose(urandom);
#endif
if (!ok)
return 1;
*seed = buf_to_uint32(data);
return 0;
}
#endif
/* Windows Crypto API */
#if defined(_WIN32) && defined(USE_WINDOWS_CRYPTOAPI)
#include <windows.h>
#include <wincrypt.h>
typedef BOOL (WINAPI *CRYPTACQUIRECONTEXTA)(HCRYPTPROV *phProv, LPCSTR pszContainer, LPCSTR pszProvider, DWORD dwProvType, DWORD dwFlags);
typedef BOOL (WINAPI *CRYPTGENRANDOM)(HCRYPTPROV hProv, DWORD dwLen, BYTE *pbBuffer);
typedef BOOL (WINAPI *CRYPTRELEASECONTEXT)(HCRYPTPROV hProv, DWORD dwFlags);
static int seed_from_windows_cryptoapi(uint32_t *seed)
{
HINSTANCE hAdvAPI32 = NULL;
CRYPTACQUIRECONTEXTA pCryptAcquireContext = NULL;
CRYPTGENRANDOM pCryptGenRandom = NULL;
CRYPTRELEASECONTEXT pCryptReleaseContext = NULL;
HCRYPTPROV hCryptProv = 0;
BYTE data[sizeof(uint32_t)];
int ok;
hAdvAPI32 = GetModuleHandle("advapi32.dll");
if(hAdvAPI32 == NULL)
return 1;
pCryptAcquireContext = (CRYPTACQUIRECONTEXTA)GetProcAddress(hAdvAPI32, "CryptAcquireContextA");
if (!pCryptAcquireContext)
return 1;
pCryptGenRandom = (CRYPTGENRANDOM)GetProcAddress(hAdvAPI32, "CryptGenRandom");
if (!pCryptGenRandom)
return 1;
pCryptReleaseContext = (CRYPTRELEASECONTEXT)GetProcAddress(hAdvAPI32, "CryptReleaseContext");
if (!pCryptReleaseContext)
return 1;
if (!pCryptAcquireContext(&hCryptProv, NULL, NULL, PROV_RSA_FULL, CRYPT_VERIFYCONTEXT))
return 1;
ok = CryptGenRandom(hCryptProv, sizeof(uint32_t), data);
pCryptReleaseContext(hCryptProv, 0);
if (!ok)
return 1;
*seed = buf_to_uint32((char *)data);
return 0;
}
#endif
/* gettimeofday() and getpid() */
static int seed_from_timestamp_and_pid(uint32_t *seed) {
#ifdef HAVE_GETTIMEOFDAY
/* XOR of seconds and microseconds */
struct timeval tv;
gettimeofday(&tv, NULL);
*seed = (uint32_t)tv.tv_sec ^ (uint32_t)tv.tv_usec;
#else
/* Seconds only */
*seed = (uint32_t)time(NULL);
#endif
/* XOR with PID for more randomness */
#if defined(_WIN32)
*seed ^= (uint32_t)_getpid();
#elif defined(HAVE_GETPID)
*seed ^= (uint32_t)getpid();
#endif
return 0;
}
static uint32_t generate_seed() {
uint32_t seed;
int done = 0;
#if !defined(_WIN32) && defined(USE_URANDOM)
if (!done && seed_from_urandom(&seed) == 0)
done = 1;
#endif
#if defined(_WIN32) && defined(USE_WINDOWS_CRYPTOAPI)
if (!done && seed_from_windows_cryptoapi(&seed) == 0)
done = 1;
#endif
if (!done) {
/* Fall back to timestamp and PID if no better randomness is
available */
seed_from_timestamp_and_pid(&seed);
}
/* Make sure the seed is never zero */
if (seed == 0)
seed = 1;
return seed;
}
volatile uint32_t hashtable_seed = 0;
#if defined(HAVE_ATOMIC_BUILTINS) && (defined(HAVE_SCHED_YIELD) || !defined(_WIN32))
static volatile char seed_initialized = 0;
void json_object_seed(size_t seed) {
uint32_t new_seed = (uint32_t)seed;
if (hashtable_seed == 0) {
if (__atomic_test_and_set(&seed_initialized, __ATOMIC_RELAXED) == 0) {
/* Do the seeding ourselves */
if (new_seed == 0)
new_seed = generate_seed();
__atomic_store_n(&hashtable_seed, new_seed, __ATOMIC_RELEASE);
} else {
/* Wait for another thread to do the seeding */
do {
#ifdef HAVE_SCHED_YIELD
sched_yield();
#endif
} while(__atomic_load_n(&hashtable_seed, __ATOMIC_ACQUIRE) == 0);
}
}
}
#elif defined(HAVE_SYNC_BUILTINS) && (defined(HAVE_SCHED_YIELD) || !defined(_WIN32))
void json_object_seed(size_t seed) {
uint32_t new_seed = (uint32_t)seed;
if (hashtable_seed == 0) {
if (new_seed == 0) {
/* Explicit synchronization fences are not supported by the
__sync builtins, so every thread getting here has to
generate the seed value.
*/
new_seed = generate_seed();
}
do {
if (__sync_bool_compare_and_swap(&hashtable_seed, 0, new_seed)) {
/* We were the first to seed */
break;
} else {
/* Wait for another thread to do the seeding */
#ifdef HAVE_SCHED_YIELD
sched_yield();
#endif
}
} while(hashtable_seed == 0);
}
}
#elif defined(_WIN32) && !defined(FORCE_THREAD_UNSAFE_SEED)
static long seed_initialized = 0;
void json_object_seed(size_t seed) {
uint32_t new_seed = (uint32_t)seed;
if (hashtable_seed == 0) {
if (InterlockedIncrement(&seed_initialized) == 1) {
/* Do the seeding ourselves */
if (new_seed == 0)
new_seed = generate_seed();
hashtable_seed = new_seed;
} else {
/* Wait for another thread to do the seeding */
do {
SwitchToThread();
} while (hashtable_seed == 0);
}
}
}
#else
/* Fall back to a thread-unsafe version */
void json_object_seed(size_t seed) {
uint32_t new_seed = (uint32_t)seed;
if (hashtable_seed == 0) {
if (new_seed == 0)
new_seed = generate_seed();
hashtable_seed = new_seed;
}
}
#endif
+64
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EXPORTS
json_delete
json_true
json_false
json_null
json_string
json_string_nocheck
json_string_value
json_string_set
json_string_set_nocheck
json_integer
json_integer_value
json_integer_set
json_real
json_real_value
json_real_set
json_number_value
json_array
json_array_size
json_array_get
json_array_set_new
json_array_append_new
json_array_insert_new
json_array_remove
json_array_clear
json_array_extend
json_object
json_object_size
json_object_get
json_object_set_new
json_object_set_new_nocheck
json_object_del
json_object_clear
json_object_update
json_object_update_existing
json_object_update_missing
json_object_iter
json_object_iter_at
json_object_iter_next
json_object_iter_key
json_object_iter_value
json_object_iter_set_new
json_object_key_to_iter
json_object_seed
json_dumps
json_dumpf
json_dump_file
json_dump_callback
json_loads
json_loadb
json_loadf
json_load_file
json_load_callback
json_equal
json_copy
json_deep_copy
json_pack
json_pack_ex
json_vpack_ex
json_unpack
json_unpack_ex
json_vunpack_ex
json_set_alloc_funcs
+282
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/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef JANSSON_H
#define JANSSON_H
#include <stdio.h>
#include <stdlib.h> /* for size_t */
#include <stdarg.h>
#include <jansson_config.h>
#ifdef __cplusplus
extern "C" {
#endif
/* version */
#define JANSSON_MAJOR_VERSION 2
#define JANSSON_MINOR_VERSION 6
#define JANSSON_MICRO_VERSION 0
/* Micro version is omitted if it's 0 */
#define JANSSON_VERSION "2.6"
/* Version as a 3-byte hex number, e.g. 0x010201 == 1.2.1. Use this
for numeric comparisons, e.g. #if JANSSON_VERSION_HEX >= ... */
#define JANSSON_VERSION_HEX ((JANSSON_MAJOR_VERSION << 16) | \
(JANSSON_MINOR_VERSION << 8) | \
(JANSSON_MICRO_VERSION << 0))
/* types */
typedef enum {
JSON_OBJECT,
JSON_ARRAY,
JSON_STRING,
JSON_INTEGER,
JSON_REAL,
JSON_TRUE,
JSON_FALSE,
JSON_NULL
} json_type;
typedef struct json_t {
json_type type;
size_t refcount;
} json_t;
#ifndef JANSSON_USING_CMAKE /* disabled if using cmake */
#if JSON_INTEGER_IS_LONG_LONG
#ifdef _WIN32
#define JSON_INTEGER_FORMAT "I64d"
#else
#define JSON_INTEGER_FORMAT "lld"
#endif
typedef long long json_int_t;
#else
#define JSON_INTEGER_FORMAT "ld"
typedef long json_int_t;
#endif /* JSON_INTEGER_IS_LONG_LONG */
#endif
#define json_typeof(json) ((json)->type)
#define json_is_object(json) (json && json_typeof(json) == JSON_OBJECT)
#define json_is_array(json) (json && json_typeof(json) == JSON_ARRAY)
#define json_is_string(json) (json && json_typeof(json) == JSON_STRING)
#define json_is_integer(json) (json && json_typeof(json) == JSON_INTEGER)
#define json_is_real(json) (json && json_typeof(json) == JSON_REAL)
#define json_is_number(json) (json_is_integer(json) || json_is_real(json))
#define json_is_true(json) (json && json_typeof(json) == JSON_TRUE)
#define json_is_false(json) (json && json_typeof(json) == JSON_FALSE)
#define json_is_boolean(json) (json_is_true(json) || json_is_false(json))
#define json_is_null(json) (json && json_typeof(json) == JSON_NULL)
/* construction, destruction, reference counting */
json_t *json_object(void);
json_t *json_array(void);
json_t *json_string(const char *value);
json_t *json_string_nocheck(const char *value);
json_t *json_integer(json_int_t value);
json_t *json_real(double value);
json_t *json_true(void);
json_t *json_false(void);
#define json_boolean(val) ((val) ? json_true() : json_false())
json_t *json_null(void);
static JSON_INLINE
json_t *json_incref(json_t *json)
{
if(json && json->refcount != (size_t)-1)
++json->refcount;
return json;
}
/* do not call json_delete directly */
void json_delete(json_t *json);
static JSON_INLINE
void json_decref(json_t *json)
{
if(json && json->refcount != (size_t)-1 && --json->refcount == 0)
json_delete(json);
}
/* error reporting */
#define JSON_ERROR_TEXT_LENGTH 160
#define JSON_ERROR_SOURCE_LENGTH 80
typedef struct {
int line;
int column;
int position;
char source[JSON_ERROR_SOURCE_LENGTH];
char text[JSON_ERROR_TEXT_LENGTH];
} json_error_t;
/* getters, setters, manipulation */
void json_object_seed(size_t seed);
size_t json_object_size(const json_t *object);
json_t *json_object_get(const json_t *object, const char *key);
int json_object_set_new(json_t *object, const char *key, json_t *value);
int json_object_set_new_nocheck(json_t *object, const char *key, json_t *value);
int json_object_del(json_t *object, const char *key);
int json_object_clear(json_t *object);
int json_object_update(json_t *object, json_t *other);
int json_object_update_existing(json_t *object, json_t *other);
int json_object_update_missing(json_t *object, json_t *other);
void *json_object_iter(json_t *object);
void *json_object_iter_at(json_t *object, const char *key);
void *json_object_key_to_iter(const char *key);
void *json_object_iter_next(json_t *object, void *iter);
const char *json_object_iter_key(void *iter);
json_t *json_object_iter_value(void *iter);
int json_object_iter_set_new(json_t *object, void *iter, json_t *value);
#define json_object_foreach(object, key, value) \
for(key = json_object_iter_key(json_object_iter(object)); \
key && (value = json_object_iter_value(json_object_key_to_iter(key))); \
key = json_object_iter_key(json_object_iter_next(object, json_object_key_to_iter(key))))
#define json_array_foreach(array, index, value) \
for(index = 0; \
index < json_array_size(array) && (value = json_array_get(array, index)); \
index++)
static JSON_INLINE
int json_object_set(json_t *object, const char *key, json_t *value)
{
return json_object_set_new(object, key, json_incref(value));
}
static JSON_INLINE
int json_object_set_nocheck(json_t *object, const char *key, json_t *value)
{
return json_object_set_new_nocheck(object, key, json_incref(value));
}
static JSON_INLINE
int json_object_iter_set(json_t *object, void *iter, json_t *value)
{
return json_object_iter_set_new(object, iter, json_incref(value));
}
size_t json_array_size(const json_t *array);
json_t *json_array_get(const json_t *array, size_t index);
int json_array_set_new(json_t *array, size_t index, json_t *value);
int json_array_append_new(json_t *array, json_t *value);
int json_array_insert_new(json_t *array, size_t index, json_t *value);
int json_array_remove(json_t *array, size_t index);
int json_array_clear(json_t *array);
int json_array_extend(json_t *array, json_t *other);
static JSON_INLINE
int json_array_set(json_t *array, size_t ind, json_t *value)
{
return json_array_set_new(array, ind, json_incref(value));
}
static JSON_INLINE
int json_array_append(json_t *array, json_t *value)
{
return json_array_append_new(array, json_incref(value));
}
static JSON_INLINE
int json_array_insert(json_t *array, size_t ind, json_t *value)
{
return json_array_insert_new(array, ind, json_incref(value));
}
const char *json_string_value(const json_t *string);
json_int_t json_integer_value(const json_t *integer);
double json_real_value(const json_t *real);
double json_number_value(const json_t *json);
int json_string_set(json_t *string, const char *value);
int json_string_set_nocheck(json_t *string, const char *value);
int json_integer_set(json_t *integer, json_int_t value);
int json_real_set(json_t *real, double value);
/* pack, unpack */
json_t *json_pack(const char *fmt, ...);
json_t *json_pack_ex(json_error_t *error, size_t flags, const char *fmt, ...);
json_t *json_vpack_ex(json_error_t *error, size_t flags, const char *fmt, va_list ap);
#define JSON_VALIDATE_ONLY 0x1
#define JSON_STRICT 0x2
int json_unpack(json_t *root, const char *fmt, ...);
int json_unpack_ex(json_t *root, json_error_t *error, size_t flags, const char *fmt, ...);
int json_vunpack_ex(json_t *root, json_error_t *error, size_t flags, const char *fmt, va_list ap);
/* equality */
int json_equal(json_t *value1, json_t *value2);
/* copying */
json_t *json_copy(json_t *value);
json_t *json_deep_copy(const json_t *value);
/* decoding */
#define JSON_REJECT_DUPLICATES 0x1
#define JSON_DISABLE_EOF_CHECK 0x2
#define JSON_DECODE_ANY 0x4
#define JSON_DECODE_INT_AS_REAL 0x8
typedef size_t (*json_load_callback_t)(void *buffer, size_t buflen, void *data);
json_t *json_loads(const char *input, size_t flags, json_error_t *error);
json_t *json_loadb(const char *buffer, size_t buflen, size_t flags, json_error_t *error);
json_t *json_loadf(FILE *input, size_t flags, json_error_t *error);
json_t *json_load_file(const char *path, size_t flags, json_error_t *error);
json_t *json_load_callback(json_load_callback_t callback, void *data, size_t flags, json_error_t *error);
/* encoding */
#define JSON_INDENT(n) (n & 0x1F)
#define JSON_COMPACT 0x20
#define JSON_ENSURE_ASCII 0x40
#define JSON_SORT_KEYS 0x80
#define JSON_PRESERVE_ORDER 0x100
#define JSON_ENCODE_ANY 0x200
#define JSON_ESCAPE_SLASH 0x400
typedef int (*json_dump_callback_t)(const char *buffer, size_t size, void *data);
char *json_dumps(const json_t *json, size_t flags);
int json_dumpf(const json_t *json, FILE *output, size_t flags);
int json_dump_file(const json_t *json, const char *path, size_t flags);
int json_dump_callback(const json_t *json, json_dump_callback_t callback, void *data, size_t flags);
/* custom memory allocation */
typedef void *(*json_malloc_t)(size_t);
typedef void (*json_free_t)(void *);
void json_set_alloc_funcs(json_malloc_t malloc_fn, json_free_t free_fn);
#ifdef __cplusplus
}
#endif
#endif
+39
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@@ -0,0 +1,39 @@
/*
* Copyright (c) 2010-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*
*
* This file specifies a part of the site-specific configuration for
* Jansson, namely those things that affect the public API in
* jansson.h.
