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HaloKeymind/test/test_config_serializer/test_config_serializer.cpp
T

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14 KiB
C++

#include <gtest/gtest.h>
#include "helpers/ConfigSerializer.h"
#include "helpers/DynamicConfigSerializer.h"
class NativeFileSystem {
public:
void mkdir(const char*) { }
};
#define FILESYSTEM NativeFileSystem
#include "helpers/CommonCLI.h"
#undef FILESYSTEM
#define TEST_INT_S "56"
#define TEST_INT 56
#define TEST_FLOAT_S "-6.123"
#define TEST_FLOAT -6.1230f
#define TEST_DOUBLE_S "12.123456"
#define TEST_DOUBLE 12.123456
class MockInputStream : public Stream {
const char* _text;
int pos, len;
public:
MockInputStream(const char* text) : _text(text) { pos = 0; len = strlen(text); }
int available() override { return len - pos; }
int read() override { if (pos < len) { return _text[pos++]; } return -1; }
int peek() override { if (pos < len) { return _text[pos]; } return -1; }
};
class MockPrintStream : public Stream {
int len = 0;
uint8_t _buf[1024];
size_t printSigned(long long value) {
char text[24];
snprintf(text, sizeof(text), "%lld", value);
return Print::print(text);
}
size_t printUnsigned(unsigned long long value) {
char text[24];
snprintf(text, sizeof(text), "%llu", value);
return Print::print(text);
}
public:
size_t write(uint8_t b) override {
if (len < sizeof(_buf)) {
_buf[len++] = b;
return 1;
}
return 0;
}
size_t print(unsigned char v, int r) override { return printUnsigned(v); }
size_t print(int v, int r) override { return printSigned(v); }
size_t print(unsigned int v, int r) override { return printUnsigned(v); }
size_t print(long v, int r) override { return printSigned(v); }
size_t print(unsigned long v, int r) override { return printUnsigned(v); }
size_t print(long long v, int r) override { return printSigned(v); }
size_t print(unsigned long long v, int r) override { return printUnsigned(v); }
size_t print(double v, int p = 2) override {
char text[32];
snprintf(text, sizeof(text), "%.*f", p, v);
return Print::print(text);
}
int getLength() const { return len; }
const uint8_t* getBytes() const { return _buf; }
};
class TestStruct : public ConfigSerializer {
protected:
void structure() override {
def("age", age);
def("flags", flags);
def("name", name, sizeof(name));
}
public:
int32_t age;
char name[16];
uint8_t flags;
};
// ── saveSerial: basic ───────────────────────────────────────────────────────
TEST(ConfigSerializer, SaveSerial_Basic) {
MockPrintStream s;
TestStruct data;
data.age = TEST_INT;
data.flags = TEST_INT;
strcpy(data.name, "Scott");
bool success = data.saveSerial(s);
EXPECT_TRUE(success);
auto l = s.getLength();
const char* expect = "{age:" TEST_INT_S ",flags:" TEST_INT_S ",name:\"Scott\"}";
EXPECT_EQ(strlen(expect), l);
bool match = memcmp(s.getBytes(), expect, l) == 0;
EXPECT_TRUE(match);
}
TEST(ConfigSerializer, SaveSerial_EscChars) {
MockPrintStream s;
TestStruct data;
data.age = TEST_INT;
data.flags = TEST_INT;
strcpy(data.name, "\"Scott\"\n");
bool success = data.saveSerial(s);
EXPECT_TRUE(success);
auto l = s.getLength();
const char* expect = "{age:" TEST_INT_S ",flags:" TEST_INT_S ",name:\"\\\"Scott\\\"\\n\"}";
EXPECT_EQ(strlen(expect), l);
bool match = memcmp(s.getBytes(), expect, l) == 0;
EXPECT_TRUE(match);
}
// ── loadSerial: basic ───────────────────────────────────────────────────────
TEST(ConfigSerializer, LoadSerial_Basic) {
MockInputStream s("{age:" TEST_INT_S ",flags:" TEST_INT_S ",name:\"Scott\"}");
TestStruct data;
bool success = data.loadSerial(s);
EXPECT_TRUE(success);
EXPECT_EQ(TEST_INT, data.age);
EXPECT_EQ(TEST_INT, data.flags);
bool match = strcmp("Scott", data.name) == 0;
EXPECT_TRUE(match);