*
* The configure script copies this file to jansson_config.h and
* replaces @var@ substitutions by values that fit your system. If you
* cannot run the configure script, you can do the value substitution
* by hand.
*/
#ifndef JANSSON_CONFIG_H
#define JANSSON_CONFIG_H
/* If your compiler supports the inline keyword in C, JSON_INLINE is
defined to `inline', otherwise empty. In C++, the inline is always
supported. */
#ifdef __cplusplus
#define JSON_INLINE inline
#else
#define JSON_INLINE inline
#endif
/* If your compiler supports the `long long` type and the strtoll()
library function, JSON_INTEGER_IS_LONG_LONG is defined to 1,
otherwise to 0. */
#define JSON_INTEGER_IS_LONG_LONG 1
/* If locale.h and localeconv() are available, define to 1,
otherwise to 0. */
#define JSON_HAVE_LOCALECONV 1
#endif
+39
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@@ -0,0 +1,39 @@
/*
* Copyright (c) 2010-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*
*
* This file specifies a part of the site-specific configuration for
* Jansson, namely those things that affect the public API in
* jansson.h.
*
* The configure script copies this file to jansson_config.h and
* replaces @var@ substitutions by values that fit your system. If you
* cannot run the configure script, you can do the value substitution
* by hand.
*/
#ifndef JANSSON_CONFIG_H
#define JANSSON_CONFIG_H
/* If your compiler supports the inline keyword in C, JSON_INLINE is
defined to `inline', otherwise empty. In C++, the inline is always
supported. */
#ifdef __cplusplus
#define JSON_INLINE inline
#else
#define JSON_INLINE @json_inline@
#endif
/* If your compiler supports the `long long` type and the strtoll()
library function, JSON_INTEGER_IS_LONG_LONG is defined to 1,
otherwise to 0. */
#define JSON_INTEGER_IS_LONG_LONG @json_have_long_long@
/* If locale.h and localeconv() are available, define to 1,
otherwise to 0. */
#define JSON_HAVE_LOCALECONV @json_have_localeconv@
#endif
+93
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@@ -0,0 +1,93 @@
/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef JANSSON_PRIVATE_H
#define JANSSON_PRIVATE_H
#include <stddef.h>
#include "jansson.h"
#include "hashtable.h"
#include "strbuffer.h"
#define container_of(ptr_, type_, member_) \
((type_ *)((char *)ptr_ - offsetof(type_, member_)))
/* On some platforms, max() may already be defined */
#ifndef max
#define max(a, b) ((a) > (b) ? (a) : (b))
#endif
/* va_copy is a C99 feature. In C89 implementations, it's sometimes
available as __va_copy. If not, memcpy() should do the trick. */
#ifndef va_copy
#ifdef __va_copy
#define va_copy __va_copy
#else
#define va_copy(a, b) memcpy(&(a), &(b), sizeof(va_list))
#endif
#endif
typedef struct {
json_t json;
hashtable_t hashtable;
size_t serial;
int visited;
} json_object_t;
typedef struct {
json_t json;
size_t size;
size_t entries;
json_t **table;
int visited;
} json_array_t;
typedef struct {
json_t json;
char *value;
} json_string_t;
typedef struct {
json_t json;
double value;
} json_real_t;
typedef struct {
json_t json;
json_int_t value;
} json_integer_t;
#define json_to_object(json_) container_of(json_, json_object_t, json)
#define json_to_array(json_) container_of(json_, json_array_t, json)
#define json_to_string(json_) container_of(json_, json_string_t, json)
#define json_to_real(json_) container_of(json_, json_real_t, json)
#define json_to_integer(json_) container_of(json_, json_integer_t, json)
void jsonp_error_init(json_error_t *error, const char *source);
void jsonp_error_set_source(json_error_t *error, const char *source);
void jsonp_error_set(json_error_t *error, int line, int column,
size_t position, const char *msg, ...);
void jsonp_error_vset(json_error_t *error, int line, int column,
size_t position, const char *msg, va_list ap);
/* Locale independent string<->double conversions */
int jsonp_strtod(strbuffer_t *strbuffer, double *out);
int jsonp_dtostr(char *buffer, size_t size, double value);
/* Wrappers for custom memory functions */
void* jsonp_malloc(size_t size);
void jsonp_free(void *ptr);
char *jsonp_strndup(const char *str, size_t length);
char *jsonp_strdup(const char *str);
/* Windows compatibility */
#ifdef _WIN32
#define snprintf _snprintf
#define vsnprintf _vsnprintf
#endif
#endif
File diff suppressed because it is too large Load Diff
+366
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/*
-------------------------------------------------------------------------------
lookup3.c, by Bob Jenkins, May 2006, Public Domain.
These are functions for producing 32-bit hashes for hash table lookup.
hashword(), hashlittle(), hashlittle2(), hashbig(), mix(), and final()
are externally useful functions. Routines to test the hash are included
if SELF_TEST is defined. You can use this free for any purpose. It's in
the public domain. It has no warranty.
You probably want to use hashlittle(). hashlittle() and hashbig()
hash byte arrays. hashlittle() is is faster than hashbig() on
little-endian machines. Intel and AMD are little-endian machines.
On second thought, you probably want hashlittle2(), which is identical to
hashlittle() except it returns two 32-bit hashes for the price of one.
You could implement hashbig2() if you wanted but I haven't bothered here.
If you want to find a hash of, say, exactly 7 integers, do
a = i1; b = i2; c = i3;
mix(a,b,c);
a += i4; b += i5; c += i6;
mix(a,b,c);
a += i7;
final(a,b,c);
then use c as the hash value. If you have a variable length array of
4-byte integers to hash, use hashword(). If you have a byte array (like
a character string), use hashlittle(). If you have several byte arrays, or
a mix of things, see the comments above hashlittle().
Why is this so big? I read 12 bytes at a time into 3 4-byte integers,
then mix those integers. This is fast (you can do a lot more thorough
mixing with 12*3 instructions on 3 integers than you can with 3 instructions
on 1 byte), but shoehorning those bytes into integers efficiently is messy.
-------------------------------------------------------------------------------
*/
#include <stdlib.h>
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#ifdef HAVE_STDINT_H
#include <stdint.h> /* defines uint32_t etc */
#endif
#ifdef HAVE_SYS_PARAM_H
#include <sys/param.h> /* attempt to define endianness */
#endif
#ifdef HAVE_ENDIAN_H
# include <endian.h> /* attempt to define endianness */
#endif
/*
* My best guess at if you are big-endian or little-endian. This may
* need adjustment.
*/
#if (defined(__BYTE_ORDER) && defined(__LITTLE_ENDIAN) && \
__BYTE_ORDER == __LITTLE_ENDIAN) || \
(defined(i386) || defined(__i386__) || defined(__i486__) || \
defined(__i586__) || defined(__i686__) || defined(vax) || defined(MIPSEL))
# define HASH_LITTLE_ENDIAN 1
# define HASH_BIG_ENDIAN 0
#elif (defined(__BYTE_ORDER) && defined(__BIG_ENDIAN) && \
__BYTE_ORDER == __BIG_ENDIAN) || \
(defined(sparc) || defined(POWERPC) || defined(mc68000) || defined(sel))
# define HASH_LITTLE_ENDIAN 0
# define HASH_BIG_ENDIAN 1
#else
# define HASH_LITTLE_ENDIAN 0
# define HASH_BIG_ENDIAN 0
#endif
#define hashsize(n) ((uint32_t)1<<(n))
#define hashmask(n) (hashsize(n)-1)
#define rot(x,k) (((x)<<(k)) | ((x)>>(32-(k))))
/*
-------------------------------------------------------------------------------
mix -- mix 3 32-bit values reversibly.
This is reversible, so any information in (a,b,c) before mix() is
still in (a,b,c) after mix().
If four pairs of (a,b,c) inputs are run through mix(), or through
mix() in reverse, there are at least 32 bits of the output that
are sometimes the same for one pair and different for another pair.
This was tested for:
* pairs that differed by one bit, by two bits, in any combination
of top bits of (a,b,c), or in any combination of bottom bits of
(a,b,c).
* "differ" is defined as +, -, ^, or ~^. For + and -, I transformed
the output delta to a Gray code (a^(a>>1)) so a string of 1's (as
is commonly produced by subtraction) look like a single 1-bit
difference.
* the base values were pseudorandom, all zero but one bit set, or
all zero plus a counter that starts at zero.
Some k values for my "a-=c; a^=rot(c,k); c+=b;" arrangement that
satisfy this are
4 6 8 16 19 4
9 15 3 18 27 15
14 9 3 7 17 3
Well, "9 15 3 18 27 15" didn't quite get 32 bits diffing
for "differ" defined as + with a one-bit base and a two-bit delta. I
used http://burtleburtle.net/bob/hash/avalanche.html to choose
the operations, constants, and arrangements of the variables.
This does not achieve avalanche. There are input bits of (a,b,c)
that fail to affect some output bits of (a,b,c), especially of a. The
most thoroughly mixed value is c, but it doesn't really even achieve
avalanche in c.
This allows some parallelism. Read-after-writes are good at doubling
the number of bits affected, so the goal of mixing pulls in the opposite
direction as the goal of parallelism. I did what I could. Rotates
seem to cost as much as shifts on every machine I could lay my hands
on, and rotates are much kinder to the top and bottom bits, so I used
rotates.
-------------------------------------------------------------------------------
*/
#define mix(a,b,c) \
{ \
a -= c; a ^= rot(c, 4); c += b; \
b -= a; b ^= rot(a, 6); a += c; \
c -= b; c ^= rot(b, 8); b += a; \
a -= c; a ^= rot(c,16); c += b; \
b -= a; b ^= rot(a,19); a += c; \
c -= b; c ^= rot(b, 4); b += a; \
}
/*
-------------------------------------------------------------------------------
final -- final mixing of 3 32-bit values (a,b,c) into c
Pairs of (a,b,c) values differing in only a few bits will usually
produce values of c that look totally different. This was tested for
* pairs that differed by one bit, by two bits, in any combination
of top bits of (a,b,c), or in any combination of bottom bits of
(a,b,c).
* "differ" is defined as +, -, ^, or ~^. For + and -, I transformed
the output delta to a Gray code (a^(a>>1)) so a string of 1's (as
is commonly produced by subtraction) look like a single 1-bit
difference.
* the base values were pseudorandom, all zero but one bit set, or
all zero plus a counter that starts at zero.
These constants passed:
14 11 25 16 4 14 24
12 14 25 16 4 14 24
and these came close:
4 8 15 26 3 22 24
10 8 15 26 3 22 24
11 8 15 26 3 22 24
-------------------------------------------------------------------------------
*/
#define final(a,b,c) \
{ \
c ^= b; c -= rot(b,14); \
a ^= c; a -= rot(c,11); \
b ^= a; b -= rot(a,25); \
c ^= b; c -= rot(b,16); \
a ^= c; a -= rot(c,4); \
b ^= a; b -= rot(a,14); \
c ^= b; c -= rot(b,24); \
}
/*
-------------------------------------------------------------------------------
hashlittle() -- hash a variable-length key into a 32-bit value
k : the key (the unaligned variable-length array of bytes)
length : the length of the key, counting by bytes
initval : can be any 4-byte value
Returns a 32-bit value. Every bit of the key affects every bit of
the return value. Two keys differing by one or two bits will have
totally different hash values.
The best hash table sizes are powers of 2. There is no need to do
mod a prime (mod is sooo slow!). If you need less than 32 bits,
use a bitmask. For example, if you need only 10 bits, do
h = (h & hashmask(10));
In which case, the hash table should have hashsize(10) elements.
If you are hashing n strings (uint8_t **)k, do it like this:
for (i=0, h=0; i<n; ++i) h = hashlittle( k[i], len[i], h);
By Bob Jenkins, 2006. [email protected]. You may use this
code any way you wish, private, educational, or commercial. It's free.
Use for hash table lookup, or anything where one collision in 2^^32 is
acceptable. Do NOT use for cryptographic purposes.
-------------------------------------------------------------------------------
*/
static uint32_t hashlittle(const void *key, size_t length, uint32_t initval)
{
uint32_t a,b,c; /* internal state */
union { const void *ptr; size_t i; } u; /* needed for Mac Powerbook G4 */
/* Set up the internal state */
a = b = c = 0xdeadbeef + ((uint32_t)length) + initval;
u.ptr = key;
if (HASH_LITTLE_ENDIAN && ((u.i & 0x3) == 0)) {
const uint32_t *k = (const uint32_t *)key; /* read 32-bit chunks */
#ifdef VALGRIND
const uint8_t *k8;
#endif
/*------ all but last block: aligned reads and affect 32 bits of (a,b,c) */
while (length > 12)
{
a += k[0];
b += k[1];
c += k[2];
mix(a,b,c);
length -= 12;
k += 3;
}
/*----------------------------- handle the last (probably partial) block */
/*
* "k[2]&0xffffff" actually reads beyond the end of the string, but
* then masks off the part it's not allowed to read. Because the
* string is aligned, the masked-off tail is in the same word as the
* rest of the string. Every machine with memory protection I've seen
* does it on word boundaries, so is OK with this. But VALGRIND will
* still catch it and complain. The masking trick does make the hash
* noticably faster for short strings (like English words).
*/
#ifndef VALGRIND
switch(length)
{
case 12: c+=k[2]; b+=k[1]; a+=k[0]; break;
case 11: c+=k[2]&0xffffff; b+=k[1]; a+=k[0]; break;
case 10: c+=k[2]&0xffff; b+=k[1]; a+=k[0]; break;
case 9 : c+=k[2]&0xff; b+=k[1]; a+=k[0]; break;
case 8 : b+=k[1]; a+=k[0]; break;
case 7 : b+=k[1]&0xffffff; a+=k[0]; break;
case 6 : b+=k[1]&0xffff; a+=k[0]; break;
case 5 : b+=k[1]&0xff; a+=k[0]; break;
case 4 : a+=k[0]; break;
case 3 : a+=k[0]&0xffffff; break;
case 2 : a+=k[0]&0xffff; break;
case 1 : a+=k[0]&0xff; break;
case 0 : return c; /* zero length strings require no mixing */
}
#else /* make valgrind happy */
k8 = (const uint8_t *)k;
switch(length)
{
case 12: c+=k[2]; b+=k[1]; a+=k[0]; break;
case 11: c+=((uint32_t)k8[10])<<16; /* fall through */
case 10: c+=((uint32_t)k8[9])<<8; /* fall through */
case 9 : c+=k8[8]; /* fall through */
case 8 : b+=k[1]; a+=k[0]; break;
case 7 : b+=((uint32_t)k8[6])<<16; /* fall through */
case 6 : b+=((uint32_t)k8[5])<<8; /* fall through */
case 5 : b+=k8[4]; /* fall through */
case 4 : a+=k[0]; break;
case 3 : a+=((uint32_t)k8[2])<<16; /* fall through */
case 2 : a+=((uint32_t)k8[1])<<8; /* fall through */
case 1 : a+=k8[0]; break;
case 0 : return c;
}
#endif /* !valgrind */
} else if (HASH_LITTLE_ENDIAN && ((u.i & 0x1) == 0)) {
const uint16_t *k = (const uint16_t *)key; /* read 16-bit chunks */
const uint8_t *k8;
/*--------------- all but last block: aligned reads and different mixing */
while (length > 12)
{
a += k[0] + (((uint32_t)k[1])<<16);
b += k[2] + (((uint32_t)k[3])<<16);
c += k[4] + (((uint32_t)k[5])<<16);
mix(a,b,c);
length -= 12;
k += 6;
}
/*----------------------------- handle the last (probably partial) block */
k8 = (const uint8_t *)k;
switch(length)
{
case 12: c+=k[4]+(((uint32_t)k[5])<<16);
b+=k[2]+(((uint32_t)k[3])<<16);
a+=k[0]+(((uint32_t)k[1])<<16);
break;
case 11: c+=((uint32_t)k8[10])<<16; /* fall through */
case 10: c+=k[4];
b+=k[2]+(((uint32_t)k[3])<<16);
a+=k[0]+(((uint32_t)k[1])<<16);
break;
case 9 : c+=k8[8]; /* fall through */
case 8 : b+=k[2]+(((uint32_t)k[3])<<16);
a+=k[0]+(((uint32_t)k[1])<<16);
break;
case 7 : b+=((uint32_t)k8[6])<<16; /* fall through */
case 6 : b+=k[2];
a+=k[0]+(((uint32_t)k[1])<<16);
break;
case 5 : b+=k8[4]; /* fall through */
case 4 : a+=k[0]+(((uint32_t)k[1])<<16);
break;
case 3 : a+=((uint32_t)k8[2])<<16; /* fall through */
case 2 : a+=k[0];
break;
case 1 : a+=k8[0];
break;
case 0 : return c; /* zero length requires no mixing */
}
} else { /* need to read the key one byte at a time */
const uint8_t *k = (const uint8_t *)key;
/*--------------- all but the last block: affect some 32 bits of (a,b,c) */
while (length > 12)
{
a += k[0];
a += ((uint32_t)k[1])<<8;
a += ((uint32_t)k[2])<<16;
a += ((uint32_t)k[3])<<24;
b += k[4];
b += ((uint32_t)k[5])<<8;
b += ((uint32_t)k[6])<<16;
b += ((uint32_t)k[7])<<24;
c += k[8];
c += ((uint32_t)k[9])<<8;
c += ((uint32_t)k[10])<<16;
c += ((uint32_t)k[11])<<24;
mix(a,b,c);
length -= 12;
k += 12;
}
/*-------------------------------- last block: affect all 32 bits of (c) */
switch(length) /* all the case statements fall through */
{
case 12: c+=((uint32_t)k[11])<<24;
case 11: c+=((uint32_t)k[10])<<16;
case 10: c+=((uint32_t)k[9])<<8;
case 9 : c+=k[8];
case 8 : b+=((uint32_t)k[7])<<24;
case 7 : b+=((uint32_t)k[6])<<16;
case 6 : b+=((uint32_t)k[5])<<8;
case 5 : b+=k[4];
case 4 : a+=((uint32_t)k[3])<<24;
case 3 : a+=((uint32_t)k[2])<<16;
case 2 : a+=((uint32_t)k[1])<<8;
case 1 : a+=k[0];
break;
case 0 : return c;
}
}
final(a,b,c);
return c;
}
+56
View File
@@ -0,0 +1,56 @@
/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
* Copyright (c) 2011-2012 Basile Starynkevitch <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify it
* under the terms of the MIT license. See LICENSE for details.
*/
#include <stdlib.h>
#include <string.h>
#include "jansson.h"
#include "jansson_private.h"
/* memory function pointers */
static json_malloc_t do_malloc = malloc;
static json_free_t do_free = free;
void *jsonp_malloc(size_t size)
{
if(!size)
return NULL;
return (*do_malloc)(size);
}
void jsonp_free(void *ptr)
{
if(!ptr)
return;
(*do_free)(ptr);
}
char *jsonp_strdup(const char *str)
{
char *new_str;
size_t len;
len = strlen(str);
if(len == (size_t)-1)
return NULL;
new_str = jsonp_malloc(len + 1);
if(!new_str)
return NULL;
memcpy(new_str, str, len + 1);
return new_str;
}
void json_set_alloc_funcs(json_malloc_t malloc_fn, json_free_t free_fn)
{
do_malloc = malloc_fn;
do_free = free_fn;
}
+762
View File
@@ -0,0 +1,762 @@
/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
* Copyright (c) 2011-2012 Graeme Smecher <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#include <string.h>
#include "jansson.h"
#include "jansson_private.h"
#include "utf.h"
typedef struct {
int line;
int column;
size_t pos;
char token;
} token_t;
typedef struct {
const char *start;
const char *fmt;
token_t prev_token;
token_t token;
token_t next_token;
json_error_t *error;
size_t flags;
int line;
int column;
size_t pos;
} scanner_t;
#define token(scanner) ((scanner)->token.token)
static const char * const type_names[] = {
"object",
"array",
"string",
"integer",
"real",
"true",
"false",
"null"
};
#define type_name(x) type_names[json_typeof(x)]
static const char unpack_value_starters[] = "{[siIbfFOon";
static void scanner_init(scanner_t *s, json_error_t *error,
size_t flags, const char *fmt)
{
s->error = error;
s->flags = flags;
s->fmt = s->start = fmt;
memset(&s->prev_token, 0, sizeof(token_t));
memset(&s->token, 0, sizeof(token_t));
memset(&s->next_token, 0, sizeof(token_t));
s->line = 1;
s->column = 0;
s->pos = 0;
}
static void next_token(scanner_t *s)
{
const char *t;
s->prev_token = s->token;
if(s->next_token.line) {
s->token = s->next_token;
s->next_token.line = 0;
return;
}
t = s->fmt;
s->column++;
s->pos++;
/* skip space and ignored chars */
while(*t == ' ' || *t == '\t' || *t == '\n' || *t == ',' || *t == ':') {
if(*t == '\n') {
s->line++;
s->column = 1;
}
else
s->column++;
s->pos++;
t++;
}
s->token.token = *t;
s->token.line = s->line;
s->token.column = s->column;
s->token.pos = s->pos;
t++;
s->fmt = t;
}
static void prev_token(scanner_t *s)
{
s->next_token = s->token;
s->token = s->prev_token;
}
static void set_error(scanner_t *s, const char *source, const char *fmt, ...)
{
va_list ap;
va_start(ap, fmt);
jsonp_error_vset(s->error, s->token.line, s->token.column, s->token.pos,
fmt, ap);
jsonp_error_set_source(s->error, source);
va_end(ap);
}
static json_t *pack(scanner_t *s, va_list *ap);
/* ours will be set to 1 if jsonp_free() must be called for the result
afterwards */
static char *read_string(scanner_t *s, va_list *ap,
const char *purpose, int *ours)
{
char t;
strbuffer_t strbuff;
const char *str;
size_t length;
char *result;
next_token(s);
t = token(s);
prev_token(s);
if(t != '#' && t != '+') {
/* Optimize the simple case */
str = va_arg(*ap, const char *);
if(!str) {
set_error(s, "<args>", "NULL string argument");
return NULL;
}
if(!utf8_check_string(str, -1)) {
set_error(s, "<args>", "Invalid UTF-8 %s", purpose);
return NULL;
}
*ours = 0;
return (char *)str;
}
strbuffer_init(&strbuff);
while(1) {
str = va_arg(*ap, const char *);
if(!str) {
set_error(s, "<args>", "NULL string argument");
strbuffer_close(&strbuff);
return NULL;
}
next_token(s);
if(token(s) == '#') {
length = va_arg(*ap, int);
}
else {
prev_token(s);
length = strlen(str);
}
if(strbuffer_append_bytes(&strbuff, str, length) == -1) {
set_error(s, "<internal>", "Out of memory");
strbuffer_close(&strbuff);
return NULL;
}
next_token(s);
if(token(s) != '+') {
prev_token(s);
break;
}
}
result = strbuffer_steal_value(&strbuff);
if(!utf8_check_string(result, -1)) {
set_error(s, "<args>", "Invalid UTF-8 %s", purpose);
return NULL;
}
*ours = 1;
return result;
}
static json_t *pack_object(scanner_t *s, va_list *ap)
{
json_t *object = json_object();
next_token(s);
while(token(s) != '}') {
char *key;
int ours;
json_t *value;
if(!token(s)) {
set_error(s, "<format>", "Unexpected end of format string");
goto error;
}
if(token(s) != 's') {
set_error(s, "<format>", "Expected format 's', got '%c'", token(s));
goto error;
}
key = read_string(s, ap, "object key", &ours);
if(!key)
goto error;
next_token(s);
value = pack(s, ap);
if(!value)
goto error;
if(json_object_set_new_nocheck(object, key, value)) {
if(ours)
jsonp_free(key);
set_error(s, "<internal>", "Unable to add key \"%s\"", key);
goto error;
}
if(ours)
jsonp_free(key);
next_token(s);
}
return object;
error:
json_decref(object);
return NULL;
}
static json_t *pack_array(scanner_t *s, va_list *ap)
{
json_t *array = json_array();
next_token(s);
while(token(s) != ']') {
json_t *value;
if(!token(s)) {
set_error(s, "<format>", "Unexpected end of format string");
goto error;
}
value = pack(s, ap);
if(!value)
goto error;
if(json_array_append_new(array, value)) {
set_error(s, "<internal>", "Unable to append to array");
goto error;
}
next_token(s);
}
return array;
error:
json_decref(array);
return NULL;
}
static json_t *pack(scanner_t *s, va_list *ap)
{
switch(token(s)) {
case '{':
return pack_object(s, ap);
case '[':
return pack_array(s, ap);
case 's': { /* string */
char *str;
int ours;
json_t *result;
str = read_string(s, ap, "string", &ours);
if(!str)
return NULL;
result = json_string_nocheck(str);
if(ours)
jsonp_free(str);
return result;
}
case 'n': /* null */
return json_null();
case 'b': /* boolean */
return va_arg(*ap, int) ? json_true() : json_false();
case 'i': /* integer from int */
return json_integer(va_arg(*ap, int));
case 'I': /* integer from json_int_t */
return json_integer(va_arg(*ap, json_int_t));
case 'f': /* real */
return json_real(va_arg(*ap, double));
case 'O': /* a json_t object; increments refcount */
return json_incref(va_arg(*ap, json_t *));
case 'o': /* a json_t object; doesn't increment refcount */
return va_arg(*ap, json_t *);
default:
set_error(s, "<format>", "Unexpected format character '%c'",
token(s));
return NULL;
}
}
static int unpack(scanner_t *s, json_t *root, va_list *ap);
static int unpack_object(scanner_t *s, json_t *root, va_list *ap)
{
int ret = -1;
int strict = 0;
/* Use a set (emulated by a hashtable) to check that all object
keys are accessed. Checking that the correct number of keys
were accessed is not enough, as the same key can be unpacked
multiple times.