}
TEST(ConfigSerializer, LoadSerial_HandleWhitespace) {
MockInputStream s(" { age: " TEST_INT_S " , flags: " TEST_INT_S " , name: \"Scott\" } ");
TestStruct data;
bool success = data.loadSerial(s);
EXPECT_TRUE(success);
EXPECT_EQ(TEST_INT, data.age);
EXPECT_EQ(TEST_INT, data.flags);
bool match = strcmp("Scott", data.name) == 0;
EXPECT_TRUE(match);
}
TEST(ConfigSerializer, LoadSerial_EscChars) {
MockInputStream s("{age:" TEST_INT_S ",flags:" TEST_INT_S ",name:\"\\\"Scott\\\"\\n\"}");
TestStruct data;
bool success = data.loadSerial(s);
EXPECT_TRUE(success);
bool match = strcmp("\"Scott\"\n", data.name) == 0;
EXPECT_TRUE(match);
}
TEST(ConfigSerializer, LoadSerial_UnmatchedBraces) {
MockInputStream s("{age:" TEST_INT_S ",flags:" TEST_INT_S ",name:\"Scott\"");
TestStruct data;
bool success = data.loadSerial(s);
EXPECT_FALSE(success);
}
TEST(ConfigSerializer, LoadSerial_MissingCommas) {
MockInputStream s("{age:" TEST_INT_S " flags:" TEST_INT_S " name:\"Scott\"}");
TestStruct data;
bool success = data.loadSerial(s);
EXPECT_FALSE(success);
}
TEST(ConfigSerializer, LoadSerial_IgnoreUnknowns) {
MockInputStream s("{age:" TEST_INT_S ",xxx:" TEST_INT_S ",name:\"Scott\"}");
TestStruct data;
data.flags = 1;
// should ignore the 'xxx' property
bool success = data.loadSerial(s);
EXPECT_TRUE(success);
EXPECT_EQ(TEST_INT, data.age);
EXPECT_EQ(1, data.flags); // flags should be unmodified
bool match = strcmp("Scott", data.name) == 0;
EXPECT_TRUE(match);
}
TEST(DynamicConfigSerializer, GetSet_Basic) {
DynamicConfigSerializer data;
bool s1 = data.setByKey("age", "11");
bool s2 = data.setByKey("name", "Scott");
EXPECT_TRUE(s1 && s2);
char tmp[32];
bool g1 = data.getByKey("age", tmp, 31);
EXPECT_TRUE(g1);
EXPECT_STREQ("11", tmp);
bool g2 = data.getByKey("name", tmp, 31);
EXPECT_TRUE(g2);
EXPECT_STREQ("Scott", tmp);
}
TEST(NodePrefs, FemGainSettingsRoundTrip) {
NodePrefs saved;
saved.radio_fem_rxgain = 0;
saved.radio_fem_txgain = 1;
MockPrintStream output;
ASSERT_TRUE(saved.saveSerial(output));
std::string serialised(reinterpret_cast<const char*>(output.getBytes()), output.getLength());
EXPECT_NE(std::string::npos, serialised.find("fem_rxgain:0"));
EXPECT_NE(std::string::npos, serialised.find("fem_txgain:1"));
MockInputStream input(serialised.c_str());
NodePrefs loaded;
loaded.radio_fem_rxgain = 1;
loaded.radio_fem_txgain = 0;
ASSERT_TRUE(loaded.loadSerial(input)) << serialised;
EXPECT_EQ(0, loaded.radio_fem_rxgain);
EXPECT_EQ(1, loaded.radio_fem_txgain);
}
TEST(NodePrefs, TxPowerRemainsSignedThroughRadioPrefs) {
NodePrefs prefs;
prefs.tx_power_dbm = -9;
EXPECT_EQ(-9, prefs.getRadioPrefs()->getTxPower());
prefs.getRadioPrefs()->setTxPower(-8);
EXPECT_EQ(-8, prefs.tx_power_dbm);
}
TEST(ConfigSerializer, LoadSerial_KeyDigitsAfterFirstCharacter) {
MockInputStream s("{age:1,flags:2,name:\"ok\",slot1:7}");
TestStruct data;
data.age = data.flags = 0;
strcpy(data.name, "before");
EXPECT_TRUE(data.loadSerial(s));
EXPECT_EQ(1, data.age);
EXPECT_EQ(2, data.flags);
EXPECT_STREQ("ok", data.name);
}
TEST(ConfigSerializer, LoadSerial_RejectsLeadingDigitKey) {
MockInputStream s("{1slot:7}");
TestStruct data;
EXPECT_FALSE(data.loadSerial(s));
}
TEST(ConfigSerializer, LoadSerial_AcceptsEmptyObject) {
MockInputStream s("{}");
TestStruct data;
EXPECT_TRUE(data.loadSerial(s));
}
// ── /prefs.json compatibility under the strict shape checks ─────────────────
//
// The scalar-vs-object rejection added for /mqtt.json also runs for the plain
// def() overloads that NodePrefs uses, and loadPrefsInt() applies /prefs.json
// straight onto the live object without consulting the return value. These
// pin what that combination does to files already on deployed devices.