*/
hashtable_t key_set;
if(hashtable_init(&key_set)) {
set_error(s, "<internal>", "Out of memory");
return -1;
}
if(root && !json_is_object(root)) {
set_error(s, "<validation>", "Expected object, got %s",
type_name(root));
goto out;
}
next_token(s);
while(token(s) != '}') {
const char *key;
json_t *value;
int opt = 0;
if(strict != 0) {
set_error(s, "<format>", "Expected '}' after '%c', got '%c'",
(strict == 1 ? '!' : '*'), token(s));
goto out;
}
if(!token(s)) {
set_error(s, "<format>", "Unexpected end of format string");
goto out;
}
if(token(s) == '!' || token(s) == '*') {
strict = (token(s) == '!' ? 1 : -1);
next_token(s);
continue;
}
if(token(s) != 's') {
set_error(s, "<format>", "Expected format 's', got '%c'", token(s));
goto out;
}
key = va_arg(*ap, const char *);
if(!key) {
set_error(s, "<args>", "NULL object key");
goto out;
}
next_token(s);
if(token(s) == '?') {
opt = 1;
next_token(s);
}
if(!root) {
/* skipping */
value = NULL;
}
else {
value = json_object_get(root, key);
if(!value && !opt) {
set_error(s, "<validation>", "Object item not found: %s", key);
goto out;
}
}
if(unpack(s, value, ap))
goto out;
hashtable_set(&key_set, key, 0, json_null());
next_token(s);
}
if(strict == 0 && (s->flags & JSON_STRICT))
strict = 1;
if(root && strict == 1 && key_set.size != json_object_size(root)) {
long diff = (long)json_object_size(root) - (long)key_set.size;
set_error(s, "<validation>", "%li object item(s) left unpacked", diff);
goto out;
}
ret = 0;
out:
hashtable_close(&key_set);
return ret;
}
static int unpack_array(scanner_t *s, json_t *root, va_list *ap)
{
size_t i = 0;
int strict = 0;
if(root && !json_is_array(root)) {
set_error(s, "<validation>", "Expected array, got %s", type_name(root));
return -1;
}
next_token(s);
while(token(s) != ']') {
json_t *value;
if(strict != 0) {
set_error(s, "<format>", "Expected ']' after '%c', got '%c'",
(strict == 1 ? '!' : '*'),
token(s));
return -1;
}
if(!token(s)) {
set_error(s, "<format>", "Unexpected end of format string");
return -1;
}
if(token(s) == '!' || token(s) == '*') {
strict = (token(s) == '!' ? 1 : -1);
next_token(s);
continue;
}
if(!strchr(unpack_value_starters, token(s))) {
set_error(s, "<format>", "Unexpected format character '%c'",
token(s));
return -1;
}
if(!root) {
/* skipping */
value = NULL;
}
else {
value = json_array_get(root, i);
if(!value) {
set_error(s, "<validation>", "Array index %lu out of range",
(unsigned long)i);
return -1;
}
}
if(unpack(s, value, ap))
return -1;
next_token(s);
i++;
}
if(strict == 0 && (s->flags & JSON_STRICT))
strict = 1;
if(root && strict == 1 && i != json_array_size(root)) {
long diff = (long)json_array_size(root) - (long)i;
set_error(s, "<validation>", "%li array item(s) left unpacked", diff);
return -1;
}
return 0;
}
static int unpack(scanner_t *s, json_t *root, va_list *ap)
{
switch(token(s))
{
case '{':
return unpack_object(s, root, ap);
case '[':
return unpack_array(s, root, ap);
case 's':
if(root && !json_is_string(root)) {
set_error(s, "<validation>", "Expected string, got %s",
type_name(root));
return -1;
}
if(!(s->flags & JSON_VALIDATE_ONLY)) {
const char **target;
target = va_arg(*ap, const char **);
if(!target) {
set_error(s, "<args>", "NULL string argument");
return -1;
}
if(root)
*target = json_string_value(root);
}
return 0;
case 'i':
if(root && !json_is_integer(root)) {
set_error(s, "<validation>", "Expected integer, got %s",
type_name(root));
return -1;
}
if(!(s->flags & JSON_VALIDATE_ONLY)) {
int *target = va_arg(*ap, int*);
if(root)
*target = (int)json_integer_value(root);
}
return 0;
case 'I':
if(root && !json_is_integer(root)) {
set_error(s, "<validation>", "Expected integer, got %s",
type_name(root));
return -1;
}
if(!(s->flags & JSON_VALIDATE_ONLY)) {
json_int_t *target = va_arg(*ap, json_int_t*);
if(root)
*target = json_integer_value(root);
}
return 0;
case 'b':
if(root && !json_is_boolean(root)) {
set_error(s, "<validation>", "Expected true or false, got %s",
type_name(root));
return -1;
}
if(!(s->flags & JSON_VALIDATE_ONLY)) {
int *target = va_arg(*ap, int*);
if(root)
*target = json_is_true(root);
}
return 0;
case 'f':
if(root && !json_is_real(root)) {
set_error(s, "<validation>", "Expected real, got %s",
type_name(root));
return -1;
}
if(!(s->flags & JSON_VALIDATE_ONLY)) {
double *target = va_arg(*ap, double*);
if(root)
*target = json_real_value(root);
}
return 0;
case 'F':
if(root && !json_is_number(root)) {
set_error(s, "<validation>", "Expected real or integer, got %s",
type_name(root));
return -1;
}
if(!(s->flags & JSON_VALIDATE_ONLY)) {
double *target = va_arg(*ap, double*);
if(root)
*target = json_number_value(root);
}
return 0;
case 'O':
if(root && !(s->flags & JSON_VALIDATE_ONLY))
json_incref(root);
/* Fall through */
case 'o':
if(!(s->flags & JSON_VALIDATE_ONLY)) {
json_t **target = va_arg(*ap, json_t**);
if(root)
*target = root;
}
return 0;
case 'n':
/* Never assign, just validate */
if(root && !json_is_null(root)) {
set_error(s, "<validation>", "Expected null, got %s",
type_name(root));
return -1;
}
return 0;
default:
set_error(s, "<format>", "Unexpected format character '%c'",
token(s));
return -1;
}
}
json_t *json_vpack_ex(json_error_t *error, size_t flags,
const char *fmt, va_list ap)
{
scanner_t s;
va_list ap_copy;
json_t *value;
if(!fmt || !*fmt) {
jsonp_error_init(error, "<format>");
jsonp_error_set(error, -1, -1, 0, "NULL or empty format string");
return NULL;
}
jsonp_error_init(error, NULL);
scanner_init(&s, error, flags, fmt);
next_token(&s);
va_copy(ap_copy, ap);
value = pack(&s, &ap_copy);
va_end(ap_copy);
if(!value)
return NULL;
next_token(&s);
if(token(&s)) {
json_decref(value);
set_error(&s, "<format>", "Garbage after format string");
return NULL;
}
return value;
}
json_t *json_pack_ex(json_error_t *error, size_t flags, const char *fmt, ...)
{
json_t *value;
va_list ap;
va_start(ap, fmt);
value = json_vpack_ex(error, flags, fmt, ap);
va_end(ap);
return value;
}
json_t *json_pack(const char *fmt, ...)
{
json_t *value;
va_list ap;
va_start(ap, fmt);
value = json_vpack_ex(NULL, 0, fmt, ap);
va_end(ap);
return value;
}
int json_vunpack_ex(json_t *root, json_error_t *error, size_t flags,
const char *fmt, va_list ap)
{
scanner_t s;
va_list ap_copy;
if(!root) {
jsonp_error_init(error, "<root>");
jsonp_error_set(error, -1, -1, 0, "NULL root value");
return -1;
}
if(!fmt || !*fmt) {
jsonp_error_init(error, "<format>");
jsonp_error_set(error, -1, -1, 0, "NULL or empty format string");
return -1;
}
jsonp_error_init(error, NULL);
scanner_init(&s, error, flags, fmt);
next_token(&s);
va_copy(ap_copy, ap);
if(unpack(&s, root, &ap_copy)) {
va_end(ap_copy);
return -1;
}
va_end(ap_copy);
next_token(&s);
if(token(&s)) {
set_error(&s, "<format>", "Garbage after format string");
return -1;
}
return 0;
}
int json_unpack_ex(json_t *root, json_error_t *error, size_t flags, const char *fmt, ...)
{
int ret;
va_list ap;
va_start(ap, fmt);
ret = json_vunpack_ex(root, error, flags, fmt, ap);
va_end(ap);
return ret;
}
int json_unpack(json_t *root, const char *fmt, ...)
{
int ret;
va_list ap;
va_start(ap, fmt);
ret = json_vunpack_ex(root, NULL, 0, fmt, ap);
va_end(ap);
return ret;
}
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/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef _GNU_SOURCE
#define _GNU_SOURCE
#endif
#include <stdlib.h>
#include <string.h>
#include "jansson_private.h"
#include "strbuffer.h"
#define STRBUFFER_MIN_SIZE 16
#define STRBUFFER_FACTOR 2
#define STRBUFFER_SIZE_MAX ((size_t)-1)
int strbuffer_init(strbuffer_t *strbuff)
{
strbuff->size = STRBUFFER_MIN_SIZE;
strbuff->length = 0;
strbuff->value = jsonp_malloc(strbuff->size);
if(!strbuff->value)
return -1;
/* initialize to empty */
strbuff->value[0] = '\0';
return 0;
}
void strbuffer_close(strbuffer_t *strbuff)
{
if(strbuff->value)
jsonp_free(strbuff->value);
strbuff->size = 0;
strbuff->length = 0;
strbuff->value = NULL;
}
void strbuffer_clear(strbuffer_t *strbuff)
{
strbuff->length = 0;
strbuff->value[0] = '\0';
}
const char *strbuffer_value(const strbuffer_t *strbuff)
{
return strbuff->value;
}
char *strbuffer_steal_value(strbuffer_t *strbuff)
{
char *result = strbuff->value;
strbuff->value = NULL;
return result;
}
int strbuffer_append(strbuffer_t *strbuff, const char *string)
{
return strbuffer_append_bytes(strbuff, string, strlen(string));
}
int strbuffer_append_byte(strbuffer_t *strbuff, char byte)
{
return strbuffer_append_bytes(strbuff, &byte, 1);
}
int strbuffer_append_bytes(strbuffer_t *strbuff, const char *data, size_t size)
{
if(size >= strbuff->size - strbuff->length)
{
size_t new_size;
char *new_value;
/* avoid integer overflow */
if (strbuff->size > STRBUFFER_SIZE_MAX / STRBUFFER_FACTOR
|| size > STRBUFFER_SIZE_MAX - 1
|| strbuff->length > STRBUFFER_SIZE_MAX - 1 - size)
return -1;
new_size = max(strbuff->size * STRBUFFER_FACTOR,
strbuff->length + size + 1);
new_value = jsonp_malloc(new_size);
if(!new_value)
return -1;
memcpy(new_value, strbuff->value, strbuff->length);
jsonp_free(strbuff->value);
strbuff->value = new_value;
strbuff->size = new_size;
}
memcpy(strbuff->value + strbuff->length, data, size);
strbuff->length += size;
strbuff->value[strbuff->length] = '\0';
return 0;
}
char strbuffer_pop(strbuffer_t *strbuff)
{
if(strbuff->length > 0) {
char c = strbuff->value[--strbuff->length];
strbuff->value[strbuff->length] = '\0';
return c;
}
else
return '\0';
}
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/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef STRBUFFER_H
#define STRBUFFER_H
typedef struct {
char *value;
size_t length; /* bytes used */
size_t size; /* bytes allocated */
} strbuffer_t;
int strbuffer_init(strbuffer_t *strbuff);
void strbuffer_close(strbuffer_t *strbuff);
void strbuffer_clear(strbuffer_t *strbuff);
const char *strbuffer_value(const strbuffer_t *strbuff);
/* Steal the value and close the strbuffer */
char *strbuffer_steal_value(strbuffer_t *strbuff);
int strbuffer_append(strbuffer_t *strbuff, const char *string);
int strbuffer_append_byte(strbuffer_t *strbuff, char byte);
int strbuffer_append_bytes(strbuffer_t *strbuff, const char *data, size_t size);
char strbuffer_pop(strbuffer_t *strbuff);
#endif
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#include <assert.h>
#include <errno.h>
#include <stdio.h>
#include <string.h>
#include "jansson_private.h"
#include "strbuffer.h"
/* need config.h to get the correct snprintf */
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#if JSON_HAVE_LOCALECONV
#include <locale.h>
/*
- This code assumes that the decimal separator is exactly one
character.
- If setlocale() is called by another thread between the call to
localeconv() and the call to sprintf() or strtod(), the result may
be wrong. setlocale() is not thread-safe and should not be used
this way. Multi-threaded programs should use uselocale() instead.
*/
static void to_locale(strbuffer_t *strbuffer)
{
const char *point;
char *pos;
point = localeconv()->decimal_point;
if(*point == '.') {
/* No conversion needed */
return;
}
pos = strchr(strbuffer->value, '.');
if(pos)
*pos = *point;
}
static void from_locale(char *buffer)
{
const char *point;
char *pos;
point = localeconv()->decimal_point;
if(*point == '.') {
/* No conversion needed */
return;
}
pos = strchr(buffer, *point);
if(pos)
*pos = '.';
}
#endif
int jsonp_strtod(strbuffer_t *strbuffer, double *out)
{
double value;
char *end;
#if JSON_HAVE_LOCALECONV
to_locale(strbuffer);
#endif
errno = 0;
value = strtod(strbuffer->value, &end);
assert(end == strbuffer->value + strbuffer->length);
if(errno == ERANGE && value != 0) {
/* Overflow */
return -1;
}
*out = value;
return 0;
}
int jsonp_dtostr(char *buffer, size_t size, double value)
{
int ret;
char *start, *end;
size_t length;
ret = snprintf(buffer, size, "%.17g", value);
if(ret < 0)
return -1;
length = (size_t)ret;
if(length >= size)
return -1;
#if JSON_HAVE_LOCALECONV
from_locale(buffer);
#endif
/* Make sure there's a dot or 'e' in the output. Otherwise
a real is converted to an integer when decoding */
if(strchr(buffer, '.') == NULL &&
strchr(buffer, 'e') == NULL)
{
if(length + 3 >= size) {
/* No space to append ".0" */
return -1;
}
buffer[length] = '.';
buffer[length + 1] = '0';
buffer[length + 2] = '\0';
length += 2;
}
/* Remove leading '+' from positive exponent. Also remove leading
zeros from exponents (added by some printf() implementations) */
start = strchr(buffer, 'e');
if(start) {
start++;
end = start + 1;
if(*start == '-')
start++;
while(*end == '0')
end++;
if(end != start) {
memmove(start, end, length - (size_t)(end - buffer));
length -= (size_t)(end - start);
}
}
return (int)length;
}
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/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#include <string.h>
#include "utf.h"
int utf8_encode(int32_t codepoint, char *buffer, int *size)
{
if(codepoint < 0)
return -1;
else if(codepoint < 0x80)
{
buffer[0] = (char)codepoint;
*size = 1;
}
else if(codepoint < 0x800)
{
buffer[0] = 0xC0 + ((codepoint & 0x7C0) >> 6);
buffer[1] = 0x80 + ((codepoint & 0x03F));
*size = 2;
}
else if(codepoint < 0x10000)
{
buffer[0] = 0xE0 + ((codepoint & 0xF000) >> 12);
buffer[1] = 0x80 + ((codepoint & 0x0FC0) >> 6);
buffer[2] = 0x80 + ((codepoint & 0x003F));
*size = 3;
}
else if(codepoint <= 0x10FFFF)
{
buffer[0] = 0xF0 + ((codepoint & 0x1C0000) >> 18);
buffer[1] = 0x80 + ((codepoint & 0x03F000) >> 12);
buffer[2] = 0x80 + ((codepoint & 0x000FC0) >> 6);
buffer[3] = 0x80 + ((codepoint & 0x00003F));
*size = 4;
}
else
return -1;
return 0;
}
int utf8_check_first(char byte)
{
unsigned char u = (unsigned char)byte;
if(u < 0x80)
return 1;
if(0x80 <= u && u <= 0xBF) {
/* second, third or fourth byte of a multi-byte
sequence, i.e. a "continuation byte" */
return 0;
}
else if(u == 0xC0 || u == 0xC1) {
/* overlong encoding of an ASCII byte */
return 0;
}
else if(0xC2 <= u && u <= 0xDF) {
/* 2-byte sequence */
return 2;
}
else if(0xE0 <= u && u <= 0xEF) {
/* 3-byte sequence */
return 3;
}
else if(0xF0 <= u && u <= 0xF4) {
/* 4-byte sequence */
return 4;
}
else { /* u >= 0xF5 */
/* Restricted (start of 4-, 5- or 6-byte sequence) or invalid
UTF-8 */
return 0;
}
}
int utf8_check_full(const char *buffer, int size, int32_t *codepoint)
{
int i;
int32_t value = 0;
unsigned char u = (unsigned char)buffer[0];
if(size == 2)
{
value = u & 0x1F;
}
else if(size == 3)
{
value = u & 0xF;
}
else if(size == 4)
{
value = u & 0x7;
}
else
return 0;
for(i = 1; i < size; i++)
{
u = (unsigned char)buffer[i];
if(u < 0x80 || u > 0xBF) {
/* not a continuation byte */
return 0;
}
value = (value << 6) + (u & 0x3F);
}
if(value > 0x10FFFF) {
/* not in Unicode range */
return 0;
}
else if(0xD800 <= value && value <= 0xDFFF) {
/* invalid code point (UTF-16 surrogate halves) */
return 0;
}
else if((size == 2 && value < 0x80) ||
(size == 3 && value < 0x800) ||
(size == 4 && value < 0x10000)) {
/* overlong encoding */
return 0;
}
if(codepoint)
*codepoint = value;
return 1;
}
const char *utf8_iterate(const char *buffer, int32_t *codepoint)
{
int count;
int32_t value;
if(!*buffer)
return buffer;
count = utf8_check_first(buffer[0]);
if(count <= 0)
return NULL;
if(count == 1)
value = (unsigned char)buffer[0];
else
{
if(!utf8_check_full(buffer, count, &value))
return NULL;
}
if(codepoint)
*codepoint = value;
return buffer + count;
}
int utf8_check_string(const char *string, int length)
{
int i;
if(length == -1)
length = strlen(string);
for(i = 0; i < length; i++)
{
int count = utf8_check_first(string[i]);
if(count == 0)
return 0;
else if(count > 1)
{
if(i + count > length)
return 0;
if(!utf8_check_full(&string[i], count, NULL))
return 0;
i += count - 1;
}
}
return 1;
}
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/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef UTF_H
#define UTF_H
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#ifdef HAVE_STDINT_H
#include <stdint.h>
#endif
int utf8_encode(int codepoint, char *buffer, int *size);
int utf8_check_first(char byte);
int utf8_check_full(const char *buffer, int size, int32_t *codepoint);
const char *utf8_iterate(const char *buffer, int32_t *codepoint);
int utf8_check_string(const char *string, int length);
#endif
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/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifndef _GNU_SOURCE
#define _GNU_SOURCE
#endif
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#include <stddef.h>
#include <stdlib.h>
#include <string.h>
#include <math.h>
#ifdef HAVE_STDINT_H
#include <stdint.h>
#endif
#include "jansson.h"
#include "hashtable.h"
#include "jansson_private.h"
#include "utf.h"
/* Work around nonstandard isnan() and isinf() implementations */
#ifndef isnan
static JSON_INLINE int isnan(double x) { return x != x; }
#endif
#ifndef isinf
static JSON_INLINE int isinf(double x) { return !isnan(x) && isnan(x - x); }
#endif
static JSON_INLINE void json_init(json_t *json, json_type type)
{
json->type = type;
json->refcount = 1;
}
/*** object ***/
extern volatile uint32_t hashtable_seed;
json_t *json_object(void)
{
json_object_t *object = jsonp_malloc(sizeof(json_object_t));
if(!object)
return NULL;
if (!hashtable_seed) {
/* Autoseed */
json_object_seed(0);
}
json_init(&object->json, JSON_OBJECT);
if(hashtable_init(&object->hashtable))
{
jsonp_free(object);
return NULL;
}
object->serial = 0;
object->visited = 0;
return &object->json;
}
static void json_delete_object(json_object_t *object)
{
hashtable_close(&object->hashtable);
jsonp_free(object);
}
size_t json_object_size(const json_t *json)
{
json_object_t *object;
if(!json_is_object(json))
return 0;
object = json_to_object(json);
return object->hashtable.size;
}
json_t *json_object_get(const json_t *json, const char *key)
{
json_object_t *object;
if(!json_is_object(json))
return NULL;
object = json_to_object(json);
return hashtable_get(&object->hashtable, key);
}
int json_object_set_new_nocheck(json_t *json, const char *key, json_t *value)
{
json_object_t *object;
if(!value)
return -1;
if(!key || !json_is_object(json) || json == value)
{
json_decref(value);
return -1;
}
object = json_to_object(json);
if(hashtable_set(&object->hashtable, key, object->serial++, value))
{
json_decref(value);
return -1;
}
return 0;
}
int json_object_set_new(json_t *json, const char *key, json_t *value)
{
if(!key || !utf8_check_string(key, -1))
{
json_decref(value);
return -1;
}
return json_object_set_new_nocheck(json, key, value);
}
int json_object_del(json_t *json, const char *key)
{
json_object_t *object;
if(!json_is_object(json))
return -1;
object = json_to_object(json);
return hashtable_del(&object->hashtable, key);
}
int json_object_clear(json_t *json)
{
json_object_t *object;
if(!json_is_object(json))
return -1;
object = json_to_object(json);
hashtable_clear(&object->hashtable);
object->serial = 0;
return 0;
}
int json_object_update(json_t *object, json_t *other)
{
const char *key;
json_t *value;
if(!json_is_object(object) || !json_is_object(other))
return -1;
json_object_foreach(other, key, value) {
if(json_object_set_nocheck(object, key, value))
return -1;
}
return 0;
}
int json_object_update_existing(json_t *object, json_t *other)
{
const char *key;
json_t *value;
if(!json_is_object(object) || !json_is_object(other))
return -1;
json_object_foreach(other, key, value) {
if(json_object_get(object, key))
json_object_set_nocheck(object, key, value);
}
return 0;
}
int json_object_update_missing(json_t *object, json_t *other)
{
const char *key;
json_t *value;
if(!json_is_object(object) || !json_is_object(other))
return -1;
json_object_foreach(other, key, value) {
if(!json_object_get(object, key))
json_object_set_nocheck(object, key, value);
}
return 0;
}
void *json_object_iter(json_t *json)
{
json_object_t *object;
if(!json_is_object(json))
return NULL;
object = json_to_object(json);
return hashtable_iter(&object->hashtable);
}
void *json_object_iter_at(json_t *json, const char *key)
{
json_object_t *object;
if(!key || !json_is_object(json))
return NULL;
object = json_to_object(json);
return hashtable_iter_at(&object->hashtable, key);
}
void *json_object_iter_next(json_t *json, void *iter)
{
json_object_t *object;
if(!json_is_object(json) || iter == NULL)
return NULL;
object = json_to_object(json);
return hashtable_iter_next(&object->hashtable, iter);
}
const char *json_object_iter_key(void *iter)
{
if(!iter)
return NULL;
return hashtable_iter_key(iter);
}
json_t *json_object_iter_value(void *iter)
{
if(!iter)
return NULL;
return (json_t *)hashtable_iter_value(iter);
}
int json_object_iter_set_new(json_t *json, void *iter, json_t *value)
{
if(!json_is_object(json) || !iter || !value)
return -1;
hashtable_iter_set(iter, value);
return 0;
}
void *json_object_key_to_iter(const char *key)
{
if(!key)
return NULL;
return hashtable_key_to_iter(key);
}
static int json_object_equal(json_t *object1, json_t *object2)
{
const char *key;
json_t *value1, *value2;
if(json_object_size(object1) != json_object_size(object2))
return 0;
json_object_foreach(object1, key, value1) {
value2 = json_object_get(object2, key);
if(!json_equal(value1, value2))
return 0;
}
return 1;
}
static json_t *json_object_copy(json_t *object)
{
json_t *result;
const char *key;
json_t *value;
result = json_object();
if(!result)
return NULL;
json_object_foreach(object, key, value)
json_object_set_nocheck(result, key, value);
return result;
}
static json_t *json_object_deep_copy(const json_t *object)
{
json_t *result;
void *iter;
result = json_object();
if(!result)
return NULL;
/* Cannot use json_object_foreach because object has to be cast
non-const */
iter = json_object_iter((json_t *)object);
while(iter) {
const char *key;
const json_t *value;
key = json_object_iter_key(iter);
value = json_object_iter_value(iter);
json_object_set_new_nocheck(result, key, json_deep_copy(value));
iter = json_object_iter_next((json_t *)object, iter);
}
return result;
}
/*** array ***/
json_t *json_array(void)
{
json_array_t *array = jsonp_malloc(sizeof(json_array_t));
if(!array)
return NULL;
json_init(&array->json, JSON_ARRAY);
array->entries = 0;
array->size = 8;
array->table = jsonp_malloc(array->size * sizeof(json_t *));
if(!array->table) {
jsonp_free(array);
return NULL;
}
array->visited = 0;
return &array->json;
}
static void json_delete_array(json_array_t *array)
{
size_t i;
for(i = 0; i < array->entries; i++)
json_decref(array->table[i]);
jsonp_free(array->table);
jsonp_free(array);
}
size_t json_array_size(const json_t *json)
{
if(!json_is_array(json))
return 0;
return json_to_array(json)->entries;
}
json_t *json_array_get(const json_t *json, size_t index)
{
json_array_t *array;
if(!json_is_array(json))
return NULL;
array = json_to_array(json);
if(index >= array->entries)
return NULL;
return array->table[index];
}
int json_array_set_new(json_t *json, size_t index, json_t *value)
{
json_array_t *array;
if(!value)
return -1;
if(!json_is_array(json) || json == value)