// A settings file in the exact shape the firmware writes, transcribed rather
// than produced by saveSerial() so a change to the writer cannot quietly move
// the fixture with it.
static const char* DEPLOYED_PREFS_JSON =
"{name:\"Repeater-1\",pass:\"hunter2\",guest:\"\",owner:\"ops@example.com\","
"adv_int:4,f_adv_int:12,lat:47.612345,lon:-122.334567,disc_mod:1719791234,"
"radio:{freq:910.5250,bw:250.0000,sf:10,cr:5,cad:0,int_thr:0,rxgain:1,"
"fem_rxgain:0,fem_txgain:1,tx:22,af:1.0000,rxdelay:1000.0000,"
"f_txdelay:0.5000,d_txdelay:0.2000,agc_int:0,hash_mode:0,multi_ack:0},"
"bridge:{en:0,delay:500,src:1,baud:115200,ch:1,secret:\"\"},"
"gps:{en:0,int:60,adv_loc:0},"
"repeat:{disable:0,f_max:64,f_max_uns:32,f_max_adv:16,loop:1},"
"room:{rd_only:0},power:{adc_mult:1.0000,pwr_sav_en:0}}";
TEST(NodePrefs, DeployedPrefsJsonStillLoadsCompletely) {
MockInputStream s(DEPLOYED_PREFS_JSON);
NodePrefs prefs;
ASSERT_TRUE(prefs.loadSerial(s));
EXPECT_STREQ("Repeater-1", prefs.node_name);
EXPECT_STREQ("ops@example.com", prefs.owner_info);
EXPECT_EQ(4, prefs.advert_interval);
EXPECT_DOUBLE_EQ(47.612345, prefs.node_lat);
EXPECT_DOUBLE_EQ(-122.334567, prefs.node_lon);
EXPECT_EQ(1719791234u, prefs.discovery_mod_timestamp);
EXPECT_FLOAT_EQ(910.525f, prefs.freq);
EXPECT_EQ(10, prefs.sf);
EXPECT_EQ(22, prefs.tx_power_dbm);
EXPECT_EQ(1, prefs.radio_fem_txgain);
EXPECT_EQ(1, prefs.bridge_pkt_src);
EXPECT_EQ(115200u, prefs.bridge_baud);
EXPECT_EQ(60u, prefs.gps_interval);
EXPECT_EQ(64, prefs.flood_max);
EXPECT_EQ(1, prefs.loop_detect);
}
TEST(NodePrefs, UnknownNestedObjectCannotBeMistakenForARootScalar) {
// Depth is what keeps an unknown group's inner keys from matching a root
// field of the same name, so an unrecognized section must stay ignorable.
MockInputStream s("{name:\"Repeater-1\",mqtt:{name:\"other\",owner:\"nobody\"},adv_int:4}");
NodePrefs prefs;
strcpy(prefs.owner_info, "ops@example.com");
EXPECT_TRUE(prefs.loadSerial(s));
EXPECT_STREQ("Repeater-1", prefs.node_name);
EXPECT_STREQ("ops@example.com", prefs.owner_info);
EXPECT_EQ(4, prefs.advert_interval);
}
TEST(NodePrefs, TornPrefsJsonAppliesOnlyTheFieldsBeforeTheTear) {
// A power cut during the old non-transactional /prefs.json write leaves a
// file like this. loadPrefsInt() ignores the failed return and keeps the
// partial result, which is the pre-existing behavior; the strict checks
// must not turn it into something worse than a partial load.