{
json_decref(value);
return -1;
}
array = json_to_array(json);
if(index >= array->entries)
{
json_decref(value);
return -1;
}
json_decref(array->table[index]);
array->table[index] = value;
return 0;
}
static void array_move(json_array_t *array, size_t dest,
size_t src, size_t count)
{
memmove(&array->table[dest], &array->table[src], count * sizeof(json_t *));
}
static void array_copy(json_t **dest, size_t dpos,
json_t **src, size_t spos,
size_t count)
{
memcpy(&dest[dpos], &src[spos], count * sizeof(json_t *));
}
static json_t **json_array_grow(json_array_t *array,
size_t amount,
int copy)
{
size_t new_size;
json_t **old_table, **new_table;
if(array->entries + amount <= array->size)
return array->table;
old_table = array->table;
new_size = max(array->size + amount, array->size * 2);
new_table = jsonp_malloc(new_size * sizeof(json_t *));
if(!new_table)
return NULL;
array->size = new_size;
array->table = new_table;
if(copy) {
array_copy(array->table, 0, old_table, 0, array->entries);
jsonp_free(old_table);
return array->table;
}
return old_table;
}
int json_array_append_new(json_t *json, json_t *value)
{
json_array_t *array;
if(!value)
return -1;
if(!json_is_array(json) || json == value)
{
json_decref(value);
return -1;
}
array = json_to_array(json);
if(!json_array_grow(array, 1, 1)) {
json_decref(value);
return -1;
}
array->table[array->entries] = value;
array->entries++;
return 0;
}
int json_array_insert_new(json_t *json, size_t index, json_t *value)
{
json_array_t *array;
json_t **old_table;
if(!value)
return -1;
if(!json_is_array(json) || json == value) {
json_decref(value);
return -1;
}
array = json_to_array(json);
if(index > array->entries) {
json_decref(value);
return -1;
}
old_table = json_array_grow(array, 1, 0);
if(!old_table) {
json_decref(value);
return -1;
}
if(old_table != array->table) {
array_copy(array->table, 0, old_table, 0, index);
array_copy(array->table, index + 1, old_table, index,
array->entries - index);
jsonp_free(old_table);
}
else
array_move(array, index + 1, index, array->entries - index);
array->table[index] = value;
array->entries++;
return 0;
}
int json_array_remove(json_t *json, size_t index)
{
json_array_t *array;
if(!json_is_array(json))
return -1;
array = json_to_array(json);
if(index >= array->entries)
return -1;
json_decref(array->table[index]);
/* If we're removing the last element, nothing has to be moved */
if(index < array->entries - 1)
array_move(array, index, index + 1, array->entries - index - 1);
array->entries--;
return 0;
}
int json_array_clear(json_t *json)
{
json_array_t *array;
size_t i;
if(!json_is_array(json))
return -1;
array = json_to_array(json);
for(i = 0; i < array->entries; i++)
json_decref(array->table[i]);
array->entries = 0;
return 0;
}
int json_array_extend(json_t *json, json_t *other_json)
{
json_array_t *array, *other;
size_t i;
if(!json_is_array(json) || !json_is_array(other_json))
return -1;
array = json_to_array(json);
other = json_to_array(other_json);
if(!json_array_grow(array, other->entries, 1))
return -1;
for(i = 0; i < other->entries; i++)
json_incref(other->table[i]);
array_copy(array->table, array->entries, other->table, 0, other->entries);
array->entries += other->entries;
return 0;
}
static int json_array_equal(json_t *array1, json_t *array2)
{
size_t i, size;
size = json_array_size(array1);
if(size != json_array_size(array2))
return 0;
for(i = 0; i < size; i++)
{
json_t *value1, *value2;
value1 = json_array_get(array1, i);
value2 = json_array_get(array2, i);
if(!json_equal(value1, value2))
return 0;
}
return 1;
}
static json_t *json_array_copy(json_t *array)
{
json_t *result;
size_t i;
result = json_array();
if(!result)
return NULL;
for(i = 0; i < json_array_size(array); i++)
json_array_append(result, json_array_get(array, i));
return result;
}
static json_t *json_array_deep_copy(const json_t *array)
{
json_t *result;
size_t i;
result = json_array();
if(!result)
return NULL;
for(i = 0; i < json_array_size(array); i++)
json_array_append_new(result, json_deep_copy(json_array_get(array, i)));
return result;
}
/*** string ***/
json_t *json_string_nocheck(const char *value)
{
json_string_t *string;
if(!value)
return NULL;
string = jsonp_malloc(sizeof(json_string_t));
if(!string)
return NULL;
json_init(&string->json, JSON_STRING);
string->value = jsonp_strdup(value);
if(!string->value) {
jsonp_free(string);
return NULL;
}
return &string->json;
}
json_t *json_string(const char *value)
{
if(!value || !utf8_check_string(value, -1))
return NULL;
return json_string_nocheck(value);
}
const char *json_string_value(const json_t *json)
{
if(!json_is_string(json))
return NULL;
return json_to_string(json)->value;
}
int json_string_set_nocheck(json_t *json, const char *value)
{
char *dup;
json_string_t *string;
if(!json_is_string(json) || !value)
return -1;
dup = jsonp_strdup(value);
if(!dup)
return -1;
string = json_to_string(json);
jsonp_free(string->value);
string->value = dup;
return 0;
}
int json_string_set(json_t *json, const char *value)
{
if(!value || !utf8_check_string(value, -1))
return -1;
return json_string_set_nocheck(json, value);
}
static void json_delete_string(json_string_t *string)
{
jsonp_free(string->value);
jsonp_free(string);
}
static int json_string_equal(json_t *string1, json_t *string2)
{
return strcmp(json_string_value(string1), json_string_value(string2)) == 0;
}
static json_t *json_string_copy(const json_t *string)
{
return json_string_nocheck(json_string_value(string));
}
/*** integer ***/
json_t *json_integer(json_int_t value)
{
json_integer_t *integer = jsonp_malloc(sizeof(json_integer_t));
if(!integer)
return NULL;
json_init(&integer->json, JSON_INTEGER);
integer->value = value;
return &integer->json;
}
json_int_t json_integer_value(const json_t *json)
{
if(!json_is_integer(json))
return 0;
return json_to_integer(json)->value;
}
int json_integer_set(json_t *json, json_int_t value)
{
if(!json_is_integer(json))
return -1;
json_to_integer(json)->value = value;
return 0;
}
static void json_delete_integer(json_integer_t *integer)
{
jsonp_free(integer);
}
static int json_integer_equal(json_t *integer1, json_t *integer2)
{
return json_integer_value(integer1) == json_integer_value(integer2);
}
static json_t *json_integer_copy(const json_t *integer)
{
return json_integer(json_integer_value(integer));
}
/*** real ***/
json_t *json_real(double value)
{
json_real_t *real;
if(isnan(value) || isinf(value))
return NULL;
real = jsonp_malloc(sizeof(json_real_t));
if(!real)
return NULL;
json_init(&real->json, JSON_REAL);
real->value = value;
return &real->json;
}
double json_real_value(const json_t *json)
{
if(!json_is_real(json))
return 0;
return json_to_real(json)->value;
}
int json_real_set(json_t *json, double value)
{
if(!json_is_real(json) || isnan(value) || isinf(value))
return -1;
json_to_real(json)->value = value;
return 0;
}
static void json_delete_real(json_real_t *real)
{
jsonp_free(real);
}
static int json_real_equal(json_t *real1, json_t *real2)
{
return json_real_value(real1) == json_real_value(real2);
}
static json_t *json_real_copy(const json_t *real)
{
return json_real(json_real_value(real));
}
/*** number ***/
double json_number_value(const json_t *json)
{
if(json_is_integer(json))
return (double)json_integer_value(json);
else if(json_is_real(json))
return json_real_value(json);
else
return 0.0;
}
/*** simple values ***/
json_t *json_true(void)
{
static json_t the_true = {JSON_TRUE, (size_t)-1};
return &the_true;
}
json_t *json_false(void)
{
static json_t the_false = {JSON_FALSE, (size_t)-1};
return &the_false;
}
json_t *json_null(void)
{
static json_t the_null = {JSON_NULL, (size_t)-1};
return &the_null;
}
/*** deletion ***/
void json_delete(json_t *json)
{
if(json_is_object(json))
json_delete_object(json_to_object(json));
else if(json_is_array(json))
json_delete_array(json_to_array(json));
else if(json_is_string(json))
json_delete_string(json_to_string(json));
else if(json_is_integer(json))
json_delete_integer(json_to_integer(json));
else if(json_is_real(json))
json_delete_real(json_to_real(json));
/* json_delete is not called for true, false or null */
}
/*** equality ***/
int json_equal(json_t *json1, json_t *json2)
{
if(!json1 || !json2)
return 0;
if(json_typeof(json1) != json_typeof(json2))
return 0;
/* this covers true, false and null as they are singletons */
if(json1 == json2)
return 1;
if(json_is_object(json1))
return json_object_equal(json1, json2);
if(json_is_array(json1))
return json_array_equal(json1, json2);
if(json_is_string(json1))
return json_string_equal(json1, json2);
if(json_is_integer(json1))
return json_integer_equal(json1, json2);
if(json_is_real(json1))
return json_real_equal(json1, json2);
return 0;
}
/*** copying ***/
json_t *json_copy(json_t *json)
{
if(!json)
return NULL;
if(json_is_object(json))
return json_object_copy(json);
if(json_is_array(json))
return json_array_copy(json);
if(json_is_string(json))
return json_string_copy(json);
if(json_is_integer(json))
return json_integer_copy(json);
if(json_is_real(json))
return json_real_copy(json);
if(json_is_true(json) || json_is_false(json) || json_is_null(json))
return json;
return NULL;
}
json_t *json_deep_copy(const json_t *json)
{
if(!json)
return NULL;
if(json_is_object(json))
return json_object_deep_copy(json);
if(json_is_array(json))
return json_array_deep_copy(json);
/* for the rest of the types, deep copying doesn't differ from
shallow copying */
if(json_is_string(json))
return json_string_copy(json);
if(json_is_integer(json))
return json_integer_copy(json);
if(json_is_real(json))
return json_real_copy(json);
if(json_is_true(json) || json_is_false(json) || json_is_null(json))
return (json_t *)json;
return NULL;
}
+10
View File
@@ -0,0 +1,10 @@
SUBDIRS = bin suites
EXTRA_DIST = scripts run-suites
TESTS = run-suites
TESTS_ENVIRONMENT = \
top_srcdir=$(top_srcdir) \
top_builddir=$(top_builddir)
clean-local:
rm -rf logs
+684
View File
@@ -0,0 +1,684 @@
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mkid -fID $$unique
tags: TAGS
TAGS: $(HEADERS) $(SOURCES) $(TAGS_DEPENDENCIES) \
$(TAGS_FILES) $(LISP)
set x; \
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list='$(SOURCES) $(HEADERS) $(LISP) $(TAGS_FILES)'; \
unique=`for i in $$list; do \
if test -f "$$i"; then echo $$i; else echo $(srcdir)/$$i; fi; \
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shift; \
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$(TAGS_FILES) $(LISP)
list='$(SOURCES) $(HEADERS) $(LISP) $(TAGS_FILES)'; \
unique=`for i in $$list; do \
if test -f "$$i"; then echo $$i; else echo $(srcdir)/$$i; fi; \
done | \
$(AWK) '{ files[$$0] = 1; nonempty = 1; } \
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|| $(CTAGS) $(CTAGSFLAGS) $(AM_CTAGSFLAGS) $(CTAGS_ARGS) \
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topsrcdirstrip=`echo "$(top_srcdir)" | sed 's/[].[^$$\\*]/\\\\&/g'`; \
list='$(DISTFILES)'; \
dist_files=`for file in $$list; do echo $$file; done | \
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fi; \
cp -fpR $$d/$$file "$(distdir)$$dir" || exit 1; \
else \
test -f "$(distdir)/$$file" \
|| cp -p $$d/$$file "$(distdir)/$$file" \
|| exit 1; \
fi; \
done
check-am: all-am
$(MAKE) $(AM_MAKEFLAGS) $(check_PROGRAMS)
check: check-am
all-am: Makefile
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install-exec: install-exec-am
install-data: install-data-am
uninstall: uninstall-am
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@$(MAKE) $(AM_MAKEFLAGS) install-exec-am install-data-am
installcheck: installcheck-am
install-strip:
if test -z '$(STRIP)'; then \
$(MAKE) $(AM_MAKEFLAGS) INSTALL_PROGRAM="$(INSTALL_STRIP_PROGRAM)" \
install_sh_PROGRAM="$(INSTALL_STRIP_PROGRAM)" INSTALL_STRIP_FLAG=-s \
install; \
else \
$(MAKE) $(AM_MAKEFLAGS) INSTALL_PROGRAM="$(INSTALL_STRIP_PROGRAM)" \
install_sh_PROGRAM="$(INSTALL_STRIP_PROGRAM)" INSTALL_STRIP_FLAG=-s \
"INSTALL_PROGRAM_ENV=STRIPPROG='$(STRIP)'" install; \
fi
mostlyclean-generic:
clean-generic:
distclean-generic:
-test -z "$(CONFIG_CLEAN_FILES)" || rm -f $(CONFIG_CLEAN_FILES)
-test . = "$(srcdir)" || test -z "$(CONFIG_CLEAN_VPATH_FILES)" || rm -f $(CONFIG_CLEAN_VPATH_FILES)
maintainer-clean-generic:
@echo "This command is intended for maintainers to use"
@echo "it deletes files that may require special tools to rebuild."
clean: clean-am
clean-am: clean-checkPROGRAMS clean-generic clean-libtool \
mostlyclean-am
distclean: distclean-am
-rm -rf ./$(DEPDIR)
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distclean-am: clean-am distclean-compile distclean-generic \
distclean-tags
dvi: dvi-am
dvi-am:
html: html-am
html-am:
info: info-am
info-am:
install-data-am:
install-dvi: install-dvi-am
install-dvi-am:
install-exec-am:
install-html: install-html-am
install-html-am:
install-info: install-info-am
install-info-am:
install-man:
install-pdf: install-pdf-am
install-pdf-am:
install-ps: install-ps-am
install-ps-am:
installcheck-am:
maintainer-clean: maintainer-clean-am
-rm -rf ./$(DEPDIR)
-rm -f Makefile
maintainer-clean-am: distclean-am maintainer-clean-generic
mostlyclean: mostlyclean-am
mostlyclean-am: mostlyclean-compile mostlyclean-generic \
mostlyclean-libtool
pdf: pdf-am
pdf-am:
ps: ps-am
ps-am:
uninstall-am:
.MAKE: check-am install-am install-strip
.PHONY: CTAGS GTAGS all all-am check check-am clean \
clean-checkPROGRAMS clean-generic clean-libtool ctags \
distclean distclean-compile distclean-generic \
distclean-libtool distclean-tags distdir dvi dvi-am html \
html-am info info-am install install-am install-data \
install-data-am install-dvi install-dvi-am install-exec \
install-exec-am install-html install-html-am install-info \
install-info-am install-man install-pdf install-pdf-am \
install-ps install-ps-am install-strip installcheck \
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maintainer-clean-generic mostlyclean mostlyclean-compile \
mostlyclean-generic mostlyclean-libtool pdf pdf-am ps ps-am \
tags uninstall uninstall-am
# Tell versions [3.59,3.63) of GNU make to not export all variables.
# Otherwise a system limit (for SysV at least) may be exceeded.
.NOEXPORT:
+362
View File
@@ -0,0 +1,362 @@
/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <ctype.h>
#include <jansson.h>
#ifdef HAVE_LOCALE_H
#include <locale.h>
#endif
#if _WIN32
#include <io.h> /* for _setmode() */
#include <fcntl.h> /* for _O_BINARY */
static const char dir_sep = '\\';
#else
static const char dir_sep = '/';
#endif
struct config {
int indent;
int compact;
int preserve_order;
int ensure_ascii;
int sort_keys;
int strip;
int use_env;
int have_hashseed;
int hashseed;
} conf;
#define l_isspace(c) ((c) == ' ' || (c) == '\n' || (c) == '\r' || (c) == '\t')
/* Return a pointer to the first non-whitespace character of str.
Modifies str so that all trailing whitespace characters are
replaced by '\0'. */
static const char *strip(char *str)
{
size_t length;
char *result = str;
while (*result && l_isspace(*result))
result++;
length = strlen(result);
if (length == 0)
return result;
while (l_isspace(result[length - 1]))
result[--length] = '\0';
return result;
}
static char *loadfile(FILE *file)
{
long fsize, ret;
char *buf;
fseek(file, 0, SEEK_END);
fsize = ftell(file);
fseek(file, 0, SEEK_SET);
buf = malloc(fsize+1);
ret = fread(buf, 1, fsize, file);
if (ret != fsize)
exit(1);
buf[fsize] = '\0';
return buf;
}
static void read_conf(FILE *conffile)
{
char *buffer, *line, *val;
buffer = loadfile(conffile);
for (line = strtok(buffer, "\r\n"); line; line = strtok(NULL, "\r\n")) {
if (!strncmp(line, "export ", 7))
continue;
val = strchr(line, '=');
if (!val) {
printf("invalid configuration line\n");
break;
}
*val++ = '\0';
if (!strcmp(line, "JSON_INDENT"))
conf.indent = atoi(val);
if (!strcmp(line, "JSON_COMPACT"))
conf.compact = atoi(val);
if (!strcmp(line, "JSON_ENSURE_ASCII"))
conf.ensure_ascii = atoi(val);
if (!strcmp(line, "JSON_PRESERVE_ORDER"))
conf.preserve_order = atoi(val);
if (!strcmp(line, "JSON_SORT_KEYS"))
conf.sort_keys = atoi(val);
if (!strcmp(line, "STRIP"))
conf.strip = atoi(val);
if (!strcmp(line, "HASHSEED")) {
conf.have_hashseed = 1;
conf.hashseed = atoi(val);
} else {
conf.have_hashseed = 0;
}
}
free(buffer);
}
static int cmpfile(const char *str, const char *path, const char *fname)
{
char filename[1024], *buffer;
int ret;
FILE *file;
sprintf(filename, "%s%c%s", path, dir_sep, fname);
file = fopen(filename, "rb");
if (!file) {
if (conf.strip)
strcat(filename, ".strip");
else
strcat(filename, ".normal");
file = fopen(filename, "rb");
}
if (!file) {
printf("Error: test result file could not be opened.\n");
exit(1);
}
buffer = loadfile(file);
if (strcmp(buffer, str) != 0)
ret = 1;
else
ret = 0;
free(buffer);
fclose(file);
return ret;
}
int use_conf(char *test_path)
{
int ret;
size_t flags = 0;
char filename[1024], errstr[1024];
char *buffer;
FILE *infile, *conffile;
json_t *json;
json_error_t error;
sprintf(filename, "%s%cinput", test_path, dir_sep);
if (!(infile = fopen(filename, "rb"))) {
fprintf(stderr, "Could not open \"%s\"\n", filename);
return 2;
}
sprintf(filename, "%s%cenv", test_path, dir_sep);
conffile = fopen(filename, "rb");
if (conffile) {
read_conf(conffile);
fclose(conffile);
}
if (conf.indent < 0 || conf.indent > 255) {
fprintf(stderr, "invalid value for JSON_INDENT: %d\n", conf.indent);
return 2;
}
if (conf.indent)
flags |= JSON_INDENT(conf.indent);
if (conf.compact)
flags |= JSON_COMPACT;
if (conf.ensure_ascii)
flags |= JSON_ENSURE_ASCII;
if (conf.preserve_order)
flags |= JSON_PRESERVE_ORDER;
if (conf.sort_keys)
flags |= JSON_SORT_KEYS;
if (conf.have_hashseed)
json_object_seed(conf.hashseed);
if (conf.strip) {
/* Load to memory, strip leading and trailing whitespace */
buffer = loadfile(infile);
json = json_loads(strip(buffer), 0, &error);
free(buffer);
}
else
json = json_loadf(infile, 0, &error);
fclose(infile);
if (!json) {
sprintf(errstr, "%d %d %d\n%s\n",
error.line, error.column, error.position,
error.text);
ret = cmpfile(errstr, test_path, "error");
return ret;
}
buffer = json_dumps(json, flags);
ret = cmpfile(buffer, test_path, "output");
free(buffer);
json_decref(json);
return ret;
}
static int getenv_int(const char *name)
{
char *value, *end;
long result;
value = getenv(name);
if(!value)
return 0;
result = strtol(value, &end, 10);
if(*end != '\0')
return 0;
return (int)result;
}
int use_env()
{
int indent;
size_t flags = 0;
json_t *json;
json_error_t error;
#ifdef _WIN32
/* On Windows, set stdout and stderr to binary mode to avoid
outputting DOS line terminators */
_setmode(_fileno(stdout), _O_BINARY);
_setmode(_fileno(stderr), _O_BINARY);
#endif
indent = getenv_int("JSON_INDENT");
if(indent < 0 || indent > 255) {
fprintf(stderr, "invalid value for JSON_INDENT: %d\n", indent);
return 2;
}
if(indent > 0)
flags |= JSON_INDENT(indent);
if(getenv_int("JSON_COMPACT") > 0)
flags |= JSON_COMPACT;
if(getenv_int("JSON_ENSURE_ASCII"))
flags |= JSON_ENSURE_ASCII;
if(getenv_int("JSON_PRESERVE_ORDER"))
flags |= JSON_PRESERVE_ORDER;
if(getenv_int("JSON_SORT_KEYS"))
flags |= JSON_SORT_KEYS;
if(getenv("HASHSEED"))
json_object_seed(getenv_int("HASHSEED"));
if(getenv_int("STRIP")) {
/* Load to memory, strip leading and trailing whitespace */
size_t size = 0, used = 0;
char *buffer = NULL;
while(1) {
size_t count;
size = (size == 0 ? 128 : size * 2);
buffer = realloc(buffer, size);
if(!buffer) {
fprintf(stderr, "Unable to allocate %d bytes\n", (int)size);
return 1;
}
count = fread(buffer + used, 1, size - used, stdin);
if(count < size - used) {
buffer[used + count] = '\0';
break;
}
used += count;
}
json = json_loads(strip(buffer), 0, &error);
free(buffer);
}
else
json = json_loadf(stdin, 0, &error);
if(!json) {
fprintf(stderr, "%d %d %d\n%s\n",
error.line, error.column,
error.position, error.text);
return 1;
}
json_dumpf(json, stdout, flags);
json_decref(json);
return 0;
}
int main(int argc, char *argv[])
{
int i;
char *test_path = NULL;
#ifdef HAVE_SETLOCALE
setlocale(LC_ALL, "");
#endif
if (argc < 2) {
goto usage;
}
for (i = 1; i < argc; i++) {
if (!strcmp(argv[i], "--strip"))
conf.strip = 1;
else if (!strcmp(argv[i], "--env"))
conf.use_env = 1;
else
test_path = argv[i];
}
if (conf.use_env)
return use_env();
else
{
if (!test_path)
goto usage;
return use_conf(test_path);
}
usage:
fprintf(stderr, "argc =%d\n", argc);
fprintf(stderr, "usage: %s [--strip] [--env] test_dir\n", argv[0]);
return 2;
}
+50
View File
@@ -0,0 +1,50 @@
#!/bin/sh
while [ -n "$1" ]; do
suite=$1
if [ -x $top_srcdir/test/suites/$suite/run ]; then
SUITES="$SUITES $suite"
else
echo "No such suite: $suite"
exit 1
fi
shift
done
if [ -z "$SUITES" ]; then
suitedirs=$top_srcdir/test/suites/*
for suitedir in $suitedirs; do
if [ -d $suitedir ]; then
SUITES="$SUITES `basename $suitedir`"
fi
done
fi
[ -z "$STOP" ] && STOP=0
suites_srcdir=$top_srcdir/test/suites
suites_builddir=suites
scriptdir=$top_srcdir/test/scripts
logdir=logs
bindir=bin
export suites_srcdir suites_builddir scriptdir logdir bindir
passed=0
failed=0
for suite in $SUITES; do
echo "Suite: $suite"
if $suites_srcdir/$suite/run $suite; then
passed=$(($passed+1))
else
failed=$(($failed+1))
[ $STOP -eq 1 ] && break
fi
done
if [ $failed -gt 0 ]; then
echo "$failed of $((passed+failed)) test suites failed"
exit 1
else
echo "$passed test suites passed"
rm -rf $logdir
fi
+100
View File
@@ -0,0 +1,100 @@
# Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
#
# Jansson is free software; you can redistribute it and/or modify
# it under the terms of the MIT license. See LICENSE for details.
die() {
echo "$1" >&2
exit 1
}
[ -n "$1" ] || die "Usage: $0 suite-name"
[ -n "$bindir" ] || die "Set bindir"
[ -n "$logdir" ] || die "Set logdir"
[ -n "$scriptdir" ] || die "Set scriptdir"
[ -n "$suites_srcdir" ] || die "Set suites_srcdir"
[ -n "$suites_builddir" ] || die "Set suites_builddir"
json_process=$bindir/json_process
suite_name=$1
suite_srcdir=$suites_srcdir/$suite_name
suite_builddir=$suites_builddir/$suite_name
suite_log=$logdir/$suite_name
[ -z "$VERBOSE" ] && VERBOSE=0
[ -z "$STOP" ] && STOP=0
. $scriptdir/valgrind.sh
rm -rf $suite_log
mkdir -p $suite_log
for test_path in $suite_srcdir/*; do
test_name=$(basename $test_path)
test_builddir=$suite_builddir/$test_name
test_log=$suite_log/$test_name
[ "$test_name" = "run" ] && continue
is_test || continue
rm -rf $test_log
mkdir -p $test_log
if [ $VERBOSE -eq 1 ]; then
printf '%s... ' "$test_name"
fi
run_test
case $? in
0)
# Success
if [ $VERBOSE -eq 1 ]; then
printf 'ok\n'
else
printf '.'