MockInputStream s("{name:\"Repeater-1\",adv_int:4,radio:{freq:910.5250,sf:1");
NodePrefs prefs;
prefs.sf = 9;
EXPECT_FALSE(prefs.loadSerial(s));
EXPECT_STREQ("Repeater-1", prefs.node_name);
EXPECT_EQ(4, prefs.advert_interval);
EXPECT_FLOAT_EQ(910.525f, prefs.freq);
EXPECT_EQ(9, prefs.sf); // the torn value never completed a token
}
TEST(NodePrefs, ShapeMismatchIsRejectedAndStopsFurtherApplication) {
// Hand-edited or corrupted files are the regression surface for the strict
// checks: a known scalar holding an object now fails the load and stops
// parsing, so nothing after the mismatch reaches the live object.
MockInputStream scalar_as_object("{name:{x:1},adv_int:4}");
NodePrefs prefs;
prefs.advert_interval = 7;
EXPECT_FALSE(prefs.loadSerial(scalar_as_object));
EXPECT_EQ(7, prefs.advert_interval);
// The reverse mismatch is rejected too: a known group given a scalar.
MockInputStream object_as_scalar("{name:\"Repeater-1\",radio:1}");
NodePrefs scalar_group;
EXPECT_FALSE(scalar_group.loadSerial(object_as_scalar));
// And a known scalar nested one level deeper than the schema places it.
MockInputStream over_nested("{radio:{sf:{value:10}}}");
NodePrefs nested;
nested.sf = 9;
EXPECT_FALSE(nested.loadSerial(over_nested));
EXPECT_EQ(9, nested.sf);
}
TEST(DynamicConfigSerializer, Set_Replaces) {
DynamicConfigSerializer data;
bool s1 = data.setByKey("age", "11");
bool s2 = data.setByKey("name", "Scott");
EXPECT_TRUE(s1 && s2);
bool s3 = data.setByKey("age", "333");
EXPECT_TRUE(s3);
char tmp[32];
bool g1 = data.getByKey("age", tmp, 31);
EXPECT_TRUE(g1);
EXPECT_STREQ("333", tmp);
bool g2 = data.getByKey("name", tmp, 31);
EXPECT_TRUE(g2);
EXPECT_STREQ("Scott", tmp);
}
TEST(DynamicConfigSerializer, GetUnknown_Fail) {
DynamicConfigSerializer data;
bool s1 = data.setByKey("age", "11");
EXPECT_TRUE(s1);
char tmp[32];
bool g2 = data.getByKey("name", tmp, 31);
EXPECT_FALSE(g2);
}
TEST(DynamicConfigSerializer, SaveCustom_Basic) {
MockPrintStream s;
DynamicConfigSerializer data;
bool s1 = data.setByKey("age", "11");
bool s2 = data.setByKey("name", "Scott");
EXPECT_TRUE(s1 && s2);
bool success = data.saveSerial(s);
EXPECT_TRUE(success);
auto l = s.getLength();
char tmp[128];
memcpy(tmp, s.getBytes(), l);
tmp[l] = 0;
const char* expect = "{age:\"11\",name:\"Scott\"}";
EXPECT_STREQ(expect, tmp);
}
TEST(DynamicConfigSerializer, LoadCustom_Basic) {
MockInputStream s("{age:\"" TEST_INT_S "\",name:\"Scott\"}");
DynamicConfigSerializer data;
bool success = data.loadSerial(s);
EXPECT_TRUE(success);
char tmp[32];
bool g1 = data.getByKey("age", tmp, 31);
EXPECT_TRUE(g1);
EXPECT_STREQ(TEST_INT_S, tmp);
bool g2 = data.getByKey("name", tmp, 31);
EXPECT_TRUE(g2);
EXPECT_STREQ("Scott", tmp);
}
// ── main ───────────────────────────────────────────────────────
int main(int argc, char** argv) {
::testing::InitGoogleTest(&argc, argv);
return RUN_ALL_TESTS();
}