fi
rm -rf $test_log
;;
77)
# Skip
if [ $VERBOSE -eq 1 ]; then
printf 'skipped\n'
else
printf 'S'
fi
rm -rf $test_log
;;
*)
# Failure
if [ $VERBOSE -eq 1 ]; then
printf 'FAILED\n'
else
printf 'F'
fi
[ $STOP -eq 1 ] && break
;;
esac
done
if [ $VERBOSE -eq 0 ]; then
printf '\n'
fi
if [ -n "$(ls -A $suite_log)" ]; then
for test_log in $suite_log/*; do
test_name=$(basename $test_log)
test_path=$suite_srcdir/$test_name
echo "================================================================="
echo "$suite_name/$test_name"
echo "================================================================="
show_error
echo
done
echo "================================================================="
exit 1
else
rm -rf $suite_log
fi
+35
View File
@@ -0,0 +1,35 @@
# Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
#
# Jansson is free software; you can redistribute it and/or modify
# it under the terms of the MIT license. See LICENSE for details.
[ -z "$VALGRIND" ] && VALGRIND=0
VALGRIND_CMDLINE="valgrind --leak-check=full --show-reachable=yes --track-origins=yes -q"
if [ $VALGRIND -eq 1 ]; then
test_runner="$VALGRIND_CMDLINE"
json_process="$VALGRIND_CMDLINE $json_process"
else
test_runner=""
fi
valgrind_check() {
if [ $VALGRIND -eq 1 ]; then
# Check for Valgrind error output. The valgrind option
# --error-exitcode is not enough because Valgrind doesn't
# think unfreed allocs are errors.
if grep -E -q '^==[0-9]+== ' $1; then
touch $test_log/valgrind_error
return 1
fi
fi
}
valgrind_show_error() {
if [ $VALGRIND -eq 1 -a -f $test_log/valgrind_error ]; then
echo "valgrind detected an error"
return 0
fi
return 1
}
+2
View File
@@ -0,0 +1,2 @@
SUBDIRS = api
EXTRA_DIST = invalid invalid-unicode valid
+580
View File
@@ -0,0 +1,580 @@
# Makefile.in generated by automake 1.11.6 from Makefile.am.
# @configure_input@
# Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002,
# 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011 Free Software
# Foundation, Inc.
# This Makefile.in is free software; the Free Software Foundation
# gives unlimited permission to copy and/or distribute it,
# with or without modifications, as long as this notice is preserved.
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY, to the extent permitted by law; without
# even the implied warranty of MERCHANTABILITY or FITNESS FOR A
# PARTICULAR PURPOSE.
@SET_MAKE@
VPATH = @srcdir@
am__make_dryrun = \
{ \
am__dry=no; \
case $$MAKEFLAGS in \
*\\[\ \ ]*) \
echo 'am--echo: ; @echo "AM" OK' | $(MAKE) -f - 2>/dev/null \
| grep '^AM OK$$' >/dev/null || am__dry=yes;; \
*) \
for am__flg in $$MAKEFLAGS; do \
case $$am__flg in \
*=*|--*) ;; \
*n*) am__dry=yes; break;; \
esac; \
done;; \
esac; \
test $$am__dry = yes; \
}
pkgdatadir = $(datadir)/@PACKAGE@
pkgincludedir = $(includedir)/@PACKAGE@
pkglibdir = $(libdir)/@PACKAGE@
pkglibexecdir = $(libexecdir)/@PACKAGE@
am__cd = CDPATH="$${ZSH_VERSION+.}$(PATH_SEPARATOR)" && cd
install_sh_DATA = $(install_sh) -c -m 644
install_sh_PROGRAM = $(install_sh) -c
install_sh_SCRIPT = $(install_sh) -c
INSTALL_HEADER = $(INSTALL_DATA)
transform = $(program_transform_name)
NORMAL_INSTALL = :
PRE_INSTALL = :
POST_INSTALL = :
NORMAL_UNINSTALL = :
PRE_UNINSTALL = :
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build_triplet = @build@
host_triplet = @host@
subdir = test/suites
DIST_COMMON = $(srcdir)/Makefile.am $(srcdir)/Makefile.in
ACLOCAL_M4 = $(top_srcdir)/aclocal.m4
am__aclocal_m4_deps = $(top_srcdir)/configure.ac
am__configure_deps = $(am__aclocal_m4_deps) $(CONFIGURE_DEPENDENCIES) \
$(ACLOCAL_M4)
mkinstalldirs = $(install_sh) -d
CONFIG_HEADER = $(top_builddir)/config.h
CONFIG_CLEAN_FILES =
CONFIG_CLEAN_VPATH_FILES =
SOURCES =
DIST_SOURCES =
RECURSIVE_TARGETS = all-recursive check-recursive dvi-recursive \
html-recursive info-recursive install-data-recursive \
install-dvi-recursive install-exec-recursive \
install-html-recursive install-info-recursive \
install-pdf-recursive install-ps-recursive install-recursive \
installcheck-recursive installdirs-recursive pdf-recursive \
ps-recursive uninstall-recursive
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# The list of symbols, which the shared object should export, is read
# from the def file, which is used in Windows builds
grep 'json_' $top_srcdir/src/jansson.def \
| sed -e 's/ //g' \
| sort \
>$test_log/exports
nm -D $SOFILE >/dev/null >$test_log/symbols 2>/dev/null \
|| exit 77 # Skip if "nm -D" doesn't seem to work
grep ' [DT] ' $test_log/symbols | cut -d' ' -f3 | grep -v '^_' | sort >$test_log/output
if ! cmp -s $test_log/exports $test_log/output; then
diff -u $test_log/exports $test_log/output >&2
exit 1
fi
+36
View File
@@ -0,0 +1,36 @@
#!/bin/sh
#
# Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
#
# Jansson is free software; you can redistribute it and/or modify
# it under the terms of the MIT license. See LICENSE for details.
is_test() {
case "$test_name" in
*.c|check-exports)
return 0
;;
*)
return 1
;;
esac
}
run_test() {
if [ "$test_name" = "check-exports" ]; then
test_log=$test_log $test_path >$test_log/stdout 2>$test_log/stderr
else
$test_runner $suite_builddir/${test_name%.c} \
>$test_log/stdout \
2>$test_log/stderr \
|| return 1
valgrind_check $test_log/stderr || return 1
fi
}
show_error() {
valgrind_show_error && return
cat $test_log/stderr
}
. $top_srcdir/test/scripts/run-tests.sh
+432
View File
@@ -0,0 +1,432 @@
/*
* Copyright (c) 2009-2013 Petri Lehtinen <[email protected]>
*
* Jansson is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#include <jansson.h>
#include "util.h"
static void test_misc(void)
{
json_t *array, *five, *seven, *value;
size_t i;
array = json_array();
five = json_integer(5);
seven = json_integer(7);
if(!array)
fail("unable to create array");
if(!five || !seven)
fail("unable to create integer");
if(json_array_size(array) != 0)
fail("empty array has nonzero size");
if(!json_array_append(array, NULL))
fail("able to append NULL");
if(json_array_append(array, five))
fail("unable to append");
if(json_array_size(array) != 1)
fail("wrong array size");
value = json_array_get(array, 0);
if(!value)
fail("unable to get item");
if(value != five)
fail("got wrong value");
if(json_array_append(array, seven))
fail("unable to append value");
if(json_array_size(array) != 2)
fail("wrong array size");
value = json_array_get(array, 1);
if(!value)
fail("unable to get item");
if(value != seven)
fail("got wrong value");
if(json_array_set(array, 0, seven))
fail("unable to set value");
if(!json_array_set(array, 0, NULL))
fail("able to set NULL");
if(json_array_size(array) != 2)
fail("wrong array size");
value = json_array_get(array, 0);
if(!value)
fail("unable to get item");
if(value != seven)
fail("got wrong value");
if(json_array_get(array, 2) != NULL)
fail("able to get value out of bounds");
if(!json_array_set(array, 2, seven))
fail("able to set value out of bounds");
for(i = 2; i < 30; i++) {
if(json_array_append(array, seven))
fail("unable to append value");
if(json_array_size(array) != i + 1)
fail("wrong array size");
}
for(i = 0; i < 30; i++) {
value = json_array_get(array, i);
if(!value)
fail("unable to get item");
if(value != seven)
fail("got wrong value");
}
if(json_array_set_new(array, 15, json_integer(123)))
fail("unable to set new value");
value = json_array_get(array, 15);
if(!json_is_integer(value) || json_integer_value(value) != 123)
fail("json_array_set_new works incorrectly");
if(!json_array_set_new(array, 15, NULL))
fail("able to set_new NULL value");
if(json_array_append_new(array, json_integer(321)))
fail("unable to append new value");
value = json_array_get(array, json_array_size(array) - 1);
if(!json_is_integer(value) || json_integer_value(value) != 321)
fail("json_array_append_new works incorrectly");
if(!json_array_append_new(array, NULL))
fail("able to append_new NULL value");
json_decref(five);
json_decref(seven);
json_decref(array);
}
static void test_insert(void)
{
json_t *array, *five, *seven, *eleven, *value;
int i;
array = json_array();
five = json_integer(5);
seven = json_integer(7);
eleven = json_integer(11);
if(!array)
fail("unable to create array");
if(!five || !seven || !eleven)
fail("unable to create integer");
if(!json_array_insert(array, 1, five))
fail("able to insert value out of bounds");
if(json_array_insert(array, 0, five))
fail("unable to insert value in an empty array");
if(json_array_get(array, 0) != five)
fail("json_array_insert works incorrectly");
if(json_array_size(array) != 1)
fail("array size is invalid after insertion");
if(json_array_insert(array, 1, seven))
fail("unable to insert value at the end of an array");
if(json_array_get(array, 0) != five)
fail("json_array_insert works incorrectly");
if(json_array_get(array, 1) != seven)
fail("json_array_insert works incorrectly");
if(json_array_size(array) != 2)
fail("array size is invalid after insertion");
if(json_array_insert(array, 1, eleven))
fail("unable to insert value in the middle of an array");
if(json_array_get(array, 0) != five)
fail("json_array_insert works incorrectly");
if(json_array_get(array, 1) != eleven)
fail("json_array_insert works incorrectly");
if(json_array_get(array, 2) != seven)
fail("json_array_insert works incorrectly");
if(json_array_size(array) != 3)
fail("array size is invalid after insertion");
if(json_array_insert_new(array, 2, json_integer(123)))
fail("unable to insert value in the middle of an array");
value = json_array_get(array, 2);
if(!json_is_integer(value) || json_integer_value(value) != 123)
fail("json_array_insert_new works incorrectly");
if(json_array_size(array) != 4)
fail("array size is invalid after insertion");
for(i = 0; i < 20; i++) {
if(json_array_insert(array, 0, seven))
fail("unable to insert value at the begining of an array");
}
for(i = 0; i < 20; i++) {
if(json_array_get(array, i) != seven)
fail("json_aray_insert works incorrectly");
}
if(json_array_size(array) != 24)
fail("array size is invalid after loop insertion");
json_decref(five);
json_decref(seven);
json_decref(eleven);
json_decref(array);
}
static void test_remove(void)
{
json_t *array, *five, *seven;
int i;
array = json_array();
five = json_integer(5);
seven = json_integer(7);
if(!array)
fail("unable to create array");
if(!five)
fail("unable to create integer");
if(!seven)
fail("unable to create integer");
if(!json_array_remove(array, 0))
fail("able to remove an unexisting index");
if(json_array_append(array, five))
fail("unable to append");
if(!json_array_remove(array, 1))
fail("able to remove an unexisting index");
if(json_array_remove(array, 0))
fail("unable to remove");
if(json_array_size(array) != 0)
fail("array size is invalid after removing");
if(json_array_append(array, five) ||
json_array_append(array, seven) ||
json_array_append(array, five) ||
json_array_append(array, seven))
fail("unable to append");
if(json_array_remove(array, 2))
fail("unable to remove");
if(json_array_size(array) != 3)
fail("array size is invalid after removing");
if(json_array_get(array, 0) != five ||
json_array_get(array, 1) != seven ||
json_array_get(array, 2) != seven)
fail("remove works incorrectly");
json_decref(array);
array = json_array();
for(i = 0; i < 4; i++) {
json_array_append(array, five);
json_array_append(array, seven);
}
if(json_array_size(array) != 8)
fail("unable to append 8 items to array");
/* Remove an element from a "full" array. */
json_array_remove(array, 5);
json_decref(five);
json_decref(seven);
json_decref(array);
}
static void test_clear(void)
{
json_t *array, *five, *seven;
int i;
array = json_array();
five = json_integer(5);
seven = json_integer(7);
if(!array)
fail("unable to create array");
if(!five || !seven)
fail("unable to create integer");
for(i = 0; i < 10; i++) {
if(json_array_append(array, five))
fail("unable to append");
}
for(i = 0; i < 10; i++) {
if(json_array_append(array, seven))
fail("unable to append");
}
if(json_array_size(array) != 20)
fail("array size is invalid after appending");
if(json_array_clear(array))
fail("unable to clear");
if(json_array_size(array) != 0)
fail("array size is invalid after clearing");
json_decref(five);
json_decref(seven);
json_decref(array);
}
static void test_extend(void)
{
json_t *array1, *array2, *five, *seven;
int i;
array1 = json_array();
array2 = json_array();
five = json_integer(5);
seven = json_integer(7);
if(!array1 || !array2)
fail("unable to create array");
if(!five || !seven)
fail("unable to create integer");
for(i = 0; i < 10; i++) {
if(json_array_append(array1, five))
fail("unable to append");
}
for(i = 0; i < 10; i++) {
if(json_array_append(array2, seven))
fail("unable to append");
}
if(json_array_size(array1) != 10 || json_array_size(array2) != 10)
fail("array size is invalid after appending");
if(json_array_extend(array1, array2))
fail("unable to extend");
for(i = 0; i < 10; i++) {
if(json_array_get(array1, i) != five)
fail("invalid array contents after extending");
}
for(i = 10; i < 20; i++) {
if(json_array_get(array1, i) != seven)
fail("invalid array contents after extending");
}
json_decref(five);
json_decref(seven);
json_decref(array1);
json_decref(array2);
}
static void test_circular()
{
json_t *array1, *array2;
/* the simple cases are checked */
array1 = json_array();
if(!array1)
fail("unable to create array");
if(json_array_append(array1, array1) == 0)
fail("able to append self");
if(json_array_insert(array1, 0, array1) == 0)
fail("able to insert self");
if(json_array_append_new(array1, json_true()))
fail("failed to append true");
if(json_array_set(array1, 0, array1) == 0)
fail("able to set self");
json_decref(array1);
/* create circular references */
array1 = json_array();
array2 = json_array();
if(!array1 || !array2)
fail("unable to create array");
if(json_array_append(array1, array2) ||
json_array_append(array2, array1))
fail("unable to append");
/* circularity is detected when dumping */
if(json_dumps(array1, 0) != NULL)
fail("able to dump circulars");
/* decref twice to deal with the circular references */
json_decref(array1);
json_decref(array2);
json_decref(array1);
}
static void test_array_foreach()
{
size_t index;
json_t *array1, *array2, *value;
array1 = json_pack("[sisisi]", "foo", 1, "bar", 2, "baz", 3);
array2 = json_array();
json_array_foreach(array1, index, value) {
json_array_append(array2, value);
}
if(!json_equal(array1, array2))
fail("json_array_foreach failed to iterate all elements");
json_decref(array1);
json_decref(array2);
}
static void run_tests()
{
test_misc();
test_insert();
test_remove();
test_clear();
test_extend();
test_circular();
test_array_foreach();
}

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